import { r as __exportAll, t as getHot } from "./hot-Dg2gqCo9.js"; import { A as createCommentVNode, B as nextTick, C as Fragment, D as computed, E as Teleport, G as openBlock, H as onMounted, L as h, N as createVNode, O as createBaseVNode, P as defineComponent, R as inject, U as onUnmounted, V as onBeforeUnmount, W as onUpdated, Y as renderList, Z as resolveComponent, a as isStaticMode, at as withAsyncContext, bt as toDisplayString, dt as shallowReactive, ft as shallowRef, gt as unref, ht as toValue, it as watchEffect, j as createElementBlock, k as createBlock, l as isDark, mt as toRefs, nt as warn, o as onModuleUpdated, ot as withCtx, rt as watch, s as rpc, t as usePayloadStore, ut as ref, yt as normalizeStyle$1 } from "./index-D7rIWszL.js"; import { a as PluginName_default, i as Badge_default, n as SegmentControl_default, r as NavBar_default, s as Container_default, t as QuerySelector_default } from "./QuerySelector-80miXv9L.js"; import { n as DurationDisplay_default, t as useOptionsStore } from "./options-rRuuQb58.js"; import { t as useSearchResults } from "./search-BpZMsajh.js"; //#region node_modules/.pnpm/tslib@2.3.0/node_modules/tslib/tslib.es6.js /*! ***************************************************************************** Copyright (c) Microsoft Corporation. Permission to use, copy, modify, and/or distribute this software for any purpose with or without fee is hereby granted. THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. ***************************************************************************** */ var extendStatics = function(d, b) { extendStatics = Object.setPrototypeOf || { __proto__: [] } instanceof Array && function(d, b) { d.__proto__ = b; } || function(d, b) { for (var p in b) if (Object.prototype.hasOwnProperty.call(b, p)) d[p] = b[p]; }; return extendStatics(d, b); }; function __extends(d, b) { if (typeof b !== "function" && b !== null) throw new TypeError("Class extends value " + String(b) + " is not a constructor or null"); extendStatics(d, b); function __() { this.constructor = d; } d.prototype = b === null ? Object.create(b) : (__.prototype = b.prototype, new __()); } var DEFAULT_FONT = "12px sans-serif"; var OFFSET = 20; var SCALE = 100; var defaultWidthMapStr = "007LLmW'55;N0500LLLLLLLLLL00NNNLzWW\\\\WQb\\0FWLg\\bWb\\WQ\\WrWWQ000CL5LLFLL0LL**F*gLLLL5F0LF\\FFF5.5N"; function getTextWidthMap(mapStr) { var map = {}; if (typeof JSON === "undefined") return map; for (var i = 0; i < mapStr.length; i++) { var char = String.fromCharCode(i + 32); map[char] = (mapStr.charCodeAt(i) - OFFSET) / SCALE; } return map; } var DEFAULT_TEXT_WIDTH_MAP = getTextWidthMap(defaultWidthMapStr); var platformApi = { createCanvas: function() { return typeof document !== "undefined" && document.createElement("canvas"); }, measureText: (function() { var _ctx; var _cachedFont; return function(text, font) { if (!_ctx) { var canvas = platformApi.createCanvas(); _ctx = canvas && canvas.getContext("2d"); } if (_ctx) { if (_cachedFont !== font) _cachedFont = _ctx.font = font || "12px sans-serif"; return _ctx.measureText(text); } else { text = text || ""; font = font || "12px sans-serif"; var res = /((?:\d+)?\.?\d*)px/.exec(font); var fontSize = res && +res[1] || 12; var width = 0; if (font.indexOf("mono") >= 0) width = fontSize * text.length; else for (var i = 0; i < text.length; i++) { var preCalcWidth = DEFAULT_TEXT_WIDTH_MAP[text[i]]; width += preCalcWidth == null ? fontSize : preCalcWidth * fontSize; } return { width }; } }; })(), loadImage: function(src, onload, onerror) { var image = new Image(); image.onload = onload; image.onerror = onerror; image.src = src; return image; }, getTime: function() { return Date.now ? Date.now() : +/* @__PURE__ */ new Date(); } }; //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/core/util.js var BUILTIN_OBJECT = reduce([ "Function", "RegExp", "Date", "Error", "CanvasGradient", "CanvasPattern", "Image", "Canvas" ], function(obj, val) { obj["[object " + val + "]"] = true; return obj; }, {}); var TYPED_ARRAY = reduce([ "Int8", "Uint8", "Uint8Clamped", "Int16", "Uint16", "Int32", "Uint32", "Float32", "Float64" ], function(obj, val) { obj["[object " + val + "Array]"] = true; return obj; }, {}); var objToString = Object.prototype.toString; var arrayProto = Array.prototype; var nativeForEach = arrayProto.forEach; var nativeFilter = arrayProto.filter; var nativeSlice = arrayProto.slice; var nativeMap = arrayProto.map; var ctorFunction = function() {}.constructor; var protoFunction = ctorFunction ? ctorFunction.prototype : null; var protoKey = "__proto__"; var idStart = 2311; var MAX_SAFE_INTEGER$1 = Math.pow(2, 53) - 1; function guid() { if (idStart >= MAX_SAFE_INTEGER$1) idStart = 0; return idStart++; } function logError() { var args = []; for (var _i = 0; _i < arguments.length; _i++) args[_i] = arguments[_i]; if (typeof console !== "undefined") console.error.apply(console, args); } function clone$2(source) { if (source == null || typeof source !== "object") return source; var result = source; var typeStr = objToString.call(source); if (typeStr === "[object Array]") { if (!isPrimitive(source)) { result = []; for (var i = 0, len = source.length; i < len; i++) result[i] = clone$2(source[i]); } } else if (TYPED_ARRAY[typeStr]) { if (!isPrimitive(source)) { var Ctor = source.constructor; if (Ctor.from) result = Ctor.from(source); else { result = new Ctor(source.length); for (var i = 0, len = source.length; i < len; i++) result[i] = source[i]; } } } else if (!BUILTIN_OBJECT[typeStr] && !isPrimitive(source) && !isDom(source)) { result = {}; for (var key in source) if (source.hasOwnProperty(key) && key !== protoKey) result[key] = clone$2(source[key]); } return result; } function merge(target, source, overwrite) { if (!isObject$2(source) || !isObject$2(target)) return overwrite ? clone$2(source) : target; for (var key in source) if (source.hasOwnProperty(key) && key !== protoKey) { var targetProp = target[key]; var sourceProp = source[key]; if (isObject$2(sourceProp) && isObject$2(targetProp) && !isArray(sourceProp) && !isArray(targetProp) && !isDom(sourceProp) && !isDom(targetProp) && !isBuiltInObject(sourceProp) && !isBuiltInObject(targetProp) && !isPrimitive(sourceProp) && !isPrimitive(targetProp)) merge(targetProp, sourceProp, overwrite); else if (overwrite || !(key in target)) target[key] = clone$2(source[key]); } return target; } function extend(target, source) { if (Object.assign) Object.assign(target, source); else for (var key in source) if (source.hasOwnProperty(key) && key !== protoKey) target[key] = source[key]; return target; } function assignProps(tar, src, props) { tar = tar || {}; for (var idx = 0; idx < props.length; idx++) { var prop = props[idx]; tar[prop] = src[prop]; } return tar; } function defaults(target, source, overlay) { var keysArr = keys(source); for (var i = 0, len = keysArr.length; i < len; i++) { var key = keysArr[i]; if (overlay ? source[key] != null : target[key] == null) target[key] = source[key]; } return target; } platformApi.createCanvas; function indexOf(array, value) { if (array) { if (array.indexOf) return array.indexOf(value); for (var i = 0, len = array.length; i < len; i++) if (array[i] === value) return i; } return -1; } function inherits(clazz, baseClazz) { var clazzPrototype = clazz.prototype; function F() {} F.prototype = baseClazz.prototype; clazz.prototype = new F(); for (var prop in clazzPrototype) if (clazzPrototype.hasOwnProperty(prop)) clazz.prototype[prop] = clazzPrototype[prop]; clazz.prototype.constructor = clazz; clazz.superClass = baseClazz; } function mixin(target, source, override) { target = "prototype" in target ? target.prototype : target; source = "prototype" in source ? source.prototype : source; if (Object.getOwnPropertyNames) { var keyList = Object.getOwnPropertyNames(source); for (var i = 0; i < keyList.length; i++) { var key = keyList[i]; if (key !== "constructor") { if (override ? source[key] != null : target[key] == null) target[key] = source[key]; } } } else defaults(target, source, override); } function isArrayLike(data) { if (!data) return false; if (typeof data === "string") return false; return typeof data.length === "number"; } function each$4(arr, cb, context) { if (!(arr && cb)) return; if (arr.forEach && arr.forEach === nativeForEach) arr.forEach(cb, context); else if (arr.length === +arr.length) for (var i = 0, len = arr.length; i < len; i++) cb.call(context, arr[i], i, arr); else for (var key in arr) if (arr.hasOwnProperty(key)) cb.call(context, arr[key], key, arr); } function map$1(arr, cb, context) { if (!arr) return []; if (!cb) return slice(arr); if (arr.map && arr.map === nativeMap) return arr.map(cb, context); else { var result = []; for (var i = 0, len = arr.length; i < len; i++) result.push(cb.call(context, arr[i], i, arr)); return result; } } function reduce(arr, cb, memo, context) { if (!(arr && cb)) return; for (var i = 0, len = arr.length; i < len; i++) memo = cb.call(context, memo, arr[i], i, arr); return memo; } function filter(arr, cb, context) { if (!arr) return []; if (!cb) return slice(arr); if (arr.filter && arr.filter === nativeFilter) return arr.filter(cb, context); else { var result = []; for (var i = 0, len = arr.length; i < len; i++) if (cb.call(context, arr[i], i, arr)) result.push(arr[i]); return result; } } function find(arr, cb, context) { if (!(arr && cb)) return; for (var i = 0, len = arr.length; i < len; i++) if (cb.call(context, arr[i], i, arr)) return arr[i]; } function keys(obj) { if (!obj) return []; if (Object.keys) return Object.keys(obj); var keyList = []; for (var key in obj) if (obj.hasOwnProperty(key)) keyList.push(key); return keyList; } function bindPolyfill(func, context) { var args = []; for (var _i = 2; _i < arguments.length; _i++) args[_i - 2] = arguments[_i]; return function() { return func.apply(context, args.concat(nativeSlice.call(arguments))); }; } var bind$1 = protoFunction && isFunction(protoFunction.bind) ? protoFunction.call.bind(protoFunction.bind) : bindPolyfill; function curry$1(func) { var args = []; for (var _i = 1; _i < arguments.length; _i++) args[_i - 1] = arguments[_i]; return function() { return func.apply(this, args.concat(nativeSlice.call(arguments))); }; } function isArray(value) { if (Array.isArray) return Array.isArray(value); return objToString.call(value) === "[object Array]"; } function isFunction(value) { return typeof value === "function"; } function isString(value) { return typeof value === "string"; } function isStringSafe(value) { return objToString.call(value) === "[object String]"; } function isNumber(value) { return typeof value === "number"; } function isObject$2(value) { var type = typeof value; return type === "function" || !!value && type === "object"; } function isBuiltInObject(value) { return !!BUILTIN_OBJECT[objToString.call(value)]; } function isTypedArray(value) { return !!TYPED_ARRAY[objToString.call(value)]; } function isDom(value) { return typeof value === "object" && typeof value.nodeType === "number" && typeof value.ownerDocument === "object"; } function isGradientObject(value) { return value.colorStops != null; } function isImagePatternObject(value) { return value.image != null; } function eqNaN(value) { return value !== value; } function retrieve() { var args = []; for (var _i = 0; _i < arguments.length; _i++) args[_i] = arguments[_i]; for (var i = 0, len = args.length; i < len; i++) if (args[i] != null) return args[i]; } function retrieve2(value0, value1) { return value0 != null ? value0 : value1; } function retrieve3(value0, value1, value2) { return value0 != null ? value0 : value1 != null ? value1 : value2; } function slice(arr) { var args = []; for (var _i = 1; _i < arguments.length; _i++) args[_i - 1] = arguments[_i]; return nativeSlice.apply(arr, args); } function normalizeCssArray$1(val) { if (typeof val === "number") return [ val, val, val, val ]; var len = val.length; if (len === 2) return [ val[0], val[1], val[0], val[1] ]; else if (len === 3) return [ val[0], val[1], val[2], val[1] ]; return val; } function assert(condition, message) { if (!condition) throw new Error(message); } function trim(str) { if (str == null) return null; else if (typeof str.trim === "function") return str.trim(); else return str.replace(/^[\s\uFEFF\xA0]+|[\s\uFEFF\xA0]+$/g, ""); } var primitiveKey = "__ec_primitive__"; function setAsPrimitive(obj) { obj[primitiveKey] = true; } function isPrimitive(obj) { return obj[primitiveKey]; } var MapPolyfill = function() { function MapPolyfill() { this.data = {}; } MapPolyfill.prototype["delete"] = function(key) { var existed = this.has(key); if (existed) delete this.data[key]; return existed; }; MapPolyfill.prototype.has = function(key) { return this.data.hasOwnProperty(key); }; MapPolyfill.prototype.get = function(key) { return this.data[key]; }; MapPolyfill.prototype.set = function(key, value) { this.data[key] = value; return this; }; MapPolyfill.prototype.keys = function() { return keys(this.data); }; MapPolyfill.prototype.forEach = function(callback) { var data = this.data; for (var key in data) if (data.hasOwnProperty(key)) callback(data[key], key); }; return MapPolyfill; }(); var isNativeMapSupported = typeof Map === "function"; function maybeNativeMap() { return isNativeMapSupported ? /* @__PURE__ */ new Map() : new MapPolyfill(); } var HashMap = function() { function HashMap(obj) { var isArr = isArray(obj); this.data = maybeNativeMap(); var thisMap = this; obj instanceof HashMap ? obj.each(visit) : obj && each$4(obj, visit); function visit(value, key) { isArr ? thisMap.set(value, key) : thisMap.set(key, value); } } HashMap.prototype.hasKey = function(key) { return this.data.has(key); }; HashMap.prototype.get = function(key) { return this.data.get(key); }; HashMap.prototype.set = function(key, value) { this.data.set(key, value); return value; }; HashMap.prototype.each = function(cb, context) { this.data.forEach(function(value, key) { cb.call(context, value, key); }); }; HashMap.prototype.keys = function() { var keys = this.data.keys(); return isNativeMapSupported ? Array.from(keys) : keys; }; HashMap.prototype.removeKey = function(key) { this.data["delete"](key); }; return HashMap; }(); function createHashMap(obj) { return new HashMap(obj); } function concatArray(a, b) { var newArray = new a.constructor(a.length + b.length); for (var i = 0; i < a.length; i++) newArray[i] = a[i]; var offset = a.length; for (var i = 0; i < b.length; i++) newArray[i + offset] = b[i]; return newArray; } function createObject(proto, properties) { var obj; if (Object.create) obj = Object.create(proto); else { var StyleCtor = function() {}; StyleCtor.prototype = proto; obj = new StyleCtor(); } if (properties) extend(obj, properties); return obj; } function disableUserSelect(dom) { var domStyle = dom.style; domStyle.webkitUserSelect = "none"; domStyle.userSelect = "none"; domStyle.webkitTapHighlightColor = "rgba(0,0,0,0)"; domStyle["-webkit-touch-callout"] = "none"; } function hasOwn(own, prop) { return own.hasOwnProperty(prop); } function noop() {} var RADIAN_TO_DEGREE = 180 / Math.PI; Number.EPSILON; //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/core/env.js var Browser = function() { function Browser() { this.firefox = false; this.ie = false; this.edge = false; this.newEdge = false; this.weChat = false; } return Browser; }(); var env = new (function() { function Env() { this.browser = new Browser(); this.node = false; this.wxa = false; this.worker = false; this.svgSupported = false; this.touchEventsSupported = false; this.pointerEventsSupported = false; this.domSupported = false; this.transformSupported = false; this.transform3dSupported = false; this.hasGlobalWindow = typeof window !== "undefined"; } return Env; }())(); if (typeof wx === "object" && typeof wx.getSystemInfoSync === "function") { env.wxa = true; env.touchEventsSupported = true; } else if (typeof document === "undefined" && typeof self !== "undefined") env.worker = true; else if (!env.hasGlobalWindow || "Deno" in window || typeof navigator !== "undefined" && typeof navigator.userAgent === "string" && navigator.userAgent.indexOf("Node.js") > -1) { env.node = true; env.svgSupported = true; } else detect(navigator.userAgent, env); function detect(ua, env) { var browser = env.browser; var firefox = ua.match(/Firefox\/([\d.]+)/); var ie = ua.match(/MSIE\s([\d.]+)/) || ua.match(/Trident\/.+?rv:(([\d.]+))/); var edge = ua.match(/Edge?\/([\d.]+)/); var weChat = /micromessenger/i.test(ua); if (firefox) { browser.firefox = true; browser.version = firefox[1]; } if (ie) { browser.ie = true; browser.version = ie[1]; } if (edge) { browser.edge = true; browser.version = edge[1]; browser.newEdge = +edge[1].split(".")[0] > 18; } if (weChat) browser.weChat = true; env.svgSupported = typeof SVGRect !== "undefined"; env.touchEventsSupported = "ontouchstart" in window && !browser.ie && !browser.edge; env.pointerEventsSupported = "onpointerdown" in window && (browser.edge || browser.ie && +browser.version >= 11); if (env.domSupported = typeof document !== "undefined") { var style = document.documentElement.style; env.transform3dSupported = (browser.ie && "transition" in style || browser.edge || "WebKitCSSMatrix" in window && "m11" in new WebKitCSSMatrix() || "MozPerspective" in style) && !("OTransition" in style); env.transformSupported = env.transform3dSupported || browser.ie && +browser.version >= 9; } } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/util/clazz.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var TYPE_DELIMITER = "."; var IS_CONTAINER = "___EC__COMPONENT__CONTAINER___"; var IS_EXTENDED_CLASS = "___EC__EXTENDED_CLASS___"; /** * Notice, parseClassType('') should returns {main: '', sub: ''} * @public */ function parseClassType(componentType) { var ret = { main: "", sub: "" }; if (componentType) { var typeArr = componentType.split(TYPE_DELIMITER); ret.main = typeArr[0] || ""; ret.sub = typeArr[1] || ""; } return ret; } /** * @public */ function checkClassType(componentType) { assert(/^[a-zA-Z0-9_]+([.][a-zA-Z0-9_]+)?$/.test(componentType), "componentType \"" + componentType + "\" illegal"); } function isExtendedClass(clz) { return !!(clz && clz[IS_EXTENDED_CLASS]); } /** * Implements `ExtendableConstructor` for `rootClz`. * * @usage * ```ts * class Xxx {} * type XxxConstructor = typeof Xxx & ExtendableConstructor * enableClassExtend(Xxx as XxxConstructor); * ``` */ function enableClassExtend(rootClz, mandatoryMethods) { rootClz.$constructor = rootClz; rootClz.extend = function(proto) { var superClass = this; var ExtendedClass; if (isESClass(superClass)) ExtendedClass = function(_super) { __extends(class_1, _super); function class_1() { return _super.apply(this, arguments) || this; } return class_1; }(superClass); else { ExtendedClass = function() { (proto.$constructor || superClass).apply(this, arguments); }; inherits(ExtendedClass, this); } extend(ExtendedClass.prototype, proto); ExtendedClass[IS_EXTENDED_CLASS] = true; ExtendedClass.extend = this.extend; ExtendedClass.superCall = superCall; ExtendedClass.superApply = superApply; ExtendedClass.superClass = superClass; return ExtendedClass; }; } function isESClass(fn) { return isFunction(fn) && /^class\s/.test(Function.prototype.toString.call(fn)); } /** * A work around to both support ts extend and this extend mechanism. * on sub-class. * @usage * ```ts * class Component { ... } * classUtil.enableClassExtend(Component); * classUtil.enableClassManagement(Component, {registerWhenExtend: true}); * * class Series extends Component { ... } * // Without calling `markExtend`, `registerWhenExtend` will not work. * Component.markExtend(Series); * ``` */ function mountExtend(SubClz, SupperClz) { SubClz.extend = SupperClz.extend; } var classBase = Math.round(Math.random() * 10); /** * Implements `CheckableConstructor` for `target`. * Can not use instanceof, consider different scope by * cross domain or es module import in ec extensions. * Mount a method "isInstance()" to Clz. * * @usage * ```ts * class Xxx {} * type XxxConstructor = typeof Xxx & CheckableConstructor; * enableClassCheck(Xxx as XxxConstructor) * ``` */ function enableClassCheck(target) { var classAttr = ["__\0is_clz", classBase++].join("_"); target.prototype[classAttr] = true; target.isInstance = function(obj) { return !!(obj && obj[classAttr]); }; } function superCall(context, methodName) { var args = []; for (var _i = 2; _i < arguments.length; _i++) args[_i - 2] = arguments[_i]; return this.superClass.prototype[methodName].apply(context, args); } function superApply(context, methodName, args) { return this.superClass.prototype[methodName].apply(context, args); } /** * Implements `ClassManager` for `target` * * @usage * ```ts * class Xxx {} * type XxxConstructor = typeof Xxx & ClassManager * enableClassManagement(Xxx as XxxConstructor); * ``` */ function enableClassManagement(target) { /** * Component model classes * key: componentType, * value: * componentClass, when componentType is 'a' * or Object., when componentType is 'a.b' */ var storage = {}; target.registerClass = function(clz) { var componentFullType = clz.type || clz.prototype.type; if (componentFullType) { checkClassType(componentFullType); clz.prototype.type = componentFullType; var componentTypeInfo = parseClassType(componentFullType); if (!componentTypeInfo.sub) storage[componentTypeInfo.main] = clz; else if (componentTypeInfo.sub !== IS_CONTAINER) { var container = makeContainer(componentTypeInfo); container[componentTypeInfo.sub] = clz; } } return clz; }; target.getClass = function(mainType, subType, throwWhenNotFound) { var clz = storage[mainType]; if (clz && clz[IS_CONTAINER]) clz = subType ? clz[subType] : null; if (throwWhenNotFound && !clz) throw new Error(!subType ? mainType + ".type should be specified." : "Component " + mainType + "." + (subType || "") + " is used but not imported."); return clz; }; target.getClassesByMainType = function(componentType) { var componentTypeInfo = parseClassType(componentType); var result = []; var obj = storage[componentTypeInfo.main]; if (obj && obj[IS_CONTAINER]) each$4(obj, function(o, type) { type !== IS_CONTAINER && result.push(o); }); else result.push(obj); return result; }; target.hasClass = function(componentType) { return !!storage[parseClassType(componentType).main]; }; /** * @return Like ['aa', 'bb'], but can not be ['aa.xx'] */ target.getAllClassMainTypes = function() { var types = []; each$4(storage, function(obj, type) { types.push(type); }); return types; }; /** * If a main type is container and has sub types */ target.hasSubTypes = function(componentType) { var obj = storage[parseClassType(componentType).main]; return obj && obj[IS_CONTAINER]; }; function makeContainer(componentTypeInfo) { var container = storage[componentTypeInfo.main]; if (!container || !container[IS_CONTAINER]) { container = storage[componentTypeInfo.main] = {}; container[IS_CONTAINER] = true; } return container; } } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/model/mixin/makeStyleMapper.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ function makeStyleMapper(properties, ignoreParent) { for (var i = 0; i < properties.length; i++) if (!properties[i][1]) properties[i][1] = properties[i][0]; ignoreParent = ignoreParent || false; return function(model, excludes, includes) { var style = {}; for (var i = 0; i < properties.length; i++) { var propName = properties[i][1]; if (excludes && indexOf(excludes, propName) >= 0 || includes && indexOf(includes, propName) < 0) continue; var val = model.getShallow(propName, ignoreParent); if (val != null) style[properties[i][0]] = val; } return style; }; } var getAreaStyle = makeStyleMapper([ ["fill", "color"], ["shadowBlur"], ["shadowOffsetX"], ["shadowOffsetY"], ["opacity"], ["shadowColor"] ]); var AreaStyleMixin = function() { function AreaStyleMixin() {} AreaStyleMixin.prototype.getAreaStyle = function(excludes, includes) { return getAreaStyle(this, excludes, includes); }; return AreaStyleMixin; }(); //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/core/LRU.js var Entry = function() { function Entry(val) { this.value = val; } return Entry; }(); var LinkedList = function() { function LinkedList() { this._len = 0; } LinkedList.prototype.insert = function(val) { var entry = new Entry(val); this.insertEntry(entry); return entry; }; LinkedList.prototype.insertEntry = function(entry) { if (!this.head) this.head = this.tail = entry; else { this.tail.next = entry; entry.prev = this.tail; entry.next = null; this.tail = entry; } this._len++; }; LinkedList.prototype.remove = function(entry) { var prev = entry.prev; var next = entry.next; if (prev) prev.next = next; else this.head = next; if (next) next.prev = prev; else this.tail = prev; entry.next = entry.prev = null; this._len--; }; LinkedList.prototype.len = function() { return this._len; }; LinkedList.prototype.clear = function() { this.head = this.tail = null; this._len = 0; }; return LinkedList; }(); var LRU = function() { function LRU(maxSize) { this._list = new LinkedList(); this._maxSize = 10; this._map = {}; this._maxSize = maxSize; } LRU.prototype.put = function(key, value) { var list = this._list; var map = this._map; var removed = null; if (map[key] == null) { var len = list.len(); var entry = this._lastRemovedEntry; if (len >= this._maxSize && len > 0) { var leastUsedEntry = list.head; list.remove(leastUsedEntry); delete map[leastUsedEntry.key]; removed = leastUsedEntry.value; this._lastRemovedEntry = leastUsedEntry; } if (entry) entry.value = value; else entry = new Entry(value); entry.key = key; list.insertEntry(entry); map[key] = entry; } return removed; }; LRU.prototype.get = function(key) { var entry = this._map[key]; var list = this._list; if (entry != null) { if (entry !== list.tail) { list.remove(entry); list.insertEntry(entry); } return entry.value; } }; LRU.prototype.clear = function() { this._list.clear(); this._map = {}; }; LRU.prototype.len = function() { return this._list.len(); }; return LRU; }(); //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/graphic/helper/image.js var globalImageCache = new LRU(50); function findExistImage(newImageOrSrc) { if (typeof newImageOrSrc === "string") { var cachedImgObj = globalImageCache.get(newImageOrSrc); return cachedImgObj && cachedImgObj.image; } else return newImageOrSrc; } function createOrUpdateImage(newImageOrSrc, image, hostEl, onload, cbPayload) { if (!newImageOrSrc) return image; else if (typeof newImageOrSrc === "string") { if (image && image.__zrImageSrc === newImageOrSrc || !hostEl) return image; var cachedImgObj = globalImageCache.get(newImageOrSrc); var pendingWrap = { hostEl, cb: onload, cbPayload }; if (cachedImgObj) { image = cachedImgObj.image; !isImageReady(image) && cachedImgObj.pending.push(pendingWrap); } else { image = platformApi.loadImage(newImageOrSrc, imageOnLoad, imageOnLoad); image.__zrImageSrc = newImageOrSrc; globalImageCache.put(newImageOrSrc, image.__cachedImgObj = { image, pending: [pendingWrap] }); } return image; } else return newImageOrSrc; } function imageOnLoad() { var cachedImgObj = this.__cachedImgObj; this.onload = this.onerror = this.__cachedImgObj = null; for (var i = 0; i < cachedImgObj.pending.length; i++) { var pendingWrap = cachedImgObj.pending[i]; var cb = pendingWrap.cb; cb && cb(this, pendingWrap.cbPayload); pendingWrap.hostEl.dirty(); } cachedImgObj.pending.length = 0; } function isImageReady(image) { return image && image.width && image.height; } //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/core/matrix.js function create$1() { return [ 1, 0, 0, 1, 0, 0 ]; } function identity(out) { out[0] = 1; out[1] = 0; out[2] = 0; out[3] = 1; out[4] = 0; out[5] = 0; return out; } function copy(out, m) { out[0] = m[0]; out[1] = m[1]; out[2] = m[2]; out[3] = m[3]; out[4] = m[4]; out[5] = m[5]; return out; } function mul(out, m1, m2) { var out0 = m1[0] * m2[0] + m1[2] * m2[1]; var out1 = m1[1] * m2[0] + m1[3] * m2[1]; var out2 = m1[0] * m2[2] + m1[2] * m2[3]; var out3 = m1[1] * m2[2] + m1[3] * m2[3]; var out4 = m1[0] * m2[4] + m1[2] * m2[5] + m1[4]; var out5 = m1[1] * m2[4] + m1[3] * m2[5] + m1[5]; out[0] = out0; out[1] = out1; out[2] = out2; out[3] = out3; out[4] = out4; out[5] = out5; return out; } function translate(out, a, v) { out[0] = a[0]; out[1] = a[1]; out[2] = a[2]; out[3] = a[3]; out[4] = a[4] + v[0]; out[5] = a[5] + v[1]; return out; } function rotate(out, a, rad, pivot) { if (pivot === void 0) pivot = [0, 0]; var aa = a[0]; var ac = a[2]; var atx = a[4]; var ab = a[1]; var ad = a[3]; var aty = a[5]; var st = Math.sin(rad); var ct = Math.cos(rad); out[0] = aa * ct + ab * st; out[1] = -aa * st + ab * ct; out[2] = ac * ct + ad * st; out[3] = -ac * st + ct * ad; out[4] = ct * (atx - pivot[0]) + st * (aty - pivot[1]) + pivot[0]; out[5] = ct * (aty - pivot[1]) - st * (atx - pivot[0]) + pivot[1]; return out; } function scale$1(out, a, v) { var vx = v[0]; var vy = v[1]; out[0] = a[0] * vx; out[1] = a[1] * vy; out[2] = a[2] * vx; out[3] = a[3] * vy; out[4] = a[4] * vx; out[5] = a[5] * vy; return out; } function invert(out, a) { var aa = a[0]; var ac = a[2]; var atx = a[4]; var ab = a[1]; var ad = a[3]; var aty = a[5]; var det = aa * ad - ab * ac; if (!det) return null; det = 1 / det; out[0] = ad * det; out[1] = -ab * det; out[2] = -ac * det; out[3] = aa * det; out[4] = (ac * aty - ad * atx) * det; out[5] = (ab * atx - aa * aty) * det; return out; } //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/core/vector.js function create(x, y) { if (x == null) x = 0; if (y == null) y = 0; return [x, y]; } function clone$1(v) { return [v[0], v[1]]; } function set$1(out, a, b) { out[0] = a; out[1] = b; return out; } function add(out, v1, v2) { out[0] = v1[0] + v2[0]; out[1] = v1[1] + v2[1]; return out; } function sub(out, v1, v2) { out[0] = v1[0] - v2[0]; out[1] = v1[1] - v2[1]; return out; } function len(v) { return Math.sqrt(lenSquare(v)); } function lenSquare(v) { return v[0] * v[0] + v[1] * v[1]; } function scale(out, v, s) { out[0] = v[0] * s; out[1] = v[1] * s; return out; } function normalize(out, v) { var d = len(v); if (d === 0) { out[0] = 0; out[1] = 0; } else { out[0] = v[0] / d; out[1] = v[1] / d; } return out; } function distance(v1, v2) { return Math.sqrt((v1[0] - v2[0]) * (v1[0] - v2[0]) + (v1[1] - v2[1]) * (v1[1] - v2[1])); } var dist$1 = distance; function distanceSquare(v1, v2) { return (v1[0] - v2[0]) * (v1[0] - v2[0]) + (v1[1] - v2[1]) * (v1[1] - v2[1]); } var distSquare = distanceSquare; function applyTransform$1(out, v, m) { var x = v[0]; var y = v[1]; out[0] = m[0] * x + m[2] * y + m[4]; out[1] = m[1] * x + m[3] * y + m[5]; return out; } function min$1(out, v1, v2) { out[0] = Math.min(v1[0], v2[0]); out[1] = Math.min(v1[1], v2[1]); return out; } function max$1(out, v1, v2) { out[0] = Math.max(v1[0], v2[0]); out[1] = Math.max(v1[1], v2[1]); return out; } //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/core/Point.js var Point = function() { function Point(x, y) { this.x = x || 0; this.y = y || 0; } Point.prototype.copy = function(other) { this.x = other.x; this.y = other.y; return this; }; Point.prototype.clone = function() { return new Point(this.x, this.y); }; Point.prototype.set = function(x, y) { this.x = x; this.y = y; return this; }; Point.prototype.equal = function(other) { return other.x === this.x && other.y === this.y; }; Point.prototype.add = function(other) { this.x += other.x; this.y += other.y; return this; }; Point.prototype.scale = function(scalar) { this.x *= scalar; this.y *= scalar; }; Point.prototype.scaleAndAdd = function(other, scalar) { this.x += other.x * scalar; this.y += other.y * scalar; }; Point.prototype.sub = function(other) { this.x -= other.x; this.y -= other.y; return this; }; Point.prototype.dot = function(other) { return this.x * other.x + this.y * other.y; }; Point.prototype.len = function() { return Math.sqrt(this.x * this.x + this.y * this.y); }; Point.prototype.lenSquare = function() { return this.x * this.x + this.y * this.y; }; Point.prototype.normalize = function() { var len = this.len(); this.x /= len; this.y /= len; return this; }; Point.prototype.distance = function(other) { var dx = this.x - other.x; var dy = this.y - other.y; return Math.sqrt(dx * dx + dy * dy); }; Point.prototype.distanceSquare = function(other) { var dx = this.x - other.x; var dy = this.y - other.y; return dx * dx + dy * dy; }; Point.prototype.negate = function() { this.x = -this.x; this.y = -this.y; return this; }; Point.prototype.transform = function(m) { if (!m) return; var x = this.x; var y = this.y; this.x = m[0] * x + m[2] * y + m[4]; this.y = m[1] * x + m[3] * y + m[5]; return this; }; Point.prototype.toArray = function(out) { out[0] = this.x; out[1] = this.y; return out; }; Point.prototype.fromArray = function(input) { this.x = input[0]; this.y = input[1]; }; Point.set = function(p, x, y) { p.x = x; p.y = y; }; Point.copy = function(p, p2) { p.x = p2.x; p.y = p2.y; }; Point.len = function(p) { return Math.sqrt(p.x * p.x + p.y * p.y); }; Point.lenSquare = function(p) { return p.x * p.x + p.y * p.y; }; Point.dot = function(p0, p1) { return p0.x * p1.x + p0.y * p1.y; }; Point.add = function(out, p0, p1) { out.x = p0.x + p1.x; out.y = p0.y + p1.y; }; Point.sub = function(out, p0, p1) { out.x = p0.x - p1.x; out.y = p0.y - p1.y; }; Point.scale = function(out, p0, scalar) { out.x = p0.x * scalar; out.y = p0.y * scalar; }; Point.scaleAndAdd = function(out, p0, p1, scalar) { out.x = p0.x + p1.x * scalar; out.y = p0.y + p1.y * scalar; }; Point.lerp = function(out, p0, p1, t) { var onet = 1 - t; out.x = onet * p0.x + t * p1.x; out.y = onet * p0.y + t * p1.y; }; return Point; }(); //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/core/BoundingRect.js var mathMin$6 = Math.min; var mathMax$6 = Math.max; var mathAbs$4 = Math.abs; var XY$2 = ["x", "y"]; var WH$2 = ["width", "height"]; var lt = new Point(); var rb = new Point(); var lb = new Point(); var rt = new Point(); var _intersectCtx$1 = createIntersectContext(); var _minTv$1 = _intersectCtx$1.minTv; var _maxTv$1 = _intersectCtx$1.maxTv; var _lenMinMax = [0, 0]; var BoundingRect = function() { function BoundingRect(x, y, width, height) { boundingRectSet(this, x, y, width, height); } BoundingRect.set = function(target, x, y, width, height) { if (width < 0) { x = x + width; width = -width; } if (height < 0) { y = y + height; height = -height; } target.x = x; target.y = y; target.width = width; target.height = height; return target; }; BoundingRect.prototype.union = function(other) { var x = mathMin$6(other.x, this.x); var y = mathMin$6(other.y, this.y); if (isFinite(this.x) && isFinite(this.width)) this.width = mathMax$6(other.x + other.width, this.x + this.width) - x; else this.width = other.width; if (isFinite(this.y) && isFinite(this.height)) this.height = mathMax$6(other.y + other.height, this.y + this.height) - y; else this.height = other.height; this.x = x; this.y = y; }; BoundingRect.prototype.applyTransform = function(m) { BoundingRect.applyTransform(this, this, m); }; BoundingRect.prototype.calculateTransform = function(b) { return boundingRectCalculateTransform(create$1(), this, b); }; BoundingRect.prototype.intersect = function(b, mtv, opt) { return BoundingRect.intersect(this, b, mtv, opt); }; BoundingRect.intersect = function(a, b, mtv, opt) { if (mtv) Point.set(mtv, 0, 0); var outIntersectRect = opt && opt.outIntersectRect || null; var clamp = opt && opt.clamp; if (outIntersectRect) outIntersectRect.x = outIntersectRect.y = outIntersectRect.width = outIntersectRect.height = NaN; if (!a || !b) return false; if (!(a instanceof BoundingRect)) a = boundingRectSet(_tmpIntersectA, a.x, a.y, a.width, a.height); if (!(b instanceof BoundingRect)) b = boundingRectSet(_tmpIntersectB, b.x, b.y, b.width, b.height); var useMTV = !!mtv; _intersectCtx$1.reset(opt, useMTV); var touchThreshold = _intersectCtx$1.touchThreshold; var ax0 = a.x + touchThreshold; var ax1 = a.x + a.width - touchThreshold; var ay0 = a.y + touchThreshold; var ay1 = a.y + a.height - touchThreshold; var bx0 = b.x + touchThreshold; var bx1 = b.x + b.width - touchThreshold; var by0 = b.y + touchThreshold; var by1 = b.y + b.height - touchThreshold; if (ax0 > ax1 || ay0 > ay1 || bx0 > bx1 || by0 > by1) return false; var overlap = !(ax1 < bx0 || bx1 < ax0 || ay1 < by0 || by1 < ay0); if (useMTV || outIntersectRect) { _lenMinMax[0] = Infinity; _lenMinMax[1] = 0; intersectOneDim(ax0, ax1, bx0, bx1, 0, useMTV, outIntersectRect, clamp); intersectOneDim(ay0, ay1, by0, by1, 1, useMTV, outIntersectRect, clamp); if (useMTV) Point.copy(mtv, overlap ? _intersectCtx$1.useDir ? _intersectCtx$1.dirMinTv : _minTv$1 : _maxTv$1); } return overlap; }; BoundingRect.contain = function(rect, x, y) { return x >= rect.x && x <= rect.x + rect.width && y >= rect.y && y <= rect.y + rect.height; }; BoundingRect.prototype.contain = function(x, y) { return BoundingRect.contain(this, x, y); }; BoundingRect.prototype.clone = function() { return new BoundingRect(this.x, this.y, this.width, this.height); }; BoundingRect.prototype.copy = function(other) { boundingRectCopy(this, other); }; BoundingRect.prototype.plain = function() { return { x: this.x, y: this.y, width: this.width, height: this.height }; }; BoundingRect.prototype.isFinite = function() { return isFinite(this.x) && isFinite(this.y) && isFinite(this.width) && isFinite(this.height); }; BoundingRect.prototype.isZero = function() { return this.width === 0 || this.height === 0; }; BoundingRect.create = function(rect) { return new BoundingRect(rect ? rect.x : 0, rect ? rect.y : 0, rect ? rect.width : 0, rect ? rect.height : 0); }; BoundingRect.copy = function(target, source) { target.x = source.x; target.y = source.y; target.width = source.width; target.height = source.height; return target; }; BoundingRect.applyTransform = function(target, source, m) { if (!m) { if (target !== source) boundingRectCopy(target, source); return; } if (m[1] < 1e-5 && m[1] > -1e-5 && m[2] < 1e-5 && m[2] > -1e-5) { var sx = m[0]; var sy = m[3]; var tx = m[4]; var ty = m[5]; target.x = source.x * sx + tx; target.y = source.y * sy + ty; target.width = source.width * sx; target.height = source.height * sy; if (target.width < 0) { target.x += target.width; target.width = -target.width; } if (target.height < 0) { target.y += target.height; target.height = -target.height; } return; } lt.x = lb.x = source.x; lt.y = rt.y = source.y; rb.x = rt.x = source.x + source.width; rb.y = lb.y = source.y + source.height; lt.transform(m); rt.transform(m); rb.transform(m); lb.transform(m); target.x = mathMin$6(lt.x, rb.x, lb.x, rt.x); target.y = mathMin$6(lt.y, rb.y, lb.y, rt.y); var maxX = mathMax$6(lt.x, rb.x, lb.x, rt.x); var maxY = mathMax$6(lt.y, rb.y, lb.y, rt.y); target.width = maxX - target.x; target.height = maxY - target.y; }; BoundingRect.calculateTransform = function(out, a, b) { var sx = b.width / a.width; var sy = b.height / a.height; out = identity(out || []); translate(out, out, set$1(_tmpCalcTrans, -a.x, -a.y)); scale$1(out, out, set$1(_tmpCalcTrans, sx, sy)); translate(out, out, set$1(_tmpCalcTrans, b.x, b.y)); return out; }; return BoundingRect; }(); BoundingRect.create; var boundingRectSet = BoundingRect.set; var boundingRectCopy = BoundingRect.copy; var boundingRectCalculateTransform = BoundingRect.calculateTransform; BoundingRect.applyTransform; BoundingRect.contain; var _tmpIntersectA = new BoundingRect(0, 0, 0, 0); var _tmpIntersectB = new BoundingRect(0, 0, 0, 0); var _tmpCalcTrans = []; function intersectOneDim(a0, a1, b0, b1, updateDimIdx, useMTV, outIntersectRect, clamp) { var d0 = mathAbs$4(a1 - b0); var d1 = mathAbs$4(b1 - a0); var d01min = mathMin$6(d0, d1); var updateDim = XY$2[updateDimIdx]; var zeroDim = XY$2[1 - updateDimIdx]; var wh = WH$2[updateDimIdx]; if (a1 < b0 || b1 < a0) if (d0 < d1) { if (useMTV) _maxTv$1[updateDim] = -d0; if (clamp) { outIntersectRect[updateDim] = a1; outIntersectRect[wh] = 0; } } else { if (useMTV) _maxTv$1[updateDim] = d1; if (clamp) { outIntersectRect[updateDim] = a0; outIntersectRect[wh] = 0; } } else { if (outIntersectRect) { outIntersectRect[updateDim] = mathMax$6(a0, b0); outIntersectRect[wh] = mathMin$6(a1, b1) - outIntersectRect[updateDim]; } if (useMTV) { if (d01min < _lenMinMax[0] || _intersectCtx$1.useDir) { _lenMinMax[0] = mathMin$6(d01min, _lenMinMax[0]); if (d0 < d1 || !_intersectCtx$1.bidirectional) { _minTv$1[updateDim] = d0; _minTv$1[zeroDim] = 0; if (_intersectCtx$1.useDir) _intersectCtx$1.calcDirMTV(); } if (d0 >= d1 || !_intersectCtx$1.bidirectional) { _minTv$1[updateDim] = -d1; _minTv$1[zeroDim] = 0; if (_intersectCtx$1.useDir) _intersectCtx$1.calcDirMTV(); } } } } } function createIntersectContext() { var _direction = 0; var _dirCheckVec = new Point(); var _dirTmp = new Point(); var _ctx = { minTv: new Point(), maxTv: new Point(), useDir: false, dirMinTv: new Point(), touchThreshold: 0, bidirectional: true, negativeSize: false, reset: function(opt, useMTV) { _ctx.touchThreshold = 0; if (opt && opt.touchThreshold != null) _ctx.touchThreshold = mathMax$6(0, opt.touchThreshold); _ctx.negativeSize = false; if (!useMTV) return; _ctx.minTv.set(Infinity, Infinity); _ctx.maxTv.set(0, 0); _ctx.useDir = false; if (opt && opt.direction != null) { _ctx.useDir = true; _ctx.dirMinTv.copy(_ctx.minTv); _dirTmp.copy(_ctx.minTv); _direction = opt.direction; _ctx.bidirectional = opt.bidirectional == null || !!opt.bidirectional; if (!_ctx.bidirectional) _dirCheckVec.set(Math.cos(_direction), Math.sin(_direction)); } }, calcDirMTV: function() { var minTv = _ctx.minTv; var dirMinTv = _ctx.dirMinTv; var squareMag = minTv.y * minTv.y + minTv.x * minTv.x; var dirSin = Math.sin(_direction); var dirCos = Math.cos(_direction); var dotProd = dirSin * minTv.y + dirCos * minTv.x; if (nearZero(dotProd)) { if (nearZero(minTv.x) && nearZero(minTv.y)) dirMinTv.set(0, 0); return; } _dirTmp.x = squareMag * dirCos / dotProd; _dirTmp.y = squareMag * dirSin / dotProd; if (nearZero(_dirTmp.x) && nearZero(_dirTmp.y)) { dirMinTv.set(0, 0); return; } if ((_ctx.bidirectional || _dirCheckVec.dot(_dirTmp) > 0) && _dirTmp.len() < dirMinTv.len()) dirMinTv.copy(_dirTmp); } }; function nearZero(val) { return mathAbs$4(val) < 1e-10; } return _ctx; } //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/contain/text.js function ensureFontMeasureInfo(font) { if (!_fontMeasureInfoCache) _fontMeasureInfoCache = new LRU(100); font = font || "12px sans-serif"; var measureInfo = _fontMeasureInfoCache.get(font); if (!measureInfo) { measureInfo = { font, strWidthCache: new LRU(500), asciiWidthMap: null, asciiWidthMapTried: false, stWideCharWidth: platformApi.measureText("国", font).width, asciiCharWidth: platformApi.measureText("a", font).width }; _fontMeasureInfoCache.put(font, measureInfo); } return measureInfo; } var _fontMeasureInfoCache; function tryCreateASCIIWidthMap(font) { if (_getASCIIWidthMapLongCount >= GET_ASCII_WIDTH_LONG_COUNT_MAX) return; font = font || "12px sans-serif"; var asciiWidthMap = []; var start = +/* @__PURE__ */ new Date(); for (var code = 0; code <= 127; code++) asciiWidthMap[code] = platformApi.measureText(String.fromCharCode(code), font).width; var cost = +/* @__PURE__ */ new Date() - start; if (cost > 16) _getASCIIWidthMapLongCount = GET_ASCII_WIDTH_LONG_COUNT_MAX; else if (cost > 2) _getASCIIWidthMapLongCount++; return asciiWidthMap; } var _getASCIIWidthMapLongCount = 0; var GET_ASCII_WIDTH_LONG_COUNT_MAX = 5; function measureCharWidth(fontMeasureInfo, charCode) { if (!fontMeasureInfo.asciiWidthMapTried) { fontMeasureInfo.asciiWidthMap = tryCreateASCIIWidthMap(fontMeasureInfo.font); fontMeasureInfo.asciiWidthMapTried = true; } return 0 <= charCode && charCode <= 127 ? fontMeasureInfo.asciiWidthMap != null ? fontMeasureInfo.asciiWidthMap[charCode] : fontMeasureInfo.asciiCharWidth : fontMeasureInfo.stWideCharWidth; } function measureWidth(fontMeasureInfo, text) { var strWidthCache = fontMeasureInfo.strWidthCache; var width = strWidthCache.get(text); if (width == null) { width = platformApi.measureText(text, fontMeasureInfo.font).width; strWidthCache.put(text, width); } return width; } function innerGetBoundingRect(text, font, textAlign, textBaseline) { var width = measureWidth(ensureFontMeasureInfo(font), text); var height = getLineHeight(font); return new BoundingRect(adjustTextX(0, width, textAlign), adjustTextY(0, height, textBaseline), width, height); } function getBoundingRect(text, font, textAlign, textBaseline) { var textLines = ((text || "") + "").split("\n"); if (textLines.length === 1) return innerGetBoundingRect(textLines[0], font, textAlign, textBaseline); else { var uniondRect = new BoundingRect(0, 0, 0, 0); for (var i = 0; i < textLines.length; i++) { var rect = innerGetBoundingRect(textLines[i], font, textAlign, textBaseline); i === 0 ? uniondRect.copy(rect) : uniondRect.union(rect); } return uniondRect; } } function adjustTextX(x, width, textAlign, inverse) { if (textAlign === "right") !inverse ? x -= width : x += width; else if (textAlign === "center") !inverse ? x -= width / 2 : x += width / 2; return x; } function adjustTextY(y, height, verticalAlign, inverse) { if (verticalAlign === "middle") !inverse ? y -= height / 2 : y += height / 2; else if (verticalAlign === "bottom") !inverse ? y -= height : y += height; return y; } function getLineHeight(font) { return ensureFontMeasureInfo(font).stWideCharWidth; } function parsePercent$1(value, maxValue) { if (typeof value === "string") { if (value.lastIndexOf("%") >= 0) return parseFloat(value) / 100 * maxValue; return parseFloat(value); } return value; } function calculateTextPosition(out, opts, rect) { var textPosition = opts.position || "inside"; var distance = opts.distance != null ? opts.distance : 5; var height = rect.height; var width = rect.width; var halfHeight = height / 2; var x = rect.x; var y = rect.y; var textAlign = "left"; var textVerticalAlign = "top"; if (textPosition instanceof Array) { x += parsePercent$1(textPosition[0], rect.width); y += parsePercent$1(textPosition[1], rect.height); textAlign = null; textVerticalAlign = null; } else switch (textPosition) { case "left": x -= distance; y += halfHeight; textAlign = "right"; textVerticalAlign = "middle"; break; case "right": x += distance + width; y += halfHeight; textVerticalAlign = "middle"; break; case "top": x += width / 2; y -= distance; textAlign = "center"; textVerticalAlign = "bottom"; break; case "bottom": x += width / 2; y += height + distance; textAlign = "center"; break; case "inside": x += width / 2; y += halfHeight; textAlign = "center"; textVerticalAlign = "middle"; break; case "insideLeft": x += distance; y += halfHeight; textVerticalAlign = "middle"; break; case "insideRight": x += width - distance; y += halfHeight; textAlign = "right"; textVerticalAlign = "middle"; break; case "insideTop": x += width / 2; y += distance; textAlign = "center"; break; case "insideBottom": x += width / 2; y += height - distance; textAlign = "center"; textVerticalAlign = "bottom"; break; case "insideTopLeft": x += distance; y += distance; break; case "insideTopRight": x += width - distance; y += distance; textAlign = "right"; break; case "insideBottomLeft": x += distance; y += height - distance; textVerticalAlign = "bottom"; break; case "insideBottomRight": x += width - distance; y += height - distance; textAlign = "right"; textVerticalAlign = "bottom"; break; } out = out || {}; out.x = x; out.y = y; out.align = textAlign; out.verticalAlign = textVerticalAlign; return out; } //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/graphic/helper/parseText.js var STYLE_REG = /\{([a-zA-Z0-9_]+)\|([^}]*)\}/g; function truncateText2(out, text, containerWidth, font, ellipsis, options) { if (!containerWidth) { out.text = ""; out.isTruncated = false; return; } var textLines = (text + "").split("\n"); options = prepareTruncateOptions(containerWidth, font, ellipsis, options); var isTruncated = false; var truncateOut = {}; for (var i = 0, len = textLines.length; i < len; i++) { truncateSingleLine(truncateOut, textLines[i], options); textLines[i] = truncateOut.textLine; isTruncated = isTruncated || truncateOut.isTruncated; } out.text = textLines.join("\n"); out.isTruncated = isTruncated; } function prepareTruncateOptions(containerWidth, font, ellipsis, options) { options = options || {}; var preparedOpts = extend({}, options); ellipsis = retrieve2(ellipsis, "..."); preparedOpts.maxIterations = retrieve2(options.maxIterations, 2); var minChar = preparedOpts.minChar = retrieve2(options.minChar, 0); var fontMeasureInfo = preparedOpts.fontMeasureInfo = ensureFontMeasureInfo(font); var ascCharWidth = fontMeasureInfo.asciiCharWidth; preparedOpts.placeholder = retrieve2(options.placeholder, ""); var contentWidth = containerWidth = Math.max(0, containerWidth - 1); for (var i = 0; i < minChar && contentWidth >= ascCharWidth; i++) contentWidth -= ascCharWidth; var ellipsisWidth = measureWidth(fontMeasureInfo, ellipsis); if (ellipsisWidth > contentWidth) { ellipsis = ""; ellipsisWidth = 0; } contentWidth = containerWidth - ellipsisWidth; preparedOpts.ellipsis = ellipsis; preparedOpts.ellipsisWidth = ellipsisWidth; preparedOpts.contentWidth = contentWidth; preparedOpts.containerWidth = containerWidth; return preparedOpts; } function truncateSingleLine(out, textLine, options) { var containerWidth = options.containerWidth; var contentWidth = options.contentWidth; var fontMeasureInfo = options.fontMeasureInfo; if (!containerWidth) { out.textLine = ""; out.isTruncated = false; return; } var lineWidth = measureWidth(fontMeasureInfo, textLine); if (lineWidth <= containerWidth) { out.textLine = textLine; out.isTruncated = false; return; } for (var j = 0;; j++) { if (lineWidth <= contentWidth || j >= options.maxIterations) { textLine += options.ellipsis; break; } var subLength = j === 0 ? estimateLength(textLine, contentWidth, fontMeasureInfo) : lineWidth > 0 ? Math.floor(textLine.length * contentWidth / lineWidth) : 0; textLine = textLine.substr(0, subLength); lineWidth = measureWidth(fontMeasureInfo, textLine); } if (textLine === "") textLine = options.placeholder; out.textLine = textLine; out.isTruncated = true; } function estimateLength(text, contentWidth, fontMeasureInfo) { var width = 0; var i = 0; for (var len = text.length; i < len && width < contentWidth; i++) width += measureCharWidth(fontMeasureInfo, text.charCodeAt(i)); return i; } function parsePlainText(rawText, style, defaultOuterWidth, defaultOuterHeight) { var text = formatText(rawText); var overflow = style.overflow; var padding = style.padding; var paddingH = padding ? padding[1] + padding[3] : 0; var paddingV = padding ? padding[0] + padding[2] : 0; var font = style.font; var truncate = overflow === "truncate"; var calculatedLineHeight = getLineHeight(font); var lineHeight = retrieve2(style.lineHeight, calculatedLineHeight); var truncateLineOverflow = style.lineOverflow === "truncate"; var isTruncated = false; var width = style.width; if (width == null && defaultOuterWidth != null) width = defaultOuterWidth - paddingH; var height = style.height; if (height == null && defaultOuterHeight != null) height = defaultOuterHeight - paddingV; var lines; if (width != null && (overflow === "break" || overflow === "breakAll")) lines = text ? wrapText(text, style.font, width, overflow === "breakAll", 0).lines : []; else lines = text ? text.split("\n") : []; var contentHeight = lines.length * lineHeight; if (height == null) height = contentHeight; if (contentHeight > height && truncateLineOverflow) { var lineCount = Math.floor(height / lineHeight); isTruncated = isTruncated || lines.length > lineCount; lines = lines.slice(0, lineCount); contentHeight = lines.length * lineHeight; } if (text && truncate && width != null) { var options = prepareTruncateOptions(width, font, style.ellipsis, { minChar: style.truncateMinChar, placeholder: style.placeholder }); var singleOut = {}; for (var i = 0; i < lines.length; i++) { truncateSingleLine(singleOut, lines[i], options); lines[i] = singleOut.textLine; isTruncated = isTruncated || singleOut.isTruncated; } } var outerHeight = height; var contentWidth = 0; var fontMeasureInfo = ensureFontMeasureInfo(font); for (var i = 0; i < lines.length; i++) contentWidth = Math.max(measureWidth(fontMeasureInfo, lines[i]), contentWidth); if (width == null) width = contentWidth; var outerWidth = width; outerHeight += paddingV; outerWidth += paddingH; return { lines, height, outerWidth, outerHeight, lineHeight, calculatedLineHeight, contentWidth, contentHeight, width, isTruncated }; } var RichTextToken = function() { function RichTextToken() {} return RichTextToken; }(); var RichTextLine = function() { function RichTextLine(tokens) { this.tokens = []; if (tokens) this.tokens = tokens; } return RichTextLine; }(); var RichTextContentBlock = function() { function RichTextContentBlock() { this.width = 0; this.height = 0; this.contentWidth = 0; this.contentHeight = 0; this.outerWidth = 0; this.outerHeight = 0; this.lines = []; this.isTruncated = false; } return RichTextContentBlock; }(); function parseRichText(rawText, style, defaultOuterWidth, defaultOuterHeight, topTextAlign) { var contentBlock = new RichTextContentBlock(); var text = formatText(rawText); if (!text) return contentBlock; var stlPadding = style.padding; var stlPaddingH = stlPadding ? stlPadding[1] + stlPadding[3] : 0; var stlPaddingV = stlPadding ? stlPadding[0] + stlPadding[2] : 0; var topWidth = style.width; if (topWidth == null && defaultOuterWidth != null) topWidth = defaultOuterWidth - stlPaddingH; var topHeight = style.height; if (topHeight == null && defaultOuterHeight != null) topHeight = defaultOuterHeight - stlPaddingV; var overflow = style.overflow; var wrapInfo = (overflow === "break" || overflow === "breakAll") && topWidth != null ? { width: topWidth, accumWidth: 0, breakAll: overflow === "breakAll" } : null; var lastIndex = STYLE_REG.lastIndex = 0; var result; while ((result = STYLE_REG.exec(text)) != null) { var matchedIndex = result.index; if (matchedIndex > lastIndex) pushTokens(contentBlock, text.substring(lastIndex, matchedIndex), style, wrapInfo); pushTokens(contentBlock, result[2], style, wrapInfo, result[1]); lastIndex = STYLE_REG.lastIndex; } if (lastIndex < text.length) pushTokens(contentBlock, text.substring(lastIndex, text.length), style, wrapInfo); var pendingList = []; var calculatedHeight = 0; var calculatedWidth = 0; var truncate = overflow === "truncate"; var truncateLine = style.lineOverflow === "truncate"; var tmpTruncateOut = {}; function finishLine(line, lineWidth, lineHeight) { line.width = lineWidth; line.lineHeight = lineHeight; calculatedHeight += lineHeight; calculatedWidth = Math.max(calculatedWidth, lineWidth); } outer: for (var i = 0; i < contentBlock.lines.length; i++) { var line = contentBlock.lines[i]; var lineHeight = 0; var lineWidth = 0; for (var j = 0; j < line.tokens.length; j++) { var token = line.tokens[j]; var tokenStyle = token.styleName && style.rich[token.styleName] || {}; var textPadding = token.textPadding = tokenStyle.padding; var paddingH = textPadding ? textPadding[1] + textPadding[3] : 0; var font = token.font = tokenStyle.font || style.font; token.contentHeight = getLineHeight(font); var tokenHeight = retrieve2(tokenStyle.height, token.contentHeight); token.innerHeight = tokenHeight; textPadding && (tokenHeight += textPadding[0] + textPadding[2]); token.height = tokenHeight; token.lineHeight = retrieve3(tokenStyle.lineHeight, style.lineHeight, tokenHeight); token.align = tokenStyle && tokenStyle.align || topTextAlign; token.verticalAlign = tokenStyle && tokenStyle.verticalAlign || "middle"; if (truncateLine && topHeight != null && calculatedHeight + token.lineHeight > topHeight) { var originalLength = contentBlock.lines.length; if (j > 0) { line.tokens = line.tokens.slice(0, j); finishLine(line, lineWidth, lineHeight); contentBlock.lines = contentBlock.lines.slice(0, i + 1); } else contentBlock.lines = contentBlock.lines.slice(0, i); contentBlock.isTruncated = contentBlock.isTruncated || contentBlock.lines.length < originalLength; break outer; } var styleTokenWidth = tokenStyle.width; var tokenWidthNotSpecified = styleTokenWidth == null || styleTokenWidth === "auto"; if (typeof styleTokenWidth === "string" && styleTokenWidth.charAt(styleTokenWidth.length - 1) === "%") { token.percentWidth = styleTokenWidth; pendingList.push(token); token.contentWidth = measureWidth(ensureFontMeasureInfo(font), token.text); } else { if (tokenWidthNotSpecified) { var textBackgroundColor = tokenStyle.backgroundColor; var bgImg = textBackgroundColor && textBackgroundColor.image; if (bgImg) { bgImg = findExistImage(bgImg); if (isImageReady(bgImg)) token.width = Math.max(token.width, bgImg.width * tokenHeight / bgImg.height); } } var remainTruncWidth = truncate && topWidth != null ? topWidth - lineWidth : null; if (remainTruncWidth != null && remainTruncWidth < token.width) if (!tokenWidthNotSpecified || remainTruncWidth < paddingH) { token.text = ""; token.width = token.contentWidth = 0; } else { truncateText2(tmpTruncateOut, token.text, remainTruncWidth - paddingH, font, style.ellipsis, { minChar: style.truncateMinChar }); token.text = tmpTruncateOut.text; contentBlock.isTruncated = contentBlock.isTruncated || tmpTruncateOut.isTruncated; token.width = token.contentWidth = measureWidth(ensureFontMeasureInfo(font), token.text); } else token.contentWidth = measureWidth(ensureFontMeasureInfo(font), token.text); } token.width += paddingH; lineWidth += token.width; tokenStyle && (lineHeight = Math.max(lineHeight, token.lineHeight)); } finishLine(line, lineWidth, lineHeight); } contentBlock.outerWidth = contentBlock.width = retrieve2(topWidth, calculatedWidth); contentBlock.outerHeight = contentBlock.height = retrieve2(topHeight, calculatedHeight); contentBlock.contentHeight = calculatedHeight; contentBlock.contentWidth = calculatedWidth; contentBlock.outerWidth += stlPaddingH; contentBlock.outerHeight += stlPaddingV; for (var i = 0; i < pendingList.length; i++) { var token = pendingList[i]; var percentWidth = token.percentWidth; token.width = parseInt(percentWidth, 10) / 100 * contentBlock.width; } return contentBlock; } function pushTokens(block, str, style, wrapInfo, styleName) { var isEmptyStr = str === ""; var tokenStyle = styleName && style.rich[styleName] || {}; var lines = block.lines; var font = tokenStyle.font || style.font; var newLine = false; var strLines; var linesWidths; if (wrapInfo) { var tokenPadding = tokenStyle.padding; var tokenPaddingH = tokenPadding ? tokenPadding[1] + tokenPadding[3] : 0; if (tokenStyle.width != null && tokenStyle.width !== "auto") { var outerWidth_1 = parsePercent$1(tokenStyle.width, wrapInfo.width) + tokenPaddingH; if (lines.length > 0) { if (outerWidth_1 + wrapInfo.accumWidth > wrapInfo.width) { strLines = str.split("\n"); newLine = true; } } wrapInfo.accumWidth = outerWidth_1; } else { var res = wrapText(str, font, wrapInfo.width, wrapInfo.breakAll, wrapInfo.accumWidth); wrapInfo.accumWidth = res.accumWidth + tokenPaddingH; linesWidths = res.linesWidths; strLines = res.lines; } } if (!strLines) strLines = str.split("\n"); var fontMeasureInfo = ensureFontMeasureInfo(font); for (var i = 0; i < strLines.length; i++) { var text = strLines[i]; var token = new RichTextToken(); token.styleName = styleName; token.text = text; token.isLineHolder = !text && !isEmptyStr; if (typeof tokenStyle.width === "number") token.width = tokenStyle.width; else token.width = linesWidths ? linesWidths[i] : measureWidth(fontMeasureInfo, text); if (!i && !newLine) { var tokens = (lines[lines.length - 1] || (lines[0] = new RichTextLine())).tokens; var tokensLen = tokens.length; tokensLen === 1 && tokens[0].isLineHolder ? tokens[0] = token : (text || !tokensLen || isEmptyStr) && tokens.push(token); } else lines.push(new RichTextLine([token])); } } function isAlphabeticLetter(ch) { var code = ch.charCodeAt(0); return code >= 32 && code <= 591 || code >= 880 && code <= 4351 || code >= 4608 && code <= 5119 || code >= 7680 && code <= 8303; } var breakCharMap = reduce(",&?/;] ".split(""), function(obj, ch) { obj[ch] = true; return obj; }, {}); function isWordBreakChar(ch) { if (isAlphabeticLetter(ch)) { if (breakCharMap[ch]) return true; return false; } return true; } function wrapText(text, font, lineWidth, isBreakAll, lastAccumWidth) { var lines = []; var linesWidths = []; var line = ""; var currentWord = ""; var currentWordWidth = 0; var accumWidth = 0; var fontMeasureInfo = ensureFontMeasureInfo(font); for (var i = 0; i < text.length; i++) { var ch = text.charAt(i); if (ch === "\n") { if (currentWord) { line += currentWord; accumWidth += currentWordWidth; } lines.push(line); linesWidths.push(accumWidth); line = ""; currentWord = ""; currentWordWidth = 0; accumWidth = 0; continue; } var chWidth = measureCharWidth(fontMeasureInfo, ch.charCodeAt(0)); var inWord = isBreakAll ? false : !isWordBreakChar(ch); if (!lines.length ? lastAccumWidth + accumWidth + chWidth > lineWidth : accumWidth + chWidth > lineWidth) { if (!accumWidth) if (inWord) { lines.push(currentWord); linesWidths.push(currentWordWidth); currentWord = ch; currentWordWidth = chWidth; } else { lines.push(ch); linesWidths.push(chWidth); } else if (line || currentWord) if (inWord) { if (!line) { line = currentWord; currentWord = ""; currentWordWidth = 0; accumWidth = currentWordWidth; } lines.push(line); linesWidths.push(accumWidth - currentWordWidth); currentWord += ch; currentWordWidth += chWidth; line = ""; accumWidth = currentWordWidth; } else { if (currentWord) { line += currentWord; currentWord = ""; currentWordWidth = 0; } lines.push(line); linesWidths.push(accumWidth); line = ch; accumWidth = chWidth; } continue; } accumWidth += chWidth; if (inWord) { currentWord += ch; currentWordWidth += chWidth; } else { if (currentWord) { line += currentWord; currentWord = ""; currentWordWidth = 0; } line += ch; } } if (currentWord) line += currentWord; if (line) { lines.push(line); linesWidths.push(accumWidth); } if (lines.length === 1) accumWidth += lastAccumWidth; return { accumWidth, lines, linesWidths }; } function calcInnerTextOverflowArea(out, overflowRect, baseX, baseY, textAlign, textVerticalAlign) { out.baseX = baseX; out.baseY = baseY; out.outerWidth = out.outerHeight = null; if (!overflowRect) return; var textWidth = overflowRect.width * 2; var textHeight = overflowRect.height * 2; BoundingRect.set(tmpCITCTextRect, adjustTextX(baseX, textWidth, textAlign), adjustTextY(baseY, textHeight, textVerticalAlign), textWidth, textHeight); BoundingRect.intersect(overflowRect, tmpCITCTextRect, null, tmpCITCIntersectRectOpt); var outIntersectRect = tmpCITCIntersectRectOpt.outIntersectRect; out.outerWidth = outIntersectRect.width; out.outerHeight = outIntersectRect.height; out.baseX = adjustTextX(outIntersectRect.x, outIntersectRect.width, textAlign, true); out.baseY = adjustTextY(outIntersectRect.y, outIntersectRect.height, textVerticalAlign, true); } var tmpCITCTextRect = new BoundingRect(0, 0, 0, 0); var tmpCITCIntersectRectOpt = { outIntersectRect: {}, clamp: true }; function formatText(text) { return text != null ? text += "" : text = ""; } function tSpanCreateBoundingRect(style) { var text = formatText(style.text); var font = style.font; return tSpanCreateBoundingRect2(style, measureWidth(ensureFontMeasureInfo(font), text), getLineHeight(font), null); } function tSpanCreateBoundingRect2(style, contentWidth, contentHeight, forceLineWidth) { var rect = new BoundingRect(adjustTextX(style.x || 0, contentWidth, style.textAlign), adjustTextY(style.y || 0, contentHeight, style.textBaseline), contentWidth, contentHeight); var lineWidth = forceLineWidth != null ? forceLineWidth : tSpanHasStroke(style) ? style.lineWidth : 0; if (lineWidth > 0) { rect.x -= lineWidth / 2; rect.y -= lineWidth / 2; rect.width += lineWidth; rect.height += lineWidth; } return rect; } function tSpanHasStroke(style) { var stroke = style.stroke; return stroke != null && stroke !== "none" && style.lineWidth > 0; } //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/core/Transformable.js var mIdentity = identity; var EPSILON$2 = 5e-5; function isNotAroundZero$1(val) { return val > EPSILON$2 || val < -EPSILON$2; } var scaleTmp = []; var tmpTransform = []; var originTransform = create$1(); var abs = Math.abs; var Transformable = function() { function Transformable() {} Transformable.prototype.getLocalTransform = function(m) { return transformableGetLocalTransform(this, m); }; Transformable.prototype.setPosition = function(arr) { this.x = arr[0]; this.y = arr[1]; }; Transformable.prototype.setScale = function(arr) { this.scaleX = arr[0]; this.scaleY = arr[1]; }; Transformable.prototype.setSkew = function(arr) { this.skewX = arr[0]; this.skewY = arr[1]; }; Transformable.prototype.setOrigin = function(arr) { this.originX = arr[0]; this.originY = arr[1]; }; Transformable.prototype.needLocalTransform = function() { return isNotAroundZero$1(this.rotation) || isNotAroundZero$1(this.x) || isNotAroundZero$1(this.y) || isNotAroundZero$1(this.scaleX - 1) || isNotAroundZero$1(this.scaleY - 1) || isNotAroundZero$1(this.skewX) || isNotAroundZero$1(this.skewY); }; Transformable.prototype.updateTransform = function() { var parentTransform = this.parent && this.parent.transform; var needLocalTransform = this.needLocalTransform(); var m = this.transform; if (!(needLocalTransform || parentTransform)) { if (m) { mIdentity(m); this.invTransform = null; } return; } m = m || create$1(); if (needLocalTransform) this.getLocalTransform(m); else mIdentity(m); if (parentTransform) if (needLocalTransform) mul(m, parentTransform, m); else copy(m, parentTransform); this.transform = m; this._resolveGlobalScaleRatio(m); this.invTransform = this.invTransform || create$1(); invert(this.invTransform, m); }; Transformable.prototype._resolveGlobalScaleRatio = function(m) { var globalScaleRatio = this.globalScaleRatio; if (globalScaleRatio != null && globalScaleRatio !== 1) { this.getGlobalScale(scaleTmp); var relX = scaleTmp[0] < 0 ? -1 : 1; var relY = scaleTmp[1] < 0 ? -1 : 1; var sx = ((scaleTmp[0] - relX) * globalScaleRatio + relX) / scaleTmp[0] || 0; var sy = ((scaleTmp[1] - relY) * globalScaleRatio + relY) / scaleTmp[1] || 0; m[0] *= sx; m[1] *= sx; m[2] *= sy; m[3] *= sy; } }; Transformable.prototype.getComputedTransform = function() { var transformNode = this; var ancestors = []; while (transformNode) { ancestors.push(transformNode); transformNode = transformNode.parent; } while (transformNode = ancestors.pop()) transformNode.updateTransform(); return this.transform; }; Transformable.prototype.setLocalTransform = function(m) { if (!m) return; var sx = m[0] * m[0] + m[1] * m[1]; var sy = m[2] * m[2] + m[3] * m[3]; var rotation = Math.atan2(m[1], m[0]); var shearX = Math.PI / 2 + rotation - Math.atan2(m[3], m[2]); sy = Math.sqrt(sy) * Math.cos(shearX); sx = Math.sqrt(sx); this.skewX = shearX; this.skewY = 0; this.rotation = -rotation; this.x = +m[4]; this.y = +m[5]; this.scaleX = sx; this.scaleY = sy; this.originX = 0; this.originY = 0; }; Transformable.prototype.decomposeTransform = function() { if (!this.transform) return; var parent = this.parent; var m = this.transform; if (parent && parent.transform) { parent.invTransform = parent.invTransform || create$1(); mul(tmpTransform, parent.invTransform, m); m = tmpTransform; } var ox = this.originX; var oy = this.originY; if (ox || oy) { originTransform[4] = ox; originTransform[5] = oy; mul(tmpTransform, m, originTransform); tmpTransform[4] -= ox; tmpTransform[5] -= oy; m = tmpTransform; } this.setLocalTransform(m); }; Transformable.prototype.getGlobalScale = function(out) { var m = this.transform; out = out || []; if (!m) { out[0] = 1; out[1] = 1; return out; } out[0] = Math.sqrt(m[0] * m[0] + m[1] * m[1]); out[1] = Math.sqrt(m[2] * m[2] + m[3] * m[3]); if (m[0] < 0) out[0] = -out[0]; if (m[3] < 0) out[1] = -out[1]; return out; }; Transformable.prototype.transformCoordToLocal = function(x, y) { var v2 = [x, y]; var invTransform = this.invTransform; if (invTransform) applyTransform$1(v2, v2, invTransform); return v2; }; Transformable.prototype.transformCoordToGlobal = function(x, y) { var v2 = [x, y]; var transform = this.transform; if (transform) applyTransform$1(v2, v2, transform); return v2; }; Transformable.prototype.getLineScale = function() { var m = this.transform; return m && abs(m[0] - 1) > 1e-10 && abs(m[3] - 1) > 1e-10 ? Math.sqrt(abs(m[0] * m[3] - m[2] * m[1])) : 1; }; Transformable.prototype.copyTransform = function(source) { copyTransform(this, source); }; Transformable.getLocalTransform = function(target, m) { m = m || []; var ox = target.originX || 0; var oy = target.originY || 0; var sx = target.scaleX; var sy = target.scaleY; var ax = target.anchorX; var ay = target.anchorY; var rotation = target.rotation || 0; var x = target.x; var y = target.y; var skewX = target.skewX ? Math.tan(target.skewX) : 0; var skewY = target.skewY ? Math.tan(-target.skewY) : 0; if (ox || oy || ax || ay) { var dx = ox + ax; var dy = oy + ay; m[4] = -dx * sx - skewX * dy * sy; m[5] = -dy * sy - skewY * dx * sx; } else m[4] = m[5] = 0; m[0] = sx; m[3] = sy; m[1] = skewY * sx; m[2] = skewX * sy; rotation && rotate(m, m, rotation); m[4] += ox + x; m[5] += oy + y; return m; }; Transformable.initDefaultProps = (function() { var proto = Transformable.prototype; proto.scaleX = proto.scaleY = proto.globalScaleRatio = 1; proto.x = proto.y = proto.originX = proto.originY = proto.skewX = proto.skewY = proto.rotation = proto.anchorX = proto.anchorY = 0; })(); return Transformable; }(); var transformableGetLocalTransform = Transformable.getLocalTransform; var TRANSFORMABLE_PROPS = [ "x", "y", "originX", "originY", "anchorX", "anchorY", "rotation", "scaleX", "scaleY", "skewX", "skewY" ]; function copyTransform(target, source) { return assignProps(target, source, TRANSFORMABLE_PROPS); } //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/animation/easing.js var easingFuncs = { linear: function(k) { return k; }, quadraticIn: function(k) { return k * k; }, quadraticOut: function(k) { return k * (2 - k); }, quadraticInOut: function(k) { if ((k *= 2) < 1) return .5 * k * k; return -.5 * (--k * (k - 2) - 1); }, cubicIn: function(k) { return k * k * k; }, cubicOut: function(k) { return --k * k * k + 1; }, cubicInOut: function(k) { if ((k *= 2) < 1) return .5 * k * k * k; return .5 * ((k -= 2) * k * k + 2); }, quarticIn: function(k) { return k * k * k * k; }, quarticOut: function(k) { return 1 - --k * k * k * k; }, quarticInOut: function(k) { if ((k *= 2) < 1) return .5 * k * k * k * k; return -.5 * ((k -= 2) * k * k * k - 2); }, quinticIn: function(k) { return k * k * k * k * k; }, quinticOut: function(k) { return --k * k * k * k * k + 1; }, quinticInOut: function(k) { if ((k *= 2) < 1) return .5 * k * k * k * k * k; return .5 * ((k -= 2) * k * k * k * k + 2); }, sinusoidalIn: function(k) { return 1 - Math.cos(k * Math.PI / 2); }, sinusoidalOut: function(k) { return Math.sin(k * Math.PI / 2); }, sinusoidalInOut: function(k) { return .5 * (1 - Math.cos(Math.PI * k)); }, exponentialIn: function(k) { return k === 0 ? 0 : Math.pow(1024, k - 1); }, exponentialOut: function(k) { return k === 1 ? 1 : 1 - Math.pow(2, -10 * k); }, exponentialInOut: function(k) { if (k === 0) return 0; if (k === 1) return 1; if ((k *= 2) < 1) return .5 * Math.pow(1024, k - 1); return .5 * (-Math.pow(2, -10 * (k - 1)) + 2); }, circularIn: function(k) { return 1 - Math.sqrt(1 - k * k); }, circularOut: function(k) { return Math.sqrt(1 - --k * k); }, circularInOut: function(k) { if ((k *= 2) < 1) return -.5 * (Math.sqrt(1 - k * k) - 1); return .5 * (Math.sqrt(1 - (k -= 2) * k) + 1); }, elasticIn: function(k) { var s; var a = .1; var p = .4; if (k === 0) return 0; if (k === 1) return 1; if (!a || a < 1) { a = 1; s = p / 4; } else s = p * Math.asin(1 / a) / (2 * Math.PI); return -(a * Math.pow(2, 10 * (k -= 1)) * Math.sin((k - s) * (2 * Math.PI) / p)); }, elasticOut: function(k) { var s; var a = .1; var p = .4; if (k === 0) return 0; if (k === 1) return 1; if (!a || a < 1) { a = 1; s = p / 4; } else s = p * Math.asin(1 / a) / (2 * Math.PI); return a * Math.pow(2, -10 * k) * Math.sin((k - s) * (2 * Math.PI) / p) + 1; }, elasticInOut: function(k) { var s; var a = .1; var p = .4; if (k === 0) return 0; if (k === 1) return 1; if (!a || a < 1) { a = 1; s = p / 4; } else s = p * Math.asin(1 / a) / (2 * Math.PI); if ((k *= 2) < 1) return -.5 * (a * Math.pow(2, 10 * (k -= 1)) * Math.sin((k - s) * (2 * Math.PI) / p)); return a * Math.pow(2, -10 * (k -= 1)) * Math.sin((k - s) * (2 * Math.PI) / p) * .5 + 1; }, backIn: function(k) { var s = 1.70158; return k * k * ((s + 1) * k - s); }, backOut: function(k) { var s = 1.70158; return --k * k * ((s + 1) * k + s) + 1; }, backInOut: function(k) { var s = 1.70158 * 1.525; if ((k *= 2) < 1) return .5 * (k * k * ((s + 1) * k - s)); return .5 * ((k -= 2) * k * ((s + 1) * k + s) + 2); }, bounceIn: function(k) { return 1 - easingFuncs.bounceOut(1 - k); }, bounceOut: function(k) { if (k < 1 / 2.75) return 7.5625 * k * k; else if (k < 2 / 2.75) return 7.5625 * (k -= 1.5 / 2.75) * k + .75; else if (k < 2.5 / 2.75) return 7.5625 * (k -= 2.25 / 2.75) * k + .9375; else return 7.5625 * (k -= 2.625 / 2.75) * k + .984375; }, bounceInOut: function(k) { if (k < .5) return easingFuncs.bounceIn(k * 2) * .5; return easingFuncs.bounceOut(k * 2 - 1) * .5 + .5; } }; //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/core/curve.js var mathPow$1 = Math.pow; var mathSqrt$3 = Math.sqrt; var EPSILON$1 = 1e-8; var EPSILON_NUMERIC = 1e-4; var THREE_SQRT = mathSqrt$3(3); var ONE_THIRD = 1 / 3; var _v0 = create(); var _v1 = create(); var _v2 = create(); function isAroundZero(val) { return val > -EPSILON$1 && val < EPSILON$1; } function isNotAroundZero(val) { return val > EPSILON$1 || val < -EPSILON$1; } function cubicAt(p0, p1, p2, p3, t) { var onet = 1 - t; return onet * onet * (onet * p0 + 3 * t * p1) + t * t * (t * p3 + 3 * onet * p2); } function cubicDerivativeAt(p0, p1, p2, p3, t) { var onet = 1 - t; return 3 * (((p1 - p0) * onet + 2 * (p2 - p1) * t) * onet + (p3 - p2) * t * t); } function cubicRootAt(p0, p1, p2, p3, val, roots) { var a = p3 + 3 * (p1 - p2) - p0; var b = 3 * (p2 - p1 * 2 + p0); var c = 3 * (p1 - p0); var d = p0 - val; var A = b * b - 3 * a * c; var B = b * c - 9 * a * d; var C = c * c - 3 * b * d; var n = 0; if (isAroundZero(A) && isAroundZero(B)) if (isAroundZero(b)) roots[0] = 0; else { var t1 = -c / b; if (t1 >= 0 && t1 <= 1) roots[n++] = t1; } else { var disc = B * B - 4 * A * C; if (isAroundZero(disc)) { var K = B / A; var t1 = -b / a + K; var t2 = -K / 2; if (t1 >= 0 && t1 <= 1) roots[n++] = t1; if (t2 >= 0 && t2 <= 1) roots[n++] = t2; } else if (disc > 0) { var discSqrt = mathSqrt$3(disc); var Y1 = A * b + 1.5 * a * (-B + discSqrt); var Y2 = A * b + 1.5 * a * (-B - discSqrt); if (Y1 < 0) Y1 = -mathPow$1(-Y1, ONE_THIRD); else Y1 = mathPow$1(Y1, ONE_THIRD); if (Y2 < 0) Y2 = -mathPow$1(-Y2, ONE_THIRD); else Y2 = mathPow$1(Y2, ONE_THIRD); var t1 = (-b - (Y1 + Y2)) / (3 * a); if (t1 >= 0 && t1 <= 1) roots[n++] = t1; } else { var T = (2 * A * b - 3 * a * B) / (2 * mathSqrt$3(A * A * A)); var theta = Math.acos(T) / 3; var ASqrt = mathSqrt$3(A); var tmp = Math.cos(theta); var t1 = (-b - 2 * ASqrt * tmp) / (3 * a); var t2 = (-b + ASqrt * (tmp + THREE_SQRT * Math.sin(theta))) / (3 * a); var t3 = (-b + ASqrt * (tmp - THREE_SQRT * Math.sin(theta))) / (3 * a); if (t1 >= 0 && t1 <= 1) roots[n++] = t1; if (t2 >= 0 && t2 <= 1) roots[n++] = t2; if (t3 >= 0 && t3 <= 1) roots[n++] = t3; } } return n; } function cubicExtrema(p0, p1, p2, p3, extrema) { var b = 6 * p2 - 12 * p1 + 6 * p0; var a = 9 * p1 + 3 * p3 - 3 * p0 - 9 * p2; var c = 3 * p1 - 3 * p0; var n = 0; if (isAroundZero(a)) { if (isNotAroundZero(b)) { var t1 = -c / b; if (t1 >= 0 && t1 <= 1) extrema[n++] = t1; } } else { var disc = b * b - 4 * a * c; if (isAroundZero(disc)) extrema[0] = -b / (2 * a); else if (disc > 0) { var discSqrt = mathSqrt$3(disc); var t1 = (-b + discSqrt) / (2 * a); var t2 = (-b - discSqrt) / (2 * a); if (t1 >= 0 && t1 <= 1) extrema[n++] = t1; if (t2 >= 0 && t2 <= 1) extrema[n++] = t2; } } return n; } function cubicSubdivide(p0, p1, p2, p3, t, out) { var p01 = (p1 - p0) * t + p0; var p12 = (p2 - p1) * t + p1; var p23 = (p3 - p2) * t + p2; var p012 = (p12 - p01) * t + p01; var p123 = (p23 - p12) * t + p12; var p0123 = (p123 - p012) * t + p012; out[0] = p0; out[1] = p01; out[2] = p012; out[3] = p0123; out[4] = p0123; out[5] = p123; out[6] = p23; out[7] = p3; } function cubicProjectPoint(x0, y0, x1, y1, x2, y2, x3, y3, x, y, out) { var t; var interval = .005; var d = Infinity; var prev; var next; var d1; var d2; _v0[0] = x; _v0[1] = y; for (var _t = 0; _t < 1; _t += .05) { _v1[0] = cubicAt(x0, x1, x2, x3, _t); _v1[1] = cubicAt(y0, y1, y2, y3, _t); d1 = distSquare(_v0, _v1); if (d1 < d) { t = _t; d = d1; } } d = Infinity; for (var i = 0; i < 32; i++) { if (interval < EPSILON_NUMERIC) break; prev = t - interval; next = t + interval; _v1[0] = cubicAt(x0, x1, x2, x3, prev); _v1[1] = cubicAt(y0, y1, y2, y3, prev); d1 = distSquare(_v1, _v0); if (prev >= 0 && d1 < d) { t = prev; d = d1; } else { _v2[0] = cubicAt(x0, x1, x2, x3, next); _v2[1] = cubicAt(y0, y1, y2, y3, next); d2 = distSquare(_v2, _v0); if (next <= 1 && d2 < d) { t = next; d = d2; } else interval *= .5; } } if (out) { out[0] = cubicAt(x0, x1, x2, x3, t); out[1] = cubicAt(y0, y1, y2, y3, t); } return mathSqrt$3(d); } function cubicLength(x0, y0, x1, y1, x2, y2, x3, y3, iteration) { var px = x0; var py = y0; var d = 0; var step = 1 / iteration; for (var i = 1; i <= iteration; i++) { var t = i * step; var x = cubicAt(x0, x1, x2, x3, t); var y = cubicAt(y0, y1, y2, y3, t); var dx = x - px; var dy = y - py; d += Math.sqrt(dx * dx + dy * dy); px = x; py = y; } return d; } function quadraticAt(p0, p1, p2, t) { var onet = 1 - t; return onet * (onet * p0 + 2 * t * p1) + t * t * p2; } function quadraticDerivativeAt(p0, p1, p2, t) { return 2 * ((1 - t) * (p1 - p0) + t * (p2 - p1)); } function quadraticRootAt(p0, p1, p2, val, roots) { var a = p0 - 2 * p1 + p2; var b = 2 * (p1 - p0); var c = p0 - val; var n = 0; if (isAroundZero(a)) { if (isNotAroundZero(b)) { var t1 = -c / b; if (t1 >= 0 && t1 <= 1) roots[n++] = t1; } } else { var disc = b * b - 4 * a * c; if (isAroundZero(disc)) { var t1 = -b / (2 * a); if (t1 >= 0 && t1 <= 1) roots[n++] = t1; } else if (disc > 0) { var discSqrt = mathSqrt$3(disc); var t1 = (-b + discSqrt) / (2 * a); var t2 = (-b - discSqrt) / (2 * a); if (t1 >= 0 && t1 <= 1) roots[n++] = t1; if (t2 >= 0 && t2 <= 1) roots[n++] = t2; } } return n; } function quadraticExtremum(p0, p1, p2) { var divider = p0 + p2 - 2 * p1; if (divider === 0) return .5; else return (p0 - p1) / divider; } function quadraticSubdivide(p0, p1, p2, t, out) { var p01 = (p1 - p0) * t + p0; var p12 = (p2 - p1) * t + p1; var p012 = (p12 - p01) * t + p01; out[0] = p0; out[1] = p01; out[2] = p012; out[3] = p012; out[4] = p12; out[5] = p2; } function quadraticProjectPoint(x0, y0, x1, y1, x2, y2, x, y, out) { var t; var interval = .005; var d = Infinity; _v0[0] = x; _v0[1] = y; for (var _t = 0; _t < 1; _t += .05) { _v1[0] = quadraticAt(x0, x1, x2, _t); _v1[1] = quadraticAt(y0, y1, y2, _t); var d1 = distSquare(_v0, _v1); if (d1 < d) { t = _t; d = d1; } } d = Infinity; for (var i = 0; i < 32; i++) { if (interval < EPSILON_NUMERIC) break; var prev = t - interval; var next = t + interval; _v1[0] = quadraticAt(x0, x1, x2, prev); _v1[1] = quadraticAt(y0, y1, y2, prev); var d1 = distSquare(_v1, _v0); if (prev >= 0 && d1 < d) { t = prev; d = d1; } else { _v2[0] = quadraticAt(x0, x1, x2, next); _v2[1] = quadraticAt(y0, y1, y2, next); var d2 = distSquare(_v2, _v0); if (next <= 1 && d2 < d) { t = next; d = d2; } else interval *= .5; } } if (out) { out[0] = quadraticAt(x0, x1, x2, t); out[1] = quadraticAt(y0, y1, y2, t); } return mathSqrt$3(d); } function quadraticLength(x0, y0, x1, y1, x2, y2, iteration) { var px = x0; var py = y0; var d = 0; var step = 1 / iteration; for (var i = 1; i <= iteration; i++) { var t = i * step; var x = quadraticAt(x0, x1, x2, t); var y = quadraticAt(y0, y1, y2, t); var dx = x - px; var dy = y - py; d += Math.sqrt(dx * dx + dy * dy); px = x; py = y; } return d; } //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/animation/cubicEasing.js var regexp = /cubic-bezier\(([0-9,\.e ]+)\)/; function createCubicEasingFunc(cubicEasingStr) { var cubic = cubicEasingStr && regexp.exec(cubicEasingStr); if (cubic) { var points = cubic[1].split(","); var a_1 = +trim(points[0]); var b_1 = +trim(points[1]); var c_1 = +trim(points[2]); var d_1 = +trim(points[3]); if (isNaN(a_1 + b_1 + c_1 + d_1)) return; var roots_1 = []; return function(p) { return p <= 0 ? 0 : p >= 1 ? 1 : cubicRootAt(0, a_1, c_1, 1, p, roots_1) && cubicAt(0, b_1, d_1, 1, roots_1[0]); }; } } //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/animation/Clip.js var Clip = function() { function Clip(opts) { this._inited = false; this._startTime = 0; this._pausedTime = 0; this._paused = false; this._life = opts.life || 1e3; this._delay = opts.delay || 0; this.loop = opts.loop || false; this.onframe = opts.onframe || noop; this.ondestroy = opts.ondestroy || noop; this.onrestart = opts.onrestart || noop; opts.easing && this.setEasing(opts.easing); } Clip.prototype.step = function(globalTime, deltaTime) { if (!this._inited) { this._startTime = globalTime + this._delay; this._inited = true; } if (this._paused) { this._pausedTime += deltaTime; return; } var life = this._life; var elapsedTime = globalTime - this._startTime - this._pausedTime; var percent = elapsedTime / life; if (percent < 0) percent = 0; percent = Math.min(percent, 1); var easingFunc = this.easingFunc; var schedule = easingFunc ? easingFunc(percent) : percent; this.onframe(schedule); if (percent === 1) if (this.loop) { var remainder = elapsedTime % life; this._startTime = globalTime - remainder; this._pausedTime = 0; this.onrestart(); } else return true; return false; }; Clip.prototype.pause = function() { this._paused = true; }; Clip.prototype.resume = function() { this._paused = false; }; Clip.prototype.setEasing = function(easing) { this.easing = easing; this.easingFunc = isFunction(easing) ? easing : easingFuncs[easing] || createCubicEasingFunc(easing); }; return Clip; }(); //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/tool/color.js var kCSSColorTable = { "transparent": [ 0, 0, 0, 0 ], "aliceblue": [ 240, 248, 255, 1 ], "antiquewhite": [ 250, 235, 215, 1 ], "aqua": [ 0, 255, 255, 1 ], "aquamarine": [ 127, 255, 212, 1 ], "azure": [ 240, 255, 255, 1 ], "beige": [ 245, 245, 220, 1 ], "bisque": [ 255, 228, 196, 1 ], "black": [ 0, 0, 0, 1 ], "blanchedalmond": [ 255, 235, 205, 1 ], "blue": [ 0, 0, 255, 1 ], "blueviolet": [ 138, 43, 226, 1 ], "brown": [ 165, 42, 42, 1 ], "burlywood": [ 222, 184, 135, 1 ], "cadetblue": [ 95, 158, 160, 1 ], "chartreuse": [ 127, 255, 0, 1 ], "chocolate": [ 210, 105, 30, 1 ], "coral": [ 255, 127, 80, 1 ], "cornflowerblue": [ 100, 149, 237, 1 ], "cornsilk": [ 255, 248, 220, 1 ], "crimson": [ 220, 20, 60, 1 ], "cyan": [ 0, 255, 255, 1 ], "darkblue": [ 0, 0, 139, 1 ], "darkcyan": [ 0, 139, 139, 1 ], "darkgoldenrod": [ 184, 134, 11, 1 ], "darkgray": [ 169, 169, 169, 1 ], "darkgreen": [ 0, 100, 0, 1 ], "darkgrey": [ 169, 169, 169, 1 ], "darkkhaki": [ 189, 183, 107, 1 ], "darkmagenta": [ 139, 0, 139, 1 ], "darkolivegreen": [ 85, 107, 47, 1 ], "darkorange": [ 255, 140, 0, 1 ], "darkorchid": [ 153, 50, 204, 1 ], "darkred": [ 139, 0, 0, 1 ], "darksalmon": [ 233, 150, 122, 1 ], "darkseagreen": [ 143, 188, 143, 1 ], "darkslateblue": [ 72, 61, 139, 1 ], "darkslategray": [ 47, 79, 79, 1 ], "darkslategrey": [ 47, 79, 79, 1 ], "darkturquoise": [ 0, 206, 209, 1 ], "darkviolet": [ 148, 0, 211, 1 ], "deeppink": [ 255, 20, 147, 1 ], "deepskyblue": [ 0, 191, 255, 1 ], "dimgray": [ 105, 105, 105, 1 ], "dimgrey": [ 105, 105, 105, 1 ], "dodgerblue": [ 30, 144, 255, 1 ], "firebrick": [ 178, 34, 34, 1 ], "floralwhite": [ 255, 250, 240, 1 ], "forestgreen": [ 34, 139, 34, 1 ], "fuchsia": [ 255, 0, 255, 1 ], "gainsboro": [ 220, 220, 220, 1 ], "ghostwhite": [ 248, 248, 255, 1 ], "gold": [ 255, 215, 0, 1 ], "goldenrod": [ 218, 165, 32, 1 ], "gray": [ 128, 128, 128, 1 ], "green": [ 0, 128, 0, 1 ], "greenyellow": [ 173, 255, 47, 1 ], "grey": [ 128, 128, 128, 1 ], "honeydew": [ 240, 255, 240, 1 ], "hotpink": [ 255, 105, 180, 1 ], "indianred": [ 205, 92, 92, 1 ], "indigo": [ 75, 0, 130, 1 ], "ivory": [ 255, 255, 240, 1 ], "khaki": [ 240, 230, 140, 1 ], "lavender": [ 230, 230, 250, 1 ], "lavenderblush": [ 255, 240, 245, 1 ], "lawngreen": [ 124, 252, 0, 1 ], "lemonchiffon": [ 255, 250, 205, 1 ], "lightblue": [ 173, 216, 230, 1 ], "lightcoral": [ 240, 128, 128, 1 ], "lightcyan": [ 224, 255, 255, 1 ], "lightgoldenrodyellow": [ 250, 250, 210, 1 ], "lightgray": [ 211, 211, 211, 1 ], "lightgreen": [ 144, 238, 144, 1 ], "lightgrey": [ 211, 211, 211, 1 ], "lightpink": [ 255, 182, 193, 1 ], "lightsalmon": [ 255, 160, 122, 1 ], "lightseagreen": [ 32, 178, 170, 1 ], "lightskyblue": [ 135, 206, 250, 1 ], "lightslategray": [ 119, 136, 153, 1 ], "lightslategrey": [ 119, 136, 153, 1 ], "lightsteelblue": [ 176, 196, 222, 1 ], "lightyellow": [ 255, 255, 224, 1 ], "lime": [ 0, 255, 0, 1 ], "limegreen": [ 50, 205, 50, 1 ], "linen": [ 250, 240, 230, 1 ], "magenta": [ 255, 0, 255, 1 ], "maroon": [ 128, 0, 0, 1 ], "mediumaquamarine": [ 102, 205, 170, 1 ], "mediumblue": [ 0, 0, 205, 1 ], "mediumorchid": [ 186, 85, 211, 1 ], "mediumpurple": [ 147, 112, 219, 1 ], "mediumseagreen": [ 60, 179, 113, 1 ], "mediumslateblue": [ 123, 104, 238, 1 ], "mediumspringgreen": [ 0, 250, 154, 1 ], "mediumturquoise": [ 72, 209, 204, 1 ], "mediumvioletred": [ 199, 21, 133, 1 ], "midnightblue": [ 25, 25, 112, 1 ], "mintcream": [ 245, 255, 250, 1 ], "mistyrose": [ 255, 228, 225, 1 ], "moccasin": [ 255, 228, 181, 1 ], "navajowhite": [ 255, 222, 173, 1 ], "navy": [ 0, 0, 128, 1 ], "oldlace": [ 253, 245, 230, 1 ], "olive": [ 128, 128, 0, 1 ], "olivedrab": [ 107, 142, 35, 1 ], "orange": [ 255, 165, 0, 1 ], "orangered": [ 255, 69, 0, 1 ], "orchid": [ 218, 112, 214, 1 ], "palegoldenrod": [ 238, 232, 170, 1 ], "palegreen": [ 152, 251, 152, 1 ], "paleturquoise": [ 175, 238, 238, 1 ], "palevioletred": [ 219, 112, 147, 1 ], "papayawhip": [ 255, 239, 213, 1 ], "peachpuff": [ 255, 218, 185, 1 ], "peru": [ 205, 133, 63, 1 ], "pink": [ 255, 192, 203, 1 ], "plum": [ 221, 160, 221, 1 ], "powderblue": [ 176, 224, 230, 1 ], "purple": [ 128, 0, 128, 1 ], "red": [ 255, 0, 0, 1 ], "rosybrown": [ 188, 143, 143, 1 ], "royalblue": [ 65, 105, 225, 1 ], "saddlebrown": [ 139, 69, 19, 1 ], "salmon": [ 250, 128, 114, 1 ], "sandybrown": [ 244, 164, 96, 1 ], "seagreen": [ 46, 139, 87, 1 ], "seashell": [ 255, 245, 238, 1 ], "sienna": [ 160, 82, 45, 1 ], "silver": [ 192, 192, 192, 1 ], "skyblue": [ 135, 206, 235, 1 ], "slateblue": [ 106, 90, 205, 1 ], "slategray": [ 112, 128, 144, 1 ], "slategrey": [ 112, 128, 144, 1 ], "snow": [ 255, 250, 250, 1 ], "springgreen": [ 0, 255, 127, 1 ], "steelblue": [ 70, 130, 180, 1 ], "tan": [ 210, 180, 140, 1 ], "teal": [ 0, 128, 128, 1 ], "thistle": [ 216, 191, 216, 1 ], "tomato": [ 255, 99, 71, 1 ], "turquoise": [ 64, 224, 208, 1 ], "violet": [ 238, 130, 238, 1 ], "wheat": [ 245, 222, 179, 1 ], "white": [ 255, 255, 255, 1 ], "whitesmoke": [ 245, 245, 245, 1 ], "yellow": [ 255, 255, 0, 1 ], "yellowgreen": [ 154, 205, 50, 1 ] }; function clampCssByte(i) { i = Math.round(i); return i < 0 ? 0 : i > 255 ? 255 : i; } function clampCssAngle(i) { i = Math.round(i); return i < 0 ? 0 : i > 360 ? 360 : i; } function clampCssFloat(f) { return f < 0 ? 0 : f > 1 ? 1 : f; } function parseCssInt(val) { var str = val; if (str.length && str.charAt(str.length - 1) === "%") return clampCssByte(parseFloat(str) / 100 * 255); return clampCssByte(parseInt(str, 10)); } function parseCssFloat(val) { var str = val; if (str.length && str.charAt(str.length - 1) === "%") return clampCssFloat(parseFloat(str) / 100); return clampCssFloat(parseFloat(str)); } function cssHueToRgb(m1, m2, h) { if (h < 0) h += 1; else if (h > 1) h -= 1; if (h * 6 < 1) return m1 + (m2 - m1) * h * 6; if (h * 2 < 1) return m2; if (h * 3 < 2) return m1 + (m2 - m1) * (2 / 3 - h) * 6; return m1; } function setRgba(out, r, g, b, a) { out[0] = r; out[1] = g; out[2] = b; out[3] = a; return out; } function copyRgba(out, a) { out[0] = a[0]; out[1] = a[1]; out[2] = a[2]; out[3] = a[3]; return out; } var colorCache = new LRU(20); var lastRemovedArr = null; function putToCache(colorStr, rgbaArr) { if (lastRemovedArr) copyRgba(lastRemovedArr, rgbaArr); lastRemovedArr = colorCache.put(colorStr, lastRemovedArr || rgbaArr.slice()); } function parse(colorStr, rgbaArr) { if (!colorStr) return; rgbaArr = rgbaArr || []; var cached = colorCache.get(colorStr); if (cached) return copyRgba(rgbaArr, cached); colorStr = colorStr + ""; var str = colorStr.replace(/ /g, "").toLowerCase(); if (str in kCSSColorTable) { copyRgba(rgbaArr, kCSSColorTable[str]); putToCache(colorStr, rgbaArr); return rgbaArr; } var strLen = str.length; if (str.charAt(0) === "#") { if (strLen === 4 || strLen === 5) { var iv = parseInt(str.slice(1, 4), 16); if (!(iv >= 0 && iv <= 4095)) { setRgba(rgbaArr, 0, 0, 0, 1); return; } setRgba(rgbaArr, (iv & 3840) >> 4 | (iv & 3840) >> 8, iv & 240 | (iv & 240) >> 4, iv & 15 | (iv & 15) << 4, strLen === 5 ? parseInt(str.slice(4), 16) / 15 : 1); putToCache(colorStr, rgbaArr); return rgbaArr; } else if (strLen === 7 || strLen === 9) { var iv = parseInt(str.slice(1, 7), 16); if (!(iv >= 0 && iv <= 16777215)) { setRgba(rgbaArr, 0, 0, 0, 1); return; } setRgba(rgbaArr, (iv & 16711680) >> 16, (iv & 65280) >> 8, iv & 255, strLen === 9 ? parseInt(str.slice(7), 16) / 255 : 1); putToCache(colorStr, rgbaArr); return rgbaArr; } return; } var op = str.indexOf("("); var ep = str.indexOf(")"); if (op !== -1 && ep + 1 === strLen) { var fname = str.substr(0, op); var params = str.substr(op + 1, ep - (op + 1)).split(","); var alpha = 1; switch (fname) { case "rgba": if (params.length !== 4) return params.length === 3 ? setRgba(rgbaArr, +params[0], +params[1], +params[2], 1) : setRgba(rgbaArr, 0, 0, 0, 1); alpha = parseCssFloat(params.pop()); case "rgb": if (params.length >= 3) { setRgba(rgbaArr, parseCssInt(params[0]), parseCssInt(params[1]), parseCssInt(params[2]), params.length === 3 ? alpha : parseCssFloat(params[3])); putToCache(colorStr, rgbaArr); return rgbaArr; } else { setRgba(rgbaArr, 0, 0, 0, 1); return; } case "hsla": if (params.length !== 4) { setRgba(rgbaArr, 0, 0, 0, 1); return; } params[3] = parseCssFloat(params[3]); hsla2rgba(params, rgbaArr); putToCache(colorStr, rgbaArr); return rgbaArr; case "hsl": if (params.length !== 3) { setRgba(rgbaArr, 0, 0, 0, 1); return; } hsla2rgba(params, rgbaArr); putToCache(colorStr, rgbaArr); return rgbaArr; default: return; } } setRgba(rgbaArr, 0, 0, 0, 1); } function hsla2rgba(hsla, rgba) { var h = (parseFloat(hsla[0]) % 360 + 360) % 360 / 360; var s = parseCssFloat(hsla[1]); var l = parseCssFloat(hsla[2]); var m2 = l <= .5 ? l * (s + 1) : l + s - l * s; var m1 = l * 2 - m2; rgba = rgba || []; setRgba(rgba, clampCssByte(cssHueToRgb(m1, m2, h + 1 / 3) * 255), clampCssByte(cssHueToRgb(m1, m2, h) * 255), clampCssByte(cssHueToRgb(m1, m2, h - 1 / 3) * 255), 1); if (hsla.length === 4) rgba[3] = hsla[3]; return rgba; } function rgba2hsla(rgba) { if (!rgba) return; var R = rgba[0] / 255; var G = rgba[1] / 255; var B = rgba[2] / 255; var vMin = Math.min(R, G, B); var vMax = Math.max(R, G, B); var delta = vMax - vMin; var L = (vMax + vMin) / 2; var H; var S; if (delta === 0) { H = 0; S = 0; } else { if (L < .5) S = delta / (vMax + vMin); else S = delta / (2 - vMax - vMin); var deltaR = ((vMax - R) / 6 + delta / 2) / delta; var deltaG = ((vMax - G) / 6 + delta / 2) / delta; var deltaB = ((vMax - B) / 6 + delta / 2) / delta; if (R === vMax) H = deltaB - deltaG; else if (G === vMax) H = 1 / 3 + deltaR - deltaB; else if (B === vMax) H = 2 / 3 + deltaG - deltaR; if (H < 0) H += 1; if (H > 1) H -= 1; } var hsla = [ H * 360, S, L ]; if (rgba[3] != null) hsla.push(rgba[3]); return hsla; } function lift(color, level) { var colorArr = parse(color); if (colorArr) { for (var i = 0; i < 3; i++) { if (level < 0) colorArr[i] = colorArr[i] * (1 - level) | 0; else colorArr[i] = (255 - colorArr[i]) * level + colorArr[i] | 0; if (colorArr[i] > 255) colorArr[i] = 255; else if (colorArr[i] < 0) colorArr[i] = 0; } return stringify(colorArr, colorArr.length === 4 ? "rgba" : "rgb"); } } function modifyHSL(color, h, s, l) { var colorArr = parse(color); if (color) { colorArr = rgba2hsla(colorArr); h != null && (colorArr[0] = clampCssAngle(isFunction(h) ? h(colorArr[0]) : h)); s != null && (colorArr[1] = parseCssFloat(isFunction(s) ? s(colorArr[1]) : s)); l != null && (colorArr[2] = parseCssFloat(isFunction(l) ? l(colorArr[2]) : l)); return stringify(hsla2rgba(colorArr), "rgba"); } } function stringify(arrColor, type) { if (!arrColor || !arrColor.length) return; var colorStr = arrColor[0] + "," + arrColor[1] + "," + arrColor[2]; if (type === "rgba" || type === "hsva" || type === "hsla") colorStr += "," + arrColor[3]; return type + "(" + colorStr + ")"; } function lum(color, backgroundLum) { var arr = parse(color); return arr ? (.299 * arr[0] + .587 * arr[1] + .114 * arr[2]) * arr[3] / 255 + (1 - arr[3]) * backgroundLum : 0; } var liftedColorCache = new LRU(100); function liftColor(color) { if (isString(color)) { var liftedColor = liftedColorCache.get(color); if (!liftedColor) { liftedColor = lift(color, -.1); liftedColorCache.put(color, liftedColor); } return liftedColor; } else if (isGradientObject(color)) { var ret = extend({}, color); ret.colorStops = map$1(color.colorStops, function(stop) { return { offset: stop.offset, color: lift(stop.color, -.1) }; }); return ret; } return color; } //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/svg/helper.js function isLinearGradient(val) { return val.type === "linear"; } function isRadialGradient(val) { return val.type === "radial"; } (function() { if (typeof Buffer !== "undefined" && typeof Buffer.from === "function") return function(str) { return Buffer.from(str).toString("base64"); }; if (typeof btoa === "function" && typeof unescape === "function" && typeof encodeURIComponent === "function") return function(str) { return btoa(unescape(encodeURIComponent(str))); }; return function(str) { return null; }; })(); //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/animation/Animator.js var arraySlice = Array.prototype.slice; function interpolateNumber(p0, p1, percent) { return (p1 - p0) * percent + p0; } function interpolate1DArray(out, p0, p1, percent) { var len = p0.length; for (var i = 0; i < len; i++) out[i] = interpolateNumber(p0[i], p1[i], percent); return out; } function interpolate2DArray(out, p0, p1, percent) { var len = p0.length; var len2 = len && p0[0].length; for (var i = 0; i < len; i++) { if (!out[i]) out[i] = []; for (var j = 0; j < len2; j++) out[i][j] = interpolateNumber(p0[i][j], p1[i][j], percent); } return out; } function add1DArray(out, p0, p1, sign) { var len = p0.length; for (var i = 0; i < len; i++) out[i] = p0[i] + p1[i] * sign; return out; } function add2DArray(out, p0, p1, sign) { var len = p0.length; var len2 = len && p0[0].length; for (var i = 0; i < len; i++) { if (!out[i]) out[i] = []; for (var j = 0; j < len2; j++) out[i][j] = p0[i][j] + p1[i][j] * sign; } return out; } function fillColorStops(val0, val1) { var len0 = val0.length; var len1 = val1.length; var shorterArr = len0 > len1 ? val1 : val0; var shorterLen = Math.min(len0, len1); var last = shorterArr[shorterLen - 1] || { color: [ 0, 0, 0, 0 ], offset: 0 }; for (var i = shorterLen; i < Math.max(len0, len1); i++) shorterArr.push({ offset: last.offset, color: last.color.slice() }); } function fillArray(val0, val1, arrDim) { var arr0 = val0; var arr1 = val1; if (!arr0.push || !arr1.push) return; var arr0Len = arr0.length; var arr1Len = arr1.length; if (arr0Len !== arr1Len) if (arr0Len > arr1Len) arr0.length = arr1Len; else for (var i = arr0Len; i < arr1Len; i++) arr0.push(arrDim === 1 ? arr1[i] : arraySlice.call(arr1[i])); var len2 = arr0[0] && arr0[0].length; for (var i = 0; i < arr0.length; i++) if (arrDim === 1) { if (isNaN(arr0[i])) arr0[i] = arr1[i]; } else for (var j = 0; j < len2; j++) if (isNaN(arr0[i][j])) arr0[i][j] = arr1[i][j]; } function cloneValue(value) { if (isArrayLike(value)) { var len = value.length; if (isArrayLike(value[0])) { var ret = []; for (var i = 0; i < len; i++) ret.push(arraySlice.call(value[i])); return ret; } return arraySlice.call(value); } return value; } function rgba2String(rgba) { rgba[0] = Math.floor(rgba[0]) || 0; rgba[1] = Math.floor(rgba[1]) || 0; rgba[2] = Math.floor(rgba[2]) || 0; rgba[3] = rgba[3] == null ? 1 : rgba[3]; return "rgba(" + rgba.join(",") + ")"; } function guessArrayDim(value) { return isArrayLike(value && value[0]) ? 2 : 1; } var VALUE_TYPE_NUMBER = 0; var VALUE_TYPE_1D_ARRAY = 1; var VALUE_TYPE_2D_ARRAY = 2; var VALUE_TYPE_COLOR = 3; var VALUE_TYPE_LINEAR_GRADIENT = 4; var VALUE_TYPE_RADIAL_GRADIENT = 5; var VALUE_TYPE_UNKOWN = 6; function isGradientValueType(valType) { return valType === VALUE_TYPE_LINEAR_GRADIENT || valType === VALUE_TYPE_RADIAL_GRADIENT; } function isArrayValueType(valType) { return valType === VALUE_TYPE_1D_ARRAY || valType === VALUE_TYPE_2D_ARRAY; } var tmpRgba = [ 0, 0, 0, 0 ]; var Track = function() { function Track(propName) { this.keyframes = []; this.discrete = false; this._invalid = false; this._needsSort = false; this._lastFr = 0; this._lastFrP = 0; this.propName = propName; } Track.prototype.isFinished = function() { return this._finished; }; Track.prototype.setFinished = function() { this._finished = true; if (this._additiveTrack) this._additiveTrack.setFinished(); }; Track.prototype.needsAnimate = function() { return this.keyframes.length >= 1; }; Track.prototype.getAdditiveTrack = function() { return this._additiveTrack; }; Track.prototype.addKeyframe = function(time, rawValue, easing) { this._needsSort = true; var keyframes = this.keyframes; var len = keyframes.length; var discrete = false; var valType = VALUE_TYPE_UNKOWN; var value = rawValue; if (isArrayLike(rawValue)) { var arrayDim = guessArrayDim(rawValue); valType = arrayDim; if (arrayDim === 1 && !isNumber(rawValue[0]) || arrayDim === 2 && !isNumber(rawValue[0][0])) discrete = true; } else if (isNumber(rawValue) && !eqNaN(rawValue)) valType = VALUE_TYPE_NUMBER; else if (isString(rawValue)) if (!isNaN(+rawValue)) valType = VALUE_TYPE_NUMBER; else { var colorArray = parse(rawValue); if (colorArray) { value = colorArray; valType = VALUE_TYPE_COLOR; } } else if (isGradientObject(rawValue)) { var parsedGradient = extend({}, value); parsedGradient.colorStops = map$1(rawValue.colorStops, function(colorStop) { return { offset: colorStop.offset, color: parse(colorStop.color) }; }); if (isLinearGradient(rawValue)) valType = VALUE_TYPE_LINEAR_GRADIENT; else if (isRadialGradient(rawValue)) valType = VALUE_TYPE_RADIAL_GRADIENT; value = parsedGradient; } if (len === 0) this.valType = valType; else if (valType !== this.valType || valType === VALUE_TYPE_UNKOWN) discrete = true; this.discrete = this.discrete || discrete; var kf = { time, value, rawValue, percent: 0 }; if (easing) { kf.easing = easing; kf.easingFunc = isFunction(easing) ? easing : easingFuncs[easing] || createCubicEasingFunc(easing); } keyframes.push(kf); return kf; }; Track.prototype.prepare = function(maxTime, additiveTrack) { var kfs = this.keyframes; if (this._needsSort) kfs.sort(function(a, b) { return a.time - b.time; }); var valType = this.valType; var kfsLen = kfs.length; var lastKf = kfs[kfsLen - 1]; var isDiscrete = this.discrete; var isArr = isArrayValueType(valType); var isGradient = isGradientValueType(valType); for (var i = 0; i < kfsLen; i++) { var kf = kfs[i]; var value = kf.value; var lastValue = lastKf.value; kf.percent = kf.time / maxTime; if (!isDiscrete) { if (isArr && i !== kfsLen - 1) fillArray(value, lastValue, valType); else if (isGradient) fillColorStops(value.colorStops, lastValue.colorStops); } } if (!isDiscrete && valType !== VALUE_TYPE_RADIAL_GRADIENT && additiveTrack && this.needsAnimate() && additiveTrack.needsAnimate() && valType === additiveTrack.valType && !additiveTrack._finished) { this._additiveTrack = additiveTrack; var startValue = kfs[0].value; for (var i = 0; i < kfsLen; i++) if (valType === VALUE_TYPE_NUMBER) kfs[i].additiveValue = kfs[i].value - startValue; else if (valType === VALUE_TYPE_COLOR) kfs[i].additiveValue = add1DArray([], kfs[i].value, startValue, -1); else if (isArrayValueType(valType)) kfs[i].additiveValue = valType === VALUE_TYPE_1D_ARRAY ? add1DArray([], kfs[i].value, startValue, -1) : add2DArray([], kfs[i].value, startValue, -1); } }; Track.prototype.step = function(target, percent) { if (this._finished) return; if (this._additiveTrack && this._additiveTrack._finished) this._additiveTrack = null; var isAdditive = this._additiveTrack != null; var valueKey = isAdditive ? "additiveValue" : "value"; var valType = this.valType; var keyframes = this.keyframes; var kfsNum = keyframes.length; var propName = this.propName; var isValueColor = valType === VALUE_TYPE_COLOR; var frameIdx; var lastFrame = this._lastFr; var mathMin = Math.min; var frame; var nextFrame; if (kfsNum === 1) frame = nextFrame = keyframes[0]; else { if (percent < 0) frameIdx = 0; else if (percent < this._lastFrP) { for (frameIdx = mathMin(lastFrame + 1, kfsNum - 1); frameIdx >= 0; frameIdx--) if (keyframes[frameIdx].percent <= percent) break; frameIdx = mathMin(frameIdx, kfsNum - 2); } else { for (frameIdx = lastFrame; frameIdx < kfsNum; frameIdx++) if (keyframes[frameIdx].percent > percent) break; frameIdx = mathMin(frameIdx - 1, kfsNum - 2); } nextFrame = keyframes[frameIdx + 1]; frame = keyframes[frameIdx]; } if (!(frame && nextFrame)) return; this._lastFr = frameIdx; this._lastFrP = percent; var interval = nextFrame.percent - frame.percent; var w = interval === 0 ? 1 : mathMin((percent - frame.percent) / interval, 1); if (nextFrame.easingFunc) w = nextFrame.easingFunc(w); var targetArr = isAdditive ? this._additiveValue : isValueColor ? tmpRgba : target[propName]; if ((isArrayValueType(valType) || isValueColor) && !targetArr) targetArr = this._additiveValue = []; if (this.discrete) target[propName] = w < 1 ? frame.rawValue : nextFrame.rawValue; else if (isArrayValueType(valType)) valType === VALUE_TYPE_1D_ARRAY ? interpolate1DArray(targetArr, frame[valueKey], nextFrame[valueKey], w) : interpolate2DArray(targetArr, frame[valueKey], nextFrame[valueKey], w); else if (isGradientValueType(valType)) { var val = frame[valueKey]; var nextVal_1 = nextFrame[valueKey]; var isLinearGradient_1 = valType === VALUE_TYPE_LINEAR_GRADIENT; target[propName] = { type: isLinearGradient_1 ? "linear" : "radial", x: interpolateNumber(val.x, nextVal_1.x, w), y: interpolateNumber(val.y, nextVal_1.y, w), colorStops: map$1(val.colorStops, function(colorStop, idx) { var nextColorStop = nextVal_1.colorStops[idx]; return { offset: interpolateNumber(colorStop.offset, nextColorStop.offset, w), color: rgba2String(interpolate1DArray([], colorStop.color, nextColorStop.color, w)) }; }), global: nextVal_1.global }; if (isLinearGradient_1) { target[propName].x2 = interpolateNumber(val.x2, nextVal_1.x2, w); target[propName].y2 = interpolateNumber(val.y2, nextVal_1.y2, w); } else target[propName].r = interpolateNumber(val.r, nextVal_1.r, w); } else if (isValueColor) { interpolate1DArray(targetArr, frame[valueKey], nextFrame[valueKey], w); if (!isAdditive) target[propName] = rgba2String(targetArr); } else { var value = interpolateNumber(frame[valueKey], nextFrame[valueKey], w); if (isAdditive) this._additiveValue = value; else target[propName] = value; } if (isAdditive) this._addToTarget(target); }; Track.prototype._addToTarget = function(target) { var valType = this.valType; var propName = this.propName; var additiveValue = this._additiveValue; if (valType === VALUE_TYPE_NUMBER) target[propName] = target[propName] + additiveValue; else if (valType === VALUE_TYPE_COLOR) { parse(target[propName], tmpRgba); add1DArray(tmpRgba, tmpRgba, additiveValue, 1); target[propName] = rgba2String(tmpRgba); } else if (valType === VALUE_TYPE_1D_ARRAY) add1DArray(target[propName], target[propName], additiveValue, 1); else if (valType === VALUE_TYPE_2D_ARRAY) add2DArray(target[propName], target[propName], additiveValue, 1); }; return Track; }(); var Animator = function() { function Animator(target, loop, allowDiscreteAnimation, additiveTo) { this._tracks = {}; this._trackKeys = []; this._maxTime = 0; this._started = 0; this._clip = null; this._target = target; this._loop = loop; if (loop && additiveTo) { logError("Can' use additive animation on looped animation."); return; } this._additiveAnimators = additiveTo; this._allowDiscrete = allowDiscreteAnimation; } Animator.prototype.getMaxTime = function() { return this._maxTime; }; Animator.prototype.getDelay = function() { return this._delay; }; Animator.prototype.getLoop = function() { return this._loop; }; Animator.prototype.getTarget = function() { return this._target; }; Animator.prototype.changeTarget = function(target) { this._target = target; }; Animator.prototype.when = function(time, props, easing) { return this.whenWithKeys(time, props, keys(props), easing); }; Animator.prototype.whenWithKeys = function(time, props, propNames, easing) { var tracks = this._tracks; for (var i = 0; i < propNames.length; i++) { var propName = propNames[i]; var track = tracks[propName]; if (!track) { track = tracks[propName] = new Track(propName); var initialValue = void 0; var additiveTrack = this._getAdditiveTrack(propName); if (additiveTrack) { var addtiveTrackKfs = additiveTrack.keyframes; var lastFinalKf = addtiveTrackKfs[addtiveTrackKfs.length - 1]; initialValue = lastFinalKf && lastFinalKf.value; if (additiveTrack.valType === VALUE_TYPE_COLOR && initialValue) initialValue = rgba2String(initialValue); } else initialValue = this._target[propName]; if (initialValue == null) continue; if (time > 0) track.addKeyframe(0, cloneValue(initialValue), easing); this._trackKeys.push(propName); } track.addKeyframe(time, cloneValue(props[propName]), easing); } this._maxTime = Math.max(this._maxTime, time); return this; }; Animator.prototype.pause = function() { this._clip.pause(); this._paused = true; }; Animator.prototype.resume = function() { this._clip.resume(); this._paused = false; }; Animator.prototype.isPaused = function() { return !!this._paused; }; Animator.prototype.duration = function(duration) { this._maxTime = duration; this._force = true; return this; }; Animator.prototype._doneCallback = function() { this._setTracksFinished(); this._clip = null; var doneList = this._doneCbs; if (doneList) { var len = doneList.length; for (var i = 0; i < len; i++) doneList[i].call(this); } }; Animator.prototype._abortedCallback = function() { this._setTracksFinished(); var animation = this.animation; var abortedList = this._abortedCbs; if (animation) animation.removeClip(this._clip); this._clip = null; if (abortedList) for (var i = 0; i < abortedList.length; i++) abortedList[i].call(this); }; Animator.prototype._setTracksFinished = function() { var tracks = this._tracks; var tracksKeys = this._trackKeys; for (var i = 0; i < tracksKeys.length; i++) tracks[tracksKeys[i]].setFinished(); }; Animator.prototype._getAdditiveTrack = function(trackName) { var additiveTrack; var additiveAnimators = this._additiveAnimators; if (additiveAnimators) for (var i = 0; i < additiveAnimators.length; i++) { var track = additiveAnimators[i].getTrack(trackName); if (track) additiveTrack = track; } return additiveTrack; }; Animator.prototype.start = function(easing) { if (this._started > 0) return; this._started = 1; var self = this; var tracks = []; var maxTime = this._maxTime || 0; for (var i = 0; i < this._trackKeys.length; i++) { var propName = this._trackKeys[i]; var track = this._tracks[propName]; var additiveTrack = this._getAdditiveTrack(propName); var kfs = track.keyframes; var kfsNum = kfs.length; track.prepare(maxTime, additiveTrack); if (track.needsAnimate()) if (!this._allowDiscrete && track.discrete) { var lastKf = kfs[kfsNum - 1]; if (lastKf) self._target[track.propName] = lastKf.rawValue; track.setFinished(); } else tracks.push(track); } if (tracks.length || this._force) { var clip = new Clip({ life: maxTime, loop: this._loop, delay: this._delay || 0, onframe: function(percent) { self._started = 2; var additiveAnimators = self._additiveAnimators; if (additiveAnimators) { var stillHasAdditiveAnimator = false; for (var i = 0; i < additiveAnimators.length; i++) if (additiveAnimators[i]._clip) { stillHasAdditiveAnimator = true; break; } if (!stillHasAdditiveAnimator) self._additiveAnimators = null; } for (var i = 0; i < tracks.length; i++) tracks[i].step(self._target, percent); var onframeList = self._onframeCbs; if (onframeList) for (var i = 0; i < onframeList.length; i++) onframeList[i](self._target, percent); }, ondestroy: function() { self._doneCallback(); } }); this._clip = clip; if (this.animation) this.animation.addClip(clip); if (easing) clip.setEasing(easing); } else this._doneCallback(); return this; }; Animator.prototype.stop = function(forwardToLast) { if (!this._clip) return; var clip = this._clip; if (forwardToLast) clip.onframe(1); this._abortedCallback(); }; Animator.prototype.delay = function(time) { this._delay = time; return this; }; Animator.prototype.during = function(cb) { if (cb) { if (!this._onframeCbs) this._onframeCbs = []; this._onframeCbs.push(cb); } return this; }; Animator.prototype.done = function(cb) { if (cb) { if (!this._doneCbs) this._doneCbs = []; this._doneCbs.push(cb); } return this; }; Animator.prototype.aborted = function(cb) { if (cb) { if (!this._abortedCbs) this._abortedCbs = []; this._abortedCbs.push(cb); } return this; }; Animator.prototype.getClip = function() { return this._clip; }; Animator.prototype.getTrack = function(propName) { return this._tracks[propName]; }; Animator.prototype.getTracks = function() { var _this = this; return map$1(this._trackKeys, function(key) { return _this._tracks[key]; }); }; Animator.prototype.stopTracks = function(propNames, forwardToLast) { if (!propNames.length || !this._clip) return true; var tracks = this._tracks; var tracksKeys = this._trackKeys; for (var i = 0; i < propNames.length; i++) { var track = tracks[propNames[i]]; if (track && !track.isFinished()) { if (forwardToLast) track.step(this._target, 1); else if (this._started === 1) track.step(this._target, 0); track.setFinished(); } } var allAborted = true; for (var i = 0; i < tracksKeys.length; i++) if (!tracks[tracksKeys[i]].isFinished()) { allAborted = false; break; } if (allAborted) this._abortedCallback(); return allAborted; }; Animator.prototype.saveTo = function(target, trackKeys, firstOrLast) { if (!target) return; trackKeys = trackKeys || this._trackKeys; for (var i = 0; i < trackKeys.length; i++) { var propName = trackKeys[i]; var track = this._tracks[propName]; if (!track || track.isFinished()) continue; var kfs = track.keyframes; var kf = kfs[firstOrLast ? 0 : kfs.length - 1]; if (kf) target[propName] = cloneValue(kf.rawValue); } }; Animator.prototype.__changeFinalValue = function(finalProps, trackKeys) { trackKeys = trackKeys || keys(finalProps); for (var i = 0; i < trackKeys.length; i++) { var propName = trackKeys[i]; var track = this._tracks[propName]; if (!track) continue; var kfs = track.keyframes; if (kfs.length > 1) { var lastKf = kfs.pop(); track.addKeyframe(lastKf.time, finalProps[propName]); track.prepare(this._maxTime, track.getAdditiveTrack()); } } }; return Animator; }(); //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/core/Eventful.js var Eventful = function() { function Eventful(eventProcessors) { if (eventProcessors) this._$eventProcessor = eventProcessors; } Eventful.prototype.on = function(event, query, handler, context) { if (!this._$handlers) this._$handlers = {}; var _h = this._$handlers; if (typeof query === "function") { context = handler; handler = query; query = null; } if (!handler || !event) return this; var eventProcessor = this._$eventProcessor; if (query != null && eventProcessor && eventProcessor.normalizeQuery) query = eventProcessor.normalizeQuery(query); if (!_h[event]) _h[event] = []; for (var i = 0; i < _h[event].length; i++) if (_h[event][i].h === handler) return this; var wrap = { h: handler, query, ctx: context || this, callAtLast: handler.zrEventfulCallAtLast }; var lastIndex = _h[event].length - 1; var lastWrap = _h[event][lastIndex]; lastWrap && lastWrap.callAtLast ? _h[event].splice(lastIndex, 0, wrap) : _h[event].push(wrap); return this; }; Eventful.prototype.isSilent = function(eventName) { var _h = this._$handlers; return !_h || !_h[eventName] || !_h[eventName].length; }; Eventful.prototype.off = function(eventType, handler) { var _h = this._$handlers; if (!_h) return this; if (!eventType) { this._$handlers = {}; return this; } if (handler) { if (_h[eventType]) { var newList = []; for (var i = 0, l = _h[eventType].length; i < l; i++) if (_h[eventType][i].h !== handler) newList.push(_h[eventType][i]); _h[eventType] = newList; } if (_h[eventType] && _h[eventType].length === 0) delete _h[eventType]; } else delete _h[eventType]; return this; }; Eventful.prototype.trigger = function(eventType) { var args = []; for (var _i = 1; _i < arguments.length; _i++) args[_i - 1] = arguments[_i]; if (!this._$handlers) return this; var _h = this._$handlers[eventType]; var eventProcessor = this._$eventProcessor; if (_h) { var argLen = args.length; var len = _h.length; for (var i = 0; i < len; i++) { var hItem = _h[i]; if (eventProcessor && eventProcessor.filter && hItem.query != null && !eventProcessor.filter(eventType, hItem.query)) continue; switch (argLen) { case 0: hItem.h.call(hItem.ctx); break; case 1: hItem.h.call(hItem.ctx, args[0]); break; case 2: hItem.h.call(hItem.ctx, args[0], args[1]); break; default: hItem.h.apply(hItem.ctx, args); break; } } } eventProcessor && eventProcessor.afterTrigger && eventProcessor.afterTrigger(eventType); return this; }; Eventful.prototype.triggerWithContext = function(type) { var args = []; for (var _i = 1; _i < arguments.length; _i++) args[_i - 1] = arguments[_i]; if (!this._$handlers) return this; var _h = this._$handlers[type]; var eventProcessor = this._$eventProcessor; if (_h) { var argLen = args.length; var ctx = args[argLen - 1]; var len = _h.length; for (var i = 0; i < len; i++) { var hItem = _h[i]; if (eventProcessor && eventProcessor.filter && hItem.query != null && !eventProcessor.filter(type, hItem.query)) continue; switch (argLen) { case 0: hItem.h.call(ctx); break; case 1: hItem.h.call(ctx, args[0]); break; case 2: hItem.h.call(ctx, args[0], args[1]); break; default: hItem.h.apply(ctx, args.slice(1, argLen - 1)); break; } } } eventProcessor && eventProcessor.afterTrigger && eventProcessor.afterTrigger(type); return this; }; return Eventful; }(); //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/config.js var dpr = 1; if (env.hasGlobalWindow) dpr = Math.max(window.devicePixelRatio || window.screen && window.screen.deviceXDPI / window.screen.logicalXDPI || 1, 1); var devicePixelRatio = dpr; var DARK_MODE_THRESHOLD = .4; var DARK_LABEL_COLOR = "#333"; var LIGHT_LABEL_COLOR = "#ccc"; var LIGHTER_LABEL_COLOR = "#eee"; //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/Element.js var PRESERVED_NORMAL_STATE = "__zr_normal__"; var PRIMARY_STATES_KEYS$1 = TRANSFORMABLE_PROPS.concat(["ignore"]); var DEFAULT_ANIMATABLE_MAP = reduce(TRANSFORMABLE_PROPS, function(obj, key) { obj[key] = true; return obj; }, { ignore: false }); var tmpTextPosCalcRes = {}; var tmpBoundingRect = new BoundingRect(0, 0, 0, 0); var tmpInnerTextTrans = []; var Element = function() { function Element(props) { this.id = guid(); this.animators = []; this.currentStates = []; this.states = {}; this._init(props); } Element.prototype._init = function(props) { this.attr(props); }; Element.prototype.drift = function(dx, dy, e) { switch (this.draggable) { case "horizontal": dy = 0; break; case "vertical": dx = 0; break; } var m = this.transform; if (!m) m = this.transform = [ 1, 0, 0, 1, 0, 0 ]; m[4] += dx; m[5] += dy; this.decomposeTransform(); this.markRedraw(); }; Element.prototype.beforeUpdate = function() {}; Element.prototype.afterUpdate = function() {}; Element.prototype.update = function() { this.updateTransform(); if (this.__dirty) this.updateInnerText(); }; Element.prototype.updateInnerText = function(forceUpdate) { var textEl = this._textContent; if (textEl && (!textEl.ignore || forceUpdate)) { if (!this.textConfig) this.textConfig = {}; var textConfig = this.textConfig; var isLocal = textConfig.local; var innerTransformable = textEl.innerTransformable; var textAlign = void 0; var textVerticalAlign = void 0; var textStyleChanged = false; innerTransformable.parent = isLocal ? this : null; var innerOrigin = false; innerTransformable.copyTransform(textEl); var hasPosition = textConfig.position != null; var autoOverflowArea = textConfig.autoOverflowArea; var layoutRect = void 0; if (autoOverflowArea || hasPosition) { layoutRect = tmpBoundingRect; if (textConfig.layoutRect) layoutRect.copy(textConfig.layoutRect); else layoutRect.copy(this.getBoundingRect()); if (!isLocal) layoutRect.applyTransform(this.transform); } if (hasPosition) { if (this.calculateTextPosition) this.calculateTextPosition(tmpTextPosCalcRes, textConfig, layoutRect); else calculateTextPosition(tmpTextPosCalcRes, textConfig, layoutRect); innerTransformable.x = tmpTextPosCalcRes.x; innerTransformable.y = tmpTextPosCalcRes.y; textAlign = tmpTextPosCalcRes.align; textVerticalAlign = tmpTextPosCalcRes.verticalAlign; var textOrigin = textConfig.origin; if (textOrigin && textConfig.rotation != null) { var relOriginX = void 0; var relOriginY = void 0; if (textOrigin === "center") { relOriginX = layoutRect.width * .5; relOriginY = layoutRect.height * .5; } else { relOriginX = parsePercent$1(textOrigin[0], layoutRect.width); relOriginY = parsePercent$1(textOrigin[1], layoutRect.height); } innerOrigin = true; innerTransformable.originX = -innerTransformable.x + relOriginX + (isLocal ? 0 : layoutRect.x); innerTransformable.originY = -innerTransformable.y + relOriginY + (isLocal ? 0 : layoutRect.y); } } if (textConfig.rotation != null) innerTransformable.rotation = textConfig.rotation; var textOffset = textConfig.offset; if (textOffset) { innerTransformable.x += textOffset[0]; innerTransformable.y += textOffset[1]; if (!innerOrigin) { innerTransformable.originX = -textOffset[0]; innerTransformable.originY = -textOffset[1]; } } var innerTextDefaultStyle = this._innerTextDefaultStyle || (this._innerTextDefaultStyle = {}); if (autoOverflowArea) { var overflowRect = innerTextDefaultStyle.overflowRect = innerTextDefaultStyle.overflowRect || new BoundingRect(0, 0, 0, 0); innerTransformable.getLocalTransform(tmpInnerTextTrans); invert(tmpInnerTextTrans, tmpInnerTextTrans); BoundingRect.copy(overflowRect, layoutRect); overflowRect.applyTransform(tmpInnerTextTrans); } else innerTextDefaultStyle.overflowRect = null; var isInside = textConfig.inside == null ? typeof textConfig.position === "string" && textConfig.position.indexOf("inside") >= 0 : textConfig.inside; var textFill = void 0; var textStroke = void 0; var autoStroke = void 0; if (isInside && this.canBeInsideText()) { textFill = textConfig.insideFill; textStroke = textConfig.insideStroke; if (textFill == null || textFill === "auto") textFill = this.getInsideTextFill(); if (textStroke == null || textStroke === "auto") { textStroke = this.getInsideTextStroke(textFill); autoStroke = true; } } else { textFill = textConfig.outsideFill; textStroke = textConfig.outsideStroke; if (textFill == null || textFill === "auto") textFill = this.getOutsideFill(); if (textStroke == null || textStroke === "auto") { textStroke = this.getOutsideStroke(textFill); autoStroke = true; } } textFill = textFill || "#000"; if (textFill !== innerTextDefaultStyle.fill || textStroke !== innerTextDefaultStyle.stroke || autoStroke !== innerTextDefaultStyle.autoStroke || textAlign !== innerTextDefaultStyle.align || textVerticalAlign !== innerTextDefaultStyle.verticalAlign) { textStyleChanged = true; innerTextDefaultStyle.fill = textFill; innerTextDefaultStyle.stroke = textStroke; innerTextDefaultStyle.autoStroke = autoStroke; innerTextDefaultStyle.align = textAlign; innerTextDefaultStyle.verticalAlign = textVerticalAlign; textEl.setDefaultTextStyle(innerTextDefaultStyle); } textEl.__dirty |= 1; if (textStyleChanged) textEl.dirtyStyle(true); } }; Element.prototype.canBeInsideText = function() { return true; }; Element.prototype.getInsideTextFill = function() { return "#fff"; }; Element.prototype.getInsideTextStroke = function(textFill) { return "#000"; }; Element.prototype.getOutsideFill = function() { return this.__zr && this.__zr.isDarkMode() ? LIGHT_LABEL_COLOR : DARK_LABEL_COLOR; }; Element.prototype.getOutsideStroke = function(textFill) { var backgroundColor = this.__zr && this.__zr.getBackgroundColor(); var colorArr = typeof backgroundColor === "string" && parse(backgroundColor); if (!colorArr) colorArr = [ 255, 255, 255, 1 ]; var alpha = colorArr[3]; var isDark = this.__zr.isDarkMode(); for (var i = 0; i < 3; i++) colorArr[i] = colorArr[i] * alpha + (isDark ? 0 : 255) * (1 - alpha); colorArr[3] = 1; return stringify(colorArr, "rgba"); }; Element.prototype.traverse = function(cb, context) {}; Element.prototype.attrKV = function(key, value) { if (key === "textConfig") this.setTextConfig(value); else if (key === "textContent") this.setTextContent(value); else if (key === "clipPath") this.setClipPath(value); else if (key === "extra") { this.extra = this.extra || {}; extend(this.extra, value); } else this[key] = value; }; Element.prototype.hide = function() { this.ignore = true; this.markRedraw(); }; Element.prototype.show = function() { this.ignore = false; this.markRedraw(); }; Element.prototype.attr = function(keyOrObj, value) { if (typeof keyOrObj === "string") this.attrKV(keyOrObj, value); else if (isObject$2(keyOrObj)) { var keysArr = keys(keyOrObj); for (var i = 0; i < keysArr.length; i++) { var key = keysArr[i]; this.attrKV(key, keyOrObj[key]); } } this.markRedraw(); return this; }; Element.prototype.saveCurrentToNormalState = function(toState) { this._innerSaveToNormal(toState); var normalState = this._normalState; for (var i = 0; i < this.animators.length; i++) { var animator = this.animators[i]; var fromStateTransition = animator.__fromStateTransition; if (animator.getLoop() || fromStateTransition && fromStateTransition !== "__zr_normal__") continue; var targetName = animator.targetName; var target = targetName ? normalState[targetName] : normalState; animator.saveTo(target); } }; Element.prototype._innerSaveToNormal = function(toState) { var normalState = this._normalState; if (!normalState) normalState = this._normalState = {}; if (toState.textConfig && !normalState.textConfig) normalState.textConfig = this.textConfig; this._savePrimaryToNormal(toState, normalState, PRIMARY_STATES_KEYS$1); }; Element.prototype._savePrimaryToNormal = function(toState, normalState, primaryKeys) { for (var i = 0; i < primaryKeys.length; i++) { var key = primaryKeys[i]; if (toState[key] != null && !(key in normalState)) normalState[key] = this[key]; } }; Element.prototype.hasState = function() { return this.currentStates.length > 0; }; Element.prototype.getState = function(name) { return this.states[name]; }; Element.prototype.ensureState = function(name) { var states = this.states; if (!states[name]) states[name] = {}; return states[name]; }; Element.prototype.clearStates = function(noAnimation) { this.useState(PRESERVED_NORMAL_STATE, false, noAnimation); }; Element.prototype.useState = function(stateName, keepCurrentStates, noAnimation, forceUseHoverLayer) { var toNormalState = stateName === PRESERVED_NORMAL_STATE; if (!this.hasState() && toNormalState) return; var currentStates = this.currentStates; var animationCfg = this.stateTransition; if (indexOf(currentStates, stateName) >= 0 && (keepCurrentStates || currentStates.length === 1)) return; var state; if (this.stateProxy && !toNormalState) state = this.stateProxy(stateName); if (!state) state = this.states && this.states[stateName]; if (!state && !toNormalState) { logError("State " + stateName + " not exists."); return; } if (!toNormalState) this.saveCurrentToNormalState(state); var textContent = this._textContent; var useHoverLayer = shouldUseHoverLayer(this, textContent, state, forceUseHoverLayer); if (useHoverLayer && !this.__inHover) this.__inHover = useHoverLayer; this._applyStateObj(stateName, state, this._normalState, keepCurrentStates, canTransition(this, noAnimation, animationCfg), animationCfg); var textGuide = this._textGuide; if (textContent) textContent.useState(stateName, keepCurrentStates, noAnimation, !!useHoverLayer); if (textGuide) textGuide.useState(stateName, keepCurrentStates, noAnimation, !!useHoverLayer); if (toNormalState) { this.currentStates = []; this._normalState = {}; } else if (!keepCurrentStates) this.currentStates = [stateName]; else this.currentStates.push(stateName); this._updateAnimationTargets(); this.markRedraw(); if (!useHoverLayer && this.__inHover) { this.__inHover = 0; this.__dirty &= -2; } return state; }; Element.prototype.useStates = function(states, noAnimation, forceUseHoverLayer) { if (!states.length) this.clearStates(); else { var stateObjects = []; var currentStates = this.currentStates; var len = states.length; var notChange = len === currentStates.length; if (notChange) { for (var i = 0; i < len; i++) if (states[i] !== currentStates[i]) { notChange = false; break; } } if (notChange) return; for (var i = 0; i < len; i++) { var stateName = states[i]; var stateObj = void 0; if (this.stateProxy) stateObj = this.stateProxy(stateName, states); if (!stateObj) stateObj = this.states[stateName]; if (stateObj) stateObjects.push(stateObj); } var lastStateObj = stateObjects[len - 1]; var textContent = this._textContent; var useHoverLayer = shouldUseHoverLayer(this, textContent, lastStateObj, forceUseHoverLayer); if (useHoverLayer && !this.__inHover) this.__inHover = useHoverLayer; var mergedState = this._mergeStates(stateObjects); var animationCfg = this.stateTransition; this.saveCurrentToNormalState(mergedState); this._applyStateObj(states.join(","), mergedState, this._normalState, false, canTransition(this, noAnimation, animationCfg), animationCfg); var textGuide = this._textGuide; if (textContent) textContent.useStates(states, noAnimation, !!useHoverLayer); if (textGuide) textGuide.useStates(states, noAnimation, !!useHoverLayer); this._updateAnimationTargets(); this.currentStates = states.slice(); this.markRedraw(); if (!useHoverLayer && this.__inHover) { this.__inHover = 0; this.__dirty &= -2; } } }; Element.prototype.isSilent = function() { var el = this; while (el) { if (el.silent) return true; var hostEl = el.__hostTarget; el = hostEl ? el.ignoreHostSilent ? null : hostEl : el.parent; } return false; }; Element.prototype._updateAnimationTargets = function() { for (var i = 0; i < this.animators.length; i++) { var animator = this.animators[i]; if (animator.targetName) animator.changeTarget(this[animator.targetName]); } }; Element.prototype.removeState = function(state) { var idx = indexOf(this.currentStates, state); if (idx >= 0) { var currentStates = this.currentStates.slice(); currentStates.splice(idx, 1); this.useStates(currentStates); } }; Element.prototype.replaceState = function(oldState, newState, forceAdd) { var currentStates = this.currentStates.slice(); var idx = indexOf(currentStates, oldState); var newStateExists = indexOf(currentStates, newState) >= 0; if (idx >= 0) if (!newStateExists) currentStates[idx] = newState; else currentStates.splice(idx, 1); else if (forceAdd && !newStateExists) currentStates.push(newState); this.useStates(currentStates); }; Element.prototype.toggleState = function(state, enable) { if (enable) this.useState(state, true); else this.removeState(state); }; Element.prototype._mergeStates = function(states) { var mergedState = {}; var mergedTextConfig; for (var i = 0; i < states.length; i++) { var state = states[i]; extend(mergedState, state); if (state.textConfig) { mergedTextConfig = mergedTextConfig || {}; extend(mergedTextConfig, state.textConfig); } } if (mergedTextConfig) mergedState.textConfig = mergedTextConfig; return mergedState; }; Element.prototype._applyStateObj = function(stateName, state, normalState, keepCurrentStates, transition, animationCfg) { if (this.__inHover === 1) return; var needsRestoreToNormal = !(state && keepCurrentStates); if (state && state.textConfig) { this.textConfig = extend({}, keepCurrentStates ? this.textConfig : normalState.textConfig); extend(this.textConfig, state.textConfig); } else if (needsRestoreToNormal) { if (normalState.textConfig) this.textConfig = normalState.textConfig; } var transitionTarget = {}; var hasTransition = false; for (var i = 0; i < PRIMARY_STATES_KEYS$1.length; i++) { var key = PRIMARY_STATES_KEYS$1[i]; var propNeedsTransition = transition && DEFAULT_ANIMATABLE_MAP[key]; if (state && state[key] != null) if (propNeedsTransition) { hasTransition = true; transitionTarget[key] = state[key]; } else this[key] = state[key]; else if (needsRestoreToNormal) { if (normalState[key] != null) if (propNeedsTransition) { hasTransition = true; transitionTarget[key] = normalState[key]; } else this[key] = normalState[key]; } } if (!transition) for (var i = 0; i < this.animators.length; i++) { var animator = this.animators[i]; var targetName = animator.targetName; if (!animator.getLoop()) animator.__changeFinalValue(targetName ? (state || normalState)[targetName] : state || normalState); } if (hasTransition) this._transitionState(stateName, transitionTarget, animationCfg); }; Element.prototype._attachComponent = function(componentEl) { if (componentEl.__zr && !componentEl.__hostTarget) return; if (componentEl === this) return; var zr = this.__zr; if (zr) componentEl.addSelfToZr(zr); componentEl.__zr = zr; componentEl.__hostTarget = this; }; Element.prototype._detachComponent = function(componentEl) { if (componentEl.__zr) componentEl.removeSelfFromZr(componentEl.__zr); componentEl.__zr = null; componentEl.__hostTarget = null; }; Element.prototype.getClipPath = function() { return this._clipPath; }; Element.prototype.setClipPath = function(clipPath) { if (this._clipPath && this._clipPath !== clipPath) this.removeClipPath(); this._attachComponent(clipPath); this._clipPath = clipPath; this.markRedraw(); }; Element.prototype.removeClipPath = function() { var clipPath = this._clipPath; if (clipPath) { this._detachComponent(clipPath); this._clipPath = null; this.markRedraw(); } }; Element.prototype.getTextContent = function() { return this._textContent; }; Element.prototype.setTextContent = function(textEl) { var previousTextContent = this._textContent; if (previousTextContent === textEl) return; if (previousTextContent && previousTextContent !== textEl) this.removeTextContent(); textEl.innerTransformable = new Transformable(); this._attachComponent(textEl); this._textContent = textEl; this.markRedraw(); }; Element.prototype.setTextConfig = function(cfg) { if (!this.textConfig) this.textConfig = {}; extend(this.textConfig, cfg); this.markRedraw(); }; Element.prototype.removeTextConfig = function() { this.textConfig = null; this.markRedraw(); }; Element.prototype.removeTextContent = function() { var textEl = this._textContent; if (textEl) { textEl.innerTransformable = null; this._detachComponent(textEl); this._textContent = null; this._innerTextDefaultStyle = null; this.markRedraw(); } }; Element.prototype.getTextGuideLine = function() { return this._textGuide; }; Element.prototype.setTextGuideLine = function(guideLine) { if (this._textGuide && this._textGuide !== guideLine) this.removeTextGuideLine(); this._attachComponent(guideLine); this._textGuide = guideLine; this.markRedraw(); }; Element.prototype.removeTextGuideLine = function() { var textGuide = this._textGuide; if (textGuide) { this._detachComponent(textGuide); this._textGuide = null; this.markRedraw(); } }; Element.prototype.markRedraw = function() { this.__dirty |= 1; var zr = this.__zr; if (zr) if (this.__inHover) zr.refreshHover(); else zr.refresh(); if (this.__hostTarget) this.__hostTarget.markRedraw(); }; Element.prototype.dirty = function() { this.markRedraw(); }; Element.prototype.addSelfToZr = function(zr) { if (this.__zr === zr) return; this.__zr = zr; var animators = this.animators; if (animators) for (var i = 0; i < animators.length; i++) zr.animation.addAnimator(animators[i]); if (this._clipPath) this._clipPath.addSelfToZr(zr); if (this._textContent) this._textContent.addSelfToZr(zr); if (this._textGuide) this._textGuide.addSelfToZr(zr); }; Element.prototype.removeSelfFromZr = function(zr) { if (!this.__zr) return; this.__zr = null; var animators = this.animators; if (animators) for (var i = 0; i < animators.length; i++) zr.animation.removeAnimator(animators[i]); if (this._clipPath) this._clipPath.removeSelfFromZr(zr); if (this._textContent) this._textContent.removeSelfFromZr(zr); if (this._textGuide) this._textGuide.removeSelfFromZr(zr); }; Element.prototype.animate = function(key, loop, allowDiscreteAnimation) { var animator = new Animator(key ? this[key] : this, loop, allowDiscreteAnimation); key && (animator.targetName = key); this.addAnimator(animator, key); return animator; }; Element.prototype.addAnimator = function(animator, key) { var zr = this.__zr; var el = this; animator.during(function() { el.updateDuringAnimation(key); }).done(function() { var animators = el.animators; var idx = indexOf(animators, animator); if (idx >= 0) animators.splice(idx, 1); }); this.animators.push(animator); if (zr) zr.animation.addAnimator(animator); zr && zr.wakeUp(); }; Element.prototype.updateDuringAnimation = function(key) { this.markRedraw(); }; Element.prototype.stopAnimation = function(scope, forwardToLast) { var animators = this.animators; var len = animators.length; var leftAnimators = []; for (var i = 0; i < len; i++) { var animator = animators[i]; if (!scope || scope === animator.scope) animator.stop(forwardToLast); else leftAnimators.push(animator); } this.animators = leftAnimators; return this; }; Element.prototype.animateTo = function(target, cfg, animationProps) { animateTo(this, target, cfg, animationProps); }; Element.prototype.animateFrom = function(target, cfg, animationProps) { animateTo(this, target, cfg, animationProps, true); }; Element.prototype._transitionState = function(stateName, target, cfg, animationProps) { var animators = animateTo(this, target, cfg, animationProps); for (var i = 0; i < animators.length; i++) animators[i].__fromStateTransition = stateName; }; Element.prototype.getBoundingRect = function() { return null; }; Element.prototype.getPaintRect = function() { return null; }; Element.initDefaultProps = (function() { var elProto = Element.prototype; elProto.type = "element"; elProto.name = ""; elProto.ignore = elProto.silent = elProto.ignoreHostSilent = elProto.isGroup = elProto.draggable = elProto.dragging = elProto.ignoreClip = false; elProto.__inHover = 0; elProto.__dirty = 1; function createLegacyProperty(key, privateKey, xKey, yKey) { Object.defineProperty(elProto, key, { get: function() { if (!this[privateKey]) { var pos = this[privateKey] = []; enhanceArray(this, pos); } return this[privateKey]; }, set: function(pos) { this[xKey] = pos[0]; this[yKey] = pos[1]; this[privateKey] = pos; enhanceArray(this, pos); } }); function enhanceArray(self, pos) { Object.defineProperty(pos, 0, { get: function() { return self[xKey]; }, set: function(val) { self[xKey] = val; } }); Object.defineProperty(pos, 1, { get: function() { return self[yKey]; }, set: function(val) { self[yKey] = val; } }); } } if (Object.defineProperty) { createLegacyProperty("position", "_legacyPos", "x", "y"); createLegacyProperty("scale", "_legacyScale", "scaleX", "scaleY"); createLegacyProperty("origin", "_legacyOrigin", "originX", "originY"); } })(); return Element; }(); mixin(Element, Eventful); mixin(Element, Transformable); function animateTo(animatable, target, cfg, animationProps, reverse) { cfg = cfg || {}; var animators = []; animateToShallow(animatable, "", animatable, target, cfg, animationProps, animators, reverse); var finishCount = animators.length; var doneHappened = false; var cfgDone = cfg.done; var cfgAborted = cfg.aborted; var doneCb = function() { doneHappened = true; finishCount--; if (finishCount <= 0) doneHappened ? cfgDone && cfgDone() : cfgAborted && cfgAborted(); }; var abortedCb = function() { finishCount--; if (finishCount <= 0) doneHappened ? cfgDone && cfgDone() : cfgAborted && cfgAborted(); }; if (!finishCount) cfgDone && cfgDone(); if (animators.length > 0 && cfg.during) animators[0].during(function(target, percent) { cfg.during(percent); }); for (var i = 0; i < animators.length; i++) { var animator = animators[i]; if (doneCb) animator.done(doneCb); if (abortedCb) animator.aborted(abortedCb); if (cfg.force) animator.duration(cfg.duration); animator.start(cfg.easing); } return animators; } function copyArrShallow(source, target, len) { for (var i = 0; i < len; i++) source[i] = target[i]; } function is2DArray(value) { return isArrayLike(value[0]); } function copyValue(target, source, key) { if (isArrayLike(source[key])) { if (!isArrayLike(target[key])) target[key] = []; if (isTypedArray(source[key])) { var len = source[key].length; if (target[key].length !== len) { target[key] = new source[key].constructor(len); copyArrShallow(target[key], source[key], len); } } else { var sourceArr = source[key]; var targetArr = target[key]; var len0 = sourceArr.length; if (is2DArray(sourceArr)) { var len1 = sourceArr[0].length; for (var i = 0; i < len0; i++) if (!targetArr[i]) targetArr[i] = Array.prototype.slice.call(sourceArr[i]); else copyArrShallow(targetArr[i], sourceArr[i], len1); } else copyArrShallow(targetArr, sourceArr, len0); targetArr.length = sourceArr.length; } } else target[key] = source[key]; } function isValueSame(val1, val2) { return val1 === val2 || isArrayLike(val1) && isArrayLike(val2) && is1DArraySame(val1, val2); } function is1DArraySame(arr0, arr1) { var len = arr0.length; if (len !== arr1.length) return false; for (var i = 0; i < len; i++) if (arr0[i] !== arr1[i]) return false; return true; } function animateToShallow(animatable, topKey, animateObj, target, cfg, animationProps, animators, reverse) { var targetKeys = keys(target); var duration = cfg.duration; var delay = cfg.delay; var additive = cfg.additive; var setToFinal = cfg.setToFinal; var animateAll = !isObject$2(animationProps); var existsAnimators = animatable.animators; var animationKeys = []; for (var k = 0; k < targetKeys.length; k++) { var innerKey = targetKeys[k]; var targetVal = target[innerKey]; if (targetVal != null && animateObj[innerKey] != null && (animateAll || animationProps[innerKey])) if (isObject$2(targetVal) && !isArrayLike(targetVal) && !isGradientObject(targetVal)) { if (topKey) { if (!reverse) { animateObj[innerKey] = targetVal; animatable.updateDuringAnimation(topKey); } continue; } animateToShallow(animatable, innerKey, animateObj[innerKey], targetVal, cfg, animationProps && animationProps[innerKey], animators, reverse); } else animationKeys.push(innerKey); else if (!reverse) { animateObj[innerKey] = targetVal; animatable.updateDuringAnimation(topKey); animationKeys.push(innerKey); } } var keyLen = animationKeys.length; if (!additive && keyLen) for (var i = 0; i < existsAnimators.length; i++) { var animator = existsAnimators[i]; if (animator.targetName === topKey) { if (animator.stopTracks(animationKeys)) { var idx = indexOf(existsAnimators, animator); existsAnimators.splice(idx, 1); } } } if (!cfg.force) { animationKeys = filter(animationKeys, function(key) { return !isValueSame(target[key], animateObj[key]); }); keyLen = animationKeys.length; } if (keyLen > 0 || cfg.force && !animators.length) { var revertedSource = void 0; var reversedTarget = void 0; var sourceClone = void 0; if (reverse) { reversedTarget = {}; if (setToFinal) revertedSource = {}; for (var i = 0; i < keyLen; i++) { var innerKey = animationKeys[i]; reversedTarget[innerKey] = animateObj[innerKey]; if (setToFinal) revertedSource[innerKey] = target[innerKey]; else animateObj[innerKey] = target[innerKey]; } } else if (setToFinal) { sourceClone = {}; for (var i = 0; i < keyLen; i++) { var innerKey = animationKeys[i]; sourceClone[innerKey] = cloneValue(animateObj[innerKey]); copyValue(animateObj, target, innerKey); } } var animator = new Animator(animateObj, false, false, additive ? filter(existsAnimators, function(animator) { return animator.targetName === topKey; }) : null); animator.targetName = topKey; if (cfg.scope) animator.scope = cfg.scope; if (setToFinal && revertedSource) animator.whenWithKeys(0, revertedSource, animationKeys); if (sourceClone) animator.whenWithKeys(0, sourceClone, animationKeys); animator.whenWithKeys(duration == null ? 500 : duration, reverse ? reversedTarget : target, animationKeys).delay(delay || 0); animatable.addAnimator(animator, topKey); animators.push(animator); } } function shouldUseHoverLayer(el, textContent, nextState, forceUseHoverLayer) { return !(nextState && nextState.hoverLayer || forceUseHoverLayer) || isTextRelatedEl(el) || textContent && isTextRelatedEl(textContent) ? 0 : 1; } function isTextRelatedEl(el) { return el.type === "text" || el.type === "tspan"; } function canTransition(el, noAnimation, animationCfg) { return !noAnimation && !el.__inHover && animationCfg && animationCfg.duration > 0; } //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/graphic/Displayable.js var STYLE_MAGIC_KEY = "__zr_style_" + Math.round(Math.random() * 10); var DEFAULT_COMMON_STYLE = { shadowBlur: 0, shadowOffsetX: 0, shadowOffsetY: 0, shadowColor: "#000", opacity: 1, blend: "source-over" }; var DEFAULT_COMMON_ANIMATION_PROPS = { style: { shadowBlur: true, shadowOffsetX: true, shadowOffsetY: true, shadowColor: true, opacity: true } }; DEFAULT_COMMON_STYLE[STYLE_MAGIC_KEY] = true; var PRIMARY_STATES_KEYS = [ "z", "z2", "invisible" ]; var PRIMARY_STATES_KEYS_IN_HOVER_LAYER = ["invisible"]; var Displayable = function(_super) { __extends(Displayable, _super); function Displayable(props) { return _super.call(this, props) || this; } Displayable.prototype._init = function(props) { var keysArr = keys(props); for (var i = 0; i < keysArr.length; i++) { var key = keysArr[i]; if (key === "style") this.useStyle(props[key]); else _super.prototype.attrKV.call(this, key, props[key]); } if (!this.style) this.useStyle({}); }; Displayable.prototype.beforeBrush = function(param) {}; Displayable.prototype.afterBrush = function() {}; Displayable.prototype.innerBeforeBrush = function() {}; Displayable.prototype.innerAfterBrush = function() {}; Displayable.prototype.shouldBePainted = function(viewWidth, viewHeight, considerClipPath, considerAncestors) { var m = this.transform; if (this.ignore || this.invisible || this.style.opacity === 0 || this.culling && isDisplayableCulled(this, viewWidth, viewHeight) || m && !m[0] && !m[3]) return false; if (considerClipPath && this.__clipPaths && this.__clipPaths.length) { for (var i = 0; i < this.__clipPaths.length; ++i) if (this.__clipPaths[i].isZeroArea()) return false; } if (considerAncestors && this.parent) { var parent_1 = this.parent; while (parent_1) { if (parent_1.ignore) return false; parent_1 = parent_1.parent; } } return true; }; Displayable.prototype.contain = function(x, y) { return this.rectContain(x, y); }; Displayable.prototype.traverse = function(cb, context) { cb.call(context, this); }; Displayable.prototype.rectContain = function(x, y) { var coord = this.transformCoordToLocal(x, y); return this.getBoundingRect().contain(coord[0], coord[1]); }; Displayable.prototype.getPaintRect = function() { var rect = this._paintRect; if (!this._paintRect || this.__dirty) { var transform = this.transform; var elRect = this.getBoundingRect(); var style = this.style; var shadowSize = style.shadowBlur || 0; var shadowOffsetX = style.shadowOffsetX || 0; var shadowOffsetY = style.shadowOffsetY || 0; rect = this._paintRect || (this._paintRect = new BoundingRect(0, 0, 0, 0)); if (transform) BoundingRect.applyTransform(rect, elRect, transform); else rect.copy(elRect); if (shadowSize || shadowOffsetX || shadowOffsetY) { rect.width += shadowSize * 2 + Math.abs(shadowOffsetX); rect.height += shadowSize * 2 + Math.abs(shadowOffsetY); rect.x = Math.min(rect.x, rect.x + shadowOffsetX - shadowSize); rect.y = Math.min(rect.y, rect.y + shadowOffsetY - shadowSize); } var tolerance = this.dirtyRectTolerance; if (!rect.isZero()) { rect.x = Math.floor(rect.x - tolerance); rect.y = Math.floor(rect.y - tolerance); rect.width = Math.ceil(rect.width + 1 + tolerance * 2); rect.height = Math.ceil(rect.height + 1 + tolerance * 2); } } return rect; }; Displayable.prototype.setPrevPaintRect = function(paintRect) { if (paintRect) { this._prevPaintRect = this._prevPaintRect || new BoundingRect(0, 0, 0, 0); this._prevPaintRect.copy(paintRect); } else this._prevPaintRect = null; }; Displayable.prototype.getPrevPaintRect = function() { return this._prevPaintRect; }; Displayable.prototype.animateStyle = function(loop) { return this.animate("style", loop); }; Displayable.prototype.updateDuringAnimation = function(targetKey) { if (targetKey === "style") this.dirtyStyle(); else this.markRedraw(); }; Displayable.prototype.attrKV = function(key, value) { if (key !== "style") _super.prototype.attrKV.call(this, key, value); else if (!this.style) this.useStyle(value); else this.setStyle(value); }; Displayable.prototype.setStyle = function(keyOrObj, value) { if (typeof keyOrObj === "string") this.style[keyOrObj] = value; else extend(this.style, keyOrObj); this.dirtyStyle(); return this; }; Displayable.prototype.dirtyStyle = function(notRedraw) { if (!notRedraw) this.markRedraw(); this.__dirty |= 2; if (this._rect) this._rect = null; }; Displayable.prototype.dirty = function() { this.dirtyStyle(); }; Displayable.prototype.styleChanged = function() { return !!(this.__dirty & 2); }; Displayable.prototype.styleUpdated = function() { this.__dirty &= -3; }; Displayable.prototype.createStyle = function(obj) { return createObject(DEFAULT_COMMON_STYLE, obj); }; Displayable.prototype.useStyle = function(obj) { if (!obj[STYLE_MAGIC_KEY]) obj = this.createStyle(obj); this.style = obj; this.dirtyStyle(); }; Displayable.prototype._useHoverStyle = function(obj) { this.__hoverStyle = obj; }; Displayable.prototype.isStyleObject = function(obj) { return obj[STYLE_MAGIC_KEY]; }; Displayable.prototype._innerSaveToNormal = function(toState) { _super.prototype._innerSaveToNormal.call(this, toState); var normalState = this._normalState; if (toState.style && !normalState.style) normalState.style = this._mergeStyle(this.createStyle(), this.style); this._savePrimaryToNormal(toState, normalState, PRIMARY_STATES_KEYS); }; Displayable.prototype._applyStateObj = function(stateName, state, normalState, keepCurrentStates, transition, animationCfg) { _super.prototype._applyStateObj.call(this, stateName, state, normalState, keepCurrentStates, transition, animationCfg); var needsRestoreToNormal = !(state && keepCurrentStates); var inHoverOnlyStyleChange = this.__inHover === 1; var targetStyle; if (state && state.style) if (transition) if (keepCurrentStates) targetStyle = state.style; else { targetStyle = this._mergeStyle(this.createStyle(), normalState.style); this._mergeStyle(targetStyle, state.style); } else { targetStyle = this._mergeStyle(this.createStyle(), keepCurrentStates ? this.style : normalState.style); this._mergeStyle(targetStyle, state.style); } else if (needsRestoreToNormal) targetStyle = normalState.style; if (targetStyle) if (transition) { var sourceStyle = this.style; this.style = this.createStyle(needsRestoreToNormal ? {} : sourceStyle); if (needsRestoreToNormal) { var changedKeys = keys(sourceStyle); for (var i = 0; i < changedKeys.length; i++) { var key = changedKeys[i]; if (key in targetStyle) { targetStyle[key] = targetStyle[key]; this.style[key] = sourceStyle[key]; } } } var targetKeys = keys(targetStyle); for (var i = 0; i < targetKeys.length; i++) { var key = targetKeys[i]; this.style[key] = this.style[key]; } this._transitionState(stateName, { style: targetStyle }, animationCfg, this.getAnimationStyleProps()); } else if (inHoverOnlyStyleChange) this._useHoverStyle(targetStyle); else this.useStyle(targetStyle); if (!inHoverOnlyStyleChange) { var statesKeys = this.__inHover ? PRIMARY_STATES_KEYS_IN_HOVER_LAYER : PRIMARY_STATES_KEYS; for (var i = 0; i < statesKeys.length; i++) { var key = statesKeys[i]; if (state && state[key] != null) this[key] = state[key]; else if (needsRestoreToNormal) { if (normalState[key] != null) this[key] = normalState[key]; } } } }; Displayable.prototype._mergeStates = function(states) { var mergedState = _super.prototype._mergeStates.call(this, states); var mergedStyle; for (var i = 0; i < states.length; i++) { var state = states[i]; if (state.style) { mergedStyle = mergedStyle || {}; this._mergeStyle(mergedStyle, state.style); } } if (mergedStyle) mergedState.style = mergedStyle; return mergedState; }; Displayable.prototype._mergeStyle = function(targetStyle, sourceStyle) { extend(targetStyle, sourceStyle); return targetStyle; }; Displayable.prototype.getAnimationStyleProps = function() { return DEFAULT_COMMON_ANIMATION_PROPS; }; Displayable.initDefaultProps = (function() { var dispProto = Displayable.prototype; dispProto.type = "displayable"; dispProto.invisible = false; dispProto.z = 0; dispProto.z2 = 0; dispProto.zlevel = 0; dispProto.culling = false; dispProto.cursor = "pointer"; dispProto.rectHover = false; dispProto.incremental = 0; dispProto._rect = null; dispProto.dirtyRectTolerance = 0; dispProto.__dirty = 3; })(); return Displayable; }(Element); var tmpRect$1 = new BoundingRect(0, 0, 0, 0); var viewRect = new BoundingRect(0, 0, 0, 0); function isDisplayableCulled(el, width, height) { tmpRect$1.copy(el.getBoundingRect()); if (el.transform) tmpRect$1.applyTransform(el.transform); viewRect.width = width; viewRect.height = height; return !tmpRect$1.intersect(viewRect); } //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/core/bbox.js var mathMin$5 = Math.min; var mathMax$5 = Math.max; var mathSin$3 = Math.sin; var mathCos$3 = Math.cos; var PI2$5 = Math.PI * 2; var start = create(); var end = create(); var extremity = create(); function fromLine(x0, y0, x1, y1, min, max) { min[0] = mathMin$5(x0, x1); min[1] = mathMin$5(y0, y1); max[0] = mathMax$5(x0, x1); max[1] = mathMax$5(y0, y1); } var xDim = []; var yDim = []; function fromCubic(x0, y0, x1, y1, x2, y2, x3, y3, min, max) { var cubicExtrema$1 = cubicExtrema; var cubicAt$1 = cubicAt; var n = cubicExtrema$1(x0, x1, x2, x3, xDim); min[0] = Infinity; min[1] = Infinity; max[0] = -Infinity; max[1] = -Infinity; for (var i = 0; i < n; i++) { var x = cubicAt$1(x0, x1, x2, x3, xDim[i]); min[0] = mathMin$5(x, min[0]); max[0] = mathMax$5(x, max[0]); } n = cubicExtrema$1(y0, y1, y2, y3, yDim); for (var i = 0; i < n; i++) { var y = cubicAt$1(y0, y1, y2, y3, yDim[i]); min[1] = mathMin$5(y, min[1]); max[1] = mathMax$5(y, max[1]); } min[0] = mathMin$5(x0, min[0]); max[0] = mathMax$5(x0, max[0]); min[0] = mathMin$5(x3, min[0]); max[0] = mathMax$5(x3, max[0]); min[1] = mathMin$5(y0, min[1]); max[1] = mathMax$5(y0, max[1]); min[1] = mathMin$5(y3, min[1]); max[1] = mathMax$5(y3, max[1]); } function fromQuadratic(x0, y0, x1, y1, x2, y2, min, max) { var quadraticExtremum$1 = quadraticExtremum; var quadraticAt$1 = quadraticAt; var tx = mathMax$5(mathMin$5(quadraticExtremum$1(x0, x1, x2), 1), 0); var ty = mathMax$5(mathMin$5(quadraticExtremum$1(y0, y1, y2), 1), 0); var x = quadraticAt$1(x0, x1, x2, tx); var y = quadraticAt$1(y0, y1, y2, ty); min[0] = mathMin$5(x0, x2, x); min[1] = mathMin$5(y0, y2, y); max[0] = mathMax$5(x0, x2, x); max[1] = mathMax$5(y0, y2, y); } function fromArc(x, y, rx, ry, startAngle, endAngle, anticlockwise, min, max) { var vec2Min = min$1; var vec2Max = max$1; var diff = Math.abs(startAngle - endAngle); if (diff % PI2$5 < 1e-4 && diff > 1e-4) { min[0] = x - rx; min[1] = y - ry; max[0] = x + rx; max[1] = y + ry; return; } start[0] = mathCos$3(startAngle) * rx + x; start[1] = mathSin$3(startAngle) * ry + y; end[0] = mathCos$3(endAngle) * rx + x; end[1] = mathSin$3(endAngle) * ry + y; vec2Min(min, start, end); vec2Max(max, start, end); startAngle = startAngle % PI2$5; if (startAngle < 0) startAngle = startAngle + PI2$5; endAngle = endAngle % PI2$5; if (endAngle < 0) endAngle = endAngle + PI2$5; if (startAngle > endAngle && !anticlockwise) endAngle += PI2$5; else if (startAngle < endAngle && anticlockwise) startAngle += PI2$5; if (anticlockwise) { var tmp = endAngle; endAngle = startAngle; startAngle = tmp; } for (var angle = 0; angle < endAngle; angle += Math.PI / 2) if (angle > startAngle) { extremity[0] = mathCos$3(angle) * rx + x; extremity[1] = mathSin$3(angle) * ry + y; vec2Min(min, extremity, min); vec2Max(max, extremity, max); } } //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/core/PathProxy.js var CMD$2 = { M: 1, L: 2, C: 3, Q: 4, A: 5, Z: 6, R: 7 }; var tmpOutX = []; var tmpOutY = []; var min = []; var max = []; var min2 = []; var max2 = []; var mathMin$4 = Math.min; var mathMax$4 = Math.max; var mathCos$2 = Math.cos; var mathSin$2 = Math.sin; var mathAbs$3 = Math.abs; var PI$4 = Math.PI; var PI2$4 = PI$4 * 2; var hasTypedArray = typeof Float32Array !== "undefined"; var tmpAngles = []; function modPI2(radian) { return Math.round(radian / PI$4 * 1e8) / 1e8 % 2 * PI$4; } function normalizeArcAngles(angles, anticlockwise) { var newStartAngle = modPI2(angles[0]); if (newStartAngle < 0) newStartAngle += PI2$4; var delta = newStartAngle - angles[0]; var newEndAngle = angles[1]; newEndAngle += delta; if (!anticlockwise && newEndAngle - newStartAngle >= PI2$4) newEndAngle = newStartAngle + PI2$4; else if (anticlockwise && newStartAngle - newEndAngle >= PI2$4) newEndAngle = newStartAngle - PI2$4; else if (!anticlockwise && newStartAngle > newEndAngle) newEndAngle = newStartAngle + (PI2$4 - modPI2(newStartAngle - newEndAngle)); else if (anticlockwise && newStartAngle < newEndAngle) newEndAngle = newStartAngle - (PI2$4 - modPI2(newEndAngle - newStartAngle)); angles[0] = newStartAngle; angles[1] = newEndAngle; } var PathProxy = function() { function PathProxy(notSaveData) { this.dpr = 1; this._xi = 0; this._yi = 0; this._x0 = 0; this._y0 = 0; this._len = 0; if (notSaveData) this._saveData = false; if (this._saveData) this.data = []; } PathProxy.prototype.increaseVersion = function() { this._version++; }; PathProxy.prototype.getVersion = function() { return this._version; }; PathProxy.prototype.setScale = function(sx, sy, segmentIgnoreThreshold) { segmentIgnoreThreshold = segmentIgnoreThreshold || 0; if (segmentIgnoreThreshold > 0) { this._ux = mathAbs$3(segmentIgnoreThreshold / devicePixelRatio / sx) || 0; this._uy = mathAbs$3(segmentIgnoreThreshold / devicePixelRatio / sy) || 0; } }; PathProxy.prototype.setDPR = function(dpr) { this.dpr = dpr; }; PathProxy.prototype.setContext = function(ctx) { this._ctx = ctx; }; PathProxy.prototype.getContext = function() { return this._ctx; }; PathProxy.prototype.beginPath = function() { this._ctx && this._ctx.beginPath(); this.reset(); return this; }; PathProxy.prototype.reset = function() { if (this._saveData) this._len = 0; if (this._pathSegLen) { this._pathSegLen = null; this._pathLen = 0; } this._version++; }; PathProxy.prototype.moveTo = function(x, y) { this._drawPendingPt(); this.addData(CMD$2.M, x, y); this._ctx && this._ctx.moveTo(x, y); this._x0 = x; this._y0 = y; this._xi = x; this._yi = y; return this; }; PathProxy.prototype.lineTo = function(x, y) { var dx = mathAbs$3(x - this._xi); var dy = mathAbs$3(y - this._yi); var exceedUnit = dx > this._ux || dy > this._uy; this.addData(CMD$2.L, x, y); if (this._ctx && exceedUnit) this._ctx.lineTo(x, y); if (exceedUnit) { this._xi = x; this._yi = y; this._pendingPtDist = 0; } else { var d2 = dx * dx + dy * dy; if (d2 > this._pendingPtDist) { this._pendingPtX = x; this._pendingPtY = y; this._pendingPtDist = d2; } } return this; }; PathProxy.prototype.bezierCurveTo = function(x1, y1, x2, y2, x3, y3) { this._drawPendingPt(); this.addData(CMD$2.C, x1, y1, x2, y2, x3, y3); if (this._ctx) this._ctx.bezierCurveTo(x1, y1, x2, y2, x3, y3); this._xi = x3; this._yi = y3; return this; }; PathProxy.prototype.quadraticCurveTo = function(x1, y1, x2, y2) { this._drawPendingPt(); this.addData(CMD$2.Q, x1, y1, x2, y2); if (this._ctx) this._ctx.quadraticCurveTo(x1, y1, x2, y2); this._xi = x2; this._yi = y2; return this; }; PathProxy.prototype.arc = function(cx, cy, r, startAngle, endAngle, anticlockwise) { this._drawPendingPt(); tmpAngles[0] = startAngle; tmpAngles[1] = endAngle; normalizeArcAngles(tmpAngles, anticlockwise); startAngle = tmpAngles[0]; endAngle = tmpAngles[1]; var delta = endAngle - startAngle; this.addData(CMD$2.A, cx, cy, r, r, startAngle, delta, 0, anticlockwise ? 0 : 1); this._ctx && this._ctx.arc(cx, cy, r, startAngle, endAngle, anticlockwise); this._xi = mathCos$2(endAngle) * r + cx; this._yi = mathSin$2(endAngle) * r + cy; return this; }; PathProxy.prototype.arcTo = function(x1, y1, x2, y2, radius) { this._drawPendingPt(); if (this._ctx) this._ctx.arcTo(x1, y1, x2, y2, radius); return this; }; PathProxy.prototype.rect = function(x, y, w, h) { this._drawPendingPt(); this._ctx && this._ctx.rect(x, y, w, h); this.addData(CMD$2.R, x, y, w, h); return this; }; PathProxy.prototype.closePath = function() { this._drawPendingPt(); this.addData(CMD$2.Z); var ctx = this._ctx; var x0 = this._x0; var y0 = this._y0; if (ctx) ctx.closePath(); this._xi = x0; this._yi = y0; return this; }; PathProxy.prototype.fill = function(ctx) { ctx && ctx.fill(); this.toStatic(); }; PathProxy.prototype.stroke = function(ctx) { ctx && ctx.stroke(); this.toStatic(); }; PathProxy.prototype.len = function() { return this._len; }; PathProxy.prototype.setData = function(data) { if (!this._saveData) return; var len = data.length; if (!(this.data && this.data.length === len) && hasTypedArray) this.data = new Float32Array(len); for (var i = 0; i < len; i++) this.data[i] = data[i]; this._len = len; }; PathProxy.prototype.appendPath = function(path) { if (!this._saveData) return; if (!(path instanceof Array)) path = [path]; var len = path.length; var appendSize = 0; var offset = this._len; for (var i = 0; i < len; i++) appendSize += path[i].len(); var oldData = this.data; if (hasTypedArray && (oldData instanceof Float32Array || !oldData)) { this.data = new Float32Array(offset + appendSize); if (offset > 0 && oldData) for (var k = 0; k < offset; k++) this.data[k] = oldData[k]; } for (var i = 0; i < len; i++) { var appendPathData = path[i].data; for (var k = 0; k < appendPathData.length; k++) this.data[offset++] = appendPathData[k]; } this._len = offset; }; PathProxy.prototype.addData = function(cmd, a, b, c, d, e, f, g, h) { if (!this._saveData) return; var data = this.data; if (this._len + arguments.length > data.length) { this._expandData(); data = this.data; } for (var i = 0; i < arguments.length; i++) data[this._len++] = arguments[i]; }; PathProxy.prototype._drawPendingPt = function() { if (this._pendingPtDist > 0) { this._ctx && this._ctx.lineTo(this._pendingPtX, this._pendingPtY); this._pendingPtDist = 0; } }; PathProxy.prototype._expandData = function() { if (!(this.data instanceof Array)) { var newData = []; for (var i = 0; i < this._len; i++) newData[i] = this.data[i]; this.data = newData; } }; PathProxy.prototype.toStatic = function() { if (!this._saveData) return; this._drawPendingPt(); var data = this.data; if (data instanceof Array) { data.length = this._len; if (hasTypedArray && this._len > 11) this.data = new Float32Array(data); } }; PathProxy.prototype.getBoundingRect = function() { min[0] = min[1] = min2[0] = min2[1] = Number.MAX_VALUE; max[0] = max[1] = max2[0] = max2[1] = -Number.MAX_VALUE; var data = this.data; var xi = 0; var yi = 0; var x0 = 0; var y0 = 0; var i; for (i = 0; i < this._len;) { var cmd = data[i++]; var isFirst = i === 1; if (isFirst) { xi = data[i]; yi = data[i + 1]; x0 = xi; y0 = yi; } switch (cmd) { case CMD$2.M: xi = x0 = data[i++]; yi = y0 = data[i++]; min2[0] = x0; min2[1] = y0; max2[0] = x0; max2[1] = y0; break; case CMD$2.L: fromLine(xi, yi, data[i], data[i + 1], min2, max2); xi = data[i++]; yi = data[i++]; break; case CMD$2.C: fromCubic(xi, yi, data[i++], data[i++], data[i++], data[i++], data[i], data[i + 1], min2, max2); xi = data[i++]; yi = data[i++]; break; case CMD$2.Q: fromQuadratic(xi, yi, data[i++], data[i++], data[i], data[i + 1], min2, max2); xi = data[i++]; yi = data[i++]; break; case CMD$2.A: var cx = data[i++]; var cy = data[i++]; var rx = data[i++]; var ry = data[i++]; var startAngle = data[i++]; var endAngle = data[i++] + startAngle; i += 1; var anticlockwise = !data[i++]; if (isFirst) { x0 = mathCos$2(startAngle) * rx + cx; y0 = mathSin$2(startAngle) * ry + cy; } fromArc(cx, cy, rx, ry, startAngle, endAngle, anticlockwise, min2, max2); xi = mathCos$2(endAngle) * rx + cx; yi = mathSin$2(endAngle) * ry + cy; break; case CMD$2.R: x0 = xi = data[i++]; y0 = yi = data[i++]; var width = data[i++]; var height = data[i++]; fromLine(x0, y0, x0 + width, y0 + height, min2, max2); break; case CMD$2.Z: xi = x0; yi = y0; break; } min$1(min, min, min2); max$1(max, max, max2); } if (i === 0) min[0] = min[1] = max[0] = max[1] = 0; return new BoundingRect(min[0], min[1], max[0] - min[0], max[1] - min[1]); }; PathProxy.prototype._calculateLength = function() { var data = this.data; var len = this._len; var ux = this._ux; var uy = this._uy; var xi = 0; var yi = 0; var x0 = 0; var y0 = 0; if (!this._pathSegLen) this._pathSegLen = []; var pathSegLen = this._pathSegLen; var pathTotalLen = 0; var segCount = 0; for (var i = 0; i < len;) { var cmd = data[i++]; var isFirst = i === 1; if (isFirst) { xi = data[i]; yi = data[i + 1]; x0 = xi; y0 = yi; } var l = -1; switch (cmd) { case CMD$2.M: xi = x0 = data[i++]; yi = y0 = data[i++]; break; case CMD$2.L: var x2 = data[i++]; var y2 = data[i++]; var dx = x2 - xi; var dy = y2 - yi; if (mathAbs$3(dx) > ux || mathAbs$3(dy) > uy || i === len - 1) { l = Math.sqrt(dx * dx + dy * dy); xi = x2; yi = y2; } break; case CMD$2.C: var x1 = data[i++]; var y1 = data[i++]; var x2 = data[i++]; var y2 = data[i++]; var x3 = data[i++]; var y3 = data[i++]; l = cubicLength(xi, yi, x1, y1, x2, y2, x3, y3, 10); xi = x3; yi = y3; break; case CMD$2.Q: var x1 = data[i++]; var y1 = data[i++]; var x2 = data[i++]; var y2 = data[i++]; l = quadraticLength(xi, yi, x1, y1, x2, y2, 10); xi = x2; yi = y2; break; case CMD$2.A: var cx = data[i++]; var cy = data[i++]; var rx = data[i++]; var ry = data[i++]; var startAngle = data[i++]; var delta = data[i++]; var endAngle = delta + startAngle; i += 1; if (isFirst) { x0 = mathCos$2(startAngle) * rx + cx; y0 = mathSin$2(startAngle) * ry + cy; } l = mathMax$4(rx, ry) * mathMin$4(PI2$4, Math.abs(delta)); xi = mathCos$2(endAngle) * rx + cx; yi = mathSin$2(endAngle) * ry + cy; break; case CMD$2.R: x0 = xi = data[i++]; y0 = yi = data[i++]; var width = data[i++]; var height = data[i++]; l = width * 2 + height * 2; break; case CMD$2.Z: var dx = x0 - xi; var dy = y0 - yi; l = Math.sqrt(dx * dx + dy * dy); xi = x0; yi = y0; break; } if (l >= 0) { pathSegLen[segCount++] = l; pathTotalLen += l; } } this._pathLen = pathTotalLen; return pathTotalLen; }; PathProxy.prototype.rebuildPath = function(ctx, percent) { var d = this.data; var ux = this._ux; var uy = this._uy; var len = this._len; var x0; var y0; var xi; var yi; var x; var y; var drawPart = percent < 1; var pathSegLen; var pathTotalLen; var accumLength = 0; var segCount = 0; var displayedLength; var pendingPtDist = 0; var pendingPtX; var pendingPtY; if (drawPart) { if (!this._pathSegLen) this._calculateLength(); pathSegLen = this._pathSegLen; pathTotalLen = this._pathLen; displayedLength = percent * pathTotalLen; if (!displayedLength) return; } lo: for (var i = 0; i < len;) { var cmd = d[i++]; var isFirst = i === 1; if (isFirst) { xi = d[i]; yi = d[i + 1]; x0 = xi; y0 = yi; } if (cmd !== CMD$2.L && pendingPtDist > 0) { ctx.lineTo(pendingPtX, pendingPtY); pendingPtDist = 0; } switch (cmd) { case CMD$2.M: x0 = xi = d[i++]; y0 = yi = d[i++]; ctx.moveTo(xi, yi); break; case CMD$2.L: x = d[i++]; y = d[i++]; var dx = mathAbs$3(x - xi); var dy = mathAbs$3(y - yi); if (dx > ux || dy > uy) { if (drawPart) { var l = pathSegLen[segCount++]; if (accumLength + l > displayedLength) { var t = (displayedLength - accumLength) / l; ctx.lineTo(xi * (1 - t) + x * t, yi * (1 - t) + y * t); break lo; } accumLength += l; } ctx.lineTo(x, y); xi = x; yi = y; pendingPtDist = 0; } else { var d2 = dx * dx + dy * dy; if (d2 > pendingPtDist) { pendingPtX = x; pendingPtY = y; pendingPtDist = d2; } } break; case CMD$2.C: var x1 = d[i++]; var y1 = d[i++]; var x2 = d[i++]; var y2 = d[i++]; var x3 = d[i++]; var y3 = d[i++]; if (drawPart) { var l = pathSegLen[segCount++]; if (accumLength + l > displayedLength) { var t = (displayedLength - accumLength) / l; cubicSubdivide(xi, x1, x2, x3, t, tmpOutX); cubicSubdivide(yi, y1, y2, y3, t, tmpOutY); ctx.bezierCurveTo(tmpOutX[1], tmpOutY[1], tmpOutX[2], tmpOutY[2], tmpOutX[3], tmpOutY[3]); break lo; } accumLength += l; } ctx.bezierCurveTo(x1, y1, x2, y2, x3, y3); xi = x3; yi = y3; break; case CMD$2.Q: var x1 = d[i++]; var y1 = d[i++]; var x2 = d[i++]; var y2 = d[i++]; if (drawPart) { var l = pathSegLen[segCount++]; if (accumLength + l > displayedLength) { var t = (displayedLength - accumLength) / l; quadraticSubdivide(xi, x1, x2, t, tmpOutX); quadraticSubdivide(yi, y1, y2, t, tmpOutY); ctx.quadraticCurveTo(tmpOutX[1], tmpOutY[1], tmpOutX[2], tmpOutY[2]); break lo; } accumLength += l; } ctx.quadraticCurveTo(x1, y1, x2, y2); xi = x2; yi = y2; break; case CMD$2.A: var cx = d[i++]; var cy = d[i++]; var rx = d[i++]; var ry = d[i++]; var startAngle = d[i++]; var delta = d[i++]; var psi = d[i++]; var anticlockwise = !d[i++]; var r = rx > ry ? rx : ry; var isEllipse = mathAbs$3(rx - ry) > .001; var endAngle = startAngle + delta; var breakBuild = false; if (drawPart) { var l = pathSegLen[segCount++]; if (accumLength + l > displayedLength) { endAngle = startAngle + delta * (displayedLength - accumLength) / l; breakBuild = true; } accumLength += l; } if (isEllipse && ctx.ellipse) ctx.ellipse(cx, cy, rx, ry, psi, startAngle, endAngle, anticlockwise); else ctx.arc(cx, cy, r, startAngle, endAngle, anticlockwise); if (breakBuild) break lo; if (isFirst) { x0 = mathCos$2(startAngle) * rx + cx; y0 = mathSin$2(startAngle) * ry + cy; } xi = mathCos$2(endAngle) * rx + cx; yi = mathSin$2(endAngle) * ry + cy; break; case CMD$2.R: x0 = xi = d[i]; y0 = yi = d[i + 1]; x = d[i++]; y = d[i++]; var width = d[i++]; var height = d[i++]; if (drawPart) { var l = pathSegLen[segCount++]; if (accumLength + l > displayedLength) { var d_1 = displayedLength - accumLength; ctx.moveTo(x, y); ctx.lineTo(x + mathMin$4(d_1, width), y); d_1 -= width; if (d_1 > 0) ctx.lineTo(x + width, y + mathMin$4(d_1, height)); d_1 -= height; if (d_1 > 0) ctx.lineTo(x + mathMax$4(width - d_1, 0), y + height); d_1 -= width; if (d_1 > 0) ctx.lineTo(x, y + mathMax$4(height - d_1, 0)); break lo; } accumLength += l; } ctx.rect(x, y, width, height); break; case CMD$2.Z: if (drawPart) { var l = pathSegLen[segCount++]; if (accumLength + l > displayedLength) { var t = (displayedLength - accumLength) / l; ctx.lineTo(xi * (1 - t) + x0 * t, yi * (1 - t) + y0 * t); break lo; } accumLength += l; } ctx.closePath(); xi = x0; yi = y0; } } }; PathProxy.prototype.clone = function() { var newProxy = new PathProxy(); var data = this.data; newProxy.data = data.slice ? data.slice() : Array.prototype.slice.call(data); newProxy._len = this._len; return newProxy; }; PathProxy.prototype.canSave = function() { return !!this._saveData; }; PathProxy.CMD = CMD$2; PathProxy.initDefaultProps = (function() { var proto = PathProxy.prototype; proto._saveData = true; proto._ux = 0; proto._uy = 0; proto._pendingPtDist = 0; proto._version = 0; })(); return PathProxy; }(); //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/contain/line.js function containStroke$4(x0, y0, x1, y1, lineWidth, x, y) { if (lineWidth === 0) return false; var _l = lineWidth; var _a = 0; var _b = x0; if (y > y0 + _l && y > y1 + _l || y < y0 - _l && y < y1 - _l || x > x0 + _l && x > x1 + _l || x < x0 - _l && x < x1 - _l) return false; if (x0 !== x1) { _a = (y0 - y1) / (x0 - x1); _b = (x0 * y1 - x1 * y0) / (x0 - x1); } else return Math.abs(x - x0) <= _l / 2; var tmp = _a * x - y + _b; return tmp * tmp / (_a * _a + 1) <= _l / 2 * _l / 2; } //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/contain/cubic.js function containStroke$3(x0, y0, x1, y1, x2, y2, x3, y3, lineWidth, x, y) { if (lineWidth === 0) return false; var _l = lineWidth; if (y > y0 + _l && y > y1 + _l && y > y2 + _l && y > y3 + _l || y < y0 - _l && y < y1 - _l && y < y2 - _l && y < y3 - _l || x > x0 + _l && x > x1 + _l && x > x2 + _l && x > x3 + _l || x < x0 - _l && x < x1 - _l && x < x2 - _l && x < x3 - _l) return false; return cubicProjectPoint(x0, y0, x1, y1, x2, y2, x3, y3, x, y, null) <= _l / 2; } //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/contain/quadratic.js function containStroke$2(x0, y0, x1, y1, x2, y2, lineWidth, x, y) { if (lineWidth === 0) return false; var _l = lineWidth; if (y > y0 + _l && y > y1 + _l && y > y2 + _l || y < y0 - _l && y < y1 - _l && y < y2 - _l || x > x0 + _l && x > x1 + _l && x > x2 + _l || x < x0 - _l && x < x1 - _l && x < x2 - _l) return false; return quadraticProjectPoint(x0, y0, x1, y1, x2, y2, x, y, null) <= _l / 2; } //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/contain/util.js var PI2$3 = Math.PI * 2; function normalizeRadian(angle) { angle %= PI2$3; if (angle < 0) angle += PI2$3; return angle; } //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/contain/arc.js var PI2$2 = Math.PI * 2; function containStroke$1(cx, cy, r, startAngle, endAngle, anticlockwise, lineWidth, x, y) { if (lineWidth === 0) return false; var _l = lineWidth; x -= cx; y -= cy; var d = Math.sqrt(x * x + y * y); if (d - _l > r || d + _l < r) return false; if (Math.abs(startAngle - endAngle) % PI2$2 < 1e-4) return true; if (anticlockwise) { var tmp = startAngle; startAngle = normalizeRadian(endAngle); endAngle = normalizeRadian(tmp); } else { startAngle = normalizeRadian(startAngle); endAngle = normalizeRadian(endAngle); } if (startAngle > endAngle) endAngle += PI2$2; var angle = Math.atan2(y, x); if (angle < 0) angle += PI2$2; return angle >= startAngle && angle <= endAngle || angle + PI2$2 >= startAngle && angle + PI2$2 <= endAngle; } //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/contain/windingLine.js function windingLine(x0, y0, x1, y1, x, y) { if (y > y0 && y > y1 || y < y0 && y < y1) return 0; if (y1 === y0) return 0; var t = (y - y0) / (y1 - y0); var dir = y1 < y0 ? 1 : -1; if (t === 1 || t === 0) dir = y1 < y0 ? .5 : -.5; var x_ = t * (x1 - x0) + x0; return x_ === x ? Infinity : x_ > x ? dir : 0; } //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/contain/path.js var CMD$1 = PathProxy.CMD; var PI2$1 = Math.PI * 2; var EPSILON = 1e-4; function isAroundEqual(a, b) { return Math.abs(a - b) < EPSILON; } var roots = [ -1, -1, -1 ]; var extrema = [-1, -1]; function swapExtrema() { var tmp = extrema[0]; extrema[0] = extrema[1]; extrema[1] = tmp; } function windingCubic(x0, y0, x1, y1, x2, y2, x3, y3, x, y) { if (y > y0 && y > y1 && y > y2 && y > y3 || y < y0 && y < y1 && y < y2 && y < y3) return 0; var nRoots = cubicRootAt(y0, y1, y2, y3, y, roots); if (nRoots === 0) return 0; else { var w = 0; var nExtrema = -1; var y0_ = void 0; var y1_ = void 0; for (var i = 0; i < nRoots; i++) { var t = roots[i]; var unit = t === 0 || t === 1 ? .5 : 1; if (cubicAt(x0, x1, x2, x3, t) < x) continue; if (nExtrema < 0) { nExtrema = cubicExtrema(y0, y1, y2, y3, extrema); if (extrema[1] < extrema[0] && nExtrema > 1) swapExtrema(); y0_ = cubicAt(y0, y1, y2, y3, extrema[0]); if (nExtrema > 1) y1_ = cubicAt(y0, y1, y2, y3, extrema[1]); } if (nExtrema === 2) if (t < extrema[0]) w += y0_ < y0 ? unit : -unit; else if (t < extrema[1]) w += y1_ < y0_ ? unit : -unit; else w += y3 < y1_ ? unit : -unit; else if (t < extrema[0]) w += y0_ < y0 ? unit : -unit; else w += y3 < y0_ ? unit : -unit; } return w; } } function windingQuadratic(x0, y0, x1, y1, x2, y2, x, y) { if (y > y0 && y > y1 && y > y2 || y < y0 && y < y1 && y < y2) return 0; var nRoots = quadraticRootAt(y0, y1, y2, y, roots); if (nRoots === 0) return 0; else { var t = quadraticExtremum(y0, y1, y2); if (t >= 0 && t <= 1) { var w = 0; var y_ = quadraticAt(y0, y1, y2, t); for (var i = 0; i < nRoots; i++) { var unit = roots[i] === 0 || roots[i] === 1 ? .5 : 1; var x_ = quadraticAt(x0, x1, x2, roots[i]); if (x_ < x) continue; if (roots[i] < t) w += y_ < y0 ? unit : -unit; else w += y2 < y_ ? unit : -unit; } return w; } else { var unit = roots[0] === 0 || roots[0] === 1 ? .5 : 1; var x_ = quadraticAt(x0, x1, x2, roots[0]); if (x_ < x) return 0; return y2 < y0 ? unit : -unit; } } } function windingArc(cx, cy, r, startAngle, endAngle, anticlockwise, x, y) { y -= cy; if (y > r || y < -r) return 0; var tmp = Math.sqrt(r * r - y * y); roots[0] = -tmp; roots[1] = tmp; var dTheta = Math.abs(startAngle - endAngle); if (dTheta < 1e-4) return 0; if (dTheta >= PI2$1 - 1e-4) { startAngle = 0; endAngle = PI2$1; var dir = anticlockwise ? 1 : -1; if (x >= roots[0] + cx && x <= roots[1] + cx) return dir; else return 0; } if (startAngle > endAngle) { var tmp_1 = startAngle; startAngle = endAngle; endAngle = tmp_1; } if (startAngle < 0) { startAngle += PI2$1; endAngle += PI2$1; } var w = 0; for (var i = 0; i < 2; i++) { var x_ = roots[i]; if (x_ + cx > x) { var angle = Math.atan2(y, x_); var dir = anticlockwise ? 1 : -1; if (angle < 0) angle = PI2$1 + angle; if (angle >= startAngle && angle <= endAngle || angle + PI2$1 >= startAngle && angle + PI2$1 <= endAngle) { if (angle > Math.PI / 2 && angle < Math.PI * 1.5) dir = -dir; w += dir; } } } return w; } function containPath(path, lineWidth, isStroke, x, y) { var data = path.data; var len = path.len(); var w = 0; var xi = 0; var yi = 0; var x0 = 0; var y0 = 0; var x1; var y1; for (var i = 0; i < len;) { var cmd = data[i++]; var isFirst = i === 1; if (cmd === CMD$1.M && i > 1) { if (!isStroke) w += windingLine(xi, yi, x0, y0, x, y); } if (isFirst) { xi = data[i]; yi = data[i + 1]; x0 = xi; y0 = yi; } switch (cmd) { case CMD$1.M: x0 = data[i++]; y0 = data[i++]; xi = x0; yi = y0; break; case CMD$1.L: if (isStroke) { if (containStroke$4(xi, yi, data[i], data[i + 1], lineWidth, x, y)) return true; } else w += windingLine(xi, yi, data[i], data[i + 1], x, y) || 0; xi = data[i++]; yi = data[i++]; break; case CMD$1.C: if (isStroke) { if (containStroke$3(xi, yi, data[i++], data[i++], data[i++], data[i++], data[i], data[i + 1], lineWidth, x, y)) return true; } else w += windingCubic(xi, yi, data[i++], data[i++], data[i++], data[i++], data[i], data[i + 1], x, y) || 0; xi = data[i++]; yi = data[i++]; break; case CMD$1.Q: if (isStroke) { if (containStroke$2(xi, yi, data[i++], data[i++], data[i], data[i + 1], lineWidth, x, y)) return true; } else w += windingQuadratic(xi, yi, data[i++], data[i++], data[i], data[i + 1], x, y) || 0; xi = data[i++]; yi = data[i++]; break; case CMD$1.A: var cx = data[i++]; var cy = data[i++]; var rx = data[i++]; var ry = data[i++]; var theta = data[i++]; var dTheta = data[i++]; i += 1; var anticlockwise = !!(1 - data[i++]); x1 = Math.cos(theta) * rx + cx; y1 = Math.sin(theta) * ry + cy; if (!isFirst) w += windingLine(xi, yi, x1, y1, x, y); else { x0 = x1; y0 = y1; } var _x = (x - cx) * ry / rx + cx; if (isStroke) { if (containStroke$1(cx, cy, ry, theta, theta + dTheta, anticlockwise, lineWidth, _x, y)) return true; } else w += windingArc(cx, cy, ry, theta, theta + dTheta, anticlockwise, _x, y); xi = Math.cos(theta + dTheta) * rx + cx; yi = Math.sin(theta + dTheta) * ry + cy; break; case CMD$1.R: x0 = xi = data[i++]; y0 = yi = data[i++]; var width = data[i++]; var height = data[i++]; x1 = x0 + width; y1 = y0 + height; if (isStroke) { if (containStroke$4(x0, y0, x1, y0, lineWidth, x, y) || containStroke$4(x1, y0, x1, y1, lineWidth, x, y) || containStroke$4(x1, y1, x0, y1, lineWidth, x, y) || containStroke$4(x0, y1, x0, y0, lineWidth, x, y)) return true; } else { w += windingLine(x1, y0, x1, y1, x, y); w += windingLine(x0, y1, x0, y0, x, y); } break; case CMD$1.Z: if (isStroke) { if (containStroke$4(xi, yi, x0, y0, lineWidth, x, y)) return true; } else w += windingLine(xi, yi, x0, y0, x, y); xi = x0; yi = y0; break; } } if (!isStroke && !isAroundEqual(yi, y0)) w += windingLine(xi, yi, x0, y0, x, y) || 0; return w !== 0; } function contain(pathProxy, x, y) { return containPath(pathProxy, 0, false, x, y); } function containStroke(pathProxy, lineWidth, x, y) { return containPath(pathProxy, lineWidth, true, x, y); } //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/graphic/Path.js var DEFAULT_PATH_STYLE = defaults({ fill: "#000", stroke: null, strokePercent: 1, fillOpacity: 1, strokeOpacity: 1, lineDashOffset: 0, lineWidth: 1, lineCap: "butt", miterLimit: 10, strokeNoScale: false, strokeFirst: false }, DEFAULT_COMMON_STYLE); var DEFAULT_PATH_ANIMATION_PROPS = { style: defaults({ fill: true, stroke: true, strokePercent: true, fillOpacity: true, strokeOpacity: true, lineDashOffset: true, lineWidth: true, miterLimit: true }, DEFAULT_COMMON_ANIMATION_PROPS.style) }; var pathCopyParams = TRANSFORMABLE_PROPS.concat([ "invisible", "culling", "z", "z2", "zlevel", "parent" ]); var Path = function(_super) { __extends(Path, _super); function Path(opts) { return _super.call(this, opts) || this; } Path.prototype.update = function() { var _this = this; _super.prototype.update.call(this); var style = this.style; if (style.decal) { var decalEl = this._decalEl = this._decalEl || new Path(); if (decalEl.buildPath === Path.prototype.buildPath) decalEl.buildPath = function(ctx) { _this.buildPath(ctx, _this.shape); }; decalEl.silent = true; var decalElStyle = decalEl.style; for (var key in style) if (decalElStyle[key] !== style[key]) decalElStyle[key] = style[key]; decalElStyle.fill = style.fill ? style.decal : null; decalElStyle.decal = null; decalElStyle.shadowColor = null; style.strokeFirst && (decalElStyle.stroke = null); for (var i = 0; i < pathCopyParams.length; ++i) decalEl[pathCopyParams[i]] = this[pathCopyParams[i]]; decalEl.__dirty |= 1; } else if (this._decalEl) this._decalEl = null; }; Path.prototype.getDecalElement = function() { return this._decalEl; }; Path.prototype._init = function(props) { var keysArr = keys(props); this.shape = this.getDefaultShape(); var defaultStyle = this.getDefaultStyle(); if (defaultStyle) this.useStyle(defaultStyle); for (var i = 0; i < keysArr.length; i++) { var key = keysArr[i]; var value = props[key]; if (key === "style") if (!this.style) this.useStyle(value); else extend(this.style, value); else if (key === "shape") extend(this.shape, value); else _super.prototype.attrKV.call(this, key, value); } if (!this.style) this.useStyle({}); }; Path.prototype.getDefaultStyle = function() { return null; }; Path.prototype.getDefaultShape = function() { return {}; }; Path.prototype.canBeInsideText = function() { return this.hasFill(); }; Path.prototype.getInsideTextFill = function() { var pathFill = this.style.fill; if (pathFill !== "none") { if (isString(pathFill)) { var fillLum = lum(pathFill, 0); if (fillLum > .5) return DARK_LABEL_COLOR; else if (fillLum > .2) return LIGHTER_LABEL_COLOR; return LIGHT_LABEL_COLOR; } else if (pathFill) return LIGHT_LABEL_COLOR; } return DARK_LABEL_COLOR; }; Path.prototype.getInsideTextStroke = function(textFill) { var pathFill = this.style.fill; if (isString(pathFill)) { var zr = this.__zr; if (!!(zr && zr.isDarkMode()) === lum(textFill, 0) < .4) return pathFill; } }; Path.prototype.buildPath = function(ctx, shapeCfg, inBatch) {}; Path.prototype.pathUpdated = function() { this.__dirty &= -5; }; Path.prototype.getUpdatedPathProxy = function(inBatch) { !this.path && this.createPathProxy(); this.path.beginPath(); this.buildPath(this.path, this.shape, inBatch); return this.path; }; Path.prototype.createPathProxy = function() { this.path = new PathProxy(false); }; Path.prototype.hasStroke = function() { var style = this.style; var stroke = style.stroke; return !(stroke == null || stroke === "none" || !(style.lineWidth > 0)); }; Path.prototype.hasFill = function() { var fill = this.style.fill; return fill != null && fill !== "none"; }; Path.prototype.getBoundingRect = function() { var rect = this._rect; var style = this.style; var needsUpdateRect = !rect; if (needsUpdateRect) { var firstInvoke = false; if (!this.path) { firstInvoke = true; this.createPathProxy(); } var path = this.path; if (firstInvoke || this.__dirty & 4) { path.beginPath(); this.buildPath(path, this.shape, false); this.pathUpdated(); } rect = path.getBoundingRect(); } this._rect = rect; if (this.hasStroke() && this.path && this.path.len() > 0) { var rectStroke = this._rectStroke || (this._rectStroke = rect.clone()); if (this.__dirty || needsUpdateRect) { rectStroke.copy(rect); var lineScale = style.strokeNoScale ? this.getLineScale() : 1; var w = style.lineWidth; if (!this.hasFill()) { var strokeContainThreshold = this.strokeContainThreshold; w = Math.max(w, strokeContainThreshold == null ? 4 : strokeContainThreshold); } if (lineScale > 1e-10) { rectStroke.width += w / lineScale; rectStroke.height += w / lineScale; rectStroke.x -= w / lineScale / 2; rectStroke.y -= w / lineScale / 2; } } return rectStroke; } return rect; }; Path.prototype.contain = function(x, y) { var localPos = this.transformCoordToLocal(x, y); var rect = this.getBoundingRect(); var style = this.style; x = localPos[0]; y = localPos[1]; if (rect.contain(x, y)) { var pathProxy = this.path; if (this.hasStroke()) { var lineWidth = style.lineWidth; var lineScale = style.strokeNoScale ? this.getLineScale() : 1; if (lineScale > 1e-10) { if (!this.hasFill()) lineWidth = Math.max(lineWidth, this.strokeContainThreshold); if (containStroke(pathProxy, lineWidth / lineScale, x, y)) return true; } } if (this.hasFill()) return contain(pathProxy, x, y); } return false; }; Path.prototype.dirtyShape = function() { this.__dirty |= 4; if (this._rect) this._rect = null; if (this._decalEl) this._decalEl.dirtyShape(); this.markRedraw(); }; Path.prototype.dirty = function() { this.dirtyStyle(); this.dirtyShape(); }; Path.prototype.animateShape = function(loop) { return this.animate("shape", loop); }; Path.prototype.updateDuringAnimation = function(targetKey) { if (targetKey === "style") this.dirtyStyle(); else if (targetKey === "shape") this.dirtyShape(); else this.markRedraw(); }; Path.prototype.attrKV = function(key, value) { if (key === "shape") this.setShape(value); else _super.prototype.attrKV.call(this, key, value); }; Path.prototype.setShape = function(keyOrObj, value) { var shape = this.shape; if (!shape) shape = this.shape = {}; if (typeof keyOrObj === "string") shape[keyOrObj] = value; else extend(shape, keyOrObj); this.dirtyShape(); return this; }; Path.prototype.shapeChanged = function() { return !!(this.__dirty & 4); }; Path.prototype.createStyle = function(obj) { return createObject(DEFAULT_PATH_STYLE, obj); }; Path.prototype._innerSaveToNormal = function(toState) { _super.prototype._innerSaveToNormal.call(this, toState); var normalState = this._normalState; if (toState.shape && !normalState.shape) normalState.shape = extend({}, this.shape); }; Path.prototype._applyStateObj = function(stateName, state, normalState, keepCurrentStates, transition, animationCfg) { _super.prototype._applyStateObj.call(this, stateName, state, normalState, keepCurrentStates, transition, animationCfg); if (this.__inHover === 1) return; var needsRestoreToNormal = !(state && keepCurrentStates); var targetShape; if (state && state.shape) if (transition) if (keepCurrentStates) targetShape = state.shape; else { targetShape = extend({}, normalState.shape); extend(targetShape, state.shape); } else { targetShape = extend({}, keepCurrentStates ? this.shape : normalState.shape); extend(targetShape, state.shape); } else if (needsRestoreToNormal) targetShape = normalState.shape; if (targetShape) if (transition) { this.shape = extend({}, this.shape); var targetShapePrimaryProps = {}; var shapeKeys = keys(targetShape); for (var i = 0; i < shapeKeys.length; i++) { var key = shapeKeys[i]; if (typeof targetShape[key] === "object") this.shape[key] = targetShape[key]; else targetShapePrimaryProps[key] = targetShape[key]; } this._transitionState(stateName, { shape: targetShapePrimaryProps }, animationCfg); } else { this.shape = targetShape; this.dirtyShape(); } }; Path.prototype._mergeStates = function(states) { var mergedState = _super.prototype._mergeStates.call(this, states); var mergedShape; for (var i = 0; i < states.length; i++) { var state = states[i]; if (state.shape) { mergedShape = mergedShape || {}; this._mergeStyle(mergedShape, state.shape); } } if (mergedShape) mergedState.shape = mergedShape; return mergedState; }; Path.prototype.getAnimationStyleProps = function() { return DEFAULT_PATH_ANIMATION_PROPS; }; Path.prototype.isZeroArea = function() { return false; }; Path.extend = function(defaultProps) { var Sub = function(_super) { __extends(Sub, _super); function Sub(opts) { var _this = _super.call(this, opts) || this; defaultProps.init && defaultProps.init.call(_this, opts); return _this; } Sub.prototype.getDefaultStyle = function() { return clone$2(defaultProps.style); }; Sub.prototype.getDefaultShape = function() { return clone$2(defaultProps.shape); }; return Sub; }(Path); for (var key in defaultProps) if (typeof defaultProps[key] === "function") Sub.prototype[key] = defaultProps[key]; return Sub; }; Path.initDefaultProps = (function() { var pathProto = Path.prototype; pathProto.type = "path"; pathProto.strokeContainThreshold = 5; pathProto.segmentIgnoreThreshold = 0; pathProto.subPixelOptimize = false; pathProto.autoBatch = false; pathProto.__dirty = 7; })(); return Path; }(Displayable); //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/graphic/TSpan.js var DEFAULT_TSPAN_STYLE = defaults({ strokeFirst: true, font: DEFAULT_FONT, x: 0, y: 0, textAlign: "left", textBaseline: "top", miterLimit: 2 }, DEFAULT_PATH_STYLE); var TSpan = function(_super) { __extends(TSpan, _super); function TSpan() { return _super !== null && _super.apply(this, arguments) || this; } TSpan.prototype.hasStroke = function() { return tSpanHasStroke(this.style); }; TSpan.prototype.hasFill = function() { var fill = this.style.fill; return fill != null && fill !== "none"; }; TSpan.prototype.createStyle = function(obj) { return createObject(DEFAULT_TSPAN_STYLE, obj); }; TSpan.prototype.setBoundingRect = function(rect) { this._rect = rect; }; TSpan.prototype.getBoundingRect = function() { if (!this._rect) this._rect = tSpanCreateBoundingRect(this.style); return this._rect; }; TSpan.initDefaultProps = (function() { var tspanProto = TSpan.prototype; tspanProto.dirtyRectTolerance = 10; })(); return TSpan; }(Displayable); TSpan.prototype.type = "tspan"; //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/graphic/Image.js var DEFAULT_IMAGE_STYLE = defaults({ x: 0, y: 0 }, DEFAULT_COMMON_STYLE); var DEFAULT_IMAGE_ANIMATION_PROPS = { style: defaults({ x: true, y: true, width: true, height: true, sx: true, sy: true, sWidth: true, sHeight: true }, DEFAULT_COMMON_ANIMATION_PROPS.style) }; function isImageLike(source) { return !!(source && typeof source !== "string" && source.width && source.height); } var ZRImage = function(_super) { __extends(ZRImage, _super); function ZRImage() { return _super !== null && _super.apply(this, arguments) || this; } ZRImage.prototype.createStyle = function(obj) { return createObject(DEFAULT_IMAGE_STYLE, obj); }; ZRImage.prototype._getSize = function(dim) { var style = this.style; var size = style[dim]; if (size != null) return size; var imageSource = isImageLike(style.image) ? style.image : this.__image; if (!imageSource) return 0; var otherDim = dim === "width" ? "height" : "width"; var otherDimSize = style[otherDim]; if (otherDimSize == null) return imageSource[dim]; else return imageSource[dim] / imageSource[otherDim] * otherDimSize; }; ZRImage.prototype.getWidth = function() { return this._getSize("width"); }; ZRImage.prototype.getHeight = function() { return this._getSize("height"); }; ZRImage.prototype.getAnimationStyleProps = function() { return DEFAULT_IMAGE_ANIMATION_PROPS; }; ZRImage.prototype.getBoundingRect = function() { var style = this.style; if (!this._rect) this._rect = new BoundingRect(style.x || 0, style.y || 0, this.getWidth(), this.getHeight()); return this._rect; }; return ZRImage; }(Displayable); ZRImage.prototype.type = "image"; //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/graphic/helper/roundRect.js function buildPath$2(ctx, shape) { var x = shape.x; var y = shape.y; var width = shape.width; var height = shape.height; var r = shape.r; var r1; var r2; var r3; var r4; if (width < 0) { x = x + width; width = -width; } if (height < 0) { y = y + height; height = -height; } if (typeof r === "number") r1 = r2 = r3 = r4 = r; else if (r instanceof Array) if (r.length === 1) r1 = r2 = r3 = r4 = r[0]; else if (r.length === 2) { r1 = r3 = r[0]; r2 = r4 = r[1]; } else if (r.length === 3) { r1 = r[0]; r2 = r4 = r[1]; r3 = r[2]; } else { r1 = r[0]; r2 = r[1]; r3 = r[2]; r4 = r[3]; } else r1 = r2 = r3 = r4 = 0; var total; if (r1 + r2 > width) { total = r1 + r2; r1 *= width / total; r2 *= width / total; } if (r3 + r4 > width) { total = r3 + r4; r3 *= width / total; r4 *= width / total; } if (r2 + r3 > height) { total = r2 + r3; r2 *= height / total; r3 *= height / total; } if (r1 + r4 > height) { total = r1 + r4; r1 *= height / total; r4 *= height / total; } ctx.moveTo(x + r1, y); ctx.lineTo(x + width - r2, y); r2 !== 0 && ctx.arc(x + width - r2, y + r2, r2, -Math.PI / 2, 0); ctx.lineTo(x + width, y + height - r3); r3 !== 0 && ctx.arc(x + width - r3, y + height - r3, r3, 0, Math.PI / 2); ctx.lineTo(x + r4, y + height); r4 !== 0 && ctx.arc(x + r4, y + height - r4, r4, Math.PI / 2, Math.PI); ctx.lineTo(x, y + r1); r1 !== 0 && ctx.arc(x + r1, y + r1, r1, Math.PI, Math.PI * 1.5); ctx.closePath(); } //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/graphic/helper/subPixelOptimize.js var round$1 = Math.round; function subPixelOptimizeLine$1(outputShape, inputShape, style) { if (!inputShape) return; var x1 = inputShape.x1; var x2 = inputShape.x2; var y1 = inputShape.y1; var y2 = inputShape.y2; outputShape.x1 = x1; outputShape.x2 = x2; outputShape.y1 = y1; outputShape.y2 = y2; var lineWidth = style && style.lineWidth; if (!lineWidth) return outputShape; if (round$1(x1 * 2) === round$1(x2 * 2)) outputShape.x1 = outputShape.x2 = subPixelOptimize$1(x1, lineWidth, true); if (round$1(y1 * 2) === round$1(y2 * 2)) outputShape.y1 = outputShape.y2 = subPixelOptimize$1(y1, lineWidth, true); return outputShape; } function subPixelOptimizeRect$1(outputShape, inputShape, style) { if (!inputShape) return; var originX = inputShape.x; var originY = inputShape.y; var originWidth = inputShape.width; var originHeight = inputShape.height; outputShape.x = originX; outputShape.y = originY; outputShape.width = originWidth; outputShape.height = originHeight; var lineWidth = style && style.lineWidth; if (!lineWidth) return outputShape; outputShape.x = subPixelOptimize$1(originX, lineWidth, true); outputShape.y = subPixelOptimize$1(originY, lineWidth, true); outputShape.width = Math.max(subPixelOptimize$1(originX + originWidth, lineWidth, false) - outputShape.x, originWidth === 0 ? 0 : 1); outputShape.height = Math.max(subPixelOptimize$1(originY + originHeight, lineWidth, false) - outputShape.y, originHeight === 0 ? 0 : 1); return outputShape; } function subPixelOptimize$1(position, lineWidth, positiveOrNegative) { if (!lineWidth) return position; var doubledPosition = round$1(position * 2); return (doubledPosition + round$1(lineWidth)) % 2 === 0 ? doubledPosition / 2 : (doubledPosition + (positiveOrNegative ? 1 : -1)) / 2; } //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/graphic/shape/Rect.js var RectShape = function() { function RectShape() { this.x = 0; this.y = 0; this.width = 0; this.height = 0; } return RectShape; }(); var subPixelOptimizeOutputShape$1 = {}; var Rect = function(_super) { __extends(Rect, _super); function Rect(opts) { return _super.call(this, opts) || this; } Rect.prototype.getDefaultShape = function() { return new RectShape(); }; Rect.prototype.buildPath = function(ctx, shape) { var x; var y; var width; var height; if (this.subPixelOptimize) { var optimizedShape = subPixelOptimizeRect$1(subPixelOptimizeOutputShape$1, shape, this.style); x = optimizedShape.x; y = optimizedShape.y; width = optimizedShape.width; height = optimizedShape.height; optimizedShape.r = shape.r; shape = optimizedShape; } else { x = shape.x; y = shape.y; width = shape.width; height = shape.height; } if (!shape.r) ctx.rect(x, y, width, height); else buildPath$2(ctx, shape); }; Rect.prototype.isZeroArea = function() { return !this.shape.width || !this.shape.height; }; return Rect; }(Path); Rect.prototype.type = "rect"; //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/graphic/Text.js var DEFAULT_RICH_TEXT_COLOR = { fill: "#000" }; var DEFAULT_STROKE_LINE_WIDTH = 2; var tmpCITOverflowAreaOut = {}; var DEFAULT_TEXT_ANIMATION_PROPS = { style: defaults({ fill: true, stroke: true, fillOpacity: true, strokeOpacity: true, lineWidth: true, fontSize: true, lineHeight: true, width: true, height: true, textShadowColor: true, textShadowBlur: true, textShadowOffsetX: true, textShadowOffsetY: true, backgroundColor: true, padding: true, borderColor: true, borderWidth: true, borderRadius: true }, DEFAULT_COMMON_ANIMATION_PROPS.style) }; var ZRText = function(_super) { __extends(ZRText, _super); function ZRText(opts) { var _this = _super.call(this) || this; _this.type = "text"; _this._children = []; _this._defaultStyle = DEFAULT_RICH_TEXT_COLOR; _this.attr(opts); return _this; } ZRText.prototype.childrenRef = function() { return this._children; }; ZRText.prototype.update = function() { _super.prototype.update.call(this); if (this.styleChanged()) this._updateSubTexts(); for (var i = 0; i < this._children.length; i++) { var child = this._children[i]; child.zlevel = this.zlevel; child.z = this.z; child.z2 = this.z2; child.culling = this.culling; child.cursor = this.cursor; child.invisible = this.invisible; } }; ZRText.prototype.updateTransform = function() { var innerTransformable = this.innerTransformable; if (innerTransformable) { innerTransformable.updateTransform(); if (innerTransformable.transform) this.transform = innerTransformable.transform; } else _super.prototype.updateTransform.call(this); }; ZRText.prototype.getLocalTransform = function(m) { var innerTransformable = this.innerTransformable; return innerTransformable ? innerTransformable.getLocalTransform(m) : _super.prototype.getLocalTransform.call(this, m); }; ZRText.prototype.getComputedTransform = function() { if (this.__hostTarget) { this.__hostTarget.getComputedTransform(); this.__hostTarget.updateInnerText(true); } return _super.prototype.getComputedTransform.call(this); }; ZRText.prototype._updateSubTexts = function() { this._childCursor = 0; normalizeTextStyle(this.style); this.style.rich ? this._updateRichTexts() : this._updatePlainTexts(); this._children.length = this._childCursor; this.styleUpdated(); }; ZRText.prototype.addSelfToZr = function(zr) { _super.prototype.addSelfToZr.call(this, zr); for (var i = 0; i < this._children.length; i++) this._children[i].__zr = zr; }; ZRText.prototype.removeSelfFromZr = function(zr) { _super.prototype.removeSelfFromZr.call(this, zr); for (var i = 0; i < this._children.length; i++) this._children[i].__zr = null; }; ZRText.prototype.getBoundingRect = function() { if (this.styleChanged()) this._updateSubTexts(); if (!this._rect) { var tmpRect = new BoundingRect(0, 0, 0, 0); var children = this._children; var tmpMat = []; var rect = null; for (var i = 0; i < children.length; i++) { var child = children[i]; var childRect = child.getBoundingRect(); var transform = child.getLocalTransform(tmpMat); if (transform) { tmpRect.copy(childRect); tmpRect.applyTransform(transform); rect = rect || tmpRect.clone(); rect.union(tmpRect); } else { rect = rect || childRect.clone(); rect.union(childRect); } } this._rect = rect || tmpRect; } return this._rect; }; ZRText.prototype.setDefaultTextStyle = function(defaultTextStyle) { this._defaultStyle = defaultTextStyle || DEFAULT_RICH_TEXT_COLOR; }; ZRText.prototype.setTextContent = function(textContent) {}; ZRText.prototype._mergeStyle = function(targetStyle, sourceStyle) { if (!sourceStyle) return targetStyle; var sourceRich = sourceStyle.rich; var targetRich = targetStyle.rich || sourceRich && {}; extend(targetStyle, sourceStyle); if (sourceRich && targetRich) { this._mergeRich(targetRich, sourceRich); targetStyle.rich = targetRich; } else if (targetRich) targetStyle.rich = targetRich; return targetStyle; }; ZRText.prototype._mergeRich = function(targetRich, sourceRich) { var richNames = keys(sourceRich); for (var i = 0; i < richNames.length; i++) { var richName = richNames[i]; targetRich[richName] = targetRich[richName] || {}; extend(targetRich[richName], sourceRich[richName]); } }; ZRText.prototype.getAnimationStyleProps = function() { return DEFAULT_TEXT_ANIMATION_PROPS; }; ZRText.prototype._getOrCreateChild = function(Ctor) { var child = this._children[this._childCursor]; if (!child || !(child instanceof Ctor)) child = new Ctor(); this._children[this._childCursor++] = child; child.__zr = this.__zr; child.parent = this; return child; }; ZRText.prototype._updatePlainTexts = function() { var style = this.style; var textFont = style.font || "12px sans-serif"; var textPadding = style.padding; var defaultStyle = this._defaultStyle; var baseX = style.x || 0; var baseY = style.y || 0; var textAlign = style.align || defaultStyle.align || "left"; var verticalAlign = style.verticalAlign || defaultStyle.verticalAlign || "top"; calcInnerTextOverflowArea(tmpCITOverflowAreaOut, defaultStyle.overflowRect, baseX, baseY, textAlign, verticalAlign); baseX = tmpCITOverflowAreaOut.baseX; baseY = tmpCITOverflowAreaOut.baseY; var contentBlock = parsePlainText(getStyleText(style), style, tmpCITOverflowAreaOut.outerWidth, tmpCITOverflowAreaOut.outerHeight); var needDrawBg = needDrawBackground(style); var bgColorDrawn = !!style.backgroundColor; var outerHeight = contentBlock.outerHeight; var outerWidth = contentBlock.outerWidth; var textLines = contentBlock.lines; var lineHeight = contentBlock.lineHeight; this.isTruncated = !!contentBlock.isTruncated; var textX = baseX; var textY = adjustTextY(baseY, contentBlock.contentHeight, verticalAlign); if (needDrawBg || textPadding) { var boxX = adjustTextX(baseX, outerWidth, textAlign); var boxY = adjustTextY(baseY, outerHeight, verticalAlign); needDrawBg && this._renderBackground(style, style, boxX, boxY, outerWidth, outerHeight); } textY += lineHeight / 2; if (textPadding) { textX = getTextXForPadding(baseX, textAlign, textPadding); if (verticalAlign === "top") textY += textPadding[0]; else if (verticalAlign === "bottom") textY -= textPadding[2]; } var defaultLineWidth = 0; var usingDefaultStroke = false; var useDefaultFill = false; var textFill = getFill("fill" in style ? style.fill : (useDefaultFill = true, defaultStyle.fill)); var textStroke = getStroke("stroke" in style ? style.stroke : !bgColorDrawn && (!defaultStyle.autoStroke || useDefaultFill) ? (defaultLineWidth = DEFAULT_STROKE_LINE_WIDTH, usingDefaultStroke = true, defaultStyle.stroke) : null); var hasShadow = style.textShadowBlur > 0; for (var i = 0; i < textLines.length; i++) { var el = this._getOrCreateChild(TSpan); var subElStyle = el.createStyle(); el.useStyle(subElStyle); subElStyle.text = textLines[i]; subElStyle.x = textX; subElStyle.y = textY; if (textAlign) subElStyle.textAlign = textAlign; subElStyle.textBaseline = "middle"; subElStyle.opacity = style.opacity; subElStyle.strokeFirst = true; if (hasShadow) { subElStyle.shadowBlur = style.textShadowBlur || 0; subElStyle.shadowColor = style.textShadowColor || "transparent"; subElStyle.shadowOffsetX = style.textShadowOffsetX || 0; subElStyle.shadowOffsetY = style.textShadowOffsetY || 0; } subElStyle.stroke = textStroke; subElStyle.fill = textFill; if (textStroke) { subElStyle.lineWidth = style.lineWidth || defaultLineWidth; subElStyle.lineDash = style.lineDash; subElStyle.lineDashOffset = style.lineDashOffset || 0; } subElStyle.font = textFont; setSeparateFont(subElStyle, style); textY += lineHeight; el.setBoundingRect(tSpanCreateBoundingRect2(subElStyle, contentBlock.contentWidth, contentBlock.calculatedLineHeight, usingDefaultStroke ? 0 : null)); } }; ZRText.prototype._updateRichTexts = function() { var style = this.style; var defaultStyle = this._defaultStyle; var textAlign = style.align || defaultStyle.align; var verticalAlign = style.verticalAlign || defaultStyle.verticalAlign; var baseX = style.x || 0; var baseY = style.y || 0; calcInnerTextOverflowArea(tmpCITOverflowAreaOut, defaultStyle.overflowRect, baseX, baseY, textAlign, verticalAlign); baseX = tmpCITOverflowAreaOut.baseX; baseY = tmpCITOverflowAreaOut.baseY; var contentBlock = parseRichText(getStyleText(style), style, tmpCITOverflowAreaOut.outerWidth, tmpCITOverflowAreaOut.outerHeight, textAlign); var contentWidth = contentBlock.width; var outerWidth = contentBlock.outerWidth; var outerHeight = contentBlock.outerHeight; var textPadding = style.padding; this.isTruncated = !!contentBlock.isTruncated; var boxX = adjustTextX(baseX, outerWidth, textAlign); var boxY = adjustTextY(baseY, outerHeight, verticalAlign); var xLeft = boxX; var lineTop = boxY; if (textPadding) { xLeft += textPadding[3]; lineTop += textPadding[0]; } var xRight = xLeft + contentWidth; if (needDrawBackground(style)) this._renderBackground(style, style, boxX, boxY, outerWidth, outerHeight); var bgColorDrawn = !!style.backgroundColor; for (var i = 0; i < contentBlock.lines.length; i++) { var line = contentBlock.lines[i]; var tokens = line.tokens; var tokenCount = tokens.length; var lineHeight = line.lineHeight; var remainedWidth = line.width; var leftIndex = 0; var lineXLeft = xLeft; var lineXRight = xRight; var rightIndex = tokenCount - 1; var token = void 0; while (leftIndex < tokenCount && (token = tokens[leftIndex], !token.align || token.align === "left")) { this._placeToken(token, style, lineHeight, lineTop, lineXLeft, "left", bgColorDrawn); remainedWidth -= token.width; lineXLeft += token.width; leftIndex++; } while (rightIndex >= 0 && (token = tokens[rightIndex], token.align === "right")) { this._placeToken(token, style, lineHeight, lineTop, lineXRight, "right", bgColorDrawn); remainedWidth -= token.width; lineXRight -= token.width; rightIndex--; } lineXLeft += (contentWidth - (lineXLeft - xLeft) - (xRight - lineXRight) - remainedWidth) / 2; while (leftIndex <= rightIndex) { token = tokens[leftIndex]; this._placeToken(token, style, lineHeight, lineTop, lineXLeft + token.width / 2, "center", bgColorDrawn); lineXLeft += token.width; leftIndex++; } lineTop += lineHeight; } }; ZRText.prototype._placeToken = function(token, style, lineHeight, lineTop, x, textAlign, parentBgColorDrawn) { var tokenStyle = style.rich[token.styleName] || {}; tokenStyle.text = token.text; var verticalAlign = token.verticalAlign; var y = lineTop + lineHeight / 2; if (verticalAlign === "top") y = lineTop + token.height / 2; else if (verticalAlign === "bottom") y = lineTop + lineHeight - token.height / 2; !token.isLineHolder && needDrawBackground(tokenStyle) && this._renderBackground(tokenStyle, style, textAlign === "right" ? x - token.width : textAlign === "center" ? x - token.width / 2 : x, y - token.height / 2, token.width, token.height); var bgColorDrawn = !!tokenStyle.backgroundColor; var textPadding = token.textPadding; if (textPadding) { x = getTextXForPadding(x, textAlign, textPadding); y -= token.height / 2 - textPadding[0] - token.innerHeight / 2; } var el = this._getOrCreateChild(TSpan); var subElStyle = el.createStyle(); el.useStyle(subElStyle); var defaultStyle = this._defaultStyle; var useDefaultFill = false; var defaultLineWidth = 0; var usingDefaultStroke = false; var textFill = getFill("fill" in tokenStyle ? tokenStyle.fill : "fill" in style ? style.fill : (useDefaultFill = true, defaultStyle.fill)); var textStroke = getStroke("stroke" in tokenStyle ? tokenStyle.stroke : "stroke" in style ? style.stroke : !bgColorDrawn && !parentBgColorDrawn && (!defaultStyle.autoStroke || useDefaultFill) ? (defaultLineWidth = DEFAULT_STROKE_LINE_WIDTH, usingDefaultStroke = true, defaultStyle.stroke) : null); var hasShadow = tokenStyle.textShadowBlur > 0 || style.textShadowBlur > 0; subElStyle.text = token.text; subElStyle.x = x; subElStyle.y = y; if (hasShadow) { subElStyle.shadowBlur = tokenStyle.textShadowBlur || style.textShadowBlur || 0; subElStyle.shadowColor = tokenStyle.textShadowColor || style.textShadowColor || "transparent"; subElStyle.shadowOffsetX = tokenStyle.textShadowOffsetX || style.textShadowOffsetX || 0; subElStyle.shadowOffsetY = tokenStyle.textShadowOffsetY || style.textShadowOffsetY || 0; } subElStyle.textAlign = textAlign; subElStyle.textBaseline = "middle"; subElStyle.font = token.font || "12px sans-serif"; subElStyle.opacity = retrieve3(tokenStyle.opacity, style.opacity, 1); setSeparateFont(subElStyle, tokenStyle); if (textStroke) { subElStyle.lineWidth = retrieve3(tokenStyle.lineWidth, style.lineWidth, defaultLineWidth); subElStyle.lineDash = retrieve2(tokenStyle.lineDash, style.lineDash); subElStyle.lineDashOffset = style.lineDashOffset || 0; subElStyle.stroke = textStroke; } if (textFill) subElStyle.fill = textFill; el.setBoundingRect(tSpanCreateBoundingRect2(subElStyle, token.contentWidth, token.contentHeight, usingDefaultStroke ? 0 : null)); }; ZRText.prototype._renderBackground = function(style, topStyle, x, y, width, height) { var textBackgroundColor = style.backgroundColor; var textBorderWidth = style.borderWidth; var textBorderColor = style.borderColor; var isImageBg = textBackgroundColor && textBackgroundColor.image; var isPlainOrGradientBg = textBackgroundColor && !isImageBg; var textBorderRadius = style.borderRadius; var self = this; var rectEl; var imgEl; if (isPlainOrGradientBg || style.lineHeight || textBorderWidth && textBorderColor) { rectEl = this._getOrCreateChild(Rect); rectEl.useStyle(rectEl.createStyle()); rectEl.style.fill = null; var rectShape = rectEl.shape; rectShape.x = x; rectShape.y = y; rectShape.width = width; rectShape.height = height; rectShape.r = textBorderRadius; rectEl.dirtyShape(); } if (isPlainOrGradientBg) { var rectStyle = rectEl.style; rectStyle.fill = textBackgroundColor || null; rectStyle.fillOpacity = retrieve2(style.fillOpacity, 1); } else if (isImageBg) { imgEl = this._getOrCreateChild(ZRImage); imgEl.onload = function() { self.dirtyStyle(); }; var imgStyle = imgEl.style; imgStyle.image = textBackgroundColor.image; imgStyle.x = x; imgStyle.y = y; imgStyle.width = width; imgStyle.height = height; } if (textBorderWidth && textBorderColor) { var rectStyle = rectEl.style; rectStyle.lineWidth = textBorderWidth; rectStyle.stroke = textBorderColor; rectStyle.strokeOpacity = retrieve2(style.strokeOpacity, 1); rectStyle.lineDash = style.borderDash; rectStyle.lineDashOffset = style.borderDashOffset || 0; rectEl.strokeContainThreshold = 0; if (rectEl.hasFill() && rectEl.hasStroke()) { rectStyle.strokeFirst = true; rectStyle.lineWidth *= 2; } } var commonStyle = (rectEl || imgEl).style; commonStyle.shadowBlur = style.shadowBlur || 0; commonStyle.shadowColor = style.shadowColor || "transparent"; commonStyle.shadowOffsetX = style.shadowOffsetX || 0; commonStyle.shadowOffsetY = style.shadowOffsetY || 0; commonStyle.opacity = retrieve3(style.opacity, topStyle.opacity, 1); }; ZRText.makeFont = function(style) { var font = ""; if (hasSeparateFont(style)) font = [ style.fontStyle, style.fontWeight, parseFontSize(style.fontSize), style.fontFamily || "sans-serif" ].join(" "); return font && trim(font) || style.textFont || style.font; }; return ZRText; }(Displayable); var VALID_TEXT_ALIGN = { left: true, right: 1, center: 1 }; var VALID_TEXT_VERTICAL_ALIGN = { top: 1, bottom: 1, middle: 1 }; var FONT_PARTS = [ "fontStyle", "fontWeight", "fontSize", "fontFamily" ]; function parseFontSize(fontSize) { if (typeof fontSize === "string" && (fontSize.indexOf("px") !== -1 || fontSize.indexOf("rem") !== -1 || fontSize.indexOf("em") !== -1)) return fontSize; else if (!isNaN(+fontSize)) return fontSize + "px"; else return "12px"; } function setSeparateFont(targetStyle, sourceStyle) { for (var i = 0; i < FONT_PARTS.length; i++) { var fontProp = FONT_PARTS[i]; var val = sourceStyle[fontProp]; if (val != null) targetStyle[fontProp] = val; } } function hasSeparateFont(style) { return style.fontSize != null || style.fontFamily || style.fontWeight; } function normalizeTextStyle(style) { normalizeStyle(style); each$4(style.rich, normalizeStyle); return style; } function normalizeStyle(style) { if (style) { style.font = ZRText.makeFont(style); var textAlign = style.align; textAlign === "middle" && (textAlign = "center"); style.align = textAlign == null || VALID_TEXT_ALIGN[textAlign] ? textAlign : "left"; var verticalAlign = style.verticalAlign; verticalAlign === "center" && (verticalAlign = "middle"); style.verticalAlign = verticalAlign == null || VALID_TEXT_VERTICAL_ALIGN[verticalAlign] ? verticalAlign : "top"; if (style.padding) style.padding = normalizeCssArray$1(style.padding); } } function getStroke(stroke, lineWidth) { return stroke == null || lineWidth <= 0 || stroke === "transparent" || stroke === "none" ? null : stroke.image || stroke.colorStops ? "#000" : stroke; } function getFill(fill) { return fill == null || fill === "none" ? null : fill.image || fill.colorStops ? "#000" : fill; } function getTextXForPadding(x, textAlign, textPadding) { return textAlign === "right" ? x - textPadding[1] : textAlign === "center" ? x + textPadding[3] / 2 - textPadding[1] / 2 : x + textPadding[3]; } function getStyleText(style) { var text = style.text; text != null && (text += ""); return text; } function needDrawBackground(style) { return !!(style.backgroundColor || style.lineHeight || style.borderWidth && style.borderColor); } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/util/number.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var RADIAN_EPSILON = 1e-4; var TO_FIXED_SUPPORTED_PRECISION_MAX = 20; function _trim(str) { return str.replace(/^\s+|\s+$/g, ""); } var mathMin$3 = Math.min; var mathMax$3 = Math.max; var mathAbs$2 = Math.abs; var mathRound = Math.round; var mathFloor = Math.floor; var mathCeil = Math.ceil; var mathPow = Math.pow; var mathLog = Math.log; var mathLN10 = Math.LN10; var mathPI = Math.PI; var mathRandom = Math.random; /** * Linear mapping a value from domain to range * @param val * @param domain Domain extent domain[0] can be bigger than domain[1] * @param range Range extent range[0] can be bigger than range[1] * @param clamp Default to be false */ function linearMap(val, domain, range, clamp) { var d0 = domain[0]; var d1 = domain[1]; var r0 = range[0]; var r1 = range[1]; var subDomain = d1 - d0; var subRange = r1 - r0; if (subDomain === 0) return subRange === 0 ? r0 : (r0 + r1) / 2; if (clamp) { if (subDomain > 0) { if (val <= d0) return r0; else if (val >= d1) return r1; } else if (val >= d0) return r0; else if (val <= d1) return r1; } else { if (val === d0) return r0; if (val === d1) return r1; } return (val - d0) / subDomain * subRange + r0; } /** * Preserve the name `parsePercent` for backward compatibility, * and it's effectively published as `echarts.number.parsePercent`. */ var parsePercent = parsePositionOption; /** * @see {parsePositionSizeOption} and also accept a string preset. * @see {PositionSizeOption} */ function parsePositionOption(option, percentBase, percentOffset) { switch (option) { case "center": case "middle": option = "50%"; break; case "left": case "top": option = "0%"; break; case "right": case "bottom": option = "100%"; break; } return parsePositionSizeOption(option, percentBase, percentOffset); } /** * Accept number, or numeric string (`'123'`), or percentage ('100%'), as x/y/width/height pixel number. * If null/undefined or invalid, return NaN. * (But allow JS type coercion (`+option`) due to backward compatibility) * @see {PositionSizeOption} */ function parsePositionSizeOption(option, percentBase, percentOffset) { if (isString(option)) { if (isOptionStringPercent(option)) return parseFloat(option) / 100 * percentBase + (percentOffset || 0); return parseFloat(option); } return option == null ? NaN : +option; } function isOptionStringPercent(option) { return !!_trim(option).match(/%$/); } function round(x, precision, returnStr) { if (isNaN(precision)) return returnStr ? "" + x : +x; precision = mathMin$3(mathMax$3(0, precision), TO_FIXED_SUPPORTED_PRECISION_MAX); x = (+x).toFixed(precision); return returnStr ? x : +x; } /** * Inplacd asc sort arr. * The input arr will be modified. */ function asc(arr) { arr.sort(function(a, b) { return a - b; }); return arr; } /** * Get precision. * e.g. `getPrecisionSafe(100.123)` return `3`. * e.g. `getPrecisionSafe(100)` return `0`. */ function getPrecision(val) { val = +val; if (isNaN(val)) return 0; if (val > 1e-14) { var e = 1; for (var i = 0; i < 15; i++, e *= 10) if (mathRound(val * e) / e === val) return i; } return getPrecisionSafe(val); } /** * Get precision with slow but safe method * e.g. `getPrecisionSafe(100.123)` return `3`. * e.g. `getPrecisionSafe(100)` return `0`. */ function getPrecisionSafe(val) { var str = val.toString().toLowerCase(); var eIndex = str.indexOf("e"); var exp = eIndex > 0 ? +str.slice(eIndex + 1) : 0; var significandPartLen = eIndex > 0 ? eIndex : str.length; var dotIndex = str.indexOf("."); return mathMax$3(0, (dotIndex < 0 ? 0 : significandPartLen - 1 - dotIndex) - exp); } /** * This method chooses a reasonable "data" precision that can be used in `round` method. * A reasonable precision is suitable for display; it may cause cumulative error but acceptable. * * "data" is linearly mapped to pixel according to the ratio determined by `dataSpan` and `pxSpan`. * The diff from the original "data" to the rounded "data" (with the result precision) should be * equal or less than `pxDiffAcceptable`, which is typically `1` pixel. * And the result precision should be as small as possible for a concise display. * * [NOTICE]: using arbitrary parameters is NOT preferable - a discernible misalign (e.g., over 1px) * may occur, especially when `splitLine` is displayed. * * PENDING: Only the linear case is addressed for now; other mapping methods (like logarithm) will * not be covered until necessary. */ function getAcceptableTickPrecision(dataExtent, pxSpan, pxDiffAcceptable) { var dataSpan = mathAbs$2(dataExtent[1] - dataExtent[0]); if (!isFinite(dataSpan) || dataSpan === 0) return NaN; var dataExp2 = mathLog(2 * mathAbs$2(pxDiffAcceptable || 1) * mathAbs$2(dataSpan)) / mathLN10; var pxExp = mathLog(mathAbs$2(pxSpan)) / mathLN10; var precision = mathMax$3(0, mathCeil(-dataExp2 + pxExp)); if (!isFinite(precision)) precision = NaN; return precision; } /** * Solve the floating point adding problem like 0.1 + 0.2 === 0.30000000000000004 * See */ function addSafe(val0, val1) { var maxPrecision = mathMax$3(getPrecision(val0), getPrecision(val1)); var sum = val0 + val1; return maxPrecision > TO_FIXED_SUPPORTED_PRECISION_MAX ? sum : round(sum, maxPrecision); } var MAX_SAFE_INTEGER = mathPow(2, 53) - 1; /** * To 0 - 2 * PI, considering negative radian. */ function remRadian(radian) { var pi2 = mathPI * 2; return (radian % pi2 + pi2) % pi2; } /** * @param {type} radian * @return {boolean} */ function isRadianAroundZero(val) { return val > -RADIAN_EPSILON && val < RADIAN_EPSILON; } var TIME_REG = /^(?:(\d{4})(?:[-\/](\d{1,2})(?:[-\/](\d{1,2})(?:[T ](\d{1,2})(?::(\d{1,2})(?::(\d{1,2})(?:[.,](\d+))?)?)?(Z|[\+\-]\d\d:?\d\d)?)?)?)?)?$/; /** * @param value valid type: number | string | Date, otherwise return `new Date(NaN)` * These values can be accepted: * + An instance of Date, represent a time in its own time zone. * + Or string in a subset of ISO 8601, only including: * + only year, month, date: '2012-03', '2012-03-01', '2012-03-01 05', '2012-03-01 05:06', * + separated with T or space: '2012-03-01T12:22:33.123', '2012-03-01 12:22:33.123', * + time zone: '2012-03-01T12:22:33Z', '2012-03-01T12:22:33+8000', '2012-03-01T12:22:33-05:00', * all of which will be treated as local time if time zone is not specified * (see ). * + Or other string format, including (all of which will be treated as local time): * '2012', '2012-3-1', '2012/3/1', '2012/03/01', * '2009/6/12 2:00', '2009/6/12 2:05:08', '2009/6/12 2:05:08.123' * + a timestamp, which represent a time in UTC. * @return date Never be null/undefined. If invalid, return `new Date(NaN)`. */ function parseDate(value) { if (value instanceof Date) return value; else if (isString(value)) { var match = TIME_REG.exec(value); if (!match) return /* @__PURE__ */ new Date(NaN); if (!match[8]) return new Date(+match[1], +(match[2] || 1) - 1, +match[3] || 1, +match[4] || 0, +(match[5] || 0), +match[6] || 0, match[7] ? +match[7].substring(0, 3) : 0); else { var hour = +match[4] || 0; if (match[8].toUpperCase() !== "Z") hour -= +match[8].slice(0, 3); return new Date(Date.UTC(+match[1], +(match[2] || 1) - 1, +match[3] || 1, hour, +(match[5] || 0), +match[6] || 0, match[7] ? +match[7].substring(0, 3) : 0)); } } else if (value == null) return /* @__PURE__ */ new Date(NaN); return new Date(mathRound(value)); } /** * Quantity of a number. e.g. 0.1, 1, 10, 100 * * @param val * @return */ function quantity(val) { return mathPow(10, quantityExponent(val)); } /** * Exponent of the quantity of a number * e.g., 9876 equals to 9.876*10^3, so quantityExponent(9876) is 3 * e.g., 0.09876 equals to 9.876*10^-2, so quantityExponent(0.09876) is -2 * * @param val non-negative value * @return */ function quantityExponent(val) { if (val === 0) return 0; var exp = mathFloor(mathLog(val) / mathLN10); /** * exp is expected to be the rounded-down result of the base-10 log of val. * But due to the precision loss with Math.log(val), we need to restore it * using 10^exp to make sure we can get val back from exp. #11249 */ if (val / mathPow(10, exp) >= 10) exp++; return exp; } /** * find a “nice” number approximately equal to x. Round the number if 'round', * take ceiling if 'round'. The primary observation is that the “nicest” * numbers in decimal are 1, 2, and 5, and all power-of-ten multiples of these numbers. * * See "Nice Numbers for Graph Labels" of Graphic Gems. * * @param val Non-negative value. * @return Niced number */ function nice(val, mode) { var exponent = quantityExponent(val); var exp10 = mathPow(10, exponent); var f = val / exp10; var nf; if (mode === 2) nf = 1; else if (mode) if (f < 1.5) nf = 1; else if (f < 2.5) nf = 2; else if (f < 4) nf = 3; else if (f < 7) nf = 5; else nf = 10; else if (f < 1) nf = 1; else if (f < 2) nf = 2; else if (f < 3) nf = 3; else if (f < 5) nf = 5; else nf = 10; val = nf * exp10; return round(val, -exponent); } /** * [Numeric is defined as]: * `parseFloat(val) == val` * For example: * numeric: * typeof number except NaN, '-123', '123', '2e3', '-2e3', '011', 'Infinity', Infinity, * and they rounded by white-spaces or line-terminal like ' -123 \n ' (see es spec) * not-numeric: * null, undefined, [], {}, true, false, 'NaN', NaN, '123ab', * empty string, string with only white-spaces or line-terminal (see es spec), * 0x12, '0x12', '-0x12', 012, '012', '-012', * non-string, ... * * @test See full test cases in `test/ut/spec/util/number.js`. * @return Must be a typeof number. If not numeric, return NaN. */ function numericToNumber(val) { var valFloat = parseFloat(val); return valFloat == val && (valFloat !== 0 || !isString(val) || val.indexOf("x") <= 0) ? valFloat : NaN; } /** * Definition of "numeric": see `numericToNumber`. */ function isNumeric(val) { return !isNaN(numericToNumber(val)); } /** * Use random base to prevent users hard code depending on * this auto generated marker id. * @return An positive integer. */ function getRandomIdBase() { return mathRound(mathRandom() * 9); } /** * Get the greatest common divisor. * * @param {number} a one number * @param {number} b the other number */ function getGreatestCommonDividor(a, b) { if (b === 0) return a; return getGreatestCommonDividor(b, a % b); } /** * Get the least common multiple. * * @param {number} a one number * @param {number} b the other number */ function getLeastCommonMultiple(a, b) { if (a == null) return b; if (b == null) return a; return a * b / getGreatestCommonDividor(a, b); } /** * NOTICE: Assume the input `val` is number or null/undefined, no type check, no support of BitInt. * Therefore, it is NOT suitable for processing user input, but sufficient for * internal usage in most cases. * For platform-agnosticism, `Number.isFinite` is not used. */ function isNullableNumberFinite(val) { return val != null && isFinite(val); } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/util/log.js var ECHARTS_PREFIX = "[ECharts] "; var storedLogs = {}; var hasConsole = typeof console !== "undefined" && console.warn && console.log; function outputLog(type, str, onlyOnce) { if (hasConsole) { if (onlyOnce) { if (storedLogs[str]) return; storedLogs[str] = true; } console[type](ECHARTS_PREFIX + str); } } function error(str, onlyOnce) { outputLog("error", str, onlyOnce); } /** * @throws Error */ function throwError(msg) { throw new Error(msg); } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/util/model.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ /** * Make the name displayable. But we should * make sure it is not duplicated with user * specified name, so use '\0'; */ var DUMMY_COMPONENT_NAME_PREFIX = "series\0"; var INTERNAL_COMPONENT_ID_PREFIX = "\0_ec_\0"; /** * If value is not array, then translate it to array. * @param {*} value * @return {Array} [value] or value */ function normalizeToArray(value) { return value instanceof Array ? value : value == null ? [] : [value]; } /** * Sync default option between normal and emphasis like `position` and `show` * In case some one will write code like * label: { * show: false, * position: 'outside', * fontSize: 18 * }, * emphasis: { * label: { show: true } * } */ function defaultEmphasis(opt, key, subOpts) { if (opt) { opt[key] = opt[key] || {}; opt.emphasis = opt.emphasis || {}; opt.emphasis[key] = opt.emphasis[key] || {}; for (var i = 0, len = subOpts.length; i < len; i++) { var subOptName = subOpts[i]; if (!opt.emphasis[key].hasOwnProperty(subOptName) && opt[key].hasOwnProperty(subOptName)) opt.emphasis[key][subOptName] = opt[key][subOptName]; } } } var TEXT_STYLE_OPTIONS = [ "fontStyle", "fontWeight", "fontSize", "fontFamily", "rich", "tag", "color", "textBorderColor", "textBorderWidth", "width", "height", "lineHeight", "align", "verticalAlign", "baseline", "shadowColor", "shadowBlur", "shadowOffsetX", "shadowOffsetY", "textShadowColor", "textShadowBlur", "textShadowOffsetX", "textShadowOffsetY", "backgroundColor", "borderColor", "borderWidth", "borderRadius", "padding" ]; /** * The method does not ensure performance. * data could be [12, 2323, {value: 223}, [1221, 23], {value: [2, 23]}] * This helper method retrieves value from data. */ function getDataItemValue(dataItem) { return isObject$2(dataItem) && !isArray(dataItem) && !(dataItem instanceof Date) ? dataItem.value : dataItem; } /** * data could be [12, 2323, {value: 223}, [1221, 23], {value: [2, 23]}] * This helper method determine if dataItem has extra option besides value */ function isDataItemOption(dataItem) { return isObject$2(dataItem) && !(dataItem instanceof Array); } /** * Mapping to existings for merge. * * Mode "normalMege": * The mapping result (merge result) will keep the order of the existing * component, rather than the order of new option. Because we should ensure * some specified index reference (like xAxisIndex) keep work. * And in most cases, "merge option" is used to update partial option but not * be expected to change the order. * * Mode "replaceMege": * (1) Only the id mapped components will be merged. * (2) Other existing components (except internal components) will be removed. * (3) Other new options will be used to create new component. * (4) The index of the existing components will not be modified. * That means their might be "hole" after the removal. * The new components are created first at those available index. * * Mode "replaceAll": * This mode try to support that reproduce an echarts instance from another * echarts instance (via `getOption`) in some simple cases. * In this scenario, the `result` index are exactly the consistent with the `newCmptOptions`, * which ensures the component index referring (like `xAxisIndex: ?`) corrent. That is, * the "hole" in `newCmptOptions` will also be kept. * On the contrary, other modes try best to eliminate holes. * PENDING: This is an experimental mode yet. * * @return See the comment of . */ function mappingToExists(existings, newCmptOptions, mode) { var isNormalMergeMode = mode === "normalMerge"; var isReplaceMergeMode = mode === "replaceMerge"; var isReplaceAllMode = mode === "replaceAll"; existings = existings || []; newCmptOptions = (newCmptOptions || []).slice(); var existingIdIdxMap = createHashMap(); each$4(newCmptOptions, function(cmptOption, index) { if (!isObject$2(cmptOption)) { newCmptOptions[index] = null; return; } }); var result = prepareResult(existings, existingIdIdxMap, mode); if (isNormalMergeMode || isReplaceMergeMode) mappingById(result, existings, existingIdIdxMap, newCmptOptions); if (isNormalMergeMode) mappingByName(result, newCmptOptions); if (isNormalMergeMode || isReplaceMergeMode) mappingByIndex(result, newCmptOptions, isReplaceMergeMode); else if (isReplaceAllMode) mappingInReplaceAllMode(result, newCmptOptions); makeIdAndName(result); return result; } function prepareResult(existings, existingIdIdxMap, mode) { var result = []; if (mode === "replaceAll") return result; for (var index = 0; index < existings.length; index++) { var existing = existings[index]; if (existing && existing.id != null) existingIdIdxMap.set(existing.id, index); result.push({ existing: mode === "replaceMerge" || isComponentIdInternal(existing) ? null : existing, newOption: null, keyInfo: null, brandNew: null }); } return result; } function mappingById(result, existings, existingIdIdxMap, newCmptOptions) { each$4(newCmptOptions, function(cmptOption, index) { if (!cmptOption || cmptOption.id == null) return; var optionId = makeComparableKey(cmptOption.id); var existingIdx = existingIdIdxMap.get(optionId); if (existingIdx != null) { var resultItem = result[existingIdx]; assert(!resultItem.newOption, "Duplicated option on id \"" + optionId + "\"."); resultItem.newOption = cmptOption; resultItem.existing = existings[existingIdx]; newCmptOptions[index] = null; } }); } function mappingByName(result, newCmptOptions) { each$4(newCmptOptions, function(cmptOption, index) { if (!cmptOption || cmptOption.name == null) return; for (var i = 0; i < result.length; i++) { var existing = result[i].existing; if (!result[i].newOption && existing && (existing.id == null || cmptOption.id == null) && !isComponentIdInternal(cmptOption) && !isComponentIdInternal(existing) && keyExistAndEqual("name", existing, cmptOption)) { result[i].newOption = cmptOption; newCmptOptions[index] = null; return; } } }); } function mappingByIndex(result, newCmptOptions, brandNew) { each$4(newCmptOptions, function(cmptOption) { if (!cmptOption) return; var resultItem; var nextIdx = 0; while ((resultItem = result[nextIdx]) && (resultItem.newOption || isComponentIdInternal(resultItem.existing) || resultItem.existing && cmptOption.id != null && !keyExistAndEqual("id", cmptOption, resultItem.existing))) nextIdx++; if (resultItem) { resultItem.newOption = cmptOption; resultItem.brandNew = brandNew; } else result.push({ newOption: cmptOption, brandNew, existing: null, keyInfo: null }); nextIdx++; }); } function mappingInReplaceAllMode(result, newCmptOptions) { each$4(newCmptOptions, function(cmptOption) { result.push({ newOption: cmptOption, brandNew: true, existing: null, keyInfo: null }); }); } /** * Make id and name for mapping result (result of mappingToExists) * into `keyInfo` field. */ function makeIdAndName(mapResult) { var idMap = createHashMap(); each$4(mapResult, function(item) { var existing = item.existing; existing && idMap.set(existing.id, item); }); each$4(mapResult, function(item) { var opt = item.newOption; assert(!opt || opt.id == null || !idMap.get(opt.id) || idMap.get(opt.id) === item, "id duplicates: " + (opt && opt.id)); opt && opt.id != null && idMap.set(opt.id, item); !item.keyInfo && (item.keyInfo = {}); }); each$4(mapResult, function(item, index) { var existing = item.existing; var opt = item.newOption; var keyInfo = item.keyInfo; if (!isObject$2(opt)) return; keyInfo.name = opt.name != null ? makeComparableKey(opt.name) : existing ? existing.name : DUMMY_COMPONENT_NAME_PREFIX + index; if (existing) keyInfo.id = makeComparableKey(existing.id); else if (opt.id != null) keyInfo.id = makeComparableKey(opt.id); else { var idNum = 0; do keyInfo.id = "\0" + keyInfo.name + "\0" + idNum++; while (idMap.get(keyInfo.id)); } idMap.set(keyInfo.id, item); }); } function keyExistAndEqual(attr, obj1, obj2) { var key1 = convertOptionIdName(obj1[attr], null); var key2 = convertOptionIdName(obj2[attr], null); return key1 != null && key2 != null && key1 === key2; } /** * @return return null if not exist. */ function makeComparableKey(val) { return convertOptionIdName(val, ""); } function convertOptionIdName(idOrName, defaultValue) { if (idOrName == null) return defaultValue; return isString(idOrName) ? idOrName : isNumber(idOrName) || isStringSafe(idOrName) ? idOrName + "" : defaultValue; } function isNameSpecified(componentModel) { var name = componentModel.name; return !!(name && name.indexOf(DUMMY_COMPONENT_NAME_PREFIX)); } /** * @public * @param {Object} cmptOption * @return {boolean} */ function isComponentIdInternal(cmptOption) { return cmptOption && cmptOption.id != null && makeComparableKey(cmptOption.id).indexOf(INTERNAL_COMPONENT_ID_PREFIX) === 0; } function setComponentTypeToKeyInfo(mappingResult, mainType, componentModelCtor) { each$4(mappingResult, function(item) { var newOption = item.newOption; if (isObject$2(newOption)) { item.keyInfo.mainType = mainType; item.keyInfo.subType = determineSubType(mainType, newOption, item.existing, componentModelCtor); } }); } function determineSubType(mainType, newCmptOption, existComponent, componentModelCtor) { return newCmptOption.type ? newCmptOption.type : existComponent ? existComponent.subType : componentModelCtor.determineSubType(mainType, newCmptOption); } /** * @param payload Contains dataIndex (means rawIndex) / dataIndexInside / name * each of which can be Array or primary type. * @return dataIndex If not found, return undefined/null. */ function queryDataIndex(data, payload) { if (payload.dataIndexInside != null) return payload.dataIndexInside; else if (payload.dataIndex != null) return isArray(payload.dataIndex) ? map$1(payload.dataIndex, function(value) { return data.indexOfRawIndex(value); }) : data.indexOfRawIndex(payload.dataIndex); else if (payload.name != null) return isArray(payload.name) ? map$1(payload.name, function(value) { return data.indexOfName(value); }) : data.indexOfName(payload.name); } /** * [CAVEAT]: * DO NOT use it in performance-sensitive scenarios. * Likely a hash map lookup; not inline-cache friendly. * * Enable property storage to any host object. * Notice: Serialization is not supported. * * For example: * let inner = makeInner(); * * function some1(hostObj) { * inner(hostObj).someProperty = 1212; * ... * } * function some2() { * let fields = inner(this); * fields.someProperty1 = 1212; * fields.someProperty2 = 'xx'; * ... * } */ function makeInner() { var key = "__ec_inner_" + innerUniqueIndex++; return function(hostObj) { return hostObj[key] || (hostObj[key] = {}); }; } var innerUniqueIndex = getRandomIdBase(); /** * The same behavior as `component.getReferringComponents`. */ function parseFinder(ecModel, finderInput, opt) { var _a = preParseFinder(finderInput, opt), mainTypeSpecified = _a.mainTypeSpecified, queryOptionMap = _a.queryOptionMap; var result = _a.others; var defaultMainType = opt ? opt.defaultMainType : null; if (!mainTypeSpecified && defaultMainType) queryOptionMap.set(defaultMainType, {}); queryOptionMap.each(function(queryOption, mainType) { var queryResult = queryReferringComponents(ecModel, mainType, queryOption, { useDefault: defaultMainType === mainType, enableAll: opt && opt.enableAll != null ? opt.enableAll : true, enableNone: opt && opt.enableNone != null ? opt.enableNone : true }); result[mainType + "Models"] = queryResult.models; result[mainType + "Model"] = queryResult.models[0]; }); return result; } function preParseFinder(finderInput, opt) { var finder; if (isString(finderInput)) { var obj = {}; obj[finderInput + "Index"] = 0; finder = obj; } else finder = finderInput; var queryOptionMap = createHashMap(); var others = {}; var mainTypeSpecified = false; each$4(finder, function(value, key) { if (key === "dataIndex" || key === "dataIndexInside") { others[key] = value; return; } var parsedKey = key.match(/^(\w+)(Index|Id|Name)$/) || []; var mainType = parsedKey[1]; var queryType = (parsedKey[2] || "").toLowerCase(); if (!mainType || !queryType || opt && opt.includeMainTypes && indexOf(opt.includeMainTypes, mainType) < 0) return; mainTypeSpecified = mainTypeSpecified || !!mainType; var queryOption = queryOptionMap.get(mainType) || queryOptionMap.set(mainType, {}); queryOption[queryType] = value; }); return { mainTypeSpecified, queryOptionMap, others }; } var SINGLE_REFERRING = { useDefault: true, enableAll: false, enableNone: false }; function queryReferringComponents(ecModel, mainType, userOption, opt) { opt = opt || SINGLE_REFERRING; var indexOption = userOption.index; var idOption = userOption.id; var nameOption = userOption.name; var result = { models: null, specified: indexOption != null || idOption != null || nameOption != null }; if (!result.specified) { var firstCmpt = void 0; result.models = opt.useDefault && (firstCmpt = ecModel.getComponent(mainType)) ? [firstCmpt] : []; return result; } if (indexOption === "none" || indexOption === false) if (opt.enableNone) { result.models = []; return result; } else indexOption = -1; if (indexOption === "all") if (opt.enableAll) indexOption = idOption = nameOption = null; else indexOption = -1; result.models = ecModel.queryComponents({ mainType, index: indexOption, id: idOption, name: nameOption }); return result; } /** * `{{mainType}Id, {mainType}Index, {mainType}Name}` takes precedence if provided in `payload`; * otherwise, query by `mainType`. * `subType` performs futher filtering if provided. */ function makeQueryConditionKindA(payload, mainType, subType) { var query = {}; query[mainType + "Id"] = payload[mainType + "Id"]; query[mainType + "Index"] = payload[mainType + "Index"]; query[mainType + "Name"] = payload[mainType + "Name"]; var condition = { mainType, query }; subType && (condition.subType = subType); return condition; } function setAttribute(dom, key, value) { dom.setAttribute ? dom.setAttribute(key, value) : dom[key] = value; } function getAttribute(dom, key) { return dom.getAttribute ? dom.getAttribute(key) : dom[key]; } function getTooltipRenderMode(renderModeOption) { if (renderModeOption === "auto") return env.domSupported ? "html" : "richText"; else return renderModeOption || "html"; } (function() { function ListIterator() {} /** * The loop condition is `idx < end` if `step > 0`; * The loop condition is `idx >= end` if `step < 0`. * * @param end By default `list.length` if `step > 0`; `0` if `step < 0`. * @param step By default `1`. */ ListIterator.prototype.reset = function(list, start, end, step) { this._list = list; this._step = step = step || 1; this._idx = start; this._end = end != null ? end : step > 0 ? list.length : 0; this.item = null; this.key = NaN; return this; }; ListIterator.prototype.next = function() { if (this._step > 0 ? this._idx < this._end : this._idx >= this._end) { this.item = this._list[this._idx]; this.key = this._idx = this._idx + this._step; return true; } return false; }; return ListIterator; })(); function initExtentForUnion() { return [Infinity, -Infinity]; } /** * NOTICE: * - The input `val` must be a number - type checking is not performed. * - `extent` should be initialized as `initExtentForUnion()`. */ function unionExtentFromNumber(extent, val) { if (isValidNumberForExtent(val)) { val < extent[0] && (extent[0] = val); val > extent[1] && (extent[1] = val); } } /** * NOTICE: * - The input `val` must be a number - type checking is not performed. * - `extent` should be initialized as `initExtentForUnion()`. */ function unionExtentStartFromNumber(extent, val) { if (isValidNumberForExtent(val) && val < extent[0]) extent[0] = val; } /** * NOTICE: * - The input `val` must be a number - type checking is not performed. * - `extent` should be initialized as `initExtentForUnion()`. */ function unionExtentEndFromNumber(extent, val) { if (isValidNumberForExtent(val) && val > extent[1]) extent[1] = val; } /** * NOTICE: * - `extent` should be initialized as `initExtentForUnion()`. */ function unionExtentFromExtent(tarExtent, srcExtent) { if (isValidBoundsForExtent(srcExtent[0], srcExtent[1])) { srcExtent[0] < tarExtent[0] && (tarExtent[0] = srcExtent[0]); srcExtent[1] > tarExtent[1] && (tarExtent[1] = srcExtent[1]); } } /** * PENDING: `Infinity` from user data is not necessarily meaningless, but visualizing it requires * special handling and it will not be supported until required. So we simply ignore it here. */ function isValidNumberForExtent(val) { return val != null && isFinite(val); } function isValidBoundsForExtent(start, end) { return isValidNumberForExtent(start) && isValidNumberForExtent(end) && start <= end; } /** * `extent` should be initialized by `initExtentForUnion()`, and unioned by `unionExtent()`. * `extent` may contain `Infinity` / `NaN`, but assume no `null`/`undefined`. */ function extentHasValue(extent) { var span = extent[1] - extent[0]; return isFinite(span) && span >= 0; } /** * NOTE: considered items are null/undefined/NaN - do nothing for this case. */ function ensureExtentAscSimply(extent) { if (isValidBoundsForExtent(extent[0], extent[1]) && extent[0] > extent[1]) extent[0] = extent[1]; } /** * A util for ensuring the callback is called only once. * @usage * const callOnlyOnce = makeCallOnlyOnce(); // Should be static (ESM top level). * function someFunc(registers: EChartsExtensionInstallRegisters): void { * callOnlyOnce(registers, function () { * // Do something immediately and only once per registers. * } * } */ function makeCallOnlyOnce() { var hiddenKey = "__ec_once_" + onceUniqueIndex++; return function(hostObj, cb) { if (!hasOwn(hostObj, hiddenKey)) { hostObj[hiddenKey] = 1; cb(); } }; } var onceUniqueIndex = getRandomIdBase(); /** * @usage * - The earlier item takes precedence for duplicate items. * - The input `arr` will be modified if `resolve` is null/undefined. * - Callers can use `resolve` to manually modify the `currItem`. * The input `arr` will not be modified if `resolve` is passed. * `resolve` will be called on every item. * - Callers need to handle null/undefined (if existing) in `getKey`. */ function removeDuplicates(arr, getKey, resolve) { var dupMap = createHashMap(); var writeIdx = 0; each$4(arr, function(item) { var key = getKey(item); var count = dupMap.get(key) || 0; if (resolve) resolve(item, count); if (!count && !resolve) arr[writeIdx++] = item; dupMap.set(key, count + 1); }); if (!resolve) arr.length = writeIdx; } function removeDuplicatesGetKeyFromValueProp(item) { return item.value + ""; } function removeDuplicatesGetKeyFromItemItself(item) { return item + ""; } function getIncrementalId(seriesModel, useIncremental) { return retrieve2(useIncremental, true) ? seriesModel.seriesIndex + 2 : 0; } function preparePipelineContext(seriesModel, view, pipeline) { var dataLen = seriesModel.getData().count(); return { progressiveRender: pipeline.progressiveEnabled && view.incrementalPrepareRender && dataLen >= pipeline.threshold, large: seriesModel.get("large") && dataLen >= seriesModel.get("largeThreshold"), modDataCount: seriesModel.get("progressiveChunkMode") === "mod" ? seriesModel.getData().count() : null }; } function createSimpleOverallStageHandler2(overallReset) { return { overallReset }; } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/util/innerStore.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var getECData = makeInner(); var setCommonECData = function(seriesIndex, dataType, dataIdx, el) { if (el) { var ecData = getECData(el); ecData.dataIndex = dataIdx; ecData.dataType = dataType; ecData.seriesIndex = seriesIndex; ecData.ssrType = "chart"; if (el.type === "group") el.traverse(function(child) { var childECData = getECData(child); childECData.seriesIndex = seriesIndex; childECData.dataIndex = dataIdx; childECData.dataType = dataType; childECData.ssrType = "chart"; }); } }; var VISUAL_DIMENSIONS = createHashMap([ "tooltip", "label", "itemName", "itemId", "itemGroupId", "itemChildGroupId", "seriesName" ]); var SOURCE_FORMAT_ORIGINAL = "original"; var SOURCE_FORMAT_ARRAY_ROWS = "arrayRows"; var SOURCE_FORMAT_OBJECT_ROWS = "objectRows"; var SOURCE_FORMAT_KEYED_COLUMNS = "keyedColumns"; var SOURCE_FORMAT_TYPED_ARRAY = "typedArray"; var SOURCE_FORMAT_UNKNOWN = "unknown"; var SERIES_LAYOUT_BY_COLUMN = "column"; //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/core/ExtensionAPI.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var availableMethods = [ "getDom", "getZr", "getWidth", "getHeight", "getDevicePixelRatio", "dispatchAction", "isSSR", "isDisposed", "on", "off", "getDataURL", "getConnectedDataURL", "getOption", "getId", "updateLabelLayout" ]; var ExtensionAPI = function() { function ExtensionAPI(ecInstance) { each$4(availableMethods, function(methodName) { this[methodName] = bind$1(ecInstance[methodName], ecInstance); }, this); } return ExtensionAPI; }(); function getViewOfComponentOrSeries(api, componentOrSeries) { return componentOrSeries.mainType === "series" ? api.getViewOfSeriesModel(componentOrSeries) : api.getViewOfComponentModel(componentOrSeries); } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/util/states.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var _highlightNextDigit = 1; var _highlightKeyMap = {}; var getSavedStates = makeInner(); var getComponentStates = makeInner(); var SPECIAL_STATES = [ "emphasis", "blur", "select" ]; var DISPLAY_STATES = [ "normal", "emphasis", "blur", "select" ]; var HIGHLIGHT_ACTION_TYPE = "highlight"; var DOWNPLAY_ACTION_TYPE = "downplay"; var SELECT_ACTION_TYPE = "select"; var UNSELECT_ACTION_TYPE = "unselect"; var TOGGLE_SELECT_ACTION_TYPE = "toggleSelect"; var SELECT_CHANGED_EVENT_TYPE = "selectchanged"; function hasFillOrStroke(fillOrStroke) { return fillOrStroke != null && fillOrStroke !== "none"; } function doChangeHoverState(el, stateName, hoverStateEnum) { if (el.onHoverStateChange && (el.hoverState || 0) !== hoverStateEnum) el.onHoverStateChange(stateName); el.hoverState = hoverStateEnum; } function singleEnterEmphasis(el) { doChangeHoverState(el, "emphasis", 2); } function singleLeaveEmphasis(el) { if (el.hoverState === 2) doChangeHoverState(el, "normal", 0); } function singleEnterBlur(el) { doChangeHoverState(el, "blur", 1); } function singleLeaveBlur(el) { if (el.hoverState === 1) doChangeHoverState(el, "normal", 0); } function singleEnterSelect(el) { el.selected = true; } function singleLeaveSelect(el) { el.selected = false; } function updateElementState(el, updater, commonParam) { updater(el, commonParam); } function traverseUpdateState(el, updater, commonParam) { updateElementState(el, updater, commonParam); el.isGroup && el.traverse(function(child) { updateElementState(child, updater, commonParam); }); } function getFromStateStyle(el, props, toStateName, defaultValue) { var style = el.style; var fromState = {}; for (var i = 0; i < props.length; i++) { var propName = props[i]; var val = style[propName]; fromState[propName] = val == null ? defaultValue && defaultValue[propName] : val; } for (var i = 0; i < el.animators.length; i++) { var animator = el.animators[i]; if (animator.__fromStateTransition && animator.__fromStateTransition.indexOf(toStateName) < 0 && animator.targetName === "style") animator.saveTo(fromState, props); } return fromState; } function createEmphasisDefaultState(el, stateName, targetStates, state) { var hasSelect = targetStates && indexOf(targetStates, "select") >= 0; var cloned = false; if (el instanceof Path) { var store = getSavedStates(el); var fromFill = hasSelect ? store.selectFill || store.normalFill : store.normalFill; var fromStroke = hasSelect ? store.selectStroke || store.normalStroke : store.normalStroke; if (hasFillOrStroke(fromFill) || hasFillOrStroke(fromStroke)) { state = state || {}; var emphasisStyle = state.style || {}; if (emphasisStyle.fill === "inherit") { cloned = true; state = extend({}, state); emphasisStyle = extend({}, emphasisStyle); emphasisStyle.fill = fromFill; } else if (!hasFillOrStroke(emphasisStyle.fill) && hasFillOrStroke(fromFill)) { cloned = true; state = extend({}, state); emphasisStyle = extend({}, emphasisStyle); emphasisStyle.fill = liftColor(fromFill); } else if (!hasFillOrStroke(emphasisStyle.stroke) && hasFillOrStroke(fromStroke)) { if (!cloned) { state = extend({}, state); emphasisStyle = extend({}, emphasisStyle); } emphasisStyle.stroke = liftColor(fromStroke); } state.style = emphasisStyle; } } if (state) { if (state.z2 == null) { if (!cloned) state = extend({}, state); var z2EmphasisLift = el.z2EmphasisLift; state.z2 = el.z2 + (z2EmphasisLift != null ? z2EmphasisLift : 10); } } return state; } function createSelectDefaultState(el, stateName, state) { if (state) { if (state.z2 == null) { state = extend({}, state); var z2SelectLift = el.z2SelectLift; state.z2 = el.z2 + (z2SelectLift != null ? z2SelectLift : 9); } } return state; } function createBlurDefaultState(el, stateName, state) { var hasBlur = indexOf(el.currentStates, stateName) >= 0; var currentOpacity = el.style.opacity; var fromState = !hasBlur ? getFromStateStyle(el, ["opacity"], stateName, { opacity: 1 }) : null; state = state || {}; var blurStyle = state.style || {}; if (blurStyle.opacity == null) { state = extend({}, state); blurStyle = extend({ opacity: hasBlur ? currentOpacity : fromState.opacity * .1 }, blurStyle); state.style = blurStyle; } return state; } function elementStateProxy(stateName, targetStates) { var state = this.states[stateName]; if (this.style) { if (stateName === "emphasis") return createEmphasisDefaultState(this, stateName, targetStates, state); else if (stateName === "blur") return createBlurDefaultState(this, stateName, state); else if (stateName === "select") return createSelectDefaultState(this, stateName, state); } return state; } /** * Set hover style (namely "emphasis style") of element. * @param el Should not be `zrender/graphic/Group`. * @param focus 'self' | 'selfInSeries' | 'series' */ function setDefaultStateProxy(el) { el.stateProxy = elementStateProxy; var textContent = el.getTextContent(); var textGuide = el.getTextGuideLine(); if (textContent) textContent.stateProxy = elementStateProxy; if (textGuide) textGuide.stateProxy = elementStateProxy; } function enterEmphasisWhenMouseOver(el, e) { !shouldSilent(el, e) && !el.__highByOuter && traverseUpdateState(el, singleEnterEmphasis); } function leaveEmphasisWhenMouseOut(el, e) { !shouldSilent(el, e) && !el.__highByOuter && traverseUpdateState(el, singleLeaveEmphasis); } function enterEmphasis(el, highlightDigit) { el.__highByOuter |= 1 << (highlightDigit || 0); traverseUpdateState(el, singleEnterEmphasis); } function leaveEmphasis(el, highlightDigit) { !(el.__highByOuter &= ~(1 << (highlightDigit || 0))) && traverseUpdateState(el, singleLeaveEmphasis); } function enterBlur(el) { traverseUpdateState(el, singleEnterBlur); } function leaveBlur(el) { traverseUpdateState(el, singleLeaveBlur); } function enterSelect(el) { traverseUpdateState(el, singleEnterSelect); } function leaveSelect(el) { traverseUpdateState(el, singleLeaveSelect); } function shouldSilent(el, e) { return el.__highDownSilentOnTouch && e.zrByTouch; } function allLeaveBlur(api) { var model = api.getModel(); var leaveBlurredSeries = []; var allComponentViews = []; model.eachComponent(function(componentType, componentModel) { var componentStates = getComponentStates(componentModel); var view = getViewOfComponentOrSeries(api, componentModel); var isSeries = componentType === "series"; !isSeries && allComponentViews.push(view); if (componentStates.isBlured) { view.group.traverse(function(child) { singleLeaveBlur(child); }); isSeries && leaveBlurredSeries.push(componentModel); } componentStates.isBlured = false; }); each$4(allComponentViews, function(view) { if (view && view.toggleBlurSeries) view.toggleBlurSeries(leaveBlurredSeries, false, model); }); } function blurSeries(targetSeriesIndex, focus, blurScope, api) { var ecModel = api.getModel(); blurScope = blurScope || "coordinateSystem"; function leaveBlurOfIndices(data, dataIndices) { for (var i = 0; i < dataIndices.length; i++) { var itemEl = data.getItemGraphicEl(dataIndices[i]); itemEl && leaveBlur(itemEl); } } if (targetSeriesIndex == null) return; if (!focus || focus === "none") return; var targetSeriesModel = ecModel.getSeriesByIndex(targetSeriesIndex); var targetCoordSys = targetSeriesModel.coordinateSystem; if (targetCoordSys && targetCoordSys.master) targetCoordSys = targetCoordSys.master; var blurredSeries = []; ecModel.eachSeries(function(seriesModel) { var sameSeries = targetSeriesModel === seriesModel; var coordSys = seriesModel.coordinateSystem; if (coordSys && coordSys.master) coordSys = coordSys.master; if (!(blurScope === "series" && !sameSeries || blurScope === "coordinateSystem" && !(coordSys && targetCoordSys ? coordSys === targetCoordSys : sameSeries) || focus === "series" && sameSeries)) { api.getViewOfSeriesModel(seriesModel).group.traverse(function(child) { if (child.__highByOuter && sameSeries && focus === "self") return; singleEnterBlur(child); }); if (isArrayLike(focus)) leaveBlurOfIndices(seriesModel.getData(), focus); else if (isObject$2(focus)) { var dataTypes = keys(focus); for (var d = 0; d < dataTypes.length; d++) leaveBlurOfIndices(seriesModel.getData(dataTypes[d]), focus[dataTypes[d]]); } blurredSeries.push(seriesModel); getComponentStates(seriesModel).isBlured = true; } }); ecModel.eachComponent(function(componentType, componentModel) { if (componentType === "series") return; var view = api.getViewOfComponentModel(componentModel); if (view && view.toggleBlurSeries) view.toggleBlurSeries(blurredSeries, true, ecModel); }); } function blurComponent(componentMainType, componentIndex, api) { if (componentMainType == null || componentIndex == null) return; var componentModel = api.getModel().getComponent(componentMainType, componentIndex); if (!componentModel) return; getComponentStates(componentModel).isBlured = true; var view = api.getViewOfComponentModel(componentModel); if (!view || !view.focusBlurEnabled) return; view.group.traverse(function(child) { singleEnterBlur(child); }); } function blurSeriesFromHighlightPayload(seriesModel, payload, api) { var seriesIndex = seriesModel.seriesIndex; var data = seriesModel.getData(payload.dataType); if (!data) return; var dataIndex = queryDataIndex(data, payload); dataIndex = (isArray(dataIndex) ? dataIndex[0] : dataIndex) || 0; var el = data.getItemGraphicEl(dataIndex); if (!el) { var count = data.count(); var current = 0; while (!el && current < count) el = data.getItemGraphicEl(current++); } if (el) { var ecData = getECData(el); blurSeries(seriesIndex, ecData.focus, ecData.blurScope, api); } else { var focus_1 = seriesModel.get(["emphasis", "focus"]); var blurScope = seriesModel.get(["emphasis", "blurScope"]); if (focus_1 != null) blurSeries(seriesIndex, focus_1, blurScope, api); } } function findComponentHighDownDispatchers(componentMainType, componentIndex, name, api) { var ret = { focusSelf: false, dispatchers: null }; if (componentMainType == null || componentMainType === "series" || componentIndex == null || name == null) return ret; var componentModel = api.getModel().getComponent(componentMainType, componentIndex); if (!componentModel) return ret; var view = api.getViewOfComponentModel(componentModel); if (!view || !view.findHighDownDispatchers) return ret; var dispatchers = view.findHighDownDispatchers(name); var focusSelf; for (var i = 0; i < dispatchers.length; i++) if (getECData(dispatchers[i]).focus === "self") { focusSelf = true; break; } return { focusSelf, dispatchers }; } function handleGlobalMouseOverForHighDown(dispatcher, e, api) { var ecData = getECData(dispatcher); var _a = findComponentHighDownDispatchers(ecData.componentMainType, ecData.componentIndex, ecData.componentHighDownName, api), dispatchers = _a.dispatchers, focusSelf = _a.focusSelf; if (dispatchers) { if (focusSelf) blurComponent(ecData.componentMainType, ecData.componentIndex, api); each$4(dispatchers, function(dispatcher) { return enterEmphasisWhenMouseOver(dispatcher, e); }); } else { blurSeries(ecData.seriesIndex, ecData.focus, ecData.blurScope, api); if (ecData.focus === "self") blurComponent(ecData.componentMainType, ecData.componentIndex, api); enterEmphasisWhenMouseOver(dispatcher, e); } } function handleGlobalMouseOutForHighDown(dispatcher, e, api) { allLeaveBlur(api); var ecData = getECData(dispatcher); var dispatchers = findComponentHighDownDispatchers(ecData.componentMainType, ecData.componentIndex, ecData.componentHighDownName, api).dispatchers; if (dispatchers) each$4(dispatchers, function(dispatcher) { return leaveEmphasisWhenMouseOut(dispatcher, e); }); else leaveEmphasisWhenMouseOut(dispatcher, e); } function toggleSelectionFromPayload(seriesModel, payload, api) { if (!isSelectChangePayload(payload)) return; var dataType = payload.dataType; var dataIndex = queryDataIndex(seriesModel.getData(dataType), payload); if (!isArray(dataIndex)) dataIndex = [dataIndex]; seriesModel[payload.type === "toggleSelect" ? "toggleSelect" : payload.type === "select" ? "select" : "unselect"](dataIndex, dataType); } function updateSeriesElementSelection(seriesModel) { each$4(seriesModel.getAllData(), function(_a) { var data = _a.data, type = _a.type; data.eachItemGraphicEl(function(el, idx) { seriesModel.isSelected(idx, type) ? enterSelect(el) : leaveSelect(el); }); }); } function getAllSelectedIndices(ecModel) { var ret = []; ecModel.eachSeries(function(seriesModel) { each$4(seriesModel.getAllData(), function(_a) { _a.data; var type = _a.type; var dataIndices = seriesModel.getSelectedDataIndices(); if (dataIndices.length > 0) { var item = { dataIndex: dataIndices, seriesIndex: seriesModel.seriesIndex }; if (type != null) item.dataType = type; ret.push(item); } }); }); return ret; } /** * Enable the function that mouseover will trigger the emphasis state. * * NOTE: * This function should be used on the element with dataIndex, seriesIndex. * */ function enableHoverEmphasis(el, focus, blurScope) { setAsHighDownDispatcher(el, true); traverseUpdateState(el, setDefaultStateProxy); enableHoverFocus(el, focus, blurScope); } function disableHoverEmphasis(el) { setAsHighDownDispatcher(el, false); } function toggleHoverEmphasis(el, focus, blurScope, isDisabled) { isDisabled ? disableHoverEmphasis(el) : enableHoverEmphasis(el, focus, blurScope); } function enableHoverFocus(el, focus, blurScope) { var ecData = getECData(el); if (focus != null) { ecData.focus = focus; ecData.blurScope = blurScope; } else if (ecData.focus) ecData.focus = null; } var OTHER_STATES = [ "emphasis", "blur", "select" ]; var defaultStyleGetterMap = { itemStyle: "getItemStyle", lineStyle: "getLineStyle", areaStyle: "getAreaStyle" }; /** * Set emphasis/blur/selected states of element. */ function setStatesStylesFromModel(el, itemModel, styleType, getter) { styleType = styleType || "itemStyle"; for (var i = 0; i < OTHER_STATES.length; i++) { var stateName = OTHER_STATES[i]; var model = itemModel.getModel([stateName, styleType]); var state = el.ensureState(stateName); state.style = getter ? getter(model) : model[defaultStyleGetterMap[styleType]](); } } /** * * Set element as highlight / downplay dispatcher. * It will be checked when element received mouseover event or from highlight action. * It's in change of all highlight/downplay behavior of it's children. * * @param el * @param el.highDownSilentOnTouch * In touch device, mouseover event will be trigger on touchstart event * (see module:zrender/dom/HandlerProxy). By this mechanism, we can * conveniently use hoverStyle when tap on touch screen without additional * code for compatibility. * But if the chart/component has select feature, which usually also use * hoverStyle, there might be conflict between 'select-highlight' and * 'hover-highlight' especially when roam is enabled (see geo for example). * In this case, `highDownSilentOnTouch` should be used to disable * hover-highlight on touch device. * @param asDispatcher If `false`, do not set as "highDownDispatcher". */ function setAsHighDownDispatcher(el, asDispatcher) { var disable = asDispatcher === false; var extendedEl = el; if (el.highDownSilentOnTouch) extendedEl.__highDownSilentOnTouch = el.highDownSilentOnTouch; if (!disable || extendedEl.__highDownDispatcher) { extendedEl.__highByOuter = extendedEl.__highByOuter || 0; extendedEl.__highDownDispatcher = !disable; } } function isHighDownDispatcher(el) { return !!(el && el.__highDownDispatcher); } /** * Support highlight/downplay record on each elements. * For the case: hover highlight/downplay (legend, visualMap, ...) and * user triggered highlight/downplay should not conflict. * Only all of the highlightDigit cleared, return to normal. * @param {string} highlightKey * @return {number} highlightDigit */ function getHighlightDigit(highlightKey) { var highlightDigit = _highlightKeyMap[highlightKey]; if (highlightDigit == null && _highlightNextDigit <= 32) highlightDigit = _highlightKeyMap[highlightKey] = _highlightNextDigit++; return highlightDigit; } function isSelectChangePayload(payload) { var payloadType = payload.type; return payloadType === "select" || payloadType === "unselect" || payloadType === "toggleSelect"; } function isHighDownPayload(payload) { var payloadType = payload.type; return payloadType === "highlight" || payloadType === "downplay"; } function savePathStates(el) { var store = getSavedStates(el); store.normalFill = el.style.fill; store.normalStroke = el.style.stroke; var selectState = el.states.select || {}; store.selectFill = selectState.style && selectState.style.fill || null; store.selectStroke = selectState.style && selectState.style.stroke || null; } //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/tool/transformPath.js var CMD = PathProxy.CMD; var points = [ [], [], [] ]; var mathSqrt$2 = Math.sqrt; var mathAtan2 = Math.atan2; function transformPath(path, m) { if (!m) return; var data = path.data; var len = path.len(); var cmd; var nPoint; var i; var j; var k; var p; var M = CMD.M; var C = CMD.C; var L = CMD.L; var R = CMD.R; var A = CMD.A; var Q = CMD.Q; for (i = 0, j = 0; i < len;) { cmd = data[i++]; j = i; nPoint = 0; switch (cmd) { case M: nPoint = 1; break; case L: nPoint = 1; break; case C: nPoint = 3; break; case Q: nPoint = 2; break; case A: var x = m[4]; var y = m[5]; var sx = mathSqrt$2(m[0] * m[0] + m[1] * m[1]); var sy = mathSqrt$2(m[2] * m[2] + m[3] * m[3]); var angle = mathAtan2(-m[1] / sy, m[0] / sx); data[i] *= sx; data[i++] += x; data[i] *= sy; data[i++] += y; data[i++] *= sx; data[i++] *= sy; data[i++] += angle; data[i++] += angle; i += 2; j = i; break; case R: p[0] = data[i++]; p[1] = data[i++]; applyTransform$1(p, p, m); data[j++] = p[0]; data[j++] = p[1]; p[0] += data[i++]; p[1] += data[i++]; applyTransform$1(p, p, m); data[j++] = p[0]; data[j++] = p[1]; } for (k = 0; k < nPoint; k++) { var p_1 = points[k]; p_1[0] = data[i++]; p_1[1] = data[i++]; applyTransform$1(p_1, p_1, m); data[j++] = p_1[0]; data[j++] = p_1[1]; } } path.increaseVersion(); } //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/tool/path.js var mathSqrt$1 = Math.sqrt; var mathSin$1 = Math.sin; var mathCos$1 = Math.cos; var PI$3 = Math.PI; function vMag(v) { return Math.sqrt(v[0] * v[0] + v[1] * v[1]); } function vRatio(u, v) { return (u[0] * v[0] + u[1] * v[1]) / (vMag(u) * vMag(v)); } function vAngle(u, v) { return (u[0] * v[1] < u[1] * v[0] ? -1 : 1) * Math.acos(vRatio(u, v)); } function processArc(x1, y1, x2, y2, fa, fs, rx, ry, psiDeg, cmd, path) { var psi = psiDeg * (PI$3 / 180); var xp = mathCos$1(psi) * (x1 - x2) / 2 + mathSin$1(psi) * (y1 - y2) / 2; var yp = -1 * mathSin$1(psi) * (x1 - x2) / 2 + mathCos$1(psi) * (y1 - y2) / 2; var lambda = xp * xp / (rx * rx) + yp * yp / (ry * ry); if (lambda > 1) { rx *= mathSqrt$1(lambda); ry *= mathSqrt$1(lambda); } var f = (fa === fs ? -1 : 1) * mathSqrt$1((rx * rx * (ry * ry) - rx * rx * (yp * yp) - ry * ry * (xp * xp)) / (rx * rx * (yp * yp) + ry * ry * (xp * xp))) || 0; var cxp = f * rx * yp / ry; var cyp = f * -ry * xp / rx; var cx = (x1 + x2) / 2 + mathCos$1(psi) * cxp - mathSin$1(psi) * cyp; var cy = (y1 + y2) / 2 + mathSin$1(psi) * cxp + mathCos$1(psi) * cyp; var theta = vAngle([1, 0], [(xp - cxp) / rx, (yp - cyp) / ry]); var u = [(xp - cxp) / rx, (yp - cyp) / ry]; var v = [(-1 * xp - cxp) / rx, (-1 * yp - cyp) / ry]; var dTheta = vAngle(u, v); if (vRatio(u, v) <= -1) dTheta = PI$3; if (vRatio(u, v) >= 1) dTheta = 0; if (dTheta < 0) { var n = Math.round(dTheta / PI$3 * 1e6) / 1e6; dTheta = PI$3 * 2 + n % 2 * PI$3; } path.addData(cmd, cx, cy, rx, ry, theta, dTheta, psi, fs); } var commandReg = /([mlvhzcqtsa])([^mlvhzcqtsa]*)/gi; var numberReg = /-?([0-9]*\.)?[0-9]+([eE]-?[0-9]+)?/g; function createPathProxyFromString(data) { var path = new PathProxy(); if (!data) return path; var cpx = 0; var cpy = 0; var subpathX = cpx; var subpathY = cpy; var prevCmd; var CMD = PathProxy.CMD; var cmdList = data.match(commandReg); if (!cmdList) return path; for (var l = 0; l < cmdList.length; l++) { var cmdText = cmdList[l]; var cmdStr = cmdText.charAt(0); var cmd = void 0; var p = cmdText.match(numberReg) || []; var pLen = p.length; for (var i = 0; i < pLen; i++) p[i] = parseFloat(p[i]); var off = 0; while (off < pLen) { var ctlPtx = void 0; var ctlPty = void 0; var rx = void 0; var ry = void 0; var psi = void 0; var fa = void 0; var fs = void 0; var x1 = cpx; var y1 = cpy; var len = void 0; var pathData = void 0; switch (cmdStr) { case "l": cpx += p[off++]; cpy += p[off++]; cmd = CMD.L; path.addData(cmd, cpx, cpy); break; case "L": cpx = p[off++]; cpy = p[off++]; cmd = CMD.L; path.addData(cmd, cpx, cpy); break; case "m": cpx += p[off++]; cpy += p[off++]; cmd = CMD.M; path.addData(cmd, cpx, cpy); subpathX = cpx; subpathY = cpy; cmdStr = "l"; break; case "M": cpx = p[off++]; cpy = p[off++]; cmd = CMD.M; path.addData(cmd, cpx, cpy); subpathX = cpx; subpathY = cpy; cmdStr = "L"; break; case "h": cpx += p[off++]; cmd = CMD.L; path.addData(cmd, cpx, cpy); break; case "H": cpx = p[off++]; cmd = CMD.L; path.addData(cmd, cpx, cpy); break; case "v": cpy += p[off++]; cmd = CMD.L; path.addData(cmd, cpx, cpy); break; case "V": cpy = p[off++]; cmd = CMD.L; path.addData(cmd, cpx, cpy); break; case "C": cmd = CMD.C; path.addData(cmd, p[off++], p[off++], p[off++], p[off++], p[off++], p[off++]); cpx = p[off - 2]; cpy = p[off - 1]; break; case "c": cmd = CMD.C; path.addData(cmd, p[off++] + cpx, p[off++] + cpy, p[off++] + cpx, p[off++] + cpy, p[off++] + cpx, p[off++] + cpy); cpx += p[off - 2]; cpy += p[off - 1]; break; case "S": ctlPtx = cpx; ctlPty = cpy; len = path.len(); pathData = path.data; if (prevCmd === CMD.C) { ctlPtx += cpx - pathData[len - 4]; ctlPty += cpy - pathData[len - 3]; } cmd = CMD.C; x1 = p[off++]; y1 = p[off++]; cpx = p[off++]; cpy = p[off++]; path.addData(cmd, ctlPtx, ctlPty, x1, y1, cpx, cpy); break; case "s": ctlPtx = cpx; ctlPty = cpy; len = path.len(); pathData = path.data; if (prevCmd === CMD.C) { ctlPtx += cpx - pathData[len - 4]; ctlPty += cpy - pathData[len - 3]; } cmd = CMD.C; x1 = cpx + p[off++]; y1 = cpy + p[off++]; cpx += p[off++]; cpy += p[off++]; path.addData(cmd, ctlPtx, ctlPty, x1, y1, cpx, cpy); break; case "Q": x1 = p[off++]; y1 = p[off++]; cpx = p[off++]; cpy = p[off++]; cmd = CMD.Q; path.addData(cmd, x1, y1, cpx, cpy); break; case "q": x1 = p[off++] + cpx; y1 = p[off++] + cpy; cpx += p[off++]; cpy += p[off++]; cmd = CMD.Q; path.addData(cmd, x1, y1, cpx, cpy); break; case "T": ctlPtx = cpx; ctlPty = cpy; len = path.len(); pathData = path.data; if (prevCmd === CMD.Q) { ctlPtx += cpx - pathData[len - 4]; ctlPty += cpy - pathData[len - 3]; } cpx = p[off++]; cpy = p[off++]; cmd = CMD.Q; path.addData(cmd, ctlPtx, ctlPty, cpx, cpy); break; case "t": ctlPtx = cpx; ctlPty = cpy; len = path.len(); pathData = path.data; if (prevCmd === CMD.Q) { ctlPtx += cpx - pathData[len - 4]; ctlPty += cpy - pathData[len - 3]; } cpx += p[off++]; cpy += p[off++]; cmd = CMD.Q; path.addData(cmd, ctlPtx, ctlPty, cpx, cpy); break; case "A": rx = p[off++]; ry = p[off++]; psi = p[off++]; fa = p[off++]; fs = p[off++]; x1 = cpx, y1 = cpy; cpx = p[off++]; cpy = p[off++]; cmd = CMD.A; processArc(x1, y1, cpx, cpy, fa, fs, rx, ry, psi, cmd, path); break; case "a": rx = p[off++]; ry = p[off++]; psi = p[off++]; fa = p[off++]; fs = p[off++]; x1 = cpx, y1 = cpy; cpx += p[off++]; cpy += p[off++]; cmd = CMD.A; processArc(x1, y1, cpx, cpy, fa, fs, rx, ry, psi, cmd, path); break; } } if (cmdStr === "z" || cmdStr === "Z") { cmd = CMD.Z; path.addData(cmd); cpx = subpathX; cpy = subpathY; } prevCmd = cmd; } path.toStatic(); return path; } var SVGPath = function(_super) { __extends(SVGPath, _super); function SVGPath() { return _super !== null && _super.apply(this, arguments) || this; } SVGPath.prototype.applyTransform = function(m) {}; return SVGPath; }(Path); function isPathProxy(path) { return path.setData != null; } function createPathOptions(str, opts) { var pathProxy = createPathProxyFromString(str); var innerOpts = extend({}, opts); innerOpts.buildPath = function(path) { var beProxy = isPathProxy(path); if (beProxy && path.canSave()) { path.appendPath(pathProxy); var ctx = path.getContext(); if (ctx) path.rebuildPath(ctx, 1); } else { var ctx = beProxy ? path.getContext() : path; if (ctx) pathProxy.rebuildPath(ctx, 1); } }; innerOpts.applyTransform = function(m) { transformPath(pathProxy, m); this.dirtyShape(); }; return innerOpts; } function createFromString(str, opts) { return new SVGPath(createPathOptions(str, opts)); } function extendFromString(str, defaultOpts) { var innerOpts = createPathOptions(str, defaultOpts); return function(_super) { __extends(Sub, _super); function Sub(opts) { var _this = _super.call(this, opts) || this; _this.applyTransform = innerOpts.applyTransform; _this.buildPath = innerOpts.buildPath; return _this; } return Sub; }(SVGPath); } function mergePath$1(pathEls, opts) { var pathList = []; var len = pathEls.length; for (var i = 0; i < len; i++) { var pathEl = pathEls[i]; pathList.push(pathEl.getUpdatedPathProxy(true)); } var pathBundle = new Path(opts); pathBundle.createPathProxy(); pathBundle.buildPath = function(path) { if (isPathProxy(path)) { path.appendPath(pathList); var ctx = path.getContext(); if (ctx) path.rebuildPath(ctx, 1); } }; return pathBundle; } //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/graphic/Group.js var Group$2 = function(_super) { __extends(Group, _super); function Group(opts) { var _this = _super.call(this) || this; _this.isGroup = true; _this._children = []; _this.attr(opts); return _this; } Group.prototype.childrenRef = function() { return this._children; }; Group.prototype.children = function() { return this._children.slice(); }; Group.prototype.childAt = function(idx) { return this._children[idx]; }; Group.prototype.childOfName = function(name) { var children = this._children; for (var i = 0; i < children.length; i++) if (children[i].name === name) return children[i]; }; Group.prototype.childCount = function() { return this._children.length; }; Group.prototype.add = function(child) { if (child) { if (child !== this && child.parent !== this) { this._children.push(child); this._doAdd(child); } } return this; }; Group.prototype.addBefore = function(child, nextSibling) { if (child && child !== this && child.parent !== this && nextSibling && nextSibling.parent === this) { var children = this._children; var idx = children.indexOf(nextSibling); if (idx >= 0) { children.splice(idx, 0, child); this._doAdd(child); } } return this; }; Group.prototype.replace = function(oldChild, newChild) { var idx = indexOf(this._children, oldChild); if (idx >= 0) this.replaceAt(newChild, idx); return this; }; Group.prototype.replaceAt = function(child, index) { var children = this._children; var old = children[index]; if (child && child !== this && child.parent !== this && child !== old) { children[index] = child; old.parent = null; var zr = this.__zr; if (zr) old.removeSelfFromZr(zr); this._doAdd(child); } return this; }; Group.prototype._doAdd = function(child) { if (child.parent) child.parent.remove(child); child.parent = this; var zr = this.__zr; if (zr && zr !== child.__zr) child.addSelfToZr(zr); zr && zr.refresh(); }; Group.prototype.remove = function(child) { var zr = this.__zr; var children = this._children; var idx = indexOf(children, child); if (idx < 0) return this; children.splice(idx, 1); child.parent = null; if (zr) child.removeSelfFromZr(zr); zr && zr.refresh(); return this; }; Group.prototype.removeAll = function() { var children = this._children; var zr = this.__zr; for (var i = 0; i < children.length; i++) { var child = children[i]; if (zr) child.removeSelfFromZr(zr); child.parent = null; } children.length = 0; return this; }; Group.prototype.eachChild = function(cb, context) { var children = this._children; for (var i = 0; i < children.length; i++) { var child = children[i]; cb.call(context, child, i); } return this; }; Group.prototype.traverse = function(cb, context) { for (var i = 0; i < this._children.length; i++) { var child = this._children[i]; var stopped = cb.call(context, child); if (child.isGroup && !stopped) child.traverse(cb, context); } return this; }; Group.prototype.addSelfToZr = function(zr) { _super.prototype.addSelfToZr.call(this, zr); for (var i = 0; i < this._children.length; i++) this._children[i].addSelfToZr(zr); }; Group.prototype.removeSelfFromZr = function(zr) { _super.prototype.removeSelfFromZr.call(this, zr); for (var i = 0; i < this._children.length; i++) this._children[i].removeSelfFromZr(zr); }; Group.prototype.getBoundingRect = function(includeChildren) { var tmpRect = new BoundingRect(0, 0, 0, 0); var children = includeChildren || this._children; var tmpMat = []; var rect = null; for (var i = 0; i < children.length; i++) { var child = children[i]; if (child.ignore || child.invisible) continue; var childRect = child.getBoundingRect(); var transform = child.getLocalTransform(tmpMat); if (transform) { BoundingRect.applyTransform(tmpRect, childRect, transform); rect = rect || tmpRect.clone(); rect.union(tmpRect); } else { rect = rect || childRect.clone(); rect.union(childRect); } } return rect || tmpRect; }; return Group; }(Element); Group$2.prototype.type = "group"; //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/graphic/shape/Circle.js var CircleShape = function() { function CircleShape() { this.cx = 0; this.cy = 0; this.r = 0; } return CircleShape; }(); var Circle = function(_super) { __extends(Circle, _super); function Circle(opts) { return _super.call(this, opts) || this; } Circle.prototype.getDefaultShape = function() { return new CircleShape(); }; Circle.prototype.buildPath = function(ctx, shape) { ctx.moveTo(shape.cx + shape.r, shape.cy); ctx.arc(shape.cx, shape.cy, shape.r, 0, Math.PI * 2); }; return Circle; }(Path); Circle.prototype.type = "circle"; //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/graphic/shape/Ellipse.js var EllipseShape = function() { function EllipseShape() { this.cx = 0; this.cy = 0; this.rx = 0; this.ry = 0; } return EllipseShape; }(); var Ellipse = function(_super) { __extends(Ellipse, _super); function Ellipse(opts) { return _super.call(this, opts) || this; } Ellipse.prototype.getDefaultShape = function() { return new EllipseShape(); }; Ellipse.prototype.buildPath = function(ctx, shape) { var k = .5522848; var x = shape.cx; var y = shape.cy; var a = shape.rx; var b = shape.ry; var ox = a * k; var oy = b * k; ctx.moveTo(x - a, y); ctx.bezierCurveTo(x - a, y - oy, x - ox, y - b, x, y - b); ctx.bezierCurveTo(x + ox, y - b, x + a, y - oy, x + a, y); ctx.bezierCurveTo(x + a, y + oy, x + ox, y + b, x, y + b); ctx.bezierCurveTo(x - ox, y + b, x - a, y + oy, x - a, y); ctx.closePath(); }; return Ellipse; }(Path); Ellipse.prototype.type = "ellipse"; //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/graphic/helper/roundSector.js var PI$2 = Math.PI; var PI2 = PI$2 * 2; var mathSin = Math.sin; var mathCos = Math.cos; var mathACos = Math.acos; var mathATan2 = Math.atan2; var mathAbs$1 = Math.abs; var mathSqrt = Math.sqrt; var mathMax$2 = Math.max; var mathMin$2 = Math.min; var e = 1e-4; function intersect(x0, y0, x1, y1, x2, y2, x3, y3) { var dx10 = x1 - x0; var dy10 = y1 - y0; var dx32 = x3 - x2; var dy32 = y3 - y2; var t = dy32 * dx10 - dx32 * dy10; if (t * t < e) return; t = (dx32 * (y0 - y2) - dy32 * (x0 - x2)) / t; return [x0 + t * dx10, y0 + t * dy10]; } function computeCornerTangents(x0, y0, x1, y1, radius, cr, clockwise) { var x01 = x0 - x1; var y01 = y0 - y1; var lo = (clockwise ? cr : -cr) / mathSqrt(x01 * x01 + y01 * y01); var ox = lo * y01; var oy = -lo * x01; var x11 = x0 + ox; var y11 = y0 + oy; var x10 = x1 + ox; var y10 = y1 + oy; var x00 = (x11 + x10) / 2; var y00 = (y11 + y10) / 2; var dx = x10 - x11; var dy = y10 - y11; var d2 = dx * dx + dy * dy; var r = radius - cr; var s = x11 * y10 - x10 * y11; var d = (dy < 0 ? -1 : 1) * mathSqrt(mathMax$2(0, r * r * d2 - s * s)); var cx0 = (s * dy - dx * d) / d2; var cy0 = (-s * dx - dy * d) / d2; var cx1 = (s * dy + dx * d) / d2; var cy1 = (-s * dx + dy * d) / d2; var dx0 = cx0 - x00; var dy0 = cy0 - y00; var dx1 = cx1 - x00; var dy1 = cy1 - y00; if (dx0 * dx0 + dy0 * dy0 > dx1 * dx1 + dy1 * dy1) { cx0 = cx1; cy0 = cy1; } return { cx: cx0, cy: cy0, x0: -ox, y0: -oy, x1: cx0 * (radius / r - 1), y1: cy0 * (radius / r - 1) }; } function normalizeCornerRadius(cr) { var arr; if (isArray(cr)) { var len = cr.length; if (!len) return cr; if (len === 1) arr = [ cr[0], cr[0], 0, 0 ]; else if (len === 2) arr = [ cr[0], cr[0], cr[1], cr[1] ]; else if (len === 3) arr = cr.concat(cr[2]); else arr = cr; } else arr = [ cr, cr, cr, cr ]; return arr; } function buildPath$1(ctx, shape) { var _a; var radius = mathMax$2(shape.r, 0); var innerRadius = mathMax$2(shape.r0 || 0, 0); var hasRadius = radius > 0; if (!hasRadius && !(innerRadius > 0)) return; if (!hasRadius) { radius = innerRadius; innerRadius = 0; } if (innerRadius > radius) { var tmp = radius; radius = innerRadius; innerRadius = tmp; } var startAngle = shape.startAngle, endAngle = shape.endAngle; if (isNaN(startAngle) || isNaN(endAngle)) return; var cx = shape.cx, cy = shape.cy; var clockwise = !!shape.clockwise; var arc = mathAbs$1(endAngle - startAngle); var mod = arc > PI2 && arc % PI2; mod > e && (arc = mod); if (!(radius > e)) ctx.moveTo(cx, cy); else if (arc > PI2 - e) { ctx.moveTo(cx + radius * mathCos(startAngle), cy + radius * mathSin(startAngle)); ctx.arc(cx, cy, radius, startAngle, endAngle, !clockwise); if (innerRadius > e) { ctx.moveTo(cx + innerRadius * mathCos(endAngle), cy + innerRadius * mathSin(endAngle)); ctx.arc(cx, cy, innerRadius, endAngle, startAngle, clockwise); } } else { var icrStart = void 0; var icrEnd = void 0; var ocrStart = void 0; var ocrEnd = void 0; var ocrs = void 0; var ocre = void 0; var icrs = void 0; var icre = void 0; var ocrMax = void 0; var icrMax = void 0; var limitedOcrMax = void 0; var limitedIcrMax = void 0; var xre = void 0; var yre = void 0; var xirs = void 0; var yirs = void 0; var xrs = radius * mathCos(startAngle); var yrs = radius * mathSin(startAngle); var xire = innerRadius * mathCos(endAngle); var yire = innerRadius * mathSin(endAngle); var hasArc = arc > e; if (hasArc) { var cornerRadius = shape.cornerRadius; if (cornerRadius) _a = normalizeCornerRadius(cornerRadius), icrStart = _a[0], icrEnd = _a[1], ocrStart = _a[2], ocrEnd = _a[3]; var halfRd = mathAbs$1(radius - innerRadius) / 2; ocrs = mathMin$2(halfRd, ocrStart); ocre = mathMin$2(halfRd, ocrEnd); icrs = mathMin$2(halfRd, icrStart); icre = mathMin$2(halfRd, icrEnd); limitedOcrMax = ocrMax = mathMax$2(ocrs, ocre); limitedIcrMax = icrMax = mathMax$2(icrs, icre); if (ocrMax > e || icrMax > e) { xre = radius * mathCos(endAngle); yre = radius * mathSin(endAngle); xirs = innerRadius * mathCos(startAngle); yirs = innerRadius * mathSin(startAngle); if (arc < PI$2) { var it_1 = intersect(xrs, yrs, xirs, yirs, xre, yre, xire, yire); if (it_1) { var x0 = xrs - it_1[0]; var y0 = yrs - it_1[1]; var x1 = xre - it_1[0]; var y1 = yre - it_1[1]; var a = 1 / mathSin(mathACos((x0 * x1 + y0 * y1) / (mathSqrt(x0 * x0 + y0 * y0) * mathSqrt(x1 * x1 + y1 * y1))) / 2); var b = mathSqrt(it_1[0] * it_1[0] + it_1[1] * it_1[1]); limitedOcrMax = mathMin$2(ocrMax, (radius - b) / (a + 1)); limitedIcrMax = mathMin$2(icrMax, (innerRadius - b) / (a - 1)); } } } } if (!hasArc) ctx.moveTo(cx + xrs, cy + yrs); else if (limitedOcrMax > e) { var crStart = mathMin$2(ocrStart, limitedOcrMax); var crEnd = mathMin$2(ocrEnd, limitedOcrMax); var ct0 = computeCornerTangents(xirs, yirs, xrs, yrs, radius, crStart, clockwise); var ct1 = computeCornerTangents(xre, yre, xire, yire, radius, crEnd, clockwise); ctx.moveTo(cx + ct0.cx + ct0.x0, cy + ct0.cy + ct0.y0); if (limitedOcrMax < ocrMax && crStart === crEnd) ctx.arc(cx + ct0.cx, cy + ct0.cy, limitedOcrMax, mathATan2(ct0.y0, ct0.x0), mathATan2(ct1.y0, ct1.x0), !clockwise); else { crStart > 0 && ctx.arc(cx + ct0.cx, cy + ct0.cy, crStart, mathATan2(ct0.y0, ct0.x0), mathATan2(ct0.y1, ct0.x1), !clockwise); ctx.arc(cx, cy, radius, mathATan2(ct0.cy + ct0.y1, ct0.cx + ct0.x1), mathATan2(ct1.cy + ct1.y1, ct1.cx + ct1.x1), !clockwise); crEnd > 0 && ctx.arc(cx + ct1.cx, cy + ct1.cy, crEnd, mathATan2(ct1.y1, ct1.x1), mathATan2(ct1.y0, ct1.x0), !clockwise); } } else { ctx.moveTo(cx + xrs, cy + yrs); ctx.arc(cx, cy, radius, startAngle, endAngle, !clockwise); } if (!(innerRadius > e) || !hasArc) ctx.lineTo(cx + xire, cy + yire); else if (limitedIcrMax > e) { var crStart = mathMin$2(icrStart, limitedIcrMax); var crEnd = mathMin$2(icrEnd, limitedIcrMax); var ct0 = computeCornerTangents(xire, yire, xre, yre, innerRadius, -crEnd, clockwise); var ct1 = computeCornerTangents(xrs, yrs, xirs, yirs, innerRadius, -crStart, clockwise); ctx.lineTo(cx + ct0.cx + ct0.x0, cy + ct0.cy + ct0.y0); if (limitedIcrMax < icrMax && crStart === crEnd) ctx.arc(cx + ct0.cx, cy + ct0.cy, limitedIcrMax, mathATan2(ct0.y0, ct0.x0), mathATan2(ct1.y0, ct1.x0), !clockwise); else { crEnd > 0 && ctx.arc(cx + ct0.cx, cy + ct0.cy, crEnd, mathATan2(ct0.y0, ct0.x0), mathATan2(ct0.y1, ct0.x1), !clockwise); ctx.arc(cx, cy, innerRadius, mathATan2(ct0.cy + ct0.y1, ct0.cx + ct0.x1), mathATan2(ct1.cy + ct1.y1, ct1.cx + ct1.x1), clockwise); crStart > 0 && ctx.arc(cx + ct1.cx, cy + ct1.cy, crStart, mathATan2(ct1.y1, ct1.x1), mathATan2(ct1.y0, ct1.x0), !clockwise); } } else { ctx.lineTo(cx + xire, cy + yire); ctx.arc(cx, cy, innerRadius, endAngle, startAngle, clockwise); } } ctx.closePath(); } //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/graphic/shape/Sector.js var SectorShape = function() { function SectorShape() { this.cx = 0; this.cy = 0; this.r0 = 0; this.r = 0; this.startAngle = 0; this.endAngle = Math.PI * 2; this.clockwise = true; this.cornerRadius = 0; } return SectorShape; }(); var Sector = function(_super) { __extends(Sector, _super); function Sector(opts) { return _super.call(this, opts) || this; } Sector.prototype.getDefaultShape = function() { return new SectorShape(); }; Sector.prototype.buildPath = function(ctx, shape) { buildPath$1(ctx, shape); }; Sector.prototype.isZeroArea = function() { return this.shape.startAngle === this.shape.endAngle || this.shape.r === this.shape.r0; }; return Sector; }(Path); Sector.prototype.type = "sector"; //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/graphic/shape/Ring.js var RingShape = function() { function RingShape() { this.cx = 0; this.cy = 0; this.r = 0; this.r0 = 0; } return RingShape; }(); var Ring = function(_super) { __extends(Ring, _super); function Ring(opts) { return _super.call(this, opts) || this; } Ring.prototype.getDefaultShape = function() { return new RingShape(); }; Ring.prototype.buildPath = function(ctx, shape) { var x = shape.cx; var y = shape.cy; var PI2 = Math.PI * 2; ctx.moveTo(x + shape.r, y); ctx.arc(x, y, shape.r, 0, PI2, false); ctx.moveTo(x + shape.r0, y); ctx.arc(x, y, shape.r0, 0, PI2, true); }; return Ring; }(Path); Ring.prototype.type = "ring"; //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/graphic/helper/smoothBezier.js function smoothBezier(points, smooth, isLoop, constraint) { var cps = []; var v = []; var v1 = []; var v2 = []; var prevPoint; var nextPoint; var min; var max; if (constraint) { min = [Infinity, Infinity]; max = [-Infinity, -Infinity]; for (var i = 0, len = points.length; i < len; i++) { min$1(min, min, points[i]); max$1(max, max, points[i]); } min$1(min, min, constraint[0]); max$1(max, max, constraint[1]); } for (var i = 0, len = points.length; i < len; i++) { var point = points[i]; if (isLoop) { prevPoint = points[i ? i - 1 : len - 1]; nextPoint = points[(i + 1) % len]; } else if (i === 0 || i === len - 1) { cps.push(clone$1(points[i])); continue; } else { prevPoint = points[i - 1]; nextPoint = points[i + 1]; } sub(v, nextPoint, prevPoint); scale(v, v, smooth); var d0 = distance(point, prevPoint); var d1 = distance(point, nextPoint); var sum = d0 + d1; if (sum !== 0) { d0 /= sum; d1 /= sum; } scale(v1, v, -d0); scale(v2, v, d1); var cp0 = add([], point, v1); var cp1 = add([], point, v2); if (constraint) { max$1(cp0, cp0, min); min$1(cp0, cp0, max); max$1(cp1, cp1, min); min$1(cp1, cp1, max); } cps.push(cp0); cps.push(cp1); } if (isLoop) cps.push(cps.shift()); return cps; } //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/graphic/helper/poly.js function buildPath(ctx, shape, closePath) { var smooth = shape.smooth; var points = shape.points; if (points && points.length >= 2) { if (smooth) { var controlPoints = smoothBezier(points, smooth, closePath, shape.smoothConstraint); ctx.moveTo(points[0][0], points[0][1]); var len = points.length; for (var i = 0; i < (closePath ? len : len - 1); i++) { var cp1 = controlPoints[i * 2]; var cp2 = controlPoints[i * 2 + 1]; var p = points[(i + 1) % len]; ctx.bezierCurveTo(cp1[0], cp1[1], cp2[0], cp2[1], p[0], p[1]); } } else { ctx.moveTo(points[0][0], points[0][1]); for (var i = 1, l = points.length; i < l; i++) ctx.lineTo(points[i][0], points[i][1]); } closePath && ctx.closePath(); } } //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/graphic/shape/Polygon.js var PolygonShape = function() { function PolygonShape() { this.points = null; this.smooth = 0; this.smoothConstraint = null; } return PolygonShape; }(); var Polygon = function(_super) { __extends(Polygon, _super); function Polygon(opts) { return _super.call(this, opts) || this; } Polygon.prototype.getDefaultShape = function() { return new PolygonShape(); }; Polygon.prototype.buildPath = function(ctx, shape) { buildPath(ctx, shape, true); }; return Polygon; }(Path); Polygon.prototype.type = "polygon"; //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/graphic/shape/Polyline.js var PolylineShape = function() { function PolylineShape() { this.points = null; this.percent = 1; this.smooth = 0; this.smoothConstraint = null; } return PolylineShape; }(); var Polyline = function(_super) { __extends(Polyline, _super); function Polyline(opts) { return _super.call(this, opts) || this; } Polyline.prototype.getDefaultStyle = function() { return { stroke: "#000", fill: null }; }; Polyline.prototype.getDefaultShape = function() { return new PolylineShape(); }; Polyline.prototype.buildPath = function(ctx, shape) { buildPath(ctx, shape, false); }; return Polyline; }(Path); Polyline.prototype.type = "polyline"; //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/graphic/shape/Line.js var subPixelOptimizeOutputShape = {}; var LineShape = function() { function LineShape() { this.x1 = 0; this.y1 = 0; this.x2 = 0; this.y2 = 0; this.percent = 1; } return LineShape; }(); var Line = function(_super) { __extends(Line, _super); function Line(opts) { return _super.call(this, opts) || this; } Line.prototype.getDefaultStyle = function() { return { stroke: "#000", fill: null }; }; Line.prototype.getDefaultShape = function() { return new LineShape(); }; Line.prototype.buildPath = function(ctx, shape) { var x1; var y1; var x2; var y2; if (this.subPixelOptimize) { var optimizedShape = subPixelOptimizeLine$1(subPixelOptimizeOutputShape, shape, this.style); x1 = optimizedShape.x1; y1 = optimizedShape.y1; x2 = optimizedShape.x2; y2 = optimizedShape.y2; } else { x1 = shape.x1; y1 = shape.y1; x2 = shape.x2; y2 = shape.y2; } var percent = shape.percent; if (percent === 0) return; ctx.moveTo(x1, y1); if (percent < 1) { x2 = x1 * (1 - percent) + x2 * percent; y2 = y1 * (1 - percent) + y2 * percent; } ctx.lineTo(x2, y2); }; Line.prototype.pointAt = function(p) { var shape = this.shape; return [shape.x1 * (1 - p) + shape.x2 * p, shape.y1 * (1 - p) + shape.y2 * p]; }; return Line; }(Path); Line.prototype.type = "line"; //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/graphic/shape/BezierCurve.js var out = []; var BezierCurveShape = function() { function BezierCurveShape() { this.x1 = 0; this.y1 = 0; this.x2 = 0; this.y2 = 0; this.cpx1 = 0; this.cpy1 = 0; this.percent = 1; } return BezierCurveShape; }(); function someVectorAt(shape, t, isTangent) { var cpx2 = shape.cpx2; var cpy2 = shape.cpy2; if (cpx2 != null || cpy2 != null) return [(isTangent ? cubicDerivativeAt : cubicAt)(shape.x1, shape.cpx1, shape.cpx2, shape.x2, t), (isTangent ? cubicDerivativeAt : cubicAt)(shape.y1, shape.cpy1, shape.cpy2, shape.y2, t)]; else return [(isTangent ? quadraticDerivativeAt : quadraticAt)(shape.x1, shape.cpx1, shape.x2, t), (isTangent ? quadraticDerivativeAt : quadraticAt)(shape.y1, shape.cpy1, shape.y2, t)]; } var BezierCurve = function(_super) { __extends(BezierCurve, _super); function BezierCurve(opts) { return _super.call(this, opts) || this; } BezierCurve.prototype.getDefaultStyle = function() { return { stroke: "#000", fill: null }; }; BezierCurve.prototype.getDefaultShape = function() { return new BezierCurveShape(); }; BezierCurve.prototype.buildPath = function(ctx, shape) { var x1 = shape.x1; var y1 = shape.y1; var x2 = shape.x2; var y2 = shape.y2; var cpx1 = shape.cpx1; var cpy1 = shape.cpy1; var cpx2 = shape.cpx2; var cpy2 = shape.cpy2; var percent = shape.percent; if (percent === 0) return; ctx.moveTo(x1, y1); if (cpx2 == null || cpy2 == null) { if (percent < 1) { quadraticSubdivide(x1, cpx1, x2, percent, out); cpx1 = out[1]; x2 = out[2]; quadraticSubdivide(y1, cpy1, y2, percent, out); cpy1 = out[1]; y2 = out[2]; } ctx.quadraticCurveTo(cpx1, cpy1, x2, y2); } else { if (percent < 1) { cubicSubdivide(x1, cpx1, cpx2, x2, percent, out); cpx1 = out[1]; cpx2 = out[2]; x2 = out[3]; cubicSubdivide(y1, cpy1, cpy2, y2, percent, out); cpy1 = out[1]; cpy2 = out[2]; y2 = out[3]; } ctx.bezierCurveTo(cpx1, cpy1, cpx2, cpy2, x2, y2); } }; BezierCurve.prototype.pointAt = function(t) { return someVectorAt(this.shape, t, false); }; BezierCurve.prototype.tangentAt = function(t) { var p = someVectorAt(this.shape, t, true); return normalize(p, p); }; return BezierCurve; }(Path); BezierCurve.prototype.type = "bezier-curve"; //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/graphic/shape/Arc.js var ArcShape = function() { function ArcShape() { this.cx = 0; this.cy = 0; this.r = 0; this.startAngle = 0; this.endAngle = Math.PI * 2; this.clockwise = true; } return ArcShape; }(); var Arc = function(_super) { __extends(Arc, _super); function Arc(opts) { return _super.call(this, opts) || this; } Arc.prototype.getDefaultStyle = function() { return { stroke: "#000", fill: null }; }; Arc.prototype.getDefaultShape = function() { return new ArcShape(); }; Arc.prototype.buildPath = function(ctx, shape) { var x = shape.cx; var y = shape.cy; var r = Math.max(shape.r, 0); var startAngle = shape.startAngle; var endAngle = shape.endAngle; var clockwise = shape.clockwise; var unitX = Math.cos(startAngle); var unitY = Math.sin(startAngle); ctx.moveTo(unitX * r + x, unitY * r + y); ctx.arc(x, y, r, startAngle, endAngle, !clockwise); }; return Arc; }(Path); Arc.prototype.type = "arc"; //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/graphic/CompoundPath.js var CompoundPath = function(_super) { __extends(CompoundPath, _super); function CompoundPath() { var _this = _super !== null && _super.apply(this, arguments) || this; _this.type = "compound"; return _this; } CompoundPath.prototype._updatePathDirty = function() { var paths = this.shape.paths; var dirtyPath = this.shapeChanged(); for (var i = 0; i < paths.length; i++) dirtyPath = dirtyPath || paths[i].shapeChanged(); if (dirtyPath) this.dirtyShape(); }; CompoundPath.prototype.beforeBrush = function() { this._updatePathDirty(); var paths = this.shape.paths || []; var scale = this.getGlobalScale(); for (var i = 0; i < paths.length; i++) { if (!paths[i].path) paths[i].createPathProxy(); paths[i].path.setScale(scale[0], scale[1], paths[i].segmentIgnoreThreshold); } }; CompoundPath.prototype.buildPath = function(ctx, shape) { var paths = shape.paths || []; for (var i = 0; i < paths.length; i++) paths[i].buildPath(ctx, paths[i].shape, true); }; CompoundPath.prototype.afterBrush = function() { var paths = this.shape.paths || []; for (var i = 0; i < paths.length; i++) paths[i].pathUpdated(); }; CompoundPath.prototype.getBoundingRect = function() { this._updatePathDirty.call(this); return Path.prototype.getBoundingRect.call(this); }; return CompoundPath; }(Path); //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/graphic/Gradient.js var Gradient = function() { function Gradient(colorStops) { this.colorStops = colorStops || []; } Gradient.prototype.addColorStop = function(offset, color) { this.colorStops.push({ offset, color }); }; return Gradient; }(); //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/graphic/LinearGradient.js var LinearGradient = function(_super) { __extends(LinearGradient, _super); function LinearGradient(x, y, x2, y2, colorStops, globalCoord) { var _this = _super.call(this, colorStops) || this; _this.x = x == null ? 0 : x; _this.y = y == null ? 0 : y; _this.x2 = x2 == null ? 1 : x2; _this.y2 = y2 == null ? 0 : y2; _this.type = "linear"; _this.global = globalCoord || false; return _this; } return LinearGradient; }(Gradient); //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/graphic/RadialGradient.js var RadialGradient = function(_super) { __extends(RadialGradient, _super); function RadialGradient(x, y, r, colorStops, globalCoord) { var _this = _super.call(this, colorStops) || this; _this.x = x == null ? .5 : x; _this.y = y == null ? .5 : y; _this.r = r == null ? .5 : r; _this.type = "radial"; _this.global = globalCoord || false; return _this; } return RadialGradient; }(Gradient); //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/core/OrientedBoundingRect.js var mathMin$1 = Math.min; var mathMax$1 = Math.max; var mathAbs = Math.abs; var _extent = [0, 0]; var _extent2 = [0, 0]; var _intersectCtx = createIntersectContext(); var _minTv = _intersectCtx.minTv; var _maxTv = _intersectCtx.maxTv; var OrientedBoundingRect = function() { function OrientedBoundingRect(rect, transform) { this._corners = []; this._axes = []; this._origin = [0, 0]; for (var i = 0; i < 4; i++) this._corners[i] = new Point(); for (var i = 0; i < 2; i++) this._axes[i] = new Point(); if (rect) this.fromBoundingRect(rect, transform); } OrientedBoundingRect.prototype.fromBoundingRect = function(rect, transform) { var corners = this._corners; var axes = this._axes; var x = rect.x; var y = rect.y; var x2 = x + rect.width; var y2 = y + rect.height; corners[0].set(x, y); corners[1].set(x2, y); corners[2].set(x2, y2); corners[3].set(x, y2); if (transform) for (var i = 0; i < 4; i++) corners[i].transform(transform); Point.sub(axes[0], corners[1], corners[0]); Point.sub(axes[1], corners[3], corners[0]); axes[0].normalize(); axes[1].normalize(); for (var i = 0; i < 2; i++) this._origin[i] = axes[i].dot(corners[0]); }; OrientedBoundingRect.prototype.intersect = function(other, mtv, opt) { var overlapped = true; var noMtv = !mtv; if (mtv) Point.set(mtv, 0, 0); _intersectCtx.reset(opt, !noMtv); if (!this._intersectCheckOneSide(this, other, noMtv, 1)) { overlapped = false; if (noMtv) return overlapped; } if (!this._intersectCheckOneSide(other, this, noMtv, -1)) { overlapped = false; if (noMtv) return overlapped; } if (!noMtv && !_intersectCtx.negativeSize) Point.copy(mtv, overlapped ? _intersectCtx.useDir ? _intersectCtx.dirMinTv : _minTv : _maxTv); return overlapped; }; OrientedBoundingRect.prototype._intersectCheckOneSide = function(self, other, noMtv, inverse) { var overlapped = true; for (var i = 0; i < 2; i++) { var axis = self._axes[i]; self._getProjMinMaxOnAxis(i, self._corners, _extent); self._getProjMinMaxOnAxis(i, other._corners, _extent2); if (_intersectCtx.negativeSize || _extent[1] < _extent2[0] || _extent[0] > _extent2[1]) { overlapped = false; if (_intersectCtx.negativeSize || noMtv) return overlapped; var dist0 = mathAbs(_extent2[0] - _extent[1]); var dist1 = mathAbs(_extent[0] - _extent2[1]); if (mathMin$1(dist0, dist1) > _maxTv.len()) if (dist0 < dist1) Point.scale(_maxTv, axis, -dist0 * inverse); else Point.scale(_maxTv, axis, dist1 * inverse); } else if (!noMtv) { var dist0 = mathAbs(_extent2[0] - _extent[1]); var dist1 = mathAbs(_extent[0] - _extent2[1]); if (_intersectCtx.useDir || mathMin$1(dist0, dist1) < _minTv.len()) { if (dist0 < dist1 || !_intersectCtx.bidirectional) { Point.scale(_minTv, axis, dist0 * inverse); if (_intersectCtx.useDir) _intersectCtx.calcDirMTV(); } if (dist0 >= dist1 || !_intersectCtx.bidirectional) { Point.scale(_minTv, axis, -dist1 * inverse); if (_intersectCtx.useDir) _intersectCtx.calcDirMTV(); } } } } return overlapped; }; OrientedBoundingRect.prototype._getProjMinMaxOnAxis = function(dim, corners, out) { var axis = this._axes[dim]; var origin = this._origin; var proj = corners[0].dot(axis) + origin[dim]; var min = proj; var max = proj; for (var i = 1; i < corners.length; i++) { var proj_1 = corners[i].dot(axis) + origin[dim]; min = mathMin$1(proj_1, min); max = mathMax$1(proj_1, max); } out[0] = min + _intersectCtx.touchThreshold; out[1] = max - _intersectCtx.touchThreshold; _intersectCtx.negativeSize = out[1] < out[0]; }; return OrientedBoundingRect; }(); //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/graphic/IncrementalDisplayable.js var m = []; var IncrementalDisplayable = function(_super) { __extends(IncrementalDisplayable, _super); function IncrementalDisplayable() { var _this = _super !== null && _super.apply(this, arguments) || this; _this.notClear = true; _this.incremental = 1; _this._displayables = []; _this._temporaryDisplayables = []; _this._cursor = 0; return _this; } IncrementalDisplayable.prototype.traverse = function(cb, context) { cb.call(context, this); }; IncrementalDisplayable.prototype.useStyle = function() { this.style = {}; }; IncrementalDisplayable.prototype._useHoverStyle = function() { this.__hoverStyle = null; }; IncrementalDisplayable.prototype.getCursor = function() { return this._cursor; }; IncrementalDisplayable.prototype.innerAfterBrush = function() { this._cursor = this._displayables.length; }; IncrementalDisplayable.prototype.clearDisplaybles = function() { this._displayables = []; this._temporaryDisplayables = []; this._cursor = 0; this.markRedraw(); this.notClear = false; }; IncrementalDisplayable.prototype.clearTemporalDisplayables = function() { this._temporaryDisplayables = []; }; IncrementalDisplayable.prototype.addDisplayable = function(displayable, notPersistent) { if (notPersistent) this._temporaryDisplayables.push(displayable); else this._displayables.push(displayable); this.markRedraw(); }; IncrementalDisplayable.prototype.addDisplayables = function(displayables, notPersistent) { notPersistent = notPersistent || false; for (var i = 0; i < displayables.length; i++) this.addDisplayable(displayables[i], notPersistent); }; IncrementalDisplayable.prototype.getDisplayables = function() { return this._displayables; }; IncrementalDisplayable.prototype.getTemporalDisplayables = function() { return this._temporaryDisplayables; }; IncrementalDisplayable.prototype.eachPendingDisplayable = function(cb) { for (var i = this._cursor; i < this._displayables.length; i++) cb && cb(this._displayables[i]); for (var i = 0; i < this._temporaryDisplayables.length; i++) cb && cb(this._temporaryDisplayables[i]); }; IncrementalDisplayable.prototype.update = function() { this.updateTransform(); for (var i = this._cursor; i < this._displayables.length; i++) { var displayable = this._displayables[i]; displayable.parent = this; displayable.update(); displayable.parent = null; } for (var i = 0; i < this._temporaryDisplayables.length; i++) { var displayable = this._temporaryDisplayables[i]; displayable.parent = this; displayable.update(); displayable.parent = null; } }; IncrementalDisplayable.prototype.getBoundingRect = function() { if (!this._rect) { var rect = new BoundingRect(Infinity, Infinity, -Infinity, -Infinity); for (var i = 0; i < this._displayables.length; i++) { var displayable = this._displayables[i]; var childRect = displayable.getBoundingRect().clone(); if (displayable.needLocalTransform()) childRect.applyTransform(displayable.getLocalTransform(m)); rect.union(childRect); } this._rect = rect; } return this._rect; }; IncrementalDisplayable.prototype.contain = function(x, y) { var localPos = this.transformCoordToLocal(x, y); if (this.getBoundingRect().contain(localPos[0], localPos[1])) { for (var i = 0; i < this._displayables.length; i++) if (this._displayables[i].contain(x, y)) return true; } return false; }; return IncrementalDisplayable; }(Displayable); //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/animation/basicTransition.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var transitionStore = makeInner(); /** * Return null if animation is disabled. */ function getAnimationConfig(animationType, animatableModel, dataIndex, extraOpts, extraDelayParams) { var animationPayload; if (animatableModel && animatableModel.ecModel) { var updatePayload = animatableModel.ecModel.getUpdatePayload(); animationPayload = updatePayload && updatePayload.animation; } var animationEnabled = animatableModel && animatableModel.isAnimationEnabled(); var isUpdate = animationType === "update"; if (animationEnabled) { var duration = void 0; var easing = void 0; var delay = void 0; if (extraOpts) { duration = retrieve2(extraOpts.duration, 200); easing = retrieve2(extraOpts.easing, "cubicOut"); delay = 0; } else { duration = animatableModel.getShallow(isUpdate ? "animationDurationUpdate" : "animationDuration"); easing = animatableModel.getShallow(isUpdate ? "animationEasingUpdate" : "animationEasing"); delay = animatableModel.getShallow(isUpdate ? "animationDelayUpdate" : "animationDelay"); } if (animationPayload) { animationPayload.duration != null && (duration = animationPayload.duration); animationPayload.easing != null && (easing = animationPayload.easing); animationPayload.delay != null && (delay = animationPayload.delay); } if (isFunction(delay)) delay = delay(dataIndex, extraDelayParams); if (isFunction(duration)) duration = duration(dataIndex); return { duration: duration || 0, delay, easing }; } else return null; } function animateOrSetProps(animationType, el, props, animatableModel, dataIndex, cb, during) { var isFrom = false; var removeOpt; if (isFunction(dataIndex)) { during = cb; cb = dataIndex; dataIndex = null; } else if (isObject$2(dataIndex)) { cb = dataIndex.cb; during = dataIndex.during; isFrom = dataIndex.isFrom; removeOpt = dataIndex.removeOpt; dataIndex = dataIndex.dataIndex; } var isRemove = animationType === "leave"; if (!isRemove) el.stopAnimation("leave"); var animationConfig = getAnimationConfig(animationType, animatableModel, dataIndex, isRemove ? removeOpt || {} : null, animatableModel && animatableModel.getAnimationDelayParams ? animatableModel.getAnimationDelayParams(el, dataIndex) : null); if (animationConfig && animationConfig.duration > 0) { var duration = animationConfig.duration; var animationDelay = animationConfig.delay; var animationEasing = animationConfig.easing; var animateConfig = { duration, delay: animationDelay || 0, easing: animationEasing, done: cb, force: !!cb || !!during, setToFinal: !isRemove, scope: animationType, during }; isFrom ? el.animateFrom(props, animateConfig) : el.animateTo(props, animateConfig); } else { el.stopAnimation(); !isFrom && el.attr(props); during && during(1); cb && cb(); } } /** * Update graphic element properties with or without animation according to the * configuration in series. * * Caution: this method will stop previous animation. * So do not use this method to one element twice before * animation starts, unless you know what you are doing. * @example * graphic.updateProps(el, { * position: [100, 100] * }, seriesModel, dataIndex, function () { console.log('Animation done!'); }); * // Or * graphic.updateProps(el, { * position: [100, 100] * }, seriesModel, function () { console.log('Animation done!'); }); */ function updateProps$1(el, props, animatableModel, dataIndex, cb, during) { animateOrSetProps("update", el, props, animatableModel, dataIndex, cb, during); } /** * Init graphic element properties with or without animation according to the * configuration in series. * * Caution: this method will stop previous animation. * So do not use this method to one element twice before * animation starts, unless you know what you are doing. */ function initProps(el, props, animatableModel, dataIndex, cb, during) { animateOrSetProps("enter", el, props, animatableModel, dataIndex, cb, during); } /** * If element is removed. * It can determine if element is having remove animation. */ function isElementRemoved(el) { if (!el.__zr) return true; for (var i = 0; i < el.animators.length; i++) if (el.animators[i].scope === "leave") return true; return false; } /** * Remove graphic element */ function removeElement(el, props, animatableModel, dataIndex, cb, during) { if (isElementRemoved(el)) return; animateOrSetProps("leave", el, props, animatableModel, dataIndex, cb, during); } function fadeOutDisplayable(el, animatableModel, dataIndex, done) { el.removeTextContent(); el.removeTextGuideLine(); removeElement(el, { style: { opacity: 0 } }, animatableModel, dataIndex, done); } function removeElementWithFadeOut(el, animatableModel, dataIndex) { function doRemove() { el.parent && el.parent.remove(el); } if (!el.isGroup) fadeOutDisplayable(el, animatableModel, dataIndex, doRemove); else el.traverse(function(disp) { if (!disp.isGroup) fadeOutDisplayable(disp, animatableModel, dataIndex, doRemove); }); } /** * Save old style for style transition in universalTransition module. * It's used when element will be reused in each render. * For chart like map, heatmap, which will always create new element. * We don't need to save this because universalTransition can get old style from the old element */ function saveOldStyle(el) { transitionStore(el).oldStyle = el.style; } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/util/graphic.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var graphic_exports = /* @__PURE__ */ __exportAll({ Arc: () => Arc, BezierCurve: () => BezierCurve, BoundingRect: () => BoundingRect, Circle: () => Circle, CompoundPath: () => CompoundPath, Ellipse: () => Ellipse, Group: () => Group$2, HOVER_LAYER_FOR_INCREMENTAL: () => 2, HOVER_LAYER_FROM_THRESHOLD: () => 1, HOVER_LAYER_NO: () => 0, Image: () => ZRImage, IncrementalDisplayable: () => IncrementalDisplayable, Line: () => Line, LinearGradient: () => LinearGradient, OrientedBoundingRect: () => OrientedBoundingRect, Path: () => Path, Point: () => Point, Polygon: () => Polygon, Polyline: () => Polyline, RadialGradient: () => RadialGradient, Rect: () => Rect, Ring: () => Ring, Sector: () => Sector, Text: () => ZRText, WH: () => WH$1, XY: () => XY$1, applyTransform: () => applyTransform, calcZ2Range: () => calcZ2Range, clipPointsByRect: () => clipPointsByRect, clipRectByRect: () => clipRectByRect, createIcon: () => createIcon, decomposeTransform: () => decomposeTransform, ensureCopyRect: () => ensureCopyRect, ensureCopyTransform: () => ensureCopyTransform, expandOrShrinkRect: () => expandOrShrinkRect, extendPath: () => extendPath, extendShape: () => extendShape, getCurrentCanvasPainter: () => getCurrentCanvasPainter, getShapeClass: () => getShapeClass, getTransform: () => getTransform, groupTransition: () => groupTransition, initProps: () => initProps, isBoundingRectAxisAligned: () => isBoundingRectAxisAligned, isElementRemoved: () => isElementRemoved, lineLineIntersect: () => lineLineIntersect, linePolygonIntersect: () => linePolygonIntersect, makeImage: () => makeImage, makePath: () => makePath, mergePath: () => mergePath, payloadDisableAnimation: () => payloadDisableAnimation, registerShape: () => registerShape, removeElement: () => removeElement, removeElementWithFadeOut: () => removeElementWithFadeOut, resizePath: () => resizePath, retrieveZInfo: () => retrieveZInfo, setTooltipConfig: () => setTooltipConfig, subPixelOptimize: () => subPixelOptimize, subPixelOptimizeLine: () => subPixelOptimizeLine, subPixelOptimizeRect: () => subPixelOptimizeRect, transformDirection: () => transformDirection, traverseElements: () => traverseElements, traverseUpdateZ: () => traverseUpdateZ, updateProps: () => updateProps$1 }); var _customShapeMap = {}; var XY$1 = ["x", "y"]; var WH$1 = ["width", "height"]; /** * Extend shape with parameters */ function extendShape(opts) { return Path.extend(opts); } var extendPathFromString = extendFromString; /** * Extend path */ function extendPath(pathData, opts) { return extendPathFromString(pathData, opts); } /** * Register a user defined shape. * The shape class can be fetched by `getShapeClass` * This method will overwrite the registered shapes, including * the registered built-in shapes, if using the same `name`. * The shape can be used in `custom series` and * `graphic component` by declaring `{type: name}`. * * @param name * @param ShapeClass Can be generated by `extendShape`. */ function registerShape(name, ShapeClass) { _customShapeMap[name] = ShapeClass; } /** * Find shape class registered by `registerShape`. Usually used in * fetching user defined shape. * * [Caution]: * (1) This method **MUST NOT be used inside echarts !!!**, unless it is prepared * to use user registered shapes. * Because the built-in shape (see `getBuiltInShape`) will be registered by * `registerShape` by default. That enables users to get both built-in * shapes as well as the shapes belonging to themsleves. But users can overwrite * the built-in shapes by using names like 'circle', 'rect' via calling * `registerShape`. So the echarts inner featrues should not fetch shapes from here * in case that it is overwritten by users, except that some features, like * `custom series`, `graphic component`, do it deliberately. * * (2) In the features like `custom series`, `graphic component`, the user input * `{tpye: 'xxx'}` does not only specify shapes but also specify other graphic * elements like `'group'`, `'text'`, `'image'` or event `'path'`. Those names * are reserved names, that is, if some user registers a shape named `'image'`, * the shape will not be used. If we intending to add some more reserved names * in feature, that might bring break changes (disable some existing user shape * names). But that case probably rarely happens. So we don't make more mechanism * to resolve this issue here. * * @param name * @return The shape class. If not found, return nothing. */ function getShapeClass(name) { if (_customShapeMap.hasOwnProperty(name)) return _customShapeMap[name]; } /** * Create a path element from path data string * @param pathData * @param opts * @param rect * @param layout 'center' or 'cover' default to be cover */ function makePath(pathData, opts, rect, layout) { var path = createFromString(pathData, opts); if (rect) { if (layout === "center") rect = centerGraphic(rect, path.getBoundingRect()); resizePath(path, rect); } return path; } /** * Create a image element from image url * @param imageUrl image url * @param opts options * @param rect constrain rect * @param layout 'center' or 'cover'. Default to be 'cover' */ function makeImage(imageUrl, rect, layout) { var zrImg = new ZRImage({ style: { image: imageUrl, x: rect.x, y: rect.y, width: rect.width, height: rect.height }, onload: function(img) { if (layout === "center") { var boundingRect = { width: img.width, height: img.height }; zrImg.setStyle(centerGraphic(rect, boundingRect)); } } }); return zrImg; } /** * Get position of centered element in bounding box. * * @param rect element local bounding box * @param boundingRect constraint bounding box * @return element position containing x, y, width, and height */ function centerGraphic(rect, boundingRect) { var aspect = boundingRect.width / boundingRect.height; var width = rect.height * aspect; var height; if (width <= rect.width) height = rect.height; else { width = rect.width; height = width / aspect; } var cx = rect.x + rect.width / 2; var cy = rect.y + rect.height / 2; return { x: cx - width / 2, y: cy - height / 2, width, height }; } var mergePath = mergePath$1; /** * Resize a path to fit the rect * @param path * @param rect */ function resizePath(path, rect) { if (!path.applyTransform) return; var m = path.getBoundingRect().calculateTransform(rect); path.applyTransform(m); } /** * Sub pixel optimize line for canvas */ function subPixelOptimizeLine(shape, lineWidth) { subPixelOptimizeLine$1(shape, shape, { lineWidth }); return shape; } /** * Sub pixel optimize rect for canvas */ function subPixelOptimizeRect(shape, style) { subPixelOptimizeRect$1(shape, shape, style); return shape; } /** * Sub pixel optimize for canvas * * @param position Coordinate, such as x, y * @param lineWidth Should be nonnegative integer. * @param positiveOrNegative Default false (negative). * @return Optimized position. */ var subPixelOptimize = subPixelOptimize$1; /** * Get transform matrix of target (param target), * in coordinate of its ancestor (param ancestor) * * @param target * @param [ancestor] */ function getTransform(target, ancestor) { var mat = identity([]); while (target && target !== ancestor) { mul(mat, target.getLocalTransform(), mat); target = target.parent; } return mat; } /** * Apply transform to an vertex. * @param target [x, y] * @param transform Can be: * + Transform matrix: like [1, 0, 0, 1, 0, 0] * + {position, rotation, scale}, the same as `zrender/Transformable`. * @param invert Whether use invert matrix. * @return [x, y] */ function applyTransform(target, transform, invert$1) { if (transform && !isArrayLike(transform)) transform = Transformable.getLocalTransform(transform); if (invert$1) transform = invert([], transform); return applyTransform$1([], target, transform); } /** * @param direction 'left' 'right' 'top' 'bottom' * @param transform Transform matrix: like [1, 0, 0, 1, 0, 0] * @param invert Whether use invert matrix. * @return Transformed direction. 'left' 'right' 'top' 'bottom' */ function transformDirection(direction, transform, invert) { var hBase = transform[4] === 0 || transform[5] === 0 || transform[0] === 0 ? 1 : mathAbs$2(2 * transform[4] / transform[0]); var vBase = transform[4] === 0 || transform[5] === 0 || transform[2] === 0 ? 1 : mathAbs$2(2 * transform[4] / transform[2]); var vertex = [direction === "left" ? -hBase : direction === "right" ? hBase : 0, direction === "top" ? -vBase : direction === "bottom" ? vBase : 0]; vertex = applyTransform(vertex, transform, invert); return mathAbs$2(vertex[0]) > mathAbs$2(vertex[1]) ? vertex[0] > 0 ? "right" : "left" : vertex[1] > 0 ? "bottom" : "top"; } function isNotGroup(el) { return !el.isGroup; } function isPath(el) { return el.shape != null; } /** * Apply group transition animation from g1 to g2. * If no animatableModel, no animation. */ function groupTransition(g1, g2, animatableModel) { if (!g1 || !g2) return; function getElMap(g) { var elMap = {}; g.traverse(function(el) { if (isNotGroup(el) && el.anid) elMap[el.anid] = el; }); return elMap; } function getAnimatableProps(el) { var obj = { x: el.x, y: el.y, rotation: el.rotation }; if (isPath(el)) obj.shape = clone$2(el.shape); return obj; } var elMap1 = getElMap(g1); g2.traverse(function(el) { if (isNotGroup(el) && el.anid) { var oldEl = elMap1[el.anid]; if (oldEl) { var newProp = getAnimatableProps(el); el.attr(getAnimatableProps(oldEl)); updateProps$1(el, newProp, animatableModel, getECData(el).dataIndex); } } }); } function clipPointsByRect(points, rect) { return map$1(points, function(point) { var x = point[0]; x = mathMax$3(x, rect.x); x = mathMin$3(x, rect.x + rect.width); var y = point[1]; y = mathMax$3(y, rect.y); y = mathMin$3(y, rect.y + rect.height); return [x, y]; }); } /** * Return a new clipped rect. If rect size are negative, return undefined. */ function clipRectByRect(targetRect, rect) { var x = mathMax$3(targetRect.x, rect.x); var x2 = mathMin$3(targetRect.x + targetRect.width, rect.x + rect.width); var y = mathMax$3(targetRect.y, rect.y); var y2 = mathMin$3(targetRect.y + targetRect.height, rect.y + rect.height); if (x2 >= x && y2 >= y) return { x, y, width: x2 - x, height: y2 - y }; } function createIcon(iconStr, opt, rect) { var innerOpts = extend({ rectHover: true }, opt); var style = innerOpts.style = { strokeNoScale: true }; rect = rect || { x: -1, y: -1, width: 2, height: 2 }; if (iconStr) return iconStr.indexOf("image://") === 0 ? (style.image = iconStr.slice(8), defaults(style, rect), new ZRImage(innerOpts)) : makePath(iconStr.replace("path://", ""), innerOpts, rect, "center"); } /** * Return `true` if the given line (line `a`) and the given polygon * are intersect. * Note that we do not count colinear as intersect here because no * requirement for that. We could do that if required in future. */ function linePolygonIntersect(a1x, a1y, a2x, a2y, points) { for (var i = 0, p2 = points[points.length - 1]; i < points.length; i++) { var p = points[i]; if (lineLineIntersect(a1x, a1y, a2x, a2y, p[0], p[1], p2[0], p2[1])) return true; p2 = p; } } /** * Return `true` if the given two lines (line `a` and line `b`) * are intersect. * Note that we do not count colinear as intersect here because no * requirement for that. We could do that if required in future. */ function lineLineIntersect(a1x, a1y, a2x, a2y, b1x, b1y, b2x, b2y) { var mx = a2x - a1x; var my = a2y - a1y; var nx = b2x - b1x; var ny = b2y - b1y; var nmCrossProduct = crossProduct2d(nx, ny, mx, my); if (nearZero(nmCrossProduct)) return false; var b1a1x = a1x - b1x; var b1a1y = a1y - b1y; var q = crossProduct2d(b1a1x, b1a1y, mx, my) / nmCrossProduct; if (q < 0 || q > 1) return false; var p = crossProduct2d(b1a1x, b1a1y, nx, ny) / nmCrossProduct; if (p < 0 || p > 1) return false; return true; } /** * Cross product of 2-dimension vector. */ function crossProduct2d(x1, y1, x2, y2) { return x1 * y2 - x2 * y1; } function nearZero(val) { return val <= 1e-6 && val >= -1e-6; } /** * NOTE: * A negative-width/height rect (due to negative margins) is not supported; * it will be clampped to zero width/height. * Although negative-width/height rects can be defined reasonably following the * similar sense in CSS, but they are rarely used, hard to understand and complicated. * * @param rect Assume its width/height >= 0 if existing. * x/y/width/height is allowed to be NaN, * for the case that only x/width or y/height is intended to be computed. * @param delta * If be `number[]`, should be `[top, right, bottom, left]`, * which can be used in padding or margin case. * @see `normalizeCssArray` in `util/format.ts` * If be `number`, it means [delta, delta, delta, delta], * which can be used in lineWidth (borderWith) case, * [NOTICE]: commonly pass lineWidth / 2, following the convention that border is * half inside half outside of the rect. * @param shrinkOrExpand * `true` - shrink if `delta[i]` is positive, commmonly used in `padding` case. * `false` - expand if `delta[i]` is positive, commmonly used in `margin` case. (default) * @param noNegative * `true` - negative `delta[i]` will be clampped to 0. * `false` - No clamp to `delta`. (default). * @return The input `rect`. */ function expandOrShrinkRect(rect, delta, shrinkOrExpand, noNegative, minSize) { if (delta == null) return rect; else if (isNumber(delta)) _tmpExpandRectDelta[0] = _tmpExpandRectDelta[1] = _tmpExpandRectDelta[2] = _tmpExpandRectDelta[3] = delta; else { _tmpExpandRectDelta[0] = delta[0]; _tmpExpandRectDelta[1] = delta[1]; _tmpExpandRectDelta[2] = delta[2]; _tmpExpandRectDelta[3] = delta[3]; } if (noNegative) { _tmpExpandRectDelta[0] = mathMax$3(0, _tmpExpandRectDelta[0]); _tmpExpandRectDelta[1] = mathMax$3(0, _tmpExpandRectDelta[1]); _tmpExpandRectDelta[2] = mathMax$3(0, _tmpExpandRectDelta[2]); _tmpExpandRectDelta[3] = mathMax$3(0, _tmpExpandRectDelta[3]); } if (shrinkOrExpand) { _tmpExpandRectDelta[0] = -_tmpExpandRectDelta[0]; _tmpExpandRectDelta[1] = -_tmpExpandRectDelta[1]; _tmpExpandRectDelta[2] = -_tmpExpandRectDelta[2]; _tmpExpandRectDelta[3] = -_tmpExpandRectDelta[3]; } expandRectOnOneDimension(rect, _tmpExpandRectDelta, "x", "width", 3, 1, minSize && minSize[0] || 0); expandRectOnOneDimension(rect, _tmpExpandRectDelta, "y", "height", 0, 2, minSize && minSize[1] || 0); return rect; } var _tmpExpandRectDelta = [ 0, 0, 0, 0 ]; function expandRectOnOneDimension(rect, delta, xy, wh, ltIdx, rbIdx, minSize) { var deltaSum = delta[rbIdx] + delta[ltIdx]; var oldSize = rect[wh]; rect[wh] += deltaSum; minSize = mathMax$3(0, mathMin$3(minSize, oldSize)); if (rect[wh] < minSize) { rect[wh] = minSize; rect[xy] += delta[ltIdx] >= 0 ? -delta[ltIdx] : delta[rbIdx] >= 0 ? oldSize + delta[rbIdx] : mathAbs$2(deltaSum) > 1e-8 ? (oldSize - minSize) * delta[ltIdx] / deltaSum : 0; } else rect[xy] -= delta[ltIdx]; } function setTooltipConfig(opt) { var itemTooltipOption = opt.itemTooltipOption; var componentModel = opt.componentModel; var itemName = opt.itemName; var itemTooltipOptionObj = isString(itemTooltipOption) ? { formatter: itemTooltipOption } : itemTooltipOption; var mainType = componentModel.mainType; var componentIndex = componentModel.componentIndex; var formatterParams = { componentType: mainType, name: itemName, $vars: ["name"] }; formatterParams[mainType + "Index"] = componentIndex; var formatterParamsExtra = opt.formatterParamsExtra; if (formatterParamsExtra) each$4(keys(formatterParamsExtra), function(key) { if (!hasOwn(formatterParams, key)) { formatterParams[key] = formatterParamsExtra[key]; formatterParams.$vars.push(key); } }); var ecData = getECData(opt.el); ecData.componentMainType = mainType; ecData.componentIndex = componentIndex; ecData.tooltipConfig = { name: itemName, option: defaults({ content: itemName, encodeHTMLContent: true, formatterParams }, itemTooltipOptionObj) }; } function traverseElement(el, cb) { var stopped; if (el.isGroup) stopped = cb(el); if (!stopped) el.traverse(cb); } function traverseElements(els, cb) { if (els) if (isArray(els)) for (var i = 0; i < els.length; i++) traverseElement(els[i], cb); else traverseElement(els, cb); } /** * After a boundingRect applying a `transform`, whether to be still parallel screen X and Y. */ function isBoundingRectAxisAligned(transform) { return !transform || mathAbs$2(transform[1]) < AXIS_ALIGN_EPSILON && mathAbs$2(transform[2]) < AXIS_ALIGN_EPSILON || mathAbs$2(transform[0]) < AXIS_ALIGN_EPSILON && mathAbs$2(transform[3]) < AXIS_ALIGN_EPSILON; } var AXIS_ALIGN_EPSILON = 1e-5; /** * Create or copy to the existing bounding rect to avoid modifying `source`. * * @usage * out.rect = ensureCopyRect(out.rect, sourceRect); */ function ensureCopyRect(target, source) { return target ? BoundingRect.copy(target, source) : source.clone(); } /** * Create or copy to the existing transform to avoid modifying `source`. * * [CAUTION]: transform is `NullUndefined` if no transform, following convention of zrender, * and enable to bypass some unnecessary calculation, since in most cases there is no transform. * * @usage * out.transform = ensureCopyTransform(out.transform, sourceTransform); */ function ensureCopyTransform(target, source) { return source ? copy(target || create$1(), source) : void 0; } function retrieveZInfo(model) { return { z: model.get("z") || 0, zlevel: model.get("zlevel") || 0 }; } /** * Assume all of the elements has the same `z` and `zlevel`. */ function calcZ2Range(el) { var max = -Infinity; var min = Infinity; traverseElement(el, function(el) { visitEl(el); visitEl(el.getTextContent()); visitEl(el.getTextGuideLine()); }); function visitEl(el) { if (!el || el.isGroup) return; var currentStates = el.currentStates; if (currentStates.length) for (var idx = 0; idx < currentStates.length; idx++) calcZ2(el.states[currentStates[idx]]); calcZ2(el); } function calcZ2(entity) { if (entity) { var z2 = entity.z2; if (z2 > max) max = z2; if (z2 < min) min = z2; } } if (min > max) min = max = 0; return { min, max }; } function traverseUpdateZ(el, z, zlevel) { doUpdateZ(el, z, zlevel, -Infinity); } function doUpdateZ(el, z, zlevel, maxZ2) { if (el.ignoreModelZ) return maxZ2; var label = el.getTextContent(); var labelLine = el.getTextGuideLine(); if (el.isGroup) { var children = el.childrenRef(); for (var i = 0; i < children.length; i++) maxZ2 = mathMax$3(doUpdateZ(children[i], z, zlevel, maxZ2), maxZ2); } else { el.z = z; el.zlevel = zlevel; maxZ2 = mathMax$3(el.z2 || 0, maxZ2); } if (label) { label.z = z; label.zlevel = zlevel; isFinite(maxZ2) && (label.z2 = maxZ2 + 2); } if (labelLine) { var textGuideLineConfig = el.textGuideLineConfig; labelLine.z = z; labelLine.zlevel = zlevel; isFinite(maxZ2) && (labelLine.z2 = maxZ2 + (textGuideLineConfig && textGuideLineConfig.showAbove ? 1 : -1)); } return maxZ2; } function payloadDisableAnimation(payload) { payload.animation = { duration: 0 }; return payload; } /** * Decompose an affine matrix to * x/y/scaleX/scaleY/rotation/skewX/skewY */ function decomposeTransform(out, mt) { mt ? copy(tmpDTR.transform, mt) : identity(tmpDTR.transform); tmpDTR.decomposeTransform(); copyTransform(out, tmpDTR); return out; } var tmpDTR = new Transformable(); tmpDTR.transform = create$1(); /** * If not canvas painter, return null/undefined. */ function getCurrentCanvasPainter(api) { var painter = api.getZr().painter; return painter.getType() === "canvas" ? painter : null; } registerShape("circle", Circle); registerShape("ellipse", Ellipse); registerShape("sector", Sector); registerShape("ring", Ring); registerShape("polygon", Polygon); registerShape("polyline", Polyline); registerShape("rect", Rect); registerShape("line", Line); registerShape("bezierCurve", BezierCurve); registerShape("arc", Arc); //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/label/labelStyle.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var EMPTY_OBJ = {}; function setLabelText(label, labelTexts) { for (var i = 0; i < SPECIAL_STATES.length; i++) { var stateName = SPECIAL_STATES[i]; var text = labelTexts[stateName]; var state = label.ensureState(stateName); state.style = state.style || {}; state.style.text = text; } var oldStates = label.currentStates.slice(); label.clearStates(true); label.setStyle({ text: labelTexts.normal }); label.useStates(oldStates, true); } function getLabelText(opt, stateModels, interpolatedValue) { var labelFetcher = opt.labelFetcher; var labelDataIndex = opt.labelDataIndex; var labelDimIndex = opt.labelDimIndex; var normalModel = stateModels.normal; var baseText; if (labelFetcher) baseText = labelFetcher.getFormattedLabel(labelDataIndex, "normal", null, labelDimIndex, normalModel && normalModel.get("formatter"), interpolatedValue != null ? { interpolatedValue } : null); if (baseText == null) baseText = isFunction(opt.defaultText) ? opt.defaultText(labelDataIndex, opt, interpolatedValue) : opt.defaultText; var statesText = { normal: baseText }; for (var i = 0; i < SPECIAL_STATES.length; i++) { var stateName = SPECIAL_STATES[i]; var stateModel = stateModels[stateName]; statesText[stateName] = retrieve2(labelFetcher ? labelFetcher.getFormattedLabel(labelDataIndex, stateName, null, labelDimIndex, stateModel && stateModel.get("formatter")) : null, baseText); } return statesText; } function setLabelStyle(targetEl, labelStatesModels, opt, stateSpecified) { opt = opt || EMPTY_OBJ; var isSetOnText = targetEl instanceof ZRText; var needsCreateText = false; for (var i = 0; i < DISPLAY_STATES.length; i++) { var stateModel = labelStatesModels[DISPLAY_STATES[i]]; if (stateModel && stateModel.getShallow("show")) { needsCreateText = true; break; } } var textContent = isSetOnText ? targetEl : targetEl.getTextContent(); if (needsCreateText) { if (!isSetOnText) { if (!textContent) { textContent = new ZRText(); targetEl.setTextContent(textContent); } if (targetEl.stateProxy) textContent.stateProxy = targetEl.stateProxy; } var labelStatesTexts = getLabelText(opt, labelStatesModels); var normalModel = labelStatesModels.normal; var showNormal = !!normalModel.getShallow("show"); var normalStyle = createTextStyle(normalModel, stateSpecified && stateSpecified.normal, opt, false, !isSetOnText); normalStyle.text = labelStatesTexts.normal; if (!isSetOnText) targetEl.setTextConfig(createTextConfig(normalModel, opt, false)); for (var i = 0; i < SPECIAL_STATES.length; i++) { var stateName = SPECIAL_STATES[i]; var stateModel = labelStatesModels[stateName]; if (stateModel) { var stateObj = textContent.ensureState(stateName); var stateShow = !!retrieve2(stateModel.getShallow("show"), showNormal); if (stateShow !== showNormal) stateObj.ignore = !stateShow; stateObj.style = createTextStyle(stateModel, stateSpecified && stateSpecified[stateName], opt, true, !isSetOnText); stateObj.style.text = labelStatesTexts[stateName]; if (!isSetOnText) { var targetElEmphasisState = targetEl.ensureState(stateName); targetElEmphasisState.textConfig = createTextConfig(stateModel, opt, true); } } } textContent.silent = !!normalModel.getShallow("silent"); if (textContent.style.x != null) normalStyle.x = textContent.style.x; if (textContent.style.y != null) normalStyle.y = textContent.style.y; textContent.ignore = !showNormal; textContent.useStyle(normalStyle); textContent.dirty(); if (opt.enableTextSetter) labelInner(textContent).setLabelText = function(interpolatedValue) { var labelStatesTexts = getLabelText(opt, labelStatesModels, interpolatedValue); setLabelText(textContent, labelStatesTexts); }; } else if (textContent) textContent.ignore = true; targetEl.dirty(); } function getLabelStatesModels(itemModel, labelName) { labelName = labelName || "label"; var statesModels = { normal: itemModel.getModel(labelName) }; for (var i = 0; i < SPECIAL_STATES.length; i++) { var stateName = SPECIAL_STATES[i]; statesModels[stateName] = itemModel.getModel([stateName, labelName]); } return statesModels; } /** * Set basic textStyle properties. */ function createTextStyle(textStyleModel, specifiedTextStyle, opt, isNotNormal, isAttached) { var textStyle = {}; setTextStyleCommon(textStyle, textStyleModel, opt, isNotNormal, isAttached); specifiedTextStyle && extend(textStyle, specifiedTextStyle); return textStyle; } function createTextConfig(textStyleModel, opt, isNotNormal) { opt = opt || {}; var textConfig = {}; var labelPosition; var labelRotate = textStyleModel.getShallow("rotate"); var labelDistance = retrieve2(textStyleModel.getShallow("distance"), isNotNormal ? null : 5); var labelOffset = textStyleModel.getShallow("offset"); labelPosition = textStyleModel.getShallow("position") || (isNotNormal ? null : "inside"); labelPosition === "outside" && (labelPosition = opt.defaultOutsidePosition || "top"); if (labelPosition != null) textConfig.position = labelPosition; if (labelOffset != null) textConfig.offset = labelOffset; if (labelRotate != null) { labelRotate *= Math.PI / 180; textConfig.rotation = labelRotate; } if (labelDistance != null) textConfig.distance = labelDistance; textConfig.outsideFill = textStyleModel.get("color") === "inherit" ? opt.inheritColor || null : "auto"; if (opt.autoOverflowArea != null) textConfig.autoOverflowArea = opt.autoOverflowArea; if (opt.layoutRect != null) textConfig.layoutRect = opt.layoutRect; return textConfig; } /** * The uniform entry of set text style, that is, retrieve style definitions * from `model` and set to `textStyle` object. * * Never in merge mode, but in overwrite mode, that is, all of the text style * properties will be set. (Consider the states of normal and emphasis and * default value can be adopted, merge would make the logic too complicated * to manage.) */ function setTextStyleCommon(textStyle, textStyleModel, opt, isNotNormal, isAttached) { opt = opt || EMPTY_OBJ; var ecModel = textStyleModel.ecModel; var globalTextStyle = ecModel && ecModel.option.textStyle; var richItemNames = getRichItemNames(textStyleModel); var richResult; if (richItemNames) { richResult = {}; var richInheritPlainLabelOptionName = "richInheritPlainLabel"; var richInheritPlainLabel = retrieve2(textStyleModel.get(richInheritPlainLabelOptionName), ecModel ? ecModel.get(richInheritPlainLabelOptionName) : void 0); for (var name_1 in richItemNames) if (richItemNames.hasOwnProperty(name_1)) { var richTextStyle = textStyleModel.getModel(["rich", name_1]); setTokenTextStyle(richResult[name_1] = {}, richTextStyle, globalTextStyle, textStyleModel, richInheritPlainLabel, opt, isNotNormal, isAttached, false, true); } } if (richResult) textStyle.rich = richResult; var overflow = textStyleModel.get("overflow"); if (overflow) textStyle.overflow = overflow; var lineOverflow = textStyleModel.get("lineOverflow"); if (lineOverflow) textStyle.lineOverflow = lineOverflow; var labelTextStyle = textStyle; var minMargin = textStyleModel.get("minMargin"); if (minMargin != null) { minMargin = !isNumber(minMargin) ? 0 : minMargin / 2; labelTextStyle.margin = [ minMargin, minMargin, minMargin, minMargin ]; labelTextStyle.__marginType = LabelMarginType.minMargin; } else { var textMargin = textStyleModel.get("textMargin"); if (textMargin != null) { labelTextStyle.margin = normalizeCssArray$1(textMargin); labelTextStyle.__marginType = LabelMarginType.textMargin; } } setTokenTextStyle(textStyle, textStyleModel, globalTextStyle, null, null, opt, isNotNormal, isAttached, true, false); } function getRichItemNames(textStyleModel) { var richItemNameMap; while (textStyleModel && textStyleModel !== textStyleModel.ecModel) { var rich = (textStyleModel.option || EMPTY_OBJ).rich; if (rich) { richItemNameMap = richItemNameMap || {}; var richKeys = keys(rich); for (var i = 0; i < richKeys.length; i++) { var richKey = richKeys[i]; richItemNameMap[richKey] = 1; } } textStyleModel = textStyleModel.parentModel; } return richItemNameMap; } var TEXT_PROPS_WITH_GLOBAL = [ "fontStyle", "fontWeight", "fontSize", "fontFamily", "textShadowColor", "textShadowBlur", "textShadowOffsetX", "textShadowOffsetY" ]; var TEXT_PROPS_SELF = [ "align", "lineHeight", "width", "height", "tag", "verticalAlign", "ellipsis" ]; var TEXT_PROPS_BOX = [ "padding", "borderWidth", "borderRadius", "borderDashOffset", "backgroundColor", "borderColor", "shadowColor", "shadowBlur", "shadowOffsetX", "shadowOffsetY" ]; function setTokenTextStyle(textStyle, textStyleModel, globalTextStyle, plainTextModel, richInheritPlainLabel, opt, isNotNormal, isAttached, isBlock, inRich) { globalTextStyle = !isNotNormal && globalTextStyle || EMPTY_OBJ; var inheritColor = opt && opt.inheritColor; var fillColor = textStyleModel.getShallow("color"); var strokeColor = textStyleModel.getShallow("textBorderColor"); var opacity = retrieve2(textStyleModel.getShallow("opacity"), globalTextStyle.opacity); if (fillColor === "inherit" || fillColor === "auto") if (inheritColor) fillColor = inheritColor; else fillColor = null; if (strokeColor === "inherit" || strokeColor === "auto") if (inheritColor) strokeColor = inheritColor; else strokeColor = null; if (!isAttached) { fillColor = fillColor || globalTextStyle.color; strokeColor = strokeColor || globalTextStyle.textBorderColor; } if (fillColor != null) textStyle.fill = fillColor; if (strokeColor != null) textStyle.stroke = strokeColor; var textBorderWidth = retrieve2(textStyleModel.getShallow("textBorderWidth"), globalTextStyle.textBorderWidth); if (textBorderWidth != null) textStyle.lineWidth = textBorderWidth; var textBorderType = retrieve2(textStyleModel.getShallow("textBorderType"), globalTextStyle.textBorderType); if (textBorderType != null) textStyle.lineDash = textBorderType; var textBorderDashOffset = retrieve2(textStyleModel.getShallow("textBorderDashOffset"), globalTextStyle.textBorderDashOffset); if (textBorderDashOffset != null) textStyle.lineDashOffset = textBorderDashOffset; if (!isNotNormal && opacity == null && !inRich) opacity = opt && opt.defaultOpacity; if (opacity != null) textStyle.opacity = opacity; if (!isNotNormal && !isAttached) { if (textStyle.fill == null && opt.inheritColor) textStyle.fill = opt.inheritColor; } for (var i = 0; i < TEXT_PROPS_WITH_GLOBAL.length; i++) { var key = TEXT_PROPS_WITH_GLOBAL[i]; var val = richInheritPlainLabel !== false && plainTextModel ? retrieve3(textStyleModel.getShallow(key), plainTextModel.getShallow(key), globalTextStyle[key]) : retrieve2(textStyleModel.getShallow(key), globalTextStyle[key]); if (val != null) textStyle[key] = val; } for (var i = 0; i < TEXT_PROPS_SELF.length; i++) { var key = TEXT_PROPS_SELF[i]; var val = textStyleModel.getShallow(key); if (val != null) textStyle[key] = val; } if (textStyle.verticalAlign == null) { var baseline = textStyleModel.getShallow("baseline"); if (baseline != null) textStyle.verticalAlign = baseline; } if (!isBlock || !opt.disableBox) { for (var i = 0; i < TEXT_PROPS_BOX.length; i++) { var key = TEXT_PROPS_BOX[i]; var val = textStyleModel.getShallow(key); if (val != null) textStyle[key] = val; } var borderType = textStyleModel.getShallow("borderType"); if (borderType != null) textStyle.borderDash = borderType; if ((textStyle.backgroundColor === "auto" || textStyle.backgroundColor === "inherit") && inheritColor) textStyle.backgroundColor = inheritColor; if ((textStyle.borderColor === "auto" || textStyle.borderColor === "inherit") && inheritColor) textStyle.borderColor = inheritColor; } } function getFont(opt, ecModel) { var gTextStyleModel = ecModel && ecModel.getModel("textStyle"); return trim([ opt.fontStyle || gTextStyleModel && gTextStyleModel.getShallow("fontStyle") || "", opt.fontWeight || gTextStyleModel && gTextStyleModel.getShallow("fontWeight") || "", (opt.fontSize || gTextStyleModel && gTextStyleModel.getShallow("fontSize") || 12) + "px", opt.fontFamily || gTextStyleModel && gTextStyleModel.getShallow("fontFamily") || "sans-serif" ].join(" ")); } var labelInner = makeInner(); function setLabelValueAnimation(label, labelStatesModels, value, getDefaultText) { if (!label) return; var obj = labelInner(label); obj.prevValue = obj.value; obj.value = value; var normalLabelModel = labelStatesModels.normal; obj.valueAnimation = normalLabelModel.get("valueAnimation"); if (obj.valueAnimation) { obj.precision = normalLabelModel.get("precision"); obj.defaultInterpolatedText = getDefaultText; obj.statesModels = labelStatesModels; } } /** * PENDING: Temporary impl. unify them? * @see {LabelCommonOption['textMargin']} * @see {LabelCommonOption['minMargin']} */ var LabelMarginType = { minMargin: 1, textMargin: 2 }; //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/model/mixin/textStyle.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var PATH_COLOR = ["textStyle", "color"]; var textStyleParams = [ "fontStyle", "fontWeight", "fontSize", "fontFamily", "padding", "lineHeight", "rich", "width", "height", "overflow" ]; var tmpText = new ZRText(); var TextStyleMixin = function() { function TextStyleMixin() {} /** * Get color property or get color from option.textStyle.color */ TextStyleMixin.prototype.getTextColor = function(isEmphasis) { var ecModel = this.ecModel; return this.getShallow("color") || (!isEmphasis && ecModel ? ecModel.get(PATH_COLOR) : null); }; /** * Create font string from fontStyle, fontWeight, fontSize, fontFamily * @return {string} */ TextStyleMixin.prototype.getFont = function() { return getFont({ fontStyle: this.getShallow("fontStyle"), fontWeight: this.getShallow("fontWeight"), fontSize: this.getShallow("fontSize"), fontFamily: this.getShallow("fontFamily") }, this.ecModel); }; TextStyleMixin.prototype.getTextRect = function(text) { var style = { text, verticalAlign: this.getShallow("verticalAlign") || this.getShallow("baseline") }; for (var i = 0; i < textStyleParams.length; i++) style[textStyleParams[i]] = this.getShallow(textStyleParams[i]); tmpText.useStyle(style); tmpText.update(); return tmpText.getBoundingRect(); }; return TextStyleMixin; }(); //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/model/mixin/lineStyle.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var LINE_STYLE_KEY_MAP = [ ["lineWidth", "width"], ["stroke", "color"], ["opacity"], ["shadowBlur"], ["shadowOffsetX"], ["shadowOffsetY"], ["shadowColor"], ["lineDash", "type"], ["lineDashOffset", "dashOffset"], ["lineCap", "cap"], ["lineJoin", "join"], ["miterLimit"] ]; var getLineStyle = makeStyleMapper(LINE_STYLE_KEY_MAP); var LineStyleMixin = function() { function LineStyleMixin() {} LineStyleMixin.prototype.getLineStyle = function(excludes) { return getLineStyle(this, excludes); }; return LineStyleMixin; }(); //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/model/mixin/itemStyle.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var ITEM_STYLE_KEY_MAP = [ ["fill", "color"], ["stroke", "borderColor"], ["lineWidth", "borderWidth"], ["opacity"], ["shadowBlur"], ["shadowOffsetX"], ["shadowOffsetY"], ["shadowColor"], ["lineDash", "borderType"], ["lineDashOffset", "borderDashOffset"], ["lineCap", "borderCap"], ["lineJoin", "borderJoin"], ["miterLimit", "borderMiterLimit"] ]; var getItemStyle = makeStyleMapper(ITEM_STYLE_KEY_MAP); var ItemStyleMixin = function() { function ItemStyleMixin() {} ItemStyleMixin.prototype.getItemStyle = function(excludes, includes) { return getItemStyle(this, excludes, includes); }; return ItemStyleMixin; }(); //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/model/Model.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var Model = function() { function Model(option, parentModel, ecModel) { this.parentModel = parentModel; this.ecModel = ecModel; this.option = option; } Model.prototype.init = function(option, parentModel, ecModel) { var rest = []; for (var _i = 3; _i < arguments.length; _i++) rest[_i - 3] = arguments[_i]; }; /** * Merge the input option to me. */ Model.prototype.mergeOption = function(option, ecModel) { merge(this.option, option, true); }; Model.prototype.get = function(path, ignoreParent) { if (path == null) return this.option; return this._doGet(this.parsePath(path), !ignoreParent && this.parentModel); }; Model.prototype.getShallow = function(key, ignoreParent) { var option = this.option; var val = option == null ? option : option[key]; if (val == null && !ignoreParent) { var parentModel = this.parentModel; if (parentModel) val = parentModel.getShallow(key); } return val; }; Model.prototype.getModel = function(path, parentModel) { var hasPath = path != null; var pathFinal = hasPath ? this.parsePath(path) : null; var obj = hasPath ? this._doGet(pathFinal) : this.option; parentModel = parentModel || this.parentModel && this.parentModel.getModel(this.resolveParentPath(pathFinal)); return new Model(obj, parentModel, this.ecModel); }; /** * If model has option */ Model.prototype.isEmpty = function() { return this.option == null; }; Model.prototype.restoreData = function() {}; Model.prototype.clone = function() { var Ctor = this.constructor; return new Ctor(clone$2(this.option)); }; Model.prototype.parsePath = function(path) { if (typeof path === "string") return path.split("."); return path; }; Model.prototype.resolveParentPath = function(path) { return path; }; Model.prototype.isAnimationEnabled = function() { if (!env.node && this.option) { if (this.option.animation != null) return !!this.option.animation; else if (this.parentModel) return this.parentModel.isAnimationEnabled(); } }; Model.prototype._doGet = function(pathArr, parentModel) { var obj = this.option; if (!pathArr) return obj; for (var i = 0; i < pathArr.length; i++) { if (!pathArr[i]) continue; obj = obj && typeof obj === "object" ? obj[pathArr[i]] : null; if (obj == null) break; } if (obj == null && parentModel) obj = parentModel._doGet(this.resolveParentPath(pathArr), parentModel.parentModel); return obj; }; return Model; }(); enableClassExtend(Model); enableClassCheck(Model); mixin(Model, LineStyleMixin); mixin(Model, ItemStyleMixin); mixin(Model, AreaStyleMixin); mixin(Model, TextStyleMixin); //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/data/DataDiffer.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ function dataIndexMapValueLength(valNumOrArrLengthMoreThan2) { return valNumOrArrLengthMoreThan2 == null ? 0 : valNumOrArrLengthMoreThan2.length || 1; } function defaultKeyGetter(item) { return item; } var DataDiffer = function() { /** * @param context Can be visited by this.context in callback. */ function DataDiffer(oldArr, newArr, oldKeyGetter, newKeyGetter, context, diffMode) { this._old = oldArr; this._new = newArr; this._oldKeyGetter = oldKeyGetter || defaultKeyGetter; this._newKeyGetter = newKeyGetter || defaultKeyGetter; this.context = context; this._diffModeMultiple = diffMode === "multiple"; } /** * Callback function when add a data */ DataDiffer.prototype.add = function(func) { this._add = func; return this; }; /** * Callback function when update a data */ DataDiffer.prototype.update = function(func) { this._update = func; return this; }; /** * Callback function when update a data and only work in `cbMode: 'byKey'`. */ DataDiffer.prototype.updateManyToOne = function(func) { this._updateManyToOne = func; return this; }; /** * Callback function when update a data and only work in `cbMode: 'byKey'`. */ DataDiffer.prototype.updateOneToMany = function(func) { this._updateOneToMany = func; return this; }; /** * Callback function when update a data and only work in `cbMode: 'byKey'`. */ DataDiffer.prototype.updateManyToMany = function(func) { this._updateManyToMany = func; return this; }; /** * Callback function when remove a data */ DataDiffer.prototype.remove = function(func) { this._remove = func; return this; }; DataDiffer.prototype.execute = function() { this[this._diffModeMultiple ? "_executeMultiple" : "_executeOneToOne"](); }; DataDiffer.prototype._executeOneToOne = function() { var oldArr = this._old; var newArr = this._new; var newDataIndexMap = {}; var oldDataKeyArr = new Array(oldArr.length); var newDataKeyArr = new Array(newArr.length); this._initIndexMap(oldArr, null, oldDataKeyArr, "_oldKeyGetter"); this._initIndexMap(newArr, newDataIndexMap, newDataKeyArr, "_newKeyGetter"); for (var i = 0; i < oldArr.length; i++) { var oldKey = oldDataKeyArr[i]; var newIdxMapVal = newDataIndexMap[oldKey]; var newIdxMapValLen = dataIndexMapValueLength(newIdxMapVal); if (newIdxMapValLen > 1) { var newIdx = newIdxMapVal.shift(); if (newIdxMapVal.length === 1) newDataIndexMap[oldKey] = newIdxMapVal[0]; this._update && this._update(newIdx, i); } else if (newIdxMapValLen === 1) { newDataIndexMap[oldKey] = null; this._update && this._update(newIdxMapVal, i); } else this._remove && this._remove(i); } this._performRestAdd(newDataKeyArr, newDataIndexMap); }; /** * For example, consider the case: * oldData: [o0, o1, o2, o3, o4, o5, o6, o7], * newData: [n0, n1, n2, n3, n4, n5, n6, n7, n8], * Where: * o0, o1, n0 has key 'a' (many to one) * o5, n4, n5, n6 has key 'b' (one to many) * o2, n1 has key 'c' (one to one) * n2, n3 has key 'd' (add) * o3, o4 has key 'e' (remove) * o6, o7, n7, n8 has key 'f' (many to many, treated as add and remove) * Then: * (The order of the following directives are not ensured.) * this._updateManyToOne(n0, [o0, o1]); * this._updateOneToMany([n4, n5, n6], o5); * this._update(n1, o2); * this._remove(o3); * this._remove(o4); * this._remove(o6); * this._remove(o7); * this._add(n2); * this._add(n3); * this._add(n7); * this._add(n8); */ DataDiffer.prototype._executeMultiple = function() { var oldArr = this._old; var newArr = this._new; var oldDataIndexMap = {}; var newDataIndexMap = {}; var oldDataKeyArr = []; var newDataKeyArr = []; this._initIndexMap(oldArr, oldDataIndexMap, oldDataKeyArr, "_oldKeyGetter"); this._initIndexMap(newArr, newDataIndexMap, newDataKeyArr, "_newKeyGetter"); for (var i = 0; i < oldDataKeyArr.length; i++) { var oldKey = oldDataKeyArr[i]; var oldIdxMapVal = oldDataIndexMap[oldKey]; var newIdxMapVal = newDataIndexMap[oldKey]; var oldIdxMapValLen = dataIndexMapValueLength(oldIdxMapVal); var newIdxMapValLen = dataIndexMapValueLength(newIdxMapVal); if (oldIdxMapValLen > 1 && newIdxMapValLen === 1) { this._updateManyToOne && this._updateManyToOne(newIdxMapVal, oldIdxMapVal); newDataIndexMap[oldKey] = null; } else if (oldIdxMapValLen === 1 && newIdxMapValLen > 1) { this._updateOneToMany && this._updateOneToMany(newIdxMapVal, oldIdxMapVal); newDataIndexMap[oldKey] = null; } else if (oldIdxMapValLen === 1 && newIdxMapValLen === 1) { this._update && this._update(newIdxMapVal, oldIdxMapVal); newDataIndexMap[oldKey] = null; } else if (oldIdxMapValLen > 1 && newIdxMapValLen > 1) { this._updateManyToMany && this._updateManyToMany(newIdxMapVal, oldIdxMapVal); newDataIndexMap[oldKey] = null; } else if (oldIdxMapValLen > 1) for (var i_1 = 0; i_1 < oldIdxMapValLen; i_1++) this._remove && this._remove(oldIdxMapVal[i_1]); else this._remove && this._remove(oldIdxMapVal); } this._performRestAdd(newDataKeyArr, newDataIndexMap); }; DataDiffer.prototype._performRestAdd = function(newDataKeyArr, newDataIndexMap) { for (var i = 0; i < newDataKeyArr.length; i++) { var newKey = newDataKeyArr[i]; var newIdxMapVal = newDataIndexMap[newKey]; var idxMapValLen = dataIndexMapValueLength(newIdxMapVal); if (idxMapValLen > 1) for (var j = 0; j < idxMapValLen; j++) this._add && this._add(newIdxMapVal[j]); else if (idxMapValLen === 1) this._add && this._add(newIdxMapVal); newDataIndexMap[newKey] = null; } }; DataDiffer.prototype._initIndexMap = function(arr, map, keyArr, keyGetterName) { var cbModeMultiple = this._diffModeMultiple; for (var i = 0; i < arr.length; i++) { var key = "_ec_" + this[keyGetterName](arr[i], i); if (!cbModeMultiple) keyArr[i] = key; if (!map) continue; var idxMapVal = map[key]; var idxMapValLen = dataIndexMapValueLength(idxMapVal); if (idxMapValLen === 0) { map[key] = i; if (cbModeMultiple) keyArr.push(key); } else if (idxMapValLen === 1) map[key] = [idxMapVal, i]; else idxMapVal.push(i); } }; return DataDiffer; }(); //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/data/helper/sourceHelper.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var BE_ORDINAL = { Must: 1, Might: 2, Not: 3 }; var innerGlobalModel = makeInner(); /** * MUST be called before mergeOption of all series. */ function resetSourceDefaulter(ecModel) { innerGlobalModel(ecModel).datasetMap = createHashMap(); } /** * [The strategy of the arrengment of data dimensions for dataset]: * "value way": all axes are non-category axes. So series one by one take * several (the number is coordSysDims.length) dimensions from dataset. * The result of data arrengment of data dimensions like: * | ser0_x | ser0_y | ser1_x | ser1_y | ser2_x | ser2_y | * "category way": at least one axis is category axis. So the the first data * dimension is always mapped to the first category axis and shared by * all of the series. The other data dimensions are taken by series like * "value way" does. * The result of data arrengment of data dimensions like: * | ser_shared_x | ser0_y | ser1_y | ser2_y | * * @return encode Never be `null/undefined`. */ function makeSeriesEncodeForAxisCoordSys(coordDimensions, seriesModel, source) { var encode = {}; var datasetModel = querySeriesUpstreamDatasetModel(seriesModel); if (!datasetModel || !coordDimensions) return encode; var encodeItemName = []; var encodeSeriesName = []; var ecModel = seriesModel.ecModel; var datasetMap = innerGlobalModel(ecModel).datasetMap; var key = datasetModel.uid + "_" + source.seriesLayoutBy; var baseCategoryDimIndex; var categoryWayValueDimStart; coordDimensions = coordDimensions.slice(); each$4(coordDimensions, function(coordDimInfoLoose, coordDimIdx) { var coordDimInfo = isObject$2(coordDimInfoLoose) ? coordDimInfoLoose : coordDimensions[coordDimIdx] = { name: coordDimInfoLoose }; if (coordDimInfo.type === "ordinal" && baseCategoryDimIndex == null) { baseCategoryDimIndex = coordDimIdx; categoryWayValueDimStart = getDataDimCountOnCoordDim(coordDimInfo); } encode[coordDimInfo.name] = []; }); var datasetRecord = datasetMap.get(key) || datasetMap.set(key, { categoryWayDim: categoryWayValueDimStart, valueWayDim: 0 }); each$4(coordDimensions, function(coordDimInfo, coordDimIdx) { var coordDimName = coordDimInfo.name; var count = getDataDimCountOnCoordDim(coordDimInfo); if (baseCategoryDimIndex == null) { var start = datasetRecord.valueWayDim; pushDim(encode[coordDimName], start, count); pushDim(encodeSeriesName, start, count); datasetRecord.valueWayDim += count; } else if (baseCategoryDimIndex === coordDimIdx) { pushDim(encode[coordDimName], 0, count); pushDim(encodeItemName, 0, count); } else { var start = datasetRecord.categoryWayDim; pushDim(encode[coordDimName], start, count); pushDim(encodeSeriesName, start, count); datasetRecord.categoryWayDim += count; } }); function pushDim(dimIdxArr, idxFrom, idxCount) { for (var i = 0; i < idxCount; i++) dimIdxArr.push(idxFrom + i); } function getDataDimCountOnCoordDim(coordDimInfo) { var dimsDef = coordDimInfo.dimsDef; return dimsDef ? dimsDef.length : 1; } encodeItemName.length && (encode.itemName = encodeItemName); encodeSeriesName.length && (encode.seriesName = encodeSeriesName); return encode; } /** * @return If return null/undefined, indicate that should not use datasetModel. */ function querySeriesUpstreamDatasetModel(seriesModel) { if (!seriesModel.get("data", true)) return queryReferringComponents(seriesModel.ecModel, "dataset", { index: seriesModel.get("datasetIndex", true), id: seriesModel.get("datasetId", true) }, SINGLE_REFERRING).models[0]; } /** * @return Always return an array event empty. */ function queryDatasetUpstreamDatasetModels(datasetModel) { if (!datasetModel.get("transform", true) && !datasetModel.get("fromTransformResult", true)) return []; return queryReferringComponents(datasetModel.ecModel, "dataset", { index: datasetModel.get("fromDatasetIndex", true), id: datasetModel.get("fromDatasetId", true) }, SINGLE_REFERRING).models; } /** * The rule should not be complex, otherwise user might not * be able to known where the data is wrong. * The code is ugly, but how to make it neat? */ function guessOrdinal(source, dimIndex) { return doGuessOrdinal(source.data, source.sourceFormat, source.seriesLayoutBy, source.dimensionsDefine, source.startIndex, dimIndex); } function doGuessOrdinal(data, sourceFormat, seriesLayoutBy, dimensionsDefine, startIndex, dimIndex) { var result; var maxLoop = 5; if (isTypedArray(data)) return BE_ORDINAL.Not; var dimName; var dimType; if (dimensionsDefine) { var dimDefItem = dimensionsDefine[dimIndex]; if (isObject$2(dimDefItem)) { dimName = dimDefItem.name; dimType = dimDefItem.type; } else if (isString(dimDefItem)) dimName = dimDefItem; } if (dimType != null) return dimType === "ordinal" ? BE_ORDINAL.Must : BE_ORDINAL.Not; if (sourceFormat === "arrayRows") { var dataArrayRows = data; if (seriesLayoutBy === "row") { var sample = dataArrayRows[dimIndex]; for (var i = 0; i < (sample || []).length && i < maxLoop; i++) if ((result = detectValue(sample[startIndex + i])) != null) return result; } else for (var i = 0; i < dataArrayRows.length && i < maxLoop; i++) { var row = dataArrayRows[startIndex + i]; if (row && (result = detectValue(row[dimIndex])) != null) return result; } } else if (sourceFormat === "objectRows") { var dataObjectRows = data; if (!dimName) return BE_ORDINAL.Not; for (var i = 0; i < dataObjectRows.length && i < maxLoop; i++) { var item = dataObjectRows[i]; if (item && (result = detectValue(item[dimName])) != null) return result; } } else if (sourceFormat === "keyedColumns") { var dataKeyedColumns = data; if (!dimName) return BE_ORDINAL.Not; var sample = dataKeyedColumns[dimName]; if (!sample || isTypedArray(sample)) return BE_ORDINAL.Not; for (var i = 0; i < sample.length && i < maxLoop; i++) if ((result = detectValue(sample[i])) != null) return result; } else if (sourceFormat === "original") { var dataOriginal = data; for (var i = 0; i < dataOriginal.length && i < maxLoop; i++) { var item = dataOriginal[i]; var val = getDataItemValue(item); if (!isArray(val)) return BE_ORDINAL.Not; if ((result = detectValue(val[dimIndex])) != null) return result; } } function detectValue(val) { var beStr = isString(val); if (val != null && isFinite(Number(val)) && val !== "") return beStr ? BE_ORDINAL.Might : BE_ORDINAL.Not; else if (beStr && val !== "-") return BE_ORDINAL.Must; } return BE_ORDINAL.Not; } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/data/Source.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var SourceImpl = function() { function SourceImpl(fields) { this.data = fields.data || (fields.sourceFormat === "keyedColumns" ? {} : []); this.sourceFormat = fields.sourceFormat || "unknown"; this.seriesLayoutBy = fields.seriesLayoutBy || "column"; this.startIndex = fields.startIndex || 0; this.dimensionsDetectedCount = fields.dimensionsDetectedCount; this.metaRawOption = fields.metaRawOption; var dimensionsDefine = this.dimensionsDefine = fields.dimensionsDefine; if (dimensionsDefine) for (var i = 0; i < dimensionsDefine.length; i++) { var dim = dimensionsDefine[i]; if (dim.type == null) { if (guessOrdinal(this, i) === BE_ORDINAL.Must) dim.type = "ordinal"; } } } return SourceImpl; }(); function isSourceInstance(val) { return val instanceof SourceImpl; } /** * Create a source from option. * NOTE: Created source is immutable. Don't change any properties in it. */ function createSource(sourceData, thisMetaRawOption, sourceFormat) { sourceFormat = sourceFormat || detectSourceFormat(sourceData); var seriesLayoutBy = thisMetaRawOption.seriesLayoutBy; var determined = determineSourceDimensions(sourceData, sourceFormat, seriesLayoutBy, thisMetaRawOption.sourceHeader, thisMetaRawOption.dimensions); return new SourceImpl({ data: sourceData, sourceFormat, seriesLayoutBy, dimensionsDefine: determined.dimensionsDefine, startIndex: determined.startIndex, dimensionsDetectedCount: determined.dimensionsDetectedCount, metaRawOption: clone$2(thisMetaRawOption) }); } /** * Wrap original series data for some compatibility cases. */ function createSourceFromSeriesDataOption(data) { return new SourceImpl({ data, sourceFormat: isTypedArray(data) ? SOURCE_FORMAT_TYPED_ARRAY : SOURCE_FORMAT_ORIGINAL }); } /** * Clone source but excludes source data. */ function cloneSourceShallow(source) { return new SourceImpl({ data: source.data, sourceFormat: source.sourceFormat, seriesLayoutBy: source.seriesLayoutBy, dimensionsDefine: clone$2(source.dimensionsDefine), startIndex: source.startIndex, dimensionsDetectedCount: source.dimensionsDetectedCount }); } /** * Note: An empty array will be detected as `SOURCE_FORMAT_ARRAY_ROWS`. */ function detectSourceFormat(data) { var sourceFormat = SOURCE_FORMAT_UNKNOWN; if (isTypedArray(data)) sourceFormat = SOURCE_FORMAT_TYPED_ARRAY; else if (isArray(data)) { if (data.length === 0) sourceFormat = SOURCE_FORMAT_ARRAY_ROWS; for (var i = 0, len = data.length; i < len; i++) { var item = data[i]; if (item == null) continue; else if (isArray(item) || isTypedArray(item)) { sourceFormat = SOURCE_FORMAT_ARRAY_ROWS; break; } else if (isObject$2(item)) { sourceFormat = SOURCE_FORMAT_OBJECT_ROWS; break; } } } else if (isObject$2(data)) { for (var key in data) if (hasOwn(data, key) && isArrayLike(data[key])) { sourceFormat = SOURCE_FORMAT_KEYED_COLUMNS; break; } } return sourceFormat; } /** * Determine the source definitions from data standalone dimensions definitions * are not specified. */ function determineSourceDimensions(data, sourceFormat, seriesLayoutBy, sourceHeader, dimensionsDefine) { var dimensionsDetectedCount; var startIndex; if (!data) return { dimensionsDefine: normalizeDimensionsOption(dimensionsDefine), startIndex, dimensionsDetectedCount }; if (sourceFormat === "arrayRows") { var dataArrayRows = data; if (sourceHeader === "auto" || sourceHeader == null) arrayRowsTravelFirst(function(val) { if (val != null && val !== "-") if (isString(val)) startIndex ??= 1; else startIndex = 0; }, seriesLayoutBy, dataArrayRows, 10); else startIndex = isNumber(sourceHeader) ? sourceHeader : sourceHeader ? 1 : 0; if (!dimensionsDefine && startIndex === 1) { dimensionsDefine = []; arrayRowsTravelFirst(function(val, index) { dimensionsDefine[index] = val != null ? val + "" : ""; }, seriesLayoutBy, dataArrayRows, Infinity); } dimensionsDetectedCount = dimensionsDefine ? dimensionsDefine.length : seriesLayoutBy === "row" ? dataArrayRows.length : dataArrayRows[0] ? dataArrayRows[0].length : null; } else if (sourceFormat === "objectRows") { if (!dimensionsDefine) dimensionsDefine = objectRowsCollectDimensions(data); } else if (sourceFormat === "keyedColumns") { if (!dimensionsDefine) { dimensionsDefine = []; each$4(data, function(colArr, key) { dimensionsDefine.push(key); }); } } else if (sourceFormat === "original") { var value0 = getDataItemValue(data[0]); dimensionsDetectedCount = isArray(value0) && value0.length || 1; } else if (sourceFormat === "typedArray") {} return { startIndex, dimensionsDefine: normalizeDimensionsOption(dimensionsDefine), dimensionsDetectedCount }; } function objectRowsCollectDimensions(data) { var firstIndex = 0; var obj; while (firstIndex < data.length && !(obj = data[firstIndex++])); if (obj) return keys(obj); } function normalizeDimensionsOption(dimensionsDefine) { if (!dimensionsDefine) return; var nameMap = createHashMap(); return map$1(dimensionsDefine, function(rawItem, index) { rawItem = isObject$2(rawItem) ? rawItem : { name: rawItem }; var item = { name: rawItem.name, displayName: rawItem.displayName, type: rawItem.type }; if (item.name == null) return item; item.name += ""; if (item.displayName == null) item.displayName = item.name; var exist = nameMap.get(item.name); if (!exist) nameMap.set(item.name, { count: 1 }); else item.name += "-" + exist.count++; return item; }); } function arrayRowsTravelFirst(cb, seriesLayoutBy, data, maxLoop) { if (seriesLayoutBy === "row") for (var i = 0; i < data.length && i < maxLoop; i++) cb(data[i] ? data[i][0] : null, i); else { var value0 = data[0] || []; for (var i = 0; i < value0.length && i < maxLoop; i++) cb(value0[i], i); } } function shouldRetrieveDataByName(source) { var sourceFormat = source.sourceFormat; return sourceFormat === "objectRows" || sourceFormat === "keyedColumns"; } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/data/helper/dataProvider.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var _a, _b, _c, _d; var providerMethods; var mountMethods; /** * If normal array used, mutable chunk size is supported. * If typed array used, chunk size must be fixed. */ var DefaultDataProvider = function() { function DefaultDataProvider(sourceParam, dimSize) { var source = !isSourceInstance(sourceParam) ? createSourceFromSeriesDataOption(sourceParam) : sourceParam; this._source = source; var data = this._data = source.data; var sourceFormat = source.sourceFormat; source.seriesLayoutBy; if (sourceFormat === "typedArray") { this._offset = 0; this._dimSize = dimSize; this._data = data; } mountMethods(this, data, source); } DefaultDataProvider.prototype.getSource = function() { return this._source; }; DefaultDataProvider.prototype.count = function() { return 0; }; DefaultDataProvider.prototype.getItem = function(idx, out) {}; DefaultDataProvider.prototype.appendData = function(newData) {}; DefaultDataProvider.prototype.clean = function() {}; DefaultDataProvider.protoInitialize = function() { var proto = DefaultDataProvider.prototype; proto.pure = false; proto.persistent = true; }(); DefaultDataProvider.internalField = function() { var _a; mountMethods = function(provider, data, source) { var sourceFormat = source.sourceFormat; var seriesLayoutBy = source.seriesLayoutBy; var startIndex = source.startIndex; var dimsDef = source.dimensionsDefine; var methods = providerMethods[getMethodMapKey(sourceFormat, seriesLayoutBy)]; extend(provider, methods); if (sourceFormat === "typedArray") { provider.getItem = getItemForTypedArray; provider.count = countForTypedArray; provider.fillStorage = fillStorageForTypedArray; } else { provider.getItem = bind$1(getRawSourceItemGetter(sourceFormat, seriesLayoutBy), null, data, startIndex, dimsDef); provider.count = bind$1(getRawSourceDataCounter(sourceFormat, seriesLayoutBy), null, data, startIndex, dimsDef); } }; var getItemForTypedArray = function(idx, out) { idx = idx - this._offset; out = out || []; var data = this._data; var dimSize = this._dimSize; var offset = dimSize * idx; for (var i = 0; i < dimSize; i++) out[i] = data[offset + i]; return out; }; var fillStorageForTypedArray = function(start, end, storage, extent) { var data = this._data; var dimSize = this._dimSize; for (var dim = 0; dim < dimSize; dim++) { var dimExtent = extent[dim]; var min = dimExtent[0] == null ? Infinity : dimExtent[0]; var max = dimExtent[1] == null ? -Infinity : dimExtent[1]; var count = end - start; var arr = storage[dim]; for (var i = 0; i < count; i++) { var val = data[i * dimSize + dim]; arr[start + i] = val; val < min && (min = val); val > max && (max = val); } dimExtent[0] = min; dimExtent[1] = max; } }; var countForTypedArray = function() { return this._data ? this._data.length / this._dimSize : 0; }; providerMethods = (_a = {}, _a[SOURCE_FORMAT_ARRAY_ROWS + "_" + SERIES_LAYOUT_BY_COLUMN] = { pure: true, appendData: appendDataSimply }, _a[SOURCE_FORMAT_ARRAY_ROWS + "_row"] = { pure: true, appendData: function() { throw new Error("Do not support appendData when set seriesLayoutBy: \"row\"."); } }, _a[SOURCE_FORMAT_OBJECT_ROWS] = { pure: true, appendData: appendDataSimply }, _a[SOURCE_FORMAT_KEYED_COLUMNS] = { pure: true, appendData: function(newData) { var data = this._data; each$4(newData, function(newCol, key) { var oldCol = data[key] || (data[key] = []); for (var i = 0; i < (newCol || []).length; i++) oldCol.push(newCol[i]); }); } }, _a[SOURCE_FORMAT_ORIGINAL] = { appendData: appendDataSimply }, _a[SOURCE_FORMAT_TYPED_ARRAY] = { persistent: false, pure: true, appendData: function(newData) { this._data = newData; }, clean: function() { this._offset += this.count(); this._data = null; } }, _a); function appendDataSimply(newData) { for (var i = 0; i < newData.length; i++) this._data.push(newData[i]); } }(); return DefaultDataProvider; }(); var validateSimply = function(rawData) { if (!isArray(rawData)) error("series.data or dataset.source must be an array."); }; _a = {}, _a[SOURCE_FORMAT_ARRAY_ROWS + "_" + SERIES_LAYOUT_BY_COLUMN] = validateSimply, _a[SOURCE_FORMAT_ARRAY_ROWS + "_row"] = validateSimply, _a[SOURCE_FORMAT_OBJECT_ROWS] = validateSimply, _a[SOURCE_FORMAT_KEYED_COLUMNS] = function(rawData, dimsDef) { for (var i = 0; i < dimsDef.length; i++) if (dimsDef[i].name == null) error("dimension name must not be null/undefined."); }, _a[SOURCE_FORMAT_ORIGINAL] = validateSimply; var getItemSimply = function(rawData, startIndex, dimsDef, idx) { return rawData[idx]; }; var rawSourceItemGetterMap = (_b = {}, _b[SOURCE_FORMAT_ARRAY_ROWS + "_" + SERIES_LAYOUT_BY_COLUMN] = function(rawData, startIndex, dimsDef, idx) { return rawData[idx + startIndex]; }, _b[SOURCE_FORMAT_ARRAY_ROWS + "_row"] = function(rawData, startIndex, dimsDef, idx, out) { idx += startIndex; var item = out || []; var data = rawData; for (var i = 0; i < data.length; i++) { var row = data[i]; item[i] = row ? row[idx] : null; } return item; }, _b[SOURCE_FORMAT_OBJECT_ROWS] = getItemSimply, _b[SOURCE_FORMAT_KEYED_COLUMNS] = function(rawData, startIndex, dimsDef, idx, out) { var item = out || []; for (var i = 0; i < dimsDef.length; i++) { var dimName = dimsDef[i].name; var col = dimName != null ? rawData[dimName] : null; item[i] = col ? col[idx] : null; } return item; }, _b[SOURCE_FORMAT_ORIGINAL] = getItemSimply, _b); function getRawSourceItemGetter(sourceFormat, seriesLayoutBy) { return rawSourceItemGetterMap[getMethodMapKey(sourceFormat, seriesLayoutBy)]; } var countSimply = function(rawData, startIndex, dimsDef) { return rawData.length; }; var rawSourceDataCounterMap = (_c = {}, _c[SOURCE_FORMAT_ARRAY_ROWS + "_" + SERIES_LAYOUT_BY_COLUMN] = function(rawData, startIndex, dimsDef) { return Math.max(0, rawData.length - startIndex); }, _c[SOURCE_FORMAT_ARRAY_ROWS + "_row"] = function(rawData, startIndex, dimsDef) { var row = rawData[0]; return row ? Math.max(0, row.length - startIndex) : 0; }, _c[SOURCE_FORMAT_OBJECT_ROWS] = countSimply, _c[SOURCE_FORMAT_KEYED_COLUMNS] = function(rawData, startIndex, dimsDef) { var dimName = dimsDef[0].name; var col = dimName != null ? rawData[dimName] : null; return col ? col.length : 0; }, _c[SOURCE_FORMAT_ORIGINAL] = countSimply, _c); function getRawSourceDataCounter(sourceFormat, seriesLayoutBy) { return rawSourceDataCounterMap[getMethodMapKey(sourceFormat, seriesLayoutBy)]; } var getRawValueSimply = function(dataItem, dimIndex, property) { return dataItem[dimIndex]; }; var rawSourceValueGetterMap = (_d = {}, _d[SOURCE_FORMAT_ARRAY_ROWS] = getRawValueSimply, _d[SOURCE_FORMAT_OBJECT_ROWS] = function(dataItem, dimIndex, property) { return dataItem[property]; }, _d[SOURCE_FORMAT_KEYED_COLUMNS] = getRawValueSimply, _d[SOURCE_FORMAT_ORIGINAL] = function(dataItem, dimIndex, property) { var value = getDataItemValue(dataItem); return !(value instanceof Array) ? value : value[dimIndex]; }, _d[SOURCE_FORMAT_TYPED_ARRAY] = getRawValueSimply, _d); function getRawSourceValueGetter(sourceFormat) { return rawSourceValueGetterMap[sourceFormat]; } function getMethodMapKey(sourceFormat, seriesLayoutBy) { return sourceFormat === "arrayRows" ? sourceFormat + "_" + seriesLayoutBy : sourceFormat; } function retrieveRawValue(data, dataIndex, dim) { if (!data) return; var dataItem = data.getRawDataItem(dataIndex); if (dataItem == null) return; var store = data.getStore(); var sourceFormat = store.getSource().sourceFormat; if (dim != null) { var dimIndex = data.getDimensionIndex(dim); var property = store.getDimensionProperty(dimIndex); return getRawSourceValueGetter(sourceFormat)(dataItem, dimIndex, property); } else { var result = dataItem; if (sourceFormat === "original") result = getDataItemValue(dataItem); return result; } } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/data/helper/dimensionHelper.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var DimensionUserOuput = function() { function DimensionUserOuput(encode, dimRequest) { this._encode = encode; this._schema = dimRequest; } DimensionUserOuput.prototype.get = function() { return { fullDimensions: this._getFullDimensionNames(), encode: this._encode }; }; /** * Get all data store dimension names. * Theoretically a series data store is defined both by series and used dataset (if any). * If some dimensions are omitted for performance reason in `this.dimensions`, * the dimension name may not be auto-generated if user does not specify a dimension name. * In this case, the dimension name is `null`/`undefined`. */ DimensionUserOuput.prototype._getFullDimensionNames = function() { if (!this._cachedDimNames) this._cachedDimNames = this._schema ? this._schema.makeOutputDimensionNames() : []; return this._cachedDimNames; }; return DimensionUserOuput; }(); function summarizeDimensions(data, schema) { var summary = {}; var encode = summary.encode = {}; var notExtraCoordDimMap = createHashMap(); var defaultedLabel = []; var defaultedTooltip = []; var userOutputEncode = {}; each$4(data.dimensions, function(dimName) { var dimItem = data.getDimensionInfo(dimName); var coordDim = dimItem.coordDim; if (coordDim) { var coordDimIndex = dimItem.coordDimIndex; getOrCreateEncodeArr(encode, coordDim)[coordDimIndex] = dimName; if (!dimItem.isExtraCoord) { notExtraCoordDimMap.set(coordDim, 1); if (mayLabelDimType(dimItem.type)) defaultedLabel[0] = dimName; getOrCreateEncodeArr(userOutputEncode, coordDim)[coordDimIndex] = data.getDimensionIndex(dimItem.name); } if (dimItem.defaultTooltip) defaultedTooltip.push(dimName); } VISUAL_DIMENSIONS.each(function(v, otherDim) { var encodeArr = getOrCreateEncodeArr(encode, otherDim); var dimIndex = dimItem.otherDims[otherDim]; if (dimIndex != null && dimIndex !== false) encodeArr[dimIndex] = dimItem.name; }); }); var dataDimsOnCoord = []; var encodeFirstDimNotExtra = {}; notExtraCoordDimMap.each(function(v, coordDim) { var dimArr = encode[coordDim]; encodeFirstDimNotExtra[coordDim] = dimArr[0]; dataDimsOnCoord = dataDimsOnCoord.concat(dimArr); }); summary.dataDimsOnCoord = dataDimsOnCoord; summary.dataDimIndicesOnCoord = map$1(dataDimsOnCoord, function(dimName) { return data.getDimensionInfo(dimName).storeDimIndex; }); summary.encodeFirstDimNotExtra = encodeFirstDimNotExtra; var encodeLabel = encode.label; if (encodeLabel && encodeLabel.length) defaultedLabel = encodeLabel.slice(); var encodeTooltip = encode.tooltip; if (encodeTooltip && encodeTooltip.length) defaultedTooltip = encodeTooltip.slice(); else if (!defaultedTooltip.length) defaultedTooltip = defaultedLabel.slice(); encode.defaultedLabel = defaultedLabel; encode.defaultedTooltip = defaultedTooltip; summary.userOutput = new DimensionUserOuput(userOutputEncode, schema); return summary; } function getOrCreateEncodeArr(encode, dim) { if (!encode.hasOwnProperty(dim)) encode[dim] = []; return encode[dim]; } function getDimensionTypeByAxis(axisType) { return axisType === "category" ? "ordinal" : axisType === "time" ? "time" : "float"; } function mayLabelDimType(dimType) { return !(dimType === "ordinal" || dimType === "time"); } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/data/SeriesDimensionDefine.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var SeriesDimensionDefine = function() { /** * @param opt All of the fields will be shallow copied. */ function SeriesDimensionDefine(opt) { /** * The term "other" means "other than coord". * The format of `otherDims` is: * ```js * { * tooltip?: number * label?: number * itemName?: number * seriesName?: number * } * ``` * * A `series.encode` can specified these fields: * ```js * encode: { * // "3, 1, 5" is the index of data dimension. * tooltip: [3, 1, 5], * label: [0, 3], * ... * } * ``` * `otherDims` is the parse result of the `series.encode` above, like: * ```js * // Suppose the index of this data dimension is `3`. * this.otherDims = { * // `3` is at the index `0` of the `encode.tooltip` * tooltip: 0, * // `3` is at the index `1` of the `encode.label` * label: 1 * }; * ``` * * This prop should never be `null`/`undefined` after initialized. */ this.otherDims = {}; if (opt != null) extend(this, opt); } return SeriesDimensionDefine; }(); //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/data/helper/dataValueHelper.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ /** * Convert raw the value in to inner value in List. * * [Performance sensitive] * * [Caution]: this is the key logic of user value parser. * For backward compatibility, do not modify it until you have to! */ function parseDataValue(value, opt) { var dimType = opt && opt.type; if (dimType === "ordinal") return value; if (dimType === "time" && !isNumber(value) && value != null && value !== "-") value = +parseDate(value); return value == null || value === "" ? NaN : Number(value); } createHashMap({ "number": function(val) { return parseFloat(val); }, "time": function(val) { return +parseDate(val); }, "trim": function(val) { return isString(val) ? trim(val) : val; } }); var ORDER_COMPARISON_OP_MAP = { lt: function(lval, rval) { return lval < rval; }, lte: function(lval, rval) { return lval <= rval; }, gt: function(lval, rval) { return lval > rval; }, gte: function(lval, rval) { return lval >= rval; } }; (function() { function FilterOrderComparator(op, rval) { if (!isNumber(rval)) throwError(""); this._opFn = ORDER_COMPARISON_OP_MAP[op]; this._rvalFloat = numericToNumber(rval); } FilterOrderComparator.prototype.evaluate = function(lval) { return isNumber(lval) ? this._opFn(lval, this._rvalFloat) : this._opFn(numericToNumber(lval), this._rvalFloat); }; return FilterOrderComparator; })(); var SortOrderComparator = function() { /** * @param order by default: 'asc' * @param incomparable by default: Always on the tail. * That is, if 'asc' => 'max', if 'desc' => 'min' * See the definition of "incomparable" in [SORT_COMPARISON_RULE]. */ function SortOrderComparator(order, incomparable) { var isDesc = order === "desc"; this._resultLT = isDesc ? 1 : -1; if (incomparable == null) incomparable = isDesc ? "min" : "max"; this._incomparable = incomparable === "min" ? -Infinity : Infinity; } SortOrderComparator.prototype.evaluate = function(lval, rval) { var lvalFloat = isNumber(lval) ? lval : numericToNumber(lval); var rvalFloat = isNumber(rval) ? rval : numericToNumber(rval); var lvalNotNumeric = isNaN(lvalFloat); var rvalNotNumeric = isNaN(rvalFloat); if (lvalNotNumeric) lvalFloat = this._incomparable; if (rvalNotNumeric) rvalFloat = this._incomparable; if (lvalNotNumeric && rvalNotNumeric) { var lvalIsStr = isString(lval); var rvalIsStr = isString(rval); if (lvalIsStr) lvalFloat = rvalIsStr ? lval : 0; if (rvalIsStr) rvalFloat = lvalIsStr ? rval : 0; } return lvalFloat < rvalFloat ? this._resultLT : lvalFloat > rvalFloat ? -this._resultLT : 0; }; return SortOrderComparator; }(); (function() { function FilterEqualityComparator(isEq, rval) { this._rval = rval; this._isEQ = isEq; this._rvalTypeof = typeof rval; this._rvalFloat = numericToNumber(rval); } FilterEqualityComparator.prototype.evaluate = function(lval) { var eqResult = lval === this._rval; if (!eqResult) { var lvalTypeof = typeof lval; if (lvalTypeof !== this._rvalTypeof && (lvalTypeof === "number" || this._rvalTypeof === "number")) eqResult = numericToNumber(lval) === this._rvalFloat; } return this._isEQ ? eqResult : !eqResult; }; return FilterEqualityComparator; })(); /** * @usage * const filterParsed = parseSanitizationFilter(filter); * for( ... ) { * const val = ...; * if (!filter || passesFilter(filterParsed, val)) { * // normal handling * } * } */ function parseSanitizationFilter(filter) { var filterKey = ""; var filterG = -Infinity; var filterGE = -Infinity; var filterL = Infinity; var filterLE = Infinity; if (filter) { if (filter.g != null) { filterKey += "G" + filter.g; filterG = filter.g; } if (filter.ge != null) { filterKey += "GE" + filter.ge; filterGE = filter.ge; } if (filter.l != null) { filterKey += "L" + filter.l; filterL = filter.l; } if (filter.le != null) { filterKey += "LE" + filter.le; filterLE = filter.le; } } return { key: filterKey, g: filterG, ge: filterGE, l: filterL, le: filterLE }; } function passesSanitizationFilter(filterParsed, value) { return value > filterParsed.g && value >= filterParsed.ge && value < filterParsed.l && value <= filterParsed.le; } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/data/DataStore.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var CtorUint32Array = typeof Uint32Array === "undefined" ? Array : Uint32Array; var CtorUint16Array = typeof Uint16Array === "undefined" ? Array : Uint16Array; var CtorInt32Array$1 = typeof Int32Array === "undefined" ? Array : Int32Array; var CtorFloat64Array = typeof Float64Array === "undefined" ? Array : Float64Array; /** * Multi dimensional data store */ var dataCtors = { "float": CtorFloat64Array, "int": CtorInt32Array$1, "ordinal": Array, "number": Array, "time": CtorFloat64Array }; var defaultDimValueGetters; function getIndicesCtor(rawCount) { return rawCount > 65535 ? CtorUint32Array : CtorUint16Array; } function cloneChunk(originalChunk) { var Ctor = originalChunk.constructor; return Ctor === Array ? originalChunk.slice() : new Ctor(originalChunk); } function prepareStore(store, dimIdx, dimType, end, append) { var DataCtor = dataCtors[dimType || "float"]; if (append) { var oldStore = store[dimIdx]; var oldLen = oldStore && oldStore.length; if (!(oldLen === end)) { var newStore = new DataCtor(end); for (var j = 0; j < oldLen; j++) newStore[j] = oldStore[j]; store[dimIdx] = newStore; } } else store[dimIdx] = new DataCtor(end); } /** * Basically, DataStore API keep immutable. */ var DataStore = function() { function DataStore() { this._chunks = []; this._rawExtent = []; this._extent = []; this._count = 0; this._rawCount = 0; this._calcDimNameToIdx = createHashMap(); } /** * Initialize from data */ DataStore.prototype.initData = function(provider, inputDimensions, dimValueGetter) { this._provider = provider; this._chunks = []; this._indices = null; this.getRawIndex = this._getRawIdxIdentity; var source = provider.getSource(); var defaultGetter = this.defaultDimValueGetter = defaultDimValueGetters[source.sourceFormat]; this._dimValueGetter = dimValueGetter || defaultGetter; this._rawExtent = []; shouldRetrieveDataByName(source); this._dimensions = map$1(inputDimensions, function(dim) { return { type: dim.type, property: dim.property }; }); this._initDataFromProvider(0, provider.count()); }; DataStore.prototype.getProvider = function() { return this._provider; }; /** * Caution: even when a `source` instance owned by a series, the created data store * may still be shared by different sereis (the source hash does not use all `source` * props, see `sourceManager`). In this case, the `source` props that are not used in * hash (like `source.dimensionDefine`) probably only belongs to a certain series and * thus should not be fetch here. */ DataStore.prototype.getSource = function() { return this._provider.getSource(); }; /** * @caution Only used in dataStack. */ DataStore.prototype.ensureCalculationDimension = function(dimName, type) { var calcDimNameToIdx = this._calcDimNameToIdx; var dimensions = this._dimensions; var calcDimIdx = calcDimNameToIdx.get(dimName); if (calcDimIdx != null) { if (dimensions[calcDimIdx].type === type) return calcDimIdx; } else calcDimIdx = dimensions.length; dimensions[calcDimIdx] = { type }; calcDimNameToIdx.set(dimName, calcDimIdx); this._chunks[calcDimIdx] = new dataCtors[type || "float"](this._rawCount); this._rawExtent[calcDimIdx] = initExtentForUnion(); return calcDimIdx; }; DataStore.prototype.collectOrdinalMeta = function(dimIdx, ordinalMeta) { var chunk = this._chunks[dimIdx]; var dim = this._dimensions[dimIdx]; var rawExtents = this._rawExtent; var offset = dim.ordinalOffset || 0; var len = chunk.length; if (offset === 0) rawExtents[dimIdx] = initExtentForUnion(); var dimRawExtent = rawExtents[dimIdx]; for (var i = offset; i < len; i++) { var val = chunk[i] = ordinalMeta.parseAndCollect(chunk[i]); if (!isNaN(val)) { dimRawExtent[0] = Math.min(val, dimRawExtent[0]); dimRawExtent[1] = Math.max(val, dimRawExtent[1]); } } dim.ordinalMeta = ordinalMeta; dim.ordinalOffset = len; dim.type = "ordinal"; }; DataStore.prototype.getOrdinalMeta = function(dimIdx) { return this._dimensions[dimIdx].ordinalMeta; }; DataStore.prototype.getDimensionProperty = function(dimIndex) { var item = this._dimensions[dimIndex]; return item && item.property; }; /** * Caution: Can be only called on raw data (before `this._indices` created). */ DataStore.prototype.appendData = function(data) { var provider = this._provider; var start = this.count(); provider.appendData(data); var end = provider.count(); if (!provider.persistent) end += start; if (start < end) this._initDataFromProvider(start, end, true); return [start, end]; }; DataStore.prototype.appendValues = function(values, minFillLen) { var chunks = this._chunks; var dimensions = this._dimensions; var dimLen = dimensions.length; var rawExtent = this._rawExtent; var start = this.count(); var end = start + Math.max(values.length, minFillLen || 0); for (var i = 0; i < dimLen; i++) { var dim = dimensions[i]; prepareStore(chunks, i, dim.type, end, true); } var emptyDataItem = []; for (var idx = start; idx < end; idx++) { var sourceIdx = idx - start; for (var dimIdx = 0; dimIdx < dimLen; dimIdx++) { var dim = dimensions[dimIdx]; var val = defaultDimValueGetters.arrayRows.call(this, values[sourceIdx] || emptyDataItem, dim.property, sourceIdx, dimIdx); chunks[dimIdx][idx] = val; var dimRawExtent = rawExtent[dimIdx]; val < dimRawExtent[0] && (dimRawExtent[0] = val); val > dimRawExtent[1] && (dimRawExtent[1] = val); } } this._rawCount = this._count = end; return { start, end }; }; DataStore.prototype._initDataFromProvider = function(start, end, append) { var provider = this._provider; var chunks = this._chunks; var dimensions = this._dimensions; var dimLen = dimensions.length; var rawExtent = this._rawExtent; var dimNames = map$1(dimensions, function(dim) { return dim.property; }); for (var i = 0; i < dimLen; i++) { var dim = dimensions[i]; if (!rawExtent[i]) rawExtent[i] = initExtentForUnion(); prepareStore(chunks, i, dim.type, end, append); } if (provider.fillStorage) provider.fillStorage(start, end, chunks, rawExtent); else { var dataItem = []; for (var idx = start; idx < end; idx++) { dataItem = provider.getItem(idx, dataItem); for (var dimIdx = 0; dimIdx < dimLen; dimIdx++) { var dimStorage = chunks[dimIdx]; var val = this._dimValueGetter(dataItem, dimNames[dimIdx], idx, dimIdx); dimStorage[idx] = val; var dimRawExtent = rawExtent[dimIdx]; val < dimRawExtent[0] && (dimRawExtent[0] = val); val > dimRawExtent[1] && (dimRawExtent[1] = val); } } } if (!provider.persistent && provider.clean) provider.clean(); this._rawCount = this._count = end; this._extent = []; }; DataStore.prototype.count = function() { return this._count; }; /** * Get value. Return NaN if idx is out of range. */ DataStore.prototype.get = function(dim, idx) { if (!(idx >= 0 && idx < this._count)) return NaN; var dimStore = this._chunks[dim]; return dimStore ? dimStore[this.getRawIndex(idx)] : NaN; }; DataStore.prototype.getValues = function(dimensions, idx) { var values = []; var dimArr = []; if (idx == null) { idx = dimensions; dimensions = []; for (var i = 0; i < this._dimensions.length; i++) dimArr.push(i); } else dimArr = dimensions; for (var i = 0, len = dimArr.length; i < len; i++) values.push(this.get(dimArr[i], idx)); return values; }; /** * @param dim concrete dim */ DataStore.prototype.getByRawIndex = function(dim, rawIdx) { if (!(rawIdx >= 0 && rawIdx < this._rawCount)) return NaN; var dimStore = this._chunks[dim]; return dimStore ? dimStore[rawIdx] : NaN; }; /** * Get sum of data in one dimension */ DataStore.prototype.getSum = function(dim) { var dimData = this._chunks[dim]; var sum = 0; if (dimData) for (var i = 0, len = this.count(); i < len; i++) { var value = this.get(dim, i); if (!isNaN(value)) sum += value; } return sum; }; /** * Get median of data in one dimension */ DataStore.prototype.getMedian = function(dim) { var dimDataArray = []; this.each([dim], function(val) { if (!isNaN(val)) dimDataArray.push(val); }); asc(dimDataArray); var len = this.count(); return len === 0 ? 0 : len % 2 === 1 ? dimDataArray[(len - 1) / 2] : (dimDataArray[len / 2] + dimDataArray[len / 2 - 1]) / 2; }; /** * Retrieve the index with given raw data index. */ DataStore.prototype.indexOfRawIndex = function(rawIndex) { if (rawIndex >= this._rawCount || rawIndex < 0) return -1; if (!this._indices) return rawIndex; var indices = this._indices; var rawDataIndex = indices[rawIndex]; if (rawDataIndex != null && rawDataIndex < this._count && rawDataIndex === rawIndex) return rawIndex; var left = 0; var right = this._count - 1; while (left <= right) { var mid = (left + right) / 2 | 0; if (indices[mid] < rawIndex) left = mid + 1; else if (indices[mid] > rawIndex) right = mid - 1; else return mid; } return -1; }; DataStore.prototype.getIndices = function() { var newIndices; var indices = this._indices; if (indices) { var Ctor = indices.constructor; var thisCount = this._count; if (Ctor === Array) { newIndices = new Ctor(thisCount); for (var i = 0; i < thisCount; i++) newIndices[i] = indices[i]; } else newIndices = new Ctor(indices.buffer, 0, thisCount); } else { var Ctor = getIndicesCtor(this._rawCount); newIndices = new Ctor(this.count()); for (var i = 0; i < newIndices.length; i++) newIndices[i] = i; } return newIndices; }; /** * [NOTICE]: Performance-sensitive for large data. */ DataStore.prototype.filter = function(dims, cb) { if (!this._count) return this; var newStore = this.clone(); var count = newStore.count(); var newIndices = new (getIndicesCtor(newStore._rawCount))(count); var value = []; var dimSize = dims.length; var offset = 0; var dim0 = dims[0]; var chunks = newStore._chunks; for (var i = 0; i < count; i++) { var keep = void 0; var rawIdx = newStore.getRawIndex(i); if (dimSize === 0) keep = cb(i); else if (dimSize === 1) { var val = chunks[dim0][rawIdx]; keep = cb(val, i); } else { var k = 0; for (; k < dimSize; k++) value[k] = chunks[dims[k]][rawIdx]; value[k] = i; keep = cb.apply(null, value); } if (keep) newIndices[offset++] = rawIdx; } if (offset < count) newStore._indices = newIndices; newStore._count = offset; newStore._extent = []; newStore._updateGetRawIdx(); return newStore; }; /** * Select data in range. (For optimization of filter) * (Manually inline code, support 5 million data filtering in data zoom.) */ DataStore.prototype.selectRange = function(range) { var newStore = this.clone(); var len = newStore._count; if (!len) return this; var dims = keys(range); var dimSize = dims.length; if (!dimSize) return this; var originalCount = newStore.count(); var newIndices = new (getIndicesCtor(newStore._rawCount))(originalCount); var offset = 0; var dim0 = dims[0]; var min = range[dim0][0]; var max = range[dim0][1]; var storeArr = newStore._chunks; var quickFinished = false; if (!newStore._indices) { var idx = 0; if (dimSize === 1) { var dimStorage = storeArr[dims[0]]; for (var i = 0; i < len; i++) { var val = dimStorage[i]; if (val >= min && val <= max || isNaN(val)) newIndices[offset++] = idx; idx++; } quickFinished = true; } else if (dimSize === 2) { var dimStorage = storeArr[dims[0]]; var dimStorage2 = storeArr[dims[1]]; var min2 = range[dims[1]][0]; var max2 = range[dims[1]][1]; for (var i = 0; i < len; i++) { var val = dimStorage[i]; var val2 = dimStorage2[i]; if ((val >= min && val <= max || isNaN(val)) && (val2 >= min2 && val2 <= max2 || isNaN(val2))) newIndices[offset++] = idx; idx++; } quickFinished = true; } } if (!quickFinished) if (dimSize === 1) for (var i = 0; i < originalCount; i++) { var rawIndex = newStore.getRawIndex(i); var val = storeArr[dims[0]][rawIndex]; if (val >= min && val <= max || isNaN(val)) newIndices[offset++] = rawIndex; } else for (var i = 0; i < originalCount; i++) { var keep = true; var rawIndex = newStore.getRawIndex(i); for (var k = 0; k < dimSize; k++) { var dimk = dims[k]; var val = storeArr[dimk][rawIndex]; if (val < range[dimk][0] || val > range[dimk][1]) keep = false; } if (keep) newIndices[offset++] = newStore.getRawIndex(i); } if (offset < originalCount) newStore._indices = newIndices; newStore._count = offset; newStore._extent = []; newStore._updateGetRawIdx(); return newStore; }; /** * Data mapping to a new List with given dimensions */ DataStore.prototype.map = function(dims, cb) { var target = this.clone(dims); this._updateDims(target, dims, cb); return target; }; /** * @caution Danger!! Only used in dataStack. */ DataStore.prototype.modify = function(dims, cb) { this._updateDims(this, dims, cb); }; DataStore.prototype._updateDims = function(target, dims, cb) { var targetChunks = target._chunks; var tmpRetValue = []; var dimSize = dims.length; var dataCount = target.count(); var values = []; var rawExtent = target._rawExtent; for (var i = 0; i < dims.length; i++) rawExtent[dims[i]] = initExtentForUnion(); for (var dataIndex = 0; dataIndex < dataCount; dataIndex++) { var rawIndex = target.getRawIndex(dataIndex); for (var k = 0; k < dimSize; k++) values[k] = targetChunks[dims[k]][rawIndex]; values[dimSize] = dataIndex; var retValue = cb && cb.apply(null, values); if (retValue != null) { if (typeof retValue !== "object") { tmpRetValue[0] = retValue; retValue = tmpRetValue; } for (var i = 0; i < retValue.length; i++) { var dim = dims[i]; var val = retValue[i]; var rawExtentOnDim = rawExtent[dim]; var dimStore = targetChunks[dim]; if (dimStore) dimStore[rawIndex] = val; if (val < rawExtentOnDim[0]) rawExtentOnDim[0] = val; if (val > rawExtentOnDim[1]) rawExtentOnDim[1] = val; } } } }; /** * Large data down sampling using largest-triangle-three-buckets * @param {string} valueDimension * @param {number} targetCount */ DataStore.prototype.lttbDownSample = function(valueDimension, rate) { var target = this.clone([valueDimension], true); var dimStore = target._chunks[valueDimension]; var len = this.count(); var sampledIndex = 0; var frameSize = Math.floor(1 / rate); var currentRawIndex = this.getRawIndex(0); var maxArea; var area; var nextRawIndex; var newIndices = new (getIndicesCtor(this._rawCount))(Math.min((Math.ceil(len / frameSize) + 2) * 2, len)); newIndices[sampledIndex++] = currentRawIndex; for (var i = 1; i < len - 1; i += frameSize) { var nextFrameStart = Math.min(i + frameSize, len - 1); var nextFrameEnd = Math.min(i + frameSize * 2, len); var avgX = (nextFrameEnd + nextFrameStart) / 2; var avgY = 0; for (var idx = nextFrameStart; idx < nextFrameEnd; idx++) { var rawIndex = this.getRawIndex(idx); var y = dimStore[rawIndex]; if (isNaN(y)) continue; avgY += y; } avgY /= nextFrameEnd - nextFrameStart; var frameStart = i; var frameEnd = Math.min(i + frameSize, len); var pointAX = i - 1; var pointAY = dimStore[currentRawIndex]; maxArea = -1; nextRawIndex = frameStart; var firstNaNIndex = -1; var countNaN = 0; for (var idx = frameStart; idx < frameEnd; idx++) { var rawIndex = this.getRawIndex(idx); var y = dimStore[rawIndex]; if (isNaN(y)) { countNaN++; if (firstNaNIndex < 0) firstNaNIndex = rawIndex; continue; } area = Math.abs((pointAX - avgX) * (y - pointAY) - (pointAX - idx) * (avgY - pointAY)); if (area > maxArea) { maxArea = area; nextRawIndex = rawIndex; } } if (countNaN > 0 && countNaN < frameEnd - frameStart) { newIndices[sampledIndex++] = Math.min(firstNaNIndex, nextRawIndex); nextRawIndex = Math.max(firstNaNIndex, nextRawIndex); } newIndices[sampledIndex++] = nextRawIndex; currentRawIndex = nextRawIndex; } newIndices[sampledIndex++] = this.getRawIndex(len - 1); target._count = sampledIndex; target._indices = newIndices; target.getRawIndex = this._getRawIdx; return target; }; /** * Large data down sampling using min-max * @param {string} valueDimension * @param {number} rate */ DataStore.prototype.minmaxDownSample = function(valueDimension, rate) { var target = this.clone([valueDimension], true); var targetStorage = target._chunks; var frameSize = Math.floor(1 / rate); var dimStore = targetStorage[valueDimension]; var len = this.count(); var newIndices = new (getIndicesCtor(this._rawCount))(Math.ceil(len / frameSize) * 2); var offset = 0; for (var i = 0; i < len; i += frameSize) { var minIndex = i; var minValue = dimStore[this.getRawIndex(minIndex)]; var maxIndex = i; var maxValue = dimStore[this.getRawIndex(maxIndex)]; var thisFrameSize = frameSize; if (i + frameSize > len) thisFrameSize = len - i; for (var k = 0; k < thisFrameSize; k++) { var value = dimStore[this.getRawIndex(i + k)]; if (value < minValue) { minValue = value; minIndex = i + k; } if (value > maxValue) { maxValue = value; maxIndex = i + k; } } var rawMinIndex = this.getRawIndex(minIndex); var rawMaxIndex = this.getRawIndex(maxIndex); if (minIndex < maxIndex) { newIndices[offset++] = rawMinIndex; newIndices[offset++] = rawMaxIndex; } else { newIndices[offset++] = rawMaxIndex; newIndices[offset++] = rawMinIndex; } } target._count = offset; target._indices = newIndices; target._updateGetRawIdx(); return target; }; /** * Large data down sampling on given dimension * @param sampleIndex Sample index for name and id */ DataStore.prototype.downSample = function(dimension, rate, sampleValue, sampleIndex) { var target = this.clone([dimension], true); var targetStorage = target._chunks; var frameValues = []; var frameSize = Math.floor(1 / rate); var dimStore = targetStorage[dimension]; var len = this.count(); var rawExtentOnDim = target._rawExtent[dimension] = initExtentForUnion(); var newIndices = new (getIndicesCtor(this._rawCount))(Math.ceil(len / frameSize)); var offset = 0; for (var i = 0; i < len; i += frameSize) { if (frameSize > len - i) { frameSize = len - i; frameValues.length = frameSize; } for (var k = 0; k < frameSize; k++) frameValues[k] = dimStore[this.getRawIndex(i + k)]; var value = sampleValue(frameValues); var sampleFrameIdx = this.getRawIndex(Math.min(i + sampleIndex(frameValues, value) || 0, len - 1)); dimStore[sampleFrameIdx] = value; if (value < rawExtentOnDim[0]) rawExtentOnDim[0] = value; if (value > rawExtentOnDim[1]) rawExtentOnDim[1] = value; newIndices[offset++] = sampleFrameIdx; } target._count = offset; target._indices = newIndices; target._updateGetRawIdx(); return target; }; /** * Data iteration * @param ctx default this * @example * list.each(0, function (x, idx) {}); * list.each([0, 1], function (x, y, idx) {}); * list.each(function (idx) {}) */ DataStore.prototype.each = function(dims, cb) { if (!this._count) return; var dimSize = dims.length; var chunks = this._chunks; for (var i = 0, len = this.count(); i < len; i++) { var rawIdx = this.getRawIndex(i); switch (dimSize) { case 0: cb(i); break; case 1: cb(chunks[dims[0]][rawIdx], i); break; case 2: cb(chunks[dims[0]][rawIdx], chunks[dims[1]][rawIdx], i); break; default: var k = 0; var value = []; for (; k < dimSize; k++) value[k] = chunks[dims[k]][rawIdx]; value[k] = i; cb.apply(null, value); } } }; DataStore.prototype.getDataExtent = function(dim, filter) { var dimData = this._chunks[dim]; var initialExtent = initExtentForUnion(); if (!dimData) return initialExtent; var currEnd = this.count(); if (!this._indices && !filter) return this._rawExtent[dim].slice(); var thisExtent = this._extent; var dimExtentRecord = thisExtent[dim] || (thisExtent[dim] = {}); var filterParsed = parseSanitizationFilter(filter); var filterKey = filterParsed.key; var dimExtent = dimExtentRecord[filterKey]; if (dimExtent) return dimExtent.slice(); var min = initialExtent[0]; var max = initialExtent[1]; for (var i = 0; i < currEnd; i++) { var value = dimData[this.getRawIndex(i)]; if (!filter || passesSanitizationFilter(filterParsed, value)) { if (value < min) min = value; if (value > max) max = value; } } return dimExtentRecord[filterKey] = [min, max]; }; /** * Get raw data item */ DataStore.prototype.getRawDataItem = function(idx) { var rawIdx = this.getRawIndex(idx); if (!this._provider.persistent) { var val = []; var chunks = this._chunks; for (var i = 0; i < chunks.length; i++) val.push(chunks[i][rawIdx]); return val; } else return this._provider.getItem(rawIdx); }; /** * Clone shallow. * * @param clonedDims Determine which dims to clone. Will share the data if not specified. */ DataStore.prototype.clone = function(clonedDims, ignoreIndices) { var target = new DataStore(); var chunks = this._chunks; var clonedDimsMap = clonedDims && reduce(clonedDims, function(obj, dimIdx) { obj[dimIdx] = true; return obj; }, {}); if (clonedDimsMap) for (var i = 0; i < chunks.length; i++) target._chunks[i] = !clonedDimsMap[i] ? chunks[i] : cloneChunk(chunks[i]); else target._chunks = chunks; this._copyCommonProps(target); if (!ignoreIndices) target._indices = this._cloneIndices(); target._updateGetRawIdx(); return target; }; DataStore.prototype._copyCommonProps = function(target) { target._count = this._count; target._rawCount = this._rawCount; target._provider = this._provider; target._dimensions = this._dimensions; target._extent = clone$2(this._extent); target._rawExtent = clone$2(this._rawExtent); }; DataStore.prototype._cloneIndices = function() { if (this._indices) { var Ctor = this._indices.constructor; var indices = void 0; if (Ctor === Array) { var thisCount = this._indices.length; indices = new Ctor(thisCount); for (var i = 0; i < thisCount; i++) indices[i] = this._indices[i]; } else indices = new Ctor(this._indices); return indices; } return null; }; DataStore.prototype._getRawIdxIdentity = function(idx) { return idx; }; DataStore.prototype._getRawIdx = function(idx) { if (idx < this._count && idx >= 0) return this._indices[idx]; return -1; }; DataStore.prototype._updateGetRawIdx = function() { this.getRawIndex = this._indices ? this._getRawIdx : this._getRawIdxIdentity; }; DataStore.internalField = function() { function getDimValueSimply(dataItem, property, dataIndex, dimIndex) { return parseDataValue(dataItem[dimIndex], this._dimensions[dimIndex]); } defaultDimValueGetters = { arrayRows: getDimValueSimply, objectRows: function(dataItem, property, dataIndex, dimIndex) { return parseDataValue(dataItem[property], this._dimensions[dimIndex]); }, keyedColumns: getDimValueSimply, original: function(dataItem, property, dataIndex, dimIndex) { var value = dataItem && (dataItem.value == null ? dataItem : dataItem.value); return parseDataValue(value instanceof Array ? value[dimIndex] : value, this._dimensions[dimIndex]); }, typedArray: function(dataItem, property, dataIndex, dimIndex) { return dataItem[dimIndex]; } }; }(); return DataStore; }(); //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/data/helper/SeriesDataSchema.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var inner$8 = makeInner(); var dimTypeShort = { float: "f", int: "i", ordinal: "o", number: "n", time: "t" }; /** * Represents the dimension requirement of a series. * * NOTICE: * When there are too many dimensions in dataset and many series, only the used dimensions * (i.e., used by coord sys and declared in `series.encode`) are add to `dimensionDefineList`. * But users may query data by other unused dimension names. * In this case, users can only query data if and only if they have defined dimension names * via ec option, so we provide `getDimensionIndexFromSource`, which only query them from * `source` dimensions. */ var SeriesDataSchema = function() { function SeriesDataSchema(opt) { this.dimensions = opt.dimensions; this._dimOmitted = opt.dimensionOmitted; this.source = opt.source; this._fullDimCount = opt.fullDimensionCount; this._updateDimOmitted(opt.dimensionOmitted); } SeriesDataSchema.prototype.isDimensionOmitted = function() { return this._dimOmitted; }; SeriesDataSchema.prototype._updateDimOmitted = function(dimensionOmitted) { this._dimOmitted = dimensionOmitted; if (!dimensionOmitted) return; if (!this._dimNameMap) this._dimNameMap = ensureSourceDimNameMap(this.source); }; /** * @caution Can only be used when `dimensionOmitted: true`. * * Get index by user defined dimension name (i.e., not internal generate name). * That is, get index from `dimensionsDefine`. * If no `dimensionsDefine`, or no name get, return -1. */ SeriesDataSchema.prototype.getSourceDimensionIndex = function(dimName) { return retrieve2(this._dimNameMap.get(dimName), -1); }; /** * @caution Can only be used when `dimensionOmitted: true`. * * Notice: may return `null`/`undefined` if user not specify dimension names. */ SeriesDataSchema.prototype.getSourceDimension = function(dimIndex) { var dimensionsDefine = this.source.dimensionsDefine; if (dimensionsDefine) return dimensionsDefine[dimIndex]; }; SeriesDataSchema.prototype.makeStoreSchema = function() { var dimCount = this._fullDimCount; var willRetrieveDataByName = shouldRetrieveDataByName(this.source); var makeHashStrict = !shouldOmitUnusedDimensions(dimCount); var dimHash = ""; var dims = []; for (var fullDimIdx = 0, seriesDimIdx = 0; fullDimIdx < dimCount; fullDimIdx++) { var property = void 0; var type = void 0; var ordinalMeta = void 0; var seriesDimDef = this.dimensions[seriesDimIdx]; if (seriesDimDef && seriesDimDef.storeDimIndex === fullDimIdx) { property = willRetrieveDataByName ? seriesDimDef.name : null; type = seriesDimDef.type; ordinalMeta = seriesDimDef.ordinalMeta; seriesDimIdx++; } else { var sourceDimDef = this.getSourceDimension(fullDimIdx); if (sourceDimDef) { property = willRetrieveDataByName ? sourceDimDef.name : null; type = sourceDimDef.type; } } dims.push({ property, type, ordinalMeta }); if (willRetrieveDataByName && property != null && (!seriesDimDef || !seriesDimDef.isCalculationCoord)) dimHash += makeHashStrict ? property.replace(/\`/g, "`1").replace(/\$/g, "`2") : property; dimHash += "$"; dimHash += dimTypeShort[type] || "f"; if (ordinalMeta) dimHash += ordinalMeta.uid; dimHash += "$"; } var source = this.source; return { dimensions: dims, hash: [ source.seriesLayoutBy, source.startIndex, dimHash ].join("$$") }; }; SeriesDataSchema.prototype.makeOutputDimensionNames = function() { var result = []; for (var fullDimIdx = 0, seriesDimIdx = 0; fullDimIdx < this._fullDimCount; fullDimIdx++) { var name_1 = void 0; var seriesDimDef = this.dimensions[seriesDimIdx]; if (seriesDimDef && seriesDimDef.storeDimIndex === fullDimIdx) { if (!seriesDimDef.isCalculationCoord) name_1 = seriesDimDef.name; seriesDimIdx++; } else { var sourceDimDef = this.getSourceDimension(fullDimIdx); if (sourceDimDef) name_1 = sourceDimDef.name; } result.push(name_1); } return result; }; SeriesDataSchema.prototype.appendCalculationDimension = function(dimDef) { this.dimensions.push(dimDef); dimDef.isCalculationCoord = true; this._fullDimCount++; this._updateDimOmitted(true); }; return SeriesDataSchema; }(); function isSeriesDataSchema(schema) { return schema instanceof SeriesDataSchema; } function createDimNameMap(dimsDef) { var dataDimNameMap = createHashMap(); for (var i = 0; i < (dimsDef || []).length; i++) { var dimDefItemRaw = dimsDef[i]; var userDimName = isObject$2(dimDefItemRaw) ? dimDefItemRaw.name : dimDefItemRaw; if (userDimName != null && dataDimNameMap.get(userDimName) == null) dataDimNameMap.set(userDimName, i); } return dataDimNameMap; } function ensureSourceDimNameMap(source) { var innerSource = inner$8(source); return innerSource.dimNameMap || (innerSource.dimNameMap = createDimNameMap(source.dimensionsDefine)); } function shouldOmitUnusedDimensions(dimCount) { return dimCount > 30; } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/data/SeriesData.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var isObject$1 = isObject$2; var map = map$1; var CtorInt32Array = typeof Int32Array === "undefined" ? Array : Int32Array; var ID_PREFIX = "e\0\0"; var INDEX_NOT_FOUND = -1; var TRANSFERABLE_PROPERTIES = [ "hasItemOption", "_nameList", "_idList", "_invertedIndicesMap", "_dimSummary", "userOutput", "_rawData", "_dimValueGetter", "_nameDimIdx", "_idDimIdx", "_nameRepeatCount" ]; var CLONE_PROPERTIES = ["_approximateExtent"]; var prepareInvertedIndex; var getId; var getIdNameFromStore; var normalizeDimensions; var transferProperties; var cloneListForMapAndSample; var makeIdFromName; var SeriesData = function() { /** * @param dimensionsInput.dimensions * For example, ['someDimName', {name: 'someDimName', type: 'someDimType'}, ...]. * Dimensions should be concrete names like x, y, z, lng, lat, angle, radius */ function SeriesData(dimensionsInput, hostModel) { this.type = "list"; this._dimOmitted = false; this._nameList = []; this._idList = []; this._visual = {}; this._layout = {}; this._itemVisuals = []; this._itemLayouts = []; this._graphicEls = []; this._approximateExtent = {}; this._calculationInfo = {}; this.hasItemOption = false; this.TRANSFERABLE_METHODS = [ "cloneShallow", "downSample", "minmaxDownSample", "lttbDownSample", "map" ]; this.CHANGABLE_METHODS = ["filterSelf", "selectRange"]; this.DOWNSAMPLE_METHODS = [ "downSample", "minmaxDownSample", "lttbDownSample" ]; var dimensions; var assignStoreDimIdx = false; if (isSeriesDataSchema(dimensionsInput)) { dimensions = dimensionsInput.dimensions; this._dimOmitted = dimensionsInput.isDimensionOmitted(); this._schema = dimensionsInput; } else { assignStoreDimIdx = true; dimensions = dimensionsInput; } dimensions = dimensions || ["x", "y"]; var dimensionInfos = {}; var dimensionNames = []; var invertedIndicesMap = {}; var needsHasOwn = false; var emptyObj = {}; for (var i = 0; i < dimensions.length; i++) { var dimInfoInput = dimensions[i]; var dimensionInfo = isString(dimInfoInput) ? new SeriesDimensionDefine({ name: dimInfoInput }) : !(dimInfoInput instanceof SeriesDimensionDefine) ? new SeriesDimensionDefine(dimInfoInput) : dimInfoInput; var dimensionName = dimensionInfo.name; dimensionInfo.type = dimensionInfo.type || "float"; if (!dimensionInfo.coordDim) { dimensionInfo.coordDim = dimensionName; dimensionInfo.coordDimIndex = 0; } var otherDims = dimensionInfo.otherDims = dimensionInfo.otherDims || {}; dimensionNames.push(dimensionName); dimensionInfos[dimensionName] = dimensionInfo; if (emptyObj[dimensionName] != null) needsHasOwn = true; if (dimensionInfo.createInvertedIndices) invertedIndicesMap[dimensionName] = []; if (assignStoreDimIdx) dimensionInfo.storeDimIndex = i; if (otherDims.itemName === 0) this._nameDimIdx = dimensionInfo.storeDimIndex; if (otherDims.itemId === 0) this._idDimIdx = dimensionInfo.storeDimIndex; } this.dimensions = dimensionNames; this._dimInfos = dimensionInfos; this._initGetDimensionInfo(needsHasOwn); this.hostModel = hostModel; this._invertedIndicesMap = invertedIndicesMap; if (this._dimOmitted) { var dimIdxToName_1 = this._dimIdxToName = createHashMap(); each$4(dimensionNames, function(dimName) { dimIdxToName_1.set(dimensionInfos[dimName].storeDimIndex, dimName); }); } } /** * * Get concrete dimension name by dimension name or dimension index. * If input a dimension name, do not validate whether the dimension name exits. * * @caution * @param dim Must make sure the dimension is `SeriesDimensionLoose`. * Because only those dimensions will have auto-generated dimension names if not * have a user-specified name, and other dimensions will get a return of null/undefined. * * @notice Because of this reason, should better use `getDimensionIndex` instead, for examples: * ```js * const val = data.getStore().get(data.getDimensionIndex(dim), dataIdx); * ``` * * @return Concrete dim name. */ SeriesData.prototype.getDimension = function(dim) { var dimIdx = this._recognizeDimIndex(dim); if (dimIdx == null) return dim; dimIdx = dim; if (!this._dimOmitted) return this.dimensions[dimIdx]; var dimName = this._dimIdxToName.get(dimIdx); if (dimName != null) return dimName; var sourceDimDef = this._schema.getSourceDimension(dimIdx); if (sourceDimDef) return sourceDimDef.name; }; /** * Get dimension index in data store. Return -1 if not found. * Can be used to index value from getRawValue. */ SeriesData.prototype.getDimensionIndex = function(dim) { var dimIdx = this._recognizeDimIndex(dim); if (dimIdx != null) return dimIdx; if (dim == null) return -1; var dimInfo = this._getDimInfo(dim); return dimInfo ? dimInfo.storeDimIndex : this._dimOmitted ? this._schema.getSourceDimensionIndex(dim) : -1; }; /** * The meanings of the input parameter `dim`: * * + If dim is a number (e.g., `1`), it means the index of the dimension. * For example, `getDimension(0)` will return 'x' or 'lng' or 'radius'. * + If dim is a number-like string (e.g., `"1"`): * + If there is the same concrete dim name defined in `series.dimensions` or `dataset.dimensions`, * it means that concrete name. * + If not, it will be converted to a number, which means the index of the dimension. * (why? because of the backward compatibility. We have been tolerating number-like string in * dimension setting, although now it seems that it is not a good idea.) * For example, `visualMap[i].dimension: "1"` is the same meaning as `visualMap[i].dimension: 1`, * if no dimension name is defined as `"1"`. * + If dim is a not-number-like string, it means the concrete dim name. * For example, it can be be default name `"x"`, `"y"`, `"z"`, `"lng"`, `"lat"`, `"angle"`, `"radius"`, * or customized in `dimensions` property of option like `"age"`. * * @return recognized `DimensionIndex`. Otherwise return null/undefined (means that dim is `DimensionName`). */ SeriesData.prototype._recognizeDimIndex = function(dim) { if (isNumber(dim) || dim != null && !isNaN(dim) && !this._getDimInfo(dim) && (!this._dimOmitted || this._schema.getSourceDimensionIndex(dim) < 0)) return +dim; }; SeriesData.prototype._getStoreDimIndex = function(dim) { return this.getDimensionIndex(dim); }; /** * Get type and calculation info of particular dimension * @param dim * Dimension can be concrete names like x, y, z, lng, lat, angle, radius * Or a ordinal number. For example getDimensionInfo(0) will return 'x' or 'lng' or 'radius' */ SeriesData.prototype.getDimensionInfo = function(dim) { return this._getDimInfo(this.getDimension(dim)); }; SeriesData.prototype._initGetDimensionInfo = function(needsHasOwn) { var dimensionInfos = this._dimInfos; this._getDimInfo = needsHasOwn ? function(dimName) { return dimensionInfos.hasOwnProperty(dimName) ? dimensionInfos[dimName] : void 0; } : function(dimName) { return dimensionInfos[dimName]; }; }; /** * concrete dimension name list on coord. */ SeriesData.prototype.getDimensionsOnCoord = function() { return this._dimSummary.dataDimsOnCoord.slice(); }; SeriesData.prototype.mapDimension = function(coordDim, idx) { var dimensionsSummary = this._dimSummary; if (idx == null) return dimensionsSummary.encodeFirstDimNotExtra[coordDim]; var dims = dimensionsSummary.encode[coordDim]; return dims ? dims[idx] : null; }; SeriesData.prototype.mapDimensionsAll = function(coordDim) { return (this._dimSummary.encode[coordDim] || []).slice(); }; SeriesData.prototype.getStore = function() { return this._store; }; /** * Initialize from data * @param data source or data or data store. * @param nameList The name of a datum is used on data diff and * default label/tooltip. * A name can be specified in encode.itemName, * or dataItem.name (only for series option data), * or provided in nameList from outside. */ SeriesData.prototype.initData = function(data, nameList, dimValueGetter) { var _this = this; var store; if (data instanceof DataStore) store = data; if (!store) { var dimensions = this.dimensions; var provider = isSourceInstance(data) || isArrayLike(data) ? new DefaultDataProvider(data, dimensions.length) : data; store = new DataStore(); var dimensionInfos = map(dimensions, function(dimName) { return { type: _this._dimInfos[dimName].type, property: dimName }; }); store.initData(provider, dimensionInfos, dimValueGetter); } this._store = store; this._nameList = (nameList || []).slice(); this._idList = []; this._nameRepeatCount = {}; this._doInit(0, store.count()); this._dimSummary = summarizeDimensions(this, this._schema); this.userOutput = this._dimSummary.userOutput; }; /** * Caution: Can be only called on raw data (before `this._indices` created). */ SeriesData.prototype.appendData = function(data) { var range = this._store.appendData(data); this._doInit(range[0], range[1]); }; /** * Caution: Can be only called on raw data (before `this._indices` created). * This method does not modify `rawData` (`dataProvider`), but only * add values to store. * * The final count will be increased by `Math.max(values.length, names.length)`. * * @param values That is the SourceType: 'arrayRows', like * [ * [12, 33, 44], * [NaN, 43, 1], * ['-', 'asdf', 0] * ] * Each item is exactly corresponding to a dimension. */ SeriesData.prototype.appendValues = function(values, names) { var _a = this._store.appendValues(values, names && names.length), start = _a.start, end = _a.end; var shouldMakeIdFromName = this._shouldMakeIdFromName(); this._updateOrdinalMeta(); if (names) for (var idx = start; idx < end; idx++) { var sourceIdx = idx - start; this._nameList[idx] = names[sourceIdx]; if (shouldMakeIdFromName) makeIdFromName(this, idx); } }; SeriesData.prototype._updateOrdinalMeta = function() { var store = this._store; var dimensions = this.dimensions; for (var i = 0; i < dimensions.length; i++) { var dimInfo = this._dimInfos[dimensions[i]]; if (dimInfo.ordinalMeta) store.collectOrdinalMeta(dimInfo.storeDimIndex, dimInfo.ordinalMeta); } }; SeriesData.prototype._shouldMakeIdFromName = function() { var provider = this._store.getProvider(); return this._idDimIdx == null && provider.getSource().sourceFormat !== "typedArray" && !provider.fillStorage; }; SeriesData.prototype._doInit = function(start, end) { if (start >= end) return; var provider = this._store.getProvider(); this._updateOrdinalMeta(); var nameList = this._nameList; var idList = this._idList; if (provider.getSource().sourceFormat === "original" && !provider.pure) { var sharedDataItem = []; for (var idx = start; idx < end; idx++) { var dataItem = provider.getItem(idx, sharedDataItem); if (!this.hasItemOption && isDataItemOption(dataItem)) this.hasItemOption = true; if (dataItem) { var itemName = dataItem.name; if (nameList[idx] == null && itemName != null) nameList[idx] = convertOptionIdName(itemName, null); var itemId = dataItem.id; if (idList[idx] == null && itemId != null) idList[idx] = convertOptionIdName(itemId, null); } } } if (this._shouldMakeIdFromName()) for (var idx = start; idx < end; idx++) makeIdFromName(this, idx); prepareInvertedIndex(this); }; /** * Optimize for the scenario that data is filtered by a given extent. * Consider that if data amount is more than hundreds of thousand, * extent calculation will cost more than 10ms and the cache will * be erased because of the filtering. */ SeriesData.prototype.getApproximateExtent = function(dim, filter) { return this._approximateExtent[dim] || this._store.getDataExtent(this._getStoreDimIndex(dim), filter); }; /** * NOTICE: `_approximateExtent` does not support filter. Callers must ensure the input extent * to be handled by `scale.sanitizeExtent`. * * Calculate extent on a filtered data might be time consuming. * Approximate extent is only used for: calculate extent of filtered data outside. */ SeriesData.prototype.setApproximateExtent = function(extent, dim) { dim = this.getDimension(dim); this._approximateExtent[dim] = extent.slice(); }; SeriesData.prototype.getCalculationInfo = function(key) { return this._calculationInfo[key]; }; SeriesData.prototype.setCalculationInfo = function(key, value) { isObject$1(key) ? extend(this._calculationInfo, key) : this._calculationInfo[key] = value; }; /** * @return Never be null/undefined. `number` will be converted to string. Because: * In most cases, name is used in display, where returning a string is more convenient. * In other cases, name is used in query (see `indexOfName`), where we can keep the * rule that name `2` equals to name `'2'`. */ SeriesData.prototype.getName = function(idx) { var rawIndex = this.getRawIndex(idx); var name = this._nameList[rawIndex]; if (name == null && this._nameDimIdx != null) name = getIdNameFromStore(this, this._nameDimIdx, rawIndex); if (name == null) name = ""; return name; }; SeriesData.prototype._getCategory = function(dimIdx, idx) { var ordinal = this._store.get(dimIdx, idx); var ordinalMeta = this._store.getOrdinalMeta(dimIdx); if (ordinalMeta) return ordinalMeta.categories[ordinal]; return ordinal; }; /** * @return Never null/undefined. `number` will be converted to string. Because: * In all cases having encountered at present, id is used in making diff comparison, which * are usually based on hash map. We can keep the rule that the internal id are always string * (treat `2` is the same as `'2'`) to make the related logic simple. */ SeriesData.prototype.getId = function(idx) { return getId(this, this.getRawIndex(idx)); }; SeriesData.prototype.count = function() { return this._store.count(); }; /** * Get value. Return NaN if idx is out of range. * * @notice Should better to use `data.getStore().get(dimIndex, dataIdx)` instead. */ SeriesData.prototype.get = function(dim, idx) { var store = this._store; var dimInfo = this._dimInfos[dim]; if (dimInfo) return store.get(dimInfo.storeDimIndex, idx); }; /** * @notice Should better to use `data.getStore().getByRawIndex(dimIndex, dataIdx)` instead. */ SeriesData.prototype.getByRawIndex = function(dim, rawIdx) { var store = this._store; var dimInfo = this._dimInfos[dim]; if (dimInfo) return store.getByRawIndex(dimInfo.storeDimIndex, rawIdx); }; SeriesData.prototype.getIndices = function() { return this._store.getIndices(); }; SeriesData.prototype.getDataExtent = function(dim) { return this._store.getDataExtent(this._getStoreDimIndex(dim), null); }; SeriesData.prototype.getSum = function(dim) { return this._store.getSum(this._getStoreDimIndex(dim)); }; SeriesData.prototype.getMedian = function(dim) { return this._store.getMedian(this._getStoreDimIndex(dim)); }; SeriesData.prototype.getValues = function(dimensions, idx) { var _this = this; var store = this._store; return isArray(dimensions) ? store.getValues(map(dimensions, function(dim) { return _this._getStoreDimIndex(dim); }), idx) : store.getValues(dimensions); }; /** * If value is NaN. Including '-' * Only check the coord dimensions. */ SeriesData.prototype.hasValue = function(idx) { var dataDimIndicesOnCoord = this._dimSummary.dataDimIndicesOnCoord; for (var i = 0, len = dataDimIndicesOnCoord.length; i < len; i++) if (isNaN(this._store.get(dataDimIndicesOnCoord[i], idx))) return false; return true; }; /** * Retrieve the index with given name */ SeriesData.prototype.indexOfName = function(name) { for (var i = 0, len = this._store.count(); i < len; i++) if (this.getName(i) === name) return i; return -1; }; SeriesData.prototype.getRawIndex = function(idx) { return this._store.getRawIndex(idx); }; SeriesData.prototype.indexOfRawIndex = function(rawIndex) { return this._store.indexOfRawIndex(rawIndex); }; /** * Only support the dimension which inverted index created. * Do not support other cases until required. * @param dim concrete dim * @param value ordinal index * @return rawIndex */ SeriesData.prototype.rawIndexOf = function(dim, value) { var invertedIndices = dim && this._invertedIndicesMap[dim]; var rawIndex = invertedIndices && invertedIndices[value]; if (rawIndex == null || isNaN(rawIndex)) return INDEX_NOT_FOUND; return rawIndex; }; SeriesData.prototype.each = function(dims, cb, ctx) { "use strict"; if (isFunction(dims)) { ctx = cb; cb = dims; dims = []; } var fCtx = ctx || this; var dimIndices = map(normalizeDimensions(dims), this._getStoreDimIndex, this); this._store.each(dimIndices, fCtx ? bind$1(cb, fCtx) : cb); }; SeriesData.prototype.filterSelf = function(dims, cb, ctx) { "use strict"; if (isFunction(dims)) { ctx = cb; cb = dims; dims = []; } var fCtx = ctx || this; var dimIndices = map(normalizeDimensions(dims), this._getStoreDimIndex, this); this._store = this._store.filter(dimIndices, fCtx ? bind$1(cb, fCtx) : cb); return this; }; /** * Select data in range. (For optimization of filter) * (Manually inline code, support 5 million data filtering in data zoom.) */ SeriesData.prototype.selectRange = function(range) { "use strict"; var _this = this; var innerRange = {}; var dims = keys(range); var dimIndices = []; each$4(dims, function(dim) { var dimIdx = _this._getStoreDimIndex(dim); innerRange[dimIdx] = range[dim]; dimIndices.push(dimIdx); }); this._store = this._store.selectRange(innerRange); return this; }; SeriesData.prototype.mapArray = function(dims, cb, ctx) { "use strict"; if (isFunction(dims)) { ctx = cb; cb = dims; dims = []; } ctx = ctx || this; var result = []; this.each(dims, function() { result.push(cb && cb.apply(this, arguments)); }, ctx); return result; }; SeriesData.prototype.map = function(dims, cb, ctx, ctxCompat) { "use strict"; var fCtx = ctx || ctxCompat || this; var dimIndices = map(normalizeDimensions(dims), this._getStoreDimIndex, this); var list = cloneListForMapAndSample(this); list._store = this._store.map(dimIndices, fCtx ? bind$1(cb, fCtx) : cb); return list; }; SeriesData.prototype.modify = function(dims, cb, ctx, ctxCompat) { var fCtx = ctx || ctxCompat || this; var dimIndices = map(normalizeDimensions(dims), this._getStoreDimIndex, this); this._store.modify(dimIndices, fCtx ? bind$1(cb, fCtx) : cb); }; /** * Large data down sampling on given dimension * @param sampleIndex Sample index for name and id */ SeriesData.prototype.downSample = function(dimension, rate, sampleValue, sampleIndex) { var list = cloneListForMapAndSample(this); list._store = this._store.downSample(this._getStoreDimIndex(dimension), rate, sampleValue, sampleIndex); return list; }; /** * Large data down sampling using min-max * @param {string} valueDimension * @param {number} rate */ SeriesData.prototype.minmaxDownSample = function(valueDimension, rate) { var list = cloneListForMapAndSample(this); list._store = this._store.minmaxDownSample(this._getStoreDimIndex(valueDimension), rate); return list; }; /** * Large data down sampling using largest-triangle-three-buckets * @param {string} valueDimension * @param {number} targetCount */ SeriesData.prototype.lttbDownSample = function(valueDimension, rate) { var list = cloneListForMapAndSample(this); list._store = this._store.lttbDownSample(this._getStoreDimIndex(valueDimension), rate); return list; }; SeriesData.prototype.getRawDataItem = function(idx) { return this._store.getRawDataItem(idx); }; /** * Get model of one data item. */ SeriesData.prototype.getItemModel = function(idx) { var hostModel = this.hostModel; return new Model(this.getRawDataItem(idx), hostModel, hostModel && hostModel.ecModel); }; /** * Create a data differ */ SeriesData.prototype.diff = function(otherList) { var thisList = this; return new DataDiffer(otherList ? otherList.getStore().getIndices() : [], this.getStore().getIndices(), function(idx) { return getId(otherList, idx); }, function(idx) { return getId(thisList, idx); }); }; /** * Get visual property. */ SeriesData.prototype.getVisual = function(key) { var visual = this._visual; return visual && visual[key]; }; SeriesData.prototype.setVisual = function(kvObj, val) { this._visual = this._visual || {}; if (isObject$1(kvObj)) extend(this._visual, kvObj); else this._visual[kvObj] = val; }; /** * Get visual property of single data item */ SeriesData.prototype.getItemVisual = function(idx, key) { var itemVisual = this._itemVisuals[idx]; var val = itemVisual && itemVisual[key]; if (val == null) return this.getVisual(key); return val; }; /** * If exists visual property of single data item */ SeriesData.prototype.hasItemVisual = function() { return this._itemVisuals.length > 0; }; /** * Make sure itemVisual property is unique */ SeriesData.prototype.ensureUniqueItemVisual = function(idx, key) { var itemVisuals = this._itemVisuals; var itemVisual = itemVisuals[idx]; if (!itemVisual) itemVisual = itemVisuals[idx] = {}; var val = itemVisual[key]; if (val == null) { val = this.getVisual(key); if (isArray(val)) val = val.slice(); else if (isObject$1(val)) val = extend({}, val); itemVisual[key] = val; } return val; }; SeriesData.prototype.setItemVisual = function(idx, key, value) { var itemVisual = this._itemVisuals[idx] || {}; this._itemVisuals[idx] = itemVisual; if (isObject$1(key)) extend(itemVisual, key); else itemVisual[key] = value; }; /** * Clear itemVisuals and list visual. */ SeriesData.prototype.clearAllVisual = function() { this._visual = {}; this._itemVisuals = []; }; SeriesData.prototype.setLayout = function(key, val) { isObject$1(key) ? extend(this._layout, key) : this._layout[key] = val; }; /** * Get layout property. */ SeriesData.prototype.getLayout = function(key) { return this._layout[key]; }; /** * Get layout of single data item */ SeriesData.prototype.getItemLayout = function(idx) { return this._itemLayouts[idx]; }; /** * Set layout of single data item */ SeriesData.prototype.setItemLayout = function(idx, layout, merge) { this._itemLayouts[idx] = merge ? extend(this._itemLayouts[idx] || {}, layout) : layout; }; /** * Clear all layout of single data item */ SeriesData.prototype.clearItemLayouts = function() { this._itemLayouts.length = 0; }; /** * Set graphic element relative to data. It can be set as null */ SeriesData.prototype.setItemGraphicEl = function(idx, el) { setCommonECData(this.hostModel && this.hostModel.seriesIndex, this.dataType, idx, el); this._graphicEls[idx] = el; }; SeriesData.prototype.getItemGraphicEl = function(idx) { return this._graphicEls[idx]; }; SeriesData.prototype.eachItemGraphicEl = function(cb, context) { each$4(this._graphicEls, function(el, idx) { if (el) cb && cb.call(context, el, idx); }); }; /** * Shallow clone a new list except visual and layout properties, and graph elements. * New list only change the indices. */ SeriesData.prototype.cloneShallow = function(list) { if (!list) list = new SeriesData(this._schema ? this._schema : map(this.dimensions, this._getDimInfo, this), this.hostModel); transferProperties(list, this); list._store = this._store; return list; }; /** * Wrap some method to add more feature */ SeriesData.prototype.wrapMethod = function(methodName, injectFunction) { var originalMethod = this[methodName]; if (!isFunction(originalMethod)) return; this.__wrappedMethods = this.__wrappedMethods || []; this.__wrappedMethods.push(methodName); this[methodName] = function() { var res = originalMethod.apply(this, arguments); return injectFunction.apply(this, [res].concat(slice(arguments))); }; }; SeriesData.internalField = function() { prepareInvertedIndex = function(data) { var invertedIndicesMap = data._invertedIndicesMap; each$4(invertedIndicesMap, function(invertedIndices, dim) { var dimInfo = data._dimInfos[dim]; var ordinalMeta = dimInfo.ordinalMeta; var store = data._store; if (ordinalMeta) { invertedIndices = invertedIndicesMap[dim] = new CtorInt32Array(ordinalMeta.categories.length); for (var i = 0; i < invertedIndices.length; i++) invertedIndices[i] = INDEX_NOT_FOUND; for (var i = 0; i < store.count(); i++) invertedIndices[store.get(dimInfo.storeDimIndex, i)] = i; } }); }; getIdNameFromStore = function(data, dimIdx, idx) { return convertOptionIdName(data._getCategory(dimIdx, idx), null); }; /** * @see the comment of `List['getId']`. */ getId = function(data, rawIndex) { var id = data._idList[rawIndex]; if (id == null && data._idDimIdx != null) id = getIdNameFromStore(data, data._idDimIdx, rawIndex); if (id == null) id = ID_PREFIX + rawIndex; return id; }; normalizeDimensions = function(dimensions) { if (!isArray(dimensions)) dimensions = dimensions != null ? [dimensions] : []; return dimensions; }; /** * Data in excludeDimensions is copied, otherwise transferred. */ cloneListForMapAndSample = function(original) { var list = new SeriesData(original._schema ? original._schema : map(original.dimensions, original._getDimInfo, original), original.hostModel); transferProperties(list, original); return list; }; transferProperties = function(target, source) { each$4(TRANSFERABLE_PROPERTIES.concat(source.__wrappedMethods || []), function(propName) { if (source.hasOwnProperty(propName)) target[propName] = source[propName]; }); target.__wrappedMethods = source.__wrappedMethods; each$4(CLONE_PROPERTIES, function(propName) { target[propName] = clone$2(source[propName]); }); target._calculationInfo = extend({}, source._calculationInfo); }; makeIdFromName = function(data, idx) { var nameList = data._nameList; var idList = data._idList; var nameDimIdx = data._nameDimIdx; var idDimIdx = data._idDimIdx; var name = nameList[idx]; var id = idList[idx]; if (name == null && nameDimIdx != null) nameList[idx] = name = getIdNameFromStore(data, nameDimIdx, idx); if (id == null && idDimIdx != null) idList[idx] = id = getIdNameFromStore(data, idDimIdx, idx); if (id == null && name != null) { var nameRepeatCount = data._nameRepeatCount; var nmCnt = nameRepeatCount[name] = (nameRepeatCount[name] || 0) + 1; id = name; if (nmCnt > 1) id += "__ec__" + nmCnt; idList[idx] = id; } }; }(); return SeriesData; }(); //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/data/helper/createDimensions.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ /** * This method builds the relationship between: * + "what the coord sys or series requires (see `coordDimensions`)", * + "what the user defines (in `encode` and `dimensions`, see `opt.dimensionsDefine` and `opt.encodeDefine`)" * + "what the data source provids (see `source`)". * * Some guess strategy will be adapted if user does not define something. * If no 'value' dimension specified, the first no-named dimension will be * named as 'value'. * * @return The results are always sorted by `storeDimIndex` asc. */ function prepareSeriesDataSchema(source, opt) { if (!isSourceInstance(source)) source = createSourceFromSeriesDataOption(source); opt = opt || {}; var sysDims = opt.coordDimensions || []; var dimsDef = opt.dimensionsDefine || source.dimensionsDefine || []; var coordDimNameMap = createHashMap(); var resultList = []; var dimCount = getDimCount(source, sysDims, dimsDef, opt.dimensionsCount); var omitUnusedDimensions = opt.canOmitUnusedDimensions && shouldOmitUnusedDimensions(dimCount); var isUsingSourceDimensionsDef = dimsDef === source.dimensionsDefine; var dataDimNameMap = isUsingSourceDimensionsDef ? ensureSourceDimNameMap(source) : createDimNameMap(dimsDef); var encodeDef = opt.encodeDefine; if (!encodeDef && opt.encodeDefaulter) encodeDef = opt.encodeDefaulter(source, dimCount); var encodeDefMap = createHashMap(encodeDef); var indicesMap = new CtorInt32Array$1(dimCount); for (var i = 0; i < indicesMap.length; i++) indicesMap[i] = -1; function getResultItem(dimIdx) { var idx = indicesMap[dimIdx]; if (idx < 0) { var dimDefItemRaw = dimsDef[dimIdx]; var dimDefItem = isObject$2(dimDefItemRaw) ? dimDefItemRaw : { name: dimDefItemRaw }; var resultItem = new SeriesDimensionDefine(); var userDimName = dimDefItem.name; if (userDimName != null && dataDimNameMap.get(userDimName) != null) resultItem.name = resultItem.displayName = userDimName; dimDefItem.type != null && (resultItem.type = dimDefItem.type); dimDefItem.displayName != null && (resultItem.displayName = dimDefItem.displayName); indicesMap[dimIdx] = resultList.length; resultItem.storeDimIndex = dimIdx; resultList.push(resultItem); return resultItem; } return resultList[idx]; } if (!omitUnusedDimensions) for (var i = 0; i < dimCount; i++) getResultItem(i); encodeDefMap.each(function(dataDimsRaw, coordDim) { var dataDims = normalizeToArray(dataDimsRaw).slice(); if (dataDims.length === 1 && !isString(dataDims[0]) && dataDims[0] < 0) { encodeDefMap.set(coordDim, false); return; } var validDataDims = encodeDefMap.set(coordDim, []); each$4(dataDims, function(resultDimIdxOrName, idx) { var resultDimIdx = isString(resultDimIdxOrName) ? dataDimNameMap.get(resultDimIdxOrName) : resultDimIdxOrName; if (resultDimIdx != null && resultDimIdx < dimCount) { validDataDims[idx] = resultDimIdx; applyDim(getResultItem(resultDimIdx), coordDim, idx); } }); }); var availDimIdx = 0; each$4(sysDims, function(sysDimItemRaw) { var coordDim; var sysDimItemDimsDef; var sysDimItemOtherDims; var sysDimItem; if (isString(sysDimItemRaw)) { coordDim = sysDimItemRaw; sysDimItem = {}; } else { sysDimItem = sysDimItemRaw; coordDim = sysDimItem.name; var ordinalMeta = sysDimItem.ordinalMeta; sysDimItem.ordinalMeta = null; sysDimItem = extend({}, sysDimItem); sysDimItem.ordinalMeta = ordinalMeta; sysDimItemDimsDef = sysDimItem.dimsDef; sysDimItemOtherDims = sysDimItem.otherDims; sysDimItem.name = sysDimItem.coordDim = sysDimItem.coordDimIndex = sysDimItem.dimsDef = sysDimItem.otherDims = null; } var dataDims = encodeDefMap.get(coordDim); if (dataDims === false) return; dataDims = normalizeToArray(dataDims); if (!dataDims.length) for (var i = 0; i < (sysDimItemDimsDef && sysDimItemDimsDef.length || 1); i++) { while (availDimIdx < dimCount && getResultItem(availDimIdx).coordDim != null) availDimIdx++; availDimIdx < dimCount && dataDims.push(availDimIdx++); } each$4(dataDims, function(resultDimIdx, coordDimIndex) { var resultItem = getResultItem(resultDimIdx); if (isUsingSourceDimensionsDef && sysDimItem.type != null) resultItem.type = sysDimItem.type; applyDim(defaults(resultItem, sysDimItem), coordDim, coordDimIndex); if (resultItem.name == null && sysDimItemDimsDef) { var sysDimItemDimsDefItem = sysDimItemDimsDef[coordDimIndex]; !isObject$2(sysDimItemDimsDefItem) && (sysDimItemDimsDefItem = { name: sysDimItemDimsDefItem }); resultItem.name = resultItem.displayName = sysDimItemDimsDefItem.name; resultItem.defaultTooltip = sysDimItemDimsDefItem.defaultTooltip; } sysDimItemOtherDims && defaults(resultItem.otherDims, sysDimItemOtherDims); }); }); function applyDim(resultItem, coordDim, coordDimIndex) { if (VISUAL_DIMENSIONS.get(coordDim) != null) resultItem.otherDims[coordDim] = coordDimIndex; else { resultItem.coordDim = coordDim; resultItem.coordDimIndex = coordDimIndex; coordDimNameMap.set(coordDim, true); } } var generateCoord = opt.generateCoord; var generateCoordCount = opt.generateCoordCount; var fromZero = generateCoordCount != null; generateCoordCount = generateCoord ? generateCoordCount || 1 : 0; var extra = generateCoord || "value"; function ifNoNameFillWithCoordName(resultItem) { if (resultItem.name == null) resultItem.name = resultItem.coordDim; } if (!omitUnusedDimensions) for (var resultDimIdx = 0; resultDimIdx < dimCount; resultDimIdx++) { var resultItem = getResultItem(resultDimIdx); if (resultItem.coordDim == null) { resultItem.coordDim = genCoordDimName(extra, coordDimNameMap, fromZero); resultItem.coordDimIndex = 0; if (!generateCoord || generateCoordCount <= 0) resultItem.isExtraCoord = true; generateCoordCount--; } ifNoNameFillWithCoordName(resultItem); if (resultItem.type == null && (guessOrdinal(source, resultDimIdx) === BE_ORDINAL.Must || resultItem.isExtraCoord && (resultItem.otherDims.itemName != null || resultItem.otherDims.seriesName != null))) resultItem.type = "ordinal"; } else { each$4(resultList, function(resultItem) { ifNoNameFillWithCoordName(resultItem); }); resultList.sort(function(item0, item1) { return item0.storeDimIndex - item1.storeDimIndex; }); } removeDuplicates(resultList, function(item) { return item.name; }, function(item, existingCount) { if (existingCount > 0) item.name = item.name + (existingCount - 1); }); return new SeriesDataSchema({ source, dimensions: resultList, fullDimensionCount: dimCount, dimensionOmitted: omitUnusedDimensions }); } function getDimCount(source, sysDims, dimsDef, optDimCount) { var dimCount = Math.max(source.dimensionsDetectedCount || 1, sysDims.length, dimsDef.length, optDimCount || 0); each$4(sysDims, function(sysDimItem) { var sysDimItemDimsDef; if (isObject$2(sysDimItem) && (sysDimItemDimsDef = sysDimItem.dimsDef)) dimCount = Math.max(dimCount, sysDimItemDimsDef.length); }); return dimCount; } function genCoordDimName(name, map, fromZero) { if (fromZero || map.hasKey(name)) { var i = 0; while (map.hasKey(name + i)) i++; name += i; } map.set(name, true); return name; } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/core/CoordinateSystem.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ /** * FIXME: * `nonSeriesBoxCoordSysCreators` and `_nonSeriesBoxMasterList` are hardcoded implementations. * Regarding "coord sys layout based on another coord sys", currently we only experimentally support one level * dependency, such as, "grid(cartesian)s can be laid out based on matrix/calendar coord sys." * But a comprehensive implementation may need to support: * - Recursive dependencies. e.g., a matrix coord sys lays out based on another matrix coord sys. * That requires in the implementation `create` and `update` of coord sys are called by a dependency graph. * (@see enableTopologicalTravel in `util/component.ts`) */ var nonSeriesBoxCoordSysCreators = {}; var normalCoordSysCreators = {}; var CoordinateSystemManager = function() { function CoordinateSystemManager() { this._normalMasterList = []; this._nonSeriesBoxMasterList = []; } /** * Typically, * - in `create`, a coord sys lays out based on a given rect; * - in `update`, update the pixel and data extent of there axes (if any) based on processed `series.data`. * After that, a coord sys can serve (typically by `dataToPoint`/`dataToLayout`/`pointToData`). * If the coordinate system do not lay out based on `series.data`, `update` is not needed. */ CoordinateSystemManager.prototype.create = function(ecModel, api) { this._nonSeriesBoxMasterList = dealCreate(nonSeriesBoxCoordSysCreators, true); this._normalMasterList = dealCreate(normalCoordSysCreators, false); function dealCreate(creatorMap, canBeNonSeriesBox) { var coordinateSystems = []; each$4(creatorMap, function(creator, type) { var list = creator.create(ecModel, api); coordinateSystems = coordinateSystems.concat(list || []); }); return coordinateSystems; } }; /** * @see CoordinateSystem['create'] */ CoordinateSystemManager.prototype.update = function(ecModel, api) { each$4(this._normalMasterList, function(coordSys) { coordSys.update && coordSys.update(ecModel, api); }); }; CoordinateSystemManager.prototype.getCoordinateSystems = function() { return this._normalMasterList.concat(this._nonSeriesBoxMasterList); }; CoordinateSystemManager.register = function(type, creator) { if (type === "matrix" || type === "calendar") { nonSeriesBoxCoordSysCreators[type] = creator; return; } normalCoordSysCreators[type] = creator; }; CoordinateSystemManager.get = function(type) { return normalCoordSysCreators[type] || nonSeriesBoxCoordSysCreators[type]; }; return CoordinateSystemManager; }(); function canBeNonSeriesBoxCoordSys(coordSysType) { return !!nonSeriesBoxCoordSysCreators[coordSysType]; } var coordSysUseMap = createHashMap(); /** * @return Be an object, but never be NullUndefined. */ function getCoordForCoordSysUsageKindBox(model) { var coord = model.getShallow("coord", true); var from = 1; if (coord == null) { var store = coordSysUseMap.get(model.type); if (store && store.getCoord2) { from = 2; coord = store.getCoord2(model); } } return { coord, from }; } function decideCoordSysUsageKind(model, printError) { var coordSysType = model.getShallow("coordinateSystem"); var coordSysUsageOption = model.getShallow("coordinateSystemUsage", true); var kind = 0; if (coordSysType) { var isSeries = model.mainType === "series"; if (coordSysUsageOption == null) coordSysUsageOption = isSeries ? "data" : "box"; if (coordSysUsageOption === "data") { kind = 1; if (!isSeries) kind = 0; } else if (coordSysUsageOption === "box") { kind = 2; if (!isSeries && !canBeNonSeriesBoxCoordSys(coordSysType)) kind = 0; } } return { coordSysType, kind }; } /** * These cases are considered: * (A) Most series can use only "COORD_SYS_USAGE_KIND_DATA", but "COORD_SYS_USAGE_KIND_BOX" is not applicable: * - e.g., series.heatmap, series.line, series.bar, series.scatter, ... * (B) Some series and most components can use only "COORD_SYS_USAGE_KIND_BOX", but "COORD_SYS_USAGE_KIND_DATA" * is not applicable: * - e.g., series.pie, series.funnel, ... * - e.g., grid, polar, geo, title, ... * (C) Several series can use both "COORD_SYS_USAGE_KIND_BOX" and "COORD_SYS_USAGE_KIND_DATA", even at the same time: * - e.g., series.graph, series.map * - If graph or map series use "COORD_SYS_USAGE_KIND_BOX", it creates a internal coord sys as * "COORD_SYS_USAGE_KIND_DATA" to lay out its data. * - Graph series can use matrix coord sys as either the "COORD_SYS_USAGE_KIND_DATA" (each item layout * on one cell) or "COORD_SYS_USAGE_KIND_BOX" (the entire series are layout within one cell). * - To achieve this effect, * `series.coordinateSystemUsage: 'box'` needs to be specified explicitly. * * Check these echarts option settings: * - If `series: {type: 'bar'}`: * COORD_SYS_USAGE_KIND_DATA: "cartesian2d", * COORD_SYS_USAGE_KIND_BOX: "none". * (since `coordinateSystem: 'cartesian2d'` is the default option in bar.) * - If `grid: {coordinateSystem: 'matrix'}` * COORD_SYS_USAGE_KIND_DATA: "none", * COORD_SYS_USAGE_KIND_BOX: "matrix". * - If `series: {type: 'pie', coordinateSystem: 'matrix'}`: * COORD_SYS_USAGE_KIND_DATA: "none", * COORD_SYS_USAGE_KIND_BOX: "matrix". * (since `coordinateSystemUsage: 'box'` is the default option in pie.) * - If `series: {type: 'graph', coordinateSystem: 'matrix'}`: * COORD_SYS_USAGE_KIND_DATA: "matrix", * COORD_SYS_USAGE_KIND_BOX: "none" * - If `series: {type: 'graph', coordinateSystem: 'matrix', coordinateSystemUsage: 'box'}`: * COORD_SYS_USAGE_KIND_DATA: "an internal view", * COORD_SYS_USAGE_KIND_BOX: "the internal view is laid out on a matrix" * - If `series: {type: 'map'}`: * COORD_SYS_USAGE_KIND_DATA: "a internal geo", * COORD_SYS_USAGE_KIND_BOX: "none" * - If `series: {type: 'map', coordinateSystem: 'geo', geoIndex: 0}`: * COORD_SYS_USAGE_KIND_DATA: "a geo", * COORD_SYS_USAGE_KIND_BOX: "none" * - If `series: {type: 'map', coordinateSystem: 'matrix'}`: * not_applicable * - If `series: {type: 'map', coordinateSystem: 'matrix', coordinateSystemUsage: 'box'}`: * COORD_SYS_USAGE_KIND_DATA: "an internal geo", * COORD_SYS_USAGE_KIND_BOX: "the internal geo is laid out on a matrix" * * @usage * For case (A) & (B), * call `injectCoordSysByOption({coordSysType: 'aaa', ...})` once for each series/components. * For case (C), * call `injectCoordSysByOption({coordSysType: 'aaa', ...})` once for each series/components, * and then call `injectCoordSysByOption({coordSysType: 'bbb', ..., isDefaultDataCoordSys: true})` * once for each series/components. */ function injectCoordSysByOption(opt) { var targetModel = opt.targetModel, coordSysType = opt.coordSysType, coordSysProvider = opt.coordSysProvider, isDefaultDataCoordSys = opt.isDefaultDataCoordSys; opt.allowNotFound; var _a = decideCoordSysUsageKind(targetModel, true), kind = _a.kind, declaredType = _a.coordSysType; if (isDefaultDataCoordSys && kind !== 1) { kind = 1; declaredType = coordSysType; } if (kind === 0 || declaredType !== coordSysType) return 0; var coordSys = coordSysProvider(coordSysType, targetModel); if (!coordSys) return 0; if (kind === 1) targetModel.coordinateSystem = coordSys; else targetModel.boxCoordinateSystem = coordSys; return kind; } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/model/referHelper.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ /** * Helper for model references. * There are many manners to refer axis/coordSys. */ /** * @class * For example: * { * coordSysName: 'cartesian2d', * coordSysDims: ['x', 'y', ...], * axisMap: HashMap({ * x: xAxisModel, * y: yAxisModel * }), * categoryAxisMap: HashMap({ * x: xAxisModel, * y: undefined * }), * // The index of the first category axis in `coordSysDims`. * // `null/undefined` means no category axis exists. * firstCategoryDimIndex: 1, * // To replace user specified encode. * } */ var SeriesModelCoordSysInfo = function() { function SeriesModelCoordSysInfo(coordSysName) { this.coordSysDims = []; this.axisMap = createHashMap(); this.categoryAxisMap = createHashMap(); this.coordSysName = coordSysName; } return SeriesModelCoordSysInfo; }(); function getCoordSysInfoBySeries(seriesModel) { var coordSysName = seriesModel.get("coordinateSystem"); var result = new SeriesModelCoordSysInfo(coordSysName); var fetch = fetchers[coordSysName]; if (fetch) { fetch(seriesModel, result, result.axisMap, result.categoryAxisMap); return result; } } var fetchers = { cartesian2d: function(seriesModel, result, axisMap, categoryAxisMap) { var xAxisModel = seriesModel.getReferringComponents("xAxis", SINGLE_REFERRING).models[0]; var yAxisModel = seriesModel.getReferringComponents("yAxis", SINGLE_REFERRING).models[0]; result.coordSysDims = ["x", "y"]; axisMap.set("x", xAxisModel); axisMap.set("y", yAxisModel); if (isCategory(xAxisModel)) { categoryAxisMap.set("x", xAxisModel); result.firstCategoryDimIndex = 0; } if (isCategory(yAxisModel)) { categoryAxisMap.set("y", yAxisModel); result.firstCategoryDimIndex ??= 1; } }, singleAxis: function(seriesModel, result, axisMap, categoryAxisMap) { var singleAxisModel = seriesModel.getReferringComponents("singleAxis", SINGLE_REFERRING).models[0]; result.coordSysDims = ["single"]; axisMap.set("single", singleAxisModel); if (isCategory(singleAxisModel)) { categoryAxisMap.set("single", singleAxisModel); result.firstCategoryDimIndex = 0; } }, polar: function(seriesModel, result, axisMap, categoryAxisMap) { var polarModel = seriesModel.getReferringComponents("polar", SINGLE_REFERRING).models[0]; var radiusAxisModel = polarModel.findAxisModel("radiusAxis"); var angleAxisModel = polarModel.findAxisModel("angleAxis"); result.coordSysDims = ["radius", "angle"]; axisMap.set("radius", radiusAxisModel); axisMap.set("angle", angleAxisModel); if (isCategory(radiusAxisModel)) { categoryAxisMap.set("radius", radiusAxisModel); result.firstCategoryDimIndex = 0; } if (isCategory(angleAxisModel)) { categoryAxisMap.set("angle", angleAxisModel); result.firstCategoryDimIndex ??= 1; } }, geo: function(seriesModel, result, axisMap, categoryAxisMap) { result.coordSysDims = ["lng", "lat"]; }, parallel: function(seriesModel, result, axisMap, categoryAxisMap) { var ecModel = seriesModel.ecModel; var parallelModel = ecModel.getComponent("parallel", seriesModel.get("parallelIndex")); var coordSysDims = result.coordSysDims = parallelModel.dimensions.slice(); each$4(parallelModel.parallelAxisIndex, function(axisIndex, index) { var axisModel = ecModel.getComponent("parallelAxis", axisIndex); var axisDim = coordSysDims[index]; axisMap.set(axisDim, axisModel); if (isCategory(axisModel)) { categoryAxisMap.set(axisDim, axisModel); if (result.firstCategoryDimIndex == null) result.firstCategoryDimIndex = index; } }); }, matrix: function(seriesModel, result, axisMap, categoryAxisMap) { var matrixModel = seriesModel.getReferringComponents("matrix", SINGLE_REFERRING).models[0]; result.coordSysDims = ["x", "y"]; var xModel = matrixModel.getDimensionModel("x"); var yModel = matrixModel.getDimensionModel("y"); axisMap.set("x", xModel); axisMap.set("y", yModel); categoryAxisMap.set("x", xModel); categoryAxisMap.set("y", yModel); } }; function isCategory(axisModel) { return axisModel.get("type") === "category"; } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/data/helper/dataStackHelper.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ /** * Note that it is too complicated to support 3d stack by value * (have to create two-dimension inverted index), so in 3d case * we just support that stacked by index. * * Stack is calculated in `src/processor/dataStack.ts`. * * @param seriesModel * @param dimensionsInput The same as the input of . * The input will be modified. * @param opt * @param opt.stackedCoordDimension Specify a coord dimension if needed. * @param opt.byIndex=false * @return calculationInfo * { * stackedDimension: string * stackedByDimension: string * isStackedByIndex: boolean * stackedOverDimension: string * stackResultDimension: string * } */ function enableDataStack(seriesModel, dimensionsInput, opt) { opt = opt || {}; var byIndex = opt.byIndex; var stackedCoordDimension = opt.stackedCoordDimension; var dimensionDefineList; var schema; var store; if (isLegacyDimensionsInput(dimensionsInput)) dimensionDefineList = dimensionsInput; else { schema = dimensionsInput.schema; dimensionDefineList = schema.dimensions; store = dimensionsInput.store; } var mayStack = !!(seriesModel && seriesModel.get("stack")); var stackedByDimInfo; var stackedDimInfo; var stackResultDimension; var stackedOverDimension; var allDimTypesAreNotOrdinalAndTime = true; function dimTypeIsNotOrdinalAndTime(dimensionInfo) { return dimensionInfo.type !== "ordinal" && dimensionInfo.type !== "time"; } each$4(dimensionDefineList, function(dimensionInfo, index) { if (isString(dimensionInfo)) dimensionDefineList[index] = dimensionInfo = { name: dimensionInfo }; if (!dimTypeIsNotOrdinalAndTime(dimensionInfo)) allDimTypesAreNotOrdinalAndTime = false; }); each$4(dimensionDefineList, function(dimensionInfo, index) { if (mayStack && !dimensionInfo.isExtraCoord) { if (!byIndex && !stackedByDimInfo && dimensionInfo.ordinalMeta) stackedByDimInfo = dimensionInfo; if (!stackedDimInfo && dimTypeIsNotOrdinalAndTime(dimensionInfo) && (!allDimTypesAreNotOrdinalAndTime || dimensionInfo.coordDim !== "x" && dimensionInfo.coordDim !== "angle") && (!stackedCoordDimension || stackedCoordDimension === dimensionInfo.coordDim)) stackedDimInfo = dimensionInfo; } }); if (stackedDimInfo && !byIndex && !stackedByDimInfo) byIndex = true; if (stackedDimInfo) { stackResultDimension = "__\0ecstackresult_" + seriesModel.id; stackedOverDimension = "__\0ecstackedover_" + seriesModel.id; if (stackedByDimInfo) stackedByDimInfo.createInvertedIndices = true; var stackedDimCoordDim_1 = stackedDimInfo.coordDim; var stackedDimType = stackedDimInfo.type; var stackedDimCoordIndex_1 = 0; each$4(dimensionDefineList, function(dimensionInfo) { if (dimensionInfo.coordDim === stackedDimCoordDim_1) stackedDimCoordIndex_1++; }); var stackedOverDimensionDefine = { name: stackResultDimension, coordDim: stackedDimCoordDim_1, coordDimIndex: stackedDimCoordIndex_1, type: stackedDimType, isExtraCoord: true, isCalculationCoord: true, storeDimIndex: dimensionDefineList.length }; var stackResultDimensionDefine = { name: stackedOverDimension, coordDim: stackedOverDimension, coordDimIndex: stackedDimCoordIndex_1 + 1, type: stackedDimType, isExtraCoord: true, isCalculationCoord: true, storeDimIndex: dimensionDefineList.length + 1 }; if (schema) { if (store) { stackedOverDimensionDefine.storeDimIndex = store.ensureCalculationDimension(stackedOverDimension, stackedDimType); stackResultDimensionDefine.storeDimIndex = store.ensureCalculationDimension(stackResultDimension, stackedDimType); } schema.appendCalculationDimension(stackedOverDimensionDefine); schema.appendCalculationDimension(stackResultDimensionDefine); } else { dimensionDefineList.push(stackedOverDimensionDefine); dimensionDefineList.push(stackResultDimensionDefine); } } return { stackedDimension: stackedDimInfo && stackedDimInfo.name, stackedByDimension: stackedByDimInfo && stackedByDimInfo.name, isStackedByIndex: byIndex, stackedOverDimension, stackResultDimension }; } function isLegacyDimensionsInput(dimensionsInput) { return !isSeriesDataSchema(dimensionsInput.schema); } function isDimensionStacked(data, stackedDim) { return !!stackedDim && stackedDim === data.getCalculationInfo("stackedDimension"); } function getStackedDimension(data, targetDim) { return isDimensionStacked(data, targetDim) ? data.getCalculationInfo("stackResultDimension") : targetDim; } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/chart/helper/createSeriesData.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ function getCoordSysDimDefs(seriesModel, coordSysInfo) { var coordSysName = seriesModel.get("coordinateSystem"); var registeredCoordSys = CoordinateSystemManager.get(coordSysName); var coordSysDimDefs; if (coordSysInfo && coordSysInfo.coordSysDims) coordSysDimDefs = map$1(coordSysInfo.coordSysDims, function(dim) { var dimInfo = { name: dim }; var axisModel = coordSysInfo.axisMap.get(dim); if (axisModel) dimInfo.type = getDimensionTypeByAxis(axisModel.get("type")); return dimInfo; }); if (!coordSysDimDefs) coordSysDimDefs = registeredCoordSys && (registeredCoordSys.getDimensionsInfo ? registeredCoordSys.getDimensionsInfo() : registeredCoordSys.dimensions.slice()) || ["x", "y"]; return coordSysDimDefs; } function injectOrdinalMeta(dimInfoList, createInvertedIndices, coordSysInfo) { var firstCategoryDimIndex; var hasNameEncode; coordSysInfo && each$4(dimInfoList, function(dimInfo, dimIndex) { var coordDim = dimInfo.coordDim; var categoryAxisModel = coordSysInfo.categoryAxisMap.get(coordDim); if (categoryAxisModel) { if (firstCategoryDimIndex == null) firstCategoryDimIndex = dimIndex; dimInfo.ordinalMeta = categoryAxisModel.getOrdinalMeta(); if (createInvertedIndices) dimInfo.createInvertedIndices = true; } if (dimInfo.otherDims.itemName != null) hasNameEncode = true; }); if (!hasNameEncode && firstCategoryDimIndex != null) dimInfoList[firstCategoryDimIndex].otherDims.itemName = 0; return firstCategoryDimIndex; } /** * Caution: there are side effects to `sourceManager` in this method. * Should better only be called in `Series['getInitialData']`. */ function createSeriesData(sourceRaw, seriesModel, opt) { opt = opt || {}; var sourceManager = seriesModel.getSourceManager(); var source; var isOriginalSource = false; if (sourceRaw) { isOriginalSource = true; source = createSourceFromSeriesDataOption(sourceRaw); } else { source = sourceManager.getSource(); isOriginalSource = source.sourceFormat === SOURCE_FORMAT_ORIGINAL; } var coordSysInfo = getCoordSysInfoBySeries(seriesModel); var coordSysDimDefs = getCoordSysDimDefs(seriesModel, coordSysInfo); var useEncodeDefaulter = opt.useEncodeDefaulter; var encodeDefaulter = isFunction(useEncodeDefaulter) ? useEncodeDefaulter : useEncodeDefaulter ? curry$1(makeSeriesEncodeForAxisCoordSys, coordSysDimDefs, seriesModel) : null; var createDimensionOptions = { coordDimensions: coordSysDimDefs, generateCoord: opt.generateCoord, encodeDefine: seriesModel.getEncode(), encodeDefaulter, canOmitUnusedDimensions: !isOriginalSource }; var schema = prepareSeriesDataSchema(source, createDimensionOptions); var firstCategoryDimIndex = injectOrdinalMeta(schema.dimensions, opt.createInvertedIndices, coordSysInfo); var store = !isOriginalSource ? sourceManager.getSharedDataStore(schema) : null; var stackCalculationInfo = enableDataStack(seriesModel, { schema, store }); var data = new SeriesData(schema, seriesModel); data.setCalculationInfo(stackCalculationInfo); var dimValueGetter = firstCategoryDimIndex != null && isNeedCompleteOrdinalData(source) ? function(itemOpt, dimName, dataIndex, dimIndex) { return dimIndex === firstCategoryDimIndex ? dataIndex : this.defaultDimValueGetter(itemOpt, dimName, dataIndex, dimIndex); } : null; data.hasItemOption = false; data.initData(isOriginalSource ? source : store, null, dimValueGetter); return data; } function isNeedCompleteOrdinalData(source) { if (source.sourceFormat === "original") return !isArray(getDataItemValue(firstDataNotNull(source.data || []))); } function firstDataNotNull(arr) { var i = 0; while (i < arr.length && arr[i] == null) i++; return arr[i]; } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/util/component.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var base = Math.round(Math.random() * 10); /** * @public * @param {string} type * @return {string} */ function getUID(type) { return [type || "", base++].join("_"); } /** * Implements `SubTypeDefaulterManager` for `target`. */ function enableSubTypeDefaulter(target) { var subTypeDefaulters = {}; target.registerSubTypeDefaulter = function(componentType, defaulter) { var componentTypeInfo = parseClassType(componentType); subTypeDefaulters[componentTypeInfo.main] = defaulter; }; target.determineSubType = function(componentType, option) { var type = option.type; if (!type) { var componentTypeMain = parseClassType(componentType).main; if (target.hasSubTypes(componentType) && subTypeDefaulters[componentTypeMain]) type = subTypeDefaulters[componentTypeMain](option); } return type; }; } /** * Implements `TopologicalTravelable` for `entity`. * * Topological travel on Activity Network (Activity On Vertices). * Dependencies is defined in Model.prototype.dependencies, like ['xAxis', 'yAxis']. * If 'xAxis' or 'yAxis' is absent in componentTypeList, just ignore it in topology. * If there is circular dependencey, Error will be thrown. */ function enableTopologicalTravel(entity, dependencyGetter) { /** * @param targetNameList Target Component type list. * Can be ['aa', 'bb', 'aa.xx'] * @param fullNameList By which we can build dependency graph. * @param callback Params: componentType, dependencies. * @param context Scope of callback. */ entity.topologicalTravel = function(targetNameList, fullNameList, callback, context) { if (!targetNameList.length) return; var result = makeDepndencyGraph(fullNameList); var graph = result.graph; var noEntryList = result.noEntryList; var targetNameSet = {}; each$4(targetNameList, function(name) { targetNameSet[name] = true; }); while (noEntryList.length) { var currComponentType = noEntryList.pop(); var currVertex = graph[currComponentType]; var isInTargetNameSet = !!targetNameSet[currComponentType]; if (isInTargetNameSet) { callback.call(context, currComponentType, currVertex.originalDeps.slice()); delete targetNameSet[currComponentType]; } each$4(currVertex.successor, isInTargetNameSet ? removeEdgeAndAdd : removeEdge); } each$4(targetNameSet, function() { throw new Error(""); }); function removeEdge(succComponentType) { graph[succComponentType].entryCount--; if (graph[succComponentType].entryCount === 0) noEntryList.push(succComponentType); } function removeEdgeAndAdd(succComponentType) { targetNameSet[succComponentType] = true; removeEdge(succComponentType); } }; function makeDepndencyGraph(fullNameList) { var graph = {}; var noEntryList = []; each$4(fullNameList, function(name) { var thisItem = createDependencyGraphItem(graph, name); var availableDeps = getAvailableDependencies(thisItem.originalDeps = dependencyGetter(name), fullNameList); thisItem.entryCount = availableDeps.length; if (thisItem.entryCount === 0) noEntryList.push(name); each$4(availableDeps, function(dependentName) { if (indexOf(thisItem.predecessor, dependentName) < 0) thisItem.predecessor.push(dependentName); var thatItem = createDependencyGraphItem(graph, dependentName); if (indexOf(thatItem.successor, dependentName) < 0) thatItem.successor.push(name); }); }); return { graph, noEntryList }; } function createDependencyGraphItem(graph, name) { if (!graph[name]) graph[name] = { predecessor: [], successor: [] }; return graph[name]; } function getAvailableDependencies(originalDeps, fullNameList) { var availableDeps = []; each$4(originalDeps, function(dep) { indexOf(fullNameList, dep) >= 0 && availableDeps.push(dep); }); return availableDeps; } } function inheritDefaultOption(superOption, subOption) { return merge(merge({}, superOption, true), subOption, true); } //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/core/fourPointsTransform.js var LN2 = Math.log(2); function determinant(rows, rank, rowStart, rowMask, colMask, detCache) { var cacheKey = rowMask + "-" + colMask; var fullRank = rows.length; if (detCache.hasOwnProperty(cacheKey)) return detCache[cacheKey]; if (rank === 1) { var colStart = Math.round(Math.log((1 << fullRank) - 1 & ~colMask) / LN2); return rows[rowStart][colStart]; } var subRowMask = rowMask | 1 << rowStart; var subRowStart = rowStart + 1; while (rowMask & 1 << subRowStart) subRowStart++; var sum = 0; for (var j = 0, colLocalIdx = 0; j < fullRank; j++) { var colTag = 1 << j; if (!(colTag & colMask)) { sum += (colLocalIdx % 2 ? -1 : 1) * rows[rowStart][j] * determinant(rows, rank - 1, subRowStart, subRowMask, colMask | colTag, detCache); colLocalIdx++; } } detCache[cacheKey] = sum; return sum; } function buildTransformer(src, dest) { var mA = [ [ src[0], src[1], 1, 0, 0, 0, -dest[0] * src[0], -dest[0] * src[1] ], [ 0, 0, 0, src[0], src[1], 1, -dest[1] * src[0], -dest[1] * src[1] ], [ src[2], src[3], 1, 0, 0, 0, -dest[2] * src[2], -dest[2] * src[3] ], [ 0, 0, 0, src[2], src[3], 1, -dest[3] * src[2], -dest[3] * src[3] ], [ src[4], src[5], 1, 0, 0, 0, -dest[4] * src[4], -dest[4] * src[5] ], [ 0, 0, 0, src[4], src[5], 1, -dest[5] * src[4], -dest[5] * src[5] ], [ src[6], src[7], 1, 0, 0, 0, -dest[6] * src[6], -dest[6] * src[7] ], [ 0, 0, 0, src[6], src[7], 1, -dest[7] * src[6], -dest[7] * src[7] ] ]; var detCache = {}; var det = determinant(mA, 8, 0, 0, 0, detCache); if (det === 0) return; var vh = []; for (var i = 0; i < 8; i++) for (var j = 0; j < 8; j++) { vh[j] ?? (vh[j] = 0); vh[j] += ((i + j) % 2 ? -1 : 1) * determinant(mA, 7, i === 0 ? 1 : 0, 1 << i, 1 << j, detCache) / det * dest[i]; } return function(out, srcPointX, srcPointY) { var pk = srcPointX * vh[6] + srcPointY * vh[7] + 1; out[0] = (srcPointX * vh[0] + srcPointY * vh[1] + vh[2]) / pk; out[1] = (srcPointX * vh[3] + srcPointY * vh[4] + vh[5]) / pk; }; } //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/core/dom.js var EVENT_SAVED_PROP = "___zrEVENTSAVED"; var _calcOut$1 = []; function transformLocalCoord(out, elFrom, elTarget, inX, inY) { return transformCoordWithViewport(_calcOut$1, elFrom, inX, inY, true) && transformCoordWithViewport(out, elTarget, _calcOut$1[0], _calcOut$1[1]); } function transformLocalCoordClear(elFrom, elTarget) { elFrom && dealClear(elFrom); elTarget && dealClear(elTarget); function dealClear(el) { var saved = el[EVENT_SAVED_PROP]; if (saved) { saved.clearMarkers && saved.clearMarkers(); delete el[EVENT_SAVED_PROP]; } } } function transformCoordWithViewport(out, el, inX, inY, inverse) { if (el.getBoundingClientRect && env.domSupported && !isCanvasEl(el)) { var saved = el[EVENT_SAVED_PROP] || (el[EVENT_SAVED_PROP] = {}); var transformer = preparePointerTransformer(prepareCoordMarkers(el, saved), saved, inverse); if (transformer) { transformer(out, inX, inY); return true; } } return false; } function prepareCoordMarkers(el, saved) { var markers = saved.markers; if (markers) return markers; markers = saved.markers = []; var propLR = ["left", "right"]; var propTB = ["top", "bottom"]; for (var i = 0; i < 4; i++) { var marker = document.createElement("div"); var stl = marker.style; var idxLR = i % 2; var idxTB = (i >> 1) % 2; stl.cssText = [ "position: absolute", "visibility: hidden", "padding: 0", "margin: 0", "border-width: 0", "user-select: none", "width:0", "height:0", propLR[idxLR] + ":0", propTB[idxTB] + ":0", propLR[1 - idxLR] + ":auto", propTB[1 - idxTB] + ":auto", "" ].join("!important;"); el.appendChild(marker); markers.push(marker); } saved.clearMarkers = function() { each$4(markers, function(marker) { marker.parentNode && marker.parentNode.removeChild(marker); }); }; return markers; } function preparePointerTransformer(markers, saved, inverse) { var transformerName = inverse ? "invTrans" : "trans"; var transformer = saved[transformerName]; var oldSrcCoords = saved.srcCoords; var srcCoords = []; var destCoords = []; var oldCoordTheSame = true; for (var i = 0; i < 4; i++) { var rect = markers[i].getBoundingClientRect(); var ii = 2 * i; var x = rect.left; var y = rect.top; srcCoords.push(x, y); oldCoordTheSame = oldCoordTheSame && oldSrcCoords && x === oldSrcCoords[ii] && y === oldSrcCoords[ii + 1]; destCoords.push(markers[i].offsetLeft, markers[i].offsetTop); } return oldCoordTheSame && transformer ? transformer : (saved.srcCoords = srcCoords, saved[transformerName] = inverse ? buildTransformer(destCoords, srcCoords) : buildTransformer(srcCoords, destCoords)); } function isCanvasEl(el) { return el.nodeName.toUpperCase() === "CANVAS"; } var replaceReg = /([&<>"'])/g; var replaceMap = { "&": "&", "<": "<", ">": ">", "\"": """, "'": "'" }; function encodeHTML(source) { return source == null ? "" : (source + "").replace(replaceReg, function(str, c) { return replaceMap[c]; }); } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/i18n/langEN.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ /** * Language: English. */ var langEN_default = { time: { month: [ "January", "February", "March", "April", "May", "June", "July", "August", "September", "October", "November", "December" ], monthAbbr: [ "Jan", "Feb", "Mar", "Apr", "May", "Jun", "Jul", "Aug", "Sep", "Oct", "Nov", "Dec" ], dayOfWeek: [ "Sunday", "Monday", "Tuesday", "Wednesday", "Thursday", "Friday", "Saturday" ], dayOfWeekAbbr: [ "Sun", "Mon", "Tue", "Wed", "Thu", "Fri", "Sat" ] }, legend: { selector: { all: "All", inverse: "Inv" } }, toolbox: { brush: { title: { rect: "Box Select", polygon: "Lasso Select", lineX: "Horizontally Select", lineY: "Vertically Select", keep: "Keep Selections", clear: "Clear Selections" } }, dataView: { title: "Data View", lang: [ "Data View", "Close", "Refresh" ] }, dataZoom: { title: { zoom: "Zoom", back: "Zoom Reset" } }, magicType: { title: { line: "Switch to Line Chart", bar: "Switch to Bar Chart", stack: "Stack", tiled: "Tile" } }, restore: { title: "Restore" }, saveAsImage: { title: "Save as Image", lang: ["Right Click to Save Image"] } }, series: { typeNames: { pie: "Pie chart", bar: "Bar chart", line: "Line chart", scatter: "Scatter plot", effectScatter: "Ripple scatter plot", radar: "Radar chart", tree: "Tree", treemap: "Treemap", boxplot: "Boxplot", candlestick: "Candlestick", k: "K line chart", heatmap: "Heat map", map: "Map", parallel: "Parallel coordinate map", lines: "Line graph", graph: "Relationship graph", sankey: "Sankey diagram", funnel: "Funnel chart", gauge: "Gauge", pictorialBar: "Pictorial bar", themeRiver: "Theme River Map", sunburst: "Sunburst", custom: "Custom chart", chart: "Chart" } }, aria: { general: { withTitle: "This is a chart about \"{title}\"", withoutTitle: "This is a chart" }, series: { single: { prefix: "", withName: " with type {seriesType} named {seriesName}.", withoutName: " with type {seriesType}." }, multiple: { prefix: ". It consists of {seriesCount} series count.", withName: " The {seriesId} series is a {seriesType} representing {seriesName}.", withoutName: " The {seriesId} series is a {seriesType}.", separator: { middle: "", end: "" } } }, data: { allData: "The data is as follows: ", partialData: "The first {displayCnt} items are: ", withName: "the data for {name} is {value}", withoutName: "{value}", separator: { middle: ", ", end: ". " } } } }; //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/i18n/langZH.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var langZH_default = { time: { month: [ "一月", "二月", "三月", "四月", "五月", "六月", "七月", "八月", "九月", "十月", "十一月", "十二月" ], monthAbbr: [ "1月", "2月", "3月", "4月", "5月", "6月", "7月", "8月", "9月", "10月", "11月", "12月" ], dayOfWeek: [ "星期日", "星期一", "星期二", "星期三", "星期四", "星期五", "星期六" ], dayOfWeekAbbr: [ "日", "一", "二", "三", "四", "五", "六" ] }, legend: { selector: { all: "全选", inverse: "反选" } }, toolbox: { brush: { title: { rect: "矩形选择", polygon: "圈选", lineX: "横向选择", lineY: "纵向选择", keep: "保持选择", clear: "清除选择" } }, dataView: { title: "数据视图", lang: [ "数据视图", "关闭", "刷新" ] }, dataZoom: { title: { zoom: "区域缩放", back: "区域缩放还原" } }, magicType: { title: { line: "切换为折线图", bar: "切换为柱状图", stack: "切换为堆叠", tiled: "切换为平铺" } }, restore: { title: "还原" }, saveAsImage: { title: "保存为图片", lang: ["右键另存为图片"] } }, series: { typeNames: { pie: "饼图", bar: "柱状图", line: "折线图", scatter: "散点图", effectScatter: "涟漪散点图", radar: "雷达图", tree: "树图", treemap: "矩形树图", boxplot: "箱型图", candlestick: "K线图", k: "K线图", heatmap: "热力图", map: "地图", parallel: "平行坐标图", lines: "线图", graph: "关系图", sankey: "桑基图", funnel: "漏斗图", gauge: "仪表盘图", pictorialBar: "象形柱图", themeRiver: "主题河流图", sunburst: "旭日图", custom: "自定义图表", chart: "图表" } }, aria: { general: { withTitle: "这是一个关于“{title}”的图表。", withoutTitle: "这是一个图表," }, series: { single: { prefix: "", withName: "图表类型是{seriesType},表示{seriesName}。", withoutName: "图表类型是{seriesType}。" }, multiple: { prefix: "它由{seriesCount}个图表系列组成。", withName: "第{seriesId}个系列是一个表示{seriesName}的{seriesType},", withoutName: "第{seriesId}个系列是一个{seriesType},", separator: { middle: ";", end: "。" } } }, data: { allData: "其数据是——", partialData: "其中,前{displayCnt}项是——", withName: "{name}的数据是{value}", withoutName: "{value}", separator: { middle: ",", end: "" } } } }; //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/core/locale.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var LOCALE_ZH = "ZH"; var LOCALE_EN = "EN"; var DEFAULT_LOCALE = LOCALE_EN; var localeStorage = {}; var localeModels = {}; var SYSTEM_LANG = !env.domSupported ? DEFAULT_LOCALE : function() { return (document.documentElement.lang || navigator.language || navigator.browserLanguage || DEFAULT_LOCALE).toUpperCase().indexOf(LOCALE_ZH) > -1 ? LOCALE_ZH : DEFAULT_LOCALE; }(); function registerLocale(locale, localeObj) { locale = locale.toUpperCase(); localeModels[locale] = new Model(localeObj); localeStorage[locale] = localeObj; } function createLocaleObject(locale) { if (isString(locale)) { var localeObj = localeStorage[locale.toUpperCase()] || {}; if (locale === LOCALE_ZH || locale === LOCALE_EN) return clone$2(localeObj); else return merge(clone$2(localeObj), clone$2(localeStorage[DEFAULT_LOCALE]), false); } else return merge(clone$2(locale), clone$2(localeStorage[DEFAULT_LOCALE]), false); } function getLocaleModel(lang) { return localeModels[lang]; } function getDefaultLocaleModel() { return localeModels[DEFAULT_LOCALE]; } registerLocale(LOCALE_EN, langEN_default); registerLocale(LOCALE_ZH, langZH_default); //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/scale/break.js var _impl$1 = null; function getScaleBreakHelper() { return _impl$1; } function simplyParseBreakOption(scale, opt) { var scaleBreakHelper = getScaleBreakHelper(); var breakOption = opt.breakOption; var breakParsed = opt.breakParsed; if (!breakParsed && scaleBreakHelper) breakParsed = scaleBreakHelper.parseAxisBreakOption(breakOption, scale); return breakParsed; } function getBreaksUnsafe(scale) { var brk = scale.brk; return brk ? brk.breaks : []; } function hasBreaks(scale) { var brk = scale.brk; return brk ? brk.hasBreaks() : false; } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/util/time.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var ONE_SECOND = 1e3; var ONE_MINUTE = ONE_SECOND * 60; var ONE_HOUR = ONE_MINUTE * 60; var ONE_DAY = ONE_HOUR * 24; var ONE_YEAR = ONE_DAY * 365; var primaryTimeUnitFormatterMatchers = { year: /({yyyy}|{yy})/, month: /({MMMM}|{MMM}|{MM}|{M})/, day: /({dd}|{d})/, hour: /({HH}|{H}|{hh}|{h})/, minute: /({mm}|{m})/, second: /({ss}|{s})/, millisecond: /({SSS}|{S})/ }; var defaultFormatterSeed = { year: "{yyyy}", month: "{MMM}", day: "{d}", hour: "{HH}:{mm}", minute: "{HH}:{mm}", second: "{HH}:{mm}:{ss}", millisecond: "{HH}:{mm}:{ss} {SSS}" }; var defaultFullFormatter = "{yyyy}-{MM}-{dd} {HH}:{mm}:{ss} {SSS}"; var fullDayFormatter = "{yyyy}-{MM}-{dd}"; var fullLeveledFormatter = { year: "{yyyy}", month: "{yyyy}-{MM}", day: fullDayFormatter, hour: fullDayFormatter + " " + defaultFormatterSeed.hour, minute: fullDayFormatter + " " + defaultFormatterSeed.minute, second: fullDayFormatter + " " + defaultFormatterSeed.second, millisecond: defaultFullFormatter }; var primaryTimeUnits = [ "year", "month", "day", "hour", "minute", "second", "millisecond" ]; var timeUnits = [ "year", "half-year", "quarter", "month", "week", "half-week", "day", "half-day", "quarter-day", "hour", "minute", "second", "millisecond" ]; function parseTimeAxisLabelFormatter(formatter) { return !isString(formatter) && !isFunction(formatter) ? parseTimeAxisLabelFormatterDictionary(formatter) : formatter; } /** * The final generated dictionary is like: * generated_dict = { * year: { * year: ['{yyyy}', ...] * }, * month: { * year: ['{yyyy} {MMM}', ...], * month: ['{MMM}', ...] * }, * day: { * year: ['{yyyy} {MMM} {d}', ...], * month: ['{MMM} {d}', ...], * day: ['{d}', ...] * }, * ... * } * * In echarts option, users can specify the entire dictionary or typically just: * {formatter: { * year: '{yyyy}', // Or an array of leveled templates: `['{yyyy}', '{bold1|{yyyy}}', ...]`, * // corresponding to `[level0, level1, level2, ...]`. * month: '{MMM}', * day: '{d}', * hour: '{HH}:{mm}', * second: '{HH}:{mm}', * ... * }} * If any time unit is not specified in echarts option, the default template is used, * such as `['{yyyy}', {primary|{yyyy}']`. * * The `tick.level` is only used to read string from each array, meaning the style type. * * Let `lowerUnit = getUnitFromValue(tick.value)`. * The non-break axis ticks only use `generated_dict[lowerUnit][lowerUnit][level]`. * The break axis ticks may use `generated_dict[lowerUnit][upperUnit][level]`, because: * Consider the case: the non-break ticks are `16th, 23th, Feb, 7th, ...`, where `Feb` is in the break * range and pruned by breaks, and the break ends might be in lower time unit than day. e.g., break start * is `Jan 25th 18:00`(in unit `hour`) and break end is `Feb 6th 18:30` (in unit `minute`). Thus the break * label prefers `Jan 25th 18:00` and `Feb 6th 18:30` rather than only `18:00` and `18:30`, otherwise it * causes misleading. * In this case, the tick of the break start and end will both be: * `{level: 1, lowerTimeUnit: 'minute', upperTimeUnit: 'month'}` * And get the final template by `generated_dict[lowerTimeUnit][upperTimeUnit][level]`. * Note that the time unit can not be calculated directly by a single tick value, since the two breaks have * to be at the same time unit to avoid awkward appearance. i.e., `Jan 25th 18:00` is in the time unit "hour" * but we need it to be "minute", following `Feb 6th 18:30`. */ function parseTimeAxisLabelFormatterDictionary(dictOption) { dictOption = dictOption || {}; var dict = {}; var canAddHighlight = true; each$4(primaryTimeUnits, function(lowestUnit) { canAddHighlight && (canAddHighlight = dictOption[lowestUnit] == null); }); each$4(primaryTimeUnits, function(lowestUnit, lowestUnitIdx) { var upperDictOption = dictOption[lowestUnit]; dict[lowestUnit] = {}; var lowerTpl = null; for (var upperUnitIdx = lowestUnitIdx; upperUnitIdx >= 0; upperUnitIdx--) { var upperUnit = primaryTimeUnits[upperUnitIdx]; var upperDictItemOption = isObject$2(upperDictOption) && !isArray(upperDictOption) ? upperDictOption[upperUnit] : upperDictOption; var tplArr = void 0; if (isArray(upperDictItemOption)) { tplArr = upperDictItemOption.slice(); lowerTpl = tplArr[0] || ""; } else if (isString(upperDictItemOption)) { lowerTpl = upperDictItemOption; tplArr = [lowerTpl]; } else { if (lowerTpl == null) lowerTpl = defaultFormatterSeed[lowestUnit]; else if (!primaryTimeUnitFormatterMatchers[upperUnit].test(lowerTpl)) lowerTpl = dict[upperUnit][upperUnit][0] + " " + lowerTpl; tplArr = [lowerTpl]; if (canAddHighlight) tplArr[1] = "{primary|" + lowerTpl + "}"; } dict[lowestUnit][upperUnit] = tplArr; } }); return dict; } function pad(str, len) { str += ""; return "0000".substr(0, len - str.length) + str; } function getPrimaryTimeUnit(timeUnit) { switch (timeUnit) { case "half-year": case "quarter": return "month"; case "week": case "half-week": return "day"; case "half-day": case "quarter-day": return "hour"; default: return timeUnit; } } function isPrimaryTimeUnit(timeUnit) { return timeUnit === getPrimaryTimeUnit(timeUnit); } function getDefaultFormatPrecisionOfInterval(timeUnit) { switch (timeUnit) { case "year": case "month": return "day"; case "millisecond": return "millisecond"; default: return "second"; } } function format(time, template, isUTC, lang) { var date = parseDate(time); var y = date[fullYearGetterName(isUTC)](); var M = date[monthGetterName(isUTC)]() + 1; var q = Math.floor((M - 1) / 3) + 1; var d = date[dateGetterName(isUTC)](); var e = date["get" + (isUTC ? "UTC" : "") + "Day"](); var H = date[hoursGetterName(isUTC)](); var h = (H - 1) % 12 + 1; var m = date[minutesGetterName(isUTC)](); var s = date[secondsGetterName(isUTC)](); var S = date[millisecondsGetterName(isUTC)](); var a = H >= 12 ? "pm" : "am"; var A = a.toUpperCase(); var timeModel = (lang instanceof Model ? lang : getLocaleModel(lang || SYSTEM_LANG) || getDefaultLocaleModel()).getModel("time"); var month = timeModel.get("month"); var monthAbbr = timeModel.get("monthAbbr"); var dayOfWeek = timeModel.get("dayOfWeek"); var dayOfWeekAbbr = timeModel.get("dayOfWeekAbbr"); return (template || "").replace(/{a}/g, a + "").replace(/{A}/g, A + "").replace(/{yyyy}/g, y + "").replace(/{yy}/g, pad(y % 100 + "", 2)).replace(/{Q}/g, q + "").replace(/{MMMM}/g, month[M - 1]).replace(/{MMM}/g, monthAbbr[M - 1]).replace(/{MM}/g, pad(M, 2)).replace(/{M}/g, M + "").replace(/{dd}/g, pad(d, 2)).replace(/{d}/g, d + "").replace(/{eeee}/g, dayOfWeek[e]).replace(/{ee}/g, dayOfWeekAbbr[e]).replace(/{e}/g, e + "").replace(/{HH}/g, pad(H, 2)).replace(/{H}/g, H + "").replace(/{hh}/g, pad(h + "", 2)).replace(/{h}/g, h + "").replace(/{mm}/g, pad(m, 2)).replace(/{m}/g, m + "").replace(/{ss}/g, pad(s, 2)).replace(/{s}/g, s + "").replace(/{SSS}/g, pad(S, 3)).replace(/{S}/g, S + ""); } function leveledFormat(tick, idx, formatter, lang, isUTC) { var template = null; if (isString(formatter)) template = formatter; else if (isFunction(formatter)) { var extra = { time: tick.time, level: tick.time ? tick.time.level : 0 }; var scaleBreakHelper = getScaleBreakHelper(); if (scaleBreakHelper) scaleBreakHelper.makeAxisLabelFormatterParamBreak(extra, tick["break"]); template = formatter(tick.value, idx, extra); } else { var tickTime = tick.time; if (tickTime) { var leveledTplArr = formatter[tickTime.lowerTimeUnit][tickTime.upperTimeUnit]; template = leveledTplArr[Math.min(tickTime.level, leveledTplArr.length - 1)] || ""; } else { var unit = getUnitFromValue(tick.value, isUTC); template = formatter[unit][unit][0]; } } return format(new Date(tick.value), template, isUTC, lang); } function getUnitFromValue(value, isUTC) { var date = parseDate(value); var M = date[monthGetterName(isUTC)]() + 1; var d = date[dateGetterName(isUTC)](); var h = date[hoursGetterName(isUTC)](); var m = date[minutesGetterName(isUTC)](); var s = date[secondsGetterName(isUTC)](); var isSecond = date[millisecondsGetterName(isUTC)]() === 0; var isMinute = isSecond && s === 0; var isHour = isMinute && m === 0; var isDay = isHour && h === 0; var isMonth = isDay && d === 1; if (isMonth && M === 1) return "year"; else if (isMonth) return "month"; else if (isDay) return "day"; else if (isHour) return "hour"; else if (isMinute) return "minute"; else if (isSecond) return "second"; else return "millisecond"; } /** * e.g., * If timeUnit is 'year', return the Jan 1st 00:00:00 000 of that year. * If timeUnit is 'day', return the 00:00:00 000 of that day. * * @return The input date. */ function roundTime(date, timeUnit, isUTC) { switch (timeUnit) { case "year": date[monthSetterName(isUTC)](0); case "month": date[dateSetterName(isUTC)](1); case "day": date[hoursSetterName(isUTC)](0); case "hour": date[minutesSetterName(isUTC)](0); case "minute": date[secondsSetterName(isUTC)](0); case "second": date[millisecondsSetterName(isUTC)](0); } return date; } function fullYearGetterName(isUTC) { return isUTC ? "getUTCFullYear" : "getFullYear"; } function monthGetterName(isUTC) { return isUTC ? "getUTCMonth" : "getMonth"; } function dateGetterName(isUTC) { return isUTC ? "getUTCDate" : "getDate"; } function hoursGetterName(isUTC) { return isUTC ? "getUTCHours" : "getHours"; } function minutesGetterName(isUTC) { return isUTC ? "getUTCMinutes" : "getMinutes"; } function secondsGetterName(isUTC) { return isUTC ? "getUTCSeconds" : "getSeconds"; } function millisecondsGetterName(isUTC) { return isUTC ? "getUTCMilliseconds" : "getMilliseconds"; } function fullYearSetterName(isUTC) { return isUTC ? "setUTCFullYear" : "setFullYear"; } function monthSetterName(isUTC) { return isUTC ? "setUTCMonth" : "setMonth"; } function dateSetterName(isUTC) { return isUTC ? "setUTCDate" : "setDate"; } function hoursSetterName(isUTC) { return isUTC ? "setUTCHours" : "setHours"; } function minutesSetterName(isUTC) { return isUTC ? "setUTCMinutes" : "setMinutes"; } function secondsSetterName(isUTC) { return isUTC ? "setUTCSeconds" : "setSeconds"; } function millisecondsSetterName(isUTC) { return isUTC ? "setUTCMilliseconds" : "setMilliseconds"; } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/util/format.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ /** * Add a comma each three digit. */ function addCommas(x) { if (!isNumeric(x)) return isString(x) ? x : "-"; var parts = (x + "").split("."); return parts[0].replace(/(\d{1,3})(?=(?:\d{3})+(?!\d))/g, "$1,") + (parts.length > 1 ? "." + parts[1] : ""); } function toCamelCase(str, upperCaseFirst) { str = (str || "").toLowerCase().replace(/-(.)/g, function(match, group1) { return group1.toUpperCase(); }); if (upperCaseFirst && str) str = str.charAt(0).toUpperCase() + str.slice(1); return str; } var normalizeCssArray = normalizeCssArray$1; /** * Make value user readable for tooltip and label. * "User readable": * Try to not print programmer-specific text like NaN, Infinity, null, undefined. * Avoid to display an empty string, which users can not recognize there is * a value and it might look like a bug. */ function makeValueReadable(value, valueType, useUTC) { var USER_READABLE_DEFUALT_TIME_PATTERN = "{yyyy}-{MM}-{dd} {HH}:{mm}:{ss}"; function stringToUserReadable(str) { return str && trim(str) ? str : "-"; } function isNumberUserReadable(num) { return isNullableNumberFinite(num); } var isTypeTime = valueType === "time"; var isValueDate = value instanceof Date; if (isTypeTime || isValueDate) { var date = isTypeTime ? parseDate(value) : value; if (!isNaN(+date)) return format(date, USER_READABLE_DEFUALT_TIME_PATTERN, useUTC); else if (isValueDate) return "-"; } if (valueType === "ordinal") return isStringSafe(value) ? stringToUserReadable(value) : isNumber(value) ? isNumberUserReadable(value) ? value + "" : "-" : "-"; var numericResult = numericToNumber(value); return isNumberUserReadable(numericResult) ? addCommas(numericResult) : isStringSafe(value) ? stringToUserReadable(value) : typeof value === "boolean" ? value + "" : "-"; } var TPL_VAR_ALIAS = [ "a", "b", "c", "d", "e", "f", "g" ]; var wrapVar = function(varName, seriesIdx) { return "{" + varName + (seriesIdx == null ? "" : seriesIdx) + "}"; }; /** * Template formatter * @param {Array.|Object} paramsList */ function formatTpl(tpl, paramsList, encode) { if (!isArray(paramsList)) paramsList = [paramsList]; var seriesLen = paramsList.length; if (!seriesLen) return ""; var $vars = paramsList[0].$vars || []; for (var i = 0; i < $vars.length; i++) { var alias = TPL_VAR_ALIAS[i]; tpl = tpl.replace(wrapVar(alias), wrapVar(alias, 0)); } for (var seriesIdx = 0; seriesIdx < seriesLen; seriesIdx++) for (var k = 0; k < $vars.length; k++) { var val = paramsList[seriesIdx][$vars[k]]; tpl = tpl.replace(wrapVar(TPL_VAR_ALIAS[k], seriesIdx), encode ? encodeHTML(val) : val); } return tpl; } function getTooltipMarker(inOpt, extraCssText) { var opt = isString(inOpt) ? { color: inOpt, extraCssText } : inOpt || {}; var color = opt.color; var type = opt.type; extraCssText = opt.extraCssText; var renderMode = opt.renderMode || "html"; if (!color) return ""; if (renderMode === "html") return type === "subItem" ? "" : ""; else return { renderMode, content: "{" + (opt.markerId || "markerX") + "|} ", style: type === "subItem" ? { width: 4, height: 4, borderRadius: 2, backgroundColor: color } : { width: 10, height: 10, borderRadius: 5, backgroundColor: color } }; } /** * @return Never be null/undefined. */ function convertToColorString(color, defaultColor) { defaultColor = defaultColor || "transparent"; return isString(color) ? color : isObject$2(color) ? color.colorStops && (color.colorStops[0] || {}).color || defaultColor : defaultColor; } /** * open new tab * @param link url * @param target blank or self */ function windowOpen(link, target) { if (target === "_blank" || target === "blank") { var blank = window.open(); blank.opener = null; blank.location.href = link; } else window.open(link, target); } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/util/layout.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var each$3 = each$4; /** * @public */ var LOCATION_PARAMS = [ "left", "right", "top", "bottom", "width", "height" ]; /** * @public */ var HV_NAMES = [[ "width", "left", "right" ], [ "height", "top", "bottom" ]]; function boxLayout(orient, group, gap, maxWidth, maxHeight) { var x = 0; var y = 0; if (maxWidth == null) maxWidth = Infinity; if (maxHeight == null) maxHeight = Infinity; var currentLineMaxSize = 0; group.eachChild(function(child, idx) { var rect = child.getBoundingRect(); var nextChild = group.childAt(idx + 1); var nextChildRect = nextChild && nextChild.getBoundingRect(); var nextX; var nextY; if (orient === "horizontal") { var moveX = rect.width + (nextChildRect ? -nextChildRect.x + rect.x : 0); nextX = x + moveX; if (nextX > maxWidth || child.newline) { x = 0; nextX = moveX; y += currentLineMaxSize + gap; currentLineMaxSize = rect.height; } else currentLineMaxSize = Math.max(currentLineMaxSize, rect.height); } else { var moveY = rect.height + (nextChildRect ? -nextChildRect.y + rect.y : 0); nextY = y + moveY; if (nextY > maxHeight || child.newline) { x += currentLineMaxSize + gap; y = 0; nextY = moveY; currentLineMaxSize = rect.width; } else currentLineMaxSize = Math.max(currentLineMaxSize, rect.width); } if (child.newline) return; child.x = x; child.y = y; child.markRedraw(); orient === "horizontal" ? x = nextX + gap : y = nextY + gap; }); } /** * VBox or HBox layouting * @param {string} orient * @param {module:zrender/graphic/Group} group * @param {number} gap * @param {number} [width=Infinity] * @param {number} [height=Infinity] */ var box = boxLayout; curry$1(boxLayout, "vertical"); curry$1(boxLayout, "horizontal"); function getBoxLayoutParams(boxLayoutModel, ignoreParent) { return { left: boxLayoutModel.getShallow("left", ignoreParent), top: boxLayoutModel.getShallow("top", ignoreParent), right: boxLayoutModel.getShallow("right", ignoreParent), bottom: boxLayoutModel.getShallow("bottom", ignoreParent), width: boxLayoutModel.getShallow("width", ignoreParent), height: boxLayoutModel.getShallow("height", ignoreParent) }; } /** * Parse position info. */ function getLayoutRect(positionInfo, containerRect, margin) { margin = normalizeCssArray(margin || 0); var containerWidth = containerRect.width; var containerHeight = containerRect.height; var left = parsePercent(positionInfo.left, containerWidth); var top = parsePercent(positionInfo.top, containerHeight); var right = parsePercent(positionInfo.right, containerWidth); var bottom = parsePercent(positionInfo.bottom, containerHeight); var width = parsePercent(positionInfo.width, containerWidth); var height = parsePercent(positionInfo.height, containerHeight); var verticalMargin = margin[2] + margin[0]; var horizontalMargin = margin[1] + margin[3]; var aspect = positionInfo.aspect; if (isNaN(width)) width = containerWidth - right - horizontalMargin - left; if (isNaN(height)) height = containerHeight - bottom - verticalMargin - top; if (aspect != null) { if (isNaN(width) && isNaN(height)) if (aspect > containerWidth / containerHeight) width = containerWidth * .8; else height = containerHeight * .8; if (isNaN(width)) width = aspect * height; if (isNaN(height)) height = width / aspect; } if (isNaN(left)) left = containerWidth - right - width - horizontalMargin; if (isNaN(top)) top = containerHeight - bottom - height - verticalMargin; switch (positionInfo.left || positionInfo.right) { case "center": left = containerWidth / 2 - width / 2 - margin[3]; break; case "right": left = containerWidth - width - horizontalMargin; break; } switch (positionInfo.top || positionInfo.bottom) { case "middle": case "center": top = containerHeight / 2 - height / 2 - margin[0]; break; case "bottom": top = containerHeight - height - verticalMargin; break; } left = left || 0; top = top || 0; if (isNaN(width)) width = containerWidth - horizontalMargin - left - (right || 0); if (isNaN(height)) height = containerHeight - verticalMargin - top - (bottom || 0); var rect = new BoundingRect((containerRect.x || 0) + left + margin[3], (containerRect.y || 0) + top + margin[0], width, height); rect.margin = margin; return rect; } var BoxLayoutReferenceType = { rect: 1, point: 2 }; /** * Uniformly calculate layout reference (rect or center) based on either: * - viewport: * - Get `refContainer` as `{x: 0, y: 0, width: api.getWidth(), height: api.getHeight()}` * - coordinate system, which can serve in several ways: * - Use `dataToPoint` to get the `refPoint`, such as, in cartesian2d coord sys. * - Use `dataToLayout` to get the `refContainer`, such as, in matrix coord sys. */ function createBoxLayoutReference(model, api, opt) { var refContainer; var refPoint; var layoutRefType; var boxCoordSys = model.boxCoordinateSystem; var boxCoordFrom; if (boxCoordSys) { var _a = getCoordForCoordSysUsageKindBox(model), coord = _a.coord, from = _a.from; if (boxCoordSys.dataToLayout) { layoutRefType = BoxLayoutReferenceType.rect; boxCoordFrom = from; var result = boxCoordSys.dataToLayout(coord); refContainer = result.contentRect || result.rect; } else if (opt && opt.enableLayoutOnlyByCenter && boxCoordSys.dataToPoint) { layoutRefType = BoxLayoutReferenceType.point; boxCoordFrom = from; refPoint = boxCoordSys.dataToPoint(coord); } } if (layoutRefType == null) layoutRefType = BoxLayoutReferenceType.rect; if (layoutRefType === BoxLayoutReferenceType.rect) { if (!refContainer) refContainer = { x: 0, y: 0, width: api.getWidth(), height: api.getHeight() }; refPoint = [refContainer.x + refContainer.width / 2, refContainer.y + refContainer.height / 2]; } return { type: layoutRefType, refContainer, refPoint, boxCoordFrom }; } function fetchLayoutMode(ins) { var layoutMode = ins.layoutMode || ins.constructor.layoutMode; return isObject$2(layoutMode) ? layoutMode : layoutMode ? { type: layoutMode } : null; } /** * Consider Case: * When default option has {left: 0, width: 100}, and we set {right: 0} * through setOption or media query, using normal zrUtil.merge will cause * {right: 0} does not take effect. * * @example * ComponentModel.extend({ * init: function () { * ... * let inputPositionParams = layout.getLayoutParams(option); * this.mergeOption(inputPositionParams); * }, * mergeOption: function (newOption) { * newOption && zrUtil.merge(thisOption, newOption, true); * layout.mergeLayoutParam(thisOption, newOption); * } * }); * * @param targetOption * @param newOption * @param opt */ function mergeLayoutParam(targetOption, newOption, opt) { var ignoreSize = opt && opt.ignoreSize; !isArray(ignoreSize) && (ignoreSize = [ignoreSize, ignoreSize]); var hResult = merge(HV_NAMES[0], 0); var vResult = merge(HV_NAMES[1], 1); copy(HV_NAMES[0], targetOption, hResult); copy(HV_NAMES[1], targetOption, vResult); function merge(names, hvIdx) { var newParams = {}; var newValueCount = 0; var merged = {}; var mergedValueCount = 0; var enoughParamNumber = 2; each$3(names, function(name) { merged[name] = targetOption[name]; }); each$3(names, function(name) { hasOwn(newOption, name) && (newParams[name] = merged[name] = newOption[name]); hasValue(newParams, name) && newValueCount++; hasValue(merged, name) && mergedValueCount++; }); if (ignoreSize[hvIdx]) { if (hasValue(newOption, names[1])) merged[names[2]] = null; else if (hasValue(newOption, names[2])) merged[names[1]] = null; return merged; } if (mergedValueCount === enoughParamNumber || !newValueCount) return merged; else if (newValueCount >= enoughParamNumber) return newParams; else { for (var i = 0; i < names.length; i++) { var name_1 = names[i]; if (!hasOwn(newParams, name_1) && hasOwn(targetOption, name_1)) { newParams[name_1] = targetOption[name_1]; break; } } return newParams; } } function hasValue(obj, name) { return obj[name] != null && obj[name] !== "auto"; } function copy(names, target, source) { each$3(names, function(name) { target[name] = source[name]; }); } } /** * Retrieve 'left', 'right', 'top', 'bottom', 'width', 'height' from object. */ function getLayoutParams(source) { return copyLayoutParams({}, source); } /** * Retrieve 'left', 'right', 'top', 'bottom', 'width', 'height' from object. * @param {Object} source * @return {Object} Result contains those props. */ function copyLayoutParams(target, source) { source && target && each$3(LOCATION_PARAMS, function(name) { hasOwn(source, name) && (target[name] = source[name]); }); return target; } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/model/Component.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var inner$7 = makeInner(); var ComponentModel = function(_super) { __extends(ComponentModel, _super); function ComponentModel(option, parentModel, ecModel) { var _this = _super.call(this, option, parentModel, ecModel) || this; _this.uid = getUID("ec_cpt_model"); return _this; } ComponentModel.prototype.init = function(option, parentModel, ecModel) { this.mergeDefaultAndTheme(option, ecModel); }; ComponentModel.prototype.mergeDefaultAndTheme = function(option, ecModel) { var layoutMode = fetchLayoutMode(this); var inputPositionParams = layoutMode ? getLayoutParams(option) : {}; merge(option, ecModel.getTheme().get(this.mainType)); merge(option, this.getDefaultOption()); if (layoutMode) mergeLayoutParam(option, inputPositionParams, layoutMode); }; ComponentModel.prototype.mergeOption = function(option, ecModel) { merge(this.option, option, true); var layoutMode = fetchLayoutMode(this); if (layoutMode) mergeLayoutParam(this.option, option, layoutMode); }; /** * Called immediately after `init` or `mergeOption` of this instance called. */ ComponentModel.prototype.optionUpdated = function(newCptOption, isInit) {}; /** * [How to declare defaultOption]: * * (A) If using class declaration in typescript (since echarts 5): * ```ts * import {ComponentOption} from '../model/option.js'; * export interface XxxOption extends ComponentOption { * aaa: number * } * export class XxxModel extends Component { * static type = 'xxx'; * static defaultOption: XxxOption = { * aaa: 123 * } * } * Component.registerClass(XxxModel); * ``` * ```ts * import {inheritDefaultOption} from '../util/component.js'; * import {XxxModel, XxxOption} from './XxxModel.js'; * export interface XxxSubOption extends XxxOption { * bbb: number * } * class XxxSubModel extends XxxModel { * static defaultOption: XxxSubOption = inheritDefaultOption(XxxModel.defaultOption, { * bbb: 456 * }) * fn() { * let opt = this.getDefaultOption(); * // opt is {aaa: 123, bbb: 456} * } * } * ``` * * (B) If using class extend (previous approach in echarts 3 & 4): * ```js * let XxxComponent = Component.extend({ * defaultOption: { * xx: 123 * } * }) * ``` * ```js * let XxxSubComponent = XxxComponent.extend({ * defaultOption: { * yy: 456 * }, * fn: function () { * let opt = this.getDefaultOption(); * // opt is {xx: 123, yy: 456} * } * }) * ``` */ ComponentModel.prototype.getDefaultOption = function() { var ctor = this.constructor; if (!isExtendedClass(ctor)) return ctor.defaultOption; var fields = inner$7(this); if (!fields.defaultOption) { var optList = []; var clz = ctor; while (clz) { var opt = clz.prototype.defaultOption; opt && optList.push(opt); clz = clz.superClass; } var defaultOption = {}; for (var i = optList.length - 1; i >= 0; i--) defaultOption = merge(defaultOption, optList[i], true); fields.defaultOption = defaultOption; } return fields.defaultOption; }; /** * Notice: always force to input param `useDefault` in case that forget to consider it. * The same behavior as `modelUtil.parseFinder`. * * @param useDefault In many cases like series refer axis and axis refer grid, * If axis index / axis id not specified, use the first target as default. * In other cases like dataZoom refer axis, if not specified, measn no refer. */ ComponentModel.prototype.getReferringComponents = function(mainType, opt) { var indexKey = mainType + "Index"; var idKey = mainType + "Id"; return queryReferringComponents(this.ecModel, mainType, { index: this.get(indexKey, true), id: this.get(idKey, true) }, opt); }; ComponentModel.prototype.getBoxLayoutParams = function() { return getBoxLayoutParams(this, false); }; /** * If developers don't configure zlevel. We will assign zlevel to series based on the key, if provided. * For example, lines with trail effect is expected to be in an individual zlevel. * * @tutorial [GET_ZLEVEL_KEY_FOR_PROGRESSIVE] * Regarding "progressive rendering", zrender can automatically assign a dedicated "incremental layer" * for `el.incremental` per zlevel. But there is a trade-off: * - If we do not provide different zlevelKey for different series here, all incremental elements from * different series will be assigned to one incremental layer, which causes them to cover each other * in an order depending on progressive steps. * i.e., seriesA_el1 -covered_by-> seriesB_el1 -covered_by-> seriesC_el1 -> seriesA_el2 -> seriesB_el2 ... * This order may causes an unexpected visual result: series with small data are likely to be completely * covered by series with large data. (like in test/scatter-weibo.html) * - If we assign a different zlevelKey to each series, the "covering issue" above can be resolved, * but having one HTML Canvas per series may be excessively memory-consuming. * Therefore, we only automatically assign zlevelKey on `ScatterSeries` and `LinesSeries` for backward * compatibility, and not to other series. Users can explicitly assign zlevel if they encouter above * "covering issue". */ ComponentModel.prototype.getZLevelKey = function() { return ""; }; ComponentModel.prototype.setZLevel = function(zlevel) { this.option.zlevel = zlevel; }; ComponentModel.protoInitialize = function() { var proto = ComponentModel.prototype; proto.type = "component"; proto.id = ""; proto.name = ""; proto.mainType = ""; proto.subType = ""; proto.componentIndex = 0; }(); return ComponentModel; }(Model); mountExtend(ComponentModel, Model); enableClassManagement(ComponentModel); enableSubTypeDefaulter(ComponentModel); enableTopologicalTravel(ComponentModel, getDependencies); function getDependencies(componentType) { var deps = []; each$4(ComponentModel.getClassesByMainType(componentType), function(clz) { deps = deps.concat(clz.dependencies || clz.prototype.dependencies || []); }); deps = map$1(deps, function(type) { return parseClassType(type).main; }); if (componentType !== "dataset" && indexOf(deps, "dataset") <= 0) deps.unshift("dataset"); return deps; } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/model/mixin/palette.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var innerColor = makeInner(); makeInner(); var PaletteMixin = function() { function PaletteMixin() {} PaletteMixin.prototype.getColorFromPalette = function(name, scope, requestNum) { var defaultPalette = normalizeToArray(this.get("color", true)); var layeredPalette = this.get("colorLayer", true); return getFromPalette(this, innerColor, defaultPalette, layeredPalette, name, scope, requestNum); }; PaletteMixin.prototype.clearColorPalette = function() { clearPalette(this, innerColor); }; return PaletteMixin; }(); function getNearestPalette(palettes, requestColorNum) { var paletteNum = palettes.length; for (var i = 0; i < paletteNum; i++) if (palettes[i].length > requestColorNum) return palettes[i]; return palettes[paletteNum - 1]; } /** * @param name MUST NOT be null/undefined. Otherwise call this function * twise with the same parameters will get different result. * @param scope default this. * @return Can be null/undefined */ function getFromPalette(that, inner, defaultPalette, layeredPalette, name, scope, requestNum) { scope = scope || that; var scopeFields = inner(scope); var paletteIdx = scopeFields.paletteIdx || 0; var paletteNameMap = scopeFields.paletteNameMap = scopeFields.paletteNameMap || {}; if (paletteNameMap.hasOwnProperty(name)) return paletteNameMap[name]; var palette = requestNum == null || !layeredPalette ? defaultPalette : getNearestPalette(layeredPalette, requestNum); palette = palette || defaultPalette; if (!palette || !palette.length) return; var pickedPaletteItem = palette[paletteIdx]; if (name) paletteNameMap[name] = pickedPaletteItem; scopeFields.paletteIdx = (paletteIdx + 1) % palette.length; return pickedPaletteItem; } function clearPalette(that, inner) { inner(that).paletteIdx = 0; inner(that).paletteNameMap = {}; } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/model/mixin/dataFormat.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var DIMENSION_LABEL_REG = /\{@(.+?)\}/g; var DataFormatMixin = function() { function DataFormatMixin() {} /** * Get params for formatter */ DataFormatMixin.prototype.getDataParams = function(dataIndex, dataType) { var data = this.getData(dataType); var rawValue = this.getRawValue(dataIndex, dataType); var rawDataIndex = data.getRawIndex(dataIndex); var name = data.getName(dataIndex); var itemOpt = data.getRawDataItem(dataIndex); var style = data.getItemVisual(dataIndex, "style"); var color = style && style[data.getItemVisual(dataIndex, "drawType") || "fill"]; var borderColor = style && style.stroke; var mainType = this.mainType; var isSeries = mainType === "series"; var userOutput = data.userOutput && data.userOutput.get(); return { componentType: mainType, componentSubType: this.subType, componentIndex: this.componentIndex, seriesType: isSeries ? this.subType : null, seriesIndex: this.seriesIndex, seriesId: isSeries ? this.id : null, seriesName: isSeries ? this.name : null, name, dataIndex: rawDataIndex, data: itemOpt, dataType, value: rawValue, color, borderColor, dimensionNames: userOutput ? userOutput.fullDimensions : null, encode: userOutput ? userOutput.encode : null, $vars: [ "seriesName", "name", "value" ] }; }; /** * Format label * @param dataIndex * @param status 'normal' by default * @param dataType * @param labelDimIndex Only used in some chart that * use formatter in different dimensions, like radar. * @param formatter Formatter given outside. * @return return null/undefined if no formatter */ DataFormatMixin.prototype.getFormattedLabel = function(dataIndex, status, dataType, labelDimIndex, formatter, extendParams) { status = status || "normal"; var data = this.getData(dataType); var params = this.getDataParams(dataIndex, dataType); if (extendParams) params.value = extendParams.interpolatedValue; if (labelDimIndex != null && isArray(params.value)) params.value = params.value[labelDimIndex]; if (!formatter) formatter = data.getItemModel(dataIndex).get(status === "normal" ? ["label", "formatter"] : [ status, "label", "formatter" ]); if (isFunction(formatter)) { params.status = status; params.dimensionIndex = labelDimIndex; return formatter(params); } else if (isString(formatter)) return formatTpl(formatter, params).replace(DIMENSION_LABEL_REG, function(origin, dimStr) { var len = dimStr.length; var dimLoose = dimStr; if (dimLoose.charAt(0) === "[" && dimLoose.charAt(len - 1) === "]") dimLoose = +dimLoose.slice(1, len - 1); var val = retrieveRawValue(data, dataIndex, dimLoose); if (extendParams && isArray(extendParams.interpolatedValue)) { var dimIndex = data.getDimensionIndex(dimLoose); if (dimIndex >= 0) val = extendParams.interpolatedValue[dimIndex]; } return val != null ? val + "" : ""; }); }; /** * Get raw value in option */ DataFormatMixin.prototype.getRawValue = function(idx, dataType) { return retrieveRawValue(this.getData(dataType), idx); }; /** * Should be implemented. * @param {number} dataIndex * @param {boolean} [multipleSeries=false] * @param {string} [dataType] */ DataFormatMixin.prototype.formatTooltip = function(dataIndex, multipleSeries, dataType) {}; return DataFormatMixin; }(); /** * For backward compat, normalize the return from `formatTooltip`. */ function normalizeTooltipFormatResult(result) { var markupText; var markupFragment; if (isObject$2(result)) { if (result.type) markupFragment = result; } else markupText = result; return { text: markupText, frag: markupFragment }; } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/core/task.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ /** * @param {Object} define * @return See the return of `createTask`. */ function createTask(define) { return new Task(define); } var Task = function() { function Task(define) { define = define || {}; this._reset = define.reset; this._plan = define.plan; this._count = define.count; this._onDirty = define.onDirty; this._dirty = true; } /** * @param step Specified step. * @param skip Skip customer perform call. * @param modBy Sampling window size. * @param modDataCount Sampling count. * @return whether unfinished. */ Task.prototype.perform = function(performArgs) { var upTask = this._upstream; var skip = performArgs && performArgs.skip; if (this._dirty && upTask) { var context = this.context; context.data = context.outputData = upTask.context.outputData; } if (this.__pipeline) this.__pipeline.currentTask = this; var planResult; if (this._plan && !skip) planResult = this._plan(this.context); var lastModBy = normalizeModBy(this._modBy); var lastModDataCount = this._modDataCount || 0; var modBy = normalizeModBy(performArgs && performArgs.modBy); var modDataCount = performArgs && performArgs.modDataCount || 0; if (lastModBy !== modBy || lastModDataCount !== modDataCount) planResult = "reset"; function normalizeModBy(val) { !(val >= 1) && (val = 1); return val; } var forceFirstProgress; if (this._dirty || planResult === "reset") { this._dirty = false; forceFirstProgress = this._doReset(skip); } this._modBy = modBy; this._modDataCount = modDataCount; var step = performArgs && performArgs.step; if (upTask) this._dueEnd = upTask._outputDueEnd; else this._dueEnd = this._count ? this._count(this.context) : Infinity; if (this._progress) { var start = this._dueIndex; var end = Math.min(step != null ? this._dueIndex + step : Infinity, this._dueEnd); if (!skip && (forceFirstProgress || start < end)) { var progress = this._progress; if (isArray(progress)) for (var i = 0; i < progress.length; i++) this._doProgress(progress[i], start, end, modBy, modDataCount); else this._doProgress(progress, start, end, modBy, modDataCount); } this._dueIndex = end; var outputDueEnd = this._settedOutputEnd != null ? this._settedOutputEnd : end; this._outputDueEnd = outputDueEnd; } else this._dueIndex = this._outputDueEnd = this._settedOutputEnd != null ? this._settedOutputEnd : this._dueEnd; return this.unfinished(); }; /** * @tutorial [EC_TASK_DIRTY] * Task `dirty()` calls typically originate from a trigger of EC_FULL_UPDATE_CYCLE and * EC_PARTIAL_UPDATE_CYCLE) (See comments in EC_CYCLE. Generally, task dirty propagates * to downstream tasks. * Task dirty leads to the `StageHandler['reset']` or `StageHandler['overallReset']` call, * which discards the previous result and starts over the processing. */ Task.prototype.dirty = function() { this._dirty = true; this._onDirty && this._onDirty(this.context); }; Task.prototype._doProgress = function(progress, start, end, modBy, modDataCount) { iterator.reset(start, end, modBy, modDataCount); this._callingProgress = progress; this._callingProgress({ start, end, count: end - start, next: iterator.next }, this.context); }; Task.prototype._doReset = function(skip) { this._dueIndex = this._outputDueEnd = this._dueEnd = 0; this._settedOutputEnd = null; var progress; var forceFirstProgress; if (!skip && this._reset) { progress = this._reset(this.context); if (progress && progress.progress) { forceFirstProgress = progress.forceFirstProgress; progress = progress.progress; } if (isArray(progress) && !progress.length) progress = null; } this._progress = progress; this._modBy = this._modDataCount = null; var downstream = this._downstream; downstream && downstream.dirty(); return forceFirstProgress; }; Task.prototype.unfinished = function() { return this._progress && this._dueIndex < this._dueEnd; }; /** * @param downTask The downstream task. * @return The downstream task. */ Task.prototype.pipe = function(downTask) { if (this._downstream !== downTask || this._dirty) { this._downstream = downTask; downTask._upstream = this; downTask.dirty(); } }; Task.prototype.dispose = function() { if (this._disposed) return; this._upstream && (this._upstream._downstream = null); this._downstream && (this._downstream._upstream = null); this._dirty = false; this._disposed = true; }; Task.prototype.getUpstream = function() { return this._upstream; }; Task.prototype.getDownstream = function() { return this._downstream; }; Task.prototype.setOutputEnd = function(end) { this._outputDueEnd = this._settedOutputEnd = end; }; return Task; }(); var iterator = function() { var end; var current; var modBy; var modDataCount; var winCount; var it = { reset: function(s, e, sStep, sCount) { current = s; end = e; modBy = sStep; modDataCount = sCount; winCount = Math.ceil(modDataCount / modBy); it.next = modBy > 1 && modDataCount > 0 ? modNext : sequentialNext; } }; return it; function sequentialNext() { return current < end ? current++ : null; } function modNext() { var dataIndex = current % winCount * modBy + Math.ceil(current / winCount); var result = current >= end ? null : dataIndex < modDataCount ? dataIndex : current; current++; return result; } }(); //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/data/helper/transform.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ /** * TODO: disable writable. * This structure will be exposed to users. */ var ExternalSource = function() { function ExternalSource() {} ExternalSource.prototype.getRawData = function() { throw new Error("not supported"); }; ExternalSource.prototype.getRawDataItem = function(dataIndex) { throw new Error("not supported"); }; ExternalSource.prototype.cloneRawData = function() {}; /** * @return If dimension not found, return null/undefined. */ ExternalSource.prototype.getDimensionInfo = function(dim) {}; /** * dimensions defined if and only if either: * (a) dataset.dimensions are declared. * (b) dataset data include dimensions definitions in data (detected or via specified `sourceHeader`). * If dimensions are defined, `dimensionInfoAll` is corresponding to * the defined dimensions. * Otherwise, `dimensionInfoAll` is determined by data columns. * @return Always return an array (even empty array). */ ExternalSource.prototype.cloneAllDimensionInfo = function() {}; ExternalSource.prototype.count = function() {}; /** * Only support by dimension index. * No need to support by dimension name in transform function, * because transform function is not case-specific, no need to use name literally. */ ExternalSource.prototype.retrieveValue = function(dataIndex, dimIndex) {}; ExternalSource.prototype.retrieveValueFromItem = function(dataItem, dimIndex) {}; ExternalSource.prototype.convertValue = function(rawVal, dimInfo) { return parseDataValue(rawVal, dimInfo); }; return ExternalSource; }(); function createExternalSource(internalSource, externalTransform) { var extSource = new ExternalSource(); var data = internalSource.data; var sourceFormat = extSource.sourceFormat = internalSource.sourceFormat; var sourceHeaderCount = internalSource.startIndex; var errMsg = ""; if (internalSource.seriesLayoutBy !== "column") throwError(errMsg); var dimensions = []; var dimsByName = {}; var dimsDef = internalSource.dimensionsDefine; if (dimsDef) each$4(dimsDef, function(dimDef, idx) { var name = dimDef.name; var dimDefExt = { index: idx, name, displayName: dimDef.displayName }; dimensions.push(dimDefExt); if (name != null) { var errMsg_1 = ""; if (hasOwn(dimsByName, name)) throwError(errMsg_1); dimsByName[name] = dimDefExt; } }); else for (var i = 0; i < internalSource.dimensionsDetectedCount || 0; i++) dimensions.push({ index: i }); var rawItemGetter = getRawSourceItemGetter(sourceFormat, SERIES_LAYOUT_BY_COLUMN); if (externalTransform.__isBuiltIn) { extSource.getRawDataItem = function(dataIndex) { return rawItemGetter(data, sourceHeaderCount, dimensions, dataIndex); }; extSource.getRawData = bind$1(getRawData, null, internalSource); } extSource.cloneRawData = bind$1(cloneRawData, null, internalSource); extSource.count = bind$1(getRawSourceDataCounter(sourceFormat, SERIES_LAYOUT_BY_COLUMN), null, data, sourceHeaderCount, dimensions); var rawValueGetter = getRawSourceValueGetter(sourceFormat); extSource.retrieveValue = function(dataIndex, dimIndex) { return retrieveValueFromItem(rawItemGetter(data, sourceHeaderCount, dimensions, dataIndex), dimIndex); }; var retrieveValueFromItem = extSource.retrieveValueFromItem = function(dataItem, dimIndex) { if (dataItem == null) return; var dimDef = dimensions[dimIndex]; if (dimDef) return rawValueGetter(dataItem, dimIndex, dimDef.name); }; extSource.getDimensionInfo = bind$1(getDimensionInfo, null, dimensions, dimsByName); extSource.cloneAllDimensionInfo = bind$1(cloneAllDimensionInfo, null, dimensions); return extSource; } function getRawData(upstream) { var sourceFormat = upstream.sourceFormat; if (!isSupportedSourceFormat(sourceFormat)) throwError(""); return upstream.data; } function cloneRawData(upstream) { var sourceFormat = upstream.sourceFormat; var data = upstream.data; if (!isSupportedSourceFormat(sourceFormat)) throwError(""); if (sourceFormat === "arrayRows") { var result = []; for (var i = 0, len = data.length; i < len; i++) result.push(data[i].slice()); return result; } else if (sourceFormat === "objectRows") { var result = []; for (var i = 0, len = data.length; i < len; i++) result.push(extend({}, data[i])); return result; } } function getDimensionInfo(dimensions, dimsByName, dim) { if (dim == null) return; if (isNumber(dim) || !isNaN(dim) && !hasOwn(dimsByName, dim)) return dimensions[dim]; else if (hasOwn(dimsByName, dim)) return dimsByName[dim]; } function cloneAllDimensionInfo(dimensions) { return clone$2(dimensions); } var externalTransformMap = createHashMap(); function registerExternalTransform(externalTransform) { externalTransform = clone$2(externalTransform); var type = externalTransform.type; var errMsg = ""; if (!type) throwError(errMsg); var typeParsed = type.split(":"); if (typeParsed.length !== 2) throwError(errMsg); var isBuiltIn = false; if (typeParsed[0] === "echarts") { type = typeParsed[1]; isBuiltIn = true; } externalTransform.__isBuiltIn = isBuiltIn; externalTransformMap.set(type, externalTransform); } function applyDataTransform(rawTransOption, sourceList, infoForPrint) { var pipedTransOption = normalizeToArray(rawTransOption); var pipeLen = pipedTransOption.length; var errMsg = ""; if (!pipeLen) throwError(errMsg); for (var i = 0, len = pipeLen; i < len; i++) { var transOption = pipedTransOption[i]; sourceList = applySingleDataTransform(transOption, sourceList, infoForPrint, pipeLen === 1 ? null : i); if (i !== len - 1) sourceList.length = Math.max(sourceList.length, 1); } return sourceList; } function applySingleDataTransform(transOption, upSourceList, infoForPrint, pipeIndex) { var errMsg = ""; if (!upSourceList.length) throwError(errMsg); if (!isObject$2(transOption)) throwError(errMsg); var transType = transOption.type; var externalTransform = externalTransformMap.get(transType); if (!externalTransform) throwError(errMsg); var extUpSourceList = map$1(upSourceList, function(upSource) { return createExternalSource(upSource, externalTransform); }); return map$1(normalizeToArray(externalTransform.transform({ upstream: extUpSourceList[0], upstreamList: extUpSourceList, config: clone$2(transOption.config) })), function(result, resultIndex) { var errMsg = ""; if (!isObject$2(result)) throwError(errMsg); if (!result.data) throwError(errMsg); if (!isSupportedSourceFormat(detectSourceFormat(result.data))) throwError(errMsg); var resultMetaRawOption; var firstUpSource = upSourceList[0]; /** * Intuitively, the end users known the content of the original `dataset.source`, * calucating the transform result in mind. * Suppose the original `dataset.source` is: * ```js * [ * ['product', '2012', '2013', '2014', '2015'], * ['AAA', 41.1, 30.4, 65.1, 53.3], * ['BBB', 86.5, 92.1, 85.7, 83.1], * ['CCC', 24.1, 67.2, 79.5, 86.4] * ] * ``` * The dimension info have to be detected from the source data. * Some of the transformers (like filter, sort) will follow the dimension info * of upstream, while others use new dimensions (like aggregate). * Transformer can output a field `dimensions` to define the its own output dimensions. * We also allow transformers to ignore the output `dimensions` field, and * inherit the upstream dimensions definition. It can reduce the burden of handling * dimensions in transformers. * * See also [DIMENSION_INHERIT_RULE] in `sourceManager.ts`. */ if (firstUpSource && resultIndex === 0 && !result.dimensions) { var startIndex = firstUpSource.startIndex; if (startIndex) result.data = firstUpSource.data.slice(0, startIndex).concat(result.data); resultMetaRawOption = { seriesLayoutBy: SERIES_LAYOUT_BY_COLUMN, sourceHeader: startIndex, dimensions: firstUpSource.metaRawOption.dimensions }; } else resultMetaRawOption = { seriesLayoutBy: SERIES_LAYOUT_BY_COLUMN, sourceHeader: 0, dimensions: result.dimensions }; return createSource(result.data, resultMetaRawOption, null); }); } function isSupportedSourceFormat(sourceFormat) { return sourceFormat === "arrayRows" || sourceFormat === "objectRows"; } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/data/helper/sourceManager.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ /** * [REQUIREMENT_MEMO]: * (0) `metaRawOption` means `dimensions`/`sourceHeader`/`seriesLayoutBy` in raw option. * (1) Keep support the feature: `metaRawOption` can be specified both on `series` and * `root-dataset`. Them on `series` has higher priority. * (2) Do not support to set `metaRawOption` on a `non-root-dataset`, because it might * confuse users: whether those props indicate how to visit the upstream source or visit * the transform result source, and some transforms has nothing to do with these props, * and some transforms might have multiple upstream. * (3) Transforms should specify `metaRawOption` in each output, just like they can be * declared in `root-dataset`. * (4) At present only support visit source in `SERIES_LAYOUT_BY_COLUMN` in transforms. * That is for reducing complexity in transforms. * PENDING: Whether to provide transposition transform? * * [IMPLEMENTAION_MEMO]: * "sourceVisitConfig" are calculated from `metaRawOption` and `data`. * They will not be calculated until `source` is about to be visited (to prevent from * duplicate calcuation). `source` is visited only in series and input to transforms. * * [DIMENSION_INHERIT_RULE]: * By default the dimensions are inherited from ancestors, unless a transform return * a new dimensions definition. * Consider the case: * ```js * dataset: [{ * source: [ ['Product', 'Sales', 'Prise'], ['Cookies', 321, 44.21], ...] * }, { * transform: { type: 'filter', ... } * }] * dataset: [{ * dimension: ['Product', 'Sales', 'Prise'], * source: [ ['Cookies', 321, 44.21], ...] * }, { * transform: { type: 'filter', ... } * }] * ``` * The two types of option should have the same behavior after transform. * * * [SCENARIO]: * (1) Provide source data directly: * ```js * series: { * encode: {...}, * dimensions: [...] * seriesLayoutBy: 'row', * data: [[...]] * } * ``` * (2) Series refer to dataset. * ```js * series: [{ * encode: {...} * // Ignore datasetIndex means `datasetIndex: 0` * // and the dimensions defination in dataset is used * }, { * encode: {...}, * seriesLayoutBy: 'column', * datasetIndex: 1 * }] * ``` * (3) dataset transform * ```js * dataset: [{ * source: [...] * }, { * source: [...] * }, { * // By default from 0. * transform: { type: 'filter', config: {...} } * }, { * // Piped. * transform: [ * { type: 'filter', config: {...} }, * { type: 'sort', config: {...} } * ] * }, { * id: 'regressionData', * fromDatasetIndex: 1, * // Third-party transform * transform: { type: 'ecStat:regression', config: {...} } * }, { * // retrieve the extra result. * id: 'regressionFormula', * fromDatasetId: 'regressionData', * fromTransformResult: 1 * }] * ``` */ var SourceManager = function() { function SourceManager(sourceHost) { this._sourceList = []; this._storeList = []; this._upstreamSignList = []; this._versionSignBase = 0; this._dirty = true; this._sourceHost = sourceHost; } /** * Mark dirty. */ SourceManager.prototype.dirty = function() { this._setLocalSource([], []); this._storeList = []; this._dirty = true; }; SourceManager.prototype._setLocalSource = function(sourceList, upstreamSignList) { this._sourceList = sourceList; this._upstreamSignList = upstreamSignList; this._versionSignBase++; if (this._versionSignBase > 9e10) this._versionSignBase = 0; }; /** * For detecting whether the upstream source is dirty, so that * the local cached source (in `_sourceList`) should be discarded. */ SourceManager.prototype._getVersionSign = function() { return this._sourceHost.uid + "_" + this._versionSignBase; }; /** * Always return a source instance. Otherwise throw error. */ SourceManager.prototype.prepareSource = function() { if (this._isDirty()) { this._createSource(); this._dirty = false; } }; SourceManager.prototype._createSource = function() { this._setLocalSource([], []); var sourceHost = this._sourceHost; var upSourceMgrList = this._getUpstreamSourceManagers(); var hasUpstream = !!upSourceMgrList.length; var resultSourceList; var upstreamSignList; if (isSeries(sourceHost)) { var seriesModel = sourceHost; var data = void 0; var sourceFormat = void 0; var upSource = void 0; if (hasUpstream) { var upSourceMgr = upSourceMgrList[0]; upSourceMgr.prepareSource(); upSource = upSourceMgr.getSource(); data = upSource.data; sourceFormat = upSource.sourceFormat; upstreamSignList = [upSourceMgr._getVersionSign()]; } else { data = seriesModel.get("data", true); sourceFormat = isTypedArray(data) ? SOURCE_FORMAT_TYPED_ARRAY : SOURCE_FORMAT_ORIGINAL; upstreamSignList = []; } var newMetaRawOption = this._getSourceMetaRawOption() || {}; var upMetaRawOption = upSource && upSource.metaRawOption || {}; var seriesLayoutBy = retrieve2(newMetaRawOption.seriesLayoutBy, upMetaRawOption.seriesLayoutBy) || null; var sourceHeader = retrieve2(newMetaRawOption.sourceHeader, upMetaRawOption.sourceHeader); var dimensions = retrieve2(newMetaRawOption.dimensions, upMetaRawOption.dimensions); resultSourceList = seriesLayoutBy !== upMetaRawOption.seriesLayoutBy || !!sourceHeader !== !!upMetaRawOption.sourceHeader || dimensions ? [createSource(data, { seriesLayoutBy, sourceHeader, dimensions }, sourceFormat)] : []; } else { var datasetModel = sourceHost; if (hasUpstream) { var result = this._applyTransform(upSourceMgrList); resultSourceList = result.sourceList; upstreamSignList = result.upstreamSignList; } else { resultSourceList = [createSource(datasetModel.get("source", true), this._getSourceMetaRawOption(), null)]; upstreamSignList = []; } } this._setLocalSource(resultSourceList, upstreamSignList); }; SourceManager.prototype._applyTransform = function(upMgrList) { var datasetModel = this._sourceHost; var transformOption = datasetModel.get("transform", true); var fromTransformResult = datasetModel.get("fromTransformResult", true); if (fromTransformResult != null) { var errMsg = ""; if (upMgrList.length !== 1) doThrow(errMsg); } var sourceList; var upSourceList = []; var upstreamSignList = []; each$4(upMgrList, function(upMgr) { upMgr.prepareSource(); var upSource = upMgr.getSource(fromTransformResult || 0); var errMsg = ""; if (fromTransformResult != null && !upSource) doThrow(errMsg); upSourceList.push(upSource); upstreamSignList.push(upMgr._getVersionSign()); }); if (transformOption) sourceList = applyDataTransform(transformOption, upSourceList, { datasetIndex: datasetModel.componentIndex }); else if (fromTransformResult != null) sourceList = [cloneSourceShallow(upSourceList[0])]; return { sourceList, upstreamSignList }; }; SourceManager.prototype._isDirty = function() { if (this._dirty) return true; var upSourceMgrList = this._getUpstreamSourceManagers(); for (var i = 0; i < upSourceMgrList.length; i++) { var upSrcMgr = upSourceMgrList[i]; if (upSrcMgr._isDirty() || this._upstreamSignList[i] !== upSrcMgr._getVersionSign()) return true; } }; /** * @param sourceIndex By default 0, means "main source". * In most cases there is only one source. */ SourceManager.prototype.getSource = function(sourceIndex) { sourceIndex = sourceIndex || 0; var source = this._sourceList[sourceIndex]; if (!source) { var upSourceMgrList = this._getUpstreamSourceManagers(); return upSourceMgrList[0] && upSourceMgrList[0].getSource(sourceIndex); } return source; }; /** * * Get a data store which can be shared across series. * Only available for series. * * @param seriesDimRequest Dimensions that are generated in series. * Should have been sorted by `storeDimIndex` asc. */ SourceManager.prototype.getSharedDataStore = function(seriesDimRequest) { var schema = seriesDimRequest.makeStoreSchema(); return this._innerGetDataStore(schema.dimensions, seriesDimRequest.source, schema.hash); }; SourceManager.prototype._innerGetDataStore = function(storeDims, seriesSource, sourceReadKey) { var sourceIndex = 0; var storeList = this._storeList; var cachedStoreMap = storeList[sourceIndex]; if (!cachedStoreMap) cachedStoreMap = storeList[sourceIndex] = {}; var cachedStore = cachedStoreMap[sourceReadKey]; if (!cachedStore) { var upSourceMgr = this._getUpstreamSourceManagers()[0]; if (isSeries(this._sourceHost) && upSourceMgr) cachedStore = upSourceMgr._innerGetDataStore(storeDims, seriesSource, sourceReadKey); else { cachedStore = new DataStore(); cachedStore.initData(new DefaultDataProvider(seriesSource, storeDims.length), storeDims); } cachedStoreMap[sourceReadKey] = cachedStore; } return cachedStore; }; /** * PENDING: Is it fast enough? * If no upstream, return empty array. */ SourceManager.prototype._getUpstreamSourceManagers = function() { var sourceHost = this._sourceHost; if (isSeries(sourceHost)) { var datasetModel = querySeriesUpstreamDatasetModel(sourceHost); return !datasetModel ? [] : [datasetModel.getSourceManager()]; } else return map$1(queryDatasetUpstreamDatasetModels(sourceHost), function(datasetModel) { return datasetModel.getSourceManager(); }); }; SourceManager.prototype._getSourceMetaRawOption = function() { var sourceHost = this._sourceHost; var seriesLayoutBy; var sourceHeader; var dimensions; if (isSeries(sourceHost)) { seriesLayoutBy = sourceHost.get("seriesLayoutBy", true); sourceHeader = sourceHost.get("sourceHeader", true); dimensions = sourceHost.get("dimensions", true); } else if (!this._getUpstreamSourceManagers().length) { var model = sourceHost; seriesLayoutBy = model.get("seriesLayoutBy", true); sourceHeader = model.get("sourceHeader", true); dimensions = model.get("dimensions", true); } return { seriesLayoutBy, sourceHeader, dimensions }; }; return SourceManager; }(); function isSeries(sourceHost) { return sourceHost.mainType === "series"; } function doThrow(errMsg) { throw new Error(errMsg); } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/visual/tokens.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var tokens = { color: {}, darkColor: {}, size: {} }; var color$1 = tokens.color = { theme: [ "#5070dd", "#b6d634", "#505372", "#ff994d", "#0ca8df", "#ffd10a", "#fb628b", "#785db0", "#3fbe95" ], neutral00: "#fff", neutral05: "#f4f7fd", neutral10: "#e8ebf0", neutral15: "#dbdee4", neutral20: "#cfd2d7", neutral25: "#c3c5cb", neutral30: "#b7b9be", neutral35: "#aaacb2", neutral40: "#9ea0a5", neutral45: "#929399", neutral50: "#86878c", neutral55: "#797b7f", neutral60: "#6d6e73", neutral65: "#616266", neutral70: "#54555a", neutral75: "#48494d", neutral80: "#3c3c41", neutral85: "#303034", neutral90: "#232328", neutral95: "#17171b", neutral99: "#000", accent05: "#eff1f9", accent10: "#e0e4f2", accent15: "#d0d6ec", accent20: "#c0c9e6", accent25: "#b1bbdf", accent30: "#a1aed9", accent35: "#91a0d3", accent40: "#8292cc", accent45: "#7285c6", accent50: "#6578ba", accent55: "#5c6da9", accent60: "#536298", accent65: "#4a5787", accent70: "#404c76", accent75: "#374165", accent80: "#2e3654", accent85: "#252b43", accent90: "#1b2032", accent95: "#121521", transparent: "rgba(0,0,0,0)", highlight: "rgba(255,231,130,0.8)" }; extend(color$1, { primary: color$1.neutral80, secondary: color$1.neutral70, tertiary: color$1.neutral60, quaternary: color$1.neutral50, disabled: color$1.neutral20, border: color$1.neutral30, borderTint: color$1.neutral20, borderShade: color$1.neutral40, background: color$1.neutral05, backgroundTint: "rgba(234,237,245,0.5)", backgroundTransparent: "rgba(255,255,255,0)", backgroundShade: color$1.neutral10, shadow: "rgba(0,0,0,0.2)", shadowTint: "rgba(129,130,136,0.2)", axisLine: color$1.neutral70, axisLineTint: color$1.neutral40, axisTick: color$1.neutral70, axisTickMinor: color$1.neutral60, axisLabel: color$1.neutral70, axisSplitLine: color$1.neutral15, axisMinorSplitLine: color$1.neutral05 }); for (var key in color$1) if (color$1.hasOwnProperty(key)) { var hex = color$1[key]; if (key === "theme") tokens.darkColor.theme = color$1.theme.slice(); else if (key === "highlight") tokens.darkColor.highlight = "rgba(255,231,130,0.4)"; else if (key.indexOf("accent") === 0) tokens.darkColor[key] = modifyHSL(hex, null, function(s) { return s * .5; }, function(l) { return Math.min(1, 1.3 - l); }); else tokens.darkColor[key] = modifyHSL(hex, null, function(s) { return s * .9; }, function(l) { return 1 - Math.pow(l, 1.5); }); } tokens.size = { xxs: 2, xs: 5, s: 10, m: 15, l: 20, xl: 30, xxl: 40, xxxl: 50 }; //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/component/tooltip/tooltipMarkup.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var TOOLTIP_LINE_HEIGHT_CSS = "line-height:1"; function getTooltipLineHeight(textStyle) { var lineHeight = textStyle.lineHeight; if (lineHeight == null) return TOOLTIP_LINE_HEIGHT_CSS; else return "line-height:" + encodeHTML(lineHeight + "") + "px"; } function getTooltipTextStyle(textStyle, renderMode) { var nameFontColor = textStyle.color || tokens.color.tertiary; var nameFontSize = textStyle.fontSize || 12; var nameFontWeight = textStyle.fontWeight || "400"; var valueFontColor = textStyle.color || tokens.color.secondary; var valueFontSize = textStyle.fontSize || 14; var valueFontWeight = textStyle.fontWeight || "900"; if (renderMode === "html") return { nameStyle: "font-size:" + encodeHTML(nameFontSize + "") + "px;color:" + encodeHTML(nameFontColor) + ";font-weight:" + encodeHTML(nameFontWeight + ""), valueStyle: "font-size:" + encodeHTML(valueFontSize + "") + "px;color:" + encodeHTML(valueFontColor) + ";font-weight:" + encodeHTML(valueFontWeight + "") }; else return { nameStyle: { fontSize: nameFontSize, fill: nameFontColor, fontWeight: nameFontWeight }, valueStyle: { fontSize: valueFontSize, fill: valueFontColor, fontWeight: valueFontWeight } }; } var HTML_GAPS = [ 0, 10, 20, 30 ]; var RICH_TEXT_GAPS = [ "", "\n", "\n\n", "\n\n\n" ]; function createTooltipMarkup(type, option) { option.type = type; return option; } function isSectionFragment(frag) { return frag.type === "section"; } function getBuilder(frag) { return isSectionFragment(frag) ? buildSection : buildNameValue; } function getBlockGapLevel(frag) { if (isSectionFragment(frag)) { var gapLevel_1 = 0; var subBlockLen = frag.blocks.length; var hasInnerGap_1 = subBlockLen > 1 || subBlockLen > 0 && !frag.noHeader; each$4(frag.blocks, function(subBlock) { var subGapLevel = getBlockGapLevel(subBlock); if (subGapLevel >= gapLevel_1) gapLevel_1 = subGapLevel + +(hasInnerGap_1 && (!subGapLevel || isSectionFragment(subBlock) && !subBlock.noHeader)); }); return gapLevel_1; } return 0; } function buildSection(ctx, fragment, topMarginForOuterGap, toolTipTextStyle) { var noHeader = fragment.noHeader; var gaps = getGap(getBlockGapLevel(fragment)); var subMarkupTextList = []; var subBlocks = fragment.blocks || []; assert(!subBlocks || isArray(subBlocks)); subBlocks = subBlocks || []; var orderMode = ctx.orderMode; if (fragment.sortBlocks && orderMode) { subBlocks = subBlocks.slice(); var orderMap = { valueAsc: "asc", valueDesc: "desc" }; if (hasOwn(orderMap, orderMode)) { var comparator_1 = new SortOrderComparator(orderMap[orderMode], null); subBlocks.sort(function(a, b) { return comparator_1.evaluate(a.sortParam, b.sortParam); }); } else if (orderMode === "seriesDesc") subBlocks.reverse(); } each$4(subBlocks, function(subBlock, idx) { var valueFormatter = fragment.valueFormatter; var subMarkupText = getBuilder(subBlock)(valueFormatter ? extend(extend({}, ctx), { valueFormatter }) : ctx, subBlock, idx > 0 ? gaps.html : 0, toolTipTextStyle); subMarkupText != null && subMarkupTextList.push(subMarkupText); }); var subMarkupText = ctx.renderMode === "richText" ? subMarkupTextList.join(gaps.richText) : wrapBlockHTML(toolTipTextStyle, subMarkupTextList.join(""), noHeader ? topMarginForOuterGap : gaps.html); if (noHeader) return subMarkupText; var displayableHeader = makeValueReadable(fragment.header, "ordinal", ctx.useUTC); var nameStyle = getTooltipTextStyle(toolTipTextStyle, ctx.renderMode).nameStyle; var tooltipLineHeight = getTooltipLineHeight(toolTipTextStyle); if (ctx.renderMode === "richText") return wrapInlineNameRichText(ctx, displayableHeader, nameStyle) + gaps.richText + subMarkupText; else return wrapBlockHTML(toolTipTextStyle, "
" + encodeHTML(displayableHeader) + "
" + subMarkupText, topMarginForOuterGap); } function buildNameValue(ctx, fragment, topMarginForOuterGap, toolTipTextStyle) { var renderMode = ctx.renderMode; var noName = fragment.noName; var noValue = fragment.noValue; var noMarker = !fragment.markerType; var name = fragment.name; var useUTC = ctx.useUTC; var valueFormatter = fragment.valueFormatter || ctx.valueFormatter || function(value) { value = isArray(value) ? value : [value]; return map$1(value, function(val, idx) { return makeValueReadable(val, isArray(valueTypeOption) ? valueTypeOption[idx] : valueTypeOption, useUTC); }); }; if (noName && noValue) return; var markerStr = noMarker ? "" : ctx.markupStyleCreator.makeTooltipMarker(fragment.markerType, fragment.markerColor || tokens.color.secondary, renderMode); var readableName = noName ? "" : makeValueReadable(name, "ordinal", useUTC); var valueTypeOption = fragment.valueType; var readableValueList = noValue ? [] : valueFormatter(fragment.value, fragment.rawDataIndex); var valueAlignRight = !noMarker || !noName; var valueCloseToMarker = !noMarker && noName; var _a = getTooltipTextStyle(toolTipTextStyle, renderMode), nameStyle = _a.nameStyle, valueStyle = _a.valueStyle; return renderMode === "richText" ? (noMarker ? "" : markerStr) + (noName ? "" : wrapInlineNameRichText(ctx, readableName, nameStyle)) + (noValue ? "" : wrapInlineValueRichText(ctx, readableValueList, valueAlignRight, valueCloseToMarker, valueStyle)) : wrapBlockHTML(toolTipTextStyle, (noMarker ? "" : markerStr) + (noName ? "" : wrapInlineNameHTML(readableName, !noMarker, nameStyle)) + (noValue ? "" : wrapInlineValueHTML(readableValueList, valueAlignRight, valueCloseToMarker, valueStyle)), topMarginForOuterGap); } /** * @return markupText. null/undefined means no content. */ function buildTooltipMarkup(fragment, markupStyleCreator, renderMode, orderMode, useUTC, toolTipTextStyle) { if (!fragment) return; return getBuilder(fragment)({ useUTC, renderMode, orderMode, markupStyleCreator, valueFormatter: fragment.valueFormatter }, fragment, 0, toolTipTextStyle); } function getGap(gapLevel) { return { html: HTML_GAPS[gapLevel], richText: RICH_TEXT_GAPS[gapLevel] }; } function wrapBlockHTML(textStyle, encodedContent, topGap) { var clearfix = "
"; var marginCSS = "margin: " + topGap + "px 0 0"; var tooltipLineHeight = getTooltipLineHeight(textStyle); return "
" + encodedContent + clearfix + "
"; } function wrapInlineNameHTML(name, leftHasMarker, style) { var marginCss = leftHasMarker ? "margin-left:2px" : ""; return "" + encodeHTML(name) + ""; } function wrapInlineValueHTML(valueList, alignRight, valueCloseToMarker, style) { var alignCSS = alignRight ? "float:right;margin-left:" + (valueCloseToMarker ? "10px" : "20px") : ""; valueList = isArray(valueList) ? valueList : [valueList]; return "" + map$1(valueList, function(value) { return encodeHTML(value); }).join("  ") + ""; } function wrapInlineNameRichText(ctx, name, style) { return ctx.markupStyleCreator.wrapRichTextStyle(name, style); } function wrapInlineValueRichText(ctx, values, alignRight, valueCloseToMarker, style) { var styles = [style]; var paddingLeft = valueCloseToMarker ? 10 : 20; alignRight && styles.push({ padding: [ 0, 0, 0, paddingLeft ], align: "right" }); return ctx.markupStyleCreator.wrapRichTextStyle(isArray(values) ? values.join(" ") : values, styles); } function retrieveVisualColorForTooltipMarker(series, dataIndex) { var color = series.getData().getItemVisual(dataIndex, "style")[series.visualDrawType]; return convertToColorString(color); } function getPaddingFromTooltipModel(model, renderMode) { var padding = model.get("padding"); return padding != null ? padding : renderMode === "richText" ? [8, 10] : 10; } /** * The major feature is generate styles for `renderMode: 'richText'`. * But it also serves `renderMode: 'html'` to provide * "renderMode-independent" API. */ var TooltipMarkupStyleCreator = function() { function TooltipMarkupStyleCreator() { this.richTextStyles = {}; this._nextStyleNameId = getRandomIdBase(); } TooltipMarkupStyleCreator.prototype._generateStyleName = function() { return "__EC_aUTo_" + this._nextStyleNameId++; }; TooltipMarkupStyleCreator.prototype.makeTooltipMarker = function(markerType, colorStr, renderMode) { var markerId = renderMode === "richText" ? this._generateStyleName() : null; var marker = getTooltipMarker({ color: colorStr, type: markerType, renderMode, markerId }); if (isString(marker)) return marker; else { this.richTextStyles[markerId] = marker.style; return marker.content; } }; /** * @usage * ```ts * const styledText = markupStyleCreator.wrapRichTextStyle([ * // The styles will be auto merged. * { * fontSize: 12, * color: 'blue' * }, * { * padding: 20 * } * ]); * ``` */ TooltipMarkupStyleCreator.prototype.wrapRichTextStyle = function(text, styles) { var finalStl = {}; if (isArray(styles)) each$4(styles, function(stl) { return extend(finalStl, stl); }); else extend(finalStl, styles); var styleName = this._generateStyleName(); this.richTextStyles[styleName] = finalStl; return "{" + styleName + "|" + text + "}"; }; return TooltipMarkupStyleCreator; }(); //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/component/tooltip/seriesFormatTooltip.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ function defaultSeriesFormatTooltip(opt) { var series = opt.series; var dataIndex = opt.dataIndex; var multipleSeries = opt.multipleSeries; var data = series.getData(); var tooltipDims = data.mapDimensionsAll("defaultedTooltip"); var tooltipDimLen = tooltipDims.length; var value = series.getRawValue(dataIndex); var isValueArr = isArray(value); var markerColor = retrieveVisualColorForTooltipMarker(series, dataIndex); var inlineValue; var inlineValueType; var subBlocks; var sortParam; if (tooltipDimLen > 1 || isValueArr && !tooltipDimLen) { var formatArrResult = formatTooltipArrayValue(value, series, dataIndex, tooltipDims, markerColor); inlineValue = formatArrResult.inlineValues; inlineValueType = formatArrResult.inlineValueTypes; subBlocks = formatArrResult.blocks; sortParam = formatArrResult.inlineValues[0]; } else if (tooltipDimLen) { var dimInfo = data.getDimensionInfo(tooltipDims[0]); sortParam = inlineValue = retrieveRawValue(data, dataIndex, tooltipDims[0]); inlineValueType = dimInfo.type; } else sortParam = inlineValue = isValueArr ? value[0] : value; var seriesNameSpecified = isNameSpecified(series); var seriesName = seriesNameSpecified && series.name || ""; var itemName = data.getName(dataIndex); var inlineName = multipleSeries ? seriesName : itemName; return createTooltipMarkup("section", { header: seriesName, noHeader: multipleSeries || !seriesNameSpecified, sortParam, blocks: [createTooltipMarkup("nameValue", { markerType: "item", markerColor, name: inlineName, noName: !trim(inlineName), value: inlineValue, valueType: inlineValueType, rawDataIndex: data.getRawIndex(dataIndex) })].concat(subBlocks || []) }); } function formatTooltipArrayValue(value, series, dataIndex, tooltipDims, colorStr) { var data = series.getData(); var isValueMultipleLine = reduce(value, function(isValueMultipleLine, val, idx) { var dimItem = data.getDimensionInfo(idx); return isValueMultipleLine = isValueMultipleLine || dimItem && dimItem.tooltip !== false && dimItem.displayName != null; }, false); var inlineValues = []; var inlineValueTypes = []; var blocks = []; tooltipDims.length ? each$4(tooltipDims, function(dim) { setEachItem(retrieveRawValue(data, dataIndex, dim), dim); }) : each$4(value, setEachItem); function setEachItem(val, dim) { var dimInfo = data.getDimensionInfo(dim); if (!dimInfo || dimInfo.otherDims.tooltip === false) return; if (isValueMultipleLine) blocks.push(createTooltipMarkup("nameValue", { markerType: "subItem", markerColor: colorStr, name: dimInfo.displayName, value: val, valueType: dimInfo.type })); else { inlineValues.push(val); inlineValueTypes.push(dimInfo.type); } } return { inlineValues, inlineValueTypes, blocks }; } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/model/Series.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var inner$6 = makeInner(); function getSelectionKey(data, dataIndex) { return data.getName(dataIndex) || data.getId(dataIndex); } var SeriesModel = function(_super) { __extends(SeriesModel, _super); function SeriesModel() { var _this = _super !== null && _super.apply(this, arguments) || this; _this._selectedDataIndicesMap = {}; return _this; } SeriesModel.prototype.init = function(option, parentModel, ecModel) { this.seriesIndex = this.componentIndex; this.dataTask = createTask({ count: dataTaskCount, reset: dataTaskReset }); this.dataTask.context = { model: this }; this.mergeDefaultAndTheme(option, ecModel); (inner$6(this).sourceManager = new SourceManager(this)).prepareSource(); var data = this.getInitialData(option, ecModel); wrapData(data, this); this.dataTask.context.data = data; inner$6(this).dataBeforeProcessed = data; autoSeriesName(this); this._initSelectedMapFromData(data); }; /** * Util for merge default and theme to option */ SeriesModel.prototype.mergeDefaultAndTheme = function(option, ecModel) { var layoutMode = fetchLayoutMode(this); var inputPositionParams = layoutMode ? getLayoutParams(option) : {}; var themeSubType = this.subType; if (ComponentModel.hasClass(themeSubType)) themeSubType += "Series"; merge(option, ecModel.getTheme().get(this.subType)); merge(option, this.getDefaultOption()); defaultEmphasis(option, "label", ["show"]); this.fillDataTextStyle(option.data); if (layoutMode) mergeLayoutParam(option, inputPositionParams, layoutMode); }; SeriesModel.prototype.mergeOption = function(newSeriesOption, ecModel) { newSeriesOption = merge(this.option, newSeriesOption, true); this.fillDataTextStyle(newSeriesOption.data); var layoutMode = fetchLayoutMode(this); if (layoutMode) mergeLayoutParam(this.option, newSeriesOption, layoutMode); var sourceManager = inner$6(this).sourceManager; sourceManager.dirty(); sourceManager.prepareSource(); var data = this.getInitialData(newSeriesOption, ecModel); wrapData(data, this); this.dataTask.dirty(); this.dataTask.context.data = data; inner$6(this).dataBeforeProcessed = data; autoSeriesName(this); this._initSelectedMapFromData(data); }; SeriesModel.prototype.fillDataTextStyle = function(data) { if (data && !isTypedArray(data)) { var props = ["show"]; for (var i = 0; i < data.length; i++) if (data[i] && data[i].label) defaultEmphasis(data[i], "label", props); } }; /** * Init a data structure from data related option in series * Must be overridden. */ SeriesModel.prototype.getInitialData = function(option, ecModel) {}; /** * Append data to list */ SeriesModel.prototype.appendData = function(params) { this.getRawData().appendData(params.data); }; /** * Consider some method like `filter`, `map` need make new data, * We should make sure that `seriesModel.getData()` get correct * data in the stream procedure. So we fetch data from upstream * each time `task.perform` called. */ SeriesModel.prototype.getData = function(dataType) { var task = getCurrentTask(this); if (task) { var data = task.context.data; return dataType == null || !data.getLinkedData ? data : data.getLinkedData(dataType); } else return inner$6(this).data; }; SeriesModel.prototype.getAllData = function() { var mainData = this.getData(); return mainData && mainData.getLinkedDataAll ? mainData.getLinkedDataAll() : [{ data: mainData }]; }; SeriesModel.prototype.setData = function(data) { var task = getCurrentTask(this); if (task) { var context = task.context; context.outputData = data; if (task !== this.dataTask) context.data = data; } inner$6(this).data = data; }; SeriesModel.prototype.getEncode = function() { var encode = this.get("encode", true); if (encode) return createHashMap(encode); }; SeriesModel.prototype.getSourceManager = function() { return inner$6(this).sourceManager; }; SeriesModel.prototype.getSource = function() { return this.getSourceManager().getSource(); }; /** * Get data before processed */ SeriesModel.prototype.getRawData = function() { return inner$6(this).dataBeforeProcessed; }; SeriesModel.prototype.getColorBy = function() { return this.get("colorBy") || "series"; }; SeriesModel.prototype.isColorBySeries = function() { return this.getColorBy() === "series"; }; /** * Get base axis if has coordinate system and has axis. * By default use coordSys.getBaseAxis(); * Can be overridden for some chart. * @return {type} description */ SeriesModel.prototype.getBaseAxis = function() { var coordSys = this.coordinateSystem; return coordSys && coordSys.getBaseAxis && coordSys.getBaseAxis(); }; /** * Retrieve the index of nearest value in the view coordinate. * Data position is compared with each axis's dataToCoord. * * @param axisDim axis dimension * @param dim data dimension * @param value * @param [maxDistance=Infinity] The maximum distance in view coordinate space * @return If and only if multiple indices has * the same value, they are put to the result. */ SeriesModel.prototype.indicesOfNearest = function(axisDim, dim, value, maxDistance) { var data = this.getData(); var coordSys = this.coordinateSystem; var axis = coordSys && coordSys.getAxis(axisDim); if (!coordSys || !axis) return []; var targetCoord = axis.dataToCoord(value); if (maxDistance == null) maxDistance = Infinity; var nearestIndices = []; var minDist = Infinity; var minDiff = -1; var nearestIndicesLen = 0; var dimIdx = data.getDimensionIndex(dim); var store = data.getStore(); for (var idx = 0, len = store.count(); idx < len; idx++) { var dimValue = store.get(dimIdx, idx); var diff = targetCoord - axis.dataToCoord(dimValue); var dist = Math.abs(diff); if (dist <= maxDistance) { if (dist < minDist || dist === minDist && diff >= 0 && minDiff < 0) { minDist = dist; minDiff = diff; nearestIndicesLen = 0; } if (diff === minDiff) nearestIndices[nearestIndicesLen++] = idx; } } nearestIndices.length = nearestIndicesLen; return nearestIndices; }; /** * Default tooltip formatter * * @param dataIndex * @param multipleSeries * @param dataType * @param renderMode valid values: 'html'(by default) and 'richText'. * 'html' is used for rendering tooltip in extra DOM form, and the result * string is used as DOM HTML content. * 'richText' is used for rendering tooltip in rich text form, for those where * DOM operation is not supported. * @return formatted tooltip with `html` and `markers` * Notice: The override method can also return string */ SeriesModel.prototype.formatTooltip = function(dataIndex, multipleSeries, dataType) { return defaultSeriesFormatTooltip({ series: this, dataIndex, multipleSeries }); }; SeriesModel.prototype.isAnimationEnabled = function() { var ecModel = this.ecModel; if (env.node && !(ecModel && ecModel.ssr)) return false; var animationEnabled = this.getShallow("animation"); if (animationEnabled) { if (this.getData().count() > this.getShallow("animationThreshold")) animationEnabled = false; } return !!animationEnabled; }; SeriesModel.prototype.restoreData = function() { this.dataTask.dirty(); }; SeriesModel.prototype.getColorFromPalette = function(name, scope, requestColorNum) { var ecModel = this.ecModel; var color = PaletteMixin.prototype.getColorFromPalette.call(this, name, scope, requestColorNum); if (!color) color = ecModel.getColorFromPalette(name, scope, requestColorNum); return color; }; /** * Use `data.mapDimensionsAll(coordDim)` instead. * @deprecated */ SeriesModel.prototype.coordDimToDataDim = function(coordDim) { return this.getRawData().mapDimensionsAll(coordDim); }; /** * Get progressive rendering count each step */ SeriesModel.prototype.getProgressive = function() { return this.get("progressive"); }; /** * Get progressive rendering count each step */ SeriesModel.prototype.getProgressiveThreshold = function() { return this.get("progressiveThreshold"); }; SeriesModel.prototype.select = function(innerDataIndices, dataType) { this._innerSelect(this.getData(dataType), innerDataIndices); }; SeriesModel.prototype.unselect = function(innerDataIndices, dataType) { var selectedMap = this.option.selectedMap; if (!selectedMap) return; var selectedMode = this.option.selectedMode; var data = this.getData(dataType); if (selectedMode === "series" || selectedMap === "all") { this.option.selectedMap = {}; this._selectedDataIndicesMap = {}; return; } for (var i = 0; i < innerDataIndices.length; i++) { var dataIndex = innerDataIndices[i]; var nameOrId = getSelectionKey(data, dataIndex); selectedMap[nameOrId] = false; this._selectedDataIndicesMap[nameOrId] = -1; } }; SeriesModel.prototype.toggleSelect = function(innerDataIndices, dataType) { var tmpArr = []; for (var i = 0; i < innerDataIndices.length; i++) { tmpArr[0] = innerDataIndices[i]; this.isSelected(innerDataIndices[i], dataType) ? this.unselect(tmpArr, dataType) : this.select(tmpArr, dataType); } }; SeriesModel.prototype.getSelectedDataIndices = function() { if (this.option.selectedMap === "all") return [].slice.call(this.getData().getIndices()); var selectedDataIndicesMap = this._selectedDataIndicesMap; var nameOrIds = keys(selectedDataIndicesMap); var dataIndices = []; for (var i = 0; i < nameOrIds.length; i++) { var dataIndex = selectedDataIndicesMap[nameOrIds[i]]; if (dataIndex >= 0) dataIndices.push(dataIndex); } return dataIndices; }; SeriesModel.prototype.isSelected = function(dataIndex, dataType) { var selectedMap = this.option.selectedMap; if (!selectedMap) return false; var data = this.getData(dataType); return (selectedMap === "all" || selectedMap[getSelectionKey(data, dataIndex)]) && !data.getItemModel(dataIndex).get(["select", "disabled"]); }; SeriesModel.prototype.isUniversalTransitionEnabled = function() { if (this["__universalTransitionEnabled"]) return true; var universalTransitionOpt = this.option.universalTransition; if (!universalTransitionOpt) return false; if (universalTransitionOpt === true) return true; return universalTransitionOpt && universalTransitionOpt.enabled; }; SeriesModel.prototype._innerSelect = function(data, innerDataIndices) { var _a, _b; var option = this.option; var selectedMode = option.selectedMode; var len = innerDataIndices.length; if (!selectedMode || !len) return; if (selectedMode === "series") option.selectedMap = "all"; else if (selectedMode === "multiple") { if (!isObject$2(option.selectedMap)) option.selectedMap = {}; var selectedMap = option.selectedMap; for (var i = 0; i < len; i++) { var dataIndex = innerDataIndices[i]; var nameOrId = getSelectionKey(data, dataIndex); selectedMap[nameOrId] = true; this._selectedDataIndicesMap[nameOrId] = data.getRawIndex(dataIndex); } } else if (selectedMode === "single" || selectedMode === true) { var lastDataIndex = innerDataIndices[len - 1]; var nameOrId = getSelectionKey(data, lastDataIndex); option.selectedMap = (_a = {}, _a[nameOrId] = true, _a); this._selectedDataIndicesMap = (_b = {}, _b[nameOrId] = data.getRawIndex(lastDataIndex), _b); } }; SeriesModel.prototype._initSelectedMapFromData = function(data) { if (this.option.selectedMap) return; var dataIndices = []; if (data.hasItemOption) data.each(function(idx) { var rawItem = data.getRawDataItem(idx); if (rawItem && rawItem.selected) dataIndices.push(idx); }); if (dataIndices.length > 0) this._innerSelect(data, dataIndices); }; SeriesModel.registerClass = function(clz) { return ComponentModel.registerClass(clz); }; SeriesModel.protoInitialize = function() { var proto = SeriesModel.prototype; proto.type = "series.__base__"; proto.seriesIndex = 0; proto.ignoreStyleOnData = false; proto.hasSymbolVisual = false; proto.defaultSymbol = "circle"; proto.visualStyleAccessPath = "itemStyle"; proto.visualDrawType = "fill"; }(); return SeriesModel; }(ComponentModel); mixin(SeriesModel, DataFormatMixin); mixin(SeriesModel, PaletteMixin); mountExtend(SeriesModel, ComponentModel); /** * MUST be called after `prepareSource` called * Here we need to make auto series, especially for auto legend. But we * do not modify series.name in option to avoid side effects. */ function autoSeriesName(seriesModel) { var name = seriesModel.name; if (!isNameSpecified(seriesModel)) seriesModel.name = getSeriesAutoName(seriesModel) || name; } function getSeriesAutoName(seriesModel) { var data = seriesModel.getRawData(); var dataDims = data.mapDimensionsAll("seriesName"); var nameArr = []; each$4(dataDims, function(dataDim) { var dimInfo = data.getDimensionInfo(dataDim); dimInfo.displayName && nameArr.push(dimInfo.displayName); }); return nameArr.join(" "); } function dataTaskCount(context) { return context.model.getRawData().count(); } function dataTaskReset(context) { var seriesModel = context.model; seriesModel.setData(seriesModel.getRawData().cloneShallow()); return dataTaskProgress; } function dataTaskProgress(param, context) { if (context.outputData && param.end > context.outputData.count()) context.model.getRawData().cloneShallow(context.outputData); } function wrapData(data, seriesModel) { each$4(concatArray(data.CHANGABLE_METHODS, data.DOWNSAMPLE_METHODS), function(methodName) { data.wrapMethod(methodName, curry$1(onDataChange, seriesModel)); }); } function onDataChange(seriesModel, newList) { var task = getCurrentTask(seriesModel); if (task) task.setOutputEnd((newList || this).count()); return newList; } function getCurrentTask(seriesModel) { var scheduler = (seriesModel.ecModel || {}).scheduler; var pipeline = scheduler && scheduler.getPipeline(seriesModel.uid); if (pipeline) { var task = pipeline.currentTask; if (task) { var agentStubMap = task.agentStubMap; if (agentStubMap) task = agentStubMap.get(seriesModel.uid); } return task; } } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/util/symbol.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ /** * Triangle shape * @inner */ var Triangle = Path.extend({ type: "triangle", shape: { cx: 0, cy: 0, width: 0, height: 0 }, buildPath: function(path, shape) { var cx = shape.cx; var cy = shape.cy; var width = shape.width / 2; var height = shape.height / 2; path.moveTo(cx, cy - height); path.lineTo(cx + width, cy + height); path.lineTo(cx - width, cy + height); path.closePath(); } }); /** * Map of path constructors */ var symbolCtors = { line: Line, rect: Rect, roundRect: Rect, square: Rect, circle: Circle, diamond: Path.extend({ type: "diamond", shape: { cx: 0, cy: 0, width: 0, height: 0 }, buildPath: function(path, shape) { var cx = shape.cx; var cy = shape.cy; var width = shape.width / 2; var height = shape.height / 2; path.moveTo(cx, cy - height); path.lineTo(cx + width, cy); path.lineTo(cx, cy + height); path.lineTo(cx - width, cy); path.closePath(); } }), pin: Path.extend({ type: "pin", shape: { x: 0, y: 0, width: 0, height: 0 }, buildPath: function(path, shape) { var x = shape.x; var y = shape.y; var w = shape.width / 5 * 3; var h = Math.max(w, shape.height); var r = w / 2; var dy = r * r / (h - r); var cy = y - h + r + dy; var angle = Math.asin(dy / r); var dx = Math.cos(angle) * r; var tanX = Math.sin(angle); var tanY = Math.cos(angle); var cpLen = r * .6; var cpLen2 = r * .7; path.moveTo(x - dx, cy + dy); path.arc(x, cy, r, Math.PI - angle, Math.PI * 2 + angle); path.bezierCurveTo(x + dx - tanX * cpLen, cy + dy + tanY * cpLen, x, y - cpLen2, x, y); path.bezierCurveTo(x, y - cpLen2, x - dx + tanX * cpLen, cy + dy + tanY * cpLen, x - dx, cy + dy); path.closePath(); } }), arrow: Path.extend({ type: "arrow", shape: { x: 0, y: 0, width: 0, height: 0 }, buildPath: function(ctx, shape) { var height = shape.height; var width = shape.width; var x = shape.x; var y = shape.y; var dx = width / 3 * 2; ctx.moveTo(x, y); ctx.lineTo(x + dx, y + height); ctx.lineTo(x, y + height / 4 * 3); ctx.lineTo(x - dx, y + height); ctx.lineTo(x, y); ctx.closePath(); } }), triangle: Triangle }; var symbolShapeMakers = { line: function(x, y, w, h, shape) { shape.x1 = x; shape.y1 = y + h / 2; shape.x2 = x + w; shape.y2 = y + h / 2; }, rect: function(x, y, w, h, shape) { shape.x = x; shape.y = y; shape.width = w; shape.height = h; }, roundRect: function(x, y, w, h, shape) { shape.x = x; shape.y = y; shape.width = w; shape.height = h; shape.r = Math.min(w, h) / 4; }, square: function(x, y, w, h, shape) { var size = Math.min(w, h); shape.x = x; shape.y = y; shape.width = size; shape.height = size; }, circle: function(x, y, w, h, shape) { shape.cx = x + w / 2; shape.cy = y + h / 2; shape.r = Math.min(w, h) / 2; }, diamond: function(x, y, w, h, shape) { shape.cx = x + w / 2; shape.cy = y + h / 2; shape.width = w; shape.height = h; }, pin: function(x, y, w, h, shape) { shape.x = x + w / 2; shape.y = y + h / 2; shape.width = w; shape.height = h; }, arrow: function(x, y, w, h, shape) { shape.x = x + w / 2; shape.y = y + h / 2; shape.width = w; shape.height = h; }, triangle: function(x, y, w, h, shape) { shape.cx = x + w / 2; shape.cy = y + h / 2; shape.width = w; shape.height = h; } }; var symbolBuildProxies = {}; each$4(symbolCtors, function(Ctor, name) { symbolBuildProxies[name] = new Ctor(); }); var SymbolClz = Path.extend({ type: "symbol", shape: { symbolType: "", x: 0, y: 0, width: 0, height: 0 }, calculateTextPosition: function(out, config, rect) { var res = calculateTextPosition(out, config, rect); var shape = this.shape; if (shape && shape.symbolType === "pin" && config.position === "inside") res.y = rect.y + rect.height * .4; return res; }, buildPath: function(ctx, shape, inBundle) { var symbolType = shape.symbolType; if (symbolType !== "none") { var proxySymbol = symbolBuildProxies[symbolType]; if (!proxySymbol) { symbolType = "rect"; proxySymbol = symbolBuildProxies[symbolType]; } symbolShapeMakers[symbolType](shape.x, shape.y, shape.width, shape.height, proxySymbol.shape); proxySymbol.buildPath(ctx, proxySymbol.shape, inBundle); } } }); function symbolPathSetColor(color, innerColor) { if (this.type !== "image") { var symbolStyle = this.style; if (this.__isEmptyBrush) { symbolStyle.stroke = color; symbolStyle.fill = innerColor || tokens.color.neutral00; symbolStyle.lineWidth = 2; } else if (this.shape.symbolType === "line") symbolStyle.stroke = color; else symbolStyle.fill = color; this.markRedraw(); } } /** * Create a symbol element with given symbol configuration: shape, x, y, width, height, color */ function createSymbol(symbolType, x, y, w, h, color, keepAspect) { var isEmpty = symbolType.indexOf("empty") === 0; if (isEmpty) symbolType = symbolType.substr(5, 1).toLowerCase() + symbolType.substr(6); var symbolPath; if (symbolType.indexOf("image://") === 0) symbolPath = makeImage(symbolType.slice(8), new BoundingRect(x, y, w, h), keepAspect ? "center" : "cover"); else if (symbolType.indexOf("path://") === 0) symbolPath = makePath(symbolType.slice(7), {}, new BoundingRect(x, y, w, h), keepAspect ? "center" : "cover"); else symbolPath = new SymbolClz({ shape: { symbolType, x, y, width: w, height: h } }); symbolPath.__isEmptyBrush = isEmpty; symbolPath.setColor = symbolPathSetColor; if (color) symbolPath.setColor(color); return symbolPath; } function normalizeSymbolOffset(symbolOffset, symbolSize) { if (symbolOffset == null) return; if (!isArray(symbolOffset)) symbolOffset = [symbolOffset, symbolOffset]; return [parsePercent(symbolOffset[0], symbolSize[0]) || 0, parsePercent(retrieve2(symbolOffset[1], symbolOffset[0]), symbolSize[1]) || 0]; } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/chart/helper/labelHelper.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ /** * @return label string. Not null/undefined */ function getDefaultLabel(data, dataIndex) { var labelDims = data.mapDimensionsAll("defaultedLabel"); var len = labelDims.length; if (len === 1) { var rawVal = retrieveRawValue(data, dataIndex, labelDims[0]); return rawVal != null ? rawVal + "" : null; } else if (len) { var vals = []; for (var i = 0; i < labelDims.length; i++) vals.push(retrieveRawValue(data, dataIndex, labelDims[i])); return vals.join(" "); } } function getDefaultInterpolatedLabel(data, interpolatedValue) { var labelDims = data.mapDimensionsAll("defaultedLabel"); if (!isArray(interpolatedValue)) return interpolatedValue + ""; var vals = []; for (var i = 0; i < labelDims.length; i++) { var dimIndex = data.getDimensionIndex(labelDims[i]); if (dimIndex >= 0) vals.push(interpolatedValue[dimIndex]); } return vals.join(" "); } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/util/vendor.js var Float32ArrayCtor = typeof Float32Array !== "undefined" ? Float32Array : void 0; var Float64ArrayCtor = typeof Float64Array !== "undefined" ? Float64Array : void 0; function createFloat32Array(capacity) { return tryEnsureTypedArray({ ctor: Float32ArrayCtor }, capacity).arr; } function tryEnsureTypedArray(tyArr, capacity) { var existingArr = tyArr.arr; var ctor = tyArr.ctor; if (capacity > MAX_SAFE_INTEGER) capacity = MAX_SAFE_INTEGER; if (!existingArr || tyArr.typed && existingArr.length < capacity) { var nextArr = void 0; if (ctor) try { nextArr = new ctor(capacity); tyArr.typed = true; existingArr && nextArr.set(existingArr); } catch (e) {} if (!nextArr) { nextArr = []; tyArr.typed = false; if (existingArr) for (var i = 0, len = existingArr.length; i < len; i++) nextArr[i] = existingArr[i]; } tyArr.arr = nextArr; } return tyArr; } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/chart/helper/createRenderPlanner.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ /** * @return {string} If large mode changed, return string 'reset'; */ function createRenderPlanner() { var inner = makeInner(); return function(seriesModel) { var fields = inner(seriesModel); var pipelineContext = seriesModel.pipelineContext; var originalLarge = !!fields.large; var originalProgressive = !!fields.progressiveRender; var large = fields.large = !!(pipelineContext && pipelineContext.large); var progressive = fields.progressiveRender = !!(pipelineContext && pipelineContext.progressiveRender); return !!(originalLarge !== large || originalProgressive !== progressive) && "reset"; }; } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/view/Chart.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var inner$5 = makeInner(); var renderPlanner = createRenderPlanner(); var ChartView = function() { function ChartView() { this.group = new Group$2(); this.uid = getUID("viewChart"); this.renderTask = createTask({ plan: renderTaskPlan, reset: renderTaskReset }); this.renderTask.context = { view: this }; } ChartView.prototype.init = function(ecModel, api) {}; ChartView.prototype.render = function(seriesModel, ecModel, api, payload) {}; /** * Highlight series or specified data item. */ ChartView.prototype.highlight = function(seriesModel, ecModel, api, payload) { var data = seriesModel.getData(payload && payload.dataType); if (!data) return; toggleHighlight(data, payload, "emphasis"); }; /** * Downplay series or specified data item. */ ChartView.prototype.downplay = function(seriesModel, ecModel, api, payload) { var data = seriesModel.getData(payload && payload.dataType); if (!data) return; toggleHighlight(data, payload, "normal"); }; /** * `remove` only occurs when series is filtered out, typically by legend. * And theirafter the view can only be rendered again via * `ChartView['render']` or `ChartView['incrementalPrepareRender']`. */ ChartView.prototype.remove = function(ecModel, api) { this.group.removeAll(); }; /** * Dispose self. */ ChartView.prototype.dispose = function(ecModel, api) {}; ChartView.prototype.updateView = function(seriesModel, ecModel, api, payload) { this.render(seriesModel, ecModel, api, payload); }; ChartView.prototype.updateVisual = function(seriesModel, ecModel, api, payload) { this.render(seriesModel, ecModel, api, payload); }; /** * Traverse the new rendered elements. * * It will traverse the new added element in progressive rendering. * And traverse all in normal rendering. */ ChartView.prototype.eachRendered = function(cb) { traverseElements(this.group, cb); }; ChartView.markUpdateMethod = function(payload, methodName) { inner$5(payload).updateMethod = methodName; }; ChartView.protoInitialize = function() { var proto = ChartView.prototype; proto.type = "chart"; }(); return ChartView; }(); /** * Set state of single element */ function elSetState(el, state, highlightDigit) { if (el && isHighDownDispatcher(el)) (state === "emphasis" ? enterEmphasis : leaveEmphasis)(el, highlightDigit); } function toggleHighlight(data, payload, state) { var dataIndex = queryDataIndex(data, payload); var highlightDigit = payload && payload.highlightKey != null ? getHighlightDigit(payload.highlightKey) : null; if (dataIndex != null) each$4(normalizeToArray(dataIndex), function(dataIdx) { elSetState(data.getItemGraphicEl(dataIdx), state, highlightDigit); }); else data.eachItemGraphicEl(function(el) { elSetState(el, state, highlightDigit); }); } enableClassExtend(ChartView, ["dispose"]); enableClassManagement(ChartView); function renderTaskPlan(context) { return renderPlanner(context.model); } function renderTaskReset(context) { var seriesModel = context.model; var ecModel = context.ecModel; var api = context.api; var payload = context.payload; var progressiveRender = seriesModel.pipelineContext.progressiveRender; var view = context.view; var updateMethod = payload && inner$5(payload).updateMethod; var methodName = progressiveRender ? "incrementalPrepareRender" : updateMethod && view[updateMethod] ? updateMethod : "render"; if (methodName !== "render") view[methodName](seriesModel, ecModel, api, payload); return progressMethodMap[methodName]; } var progressMethodMap = { incrementalPrepareRender: { progress: function(params, context) { context.view.incrementalRender(params, context.model, context.ecModel, context.api, context.payload); } }, render: { forceFirstProgress: true, progress: function(params, context) { context.view.render(context.model, context.ecModel, context.api, context.payload); } } }; //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/chart/helper/createClipPathFromCoordSys.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ function createGridClipPath(cartesian, hasAnimation, seriesModel, done, during) { var rect = cartesian.getArea(); var x = rect.x; var y = rect.y; var width = rect.width; var height = rect.height; var lineWidth = seriesModel.get(["lineStyle", "width"]) || 0; x -= lineWidth / 2; y -= lineWidth / 2; width += lineWidth; height += lineWidth; width = Math.ceil(width); if (x !== Math.floor(x)) { x = Math.floor(x); width++; } var clipPath = new Rect({ shape: { x, y, width, height } }); if (hasAnimation) { var baseAxis = cartesian.getBaseAxis(); var isHorizontal = baseAxis.isHorizontal(); var isAxisInversed = baseAxis.inverse; if (isHorizontal) { if (isAxisInversed) clipPath.shape.x += width; clipPath.shape.width = 0; } else { if (!isAxisInversed) clipPath.shape.y += height; clipPath.shape.height = 0; } var duringCb = isFunction(during) ? function(percent) { during(percent, clipPath); } : null; initProps(clipPath, { shape: { width, height, x, y } }, seriesModel, null, done, duringCb); } return clipPath; } function createPolarClipPath(polar, hasAnimation, seriesModel) { var sectorArea = polar.getArea(); var r0 = round(sectorArea.r0, 1); var r = round(sectorArea.r, 1); var clipPath = new Sector({ shape: { cx: round(polar.cx, 1), cy: round(polar.cy, 1), r0, r, startAngle: sectorArea.startAngle, endAngle: sectorArea.endAngle, clockwise: sectorArea.clockwise } }); if (hasAnimation) { if (polar.getBaseAxis().dim === "angle") clipPath.shape.endAngle = sectorArea.startAngle; else clipPath.shape.r = r0; initProps(clipPath, { shape: { endAngle: sectorArea.endAngle, r } }, seriesModel); } return clipPath; } function createClipPath(coordSys, hasAnimation, seriesModel, done, during) { if (!coordSys) return null; else if (coordSys.type === "polar") return createPolarClipPath(coordSys, hasAnimation, seriesModel); else if (coordSys.type === "cartesian2d") return createGridClipPath(coordSys, hasAnimation, seriesModel, done, during); return null; } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/coord/CoordinateSystem.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ function isCoordinateSystemType(coordSys, type) { return coordSys.type === type; } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/scale/Scale.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var Scale = function() { function Scale() {} /** * When axis extent depends on data and no data exists, * axis ticks should not be drawn, which is named 'blank'. * * @final NEVER override! */ Scale.prototype.isBlank = function() { return this._isBlank; }; /** * When axis extent depends on data and no data exists, * axis ticks should not be drawn, which is named 'blank'. * * @final NEVER override! */ Scale.prototype.setBlank = function(isBlank) { this._isBlank = isBlank; }; return Scale; }(); enableClassManagement(Scale); //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/data/OrdinalMeta.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var uidBase = 0; var OrdinalMeta = function() { /** * PENDING - Regarding forcibly converting to string: * In the early days, the underlying hash map impl used JS plain object and converted the key to * string; later in https://github.com/ecomfe/zrender/pull/966 it was changed to a JS Map (in supported * platforms), which does not require string keys. But consider any input that `scale/Ordinal['parse']` * is involved, a number input represents an `OrdinalNumber` (i.e., an index), and affect the query * behavior: * - If forcbily converting to string: * pros: users can use numeric string (such as, '123') to query the raw data (123), tho it's probably * still confusing. * cons: NaN/null/undefined in data will be equals to 'NaN'/'null'/'undefined', if simply using * `val + ''` to convert them, like currently `getName` does. * - Otherwise: * pros: see NaN/null/undefined case above. * cons: users cannot query the raw data (123) any more. * There are two inconsistent behaviors in the current impl: * - Force conversion is applied on the case `xAxis{data: ['aaa', 'bbb', ...]}`, * but no conversion applied to the case `xAxis{data: [{value: 'aaa'}, ...]}` and * the case `dataset: {source: [['aaa', 123], ['bbb', 234], ...]}`. * - behaves differently according to whether JS Map is supported (the polyfill is simply using JS * plain object) (tho it seems rare platform that do not support it). * Since there's no sufficient good solution to offset cost of the breaking change, we preserve the * current behavior, until real issues is reported. */ function OrdinalMeta(opt) { this.categories = opt.categories || []; this._needCollect = opt.needCollect; this._deduplication = opt.deduplication; this.uid = ++uidBase; this._onCollect = opt.onCollect; } OrdinalMeta.createByAxisModel = function(axisModel) { var option = axisModel.option; var data = option.data; var categories = data && map$1(data, getName); return new OrdinalMeta({ categories, needCollect: !categories, deduplication: option.dedplication !== false }); }; OrdinalMeta.prototype.getOrdinal = function(category) { return this._getOrCreateMap().get(category); }; /** * @return The ordinal. If not found, return NaN. */ OrdinalMeta.prototype.parseAndCollect = function(category) { var index; var needCollect = this._needCollect; if (!isString(category) && !needCollect) return category; if (needCollect && !this._deduplication) { index = this.categories.length; this.categories[index] = category; this._onCollect && this._onCollect(category, index); return index; } var map = this._getOrCreateMap(); index = map.get(category); if (index == null) if (needCollect) { index = this.categories.length; this.categories[index] = category; map.set(category, index); this._onCollect && this._onCollect(category, index); } else index = NaN; return index; }; OrdinalMeta.prototype._getOrCreateMap = function() { return this._map || (this._map = createHashMap(this.categories)); }; return OrdinalMeta; }(); function getName(obj) { if (isObject$2(obj) && obj.value != null) return obj.value; else return obj + ""; } var SCALE_MAPPER_METHOD_NAMES = keys({ needTransform: 1, normalize: 1, scale: 1, transformIn: 1, transformOut: 1, contain: 1, getExtent: 1, getExtentUnsafe: 1, setExtent: 1, setExtent2: 1, getFilter: 1, sanitize: 1, getDefaultStartValue: 1, freeze: 1 }); function initBreakOrLinearMapper(mapper, breakParsed, initialExtent) { var brk; mapper = mapper || {}; var scaleBreakHelper = getScaleBreakHelper(); if (scaleBreakHelper) { var brkMapper_1 = scaleBreakHelper.createBreakScaleMapper(breakParsed, initialExtent); if (brkMapper_1.hasBreaks()) { each$4(SCALE_MAPPER_METHOD_NAMES, function(methodName) { if (brkMapper_1[methodName]) mapper[methodName] = bind$1(brkMapper_1[methodName], brkMapper_1); }); brk = brkMapper_1; } } if (brk == null) initLinearScaleMapper(mapper, initialExtent); return { brk, mapper }; } function decorateScaleMapper(host, decoratedMapperMethods) { each$4(SCALE_MAPPER_METHOD_NAMES, function(methodName) { host[methodName] = decoratedMapperMethods[methodName]; }); } function enableScaleMapperFreeze(host, subMapper) { host.freeze = noop; } function getScaleExtentForTickUnsafe(mapper) { return mapper.getExtentUnsafe(0, 2); } function getScaleExtentForMappingUnsafe(mapper, depth) { return mapper.getExtentUnsafe(1, depth) || mapper.getExtentUnsafe(0, depth); } function getScaleLinearSpanForMapping(mapper) { var extent = getScaleExtentForMappingUnsafe(mapper, 3); return extent[1] - extent[0]; } function getScaleLinearSpanEffective(mapper) { var extent = mapper.getExtentUnsafe(0, 3); return extent[1] - extent[0]; } function initLinearScaleMapper(mapper, initialExtent) { var linearMapper = mapper || {}; var extendList = []; linearMapper._extents = extendList; extendList[0] = initialExtent ? initialExtent.slice() : initExtentForUnion(); extend(linearMapper, linearScaleMapperMethods); return linearMapper; } var linearScaleMapperMethods = { needTransform: function() { return false; }, normalize: function(val) { var extent = this._extents[1] || this._extents[0]; if (extent[1] === extent[0]) return .5; return (val - extent[0]) / (extent[1] - extent[0]); }, scale: function(val) { var extent = this._extents[1] || this._extents[0]; return val * (extent[1] - extent[0]) + extent[0]; }, transformIn: function(val) { return val; }, transformOut: function(val) { return val; }, contain: function(val) { var extent = getScaleExtentForMappingUnsafe(this, null); return val >= extent[0] && val <= extent[1]; }, getExtent: function() { return this._extents[0].slice(); }, getExtentUnsafe: function(kind) { return this._extents[kind]; }, setExtent: function(start, end) { writeExtent(this._extents, 0, start, end); }, setExtent2: function(kind, start, end) { var extentList = this._extents; if (!extentList[kind]) extentList[kind] = extentList[0].slice(); writeExtent(extentList, kind, start, end); }, freeze: function() {} }; function writeExtent(extentList, kind, start, end) { if (isValidBoundsForExtent(start, end)) { extentList[kind][0] = start; extentList[kind][1] = end; } } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/scale/helper.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ /** * See also method `nice` in `src/util/number.ts`. */ function isIntervalOrLogScale(scale) { return isIntervalScale(scale) || isLogScale(scale); } function isIntervalScale(scale) { return scale.type === "interval"; } function isTimeScale(scale) { return scale.type === "time"; } function isLogScale(scale) { return scale.type === "log"; } function isOrdinalScale(scale) { return scale.type === "ordinal"; } /** * The input `niceInterval` should be generated * from `nice` method in `src/util/number.ts`, or * from `increaseInterval` itself. */ function increaseInterval(niceInterval) { var exponent = quantityExponent(niceInterval); var exp10 = mathPow(10, exponent); var f = mathRound(niceInterval / exp10); if (!f) f = 1; else if (f === 2) f = 3; else if (f === 3) f = 5; else f *= 2; return round(f * exp10, -exponent); } function getIntervalPrecision(niceInterval) { return getPrecision(niceInterval) + 2; } /** * NOTE: * - If `val` is `NaN`, return `NaN`. * - If `val` is `0`, return `-Infinity`. * - If `val` is negative, return `NaN`. * * @see {DataStore#getDataExtent} It handles non-positive values for logarithm scale. */ function logScaleLogTick(val, base) { return mathLog(val) / mathLog(base); } /** * Cumulative rounding errors cause the logarithm operation to become non-invertible by simply exponentiation. * - `Math.pow(10, integer)` itself has no rounding error. But, * - If `linearTickVal` is generated internally by `calcNiceTicks`, it may be still "not nice" (not an integer) * when it is `extent[i]`. * - If `linearTickVal` is generated outside (e.g., by `scaleCalcAlign`) and set by `setExtent`, * `logScaleLogTick` may already have introduced rounding errors even for "nice" values. * But invertible is required when the original `extent[i]` need to be respected, or "nice" ticks need to be * displayed instead of something like `5.999999999999999`, which is addressed in this function. * See also `#4158`. * * [CAUTION]: * Monotonicity may be broken on extent ends - callers must make sure it does not matter. */ function logScalePowTick(linearTickVal, base, opt) { var lookup = opt && opt.lookup; if (lookup) { for (var i = 0; i < lookup.from.length; i++) if (linearTickVal === lookup.from[i]) return lookup.to[i]; } return mathPow(base, linearTickVal); } /** * For `IntervalScale`, convert `rawExtent` to: * - Be no non-finite number. * - Be `extent[0] < extent[1]`- no equal; otherwise, additional handling is required * in "nice" and "align" ticks. */ function intervalScaleEnsureValidExtent(rawExtent, fixMinMax, rawExtentResult) { var extent = rawExtent.slice(); if (extent[0] === extent[1]) { var containShapeRequired = rawExtentResult && rawExtentResult.ctnShp; if (extent[0] !== 0) { var expandSize = mathAbs$2(extent[0]); if (!fixMinMax[1]) { extent[1] += expandSize / 2; extent[0] -= expandSize / 2; } else extent[0] -= expandSize / 2; } else if (containShapeRequired) { extent[0] = -1; extent[1] = 1; } else extent[1] = 1; } if (!isValidNumberForExtent(extent[0]) || !isValidNumberForExtent(extent[1])) { extent[0] = 0; extent[1] = 1; } if (extent[1] < extent[0]) extent.reverse(); return extent; } function extentDiffers(extent1, extent2) { return [extent1[0] !== extent2[0], extent1[1] !== extent2[1]]; } function ensureValidSplitNumber(rawSplitNumber, defaultSplitNumber) { rawSplitNumber = rawSplitNumber || defaultSplitNumber; return mathRound(mathMax$3(rawSplitNumber, 1)); } /** * NOTE: The result can have only one item, e.g., when `extent[0] === extent[1]` * and `categoryInterval === 0`. */ function ordinalScaleCreateTicks(ordinalScale, categoryInterval, addItem) { var extent = getScaleExtentForTickUnsafe(ordinalScale); var startTick = extent[0]; var tickCount = ordinalScale.count(); var step = Math.max((categoryInterval || 0) + 1, 1); if (startTick !== 0 && step > 1 && tickCount / step > 2) startTick = Math.round(Math.ceil(startTick / step) * step); if (startTick !== extent[0]) addItemInternally(extent[0], true, true); var tickValue = startTick; for (; tickValue <= extent[1]; tickValue += step) addItemInternally(tickValue, false, tickValue === extent[0] || tickValue === extent[1]); if (tickValue - step !== extent[1]) addItemInternally(extent[1], true, true); function addItemInternally(tickValue, offInterval, isExtentBoundary) { addItem({ value: tickValue, offInterval }, isExtentBoundary); } } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/scale/Ordinal.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ /** * Linear continuous scale * http://en.wikipedia.org/wiki/Level_of_measurement */ var OrdinalScale = function(_super) { __extends(OrdinalScale, _super); function OrdinalScale(setting) { var _this = _super.call(this) || this; _this.type = "ordinal"; _this.parse = OrdinalScale.parse; decorateScaleMapper(_this, OrdinalScale.decoratedMethods); var ordinalMeta = setting.ordinalMeta; if (!ordinalMeta) ordinalMeta = new OrdinalMeta({}); if (isArray(ordinalMeta)) ordinalMeta = new OrdinalMeta({ categories: map$1(ordinalMeta, function(item) { return isObject$2(item) ? item.value : item; }) }); _this._ordinalMeta = ordinalMeta; var res = initBreakOrLinearMapper(null, null, setting.extent || [0, ordinalMeta.categories.length - 1]); _this._mapper = res.mapper; enableScaleMapperFreeze(_this, res.mapper); return _this; } OrdinalScale.parse = function(val) { if (val == null) val = NaN; else if (isString(val)) { val = this._ordinalMeta.getOrdinal(val); if (val == null) val = NaN; } else val = mathRound(val); return val; }; /** * PENDING: currently this method is not used. * `makeCategoryTicks` is effectively used. */ OrdinalScale.prototype.getTicks = function() { var ticks = []; ordinalScaleCreateTicks(this, 0, function(tick) { ticks.push(tick); }); return ticks; }; OrdinalScale.prototype.getMinorTicks = function(splitNumber) {}; /** * @see `Ordinal['_ordinalNumbersByTick']` */ OrdinalScale.prototype.setSortInfo = function(info) { if (info == null) { this._ordinalNumbersByTick = this._ticksByOrdinalNumber = null; return; } var infoOrdinalNumbers = info.ordinalNumbers; var ordinalsByTick = this._ordinalNumbersByTick = []; var ticksByOrdinal = this._ticksByOrdinalNumber = []; var tickNum = 0; var allCategoryLen = this._ordinalMeta.categories.length; for (var len = mathMin$3(allCategoryLen, infoOrdinalNumbers.length); tickNum < len; ++tickNum) { var ordinalNumber = ordinalsByTick[tickNum] = infoOrdinalNumbers[tickNum]; ticksByOrdinal[ordinalNumber] = tickNum; } var unusedOrdinal = 0; for (; tickNum < allCategoryLen; ++tickNum) { while (ticksByOrdinal[unusedOrdinal] != null) unusedOrdinal++; ordinalsByTick[tickNum] = unusedOrdinal; ticksByOrdinal[unusedOrdinal] = tickNum; } }; OrdinalScale.prototype._getTickNumber = function(ordinal) { var ticksByOrdinalNumber = this._ticksByOrdinalNumber; return ticksByOrdinalNumber && ordinal >= 0 && ordinal < ticksByOrdinalNumber.length ? ticksByOrdinalNumber[ordinal] : ordinal; }; /** * @usage * ```js * const ordinalNumber = ordinalScale.getRawOrdinalNumber(tick.value); * // case0 * const rawOrdinalValue = axisModel.getCategories()[ordinalNumber]; * // case1 * const rawOrdinalValue = this._ordinalMeta.categories[ordinalNumber]; * // case2 * const coord = axis.dataToCoord(ordinalNumber); * ``` * * value may be out of range, e.g., when axis max is larger than `ordinalMeta.categories.length`, * where ordinal numbers are used as tick value directly. */ OrdinalScale.prototype.getRawOrdinalNumber = function(tickValue) { var ordinalNumbersByTick = this._ordinalNumbersByTick; return ordinalNumbersByTick && tickValue >= 0 && tickValue < ordinalNumbersByTick.length ? ordinalNumbersByTick[tickValue] : tickValue; }; /** * Get item on tick */ OrdinalScale.prototype.getLabel = function(tick) { if (!this.isBlank()) { var ordinalNumber = this.getRawOrdinalNumber(tick.value); var category = this._ordinalMeta.categories[ordinalNumber]; return category == null ? "" : category + ""; } }; /** * NOTICE: This is different from `.getOrdinalMeta().length` when extent * is specified by `xxxAxis.min/max` or by `dataZoom`. */ OrdinalScale.prototype.count = function() { var extent = getScaleExtentForTickUnsafe(this._mapper); return extent[1] - extent[0] + 1; }; OrdinalScale.prototype.getOrdinalMeta = function() { return this._ordinalMeta; }; OrdinalScale.type = "ordinal"; OrdinalScale.decoratedMethods = { needTransform: function() { return this._mapper.needTransform(); }, contain: function(val) { return this._mapper.contain(this._getTickNumber(val)) && val >= 0 && val < this._ordinalMeta.categories.length; }, normalize: function(val) { return this._mapper.normalize(this._getTickNumber(val)); }, scale: function(val) { return this.getRawOrdinalNumber(mathRound(this._mapper.scale(val))); }, transformIn: function(val, opt) { return this._mapper.transformIn(this._getTickNumber(val), opt); }, transformOut: function(val, opt) { return this.getRawOrdinalNumber(this._mapper.transformOut(val, opt)); }, getExtent: function() { return this._mapper.getExtent(); }, getExtentUnsafe: function(kind, depth) { return this._mapper.getExtentUnsafe(kind, depth); }, /** * NOTICE: OrdinalScale extent should always originates from * `[0, ordinalMeta.categories.length - 1]`, regardless of min/max of `series.data`. * But settings like `xxxAxis.min/max` can still modify the extent. * It is handled by constructor of `ScaleRawExtentInfo`. */ setExtent: function(start, end) { return this._mapper.setExtent(start, end); }, setExtent2: function(kind, start, end) { return this._mapper.setExtent2(kind, start, end); } }; return OrdinalScale; }(Scale); Scale.registerClass(OrdinalScale); //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/scale/minorTicks.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ function getMinorTicks(scale, splitNumber, breaks, scaleInterval) { var ticks = scale.getTicks({ expandToNicedExtent: true }); var minorTicks = []; var extent = scale.getExtent(); for (var i = 1; i < ticks.length; i++) { var nextTick = ticks[i]; var prevTick = ticks[i - 1]; if (prevTick["break"] || nextTick["break"]) continue; var count = 0; var minorTicksGroup = []; var minorInterval = (nextTick.value - prevTick.value) / splitNumber; var minorIntervalPrecision = getIntervalPrecision(minorInterval); while (count < splitNumber - 1) { var minorTick = round(prevTick.value + (count + 1) * minorInterval, minorIntervalPrecision); if (minorTick > extent[0] && minorTick < extent[1]) minorTicksGroup.push(minorTick); count++; } var scaleBreakHelper = getScaleBreakHelper(); scaleBreakHelper && scaleBreakHelper.pruneTicksByBreak("auto", minorTicksGroup, breaks, function(value) { return value; }, scaleInterval, extent); minorTicks.push(minorTicksGroup); } return minorTicks; } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/scale/Interval.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var IntervalScale = function(_super) { __extends(IntervalScale, _super); function IntervalScale(setting) { var _this = _super.call(this) || this; _this.type = "interval"; _this.parse = IntervalScale.parse; setting = setting || {}; _this.brk = initBreakOrLinearMapper(_this, simplyParseBreakOption(_this, setting), null).brk; _this._cfg = { interval: 0, intervalPrecision: 2, intervalCount: void 0, niceExtent: void 0 }; return _this; } IntervalScale.parse = function(val) { return val == null || val === "" ? NaN : Number(val); }; IntervalScale.prototype.getConfig = function() { return clone$2(this._cfg); }; IntervalScale.prototype.setConfig = function(cfg) { var extent = getScaleExtentForTickUnsafe(this); this._cfg = cfg = clone$2(cfg); if (cfg.niceExtent == null) cfg.niceExtent = extent.slice(); if (cfg.intervalPrecision == null) cfg.intervalPrecision = getIntervalPrecision(cfg.interval); }; /** * In ascending order. */ IntervalScale.prototype.getTicks = function(opt) { opt = opt || {}; var cfg = this._cfg; var interval = cfg.interval; var extent = getScaleExtentForTickUnsafe(this); var niceExtent = cfg.niceExtent; var intervalPrecision = cfg.intervalPrecision; var scaleBreakHelper = getScaleBreakHelper(); var brk = this.brk; var brkAvailable = scaleBreakHelper && brk; var ticks = []; if (!interval) return ticks; if (opt.breakTicks === "only_break" && brkAvailable) { scaleBreakHelper.addBreaksToTicks(ticks, brk.breaks, extent); return ticks; } var safeLimit = 3e3; if (extent[0] < niceExtent[0]) ticks.push({ value: opt.expandToNicedExtent ? round(niceExtent[0] - interval, intervalPrecision) : extent[0] }); var estimateNiceMultiple = function(tickVal, targetTick) { return mathRound((targetTick - tickVal) / interval); }; var intervalCount = cfg.intervalCount; for (var tick = niceExtent[0], niceTickIdx = 0;; niceTickIdx++) { if (intervalCount == null) { if (tick > niceExtent[1] || !isFinite(tick) || !isFinite(niceExtent[1])) break; } else { if (niceTickIdx > intervalCount) break; tick = mathMin$3(tick, niceExtent[1]); if (niceTickIdx === intervalCount) tick = niceExtent[1]; } ticks.push({ value: tick }); tick = round(tick + interval, intervalPrecision); if (brk) { var moreMultiple = brk.calcNiceTickMultiple(tick, estimateNiceMultiple); if (moreMultiple >= 0) tick = round(tick + moreMultiple * interval, intervalPrecision); } if (ticks.length > 0 && tick === ticks[ticks.length - 1].value) break; if (ticks.length > safeLimit) return []; } var lastNiceTick = ticks.length ? ticks[ticks.length - 1].value : niceExtent[1]; if (extent[1] > lastNiceTick) ticks.push({ value: opt.expandToNicedExtent ? round(lastNiceTick + interval, intervalPrecision) : extent[1] }); if (brkAvailable) scaleBreakHelper.pruneTicksByBreak(opt.pruneByBreak, ticks, brk.breaks, function(item) { return item.value; }, cfg.interval, extent); if (brkAvailable && opt.breakTicks !== "none") scaleBreakHelper.addBreaksToTicks(ticks, brk.breaks, extent); return ticks; }; IntervalScale.prototype.getMinorTicks = function(splitNumber) { return getMinorTicks(this, splitNumber, getBreaksUnsafe(this), this._cfg.interval); }; IntervalScale.prototype.getLabel = function(tick, opt) { if (tick == null) return ""; var precision = opt && opt.precision; if (precision == null) precision = getPrecision(tick.value) || 0; else if (precision === "auto") precision = this._cfg.intervalPrecision; return addCommas(round(tick.value, precision, true)); }; IntervalScale.type = "interval"; return IntervalScale; }(Scale); Scale.registerClass(IntervalScale); //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/scale/Time.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var bisect = function(a, x, lo, hi) { while (lo < hi) { var mid = lo + hi >>> 1; if (a[mid][1] < x) lo = mid + 1; else hi = mid; } return lo; }; var TimeScale = function(_super) { __extends(TimeScale, _super); function TimeScale(setting) { var _this = _super.call(this) || this; _this.type = "time"; _this.parse = TimeScale.parse; _this._locale = setting.locale; _this._useUTC = setting.useUTC; _this._interval = 0; _this.brk = initBreakOrLinearMapper(_this, simplyParseBreakOption(_this, setting), null).brk; return _this; } /** * Get label is mainly for other components like dataZoom, tooltip. */ TimeScale.prototype.getLabel = function(tick) { return format(tick.value, fullLeveledFormatter[getDefaultFormatPrecisionOfInterval(getPrimaryTimeUnit(this._minLevelUnit))] || fullLeveledFormatter.second, this._useUTC, this._locale); }; TimeScale.prototype.getFormattedLabel = function(tick, idx, labelFormatter) { return leveledFormat(tick, idx, labelFormatter, this._locale, this._useUTC); }; TimeScale.prototype.getTicks = function(opt) { opt = opt || {}; var interval = this._interval; var extent = getScaleExtentForTickUnsafe(this); var scaleBreakHelper = getScaleBreakHelper(); var brk = this.brk; var brkAvailable = scaleBreakHelper && brk; var ticks = []; if (!interval) return ticks; var useUTC = this._useUTC; if (brkAvailable && opt.breakTicks === "only_break") { getScaleBreakHelper().addBreaksToTicks(ticks, brk.breaks, extent); return ticks; } ticks = createIntervalTicks(this._minLevelUnit, this._approxInterval, useUTC, extent, getScaleLinearSpanEffective(this), brk); var upperUnitIndex = primaryTimeUnits.length - 1; var maxLevel = 0; each$4(ticks, function(tick) { if (tick.time) { upperUnitIndex = Math.min(upperUnitIndex, indexOf(primaryTimeUnits, tick.time.upperTimeUnit)); maxLevel = Math.max(maxLevel, tick.time.level); } }); if (brkAvailable) getScaleBreakHelper().pruneTicksByBreak(opt.pruneByBreak, ticks, brk.breaks, function(item) { return item.value; }, this._approxInterval, extent); if (brkAvailable && opt.breakTicks !== "none") getScaleBreakHelper().addBreaksToTicks(ticks, brk.breaks, extent, function(trimmedBrk) { var lowerBrkUnitIndex = Math.max(indexOf(primaryTimeUnits, getUnitFromValue(trimmedBrk.vmin, useUTC)), indexOf(primaryTimeUnits, getUnitFromValue(trimmedBrk.vmax, useUTC))); var upperBrkUnitIndex = 0; for (var unitIdx = 0; unitIdx < primaryTimeUnits.length; unitIdx++) if (!isPrimaryUnitValueAndGreaterSame(primaryTimeUnits[unitIdx], trimmedBrk.vmin, trimmedBrk.vmax, useUTC)) { upperBrkUnitIndex = unitIdx; break; } var upperIdx = Math.min(upperBrkUnitIndex, upperUnitIndex); return { level: maxLevel, lowerTimeUnit: primaryTimeUnits[Math.max(upperIdx, lowerBrkUnitIndex)], upperTimeUnit: primaryTimeUnits[upperIdx] }; }); return ticks; }; TimeScale.prototype.getMinorTicks = function(splitNumber) { return getMinorTicks(this, splitNumber, getBreaksUnsafe(this), this._interval); }; TimeScale.prototype.setTimeInterval = function(opt) { this._interval = opt.interval; this._approxInterval = opt.approxInterval; this._minLevelUnit = opt.minLevelUnit; }; TimeScale.parse = function(val) { return isNumber(val) ? Math.round(val) : +parseDate(val); }; TimeScale.type = "time"; return TimeScale; }(Scale); /** * This implementation was originally copied from "d3.js" * * with some modifications made for this program. * See the license statement at the head of this file. */ var scaleIntervals = [ ["second", ONE_SECOND], ["minute", ONE_MINUTE], ["hour", ONE_HOUR], ["quarter-day", ONE_HOUR * 6], ["half-day", ONE_HOUR * 12], ["day", ONE_DAY * 1.2], ["half-week", ONE_DAY * 3.5], ["week", ONE_DAY * 7], ["month", ONE_DAY * 31], ["quarter", ONE_DAY * 95], ["half-year", ONE_YEAR / 2], ["year", ONE_YEAR] ]; function isPrimaryUnitValueAndGreaterSame(unit, valueA, valueB, isUTC) { return roundTime(new Date(valueA), unit, isUTC).getTime() === roundTime(new Date(valueB), unit, isUTC).getTime(); } function getDateInterval(approxInterval, daysInMonth) { approxInterval /= ONE_DAY; return approxInterval > 16 ? 16 : approxInterval > 7.5 ? 7 : approxInterval > 3.5 ? 4 : approxInterval > 1.5 ? 2 : 1; } function getMonthInterval(approxInterval) { var APPROX_ONE_MONTH = 30 * ONE_DAY; approxInterval /= APPROX_ONE_MONTH; return approxInterval > 6 ? 6 : approxInterval > 3 ? 3 : approxInterval > 2 ? 2 : 1; } function getHourInterval(approxInterval) { approxInterval /= ONE_HOUR; return approxInterval > 12 ? 12 : approxInterval > 6 ? 6 : approxInterval > 3.5 ? 4 : approxInterval > 2 ? 2 : 1; } function getMinutesAndSecondsInterval(approxInterval, isMinutes) { approxInterval /= isMinutes ? ONE_MINUTE : ONE_SECOND; return approxInterval > 30 ? 30 : approxInterval > 20 ? 20 : approxInterval > 15 ? 15 : approxInterval > 10 ? 10 : approxInterval > 5 ? 5 : approxInterval > 2 ? 2 : 1; } function getMillisecondsInterval(approxInterval) { return mathMax$3(nice(approxInterval, true), 1); } function getFirstTimestampOfUnit(timestamp, unitName, isUTC) { var upperUnitIdx = Math.max(0, indexOf(primaryTimeUnits, unitName) - 1); return roundTime(new Date(timestamp), primaryTimeUnits[upperUnitIdx], isUTC).getTime(); } function createEstimateNiceMultiple(setMethodName, dateMethodInterval) { var tmpDate = /* @__PURE__ */ new Date(0); tmpDate[setMethodName](1); var tmpTime = tmpDate.getTime(); tmpDate[setMethodName](1 + dateMethodInterval); var approxTimeInterval = tmpDate.getTime() - tmpTime; return function(tickVal, targetValue) { return Math.max(0, Math.round((targetValue - tickVal) / approxTimeInterval)); }; } function createIntervalTicks(bottomUnitName, approxInterval, isUTC, extent, innermostSpan, brk) { var safeLimit = 3e3; var unitNames = timeUnits; var iter = 0; function addTicksInSpan(interval, minTimestamp, maxTimestamp, getMethodName, setMethodName, isDate, out) { var estimateNiceMultiple = createEstimateNiceMultiple(setMethodName, interval); var dateTime = minTimestamp; var date = new Date(dateTime); while (dateTime < maxTimestamp && dateTime <= extent[1]) { out.push({ value: dateTime }); if (iter++ > safeLimit) break; date[setMethodName](date[getMethodName]() + interval); dateTime = date.getTime(); if (brk) { var moreMultiple = brk.calcNiceTickMultiple(dateTime, estimateNiceMultiple); if (moreMultiple > 0) { date[setMethodName](date[getMethodName]() + moreMultiple * interval); dateTime = date.getTime(); } } } out.push({ value: dateTime, notAdd: dateTime > extent[1] }); } function addLevelTicks(unitName, lastLevelTicks, levelTicks) { var newAddedTicks = []; var isFirstLevel = !lastLevelTicks.length; if (isPrimaryUnitValueAndGreaterSame(getPrimaryTimeUnit(unitName), extent[0], extent[1], isUTC)) return; if (isFirstLevel) lastLevelTicks = [{ value: getFirstTimestampOfUnit(extent[0], unitName, isUTC) }, { value: extent[1] }]; for (var i = 0; i < lastLevelTicks.length - 1; i++) { var startTick = lastLevelTicks[i].value; var endTick = lastLevelTicks[i + 1].value; if (startTick === endTick) continue; var interval = void 0; var getterName = void 0; var setterName = void 0; var isDate = false; switch (unitName) { case "year": interval = Math.max(1, Math.round(approxInterval / ONE_DAY / 365)); getterName = fullYearGetterName(isUTC); setterName = fullYearSetterName(isUTC); break; case "half-year": case "quarter": case "month": interval = getMonthInterval(approxInterval); getterName = monthGetterName(isUTC); setterName = monthSetterName(isUTC); break; case "week": case "half-week": case "day": interval = getDateInterval(approxInterval, 31); getterName = dateGetterName(isUTC); setterName = dateSetterName(isUTC); isDate = true; break; case "half-day": case "quarter-day": case "hour": interval = getHourInterval(approxInterval); getterName = hoursGetterName(isUTC); setterName = hoursSetterName(isUTC); break; case "minute": interval = getMinutesAndSecondsInterval(approxInterval, true); getterName = minutesGetterName(isUTC); setterName = minutesSetterName(isUTC); break; case "second": interval = getMinutesAndSecondsInterval(approxInterval, false); getterName = secondsGetterName(isUTC); setterName = secondsSetterName(isUTC); break; case "millisecond": interval = getMillisecondsInterval(approxInterval); getterName = millisecondsGetterName(isUTC); setterName = millisecondsSetterName(isUTC); break; } if (endTick >= extent[0] && startTick <= extent[1]) addTicksInSpan(interval, startTick, endTick, getterName, setterName, isDate, newAddedTicks); if (unitName === "year" && levelTicks.length > 1 && i === 0) levelTicks.unshift({ value: levelTicks[0].value - interval }); } for (var i = 0; i < newAddedTicks.length; i++) levelTicks.push(newAddedTicks[i]); } var levelsTicks = []; var currentLevelTicks = []; var tickCount = 0; var lastLevelTickCount = 0; for (var i = 0; i < unitNames.length; ++i) { var primaryTimeUnit = getPrimaryTimeUnit(unitNames[i]); if (!isPrimaryTimeUnit(unitNames[i])) continue; addLevelTicks(unitNames[i], levelsTicks[levelsTicks.length - 1] || [], currentLevelTicks); if (primaryTimeUnit !== (unitNames[i + 1] ? getPrimaryTimeUnit(unitNames[i + 1]) : null)) { if (currentLevelTicks.length) { lastLevelTickCount = tickCount; currentLevelTicks.sort(function(a, b) { return a.value - b.value; }); var levelTicksRemoveDuplicated = []; for (var i_1 = 0; i_1 < currentLevelTicks.length; ++i_1) { var tickValue = currentLevelTicks[i_1].value; if (i_1 === 0 || currentLevelTicks[i_1 - 1].value !== tickValue) { levelTicksRemoveDuplicated.push(currentLevelTicks[i_1]); if (tickValue >= extent[0] && tickValue <= extent[1]) tickCount++; } } var targetTickNum = innermostSpan / approxInterval; if (tickCount > targetTickNum * 1.5 && lastLevelTickCount > targetTickNum / 1.5) break; levelsTicks.push(levelTicksRemoveDuplicated); if (tickCount > targetTickNum || bottomUnitName === unitNames[i]) break; } currentLevelTicks = []; } } var levelsTicksInExtent = filter(map$1(levelsTicks, function(levelTicks) { return filter(levelTicks, function(tick) { return tick.value >= extent[0] && tick.value <= extent[1] && !tick.notAdd; }); }), function(levelTicks) { return levelTicks.length > 0; }); var maxLevel = levelsTicksInExtent.length - 1; var ticks = []; for (var i = 0; i < levelsTicksInExtent.length; ++i) { var levelTicks = levelsTicksInExtent[i]; for (var k = 0; k < levelTicks.length; ++k) { var unit = getUnitFromValue(levelTicks[k].value, isUTC); ticks.push({ value: levelTicks[k].value, time: { level: maxLevel - i, upperTimeUnit: unit, lowerTimeUnit: unit } }); } } removeDuplicates(ticks, removeDuplicatesGetKeyFromValueProp, null); ticks.sort(function(a, b) { return a.value - b.value; }); var currMinTick = ticks[0]; var currMaxTick = ticks[ticks.length - 1]; var extent0Unit = getUnitFromValue(extent[0], isUTC); var extent1Unit = getUnitFromValue(extent[1], isUTC); if (!currMinTick || currMinTick.value > extent[0]) ticks.unshift({ value: extent[0], time: { level: 0, upperTimeUnit: extent0Unit, lowerTimeUnit: extent0Unit }, notNice: true }); if (!currMaxTick || currMaxTick.value < extent[1]) ticks.push({ value: extent[1], time: { level: 0, upperTimeUnit: extent1Unit, lowerTimeUnit: extent1Unit }, notNice: true }); return ticks; } var calcNiceForTimeScale = function(scale, opt) { var extent = scale.getExtent(); if (extent[0] === extent[1]) { extent[0] -= ONE_DAY; extent[1] += ONE_DAY; } if (extent[1] === -Infinity && extent[0] === Infinity) { var d = /* @__PURE__ */ new Date(); extent[1] = +new Date(d.getFullYear(), d.getMonth(), d.getDate()); extent[0] = extent[1] - ONE_DAY; } scale.setExtent(extent[0], extent[1]); var splitNumber = ensureValidSplitNumber(opt.splitNumber, 10); var approxInterval = getScaleLinearSpanEffective(scale) / splitNumber; var minInterval = opt.minInterval; var maxInterval = opt.maxInterval; if (minInterval != null && approxInterval < minInterval) approxInterval = minInterval; if (maxInterval != null && approxInterval > maxInterval) approxInterval = maxInterval; var scaleIntervalsLen = scaleIntervals.length; var idx = Math.min(bisect(scaleIntervals, approxInterval, 0, scaleIntervalsLen), scaleIntervalsLen - 1); var interval = scaleIntervals[idx][1]; var minLevelUnit = scaleIntervals[Math.max(idx - 1, 0)][0]; scale.setTimeInterval({ approxInterval, interval, minLevelUnit }); }; Scale.registerClass(TimeScale); //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/scale/Log.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var LOOKUP_IDX_EXTENT_START = 0; var LOOKUP_IDX_EXTENT_END = 1; var LOOKUP_IDX_BREAK_START = 2; /** * @final NEVER inherit me! */ var LogScale = function(_super) { __extends(LogScale, _super); function LogScale(setting) { var _this = _super.call(this) || this; _this.type = "log"; _this.parse = IntervalScale.parse; _this.base = setting.logBase || 10; var lookupFrom = []; var lookupTo = []; var lookup = _this._lookup = { from: lookupFrom, to: lookupTo }; lookupFrom[LOOKUP_IDX_EXTENT_START] = lookupFrom[LOOKUP_IDX_EXTENT_END] = lookupTo[LOOKUP_IDX_EXTENT_START] = lookupTo[LOOKUP_IDX_EXTENT_END] = NaN; decorateScaleMapper(_this, LogScale.mapperMethods); var scaleBreakHelper = getScaleBreakHelper(); var breakOption = setting.breakOption; var out = { lookup }; if (scaleBreakHelper) scaleBreakHelper.parseAxisBreakOptionInwardTransform(breakOption, _this, { noNegative: true }, LOOKUP_IDX_BREAK_START, out); _this.powStub = new IntervalScale({ breakParsed: out.original }); _this.intervalStub = new IntervalScale({ breakParsed: out.transformed }); enableScaleMapperFreeze(_this, _this.intervalStub); return _this; } LogScale.prototype.getTicks = function(opt) { var base = this.base; var powStub = this.powStub; var scaleBreakHelper = getScaleBreakHelper(); var intervalStub = this.intervalStub; var powOpt = { lookup: { from: intervalStub.getExtent(), to: powStub.getExtent() } }; return map$1(intervalStub.getTicks(opt || {}), function(tick) { var val = tick.value; var powVal = logScalePowTick(val, base, powOpt); var vBreak; if (scaleBreakHelper) { var brkPowResult = scaleBreakHelper.getTicksBreakOutwardTransform(this, tick, getBreaksUnsafe(powStub), this._lookup); if (brkPowResult) { vBreak = brkPowResult.vBreak; powVal = brkPowResult.tickVal; } } return { value: powVal, "break": vBreak }; }, this); }; LogScale.prototype.getMinorTicks = function(splitNumber) { return getMinorTicks(this, splitNumber, getBreaksUnsafe(this.powStub), this.intervalStub.getConfig().interval); }; LogScale.prototype.getLabel = function(data, opt) { return this.intervalStub.getLabel(data, opt); }; LogScale.type = "log"; LogScale.mapperMethods = { needTransform: function() { return true; }, normalize: function(val) { return this.intervalStub.normalize(logScaleLogTick(val, this.base)); }, scale: function(val) { return logScalePowTick(this.intervalStub.scale(val), this.base, null); }, transformIn: function(val, opt) { val = logScaleLogTick(val, this.base); return opt && opt.depth === 2 ? val : this.intervalStub.transformIn(val, opt); }, transformOut: function(val, opt) { var depth = opt ? opt.depth : null; tmpTransformOutOpt1.depth = depth; tmpTransformOutOpt2.lookup = this._lookup; return logScalePowTick(depth === 2 ? val : this.intervalStub.transformOut(val, tmpTransformOutOpt1), this.base, tmpTransformOutOpt2); }, contain: function(val) { return this.powStub.contain(val); }, /** * NOTICE: The caller should ensure `start` and `end` are both non-negative. */ setExtent: function(start, end) { this.setExtent2(0, start, end); }, setExtent2: function(kind, start, end) { if (!isValidBoundsForExtent(start, end) || start <= 0 || end <= 0) return; var lookupTo = tmpNotUsedArr; var lookupFrom = tmpNotUsedArr; if (kind === 0) { var lookup = this._lookup; lookupTo = lookup.to; lookupFrom = lookup.from; } this.powStub.setExtent2(kind, lookupTo[LOOKUP_IDX_EXTENT_START] = start, lookupTo[LOOKUP_IDX_EXTENT_END] = end); var base = this.base; this.intervalStub.setExtent2(kind, lookupFrom[LOOKUP_IDX_EXTENT_START] = logScaleLogTick(start, base), lookupFrom[LOOKUP_IDX_EXTENT_END] = logScaleLogTick(end, base)); }, getFilter: function() { return { g: 0 }; }, sanitize: function(value, dataExtent) { if (isValidBoundsForExtent(dataExtent[0], dataExtent[1]) && isNullableNumberFinite(value) && value <= 0) value = dataExtent[0]; return value; }, getDefaultStartValue: function() { return 1; }, getExtent: function() { return this.powStub.getExtent(); }, getExtentUnsafe: function(kind, depth) { return depth === null ? this.powStub.getExtentUnsafe(kind, null) : this.intervalStub.getExtentUnsafe(kind, depth); } }; return LogScale; }(Scale); Scale.registerClass(LogScale); var tmpTransformOutOpt1 = {}; var tmpTransformOutOpt2 = {}; var tmpNotUsedArr = []; //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/coord/axisCommonTypes.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var AXIS_TYPES = { value: 1, category: 1, time: 1, log: 1 }; //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/coord/axisHelper.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var axisInner$1 = makeInner(); function determineAxisType(model) { var type = model.get("type"); if (type == null || !hasOwn(AXIS_TYPES, type) && !Scale.getClass(type)) type = "value"; return type; } function createScaleByModel(model, type, coordSysSupportAxisBreaks) { var breakHelper = getScaleBreakHelper(); var breakOption; if (breakHelper) breakOption = retrieveAxisBreaksOption(model, type, coordSysSupportAxisBreaks); switch (type) { case "category": return new OrdinalScale({ ordinalMeta: model.getOrdinalMeta ? model.getOrdinalMeta() : model.getCategories(), extent: initExtentForUnion() }); case "time": return new TimeScale({ locale: model.ecModel.getLocaleModel(), useUTC: model.ecModel.get("useUTC"), breakOption }); case "log": return new LogScale({ logBase: model.get("logBase"), breakOption }); case "value": return new IntervalScale({ breakOption }); default: return new ((Scale.getClass(type)) || IntervalScale)({}); } } /** * Check if the axis cross a specific value. */ function getScaleValuePositionKind(scale, value, considerMappingExtent) { var dataExtent = considerMappingExtent ? getScaleExtentForMappingUnsafe(scale, null) : scale.getExtentUnsafe(0, null); var min = dataExtent[0]; var max = dataExtent[1]; return !isValidBoundsForExtent(min, max) ? 3 : min === value || max === value ? 2 : min < value && max > value ? 1 : 3; } function discourageOnAxisZero(axis) { axisInner$1(axis).noOnMyZero = true; } /** * `true`: Prevent orthoganal axes from positioning at the zero point of this axis. */ function isOnAxisZeroDiscouraged(axis) { return axisInner$1(axis).noOnMyZero; } /** * @param axis * @return Label formatter function. * param: {number} tickValue, * param: {number} idx, the index in all ticks. * If category axis, this param is not required. * return: {string} label string. */ function makeLabelFormatter(axis) { var labelFormatter = axis.getLabelModel().get("formatter"); if (axis.type === "time") { var parsed_1 = parseTimeAxisLabelFormatter(labelFormatter); return function(tick, idx) { return axis.scale.getFormattedLabel(tick, idx, parsed_1); }; } else if (isString(labelFormatter)) return function(tick) { var label = axis.scale.getLabel(tick); return labelFormatter.replace("{value}", label != null ? label : ""); }; else if (isFunction(labelFormatter)) { if (axis.type === "category") return function(tick, idx) { return labelFormatter(getAxisRawValue(axis, tick), tick.value - axis.scale.getExtent()[0], null); }; var scaleBreakHelper_1 = getScaleBreakHelper(); return function(tick, idx) { var extra = null; if (scaleBreakHelper_1) extra = scaleBreakHelper_1.makeAxisLabelFormatterParamBreak(extra, tick["break"]); return labelFormatter(getAxisRawValue(axis, tick), idx, extra); }; } else return function(tick) { return axis.scale.getLabel(tick); }; } function getAxisRawValue(axis, tick) { var scale = axis.scale; return isOrdinalScale(scale) ? scale.getLabel(tick) : tick.value; } /** * @param model axisLabelModel or axisTickModel */ function getOptionCategoryInterval(model) { var interval = model.get("interval"); return interval == null ? "auto" : interval; } /** * Set `categoryInterval` as 0 implicitly indicates that * show all labels regardless of overlap. * @param {Object} axis axisModel.axis */ function shouldShowAllLabels(axis) { return axis.type === "category" && getOptionCategoryInterval(axis.getLabelModel()) === 0; } function getDataDimensionsOnAxis(data, axisDim) { var dataDimMap = {}; each$4(data.mapDimensionsAll(axisDim), function(dataDim) { dataDimMap[getStackedDimension(data, dataDim)] = true; }); return keys(dataDimMap); } function isNameLocationCenter(nameLocation) { return nameLocation === "middle" || nameLocation === "center"; } function shouldAxisShow(axisModel) { return axisModel.getShallow("show"); } function retrieveAxisBreaksOption(model, axisType, coordSysSupportAxisBreaks) { var option = model.get("breaks", true); if (option != null) { if (!getScaleBreakHelper()) return; if (!coordSysSupportAxisBreaks || !isAxisTypeSupportAxisBreak(axisType)) return; return option; } } function isAxisTypeSupportAxisBreak(axisType) { return axisType !== "category"; } function updateIntervalOrLogScaleForNiceOrAligned(scale, fixMinMax, oldIntervalExtent, newIntervalExtent, oldOutermostExtent, cfg) { var isTargetLogScale = isLogScale(scale); var intervalStub = isTargetLogScale ? scale.intervalStub : scale; intervalStub.setExtent(newIntervalExtent[0], newIntervalExtent[1]); if (isTargetLogScale) { var powStub = scale.powStub; var opt = { depth: 2 }; var minPow = scale.transformOut(newIntervalExtent[0], opt); var maxPow = scale.transformOut(newIntervalExtent[1], opt); var extentChanged = extentDiffers(oldIntervalExtent, newIntervalExtent); if (fixMinMax[0] && !extentChanged[0]) minPow = oldOutermostExtent[0]; if (fixMinMax[1] && !extentChanged[1]) maxPow = oldOutermostExtent[1]; powStub.setExtent(minPow, maxPow); } intervalStub.setConfig(cfg); } function getTickValueOutermost(scale, tick) { return isOrdinalScale(scale) ? scale.getRawOrdinalNumber(tick.value) : tick.value; } function isAxisOnBand(scale, axisModel) { return isOrdinalScale(scale) && !!axisModel.get("boundaryGap"); } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/processor/dataSample.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var samplers = { average: function(frame) { var sum = 0; var count = 0; for (var i = 0; i < frame.length; i++) if (!isNaN(frame[i])) { sum += frame[i]; count++; } return count === 0 ? NaN : sum / count; }, sum: function(frame) { var sum = 0; for (var i = 0; i < frame.length; i++) sum += frame[i] || 0; return sum; }, max: function(frame) { var max = -Infinity; for (var i = 0; i < frame.length; i++) frame[i] > max && (max = frame[i]); return isFinite(max) ? max : NaN; }, min: function(frame) { var min = Infinity; for (var i = 0; i < frame.length; i++) frame[i] < min && (min = frame[i]); return isFinite(min) ? min : NaN; }, nearest: function(frame) { return frame[0]; } }; var indexSampler = function(frame) { return Math.round(frame.length / 2); }; function dataSample(seriesType) { return { seriesType, reset: function(seriesModel, ecModel, api) { var data = seriesModel.getData(); var sampling = seriesModel.get("sampling"); var coordSys = seriesModel.coordinateSystem; var count = data.count(); if (count > 10 && coordSys.type === "cartesian2d" && sampling) { var baseAxis = coordSys.getBaseAxis(); var valueAxis = coordSys.getOtherAxis(baseAxis); var extent = baseAxis.getExtent(); var dpr = api.getDevicePixelRatio(); var size = Math.abs(extent[1] - extent[0]) * (dpr || 1); var rate = Math.round(count / size); if (isFinite(rate) && rate > 1) { if (sampling === "lttb") seriesModel.setData(data.lttbDownSample(data.mapDimension(valueAxis.dim), 1 / rate)); else if (sampling === "minmax") seriesModel.setData(data.minmaxDownSample(data.mapDimension(valueAxis.dim), 1 / rate)); var sampler = void 0; if (isString(sampling)) sampler = samplers[sampling]; else if (isFunction(sampling)) sampler = sampling; if (sampler) seriesModel.setData(data.downSample(data.mapDimension(valueAxis.dim), 1 / rate, sampler, indexSampler)); } } } }; } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/coord/axisTickLabelBuilder.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var modelInner = makeInner(); var axisInner = makeInner(); var AxisTickLabelComputingKind = { estimate: 1, determine: 2 }; function createAxisLabelsComputingContext(kind) { return { out: { noPxChangeTryDetermine: [] }, kind }; } /** * CAUTION: Do not modify the result. */ function createAxisLabels(axis, ctx) { var custom = axis.getLabelModel().get("customValues"); if (custom) { var scale_1 = axis.scale; return { labels: map$1(parseTickLabelCustomValues(custom, scale_1), function(tick, index) { return { formattedLabel: makeLabelFormatter(axis)(tick, index), rawLabel: scale_1.getLabel(tick), tick }; }) }; } return axis.type === "category" ? makeCategoryLabels(axis, ctx) : makeRealNumberLabels(axis); } /** * CAUTION: Do not modify the result. * * @param tickModel For example, can be axisTick, splitLine, splitArea. */ function createAxisTicks(axis, tickModel, opt) { var scale = axis.scale; var custom = axis.getTickModel().get("customValues"); if (custom) return { ticks: parseTickLabelCustomValues(custom, scale) }; return axis.type === "category" ? makeCategoryTicks(axis, tickModel) : { ticks: scale.getTicks(opt) }; } function parseTickLabelCustomValues(customValues, scale) { var extent = scale.getExtent(); var tickNumbers = []; each$4(customValues, function(val) { val = scale.parse(val); if (val >= extent[0] && val <= extent[1]) tickNumbers.push(val); }); removeDuplicates(tickNumbers, removeDuplicatesGetKeyFromItemItself, null); asc(tickNumbers); return map$1(tickNumbers, function(tickVal) { return { value: tickVal }; }); } function makeCategoryLabels(axis, ctx) { var labelModel = axis.getLabelModel(); var result = makeCategoryLabelsActually(axis, labelModel, ctx); return !labelModel.get("show") || axis.scale.isBlank() ? { labels: [] } : result; } function makeCategoryLabelsActually(axis, labelModel, ctx) { var labelsCache = ensureCategoryLabelCache(axis); var optionLabelInterval = getOptionCategoryInterval(labelModel); var isEstimate = ctx.kind === AxisTickLabelComputingKind.estimate; if (!isEstimate) { var result_1 = axisCacheGet(labelsCache, optionLabelInterval); if (result_1) return result_1; } var labels; var numericLabelInterval; if (isFunction(optionLabelInterval)) labels = makeTicksLabelsByCategoryIntervalNumOrCb(axis, optionLabelInterval, false); else { numericLabelInterval = optionLabelInterval === "auto" ? makeAutoCategoryInterval(axis, ctx) : optionLabelInterval; labels = makeTicksLabelsByCategoryIntervalNumOrCb(axis, numericLabelInterval, false); } var result = { labels, labelCategoryInterval: numericLabelInterval }; if (!isEstimate) axisCacheSet(labelsCache, optionLabelInterval, result); else ctx.out.noPxChangeTryDetermine.push(function() { axisCacheSet(labelsCache, optionLabelInterval, result); return true; }); return result; } function makeCategoryTicks(axis, tickModel) { var ticksCache = ensureCategoryTickCache(axis); var optionTickInterval = getOptionCategoryInterval(tickModel); var result = axisCacheGet(ticksCache, optionTickInterval); if (result) return result; var ticks; var tickCategoryInterval; if (!tickModel.get("show") || axis.scale.isBlank()) ticks = []; if (isFunction(optionTickInterval)) ticks = makeTicksLabelsByCategoryIntervalNumOrCb(axis, optionTickInterval, true); else if (optionTickInterval === "auto") { var labelsResult = makeCategoryLabelsActually(axis, axis.getLabelModel(), createAxisLabelsComputingContext(AxisTickLabelComputingKind.determine)); tickCategoryInterval = labelsResult.labelCategoryInterval; ticks = map$1(labelsResult.labels, function(labelItem) { return labelItem.tick; }); } else { tickCategoryInterval = optionTickInterval; ticks = makeTicksLabelsByCategoryIntervalNumOrCb(axis, tickCategoryInterval, true); } return axisCacheSet(ticksCache, optionTickInterval, { ticks, tickCategoryInterval }); } function makeRealNumberLabels(axis) { var ticks = axis.scale.getTicks(); var labelFormatter = makeLabelFormatter(axis); return { labels: map$1(ticks, function(tick, idx) { return { formattedLabel: labelFormatter(tick, idx), rawLabel: axis.scale.getLabel(tick), tick }; }) }; } var ensureCategoryTickCache = initAxisCacheMethod("axisTick"); var ensureCategoryLabelCache = initAxisCacheMethod("axisLabel"); /** * PENDING: refactor to JS Map? Because key can be a function or more complicated object, and * cache size always is small, and currently no JS Map object key polyfill, we use a simple * array cache instead of plain object hash. */ function initAxisCacheMethod(prop) { return function ensureCache(axis) { return axisInner(axis)[prop] || (axisInner(axis)[prop] = { list: [] }); }; } function axisCacheGet(cache, key) { for (var i = 0; i < cache.list.length; i++) if (cache.list[i].key === key) return cache.list[i].value; } function axisCacheSet(cache, key, value) { cache.list.push({ key, value }); return value; } function makeAutoCategoryInterval(axis, ctx) { if (ctx.kind === AxisTickLabelComputingKind.estimate) { var result_2 = axis.calculateCategoryInterval(ctx); ctx.out.noPxChangeTryDetermine.push(function() { axisInner(axis).autoInterval = result_2; return true; }); return result_2; } var result = axisInner(axis).autoInterval; return result != null ? result : axisInner(axis).autoInterval = axis.calculateCategoryInterval(ctx); } /** * Calculate interval for category axis ticks and labels. * Use a strategy to try to avoid overlapping. * To get precise result, at least one of `getRotate` and `isHorizontal` * should be implemented in axis. */ function calculateCategoryInterval(axis, ctx) { var kind = ctx.kind; var params = fetchAutoCategoryIntervalCalculationParams(axis); var labelFormatter = makeLabelFormatter(axis); var rotation = (params.axisRotate - params.labelRotate) / 180 * Math.PI; var ordinalScale = axis.scale; var ordinalExtent = ordinalScale.getExtent(); var tickCount = ordinalScale.count(); if (ordinalExtent[1] - ordinalExtent[0] < 1) return 0; var step = 1; var maxCount = 40; if (tickCount > maxCount) step = Math.max(1, Math.floor(tickCount / maxCount)); var tickValue = ordinalExtent[0]; var unitSpan = axis.dataToCoord(tickValue + 1) - axis.dataToCoord(tickValue); var unitW = Math.abs(unitSpan * Math.cos(rotation)); var unitH = Math.abs(unitSpan * Math.sin(rotation)); var maxW = 0; var maxH = 0; for (; tickValue <= ordinalExtent[1]; tickValue += step) { var width = 0; var height = 0; var rect = getBoundingRect(labelFormatter({ value: tickValue }), params.font, "center", "top"); width = rect.width * 1.3; height = rect.height * 1.3; maxW = Math.max(maxW, width, 7); maxH = Math.max(maxH, height, 7); } var dw = maxW / unitW; var dh = maxH / unitH; isNaN(dw) && (dw = Infinity); isNaN(dh) && (dh = Infinity); var interval = Math.max(0, Math.floor(Math.min(dw, dh))); if (kind === AxisTickLabelComputingKind.estimate) { ctx.out.noPxChangeTryDetermine.push(bind$1(calculateCategoryIntervalTryDetermine, null, axis, interval, tickCount)); return interval; } var lastInterval = calculateCategoryIntervalDealCache(axis, interval, tickCount); return lastInterval != null ? lastInterval : interval; } function calculateCategoryIntervalTryDetermine(axis, interval, tickCount) { return calculateCategoryIntervalDealCache(axis, interval, tickCount) == null; } function calculateCategoryIntervalDealCache(axis, interval, tickCount) { var cache = modelInner(axis.model); var axisExtent = axis.getExtent(); var lastAutoInterval = cache.lastAutoInterval; var lastTickCount = cache.lastTickCount; if (lastAutoInterval != null && lastTickCount != null && Math.abs(lastAutoInterval - interval) <= 1 && Math.abs(lastTickCount - tickCount) <= 1 && lastAutoInterval > interval && cache.axisExtent0 === axisExtent[0] && cache.axisExtent1 === axisExtent[1]) return lastAutoInterval; else { cache.lastTickCount = tickCount; cache.lastAutoInterval = interval; cache.axisExtent0 = axisExtent[0]; cache.axisExtent1 = axisExtent[1]; } } function fetchAutoCategoryIntervalCalculationParams(axis) { var labelModel = axis.getLabelModel(); return { axisRotate: axis.getRotate ? axis.getRotate() : axis.isHorizontal && !axis.isHorizontal() ? 90 : 0, labelRotate: labelModel.get("rotate") || 0, font: labelModel.getFont() }; } function makeTicksLabelsByCategoryIntervalNumOrCb(axis, categoryInterval, onlyTick) { var labelFormatter = makeLabelFormatter(axis); var ordinalScale = axis.scale; var result = []; var categoryIntervalIsCb = isFunction(categoryInterval); ordinalScaleCreateTicks(ordinalScale, categoryIntervalIsCb ? 0 : categoryInterval, function(tickObj, isExtentBoundary) { var tickLabel = ordinalScale.getLabel(tickObj); if (categoryIntervalIsCb) { var isOnInterval = !!categoryInterval(tickObj.value, tickLabel); tickObj.offInterval = !isOnInterval; if (!isOnInterval && !isExtentBoundary) return; } result.push(onlyTick ? tickObj : { formattedLabel: labelFormatter(tickObj), rawLabel: tickLabel, tick: tickObj }); }); return result; } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/util/cycleCache.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var ecModelCacheInner = makeInner(); /** * CAVEAT: Can only be called by `echarts.ts` */ function resetCachePerECPrepare(ecModel) { ecModelCacheInner(ecModel).prepare = {}; } /** * CAVEAT: Can only be called by `echarts.ts` */ function resetCachePerECFullUpdate(ecModel) { ecModelCacheInner(ecModel).fullUpdate = {}; } /** * The cache is auto cleared at the beginning of EC_PREPARE. * See also comments in EC_CYCLE. * * NOTICE: * - EC_PREPARE is not necessarily executed before each EC_FULL_UPDATE performing. * Typically, `setOption` trigger EC_PREPARE, but `dispatchAction` does not. * - It is not cleared in EC_PARTIAL_UPDATE and EC_PROGRESSIVE_CYCLE. * */ function getCachePerECPrepare(ecModel) { return ecModelCacheInner(ecModel).prepare; } /** * @usage * ```js * const cycleCache = makeInner<{ * prop1: number; * prop2: string; * }, GlobalModelCachePerECFullUpdate>(); * function doSomthing(ecModel: GlobalModel): void { * cycleCache(getCachePerECFullUpdate(ecModel)).prop1 = 123; * cycleCache(getCachePerECFullUpdate(ecModel)).prop2; * } * ``` * * The cache is auto cleared at the beginning of EC_FULL_UPDATE. * See also comments in EC_CYCLE. * * NOTICE: * - It is not cleared in EC_PARTIAL_UPDATE and EC_PROGRESSIVE_CYCLE. * - The cache should NOT be written before EC_FULL_UPDATE started, such as: * - should NOT in `getTargetSeries` methods of data processors. * - should NOT in `init`/`mergeOption`/`optionUpdated`/`getData` methods of component/series models. * - See `getCachePerECPrepare` for details. */ function getCachePerECFullUpdate(ecModel) { return ecModelCacheInner(ecModel).fullUpdate; } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/coord/axisStatistics.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var callOnlyOnce$1 = makeCallOnlyOnce(); var ecModelCacheFullUpdateInner = makeInner(); var ecModelCachePrepareInner = makeInner(); function getAxisStatPerKeyPerAxis(axis, axisStatKey) { var axisModel = axis.model; var keyed = ecModelCacheFullUpdateInner(getCachePerECFullUpdate(axisModel.ecModel)).keyed; var perKey = keyed && keyed.get(axisStatKey); return perKey && perKey.get(axisModel.uid); } function getAxisStat(axis, axisStatKey) { return wrapStatResult(getAxisStatPerKeyPerAxis(axis, axisStatKey)); } function getAxisStatBySeries(axis, seriesList) { var result = []; eachKeyEachAxis(axis.model.ecModel, function(perKeyPerAxis) { for (var idx = 0; idx < seriesList.length; idx++) if (seriesList[idx] && perKeyPerAxis.serByIdx[seriesList[idx].seriesIndex]) result.push(wrapStatResult(perKeyPerAxis)); }); return result; } function eachKeyEachAxis(ecModel, cb) { var keyed = ecModelCacheFullUpdateInner(getCachePerECFullUpdate(ecModel)).keyed; keyed && keyed.each(function(perKey, axisStatKey) { perKey.each(function(perKeyPerAxis, axisModelUid) { cb(perKeyPerAxis, axisStatKey, axisModelUid); }); }); } function wrapStatResult(record) { return { liPosMinGap: record ? record.liPosMinGap : void 0 }; } function eachSeriesOnAxis(axis, cb) { var ecModel = axis.model.ecModel; var seriesOnAxisMap = ecModelCacheFullUpdateInner(getCachePerECFullUpdate(ecModel)).axSer; seriesOnAxisMap && eachSeriesDealForAxisStat(ecModel, seriesOnAxisMap.get(axis.model.uid), cb); } /** * NOTE: * - series declaration order is respected (some ec option precedence matters, e.g., bar series). * - series filtered out are excluded. */ function eachSeriesOnAxisOnKey(axis, axisStatKey, cb) { var perKeyPerAxis = getAxisStatPerKeyPerAxis(axis, axisStatKey); perKeyPerAxis && eachSeriesDealForAxisStat(axis.model.ecModel, perKeyPerAxis.sers, cb); } function eachSeriesDealForAxisStat(ecModel, seriesList, cb) { if (!seriesList) return; for (var i = 0; i < seriesList.length; i++) { var seriesModel = seriesList[i]; if (!ecModel.isSeriesFiltered(seriesModel)) cb(seriesModel); } } /** * NOTICE: Available after `CoordinateSystem['create']` (not included). * * Query all axes that have at least one associated series (via `associateSeriesWithAxis`) * by the given key. */ function eachAxisOnKey(ecModel, axisStatKey, cb) { var keyed = ecModelCacheFullUpdateInner(getCachePerECFullUpdate(ecModel)).keyed; var perKey = keyed && keyed.get(axisStatKey); perKey && perKey.each(function(perKeyPerAxis) { cb(perKeyPerAxis.axis); }); } /** * NOTICE: Available after `CoordinateSystem['create']` (not included). * * Query all `AxisStatKey`s that have at least one associated series (via `associateSeriesWithAxis`) * by the given axis. */ function eachKeyOnAxis(axis, cb) { var model = axis.model; var keysByAxisModelUid = ecModelCacheFullUpdateInner(getCachePerECFullUpdate(model.ecModel)).keys; keysByAxisModelUid && each$4(keysByAxisModelUid.get(model.uid), function(axisStatKey) { cb(axisStatKey); }); } /** * NOTICE: this processor may be omitted - it is registered only if required. */ function performAxisStatisticsOnOverallReset(ecModel) { var ecPrepareCache = ecModelCachePrepareInner(getCachePerECPrepare(ecModel)); var ecPrepareCacheKeyed = ecPrepareCache.keyed || (ecPrepareCache.keyed = createHashMap()); eachKeyEachAxis(ecModel, function(perKeyPerAxis, axisStatKey, axisModelUid) { var ecPrepareCachePerKey = ecPrepareCacheKeyed.get(axisStatKey) || ecPrepareCacheKeyed.set(axisStatKey, createHashMap()); var ecPreparePerKeyPerAxis = ecPrepareCachePerKey.get(axisModelUid) || ecPrepareCachePerKey.set(axisModelUid, {}); if (perKeyPerAxis.metrics.liPosMinGap) _metricImpl.liPosMinGap(ecModel, perKeyPerAxis, ecPreparePerKeyPerAxis); }); } function registerMetricImpl(metricType, impl) { _metricImpl[metricType] = impl; } var _metricImpl = {}; /** * NOTICE: * - It must be called in `CoordinateSystem['create']`, before series filtering. * - It must be called in `seriesIndex` ascending order (series declaration order). * i.e., iterated by `ecModel.eachSeries`. * - Every pair can only call this method once. * * @see scaleRawExtentInfoCreate in `scaleRawExtentInfo.ts` */ function associateSeriesWithAxis(axis, seriesModel, coordSysType) { if (!axis) return; var ecModel = seriesModel.ecModel; var ecFullUpdateCache = ecModelCacheFullUpdateInner(getCachePerECFullUpdate(ecModel)); var axisModelUid = axis.model.uid; var seriesOnAxisMap = ecFullUpdateCache.axSer || (ecFullUpdateCache.axSer = createHashMap()); (seriesOnAxisMap.get(axisModelUid) || seriesOnAxisMap.set(axisModelUid, [])).push(seriesModel); var seriesType = seriesModel.subType; var isBaseAxis = seriesModel.getBaseAxis() === axis; var client = clientsForLookup.get(makeClientLookupKey(seriesType, isBaseAxis, coordSysType)) || clientsForLookup.get(makeClientLookupKey(seriesType, isBaseAxis, null)); if (!client) return; var keyed = ecFullUpdateCache.keyed || (ecFullUpdateCache.keyed = createHashMap()); var keys = ecFullUpdateCache.keys || (ecFullUpdateCache.keys = createHashMap()); var axisStatKey = client.key; var perKey = keyed.get(axisStatKey) || keyed.set(axisStatKey, createHashMap()); var perKeyPerAxis = perKey.get(axisModelUid); if (!perKeyPerAxis) { perKeyPerAxis = perKey.set(axisModelUid, { axis, sers: [], serByIdx: [] }); perKeyPerAxis.metrics = client.getMetrics(axis); (keys.get(axisModelUid) || keys.set(axisModelUid, [])).push(axisStatKey); } perKeyPerAxis.sers.push(seriesModel); perKeyPerAxis.serByIdx[seriesModel.seriesIndex] = seriesModel; } /** * NOTE: Currently, the scenario is simple enough to look up clients by hash map. * Otherwise, a caller-provided `filter` may be an alternative if more complex requirements arise. */ function makeClientLookupKey(seriesType, isBaseAxis, coordSysType) { return seriesType + "|&" + retrieve2(isBaseAxis, true) + "|&" + (coordSysType || ""); } /** * NOTICE: Can only be called in "install" stage. * * See `axisSnippets.ts` for some commonly used clients. */ function requireAxisStatistics(registers, client) { var clientKey = makeClientLookupKey(client.seriesType, client.baseAxis, client.coordSysType); clientsForLookup.set(clientKey, client); callOnlyOnce$1(registers, function() { registers.registerProcessor(registers.PRIORITY.PROCESSOR.AXIS_STATISTICS, { overallReset: performAxisStatisticsOnOverallReset }); }); } var clientsForLookup = createHashMap(); //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/coord/axisBand.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var FALLBACK_BAND_WIDTH_RATIO = .8; /** * NOTICE: * - Require the axis pixel extent and the scale extent as inputs. But they * can be not precise for approximation. * - Can only be called after "data processing" stage. * * PENDING: * Currently `bandWidth` can not be specified by users explicitly. But if we * allow that in future, these issues must be considered: * - Can only allow specifying a band width in data scale rather than pixel. * - LogScale needs to be considered - band width can only be specified on linear * (but before break) scale, similar to `axis.interval`. * * A band is required on: * - series group band width in bar/boxplot/candlestick/...; * - tooltip axisPointer type "shadow"; * - etc. */ function calcBandWidth(axis, opt) { opt = opt || {}; var out = { w: NaN, w2: NaN }; var scale = axis.scale; var fromStat = opt.fromStat; var min = opt.min; var scaleLinearSpan = getScaleLinearSpanForMapping(scale); if (!isNullableNumberFinite(scaleLinearSpan)) scaleLinearSpan = NaN; var axisExtent = axis.getExtent(); var pxSpan = mathAbs$2(axisExtent[1] - axisExtent[0]); if (isOrdinalScale(scale)) calcBandWidthForCategoryAxis(out, axis, scaleLinearSpan, pxSpan); else if (fromStat) calcBandWidthForNumericAxis(out, axis, scaleLinearSpan, pxSpan, fromStat); else if (min == null) {} if (min != null) out.w = isNullableNumberFinite(out.w) ? mathMax$3(min, out.w) : min; return out; } function calcBandWidthForCategoryAxis(out, axis, scaleLinearSpan, pxSpan) { var onBand = axis.onBand; var len = scaleLinearSpan + (onBand ? 1 : 0); len === 0 && (len = 1); out.w = pxSpan / len; if (!onBand && scaleLinearSpan && pxSpan) out.w2 = out.w * scaleLinearSpan / pxSpan; } function calcBandWidthForNumericAxis(out, axis, scaleLinearSpan, pxSpan, fromStat) { var onlySingular = false; var bandWidthInData = -Infinity; each$4(fromStat.key ? [getAxisStat(axis, fromStat.key)] : getAxisStatBySeries(axis, fromStat.sers || []), function(stat) { var liPosMinGap = stat.liPosMinGap; if (liPosMinGap != null) { if (liPosMinGap > 0) { if (liPosMinGap > bandWidthInData) bandWidthInData = liPosMinGap; onlySingular = false; } else if (liPosMinGap === -2) onlySingular = true; } }); if (isNullableNumberFinite(scaleLinearSpan) && scaleLinearSpan > 0 && isNullableNumberFinite(bandWidthInData)) { out.w = pxSpan / scaleLinearSpan * bandWidthInData; out.w2 = bandWidthInData; } else if (onlySingular) { out.w = pxSpan * FALLBACK_BAND_WIDTH_RATIO; out.w2 = out.w * scaleLinearSpan / pxSpan; } } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/coord/Axis.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var NORMALIZED_EXTENT = [0, 1]; /** * Base class of Axis. * * Lifetime: recreate for each main process. * [NOTICE]: Some caches is stored on the axis instance (e.g., `axisTickLabelBuilder.ts`, `scaleRawExtentInfo.ts`), * which is based on this lifetime. */ var Axis = function() { function Axis(dim, scale, extent) { this.onBand = false; this.inverse = false; this.dim = dim; this.scale = scale; this._extent = extent || [0, 0]; } /** * If axis extent contain given coord */ Axis.prototype.contain = function(coord) { var extent = this._extent; var min = Math.min(extent[0], extent[1]); var max = Math.max(extent[0], extent[1]); return coord >= min && coord <= max; }; /** * If axis extent contain given data */ Axis.prototype.containData = function(data) { return this.scale.contain(this.scale.parse(data)); }; /** * Get coord extent. */ Axis.prototype.getExtent = function() { return this._extent.slice(); }; /** * Set coord extent */ Axis.prototype.setExtent = function(start, end) { var extent = this._extent; extent[0] = start; extent[1] = end; }; /** * Convert data to coord. Data is the rank if it has an ordinal scale */ Axis.prototype.dataToCoord = function(data, clamp) { var scale = this.scale; data = scale.normalize(scale.parse(data)); return linearMap(data, NORMALIZED_EXTENT, makeExtentWithBands(this), clamp); }; /** * Convert coord to data. Data is the rank if it has an ordinal scale */ Axis.prototype.coordToData = function(coord, clamp) { var t = linearMap(coord, makeExtentWithBands(this), NORMALIZED_EXTENT, clamp); return this.scale.scale(t); }; /** * Convert pixel point to data in axis */ Axis.prototype.pointToData = function(point, clamp) {}; /** * Different from `zrUtil.map(axis.getTicks(), axis.dataToCoord, axis)`, * `axis.getTicksCoords` considers `onBand`, which is used by * `boundaryGap:true` of category axis and splitLine and splitArea. * @param opt.tickModel default: axis.model.getModel('axisTick') */ Axis.prototype.getTicksCoords = function(opt) { opt = opt || {}; var tickModel = opt.tickModel || this.getTickModel(); var preTicksCoords = map$1(createAxisTicks(this, tickModel, { breakTicks: opt.breakTicks, pruneByBreak: opt.pruneByBreak }).ticks, function(tick) { return { coord: this.dataToCoord(getTickValueOutermost(this.scale, tick)), tick }; }, this); var alignWithLabel = tickModel.get("alignWithLabel"); var onBandModified = fixOnBandTicksCoords(this, preTicksCoords, alignWithLabel); return map$1(preTicksCoords, function(item) { return { coord: item.coord, tickValue: item.tick.value, onBand: onBandModified }; }); }; Axis.prototype.getMinorTicksCoords = function() { if (isOrdinalScale(this.scale)) return []; var splitNumber = this.model.getModel("minorTick").get("splitNumber"); if (!(splitNumber > 0 && splitNumber < 100)) splitNumber = 5; return map$1(this.scale.getMinorTicks(splitNumber), function(minorTicksGroup) { return map$1(minorTicksGroup, function(minorTick) { return { coord: this.dataToCoord(minorTick), tickValue: minorTick }; }, this); }, this); }; Axis.prototype.getViewLabels = function(ctx) { ctx = ctx || createAxisLabelsComputingContext(AxisTickLabelComputingKind.determine); return createAxisLabels(this, ctx).labels; }; Axis.prototype.getLabelModel = function() { return this.model.getModel("axisLabel"); }; /** * Notice here we only get the default tick model. For splitLine * or splitArea, we should pass the splitLineModel or splitAreaModel * manually when calling `getTicksCoords`. * In GL, this method may be overridden to: * `axisModel.getModel('axisTick', grid3DModel.getModel('axisTick'));` */ Axis.prototype.getTickModel = function() { return this.model.getModel("axisTick"); }; /** * @deprecated Use `calcBandWidth` instead. */ Axis.prototype.getBandWidth = function() { return calcBandWidth(this, { min: 1 }).w; }; /** * Only be called in category axis. * Can be overridden, consider other axes like in 3D. * @return Auto interval for category axis tick and label */ Axis.prototype.calculateCategoryInterval = function(ctx) { ctx = ctx || createAxisLabelsComputingContext(AxisTickLabelComputingKind.determine); return calculateCategoryInterval(this, ctx); }; return Axis; }(); function makeExtentWithBands(axis) { var extent = axis.getExtent(); if (axis.onBand) { var margin = (extent[1] - extent[0]) / axis.scale.count() / 2; extent[0] += margin; extent[1] -= margin; } return extent; } /** * `axis.onBand: true` (i.e., `boundaryGap: true` in ec option) and `CategoryTickLabelSplitIntervalOption` * affects `axisTick`/`axisLabel`/`splitLine`/`splitArea`. * * Currently, the visual result is best only when `axisTick/splitLine/splitArea.interval === 0`. * The typical case is: * |---|---|---| <= This is the input `preTicksCoords` * 0 1 2 3 (having been added half band width by `makeExtentWithBands`). * |---|---|---|---| <= This is the result. * 0 1 2 3 * * When `interval > 0`, the visual result may be odd for `axisLabel` and `customValues`, but acceptable * for `axisTick` `splitLine` and `splitArea`: * |---~---|---~---~---|---| <= This is the input `preTicksCoords`; `interval: 2; min: 1; max: 7`. * ₁ ₂ 3 ₄ ₅ 6 ₇ Subscript numbers (`₀`, `₁`, `₃`) indicate axis labels are hidden * (by default settings) due to off-interval. * A tilde (`~`) indicates a tick ignored due to off-interval. * |---~---|---~---~---|---~---| <= This is the result. * ₁ ₂ 3 ₄ ₅ 6 ₇ * * NOTE: * - A inappropriate result may cause misleading (e.g., split 2 bars of a single data item when there * are two bar series). * - See also #11176 #11186 . * PENDING: * - The show/hide of `axisLabel` may be optimized when `interval > 1 and be an even number`, * but that may introduce complex and still not perfect in odd number, and may not necessary if * `axisTick: {show: false}` and `axisLabel` can auto hidden when overlapping. */ function fixOnBandTicksCoords(axis, preTicksCoords, alignWithLabel) { var ticksLen = preTicksCoords.length; if (!axis.onBand || alignWithLabel || !ticksLen) return false; var bandWidth = calcBandWidth(axis).w; if (!bandWidth) return false; each$4(preTicksCoords, function(ticksItem) { ticksItem.coord -= bandWidth / 2; }); var dataExtent = axis.scale.getExtent(); var oldLast = preTicksCoords[ticksLen - 1]; if (oldLast.tick.offInterval) preTicksCoords.pop(); preTicksCoords.push({ coord: oldLast.coord + bandWidth, tick: { value: dataExtent[1] + 1 } }); return true; } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/coord/cartesian/Axis2D.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var Axis2D = function(_super) { __extends(Axis2D, _super); function Axis2D(dim, scale, coordExtent, axisType, position) { var _this = _super.call(this, dim, scale, coordExtent) || this; /** * Index of axis, can be used as key * Injected outside. */ _this.index = 0; _this.type = axisType || "value"; _this.position = position || "bottom"; return _this; } Axis2D.prototype.isHorizontal = function() { var position = this.position; return position === "top" || position === "bottom"; }; /** * Each item cooresponds to this.getExtent(), which * means globalExtent[0] may greater than globalExtent[1], * unless `asc` is input. * * @param {boolean} [asc] * @return {Array.} */ Axis2D.prototype.getGlobalExtent = function(asc) { var ret = this.getExtent(); ret[0] = this.toGlobalCoord(ret[0]); ret[1] = this.toGlobalCoord(ret[1]); asc && ret[0] > ret[1] && ret.reverse(); return ret; }; Axis2D.prototype.pointToData = function(point, clamp) { return this.coordToData(this.toLocalCoord(point[this.dim === "x" ? 0 : 1]), clamp); }; /** * Set ordinalSortInfo * @param info new OrdinalSortInfo */ Axis2D.prototype.setCategorySortInfo = function(info) { if (this.type !== "category") return false; this.model.option.categorySortInfo = info; this.scale.setSortInfo(info); }; return Axis2D; }(Axis); //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/label/labelLayoutHelper.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var LABEL_LAYOUT_BASE_PROPS = [ "label", "labelLine", "layoutOption", "priority", "defaultAttr", "marginForce", "minMarginForce", "marginDefault", "suggestIgnore" ]; var LABEL_LAYOUT_DIRTY_BIT_OTHERS = 1; var LABEL_LAYOUT_DIRTY_BIT_OBB = 2; var LABEL_LAYOUT_DIRTY_ALL = LABEL_LAYOUT_DIRTY_BIT_OTHERS | LABEL_LAYOUT_DIRTY_BIT_OBB; function setLabelLayoutDirty(labelGeometry, dirtyOrClear, dirtyBits) { dirtyBits = dirtyBits || LABEL_LAYOUT_DIRTY_ALL; dirtyOrClear ? labelGeometry.dirty |= dirtyBits : labelGeometry.dirty &= ~dirtyBits; } function isLabelLayoutDirty(labelGeometry, dirtyBits) { dirtyBits = dirtyBits || LABEL_LAYOUT_DIRTY_ALL; return labelGeometry.dirty == null || !!(labelGeometry.dirty & dirtyBits); } /** * [CAUTION] * - No auto dirty propagation mechanism yet. If the transform of the raw label or any of its ancestors is * changed, must sync the changes to the props of `LabelGeometry` by: * either explicitly call: * `setLabelLayoutDirty(labelLayout, true); ensureLabelLayoutWithGeometry(labelLayout);` * or call (if only translation is performed): * `labelLayoutApplyTranslation(labelLayout);` * - `label.ignore` is not necessarily falsy, and not considered in computing `LabelGeometry`, * since it might be modified by some overlap resolving handling. * - To duplicate or make a variation: * use `newLabelLayoutWithGeometry`. * * The result can also be the input of this method. * @return `NullUndefined` if and only if `labelLayout` is `NullUndefined`. */ function ensureLabelLayoutWithGeometry(labelLayout) { if (!labelLayout) return; if (isLabelLayoutDirty(labelLayout)) computeLabelGeometry(labelLayout, labelLayout.label, labelLayout); return labelLayout; } /** * The props in `out` will be filled if existing, or created. */ function computeLabelGeometry(out, label, opt) { var rawTransform = label.getComputedTransform(); out.transform = ensureCopyTransform(out.transform, rawTransform); var outLocalRect = out.localRect = ensureCopyRect(out.localRect, label.getBoundingRect()); var labelStyleExt = label.style; var margin = labelStyleExt.margin; var marginForce = opt && opt.marginForce; var minMarginForce = opt && opt.minMarginForce; var marginDefault = opt && opt.marginDefault; var marginType = labelStyleExt.__marginType; if (marginType == null && marginDefault) { margin = marginDefault; marginType = LabelMarginType.textMargin; } for (var i = 0; i < 4; i++) _tmpLabelMargin[i] = marginType === LabelMarginType.minMargin && minMarginForce && minMarginForce[i] != null ? minMarginForce[i] : marginForce && marginForce[i] != null ? marginForce[i] : margin ? margin[i] : 0; if (marginType === LabelMarginType.textMargin) expandOrShrinkRect(outLocalRect, _tmpLabelMargin, false, false); var outGlobalRect = out.rect = ensureCopyRect(out.rect, outLocalRect); if (rawTransform) outGlobalRect.applyTransform(rawTransform); if (marginType === LabelMarginType.minMargin) expandOrShrinkRect(outGlobalRect, _tmpLabelMargin, false, false); out.axisAligned = isBoundingRectAxisAligned(rawTransform); (out.label = out.label || {}).ignore = label.ignore; setLabelLayoutDirty(out, false); setLabelLayoutDirty(out, true, LABEL_LAYOUT_DIRTY_BIT_OBB); return out; } var _tmpLabelMargin = [ 0, 0, 0, 0 ]; /** * The props in `out` will be filled if existing, or created. */ function computeLabelGeometry2(out, rawLocalRect, rawTransform) { out.transform = ensureCopyTransform(out.transform, rawTransform); out.localRect = ensureCopyRect(out.localRect, rawLocalRect); out.rect = ensureCopyRect(out.rect, rawLocalRect); if (rawTransform) out.rect.applyTransform(rawTransform); out.axisAligned = isBoundingRectAxisAligned(rawTransform); out.obb = void 0; (out.label = out.label || {}).ignore = false; return out; } /** * This is a shortcut of * ```js * labelLayout.label.x = newX; * labelLayout.label.y = newY; * setLabelLayoutDirty(labelLayout, true); * ensureLabelLayoutWithGeometry(labelLayout); * ``` * and provide better performance in this common case. */ function labelLayoutApplyTranslation(labelLayout, offset) { if (!labelLayout) return; labelLayout.label.x += offset.x; labelLayout.label.y += offset.y; labelLayout.label.markRedraw(); var transform = labelLayout.transform; if (transform) { transform[4] += offset.x; transform[5] += offset.y; } var globalRect = labelLayout.rect; if (globalRect) { globalRect.x += offset.x; globalRect.y += offset.y; } var obb = labelLayout.obb; if (obb) obb.fromBoundingRect(labelLayout.localRect, transform); } /** * To duplicate or make a variation of a label layout. * Copy the only relevant properties to avoid the conflict or wrongly reuse of the props of `LabelLayoutWithGeometry`. */ function newLabelLayoutWithGeometry(newBaseWithDefaults, source) { for (var i = 0; i < LABEL_LAYOUT_BASE_PROPS.length; i++) { var prop = LABEL_LAYOUT_BASE_PROPS[i]; if (newBaseWithDefaults[prop] == null) newBaseWithDefaults[prop] = source[prop]; } return ensureLabelLayoutWithGeometry(newBaseWithDefaults); } /** * Create obb if no one, can cache it. */ function ensureOBB(labelGeometry) { var obb = labelGeometry.obb; if (!obb || isLabelLayoutDirty(labelGeometry, LABEL_LAYOUT_DIRTY_BIT_OBB)) { labelGeometry.obb = obb = obb || new OrientedBoundingRect(); obb.fromBoundingRect(labelGeometry.localRect, labelGeometry.transform); setLabelLayoutDirty(labelGeometry, false, LABEL_LAYOUT_DIRTY_BIT_OBB); } return obb; } /** * [NOTICE - restore]: * 'series:layoutlabels' may be triggered during some EC_PARTIAL_UPDATE passes, such as zooming in series.graph/geo * (`updateLabelLayout`), where the modified `Element` props should be restorable from `defaultAttr`. * @see `SavedLabelAttr` in `LabelManager.ts` * `restoreIgnore` can be called to perform the restore, if needed. * * [NOTICE - state]: * Regarding Element's states, this method is only designed for the normal state. * PENDING: although currently this method is effectively called in other states in `updateLabelLayout` case, * the bad case is not noticeable in the zooming scenario. */ function hideOverlap(labelList) { var displayedLabels = []; labelList.sort(function(a, b) { return (b.suggestIgnore ? 1 : 0) - (a.suggestIgnore ? 1 : 0) || b.priority - a.priority; }); function hideEl(el) { if (!el.ignore) { var emphasisState = el.ensureState("emphasis"); if (emphasisState.ignore == null) emphasisState.ignore = false; } el.ignore = true; } for (var i = 0; i < labelList.length; i++) { var labelItem = ensureLabelLayoutWithGeometry(labelList[i]); if (labelItem.label.ignore) continue; var label = labelItem.label; var labelLine = labelItem.labelLine; var overlapped = false; for (var j = 0; j < displayedLabels.length; j++) if (labelIntersect(labelItem, displayedLabels[j], null, { touchThreshold: .05 })) { overlapped = true; break; } if (overlapped) { hideEl(label); labelLine && hideEl(labelLine); } else displayedLabels.push(labelItem); } } /** * Enable fast check for performance; use obb if inevitable. * If `mtv` is used, `targetLayoutInfo` can be moved based on the values filled into `mtv`. * * This method is based only on the current `Element` states (regardless of other states). * Typically this method (and the entire layout process) is performed in normal state. */ function labelIntersect(baseLayoutInfo, targetLayoutInfo, mtv, intersectOpt) { if (!baseLayoutInfo || !targetLayoutInfo) return false; if (baseLayoutInfo.label && baseLayoutInfo.label.ignore || targetLayoutInfo.label && targetLayoutInfo.label.ignore) return false; if (!baseLayoutInfo.rect.intersect(targetLayoutInfo.rect, mtv, intersectOpt)) return false; if (baseLayoutInfo.axisAligned && targetLayoutInfo.axisAligned) return true; return ensureOBB(baseLayoutInfo).intersect(ensureOBB(targetLayoutInfo), mtv, intersectOpt); } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/component/axis/axisBreakHelper.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var _impl = null; function getAxisBreakHelper() { return _impl; } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/component/axis/axisAction.js var AXIS_BREAK_EXPAND_ACTION_TYPE = "expandAxisBreak"; //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/component/axis/AxisBuilder.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var PI$1 = Math.PI; var DEFAULT_CENTER_NAME_MARGIN_LEVELS = [ [ 1, 2, 1, 2 ], [ 5, 3, 5, 3 ], [ 8, 3, 8, 3 ] ]; var DEFAULT_ENDS_NAME_MARGIN_LEVELS = [ [ 0, 1, 0, 1 ], [ 0, 3, 0, 3 ], [ 0, 3, 0, 3 ] ]; var getLabelInner = makeInner(); var getTickInner = makeInner(); /** * A context shared by difference axisBuilder instances. * For cross-axes overlap resolving. * * Lifecycle constraint: should not over a pass of ec main process. * If model is changed, the context must be disposed. * * @see AxisBuilderLocalContext */ var AxisBuilderSharedContext = function() { function AxisBuilderSharedContext(resolveAxisNameOverlap) { /** * [CAUTION] Do not modify this data structure outside this class. */ this.recordMap = {}; this.resolveAxisNameOverlap = resolveAxisNameOverlap; } AxisBuilderSharedContext.prototype.ensureRecord = function(axisModel) { var dim = axisModel.axis.dim; var idx = axisModel.componentIndex; var recordMap = this.recordMap; var records = recordMap[dim] || (recordMap[dim] = []); return records[idx] || (records[idx] = { ready: {} }); }; return AxisBuilderSharedContext; }(); /** * [CAUTION] * 1. The call of this function must be after axisLabel overlap handlings * (such as `hideOverlap`, `fixMinMaxLabelShow`) and after transform calculating. * 2. Can be called multiple times and should be idempotent. */ function resetOverlapRecordToShared(cfg, shared, axisModel, labelLayoutList) { var axis = axisModel.axis; var record = shared.ensureRecord(axisModel); var labelInfoList = []; var stOccupiedRect; var useStOccupiedRect = hasAxisName(cfg.axisName) && isNameLocationCenter(cfg.nameLocation); each$4(labelLayoutList, function(layout) { var layoutInfo = ensureLabelLayoutWithGeometry(layout); if (!layoutInfo || layoutInfo.label.ignore) return; labelInfoList.push(layoutInfo); var transGroup = record.transGroup; if (useStOccupiedRect) { transGroup.transform ? invert(_stTransTmp, transGroup.transform) : identity(_stTransTmp); if (layoutInfo.transform) mul(_stTransTmp, _stTransTmp, layoutInfo.transform); BoundingRect.copy(_stLabelRectTmp, layoutInfo.localRect); _stLabelRectTmp.applyTransform(_stTransTmp); stOccupiedRect ? stOccupiedRect.union(_stLabelRectTmp) : BoundingRect.copy(stOccupiedRect = new BoundingRect(0, 0, 0, 0), _stLabelRectTmp); } }); var sortByDim = Math.abs(record.dirVec.x) > .1 ? "x" : "y"; var sortByValue = record.transGroup[sortByDim]; labelInfoList.sort(function(info1, info2) { return Math.abs(info1.label[sortByDim] - sortByValue) - Math.abs(info2.label[sortByDim] - sortByValue); }); if (useStOccupiedRect && stOccupiedRect) { var extent = axis.getExtent(); var axisLineX = Math.min(extent[0], extent[1]); var axisLineWidth = Math.max(extent[0], extent[1]) - axisLineX; stOccupiedRect.union(new BoundingRect(axisLineX, 0, axisLineWidth, 1)); } record.stOccupiedRect = stOccupiedRect; record.labelInfoList = labelInfoList; } var _stTransTmp = create$1(); var _stLabelRectTmp = new BoundingRect(0, 0, 0, 0); /** * The default resolver does not involve other axes within the same coordinate system. */ var resolveAxisNameOverlapDefault = function(cfg, ctx, axisModel, nameLayoutInfo, nameMoveDirVec, thisRecord) { if (isNameLocationCenter(cfg.nameLocation)) { var stOccupiedRect = thisRecord.stOccupiedRect; if (stOccupiedRect) moveIfOverlap(computeLabelGeometry2({}, stOccupiedRect, thisRecord.transGroup.transform), nameLayoutInfo, nameMoveDirVec); } else moveIfOverlapByLinearLabels(thisRecord.labelInfoList, thisRecord.dirVec, nameLayoutInfo, nameMoveDirVec); }; function moveIfOverlap(basedLayoutInfo, movableLayoutInfo, moveDirVec) { var mtv = new Point(); if (labelIntersect(basedLayoutInfo, movableLayoutInfo, mtv, { direction: Math.atan2(moveDirVec.y, moveDirVec.x), bidirectional: false, touchThreshold: .05 })) labelLayoutApplyTranslation(movableLayoutInfo, mtv); } function moveIfOverlapByLinearLabels(baseLayoutInfoList, baseDirVec, movableLayoutInfo, moveDirVec) { var sameDir = Point.dot(moveDirVec, baseDirVec) >= 0; for (var idx = 0, len = baseLayoutInfoList.length; idx < len; idx++) { var labelInfo = baseLayoutInfoList[sameDir ? idx : len - 1 - idx]; if (!labelInfo.label.ignore) moveIfOverlap(labelInfo, movableLayoutInfo, moveDirVec); } } /** * @caution * - Ensure it is called after the data processing stage finished. * - It might be called before `CahrtView#render`, sush as called at `CoordinateSystem#update`, * thus ensure the result the same whenever it is called. * * A builder for a straight-line axis. * * A final axis is translated and rotated from a "standard axis". * So opt.position and opt.rotation is required. * * A "standard axis" is the axis [0,0]-->[abs(axisExtent[1]-axisExtent[0]),0] * for example: [0,0]-->[50,0] */ var AxisBuilder = function() { /** * [CAUTION]: axisModel.axis.extent/scale must be ready to use. */ function AxisBuilder(axisModel, api, opt, shared) { this.group = new Group$2(); this._axisModel = axisModel; this._api = api; this._local = {}; this._shared = shared || new AxisBuilderSharedContext(resolveAxisNameOverlapDefault); this._resetCfgDetermined(opt); } /** * Regarding axis label related configurations, only the change of label.x/y is supported; other * changes are not necessary and not performant. To be specific, only `axis.position` * (and consequently `labelOffset`) and `axis.extent` can be changed, and assume everything in * `axisModel` are not changed. * Axis line related configurations can be changed since this method can only be called * before they are created. */ AxisBuilder.prototype.updateCfg = function(opt) { var raw = this._cfg.raw; raw.position = opt.position; raw.labelOffset = opt.labelOffset; this._resetCfgDetermined(raw); }; /** * [CAUTION] For debug usage. Never change it outside! */ AxisBuilder.prototype.__getRawCfg = function() { return this._cfg.raw; }; AxisBuilder.prototype._resetCfgDetermined = function(raw) { var axisModel = this._axisModel; var axisModelDefaultOption = axisModel.getDefaultOption ? axisModel.getDefaultOption() : {}; var axisName = retrieve2(raw.axisName, axisModel.get("name")); var nameMoveOverlapOption = axisModel.get("nameMoveOverlap"); if (nameMoveOverlapOption == null || nameMoveOverlapOption === "auto") nameMoveOverlapOption = retrieve2(raw.defaultNameMoveOverlap, true); var cfg = { raw, position: raw.position, rotation: raw.rotation, nameDirection: retrieve2(raw.nameDirection, 1), tickDirection: retrieve2(raw.tickDirection, 1), labelDirection: retrieve2(raw.labelDirection, 1), labelOffset: retrieve2(raw.labelOffset, 0), silent: retrieve2(raw.silent, true), axisName, nameLocation: retrieve3(axisModel.get("nameLocation"), axisModelDefaultOption.nameLocation, "end"), shouldNameMoveOverlap: hasAxisName(axisName) && nameMoveOverlapOption, optionHideOverlap: axisModel.get(["axisLabel", "hideOverlap"]), showMinorTicks: axisModel.get(["minorTick", "show"]) }; this._cfg = cfg; var transformGroup = new Group$2({ x: cfg.position[0], y: cfg.position[1], rotation: cfg.rotation }); transformGroup.updateTransform(); this._transformGroup = transformGroup; var record = this._shared.ensureRecord(axisModel); record.transGroup = this._transformGroup; record.dirVec = new Point(Math.cos(-cfg.rotation), Math.sin(-cfg.rotation)); }; AxisBuilder.prototype.build = function(axisPartNameMap, extraParams) { var _this = this; if (!axisPartNameMap) axisPartNameMap = { axisLine: true, axisTickLabelEstimate: false, axisTickLabelDetermine: true, axisName: true }; each$4(AXIS_BUILDER_AXIS_PART_NAMES, function(partName) { if (axisPartNameMap[partName]) builders[partName](_this._cfg, _this._local, _this._shared, _this._axisModel, _this.group, _this._transformGroup, _this._api, extraParams || {}); }); return this; }; /** * Currently only get text align/verticalAlign by rotation. * NO `position` is involved, otherwise it have to be performed for each `updateAxisLabelChangableProps`. */ AxisBuilder.innerTextLayout = function(axisRotation, textRotation, direction) { var rotationDiff = remRadian(textRotation - axisRotation); var textAlign; var textVerticalAlign; if (isRadianAroundZero(rotationDiff)) { textVerticalAlign = direction > 0 ? "top" : "bottom"; textAlign = "center"; } else if (isRadianAroundZero(rotationDiff - PI$1)) { textVerticalAlign = direction > 0 ? "bottom" : "top"; textAlign = "center"; } else { textVerticalAlign = "middle"; if (rotationDiff > 0 && rotationDiff < PI$1) textAlign = direction > 0 ? "right" : "left"; else textAlign = direction > 0 ? "left" : "right"; } return { rotation: rotationDiff, textAlign, textVerticalAlign }; }; AxisBuilder.makeAxisEventDataBase = function(axisModel) { var eventData = { componentType: axisModel.mainType, componentIndex: axisModel.componentIndex }; eventData[axisModel.mainType + "Index"] = axisModel.componentIndex; return eventData; }; AxisBuilder.isLabelSilent = function(axisModel) { var tooltipOpt = axisModel.get("tooltip"); return axisModel.get("silent") || !(axisModel.get("triggerEvent") || tooltipOpt && tooltipOpt.show); }; return AxisBuilder; }(); var AXIS_BUILDER_AXIS_PART_NAMES = [ "axisLine", "axisTickLabelEstimate", "axisTickLabelDetermine", "axisName" ]; var builders = { axisLine: function(cfg, local, shared, axisModel, group, transformGroup, api) { var shown = axisModel.get(["axisLine", "show"]); if (shown === "auto") { shown = true; if (cfg.raw.axisLineAutoShow != null) shown = !!cfg.raw.axisLineAutoShow; } if (!shown) return; var extent = axisModel.axis.getExtent(); var matrix = transformGroup.transform; var pt1 = [extent[0], 0]; var pt2 = [extent[1], 0]; var inverse = pt1[0] > pt2[0]; if (matrix) { applyTransform$1(pt1, pt1, matrix); applyTransform$1(pt2, pt2, matrix); } var lineStyle = extend({ lineCap: "round" }, axisModel.getModel(["axisLine", "lineStyle"]).getLineStyle()); var pathBaseProp = { strokeContainThreshold: cfg.raw.strokeContainThreshold || 5, silent: true, z2: 1, style: lineStyle }; if (axisModel.get(["axisLine", "breakLine"]) && hasBreaks(axisModel.axis.scale)) getAxisBreakHelper().buildAxisBreakLine(axisModel, group, transformGroup, pathBaseProp); else { var line = new Line(extend({ shape: { x1: pt1[0], y1: pt1[1], x2: pt2[0], y2: pt2[1] } }, pathBaseProp)); subPixelOptimizeLine(line.shape, line.style.lineWidth); line.anid = "line"; group.add(line); } var arrows = axisModel.get(["axisLine", "symbol"]); if (arrows != null) { var arrowSize = axisModel.get(["axisLine", "symbolSize"]); if (isString(arrows)) arrows = [arrows, arrows]; if (isString(arrowSize) || isNumber(arrowSize)) arrowSize = [arrowSize, arrowSize]; var arrowOffset = normalizeSymbolOffset(axisModel.get(["axisLine", "symbolOffset"]) || 0, arrowSize); var symbolWidth_1 = arrowSize[0]; var symbolHeight_1 = arrowSize[1]; each$4([{ rotate: cfg.rotation + Math.PI / 2, offset: arrowOffset[0], r: 0 }, { rotate: cfg.rotation - Math.PI / 2, offset: arrowOffset[1], r: Math.sqrt((pt1[0] - pt2[0]) * (pt1[0] - pt2[0]) + (pt1[1] - pt2[1]) * (pt1[1] - pt2[1])) }], function(point, index) { if (arrows[index] !== "none" && arrows[index] != null) { var symbol = createSymbol(arrows[index], -symbolWidth_1 / 2, -symbolHeight_1 / 2, symbolWidth_1, symbolHeight_1, lineStyle.stroke, true); var r = point.r + point.offset; var pt = inverse ? pt2 : pt1; symbol.attr({ rotation: point.rotate, x: pt[0] + r * Math.cos(cfg.rotation), y: pt[1] - r * Math.sin(cfg.rotation), silent: true, z2: 11 }); group.add(symbol); } }); } }, /** * [CAUTION] This method can be called multiple times, following the change due to `resetCfg` called * in size measurement. Thus this method should be idempotent, and should be performant. */ axisTickLabelEstimate: function(cfg, local, shared, axisModel, group, transformGroup, api, extraParams) { if (dealLastTickLabelResultReusable(local, group, extraParams)) layOutAxisTickLabel(cfg, local, shared, axisModel, group, transformGroup, api, AxisTickLabelComputingKind.estimate); }, /** * Finish axis tick label build. * Can be only called once. */ axisTickLabelDetermine: function(cfg, local, shared, axisModel, group, transformGroup, api, extraParams) { if (dealLastTickLabelResultReusable(local, group, extraParams)) layOutAxisTickLabel(cfg, local, shared, axisModel, group, transformGroup, api, AxisTickLabelComputingKind.determine); var ticksEls = buildAxisMajorTicks(cfg, group, transformGroup, axisModel); syncLabelIgnoreToMajorTicks(cfg, local.labelLayoutList, ticksEls); buildAxisMinorTicks(cfg, group, transformGroup, axisModel, cfg.tickDirection); }, /** * [CAUTION] This method can be called multiple times, following the change due to `resetCfg` called * in size measurement. Thus this method should be idempotent, and should be performant. */ axisName: function(cfg, local, shared, axisModel, group, transformGroup, api, extraParams) { var sharedRecord = shared.ensureRecord(axisModel); if (local.nameEl) { group.remove(local.nameEl); local.nameEl = sharedRecord.nameLayout = sharedRecord.nameLocation = null; } var name = cfg.axisName; if (!hasAxisName(name)) return; var nameLocation = cfg.nameLocation; var nameDirection = cfg.nameDirection; var textStyleModel = axisModel.getModel("nameTextStyle"); var gap = axisModel.get("nameGap") || 0; var extent = axisModel.axis.getExtent(); var gapStartEndSignal = axisModel.axis.inverse ? -1 : 1; var pos = new Point(0, 0); var nameMoveDirVec = new Point(0, 0); if (nameLocation === "start") { pos.x = extent[0] - gapStartEndSignal * gap; nameMoveDirVec.x = -gapStartEndSignal; } else if (nameLocation === "end") { pos.x = extent[1] + gapStartEndSignal * gap; nameMoveDirVec.x = gapStartEndSignal; } else { pos.x = (extent[0] + extent[1]) / 2; pos.y = cfg.labelOffset + nameDirection * gap; nameMoveDirVec.y = nameDirection; } var mt = create$1(); nameMoveDirVec.transform(rotate(mt, mt, cfg.rotation)); var nameRotation = axisModel.get("nameRotate"); if (nameRotation != null) nameRotation = nameRotation * PI$1 / 180; var labelLayout; var axisNameAvailableWidth; if (isNameLocationCenter(nameLocation)) labelLayout = AxisBuilder.innerTextLayout(cfg.rotation, nameRotation != null ? nameRotation : cfg.rotation, nameDirection); else { labelLayout = endTextLayout(cfg.rotation, nameLocation, nameRotation || 0, extent); axisNameAvailableWidth = cfg.raw.axisNameAvailableWidth; if (axisNameAvailableWidth != null) { axisNameAvailableWidth = Math.abs(axisNameAvailableWidth / Math.sin(labelLayout.rotation)); !isFinite(axisNameAvailableWidth) && (axisNameAvailableWidth = null); } } var textFont = textStyleModel.getFont(); var truncateOpt = axisModel.get("nameTruncate", true) || {}; var ellipsis = truncateOpt.ellipsis; var maxWidth = retrieve(cfg.raw.nameTruncateMaxWidth, truncateOpt.maxWidth, axisNameAvailableWidth); var nameMarginLevel = extraParams.nameMarginLevel || 0; var textEl = new ZRText({ x: pos.x, y: pos.y, rotation: labelLayout.rotation, silent: AxisBuilder.isLabelSilent(axisModel), style: createTextStyle(textStyleModel, { text: name, font: textFont, overflow: "truncate", width: maxWidth, ellipsis, fill: textStyleModel.getTextColor() || axisModel.get([ "axisLine", "lineStyle", "color" ]), align: textStyleModel.get("align") || labelLayout.textAlign, verticalAlign: textStyleModel.get("verticalAlign") || labelLayout.textVerticalAlign }), z2: 1 }); setTooltipConfig({ el: textEl, componentModel: axisModel, itemName: name }); textEl.__fullText = name; textEl.anid = "name"; if (axisModel.get("triggerEvent")) { var eventData = AxisBuilder.makeAxisEventDataBase(axisModel); eventData.targetType = "axisName"; eventData.name = name; getECData(textEl).eventData = eventData; } transformGroup.add(textEl); textEl.updateTransform(); local.nameEl = textEl; var nameLayout = sharedRecord.nameLayout = ensureLabelLayoutWithGeometry({ label: textEl, priority: textEl.z2, defaultAttr: { ignore: textEl.ignore }, marginDefault: isNameLocationCenter(nameLocation) ? DEFAULT_CENTER_NAME_MARGIN_LEVELS[nameMarginLevel] : DEFAULT_ENDS_NAME_MARGIN_LEVELS[nameMarginLevel] }); sharedRecord.nameLocation = nameLocation; group.add(textEl); textEl.decomposeTransform(); if (cfg.shouldNameMoveOverlap && nameLayout) { var record = shared.ensureRecord(axisModel); shared.resolveAxisNameOverlap(cfg, shared, axisModel, nameLayout, nameMoveDirVec, record); } } }; function layOutAxisTickLabel(cfg, local, shared, axisModel, group, transformGroup, api, kind) { if (!axisLabelBuildResultExists(local)) buildAxisLabel(cfg, local, group, kind, axisModel, api); var labelLayoutList = local.labelLayoutList; updateAxisLabelChangableProps(cfg, axisModel, labelLayoutList, transformGroup); adjustBreakLabels(axisModel, cfg.rotation, labelLayoutList); var optionHideOverlap = cfg.optionHideOverlap; fixMinMaxLabelShow(axisModel, labelLayoutList, optionHideOverlap); if (optionHideOverlap) hideOverlap(filter(labelLayoutList, function(layout) { return layout && !layout.label.ignore; })); resetOverlapRecordToShared(cfg, shared, axisModel, labelLayoutList); } function endTextLayout(rotation, textPosition, textRotate, extent) { var rotationDiff = remRadian(textRotate - rotation); var textAlign; var textVerticalAlign; var inverse = extent[0] > extent[1]; var onLeft = textPosition === "start" && !inverse || textPosition !== "start" && inverse; if (isRadianAroundZero(rotationDiff - PI$1 / 2)) { textVerticalAlign = onLeft ? "bottom" : "top"; textAlign = "center"; } else if (isRadianAroundZero(rotationDiff - PI$1 * 1.5)) { textVerticalAlign = onLeft ? "top" : "bottom"; textAlign = "center"; } else { textVerticalAlign = "middle"; if (rotationDiff < PI$1 * 1.5 && rotationDiff > PI$1 / 2) textAlign = onLeft ? "left" : "right"; else textAlign = onLeft ? "right" : "left"; } return { rotation: rotationDiff, textAlign, textVerticalAlign }; } /** * Assume `labelLayoutList` has no `label.ignore: true`. * Assume `labelLayoutList` have been sorted by value ascending order. */ function fixMinMaxLabelShow(axisModel, labelLayoutList, optionHideOverlap) { var axis = axisModel.axis; var customValuesOption = axisModel.get(["axisLabel", "customValues"]); if (shouldShowAllLabels(axis)) return; function deal(showMinMaxLabelOption, outmostLabelIdx, innerLabelIdx) { var outmostLabelLayout = ensureLabelLayoutWithGeometry(labelLayoutList[outmostLabelIdx]); var innerLabelLayout = ensureLabelLayoutWithGeometry(labelLayoutList[innerLabelIdx]); var scale = axis.scale; if (!outmostLabelLayout || !innerLabelLayout) return; if (showMinMaxLabelOption == null) { if (!optionHideOverlap && customValuesOption) return; var tick = getLabelInner(outmostLabelLayout.label).labelInfo.tick; if (isTimeScale(scale) && tick.notNice || isOrdinalScale(scale) && tick.offInterval) { ignoreEl(outmostLabelLayout.label); return; } } if (showMinMaxLabelOption === false || outmostLabelLayout.suggestIgnore) { ignoreEl(outmostLabelLayout.label); return; } if (innerLabelLayout.suggestIgnore) { ignoreEl(innerLabelLayout.label); return; } var touchThreshold = .1; if (!optionHideOverlap) { var marginForce = [ 0, 0, 0, 0 ]; outmostLabelLayout = newLabelLayoutWithGeometry({ marginForce }, outmostLabelLayout); innerLabelLayout = newLabelLayoutWithGeometry({ marginForce }, innerLabelLayout); } if (labelIntersect(outmostLabelLayout, innerLabelLayout, null, { touchThreshold })) if (showMinMaxLabelOption) ignoreEl(innerLabelLayout.label); else ignoreEl(outmostLabelLayout.label); } var showMinLabelOption = axisModel.get(["axisLabel", "showMinLabel"]); var showMaxLabelOption = axisModel.get(["axisLabel", "showMaxLabel"]); var labelsLen = labelLayoutList.length; deal(showMinLabelOption, 0, 1); deal(showMaxLabelOption, labelsLen - 1, labelsLen - 2); } function syncLabelIgnoreToMajorTicks(cfg, labelLayoutList, tickEls) { if (cfg.showMinorTicks) return; each$4(labelLayoutList, function(labelLayout) { if (labelLayout && labelLayout.label.ignore) for (var idx = 0; idx < tickEls.length; idx++) { var tickEl = tickEls[idx]; var tickInner = getTickInner(tickEl); var labelInner = getLabelInner(labelLayout.label); if (tickInner.tickValue != null && !tickInner.onBand && tickInner.tickValue === labelInner.labelInfo.tick.value) { ignoreEl(tickEl); return; } } }); } function ignoreEl(el) { el && (el.ignore = true); } function createTicks(ticksCoords, tickTransform, tickEndCoord, tickLineStyle, anidPrefix) { var tickEls = []; var pt1 = []; var pt2 = []; for (var i = 0; i < ticksCoords.length; i++) { var tickCoord = ticksCoords[i].coord; pt1[0] = tickCoord; pt1[1] = 0; pt2[0] = tickCoord; pt2[1] = tickEndCoord; if (tickTransform) { applyTransform$1(pt1, pt1, tickTransform); applyTransform$1(pt2, pt2, tickTransform); } var tickEl = new Line({ shape: { x1: pt1[0], y1: pt1[1], x2: pt2[0], y2: pt2[1] }, style: tickLineStyle, z2: 2, autoBatch: true, silent: true }); subPixelOptimizeLine(tickEl.shape, tickEl.style.lineWidth); tickEl.anid = anidPrefix + "_" + ticksCoords[i].tickValue; tickEls.push(tickEl); var inner = getTickInner(tickEl); inner.onBand = !!ticksCoords[i].onBand; inner.tickValue = ticksCoords[i].tickValue; } return tickEls; } function buildAxisMajorTicks(cfg, group, transformGroup, axisModel) { var axis = axisModel.axis; var tickModel = axisModel.getModel("axisTick"); var shown = tickModel.get("show"); if (shown === "auto") { shown = true; if (cfg.raw.axisTickAutoShow != null) shown = !!cfg.raw.axisTickAutoShow; } if (!shown || axis.scale.isBlank()) return []; var lineStyleModel = tickModel.getModel("lineStyle"); var tickEndCoord = cfg.tickDirection * tickModel.get("length"); var ticksEls = createTicks(axis.getTicksCoords(), transformGroup.transform, tickEndCoord, defaults(lineStyleModel.getLineStyle(), { stroke: axisModel.get([ "axisLine", "lineStyle", "color" ]) }), "ticks"); for (var i = 0; i < ticksEls.length; i++) group.add(ticksEls[i]); return ticksEls; } function buildAxisMinorTicks(cfg, group, transformGroup, axisModel, tickDirection) { var axis = axisModel.axis; var minorTickModel = axisModel.getModel("minorTick"); if (!cfg.showMinorTicks || axis.scale.isBlank()) return; var minorTicksCoords = axis.getMinorTicksCoords(); if (!minorTicksCoords.length) return; var lineStyleModel = minorTickModel.getModel("lineStyle"); var tickEndCoord = tickDirection * minorTickModel.get("length"); var minorTickLineStyle = defaults(lineStyleModel.getLineStyle(), defaults(axisModel.getModel("axisTick").getLineStyle(), { stroke: axisModel.get([ "axisLine", "lineStyle", "color" ]) })); for (var i = 0; i < minorTicksCoords.length; i++) { var minorTicksEls = createTicks(minorTicksCoords[i], transformGroup.transform, tickEndCoord, minorTickLineStyle, "minorticks_" + i); for (var k = 0; k < minorTicksEls.length; k++) group.add(minorTicksEls[k]); } } function dealLastTickLabelResultReusable(local, group, extraParams) { if (axisLabelBuildResultExists(local)) { var noPxChangeTryDetermine = local.axisLabelsCreationContext.out.noPxChangeTryDetermine; if (extraParams.noPxChange) { var canDetermine = true; for (var idx = 0; idx < noPxChangeTryDetermine.length; idx++) canDetermine = canDetermine && noPxChangeTryDetermine[idx](); if (canDetermine) return false; } if (noPxChangeTryDetermine.length) { group.remove(local.labelGroup); axisLabelBuildResultSet(local, null, null, null); } } return true; } function buildAxisLabel(cfg, local, group, kind, axisModel, api) { var axis = axisModel.axis; var show = retrieve(cfg.raw.axisLabelShow, axisModel.get(["axisLabel", "show"])); var labelGroup = new Group$2(); group.add(labelGroup); var axisLabelCreationCtx = createAxisLabelsComputingContext(kind); if (!show || axis.scale.isBlank()) { axisLabelBuildResultSet(local, [], labelGroup, axisLabelCreationCtx); return; } var labelModel = axisModel.getModel("axisLabel"); var labels = axis.getViewLabels(axisLabelCreationCtx); var labelRotation = (retrieve(cfg.raw.labelRotate, labelModel.get("rotate")) || 0) * PI$1 / 180; var labelLayout = AxisBuilder.innerTextLayout(cfg.rotation, labelRotation, cfg.labelDirection); var rawCategoryData = axisModel.getCategories && axisModel.getCategories(true); var labelEls = []; var triggerEvent = axisModel.get("triggerEvent"); var z2Min = Infinity; var z2Max = -Infinity; each$4(labels, function(labelItem, index) { var _a; var labelItemTick = labelItem.tick; var formattedLabel = labelItem.formattedLabel; var rawLabel = labelItem.rawLabel; var itemLabelModel = labelModel; var tickValue = getTickValueOutermost(axis.scale, labelItemTick); if (rawCategoryData && rawCategoryData[tickValue]) { var rawCategoryItem = rawCategoryData[tickValue]; if (isObject$2(rawCategoryItem) && rawCategoryItem.textStyle) itemLabelModel = new Model(rawCategoryItem.textStyle, labelModel, axisModel.ecModel); } var textColor = itemLabelModel.getTextColor() || axisModel.get([ "axisLine", "lineStyle", "color" ]); var align = itemLabelModel.getShallow("align", true) || labelLayout.textAlign; var alignMin = retrieve2(itemLabelModel.getShallow("alignMinLabel", true), align); var alignMax = retrieve2(itemLabelModel.getShallow("alignMaxLabel", true), align); var verticalAlign = itemLabelModel.getShallow("verticalAlign", true) || itemLabelModel.getShallow("baseline", true) || labelLayout.textVerticalAlign; var verticalAlignMin = retrieve2(itemLabelModel.getShallow("verticalAlignMinLabel", true), verticalAlign); var verticalAlignMax = retrieve2(itemLabelModel.getShallow("verticalAlignMaxLabel", true), verticalAlign); var z2 = 10 + (((_a = labelItemTick.time) === null || _a === void 0 ? void 0 : _a.level) || 0); z2Min = Math.min(z2Min, z2); z2Max = Math.max(z2Max, z2); var textEl = new ZRText({ x: 0, y: 0, rotation: 0, silent: AxisBuilder.isLabelSilent(axisModel), z2, style: createTextStyle(itemLabelModel, { text: formattedLabel, align: index === 0 ? alignMin : index === labels.length - 1 ? alignMax : align, verticalAlign: index === 0 ? verticalAlignMin : index === labels.length - 1 ? verticalAlignMax : verticalAlign, fill: isFunction(textColor) ? textColor(axis.type === "category" ? rawLabel : axis.type === "value" ? tickValue + "" : tickValue, index) : textColor }) }); textEl.anid = "label_" + tickValue; var inner = getLabelInner(textEl); inner.labelInfo = labelItem; inner.layoutRotation = labelLayout.rotation; setTooltipConfig({ el: textEl, componentModel: axisModel, itemName: formattedLabel, formatterParamsExtra: { isTruncated: function() { return textEl.isTruncated; }, value: rawLabel, tickIndex: index } }); if (triggerEvent) { var eventData = AxisBuilder.makeAxisEventDataBase(axisModel); eventData.targetType = "axisLabel"; eventData.value = rawLabel; eventData.tickIndex = index; var labelItemTickBreak = labelItem.tick["break"]; if (labelItemTickBreak) { var labelItemTickBreakParsedBreak = labelItemTickBreak.parsedBreak; eventData["break"] = { start: labelItemTickBreakParsedBreak.vmin, end: labelItemTickBreakParsedBreak.vmax }; } if (axis.type === "category") eventData.dataIndex = tickValue; getECData(textEl).eventData = eventData; if (labelItemTickBreak) addBreakEventHandler(axisModel, api, textEl, labelItemTickBreak); } labelEls.push(textEl); labelGroup.add(textEl); }); axisLabelBuildResultSet(local, map$1(labelEls, function(label) { return { label, priority: getLabelInner(label).labelInfo.tick["break"] ? label.z2 + (z2Max - z2Min + 1) : label.z2, defaultAttr: { ignore: label.ignore } }; }), labelGroup, axisLabelCreationCtx); } function axisLabelBuildResultExists(local) { return !!local.labelLayoutList; } function axisLabelBuildResultSet(local, labelLayoutList, labelGroup, axisLabelsCreationContext) { local.labelLayoutList = labelLayoutList; local.labelGroup = labelGroup; local.axisLabelsCreationContext = axisLabelsCreationContext; } function updateAxisLabelChangableProps(cfg, axisModel, labelLayoutList, transformGroup) { var labelMargin = axisModel.get(["axisLabel", "margin"]); each$4(labelLayoutList, function(layout, idx) { var geometry = ensureLabelLayoutWithGeometry(layout); if (!geometry) return; var labelEl = geometry.label; var inner = getLabelInner(labelEl); geometry.suggestIgnore = labelEl.ignore; labelEl.ignore = false; copyTransform(_tmpLayoutEl, _tmpLayoutElReset); var axis = axisModel.axis; _tmpLayoutEl.x = axis.dataToCoord(getTickValueOutermost(axis.scale, inner.labelInfo.tick)); _tmpLayoutEl.y = cfg.labelOffset + cfg.labelDirection * labelMargin; _tmpLayoutEl.rotation = inner.layoutRotation; transformGroup.add(_tmpLayoutEl); _tmpLayoutEl.updateTransform(); transformGroup.remove(_tmpLayoutEl); _tmpLayoutEl.decomposeTransform(); copyTransform(labelEl, _tmpLayoutEl); labelEl.markRedraw(); setLabelLayoutDirty(geometry, true); ensureLabelLayoutWithGeometry(geometry); }); } var _tmpLayoutEl = new Rect(); var _tmpLayoutElReset = new Rect(); function hasAxisName(axisName) { return !!axisName; } function addBreakEventHandler(axisModel, api, textEl, visualBreak) { textEl.on("click", function(params) { var payload = { type: AXIS_BREAK_EXPAND_ACTION_TYPE, breaks: [{ start: visualBreak.parsedBreak.breakOption.start, end: visualBreak.parsedBreak.breakOption.end }] }; payload[axisModel.axis.dim + "AxisIndex"] = axisModel.componentIndex; api.dispatchAction(payload); }); } function adjustBreakLabels(axisModel, axisRotation, labelLayoutList) { var scaleBreakHelper = getScaleBreakHelper(); if (!scaleBreakHelper) return; var breakLabelIndexPairs = scaleBreakHelper.retrieveAxisBreakPairs(labelLayoutList, function(layoutInfo) { return layoutInfo && getLabelInner(layoutInfo.label).labelInfo.tick["break"]; }, true); var moveOverlap = axisModel.get(["breakLabelLayout", "moveOverlap"], true); if (moveOverlap === true || moveOverlap === "auto") each$4(breakLabelIndexPairs, function(idxPair) { getAxisBreakHelper().adjustBreakLabelPair(axisModel.axis.inverse, axisRotation, [ensureLabelLayoutWithGeometry(labelLayoutList[idxPair[0]]), ensureLabelLayoutWithGeometry(labelLayoutList[idxPair[1]])]); }); } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/coord/cartesian/cartesianAxisHelper.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ /** * [__CAUTION__] * MUST guarantee: if only the input `rect` and `axis.extent` changed, * only `layout.position` changes. * This character is replied on `grid.contain` calculation in `AxisBuilder`. * @see updateCartesianAxisViewCommonPartBuilder * * Can only be called after coordinate system creation stage. * (Can be called before coordinate system update stage). */ function layout(rect, axisModel, opt) { opt = opt || {}; var axis = axisModel.axis; var layout = {}; var otherAxisOnZeroOf = axis.getAxesOnZeroOf()[0]; var rawAxisPosition = axis.position; var axisPosition = otherAxisOnZeroOf ? "onZero" : rawAxisPosition; var axisDim = axis.dim; var rectBound = [ rect.x, rect.x + rect.width, rect.y, rect.y + rect.height ]; var idx = { left: 0, right: 1, top: 0, bottom: 1, onZero: 2 }; var axisOffset = axisModel.get("offset") || 0; var posBound = axisDim === "x" ? [rectBound[2] - axisOffset, rectBound[3] + axisOffset] : [rectBound[0] - axisOffset, rectBound[1] + axisOffset]; if (otherAxisOnZeroOf) { var onZeroCoord = otherAxisOnZeroOf.toGlobalCoord(otherAxisOnZeroOf.dataToCoord(0)); posBound[idx.onZero] = Math.max(Math.min(onZeroCoord, posBound[1]), posBound[0]); } layout.position = [axisDim === "y" ? posBound[idx[axisPosition]] : rectBound[0], axisDim === "x" ? posBound[idx[axisPosition]] : rectBound[3]]; layout.rotation = Math.PI / 2 * (axisDim === "x" ? 0 : 1); layout.labelDirection = layout.tickDirection = layout.nameDirection = { top: -1, bottom: 1, left: -1, right: 1 }[rawAxisPosition]; layout.labelOffset = otherAxisOnZeroOf ? posBound[idx[rawAxisPosition]] - posBound[idx.onZero] : 0; if (axisModel.get(["axisTick", "inside"])) layout.tickDirection = -layout.tickDirection; if (retrieve(opt.labelInside, axisModel.get(["axisLabel", "inside"]))) layout.labelDirection = -layout.labelDirection; var labelRotate = axisModel.get(["axisLabel", "rotate"]); layout.labelRotate = axisPosition === "top" ? -labelRotate : labelRotate; layout.z2 = 1; return layout; } /** * Note: If pie (or other similar series) use cartesian2d, here * option `seriesModel.get('coordinateSystem') === 'cartesian2d'` * and `seriesModel.coordinateSystem !== cartesian2dCoordSysInstance` * and `seriesModel.boxCoordinateSystem === cartesian2dCoordSysInstance`, * the logic below is probably wrong, therefore skip it temporarily. */ function isCartesian2DInjectedAsDataCoordSys(seriesModel) { return seriesModel.coordinateSystem && seriesModel.coordinateSystem.type === "cartesian2d"; } function findAxisModels(seriesModel) { var axisModelMap = { xAxisModel: null, yAxisModel: null }; each$4(axisModelMap, function(v, key) { var axisType = key.replace(/Model$/, ""); axisModelMap[key] = seriesModel.getReferringComponents(axisType, SINGLE_REFERRING).models[0]; }); return axisModelMap; } function createCartesianAxisViewCommonPartBuilder(gridRect, cartesians, axisModel, api, ctx, defaultNameMoveOverlap) { var layoutResult = layout(gridRect, axisModel); var axisLineAutoShow = false; var axisTickAutoShow = false; for (var i = 0; i < cartesians.length; i++) if (isIntervalOrLogScale(cartesians[i].getOtherAxis(axisModel.axis).scale)) { axisLineAutoShow = axisTickAutoShow = true; if (axisModel.axis.type === "category" && axisModel.axis.onBand) axisTickAutoShow = false; } layoutResult.axisLineAutoShow = axisLineAutoShow; layoutResult.axisTickAutoShow = axisTickAutoShow; layoutResult.defaultNameMoveOverlap = defaultNameMoveOverlap; return new AxisBuilder(axisModel, api, layoutResult, ctx); } function updateCartesianAxisViewCommonPartBuilder(axisBuilder, gridRect, axisModel) { var newRaw = layout(gridRect, axisModel); axisBuilder.updateCfg(newRaw); } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/coord/scaleRawExtentInfo.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ /** * NOTICE: Can be only used in `ensureScaleStore(axisLike)`. * * In most cases the instances of `Axis` and `Scale` are one-to-one mapping and share the same lifecycle. * But in some external usage (such as echarts-gl), axis instance does not necessarily exist, and only * scale instance and axisModel are used. Therefore we store the internal info on scale instance directly. */ var scaleInner = makeInner(); var AXIS_EXTENT_INFO_BUILD_FROM_EMPTY = 3; var ScaleRawExtentInfo = function() { function ScaleRawExtentInfo(scale, model, dataExtent, requireStartValue, requireContainShape) { var isOrdinal = isOrdinalScale(scale); var axisDataLen = isOrdinal ? model.getCategories().length : null; var categoryAxisModelDataIsEmptyArray; if (isOrdinal) { var axisModelDataArray = model.getCategories(true); categoryAxisModelDataIsEmptyArray = axisModelDataArray && !axisModelDataArray.length; } var dataMM = dataExtent.slice(); if (isIntervalScale(scale) || isLogScale(scale) || isTimeScale(scale)) { unionExtentStartFromNumber(dataMM, parseAxisModelMinMax(scale, model.get("dataMin", true))); unionExtentEndFromNumber(dataMM, parseAxisModelMinMax(scale, model.get("dataMax", true))); } if (!extentHasValue(dataMM)) dataMM[0] = dataMM[1] = NaN; var noZoomEffMM = []; var fixMM = [false, false]; var modelMinRaw = model.get("min", true); if (modelMinRaw === "dataMin") { noZoomEffMM[0] = dataMM[0]; fixMM[0] = true; } else { noZoomEffMM[0] = parseAxisModelMinMax(scale, isFunction(modelMinRaw) ? modelMinRaw({ min: dataMM[0], max: dataMM[1] }) : modelMinRaw); fixMM[0] = noZoomEffMM[0] != null; } var modelMaxRaw = model.get("max", true); if (modelMaxRaw === "dataMax") { noZoomEffMM[1] = dataMM[1]; fixMM[1] = true; } else { noZoomEffMM[1] = parseAxisModelMinMax(scale, isFunction(modelMaxRaw) ? modelMaxRaw({ min: dataMM[0], max: dataMM[1] }) : modelMaxRaw); fixMM[1] = noZoomEffMM[1] != null; } var boundaryGap = parseBoundaryGapOption(scale, model); var span = !isOrdinal ? dataMM[1] - dataMM[0] || Math.abs(dataMM[0]) : null; if (noZoomEffMM[0] == null) noZoomEffMM[0] = isOrdinal ? categoryAxisModelDataIsEmptyArray ? dataMM[0] : axisDataLen ? 0 : NaN : dataMM[0] - boundaryGap[0] * span; if (noZoomEffMM[1] == null) noZoomEffMM[1] = isOrdinal ? categoryAxisModelDataIsEmptyArray ? dataMM[1] : axisDataLen ? axisDataLen - 1 : NaN : dataMM[1] + boundaryGap[1] * span; !isValidNumberForExtent(noZoomEffMM[0]) && (noZoomEffMM[0] = NaN); !isValidNumberForExtent(noZoomEffMM[1]) && (noZoomEffMM[1] = NaN); var isBlank = categoryAxisModelDataIsEmptyArray || eqNaN(noZoomEffMM[0]) || eqNaN(noZoomEffMM[1]) || isOrdinal && !axisDataLen; var needIncludeZeroApplicable = isIntervalScale(scale); var needIncludeZero = needIncludeZeroApplicable && model.needIncludeZero && model.needIncludeZero(); if (needIncludeZero) { if (noZoomEffMM[0] > 0 && noZoomEffMM[1] > 0 && !fixMM[0]) noZoomEffMM[0] = 0; if (noZoomEffMM[0] < 0 && noZoomEffMM[1] < 0 && !fixMM[1]) noZoomEffMM[1] = 0; } var needToggleAxisInverse = false; if (noZoomEffMM[0] > noZoomEffMM[1]) { noZoomEffMM.reverse(); needToggleAxisInverse = true; } var startValue = parseAxisModelMinMax(scale, model.get("startValue", true)); var startValueSpecified = startValue != null; if (!isNullableNumberFinite(startValue) && requireStartValue) startValue = scale.getDefaultStartValue ? scale.getDefaultStartValue() : 0; if (isNullableNumberFinite(startValue) && (startValueSpecified || !needIncludeZeroApplicable || needIncludeZero)) { if (startValue < noZoomEffMM[0] && !fixMM[0]) { noZoomEffMM[0] = startValue; fixMM[0] = true; } else if (startValue > noZoomEffMM[1] && !fixMM[1]) { noZoomEffMM[1] = startValue; fixMM[1] = true; } } sanitizeExtent(this._i = { scale, dataMM, noZoomEffMM, zoomMM: [], fixMM, zoomFixMM: [false, false], startValue, isBlank, incl0: needIncludeZero, tggAxInv: needToggleAxisInverse, ctnShp: requireContainShape }, noZoomEffMM); } ScaleRawExtentInfo.prototype.makeNoZoom = function() { return this._i.noZoomEffMM.slice(); }; ScaleRawExtentInfo.prototype.makeFinal = function() { var internal = this._i; var zoomMM = internal.zoomMM; var noZoomEffMM = internal.noZoomEffMM; var zoomFixMM = internal.zoomFixMM; var fixMM = internal.fixMM; var result = { fixMM, zoomFixMM, isBlank: internal.isBlank, incl0: internal.incl0, tggAxInv: internal.tggAxInv, ctnShp: internal.ctnShp, effMM: noZoomEffMM.slice() }; var effMM = result.effMM; if (zoomMM[0] != null) { effMM[0] = zoomMM[0]; fixMM[0] = zoomFixMM[0] = true; } if (zoomMM[1] != null) { effMM[1] = zoomMM[1]; fixMM[1] = zoomFixMM[1] = true; } sanitizeExtent(internal, effMM); return result; }; ScaleRawExtentInfo.prototype.makeRenderInfo = function() { return { startValue: this._i.startValue }; }; /** * NOTICE: * - Do not set them if the percent are 0% or 100%. (See `AxisProxy['reset']`.) * - The caller must ensure `start <= end` and the range is equal or less then `noZoomEffMM`. * (See `AxisProxy['calculateDataWindow']`.) * - The outcome `_zoomMM` may have both `NullUndefined` and a finite value, like `[undefined, 123]`. */ ScaleRawExtentInfo.prototype.setZoomMM = function(idxMinMax, val) { this._i.zoomMM[idxMinMax] = val; }; return ScaleRawExtentInfo; }(); /** * Should be called when a new extent is created or modified. */ function sanitizeExtent(internal, mm) { var scale = internal.scale; var dataMM = internal.dataMM; if (scale.sanitize) { mm[0] = scale.sanitize(mm[0], dataMM); mm[1] = scale.sanitize(mm[1], dataMM); ensureExtentAscSimply(mm); } } function parseAxisModelMinMax(scale, minMax) { return minMax == null ? null : eqNaN(minMax) ? NaN : scale.parse(minMax); } function parseBoundaryGapOption(scale, model) { var boundaryGapOptionArr; if (isOrdinalScale(scale)) boundaryGapOptionArr = [0, 0]; else { var boundaryGap = model.get("boundaryGap"); if (typeof boundaryGap === "boolean") boundaryGap = null; boundaryGapOptionArr = isArray(boundaryGap) ? boundaryGap : [boundaryGap, boundaryGap]; } return [parseBoundaryGapOptionItem(boundaryGapOptionArr[0]), parseBoundaryGapOptionItem(boundaryGapOptionArr[1])]; } function parseBoundaryGapOptionItem(opt) { return parsePercent$1(typeof opt === "boolean" ? 0 : opt, 1) || 0; } /** * NOTE: `associateSeriesWithAxis` is not necessarily called, e.g., when * an axis is not used by any series. */ function ensureScaleStore(axisLike) { var store = scaleInner(axisLike.scale); if (!store.extent) store.extent = initExtentForUnion(); return store; } /** * This supports union extent on case like: pie (or other similar series) * lays out on cartesian2d. * @see scaleRawExtentInfoCreate */ function scaleRawExtentInfoEnableBoxCoordSysUsage(axisLike, coordSysDimIdxMap) { ensureScaleStore(axisLike).dimIdxInCoord = coordSysDimIdxMap.get(axisLike.dim); } /** * @usage * class SomeCoordSys { * static create() { * ecModel.eachSeries(function (seriesModel) { * associateSeriesWithAxis(axis1, seriesModel, ...); * associateSeriesWithAxis(axis2, seriesModel, ...); * // ... * }); * } * update() { * scaleRawExtentInfoCreate(axis1); * scaleRawExtentInfoCreate(axis2); * } * } * class AxisProxy { * reset() { * scaleRawExtentInfoCreate(axis1); * } * } * * NOTICE: * - `associateSeriesWithAxis`(in `axisStatistics.ts`) should be called in: * - Coord sys create method. * - `scaleRawExtentInfoCreate` should be typically called in: * - `dataZoom` processor. It requires processing like: * 1. Filter series data by dataZoom1; * 2. Union the filtered data and init the extent of the orthogonal axes, which is the 100% of dataZoom2; * 3. Filter series data by dataZoom2; * 4. ... * - Coord sys update method, for other axes that not covered by `dataZoom`. * NOTE: If a `dataZoom` covers this series, this data and its extent has been dataZoom-filtered. * Therefore this handling should not before `dataZoom`. * - The callback of `min`/`max` in ec option should NOT be called multiple times, * therefore, we initialize `ScaleRawExtentInfo` uniformly in `scaleRawExtentInfoCreate`. * * @see SCALE_EXTENT_CONSTRUCTION for the full processing flow. */ function scaleRawExtentInfoCreate(axis, from) { var scale = axis.scale; var model = axis.model; var axisDim = axis.dim; if (scale.rawExtentInfo) return; scaleRawExtentInfoCreateDeal(scale, axis, axisDim, model, from); } function scaleRawExtentInfoCreateDeal(scale, axis, axisDim, model, from) { var scaleStore = ensureScaleStore(axis); var extent = scaleStore.extent; var requireStartValue = false; eachSeriesOnAxis(axis, function(seriesModel) { if (seriesModel.boxCoordinateSystem) { var coord = getCoordForCoordSysUsageKindBox(seriesModel).coord; var dimIdx = scaleStore.dimIdxInCoord; if (!(dimIdx >= 0)) {} else if (isArray(coord)) { var coordItem = coord[dimIdx]; if (coordItem != null && !isArray(coordItem)) unionExtentFromNumber(extent, scale.parse(coordItem)); } } else if (seriesModel.coordinateSystem) { var data_1 = seriesModel.getData(); if (data_1) { var filter_1 = scale.getFilter ? scale.getFilter() : null; each$4(getDataDimensionsOnAxis(data_1, axisDim), function(dim) { unionExtentFromExtent(extent, data_1.getApproximateExtent(dim, filter_1)); }); } if (seriesModel.__requireStartValue && seriesModel.__requireStartValue(axis)) requireStartValue = true; } }); var requireContainShape = determineRequireContainShape(scale, axis, model); injectScaleRawExtentInfo(scale, new ScaleRawExtentInfo(scale, model, extent, requireStartValue, requireContainShape), from); scaleStore.extent = null; } /** * `rawExtentInfo` may not be created in some cases, such as no series declared or extra useless * axes declared in ec option. In this case we still create a default one for that empty axis. */ function scaleRawExtentInfoBuildDefault(axisLike, dataExtent) { var scale = axisLike.scale; injectScaleRawExtentInfo(scale, new ScaleRawExtentInfo(scale, axisLike.model, dataExtent, false, false), AXIS_EXTENT_INFO_BUILD_FROM_EMPTY); } function injectScaleRawExtentInfo(scale, scaleRawExtentInfo, from) { scale.rawExtentInfo = scaleRawExtentInfo; scaleRawExtentInfo.from = from; } /** * See `axisSnippets.ts` for some commonly used handlers. * * FIXME: * `boundaryGap: true` (i.e., `onBand: true` in code) has long been supported on category axis. * And it is implemented in different code and not merged to this implementation yet. */ function registerAxisContainShapeHandler(axisStatKey, handler) { axisContainShapeHandlerMap.set(axisStatKey, handler); } var axisContainShapeHandlerMap = createHashMap(); /** * Prepare axis scale extent before "nice". * Item of returned array can only be number (including Infinity and NaN). */ function adoptScaleRawExtentInfoAndPrepare(scale, model, ecModel, axis, externalDataExtent) { if (!scale.rawExtentInfo) scaleRawExtentInfoBuildDefault({ scale, model }, externalDataExtent || initExtentForUnion()); var rawExtentResult = scale.rawExtentInfo.makeFinal(); var effectiveMinMax = rawExtentResult.effMM; scale.setExtent(effectiveMinMax[0], effectiveMinMax[1]); scale.setBlank(rawExtentResult.isBlank); if (axis && rawExtentResult.tggAxInv && ecModel && !ecModel.get("legacyMinMaxDontInverseAxis")) axis.inverse = !axis.inverse; return rawExtentResult; } function determineRequireContainShape(scale, axis, model) { var onBand = isAxisOnBand(scale, model); var modelContainShape = model.get("containShape", true); if (modelContainShape == null && !onBand) modelContainShape = true; if (!modelContainShape) return false; var requireContainShape = false; eachKeyOnAxis(axis, function(axisStatKey) { requireContainShape = !!axisContainShapeHandlerMap.get(axisStatKey) || requireContainShape; }); return requireContainShape; } /** * This implements ec option `someAxis.containShape`. That is, expand scale extent slightly to * ensure shapes of specific series are fully contained in the axis extent without overflow. * * NOTICE: * Scale extent (data extent) and axis pixel extent (pixel extent) and are required as inputs. * - See BAND_WIDTH_USED_SCALE_LINEAR_SPAN. * - Axis pixel extent has been set outside, though it may be modified later (e.g., via `outerBounds`). * * @tutorial [AXIS_CONTAIN_SHAPE_PROCESSING_ORDER] * This is a trade-off between the following 2 approaches: * - Steps: (the current implementation) * 1. Process `dataZoom` based on a full window `noZoomEffMM`. * 2. Perform "nice" or "align" scale, where `intervalScaleEnsureValidExtent`-ish may be performed to * expand extent to avoid `extent[0] === extent[1]`. * 3. Calculate linear supplement of containShape based on the final result. * Cons: * - Abrupt changes occur when zooming away from 0% or 100%. * - Edge shapes are clipped in "dataZoom shadow". * - Steps: (discarded) * 1. Calculate linear supplement of containShape based on `noZoomEffMM` and * `intervalScaleEnsureValidExtent`-ish. * 2. Process `dataZoom` based on a full window `noZoomEffMM + linearSupplement`. * 3. Perform "nice"/"align" scale. * Cons: * - Input `startValue: 0` (in ec option or action) does not corresponds to `0%`, which is unacceptable. * - Not easy to perform `intervalScaleEnsureValidExtent`-ish before "nice"/"align" processing. * * @see SCALE_EXTENT_CONSTRUCTION for the full processing flow. */ function adoptScaleExtentKindMapping(axis, scale, rawExtentResult, ecModel) { if (!rawExtentResult.ctnShp) return; var linearSupplement; eachKeyOnAxis(axis, function(axisStatKey) { var handler = axisContainShapeHandlerMap.get(axisStatKey); if (handler) { var singleLinearSupplement = handler(axis, ecModel); if (singleLinearSupplement) { linearSupplement = linearSupplement || [0, 0]; unionExtentStartFromNumber(linearSupplement, singleLinearSupplement[0]); unionExtentEndFromNumber(linearSupplement, singleLinearSupplement[1]); discourageOnAxisZero(axis); } } }); if (!linearSupplement) return; var scaleExtent = scale.getExtent(); if (isOrdinalScale(scale)) { if (!axis.onBand) scale.setExtent2(1, mathMin$3(scaleExtent[0], scaleExtent[0] + linearSupplement[0]), mathMax$3(scaleExtent[1], scaleExtent[1] + linearSupplement[1])); } else { var scaleExtentExpanded = scaleExtent.slice(); if (!rawExtentResult.zoomFixMM[0]) scaleExtentExpanded[0] = mathMin$3(scaleExtentExpanded[0], scale.transformOut(scale.transformIn(scaleExtentExpanded[0], null) + linearSupplement[0], null)); if (!rawExtentResult.zoomFixMM[1]) scaleExtentExpanded[1] = mathMax$3(scaleExtentExpanded[1], scale.transformOut(scale.transformIn(scaleExtentExpanded[1], null) + linearSupplement[1], null)); if (scaleExtentExpanded[0] < scaleExtent[0] || scaleExtentExpanded[1] > scaleExtent[1]) scale.setExtent2(1, scaleExtentExpanded[0], scaleExtentExpanded[1]); } } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/coord/axisStatisticsMetricsImpl.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ function registerMetricImplLiPosMinGap() { registerMetricImpl("liPosMinGap", metricLiPosMinGapImpl); } function metricLiPosMinGapImpl(ecModel, perKeyPerAxis, ecPreparePerKeyPerAxis) { var newSerUids = createHashMap(); var ecPrepareSerUids = ecPreparePerKeyPerAxis.serUids; var ecPrepareLiPosMinGap = ecPreparePerKeyPerAxis.liPosMinGap; var ecPrepareCacheMiss; var axis = perKeyPerAxis.axis; var scale = axis.scale; var needTransform = scale.needTransform(); var filter = scale.getFilter ? scale.getFilter() : null; var filterParsed = parseSanitizationFilter(filter); function eachSeries(cb) { eachSeriesDealForAxisStat(ecModel, perKeyPerAxis.sers, function(seriesModel) { var rawData = seriesModel.getRawData(); var dimStoreIdx = rawData.getDimensionIndex(rawData.mapDimension(axis.dim)); if (dimStoreIdx >= 0) cb(dimStoreIdx, seriesModel, rawData.getStore()); }); } var bufferCapacity = 0; eachSeries(function(dimStoreIdx, seriesModel, rawDataStore) { newSerUids.set(seriesModel.uid, 1); if (!ecPrepareSerUids || !ecPrepareSerUids.hasKey(seriesModel.uid)) ecPrepareCacheMiss = true; bufferCapacity += rawDataStore.count(); }); if (!ecPrepareSerUids || ecPrepareSerUids.keys().length !== newSerUids.keys().length) ecPrepareCacheMiss = true; if (!ecPrepareCacheMiss && ecPrepareLiPosMinGap != null) { perKeyPerAxis.liPosMinGap = ecPrepareLiPosMinGap; return; } tryEnsureTypedArray(tmpValueBuffer, bufferCapacity); var writeIdx = 0; eachSeries(function(dimStoreIdx, seriesModel, store) { for (var i = 0, cnt = store.count(); i < cnt; ++i) { var val = store.get(dimStoreIdx, i); if (isFinite(val) && (!filter || passesSanitizationFilter(filterParsed, val))) { if (needTransform) val = scale.transformIn(val, null); tmpValueBuffer.arr[writeIdx++] = val; } } }); var tmpValueBufferView = tmpValueBuffer.typed ? tmpValueBuffer.arr.subarray(0, writeIdx) : (tmpValueBuffer.arr.length = writeIdx, tmpValueBuffer.arr); if (tmpValueBuffer.typed) tmpValueBufferView.sort(); else asc(tmpValueBufferView); var min = Infinity; for (var j = 1; j < writeIdx; ++j) { var delta = tmpValueBufferView[j] - tmpValueBufferView[j - 1]; if (delta > 0 && delta < min) min = delta; } ecPreparePerKeyPerAxis.liPosMinGap = perKeyPerAxis.liPosMinGap = isNullableNumberFinite(min) ? min : writeIdx > 0 ? -2 : -1; ecPreparePerKeyPerAxis.serUids = newSerUids; } var tmpValueBuffer = tryEnsureTypedArray({ ctor: Float64ArrayCtor }, 50); //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/chart/helper/axisSnippets.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ /** * Require `requireAxisStatistics`. * * Simply expand `Scale` extent by half bandWidth. * Do nothing if an `OrdinalScale` has `boundaryGap: true`. */ function createBandWidthBasedAxisContainShapeHandler(axisStatKey) { return function(axis, ecModel) { var bandWidthResult = calcBandWidth(axis, { fromStat: { key: axisStatKey } }); if (isNullableNumberFinite(bandWidthResult.w2)) return [-bandWidthResult.w2 / 2, bandWidthResult.w2 / 2]; }; } function makeAxisStatKey2(seriesType, coordSysType) { return seriesType + "|&" + coordSysType; } /** * A pre-built `getMetrics`. */ function createMetricsNonOrdinalLinearPositiveMinGap(axis) { registerMetricImplLiPosMinGap(); return { liPosMinGap: !isOrdinalScale(axis.scale) }; } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/layout/barCommon.js function requireAxisStatisticsForBaseBar(registers, axisStatKey, seriesType, coordSysType) { requireAxisStatistics(registers, { key: axisStatKey, seriesType, coordSysType, getMetrics: createMetricsNonOrdinalLinearPositiveMinGap }); } function getStartValue(baseAxis) { return baseAxis.scale.rawExtentInfo.makeRenderInfo().startValue; } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/coord/cartesian/GridModel.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var OUTER_BOUNDS_DEFAULT = { left: 0, right: 0, top: 0, bottom: 0 }; var OUTER_BOUNDS_CLAMP_DEFAULT = ["25%", "25%"]; var COORD_SYS_TYPE_CARTESIAN_2D = "cartesian2d"; var GridModel = function(_super) { __extends(GridModel, _super); function GridModel() { return _super !== null && _super.apply(this, arguments) || this; } GridModel.prototype.mergeDefaultAndTheme = function(option, ecModel) { var outerBoundsCp = getLayoutParams(option.outerBounds); _super.prototype.mergeDefaultAndTheme.apply(this, arguments); if (outerBoundsCp && option.outerBounds) mergeLayoutParam(option.outerBounds, outerBoundsCp); }; GridModel.prototype.mergeOption = function(newOption, ecModel) { _super.prototype.mergeOption.apply(this, arguments); if (this.option.outerBounds && newOption.outerBounds) mergeLayoutParam(this.option.outerBounds, newOption.outerBounds); }; GridModel.type = "grid"; GridModel.dependencies = ["xAxis", "yAxis"]; GridModel.layoutMode = "box"; GridModel.defaultOption = { show: false, z: 0, left: "15%", top: 65, right: "10%", bottom: 80, containLabel: false, outerBoundsMode: "auto", outerBounds: OUTER_BOUNDS_DEFAULT, outerBoundsContain: "all", outerBoundsClampWidth: OUTER_BOUNDS_CLAMP_DEFAULT[0], outerBoundsClampHeight: OUTER_BOUNDS_CLAMP_DEFAULT[1], backgroundColor: tokens.color.transparent, borderWidth: 1, borderColor: tokens.color.neutral30 }; return GridModel; }(ComponentModel); //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/layout/barGrid.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var callOnlyOnce = makeCallOnlyOnce(); var STACK_PREFIX = "__ec_stack_"; function getSeriesStackId(seriesModel) { return seriesModel.get("stack") || STACK_PREFIX + seriesModel.seriesIndex; } /** * NOTICE: This layout is based on axis pixel extent and scale extent. * It may be used on estimation, where axis pixel extent and scale extent * are approximately set. But the result should not be cached since the * axis pixel extent and scale extent may be changed finally. */ function makeColumnLayoutOnAxisReal(baseAxis, seriesType) { var seriesInfoListOnAxis = createLayoutInfoListOnAxis(baseAxis, seriesType); seriesInfoListOnAxis.columnMap = calcBarWidthAndOffset(seriesInfoListOnAxis); return seriesInfoListOnAxis; } function createLayoutInfoListOnAxis(baseAxis, seriesType) { var axisStatKey = makeAxisStatKey2(seriesType, COORD_SYS_TYPE_CARTESIAN_2D); var seriesInfoOnAxis = []; var bandWidthResult = calcBandWidth(baseAxis, { fromStat: { key: axisStatKey }, min: 1 }); eachSeriesOnAxisOnKey(baseAxis, axisStatKey, function(seriesModel) { seriesInfoOnAxis.push({ barWidth: parsePercent(seriesModel.get("barWidth"), bandWidthResult.w), barMaxWidth: parsePercent(seriesModel.get("barMaxWidth"), bandWidthResult.w), barMinWidth: parsePercent(seriesModel.get("barMinWidth") || (isInLargeMode(seriesModel) ? .5 : 1), bandWidthResult.w), barGap: seriesModel.get("barGap"), barCategoryGap: seriesModel.get("barCategoryGap"), defaultBarGap: seriesModel.get("defaultBarGap"), stackId: getSeriesStackId(seriesModel) }); }); return { bandWidthResult, seriesInfo: seriesInfoOnAxis }; } /** * CAUTION: When multiple series are laid out on one axis, relevant ec options effect all series. * But for historical reason, these options are configured on each series option, which may * introduce confliction. The legacy implementation uses some options (e.g., `defaultBarGap`) * from the first declared series, and other options (e.g., `barGap`, `barCategoryGap`) from the last declared * series. Nevertheless, We remain this design to avoid breaking change. */ function calcBarWidthAndOffset(seriesInfoOnAxis) { var bandWidth = seriesInfoOnAxis.bandWidthResult.w; var remainedWidth = bandWidth; var autoWidthCount = 0; var barCategoryGapOption; var barGapOption; var stackIdList = []; var stackMap = {}; each$4(seriesInfoOnAxis.seriesInfo, function(seriesInfo, idx) { if (!idx) barGapOption = seriesInfo.defaultBarGap || 0; var stackId = seriesInfo.stackId; if (!hasOwn(stackMap, stackId)) autoWidthCount++; var stackItem = stackMap[stackId]; if (!stackItem) { stackItem = stackMap[stackId] = { width: 0, maxWidth: 0 }; stackIdList.push(stackId); } var barWidth = seriesInfo.barWidth; if (barWidth && !stackItem.width) { stackItem.width = barWidth; barWidth = mathMin$3(remainedWidth, barWidth); remainedWidth -= barWidth; } var barMaxWidth = seriesInfo.barMaxWidth; barMaxWidth && (stackItem.maxWidth = barMaxWidth); var barMinWidth = seriesInfo.barMinWidth; barMinWidth && (stackItem.minWidth = barMinWidth); var barGap = seriesInfo.barGap; barGap != null && (barGapOption = barGap); var barCategoryGap = seriesInfo.barCategoryGap; barCategoryGap != null && (barCategoryGapOption = barCategoryGap); }); if (barCategoryGapOption == null) barCategoryGapOption = mathMax$3(35 - stackIdList.length * 4, 15) + "%"; var barCategoryGapNum = parsePercent(barCategoryGapOption, bandWidth); var barGapPercent = parsePercent(barGapOption, 1); var autoWidth = (remainedWidth - barCategoryGapNum) / (autoWidthCount + (autoWidthCount - 1) * barGapPercent); autoWidth = mathMax$3(autoWidth, 0); each$4(stackIdList, function(stackId) { var column = stackMap[stackId]; var maxWidth = column.maxWidth; var minWidth = column.minWidth; if (!column.width) { var finalWidth = autoWidth; if (maxWidth && maxWidth < finalWidth) finalWidth = mathMin$3(maxWidth, remainedWidth); if (minWidth && minWidth > finalWidth) finalWidth = minWidth; if (finalWidth !== autoWidth) { column.width = finalWidth; remainedWidth -= finalWidth + barGapPercent * finalWidth; autoWidthCount--; } } else { var finalWidth = column.width; if (maxWidth) finalWidth = mathMin$3(finalWidth, maxWidth); if (minWidth) finalWidth = mathMax$3(finalWidth, minWidth); column.width = finalWidth; remainedWidth -= finalWidth + barGapPercent * finalWidth; autoWidthCount--; } }); autoWidth = (remainedWidth - barCategoryGapNum) / (autoWidthCount + (autoWidthCount - 1) * barGapPercent); autoWidth = mathMax$3(autoWidth, 0); var widthSum = 0; var lastColumn; each$4(stackIdList, function(stackId) { var column = stackMap[stackId]; if (!column.width) column.width = autoWidth; lastColumn = column; widthSum += column.width * (1 + barGapPercent); }); if (lastColumn) widthSum -= lastColumn.width * barGapPercent; var result = {}; var offset = -widthSum / 2; each$4(stackIdList, function(stackId) { var column = stackMap[stackId]; result[stackId] = result[stackId] || { bandWidth, offset, width: column.width }; offset += column.width * (1 + barGapPercent); }); return result; } function createCrossSeriesLayoutHandler(seriesType) { return { seriesType, overallReset: function(ecModel) { var axisStatKey = makeAxisStatKey2(seriesType, COORD_SYS_TYPE_CARTESIAN_2D); eachAxisOnKey(ecModel, axisStatKey, function(axis) { var columnLayout = makeColumnLayoutOnAxisReal(axis, seriesType); eachSeriesOnAxisOnKey(axis, axisStatKey, function(seriesModel) { var columnLayoutInfo = columnLayout.columnMap[getSeriesStackId(seriesModel)]; seriesModel.getData().setLayout({ bandWidth: columnLayoutInfo.bandWidth, offset: columnLayoutInfo.offset, size: columnLayoutInfo.width }); }); }); } }; } function createProgressiveLayout(seriesType) { return { seriesType, plan: createRenderPlanner(), reset: function(seriesModel) { if (!isCartesian2DInjectedAsDataCoordSys(seriesModel)) return; var data = seriesModel.getData(); var cartesian = seriesModel.coordinateSystem; var baseAxis = cartesian.getBaseAxis(); var valueAxis = cartesian.getOtherAxis(baseAxis); var valueDimIdx = data.getDimensionIndex(data.mapDimension(valueAxis.dim)); var baseDimIdx = data.getDimensionIndex(data.mapDimension(baseAxis.dim)); var drawBackground = seriesModel.get("showBackground", true); var valueDim = data.mapDimension(valueAxis.dim); var stackResultDim = data.getCalculationInfo("stackResultDimension"); var stacked = isDimensionStacked(data, valueDim) && !!data.getCalculationInfo("stackedOnSeries"); var isValueAxisH = valueAxis.isHorizontal(); var valueAxisStart = valueAxis.toGlobalCoord(valueAxis.dataToCoord(getStartValue(valueAxis))); var isLarge = isInLargeMode(seriesModel); var barMinHeight = seriesModel.get("barMinHeight") || 0; var stackedDimIdx = stackResultDim && data.getDimensionIndex(stackResultDim); var columnWidth = data.getLayout("size"); var columnOffset = data.getLayout("offset"); return { progress: function(params, data) { var count = params.count; var largePoints = isLarge && createFloat32Array(count * 3); var largeBackgroundPoints = isLarge && drawBackground && createFloat32Array(count * 3); var largeDataIndices = isLarge && createFloat32Array(count); var coordLayout = cartesian.master.getRect(); var bgSize = isValueAxisH ? coordLayout.width : coordLayout.height; var dataIndex; var store = data.getStore(); var idxOffset = 0; while ((dataIndex = params.next()) != null) { var value = store.get(stacked ? stackedDimIdx : valueDimIdx, dataIndex); var baseValue = store.get(baseDimIdx, dataIndex); var baseCoord = valueAxisStart; var stackStartValue = void 0; if (stacked) stackStartValue = +value - store.get(valueDimIdx, dataIndex); var x = void 0; var y = void 0; var width = void 0; var height = void 0; if (isValueAxisH) { var coord = cartesian.dataToPoint([value, baseValue]); if (stacked) baseCoord = cartesian.dataToPoint([stackStartValue, baseValue])[0]; x = baseCoord; y = coord[1] + columnOffset; width = coord[0] - baseCoord; height = columnWidth; if (mathAbs$2(width) < barMinHeight) width = (width < 0 ? -1 : 1) * barMinHeight; } else { var coord = cartesian.dataToPoint([baseValue, value]); if (stacked) baseCoord = cartesian.dataToPoint([baseValue, stackStartValue])[1]; x = coord[0] + columnOffset; y = baseCoord; width = columnWidth; height = coord[1] - baseCoord; if (mathAbs$2(height) < barMinHeight) height = (height <= 0 ? -1 : 1) * barMinHeight; } if (!isLarge) data.setItemLayout(dataIndex, { x, y, width, height }); else { largePoints[idxOffset] = x; largePoints[idxOffset + 1] = y; largePoints[idxOffset + 2] = isValueAxisH ? width : height; if (largeBackgroundPoints) { largeBackgroundPoints[idxOffset] = isValueAxisH ? coordLayout.x : x; largeBackgroundPoints[idxOffset + 1] = isValueAxisH ? y : coordLayout.y; largeBackgroundPoints[idxOffset + 2] = bgSize; } largeDataIndices[dataIndex] = dataIndex; } idxOffset += 3; } if (isLarge) data.setLayout({ largePoints, largeDataIndices, largeBackgroundPoints, valueAxisHorizontal: isValueAxisH }); } }; } }; } function isInLargeMode(seriesModel) { return seriesModel.pipelineContext && seriesModel.pipelineContext.large; } function barGridCreateAxisContainShapeHandler(seriesType) { return createBandWidthBasedAxisContainShapeHandler(makeAxisStatKey2(seriesType, COORD_SYS_TYPE_CARTESIAN_2D)); } function registerBarGridAxisHandlers(registers) { callOnlyOnce(registers, function() { function register(seriesType) { var axisStatKey = makeAxisStatKey2(seriesType, COORD_SYS_TYPE_CARTESIAN_2D); requireAxisStatisticsForBaseBar(registers, axisStatKey, seriesType, COORD_SYS_TYPE_CARTESIAN_2D); registerAxisContainShapeHandler(axisStatKey, barGridCreateAxisContainShapeHandler(seriesType)); } register("bar"); register("pictorialBar"); }); } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/chart/bar/BaseBarSeries.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var BaseBarSeriesModel = function(_super) { __extends(BaseBarSeriesModel, _super); function BaseBarSeriesModel() { var _this = _super !== null && _super.apply(this, arguments) || this; _this.type = BaseBarSeriesModel.type; return _this; } BaseBarSeriesModel.prototype.getInitialData = function(option, ecModel) { return createSeriesData(null, this, { useEncodeDefaulter: true }); }; BaseBarSeriesModel.prototype.getMarkerPosition = function(value, dims, startingAtTick) { var coordSys = this.coordinateSystem; if (coordSys && coordSys.clampData) { var clampData_1 = coordSys.clampData(value); var pt_1 = coordSys.dataToPoint(clampData_1); if (startingAtTick) each$4(coordSys.getAxes(), function(axis, idx) { if (axis.type === "category" && dims != null) { var tickCoords = axis.getTicksCoords(); var alignTicksWithLabel = axis.getTickModel().get("alignWithLabel"); var targetTickId = clampData_1[idx]; var isEnd = dims[idx] === "x1" || dims[idx] === "y1"; if (isEnd && !alignTicksWithLabel) targetTickId += 1; if (tickCoords.length < 2) return; else if (tickCoords.length === 2) { pt_1[idx] = axis.toGlobalCoord(axis.getExtent()[isEnd ? 1 : 0]); return; } var leftCoord = void 0; var coord = void 0; var stepTickValue = 1; for (var i = 0; i < tickCoords.length; i++) { var tickCoord = tickCoords[i].coord; var tickValue = i === tickCoords.length - 1 ? tickCoords[i - 1].tickValue + stepTickValue : tickCoords[i].tickValue; if (tickValue === targetTickId) { coord = tickCoord; break; } else if (tickValue < targetTickId) leftCoord = tickCoord; else if (leftCoord != null && tickValue > targetTickId) { coord = (tickCoord + leftCoord) / 2; break; } if (i === 1) stepTickValue = tickValue - tickCoords[0].tickValue; } if (coord == null) { if (!leftCoord) coord = tickCoords[0].coord; else if (leftCoord) coord = tickCoords[tickCoords.length - 1].coord; } pt_1[idx] = axis.toGlobalCoord(coord); } }); else { var data = this.getData(); var offset = data.getLayout("offset"); var size = data.getLayout("size"); var offsetIndex = coordSys.getBaseAxis().isHorizontal() ? 0 : 1; pt_1[offsetIndex] += offset + size / 2; } return pt_1; } return [NaN, NaN]; }; /** * @implements */ BaseBarSeriesModel.prototype.__requireStartValue = function(axis) { return this.getBaseAxis() !== axis; }; BaseBarSeriesModel.type = "series.__base_bar__"; BaseBarSeriesModel.defaultOption = { z: 2, coordinateSystem: "cartesian2d", legendHoverLink: true, barMinHeight: 0, barMinAngle: 0, large: false, largeThreshold: 400, progressive: 3e3, progressiveChunkMode: "mod", defaultBarGap: "10%" }; return BaseBarSeriesModel; }(SeriesModel); SeriesModel.registerClass(BaseBarSeriesModel); //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/chart/bar/BarSeries.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var BarSeriesModel = function(_super) { __extends(BarSeriesModel, _super); function BarSeriesModel() { var _this = _super !== null && _super.apply(this, arguments) || this; _this.type = BarSeriesModel.type; return _this; } BarSeriesModel.prototype.getInitialData = function() { return createSeriesData(null, this, { useEncodeDefaulter: true, createInvertedIndices: !!this.get("realtimeSort", true) || null }); }; /** * @override */ BarSeriesModel.prototype.getProgressive = function() { return this.get("large") ? this.get("progressive") : false; }; /** * @implement */ BarSeriesModel.prototype.__preparePipelineContext = function(view, pipeline) { var context = preparePipelineContext(this, view, pipeline); if (context.progressiveRender) context.large = true; return context; }; BarSeriesModel.prototype.brushSelector = function(dataIndex, data, selectors) { return selectors.rect(data.getItemLayout(dataIndex)); }; BarSeriesModel.type = "series.bar"; BarSeriesModel.dependencies = ["grid", "polar"]; BarSeriesModel.defaultOption = inheritDefaultOption(BaseBarSeriesModel.defaultOption, { clip: true, roundCap: false, showBackground: false, backgroundStyle: { color: "rgba(180, 180, 180, 0.2)", borderColor: null, borderWidth: 0, borderType: "solid", borderRadius: 0, shadowBlur: 0, shadowColor: null, shadowOffsetX: 0, shadowOffsetY: 0, opacity: 1 }, select: { itemStyle: { borderColor: tokens.color.primary, borderWidth: 2 } }, realtimeSort: false }); return BarSeriesModel; }(BaseBarSeriesModel); //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/util/throttle.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var ORIGIN_METHOD = "\0__throttleOriginMethod"; var RATE = "\0__throttleRate"; var THROTTLE_TYPE = "\0__throttleType"; /** * @public * @param {(Function)} fn * @param {number} [delay=0] Unit: ms. * @param {boolean} [debounce=false] * true: If call interval less than `delay`, only the last call works. * false: If call interval less than `delay, call works on fixed rate. * @return {(Function)} throttled fn. */ function throttle(fn, delay, debounce) { var currCall; var lastCall = 0; var lastExec = 0; var timer = null; var diff; var scope; var args; var debounceNextCall; delay = delay || 0; function exec() { lastExec = (/* @__PURE__ */ new Date()).getTime(); timer = null; fn.apply(scope, args || []); } var cb = function() { var cbArgs = []; for (var _i = 0; _i < arguments.length; _i++) cbArgs[_i] = arguments[_i]; currCall = (/* @__PURE__ */ new Date()).getTime(); scope = this; args = cbArgs; var thisDelay = debounceNextCall || delay; var thisDebounce = debounceNextCall || debounce; debounceNextCall = null; diff = currCall - (thisDebounce ? lastCall : lastExec) - thisDelay; clearTimeout(timer); if (thisDebounce) timer = setTimeout(exec, thisDelay); else if (diff >= 0) exec(); else timer = setTimeout(exec, -diff); lastCall = currCall; }; /** * Clear throttle. * @public */ cb.clear = function() { if (timer) { clearTimeout(timer); timer = null; } }; /** * Enable debounce once. */ cb.debounceNextCall = function(debounceDelay) { debounceNextCall = debounceDelay; }; return cb; } /** * Create throttle method or update throttle rate. * * @example * ComponentView.prototype.render = function () { * ... * throttle.createOrUpdate( * this, * '_dispatchAction', * this.model.get('throttle'), * 'fixRate' * ); * }; * ComponentView.prototype.remove = function () { * throttle.clear(this, '_dispatchAction'); * }; * ComponentView.prototype.dispose = function () { * throttle.clear(this, '_dispatchAction'); * }; * */ function createOrUpdate(obj, fnAttr, rate, throttleType) { var fn = obj[fnAttr]; if (!fn) return; var originFn = fn[ORIGIN_METHOD] || fn; var lastThrottleType = fn[THROTTLE_TYPE]; if (fn[RATE] !== rate || lastThrottleType !== throttleType) { if (rate == null || !throttleType) return obj[fnAttr] = originFn; fn = obj[fnAttr] = throttle(originFn, rate, throttleType === "debounce"); fn[ORIGIN_METHOD] = originFn; fn[THROTTLE_TYPE] = throttleType; fn[RATE] = rate; } return fn; } /** * Clear throttle. Example see throttle.createOrUpdate. */ function clear(obj, fnAttr) { var fn = obj[fnAttr]; if (fn && fn[ORIGIN_METHOD]) { fn.clear && fn.clear(); obj[fnAttr] = fn[ORIGIN_METHOD]; } } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/util/shape/sausage.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ /** * Sausage: similar to sector, but have half circle on both sides */ var SausageShape = function() { function SausageShape() { this.cx = 0; this.cy = 0; this.r0 = 0; this.r = 0; this.startAngle = 0; this.endAngle = Math.PI * 2; this.clockwise = true; } return SausageShape; }(); var SausagePath = function(_super) { __extends(SausagePath, _super); function SausagePath(opts) { var _this = _super.call(this, opts) || this; _this.type = "sausage"; return _this; } SausagePath.prototype.getDefaultShape = function() { return new SausageShape(); }; SausagePath.prototype.buildPath = function(ctx, shape) { var cx = shape.cx; var cy = shape.cy; var r0 = Math.max(shape.r0 || 0, 0); var r = Math.max(shape.r, 0); var dr = (r - r0) * .5; var rCenter = r0 + dr; var startAngle = shape.startAngle; var endAngle = shape.endAngle; var clockwise = shape.clockwise; var PI2 = Math.PI * 2; var lessThanCircle = clockwise ? endAngle - startAngle < PI2 : startAngle - endAngle < PI2; if (!lessThanCircle) startAngle = endAngle - (clockwise ? PI2 : -PI2); var unitStartX = Math.cos(startAngle); var unitStartY = Math.sin(startAngle); var unitEndX = Math.cos(endAngle); var unitEndY = Math.sin(endAngle); if (lessThanCircle) { ctx.moveTo(unitStartX * r0 + cx, unitStartY * r0 + cy); ctx.arc(unitStartX * rCenter + cx, unitStartY * rCenter + cy, dr, -Math.PI + startAngle, startAngle, !clockwise); } else ctx.moveTo(unitStartX * r + cx, unitStartY * r + cy); ctx.arc(cx, cy, r, startAngle, endAngle, !clockwise); ctx.arc(unitEndX * rCenter + cx, unitEndY * rCenter + cy, dr, endAngle - Math.PI * 2, endAngle - Math.PI, !clockwise); if (r0 !== 0) ctx.arc(cx, cy, r0, endAngle, startAngle, clockwise); }; return SausagePath; }(Path); //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/label/sectorLabel.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ function createSectorCalculateTextPosition(positionMapping, opts) { opts = opts || {}; var isRoundCap = opts.isRoundCap; return function(out, opts, boundingRect) { var textPosition = opts.position; if (!textPosition || textPosition instanceof Array) return calculateTextPosition(out, opts, boundingRect); var mappedSectorPosition = positionMapping(textPosition); var distance = opts.distance != null ? opts.distance : 5; var sector = this.shape; var cx = sector.cx; var cy = sector.cy; var r = sector.r; var r0 = sector.r0; var middleR = (r + r0) / 2; var startAngle = sector.startAngle; var endAngle = sector.endAngle; var middleAngle = (startAngle + endAngle) / 2; var extraDist = isRoundCap ? Math.abs(r - r0) / 2 : 0; var mathCos = Math.cos; var mathSin = Math.sin; var x = cx + r * mathCos(startAngle); var y = cy + r * mathSin(startAngle); var textAlign = "left"; var textVerticalAlign = "top"; switch (mappedSectorPosition) { case "startArc": x = cx + (r0 - distance) * mathCos(middleAngle); y = cy + (r0 - distance) * mathSin(middleAngle); textAlign = "center"; textVerticalAlign = "top"; break; case "insideStartArc": x = cx + (r0 + distance) * mathCos(middleAngle); y = cy + (r0 + distance) * mathSin(middleAngle); textAlign = "center"; textVerticalAlign = "bottom"; break; case "startAngle": x = cx + middleR * mathCos(startAngle) + adjustAngleDistanceX(startAngle, distance + extraDist, false); y = cy + middleR * mathSin(startAngle) + adjustAngleDistanceY(startAngle, distance + extraDist, false); textAlign = "right"; textVerticalAlign = "middle"; break; case "insideStartAngle": x = cx + middleR * mathCos(startAngle) + adjustAngleDistanceX(startAngle, -distance + extraDist, false); y = cy + middleR * mathSin(startAngle) + adjustAngleDistanceY(startAngle, -distance + extraDist, false); textAlign = "left"; textVerticalAlign = "middle"; break; case "middle": x = cx + middleR * mathCos(middleAngle); y = cy + middleR * mathSin(middleAngle); textAlign = "center"; textVerticalAlign = "middle"; break; case "endArc": x = cx + (r + distance) * mathCos(middleAngle); y = cy + (r + distance) * mathSin(middleAngle); textAlign = "center"; textVerticalAlign = "bottom"; break; case "insideEndArc": x = cx + (r - distance) * mathCos(middleAngle); y = cy + (r - distance) * mathSin(middleAngle); textAlign = "center"; textVerticalAlign = "top"; break; case "endAngle": x = cx + middleR * mathCos(endAngle) + adjustAngleDistanceX(endAngle, distance + extraDist, true); y = cy + middleR * mathSin(endAngle) + adjustAngleDistanceY(endAngle, distance + extraDist, true); textAlign = "left"; textVerticalAlign = "middle"; break; case "insideEndAngle": x = cx + middleR * mathCos(endAngle) + adjustAngleDistanceX(endAngle, -distance + extraDist, true); y = cy + middleR * mathSin(endAngle) + adjustAngleDistanceY(endAngle, -distance + extraDist, true); textAlign = "right"; textVerticalAlign = "middle"; break; default: return calculateTextPosition(out, opts, boundingRect); } out = out || {}; out.x = x; out.y = y; out.align = textAlign; out.verticalAlign = textVerticalAlign; return out; }; } function setSectorTextRotation(sector, textPosition, positionMapping, rotateType) { if (isNumber(rotateType)) { sector.setTextConfig({ rotation: rotateType }); return; } else if (isArray(textPosition)) { sector.setTextConfig({ rotation: 0 }); return; } var shape = sector.shape; var startAngle = shape.clockwise ? shape.startAngle : shape.endAngle; var endAngle = shape.clockwise ? shape.endAngle : shape.startAngle; var middleAngle = (startAngle + endAngle) / 2; var anchorAngle; var mappedSectorPosition = positionMapping(textPosition); switch (mappedSectorPosition) { case "startArc": case "insideStartArc": case "middle": case "insideEndArc": case "endArc": anchorAngle = middleAngle; break; case "startAngle": case "insideStartAngle": anchorAngle = startAngle; break; case "endAngle": case "insideEndAngle": anchorAngle = endAngle; break; default: sector.setTextConfig({ rotation: 0 }); return; } var rotate = Math.PI * 1.5 - anchorAngle; /** * TODO: labels with rotate > Math.PI / 2 should be rotate another * half round flipped to increase readability. However, only middle * position supports this for now, because in other positions, the * anchor point is not at the center of the text, so the positions * after rotating is not as expected. */ if (mappedSectorPosition === "middle" && rotate > Math.PI / 2 && rotate < Math.PI * 1.5) rotate -= Math.PI; sector.setTextConfig({ rotation: rotate }); } function adjustAngleDistanceX(angle, distance, isEnd) { return distance * Math.sin(angle) * (isEnd ? -1 : 1); } function adjustAngleDistanceY(angle, distance, isEnd) { return distance * Math.cos(angle) * (isEnd ? 1 : -1); } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/chart/helper/sectorHelper.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ function getSectorCornerRadius(model, shape, zeroIfNull) { var cornerRadius = model.get("borderRadius"); if (cornerRadius == null) return zeroIfNull ? { cornerRadius: 0 } : null; if (!isArray(cornerRadius)) cornerRadius = [ cornerRadius, cornerRadius, cornerRadius, cornerRadius ]; var dr = Math.abs(shape.r || 0 - shape.r0 || 0); return { cornerRadius: map$1(cornerRadius, function(cr) { return parsePercent$1(cr, dr); }) }; } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/chart/bar/BarView.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var mathMax = Math.max; var mathMin = Math.min; var BarView = function(_super) { __extends(BarView, _super); function BarView() { var _this = _super.call(this) || this; _this.type = "bar"; _this._isFirstFrame = true; return _this; } BarView.prototype.render = function(seriesModel, ecModel, api, payload) { this._model = seriesModel; this._removeOnRenderedListener(api); this._updateDrawMode(seriesModel); var coordinateSystemType = seriesModel.get("coordinateSystem"); if (coordinateSystemType === "cartesian2d" || coordinateSystemType === "polar") { this._progressiveEls = null; this._isLargeDraw ? this._renderLarge(seriesModel, ecModel, api) : this._renderNormal(seriesModel, ecModel, api, payload); } }; BarView.prototype.incrementalPrepareRender = function(seriesModel) { this._clear(); this._updateDrawMode(seriesModel); this._updateLargeClip(seriesModel); }; BarView.prototype.incrementalRender = function(params, seriesModel) { this._progressiveEls = []; this._incrementalRenderLarge(params, seriesModel); }; BarView.prototype.eachRendered = function(cb) { traverseElements(this._progressiveEls || this.group, cb); }; BarView.prototype._updateDrawMode = function(seriesModel) { var isLargeDraw = seriesModel.pipelineContext.large; if (this._isLargeDraw == null || isLargeDraw !== this._isLargeDraw) { this._isLargeDraw = isLargeDraw; this._clear(); } }; BarView.prototype._renderNormal = function(seriesModel, ecModel, api, payload) { var group = this.group; var data = seriesModel.getData(); var oldData = this._data; var coord = seriesModel.coordinateSystem; var baseAxis = coord.getBaseAxis(); var isHorizontalOrRadial; if (coord.type === "cartesian2d") isHorizontalOrRadial = baseAxis.isHorizontal(); else if (coord.type === "polar") isHorizontalOrRadial = baseAxis.dim === "angle"; var animationModel = seriesModel.isAnimationEnabled() ? seriesModel : null; var realtimeSortCfg = shouldRealtimeSort(seriesModel, coord); if (realtimeSortCfg) this._enableRealtimeSort(realtimeSortCfg, data, api); var needsClip = seriesModel.get("clip", true) || realtimeSortCfg; var coordSysClipArea = coord.getArea(); group.removeClipPath(); var roundCap = seriesModel.get("roundCap", true); var drawBackground = seriesModel.get("showBackground", true); var backgroundModel = seriesModel.getModel("backgroundStyle"); var barBorderRadius = backgroundModel.get("borderRadius") || 0; var bgEls = []; var oldBgEls = this._backgroundEls; var isInitSort = payload && payload.isInitSort; var isChangeOrder = payload && payload.type === "changeAxisOrder"; function createBackground(dataIndex) { var bgLayout = getLayout[coord.type](data, dataIndex); if (!bgLayout) return null; var bgEl = createBackgroundEl(coord, isHorizontalOrRadial, bgLayout); bgEl.useStyle(backgroundModel.getItemStyle()); if (coord.type === "cartesian2d") bgEl.setShape("r", barBorderRadius); else bgEl.setShape("cornerRadius", barBorderRadius); bgEls[dataIndex] = bgEl; return bgEl; } data.diff(oldData).add(function(dataIndex) { var itemModel = data.getItemModel(dataIndex); var layout = getLayout[coord.type](data, dataIndex, itemModel); if (!layout) return; if (drawBackground) createBackground(dataIndex); if (!data.hasValue(dataIndex) || !isValidLayout[coord.type](layout)) return; var isClipped = false; if (needsClip) isClipped = clip[coord.type](coordSysClipArea, layout); var el = elementCreator[coord.type](seriesModel, data, dataIndex, layout, isHorizontalOrRadial, animationModel, baseAxis.model, false, roundCap); if (realtimeSortCfg) /** * Force label animation because even if the element is * ignored because it's clipped, it may not be clipped after * changing order. Then, if not using forceLabelAnimation, * the label animation was never started, in which case, * the label will be the final value and doesn't have label * animation. */ el.forceLabelAnimation = true; updateStyle(el, data, dataIndex, itemModel, layout, seriesModel, isHorizontalOrRadial, coord.type === "polar"); if (isInitSort) el.attr({ shape: layout }); else if (realtimeSortCfg) updateRealtimeAnimation(realtimeSortCfg, animationModel, el, layout, dataIndex, isHorizontalOrRadial, false, false); else initProps(el, { shape: layout }, seriesModel, dataIndex); data.setItemGraphicEl(dataIndex, el); group.add(el); el.ignore = isClipped; }).update(function(newIndex, oldIndex) { var itemModel = data.getItemModel(newIndex); var layout = getLayout[coord.type](data, newIndex, itemModel); if (!layout) return; if (drawBackground) { var bgEl = void 0; if (oldBgEls.length === 0) bgEl = createBackground(oldIndex); else { bgEl = oldBgEls[oldIndex]; bgEl.useStyle(backgroundModel.getItemStyle()); if (coord.type === "cartesian2d") bgEl.setShape("r", barBorderRadius); else bgEl.setShape("cornerRadius", barBorderRadius); bgEls[newIndex] = bgEl; } var bgLayout = getLayout[coord.type](data, newIndex); var shape = createBackgroundShape(isHorizontalOrRadial, bgLayout, coord); updateProps$1(bgEl, { shape }, animationModel, newIndex); } var el = oldData.getItemGraphicEl(oldIndex); if (!data.hasValue(newIndex) || !isValidLayout[coord.type](layout)) { group.remove(el); return; } var isClipped = false; if (needsClip) { isClipped = clip[coord.type](coordSysClipArea, layout); if (isClipped) group.remove(el); } if (el && (el.type === "sector" && roundCap || el.type === "sausage" && !roundCap)) { el && removeElementWithFadeOut(el, seriesModel, oldIndex); el = null; } if (!el) el = elementCreator[coord.type](seriesModel, data, newIndex, layout, isHorizontalOrRadial, animationModel, baseAxis.model, true, roundCap); else saveOldStyle(el); if (realtimeSortCfg) el.forceLabelAnimation = true; if (isChangeOrder) { var textEl = el.getTextContent(); if (textEl) { var labelInnerStore = labelInner(textEl); if (labelInnerStore.prevValue != null) /** * Set preValue to be value so that no new label * should be started, otherwise, it will take a full * `animationDurationUpdate` time to finish the * animation, which is not expected. */ labelInnerStore.prevValue = labelInnerStore.value; } } else updateStyle(el, data, newIndex, itemModel, layout, seriesModel, isHorizontalOrRadial, coord.type === "polar"); if (isInitSort) el.attr({ shape: layout }); else if (realtimeSortCfg) updateRealtimeAnimation(realtimeSortCfg, animationModel, el, layout, newIndex, isHorizontalOrRadial, true, isChangeOrder); else updateProps$1(el, { shape: layout }, seriesModel, newIndex, null); data.setItemGraphicEl(newIndex, el); el.ignore = isClipped; group.add(el); }).remove(function(dataIndex) { var el = oldData.getItemGraphicEl(dataIndex); el && removeElementWithFadeOut(el, seriesModel, dataIndex); }).execute(); var bgGroup = this._backgroundGroup || (this._backgroundGroup = new Group$2()); bgGroup.removeAll(); for (var i = 0; i < bgEls.length; ++i) bgGroup.add(bgEls[i]); group.add(bgGroup); this._backgroundEls = bgEls; this._data = data; }; BarView.prototype._renderLarge = function(seriesModel, ecModel, api) { this._clear(); createLarge(seriesModel, this.group); this._updateLargeClip(seriesModel); }; BarView.prototype._incrementalRenderLarge = function(params, seriesModel) { this._removeBackground(); createLarge(seriesModel, this.group, this._progressiveEls, true); }; BarView.prototype._updateLargeClip = function(seriesModel) { var clipPath = seriesModel.get("clip", true) && createClipPath(seriesModel.coordinateSystem, false, seriesModel); var group = this.group; if (clipPath) group.setClipPath(clipPath); else group.removeClipPath(); }; BarView.prototype._enableRealtimeSort = function(realtimeSortCfg, data, api) { var _this = this; if (!data.count()) return; var baseAxis = realtimeSortCfg.baseAxis; if (this._isFirstFrame) { this._dispatchInitSort(data, realtimeSortCfg, api); this._isFirstFrame = false; } else { var orderMapping_1 = function(idx) { var el = data.getItemGraphicEl(idx); var shape = el && el.shape; return shape && Math.abs(baseAxis.isHorizontal() ? shape.height : shape.width) || 0; }; this._onRendered = function() { _this._updateSortWithinSameData(data, orderMapping_1, baseAxis, api); }; api.getZr().on("rendered", this._onRendered); } }; BarView.prototype._dataSort = function(data, baseAxis, orderMapping) { var info = []; data.each(data.mapDimension(baseAxis.dim), function(ordinalNumber, dataIdx) { var mappedValue = orderMapping(dataIdx); mappedValue = mappedValue == null ? NaN : mappedValue; info.push({ dataIndex: dataIdx, mappedValue, ordinalNumber }); }); info.sort(function(a, b) { return b.mappedValue - a.mappedValue; }); return { ordinalNumbers: map$1(info, function(item) { return item.ordinalNumber; }) }; }; BarView.prototype._isOrderChangedWithinSameData = function(data, orderMapping, baseAxis) { var scale = baseAxis.scale; var ordinalDataDim = data.mapDimension(baseAxis.dim); var lastValue = Number.MAX_VALUE; for (var tickNum = 0, len = scale.getOrdinalMeta().categories.length; tickNum < len; ++tickNum) { var rawIdx = data.rawIndexOf(ordinalDataDim, scale.getRawOrdinalNumber(tickNum)); var value = rawIdx < 0 ? Number.MIN_VALUE : orderMapping(data.indexOfRawIndex(rawIdx)); if (value > lastValue) return true; lastValue = value; } return false; }; BarView.prototype._isOrderDifferentInView = function(orderInfo, baseAxis) { var scale = baseAxis.scale; var extent = scale.getExtent(); var tickNum = Math.max(0, extent[0]); var tickMax = Math.min(extent[1], scale.getOrdinalMeta().categories.length - 1); for (; tickNum <= tickMax; ++tickNum) if (orderInfo.ordinalNumbers[tickNum] !== scale.getRawOrdinalNumber(tickNum)) return true; }; BarView.prototype._updateSortWithinSameData = function(data, orderMapping, baseAxis, api) { if (!this._isOrderChangedWithinSameData(data, orderMapping, baseAxis)) return; var sortInfo = this._dataSort(data, baseAxis, orderMapping); if (this._isOrderDifferentInView(sortInfo, baseAxis)) { this._removeOnRenderedListener(api); api.dispatchAction({ type: "changeAxisOrder", componentType: baseAxis.dim + "Axis", axisId: baseAxis.index, sortInfo }); } }; BarView.prototype._dispatchInitSort = function(data, realtimeSortCfg, api) { var baseAxis = realtimeSortCfg.baseAxis; var sortResult = this._dataSort(data, baseAxis, function(dataIdx) { return data.get(data.mapDimension(realtimeSortCfg.otherAxis.dim), dataIdx); }); api.dispatchAction({ type: "changeAxisOrder", componentType: baseAxis.dim + "Axis", isInitSort: true, axisId: baseAxis.index, sortInfo: sortResult }); }; BarView.prototype.remove = function(ecModel, api) { this._clear(this._model); this._removeOnRenderedListener(api); }; BarView.prototype.dispose = function(ecModel, api) { this._removeOnRenderedListener(api); }; BarView.prototype._removeOnRenderedListener = function(api) { if (this._onRendered) { api.getZr().off("rendered", this._onRendered); this._onRendered = null; } }; BarView.prototype._clear = function(model) { var group = this.group; var data = this._data; if (model && model.isAnimationEnabled() && data && !this._isLargeDraw) { this._removeBackground(); this._backgroundEls = []; data.eachItemGraphicEl(function(el) { removeElementWithFadeOut(el, model, getECData(el).dataIndex); }); } else group.removeAll(); this._data = null; this._isFirstFrame = true; }; BarView.prototype._removeBackground = function() { this.group.remove(this._backgroundGroup); this._backgroundGroup = null; }; BarView.type = "bar"; return BarView; }(ChartView); var clip = { cartesian2d: function(coordSysClipArea, layout) { var signWidth = layout.width < 0 ? -1 : 1; var signHeight = layout.height < 0 ? -1 : 1; if (signWidth < 0) { layout.x += layout.width; layout.width = -layout.width; } if (signHeight < 0) { layout.y += layout.height; layout.height = -layout.height; } var coordSysX2 = coordSysClipArea.x + coordSysClipArea.width; var coordSysY2 = coordSysClipArea.y + coordSysClipArea.height; var x = mathMax(layout.x, coordSysClipArea.x); var x2 = mathMin(layout.x + layout.width, coordSysX2); var y = mathMax(layout.y, coordSysClipArea.y); var y2 = mathMin(layout.y + layout.height, coordSysY2); var xClipped = x2 < x; var yClipped = y2 < y; layout.x = xClipped && x > coordSysX2 ? x2 : x; layout.y = yClipped && y > coordSysY2 ? y2 : y; layout.width = xClipped ? 0 : x2 - x; layout.height = yClipped ? 0 : y2 - y; if (signWidth < 0) { layout.x += layout.width; layout.width = -layout.width; } if (signHeight < 0) { layout.y += layout.height; layout.height = -layout.height; } return xClipped || yClipped; }, polar: function(coordSysClipArea, layout) { var signR = layout.r0 <= layout.r ? 1 : -1; if (signR < 0) { var tmp = layout.r; layout.r = layout.r0; layout.r0 = tmp; } var r = mathMin(layout.r, coordSysClipArea.r); var r0 = mathMax(layout.r0, coordSysClipArea.r0); layout.r = r; layout.r0 = r0; var clipped = r - r0 < 0; if (signR < 0) { var tmp = layout.r; layout.r = layout.r0; layout.r0 = tmp; } return clipped; } }; var elementCreator = { cartesian2d: function(seriesModel, data, newIndex, layout, isHorizontal, animationModel, axisModel, isUpdate, roundCap) { var rect = new Rect({ shape: extend({}, layout), z2: 1 }); rect.__dataIndex = newIndex; rect.name = "item"; if (animationModel) { var rectShape = rect.shape; var animateProperty = isHorizontal ? "height" : "width"; rectShape[animateProperty] = 0; } return rect; }, polar: function(seriesModel, data, newIndex, layout, isRadial, animationModel, axisModel, isUpdate, roundCap) { var ShapeClass = !isRadial && roundCap ? SausagePath : Sector; var sector = new ShapeClass({ shape: layout, z2: 1 }); sector.name = "item"; sector.calculateTextPosition = createSectorCalculateTextPosition(createPolarPositionMapping(isRadial), { isRoundCap: ShapeClass === SausagePath }); if (animationModel) { var sectorShape = sector.shape; var animateProperty = isRadial ? "r" : "endAngle"; var animateTarget = {}; sectorShape[animateProperty] = isRadial ? layout.r0 : layout.startAngle; animateTarget[animateProperty] = layout[animateProperty]; (isUpdate ? updateProps$1 : initProps)(sector, { shape: animateTarget }, animationModel); } return sector; } }; function shouldRealtimeSort(seriesModel, coordSys) { var realtimeSortOption = seriesModel.get("realtimeSort", true); var baseAxis = coordSys.getBaseAxis(); if (realtimeSortOption && baseAxis.type === "category" && coordSys.type === "cartesian2d") return { baseAxis, otherAxis: coordSys.getOtherAxis(baseAxis) }; } function updateRealtimeAnimation(realtimeSortCfg, seriesAnimationModel, el, layout, newIndex, isHorizontal, isUpdate, isChangeOrder) { var seriesTarget; var axisTarget; if (isHorizontal) { axisTarget = { x: layout.x, width: layout.width }; seriesTarget = { y: layout.y, height: layout.height }; } else { axisTarget = { y: layout.y, height: layout.height }; seriesTarget = { x: layout.x, width: layout.width }; } if (!isChangeOrder) (isUpdate ? updateProps$1 : initProps)(el, { shape: seriesTarget }, seriesAnimationModel, newIndex, null); var axisAnimationModel = seriesAnimationModel ? realtimeSortCfg.baseAxis.model : null; (isUpdate ? updateProps$1 : initProps)(el, { shape: axisTarget }, axisAnimationModel, newIndex); } function checkPropertiesNotValid(obj, props) { for (var i = 0; i < props.length; i++) if (!isFinite(obj[props[i]])) return true; return false; } var rectPropties = [ "x", "y", "width", "height" ]; var polarPropties = [ "cx", "cy", "r", "startAngle", "endAngle" ]; var isValidLayout = { cartesian2d: function(layout) { return !checkPropertiesNotValid(layout, rectPropties); }, polar: function(layout) { return !checkPropertiesNotValid(layout, polarPropties); } }; var getLayout = { cartesian2d: function(data, dataIndex, itemModel) { var layout = data.getItemLayout(dataIndex); if (!layout) return null; var fixedLineWidth = itemModel ? getLineWidth(itemModel, layout) : 0; var signX = layout.width > 0 ? 1 : -1; var signY = layout.height > 0 ? 1 : -1; return { x: layout.x + signX * fixedLineWidth / 2, y: layout.y + signY * fixedLineWidth / 2, width: layout.width - signX * fixedLineWidth, height: layout.height - signY * fixedLineWidth }; }, polar: function(data, dataIndex, itemModel) { var layout = data.getItemLayout(dataIndex); return { cx: layout.cx, cy: layout.cy, r0: layout.r0, r: layout.r, startAngle: layout.startAngle, endAngle: layout.endAngle, clockwise: layout.clockwise }; } }; function isZeroOnPolar(layout) { return layout.startAngle != null && layout.endAngle != null && layout.startAngle === layout.endAngle; } function createPolarPositionMapping(isRadial) { return function(isRadial) { var arcOrAngle = isRadial ? "Arc" : "Angle"; return function(position) { switch (position) { case "start": case "insideStart": case "end": case "insideEnd": return position + arcOrAngle; default: return position; } }; }(isRadial); } function updateStyle(el, data, dataIndex, itemModel, layout, seriesModel, isHorizontalOrRadial, isPolar) { var style = data.getItemVisual(dataIndex, "style"); if (!isPolar) { var borderRadius = itemModel.get(["itemStyle", "borderRadius"]) || 0; el.setShape("r", borderRadius); } else if (!seriesModel.get("roundCap")) { var sectorShape = el.shape; extend(sectorShape, getSectorCornerRadius(itemModel.getModel("itemStyle"), sectorShape, true)); el.setShape(sectorShape); } el.useStyle(style); var cursorStyle = itemModel.getShallow("cursor"); cursorStyle && el.attr("cursor", cursorStyle); var labelPositionOutside = isPolar ? isHorizontalOrRadial ? layout.r >= layout.r0 ? "endArc" : "startArc" : layout.endAngle >= layout.startAngle ? "endAngle" : "startAngle" : isHorizontalOrRadial ? getLabelPositionForHorizontal(layout, seriesModel.coordinateSystem) : getLabelPositionForVertical(layout, seriesModel.coordinateSystem); var labelStatesModels = getLabelStatesModels(itemModel); setLabelStyle(el, labelStatesModels, { labelFetcher: seriesModel, labelDataIndex: dataIndex, defaultText: getDefaultLabel(seriesModel.getData(), dataIndex), inheritColor: style.fill, defaultOpacity: style.opacity, defaultOutsidePosition: labelPositionOutside }); var label = el.getTextContent(); if (isPolar && label) { var position = itemModel.get(["label", "position"]); el.textConfig.inside = position === "middle" ? true : null; setSectorTextRotation(el, position === "outside" ? labelPositionOutside : position, createPolarPositionMapping(isHorizontalOrRadial), itemModel.get(["label", "rotate"])); } setLabelValueAnimation(label, labelStatesModels, seriesModel.getRawValue(dataIndex), function(value) { return getDefaultInterpolatedLabel(data, value); }); var emphasisModel = itemModel.getModel(["emphasis"]); toggleHoverEmphasis(el, emphasisModel.get("focus"), emphasisModel.get("blurScope"), emphasisModel.get("disabled")); setStatesStylesFromModel(el, itemModel); if (isZeroOnPolar(layout)) { el.style.fill = "none"; el.style.stroke = "none"; each$4(el.states, function(state) { if (state.style) state.style.fill = state.style.stroke = "none"; }); } } function getLineWidth(itemModel, rawLayout) { var borderColor = itemModel.get(["itemStyle", "borderColor"]); if (!borderColor || borderColor === "none") return 0; var lineWidth = itemModel.get(["itemStyle", "borderWidth"]) || 0; var width = isNaN(rawLayout.width) ? Number.MAX_VALUE : Math.abs(rawLayout.width); var height = isNaN(rawLayout.height) ? Number.MAX_VALUE : Math.abs(rawLayout.height); return Math.min(lineWidth, width, height); } var LagePathShape = function() { function LagePathShape() {} return LagePathShape; }(); var LargePath = function(_super) { __extends(LargePath, _super); function LargePath(opts) { var _this = _super.call(this, opts) || this; _this.type = "largeBar"; return _this; } LargePath.prototype.getDefaultShape = function() { return new LagePathShape(); }; LargePath.prototype.buildPath = function(ctx, shape) { var points = shape.points; var baseDimIdx = this.baseDimIdx; var valueDimIdx = 1 - this.baseDimIdx; var startPoint = []; var size = []; var barWidth = this.barWidth; for (var i = 0; i < points.length; i += 3) { size[baseDimIdx] = barWidth; size[valueDimIdx] = points[i + 2]; startPoint[baseDimIdx] = points[i + baseDimIdx]; startPoint[valueDimIdx] = points[i + valueDimIdx]; ctx.rect(startPoint[0], startPoint[1], size[0], size[1]); } }; return LargePath; }(Path); function createLarge(seriesModel, group, progressiveEls, incremental) { var data = seriesModel.getData(); var baseDimIdx = data.getLayout("valueAxisHorizontal") ? 1 : 0; var largeDataIndices = data.getLayout("largeDataIndices"); var barWidth = data.getLayout("size"); var backgroundModel = seriesModel.getModel("backgroundStyle"); var bgPoints = data.getLayout("largeBackgroundPoints"); var incrementalId = incremental ? getIncrementalId(seriesModel) : 0; if (bgPoints) { var bgEl = new LargePath({ shape: { points: bgPoints }, incremental: incrementalId, silent: true, z2: 0 }); bgEl.baseDimIdx = baseDimIdx; bgEl.largeDataIndices = largeDataIndices; bgEl.barWidth = barWidth; bgEl.useStyle(backgroundModel.getItemStyle()); group.add(bgEl); progressiveEls && progressiveEls.push(bgEl); } var el = new LargePath({ shape: { points: data.getLayout("largePoints") }, incremental: incrementalId, ignoreCoarsePointer: true, z2: 1 }); el.baseDimIdx = baseDimIdx; el.largeDataIndices = largeDataIndices; el.barWidth = barWidth; group.add(el); el.useStyle(data.getVisual("style")); el.style.stroke = null; getECData(el).seriesIndex = seriesModel.seriesIndex; if (!seriesModel.get("silent")) { el.on("mousedown", largePathUpdateDataIndex); el.on("mousemove", largePathUpdateDataIndex); } progressiveEls && progressiveEls.push(el); } var largePathUpdateDataIndex = throttle(function(event) { var largePath = this; var dataIndex = largePathFindDataIndex(largePath, event.offsetX, event.offsetY); getECData(largePath).dataIndex = dataIndex >= 0 ? dataIndex : null; }, 30, false); function largePathFindDataIndex(largePath, x, y) { var baseDimIdx = largePath.baseDimIdx; var valueDimIdx = 1 - baseDimIdx; var points = largePath.shape.points; var largeDataIndices = largePath.largeDataIndices; var startPoint = []; var size = []; var barWidth = largePath.barWidth; for (var i = 0, len = points.length / 3; i < len; i++) { var ii = i * 3; size[baseDimIdx] = barWidth; size[valueDimIdx] = points[ii + 2]; startPoint[baseDimIdx] = points[ii + baseDimIdx]; startPoint[valueDimIdx] = points[ii + valueDimIdx]; if (size[valueDimIdx] < 0) { startPoint[valueDimIdx] += size[valueDimIdx]; size[valueDimIdx] = -size[valueDimIdx]; } if (x >= startPoint[0] && x <= startPoint[0] + size[0] && y >= startPoint[1] && y <= startPoint[1] + size[1]) return largeDataIndices[i]; } return -1; } function createBackgroundShape(isHorizontalOrRadial, layout, coord) { if (isCoordinateSystemType(coord, "cartesian2d")) { var rectShape = layout; var coordLayout = coord.getArea(); return { x: isHorizontalOrRadial ? rectShape.x : coordLayout.x, y: isHorizontalOrRadial ? coordLayout.y : rectShape.y, width: isHorizontalOrRadial ? rectShape.width : coordLayout.width, height: isHorizontalOrRadial ? coordLayout.height : rectShape.height }; } else { var coordLayout = coord.getArea(); var sectorShape = layout; return { cx: coordLayout.cx, cy: coordLayout.cy, r0: isHorizontalOrRadial ? coordLayout.r0 : sectorShape.r0, r: isHorizontalOrRadial ? coordLayout.r : sectorShape.r, startAngle: isHorizontalOrRadial ? sectorShape.startAngle : 0, endAngle: isHorizontalOrRadial ? sectorShape.endAngle : Math.PI * 2 }; } } function createBackgroundEl(coord, isHorizontalOrRadial, layout) { return new (coord.type === "polar" ? Sector : Rect)({ shape: createBackgroundShape(isHorizontalOrRadial, layout, coord), silent: true, z2: 0 }); } function getLabelPositionForHorizontal(layout, coordSys) { if (layout.height === 0) return coordSys.getOtherAxis(coordSys.getBaseAxis()).inverse ? "bottom" : "top"; return layout.height > 0 ? "bottom" : "top"; } function getLabelPositionForVertical(layout, coordSys) { if (layout.width === 0) return coordSys.getOtherAxis(coordSys.getBaseAxis()).inverse ? "left" : "right"; return layout.width >= 0 ? "right" : "left"; } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/chart/bar/install.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ function install$9(registers) { registers.registerChartView(BarView); registers.registerSeriesModel(BarSeriesModel); registers.registerLayout(registers.PRIORITY.VISUAL.LAYOUT, createCrossSeriesLayoutHandler("bar")); registers.registerLayout(registers.PRIORITY.VISUAL.PROGRESSIVE_LAYOUT, createProgressiveLayout("bar")); registers.registerProcessor(registers.PRIORITY.PROCESSOR.STATISTIC, dataSample("bar")); /** * @payload * @property {string} [componentType=series] * @property {number} [dx] * @property {number} [dy] * @property {number} [zoom] * @property {number} [originX] * @property {number} [originY] */ registers.registerAction({ type: "changeAxisOrder", event: "changeAxisOrder", update: "update" }, function(payload, ecModel) { var componentType = payload.componentType || "series"; ecModel.eachComponent({ mainType: componentType, query: payload }, function(componentModel) { if (payload.sortInfo) componentModel.axis.setCategorySortInfo(payload.sortInfo); }); }); registerBarGridAxisHandlers(registers); } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/legacy/dataSelectAction.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ function handleSeriesLegacySelectEvents(type, eventPostfix, ecIns, ecModel, payload) { var legacyEventName = type + eventPostfix; if (!ecIns.isSilent(legacyEventName)) ecModel.eachComponent({ mainType: "series", subType: "pie" }, function(seriesModel) { var seriesIndex = seriesModel.seriesIndex; var selectedMap = seriesModel.option.selectedMap; var selected = payload.selected; for (var i = 0; i < selected.length; i++) if (selected[i].seriesIndex === seriesIndex) { var data = seriesModel.getData(); var dataIndex = queryDataIndex(data, payload.fromActionPayload); ecIns.trigger(legacyEventName, { type: legacyEventName, seriesId: seriesModel.id, name: isArray(dataIndex) ? data.getName(dataIndex[0]) : data.getName(dataIndex), selected: isString(selectedMap) ? selectedMap : extend({}, selectedMap) }); } }); } function handleLegacySelectEvents(messageCenter, ecIns, api) { messageCenter.on("selectchanged", function(params) { var ecModel = api.getModel(); if (params.isFromClick) { handleSeriesLegacySelectEvents("map", "selectchanged", ecIns, ecModel, params); handleSeriesLegacySelectEvents("pie", "selectchanged", ecIns, ecModel, params); } else if (params.fromAction === "select") { handleSeriesLegacySelectEvents("map", "selected", ecIns, ecModel, params); handleSeriesLegacySelectEvents("pie", "selected", ecIns, ecModel, params); } else if (params.fromAction === "unselect") { handleSeriesLegacySelectEvents("map", "unselected", ecIns, ecModel, params); handleSeriesLegacySelectEvents("pie", "unselected", ecIns, ecModel, params); } }); } //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/mixin/Draggable.js var Param = function() { function Param(target, e) { this.target = target; this.topTarget = e && e.topTarget; } return Param; }(); var Draggable = function() { function Draggable(handler) { this.handler = handler; handler.on("mousedown", this._dragStart, this); handler.on("mousemove", this._drag, this); handler.on("mouseup", this._dragEnd, this); } Draggable.prototype._dragStart = function(e) { var draggingTarget = e.target; while (draggingTarget && !draggingTarget.draggable) draggingTarget = draggingTarget.parent || draggingTarget.__hostTarget; if (draggingTarget) { this._draggingTarget = draggingTarget; draggingTarget.dragging = true; this._x = e.offsetX; this._y = e.offsetY; this.handler.dispatchToElement(new Param(draggingTarget, e), "dragstart", e.event); } }; Draggable.prototype._drag = function(e) { var draggingTarget = this._draggingTarget; if (draggingTarget) { var x = e.offsetX; var y = e.offsetY; var dx = x - this._x; var dy = y - this._y; this._x = x; this._y = y; draggingTarget.drift(dx, dy, e); this.handler.dispatchToElement(new Param(draggingTarget, e), "drag", e.event); var dropTarget = this.handler.findHover(x, y, draggingTarget).target; var lastDropTarget = this._dropTarget; this._dropTarget = dropTarget; if (draggingTarget !== dropTarget) { if (lastDropTarget && dropTarget !== lastDropTarget) this.handler.dispatchToElement(new Param(lastDropTarget, e), "dragleave", e.event); if (dropTarget && dropTarget !== lastDropTarget) this.handler.dispatchToElement(new Param(dropTarget, e), "dragenter", e.event); } } }; Draggable.prototype._dragEnd = function(e) { var draggingTarget = this._draggingTarget; if (draggingTarget) draggingTarget.dragging = false; this.handler.dispatchToElement(new Param(draggingTarget, e), "dragend", e.event); if (this._dropTarget) this.handler.dispatchToElement(new Param(this._dropTarget, e), "drop", e.event); this._draggingTarget = null; this._dropTarget = null; }; return Draggable; }(); //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/core/event.js var MOUSE_EVENT_REG = /^(?:mouse|pointer|contextmenu|drag|drop)|click/; var _calcOut = []; var firefoxNotSupportOffsetXY = env.browser.firefox && +env.browser.version.split(".")[0] < 39; function clientToLocal(el, e, out, calculate) { out = out || {}; if (calculate) calculateZrXY(el, e, out); else if (firefoxNotSupportOffsetXY && e.layerX != null && e.layerX !== e.offsetX) { out.zrX = e.layerX; out.zrY = e.layerY; } else if (e.offsetX != null) { out.zrX = e.offsetX; out.zrY = e.offsetY; } else calculateZrXY(el, e, out); return out; } function calculateZrXY(el, e, out) { if (env.domSupported && el.getBoundingClientRect) { var ex = e.clientX; var ey = e.clientY; if (isCanvasEl(el)) { var box = el.getBoundingClientRect(); out.zrX = ex - box.left; out.zrY = ey - box.top; return; } else if (transformCoordWithViewport(_calcOut, el, ex, ey)) { out.zrX = _calcOut[0]; out.zrY = _calcOut[1]; return; } } out.zrX = out.zrY = 0; } function getNativeEvent(e) { return e || window.event; } function normalizeEvent(el, e, calculate) { e = getNativeEvent(e); if (e.zrX != null) return e; var eventType = e.type; if (!(eventType && eventType.indexOf("touch") >= 0)) { clientToLocal(el, e, e, calculate); var wheelDelta = getWheelDeltaMayPolyfill(e); e.zrDelta = wheelDelta ? wheelDelta / 120 : -(e.detail || 0) / 3; } else { var touch = eventType !== "touchend" ? e.targetTouches[0] : e.changedTouches[0]; touch && clientToLocal(el, touch, e, calculate); } var button = e.button; if (e.which == null && button !== void 0 && MOUSE_EVENT_REG.test(e.type)) e.which = button & 1 ? 1 : button & 2 ? 3 : button & 4 ? 2 : 0; return e; } function getWheelDeltaMayPolyfill(e) { var rawWheelDelta = e.wheelDelta; if (rawWheelDelta) return rawWheelDelta; var deltaX = e.deltaX; var deltaY = e.deltaY; if (deltaX == null || deltaY == null) return rawWheelDelta; var delta = deltaY !== 0 ? Math.abs(deltaY) : Math.abs(deltaX); var sign = deltaY > 0 ? -1 : deltaY < 0 ? 1 : deltaX > 0 ? -1 : 1; return 3 * delta * sign; } function addEventListener(el, name, handler, opt) { el.addEventListener(name, handler, opt); } function removeEventListener(el, name, handler, opt) { el.removeEventListener(name, handler, opt); } var stop = function(e) { e.preventDefault(); e.stopPropagation(); e.cancelBubble = true; }; //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/core/GestureMgr.js var GestureMgr = function() { function GestureMgr() { this._track = []; } GestureMgr.prototype.recognize = function(event, target, root) { this._doTrack(event, target, root); return this._recognize(event); }; GestureMgr.prototype.clear = function() { this._track.length = 0; return this; }; GestureMgr.prototype._doTrack = function(event, target, root) { var touches = event.touches; if (!touches) return; var trackItem = { points: [], touches: [], target, event }; for (var i = 0, len = touches.length; i < len; i++) { var touch = touches[i]; var pos = clientToLocal(root, touch, {}); trackItem.points.push([pos.zrX, pos.zrY]); trackItem.touches.push(touch); } this._track.push(trackItem); }; GestureMgr.prototype._recognize = function(event) { for (var eventName in recognizers) if (recognizers.hasOwnProperty(eventName)) { var gestureInfo = recognizers[eventName](this._track, event); if (gestureInfo) return gestureInfo; } }; return GestureMgr; }(); function dist(pointPair) { var dx = pointPair[1][0] - pointPair[0][0]; var dy = pointPair[1][1] - pointPair[0][1]; return Math.sqrt(dx * dx + dy * dy); } function center(pointPair) { return [(pointPair[0][0] + pointPair[1][0]) / 2, (pointPair[0][1] + pointPair[1][1]) / 2]; } var recognizers = { pinch: function(tracks, event) { var trackLen = tracks.length; if (!trackLen) return; var pinchEnd = (tracks[trackLen - 1] || {}).points; var pinchPre = (tracks[trackLen - 2] || {}).points || pinchEnd; if (pinchPre && pinchPre.length > 1 && pinchEnd && pinchEnd.length > 1) { var pinchScale = dist(pinchEnd) / dist(pinchPre); !isFinite(pinchScale) && (pinchScale = 1); event.pinchScale = pinchScale; var pinchCenter = center(pinchEnd); event.pinchX = pinchCenter[0]; event.pinchY = pinchCenter[1]; return { type: "pinch", target: tracks[0].target, event }; } } }; //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/Handler.js var SILENT = "silent"; function makeEventPacket(eveType, targetInfo, event) { return { type: eveType, event, target: targetInfo.target, topTarget: targetInfo.topTarget, cancelBubble: false, offsetX: event.zrX, offsetY: event.zrY, gestureEvent: event.gestureEvent, pinchX: event.pinchX, pinchY: event.pinchY, pinchScale: event.pinchScale, wheelDelta: event.zrDelta, zrByTouch: event.zrByTouch, which: event.which, stop: stopEvent }; } function stopEvent() { stop(this.event); } var EmptyProxy = function(_super) { __extends(EmptyProxy, _super); function EmptyProxy() { var _this = _super !== null && _super.apply(this, arguments) || this; _this.handler = null; return _this; } EmptyProxy.prototype.dispose = function() {}; EmptyProxy.prototype.setCursor = function() {}; return EmptyProxy; }(Eventful); var HoveredResult = function() { function HoveredResult(x, y) { this.x = x; this.y = y; } return HoveredResult; }(); var handlerNames = [ "click", "dblclick", "mousewheel", "mouseout", "mouseup", "mousedown", "mousemove", "contextmenu" ]; var tmpRect = new BoundingRect(0, 0, 0, 0); var Handler = function(_super) { __extends(Handler, _super); function Handler(storage, painter, proxy, painterRoot, pointerSize) { var _this = _super.call(this) || this; _this._hovered = new HoveredResult(0, 0); _this.storage = storage; _this.painter = painter; _this.painterRoot = painterRoot; _this._pointerSize = pointerSize; proxy = proxy || new EmptyProxy(); _this.proxy = null; _this.setHandlerProxy(proxy); _this._draggingMgr = new Draggable(_this); return _this; } Handler.prototype.setHandlerProxy = function(proxy) { if (this.proxy) this.proxy.dispose(); if (proxy) { each$4(handlerNames, function(name) { proxy.on && proxy.on(name, this[name], this); }, this); proxy.handler = this; } this.proxy = proxy; }; Handler.prototype.mousemove = function(event) { var x = event.zrX; var y = event.zrY; var isOutside = isOutsideBoundary(this, x, y); var lastHovered = this._hovered; var lastHoveredTarget = lastHovered.target; if (lastHoveredTarget && !lastHoveredTarget.__zr) { lastHovered = this.findHover(lastHovered.x, lastHovered.y); lastHoveredTarget = lastHovered.target; } var hovered = this._hovered = isOutside ? new HoveredResult(x, y) : this.findHover(x, y); var hoveredTarget = hovered.target; var proxy = this.proxy; proxy.setCursor && proxy.setCursor(hoveredTarget ? hoveredTarget.cursor : "default"); if (lastHoveredTarget && hoveredTarget !== lastHoveredTarget) this.dispatchToElement(lastHovered, "mouseout", event); this.dispatchToElement(hovered, "mousemove", event); if (hoveredTarget && hoveredTarget !== lastHoveredTarget) this.dispatchToElement(hovered, "mouseover", event); }; Handler.prototype.mouseout = function(event) { var eventControl = event.zrEventControl; if (eventControl !== "only_globalout") this.dispatchToElement(this._hovered, "mouseout", event); if (eventControl !== "no_globalout") this.trigger("globalout", { type: "globalout", event }); }; Handler.prototype.resize = function() { this._hovered = new HoveredResult(0, 0); }; Handler.prototype.dispatch = function(eventName, eventArgs) { var handler = this[eventName]; handler && handler.call(this, eventArgs); }; Handler.prototype.dispose = function() { this.proxy.dispose(); this.storage = null; this.proxy = null; this.painter = null; }; Handler.prototype.setCursorStyle = function(cursorStyle) { var proxy = this.proxy; proxy.setCursor && proxy.setCursor(cursorStyle); }; Handler.prototype.dispatchToElement = function(targetInfo, eventName, event) { targetInfo = targetInfo || {}; var el = targetInfo.target; if (el && el.silent) return; var eventKey = "on" + eventName; var eventPacket = makeEventPacket(eventName, targetInfo, event); while (el) { el[eventKey] && (eventPacket.cancelBubble = !!el[eventKey].call(el, eventPacket)); el.trigger(eventName, eventPacket); el = el.__hostTarget ? el.__hostTarget : el.parent; if (eventPacket.cancelBubble) break; } if (!eventPacket.cancelBubble) { this.trigger(eventName, eventPacket); if (this.painter && this.painter.eachOtherLayer) this.painter.eachOtherLayer(function(layer) { if (typeof layer[eventKey] === "function") layer[eventKey].call(layer, eventPacket); if (layer.trigger) layer.trigger(eventName, eventPacket); }); } }; Handler.prototype.findHover = function(x, y, exclude) { var list = this.storage.getDisplayList(); var out = new HoveredResult(x, y); setHoverTarget(list, out, x, y, exclude); if (this._pointerSize && !out.target) { var candidates = []; var pointerSize = this._pointerSize; var targetSizeHalf = pointerSize / 2; var pointerRect = new BoundingRect(x - targetSizeHalf, y - targetSizeHalf, pointerSize, pointerSize); for (var i = list.length - 1; i >= 0; i--) { var el = list[i]; if (el !== exclude && !el.ignore && !el.ignoreCoarsePointer && (!el.parent || !el.parent.ignoreCoarsePointer)) { tmpRect.copy(el.getBoundingRect()); if (el.transform) tmpRect.applyTransform(el.transform); if (tmpRect.intersect(pointerRect)) candidates.push(el); } } if (candidates.length) { var rStep = 4; var thetaStep = Math.PI / 12; var PI2 = Math.PI * 2; for (var r = 0; r < targetSizeHalf; r += rStep) for (var theta = 0; theta < PI2; theta += thetaStep) { setHoverTarget(candidates, out, x + r * Math.cos(theta), y + r * Math.sin(theta), exclude); if (out.target) return out; } } } return out; }; Handler.prototype.processGesture = function(event, stage) { if (!this._gestureMgr) this._gestureMgr = new GestureMgr(); var gestureMgr = this._gestureMgr; stage === "start" && gestureMgr.clear(); var gestureInfo = gestureMgr.recognize(event, this.findHover(event.zrX, event.zrY, null).target, this.proxy.dom); stage === "end" && gestureMgr.clear(); if (gestureInfo) { var type = gestureInfo.type; event.gestureEvent = type; var res = new HoveredResult(); res.target = gestureInfo.target; this.dispatchToElement(res, type, gestureInfo.event); } }; return Handler; }(Eventful); each$4([ "click", "mousedown", "mouseup", "mousewheel", "dblclick", "contextmenu" ], function(name) { Handler.prototype[name] = function(event) { var x = event.zrX; var y = event.zrY; var isOutside = isOutsideBoundary(this, x, y); var hovered; var hoveredTarget; if (name !== "mouseup" || !isOutside) { hovered = this.findHover(x, y); hoveredTarget = hovered.target; } if (name === "mousedown") { this._downEl = hoveredTarget; this._downPoint = [event.zrX, event.zrY]; this._upEl = hoveredTarget; } else if (name === "mouseup") this._upEl = hoveredTarget; else if (name === "click") { if (this._downEl !== this._upEl || !this._downPoint || dist$1(this._downPoint, [event.zrX, event.zrY]) > 4) return; this._downPoint = null; } this.dispatchToElement(hovered, name, event); }; }); function isHover(displayable, x, y) { if (displayable[displayable.rectHover ? "rectContain" : "contain"](x, y)) { var el = displayable; var isSilent = void 0; var ignoreClip = false; while (el) { if (el.ignoreClip) ignoreClip = true; if (!ignoreClip) { var clipPath = el.getClipPath(); if (clipPath && !clipPath.contain(x, y)) return false; } if (el.silent) isSilent = true; var hostEl = el.__hostTarget; el = hostEl ? el.ignoreHostSilent ? null : hostEl : el.parent; } return isSilent ? SILENT : true; } return false; } function setHoverTarget(list, out, x, y, exclude) { for (var i = list.length - 1; i >= 0; i--) { var el = list[i]; var hoverCheckResult = void 0; if (el !== exclude && !el.ignore && (hoverCheckResult = isHover(el, x, y))) { !out.topTarget && (out.topTarget = el); if (hoverCheckResult !== SILENT) { out.target = el; break; } } } } function isOutsideBoundary(handlerInstance, x, y) { var painter = handlerInstance.painter; return x < 0 || x > painter.getWidth() || y < 0 || y > painter.getHeight(); } //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/core/timsort.js var DEFAULT_MIN_MERGE = 32; var DEFAULT_MIN_GALLOPING = 7; function minRunLength(n) { var r = 0; while (n >= DEFAULT_MIN_MERGE) { r |= n & 1; n >>= 1; } return n + r; } function makeAscendingRun(array, lo, hi, compare) { var runHi = lo + 1; if (runHi === hi) return 1; if (compare(array[runHi++], array[lo]) < 0) { while (runHi < hi && compare(array[runHi], array[runHi - 1]) < 0) runHi++; reverseRun(array, lo, runHi); } else while (runHi < hi && compare(array[runHi], array[runHi - 1]) >= 0) runHi++; return runHi - lo; } function reverseRun(array, lo, hi) { hi--; while (lo < hi) { var t = array[lo]; array[lo++] = array[hi]; array[hi--] = t; } } function binaryInsertionSort(array, lo, hi, start, compare) { if (start === lo) start++; for (; start < hi; start++) { var pivot = array[start]; var left = lo; var right = start; var mid; while (left < right) { mid = left + right >>> 1; if (compare(pivot, array[mid]) < 0) right = mid; else left = mid + 1; } var n = start - left; switch (n) { case 3: array[left + 3] = array[left + 2]; case 2: array[left + 2] = array[left + 1]; case 1: array[left + 1] = array[left]; break; default: while (n > 0) { array[left + n] = array[left + n - 1]; n--; } } array[left] = pivot; } } function gallopLeft(value, array, start, length, hint, compare) { var lastOffset = 0; var maxOffset = 0; var offset = 1; if (compare(value, array[start + hint]) > 0) { maxOffset = length - hint; while (offset < maxOffset && compare(value, array[start + hint + offset]) > 0) { lastOffset = offset; offset = (offset << 1) + 1; if (offset <= 0) offset = maxOffset; } if (offset > maxOffset) offset = maxOffset; lastOffset += hint; offset += hint; } else { maxOffset = hint + 1; while (offset < maxOffset && compare(value, array[start + hint - offset]) <= 0) { lastOffset = offset; offset = (offset << 1) + 1; if (offset <= 0) offset = maxOffset; } if (offset > maxOffset) offset = maxOffset; var tmp = lastOffset; lastOffset = hint - offset; offset = hint - tmp; } lastOffset++; while (lastOffset < offset) { var m = lastOffset + (offset - lastOffset >>> 1); if (compare(value, array[start + m]) > 0) lastOffset = m + 1; else offset = m; } return offset; } function gallopRight(value, array, start, length, hint, compare) { var lastOffset = 0; var maxOffset = 0; var offset = 1; if (compare(value, array[start + hint]) < 0) { maxOffset = hint + 1; while (offset < maxOffset && compare(value, array[start + hint - offset]) < 0) { lastOffset = offset; offset = (offset << 1) + 1; if (offset <= 0) offset = maxOffset; } if (offset > maxOffset) offset = maxOffset; var tmp = lastOffset; lastOffset = hint - offset; offset = hint - tmp; } else { maxOffset = length - hint; while (offset < maxOffset && compare(value, array[start + hint + offset]) >= 0) { lastOffset = offset; offset = (offset << 1) + 1; if (offset <= 0) offset = maxOffset; } if (offset > maxOffset) offset = maxOffset; lastOffset += hint; offset += hint; } lastOffset++; while (lastOffset < offset) { var m = lastOffset + (offset - lastOffset >>> 1); if (compare(value, array[start + m]) < 0) offset = m; else lastOffset = m + 1; } return offset; } function TimSort(array, compare) { var minGallop = DEFAULT_MIN_GALLOPING; var runStart; var runLength; var stackSize = 0; var tmp = []; runStart = []; runLength = []; function pushRun(_runStart, _runLength) { runStart[stackSize] = _runStart; runLength[stackSize] = _runLength; stackSize += 1; } function mergeRuns() { while (stackSize > 1) { var n = stackSize - 2; if (n >= 1 && runLength[n - 1] <= runLength[n] + runLength[n + 1] || n >= 2 && runLength[n - 2] <= runLength[n] + runLength[n - 1]) { if (runLength[n - 1] < runLength[n + 1]) n--; } else if (runLength[n] > runLength[n + 1]) break; mergeAt(n); } } function forceMergeRuns() { while (stackSize > 1) { var n = stackSize - 2; if (n > 0 && runLength[n - 1] < runLength[n + 1]) n--; mergeAt(n); } } function mergeAt(i) { var start1 = runStart[i]; var length1 = runLength[i]; var start2 = runStart[i + 1]; var length2 = runLength[i + 1]; runLength[i] = length1 + length2; if (i === stackSize - 3) { runStart[i + 1] = runStart[i + 2]; runLength[i + 1] = runLength[i + 2]; } stackSize--; var k = gallopRight(array[start2], array, start1, length1, 0, compare); start1 += k; length1 -= k; if (length1 === 0) return; length2 = gallopLeft(array[start1 + length1 - 1], array, start2, length2, length2 - 1, compare); if (length2 === 0) return; if (length1 <= length2) mergeLow(start1, length1, start2, length2); else mergeHigh(start1, length1, start2, length2); } function mergeLow(start1, length1, start2, length2) { var i = 0; for (i = 0; i < length1; i++) tmp[i] = array[start1 + i]; var cursor1 = 0; var cursor2 = start2; var dest = start1; array[dest++] = array[cursor2++]; if (--length2 === 0) { for (i = 0; i < length1; i++) array[dest + i] = tmp[cursor1 + i]; return; } if (length1 === 1) { for (i = 0; i < length2; i++) array[dest + i] = array[cursor2 + i]; array[dest + length2] = tmp[cursor1]; return; } var _minGallop = minGallop; var count1; var count2; var exit; while (1) { count1 = 0; count2 = 0; exit = false; do if (compare(array[cursor2], tmp[cursor1]) < 0) { array[dest++] = array[cursor2++]; count2++; count1 = 0; if (--length2 === 0) { exit = true; break; } } else { array[dest++] = tmp[cursor1++]; count1++; count2 = 0; if (--length1 === 1) { exit = true; break; } } while ((count1 | count2) < _minGallop); if (exit) break; do { count1 = gallopRight(array[cursor2], tmp, cursor1, length1, 0, compare); if (count1 !== 0) { for (i = 0; i < count1; i++) array[dest + i] = tmp[cursor1 + i]; dest += count1; cursor1 += count1; length1 -= count1; if (length1 <= 1) { exit = true; break; } } array[dest++] = array[cursor2++]; if (--length2 === 0) { exit = true; break; } count2 = gallopLeft(tmp[cursor1], array, cursor2, length2, 0, compare); if (count2 !== 0) { for (i = 0; i < count2; i++) array[dest + i] = array[cursor2 + i]; dest += count2; cursor2 += count2; length2 -= count2; if (length2 === 0) { exit = true; break; } } array[dest++] = tmp[cursor1++]; if (--length1 === 1) { exit = true; break; } _minGallop--; } while (count1 >= DEFAULT_MIN_GALLOPING || count2 >= DEFAULT_MIN_GALLOPING); if (exit) break; if (_minGallop < 0) _minGallop = 0; _minGallop += 2; } minGallop = _minGallop; minGallop < 1 && (minGallop = 1); if (length1 === 1) { for (i = 0; i < length2; i++) array[dest + i] = array[cursor2 + i]; array[dest + length2] = tmp[cursor1]; } else if (length1 === 0) throw new Error(); else for (i = 0; i < length1; i++) array[dest + i] = tmp[cursor1 + i]; } function mergeHigh(start1, length1, start2, length2) { var i = 0; for (i = 0; i < length2; i++) tmp[i] = array[start2 + i]; var cursor1 = start1 + length1 - 1; var cursor2 = length2 - 1; var dest = start2 + length2 - 1; var customCursor = 0; var customDest = 0; array[dest--] = array[cursor1--]; if (--length1 === 0) { customCursor = dest - (length2 - 1); for (i = 0; i < length2; i++) array[customCursor + i] = tmp[i]; return; } if (length2 === 1) { dest -= length1; cursor1 -= length1; customDest = dest + 1; customCursor = cursor1 + 1; for (i = length1 - 1; i >= 0; i--) array[customDest + i] = array[customCursor + i]; array[dest] = tmp[cursor2]; return; } var _minGallop = minGallop; while (true) { var count1 = 0; var count2 = 0; var exit = false; do if (compare(tmp[cursor2], array[cursor1]) < 0) { array[dest--] = array[cursor1--]; count1++; count2 = 0; if (--length1 === 0) { exit = true; break; } } else { array[dest--] = tmp[cursor2--]; count2++; count1 = 0; if (--length2 === 1) { exit = true; break; } } while ((count1 | count2) < _minGallop); if (exit) break; do { count1 = length1 - gallopRight(tmp[cursor2], array, start1, length1, length1 - 1, compare); if (count1 !== 0) { dest -= count1; cursor1 -= count1; length1 -= count1; customDest = dest + 1; customCursor = cursor1 + 1; for (i = count1 - 1; i >= 0; i--) array[customDest + i] = array[customCursor + i]; if (length1 === 0) { exit = true; break; } } array[dest--] = tmp[cursor2--]; if (--length2 === 1) { exit = true; break; } count2 = length2 - gallopLeft(array[cursor1], tmp, 0, length2, length2 - 1, compare); if (count2 !== 0) { dest -= count2; cursor2 -= count2; length2 -= count2; customDest = dest + 1; customCursor = cursor2 + 1; for (i = 0; i < count2; i++) array[customDest + i] = tmp[customCursor + i]; if (length2 <= 1) { exit = true; break; } } array[dest--] = array[cursor1--]; if (--length1 === 0) { exit = true; break; } _minGallop--; } while (count1 >= DEFAULT_MIN_GALLOPING || count2 >= DEFAULT_MIN_GALLOPING); if (exit) break; if (_minGallop < 0) _minGallop = 0; _minGallop += 2; } minGallop = _minGallop; if (minGallop < 1) minGallop = 1; if (length2 === 1) { dest -= length1; cursor1 -= length1; customDest = dest + 1; customCursor = cursor1 + 1; for (i = length1 - 1; i >= 0; i--) array[customDest + i] = array[customCursor + i]; array[dest] = tmp[cursor2]; } else if (length2 === 0) throw new Error(); else { customCursor = dest - (length2 - 1); for (i = 0; i < length2; i++) array[customCursor + i] = tmp[i]; } } return { mergeRuns, forceMergeRuns, pushRun }; } function sort(array, compare, lo, hi) { if (!lo) lo = 0; if (!hi) hi = array.length; var remaining = hi - lo; if (remaining < 2) return; var runLength = 0; if (remaining < DEFAULT_MIN_MERGE) { runLength = makeAscendingRun(array, lo, hi, compare); binaryInsertionSort(array, lo, hi, lo + runLength, compare); return; } var ts = TimSort(array, compare); var minRun = minRunLength(remaining); do { runLength = makeAscendingRun(array, lo, hi, compare); if (runLength < minRun) { var force = remaining; if (force > minRun) force = minRun; binaryInsertionSort(array, lo, lo + force, lo + runLength, compare); runLength = force; } ts.pushRun(lo, runLength); ts.mergeRuns(); remaining -= runLength; lo += runLength; } while (remaining !== 0); ts.forceMergeRuns(); } //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/Storage.js var invalidZErrorLogged = false; function logInvalidZError() { if (invalidZErrorLogged) return; invalidZErrorLogged = true; console.warn("z / z2 / zlevel of displayable is invalid, which may cause unexpected errors"); } function shapeCompareFunc(a, b) { if (a.zlevel === b.zlevel) { if (a.z === b.z) return a.z2 - b.z2; return a.z - b.z; } return a.zlevel - b.zlevel; } var Storage = function() { function Storage() { this._roots = []; this._displayList = []; this._displayListLen = 0; this.displayableSortFunc = shapeCompareFunc; } Storage.prototype.traverse = function(cb, context) { for (var i = 0; i < this._roots.length; i++) this._roots[i].traverse(cb, context); }; Storage.prototype.getDisplayList = function(update, includeIgnore) { includeIgnore = includeIgnore || false; var displayList = this._displayList; if (update || !displayList.length) this.updateDisplayList(includeIgnore); return displayList; }; Storage.prototype.updateDisplayList = function(includeIgnore) { this._displayListLen = 0; var roots = this._roots; var displayList = this._displayList; for (var i = 0, len = roots.length; i < len; i++) this._updateAndAddDisplayable(roots[i], null, includeIgnore); displayList.length = this._displayListLen; sort(displayList, shapeCompareFunc); }; Storage.prototype._updateAndAddDisplayable = function(el, parentClipPaths, includeIgnore) { if (el.ignore && !includeIgnore) return; el.beforeUpdate(); el.update(); el.afterUpdate(); var userSetClipPath = el.getClipPath(); var parentHasClipPaths = parentClipPaths && parentClipPaths.length; var clipPathIdx = 0; var thisClipPaths = el.__clipPaths; if (!el.ignoreClip && (parentHasClipPaths || userSetClipPath)) { if (!thisClipPaths) thisClipPaths = el.__clipPaths = []; if (parentHasClipPaths) for (var idx = 0; idx < parentClipPaths.length; idx++) thisClipPaths[clipPathIdx++] = parentClipPaths[idx]; var currentClipPath = userSetClipPath; var parentClipPath = el; while (currentClipPath) { currentClipPath.parent = parentClipPath; currentClipPath.updateTransform(); thisClipPaths[clipPathIdx++] = currentClipPath; parentClipPath = currentClipPath; currentClipPath = currentClipPath.getClipPath(); } } if (thisClipPaths) thisClipPaths.length = clipPathIdx; if (el.childrenRef) { var children = el.childrenRef(); for (var i = 0; i < children.length; i++) { var child = children[i]; if (el.__dirty) child.__dirty |= 1; this._updateAndAddDisplayable(child, thisClipPaths, includeIgnore); } el.__dirty = 0; } else { var disp = el; if (isNaN(disp.z)) { logInvalidZError(); disp.z = 0; } if (isNaN(disp.z2)) { logInvalidZError(); disp.z2 = 0; } if (isNaN(disp.zlevel)) { logInvalidZError(); disp.zlevel = 0; } this._displayList[this._displayListLen++] = disp; } var decalEl = el.getDecalElement && el.getDecalElement(); if (decalEl) this._updateAndAddDisplayable(decalEl, thisClipPaths, includeIgnore); var textGuide = el.getTextGuideLine(); if (textGuide) this._updateAndAddDisplayable(textGuide, thisClipPaths, includeIgnore); var textEl = el.getTextContent(); if (textEl) this._updateAndAddDisplayable(textEl, thisClipPaths, includeIgnore); }; Storage.prototype.addRoot = function(el) { if (el.__zr && el.__zr.storage === this) return; this._roots.push(el); }; Storage.prototype.delRoot = function(el) { if (el instanceof Array) { for (var i = 0, l = el.length; i < l; i++) this.delRoot(el[i]); return; } var idx = indexOf(this._roots, el); if (idx >= 0) this._roots.splice(idx, 1); }; Storage.prototype.delAllRoots = function() { this._roots = []; this._displayList = []; this._displayListLen = 0; }; Storage.prototype.getRoots = function() { return this._roots; }; Storage.prototype.dispose = function() { this._displayList = null; this._roots = null; }; return Storage; }(); //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/animation/requestAnimationFrame.js var requestAnimationFrame = env.hasGlobalWindow && (window.requestAnimationFrame && window.requestAnimationFrame.bind(window) || window.msRequestAnimationFrame && window.msRequestAnimationFrame.bind(window) || window.mozRequestAnimationFrame || window.webkitRequestAnimationFrame) || function(func) { return setTimeout(func, 16); }; //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/animation/Animation.js function getTime() { return (/* @__PURE__ */ new Date()).getTime(); } var Animation = function(_super) { __extends(Animation, _super); function Animation(opts) { var _this = _super.call(this) || this; _this._running = false; _this._time = 0; _this._pausedTime = 0; _this._pauseStart = 0; _this._paused = false; opts = opts || {}; _this.stage = opts.stage || {}; return _this; } Animation.prototype.addClip = function(clip) { if (clip.animation) this.removeClip(clip); if (!this._head) this._head = this._tail = clip; else { this._tail.next = clip; clip.prev = this._tail; clip.next = null; this._tail = clip; } clip.animation = this; }; Animation.prototype.addAnimator = function(animator) { animator.animation = this; var clip = animator.getClip(); if (clip) this.addClip(clip); }; Animation.prototype.removeClip = function(clip) { if (!clip.animation) return; var prev = clip.prev; var next = clip.next; if (prev) prev.next = next; else this._head = next; if (next) next.prev = prev; else this._tail = prev; clip.next = clip.prev = clip.animation = null; }; Animation.prototype.removeAnimator = function(animator) { var clip = animator.getClip(); if (clip) this.removeClip(clip); animator.animation = null; }; Animation.prototype.update = function(notTriggerFrameAndStageUpdate) { var time = getTime() - this._pausedTime; var delta = time - this._time; var clip = this._head; while (clip) { var nextClip = clip.next; if (clip.step(time, delta)) { clip.ondestroy(); this.removeClip(clip); clip = nextClip; } else clip = nextClip; } this._time = time; if (!notTriggerFrameAndStageUpdate) { this.trigger("frame", delta); this.stage.update && this.stage.update(); } }; Animation.prototype._startLoop = function() { var self = this; this._running = true; function step() { if (self._running) { requestAnimationFrame(step); !self._paused && self.update(); } } requestAnimationFrame(step); }; Animation.prototype.start = function() { if (this._running) return; this._time = getTime(); this._pausedTime = 0; this._startLoop(); }; Animation.prototype.stop = function() { this._running = false; }; Animation.prototype.pause = function() { if (!this._paused) { this._pauseStart = getTime(); this._paused = true; } }; Animation.prototype.resume = function() { if (this._paused) { this._pausedTime += getTime() - this._pauseStart; this._paused = false; } }; Animation.prototype.clear = function() { var clip = this._head; while (clip) { var nextClip = clip.next; clip.prev = clip.next = clip.animation = null; clip = nextClip; } this._head = this._tail = null; }; Animation.prototype.isFinished = function() { return this._head == null; }; Animation.prototype.animate = function(target, options) { options = options || {}; this.start(); var animator = new Animator(target, options.loop); this.addAnimator(animator); return animator; }; return Animation; }(Eventful); //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/dom/HandlerProxy.js var TOUCH_CLICK_DELAY = 300; var globalEventSupported = env.domSupported; var localNativeListenerNames = (function() { var mouseHandlerNames = [ "click", "dblclick", "mousewheel", "wheel", "mouseout", "mouseup", "mousedown", "mousemove", "contextmenu" ]; var touchHandlerNames = [ "touchstart", "touchend", "touchmove" ]; var pointerEventNameMap = { pointerdown: 1, pointerup: 1, pointermove: 1, pointerout: 1 }; return { mouse: mouseHandlerNames, touch: touchHandlerNames, pointer: map$1(mouseHandlerNames, function(name) { var nm = name.replace("mouse", "pointer"); return pointerEventNameMap.hasOwnProperty(nm) ? nm : name; }) }; })(); var globalNativeListenerNames = { mouse: ["mousemove", "mouseup"], pointer: ["pointermove", "pointerup"] }; var wheelEventSupported = false; function isPointerFromTouch(event) { var pointerType = event.pointerType; return pointerType === "pen" || pointerType === "touch"; } function setTouchTimer(scope) { scope.touching = true; if (scope.touchTimer != null) { clearTimeout(scope.touchTimer); scope.touchTimer = null; } scope.touchTimer = setTimeout(function() { scope.touching = false; scope.touchTimer = null; }, 700); } function markTouch(event) { event && (event.zrByTouch = true); } function normalizeGlobalEvent(instance, event) { return normalizeEvent(instance.dom, new FakeGlobalEvent(instance, event), true); } function isLocalEl(instance, el) { var elTmp = el; var isLocal = false; while (elTmp && elTmp.nodeType !== 9 && !(isLocal = elTmp.domBelongToZr || elTmp !== el && elTmp === instance.painterRoot)) elTmp = elTmp.parentNode; return isLocal; } var FakeGlobalEvent = function() { function FakeGlobalEvent(instance, event) { this.stopPropagation = noop; this.stopImmediatePropagation = noop; this.preventDefault = noop; this.type = event.type; this.target = this.currentTarget = instance.dom; this.pointerType = event.pointerType; this.clientX = event.clientX; this.clientY = event.clientY; } return FakeGlobalEvent; }(); var localDOMHandlers = { mousedown: function(event) { event = normalizeEvent(this.dom, event); this.__mayPointerCapture = [event.zrX, event.zrY]; this.trigger("mousedown", event); }, mousemove: function(event) { event = normalizeEvent(this.dom, event); var downPoint = this.__mayPointerCapture; if (downPoint && (event.zrX !== downPoint[0] || event.zrY !== downPoint[1])) this.__togglePointerCapture(true); this.trigger("mousemove", event); }, mouseup: function(event) { event = normalizeEvent(this.dom, event); this.__togglePointerCapture(false); this.trigger("mouseup", event); }, mouseout: function(event) { event = normalizeEvent(this.dom, event); var element = event.toElement || event.relatedTarget; if (!isLocalEl(this, element)) { if (this.__pointerCapturing) event.zrEventControl = "no_globalout"; this.trigger("mouseout", event); } }, wheel: function(event) { wheelEventSupported = true; event = normalizeEvent(this.dom, event); this.trigger("mousewheel", event); }, mousewheel: function(event) { if (wheelEventSupported) return; event = normalizeEvent(this.dom, event); this.trigger("mousewheel", event); }, touchstart: function(event) { event = normalizeEvent(this.dom, event); markTouch(event); this.__lastTouchMoment = /* @__PURE__ */ new Date(); this.handler.processGesture(event, "start"); localDOMHandlers.mousemove.call(this, event); localDOMHandlers.mousedown.call(this, event); }, touchmove: function(event) { event = normalizeEvent(this.dom, event); markTouch(event); this.handler.processGesture(event, "change"); localDOMHandlers.mousemove.call(this, event); }, touchend: function(event) { event = normalizeEvent(this.dom, event); markTouch(event); this.handler.processGesture(event, "end"); localDOMHandlers.mouseup.call(this, event); if (+/* @__PURE__ */ new Date() - +this.__lastTouchMoment < TOUCH_CLICK_DELAY) localDOMHandlers.click.call(this, event); }, pointerdown: function(event) { localDOMHandlers.mousedown.call(this, event); }, pointermove: function(event) { if (!isPointerFromTouch(event)) localDOMHandlers.mousemove.call(this, event); }, pointerup: function(event) { localDOMHandlers.mouseup.call(this, event); }, pointerout: function(event) { if (!isPointerFromTouch(event)) localDOMHandlers.mouseout.call(this, event); } }; each$4([ "click", "dblclick", "contextmenu" ], function(name) { localDOMHandlers[name] = function(event) { event = normalizeEvent(this.dom, event); this.trigger(name, event); }; }); var globalDOMHandlers = { pointermove: function(event) { if (!isPointerFromTouch(event)) globalDOMHandlers.mousemove.call(this, event); }, pointerup: function(event) { globalDOMHandlers.mouseup.call(this, event); }, mousemove: function(event) { this.trigger("mousemove", event); }, mouseup: function(event) { var pointerCaptureReleasing = this.__pointerCapturing; this.__togglePointerCapture(false); this.trigger("mouseup", event); if (pointerCaptureReleasing) { event.zrEventControl = "only_globalout"; this.trigger("mouseout", event); } } }; function mountLocalDOMEventListeners(instance, scope) { var domHandlers = scope.domHandlers; if (env.pointerEventsSupported) each$4(localNativeListenerNames.pointer, function(nativeEventName) { mountSingleDOMEventListener(scope, nativeEventName, function(event) { domHandlers[nativeEventName].call(instance, event); }); }); else { if (env.touchEventsSupported) each$4(localNativeListenerNames.touch, function(nativeEventName) { mountSingleDOMEventListener(scope, nativeEventName, function(event) { domHandlers[nativeEventName].call(instance, event); setTouchTimer(scope); }); }); each$4(localNativeListenerNames.mouse, function(nativeEventName) { mountSingleDOMEventListener(scope, nativeEventName, function(event) { event = getNativeEvent(event); if (!scope.touching) domHandlers[nativeEventName].call(instance, event); }); }); } } function mountGlobalDOMEventListeners(instance, scope) { if (env.pointerEventsSupported) each$4(globalNativeListenerNames.pointer, mount); else if (!env.touchEventsSupported) each$4(globalNativeListenerNames.mouse, mount); function mount(nativeEventName) { function nativeEventListener(event) { event = getNativeEvent(event); if (!isLocalEl(instance, event.target)) { event = normalizeGlobalEvent(instance, event); scope.domHandlers[nativeEventName].call(instance, event); } } mountSingleDOMEventListener(scope, nativeEventName, nativeEventListener, { capture: true }); } } function mountSingleDOMEventListener(scope, nativeEventName, listener, opt) { scope.mounted[nativeEventName] = listener; scope.listenerOpts[nativeEventName] = opt; addEventListener(scope.domTarget, nativeEventName, listener, opt); } function unmountDOMEventListeners(scope) { var mounted = scope.mounted; for (var nativeEventName in mounted) if (mounted.hasOwnProperty(nativeEventName)) removeEventListener(scope.domTarget, nativeEventName, mounted[nativeEventName], scope.listenerOpts[nativeEventName]); scope.mounted = {}; } var DOMHandlerScope = function() { function DOMHandlerScope(domTarget, domHandlers) { this.mounted = {}; this.listenerOpts = {}; this.touching = false; this.domTarget = domTarget; this.domHandlers = domHandlers; } return DOMHandlerScope; }(); var HandlerDomProxy = function(_super) { __extends(HandlerDomProxy, _super); function HandlerDomProxy(dom, painterRoot) { var _this = _super.call(this) || this; _this.__pointerCapturing = false; _this.dom = dom; _this.painterRoot = painterRoot; _this._localHandlerScope = new DOMHandlerScope(dom, localDOMHandlers); if (globalEventSupported) _this._globalHandlerScope = new DOMHandlerScope(document, globalDOMHandlers); mountLocalDOMEventListeners(_this, _this._localHandlerScope); return _this; } HandlerDomProxy.prototype.dispose = function() { unmountDOMEventListeners(this._localHandlerScope); if (globalEventSupported) unmountDOMEventListeners(this._globalHandlerScope); }; HandlerDomProxy.prototype.setCursor = function(cursorStyle) { this.dom.style && (this.dom.style.cursor = cursorStyle || "default"); }; HandlerDomProxy.prototype.__togglePointerCapture = function(isPointerCapturing) { this.__mayPointerCapture = null; if (globalEventSupported && +this.__pointerCapturing ^ +isPointerCapturing) { this.__pointerCapturing = isPointerCapturing; var globalHandlerScope = this._globalHandlerScope; isPointerCapturing ? mountGlobalDOMEventListeners(this, globalHandlerScope) : unmountDOMEventListeners(globalHandlerScope); } }; return HandlerDomProxy; }(Eventful); //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/zrender.js /*! * ZRender, a high performance 2d drawing library. * * Copyright (c) 2013, Baidu Inc. * All rights reserved. * * LICENSE * https://github.com/ecomfe/zrender/blob/master/LICENSE */ var painterCtors = {}; var instances$1 = {}; function delInstance(id) { delete instances$1[id]; } function isDarkMode(backgroundColor) { if (!backgroundColor) return false; if (typeof backgroundColor === "string") return lum(backgroundColor, 1) < DARK_MODE_THRESHOLD; else if (backgroundColor.colorStops) { var colorStops = backgroundColor.colorStops; var totalLum = 0; var len = colorStops.length; for (var i = 0; i < len; i++) totalLum += lum(colorStops[i].color, 1); totalLum /= len; return totalLum < DARK_MODE_THRESHOLD; } return false; } var ZRender = function() { function ZRender(id, dom, opts) { var _this = this; this._sleepAfterStill = 10; this._stillFrameAccum = 0; this._needsRefresh = true; this._needsRefreshHover = false; this._darkMode = false; opts = opts || {}; this.dom = dom; this.id = id; var storage = new Storage(); var rendererType = opts.renderer || "canvas"; if (!painterCtors[rendererType]) rendererType = keys(painterCtors)[0]; opts.useDirtyRect = opts.useDirtyRect == null ? false : opts.useDirtyRect; var painter = new painterCtors[rendererType](dom, storage, opts, id); var ssrMode = opts.ssr || painter.ssrOnly; this.storage = storage; this.painter = painter; var handlerProxy = !env.node && !env.worker && !ssrMode ? new HandlerDomProxy(painter.getViewportRoot(), painter.root) : null; var useCoarsePointer = opts.useCoarsePointer; var usePointerSize = useCoarsePointer == null || useCoarsePointer === "auto" ? env.touchEventsSupported : !!useCoarsePointer; var defaultPointerSize = 44; var pointerSize; if (usePointerSize) pointerSize = retrieve2(opts.pointerSize, defaultPointerSize); this.handler = new Handler(storage, painter, handlerProxy, painter.root, pointerSize); this.animation = new Animation({ stage: { update: ssrMode ? null : function() { return _this._flush(false); } } }); if (!ssrMode) this.animation.start(); } ZRender.prototype.add = function(el) { if (this._disposed || !el) return; this.storage.addRoot(el); el.addSelfToZr(this); this.refresh(); }; ZRender.prototype.remove = function(el) { if (this._disposed || !el) return; this.storage.delRoot(el); el.removeSelfFromZr(this); this.refresh(); }; ZRender.prototype.configLayer = function(zLevel, config) { if (this._disposed) return; if (this.painter.configLayer) this.painter.configLayer(zLevel, config); this.refresh(); }; ZRender.prototype.setBackgroundColor = function(backgroundColor) { if (this._disposed) return; if (this.painter.setBackgroundColor) this.painter.setBackgroundColor(backgroundColor); this.refresh(); this._backgroundColor = backgroundColor; this._darkMode = isDarkMode(backgroundColor); }; ZRender.prototype.getBackgroundColor = function() { return this._backgroundColor; }; ZRender.prototype.setDarkMode = function(darkMode) { this._darkMode = darkMode; }; ZRender.prototype.isDarkMode = function() { return this._darkMode; }; ZRender.prototype.refreshImmediately = function(noAnimationUpdate) { if (this._disposed) return; this._refresh({ animUpdate: !noAnimationUpdate, refresh: true, refreshHover: false }); }; ZRender.prototype._refresh = function(opt) { if (opt.animUpdate) this.animation.update(true); this._needsRefresh = this._needsRefreshHover = false; this.painter.refresh({ refresh: opt.refresh, refreshHover: opt.refreshHover }); this._needsRefresh = this._needsRefreshHover = false; }; ZRender.prototype.refresh = function() { if (this._disposed) return; this._needsRefresh = true; this.animation.start(); }; ZRender.prototype.flush = function() { if (this._disposed) return; this._flush(true); }; ZRender.prototype._flush = function(animationUpdate) { var triggerRendered; var start = getTime(); var needsRefresh = this._needsRefresh; var needsRefreshHover = this._needsRefreshHover; if (needsRefresh || needsRefreshHover) { triggerRendered = true; this._refresh({ animUpdate: animationUpdate, refresh: needsRefresh, refreshHover: needsRefreshHover }); } var end = getTime(); if (triggerRendered) { this._stillFrameAccum = 0; this.trigger("rendered", { elapsedTime: end - start }); } else if (this._sleepAfterStill > 0) { this._stillFrameAccum++; if (this._stillFrameAccum > this._sleepAfterStill) this.animation.stop(); } }; ZRender.prototype.setSleepAfterStill = function(stillFramesCount) { this._sleepAfterStill = stillFramesCount; }; ZRender.prototype.wakeUp = function() { if (this._disposed) return; this.animation.start(); this._stillFrameAccum = 0; }; ZRender.prototype.refreshHover = function() { this._needsRefreshHover = true; }; ZRender.prototype.refreshHoverImmediately = function() { if (this._disposed) return; this._refresh({ animUpdate: false, refresh: false, refreshHover: true }); }; ZRender.prototype.resize = function(opts) { if (this._disposed) return; opts = opts || {}; this.painter.resize(opts.width, opts.height); this.handler.resize(); }; ZRender.prototype.clearAnimation = function() { if (this._disposed) return; this.animation.clear(); }; ZRender.prototype.getWidth = function() { if (this._disposed) return; return this.painter.getWidth(); }; ZRender.prototype.getHeight = function() { if (this._disposed) return; return this.painter.getHeight(); }; ZRender.prototype.setCursorStyle = function(cursorStyle) { if (this._disposed) return; this.handler.setCursorStyle(cursorStyle); }; ZRender.prototype.findHover = function(x, y) { if (this._disposed) return; return this.handler.findHover(x, y); }; ZRender.prototype.on = function(eventName, eventHandler, context) { if (!this._disposed) this.handler.on(eventName, eventHandler, context); return this; }; ZRender.prototype.off = function(eventName, eventHandler) { if (this._disposed) return; this.handler.off(eventName, eventHandler); }; ZRender.prototype.trigger = function(eventName, event) { if (this._disposed) return; this.handler.trigger(eventName, event); }; ZRender.prototype.clear = function() { if (this._disposed) return; var roots = this.storage.getRoots(); for (var i = 0; i < roots.length; i++) if (roots[i] instanceof Group$2) roots[i].removeSelfFromZr(this); this.storage.delAllRoots(); this.painter.clear(); }; ZRender.prototype.dispose = function() { if (this._disposed) return; this.animation.stop(); this.clear(); this.storage.dispose(); this.painter.dispose(); this.handler.dispose(); this.animation = this.storage = this.painter = this.handler = null; this._disposed = true; delInstance(this.id); }; return ZRender; }(); function init$1(dom, opts) { var zr = new ZRender(guid(), dom, opts); instances$1[zr.id] = zr; return zr; } function registerPainter(name, Ctor) { painterCtors[name] = Ctor; } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/model/globalDefault.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var platform = ""; if (typeof navigator !== "undefined") platform = navigator.platform || ""; var decalColor = "rgba(0, 0, 0, 0.2)"; var themeColor = tokens.color.theme[0]; var lightThemeColor = modifyHSL(themeColor, null, null, .9); var globalDefault_default = { darkMode: "auto", colorBy: "series", color: tokens.color.theme, gradientColor: [lightThemeColor, themeColor], aria: { decal: { decals: [ { color: decalColor, dashArrayX: [1, 0], dashArrayY: [2, 5], symbolSize: 1, rotation: Math.PI / 6 }, { color: decalColor, symbol: "circle", dashArrayX: [[8, 8], [ 0, 8, 8, 0 ]], dashArrayY: [6, 0], symbolSize: .8 }, { color: decalColor, dashArrayX: [1, 0], dashArrayY: [4, 3], rotation: -Math.PI / 4 }, { color: decalColor, dashArrayX: [[6, 6], [ 0, 6, 6, 0 ]], dashArrayY: [6, 0] }, { color: decalColor, dashArrayX: [[1, 0], [1, 6]], dashArrayY: [ 1, 0, 6, 0 ], rotation: Math.PI / 4 }, { color: decalColor, symbol: "triangle", dashArrayX: [[9, 9], [ 0, 9, 9, 0 ]], dashArrayY: [7, 2], symbolSize: .75 } ] } }, textStyle: { fontFamily: platform.match(/^Win/) ? "Microsoft YaHei" : "sans-serif", fontSize: 12, fontStyle: "normal", fontWeight: "normal" }, blendMode: null, stateAnimation: { duration: 300, easing: "cubicOut" }, animation: "auto", animationDuration: 1e3, animationDurationUpdate: 500, animationEasing: "cubicInOut", animationEasingUpdate: "cubicInOut", animationThreshold: 2e3, progressiveThreshold: 3e3, progressive: 400, hoverLayerThreshold: 3e3, useUTC: false }; //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/model/internalComponentCreator.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var internalOptionCreatorMap = createHashMap(); function concatInternalOptions(ecModel, mainType, newCmptOptionList) { var internalOptionCreator = internalOptionCreatorMap.get(mainType); if (!internalOptionCreator) return newCmptOptionList; var internalOptions = internalOptionCreator(ecModel); if (!internalOptions) return newCmptOptionList; return newCmptOptionList.concat(internalOptions); } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/model/Global.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ /** * Caution: If the mechanism should be changed some day, these cases * should be considered: * * (1) In `merge option` mode, if using the same option to call `setOption` * many times, the result should be the same (try our best to ensure that). * (2) In `merge option` mode, if a component has no id/name specified, it * will be merged by index, and the result sequence of the components is * consistent to the original sequence. * (3) In `replaceMerge` mode, keep the result sequence of the components is * consistent to the original sequence, even though there might result in "hole". * (4) `reset` feature (in toolbox). Find detailed info in comments about * `mergeOption` in module:echarts/model/OptionManager. */ var reCreateSeriesIndices; var assertSeriesInitialized; var initBase; var OPTION_INNER_KEY = "\0_ec_inner"; var OPTION_INNER_VALUE = 1; var GlobalModel = function(_super) { __extends(GlobalModel, _super); function GlobalModel() { return _super !== null && _super.apply(this, arguments) || this; } GlobalModel.prototype.init = function(option, parentModel, ecModel, theme, locale, optionManager) { theme = theme || {}; this.option = null; this._theme = new Model(theme); this._locale = new Model(locale); this._optionManager = optionManager; }; GlobalModel.prototype.setOption = function(option, opts, optionPreprocessorFuncs) { var innerOpt = normalizeSetOptionInput(opts); this._optionManager.setOption(option, optionPreprocessorFuncs, innerOpt); this._resetOption(null, innerOpt); }; /** * @param type null/undefined: reset all. * 'recreate': force recreate all. * 'timeline': only reset timeline option * 'media': only reset media query option * @return Whether option changed. */ GlobalModel.prototype.resetOption = function(type, opt) { return this._resetOption(type, normalizeSetOptionInput(opt)); }; GlobalModel.prototype._resetOption = function(type, opt) { var optionChanged = false; var optionManager = this._optionManager; if (!type || type === "recreate") { var baseOption = optionManager.mountOption(type === "recreate"); if (!this.option || type === "recreate") initBase(this, baseOption); else { this.restoreData(); this._mergeOption(baseOption, opt); } optionChanged = true; } if (type === "timeline" || type === "media") this.restoreData(); if (!type || type === "recreate" || type === "timeline") { var timelineOption = optionManager.getTimelineOption(this); if (timelineOption) { optionChanged = true; this._mergeOption(timelineOption, opt); } } if (!type || type === "recreate" || type === "media") { var mediaOptions = optionManager.getMediaOption(this); if (mediaOptions.length) each$4(mediaOptions, function(mediaOption) { optionChanged = true; this._mergeOption(mediaOption, opt); }, this); } return optionChanged; }; GlobalModel.prototype.mergeOption = function(option) { this._mergeOption(option, null); }; GlobalModel.prototype._mergeOption = function(newOption, opt) { var option = this.option; var componentsMap = this._componentsMap; var componentsCount = this._componentsCount; var newCmptTypes = []; var newCmptTypeMap = createHashMap(); var replaceMergeMainTypeMap = opt && opt.replaceMergeMainTypeMap; resetSourceDefaulter(this); each$4(newOption, function(componentOption, mainType) { if (componentOption == null) return; if (!ComponentModel.hasClass(mainType)) option[mainType] = option[mainType] == null ? clone$2(componentOption) : merge(option[mainType], componentOption, true); else if (mainType) { newCmptTypes.push(mainType); newCmptTypeMap.set(mainType, true); } }); if (replaceMergeMainTypeMap) replaceMergeMainTypeMap.each(function(val, mainTypeInReplaceMerge) { if (ComponentModel.hasClass(mainTypeInReplaceMerge) && !newCmptTypeMap.get(mainTypeInReplaceMerge)) { newCmptTypes.push(mainTypeInReplaceMerge); newCmptTypeMap.set(mainTypeInReplaceMerge, true); } }); ComponentModel.topologicalTravel(newCmptTypes, ComponentModel.getAllClassMainTypes(), visitComponent, this); function visitComponent(mainType) { var newCmptOptionList = concatInternalOptions(this, mainType, normalizeToArray(newOption[mainType])); var oldCmptList = componentsMap.get(mainType); var mappingResult = mappingToExists(oldCmptList, newCmptOptionList, !oldCmptList ? "replaceAll" : replaceMergeMainTypeMap && replaceMergeMainTypeMap.get(mainType) ? "replaceMerge" : "normalMerge"); setComponentTypeToKeyInfo(mappingResult, mainType, ComponentModel); option[mainType] = null; componentsMap.set(mainType, null); componentsCount.set(mainType, 0); var optionsByMainType = []; var cmptsByMainType = []; var cmptsCountByMainType = 0; var tooltipExists; each$4(mappingResult, function(resultItem, index) { var componentModel = resultItem.existing; var newCmptOption = resultItem.newOption; if (!newCmptOption) { if (componentModel) { componentModel.mergeOption({}, this); componentModel.optionUpdated({}, false); } } else { var isSeriesType = mainType === "series"; var ComponentModelClass = ComponentModel.getClass(mainType, resultItem.keyInfo.subType, !isSeriesType); if (!ComponentModelClass) return; if (mainType === "tooltip") { if (tooltipExists) return; tooltipExists = true; } if (componentModel && componentModel.constructor === ComponentModelClass) { componentModel.name = resultItem.keyInfo.name; componentModel.mergeOption(newCmptOption, this); componentModel.optionUpdated(newCmptOption, false); } else { var extraOpt = extend({ componentIndex: index }, resultItem.keyInfo); componentModel = new ComponentModelClass(newCmptOption, this, this, extraOpt); extend(componentModel, extraOpt); if (resultItem.brandNew) componentModel.__requireNewView = true; componentModel.init(newCmptOption, this, this); componentModel.optionUpdated(null, true); } } if (componentModel) { optionsByMainType.push(componentModel.option); cmptsByMainType.push(componentModel); cmptsCountByMainType++; } else { optionsByMainType.push(void 0); cmptsByMainType.push(void 0); } }, this); option[mainType] = optionsByMainType; componentsMap.set(mainType, cmptsByMainType); componentsCount.set(mainType, cmptsCountByMainType); if (mainType === "series") reCreateSeriesIndices(this); } if (!this._seriesIndices) reCreateSeriesIndices(this); }; /** * Get option for output (cloned option and inner info removed) */ GlobalModel.prototype.getOption = function() { var option = clone$2(this.option); each$4(option, function(optInMainType, mainType) { if (ComponentModel.hasClass(mainType)) { var opts = normalizeToArray(optInMainType); var realLen = opts.length; var metNonInner = false; for (var i = realLen - 1; i >= 0; i--) if (opts[i] && !isComponentIdInternal(opts[i])) metNonInner = true; else { opts[i] = null; !metNonInner && realLen--; } opts.length = realLen; option[mainType] = opts; } }); delete option[OPTION_INNER_KEY]; return option; }; GlobalModel.prototype.setTheme = function(theme) { this._theme = new Model(theme); this._resetOption("recreate", null); }; GlobalModel.prototype.getTheme = function() { return this._theme; }; GlobalModel.prototype.getLocaleModel = function() { return this._locale; }; GlobalModel.prototype.setUpdatePayload = function(payload) { this._payload = payload; }; GlobalModel.prototype.getUpdatePayload = function() { return this._payload; }; /** * @param idx If not specified, return the first one. */ GlobalModel.prototype.getComponent = function(mainType, idx) { var list = this._componentsMap.get(mainType); if (list) { var cmpt = list[idx || 0]; if (cmpt) return cmpt; else if (idx == null) { for (var i = 0; i < list.length; i++) if (list[i]) return list[i]; } } }; /** * @return Never be null/undefined. */ GlobalModel.prototype.queryComponents = function(condition) { var mainType = condition.mainType; if (!mainType) return []; var index = condition.index; var id = condition.id; var name = condition.name; var cmpts = this._componentsMap.get(mainType); if (!cmpts || !cmpts.length) return []; var result; if (index != null) { result = []; each$4(normalizeToArray(index), function(idx) { cmpts[idx] && result.push(cmpts[idx]); }); } else if (id != null) result = queryByIdOrName("id", id, cmpts); else if (name != null) result = queryByIdOrName("name", name, cmpts); else result = filter(cmpts, function(cmpt) { return !!cmpt; }); return filterBySubType(result, condition); }; /** * The interface is different from queryComponents, * which is convenient for inner usage. * * @usage * let result = findComponents( * {mainType: 'dataZoom', query: {dataZoomId: 'abc'}} * ); * let result = findComponents( * {mainType: 'series', subType: 'pie', query: {seriesName: 'uio'}} * ); * let result = findComponents( * {mainType: 'series', * filter: function (model, index) {...}} * ); * // result like [component0, component1, ...] */ GlobalModel.prototype.findComponents = function(condition) { var query = condition.query; var mainType = condition.mainType; var queryCond = getQueryCond(query); return doFilter(filterBySubType(queryCond ? this.queryComponents(queryCond) : filter(this._componentsMap.get(mainType), function(cmpt) { return !!cmpt; }), condition)); function getQueryCond(q) { var indexAttr = mainType + "Index"; var idAttr = mainType + "Id"; var nameAttr = mainType + "Name"; return q && (q[indexAttr] != null || q[idAttr] != null || q[nameAttr] != null) ? { mainType, index: q[indexAttr], id: q[idAttr], name: q[nameAttr] } : null; } function doFilter(res) { return condition.filter ? filter(res, condition.filter) : res; } }; GlobalModel.prototype.eachComponent = function(mainType, cb, context) { var componentsMap = this._componentsMap; if (isFunction(mainType)) { var ctxForAll_1 = cb; var cbForAll_1 = mainType; componentsMap.each(function(cmpts, componentType) { for (var i = 0; cmpts && i < cmpts.length; i++) { var cmpt = cmpts[i]; cmpt && cbForAll_1.call(ctxForAll_1, componentType, cmpt, cmpt.componentIndex); } }); } else { var cmpts = isString(mainType) ? componentsMap.get(mainType) : isObject$2(mainType) ? this.findComponents(mainType) : null; for (var i = 0; cmpts && i < cmpts.length; i++) { var cmpt = cmpts[i]; cmpt && cb.call(context, cmpt, cmpt.componentIndex); } } }; /** * Get series list before filtered by name. */ GlobalModel.prototype.getSeriesByName = function(name) { var nameStr = convertOptionIdName(name, null); return filter(this._componentsMap.get("series"), function(oneSeries) { return !!oneSeries && nameStr != null && oneSeries.name === nameStr; }); }; /** * Get series list before filtered by index. */ GlobalModel.prototype.getSeriesByIndex = function(seriesIndex) { return this._componentsMap.get("series")[seriesIndex]; }; /** * Get series list before filtered by type. * FIXME: rename to getRawSeriesByType? */ GlobalModel.prototype.getSeriesByType = function(subType) { return filter(this._componentsMap.get("series"), function(oneSeries) { return !!oneSeries && oneSeries.subType === subType; }); }; /** * Get all series before filtered. */ GlobalModel.prototype.getSeries = function() { return filter(this._componentsMap.get("series"), function(oneSeries) { return !!oneSeries; }); }; /** * Count series before filtered. */ GlobalModel.prototype.getSeriesCount = function() { return this._componentsCount.get("series"); }; /** * After filtering, series may be different * from raw series. */ GlobalModel.prototype.eachSeries = function(cb, context) { assertSeriesInitialized(this); each$4(this._seriesIndices, function(rawSeriesIndex) { var series = this._componentsMap.get("series")[rawSeriesIndex]; cb.call(context, series, rawSeriesIndex); }, this); }; /** * Iterate raw series before filtered. */ GlobalModel.prototype.eachRawSeries = function(cb, context) { each$4(this._componentsMap.get("series"), function(series) { series && cb.call(context, series, series.componentIndex); }); }; /** * After filtering, series may be different. * from raw series. */ GlobalModel.prototype.eachSeriesByType = function(subType, cb, context) { assertSeriesInitialized(this); each$4(this._seriesIndices, function(rawSeriesIndex) { var series = this._componentsMap.get("series")[rawSeriesIndex]; if (series.subType === subType) cb.call(context, series, rawSeriesIndex); }, this); }; /** * Iterate raw series before filtered of given type. */ GlobalModel.prototype.eachRawSeriesByType = function(subType, cb, context) { return each$4(this.getSeriesByType(subType), cb, context); }; /** * It means "filtered out". */ GlobalModel.prototype.isSeriesFiltered = function(seriesModel) { assertSeriesInitialized(this); return this._seriesIndicesMap.get(seriesModel.componentIndex) == null; }; GlobalModel.prototype.getCurrentSeriesIndices = function() { return (this._seriesIndices || []).slice(); }; GlobalModel.prototype.filterSeries = function(cb, context) { assertSeriesInitialized(this); var newSeriesIndices = []; each$4(this._seriesIndices, function(seriesRawIdx) { var series = this._componentsMap.get("series")[seriesRawIdx]; cb.call(context, series, seriesRawIdx) && newSeriesIndices.push(seriesRawIdx); }, this); this._seriesIndices = newSeriesIndices; this._seriesIndicesMap = createHashMap(newSeriesIndices); }; GlobalModel.prototype.restoreData = function(payload) { reCreateSeriesIndices(this); var componentsMap = this._componentsMap; var componentTypes = []; componentsMap.each(function(components, componentType) { if (ComponentModel.hasClass(componentType)) componentTypes.push(componentType); }); ComponentModel.topologicalTravel(componentTypes, ComponentModel.getAllClassMainTypes(), function(componentType) { each$4(componentsMap.get(componentType), function(component) { if (component && (componentType !== "series" || !isNotTargetSeries(component, payload))) component.restoreData(); }); }); }; GlobalModel.internalField = function() { reCreateSeriesIndices = function(ecModel) { var seriesIndices = ecModel._seriesIndices = []; each$4(ecModel._componentsMap.get("series"), function(series) { series && seriesIndices.push(series.componentIndex); }); ecModel._seriesIndicesMap = createHashMap(seriesIndices); }; assertSeriesInitialized = function(ecModel) {}; initBase = function(ecModel, baseOption) { ecModel.option = {}; ecModel.option[OPTION_INNER_KEY] = OPTION_INNER_VALUE; ecModel._componentsMap = createHashMap({ series: [] }); ecModel._componentsCount = createHashMap(); var airaOption = baseOption.aria; if (isObject$2(airaOption) && airaOption.enabled == null) airaOption.enabled = true; mergeTheme(baseOption, ecModel._theme.option); merge(baseOption, globalDefault_default, false); ecModel._mergeOption(baseOption, null); }; }(); return GlobalModel; }(Model); function isNotTargetSeries(seriesModel, payload) { if (payload) { var index = payload.seriesIndex; var id = payload.seriesId; var name_1 = payload.seriesName; return index != null && seriesModel.componentIndex !== index || id != null && seriesModel.id !== id || name_1 != null && seriesModel.name !== name_1; } } function mergeTheme(option, theme) { var notMergeColorLayer = option.color && !option.colorLayer; each$4(theme, function(themeItem, name) { if (name === "colorLayer" && notMergeColorLayer || name === "color" && option.color) return; if (!ComponentModel.hasClass(name)) { if (typeof themeItem === "object") option[name] = !option[name] ? clone$2(themeItem) : merge(option[name], themeItem, false); else if (option[name] == null) option[name] = themeItem; } }); } function queryByIdOrName(attr, idOrName, cmpts) { if (isArray(idOrName)) { var keyMap_1 = createHashMap(); each$4(idOrName, function(idOrNameItem) { if (idOrNameItem != null) convertOptionIdName(idOrNameItem, null) != null && keyMap_1.set(idOrNameItem, true); }); return filter(cmpts, function(cmpt) { return cmpt && keyMap_1.get(cmpt[attr]); }); } else { var idName_1 = convertOptionIdName(idOrName, null); return filter(cmpts, function(cmpt) { return cmpt && idName_1 != null && cmpt[attr] === idName_1; }); } } function filterBySubType(components, condition) { return condition.hasOwnProperty("subType") ? filter(components, function(cmpt) { return cmpt && cmpt.subType === condition.subType; }) : components; } function normalizeSetOptionInput(opts) { var replaceMergeMainTypeMap = createHashMap(); opts && each$4(normalizeToArray(opts.replaceMerge), function(mainType) { replaceMergeMainTypeMap.set(mainType, true); }); return { replaceMergeMainTypeMap }; } mixin(GlobalModel, PaletteMixin); //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/model/OptionManager.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var QUERY_REG = /^(min|max)?(.+)$/; /** * TERM EXPLANATIONS: * See `ECOption` and `ECUnitOption` in `src/util/types.ts`. */ var OptionManager = function() { function OptionManager(api) { this._timelineOptions = []; this._mediaList = []; /** * -1, means default. * empty means no media. */ this._currentMediaIndices = []; this._api = api; } OptionManager.prototype.setOption = function(rawOption, optionPreprocessorFuncs, opt) { if (rawOption) { each$4(normalizeToArray(rawOption.series), function(series) { series && series.data && isTypedArray(series.data) && setAsPrimitive(series.data); }); each$4(normalizeToArray(rawOption.dataset), function(dataset) { dataset && dataset.source && isTypedArray(dataset.source) && setAsPrimitive(dataset.source); }); } rawOption = clone$2(rawOption); var optionBackup = this._optionBackup; var newParsedOption = parseRawOption(rawOption, optionPreprocessorFuncs, !optionBackup); this._newBaseOption = newParsedOption.baseOption; if (optionBackup) { if (newParsedOption.timelineOptions.length) optionBackup.timelineOptions = newParsedOption.timelineOptions; if (newParsedOption.mediaList.length) optionBackup.mediaList = newParsedOption.mediaList; if (newParsedOption.mediaDefault) optionBackup.mediaDefault = newParsedOption.mediaDefault; } else this._optionBackup = newParsedOption; }; OptionManager.prototype.mountOption = function(isRecreate) { var optionBackup = this._optionBackup; this._timelineOptions = optionBackup.timelineOptions; this._mediaList = optionBackup.mediaList; this._mediaDefault = optionBackup.mediaDefault; this._currentMediaIndices = []; return clone$2(isRecreate ? optionBackup.baseOption : this._newBaseOption); }; OptionManager.prototype.getTimelineOption = function(ecModel) { var option; var timelineOptions = this._timelineOptions; if (timelineOptions.length) { var timelineModel = ecModel.getComponent("timeline"); if (timelineModel) option = clone$2(timelineOptions[timelineModel.getCurrentIndex()]); } return option; }; OptionManager.prototype.getMediaOption = function(ecModel) { var ecWidth = this._api.getWidth(); var ecHeight = this._api.getHeight(); var mediaList = this._mediaList; var mediaDefault = this._mediaDefault; var indices = []; var result = []; if (!mediaList.length && !mediaDefault) return result; for (var i = 0, len = mediaList.length; i < len; i++) if (applyMediaQuery(mediaList[i].query, ecWidth, ecHeight)) indices.push(i); if (!indices.length && mediaDefault) indices = [-1]; if (indices.length && !indicesEquals(indices, this._currentMediaIndices)) result = map$1(indices, function(index) { return clone$2(index === -1 ? mediaDefault.option : mediaList[index].option); }); this._currentMediaIndices = indices; return result; }; return OptionManager; }(); /** * [RAW_OPTION_PATTERNS] * (Note: "series: []" represents all other props in `ECUnitOption`) * * (1) No prop "baseOption" declared: * Root option is used as "baseOption" (except prop "options" and "media"). * ```js * option = { * series: [], * timeline: {}, * options: [], * }; * option = { * series: [], * media: {}, * }; * option = { * series: [], * timeline: {}, * options: [], * media: {}, * } * ``` * * (2) Prop "baseOption" declared: * If "baseOption" declared, `ECUnitOption` props can only be declared * inside "baseOption" except prop "timeline" (compat ec2). * ```js * option = { * baseOption: { * timeline: {}, * series: [], * }, * options: [] * }; * option = { * baseOption: { * series: [], * }, * media: [] * }; * option = { * baseOption: { * timeline: {}, * series: [], * }, * options: [] * media: [] * }; * option = { * // ec3 compat ec2: allow (only) `timeline` declared * // outside baseOption. Keep this setting for compat. * timeline: {}, * baseOption: { * series: [], * }, * options: [], * media: [] * }; * ``` */ function parseRawOption(rawOption, optionPreprocessorFuncs, isNew) { var mediaList = []; var mediaDefault; var baseOption; var declaredBaseOption = rawOption.baseOption; var timelineOnRoot = rawOption.timeline; var timelineOptionsOnRoot = rawOption.options; var mediaOnRoot = rawOption.media; var hasMedia = !!rawOption.media; var hasTimeline = !!(timelineOptionsOnRoot || timelineOnRoot || declaredBaseOption && declaredBaseOption.timeline); if (declaredBaseOption) { baseOption = declaredBaseOption; if (!baseOption.timeline) baseOption.timeline = timelineOnRoot; } else { if (hasTimeline || hasMedia) rawOption.options = rawOption.media = null; baseOption = rawOption; } if (hasMedia) { if (isArray(mediaOnRoot)) each$4(mediaOnRoot, function(singleMedia) { if (singleMedia && singleMedia.option) { if (singleMedia.query) mediaList.push(singleMedia); else if (!mediaDefault) mediaDefault = singleMedia; } }); } doPreprocess(baseOption); each$4(timelineOptionsOnRoot, function(option) { return doPreprocess(option); }); each$4(mediaList, function(media) { return doPreprocess(media.option); }); function doPreprocess(option) { each$4(optionPreprocessorFuncs, function(preProcess) { preProcess(option, isNew); }); } return { baseOption, timelineOptions: timelineOptionsOnRoot || [], mediaDefault, mediaList }; } /** * @see * Support: width, height, aspectRatio * Can use max or min as prefix. */ function applyMediaQuery(query, ecWidth, ecHeight) { var realMap = { width: ecWidth, height: ecHeight, aspectratio: ecWidth / ecHeight }; var applicable = true; each$4(query, function(value, attr) { var matched = attr.match(QUERY_REG); if (!matched || !matched[1] || !matched[2]) return; var operator = matched[1]; if (!compare(realMap[matched[2].toLowerCase()], value, operator)) applicable = false; }); return applicable; } function compare(real, expect, operator) { if (operator === "min") return real >= expect; else if (operator === "max") return real <= expect; else return real === expect; } function indicesEquals(indices1, indices2) { return indices1.join(",") === indices2.join(","); } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/preprocessor/helper/compatStyle.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var each$2 = each$4; var isObject = isObject$2; var POSSIBLE_STYLES = [ "areaStyle", "lineStyle", "nodeStyle", "linkStyle", "chordStyle", "label", "labelLine" ]; function compatEC2ItemStyle(opt) { var itemStyleOpt = opt && opt.itemStyle; if (!itemStyleOpt) return; for (var i = 0, len = POSSIBLE_STYLES.length; i < len; i++) { var styleName = POSSIBLE_STYLES[i]; var normalItemStyleOpt = itemStyleOpt.normal; var emphasisItemStyleOpt = itemStyleOpt.emphasis; if (normalItemStyleOpt && normalItemStyleOpt[styleName]) { opt[styleName] = opt[styleName] || {}; if (!opt[styleName].normal) opt[styleName].normal = normalItemStyleOpt[styleName]; else merge(opt[styleName].normal, normalItemStyleOpt[styleName]); normalItemStyleOpt[styleName] = null; } if (emphasisItemStyleOpt && emphasisItemStyleOpt[styleName]) { opt[styleName] = opt[styleName] || {}; if (!opt[styleName].emphasis) opt[styleName].emphasis = emphasisItemStyleOpt[styleName]; else merge(opt[styleName].emphasis, emphasisItemStyleOpt[styleName]); emphasisItemStyleOpt[styleName] = null; } } } function convertNormalEmphasis(opt, optType, useExtend) { if (opt && opt[optType] && (opt[optType].normal || opt[optType].emphasis)) { var normalOpt = opt[optType].normal; var emphasisOpt = opt[optType].emphasis; if (normalOpt) if (useExtend) { opt[optType].normal = opt[optType].emphasis = null; defaults(opt[optType], normalOpt); } else opt[optType] = normalOpt; if (emphasisOpt) { opt.emphasis = opt.emphasis || {}; opt.emphasis[optType] = emphasisOpt; if (emphasisOpt.focus) opt.emphasis.focus = emphasisOpt.focus; if (emphasisOpt.blurScope) opt.emphasis.blurScope = emphasisOpt.blurScope; } } } function removeEC3NormalStatus(opt) { convertNormalEmphasis(opt, "itemStyle"); convertNormalEmphasis(opt, "lineStyle"); convertNormalEmphasis(opt, "areaStyle"); convertNormalEmphasis(opt, "label"); convertNormalEmphasis(opt, "labelLine"); convertNormalEmphasis(opt, "upperLabel"); convertNormalEmphasis(opt, "edgeLabel"); } function compatTextStyle(opt, propName) { var labelOptSingle = isObject(opt) && opt[propName]; var textStyle = isObject(labelOptSingle) && labelOptSingle.textStyle; if (textStyle) for (var i = 0, len = TEXT_STYLE_OPTIONS.length; i < len; i++) { var textPropName = TEXT_STYLE_OPTIONS[i]; if (textStyle.hasOwnProperty(textPropName)) labelOptSingle[textPropName] = textStyle[textPropName]; } } function compatEC3CommonStyles(opt) { if (opt) { removeEC3NormalStatus(opt); compatTextStyle(opt, "label"); opt.emphasis && compatTextStyle(opt.emphasis, "label"); } } function processSeries(seriesOpt) { if (!isObject(seriesOpt)) return; compatEC2ItemStyle(seriesOpt); removeEC3NormalStatus(seriesOpt); compatTextStyle(seriesOpt, "label"); compatTextStyle(seriesOpt, "upperLabel"); compatTextStyle(seriesOpt, "edgeLabel"); if (seriesOpt.emphasis) { compatTextStyle(seriesOpt.emphasis, "label"); compatTextStyle(seriesOpt.emphasis, "upperLabel"); compatTextStyle(seriesOpt.emphasis, "edgeLabel"); } var markPoint = seriesOpt.markPoint; if (markPoint) { compatEC2ItemStyle(markPoint); compatEC3CommonStyles(markPoint); } var markLine = seriesOpt.markLine; if (markLine) { compatEC2ItemStyle(markLine); compatEC3CommonStyles(markLine); } var markArea = seriesOpt.markArea; if (markArea) compatEC3CommonStyles(markArea); var data = seriesOpt.data; if (seriesOpt.type === "graph") { data = data || seriesOpt.nodes; var edgeData = seriesOpt.links || seriesOpt.edges; if (edgeData && !isTypedArray(edgeData)) for (var i = 0; i < edgeData.length; i++) compatEC3CommonStyles(edgeData[i]); each$4(seriesOpt.categories, function(opt) { removeEC3NormalStatus(opt); }); } if (data && !isTypedArray(data)) for (var i = 0; i < data.length; i++) compatEC3CommonStyles(data[i]); markPoint = seriesOpt.markPoint; if (markPoint && markPoint.data) { var mpData = markPoint.data; for (var i = 0; i < mpData.length; i++) compatEC3CommonStyles(mpData[i]); } markLine = seriesOpt.markLine; if (markLine && markLine.data) { var mlData = markLine.data; for (var i = 0; i < mlData.length; i++) if (isArray(mlData[i])) { compatEC3CommonStyles(mlData[i][0]); compatEC3CommonStyles(mlData[i][1]); } else compatEC3CommonStyles(mlData[i]); } if (seriesOpt.type === "gauge") { compatTextStyle(seriesOpt, "axisLabel"); compatTextStyle(seriesOpt, "title"); compatTextStyle(seriesOpt, "detail"); } else if (seriesOpt.type === "treemap") { convertNormalEmphasis(seriesOpt.breadcrumb, "itemStyle"); each$4(seriesOpt.levels, function(opt) { removeEC3NormalStatus(opt); }); } else if (seriesOpt.type === "tree") removeEC3NormalStatus(seriesOpt.leaves); } function toArr(o) { return isArray(o) ? o : o ? [o] : []; } function toObj(o) { return (isArray(o) ? o[0] : o) || {}; } function globalCompatStyle(option, isTheme) { each$2(toArr(option.series), function(seriesOpt) { isObject(seriesOpt) && processSeries(seriesOpt); }); var axes = [ "xAxis", "yAxis", "radiusAxis", "angleAxis", "singleAxis", "parallelAxis", "radar" ]; isTheme && axes.push("valueAxis", "categoryAxis", "logAxis", "timeAxis"); each$2(axes, function(axisName) { each$2(toArr(option[axisName]), function(axisOpt) { if (axisOpt) { compatTextStyle(axisOpt, "axisLabel"); compatTextStyle(axisOpt.axisPointer, "label"); } }); }); each$2(toArr(option.parallel), function(parallelOpt) { var parallelAxisDefault = parallelOpt && parallelOpt.parallelAxisDefault; compatTextStyle(parallelAxisDefault, "axisLabel"); compatTextStyle(parallelAxisDefault && parallelAxisDefault.axisPointer, "label"); }); each$2(toArr(option.calendar), function(calendarOpt) { convertNormalEmphasis(calendarOpt, "itemStyle"); compatTextStyle(calendarOpt, "dayLabel"); compatTextStyle(calendarOpt, "monthLabel"); compatTextStyle(calendarOpt, "yearLabel"); }); each$2(toArr(option.radar), function(radarOpt) { compatTextStyle(radarOpt, "name"); if (radarOpt.name && radarOpt.axisName == null) { radarOpt.axisName = radarOpt.name; delete radarOpt.name; } if (radarOpt.nameGap != null && radarOpt.axisNameGap == null) { radarOpt.axisNameGap = radarOpt.nameGap; delete radarOpt.nameGap; } }); each$2(toArr(option.geo), function(geoOpt) { if (isObject(geoOpt)) { compatEC3CommonStyles(geoOpt); each$2(toArr(geoOpt.regions), function(regionObj) { compatEC3CommonStyles(regionObj); }); } }); each$2(toArr(option.timeline), function(timelineOpt) { compatEC3CommonStyles(timelineOpt); convertNormalEmphasis(timelineOpt, "label"); convertNormalEmphasis(timelineOpt, "itemStyle"); convertNormalEmphasis(timelineOpt, "controlStyle", true); var data = timelineOpt.data; isArray(data) && each$4(data, function(item) { if (isObject$2(item)) { convertNormalEmphasis(item, "label"); convertNormalEmphasis(item, "itemStyle"); } }); }); each$2(toArr(option.toolbox), function(toolboxOpt) { convertNormalEmphasis(toolboxOpt, "iconStyle"); each$2(toolboxOpt.feature, function(featureOpt) { convertNormalEmphasis(featureOpt, "iconStyle"); }); }); compatTextStyle(toObj(option.axisPointer), "label"); compatTextStyle(toObj(option.tooltip).axisPointer, "label"); } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/preprocessor/backwardCompat.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ function get(opt, path) { var pathArr = path.split(","); var obj = opt; for (var i = 0; i < pathArr.length; i++) { obj = obj && obj[pathArr[i]]; if (obj == null) break; } return obj; } function set(opt, path, val, overwrite) { var pathArr = path.split(","); var obj = opt; var key; var i = 0; for (; i < pathArr.length - 1; i++) { key = pathArr[i]; if (obj[key] == null) obj[key] = {}; obj = obj[key]; } if (overwrite || obj[pathArr[i]] == null) obj[pathArr[i]] = val; } function compatLayoutProperties(option) { option && each$4(LAYOUT_PROPERTIES, function(prop) { if (prop[0] in option && !(prop[1] in option)) option[prop[1]] = option[prop[0]]; }); } var LAYOUT_PROPERTIES = [ ["x", "left"], ["y", "top"], ["x2", "right"], ["y2", "bottom"] ]; var COMPATITABLE_COMPONENTS = [ "grid", "geo", "parallel", "legend", "toolbox", "title", "visualMap", "dataZoom", "timeline" ]; var BAR_ITEM_STYLE_MAP = [ ["borderRadius", "barBorderRadius"], ["borderColor", "barBorderColor"], ["borderWidth", "barBorderWidth"] ]; function compatBarItemStyle(option) { var itemStyle = option && option.itemStyle; if (itemStyle) for (var i = 0; i < BAR_ITEM_STYLE_MAP.length; i++) { var oldName = BAR_ITEM_STYLE_MAP[i][1]; var newName = BAR_ITEM_STYLE_MAP[i][0]; if (itemStyle[oldName] != null) itemStyle[newName] = itemStyle[oldName]; } } function compatPieLabel(option) { if (!option) return; if (option.alignTo === "edge" && option.margin != null && option.edgeDistance == null) option.edgeDistance = option.margin; } function compatSunburstState(option) { if (!option) return; if (option.downplay && !option.blur) option.blur = option.downplay; } function compatGraphFocus(option) { if (!option) return; if (option.focusNodeAdjacency != null) { option.emphasis = option.emphasis || {}; if (option.emphasis.focus == null) option.emphasis.focus = "adjacency"; } } function traverseTree(data, cb) { if (data) for (var i = 0; i < data.length; i++) { cb(data[i]); data[i] && traverseTree(data[i].children, cb); } } function globalBackwardCompat(option, isTheme) { globalCompatStyle(option, isTheme); option.series = normalizeToArray(option.series); each$4(option.series, function(seriesOpt) { if (!isObject$2(seriesOpt)) return; var seriesType = seriesOpt.type; if (seriesType === "line") { if (seriesOpt.clipOverflow != null) seriesOpt.clip = seriesOpt.clipOverflow; } else if (seriesType === "pie" || seriesType === "gauge") { if (seriesOpt.clockWise != null) seriesOpt.clockwise = seriesOpt.clockWise; compatPieLabel(seriesOpt.label); var data = seriesOpt.data; if (data && !isTypedArray(data)) for (var i = 0; i < data.length; i++) compatPieLabel(data[i]); if (seriesOpt.hoverOffset != null) { seriesOpt.emphasis = seriesOpt.emphasis || {}; if (seriesOpt.emphasis.scaleSize = null) seriesOpt.emphasis.scaleSize = seriesOpt.hoverOffset; } } else if (seriesType === "gauge") { var pointerColor = get(seriesOpt, "pointer.color"); pointerColor != null && set(seriesOpt, "itemStyle.color", pointerColor); } else if (seriesType === "bar") { compatBarItemStyle(seriesOpt); compatBarItemStyle(seriesOpt.backgroundStyle); compatBarItemStyle(seriesOpt.emphasis); var data = seriesOpt.data; if (data && !isTypedArray(data)) { for (var i = 0; i < data.length; i++) if (typeof data[i] === "object") { compatBarItemStyle(data[i]); compatBarItemStyle(data[i] && data[i].emphasis); } } } else if (seriesType === "sunburst") { var highlightPolicy = seriesOpt.highlightPolicy; if (highlightPolicy) { seriesOpt.emphasis = seriesOpt.emphasis || {}; if (!seriesOpt.emphasis.focus) seriesOpt.emphasis.focus = highlightPolicy; } compatSunburstState(seriesOpt); traverseTree(seriesOpt.data, compatSunburstState); } else if (seriesType === "graph" || seriesType === "sankey") compatGraphFocus(seriesOpt); else if (seriesType === "map") { if (seriesOpt.mapType && !seriesOpt.map) seriesOpt.map = seriesOpt.mapType; if (seriesOpt.mapLocation) defaults(seriesOpt, seriesOpt.mapLocation); } if (seriesOpt.hoverAnimation != null) { seriesOpt.emphasis = seriesOpt.emphasis || {}; if (seriesOpt.emphasis && seriesOpt.emphasis.scale == null) seriesOpt.emphasis.scale = seriesOpt.hoverAnimation; } compatLayoutProperties(seriesOpt); }); if (option.dataRange) option.visualMap = option.dataRange; each$4(COMPATITABLE_COMPONENTS, function(componentName) { var options = option[componentName]; if (options) { if (!isArray(options)) options = [options]; each$4(options, function(option) { compatLayoutProperties(option); }); } }); } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/processor/dataStack.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var dataStackStageHandler = createSimpleOverallStageHandler2(dataStack); function dataStack(ecModel) { var stackInfoMap = createHashMap(); ecModel.eachSeries(function(seriesModel) { var stack = seriesModel.get("stack"); if (stack) { var stackInfoList = stackInfoMap.get(stack) || stackInfoMap.set(stack, []); var data = seriesModel.getData(); var stackInfo = { stackResultDimension: data.getCalculationInfo("stackResultDimension"), stackedOverDimension: data.getCalculationInfo("stackedOverDimension"), stackedDimension: data.getCalculationInfo("stackedDimension"), stackedByDimension: data.getCalculationInfo("stackedByDimension"), isStackedByIndex: data.getCalculationInfo("isStackedByIndex"), data, seriesModel }; if (!stackInfo.stackedDimension || !(stackInfo.isStackedByIndex || stackInfo.stackedByDimension)) return; stackInfoList.push(stackInfo); } }); stackInfoMap.each(function(stackInfoList) { if (stackInfoList.length === 0) return; if ((stackInfoList[0].seriesModel.get("stackOrder") || "seriesAsc") === "seriesDesc") stackInfoList.reverse(); each$4(stackInfoList, function(stackInfo, index) { stackInfo.data.setCalculationInfo("stackedOnSeries", index > 0 ? stackInfoList[index - 1].seriesModel : null); }); calculateStack(stackInfoList); }); } function calculateStack(stackInfoList) { each$4(stackInfoList, function(targetStackInfo, idxInStack) { var resultVal = []; var resultNaN = [NaN, NaN]; var dims = [targetStackInfo.stackResultDimension, targetStackInfo.stackedOverDimension]; var targetData = targetStackInfo.data; var isStackedByIndex = targetStackInfo.isStackedByIndex; var stackStrategy = targetStackInfo.seriesModel.get("stackStrategy") || "samesign"; targetData.modify(dims, function(v0, v1, dataIndex) { var sum = targetData.get(targetStackInfo.stackedDimension, dataIndex); if (isNaN(sum)) return resultNaN; var byValue; var stackedDataRawIndex; if (isStackedByIndex) stackedDataRawIndex = targetData.getRawIndex(dataIndex); else byValue = targetData.get(targetStackInfo.stackedByDimension, dataIndex); var stackedOver = NaN; for (var j = idxInStack - 1; j >= 0; j--) { var stackInfo = stackInfoList[j]; if (!isStackedByIndex) stackedDataRawIndex = stackInfo.data.rawIndexOf(stackInfo.stackedByDimension, byValue); if (stackedDataRawIndex >= 0) { var val = stackInfo.data.getByRawIndex(stackInfo.stackResultDimension, stackedDataRawIndex); if (stackStrategy === "all" || stackStrategy === "positive" && val > 0 || stackStrategy === "negative" && val < 0 || stackStrategy === "samesign" && sum >= 0 && val > 0 || stackStrategy === "samesign" && sum <= 0 && val < 0) { sum = addSafe(sum, val); stackedOver = val; break; } } } resultVal[0] = sum; resultVal[1] = stackedOver; return resultVal; }); }); } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/view/Component.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var ComponentView = function() { function ComponentView() { this.group = new Group$2(); this.uid = getUID("viewComponent"); } ComponentView.prototype.init = function(ecModel, api) {}; ComponentView.prototype.render = function(model, ecModel, api, payload) {}; ComponentView.prototype.dispose = function(ecModel, api) {}; ComponentView.prototype.updateView = function(model, ecModel, api, payload) {}; ComponentView.prototype.updateLayout = function(model, ecModel, api, payload) {}; ComponentView.prototype.updateVisual = function(model, ecModel, api, payload) {}; /** * Hook for toggle blur target series. * Can be used in marker for blur or leave blur the markers */ ComponentView.prototype.toggleBlurSeries = function(seriesModels, isBlur, ecModel) {}; /** * Traverse the new rendered elements. * * It will traverse the new added element in progressive rendering. * And traverse all in normal rendering. */ ComponentView.prototype.eachRendered = function(cb) { var group = this.group; if (group) group.traverse(cb); }; return ComponentView; }(); enableClassExtend(ComponentView); enableClassManagement(ComponentView); //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/visual/style.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var inner$4 = makeInner(); var defaultStyleMappers = { itemStyle: makeStyleMapper(ITEM_STYLE_KEY_MAP, true), lineStyle: makeStyleMapper(LINE_STYLE_KEY_MAP, true) }; var defaultColorKey = { lineStyle: "stroke", itemStyle: "fill" }; function getStyleMapper(seriesModel, stylePath) { var styleMapper = seriesModel.visualStyleMapper || defaultStyleMappers[stylePath]; if (!styleMapper) { console.warn("Unknown style type '" + stylePath + "'."); return defaultStyleMappers.itemStyle; } return styleMapper; } function getDefaultColorKey(seriesModel, stylePath) { var colorKey = seriesModel.visualDrawType || defaultColorKey[stylePath]; if (!colorKey) { console.warn("Unknown style type '" + stylePath + "'."); return "fill"; } return colorKey; } var seriesStyleTask = { createOnAllSeries: true, performRawSeries: true, reset: function(seriesModel, ecModel) { var data = seriesModel.getData(); var stylePath = seriesModel.visualStyleAccessPath || "itemStyle"; var styleModel = seriesModel.getModel(stylePath); var globalStyle = getStyleMapper(seriesModel, stylePath)(styleModel); var decalOption = styleModel.getShallow("decal"); if (decalOption) { data.setVisual("decal", decalOption); decalOption.dirty = true; } var colorKey = getDefaultColorKey(seriesModel, stylePath); var color = globalStyle[colorKey]; var colorCallback = isFunction(color) ? color : null; var hasAutoColor = globalStyle.fill === "auto" || globalStyle.stroke === "auto"; if (!globalStyle[colorKey] || colorCallback || hasAutoColor) { var colorPalette = seriesModel.getColorFromPalette(seriesModel.name, null, ecModel.getSeriesCount()); if (!globalStyle[colorKey]) { globalStyle[colorKey] = colorPalette; data.setVisual("colorFromPalette", true); } globalStyle.fill = globalStyle.fill === "auto" || isFunction(globalStyle.fill) ? colorPalette : globalStyle.fill; globalStyle.stroke = globalStyle.stroke === "auto" || isFunction(globalStyle.stroke) ? colorPalette : globalStyle.stroke; } data.setVisual("style", globalStyle); data.setVisual("drawType", colorKey); if (!ecModel.isSeriesFiltered(seriesModel) && colorCallback) { data.setVisual("colorFromPalette", false); return { dataEach: function(data, idx) { var dataParams = seriesModel.getDataParams(idx); var itemStyle = extend({}, globalStyle); itemStyle[colorKey] = colorCallback(dataParams); data.setItemVisual(idx, "style", itemStyle); } }; } } }; var sharedModel = new Model(); var dataStyleTask = { createOnAllSeries: true, reset: function(seriesModel, ecModel) { if (seriesModel.ignoreStyleOnData) return; var data = seriesModel.getData(); var stylePath = seriesModel.visualStyleAccessPath || "itemStyle"; var getStyle = getStyleMapper(seriesModel, stylePath); var colorKey = data.getVisual("drawType"); return { dataEach: data.hasItemOption ? function(data, idx) { var rawItem = data.getRawDataItem(idx); if (rawItem && rawItem[stylePath]) { sharedModel.option = rawItem[stylePath]; var style = getStyle(sharedModel); extend(data.ensureUniqueItemVisual(idx, "style"), style); if (sharedModel.option.decal) { data.setItemVisual(idx, "decal", sharedModel.option.decal); sharedModel.option.decal.dirty = true; } if (colorKey in style) data.setItemVisual(idx, "colorFromPalette", false); } } : null }; } }; var dataColorPaletteTask = { performRawSeries: true, overallReset: function(ecModel) { var paletteScopeGroupByType = createHashMap(); ecModel.eachSeries(function(seriesModel) { if (!seriesModel.isColorBySeries()) { var key = seriesModel.type + "-" + seriesModel.getColorBy(); inner$4(seriesModel).scope = paletteScopeGroupByType.get(key) || paletteScopeGroupByType.set(key, {}); } }); ecModel.eachSeries(function(seriesModel) { if (seriesModel.isColorBySeries()) return; var dataAll = seriesModel.getRawData(); var idxMap = {}; var data = seriesModel.getData(); var colorScope = inner$4(seriesModel).scope; var colorKey = getDefaultColorKey(seriesModel, seriesModel.visualStyleAccessPath || "itemStyle"); data.each(function(idx) { var rawIdx = data.getRawIndex(idx); idxMap[rawIdx] = idx; }); dataAll.each(function(rawIdx) { var idx = idxMap[rawIdx]; if (data.getItemVisual(idx, "colorFromPalette")) { var itemStyle = data.ensureUniqueItemVisual(idx, "style"); var name_1 = dataAll.getName(rawIdx) || rawIdx + ""; var dataCount = dataAll.count(); itemStyle[colorKey] = seriesModel.getColorFromPalette(name_1, colorScope, dataCount); } }); }); } }; //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/loading/default.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var PI = Math.PI; /** * @param {module:echarts/ExtensionAPI} api * @param {Object} [opts] * @param {string} [opts.text] * @param {string} [opts.color] * @param {string} [opts.textColor] * @return {module:zrender/Element} */ function defaultLoading(api, opts) { opts = opts || {}; defaults(opts, { text: "loading", textColor: tokens.color.primary, fontSize: 12, fontWeight: "normal", fontStyle: "normal", fontFamily: "sans-serif", maskColor: "rgba(255,255,255,0.8)", showSpinner: true, color: tokens.color.theme[0], spinnerRadius: 10, lineWidth: 5, zlevel: 0 }); var group = new Group$2(); var mask = new Rect({ style: { fill: opts.maskColor }, zlevel: opts.zlevel, z: 1e4 }); group.add(mask); var textContent = new ZRText({ style: { text: opts.text, fill: opts.textColor, fontSize: opts.fontSize, fontWeight: opts.fontWeight, fontStyle: opts.fontStyle, fontFamily: opts.fontFamily }, zlevel: opts.zlevel, z: 10001 }); var labelRect = new Rect({ style: { fill: "none" }, textContent, textConfig: { position: "right", distance: 10 }, zlevel: opts.zlevel, z: 10001 }); group.add(labelRect); var arc; if (opts.showSpinner) { arc = new Arc({ shape: { startAngle: -PI / 2, endAngle: -PI / 2 + .1, r: opts.spinnerRadius }, style: { stroke: opts.color, lineCap: "round", lineWidth: opts.lineWidth }, zlevel: opts.zlevel, z: 10001 }); arc.animateShape(true).when(1e3, { endAngle: PI * 3 / 2 }).start("circularInOut"); arc.animateShape(true).when(1e3, { startAngle: PI * 3 / 2 }).delay(300).start("circularInOut"); group.add(arc); } group.resize = function() { var textWidth = textContent.getBoundingRect().width; var r = opts.showSpinner ? opts.spinnerRadius : 0; var cx = (api.getWidth() - r * 2 - (opts.showSpinner && textWidth ? 10 : 0) - textWidth) / 2 - (opts.showSpinner && textWidth ? 0 : 5 + textWidth / 2) + (opts.showSpinner ? 0 : textWidth / 2) + (textWidth ? 0 : r); var cy = api.getHeight() / 2; opts.showSpinner && arc.setShape({ cx, cy }); labelRect.setShape({ x: cx - r, y: cy - r, width: r * 2, height: r * 2 }); mask.setShape({ x: 0, y: 0, width: api.getWidth(), height: api.getHeight() }); }; group.resize(); return group; } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/core/Scheduler.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var Scheduler = function() { function Scheduler(ecInstance, api, dataProcessorHandlers, visualHandlers) { this._stageTaskMap = createHashMap(); this.ecInstance = ecInstance; this.api = api; dataProcessorHandlers = this._dataProcessorHandlers = dataProcessorHandlers.slice(); visualHandlers = this._visualHandlers = visualHandlers.slice(); this._allHandlers = dataProcessorHandlers.concat(visualHandlers); } Scheduler.prototype.restoreData = function(ecModel, payload) { ecModel.restoreData(payload); this._stageTaskMap.each(function(taskRecord) { var overallTask = taskRecord.overallTask; overallTask && overallTask.dirty(); }); }; Scheduler.prototype.getPerformArgs = function(task, isBlock) { if (!task.__pipeline) return; var pipeline = this._pipelineMap.get(task.__pipeline.id); var pCtx = pipeline.context; var step = !isBlock && pipeline.progressiveEnabled && (!pCtx || pCtx.progressiveRender) && task.__idxInPipeline > pipeline.blockIndex ? pipeline.step : null; var modDataCount = pCtx && pCtx.modDataCount; return { step, modBy: modDataCount != null ? Math.ceil(modDataCount / step) : null, modDataCount }; }; Scheduler.prototype.getPipeline = function(pipelineId) { return this._pipelineMap.get(pipelineId); }; /** * Current, progressive rendering starts from visual and layout. * Always detect render mode in the same stage, avoiding that incorrect * detection caused by data filtering. * Caution: * `updateStreamModes` use `seriesModel.getData()`. */ Scheduler.prototype.updateStreamModes = function(seriesModel, view) { var pipeline = this._pipelineMap.get(seriesModel.uid); seriesModel.pipelineContext = pipeline.context = seriesModel.__preparePipelineContext ? seriesModel.__preparePipelineContext(view, pipeline) : preparePipelineContext(seriesModel, view, pipeline); }; Scheduler.prototype.restorePipelines = function(zr, ecModel) { var scheduler = this; var pipelineMap = scheduler._pipelineMap = createHashMap(); ecModel.eachSeries(function(seriesModel) { var progressive = zr.painter.type === "canvas" && seriesModel.getProgressive(); var pipelineId = seriesModel.uid; pipelineMap.set(pipelineId, { id: pipelineId, head: null, tail: null, threshold: seriesModel.getProgressiveThreshold(), progressiveEnabled: progressive && !(seriesModel.preventIncremental && seriesModel.preventIncremental()), blockIndex: -1, step: Math.round(progressive || 700), count: 0 }); scheduler._pipe(seriesModel, seriesModel.dataTask); }); }; Scheduler.prototype.prepareStageTasks = function() { var stageTaskMap = this._stageTaskMap; var ecModel = this.api.getModel(); var api = this.api; each$4(this._allHandlers, function(handler) { var record = stageTaskMap.get(handler.uid) || stageTaskMap.set(handler.uid, {}); assert(!(handler.reset && handler.overallReset), ""); handler.reset && this._createSeriesStageTask(handler, record, ecModel, api); handler.overallReset && this._createOverallStageTask(handler, record, ecModel, api); }, this); }; Scheduler.prototype.prepareView = function(view, model, ecModel, api) { var renderTask = view.renderTask; var context = renderTask.context; context.model = model; context.ecModel = ecModel; context.api = api; renderTask.__block = !view.incrementalPrepareRender; this._pipe(model, renderTask); }; Scheduler.prototype.performDataProcessorTasks = function(ecModel, payload) { this._performStageTasks(this._dataProcessorHandlers, ecModel, payload, { block: true }); }; Scheduler.prototype.performVisualTasks = function(ecModel, payload, opt) { this._performStageTasks(this._visualHandlers, ecModel, payload, opt); }; Scheduler.prototype._performStageTasks = function(stageHandlers, ecModel, payload, opt) { opt = opt || {}; var unfinished = false; var scheduler = this; each$4(stageHandlers, function(stageHandler, idx) { if (opt.visualType && opt.visualType !== stageHandler.visualType) return; var stageHandlerRecord = scheduler._stageTaskMap.get(stageHandler.uid); var seriesTaskMap = stageHandlerRecord.seriesTaskMap; var overallTask = stageHandlerRecord.overallTask; if (overallTask) { var overallNeedDirty_1; var agentStubMap = overallTask.agentStubMap; agentStubMap.each(function(stub) { if (needSetDirty(opt, stub)) { stub.dirty(); overallNeedDirty_1 = true; } }); overallNeedDirty_1 && overallTask.dirty(); scheduler.updatePayload(overallTask, payload); var performArgs_1 = scheduler.getPerformArgs(overallTask, opt.block); agentStubMap.each(function(stub) { stub.perform(performArgs_1); }); if (overallTask.perform(performArgs_1)) unfinished = true; } else if (seriesTaskMap) seriesTaskMap.each(function(task, pipelineId) { if (needSetDirty(opt, task)) task.dirty(); var performArgs = scheduler.getPerformArgs(task, opt.block); performArgs.skip = !stageHandler.performRawSeries && ecModel.isSeriesFiltered(task.context.model); scheduler.updatePayload(task, payload); if (task.perform(performArgs)) unfinished = true; }); }); function needSetDirty(opt, task) { return opt.setDirty && (!opt.dirtyMap || opt.dirtyMap.get(task.__pipeline.id)); } this.unfinished = unfinished || this.unfinished; }; Scheduler.prototype.performSeriesTasks = function(ecModel) { var unfinished; ecModel.eachSeries(function(seriesModel) { unfinished = seriesModel.dataTask.perform() || unfinished; }); this.unfinished = unfinished || this.unfinished; }; Scheduler.prototype.plan = function() { this._pipelineMap.each(function(pipeline) { var task = pipeline.tail; do { if (task.__block) { pipeline.blockIndex = task.__idxInPipeline; break; } task = task.getUpstream(); } while (task); }); }; Scheduler.prototype.updatePayload = function(task, payload) { payload !== "remain" && (task.context.payload = payload); }; Scheduler.prototype._createSeriesStageTask = function(stageHandler, stageHandlerRecord, ecModel, api) { var scheduler = this; var oldSeriesTaskMap = stageHandlerRecord.seriesTaskMap; var newSeriesTaskMap = stageHandlerRecord.seriesTaskMap = createHashMap(); var seriesType = stageHandler.seriesType; var getTargetSeries = stageHandler.getTargetSeries; if (stageHandler.createOnAllSeries) ecModel.eachRawSeries(create); else if (seriesType) ecModel.eachRawSeriesByType(seriesType, create); else if (getTargetSeries) getTargetSeries(ecModel, api).each(create); function create(seriesModel) { var pipelineId = seriesModel.uid; var task = newSeriesTaskMap.set(pipelineId, oldSeriesTaskMap && oldSeriesTaskMap.get(pipelineId) || createTask({ plan: seriesTaskPlan, reset: seriesTaskReset, count: seriesTaskCount })); task.context = { model: seriesModel, ecModel, api, useClearVisual: stageHandler.isVisual && !stageHandler.isLayout, plan: stageHandler.plan, reset: stageHandler.reset, scheduler }; scheduler._pipe(seriesModel, task); } }; Scheduler.prototype._createOverallStageTask = function(stageHandler, stageHandlerRecord, ecModel, api) { var scheduler = this; var overallTask = stageHandlerRecord.overallTask = stageHandlerRecord.overallTask || createTask({ reset: overallTaskReset }); overallTask.context = { ecModel, api, overallReset: stageHandler.overallReset, scheduler }; var oldAgentStubMap = overallTask.agentStubMap; var newAgentStubMap = overallTask.agentStubMap = createHashMap(); var seriesType = stageHandler.seriesType; var getTargetSeries = stageHandler.getTargetSeries; var dirtyOnOverallProgress = stageHandler.dirtyOnOverallProgress; var shouldOverallTaskDirty = false; assert(!stageHandler.createOnAllSeries, ""); if (seriesType) ecModel.eachRawSeriesByType(seriesType, createStub); else if (getTargetSeries) getTargetSeries(ecModel, api).each(createStub); else each$4(ecModel.getSeries(), createStub); function createStub(seriesModel) { var pipelineId = seriesModel.uid; var stub = newAgentStubMap.set(pipelineId, oldAgentStubMap && oldAgentStubMap.get(pipelineId) || (shouldOverallTaskDirty = true, createTask({ reset: stubReset, onDirty: stubOnDirty }))); stub.context = { model: seriesModel, dirtyOnOverallProgress }; stub.agent = overallTask; stub.__block = dirtyOnOverallProgress; scheduler._pipe(seriesModel, stub); } if (shouldOverallTaskDirty) overallTask.dirty(); }; Scheduler.prototype._pipe = function(seriesModel, task) { var pipelineId = seriesModel.uid; var pipeline = this._pipelineMap.get(pipelineId); !pipeline.head && (pipeline.head = task); pipeline.tail && pipeline.tail.pipe(task); pipeline.tail = task; task.__idxInPipeline = pipeline.count++; task.__pipeline = pipeline; }; Scheduler.wrapStageHandler = function(stageHandler, visualType) { if (isFunction(stageHandler)) stageHandler = { overallReset: stageHandler, seriesType: detectSeriseType(stageHandler) }; stageHandler.uid = getUID("stageHandler"); visualType && (stageHandler.visualType = visualType); return stageHandler; }; return Scheduler; }(); function overallTaskReset(context) { context.overallReset(context.ecModel, context.api, context.payload); } function stubReset(context) { return context.dirtyOnOverallProgress && stubProgress; } function stubProgress() { this.agent.dirty(); this.getDownstream().dirty(); } function stubOnDirty() { this.agent && this.agent.dirty(); } function seriesTaskPlan(context) { return context.plan ? context.plan(context.model, context.ecModel, context.api, context.payload) : null; } function seriesTaskReset(context) { if (context.useClearVisual) context.data.clearAllVisual(); var resetDefines = context.resetDefines = normalizeToArray(context.reset(context.model, context.ecModel, context.api, context.payload)); return resetDefines.length > 1 ? map$1(resetDefines, function(v, idx) { return makeSeriesTaskProgress(idx); }) : singleSeriesTaskProgress; } var singleSeriesTaskProgress = makeSeriesTaskProgress(0); function makeSeriesTaskProgress(resetDefineIdx) { return function(params, context) { var data = context.data; var resetDefine = context.resetDefines[resetDefineIdx]; if (resetDefine && resetDefine.dataEach) for (var i = params.start; i < params.end; i++) resetDefine.dataEach(data, i); else if (resetDefine && resetDefine.progress) resetDefine.progress(params, data); }; } function seriesTaskCount(context) { return context.data.count(); } /** * Only some legacy stage handlers (usually in echarts extensions) are pure function. * To ensure that they can work normally, they should work in block mode, that is, * they should not be started util the previous tasks finished. So they cause the * progressive rendering disabled. We try to detect the series type, to narrow down * the block range to only the series type they concern, but not all series. */ function detectSeriseType(legacyFunc) { seriesType = null; try { legacyFunc(ecModelMock, apiMock); } catch (e) {} return seriesType; } var ecModelMock = {}; var apiMock = {}; var seriesType; mockMethods(ecModelMock, GlobalModel); mockMethods(apiMock, ExtensionAPI); ecModelMock.eachSeriesByType = ecModelMock.eachRawSeriesByType = function(type) { seriesType = type; }; ecModelMock.eachComponent = function(cond) { if (cond.mainType === "series" && cond.subType) seriesType = cond.subType; }; function mockMethods(target, Clz) { for (var name_1 in Clz.prototype) target[name_1] = noop; } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/theme/dark.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var color = tokens.darkColor; var backgroundColor = color.background; var axisCommon = function() { return { axisLine: { lineStyle: { color: color.axisLine } }, splitLine: { lineStyle: { color: color.axisSplitLine } }, splitArea: { areaStyle: { color: [color.backgroundTint, color.backgroundTransparent] } }, minorSplitLine: { lineStyle: { color: color.axisMinorSplitLine } }, axisLabel: { color: color.axisLabel }, axisName: {} }; }; var matrixAxis = { label: { color: color.secondary }, itemStyle: { borderColor: color.borderTint }, dividerLineStyle: { color: color.border } }; var theme = { darkMode: true, color: color.theme, backgroundColor, axisPointer: { lineStyle: { color: color.border }, crossStyle: { color: color.borderShade }, label: { color: color.tertiary } }, legend: { textStyle: { color: color.secondary }, pageTextStyle: { color: color.tertiary } }, textStyle: { color: color.secondary }, title: { textStyle: { color: color.primary }, subtextStyle: { color: color.quaternary } }, toolbox: { iconStyle: { borderColor: color.accent50 }, feature: { dataView: { backgroundColor, textColor: color.primary, textareaColor: color.background, textareaBorderColor: color.border, buttonColor: color.accent50, buttonTextColor: color.neutral00 } } }, tooltip: { backgroundColor: color.neutral20, defaultBorderColor: color.border, textStyle: { color: color.tertiary } }, dataZoom: { borderColor: color.accent10, textStyle: { color: color.tertiary }, brushStyle: { color: color.backgroundTint }, handleStyle: { color: color.neutral00, borderColor: color.accent20 }, moveHandleStyle: { color: color.accent40 }, emphasis: { handleStyle: { borderColor: color.accent50 } }, dataBackground: { lineStyle: { color: color.accent30 }, areaStyle: { color: color.accent20 } }, selectedDataBackground: { lineStyle: { color: color.accent50 }, areaStyle: { color: color.accent30 } } }, visualMap: { textStyle: { color: color.secondary }, handleStyle: { borderColor: color.neutral30 } }, timeline: { lineStyle: { color: color.accent10 }, label: { color: color.tertiary }, controlStyle: { color: color.accent30, borderColor: color.accent30 } }, calendar: { itemStyle: { color: color.neutral00, borderColor: color.neutral20 }, dayLabel: { color: color.tertiary }, monthLabel: { color: color.secondary }, yearLabel: { color: color.secondary } }, matrix: { x: matrixAxis, y: matrixAxis, backgroundColor: { borderColor: color.axisLine }, body: { itemStyle: { borderColor: color.borderTint } } }, timeAxis: axisCommon(), logAxis: axisCommon(), valueAxis: axisCommon(), categoryAxis: axisCommon(), line: { symbol: "circle" }, graph: { color: color.theme }, gauge: { title: { color: color.secondary }, axisLine: { lineStyle: { color: [[1, color.neutral05]] } }, axisLabel: { color: color.axisLabel }, detail: { color: color.primary } }, candlestick: { itemStyle: { color: "#f64e56", color0: "#54ea92", borderColor: "#f64e56", borderColor0: "#54ea92" } }, funnel: { itemStyle: { borderColor: color.background } }, radar: function() { var radar = axisCommon(); radar.axisName = { color: color.axisLabel }; radar.axisLine.lineStyle.color = color.neutral20; return radar; }(), treemap: { breadcrumb: { itemStyle: { color: color.neutral20, textStyle: { color: color.secondary } }, emphasis: { itemStyle: { color: color.neutral30 } } } }, sunburst: { itemStyle: { borderColor: color.background } }, map: { itemStyle: { borderColor: color.border, areaColor: color.neutral10 }, label: { color: color.tertiary }, emphasis: { label: { color: color.primary }, itemStyle: { areaColor: color.highlight } }, select: { label: { color: color.primary }, itemStyle: { areaColor: color.highlight } } }, geo: { itemStyle: { borderColor: color.border, areaColor: color.neutral10 }, emphasis: { label: { color: color.primary }, itemStyle: { areaColor: color.highlight } }, select: { label: { color: color.primary }, itemStyle: { color: color.highlight } } } }; theme.categoryAxis.splitLine.show = false; //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/util/ECEventProcessor.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ /** * Usage of query: * `chart.on('click', query, handler);` * The `query` can be: * + The component type query string, only `mainType` or `mainType.subType`, * like: 'xAxis', 'series', 'xAxis.category' or 'series.line'. * + The component query object, like: * `{seriesIndex: 2}`, `{seriesName: 'xx'}`, `{seriesId: 'some'}`, * `{xAxisIndex: 2}`, `{xAxisName: 'xx'}`, `{xAxisId: 'some'}`. * + The data query object, like: * `{dataIndex: 123}`, `{dataType: 'link'}`, `{name: 'some'}`. * + The other query object (cmponent customized query), like: * `{element: 'some'}` (only available in custom series). * * Caveat: If a prop in the `query` object is `null/undefined`, it is the * same as there is no such prop in the `query` object. */ var ECEventProcessor = function() { function ECEventProcessor() {} ECEventProcessor.prototype.normalizeQuery = function(query) { var cptQuery = {}; var dataQuery = {}; var otherQuery = {}; if (isString(query)) { var condCptType = parseClassType(query); cptQuery.mainType = condCptType.main || null; cptQuery.subType = condCptType.sub || null; } else { var suffixes_1 = [ "Index", "Name", "Id" ]; var dataKeys_1 = { name: 1, dataIndex: 1, dataType: 1 }; each$4(query, function(val, key) { var reserved = false; for (var i = 0; i < suffixes_1.length; i++) { var propSuffix = suffixes_1[i]; var suffixPos = key.lastIndexOf(propSuffix); if (suffixPos > 0 && suffixPos === key.length - propSuffix.length) { var mainType = key.slice(0, suffixPos); if (mainType !== "data") { cptQuery.mainType = mainType; cptQuery[propSuffix.toLowerCase()] = val; reserved = true; } } } if (dataKeys_1.hasOwnProperty(key)) { dataQuery[key] = val; reserved = true; } if (!reserved) otherQuery[key] = val; }); } return { cptQuery, dataQuery, otherQuery }; }; ECEventProcessor.prototype.filter = function(eventType, query) { var eventInfo = this.eventInfo; if (!eventInfo) return true; var targetEl = eventInfo.targetEl; var packedEvent = eventInfo.packedEvent; var model = eventInfo.model; var view = eventInfo.view; if (!model || !view) return true; var cptQuery = query.cptQuery; var dataQuery = query.dataQuery; return check(cptQuery, model, "mainType") && check(cptQuery, model, "subType") && check(cptQuery, model, "index", "componentIndex") && check(cptQuery, model, "name") && check(cptQuery, model, "id") && check(dataQuery, packedEvent, "name") && check(dataQuery, packedEvent, "dataIndex") && check(dataQuery, packedEvent, "dataType") && (!view.filterForExposedEvent || view.filterForExposedEvent(eventType, query.otherQuery, targetEl, packedEvent)); function check(query, host, prop, propOnHost) { return query[prop] == null || host[propOnHost || prop] === query[prop]; } }; ECEventProcessor.prototype.afterTrigger = function() { this.eventInfo = null; }; return ECEventProcessor; }(); //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/visual/symbol.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var SYMBOL_PROPS_WITH_CB = [ "symbol", "symbolSize", "symbolRotate", "symbolOffset" ]; var SYMBOL_PROPS = SYMBOL_PROPS_WITH_CB.concat(["symbolKeepAspect"]); var seriesSymbolTask = { createOnAllSeries: true, performRawSeries: true, reset: function(seriesModel, ecModel) { var data = seriesModel.getData(); if (seriesModel.legendIcon) data.setVisual("legendIcon", seriesModel.legendIcon); if (!seriesModel.hasSymbolVisual) return; var symbolOptions = {}; var symbolOptionsCb = {}; var hasCallback = false; for (var i = 0; i < SYMBOL_PROPS_WITH_CB.length; i++) { var symbolPropName = SYMBOL_PROPS_WITH_CB[i]; var val = seriesModel.get(symbolPropName); if (isFunction(val)) { hasCallback = true; symbolOptionsCb[symbolPropName] = val; } else symbolOptions[symbolPropName] = val; } symbolOptions.symbol = symbolOptions.symbol || seriesModel.defaultSymbol; data.setVisual(extend({ legendIcon: seriesModel.legendIcon || symbolOptions.symbol, symbolKeepAspect: seriesModel.get("symbolKeepAspect") }, symbolOptions)); if (ecModel.isSeriesFiltered(seriesModel)) return; var symbolPropsCb = keys(symbolOptionsCb); function dataEach(data, idx) { var rawValue = seriesModel.getRawValue(idx); var params = seriesModel.getDataParams(idx); for (var i = 0; i < symbolPropsCb.length; i++) { var symbolPropName = symbolPropsCb[i]; data.setItemVisual(idx, symbolPropName, symbolOptionsCb[symbolPropName](rawValue, params)); } } return { dataEach: hasCallback ? dataEach : null }; } }; var dataSymbolTask = { createOnAllSeries: true, performRawSeries: true, reset: function(seriesModel, ecModel) { if (!seriesModel.hasSymbolVisual) return; if (ecModel.isSeriesFiltered(seriesModel)) return; var data = seriesModel.getData(); function dataEach(data, idx) { var itemModel = data.getItemModel(idx); for (var i = 0; i < SYMBOL_PROPS.length; i++) { var symbolPropName = SYMBOL_PROPS[i]; var val = itemModel.getShallow(symbolPropName, true); if (val != null) data.setItemVisual(idx, symbolPropName, val); } } return { dataEach: data.hasItemOption ? dataEach : null }; } }; //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/visual/helper.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ function getItemVisualFromData(data, dataIndex, key) { switch (key) { case "color": return data.getItemVisual(dataIndex, "style")[data.getVisual("drawType")]; case "opacity": return data.getItemVisual(dataIndex, "style").opacity; case "symbol": case "symbolSize": case "liftZ": return data.getItemVisual(dataIndex, key); default: } } function getVisualFromData(data, key) { switch (key) { case "color": return data.getVisual("style")[data.getVisual("drawType")]; case "opacity": return data.getVisual("style").opacity; case "symbol": case "symbolSize": case "liftZ": return data.getVisual(key); default: } } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/util/event.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ function findEventDispatcher(target, det, returnFirstMatch) { var found; while (target) { if (det(target)) { found = target; if (returnFirstMatch) break; } target = target.__hostTarget || target.parent; } return found; } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/core/lifecycle.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var lifecycle = new Eventful(); //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/core/impl.js var implsStore = {}; function registerImpl(name, impl) { implsStore[name] = impl; } function getImpl(name) { return implsStore[name]; } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/chart/custom/customSeriesRegister.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var customRenderers = {}; function registerCustomSeries(type, renderItem) { customRenderers[type] = renderItem; } //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/core/WeakMap.js var wmUniqueIndex = Math.round(Math.random() * 9); var supportDefineProperty = typeof Object.defineProperty === "function"; var WeakMap = function() { function WeakMap() { this._id = "__ec_inner_" + wmUniqueIndex++; } WeakMap.prototype.get = function(key) { return this._guard(key)[this._id]; }; WeakMap.prototype.set = function(key, value) { var target = this._guard(key); if (supportDefineProperty) Object.defineProperty(target, this._id, { value, enumerable: false, configurable: true }); else target[this._id] = value; return this; }; WeakMap.prototype["delete"] = function(key) { if (this.has(key)) { delete this._guard(key)[this._id]; return true; } return false; }; WeakMap.prototype.has = function(key) { return !!this._guard(key)[this._id]; }; WeakMap.prototype._guard = function(key) { if (key !== Object(key)) throw TypeError("Value of WeakMap is not a non-null object."); return key; }; return WeakMap; }(); //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/canvas/helper.js function isSafeNum(num) { return isFinite(num); } function createLinearGradient(ctx, obj, rect) { var x = obj.x == null ? 0 : obj.x; var x2 = obj.x2 == null ? 1 : obj.x2; var y = obj.y == null ? 0 : obj.y; var y2 = obj.y2 == null ? 0 : obj.y2; if (!obj.global) { x = x * rect.width + rect.x; x2 = x2 * rect.width + rect.x; y = y * rect.height + rect.y; y2 = y2 * rect.height + rect.y; } x = isSafeNum(x) ? x : 0; x2 = isSafeNum(x2) ? x2 : 1; y = isSafeNum(y) ? y : 0; y2 = isSafeNum(y2) ? y2 : 0; return ctx.createLinearGradient(x, y, x2, y2); } function createRadialGradient(ctx, obj, rect) { var width = rect.width; var height = rect.height; var min = Math.min(width, height); var x = obj.x == null ? .5 : obj.x; var y = obj.y == null ? .5 : obj.y; var r = obj.r == null ? .5 : obj.r; if (!obj.global) { x = x * width + rect.x; y = y * height + rect.y; r = r * min; } x = isSafeNum(x) ? x : .5; y = isSafeNum(y) ? y : .5; r = r >= 0 && isSafeNum(r) ? r : .5; return ctx.createRadialGradient(x, y, 0, x, y, r); } function getCanvasGradient(ctx, obj, rect) { var canvasGradient = obj.type === "radial" ? createRadialGradient(ctx, obj, rect) : createLinearGradient(ctx, obj, rect); var colorStops = obj.colorStops; for (var i = 0; i < colorStops.length; i++) canvasGradient.addColorStop(colorStops[i].offset, colorStops[i].color); return canvasGradient; } function isClipPathChanged(clipPaths, prevClipPaths) { if (clipPaths === prevClipPaths || !clipPaths && !prevClipPaths) return false; if (!clipPaths || !prevClipPaths || clipPaths.length !== prevClipPaths.length) return true; for (var i = 0; i < clipPaths.length; i++) if (clipPaths[i] !== prevClipPaths[i]) return true; return false; } function parseInt10(val) { return parseInt(val, 10); } function getSize(root, whIdx, opts) { var wh = ["width", "height"][whIdx]; var cwh = ["clientWidth", "clientHeight"][whIdx]; var plt = ["paddingLeft", "paddingTop"][whIdx]; var prb = ["paddingRight", "paddingBottom"][whIdx]; if (opts[wh] != null && opts[wh] !== "auto") return parseFloat(opts[wh]); var stl = document.defaultView.getComputedStyle(root); return (root[cwh] || parseInt10(stl[wh]) || parseInt10(root.style[wh])) - (parseInt10(stl[plt]) || 0) - (parseInt10(stl[prb]) || 0) || 0; } //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/canvas/dashStyle.js function normalizeLineDash(lineType, lineWidth) { if (!lineType || lineType === "solid" || !(lineWidth > 0)) return null; return lineType === "dashed" ? [4 * lineWidth, 2 * lineWidth] : lineType === "dotted" ? [lineWidth] : isNumber(lineType) ? [lineType] : isArray(lineType) ? lineType : null; } function getLineDash(el) { var style = el.style; var lineDash = style.lineDash && style.lineWidth > 0 && normalizeLineDash(style.lineDash, style.lineWidth); var lineDashOffset = style.lineDashOffset; if (lineDash) { var lineScale_1 = style.strokeNoScale && el.getLineScale ? el.getLineScale() : 1; if (lineScale_1 && lineScale_1 !== 1) { lineDash = map$1(lineDash, function(rawVal) { return rawVal / lineScale_1; }); lineDashOffset /= lineScale_1; } } return [lineDash, lineDashOffset]; } //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/canvas/graphic.js var pathProxyForDraw = new PathProxy(true); function styleHasStroke(style) { var stroke = style.stroke; return !(stroke == null || stroke === "none" || !(style.lineWidth > 0)); } function isValidStrokeFillStyle(strokeOrFill) { return typeof strokeOrFill === "string" && strokeOrFill !== "none"; } function styleHasFill(style) { var fill = style.fill; return fill != null && fill !== "none"; } function doFillPath(ctx, style) { if (style.fillOpacity != null && style.fillOpacity !== 1) { var originalGlobalAlpha = ctx.globalAlpha; ctx.globalAlpha = style.fillOpacity * style.opacity; ctx.fill(); ctx.globalAlpha = originalGlobalAlpha; } else ctx.fill(); } function doStrokePath(ctx, style) { if (style.strokeOpacity != null && style.strokeOpacity !== 1) { var originalGlobalAlpha = ctx.globalAlpha; ctx.globalAlpha = style.strokeOpacity * style.opacity; ctx.stroke(); ctx.globalAlpha = originalGlobalAlpha; } else ctx.stroke(); } function createCanvasPattern(ctx, pattern, el) { var image = createOrUpdateImage(pattern.image, pattern.__image, el); if (isImageReady(image)) { var canvasPattern = ctx.createPattern(image, pattern.repeat || "repeat"); if (typeof DOMMatrix === "function" && canvasPattern && canvasPattern.setTransform) { var matrix = new DOMMatrix(); matrix.translateSelf(pattern.x || 0, pattern.y || 0); matrix.rotateSelf(0, 0, (pattern.rotation || 0) * RADIAN_TO_DEGREE); matrix.scaleSelf(pattern.scaleX || 1, pattern.scaleY || 1); canvasPattern.setTransform(matrix); } return canvasPattern; } } function brushPath(ctx, el, style, canBatch, scope) { var _a; var hasStroke = styleHasStroke(style); var hasFill = styleHasFill(style); var strokePercent = style.strokePercent; var strokePart = strokePercent < 1; var firstDraw = !el.path; if ((!el.silent || strokePart) && firstDraw) el.createPathProxy(); var path = el.path || pathProxyForDraw; var dirtyFlag = el.__dirty; if (!canBatch) { var fill = style.fill; var stroke = style.stroke; var hasFillGradient = hasFill && !!fill.colorStops; var hasStrokeGradient = hasStroke && !!stroke.colorStops; var hasFillPattern = hasFill && !!fill.image; var hasStrokePattern = hasStroke && !!stroke.image; var fillGradient = void 0; var strokeGradient = void 0; var fillPattern = void 0; var strokePattern = void 0; var rect = void 0; if (hasFillGradient || hasStrokeGradient) rect = el.getBoundingRect(); if (hasFillGradient) { fillGradient = dirtyFlag ? getCanvasGradient(ctx, fill, rect) : el.__canvasFillGradient; el.__canvasFillGradient = fillGradient; } if (hasStrokeGradient) { strokeGradient = dirtyFlag ? getCanvasGradient(ctx, stroke, rect) : el.__canvasStrokeGradient; el.__canvasStrokeGradient = strokeGradient; } if (hasFillPattern) { fillPattern = dirtyFlag || !el.__canvasFillPattern ? createCanvasPattern(ctx, fill, el) : el.__canvasFillPattern; el.__canvasFillPattern = fillPattern; } if (hasStrokePattern) { strokePattern = dirtyFlag || !el.__canvasStrokePattern ? createCanvasPattern(ctx, stroke, el) : el.__canvasStrokePattern; el.__canvasStrokePattern = strokePattern; } if (hasFillGradient) ctx.fillStyle = fillGradient; else if (hasFillPattern) if (fillPattern) ctx.fillStyle = fillPattern; else hasFill = false; if (hasStrokeGradient) ctx.strokeStyle = strokeGradient; else if (hasStrokePattern) if (strokePattern) ctx.strokeStyle = strokePattern; else hasStroke = false; } var scale = el.getGlobalScale(); path.setScale(scale[0], scale[1], el.segmentIgnoreThreshold); var lineDash; var lineDashOffset; if (ctx.setLineDash && style.lineDash) _a = getLineDash(el), lineDash = _a[0], lineDashOffset = _a[1]; var needsRebuild = true; if (firstDraw || dirtyFlag & 4) { path.setDPR(ctx.dpr); if (strokePart) path.setContext(null); else { path.setContext(ctx); needsRebuild = false; } path.reset(); el.buildPath(path, el.shape, canBatch); path.toStatic(); el.pathUpdated(); } if (needsRebuild) path.rebuildPath(ctx, strokePart ? strokePercent : 1); if (lineDash) { ctx.setLineDash(lineDash); ctx.lineDashOffset = lineDashOffset; } if (!canBatch) if (style.strokeFirst) { if (hasStroke) doStrokePath(ctx, style); if (hasFill) doFillPath(ctx, style); } else { if (hasFill) doFillPath(ctx, style); if (hasStroke) doStrokePath(ctx, style); } else { scope.batchFill = hasFill; scope.batchStroke = hasStroke; } if (lineDash) ctx.setLineDash([]); } function brushImage(ctx, el, style) { var image = el.__image = createOrUpdateImage(style.image, el.__image, el, el.onload); if (!image || !isImageReady(image)) return; var x = style.x || 0; var y = style.y || 0; var width = el.getWidth(); var height = el.getHeight(); var aspect = image.width / image.height; if (width == null && height != null) width = height * aspect; else if (height == null && width != null) height = width / aspect; else if (width == null && height == null) { width = image.width; height = image.height; } if (style.sWidth && style.sHeight) { var sx = style.sx || 0; var sy = style.sy || 0; ctx.drawImage(image, sx, sy, style.sWidth, style.sHeight, x, y, width, height); } else if (style.sx && style.sy) { var sx = style.sx; var sy = style.sy; var sWidth = width - sx; var sHeight = height - sy; ctx.drawImage(image, sx, sy, sWidth, sHeight, x, y, width, height); } else ctx.drawImage(image, x, y, width, height); } function brushText(ctx, el, style) { var _a; var text = style.text; text != null && (text += ""); if (text) { ctx.font = style.font || "12px sans-serif"; ctx.textAlign = style.textAlign; ctx.textBaseline = style.textBaseline; var lineDash = void 0; var lineDashOffset = void 0; if (ctx.setLineDash && style.lineDash) _a = getLineDash(el), lineDash = _a[0], lineDashOffset = _a[1]; if (lineDash) { ctx.setLineDash(lineDash); ctx.lineDashOffset = lineDashOffset; } if (style.strokeFirst) { if (styleHasStroke(style)) ctx.strokeText(text, style.x, style.y); if (styleHasFill(style)) ctx.fillText(text, style.x, style.y); } else { if (styleHasFill(style)) ctx.fillText(text, style.x, style.y); if (styleHasStroke(style)) ctx.strokeText(text, style.x, style.y); } if (lineDash) ctx.setLineDash([]); } } var SHADOW_NUMBER_PROPS = [ "shadowBlur", "shadowOffsetX", "shadowOffsetY" ]; var STROKE_PROPS = [ ["lineCap", "butt"], ["lineJoin", "miter"], ["miterLimit", 10] ]; function bindCommonProps(ctx, style, prevStyle, forceSetAll, scope) { var styleChanged = false; if (!forceSetAll) { prevStyle = prevStyle || {}; if (style === prevStyle) return false; } if (forceSetAll || style.opacity !== prevStyle.opacity) { flushPathDrawn(ctx, scope); styleChanged = true; var opacity = Math.max(Math.min(style.opacity, 1), 0); ctx.globalAlpha = isNaN(opacity) ? DEFAULT_COMMON_STYLE.opacity : opacity; } if (forceSetAll || style.blend !== prevStyle.blend) { if (!styleChanged) { flushPathDrawn(ctx, scope); styleChanged = true; } ctx.globalCompositeOperation = style.blend || DEFAULT_COMMON_STYLE.blend; } for (var i = 0; i < SHADOW_NUMBER_PROPS.length; i++) { var propName = SHADOW_NUMBER_PROPS[i]; if (forceSetAll || style[propName] !== prevStyle[propName]) { if (!styleChanged) { flushPathDrawn(ctx, scope); styleChanged = true; } ctx[propName] = ctx.dpr * (style[propName] || 0); } } if (forceSetAll || style.shadowColor !== prevStyle.shadowColor) { if (!styleChanged) { flushPathDrawn(ctx, scope); styleChanged = true; } ctx.shadowColor = style.shadowColor || DEFAULT_COMMON_STYLE.shadowColor; } return styleChanged; } function bindPathAndTextCommonStyle(ctx, el, prevEl, forceSetAll, scope) { var style = el.style; var prevStyle = forceSetAll ? null : prevEl && prevEl.style || {}; if (style === prevStyle) return false; var styleChanged = bindCommonProps(ctx, style, prevStyle, forceSetAll, scope); if (forceSetAll || style.fill !== prevStyle.fill) { if (!styleChanged) { flushPathDrawn(ctx, scope); styleChanged = true; } isValidStrokeFillStyle(style.fill) && (ctx.fillStyle = style.fill); } if (forceSetAll || style.stroke !== prevStyle.stroke) { if (!styleChanged) { flushPathDrawn(ctx, scope); styleChanged = true; } isValidStrokeFillStyle(style.stroke) && (ctx.strokeStyle = style.stroke); } if (forceSetAll || style.opacity !== prevStyle.opacity) { if (!styleChanged) { flushPathDrawn(ctx, scope); styleChanged = true; } ctx.globalAlpha = style.opacity == null ? 1 : style.opacity; } if (el.hasStroke()) { var newLineWidth = style.lineWidth / (style.strokeNoScale && el.getLineScale ? el.getLineScale() : 1); if (ctx.lineWidth !== newLineWidth) { if (!styleChanged) { flushPathDrawn(ctx, scope); styleChanged = true; } ctx.lineWidth = newLineWidth; } } for (var i = 0; i < STROKE_PROPS.length; i++) { var prop = STROKE_PROPS[i]; var propName = prop[0]; if (forceSetAll || style[propName] !== prevStyle[propName]) { if (!styleChanged) { flushPathDrawn(ctx, scope); styleChanged = true; } ctx[propName] = style[propName] || prop[1]; } } return styleChanged; } function bindImageStyle(ctx, el, prevEl, forceSetAll, scope) { return bindCommonProps(ctx, el.style, prevEl && prevEl.style, forceSetAll, scope); } function setContextTransform(ctx, el) { var m = el.transform; var dpr = ctx.dpr || 1; if (m) ctx.setTransform(dpr * m[0], dpr * m[1], dpr * m[2], dpr * m[3], dpr * m[4], dpr * m[5]); else ctx.setTransform(dpr, 0, 0, dpr, 0, 0); } function updateClipStatus(clipPaths, ctx, scope) { var allClipped = false; for (var i = 0; i < clipPaths.length; i++) { var clipPath = clipPaths[i]; allClipped = allClipped || clipPath.isZeroArea(); setContextTransform(ctx, clipPath); ctx.beginPath(); clipPath.buildPath(ctx, clipPath.shape); ctx.clip(); } scope.allClipped = allClipped; } function isTransformChanged(m0, m1) { if (m0 && m1) return m0[0] !== m1[0] || m0[1] !== m1[1] || m0[2] !== m1[2] || m0[3] !== m1[3] || m0[4] !== m1[4] || m0[5] !== m1[5]; else if (!m0 && !m1) return false; return true; } var DRAW_TYPE_PATH = 1; var DRAW_TYPE_IMAGE = 2; var DRAW_TYPE_TEXT = 3; var DRAW_TYPE_INCREMENTAL = 4; function canPathBatch(style) { var hasFill = styleHasFill(style); var hasStroke = styleHasStroke(style); return !(style.lineDash || !(+hasFill ^ +hasStroke) || hasFill && typeof style.fill !== "string" || hasStroke && typeof style.stroke !== "string" || style.strokePercent < 1 || style.strokeOpacity < 1 || style.fillOpacity < 1); } function flushPathDrawn(ctx, scope) { if (scope.batchFill) { scope.batchFill = false; ctx.fill(); } if (scope.batchStroke) { scope.batchStroke = false; ctx.stroke(); } } function brushSingle(ctx, el) { var scope = { inHover: false, viewWidth: 0, viewHeight: 0, beforeBrushParam: {} }; brush(ctx, el, scope); brushLoopFinalize(ctx, scope); } function brush(ctx, el, scope) { var m = el.transform; if (!el.shouldBePainted(scope.viewWidth, scope.viewHeight, false, false)) { el.__dirty &= -2; el.__isRendered = false; return; } var clipPaths = el.__clipPaths; var prevElClipPaths = scope.prevElClipPaths; var style = el.style; var forceSetTransform = false; var forceSetStyle = false; if (!prevElClipPaths || isClipPathChanged(clipPaths, prevElClipPaths)) { if (prevElClipPaths) { flushPathDrawn(ctx, scope); ctx.restore(); forceSetStyle = forceSetTransform = true; scope.prevElClipPaths = null; scope.allClipped = false; scope.prevEl = null; } if (clipPaths && clipPaths.length) { flushPathDrawn(ctx, scope); ctx.save(); updateClipStatus(clipPaths, ctx, scope); forceSetTransform = true; scope.prevElClipPaths = clipPaths; } } if (scope.allClipped) { el.__dirty &= -2; el.__isRendered = false; return; } el.beforeBrush && el.beforeBrush(scope.beforeBrushParam); el.innerBeforeBrush(); var prevEl = scope.prevEl; if (!prevEl) forceSetStyle = forceSetTransform = true; var canBatchPath = el instanceof Path && el.autoBatch && canPathBatch(style); if (forceSetTransform || isTransformChanged(m, prevEl.transform)) { flushPathDrawn(ctx, scope); setContextTransform(ctx, el); } else if (!canBatchPath) flushPathDrawn(ctx, scope); if (el instanceof Path) { if (scope.lastDrawType !== DRAW_TYPE_PATH) { forceSetStyle = true; scope.lastDrawType = DRAW_TYPE_PATH; } bindPathAndTextCommonStyle(ctx, el, prevEl, forceSetStyle, scope); if (!canBatchPath || !scope.batchFill && !scope.batchStroke) ctx.beginPath(); brushPath(ctx, el, style, canBatchPath, scope); } else if (el instanceof TSpan) { if (scope.lastDrawType !== DRAW_TYPE_TEXT) { forceSetStyle = true; scope.lastDrawType = DRAW_TYPE_TEXT; } bindPathAndTextCommonStyle(ctx, el, prevEl, forceSetStyle, scope); brushText(ctx, el, style); } else if (el instanceof ZRImage) { if (scope.lastDrawType !== DRAW_TYPE_IMAGE) { forceSetStyle = true; scope.lastDrawType = DRAW_TYPE_IMAGE; } bindImageStyle(ctx, el, prevEl, forceSetStyle, scope); brushImage(ctx, el, style); } else if (el.getTemporalDisplayables) { if (scope.lastDrawType !== DRAW_TYPE_INCREMENTAL) { forceSetStyle = true; scope.lastDrawType = DRAW_TYPE_INCREMENTAL; } brushIncremental(ctx, el, scope); } el.innerAfterBrush(); if (el.afterBrush) { if (canBatchPath) flushPathDrawn(ctx, scope); el.afterBrush(); } scope.prevEl = el; el.__dirty = 0; el.__isRendered = true; } function brushLoopFinalize(ctx, scope) { flushPathDrawn(ctx, scope); if (scope.prevElClipPaths) ctx.restore(); } function brushIncremental(ctx, el, scope) { var displayables = el.getDisplayables(); var temporalDisplayables = el.getTemporalDisplayables(); ctx.save(); var innerScope = { prevElClipPaths: null, prevEl: null, allClipped: false, viewWidth: scope.viewWidth, viewHeight: scope.viewHeight, inHover: scope.inHover, beforeBrushParam: {} }; var i; var len; for (i = el.getCursor(), len = displayables.length; i < len; i++) { var displayable = displayables[i]; displayable.beforeBrush && displayable.beforeBrush(scope.beforeBrushParam); displayable.innerBeforeBrush(); brush(ctx, displayable, innerScope); displayable.innerAfterBrush(); displayable.afterBrush && displayable.afterBrush(); innerScope.prevEl = displayable; } brushLoopFinalize(ctx, innerScope); for (var i_1 = 0, len_1 = temporalDisplayables.length; i_1 < len_1; i_1++) { var displayable = temporalDisplayables[i_1]; displayable.beforeBrush && displayable.beforeBrush(scope.beforeBrushParam); displayable.innerBeforeBrush(); brush(ctx, displayable, innerScope); displayable.innerAfterBrush(); displayable.afterBrush && displayable.afterBrush(); innerScope.prevEl = displayable; } brushLoopFinalize(ctx, innerScope); el.clearTemporalDisplayables(); el.notClear = true; ctx.restore(); } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/util/decal.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var decalMap = new WeakMap(); var decalCache = new LRU(100); var decalKeys = [ "symbol", "symbolSize", "symbolKeepAspect", "color", "backgroundColor", "dashArrayX", "dashArrayY", "maxTileWidth", "maxTileHeight" ]; /** * Create or update pattern image from decal options * * @param {InnerDecalObject | 'none'} decalObject decal options, 'none' if no decal * @return {Pattern} pattern with generated image, null if no decal */ function createOrUpdatePatternFromDecal(decalObject, api) { if (decalObject === "none") return null; var dpr = api.getDevicePixelRatio(); var zr = api.getZr(); var isSVG = zr.painter.type === "svg"; if (decalObject.dirty) decalMap["delete"](decalObject); var oldPattern = decalMap.get(decalObject); if (oldPattern) return oldPattern; var decalOpt = defaults(decalObject, { symbol: "rect", symbolSize: 1, symbolKeepAspect: true, color: "rgba(0, 0, 0, 0.2)", backgroundColor: null, dashArrayX: 5, dashArrayY: 5, rotation: 0, maxTileWidth: 512, maxTileHeight: 512 }); if (decalOpt.backgroundColor === "none") decalOpt.backgroundColor = null; var pattern = { repeat: "repeat" }; setPatternnSource(pattern); pattern.rotation = decalOpt.rotation; pattern.scaleX = pattern.scaleY = isSVG ? 1 : 1 / dpr; decalMap.set(decalObject, pattern); decalObject.dirty = false; return pattern; function setPatternnSource(pattern) { var keys = [dpr]; var isValidKey = true; for (var i = 0; i < decalKeys.length; ++i) { var value = decalOpt[decalKeys[i]]; if (value != null && !isArray(value) && !isString(value) && !isNumber(value) && typeof value !== "boolean") { isValidKey = false; break; } keys.push(value); } var cacheKey; if (isValidKey) { cacheKey = keys.join(",") + (isSVG ? "-svg" : ""); var cache = decalCache.get(cacheKey); if (cache) isSVG ? pattern.svgElement = cache : pattern.image = cache; } var dashArrayX = normalizeDashArrayX(decalOpt.dashArrayX); var dashArrayY = normalizeDashArrayY(decalOpt.dashArrayY); var symbolArray = normalizeSymbolArray(decalOpt.symbol); var lineBlockLengthsX = getLineBlockLengthX(dashArrayX); var lineBlockLengthY = getLineBlockLengthY(dashArrayY); var canvas = !isSVG && platformApi.createCanvas(); var svgRoot = isSVG && { tag: "g", attrs: {}, key: "dcl", children: [] }; var pSize = getPatternSize(); var ctx; if (canvas) { canvas.width = pSize.width * dpr; canvas.height = pSize.height * dpr; ctx = canvas.getContext("2d"); } brushDecal(); if (isValidKey) decalCache.put(cacheKey, canvas || svgRoot); pattern.image = canvas; pattern.svgElement = svgRoot; pattern.svgWidth = pSize.width; pattern.svgHeight = pSize.height; /** * Get minimum length that can make a repeatable pattern. * * @return {Object} pattern width and height */ function getPatternSize() { /** * For example, if dash is [[3, 2], [2, 1]] for X, it looks like * |--- --- --- --- --- ... * |-- -- -- -- -- -- -- -- ... * |--- --- --- --- --- ... * |-- -- -- -- -- -- -- -- ... * So the minimum length of X is 15, * which is the least common multiple of `3 + 2` and `2 + 1` * |--- --- --- |--- --- ... * |-- -- -- -- -- |-- -- -- ... */ var width = 1; for (var i = 0, xlen = lineBlockLengthsX.length; i < xlen; ++i) width = getLeastCommonMultiple(width, lineBlockLengthsX[i]); var symbolRepeats = 1; for (var i = 0, xlen = symbolArray.length; i < xlen; ++i) symbolRepeats = getLeastCommonMultiple(symbolRepeats, symbolArray[i].length); width *= symbolRepeats; var height = lineBlockLengthY * lineBlockLengthsX.length * symbolArray.length; return { width: Math.max(1, Math.min(width, decalOpt.maxTileWidth)), height: Math.max(1, Math.min(height, decalOpt.maxTileHeight)) }; } function brushDecal() { if (ctx) { ctx.clearRect(0, 0, canvas.width, canvas.height); if (decalOpt.backgroundColor) { ctx.fillStyle = decalOpt.backgroundColor; ctx.fillRect(0, 0, canvas.width, canvas.height); } } var ySum = 0; for (var i = 0; i < dashArrayY.length; ++i) ySum += dashArrayY[i]; if (ySum <= 0) return; var y = -lineBlockLengthY; var yId = 0; var yIdTotal = 0; var xId0 = 0; while (y < pSize.height) { if (yId % 2 === 0) { var symbolYId = yIdTotal / 2 % symbolArray.length; var x = 0; var xId1 = 0; var xId1Total = 0; while (x < pSize.width * 2) { var xSum = 0; for (var i = 0; i < dashArrayX[xId0].length; ++i) xSum += dashArrayX[xId0][i]; if (xSum <= 0) break; if (xId1 % 2 === 0) { var size = (1 - decalOpt.symbolSize) * .5; var left = x + dashArrayX[xId0][xId1] * size; var top_1 = y + dashArrayY[yId] * size; var width = dashArrayX[xId0][xId1] * decalOpt.symbolSize; var height = dashArrayY[yId] * decalOpt.symbolSize; var symbolXId = xId1Total / 2 % symbolArray[symbolYId].length; brushSymbol(left, top_1, width, height, symbolArray[symbolYId][symbolXId]); } x += dashArrayX[xId0][xId1]; ++xId1Total; ++xId1; if (xId1 === dashArrayX[xId0].length) xId1 = 0; } ++xId0; if (xId0 === dashArrayX.length) xId0 = 0; } y += dashArrayY[yId]; ++yIdTotal; ++yId; if (yId === dashArrayY.length) yId = 0; } function brushSymbol(x, y, width, height, symbolType) { var scale = isSVG ? 1 : dpr; var symbol = createSymbol(symbolType, x * scale, y * scale, width * scale, height * scale, decalOpt.color, decalOpt.symbolKeepAspect); if (isSVG) { var symbolVNode = zr.painter.renderOneToVNode(symbol); if (symbolVNode) svgRoot.children.push(symbolVNode); } else brushSingle(ctx, symbol); } } } } /** * Convert symbol array into normalized array * * @param {string | (string | string[])[]} symbol symbol input * @return {string[][]} normolized symbol array */ function normalizeSymbolArray(symbol) { if (!symbol || symbol.length === 0) return [["rect"]]; if (isString(symbol)) return [[symbol]]; var isAllString = true; for (var i = 0; i < symbol.length; ++i) if (!isString(symbol[i])) { isAllString = false; break; } if (isAllString) return normalizeSymbolArray([symbol]); var result = []; for (var i = 0; i < symbol.length; ++i) if (isString(symbol[i])) result.push([symbol[i]]); else result.push(symbol[i]); return result; } /** * Convert dash input into dashArray * * @param {DecalDashArrayX} dash dash input * @return {number[][]} normolized dash array */ function normalizeDashArrayX(dash) { if (!dash || dash.length === 0) return [[0, 0]]; if (isNumber(dash)) { var dashValue = Math.ceil(dash); return [[dashValue, dashValue]]; } /** * [20, 5] should be normalized into [[20, 5]], * while [20, [5, 10]] should be normalized into [[20, 20], [5, 10]] */ var isAllNumber = true; for (var i = 0; i < dash.length; ++i) if (!isNumber(dash[i])) { isAllNumber = false; break; } if (isAllNumber) return normalizeDashArrayX([dash]); var result = []; for (var i = 0; i < dash.length; ++i) if (isNumber(dash[i])) { var dashValue = Math.ceil(dash[i]); result.push([dashValue, dashValue]); } else { var dashValue = map$1(dash[i], function(n) { return Math.ceil(n); }); if (dashValue.length % 2 === 1) result.push(dashValue.concat(dashValue)); else result.push(dashValue); } return result; } /** * Convert dash input into dashArray * * @param {DecalDashArrayY} dash dash input * @return {number[]} normolized dash array */ function normalizeDashArrayY(dash) { if (!dash || typeof dash === "object" && dash.length === 0) return [0, 0]; if (isNumber(dash)) { var dashValue_1 = Math.ceil(dash); return [dashValue_1, dashValue_1]; } var dashValue = map$1(dash, function(n) { return Math.ceil(n); }); return dash.length % 2 ? dashValue.concat(dashValue) : dashValue; } /** * Get block length of each line. A block is the length of dash line and space. * For example, a line with [4, 1] has a dash line of 4 and a space of 1 after * that, so the block length of this line is 5. * * @param {number[][]} dash dash array of X or Y * @return {number[]} block length of each line */ function getLineBlockLengthX(dash) { return map$1(dash, function(line) { return getLineBlockLengthY(line); }); } function getLineBlockLengthY(dash) { var blockLength = 0; for (var i = 0; i < dash.length; ++i) blockLength += dash[i]; if (dash.length % 2 === 1) return blockLength * 2; return blockLength; } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/visual/decal.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var decalVisualStageHandler = createSimpleOverallStageHandler2(decalVisual); function decalVisual(ecModel, api) { ecModel.eachRawSeries(function(seriesModel) { if (ecModel.isSeriesFiltered(seriesModel)) return; var data = seriesModel.getData(); if (data.hasItemVisual()) data.each(function(idx) { var decal = data.getItemVisual(idx, "decal"); if (decal) { var itemStyle = data.ensureUniqueItemVisual(idx, "style"); itemStyle.decal = createOrUpdatePatternFromDecal(decal, api); } }); var decal = data.getVisual("decal"); if (decal) { var style = data.getVisual("style"); style.decal = createOrUpdatePatternFromDecal(decal, api); } }); } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/core/echarts.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var TEST_FRAME_REMAIN_TIME = 1; var PRIORITY_PROCESSOR_SERIES_FILTER = 800; var PRIORITY_PROCESSOR_DATASTACK = 900; var PRIORITY_PROCESSOR_AXIS_STATISTICS = 920; var PRIORITY_PROCESSOR_FILTER = 1e3; var PRIORITY_PROCESSOR_DEFAULT = 2e3; var PRIORITY_PROCESSOR_STATISTICS = 5e3; var PRIORITY_VISUAL_LAYOUT = 1e3; var PRIORITY_VISUAL_PROGRESSIVE_LAYOUT = 1100; var PRIORITY_VISUAL_GLOBAL = 2e3; var PRIORITY_VISUAL_CHART = 3e3; var PRIORITY_VISUAL_COMPONENT = 4e3; var PRIORITY_VISUAL_CHART_DATA_CUSTOM = 4500; var PRIORITY_VISUAL_POST_CHART_LAYOUT = 4600; var PRIORITY_VISUAL_BRUSH = 5e3; var PRIORITY_VISUAL_ARIA = 6e3; var PRIORITY_VISUAL_DECAL = 7e3; var PRIORITY = { PROCESSOR: { SERIES_FILTER: PRIORITY_PROCESSOR_SERIES_FILTER, AXIS_STATISTICS: PRIORITY_PROCESSOR_AXIS_STATISTICS, FILTER: PRIORITY_PROCESSOR_FILTER, STATISTIC: PRIORITY_PROCESSOR_STATISTICS, STATISTICS: PRIORITY_PROCESSOR_STATISTICS }, VISUAL: { LAYOUT: PRIORITY_VISUAL_LAYOUT, PROGRESSIVE_LAYOUT: PRIORITY_VISUAL_PROGRESSIVE_LAYOUT, GLOBAL: PRIORITY_VISUAL_GLOBAL, CHART: PRIORITY_VISUAL_CHART, POST_CHART_LAYOUT: PRIORITY_VISUAL_POST_CHART_LAYOUT, COMPONENT: PRIORITY_VISUAL_COMPONENT, BRUSH: PRIORITY_VISUAL_BRUSH, CHART_ITEM: PRIORITY_VISUAL_CHART_DATA_CUSTOM, ARIA: PRIORITY_VISUAL_ARIA, DECAL: PRIORITY_VISUAL_DECAL } }; /** * @tutorial [EC_CYCLE] (ec updating/rendering cycles): * * - Common Rules: * - Nested entry is not allowed. If triggering a new run of EC_CYCLE during a * unfinished run, the new run will be delayed until the current run finishes * (if triggered by `dispatchAction`), or throw error (if triggered by other API calls). * - All user-visible ec events are triggered outside EC_CYCLE. * (i.e. be triggered after `this[IN_EC_CYCLE_KEY]` becoming `false`). * * - [EC_FULL_UPDATE_CYCLE]: * - It designates a run of a series of processing/updating/rendering. * - It is triggered by: * - `setOption` * - `dispatchAction` * (It is typically internally triggered by user inputs; but can also an explicit API call.) * - `resize` * - The next "animation frame" if in `lazyMode: true`. * - A run of EC_FULL_UPDATE_CYCLE comprises: * - EC_PREPARE (may be absent) * - EC_FULL_UPDATE: * - CoordinateSystem['create'] * - Data processing (may be absent) (see `registerProcessor`) * - CoordinateSystem['update'] (may be absent) * - Visual encoding (may be absent) (see `registerVisual`) * - Layout (may be absent) (see `registerLayout`) * - Rendering (`ComponentView` or `SeriesView`) * * - [EC_PARTIAL_UPDATE_CYCLE]s: * - They are shortcuts for performance. * - They are triggered by: * - `dispatchAction` * - These steps are typically omitted: * - No EC_PREPARE * - No CoordinateSystem['create'] and CoordinateSystem['update'] * - They require careful implementation, otherwise inconsistency may be introduced. * * - [EC_PROGRESSIVE_CYCLE]: * - It also carries out a series of processing/updating/rendering. * - It is performed in each subsequent "animation frame" until finished. * - It can be triggered by EC_FULL_UPDATE_CYCLE, EC_PARTIAL_UPDATE_CYCLE or EC_APPEND_DATA_CYCLE. * - A run of EC_PROGRESSIVE_CYCLE comprises: * - Data processing (may be absent) (see `registerProcessor`) * - Visual encoding (may be absent) (see `registerVisual`) * - Layout (may be absent) (see `registerLayout`) * - Rendering (`ComponentView` or `SeriesView`) * - PENDING: currently all data processing tasks (via `registerProcessor`) run in "block" mode. * (see `performDataProcessorTasks`). * * - [EC_APPEND_DATA_CYCLE]: * - See `appendData`. It is only supported for some special cases. * * - [SERIES_SPECIFIC_CYCLE]s: * - Series may have specific update/render cycles. For example, graph force layout performs * layout and rendering in each "animation frame". * * - Model updating: * - Model can only be modified at the beginning of ec cycles, including only: * - EC_PREPARE (see method `prepare()`) in `setOption` call. * - EC action handlers in `dispatchAction` call. * - `appendData` (a special case, where only data can be modified). * * - The lifetime of CoordinateSystem/Axis/Scale instances: * - They are only re-created per run of EC_FULL_UPDATE_CYCLE. * * - Global caches: see `cycleCache.ts` */ var IN_EC_CYCLE_KEY = "__flagInMainProcess"; var EC_UPDATE_CYCLE_VERSION_KEY = "__mainProcessVersion"; var PENDING_UPDATE = "__pendingUpdate"; var STATUS_NEEDS_UPDATE_KEY = "__needsUpdateStatus"; var ACTION_REG = /^[a-zA-Z0-9_]+$/; var CONNECT_STATUS_KEY = "__connectUpdateStatus"; var CONNECT_STATUS_PENDING = 0; var CONNECT_STATUS_UPDATING = 1; var CONNECT_STATUS_UPDATED = 2; function createRegisterEventWithLowercaseECharts(method) { return function() { var args = []; for (var _i = 0; _i < arguments.length; _i++) args[_i] = arguments[_i]; if (this.isDisposed()) { this.id; return; } return toLowercaseNameAndCallEventful(this, method, args); }; } function createRegisterEventWithLowercaseMessageCenter(method) { return function() { var args = []; for (var _i = 0; _i < arguments.length; _i++) args[_i] = arguments[_i]; return toLowercaseNameAndCallEventful(this, method, args); }; } function toLowercaseNameAndCallEventful(host, method, args) { args[0] = args[0] && args[0].toLowerCase(); return Eventful.prototype[method].apply(host, args); } var MessageCenter = function(_super) { __extends(MessageCenter, _super); function MessageCenter() { return _super !== null && _super.apply(this, arguments) || this; } return MessageCenter; }(Eventful); var messageCenterProto = MessageCenter.prototype; messageCenterProto.on = createRegisterEventWithLowercaseMessageCenter("on"); messageCenterProto.off = createRegisterEventWithLowercaseMessageCenter("off"); var prepare; var prepareView; var updateDirectly; var updateMethods; var doConvertPixel; var updateStreamModes; var doDispatchAction; var flushPendingActions; var triggerUpdatedEvent; var bindRenderedEvent; var bindMouseEvent; var render; var renderComponents; var renderSeries; var createExtensionAPI; var enableConnect; var markStatusToUpdate; var applyChangedStates; var updateECUpdateCycleVersion; var ECharts = function(_super) { __extends(ECharts, _super); function ECharts(dom, theme, opts) { var _this = _super.call(this, new ECEventProcessor()) || this; _this._chartsViews = []; _this._chartsMap = {}; _this._componentsViews = []; _this._componentsMap = {}; _this._pendingActions = []; opts = opts || {}; _this.__v_skip = true; _this._dom = dom; var defaultRenderer = "canvas"; var defaultCoarsePointer = "auto"; var defaultUseDirtyRect = false; _this[EC_UPDATE_CYCLE_VERSION_KEY] = 1; if (opts.ssr); var zr = _this._zr = init$1(dom, { renderer: opts.renderer || defaultRenderer, devicePixelRatio: opts.devicePixelRatio, width: opts.width, height: opts.height, ssr: opts.ssr, useDirtyRect: retrieve2(opts.useDirtyRect, defaultUseDirtyRect), useCoarsePointer: retrieve2(opts.useCoarsePointer, defaultCoarsePointer), pointerSize: opts.pointerSize }); _this._ssr = opts.ssr; _this._throttledZrFlush = throttle(bind$1(zr.flush, zr), 17); _this._updateTheme(theme); _this._locale = createLocaleObject(opts.locale || SYSTEM_LANG); _this._coordSysMgr = new CoordinateSystemManager(); var api = _this._api = createExtensionAPI(_this); function prioritySortFunc(a, b) { return a.__prio - b.__prio; } sort(visualFuncs, prioritySortFunc); sort(dataProcessorFuncs, prioritySortFunc); _this._scheduler = new Scheduler(_this, api, dataProcessorFuncs, visualFuncs); _this._messageCenter = new MessageCenter(); _this._initEvents(); _this.resize = bind$1(_this.resize, _this); zr.animation.on("frame", _this._onframe, _this); bindRenderedEvent(zr, _this); bindMouseEvent(zr, _this); setAsPrimitive(_this); return _this; } ECharts.prototype._onframe = function() { if (this._disposed) return; var scheduler = this._scheduler; var ecModel = this._model; var api = this._api; applyChangedStates(this); if (this[PENDING_UPDATE]) { var silent = this[PENDING_UPDATE].silent; this[IN_EC_CYCLE_KEY] = true; updateECUpdateCycleVersion(this); try { prepare(this); updateMethods.update.call(this, null, this[PENDING_UPDATE].updateParams); } catch (e) { this[IN_EC_CYCLE_KEY] = false; this[PENDING_UPDATE] = null; throw e; } this._zr.flush(); this[IN_EC_CYCLE_KEY] = false; this[PENDING_UPDATE] = null; flushPendingActions.call(this, silent); triggerUpdatedEvent.call(this, silent); } else if (scheduler.unfinished) { var remainTime = TEST_FRAME_REMAIN_TIME; do { scheduler.unfinished = false; var startTime = platformApi.getTime(); scheduler.performSeriesTasks(ecModel); scheduler.performDataProcessorTasks(ecModel); updateStreamModes(this, ecModel); scheduler.performVisualTasks(ecModel); renderSeries(this, this._model, api, "remain", {}); remainTime -= platformApi.getTime() - startTime; } while (remainTime > 0 && scheduler.unfinished); if (!scheduler.unfinished) this._zr.flush(); } }; ECharts.prototype.getDom = function() { return this._dom; }; ECharts.prototype.getId = function() { return this.id; }; ECharts.prototype.getZr = function() { return this._zr; }; ECharts.prototype.isSSR = function() { return this._ssr; }; ECharts.prototype.setOption = function(option, notMerge, lazyUpdate) { if (this[IN_EC_CYCLE_KEY]) return; if (this._disposed) { this.id; return; } var silent; var replaceMerge; var transitionOpt; if (isObject$2(notMerge)) { lazyUpdate = notMerge.lazyUpdate; silent = notMerge.silent; replaceMerge = notMerge.replaceMerge; transitionOpt = notMerge.transition; notMerge = notMerge.notMerge; } this[IN_EC_CYCLE_KEY] = true; updateECUpdateCycleVersion(this); if (!this._model || notMerge) { var optionManager = new OptionManager(this._api); var theme = this._theme; var ecModel = this._model = new GlobalModel(); ecModel.scheduler = this._scheduler; ecModel.ssr = this._ssr; ecModel.init(null, null, null, theme, this._locale, optionManager); } this._model.setOption(option, { replaceMerge }, optionPreprocessorFuncs); var updateParams = { seriesTransition: transitionOpt, optionChanged: true }; if (lazyUpdate) { this[PENDING_UPDATE] = { silent, updateParams }; this[IN_EC_CYCLE_KEY] = false; this.getZr().wakeUp(); } else { try { prepare(this); updateMethods.update.call(this, null, updateParams); } catch (e) { this[PENDING_UPDATE] = null; this[IN_EC_CYCLE_KEY] = false; throw e; } if (!this._ssr) this._zr.flush(); this[PENDING_UPDATE] = null; this[IN_EC_CYCLE_KEY] = false; flushPendingActions.call(this, silent); triggerUpdatedEvent.call(this, silent); } }; /** * Update theme with name or theme option and repaint the chart. * @param theme Theme name or theme option. * @param opts Optional settings */ ECharts.prototype.setTheme = function(theme, opts) { if (this[IN_EC_CYCLE_KEY]) return; if (this._disposed) { this.id; return; } var ecModel = this._model; if (!ecModel) return; var silent = opts && opts.silent; var updateParams = null; if (this[PENDING_UPDATE]) { if (silent == null) silent = this[PENDING_UPDATE].silent; updateParams = this[PENDING_UPDATE].updateParams; this[PENDING_UPDATE] = null; } this[IN_EC_CYCLE_KEY] = true; updateECUpdateCycleVersion(this); try { this._updateTheme(theme); ecModel.setTheme(this._theme); prepare(this); updateMethods.update.call(this, { type: "setTheme" }, updateParams); } catch (e) { this[IN_EC_CYCLE_KEY] = false; throw e; } this[IN_EC_CYCLE_KEY] = false; flushPendingActions.call(this, silent); triggerUpdatedEvent.call(this, silent); }; ECharts.prototype._updateTheme = function(theme) { if (isString(theme)) theme = themeStorage[theme]; if (theme) { theme = clone$2(theme); theme && globalBackwardCompat(theme, true); this._theme = theme; } }; ECharts.prototype.getModel = function() { return this._model; }; ECharts.prototype.getOption = function() { return this._model && this._model.getOption(); }; ECharts.prototype.getWidth = function() { return this._zr.getWidth(); }; ECharts.prototype.getHeight = function() { return this._zr.getHeight(); }; ECharts.prototype.getDevicePixelRatio = function() { return this._zr.painter.dpr || env.hasGlobalWindow && window.devicePixelRatio || 1; }; /** * Get canvas which has all thing rendered * @deprecated Use renderToCanvas instead. */ ECharts.prototype.getRenderedCanvas = function(opts) { return this.renderToCanvas(opts); }; ECharts.prototype.renderToCanvas = function(opts) { opts = opts || {}; return this._zr.painter.getRenderedCanvas({ backgroundColor: opts.backgroundColor || this._model.get("backgroundColor"), pixelRatio: opts.pixelRatio || this.getDevicePixelRatio() }); }; ECharts.prototype.renderToSVGString = function(opts) { opts = opts || {}; return this._zr.painter.renderToString({ useViewBox: opts.useViewBox }); }; /** * Get svg data url */ ECharts.prototype.getSvgDataURL = function() { var zr = this._zr; each$4(zr.storage.getDisplayList(), function(el) { el.stopAnimation(null, true); }); return zr.painter.toDataURL(); }; ECharts.prototype.getDataURL = function(opts) { if (this._disposed) { this.id; return; } opts = opts || {}; var excludeComponents = opts.excludeComponents; var ecModel = this._model; var excludesComponentViews = []; var self = this; each$4(excludeComponents, function(componentType) { ecModel.eachComponent({ mainType: componentType }, function(component) { var view = self._componentsMap[component.__viewId]; if (!view.group.ignore) { excludesComponentViews.push(view); view.group.ignore = true; } }); }); var url = this._zr.painter.getType() === "svg" ? this.getSvgDataURL() : this.renderToCanvas(opts).toDataURL("image/" + (opts && opts.type || "png")); each$4(excludesComponentViews, function(view) { view.group.ignore = false; }); return url; }; ECharts.prototype.getConnectedDataURL = function(opts) { if (this._disposed) { this.id; return; } var isSvg = opts.type === "svg"; var groupId = this.group; var mathMin = Math.min; var mathMax = Math.max; var MAX_NUMBER = Infinity; if (connectedGroups[groupId]) { var left_1 = MAX_NUMBER; var top_1 = MAX_NUMBER; var right_1 = -MAX_NUMBER; var bottom_1 = -MAX_NUMBER; var canvasList_1 = []; var dpr_1 = opts && opts.pixelRatio || this.getDevicePixelRatio(); each$4(instances, function(chart, id) { if (chart.group === groupId) { var canvas = isSvg ? chart.getZr().painter.getSvgDom().innerHTML : chart.renderToCanvas(clone$2(opts)); var boundingRect = chart.getDom().getBoundingClientRect(); left_1 = mathMin(boundingRect.left, left_1); top_1 = mathMin(boundingRect.top, top_1); right_1 = mathMax(boundingRect.right, right_1); bottom_1 = mathMax(boundingRect.bottom, bottom_1); canvasList_1.push({ dom: canvas, left: boundingRect.left, top: boundingRect.top }); } }); left_1 *= dpr_1; top_1 *= dpr_1; right_1 *= dpr_1; bottom_1 *= dpr_1; var width = right_1 - left_1; var height = bottom_1 - top_1; var targetCanvas = platformApi.createCanvas(); var zr_1 = init$1(targetCanvas, { renderer: isSvg ? "svg" : "canvas" }); zr_1.resize({ width, height }); if (isSvg) { var content_1 = ""; each$4(canvasList_1, function(item) { var x = item.left - left_1; var y = item.top - top_1; content_1 += "" + item.dom + ""; }); zr_1.painter.getSvgRoot().innerHTML = content_1; if (opts.connectedBackgroundColor) zr_1.painter.setBackgroundColor(opts.connectedBackgroundColor); zr_1.refreshImmediately(); return zr_1.painter.toDataURL(); } else { if (opts.connectedBackgroundColor) zr_1.add(new Rect({ shape: { x: 0, y: 0, width, height }, style: { fill: opts.connectedBackgroundColor } })); each$4(canvasList_1, function(item) { var img = new ZRImage({ style: { x: item.left * dpr_1 - left_1, y: item.top * dpr_1 - top_1, image: item.dom } }); zr_1.add(img); }); zr_1.refreshImmediately(); return targetCanvas.toDataURL("image/" + (opts && opts.type || "png")); } } else return this.getDataURL(opts); }; ECharts.prototype.convertToPixel = function(finder, value, opt) { return doConvertPixel(this, "convertToPixel", finder, value, opt); }; /** * Convert from logical coordinate system to pixel coordinate system. * See CoordinateSystem#convertToPixel. * * @see CoordinateSystem['dataToLayout'] for parameters and return. * @see CoordinateSystemDataCoord */ ECharts.prototype.convertToLayout = function(finder, value, opt) { return doConvertPixel(this, "convertToLayout", finder, value, opt); }; ECharts.prototype.convertFromPixel = function(finder, value, opt) { return doConvertPixel(this, "convertFromPixel", finder, value, opt); }; /** * Is the specified coordinate systems or components contain the given pixel point. * @param {Array|number} value * @return {boolean} result */ ECharts.prototype.containPixel = function(finder, value) { if (this._disposed) { this.id; return; } var ecModel = this._model; var result; each$4(parseFinder(ecModel, finder), function(models, key) { key.indexOf("Models") >= 0 && each$4(models, function(model) { var coordSys = model.coordinateSystem; if (coordSys && coordSys.containPoint) result = result || !!coordSys.containPoint(value); else if (key === "seriesModels") { var view = this._chartsMap[model.__viewId]; if (view && view.containPoint) result = result || view.containPoint(value, model); } }, this); }, this); return !!result; }; /** * Get visual from series or data. * @param finder * If string, e.g., 'series', means {seriesIndex: 0}. * If Object, could contain some of these properties below: * { * seriesIndex / seriesId / seriesName, * dataIndex / dataIndexInside * } * If dataIndex is not specified, series visual will be fetched, * but not data item visual. * If all of seriesIndex, seriesId, seriesName are not specified, * visual will be fetched from first series. * @param visualType 'color', 'symbol', 'symbolSize' */ ECharts.prototype.getVisual = function(finder, visualType) { var ecModel = this._model; var parsedFinder = parseFinder(ecModel, finder, { defaultMainType: "series" }); var data = parsedFinder.seriesModel.getData(); var dataIndexInside = parsedFinder.hasOwnProperty("dataIndexInside") ? parsedFinder.dataIndexInside : parsedFinder.hasOwnProperty("dataIndex") ? data.indexOfRawIndex(parsedFinder.dataIndex) : null; return dataIndexInside != null ? getItemVisualFromData(data, dataIndexInside, visualType) : getVisualFromData(data, visualType); }; /** * Get view of corresponding component model */ ECharts.prototype.getViewOfComponentModel = function(componentModel) { return this._componentsMap[componentModel.__viewId]; }; /** * Get view of corresponding series model */ ECharts.prototype.getViewOfSeriesModel = function(seriesModel) { return this._chartsMap[seriesModel.__viewId]; }; ECharts.prototype._initEvents = function() { var _this = this; each$4(MOUSE_EVENT_NAMES, function(eveName) { var handler = function(e) { var ecModel = _this.getModel(); var el = e.target; var params; if (eveName === "globalout") params = {}; else el && findEventDispatcher(el, function(parent) { var ecData = getECData(parent); if (ecData && ecData.dataIndex != null) { var dataModel = ecData.dataModel || ecModel.getSeriesByIndex(ecData.seriesIndex); params = dataModel && dataModel.getDataParams(ecData.dataIndex, ecData.dataType, el) || {}; return true; } else if (ecData.eventData) { params = extend({}, ecData.eventData); return true; } }, true); if (params) { var componentType = params.componentType; var componentIndex = params.componentIndex; if (componentType === "markLine" || componentType === "markPoint" || componentType === "markArea") { componentType = "series"; componentIndex = params.seriesIndex; } var model = componentType && componentIndex != null && ecModel.getComponent(componentType, componentIndex); var view = model && _this[model.mainType === "series" ? "_chartsMap" : "_componentsMap"][model.__viewId]; params.event = e; params.type = eveName; _this._$eventProcessor.eventInfo = { targetEl: el, packedEvent: params, model, view }; _this.trigger(eveName, params); } }; handler.zrEventfulCallAtLast = true; _this._zr.on(eveName, handler, _this); }); var messageCenter = this._messageCenter; each$4(publicEventTypeMap, function(_, eventType) { messageCenter.on(eventType, function(event) { _this.trigger(eventType, event); }); }); handleLegacySelectEvents(messageCenter, this, this._api); }; ECharts.prototype.isDisposed = function() { return this._disposed; }; ECharts.prototype.clear = function() { if (this._disposed) { this.id; return; } this.setOption({ series: [] }, true); }; ECharts.prototype.dispose = function() { if (this._disposed) { this.id; return; } this._disposed = true; if (this.getDom()) setAttribute(this.getDom(), DOM_ATTRIBUTE_KEY, ""); var chart = this; var api = chart._api; var ecModel = chart._model; each$4(chart._componentsViews, function(component) { component.dispose(ecModel, api); }); each$4(chart._chartsViews, function(chart) { chart.dispose(ecModel, api); }); chart._zr.dispose(); chart._dom = chart._model = chart._chartsMap = chart._componentsMap = chart._chartsViews = chart._componentsViews = chart._scheduler = chart._api = chart._zr = chart._throttledZrFlush = chart._theme = chart._coordSysMgr = chart._messageCenter = null; delete instances[chart.id]; }; /** * Resize the chart */ ECharts.prototype.resize = function(opts) { if (this[IN_EC_CYCLE_KEY]) return; if (this._disposed) { this.id; return; } this._zr.resize(opts); var ecModel = this._model; this._loadingFX && this._loadingFX.resize(); if (!ecModel) return; var needPrepare = ecModel.resetOption("media"); var silent = opts && opts.silent; if (this[PENDING_UPDATE]) { if (silent == null) silent = this[PENDING_UPDATE].silent; needPrepare = true; this[PENDING_UPDATE] = null; } this[IN_EC_CYCLE_KEY] = true; updateECUpdateCycleVersion(this); try { needPrepare && prepare(this); updateMethods.update.call(this, { type: "resize", animation: extend({ duration: 0 }, opts && opts.animation) }); } catch (e) { this[IN_EC_CYCLE_KEY] = false; throw e; } this[IN_EC_CYCLE_KEY] = false; flushPendingActions.call(this, silent); triggerUpdatedEvent.call(this, silent); }; ECharts.prototype.showLoading = function(name, cfg) { if (this._disposed) { this.id; return; } if (isObject$2(name)) { cfg = name; name = ""; } name = name || "default"; this.hideLoading(); if (!loadingEffects[name]) return; var el = loadingEffects[name](this._api, cfg); var zr = this._zr; this._loadingFX = el; zr.add(el); }; /** * Hide loading effect */ ECharts.prototype.hideLoading = function() { if (this._disposed) { this.id; return; } this._loadingFX && this._zr.remove(this._loadingFX); this._loadingFX = null; }; ECharts.prototype.makeActionFromEvent = function(eventObj) { var payload = extend({}, eventObj); payload.type = connectionEventRevertMap[eventObj.type]; return payload; }; /** * @param opt If pass boolean, means opt.silent * @param opt.silent Default `false`. Whether trigger events. * @param opt.flush Default `undefined`. * true: Flush immediately, and then pixel in canvas can be fetched * immediately. Caution: it might affect performance. * false: Not flush. * undefined: Auto decide whether perform flush. */ ECharts.prototype.dispatchAction = function(payload, opt) { if (this._disposed) { this.id; return; } if (!isObject$2(opt)) opt = { silent: !!opt }; if (!actions[payload.type]) return; if (!this._model) return; if (this[IN_EC_CYCLE_KEY]) { this._pendingActions.push(payload); return; } var silent = opt.silent; doDispatchAction.call(this, payload, silent); var flush = opt.flush; if (flush) this._zr.flush(); else if (flush !== false && env.browser.weChat) this._throttledZrFlush(); flushPendingActions.call(this, silent); triggerUpdatedEvent.call(this, silent); }; ECharts.prototype.updateLabelLayout = function() { lifecycle.trigger("series:layoutlabels", this._model, this._api, { updatedSeries: [] }); }; ECharts.prototype.appendData = function(params) { if (this._disposed) { this.id; return; } var seriesIndex = params.seriesIndex; this.getModel().getSeriesByIndex(seriesIndex).appendData(params); this._scheduler.unfinished = true; this.getZr().wakeUp(); }; ECharts.internalField = function() { prepare = function(ecIns) { resetCachePerECPrepare(ecIns._model); var scheduler = ecIns._scheduler; scheduler.restorePipelines(ecIns._zr, ecIns._model); scheduler.prepareStageTasks(); prepareView(ecIns, true); prepareView(ecIns, false); scheduler.plan(); }; /** * Prepare view instances of charts and components */ prepareView = function(ecIns, isComponent) { var ecModel = ecIns._model; var scheduler = ecIns._scheduler; var viewList = isComponent ? ecIns._componentsViews : ecIns._chartsViews; var viewMap = isComponent ? ecIns._componentsMap : ecIns._chartsMap; var zr = ecIns._zr; var api = ecIns._api; for (var i = 0; i < viewList.length; i++) viewList[i].__alive = false; isComponent ? ecModel.eachComponent(function(componentType, model) { componentType !== "series" && doPrepare(model); }) : ecModel.eachSeries(doPrepare); function doPrepare(model) { var requireNewView = model.__requireNewView; model.__requireNewView = false; var viewId = "_ec_" + model.id + "_" + model.type; var view = !requireNewView && viewMap[viewId]; if (!view) { var classType = parseClassType(model.type); view = new (isComponent ? ComponentView.getClass(classType.main, classType.sub) : ChartView.getClass(classType.sub))(); view.init(ecModel, api); viewMap[viewId] = view; viewList.push(view); zr.add(view.group); } model.__viewId = view.__id = viewId; view.__alive = true; view.__model = model; view.group.__ecComponentInfo = { mainType: model.mainType, index: model.componentIndex }; !isComponent && scheduler.prepareView(view, model, ecModel, api); } for (var i = 0; i < viewList.length;) { var view = viewList[i]; if (!view.__alive) { !isComponent && view.renderTask.dispose(); zr.remove(view.group); view.dispose(ecModel, api); viewList.splice(i, 1); if (viewMap[view.__id] === view) delete viewMap[view.__id]; view.__id = view.group.__ecComponentInfo = null; } else i++; } }; updateDirectly = function(ecIns, method, payload, mainType, subType) { var ecModel = ecIns._model; ecModel.setUpdatePayload(payload); if (!mainType) { each$4([].concat(ecIns._componentsViews).concat(ecIns._chartsViews), callView); return; } var condition = makeQueryConditionKindA(payload, mainType, subType); var excludeSeriesId = payload.excludeSeriesId; var excludeSeriesIdMap; if (excludeSeriesId != null) { excludeSeriesIdMap = createHashMap(); each$4(normalizeToArray(excludeSeriesId), function(id) { var modelId = convertOptionIdName(id, null); if (modelId != null) excludeSeriesIdMap.set(modelId, true); }); } ecModel && ecModel.eachComponent(condition, function(model) { if (excludeSeriesIdMap && excludeSeriesIdMap.get(model.id) != null) return; if (isHighDownPayload(payload)) if (model instanceof SeriesModel) { if (payload.type === "highlight" && !payload.notBlur && !model.get(["emphasis", "disabled"])) blurSeriesFromHighlightPayload(model, payload, ecIns._api); } else { var _a = findComponentHighDownDispatchers(model.mainType, model.componentIndex, payload.name, ecIns._api), focusSelf = _a.focusSelf, dispatchers = _a.dispatchers; if (payload.type === "highlight" && focusSelf && !payload.notBlur) blurComponent(model.mainType, model.componentIndex, ecIns._api); if (dispatchers) each$4(dispatchers, function(dispatcher) { payload.type === "highlight" ? enterEmphasis(dispatcher) : leaveEmphasis(dispatcher); }); } else if (isSelectChangePayload(payload)) { if (model instanceof SeriesModel) { toggleSelectionFromPayload(model, payload, ecIns._api); updateSeriesElementSelection(model); markStatusToUpdate(ecIns); } } }, ecIns); ecModel && ecModel.eachComponent(condition, function(model) { if (excludeSeriesIdMap && excludeSeriesIdMap.get(model.id) != null) return; callView(ecIns[mainType === "series" ? "_chartsMap" : "_componentsMap"][model.__viewId]); }, ecIns); function callView(view) { view && view.__alive && view[method] && view[method](view.__model, ecModel, ecIns._api, payload); } }; updateMethods = { prepareAndUpdate: function(payload) { prepare(this); updateMethods.update.call(this, payload, payload && { optionChanged: payload.newOption != null }); }, update: function(payload, updateParams) { var ecModel = this._model; var api = this._api; var zr = this._zr; var coordSysMgr = this._coordSysMgr; var scheduler = this._scheduler; if (!ecModel) return; resetCachePerECFullUpdate(ecModel); ecModel.setUpdatePayload(payload); scheduler.restoreData(ecModel, payload); scheduler.performSeriesTasks(ecModel); coordSysMgr.create(ecModel, api); lifecycle.trigger("coordsys:aftercreate", ecModel, api); scheduler.performDataProcessorTasks(ecModel, payload); updateStreamModes(this, ecModel); coordSysMgr.update(ecModel, api); clearColorPalette(ecModel); scheduler.performVisualTasks(ecModel, payload); var backgroundColor = ecModel.get("backgroundColor") || "transparent"; zr.setBackgroundColor(backgroundColor); var darkMode = ecModel.get("darkMode"); if (darkMode != null && darkMode !== "auto") zr.setDarkMode(darkMode); render(this, ecModel, api, payload, updateParams); lifecycle.trigger("afterupdate", ecModel, api); }, /** * PENDING: See INCONSISTENCY_OF_BRUSH_SELECTED_EVENT_IN_UPDATE_TRANSFORM */ updateTransform: function(payload) { var ecIns = this; var ecModel = ecIns._model; var api = ecIns._api; if (!ecModel) return; ecModel.setUpdatePayload(payload); var componentDirtyList = []; ecModel.eachComponent(function(mainType, componentModel) { if (mainType === "series") return; var componentView = ecIns.getViewOfComponentModel(componentModel); if (componentView && componentView.__alive) if (componentView.updateTransform) { var result = componentView.updateTransform(componentModel, ecModel, api, payload); result && result.update && componentDirtyList.push(componentView); } else componentDirtyList.push(componentView); }); var seriesDirtyMap = createHashMap(); ecModel.eachSeries(function(seriesModel) { var chartView = ecIns._chartsMap[seriesModel.__viewId]; var pipelineContext = seriesModel.pipelineContext; if (chartView.updateTransform && !pipelineContext.progressiveRender) { var result = chartView.updateTransform(seriesModel, ecModel, api, payload); result && result.update && seriesDirtyMap.set(seriesModel.uid, 1); } else seriesDirtyMap.set(seriesModel.uid, 1); }); ecIns._scheduler.performVisualTasks(ecModel, payload, { setDirty: true, dirtyMap: seriesDirtyMap }); renderSeries(ecIns, ecModel, api, payload, {}, seriesDirtyMap); lifecycle.trigger("afterupdate", ecModel, api); }, updateView: function(payload) { var ecModel = this._model; if (!ecModel) return; ecModel.setUpdatePayload(payload); ChartView.markUpdateMethod(payload, "updateView"); clearColorPalette(ecModel); this._scheduler.performVisualTasks(ecModel, payload, { setDirty: true }); render(this, ecModel, this._api, payload, {}); lifecycle.trigger("afterupdate", ecModel, this._api); }, updateVisual: function(payload) { var _this = this; var ecModel = this._model; if (!ecModel) return; ecModel.setUpdatePayload(payload); ecModel.eachSeries(function(seriesModel) { seriesModel.getData().clearAllVisual(); }); ChartView.markUpdateMethod(payload, "updateVisual"); clearColorPalette(ecModel); this._scheduler.performVisualTasks(ecModel, payload, { visualType: "visual", setDirty: true }); ecModel.eachComponent(function(componentType, componentModel) { if (componentType !== "series") { var componentView = _this.getViewOfComponentModel(componentModel); componentView && componentView.__alive && componentView.updateVisual(componentModel, ecModel, _this._api, payload); } }); ecModel.eachSeries(function(seriesModel) { _this._chartsMap[seriesModel.__viewId].updateVisual(seriesModel, ecModel, _this._api, payload); }); lifecycle.trigger("afterupdate", ecModel, this._api); }, /** * @deprecated */ updateLayout: function(payload) { updateMethods.update.call(this, payload); } }; function doConvertPixelImpl(ecIns, methodName, finder, value, opt) { if (ecIns._disposed) { ecIns.id; return; } var ecModel = ecIns._model; var coordSysList = ecIns._coordSysMgr.getCoordinateSystems(); var result; var parsedFinder = parseFinder(ecModel, finder); for (var i = 0; i < coordSysList.length; i++) { var coordSys = coordSysList[i]; if (coordSys[methodName] && (result = coordSys[methodName](ecModel, parsedFinder, value, opt)) != null) return result; } } doConvertPixel = doConvertPixelImpl; updateStreamModes = function(ecIns, ecModel) { var chartsMap = ecIns._chartsMap; var scheduler = ecIns._scheduler; ecModel.eachSeries(function(seriesModel) { scheduler.updateStreamModes(seriesModel, chartsMap[seriesModel.__viewId]); }); }; doDispatchAction = function(payload, silent) { var _this = this; var ecModel = this.getModel(); var payloadType = payload.type; var escapeConnect = payload.escapeConnect; var actionInfo = actions[payloadType]; var cptTypeTmp = (actionInfo.update || "update").split(":"); var updateMethod = cptTypeTmp.pop(); var cptType = cptTypeTmp[0] != null && parseClassType(cptTypeTmp[0]); this[IN_EC_CYCLE_KEY] = true; updateECUpdateCycleVersion(this); var payloads = [payload]; var batched = false; if (payload.batch) { batched = true; payloads = map$1(payload.batch, function(item) { item = defaults(extend({}, item), payload); item.batch = null; return item; }); } var eventObjBatch = []; var eventObj; var actionResultBatch = []; var nonRefinedEventType = actionInfo.nonRefinedEventType; var isSelectChange = isSelectChangePayload(payload); var isHighDown = isHighDownPayload(payload); if (isHighDown) allLeaveBlur(this._api); each$4(payloads, function(batchItem) { var actionResult = actionInfo.action(batchItem, ecModel, _this._api); if (actionInfo.refineEvent) actionResultBatch.push(actionResult); else eventObj = actionResult; eventObj = eventObj || extend({}, batchItem); eventObj.type = nonRefinedEventType; eventObjBatch.push(eventObj); if (isHighDown) { var _a = preParseFinder(payload), queryOptionMap = _a.queryOptionMap; var componentMainType = _a.mainTypeSpecified ? queryOptionMap.keys()[0] : "series"; updateDirectly(_this, updateMethod, batchItem, componentMainType); markStatusToUpdate(_this); } else if (isSelectChange) { updateDirectly(_this, updateMethod, batchItem, "series"); markStatusToUpdate(_this); } else if (cptType) updateDirectly(_this, updateMethod, batchItem, cptType.main, cptType.sub); }); if (updateMethod !== "none" && !isHighDown && !isSelectChange && !cptType) try { if (this[PENDING_UPDATE]) { prepare(this); updateMethods.update.call(this, payload); this[PENDING_UPDATE] = null; } else updateMethods[updateMethod].call(this, payload); } catch (e) { this[IN_EC_CYCLE_KEY] = false; throw e; } if (batched) eventObj = { type: nonRefinedEventType, escapeConnect, batch: eventObjBatch }; else eventObj = eventObjBatch[0]; this[IN_EC_CYCLE_KEY] = false; if (!silent) { var refinedEvent = void 0; if (actionInfo.refineEvent) { var eventContent = actionInfo.refineEvent(actionResultBatch, payload, ecModel, this._api).eventContent; assert(isObject$2(eventContent)); refinedEvent = defaults({ type: actionInfo.refinedEventType }, eventContent); refinedEvent.fromAction = payload.type; refinedEvent.fromActionPayload = payload; refinedEvent.escapeConnect = true; } var messageCenter = this._messageCenter; messageCenter.trigger(eventObj.type, eventObj); if (refinedEvent) messageCenter.trigger(refinedEvent.type, refinedEvent); } }; flushPendingActions = function(silent) { var pendingActions = this._pendingActions; while (pendingActions.length) { var payload = pendingActions.shift(); doDispatchAction.call(this, payload, silent); } }; triggerUpdatedEvent = function(silent) { !silent && this.trigger("updated"); }; /** * Event `rendered` is triggered when zr * rendered. It is useful for realtime * snapshot (reflect animation). * * Event `finished` is triggered when: * (1) zrender rendering finished. * (2) initial animation finished. * (3) progressive rendering finished. * (4) no pending action. * (5) no delayed setOption needs to be processed. */ bindRenderedEvent = function(zr, ecIns) { zr.on("rendered", function(params) { ecIns.trigger("rendered", params); if (zr.animation.isFinished() && !ecIns[PENDING_UPDATE] && !ecIns._scheduler.unfinished && !ecIns._pendingActions.length) ecIns.trigger("finished"); else zr.refresh(); }); }; bindMouseEvent = function(zr, ecIns) { zr.on("mouseover", function(e) { var el = e.target; var dispatcher = findEventDispatcher(el, isHighDownDispatcher); if (dispatcher) { handleGlobalMouseOverForHighDown(dispatcher, e, ecIns._api); markStatusToUpdate(ecIns); } }).on("mouseout", function(e) { var el = e.target; var dispatcher = findEventDispatcher(el, isHighDownDispatcher); if (dispatcher) { handleGlobalMouseOutForHighDown(dispatcher, e, ecIns._api); markStatusToUpdate(ecIns); } }).on("click", function(e) { var el = e.target; var dispatcher = findEventDispatcher(el, function(target) { return getECData(target).dataIndex != null; }, true); if (dispatcher) { var actionType = dispatcher.selected ? "unselect" : "select"; var ecData = getECData(dispatcher); ecIns._api.dispatchAction({ type: actionType, dataType: ecData.dataType, dataIndexInside: ecData.dataIndex, seriesIndex: ecData.seriesIndex, isFromClick: true }); } }); }; function clearColorPalette(ecModel) { ecModel.clearColorPalette(); ecModel.eachSeries(function(seriesModel) { seriesModel.clearColorPalette(); }); } function allocateZlevels(ecModel) { var componentZLevels = []; var seriesZLevels = []; var hasSeparateZLevel = false; ecModel.eachComponent(function(componentType, componentModel) { var zlevel = componentModel.get("zlevel") || 0; var z = componentModel.get("z") || 0; var zlevelKey = componentModel.getZLevelKey(); hasSeparateZLevel = hasSeparateZLevel || !!zlevelKey; (componentType === "series" ? seriesZLevels : componentZLevels).push({ zlevel, z, idx: componentModel.componentIndex, type: componentType, key: zlevelKey }); }); if (hasSeparateZLevel) { var zLevels = componentZLevels.concat(seriesZLevels); var lastSeriesZLevel_1; var lastSeriesKey_1; sort(zLevels, function(a, b) { if (a.zlevel === b.zlevel) return a.z - b.z; return a.zlevel - b.zlevel; }); each$4(zLevels, function(item) { var componentModel = ecModel.getComponent(item.type, item.idx); var zlevel = item.zlevel; var key = item.key; if (lastSeriesZLevel_1 != null) zlevel = Math.max(lastSeriesZLevel_1, zlevel); if (key) { if (zlevel === lastSeriesZLevel_1 && key !== lastSeriesKey_1) zlevel++; lastSeriesKey_1 = key; } else if (lastSeriesKey_1) { if (zlevel === lastSeriesZLevel_1) zlevel++; lastSeriesKey_1 = ""; } lastSeriesZLevel_1 = zlevel; componentModel.setZLevel(zlevel); }); } } render = function(ecIns, ecModel, api, payload, updateParams) { allocateZlevels(ecModel); renderComponents(ecIns, ecModel, api, payload, updateParams); each$4(ecIns._chartsViews, function(chart) { chart.__alive = false; }); renderSeries(ecIns, ecModel, api, payload, updateParams); each$4(ecIns._chartsViews, function(chart) { if (!chart.__alive) chart.remove(ecModel, api); }); }; renderComponents = function(ecIns, ecModel, api, payload, updateParams, dirtyList) { each$4(dirtyList || ecIns._componentsViews, function(componentView) { var componentModel = componentView.__model; clearStates(componentModel, componentView); componentView.render(componentModel, ecModel, api, payload); updateZ(componentModel, componentView); updateStates(componentModel, componentView); }); }; /** * Render each chart and component */ renderSeries = function(ecIns, ecModel, api, payload, updateParams, dirtyMap) { var scheduler = ecIns._scheduler; updateParams = extend(updateParams || {}, { updatedSeries: ecModel.getSeries() }); lifecycle.trigger("series:beforeupdate", ecModel, api, updateParams); var unfinished = false; ecModel.eachSeries(function(seriesModel) { var chartView = ecIns._chartsMap[seriesModel.__viewId]; chartView.__alive = true; var renderTask = chartView.renderTask; scheduler.updatePayload(renderTask, payload); clearStates(seriesModel, chartView); if (dirtyMap && dirtyMap.get(seriesModel.uid)) renderTask.dirty(); if (renderTask.perform(scheduler.getPerformArgs(renderTask))) unfinished = true; chartView.group.silent = !!seriesModel.get("silent"); updateBlend(seriesModel, chartView); updateSeriesElementSelection(seriesModel); }); scheduler.unfinished = unfinished || scheduler.unfinished; lifecycle.trigger("series:layoutlabels", ecModel, api, updateParams); lifecycle.trigger("series:transition", ecModel, api, updateParams); ecModel.eachSeries(function(seriesModel) { var chartView = ecIns._chartsMap[seriesModel.__viewId]; updateZ(seriesModel, chartView); updateStates(seriesModel, chartView); }); updateHoverLayerStatus(ecIns, ecModel); lifecycle.trigger("series:afterupdate", ecModel, api, updateParams); }; markStatusToUpdate = function(ecIns) { ecIns[STATUS_NEEDS_UPDATE_KEY] = true; ecIns.getZr().wakeUp(); }; updateECUpdateCycleVersion = function(ecIns) { ecIns[EC_UPDATE_CYCLE_VERSION_KEY] = (ecIns[EC_UPDATE_CYCLE_VERSION_KEY] + 1) % 1e6; }; applyChangedStates = function(ecIns) { if (!ecIns[STATUS_NEEDS_UPDATE_KEY]) return; ecIns.getZr().storage.traverse(function(el) { if (isElementRemoved(el)) return; applyElementStates(el); }); ecIns[STATUS_NEEDS_UPDATE_KEY] = false; }; function applyElementStates(el) { var newStates = []; var oldStates = el.currentStates; for (var i = 0; i < oldStates.length; i++) { var stateName = oldStates[i]; if (!(stateName === "emphasis" || stateName === "blur" || stateName === "select")) newStates.push(stateName); } if (el.selected && el.states.select) newStates.push("select"); if (el.hoverState === 2 && el.states.emphasis) newStates.push("emphasis"); else if (el.hoverState === 1 && el.states.blur) newStates.push("blur"); el.useStates(newStates); } function updateHoverLayerStatus(ecIns, ecModel) { var zr = ecIns._zr; if (zr.painter.type !== "canvas") return; var storage = zr.storage; var elCount = 0; storage.traverse(function(el) { if (!el.isGroup) elCount++; }); var shouldUseHoverLayer = elCount > retrieve2(ecModel.get("hoverLayerThreshold"), globalDefault_default.hoverLayerThreshold) && !env.node && !env.worker; if (ecIns._usingTHL || shouldUseHoverLayer) { ecModel.eachSeries(function(seriesModel) { if (seriesModel.preventUsingHoverLayer) return; var chartView = ecIns._chartsMap[seriesModel.__viewId]; if (chartView.__alive) chartView.eachRendered(function(el) { var emphasis = el.states.emphasis; if (emphasis && emphasis.hoverLayer !== 2) emphasis.hoverLayer = shouldUseHoverLayer ? 1 : 0; }); }); ecIns._usingTHL = shouldUseHoverLayer; } } /** * Update chart and blend. */ function updateBlend(seriesModel, chartView) { var blendMode = seriesModel.get("blendMode") || null; chartView.eachRendered(function(el) { if (!el.isGroup) el.style.blend = blendMode; }); } function updateZ(model, view) { if (model.preventAutoZ) return; var zInfo = retrieveZInfo(model); view.eachRendered(function(el) { traverseUpdateZ(el, zInfo.z, zInfo.zlevel); return true; }); } function clearStates(model, view) { view.eachRendered(function(el) { if (isElementRemoved(el)) return; var textContent = el.getTextContent(); var textGuide = el.getTextGuideLine(); if (el.stateTransition) el.stateTransition = null; if (textContent && textContent.stateTransition) textContent.stateTransition = null; if (textGuide && textGuide.stateTransition) textGuide.stateTransition = null; if (el.hasState()) { el.prevStates = el.currentStates; el.clearStates(); } else if (el.prevStates) el.prevStates = null; }); } function updateStates(model, view) { var stateAnimationModel = model.getModel("stateAnimation"); var enableAnimation = model.isAnimationEnabled(); var duration = stateAnimationModel.get("duration"); var stateTransition = duration > 0 ? { duration, delay: stateAnimationModel.get("delay"), easing: stateAnimationModel.get("easing") } : null; view.eachRendered(function(el) { if (el.states && el.states.emphasis) { if (isElementRemoved(el)) return; if (el instanceof Path) savePathStates(el); if (el.__dirty) { var prevStates = el.prevStates; if (prevStates) el.useStates(prevStates); } if (enableAnimation) { el.stateTransition = stateTransition; var textContent = el.getTextContent(); var textGuide = el.getTextGuideLine(); if (textContent) textContent.stateTransition = stateTransition; if (textGuide) textGuide.stateTransition = stateTransition; } if (el.__dirty) applyElementStates(el); } }); } createExtensionAPI = function(ecIns) { return new (function(_super) { __extends(class_1, _super); function class_1() { return _super !== null && _super.apply(this, arguments) || this; } class_1.prototype.getCoordinateSystems = function() { return ecIns._coordSysMgr.getCoordinateSystems(); }; class_1.prototype.getComponentByElement = function(el) { while (el) { var modelInfo = el.__ecComponentInfo; if (modelInfo != null) return ecIns._model.getComponent(modelInfo.mainType, modelInfo.index); el = el.parent; } }; class_1.prototype.enterEmphasis = function(el, highlightDigit) { enterEmphasis(el, highlightDigit); markStatusToUpdate(ecIns); }; class_1.prototype.leaveEmphasis = function(el, highlightDigit) { leaveEmphasis(el, highlightDigit); markStatusToUpdate(ecIns); }; class_1.prototype.enterBlur = function(el) { enterBlur(el); markStatusToUpdate(ecIns); }; class_1.prototype.leaveBlur = function(el) { leaveBlur(el); markStatusToUpdate(ecIns); }; class_1.prototype.enterSelect = function(el) { enterSelect(el); markStatusToUpdate(ecIns); }; class_1.prototype.leaveSelect = function(el) { leaveSelect(el); markStatusToUpdate(ecIns); }; class_1.prototype.getModel = function() { return ecIns.getModel(); }; class_1.prototype.getViewOfComponentModel = function(componentModel) { return ecIns.getViewOfComponentModel(componentModel); }; class_1.prototype.getViewOfSeriesModel = function(seriesModel) { return ecIns.getViewOfSeriesModel(seriesModel); }; class_1.prototype.getECUpdateCycleVersion = function() { return ecIns[EC_UPDATE_CYCLE_VERSION_KEY]; }; class_1.prototype.usingTHL = function() { return ecIns._usingTHL; }; return class_1; }(ExtensionAPI))(ecIns); }; enableConnect = function(chart) { function updateConnectedChartsStatus(charts, status) { for (var i = 0; i < charts.length; i++) { var otherChart = charts[i]; otherChart[CONNECT_STATUS_KEY] = status; } } each$4(connectionEventRevertMap, function(_, eventType) { chart._messageCenter.on(eventType, function(event) { if (connectedGroups[chart.group] && chart[CONNECT_STATUS_KEY] !== CONNECT_STATUS_PENDING) { if (event && event.escapeConnect) return; var action_1 = chart.makeActionFromEvent(event); var otherCharts_1 = []; each$4(instances, function(otherChart) { if (otherChart !== chart && otherChart.group === chart.group) otherCharts_1.push(otherChart); }); updateConnectedChartsStatus(otherCharts_1, CONNECT_STATUS_PENDING); each$4(otherCharts_1, function(otherChart) { if (otherChart[CONNECT_STATUS_KEY] !== CONNECT_STATUS_UPDATING) otherChart.dispatchAction(action_1); }); updateConnectedChartsStatus(otherCharts_1, CONNECT_STATUS_UPDATED); } }); }); }; }(); return ECharts; }(Eventful); var echartsProto = ECharts.prototype; echartsProto.on = createRegisterEventWithLowercaseECharts("on"); echartsProto.off = createRegisterEventWithLowercaseECharts("off"); /** * @deprecated */ echartsProto.one = function(eventName, cb, ctx) { var self = this; function wrapped() { var args2 = []; for (var _i = 0; _i < arguments.length; _i++) args2[_i] = arguments[_i]; cb && cb.apply && cb.apply(this, args2); self.off(eventName, wrapped); } this.on.call(this, eventName, wrapped, ctx); }; var MOUSE_EVENT_NAMES = [ "click", "dblclick", "mouseover", "mouseout", "mousemove", "mousedown", "mouseup", "globalout", "contextmenu" ]; var actions = {}; /** * Map event type to action type for reproducing action from event for `connect`. */ var connectionEventRevertMap = {}; /** * To remove duplication. */ var publicEventTypeMap = {}; var dataProcessorFuncs = []; var optionPreprocessorFuncs = []; var visualFuncs = []; var themeStorage = {}; var loadingEffects = {}; var instances = {}; var connectedGroups = {}; var idBase = +/* @__PURE__ */ new Date() - 0; +/* @__PURE__ */ new Date() - 0; var DOM_ATTRIBUTE_KEY = "_echarts_instance_"; /** * @param opts.devicePixelRatio Use window.devicePixelRatio by default * @param opts.renderer Can choose 'canvas' or 'svg' to render the chart. * @param opts.width Use clientWidth of the input `dom` by default. * Can be 'auto' (the same as null/undefined) * @param opts.height Use clientHeight of the input `dom` by default. * Can be 'auto' (the same as null/undefined) * @param opts.locale Specify the locale. * @param opts.useDirtyRect Enable dirty rectangle rendering or not. */ function init(dom, theme, opts) { var isClient = !(opts && opts.ssr); if (isClient) { var existInstance = getInstanceByDom(dom); if (existInstance) return existInstance; } var chart = new ECharts(dom, theme, opts); chart.id = "ec_" + idBase++; instances[chart.id] = chart; isClient && setAttribute(dom, DOM_ATTRIBUTE_KEY, chart.id); enableConnect(chart); lifecycle.trigger("afterinit", chart); return chart; } function getInstanceByDom(dom) { return instances[getAttribute(dom, DOM_ATTRIBUTE_KEY)]; } /** * Register theme */ function registerTheme(name, theme) { themeStorage[name] = theme; } /** * Register option preprocessor */ function registerPreprocessor(preprocessorFunc) { if (indexOf(optionPreprocessorFuncs, preprocessorFunc) < 0) optionPreprocessorFuncs.push(preprocessorFunc); } /** * NOTICE: Alway run in block way (no progessive is allowed). */ function registerProcessor(priority, processor) { normalizeRegister(dataProcessorFuncs, priority, processor, PRIORITY_PROCESSOR_DEFAULT); } /** * Register postIniter * @param {Function} postInitFunc */ function registerPostInit(postInitFunc) { registerUpdateLifecycle("afterinit", postInitFunc); } /** * Register postUpdater * @param {Function} postUpdateFunc */ function registerPostUpdate(postUpdateFunc) { registerUpdateLifecycle("afterupdate", postUpdateFunc); } function registerUpdateLifecycle(name, cb) { lifecycle.on(name, cb); } function registerAction(arg0, arg1, action) { var actionType; var publicEventType; var refineEvent; var update; var publishNonRefinedEvent; if (isFunction(arg1)) { action = arg1; arg1 = ""; } if (isObject$2(arg0)) { actionType = arg0.type; publicEventType = arg0.event; update = arg0.update; publishNonRefinedEvent = arg0.publishNonRefinedEvent; if (!action) action = arg0.action; refineEvent = arg0.refineEvent; } else { actionType = arg0; publicEventType = arg1; } function createEventType(actionOrEventType) { return actionOrEventType.toLowerCase(); } publicEventType = createEventType(publicEventType || actionType); var nonRefinedEventType = refineEvent ? createEventType(actionType) : publicEventType; if (actions[actionType]) return; assert(ACTION_REG.test(actionType) && ACTION_REG.test(publicEventType)); if (refineEvent) assert(publicEventType !== actionType); actions[actionType] = { actionType, refinedEventType: publicEventType, nonRefinedEventType, update, action, refineEvent }; publicEventTypeMap[publicEventType] = 1; if (refineEvent && publishNonRefinedEvent) publicEventTypeMap[nonRefinedEventType] = 1; connectionEventRevertMap[nonRefinedEventType] = actionType; } function registerCoordinateSystem(type, coordSysCreator) { CoordinateSystemManager.register(type, coordSysCreator); } function registerLayout(priority, layoutTask) { normalizeRegister(visualFuncs, priority, layoutTask, PRIORITY_VISUAL_LAYOUT, "layout", true); } function registerVisual(priority, visualTask) { normalizeRegister(visualFuncs, priority, visualTask, PRIORITY_VISUAL_CHART, "visual", true); } var registeredTasks = []; function normalizeRegister(targetList, priority, fn, defaultPriority, visualType, checkBlock) { if (isFunction(priority) || isObject$2(priority)) { fn = priority; priority = defaultPriority; } if (indexOf(registeredTasks, fn) >= 0) return; registeredTasks.push(fn); var stageHandler = Scheduler.wrapStageHandler(fn, visualType); stageHandler.__prio = priority; stageHandler.__raw = fn; targetList.push(stageHandler); } function registerLoading(name, loadingFx) { loadingEffects[name] = loadingFx; } /** * The parameters and usage: see `geoSourceManager.registerMap`. * Compatible with previous `echarts.registerMap`. */ function registerMap(mapName, geoJson, specialAreas) { var registerMap = getImpl("registerMap"); registerMap && registerMap(mapName, geoJson, specialAreas); } var registerTransform = registerExternalTransform; /** * Global dispatchAction to a specified chart instance. */ registerVisual(PRIORITY_VISUAL_GLOBAL, seriesStyleTask); registerVisual(PRIORITY_VISUAL_CHART_DATA_CUSTOM, dataStyleTask); registerVisual(PRIORITY_VISUAL_CHART_DATA_CUSTOM, dataColorPaletteTask); registerVisual(PRIORITY_VISUAL_GLOBAL, seriesSymbolTask); registerVisual(PRIORITY_VISUAL_CHART_DATA_CUSTOM, dataSymbolTask); registerVisual(PRIORITY_VISUAL_DECAL, decalVisualStageHandler); registerPreprocessor(globalBackwardCompat); registerProcessor(PRIORITY_PROCESSOR_DATASTACK, dataStackStageHandler); registerLoading("default", defaultLoading); registerAction({ type: HIGHLIGHT_ACTION_TYPE, event: HIGHLIGHT_ACTION_TYPE, update: HIGHLIGHT_ACTION_TYPE }, noop); registerAction({ type: DOWNPLAY_ACTION_TYPE, event: DOWNPLAY_ACTION_TYPE, update: DOWNPLAY_ACTION_TYPE }, noop); registerAction({ type: SELECT_ACTION_TYPE, event: SELECT_CHANGED_EVENT_TYPE, update: SELECT_ACTION_TYPE, action: noop, refineEvent: makeSelectChangedEvent, publishNonRefinedEvent: true }); registerAction({ type: UNSELECT_ACTION_TYPE, event: SELECT_CHANGED_EVENT_TYPE, update: UNSELECT_ACTION_TYPE, action: noop, refineEvent: makeSelectChangedEvent, publishNonRefinedEvent: true }); registerAction({ type: TOGGLE_SELECT_ACTION_TYPE, event: SELECT_CHANGED_EVENT_TYPE, update: TOGGLE_SELECT_ACTION_TYPE, action: noop, refineEvent: makeSelectChangedEvent, publishNonRefinedEvent: true }); function makeSelectChangedEvent(actionResultBatch, payload, ecModel, api) { return { eventContent: { selected: getAllSelectedIndices(ecModel), isFromClick: payload.isFromClick || false } }; } registerTheme("default", {}); registerTheme("dark", theme); //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/extension.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var extensions = []; var extensionRegisters = { registerPreprocessor, registerProcessor, registerPostInit, registerPostUpdate, registerUpdateLifecycle, registerAction, registerCoordinateSystem, registerLayout, registerVisual, registerTransform, registerLoading, registerMap, registerImpl, PRIORITY, ComponentModel, ComponentView, SeriesModel, ChartView, registerComponentModel: function(ComponentModelClass) { ComponentModel.registerClass(ComponentModelClass); }, registerComponentView: function(ComponentViewClass) { ComponentView.registerClass(ComponentViewClass); }, registerSeriesModel: function(SeriesModelClass) { SeriesModel.registerClass(SeriesModelClass); }, registerChartView: function(ChartViewClass) { ChartView.registerClass(ChartViewClass); }, registerCustomSeries: function(seriesType, renderItem) { registerCustomSeries(seriesType, renderItem); }, registerSubTypeDefaulter: function(componentType, defaulter) { ComponentModel.registerSubTypeDefaulter(componentType, defaulter); }, registerPainter: function(painterType, PainterCtor) { registerPainter(painterType, PainterCtor); } }; function use(ext) { if (isArray(ext)) { each$4(ext, function(singleExt) { use(singleExt); }); return; } if (indexOf(extensions, ext) >= 0) return; extensions.push(ext); if (isFunction(ext)) ext = { install: ext }; ext.install(extensionRegisters); } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/coord/axisModelCommonMixin.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var AxisModelCommonMixin = function() { function AxisModelCommonMixin() {} AxisModelCommonMixin.prototype.needIncludeZero = function() { return !this.option.scale; }; /** * Should be implemented by each axis model if necessary. * @return coordinate system model */ AxisModelCommonMixin.prototype.getCoordSysModel = function() {}; return AxisModelCommonMixin; }(); //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/coord/cartesian/AxisModel.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var CartesianAxisModel = function(_super) { __extends(CartesianAxisModel, _super); function CartesianAxisModel() { return _super !== null && _super.apply(this, arguments) || this; } CartesianAxisModel.prototype.getCoordSysModel = function() { return this.getReferringComponents("grid", SINGLE_REFERRING).models[0]; }; CartesianAxisModel.type = "cartesian2dAxis"; return CartesianAxisModel; }(ComponentModel); mixin(CartesianAxisModel, AxisModelCommonMixin); //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/coord/axisDefault.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var defaultOption = { show: true, z: 0, inverse: false, name: "", nameLocation: "end", nameRotate: null, nameTruncate: { maxWidth: null, ellipsis: "...", placeholder: "." }, nameTextStyle: {}, nameGap: 15, silent: false, triggerEvent: false, tooltip: { show: false }, axisPointer: {}, axisLine: { show: true, onZero: "auto", onZeroAxisIndex: null, lineStyle: { color: tokens.color.axisLine, width: 1, type: "solid" }, symbol: ["none", "none"], symbolSize: [10, 15], breakLine: true }, axisTick: { show: true, inside: false, length: 5, lineStyle: { width: 1 } }, axisLabel: { show: true, inside: false, rotate: 0, showMinLabel: null, showMaxLabel: null, margin: 8, fontSize: 12, color: tokens.color.axisLabel, textMargin: [0, 3] }, splitLine: { show: true, showMinLine: true, showMaxLine: true, lineStyle: { color: tokens.color.axisSplitLine, width: 1, type: "solid" } }, splitArea: { show: false, areaStyle: { color: [tokens.color.backgroundTint, tokens.color.backgroundTransparent] } }, breakArea: { show: true, itemStyle: { color: tokens.color.neutral00, borderColor: tokens.color.border, borderWidth: 1, borderType: [3, 3], opacity: .6 }, zigzagAmplitude: 4, zigzagMinSpan: 4, zigzagMaxSpan: 20, zigzagZ: 100, expandOnClick: true }, breakLabelLayout: { moveOverlap: "auto" } }; var categoryAxis = merge({ boundaryGap: true, deduplication: null, jitter: 0, jitterOverlap: true, jitterMargin: 2, splitLine: { show: false }, axisTick: { alignWithLabel: false, interval: "auto", show: "auto" }, axisLabel: { interval: "auto" } }, defaultOption); var valueAxis = merge({ boundaryGap: [0, 0], axisLine: { show: "auto" }, axisTick: { show: "auto" }, splitNumber: 5, minorTick: { show: false, splitNumber: 5, length: 3, lineStyle: {} }, minorSplitLine: { show: false, lineStyle: { color: tokens.color.axisMinorSplitLine, width: 1 } } }, defaultOption); var axisDefault_default = { category: categoryAxis, value: valueAxis, time: merge({ splitNumber: 6, axisLabel: { rich: { primary: { fontWeight: "bold" } } }, splitLine: { show: false } }, valueAxis), log: defaults({ logBase: 10 }, valueAxis) }; //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/coord/axisModelCreator.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ /** * Generate sub axis model class * @param axisName 'x' 'y' 'radius' 'angle' 'parallel' ... */ function axisModelCreator(registers, axisName, BaseAxisModelClass, extraDefaultOption) { each$4(AXIS_TYPES, function(v, axisType) { var defaultOption = merge(merge({}, axisDefault_default[axisType], true), extraDefaultOption, true); var AxisModel = function(_super) { __extends(AxisModel, _super); function AxisModel() { var _this = _super !== null && _super.apply(this, arguments) || this; _this.type = axisName + "Axis." + axisType; return _this; } AxisModel.prototype.mergeDefaultAndTheme = function(option, ecModel) { var layoutMode = fetchLayoutMode(this); var inputPositionParams = layoutMode ? getLayoutParams(option) : {}; merge(option, ecModel.getTheme().get(axisType + "Axis")); merge(option, this.getDefaultOption()); option.type = getAxisType(option); if (layoutMode) mergeLayoutParam(option, inputPositionParams, layoutMode); }; AxisModel.prototype.optionUpdated = function() { if (this.option.type === "category") this.__ordinalMeta = OrdinalMeta.createByAxisModel(this); }; /** * Should not be called before all of 'getInitailData' finished. * Because categories are collected during initializing data. */ AxisModel.prototype.getCategories = function(rawData) { var option = this.option; if (option.type === "category") { if (rawData) return option.data; return this.__ordinalMeta.categories; } }; AxisModel.prototype.getOrdinalMeta = function() { return this.__ordinalMeta; }; AxisModel.prototype.updateAxisBreaks = function(payload) { var axisBreakHelper = getAxisBreakHelper(); return axisBreakHelper ? axisBreakHelper.updateModelAxisBreak(this, payload) : { breaks: [] }; }; AxisModel.type = axisName + "Axis." + axisType; AxisModel.defaultOption = defaultOption; return AxisModel; }(BaseAxisModelClass); registers.registerComponentModel(AxisModel); }); registers.registerSubTypeDefaulter(axisName + "Axis", getAxisType); } function getAxisType(option) { return option.type || (option.data ? "category" : "value"); } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/coord/cartesian/Cartesian.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var Cartesian = function() { function Cartesian(name) { this.type = "cartesian"; this._dimList = []; this._axes = {}; this.name = name || ""; } Cartesian.prototype.getAxis = function(dim) { return this._axes[dim]; }; Cartesian.prototype.getAxes = function() { return map$1(this._dimList, function(dim) { return this._axes[dim]; }, this); }; Cartesian.prototype.getAxesByScale = function(scaleType) { scaleType = scaleType.toLowerCase(); return filter(this.getAxes(), function(axis) { return axis.scale.type === scaleType; }); }; Cartesian.prototype.addAxis = function(axis) { var dim = axis.dim; this._axes[dim] = axis; this._dimList.push(dim); }; return Cartesian; }(); //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/coord/cartesian/Cartesian2D.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var cartesian2DDimensions = ["x", "y"]; function canCalculateAffineTransform(scale) { return (scale.type === "interval" || scale.type === "time") && !hasBreaks(scale); } var Cartesian2D = function(_super) { __extends(Cartesian2D, _super); function Cartesian2D() { var _this = _super !== null && _super.apply(this, arguments) || this; _this.type = COORD_SYS_TYPE_CARTESIAN_2D; _this.dimensions = cartesian2DDimensions; return _this; } /** * Calculate an affine transform matrix if two axes are time or value. * It's mainly for accelartion on the large time series data. */ Cartesian2D.prototype.calcAffineTransform = function() { this._transform = this._invTransform = null; var xAxisScale = this.getAxis("x").scale; var yAxisScale = this.getAxis("y").scale; if (!canCalculateAffineTransform(xAxisScale) || !canCalculateAffineTransform(yAxisScale)) return; var xScaleExtent = getScaleExtentForMappingUnsafe(xAxisScale, null); var yScaleExtent = getScaleExtentForMappingUnsafe(yAxisScale, null); var start = this.dataToPoint([xScaleExtent[0], yScaleExtent[0]]); var end = this.dataToPoint([xScaleExtent[1], yScaleExtent[1]]); var xScaleSpan = xScaleExtent[1] - xScaleExtent[0]; var yScaleSpan = yScaleExtent[1] - yScaleExtent[0]; if (!xScaleSpan || !yScaleSpan) return; var scaleX = (end[0] - start[0]) / xScaleSpan; var scaleY = (end[1] - start[1]) / yScaleSpan; var translateX = start[0] - xScaleExtent[0] * scaleX; var translateY = start[1] - yScaleExtent[0] * scaleY; var m = this._transform = [ scaleX, 0, 0, scaleY, translateX, translateY ]; this._invTransform = invert([], m); }; /** * Base axis will be used on stacking and series such as 'bar', 'pictorialBar', etc. */ Cartesian2D.prototype.getBaseAxis = function() { return this.getAxesByScale("ordinal")[0] || this.getAxesByScale("time")[0] || this.getAxis("x"); }; Cartesian2D.prototype.containPoint = function(point) { var axisX = this.getAxis("x"); var axisY = this.getAxis("y"); return axisX.contain(axisX.toLocalCoord(point[0])) && axisY.contain(axisY.toLocalCoord(point[1])); }; Cartesian2D.prototype.containData = function(data) { return this.getAxis("x").containData(data[0]) && this.getAxis("y").containData(data[1]); }; Cartesian2D.prototype.containZone = function(data1, data2) { var zoneDiag1 = this.dataToPoint(data1); var zoneDiag2 = this.dataToPoint(data2); var area = this.getArea(); var zone = new BoundingRect(zoneDiag1[0], zoneDiag1[1], zoneDiag2[0] - zoneDiag1[0], zoneDiag2[1] - zoneDiag1[1]); return area.intersect(zone); }; Cartesian2D.prototype.dataToPoint = function(data, clamp, out) { out = out || []; var xVal = data[0]; var yVal = data[1]; if (this._transform && xVal != null && isFinite(xVal) && yVal != null && isFinite(yVal)) return applyTransform$1(out, data, this._transform); var xAxis = this.getAxis("x"); var yAxis = this.getAxis("y"); out[0] = xAxis.toGlobalCoord(xAxis.dataToCoord(xVal, clamp)); out[1] = yAxis.toGlobalCoord(yAxis.dataToCoord(yVal, clamp)); return out; }; Cartesian2D.prototype.clampData = function(data, out) { var xScale = this.getAxis("x").scale; var yScale = this.getAxis("y").scale; var xAxisExtent = xScale.getExtent(); var yAxisExtent = yScale.getExtent(); var x = xScale.parse(data[0]); var y = yScale.parse(data[1]); out = out || []; out[0] = Math.min(Math.max(Math.min(xAxisExtent[0], xAxisExtent[1]), x), Math.max(xAxisExtent[0], xAxisExtent[1])); out[1] = Math.min(Math.max(Math.min(yAxisExtent[0], yAxisExtent[1]), y), Math.max(yAxisExtent[0], yAxisExtent[1])); return out; }; Cartesian2D.prototype.pointToData = function(point, clamp, out) { out = out || []; if (this._invTransform) return applyTransform$1(out, point, this._invTransform); var xAxis = this.getAxis("x"); var yAxis = this.getAxis("y"); out[0] = xAxis.coordToData(xAxis.toLocalCoord(point[0]), clamp); out[1] = yAxis.coordToData(yAxis.toLocalCoord(point[1]), clamp); return out; }; Cartesian2D.prototype.getOtherAxis = function(axis) { return this.getAxis(axis.dim === "x" ? "y" : "x"); }; /** * Get rect area of cartesian. * Area will have a contain function to determine if a point is in the coordinate system. */ Cartesian2D.prototype.getArea = function(tolerance) { tolerance = tolerance || 0; var xExtent = this.getAxis("x").getGlobalExtent(); var yExtent = this.getAxis("y").getGlobalExtent(); var x = Math.min(xExtent[0], xExtent[1]) - tolerance; var y = Math.min(yExtent[0], yExtent[1]) - tolerance; return new BoundingRect(x, y, Math.max(xExtent[0], xExtent[1]) - x + tolerance, Math.max(yExtent[0], yExtent[1]) - y + tolerance); }; return Cartesian2D; }(Cartesian); //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/coord/axisAlignTicks.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ /** * NOTE: See the summary of the process of extent determination in the comment of `scaleMapper.setExtent`. * * @see SCALE_EXTENT_CONSTRUCTION for the full processing flow. */ function scaleCalcAlign(targetAxis, alignToScale) { var targetScale = targetAxis.scale; var targetAxisModel = targetAxis.model; var targetExtentInfo = adoptScaleRawExtentInfoAndPrepare(targetScale, targetAxisModel, targetAxisModel.ecModel, targetAxis, null); var isTargetLogScale = isLogScale(targetScale); var alignToScaleLinear = isLogScale(alignToScale) ? alignToScale.intervalStub : alignToScale; var targetIntervalStub = isTargetLogScale ? targetScale.intervalStub : targetScale; var targetLogScaleBase = targetScale.base; var alignToTicks = alignToScaleLinear.getTicks(); var alignToExpNiceTicks = alignToScaleLinear.getTicks({ expandToNicedExtent: true }); var alignToSegCount = alignToTicks.length - 1; var t0; var t1; var alignToNiceSegCount; if (alignToSegCount === 1) { t0 = t1 = 0; alignToNiceSegCount = 1; } else if (alignToSegCount === 2) { var interval0 = mathAbs$2(alignToTicks[0].value - alignToTicks[1].value); var interval1 = mathAbs$2(alignToTicks[1].value - alignToTicks[2].value); t0 = t1 = 0; if (interval0 === interval1) alignToNiceSegCount = 2; else { alignToNiceSegCount = 1; if (interval0 < interval1) t0 = interval0 / interval1; else t1 = interval1 / interval0; } } else { var alignToInterval = alignToScaleLinear.getConfig().interval; t0 = (1 - (alignToTicks[0].value - alignToExpNiceTicks[0].value) / alignToInterval) % 1; t1 = (1 - (alignToExpNiceTicks[alignToSegCount].value - alignToTicks[alignToSegCount].value) / alignToInterval) % 1; alignToNiceSegCount = alignToSegCount - (t0 ? 1 : 0) - (t1 ? 1 : 0); } var dataZoomFixMinMax = targetExtentInfo.zoomFixMM; var hasDataZoomFixMinMax = dataZoomFixMinMax[0] || dataZoomFixMinMax[1]; var targetMinMaxFixed = [targetExtentInfo.fixMM[0] || hasDataZoomFixMinMax, targetExtentInfo.fixMM[1] || hasDataZoomFixMinMax]; var targetOldOutermostExtent = targetScale.getExtent(); var targetOldIntervalExtent = targetIntervalStub.getExtent(); var targetExtent = intervalScaleEnsureValidExtent(targetOldIntervalExtent, targetMinMaxFixed); var min; var max; var interval; var intervalPrecision; var maxNice; var minNice; function loopIncreaseInterval(cb) { var LOOP_MAX = 50; var loopGuard = 0; for (; loopGuard < LOOP_MAX; loopGuard++) { if (cb()) break; interval = isTargetLogScale ? interval * mathMax$3(targetLogScaleBase, 2) : increaseInterval(interval); intervalPrecision = getIntervalPrecision(interval); } } function updateMinFromMinNice() { min = round(minNice - interval * t0, intervalPrecision); } function updateMaxFromMaxNice() { max = round(maxNice + interval * t1, intervalPrecision); } function updateMinNiceFromMinT0Interval() { minNice = t0 ? round(min + interval * t0, intervalPrecision) : min; } function updateMaxNiceFromMaxT1Interval() { maxNice = t1 ? round(max - interval * t1, intervalPrecision) : max; } if (targetMinMaxFixed[0] && targetMinMaxFixed[1]) { min = targetExtent[0]; max = targetExtent[1]; interval = (max - min) / (alignToNiceSegCount + t0 + t1); var axisPxExtent = targetAxis.getExtent(); var pxSpan = mathAbs$2(axisPxExtent[1] - axisPxExtent[0]); intervalPrecision = getAcceptableTickPrecision([max, min], pxSpan, .5 / alignToNiceSegCount); updateMinNiceFromMinT0Interval(); updateMaxNiceFromMaxT1Interval(); if (isNullableNumberFinite(intervalPrecision)) interval = round(interval, intervalPrecision); } else { var targetSpan = targetExtent[1] - targetExtent[0]; interval = isTargetLogScale ? mathMax$3(quantity(targetSpan), 1) : nice(targetSpan / alignToNiceSegCount, 2); intervalPrecision = getIntervalPrecision(interval); if (targetMinMaxFixed[0]) { min = targetExtent[0]; loopIncreaseInterval(function() { updateMinNiceFromMinT0Interval(); maxNice = round(minNice + interval * alignToNiceSegCount, intervalPrecision); updateMaxFromMaxNice(); if (max >= targetExtent[1]) return true; }); } else if (targetMinMaxFixed[1]) { max = targetExtent[1]; loopIncreaseInterval(function() { updateMaxNiceFromMaxT1Interval(); minNice = round(maxNice - interval * alignToNiceSegCount, intervalPrecision); updateMinFromMinNice(); if (min <= targetExtent[0]) return true; }); } else loopIncreaseInterval(function() { minNice = round(mathCeil(targetExtent[0] / interval) * interval, intervalPrecision); maxNice = round(mathFloor(targetExtent[1] / interval) * interval, intervalPrecision); var currIntervalCount = mathRound((maxNice - minNice) / interval); if (currIntervalCount <= alignToNiceSegCount) { var moreCount = alignToNiceSegCount - currIntervalCount; var moreCountPair = void 0; var mayEnhanceZero = targetExtentInfo.incl0 || isTargetLogScale; if (mayEnhanceZero && targetExtent[0] === 0) moreCountPair = [0, moreCount]; else if (mayEnhanceZero && targetExtent[1] === 0) moreCountPair = [moreCount, 0]; else { var lessHalfCount = mathFloor(moreCount / 2); moreCountPair = moreCount % 2 === 0 ? [lessHalfCount, lessHalfCount] : min + max < targetExtent[0] + targetExtent[1] ? [lessHalfCount, lessHalfCount + 1] : [lessHalfCount + 1, lessHalfCount]; } minNice = round(minNice - interval * moreCountPair[0], intervalPrecision); maxNice = round(maxNice + interval * moreCountPair[1], intervalPrecision); updateMinFromMinNice(); updateMaxFromMaxNice(); if (min <= targetExtent[0] && max >= targetExtent[1]) return true; } }); } updateIntervalOrLogScaleForNiceOrAligned(targetScale, targetMinMaxFixed, targetOldIntervalExtent, [min, max], targetOldOutermostExtent, { interval, intervalCount: alignToNiceSegCount, intervalPrecision, niceExtent: [minNice, maxNice] }); } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/coord/axisNiceTicks.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ function calcNiceForIntervalOrLogScale(scale, opt) { var isTargetLogScale = isLogScale(scale); var intervalStub = isTargetLogScale ? scale.intervalStub : scale; var fixMinMax = opt.fixMinMax || []; var oldOutermostExtent = isTargetLogScale ? scale.getExtent() : null; var oldIntervalExtent = intervalStub.getExtent(); var newIntervalExtent = intervalScaleEnsureValidExtent(oldIntervalExtent, fixMinMax, opt.rawExtentResult); intervalStub.setExtent(newIntervalExtent[0], newIntervalExtent[1]); newIntervalExtent = intervalStub.getExtent(); var config = isTargetLogScale ? logScaleCalcNiceTicks(intervalStub, opt) : intervalScaleCalcNiceTicks(intervalStub, opt); var autoIntervalPrecision = config.intervalPrecision; var autoInterval = config.interval; var userInterval = opt.userInterval; if (userInterval != null) { config.interval = userInterval; config.intervalPrecision = getIntervalPrecision(userInterval); } if (!fixMinMax[0]) newIntervalExtent[0] = round(mathFloor(newIntervalExtent[0] / autoInterval) * autoInterval, autoIntervalPrecision); if (!fixMinMax[1]) newIntervalExtent[1] = round(mathCeil(newIntervalExtent[1] / autoInterval) * autoInterval, autoIntervalPrecision); if (userInterval != null) config.niceExtent = newIntervalExtent.slice(); updateIntervalOrLogScaleForNiceOrAligned(scale, fixMinMax, oldIntervalExtent, newIntervalExtent, oldOutermostExtent, config); } function intervalScaleCalcNiceTicks(scale, opt) { var splitNumber = ensureValidSplitNumber(opt.splitNumber, 5); var span = getScaleLinearSpanEffective(scale); var minInterval = opt.minInterval; var maxInterval = opt.maxInterval; var interval = nice(span / splitNumber, true); if (minInterval != null && interval < minInterval) interval = minInterval; if (maxInterval != null && interval > maxInterval) interval = maxInterval; var intervalPrecision = getIntervalPrecision(interval); var extent = scale.getExtent(); var niceExtent = [round(mathCeil(extent[0] / interval) * interval, intervalPrecision), round(mathFloor(extent[1] / interval) * interval, intervalPrecision)]; return { interval, intervalPrecision, niceExtent }; } function logScaleCalcNiceTicks(intervalStub, opt) { var splitNumber = ensureValidSplitNumber(opt.splitNumber, 10); var intervalExtent = intervalStub.getExtent(); var span = getScaleLinearSpanEffective(intervalStub); var interval = mathMax$3(quantity(span), 1); if (splitNumber / span * interval <= .5) interval *= 10; var intervalPrecision = getIntervalPrecision(interval); var niceExtent = [round(mathCeil(intervalExtent[0] / interval) * interval, intervalPrecision), round(mathFloor(intervalExtent[1] / interval) * interval, intervalPrecision)]; return { intervalPrecision, interval, niceExtent }; } /** * NOTE: See the summary of the process of extent determination in the comment of `scaleMapper.setExtent`. * * Calculate a "nice" extent and "nice" ticks configs based on the current scale extent and ec options. * scale extent will be modified, and config may be set to the scale. * * @see SCALE_EXTENT_CONSTRUCTION for the full processing flow. */ function scaleCalcNice(axisLike) { var scale = axisLike.scale; var model = axisLike.model; var axis = model.axis; var ecModel = model.ecModel; scaleCalcNice2(scale, model, axis, ecModel, null); } /** * @see SCALE_EXTENT_CONSTRUCTION for the full processing flow. */ function scaleCalcNice2(scale, model, axis, ecModel, externalDataExtent) { var rawExtentResult = adoptScaleRawExtentInfoAndPrepare(scale, model, ecModel, axis, externalDataExtent); var isIntervalOrTime = isIntervalScale(scale) || isTimeScale(scale); scaleCalcNiceDirectly(scale, { splitNumber: model.get("splitNumber"), fixMinMax: rawExtentResult.fixMM, userInterval: model.get("interval"), minInterval: isIntervalOrTime ? model.get("minInterval") : null, maxInterval: isIntervalOrTime ? model.get("maxInterval") : null, rawExtentResult }); if (axis && ecModel) adoptScaleExtentKindMapping(axis, scale, rawExtentResult, ecModel); } function scaleCalcNiceDirectly(scale, opt) { scaleCalcNiceMethods[scale.type](scale, opt); } var scaleCalcNiceMethods = { interval: calcNiceForIntervalOrLogScale, log: calcNiceForIntervalOrLogScale, time: calcNiceForTimeScale, ordinal: noop }; //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/coord/cartesian/Grid.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ /** * Grid is a region which contains at most 4 cartesian systems * * TODO Default cartesian */ var XY_TO_MARGIN_IDX = [[3, 1], [0, 2]]; var Grid = function() { function Grid(gridModel, ecModel, api) { this.type = "grid"; this._coordsMap = {}; this._coordsList = []; this._axesMap = {}; this._axesList = []; this.axisPointerEnabled = true; this.dimensions = cartesian2DDimensions; this._initCartesian(gridModel, ecModel, api); this.model = gridModel; } Grid.prototype.getRect = function() { return this._rect; }; Grid.prototype.update = function(ecModel, api) { var axesMap = this._axesMap; each$4(this._axesList, function(axis) { scaleRawExtentInfoCreate(axis, 1); var scale = axis.scale; if (isOrdinalScale(scale)) scale.setSortInfo(axis.model.get("categorySortInfo")); }); function updateAxisTicks(axes) { var axesIndices = keys(axes); var axisNeedsAlign = []; for (var i = axesIndices.length - 1; i >= 0; i--) { var axis = axes[+axesIndices[i]]; if (axis.__alignTo) axisNeedsAlign.push(axis); else scaleCalcNice(axis); } each$4(axisNeedsAlign, function(axis) { if (incapableOfAlignNeedFallback(axis, axis.__alignTo)) scaleCalcNice(axis); else scaleCalcAlign(axis, axis.__alignTo.scale); }); } updateAxisTicks(axesMap.x); updateAxisTicks(axesMap.y); var onZeroRecords = {}; each$4(axesMap.x, function(xAxis) { fixAxisOnZero(axesMap, "y", xAxis, onZeroRecords); }); each$4(axesMap.y, function(yAxis) { fixAxisOnZero(axesMap, "x", yAxis, onZeroRecords); }); this.resize(this.model, api); }; /** * Resize the grid. * * [NOTE] * If both "grid.containLabel/grid.contain" and pixel-required-data-processing (such as, "dataSampling") * exist, circular dependency occurs in logic. * The final compromised sequence is: * 1. Calculate "axis.extent" (pixel extent) and AffineTransform based on only "grid layout options". * Not accurate if "grid.containLabel/grid.contain" is required, but it is a compromise to avoid * circular dependency. * 2. Perform "series data processing" (where "dataSampling" requires "axis.extent"). * 3. Calculate "scale.extent" (data extent) based on "processed series data". * 4. Modify "axis.extent" for "grid.containLabel/grid.contain": * 4.1. Calculate "axis labels" based on "scale.extent". * 4.2. Modify "axis.extent" by the bounding rects of "axis labels and names". */ Grid.prototype.resize = function(gridModel, api, beforeDataProcessing) { var layoutRef = createBoxLayoutReference(gridModel, api); var gridRect = this._rect = getLayoutRect(gridModel.getBoxLayoutParams(), layoutRef.refContainer); var axesMap = this._axesMap; var coordsList = this._coordsList; var optionContainLabel = gridModel.get("containLabel"); updateAllAxisExtentTransByGridRect(axesMap, gridRect); if (!beforeDataProcessing) { var axisBuilderSharedCtx = createAxisBiulders(gridRect, coordsList, axesMap, optionContainLabel, api); var noPxChange = void 0; if (optionContainLabel) if (legacyLayOutGridByContainLabel) { legacyLayOutGridByContainLabel(this._axesList, gridRect); updateAllAxisExtentTransByGridRect(axesMap, gridRect); } else noPxChange = layOutGridByOuterBounds(gridRect.clone(), "axisLabel", null, gridRect, axesMap, axisBuilderSharedCtx, layoutRef); else { var _a = prepareOuterBounds(gridModel, gridRect, layoutRef), outerBoundsRect = _a.outerBoundsRect, parsedOuterBoundsContain = _a.parsedOuterBoundsContain, outerBoundsClamp = _a.outerBoundsClamp; if (outerBoundsRect) noPxChange = layOutGridByOuterBounds(outerBoundsRect, parsedOuterBoundsContain, outerBoundsClamp, gridRect, axesMap, axisBuilderSharedCtx, layoutRef); } createOrUpdateAxesView(gridRect, axesMap, AxisTickLabelComputingKind.determine, null, noPxChange, layoutRef); each$4(this._coordsList, function(coord) { coord.calcAffineTransform(); }); } }; Grid.prototype.getAxis = function(dim, axisIndex) { var axesMapOnDim = this._axesMap[dim]; if (axesMapOnDim != null) return axesMapOnDim[axisIndex || 0]; }; Grid.prototype.getAxes = function() { return this._axesList.slice(); }; Grid.prototype.getCartesian = function(xAxisIndex, yAxisIndex) { if (xAxisIndex != null && yAxisIndex != null) { var key = "x" + xAxisIndex + "y" + yAxisIndex; return this._coordsMap[key]; } if (isObject$2(xAxisIndex)) { yAxisIndex = xAxisIndex.yAxisIndex; xAxisIndex = xAxisIndex.xAxisIndex; } for (var i = 0, coordList = this._coordsList; i < coordList.length; i++) if (coordList[i].getAxis("x").index === xAxisIndex || coordList[i].getAxis("y").index === yAxisIndex) return coordList[i]; }; Grid.prototype.getCartesians = function() { return this._coordsList.slice(); }; /** * @implements */ Grid.prototype.convertToPixel = function(ecModel, finder, value) { var target = this._findConvertTarget(finder); return target.cartesian ? target.cartesian.dataToPoint(value) : target.axis ? target.axis.toGlobalCoord(target.axis.dataToCoord(value)) : null; }; /** * @implements */ Grid.prototype.convertFromPixel = function(ecModel, finder, value) { var target = this._findConvertTarget(finder); return target.cartesian ? target.cartesian.pointToData(value) : target.axis ? target.axis.coordToData(target.axis.toLocalCoord(value)) : null; }; Grid.prototype._findConvertTarget = function(finder) { var seriesModel = finder.seriesModel; var xAxisModel = finder.xAxisModel || seriesModel && seriesModel.getReferringComponents("xAxis", SINGLE_REFERRING).models[0]; var yAxisModel = finder.yAxisModel || seriesModel && seriesModel.getReferringComponents("yAxis", SINGLE_REFERRING).models[0]; var gridModel = finder.gridModel; var coordsList = this._coordsList; var cartesian; var axis; if (seriesModel) { cartesian = seriesModel.coordinateSystem; indexOf(coordsList, cartesian) < 0 && (cartesian = null); } else if (xAxisModel && yAxisModel) cartesian = this.getCartesian(xAxisModel.componentIndex, yAxisModel.componentIndex); else if (xAxisModel) axis = this.getAxis("x", xAxisModel.componentIndex); else if (yAxisModel) axis = this.getAxis("y", yAxisModel.componentIndex); else if (gridModel) { if (gridModel.coordinateSystem === this) cartesian = this._coordsList[0]; } return { cartesian, axis }; }; /** * @implements */ Grid.prototype.containPoint = function(point) { var coord = this._coordsList[0]; if (coord) return coord.containPoint(point); }; /** * Initialize cartesian coordinate systems */ Grid.prototype._initCartesian = function(gridModel, ecModel, api) { var _this = this; var grid = this; var axisPositionUsed = { left: false, right: false, top: false, bottom: false }; var axesMap = { x: {}, y: {} }; var axesCount = { x: 0, y: 0 }; ecModel.eachComponent("xAxis", createAxisCreator("x"), this); ecModel.eachComponent("yAxis", createAxisCreator("y"), this); if (!axesCount.x || !axesCount.y) { this._axesMap = {}; this._axesList = []; return; } this._axesMap = axesMap; each$4(axesMap.x, function(xAxis, xAxisIndex) { each$4(axesMap.y, function(yAxis, yAxisIndex) { var key = "x" + xAxisIndex + "y" + yAxisIndex; var cartesian = new Cartesian2D(key); cartesian.master = _this; cartesian.model = gridModel; _this._coordsMap[key] = cartesian; _this._coordsList.push(cartesian); cartesian.addAxis(xAxis); cartesian.addAxis(yAxis); }); }); prepareAlignToInCoordSysCreate(axesMap.x); prepareAlignToInCoordSysCreate(axesMap.y); function createAxisCreator(dimName) { return function(axisModel, idx) { if (!isAxisUsedInTheGrid(axisModel, gridModel)) return; var axisPosition = axisModel.get("position"); if (dimName === "x") { if (axisPosition !== "top" && axisPosition !== "bottom") axisPosition = axisPositionUsed.bottom ? "top" : "bottom"; } else if (axisPosition !== "left" && axisPosition !== "right") axisPosition = axisPositionUsed.left ? "right" : "left"; axisPositionUsed[axisPosition] = true; var axisType = determineAxisType(axisModel); var axis = new Axis2D(dimName, createScaleByModel(axisModel, axisType, true), [0, 0], axisType, axisPosition); axis.onBand = isAxisOnBand(axis.scale, axisModel); axis.inverse = axisModel.get("inverse"); axisModel.axis = axis; axis.model = axisModel; axis.grid = grid; axis.index = idx; grid._axesList.push(axis); axesMap[dimName][idx] = axis; axesCount[dimName]++; }; } }; /** * @param dim 'x' or 'y' or 'auto' or null/undefined */ Grid.prototype.getTooltipAxes = function(dim) { var baseAxes = []; var otherAxes = []; each$4(this.getCartesians(), function(cartesian) { var baseAxis = dim != null && dim !== "auto" ? cartesian.getAxis(dim) : cartesian.getBaseAxis(); var otherAxis = cartesian.getOtherAxis(baseAxis); indexOf(baseAxes, baseAxis) < 0 && baseAxes.push(baseAxis); indexOf(otherAxes, otherAxis) < 0 && otherAxes.push(otherAxis); }); return { baseAxes, otherAxes }; }; Grid.create = function(ecModel, api) { var grids = []; ecModel.eachComponent("grid", function(gridModel, idx) { var grid = new Grid(gridModel, ecModel, api); grid.name = "grid_" + idx; grid.resize(gridModel, api, true); gridModel.coordinateSystem = grid; grids.push(grid); each$4(grid._axesList, function(axis) { scaleRawExtentInfoEnableBoxCoordSysUsage(axis, Grid.dimIdxMap); }); }); ecModel.eachSeries(function(seriesModel) { var xAxis; var yAxis; injectCoordSysByOption({ targetModel: seriesModel, coordSysType: COORD_SYS_TYPE_CARTESIAN_2D, coordSysProvider }); function coordSysProvider() { var axesModelMap = findAxisModels(seriesModel); var xAxisModel = axesModelMap.xAxisModel; var yAxisModel = axesModelMap.yAxisModel; xAxis = xAxisModel.axis; yAxis = yAxisModel.axis; return xAxisModel.getCoordSysModel().coordinateSystem.getCartesian(xAxisModel.componentIndex, yAxisModel.componentIndex); } if (xAxis && yAxis) { associateSeriesWithAxis(xAxis, seriesModel, COORD_SYS_TYPE_CARTESIAN_2D); associateSeriesWithAxis(yAxis, seriesModel, COORD_SYS_TYPE_CARTESIAN_2D); } }, this); return grids; }; Grid.dimensions = cartesian2DDimensions; Grid.dimIdxMap = createDimNameMap(cartesian2DDimensions); return Grid; }(); /** * Check if the axis is used in the specified grid. */ function isAxisUsedInTheGrid(axisModel, gridModel) { return axisModel.getCoordSysModel() === gridModel; } function fixAxisOnZero(axesMap, otherAxisDim, axis, onZeroRecords) { axis.getAxesOnZeroOf = function() { return otherAxisOnZeroOf ? [otherAxisOnZeroOf] : []; }; var otherAxes = axesMap[otherAxisDim]; var otherAxisOnZeroOf; var axisModel = axis.model; var onZero = axisModel.get(["axisLine", "onZero"]); var onZeroAxisIndex = axisModel.get(["axisLine", "onZeroAxisIndex"]); if (!onZero) return; if (onZeroAxisIndex != null) { if (canOnZeroToAxis(onZero, otherAxes[onZeroAxisIndex])) otherAxisOnZeroOf = otherAxes[onZeroAxisIndex]; } else for (var idx in otherAxes) if (hasOwn(otherAxes, idx) && canOnZeroToAxis(onZero, otherAxes[idx]) && !onZeroRecords[getOnZeroRecordKey(otherAxes[idx])]) { otherAxisOnZeroOf = otherAxes[idx]; break; } if (otherAxisOnZeroOf) onZeroRecords[getOnZeroRecordKey(otherAxisOnZeroOf)] = true; function getOnZeroRecordKey(axis) { return axis.dim + "_" + axis.index; } } /** * CAVEAT: Must not be called before `CoordinateSystem#update` due to `__dontOnMyZero`. */ function canOnZeroToAxis(onZeroOption, axis) { if (!axis) return false; var scale = axis.scale; var kindEffective = getScaleValuePositionKind(scale, 0, false); var can = axis && axis.type !== "category" && axis.type !== "time" && kindEffective !== 3; if (can && onZeroOption === "auto" && isOnAxisZeroDiscouraged(axis)) can = false; return can; } /** * [CAVEAT] This method is called before data processing stage. * Do not rely on any info that is determined afterward. */ function prepareAlignToInCoordSysCreate(axes) { var axesIndices = keys(axes); var alignTo; var axisNeedsAlign = []; for (var i = axesIndices.length - 1; i >= 0; i--) { var axis = axes[+axesIndices[i]]; if (isIntervalOrLogScale(axis.scale) && retrieveAxisBreaksOption(axis.model, axis.type, true) == null) if (axis.model.get("alignTicks") && axis.model.get("interval") == null) axisNeedsAlign.push(axis); else alignTo = axis; } if (!alignTo) alignTo = axisNeedsAlign.pop(); if (alignTo) each$4(axisNeedsAlign, function(axis) { axis.__alignTo = alignTo; }); } /** * This is just a defence code. They are unlikely to be actually `true`, * since these cases have been addressed in `prepareAlignToInCoordSysCreate`. * * Can not be called BEFORE "nice" performed. */ function incapableOfAlignNeedFallback(targetAxis, alignTo) { return hasBreaks(targetAxis.scale) || hasBreaks(alignTo.scale) || alignTo.scale.getTicks().length < 2; } function updateAxisTransform(axis, coordBase) { var axisExtent = axis.getExtent(); var axisExtentSum = axisExtent[0] + axisExtent[1]; axis.toGlobalCoord = axis.dim === "x" ? function(coord) { return coord + coordBase; } : function(coord) { return axisExtentSum - coord + coordBase; }; axis.toLocalCoord = axis.dim === "x" ? function(coord) { return coord - coordBase; } : function(coord) { return axisExtentSum - coord + coordBase; }; } function updateAllAxisExtentTransByGridRect(axesMap, gridRect) { each$4(axesMap.x, function(axis) { return updateAxisExtentTransByGridRect(axis, gridRect.x, gridRect.width); }); each$4(axesMap.y, function(axis) { return updateAxisExtentTransByGridRect(axis, gridRect.y, gridRect.height); }); } function updateAxisExtentTransByGridRect(axis, gridXY, gridWH) { var extent = [0, gridWH]; var idx = axis.inverse ? 1 : 0; axis.setExtent(extent[idx], extent[1 - idx]); updateAxisTransform(axis, gridXY); } var legacyLayOutGridByContainLabel; function layOutGridByOuterBounds(outerBoundsRect, outerBoundsContain, outerBoundsClamp, gridRect, axesMap, axisBuilderSharedCtx, layoutRef) { createOrUpdateAxesView(gridRect, axesMap, AxisTickLabelComputingKind.estimate, outerBoundsContain, false, layoutRef); var margin = [ 0, 0, 0, 0 ]; fillLabelNameOverflowOnOneDimension(0); fillLabelNameOverflowOnOneDimension(1); fillMarginOnOneDimension(gridRect, 0, NaN); fillMarginOnOneDimension(gridRect, 1, NaN); var noPxChange = find(margin, function(item) { return item > 0; }) == null; expandOrShrinkRect(gridRect, margin, true, true, outerBoundsClamp); updateAllAxisExtentTransByGridRect(axesMap, gridRect); return noPxChange; function fillLabelNameOverflowOnOneDimension(xyIdx) { each$4(axesMap[XY$1[xyIdx]], function(axis) { if (!shouldAxisShow(axis.model)) return; var sharedRecord = axisBuilderSharedCtx.ensureRecord(axis.model); var labelInfoList = sharedRecord.labelInfoList; if (labelInfoList) for (var idx = 0; idx < labelInfoList.length; idx++) { var labelInfo = labelInfoList[idx]; var proportion = axis.scale.normalize(getTickValueOutermost(axis.scale, getLabelInner(labelInfo.label).labelInfo.tick)); proportion = xyIdx === 1 ? 1 - proportion : proportion; fillMarginOnOneDimension(labelInfo.rect, xyIdx, proportion); fillMarginOnOneDimension(labelInfo.rect, 1 - xyIdx, NaN); } var nameLayout = sharedRecord.nameLayout; if (nameLayout) { var proportion = isNameLocationCenter(sharedRecord.nameLocation) ? .5 : NaN; fillMarginOnOneDimension(nameLayout.rect, xyIdx, proportion); fillMarginOnOneDimension(nameLayout.rect, 1 - xyIdx, NaN); } }); } function fillMarginOnOneDimension(itemRect, xyIdx, proportion) { var overflow1 = outerBoundsRect[XY$1[xyIdx]] - itemRect[XY$1[xyIdx]]; var overflow2 = itemRect[WH$1[xyIdx]] + itemRect[XY$1[xyIdx]] - (outerBoundsRect[WH$1[xyIdx]] + outerBoundsRect[XY$1[xyIdx]]); overflow1 = applyProportion(overflow1, 1 - proportion); overflow2 = applyProportion(overflow2, proportion); var minIdx = XY_TO_MARGIN_IDX[xyIdx][0]; var maxIdx = XY_TO_MARGIN_IDX[xyIdx][1]; margin[minIdx] = mathMax$3(margin[minIdx], overflow1); margin[maxIdx] = mathMax$3(margin[maxIdx], overflow2); } function applyProportion(overflow, proportion) { if (overflow > 0 && !eqNaN(proportion) && proportion > 1e-4) overflow /= proportion; return overflow; } } function createAxisBiulders(gridRect, cartesians, axesMap, optionContainLabel, api) { var axisBuilderSharedCtx = new AxisBuilderSharedContext(resolveAxisNameOverlapForGrid); each$4(axesMap, function(axisList) { return each$4(axisList, function(axis) { if (shouldAxisShow(axis.model)) { var defaultNameMoveOverlap = !optionContainLabel; axis.axisBuilder = createCartesianAxisViewCommonPartBuilder(gridRect, cartesians, axis.model, api, axisBuilderSharedCtx, defaultNameMoveOverlap); } }); }); return axisBuilderSharedCtx; } /** * Promote the axis-elements-building from "view render" stage to "coordinate system resize" stage. * This is aimed to resovle overlap across multiple axes, since currently it's hard to reconcile * multiple axes in "view render" stage. * * [CAUTION] But this promotion assumes that the subsequent "visual mapping" stage does not affect * this axis-elements-building; otherwise we have to refactor it again. */ function createOrUpdateAxesView(gridRect, axesMap, kind, outerBoundsContain, noPxChange, layoutRef) { var isDetermine = kind === AxisTickLabelComputingKind.determine; each$4(axesMap, function(axisList) { return each$4(axisList, function(axis) { if (shouldAxisShow(axis.model)) { updateCartesianAxisViewCommonPartBuilder(axis.axisBuilder, gridRect, axis.model); axis.axisBuilder.build(isDetermine ? { axisTickLabelDetermine: true } : { axisTickLabelEstimate: true }, { noPxChange }); } }); }); var nameMarginLevelMap = { x: 0, y: 0 }; calcNameMarginLevel(0); calcNameMarginLevel(1); function calcNameMarginLevel(xyIdx) { nameMarginLevelMap[XY$1[1 - xyIdx]] = gridRect[WH$1[xyIdx]] <= layoutRef.refContainer[WH$1[xyIdx]] * .5 ? 0 : 1 - xyIdx === 1 ? 2 : 1; } each$4(axesMap, function(axisList, xy) { return each$4(axisList, function(axis) { if (shouldAxisShow(axis.model)) { if (outerBoundsContain === "all" || isDetermine) axis.axisBuilder.build({ axisName: true }, { nameMarginLevel: nameMarginLevelMap[xy] }); if (isDetermine) axis.axisBuilder.build({ axisLine: true }); } }); }); } function prepareOuterBounds(gridModel, rawGridRect, layoutRef) { var outerBoundsRect; var optionOuterBoundsMode = gridModel.get("outerBoundsMode", true); if (optionOuterBoundsMode === "same") outerBoundsRect = rawGridRect.clone(); else if (optionOuterBoundsMode == null || optionOuterBoundsMode === "auto") outerBoundsRect = getLayoutRect(gridModel.get("outerBounds", true) || OUTER_BOUNDS_DEFAULT, layoutRef.refContainer); else if (optionOuterBoundsMode !== "none") {} var optionOuterBoundsContain = gridModel.get("outerBoundsContain", true); var parsedOuterBoundsContain; if (optionOuterBoundsContain == null || optionOuterBoundsContain === "auto") parsedOuterBoundsContain = "all"; else if (indexOf(["all", "axisLabel"], optionOuterBoundsContain) < 0) parsedOuterBoundsContain = "all"; else parsedOuterBoundsContain = optionOuterBoundsContain; var outerBoundsClamp = [parsePositionSizeOption(retrieve2(gridModel.get("outerBoundsClampWidth", true), OUTER_BOUNDS_CLAMP_DEFAULT[0]), rawGridRect.width), parsePositionSizeOption(retrieve2(gridModel.get("outerBoundsClampHeight", true), OUTER_BOUNDS_CLAMP_DEFAULT[1]), rawGridRect.height)]; return { outerBoundsRect, parsedOuterBoundsContain, outerBoundsClamp }; } var resolveAxisNameOverlapForGrid = function(cfg, ctx, axisModel, nameLayoutInfo, nameMoveDirVec, thisRecord) { var perpendicularDim = axisModel.axis.dim === "x" ? "y" : "x"; resolveAxisNameOverlapDefault(cfg, ctx, axisModel, nameLayoutInfo, nameMoveDirVec, thisRecord); if (!isNameLocationCenter(cfg.nameLocation)) each$4(ctx.recordMap[perpendicularDim], function(perpenRecord) { if (perpenRecord && perpenRecord.labelInfoList && perpenRecord.dirVec) moveIfOverlapByLinearLabels(perpenRecord.labelInfoList, perpenRecord.dirVec, nameLayoutInfo, nameMoveDirVec); }); }; //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/component/axisPointer/modelHelper.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ function collect(ecModel, api) { var result = { /** * key: makeKey(axis.model) * value: { * axis, * coordSys, * axisPointerModel, * triggerTooltip, * triggerEmphasis, * involveSeries, * snap, * seriesModels, * seriesDataCount * } */ axesInfo: {}, seriesInvolved: false, /** * key: makeKey(coordSys.model) * value: Object: key makeKey(axis.model), value: axisInfo */ coordSysAxesInfo: {}, coordSysMap: {} }; collectAxesInfo(result, ecModel, api); result.seriesInvolved && collectSeriesInfo(result, ecModel); return result; } function collectAxesInfo(result, ecModel, api) { var globalTooltipModel = ecModel.getComponent("tooltip"); var globalAxisPointerModel = ecModel.getComponent("axisPointer"); var linksOption = globalAxisPointerModel.get("link", true) || []; var linkGroups = []; each$4(api.getCoordinateSystems(), function(coordSys) { if (!coordSys.axisPointerEnabled) return; var coordSysKey = makeKey(coordSys.model); var axesInfoInCoordSys = result.coordSysAxesInfo[coordSysKey] = {}; result.coordSysMap[coordSysKey] = coordSys; var baseTooltipModel = coordSys.model.getModel("tooltip", globalTooltipModel); each$4(coordSys.getAxes(), curry$1(saveTooltipAxisInfo, false, null)); if (coordSys.getTooltipAxes && globalTooltipModel && baseTooltipModel.get("show")) { var triggerAxis = baseTooltipModel.get("trigger") === "axis"; var cross = baseTooltipModel.get(["axisPointer", "type"]) === "cross"; var tooltipAxes = coordSys.getTooltipAxes(baseTooltipModel.get(["axisPointer", "axis"])); if (triggerAxis || cross) each$4(tooltipAxes.baseAxes, curry$1(saveTooltipAxisInfo, cross ? "cross" : true, triggerAxis)); if (cross) each$4(tooltipAxes.otherAxes, curry$1(saveTooltipAxisInfo, "cross", false)); } function saveTooltipAxisInfo(fromTooltip, triggerTooltip, axis) { var axisPointerModel = axis.model.getModel("axisPointer", globalAxisPointerModel); var axisPointerShow = axisPointerModel.get("show"); if (!axisPointerShow || axisPointerShow === "auto" && !fromTooltip && !isHandleTrigger(axisPointerModel)) return; if (triggerTooltip == null) triggerTooltip = axisPointerModel.get("triggerTooltip"); axisPointerModel = fromTooltip ? makeAxisPointerModel(axis, baseTooltipModel, globalAxisPointerModel, ecModel, fromTooltip, triggerTooltip) : axisPointerModel; var snap = axisPointerModel.get("snap"); var triggerEmphasis = axisPointerModel.get("triggerEmphasis"); var axisKey = makeKey(axis.model); var involveSeries = triggerTooltip || snap || axis.type === "category"; var axisInfo = result.axesInfo[axisKey] = { key: axisKey, axis, coordSys, axisPointerModel, triggerTooltip, triggerEmphasis, involveSeries, snap, useHandle: isHandleTrigger(axisPointerModel), seriesModels: [], linkGroup: null }; axesInfoInCoordSys[axisKey] = axisInfo; result.seriesInvolved = result.seriesInvolved || involveSeries; var groupIndex = getLinkGroupIndex(linksOption, axis); if (groupIndex != null) { var linkGroup = linkGroups[groupIndex] || (linkGroups[groupIndex] = { axesInfo: {} }); linkGroup.axesInfo[axisKey] = axisInfo; linkGroup.mapper = linksOption[groupIndex].mapper; axisInfo.linkGroup = linkGroup; } } }); } function makeAxisPointerModel(axis, baseTooltipModel, globalAxisPointerModel, ecModel, fromTooltip, triggerTooltip) { var tooltipAxisPointerModel = baseTooltipModel.getModel("axisPointer"); var fields = [ "type", "snap", "lineStyle", "shadowStyle", "label", "animation", "animationDurationUpdate", "animationEasingUpdate", "z" ]; var volatileOption = {}; each$4(fields, function(field) { volatileOption[field] = clone$2(tooltipAxisPointerModel.get(field)); }); volatileOption.snap = axis.type !== "category" && !!triggerTooltip; if (tooltipAxisPointerModel.get("type") === "cross") volatileOption.type = "line"; var labelOption = volatileOption.label || (volatileOption.label = {}); labelOption.show ??= false; if (fromTooltip === "cross") { var tooltipAxisPointerLabelShow = tooltipAxisPointerModel.get(["label", "show"]); labelOption.show = tooltipAxisPointerLabelShow != null ? tooltipAxisPointerLabelShow : true; if (!triggerTooltip) { var crossStyle = volatileOption.lineStyle = tooltipAxisPointerModel.get("crossStyle"); crossStyle && defaults(labelOption, crossStyle.textStyle); } } return axis.model.getModel("axisPointer", new Model(volatileOption, globalAxisPointerModel, ecModel)); } function collectSeriesInfo(result, ecModel) { ecModel.eachSeries(function(seriesModel) { var coordSys = seriesModel.coordinateSystem; var seriesTooltipTrigger = seriesModel.get(["tooltip", "trigger"], true); var seriesTooltipShow = seriesModel.get(["tooltip", "show"], true); if (!coordSys || !coordSys.model || seriesTooltipTrigger === "none" || seriesTooltipTrigger === false || seriesTooltipTrigger === "item" || seriesTooltipShow === false || seriesModel.get(["axisPointer", "show"], true) === false) return; each$4(result.coordSysAxesInfo[makeKey(coordSys.model)], function(axisInfo) { var axis = axisInfo.axis; if (coordSys.getAxis(axis.dim) === axis) { axisInfo.seriesModels.push(seriesModel); axisInfo.seriesDataCount ??= 0; axisInfo.seriesDataCount += seriesModel.getData().count(); } }); }); } /** * For example: * { * axisPointer: { * links: [{ * xAxisIndex: [2, 4], * yAxisIndex: 'all' * }, { * xAxisId: ['a5', 'a7'], * xAxisName: 'xxx' * }] * } * } */ function getLinkGroupIndex(linksOption, axis) { var axisModel = axis.model; var dim = axis.dim; for (var i = 0; i < linksOption.length; i++) { var linkOption = linksOption[i] || {}; if (checkPropInLink(linkOption[dim + "AxisId"], axisModel.id) || checkPropInLink(linkOption[dim + "AxisIndex"], axisModel.componentIndex) || checkPropInLink(linkOption[dim + "AxisName"], axisModel.name)) return i; } } function checkPropInLink(linkPropValue, axisPropValue) { return linkPropValue === "all" || isArray(linkPropValue) && indexOf(linkPropValue, axisPropValue) >= 0 || linkPropValue === axisPropValue; } function fixValue(axisModel) { var axisInfo = getAxisInfo(axisModel); if (!axisInfo) return; var axisPointerModel = axisInfo.axisPointerModel; var scale = axisInfo.axis.scale; var option = axisPointerModel.option; var status = axisPointerModel.get("status"); var value = axisPointerModel.get("value"); if (value != null) value = scale.parse(value); var useHandle = isHandleTrigger(axisPointerModel); if (status == null) option.status = useHandle ? "show" : "hide"; var extent = scale.getExtent(); if (value == null || value > extent[1]) value = extent[1]; if (value < extent[0]) value = extent[0]; option.value = value; if (useHandle) option.status = axisInfo.axis.scale.isBlank() ? "hide" : "show"; } function getAxisInfo(axisModel) { var coordSysAxesInfo = (axisModel.ecModel.getComponent("axisPointer") || {}).coordSysAxesInfo; return coordSysAxesInfo && coordSysAxesInfo.axesInfo[makeKey(axisModel)]; } function getAxisPointerModel(axisModel) { var axisInfo = getAxisInfo(axisModel); return axisInfo && axisInfo.axisPointerModel; } function isHandleTrigger(axisPointerModel) { return !!axisPointerModel.get(["handle", "show"]); } /** * @param {module:echarts/model/Model} model * @return {string} unique key */ function makeKey(model) { return model.type + "||" + model.id; } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/component/axis/AxisView.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var axisPointerClazz = {}; /** * Base class of AxisView. */ var AxisView = function(_super) { __extends(AxisView, _super); function AxisView() { var _this = _super !== null && _super.apply(this, arguments) || this; _this.type = AxisView.type; return _this; } /** * @override */ AxisView.prototype.render = function(axisModel, ecModel, api, payload) { this.axisPointerClass && fixValue(axisModel); _super.prototype.render.apply(this, arguments); this._doUpdateAxisPointerClass(axisModel, api, true); }; /** * Action handler. */ AxisView.prototype.updateAxisPointer = function(axisModel, ecModel, api, payload) { this._doUpdateAxisPointerClass(axisModel, api, false); }; /** * @override */ AxisView.prototype.remove = function(ecModel, api) { var axisPointer = this._axisPointer; axisPointer && axisPointer.remove(api); }; /** * @override */ AxisView.prototype.dispose = function(ecModel, api) { this._disposeAxisPointer(api); _super.prototype.dispose.apply(this, arguments); }; AxisView.prototype._doUpdateAxisPointerClass = function(axisModel, api, forceRender) { var Clazz = AxisView.getAxisPointerClass(this.axisPointerClass); if (!Clazz) return; var axisPointerModel = getAxisPointerModel(axisModel); axisPointerModel ? (this._axisPointer || (this._axisPointer = new Clazz())).render(axisModel, axisPointerModel, api, forceRender) : this._disposeAxisPointer(api); }; AxisView.prototype._disposeAxisPointer = function(api) { this._axisPointer && this._axisPointer.dispose(api); this._axisPointer = null; }; AxisView.registerAxisPointerClass = function(type, clazz) { axisPointerClazz[type] = clazz; }; AxisView.getAxisPointerClass = function(type) { return type && axisPointerClazz[type]; }; AxisView.type = "axis"; return AxisView; }(ComponentView); //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/component/axis/axisSplitHelper.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var inner$3 = makeInner(); function rectCoordAxisBuildSplitArea(axisView, axisGroup, axisModel, gridModel) { var axis = axisModel.axis; if (axis.scale.isBlank()) return; var splitAreaModel = axisModel.getModel("splitArea"); var areaStyleModel = splitAreaModel.getModel("areaStyle"); var areaColors = areaStyleModel.get("color"); var gridRect = gridModel.coordinateSystem.getRect(); var ticksCoords = axis.getTicksCoords({ tickModel: splitAreaModel, breakTicks: "none", pruneByBreak: "preserve_extent_bound" }); if (!ticksCoords.length) return; var areaColorsLen = areaColors.length; var lastSplitAreaColors = inner$3(axisView).splitAreaColors; var newSplitAreaColors = createHashMap(); var colorIndex = 0; if (lastSplitAreaColors) for (var i = 0; i < ticksCoords.length; i++) { var cIndex = lastSplitAreaColors.get(ticksCoords[i].tickValue); if (cIndex != null) { colorIndex = (cIndex + (areaColorsLen - 1) * i) % areaColorsLen; break; } } var prev = axis.toGlobalCoord(ticksCoords[0].coord); var areaStyle = areaStyleModel.getAreaStyle(); areaColors = isArray(areaColors) ? areaColors : [areaColors]; for (var i = 1; i < ticksCoords.length; i++) { var tickCoord = axis.toGlobalCoord(ticksCoords[i].coord); var x = void 0; var y = void 0; var width = void 0; var height = void 0; if (axis.isHorizontal()) { x = prev; y = gridRect.y; width = tickCoord - x; height = gridRect.height; prev = x + width; } else { x = gridRect.x; y = prev; width = gridRect.width; height = tickCoord - y; prev = y + height; } var tickValue = ticksCoords[i - 1].tickValue; tickValue != null && newSplitAreaColors.set(tickValue, colorIndex); axisGroup.add(new Rect({ anid: tickValue != null ? "area_" + tickValue : null, shape: { x, y, width, height }, style: defaults({ fill: areaColors[colorIndex] }, areaStyle), autoBatch: true, silent: true })); colorIndex = (colorIndex + 1) % areaColorsLen; } inner$3(axisView).splitAreaColors = newSplitAreaColors; } function rectCoordAxisHandleRemove(axisView) { inner$3(axisView).splitAreaColors = null; } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/component/axis/CartesianAxisView.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var selfBuilderAttrs = [ "splitArea", "splitLine", "minorSplitLine", "breakArea" ]; var CartesianAxisView = function(_super) { __extends(CartesianAxisView, _super); function CartesianAxisView() { var _this = _super !== null && _super.apply(this, arguments) || this; _this.type = CartesianAxisView.type; _this.axisPointerClass = "CartesianAxisPointer"; return _this; } /** * @override */ CartesianAxisView.prototype.render = function(axisModel, ecModel, api, payload) { this.group.removeAll(); var oldAxisGroup = this._axisGroup; this._axisGroup = new Group$2(); this.group.add(this._axisGroup); if (!shouldAxisShow(axisModel)) return; this._axisGroup.add(axisModel.axis.axisBuilder.group); each$4(selfBuilderAttrs, function(name) { if (axisModel.get([name, "show"])) axisElementBuilders[name](this, this._axisGroup, axisModel, axisModel.getCoordSysModel(), api); }, this); if (!(payload && payload.type === "changeAxisOrder" && payload.isInitSort)) groupTransition(oldAxisGroup, this._axisGroup, axisModel); _super.prototype.render.call(this, axisModel, ecModel, api, payload); }; CartesianAxisView.prototype.remove = function() { rectCoordAxisHandleRemove(this); }; CartesianAxisView.type = "cartesianAxis"; return CartesianAxisView; }(AxisView); var axisElementBuilders = { splitLine: function(axisView, axisGroup, axisModel, gridModel, api) { var axis = axisModel.axis; if (axis.scale.isBlank()) return; var splitLineModel = axisModel.getModel("splitLine"); var lineStyleModel = splitLineModel.getModel("lineStyle"); var lineColors = lineStyleModel.get("color"); var showMinLine = splitLineModel.get("showMinLine") !== false; var showMaxLine = splitLineModel.get("showMaxLine") !== false; lineColors = isArray(lineColors) ? lineColors : [lineColors]; var gridRect = gridModel.coordinateSystem.getRect(); var isHorizontal = axis.isHorizontal(); var lineCount = 0; var ticksCoords = axis.getTicksCoords({ tickModel: splitLineModel, breakTicks: "none", pruneByBreak: "preserve_extent_bound" }); var p1 = []; var p2 = []; var lineStyle = lineStyleModel.getLineStyle(); for (var i = 0; i < ticksCoords.length; i++) { var tickCoord = axis.toGlobalCoord(ticksCoords[i].coord); if (i === 0 && !showMinLine || i === ticksCoords.length - 1 && !showMaxLine) continue; var tickValue = ticksCoords[i].tickValue; if (isHorizontal) { p1[0] = tickCoord; p1[1] = gridRect.y; p2[0] = tickCoord; p2[1] = gridRect.y + gridRect.height; } else { p1[0] = gridRect.x; p1[1] = tickCoord; p2[0] = gridRect.x + gridRect.width; p2[1] = tickCoord; } var colorIndex = lineCount++ % lineColors.length; var line = new Line({ anid: tickValue != null ? "line_" + tickValue : null, autoBatch: true, shape: { x1: p1[0], y1: p1[1], x2: p2[0], y2: p2[1] }, style: defaults({ stroke: lineColors[colorIndex] }, lineStyle), silent: true }); subPixelOptimizeLine(line.shape, lineStyle.lineWidth); axisGroup.add(line); } }, minorSplitLine: function(axisView, axisGroup, axisModel, gridModel, api) { var axis = axisModel.axis; var lineStyleModel = axisModel.getModel("minorSplitLine").getModel("lineStyle"); var gridRect = gridModel.coordinateSystem.getRect(); var isHorizontal = axis.isHorizontal(); var minorTicksCoords = axis.getMinorTicksCoords(); if (!minorTicksCoords.length) return; var p1 = []; var p2 = []; var lineStyle = lineStyleModel.getLineStyle(); for (var i = 0; i < minorTicksCoords.length; i++) for (var k = 0; k < minorTicksCoords[i].length; k++) { var tickCoord = axis.toGlobalCoord(minorTicksCoords[i][k].coord); if (isHorizontal) { p1[0] = tickCoord; p1[1] = gridRect.y; p2[0] = tickCoord; p2[1] = gridRect.y + gridRect.height; } else { p1[0] = gridRect.x; p1[1] = tickCoord; p2[0] = gridRect.x + gridRect.width; p2[1] = tickCoord; } var line = new Line({ anid: "minor_line_" + minorTicksCoords[i][k].tickValue, autoBatch: true, shape: { x1: p1[0], y1: p1[1], x2: p2[0], y2: p2[1] }, style: lineStyle, silent: true }); subPixelOptimizeLine(line.shape, lineStyle.lineWidth); axisGroup.add(line); } }, splitArea: function(axisView, axisGroup, axisModel, gridModel, api) { rectCoordAxisBuildSplitArea(axisView, axisGroup, axisModel, gridModel); }, breakArea: function(axisView, axisGroup, axisModel, gridModel, api) { var axisBreakHelper = getAxisBreakHelper(); var scale = axisModel.axis.scale; if (axisBreakHelper && scale.type !== "ordinal") axisBreakHelper.rectCoordBuildBreakAxis(axisGroup, axisView, axisModel, gridModel.coordinateSystem.getRect(), api); } }; var CartesianXAxisView = function(_super) { __extends(CartesianXAxisView, _super); function CartesianXAxisView() { var _this = _super !== null && _super.apply(this, arguments) || this; _this.type = CartesianXAxisView.type; return _this; } CartesianXAxisView.type = "xAxis"; return CartesianXAxisView; }(CartesianAxisView); var CartesianYAxisView = function(_super) { __extends(CartesianYAxisView, _super); function CartesianYAxisView() { var _this = _super !== null && _super.apply(this, arguments) || this; _this.type = CartesianXAxisView.type; return _this; } CartesianYAxisView.type = "yAxis"; return CartesianYAxisView; }(CartesianAxisView); //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/component/grid/installSimple.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var GridView = function(_super) { __extends(GridView, _super); function GridView() { var _this = _super !== null && _super.apply(this, arguments) || this; _this.type = "grid"; return _this; } GridView.prototype.render = function(gridModel, ecModel) { this.group.removeAll(); if (gridModel.get("show")) this.group.add(new Rect({ shape: gridModel.coordinateSystem.getRect(), style: defaults({ fill: gridModel.get("backgroundColor") }, gridModel.getItemStyle()), silent: true, z2: -1 })); }; GridView.type = "grid"; return GridView; }(ComponentView); var extraOption = { offset: 0 }; function install$8(registers) { registers.registerComponentView(GridView); registers.registerComponentModel(GridModel); registers.registerCoordinateSystem("cartesian2d", Grid); axisModelCreator(registers, "x", CartesianAxisModel, extraOption); axisModelCreator(registers, "y", CartesianAxisModel, extraOption); registers.registerComponentView(CartesianXAxisView); registers.registerComponentView(CartesianYAxisView); registers.registerPreprocessor(function(option) { if (option.xAxis && option.yAxis && !option.grid) option.grid = {}; }); } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/component/axisPointer/BaseAxisPointer.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var inner$2 = makeInner(); var clone = clone$2; var bind = bind$1; /** * Base axis pointer class in 2D. */ var BaseAxisPointer = function() { function BaseAxisPointer() { this._dragging = false; /** * In px, arbitrary value. Do not set too small, * no animation is ok for most cases. */ this.animationThreshold = 15; } /** * @implement */ BaseAxisPointer.prototype.render = function(axisModel, axisPointerModel, api, forceRender) { var value = axisPointerModel.get("value"); var status = axisPointerModel.get("status"); this._axisModel = axisModel; this._axisPointerModel = axisPointerModel; this._api = api; if (!forceRender && this._lastValue === value && this._lastStatus === status) return; this._lastValue = value; this._lastStatus = status; var group = this._group; var handle = this._handle; if (!status || status === "hide") { group && group.hide(); handle && handle.hide(); return; } group && group.show(); handle && handle.show(); var elOption = {}; this.makeElOption(elOption, value, axisModel, axisPointerModel, api); var graphicKey = elOption.graphicKey; if (graphicKey !== this._lastGraphicKey) this.clear(api); this._lastGraphicKey = graphicKey; var moveAnimation = this._moveAnimation = this.determineAnimation(axisModel, axisPointerModel); if (!group) { group = this._group = new Group$2(); this.createPointerEl(group, elOption, axisModel, axisPointerModel); this.createLabelEl(group, elOption, axisModel, axisPointerModel); api.getZr().add(group); } else { var doUpdateProps = curry$1(updateProps, axisPointerModel, moveAnimation); this.updatePointerEl(group, elOption, doUpdateProps); this.updateLabelEl(group, elOption, doUpdateProps, axisPointerModel); } updateMandatoryProps(group, axisPointerModel, true); this._renderHandle(value); }; /** * @implement */ BaseAxisPointer.prototype.remove = function(api) { this.clear(api); }; /** * @implement */ BaseAxisPointer.prototype.dispose = function(api) { this.clear(api); }; /** * @protected */ BaseAxisPointer.prototype.determineAnimation = function(axisModel, axisPointerModel) { var animation = axisPointerModel.get("animation"); var axis = axisModel.axis; var isCategoryAxis = axis.type === "category"; var useSnap = axisPointerModel.get("snap"); if (!useSnap && !isCategoryAxis) return false; if (animation === "auto" || animation == null) { var animationThreshold = this.animationThreshold; if (isCategoryAxis && calcBandWidth(axis).w > animationThreshold) return true; if (useSnap) { var seriesDataCount = getAxisInfo(axisModel).seriesDataCount; var axisExtent = axis.getExtent(); return Math.abs(axisExtent[0] - axisExtent[1]) / seriesDataCount > animationThreshold; } return false; } return animation === true; }; /** * add {pointer, label, graphicKey} to elOption * @protected */ BaseAxisPointer.prototype.makeElOption = function(elOption, value, axisModel, axisPointerModel, api) {}; /** * @protected */ BaseAxisPointer.prototype.createPointerEl = function(group, elOption, axisModel, axisPointerModel) { var pointerOption = elOption.pointer; if (pointerOption) { var pointerEl = inner$2(group).pointerEl = new graphic_exports[pointerOption.type](clone(elOption.pointer)); group.add(pointerEl); } }; /** * @protected */ BaseAxisPointer.prototype.createLabelEl = function(group, elOption, axisModel, axisPointerModel) { if (elOption.label) { var labelEl = inner$2(group).labelEl = new ZRText(clone(elOption.label)); group.add(labelEl); updateLabelShowHide(labelEl, axisPointerModel); } }; /** * @protected */ BaseAxisPointer.prototype.updatePointerEl = function(group, elOption, updateProps) { var pointerEl = inner$2(group).pointerEl; if (pointerEl && elOption.pointer) { pointerEl.setStyle(elOption.pointer.style); updateProps(pointerEl, { shape: elOption.pointer.shape }); } }; /** * @protected */ BaseAxisPointer.prototype.updateLabelEl = function(group, elOption, updateProps, axisPointerModel) { var labelEl = inner$2(group).labelEl; if (labelEl) { labelEl.setStyle(elOption.label.style); updateProps(labelEl, { x: elOption.label.x, y: elOption.label.y }); updateLabelShowHide(labelEl, axisPointerModel); } }; /** * @private */ BaseAxisPointer.prototype._renderHandle = function(value) { if (this._dragging || !this.updateHandleTransform) return; var axisPointerModel = this._axisPointerModel; var zr = this._api.getZr(); var handle = this._handle; var handleModel = axisPointerModel.getModel("handle"); var status = axisPointerModel.get("status"); if (!handleModel.get("show") || !status || status === "hide") { handle && zr.remove(handle); this._handle = null; return; } var isInit; if (!this._handle) { isInit = true; handle = this._handle = createIcon(handleModel.get("icon"), { cursor: "move", draggable: true, onmousemove: function(e) { stop(e.event); }, onmousedown: bind(this._onHandleDragMove, this, 0, 0), drift: bind(this._onHandleDragMove, this), ondragend: bind(this._onHandleDragEnd, this) }); zr.add(handle); } updateMandatoryProps(handle, axisPointerModel, false); handle.setStyle(handleModel.getItemStyle(null, [ "color", "borderColor", "borderWidth", "opacity", "shadowColor", "shadowBlur", "shadowOffsetX", "shadowOffsetY" ])); var handleSize = handleModel.get("size"); if (!isArray(handleSize)) handleSize = [handleSize, handleSize]; handle.scaleX = handleSize[0] / 2; handle.scaleY = handleSize[1] / 2; createOrUpdate(this, "_doDispatchAxisPointer", handleModel.get("throttle") || 0, "fixRate"); this._moveHandleToValue(value, isInit); }; BaseAxisPointer.prototype._moveHandleToValue = function(value, isInit) { updateProps(this._axisPointerModel, !isInit && this._moveAnimation, this._handle, getHandleTransProps(this.getHandleTransform(value, this._axisModel, this._axisPointerModel))); }; BaseAxisPointer.prototype._onHandleDragMove = function(dx, dy) { var handle = this._handle; if (!handle) return; this._dragging = true; var trans = this.updateHandleTransform(getHandleTransProps(handle), [dx, dy], this._axisModel, this._axisPointerModel); this._payloadInfo = trans; handle.stopAnimation(); handle.attr(getHandleTransProps(trans)); inner$2(handle).lastProp = null; this._doDispatchAxisPointer(); }; /** * Throttled method. */ BaseAxisPointer.prototype._doDispatchAxisPointer = function() { if (!this._handle) return; var payloadInfo = this._payloadInfo; var axisModel = this._axisModel; this._api.dispatchAction({ type: "updateAxisPointer", x: payloadInfo.cursorPoint[0], y: payloadInfo.cursorPoint[1], tooltipOption: payloadInfo.tooltipOption, axesInfo: [{ axisDim: axisModel.axis.dim, axisIndex: axisModel.componentIndex }] }); }; BaseAxisPointer.prototype._onHandleDragEnd = function() { this._dragging = false; if (!this._handle) return; var value = this._axisPointerModel.get("value"); this._moveHandleToValue(value); this._api.dispatchAction({ type: "hideTip" }); }; /** * @private */ BaseAxisPointer.prototype.clear = function(api) { this._lastValue = null; this._lastStatus = null; var zr = api.getZr(); var group = this._group; var handle = this._handle; if (zr && group) { this._lastGraphicKey = null; group && zr.remove(group); handle && zr.remove(handle); this._group = null; this._handle = null; this._payloadInfo = null; } clear(this, "_doDispatchAxisPointer"); }; /** * @protected */ BaseAxisPointer.prototype.doClear = function() {}; BaseAxisPointer.prototype.buildLabel = function(xy, wh, xDimIndex) { xDimIndex = xDimIndex || 0; return { x: xy[xDimIndex], y: xy[1 - xDimIndex], width: wh[xDimIndex], height: wh[1 - xDimIndex] }; }; return BaseAxisPointer; }(); function updateProps(animationModel, moveAnimation, el, props) { if (!propsEqual(inner$2(el).lastProp, props)) { inner$2(el).lastProp = props; moveAnimation ? updateProps$1(el, props, animationModel) : (el.stopAnimation(), el.attr(props)); } } function propsEqual(lastProps, newProps) { if (isObject$2(lastProps) && isObject$2(newProps)) { var equals_1 = true; each$4(newProps, function(item, key) { equals_1 = equals_1 && propsEqual(lastProps[key], item); }); return !!equals_1; } else return lastProps === newProps; } function updateLabelShowHide(labelEl, axisPointerModel) { labelEl[axisPointerModel.get(["label", "show"]) ? "show" : "hide"](); } function getHandleTransProps(trans) { return { x: trans.x || 0, y: trans.y || 0, rotation: trans.rotation || 0 }; } function updateMandatoryProps(group, axisPointerModel, silent) { var z = axisPointerModel.get("z"); var zlevel = axisPointerModel.get("zlevel"); group && group.traverse(function(el) { if (el.type !== "group") { z != null && (el.z = z); zlevel != null && (el.zlevel = zlevel); el.silent = silent; } }); } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/component/axisPointer/viewHelper.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ function buildElStyle(axisPointerModel) { var axisPointerType = axisPointerModel.get("type"); var styleModel = axisPointerModel.getModel(axisPointerType + "Style"); var style; if (axisPointerType === "line") { style = styleModel.getLineStyle(); style.fill = null; } else if (axisPointerType === "shadow") { style = styleModel.getAreaStyle(); style.stroke = null; } return style; } /** * @param {Function} labelPos {align, verticalAlign, position} */ function buildLabelElOption(elOption, axisModel, axisPointerModel, api, labelPos) { var text = getValueLabel(axisPointerModel.get("value"), axisModel.axis, axisModel.ecModel, axisPointerModel.get("seriesDataIndices"), { precision: axisPointerModel.get(["label", "precision"]), formatter: axisPointerModel.get(["label", "formatter"]) }); var labelModel = axisPointerModel.getModel("label"); var paddings = normalizeCssArray(labelModel.get("padding") || 0); var font = labelModel.getFont(); var textRect = getBoundingRect(text, font); var position = labelPos.position; var width = textRect.width + paddings[1] + paddings[3]; var height = textRect.height + paddings[0] + paddings[2]; var align = labelPos.align; align === "right" && (position[0] -= width); align === "center" && (position[0] -= width / 2); var verticalAlign = labelPos.verticalAlign; verticalAlign === "bottom" && (position[1] -= height); verticalAlign === "middle" && (position[1] -= height / 2); confineInContainer(position, width, height, api); var bgColor = labelModel.get("backgroundColor"); if (!bgColor || bgColor === "auto") bgColor = axisModel.get([ "axisLine", "lineStyle", "color" ]); elOption.label = { x: position[0], y: position[1], style: createTextStyle(labelModel, { text, font, fill: labelModel.getTextColor(), padding: paddings, backgroundColor: bgColor }), z2: 10 }; } function confineInContainer(position, width, height, api) { var viewWidth = api.getWidth(); var viewHeight = api.getHeight(); position[0] = Math.min(position[0] + width, viewWidth) - width; position[1] = Math.min(position[1] + height, viewHeight) - height; position[0] = Math.max(position[0], 0); position[1] = Math.max(position[1], 0); } function getValueLabel(value, axis, ecModel, seriesDataIndices, opt) { value = axis.scale.parse(value); var text = axis.scale.getLabel({ value }, { precision: opt.precision }); var formatter = opt.formatter; if (formatter) { var params_1 = { value: getAxisRawValue(axis, { value }), axisDimension: axis.dim, axisIndex: axis.index, seriesData: [] }; each$4(seriesDataIndices, function(idxItem) { var series = ecModel.getSeriesByIndex(idxItem.seriesIndex); var dataIndex = idxItem.dataIndexInside; var dataParams = series && series.getDataParams(dataIndex); dataParams && params_1.seriesData.push(dataParams); }); if (isString(formatter)) text = formatter.replace("{value}", text); else if (isFunction(formatter)) text = formatter(params_1); } return text; } function getTransformedPosition(axis, value, layoutInfo) { var transform = create$1(); rotate(transform, transform, layoutInfo.rotation); translate(transform, transform, layoutInfo.position); return applyTransform([axis.dataToCoord(value), (layoutInfo.labelOffset || 0) + (layoutInfo.labelDirection || 1) * (layoutInfo.labelMargin || 0)], transform); } function buildCartesianSingleLabelElOption(value, elOption, layoutInfo, axisModel, axisPointerModel, api) { var textLayout = AxisBuilder.innerTextLayout(layoutInfo.rotation, 0, layoutInfo.labelDirection); layoutInfo.labelMargin = axisPointerModel.get(["label", "margin"]); buildLabelElOption(elOption, axisModel, axisPointerModel, api, { position: getTransformedPosition(axisModel.axis, value, layoutInfo), align: textLayout.textAlign, verticalAlign: textLayout.textVerticalAlign }); } function makeLineShape(p1, p2, xDimIndex) { xDimIndex = xDimIndex || 0; return { x1: p1[xDimIndex], y1: p1[1 - xDimIndex], x2: p2[xDimIndex], y2: p2[1 - xDimIndex] }; } function makeRectShape(xy, wh, xDimIndex) { xDimIndex = xDimIndex || 0; return { x: xy[xDimIndex], y: xy[1 - xDimIndex], width: wh[xDimIndex], height: wh[1 - xDimIndex] }; } function calcAxisPointerShadowBandWidth(axis, seriesDataIndices, ecModel) { return calcBandWidth(axis, { fromStat: { sers: map$1(seriesDataIndices, function(item) { return ecModel.getSeriesByIndex(item.seriesIndex); }) }, min: 1 }).w; } /** * Return a [min, max] in pixel clampped by `axisExtent`. */ function calcAxisPointerShadowEnds(val, axisExtent, bandWidth) { return [mathMax$3(mathMin$3(axisExtent[0], axisExtent[1]), val - bandWidth / 2), mathMin$3(val + bandWidth / 2, mathMax$3(axisExtent[0], axisExtent[1]))]; } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/component/axisPointer/CartesianAxisPointer.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var CartesianAxisPointer = function(_super) { __extends(CartesianAxisPointer, _super); function CartesianAxisPointer() { return _super !== null && _super.apply(this, arguments) || this; } /** * @override */ CartesianAxisPointer.prototype.makeElOption = function(elOption, value, axisModel, axisPointerModel, api) { var axis = axisModel.axis; var grid = axis.grid; var axisPointerType = axisPointerModel.get("type"); var thisExtent = axis.getGlobalExtent(); var otherExtent = getCartesian(grid, axis).getOtherAxis(axis).getGlobalExtent(); var pixelValue = axis.toGlobalCoord(axis.dataToCoord(value, true)); if (axisPointerType && axisPointerType !== "none") { var elStyle = buildElStyle(axisPointerModel); var pointerOption = pointerShapeBuilder[axisPointerType](axis, pixelValue, thisExtent, otherExtent, axisPointerModel.get("seriesDataIndices"), axisPointerModel.ecModel); pointerOption.style = elStyle; elOption.graphicKey = pointerOption.type; elOption.pointer = pointerOption; } buildCartesianSingleLabelElOption(value, elOption, layout(grid.getRect(), axisModel), axisModel, axisPointerModel, api); }; /** * @override */ CartesianAxisPointer.prototype.getHandleTransform = function(value, axisModel, axisPointerModel) { var layoutInfo = layout(axisModel.axis.grid.getRect(), axisModel, { labelInside: false }); layoutInfo.labelMargin = axisPointerModel.get(["handle", "margin"]); var pos = getTransformedPosition(axisModel.axis, value, layoutInfo); return { x: pos[0], y: pos[1], rotation: layoutInfo.rotation + (layoutInfo.labelDirection < 0 ? Math.PI : 0) }; }; /** * @override */ CartesianAxisPointer.prototype.updateHandleTransform = function(transform, delta, axisModel, axisPointerModel) { var axis = axisModel.axis; var grid = axis.grid; var axisExtent = axis.getGlobalExtent(true); var otherExtent = getCartesian(grid, axis).getOtherAxis(axis).getGlobalExtent(); var dimIndex = axis.dim === "x" ? 0 : 1; var currPosition = [transform.x, transform.y]; currPosition[dimIndex] += delta[dimIndex]; currPosition[dimIndex] = mathMin$3(axisExtent[1], currPosition[dimIndex]); currPosition[dimIndex] = mathMax$3(axisExtent[0], currPosition[dimIndex]); var cursorOtherValue = (otherExtent[1] + otherExtent[0]) / 2; var cursorPoint = [cursorOtherValue, cursorOtherValue]; cursorPoint[dimIndex] = currPosition[dimIndex]; return { x: currPosition[0], y: currPosition[1], rotation: transform.rotation, cursorPoint, tooltipOption: [{ verticalAlign: "middle" }, { align: "center" }][dimIndex] }; }; return CartesianAxisPointer; }(BaseAxisPointer); function getCartesian(grid, axis) { var opt = {}; opt[axis.dim + "AxisIndex"] = axis.index; return grid.getCartesian(opt); } var pointerShapeBuilder = { line: function(axis, pixelValue, thisExtent, otherExtent) { return { type: "Line", subPixelOptimize: true, shape: makeLineShape([pixelValue, otherExtent[0]], [pixelValue, otherExtent[1]], getAxisDimIndex(axis)) }; }, shadow: function(axis, pixelValue, thisExtent, otherExtent, seriesDataIndices, ecModel) { var bandWidth = calcAxisPointerShadowBandWidth(axis, seriesDataIndices, ecModel); var otherSpan = otherExtent[1] - otherExtent[0]; var _a = calcAxisPointerShadowEnds(pixelValue, thisExtent, bandWidth), min = _a[0], max = _a[1]; return { type: "Rect", shape: makeRectShape([min, otherExtent[0]], [max - min, otherSpan], getAxisDimIndex(axis)) }; } }; function getAxisDimIndex(axis) { return axis.dim === "x" ? 0 : 1; } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/component/axisPointer/AxisPointerModel.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var AxisPointerModel = function(_super) { __extends(AxisPointerModel, _super); function AxisPointerModel() { var _this = _super !== null && _super.apply(this, arguments) || this; _this.type = AxisPointerModel.type; return _this; } AxisPointerModel.type = "axisPointer"; AxisPointerModel.defaultOption = { show: "auto", z: 50, type: "line", snap: false, triggerTooltip: true, triggerEmphasis: true, value: null, status: null, link: [], animation: null, animationDurationUpdate: 200, lineStyle: { color: tokens.color.border, width: 1, type: "dashed" }, shadowStyle: { color: tokens.color.shadowTint }, label: { show: true, formatter: null, precision: "auto", margin: 3, color: tokens.color.neutral00, padding: [ 5, 7, 5, 7 ], backgroundColor: tokens.color.accent60, borderColor: null, borderWidth: 0, borderRadius: 3 }, handle: { show: false, icon: "M10.7,11.9v-1.3H9.3v1.3c-4.9,0.3-8.8,4.4-8.8,9.4c0,5,3.9,9.1,8.8,9.4h1.3c4.9-0.3,8.8-4.4,8.8-9.4C19.5,16.3,15.6,12.2,10.7,11.9z M13.3,24.4H6.7v-1.2h6.6z M13.3,22H6.7v-1.2h6.6z M13.3,19.6H6.7v-1.2h6.6z", size: 45, margin: 50, color: tokens.color.accent40, throttle: 40 } }; return AxisPointerModel; }(ComponentModel); //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/component/axisPointer/globalListener.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var inner$1 = makeInner(); var each$1 = each$4; function register$1(key, api, handler) { if (env.node) return; var zr = api.getZr(); inner$1(zr).records || (inner$1(zr).records = {}); initGlobalListeners(zr, api); var record = inner$1(zr).records[key] || (inner$1(zr).records[key] = {}); record.handler = handler; } function initGlobalListeners(zr, api) { if (inner$1(zr).initialized) return; inner$1(zr).initialized = true; useHandler("click", curry$1(doEnter, "click")); useHandler("mousemove", curry$1(doEnter, "mousemove")); useHandler("mousewheel", curry$1(doEnter, "mousewheel")); useHandler("globalout", onLeave); function useHandler(eventType, cb) { zr.on(eventType, function(e) { var dis = makeDispatchAction$1(api); each$1(inner$1(zr).records, function(record) { record && cb(record, e, dis.dispatchAction); }); dispatchTooltipFinally(dis.pendings, api); }); } } function dispatchTooltipFinally(pendings, api) { var showLen = pendings.showTip.length; var hideLen = pendings.hideTip.length; var actuallyPayload; if (showLen) actuallyPayload = pendings.showTip[showLen - 1]; else if (hideLen) actuallyPayload = pendings.hideTip[hideLen - 1]; if (actuallyPayload) { actuallyPayload.dispatchAction = null; api.dispatchAction(actuallyPayload); } } function onLeave(record, e, dispatchAction) { record.handler("leave", null, dispatchAction); } function doEnter(currTrigger, record, e, dispatchAction) { record.handler(currTrigger, e, dispatchAction); } function makeDispatchAction$1(api) { var pendings = { showTip: [], hideTip: [] }; var dispatchAction = function(payload) { var pendingList = pendings[payload.type]; if (pendingList) pendingList.push(payload); else { payload.dispatchAction = dispatchAction; api.dispatchAction(payload); } }; return { dispatchAction, pendings }; } function unregister(key, api) { if (env.node) return; var zr = api.getZr(); if ((inner$1(zr).records || {})[key]) inner$1(zr).records[key] = null; } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/component/axisPointer/AxisPointerView.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var AxisPointerView = function(_super) { __extends(AxisPointerView, _super); function AxisPointerView() { var _this = _super !== null && _super.apply(this, arguments) || this; _this.type = AxisPointerView.type; return _this; } AxisPointerView.prototype.render = function(globalAxisPointerModel, ecModel, api) { var globalTooltipModel = ecModel.getComponent("tooltip"); var triggerOn = globalAxisPointerModel.get("triggerOn") || globalTooltipModel && globalTooltipModel.get("triggerOn") || "mousemove|click|mousewheel"; register$1("axisPointer", api, function(currTrigger, e, dispatchAction) { if (triggerOn !== "none" && (currTrigger === "leave" || triggerOn.indexOf(currTrigger) >= 0)) dispatchAction({ type: "updateAxisPointer", currTrigger, x: e && e.offsetX, y: e && e.offsetY }); }); }; AxisPointerView.prototype.remove = function(ecModel, api) { unregister("axisPointer", api); }; AxisPointerView.prototype.dispose = function(ecModel, api) { unregister("axisPointer", api); }; AxisPointerView.type = "axisPointer"; return AxisPointerView; }(ComponentView); //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/component/axisPointer/findPointFromSeries.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ /** * @param finder contains {seriesIndex, dataIndex, dataIndexInside} * @param ecModel * @return {point: [x, y], el: ...} point Will not be null. */ function findPointFromSeries(finder, ecModel) { var point = []; var seriesIndex = finder.seriesIndex; var seriesModel; if (seriesIndex == null || !(seriesModel = ecModel.getSeriesByIndex(seriesIndex))) return { point: [] }; var data = seriesModel.getData(); var dataIndex = queryDataIndex(data, finder); if (dataIndex == null || dataIndex < 0 || isArray(dataIndex)) return { point: [] }; var el = data.getItemGraphicEl(dataIndex); var coordSys = seriesModel.coordinateSystem; if (seriesModel.getTooltipPosition) point = seriesModel.getTooltipPosition(dataIndex) || []; else if (coordSys && coordSys.dataToPoint) if (finder.isStacked) { var baseAxis = coordSys.getBaseAxis(); var valueAxisDim = coordSys.getOtherAxis(baseAxis).dim; var baseAxisDim = baseAxis.dim; var baseDataOffset = valueAxisDim === "x" || valueAxisDim === "radius" ? 1 : 0; var baseDim = data.mapDimension(baseAxisDim); var stackedData = []; stackedData[baseDataOffset] = data.get(baseDim, dataIndex); stackedData[1 - baseDataOffset] = data.get(data.getCalculationInfo("stackResultDimension"), dataIndex); point = coordSys.dataToPoint(stackedData) || []; } else point = coordSys.dataToPoint(data.getValues(map$1(coordSys.dimensions, function(dim) { return data.mapDimension(dim); }), dataIndex)) || []; else if (el) { var rect = el.getBoundingRect().clone(); rect.applyTransform(el.transform); point = [rect.x + rect.width / 2, rect.y + rect.height / 2]; } return { point, el }; } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/component/axisPointer/axisTrigger.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var inner = makeInner(); /** * Basic logic: check all axis, if they do not demand show/highlight, * then hide/downplay them. * * @return content of event obj for echarts.connect. */ function axisTrigger(payload, ecModel, api) { var currTrigger = payload.currTrigger; var point = [payload.x, payload.y]; var finder = payload; var dispatchAction = payload.dispatchAction || bind$1(api.dispatchAction, api); var coordSysAxesInfo = ecModel.getComponent("axisPointer").coordSysAxesInfo; if (!coordSysAxesInfo) return; if (illegalPoint(point)) point = findPointFromSeries({ seriesIndex: finder.seriesIndex, dataIndex: finder.dataIndex }, ecModel).point; var isIllegalPoint = illegalPoint(point); var inputAxesInfo = finder.axesInfo; var axesInfo = coordSysAxesInfo.axesInfo; var shouldHide = currTrigger === "leave" || illegalPoint(point); var outputPayload = {}; var showValueMap = {}; var dataByCoordSys = { list: [], map: {} }; var updaters = { showPointer: curry$1(showPointer, showValueMap), showTooltip: curry$1(showTooltip, dataByCoordSys) }; each$4(coordSysAxesInfo.coordSysMap, function(coordSys, coordSysKey) { var coordSysContainsPoint = isIllegalPoint || coordSys.containPoint(point); each$4(coordSysAxesInfo.coordSysAxesInfo[coordSysKey], function(axisInfo, key) { var axis = axisInfo.axis; var inputAxisInfo = findInputAxisInfo(inputAxesInfo, axisInfo); if (!shouldHide && coordSysContainsPoint && (!inputAxesInfo || inputAxisInfo)) { var val = inputAxisInfo && inputAxisInfo.value; if (val == null && !isIllegalPoint) val = axis.pointToData(point); val != null && processOnAxis(axisInfo, val, updaters, false, outputPayload); } }); }); var linkTriggers = {}; each$4(axesInfo, function(tarAxisInfo, tarKey) { var linkGroup = tarAxisInfo.linkGroup; if (linkGroup && !showValueMap[tarKey]) each$4(linkGroup.axesInfo, function(srcAxisInfo, srcKey) { var srcValItem = showValueMap[srcKey]; if (srcAxisInfo !== tarAxisInfo && srcValItem) { var val = srcValItem.value; linkGroup.mapper && (val = tarAxisInfo.axis.scale.parse(linkGroup.mapper(val, makeMapperParam(srcAxisInfo), makeMapperParam(tarAxisInfo)))); linkTriggers[tarAxisInfo.key] = val; } }); }); each$4(linkTriggers, function(val, tarKey) { processOnAxis(axesInfo[tarKey], val, updaters, true, outputPayload); }); updateModelActually(showValueMap, axesInfo, outputPayload); dispatchTooltipActually(dataByCoordSys, point, payload, dispatchAction); dispatchHighDownActually(axesInfo, dispatchAction, api); return outputPayload; } function processOnAxis(axisInfo, newValue, updaters, noSnap, outputFinder) { var axis = axisInfo.axis; if (axis.scale.isBlank() || !axis.containData(newValue)) return; if (!axisInfo.involveSeries) { updaters.showPointer(axisInfo, newValue); return; } var payloadInfo = buildPayloadsBySeries(newValue, axisInfo); var payloadBatch = payloadInfo.payloadBatch; var snapToValue = payloadInfo.snapToValue; if (payloadBatch[0] && outputFinder.seriesIndex == null) extend(outputFinder, payloadBatch[0]); if (!noSnap && axisInfo.snap) { if (axis.containData(snapToValue) && snapToValue != null) newValue = snapToValue; } updaters.showPointer(axisInfo, newValue, payloadBatch); updaters.showTooltip(axisInfo, payloadInfo, snapToValue); } function buildPayloadsBySeries(value, axisInfo) { var axis = axisInfo.axis; var dim = axis.dim; var snapToValue = value; var payloadBatch = []; var minDist = Number.MAX_VALUE; var minDiff = -1; each$4(axisInfo.seriesModels, function(series, idx) { var dataDim = series.getData().mapDimensionsAll(dim); var seriesNestestValue; var dataIndices; if (series.getAxisTooltipData) { var result = series.getAxisTooltipData(dataDim, value, axis); dataIndices = result.dataIndices; seriesNestestValue = result.nestestValue; } else { dataIndices = series.indicesOfNearest(dim, dataDim[0], value, axis.type === "category" ? .5 : null); if (!dataIndices.length) return; seriesNestestValue = series.getData().get(dataDim[0], dataIndices[0]); } if (!isNullableNumberFinite(seriesNestestValue)) return; var diff = value - seriesNestestValue; var dist = Math.abs(diff); if (dist <= minDist) { if (dist < minDist || diff >= 0 && minDiff < 0) { minDist = dist; minDiff = diff; snapToValue = seriesNestestValue; payloadBatch.length = 0; } each$4(dataIndices, function(dataIndex) { payloadBatch.push({ seriesIndex: series.seriesIndex, dataIndexInside: dataIndex, dataIndex: series.getData().getRawIndex(dataIndex) }); }); } }); return { payloadBatch, snapToValue }; } function showPointer(showValueMap, axisInfo, value, payloadBatch) { showValueMap[axisInfo.key] = { value, payloadBatch }; } function showTooltip(dataByCoordSys, axisInfo, payloadInfo, value) { var payloadBatch = payloadInfo.payloadBatch; var axis = axisInfo.axis; var axisModel = axis.model; var axisPointerModel = axisInfo.axisPointerModel; if (!axisInfo.triggerTooltip || !payloadBatch.length) return; var coordSysModel = axisInfo.coordSys.model; var coordSysKey = makeKey(coordSysModel); var coordSysItem = dataByCoordSys.map[coordSysKey]; if (!coordSysItem) { coordSysItem = dataByCoordSys.map[coordSysKey] = { coordSysId: coordSysModel.id, coordSysIndex: coordSysModel.componentIndex, coordSysType: coordSysModel.type, coordSysMainType: coordSysModel.mainType, dataByAxis: [] }; dataByCoordSys.list.push(coordSysItem); } coordSysItem.dataByAxis.push({ axisDim: axis.dim, axisIndex: axisModel.componentIndex, axisType: axisModel.type, axisId: axisModel.id, value, valueLabelOpt: { precision: axisPointerModel.get(["label", "precision"]), formatter: axisPointerModel.get(["label", "formatter"]) }, seriesDataIndices: payloadBatch.slice() }); } function updateModelActually(showValueMap, axesInfo, outputPayload) { var outputAxesInfo = outputPayload.axesInfo = []; each$4(axesInfo, function(axisInfo, key) { var option = axisInfo.axisPointerModel.option; var valItem = showValueMap[key]; if (valItem) { !axisInfo.useHandle && (option.status = "show"); option.value = valItem.value; option.seriesDataIndices = (valItem.payloadBatch || []).slice(); } else !axisInfo.useHandle && (option.status = "hide"); option.status === "show" && outputAxesInfo.push({ axisDim: axisInfo.axis.dim, axisIndex: axisInfo.axis.model.componentIndex, value: option.value }); }); } function dispatchTooltipActually(dataByCoordSys, point, payload, dispatchAction) { if (illegalPoint(point) || !dataByCoordSys.list.length) { dispatchAction({ type: "hideTip" }); return; } var sampleItem = ((dataByCoordSys.list[0].dataByAxis[0] || {}).seriesDataIndices || [])[0] || {}; dispatchAction({ type: "showTip", escapeConnect: true, x: point[0], y: point[1], tooltipOption: payload.tooltipOption, position: payload.position, dataIndexInside: sampleItem.dataIndexInside, dataIndex: sampleItem.dataIndex, seriesIndex: sampleItem.seriesIndex, dataByCoordSys: dataByCoordSys.list }); } function dispatchHighDownActually(axesInfo, dispatchAction, api) { var zr = api.getZr(); var highDownKey = "axisPointerLastHighlights"; var lastHighlights = inner(zr)[highDownKey] || {}; var newHighlights = inner(zr)[highDownKey] = {}; each$4(axesInfo, function(axisInfo, key) { var option = axisInfo.axisPointerModel.option; option.status === "show" && axisInfo.triggerEmphasis && each$4(option.seriesDataIndices, function(batchItem) { newHighlights[batchItem.seriesIndex + "|" + batchItem.dataIndex] = batchItem; }); }); var toHighlight = []; var toDownplay = []; function makeHighDownItem(batchItem) { return { seriesIndex: batchItem.seriesIndex, dataIndex: batchItem.dataIndex }; } each$4(lastHighlights, function(batchItem, key) { !newHighlights[key] && toDownplay.push(makeHighDownItem(batchItem)); }); each$4(newHighlights, function(batchItem, key) { !lastHighlights[key] && toHighlight.push(makeHighDownItem(batchItem)); }); toDownplay.length && api.dispatchAction({ type: "downplay", escapeConnect: true, notBlur: true, batch: toDownplay }); toHighlight.length && api.dispatchAction({ type: "highlight", escapeConnect: true, notBlur: true, batch: toHighlight }); } function findInputAxisInfo(inputAxesInfo, axisInfo) { for (var i = 0; i < (inputAxesInfo || []).length; i++) { var inputAxisInfo = inputAxesInfo[i]; if (axisInfo.axis.dim === inputAxisInfo.axisDim && axisInfo.axis.model.componentIndex === inputAxisInfo.axisIndex) return inputAxisInfo; } } function makeMapperParam(axisInfo) { var axisModel = axisInfo.axis.model; var item = {}; var dim = item.axisDim = axisInfo.axis.dim; item.axisIndex = item[dim + "AxisIndex"] = axisModel.componentIndex; item.axisName = item[dim + "AxisName"] = axisModel.name; item.axisId = item[dim + "AxisId"] = axisModel.id; return item; } function illegalPoint(point) { return !point || point[0] == null || isNaN(point[0]) || point[1] == null || isNaN(point[1]); } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/component/axisPointer/install.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ function install$7(registers) { AxisView.registerAxisPointerClass("CartesianAxisPointer", CartesianAxisPointer); registers.registerComponentModel(AxisPointerModel); registers.registerComponentView(AxisPointerView); registers.registerPreprocessor(function(option) { if (option) { (!option.axisPointer || option.axisPointer.length === 0) && (option.axisPointer = {}); var link = option.axisPointer.link; if (link && !isArray(link)) option.axisPointer.link = [link]; } }); registers.registerProcessor(registers.PRIORITY.PROCESSOR.STATISTIC, { overallReset: function(ecModel, api) { ecModel.getComponent("axisPointer").coordSysAxesInfo = collect(ecModel, api); } }); registers.registerAction({ type: "updateAxisPointer", event: "updateAxisPointer", update: ":updateAxisPointer" }, axisTrigger); } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/component/grid/install.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ function install$6(registers) { use(install$8); use(install$7); } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/component/helper/listComponent.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ function makeBackground(rect, componentModel) { var padding = normalizeCssArray(componentModel.get("padding")); var style = componentModel.getItemStyle(["color", "opacity"]); style.fill = componentModel.get("backgroundColor"); return new Rect({ shape: { x: rect.x - padding[3], y: rect.y - padding[0], width: rect.width + padding[1] + padding[3], height: rect.height + padding[0] + padding[2], r: componentModel.get("borderRadius") }, style, silent: true, z2: -1 }); } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/component/tooltip/TooltipModel.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var TooltipModel = function(_super) { __extends(TooltipModel, _super); function TooltipModel() { var _this = _super !== null && _super.apply(this, arguments) || this; _this.type = TooltipModel.type; return _this; } TooltipModel.type = "tooltip"; TooltipModel.dependencies = ["axisPointer"]; TooltipModel.defaultOption = { z: 60, show: true, showContent: true, trigger: "item", triggerOn: "mousemove|click|mousewheel", alwaysShowContent: false, renderMode: "auto", confine: null, showDelay: 0, hideDelay: 100, transitionDuration: .4, displayTransition: true, enterable: false, backgroundColor: tokens.color.neutral00, shadowBlur: 10, shadowColor: "rgba(0, 0, 0, .2)", shadowOffsetX: 1, shadowOffsetY: 2, borderRadius: 4, borderWidth: 1, defaultBorderColor: tokens.color.border, padding: null, extraCssText: "", axisPointer: { type: "line", axis: "auto", animation: "auto", animationDurationUpdate: 200, animationEasingUpdate: "exponentialOut", crossStyle: { color: tokens.color.borderShade, width: 1, type: "dashed", textStyle: {} } }, textStyle: { color: tokens.color.tertiary, fontSize: 14 } }; return TooltipModel; }(ComponentModel); //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/component/tooltip/helper.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ function shouldTooltipConfine(tooltipModel) { var confineOption = tooltipModel.get("confine"); return confineOption != null ? !!confineOption : tooltipModel.get("renderMode") === "richText"; } function testStyle(styleProps) { if (!env.domSupported) return; var style = document.documentElement.style; for (var i = 0, len = styleProps.length; i < len; i++) if (styleProps[i] in style) return styleProps[i]; } var TRANSFORM_VENDOR = testStyle([ "transform", "webkitTransform", "OTransform", "MozTransform", "msTransform" ]); var TRANSITION_VENDOR = testStyle([ "webkitTransition", "transition", "OTransition", "MozTransition", "msTransition" ]); function toCSSVendorPrefix(styleVendor, styleProp) { if (!styleVendor) return styleProp; styleProp = toCamelCase(styleProp, true); var idx = styleVendor.indexOf(styleProp); styleVendor = idx === -1 ? styleProp : "-" + styleVendor.slice(0, idx) + "-" + styleProp; return styleVendor.toLowerCase(); } function getComputedStyle(el, style) { var stl = el.currentStyle || document.defaultView && document.defaultView.getComputedStyle(el); return stl ? style ? stl[style] : stl : null; } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/component/tooltip/TooltipHTMLContent.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var CSS_TRANSITION_VENDOR = toCSSVendorPrefix(TRANSITION_VENDOR, "transition"); var CSS_TRANSFORM_VENDOR = toCSSVendorPrefix(TRANSFORM_VENDOR, "transform"); var gCssText = "position:absolute;display:block;border-style:solid;white-space:nowrap;z-index:9999999;" + (env.transform3dSupported ? "will-change:transform;" : ""); function mirrorPos(pos) { pos = pos === "left" ? "right" : pos === "right" ? "left" : pos === "top" ? "bottom" : "top"; return pos; } function assembleArrow(tooltipModel, borderColor, arrowPosition) { if (!isString(arrowPosition) || arrowPosition === "inside") return ""; var backgroundColor = tooltipModel.get("backgroundColor"); var borderWidth = tooltipModel.get("borderWidth"); borderColor = convertToColorString(borderColor); var arrowPos = mirrorPos(arrowPosition); var arrowSize = Math.max(Math.round(borderWidth) * 1.5, 6); var positionStyle = ""; var transformStyle = CSS_TRANSFORM_VENDOR + ":"; var rotateDeg; if (indexOf(["left", "right"], arrowPos) > -1) { positionStyle += "top:50%"; transformStyle += "translateY(-50%) rotate(" + (rotateDeg = arrowPos === "left" ? -225 : -45) + "deg)"; } else { positionStyle += "left:50%"; transformStyle += "translateX(-50%) rotate(" + (rotateDeg = arrowPos === "top" ? 225 : 45) + "deg)"; } var rotateRadian = rotateDeg * Math.PI / 180; var arrowWH = arrowSize + borderWidth; var rotatedWH = arrowWH * Math.abs(Math.cos(rotateRadian)) + arrowWH * Math.abs(Math.sin(rotateRadian)); var arrowOffset = Math.round(((rotatedWH - Math.SQRT2 * borderWidth) / 2 + Math.SQRT2 * borderWidth - (rotatedWH - arrowWH) / 2) * 100) / 100; positionStyle += ";" + arrowPos + ":-" + arrowOffset + "px"; var borderStyle = borderColor + " solid " + borderWidth + "px;"; return "
"; } function assembleTransition(duration, onlyFadeTransition, enableDisplayTransition) { var transitionCurve = "cubic-bezier(0.23,1,0.32,1)"; var transitionOption = ""; var transitionText = ""; if (enableDisplayTransition) { transitionOption = " " + duration / 2 + "s " + transitionCurve; transitionText = "opacity" + transitionOption + ",visibility" + transitionOption; } if (!onlyFadeTransition) { transitionOption = " " + duration + "s " + transitionCurve; transitionText += (transitionText.length ? "," : "") + (env.transformSupported ? "" + CSS_TRANSFORM_VENDOR + transitionOption : ",left" + transitionOption + ",top" + transitionOption); } return CSS_TRANSITION_VENDOR + ":" + transitionText; } function assembleTransform(x, y, toString) { var x0 = x.toFixed(0) + "px"; var y0 = y.toFixed(0) + "px"; if (!env.transformSupported) return toString ? "top:" + y0 + ";left:" + x0 + ";" : [["top", y0], ["left", x0]]; var is3d = env.transform3dSupported; var translate = "translate" + (is3d ? "3d" : "") + "(" + x0 + "," + y0 + (is3d ? ",0" : "") + ")"; return toString ? "top:0;left:0;" + CSS_TRANSFORM_VENDOR + ":" + translate + ";" : [ ["top", 0], ["left", 0], [TRANSFORM_VENDOR, translate] ]; } /** * @param {Object} textStyle * @return {string} * @inner */ function assembleFont(textStyleModel) { var cssText = []; var fontSize = textStyleModel.get("fontSize"); var color = textStyleModel.getTextColor(); color && cssText.push("color:" + color); cssText.push("font:" + textStyleModel.getFont()); var lineHeight = retrieve2(textStyleModel.get("lineHeight"), Math.round(fontSize * 3 / 2)); fontSize && cssText.push("line-height:" + lineHeight + "px"); var shadowColor = textStyleModel.get("textShadowColor"); var shadowBlur = textStyleModel.get("textShadowBlur") || 0; var shadowOffsetX = textStyleModel.get("textShadowOffsetX") || 0; var shadowOffsetY = textStyleModel.get("textShadowOffsetY") || 0; shadowColor && shadowBlur && cssText.push("text-shadow:" + shadowOffsetX + "px " + shadowOffsetY + "px " + shadowBlur + "px " + shadowColor); each$4(["decoration", "align"], function(name) { var val = textStyleModel.get(name); val && cssText.push("text-" + name + ":" + val); }); return cssText.join(";"); } function assembleCssText(tooltipModel, enableTransition, onlyFadeTransition, enableDisplayTransition) { var cssText = []; var transitionDuration = tooltipModel.get("transitionDuration"); var backgroundColor = tooltipModel.get("backgroundColor"); var shadowBlur = tooltipModel.get("shadowBlur"); var shadowColor = tooltipModel.get("shadowColor"); var shadowOffsetX = tooltipModel.get("shadowOffsetX"); var shadowOffsetY = tooltipModel.get("shadowOffsetY"); var textStyleModel = tooltipModel.getModel("textStyle"); var padding = getPaddingFromTooltipModel(tooltipModel, "html"); var boxShadow = shadowOffsetX + "px " + shadowOffsetY + "px " + shadowBlur + "px " + shadowColor; cssText.push("box-shadow:" + boxShadow); enableTransition && transitionDuration > 0 && cssText.push(assembleTransition(transitionDuration, onlyFadeTransition, enableDisplayTransition)); if (backgroundColor) cssText.push("background-color:" + backgroundColor); each$4([ "width", "color", "radius" ], function(name) { var borderName = "border-" + name; var camelCase = toCamelCase(borderName); var val = tooltipModel.get(camelCase); val != null && cssText.push(borderName + ":" + val + (name === "color" ? "" : "px")); }); cssText.push(assembleFont(textStyleModel)); if (padding != null) cssText.push("padding:" + normalizeCssArray(padding).join("px ") + "px"); return cssText.join(";") + ";"; } function makeStyleCoord$1(out, zr, container, zrX, zrY) { var zrPainter = zr && zr.painter; if (container) { var zrViewportRoot = zrPainter && zrPainter.getViewportRoot(); if (zrViewportRoot) transformLocalCoord(out, zrViewportRoot, container, zrX, zrY); } else { out[0] = zrX; out[1] = zrY; var viewportRootOffset = zrPainter && zrPainter.getViewportRootOffset(); if (viewportRootOffset) { out[0] += viewportRootOffset.offsetLeft; out[1] += viewportRootOffset.offsetTop; } } out[2] = out[0] / zr.getWidth(); out[3] = out[1] / zr.getHeight(); } var TooltipHTMLContent = function() { function TooltipHTMLContent(api, opt) { this._show = false; this._styleCoord = [ 0, 0, 0, 0 ]; this._enterable = true; this._alwaysShowContent = false; this._firstShow = true; this._longHide = true; if (env.wxa) return null; var el = document.createElement("div"); el.domBelongToZr = true; this.el = el; var zr = this._zr = api.getZr(); var appendTo = opt.appendTo; var container = appendTo && (isString(appendTo) ? document.querySelector(appendTo) : isDom(appendTo) ? appendTo : isFunction(appendTo) && appendTo(api.getDom())); makeStyleCoord$1(this._styleCoord, zr, container, api.getWidth() / 2, api.getHeight() / 2); (container || api.getDom()).appendChild(el); this._api = api; this._container = container; var self = this; el.onmouseenter = function() { if (self._enterable) { clearTimeout(self._hideTimeout); self._show = true; } self._inContent = true; }; el.onmousemove = function(e) { e = e || window.event; if (!self._enterable) { var handler = zr.handler; normalizeEvent(zr.painter.getViewportRoot(), e, true); handler.dispatch("mousemove", e); } }; el.onmouseleave = function() { self._inContent = false; if (self._enterable) { if (self._show) self.hideLater(self._hideDelay); } }; } /** * Update when tooltip is rendered */ TooltipHTMLContent.prototype.update = function(tooltipModel) { if (!this._container) { var container = this._api.getDom(); var position = getComputedStyle(container, "position"); var domStyle = container.style; if (domStyle.position !== "absolute" && position !== "absolute") domStyle.position = "relative"; } var alwaysShowContent = tooltipModel.get("alwaysShowContent"); alwaysShowContent && this._moveIfResized(); this._alwaysShowContent = alwaysShowContent; this._enableDisplayTransition = tooltipModel.get("displayTransition") && tooltipModel.get("transitionDuration") > 0; this.el.className = tooltipModel.get("className") || ""; }; TooltipHTMLContent.prototype.show = function(tooltipModel, nearPointColor) { clearTimeout(this._hideTimeout); clearTimeout(this._longHideTimeout); var el = this.el; var style = el.style; var styleCoord = this._styleCoord; if (!el.innerHTML) style.display = "none"; else style.cssText = gCssText + assembleCssText(tooltipModel, !this._firstShow, this._longHide, this._enableDisplayTransition) + assembleTransform(styleCoord[0], styleCoord[1], true) + ("border-color:" + convertToColorString(nearPointColor) + ";") + (tooltipModel.get("extraCssText") || "") + (";pointer-events:" + (this._enterable ? "auto" : "none")); this._show = true; this._firstShow = false; this._longHide = false; }; TooltipHTMLContent.prototype.setContent = function(content, markers, tooltipModel, borderColor, arrowPosition) { var el = this.el; if (content == null) { el.innerHTML = ""; return; } var arrow = ""; if (isString(arrowPosition) && tooltipModel.get("trigger") === "item" && !shouldTooltipConfine(tooltipModel)) arrow = assembleArrow(tooltipModel, borderColor, arrowPosition); if (isString(content)) el.innerHTML = content + arrow; else if (content) { el.innerHTML = ""; if (!isArray(content)) content = [content]; for (var i = 0; i < content.length; i++) if (isDom(content[i]) && content[i].parentNode !== el) el.appendChild(content[i]); if (arrow && el.childNodes.length) { var arrowEl = document.createElement("div"); arrowEl.innerHTML = arrow; el.appendChild(arrowEl); } } }; TooltipHTMLContent.prototype.setEnterable = function(enterable) { this._enterable = enterable; }; TooltipHTMLContent.prototype.getSize = function() { var el = this.el; return el ? [el.offsetWidth, el.offsetHeight] : [0, 0]; }; TooltipHTMLContent.prototype.moveTo = function(zrX, zrY) { if (!this.el) return; var styleCoord = this._styleCoord; makeStyleCoord$1(styleCoord, this._zr, this._container, zrX, zrY); if (styleCoord[0] != null && styleCoord[1] != null) { var style_1 = this.el.style; each$4(assembleTransform(styleCoord[0], styleCoord[1]), function(transform) { style_1[transform[0]] = transform[1]; }); } }; /** * when `alwaysShowContent` is true, * move the tooltip after chart resized */ TooltipHTMLContent.prototype._moveIfResized = function() { var ratioX = this._styleCoord[2]; var ratioY = this._styleCoord[3]; this.moveTo(ratioX * this._zr.getWidth(), ratioY * this._zr.getHeight()); }; TooltipHTMLContent.prototype.hide = function() { var _this = this; var style = this.el.style; if (this._enableDisplayTransition) { style.visibility = "hidden"; style.opacity = "0"; } else style.display = "none"; env.transform3dSupported && (style.willChange = ""); this._show = false; this._longHideTimeout = setTimeout(function() { return _this._longHide = true; }, 500); }; TooltipHTMLContent.prototype.hideLater = function(time) { if (this._show && !(this._inContent && this._enterable) && !this._alwaysShowContent) if (time) { this._hideDelay = time; this._show = false; this._hideTimeout = setTimeout(bind$1(this.hide, this), time); } else this.hide(); }; TooltipHTMLContent.prototype.isShow = function() { return this._show; }; TooltipHTMLContent.prototype.dispose = function() { clearTimeout(this._hideTimeout); clearTimeout(this._longHideTimeout); var zr = this._zr; transformLocalCoordClear(zr && zr.painter && zr.painter.getViewportRoot(), this._container); var el = this.el; if (el) { el.onmouseenter = el.onmousemove = el.onmouseleave = null; var parentNode = el.parentNode; parentNode && parentNode.removeChild(el); } this.el = this._container = null; }; return TooltipHTMLContent; }(); //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/component/tooltip/TooltipRichContent.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var TooltipRichContent = function() { function TooltipRichContent(api) { this._show = false; this._styleCoord = [ 0, 0, 0, 0 ]; this._alwaysShowContent = false; this._enterable = true; this._zr = api.getZr(); makeStyleCoord(this._styleCoord, this._zr, api.getWidth() / 2, api.getHeight() / 2); } /** * Update when tooltip is rendered */ TooltipRichContent.prototype.update = function(tooltipModel) { var alwaysShowContent = tooltipModel.get("alwaysShowContent"); alwaysShowContent && this._moveIfResized(); this._alwaysShowContent = alwaysShowContent; }; TooltipRichContent.prototype.show = function() { if (this._hideTimeout) clearTimeout(this._hideTimeout); this.el.show(); this._show = true; }; /** * Set tooltip content */ TooltipRichContent.prototype.setContent = function(content, markupStyleCreator, tooltipModel, borderColor, arrowPosition) { var _this = this; if (isObject$2(content)) throwError(""); if (this.el) this._zr.remove(this.el); var textStyleModel = tooltipModel.getModel("textStyle"); this.el = new ZRText({ style: { rich: markupStyleCreator.richTextStyles, text: content, lineHeight: 22, borderWidth: 1, borderColor, textShadowColor: textStyleModel.get("textShadowColor"), fill: tooltipModel.get(["textStyle", "color"]), padding: getPaddingFromTooltipModel(tooltipModel, "richText"), verticalAlign: "top", align: "left" }, z: tooltipModel.get("z") }); each$4([ "backgroundColor", "borderRadius", "shadowColor", "shadowBlur", "shadowOffsetX", "shadowOffsetY" ], function(propName) { _this.el.style[propName] = tooltipModel.get(propName); }); each$4([ "textShadowBlur", "textShadowOffsetX", "textShadowOffsetY" ], function(propName) { _this.el.style[propName] = textStyleModel.get(propName) || 0; }); this._zr.add(this.el); var self = this; this.el.on("mouseover", function() { if (self._enterable) { clearTimeout(self._hideTimeout); self._show = true; } self._inContent = true; }); this.el.on("mouseout", function() { if (self._enterable) { if (self._show) self.hideLater(self._hideDelay); } self._inContent = false; }); }; TooltipRichContent.prototype.setEnterable = function(enterable) { this._enterable = enterable; }; TooltipRichContent.prototype.getSize = function() { var el = this.el; var bounding = this.el.getBoundingRect(); var shadowOuterSize = calcShadowOuterSize(el.style); return [bounding.width + shadowOuterSize.left + shadowOuterSize.right, bounding.height + shadowOuterSize.top + shadowOuterSize.bottom]; }; TooltipRichContent.prototype.moveTo = function(x, y) { var el = this.el; if (el) { var styleCoord = this._styleCoord; makeStyleCoord(styleCoord, this._zr, x, y); x = styleCoord[0]; y = styleCoord[1]; var style = el.style; var borderWidth = mathMaxWith0(style.borderWidth || 0); var shadowOuterSize = calcShadowOuterSize(style); el.x = x + borderWidth + shadowOuterSize.left; el.y = y + borderWidth + shadowOuterSize.top; el.markRedraw(); } }; /** * when `alwaysShowContent` is true, * move the tooltip after chart resized */ TooltipRichContent.prototype._moveIfResized = function() { var ratioX = this._styleCoord[2]; var ratioY = this._styleCoord[3]; this.moveTo(ratioX * this._zr.getWidth(), ratioY * this._zr.getHeight()); }; TooltipRichContent.prototype.hide = function() { if (this.el) this.el.hide(); this._show = false; }; TooltipRichContent.prototype.hideLater = function(time) { if (this._show && !(this._inContent && this._enterable) && !this._alwaysShowContent) if (time) { this._hideDelay = time; this._show = false; this._hideTimeout = setTimeout(bind$1(this.hide, this), time); } else this.hide(); }; TooltipRichContent.prototype.isShow = function() { return this._show; }; TooltipRichContent.prototype.dispose = function() { this._zr.remove(this.el); }; return TooltipRichContent; }(); function mathMaxWith0(val) { return Math.max(0, val); } function calcShadowOuterSize(style) { var shadowBlur = mathMaxWith0(style.shadowBlur || 0); var shadowOffsetX = mathMaxWith0(style.shadowOffsetX || 0); var shadowOffsetY = mathMaxWith0(style.shadowOffsetY || 0); return { left: mathMaxWith0(shadowBlur - shadowOffsetX), right: mathMaxWith0(shadowBlur + shadowOffsetX), top: mathMaxWith0(shadowBlur - shadowOffsetY), bottom: mathMaxWith0(shadowBlur + shadowOffsetY) }; } function makeStyleCoord(out, zr, zrX, zrY) { out[0] = zrX; out[1] = zrY; out[2] = out[0] / zr.getWidth(); out[3] = out[1] / zr.getHeight(); } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/component/tooltip/TooltipView.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var proxyRect = new Rect({ shape: { x: -1, y: -1, width: 2, height: 2 } }); var TooltipView = function(_super) { __extends(TooltipView, _super); function TooltipView() { var _this = _super !== null && _super.apply(this, arguments) || this; _this.type = TooltipView.type; return _this; } TooltipView.prototype.init = function(ecModel, api) { if (env.node || !api.getDom()) return; var tooltipModel = ecModel.getComponent("tooltip"); var renderMode = this._renderMode = getTooltipRenderMode(tooltipModel.get("renderMode")); this._tooltipContent = renderMode === "richText" ? new TooltipRichContent(api) : new TooltipHTMLContent(api, { appendTo: tooltipModel.get("appendToBody", true) ? "body" : tooltipModel.get("appendTo", true) }); }; TooltipView.prototype.render = function(tooltipModel, ecModel, api) { if (env.node || !api.getDom()) return; this.group.removeAll(); this._tooltipModel = tooltipModel; this._ecModel = ecModel; this._api = api; var tooltipContent = this._tooltipContent; tooltipContent.update(tooltipModel); tooltipContent.setEnterable(tooltipModel.get("enterable")); this._initGlobalListener(); this._keepShow(); if (this._renderMode !== "richText" && tooltipModel.get("transitionDuration")) createOrUpdate(this, "_updatePosition", 50, "fixRate"); else clear(this, "_updatePosition"); }; TooltipView.prototype._initGlobalListener = function() { var triggerOn = this._tooltipModel.get("triggerOn"); register$1("itemTooltip", this._api, bind$1(function(currTrigger, e, dispatchAction) { if (triggerOn !== "none") { if (triggerOn.indexOf(currTrigger) >= 0) this._tryShow(e, dispatchAction); else if (currTrigger === "leave") this._hide(dispatchAction); } }, this)); }; TooltipView.prototype._keepShow = function() { var tooltipModel = this._tooltipModel; var ecModel = this._ecModel; var api = this._api; var triggerOn = tooltipModel.get("triggerOn"); if (tooltipModel.get("trigger") !== "axis") { this._lastDataByCoordSys = null; this._cbParamsList = null; } if (this._lastX != null && this._lastY != null && triggerOn !== "none" && triggerOn !== "click") { var self_1 = this; clearTimeout(this._refreshUpdateTimeout); this._refreshUpdateTimeout = setTimeout(function() { !api.isDisposed() && self_1.manuallyShowTip(tooltipModel, ecModel, api, { x: self_1._lastX, y: self_1._lastY, dataByCoordSys: self_1._lastDataByCoordSys }); }); } }; /** * Show tip manually by * dispatchAction({ * type: 'showTip', * x: 10, * y: 10 * }); * Or * dispatchAction({ * type: 'showTip', * seriesIndex: 0, * dataIndex or dataIndexInside or name * }); * * TODO Batch */ TooltipView.prototype.manuallyShowTip = function(tooltipModel, ecModel, api, payload) { if (payload.from === this.uid || env.node || !api.getDom()) return; var dispatchAction = makeDispatchAction(payload, api); this._ticket = ""; var dataByCoordSys = payload.dataByCoordSys; var cmptRef = findComponentReference(payload, ecModel, api); if (cmptRef) { var rect = cmptRef.el.getBoundingRect().clone(); rect.applyTransform(cmptRef.el.transform); this._tryShow({ offsetX: rect.x + rect.width / 2, offsetY: rect.y + rect.height / 2, target: cmptRef.el, position: payload.position, positionDefault: "bottom" }, dispatchAction); } else if (payload.tooltip && payload.x != null && payload.y != null) { var el = proxyRect; el.x = payload.x; el.y = payload.y; el.update(); getECData(el).tooltipConfig = { name: null, option: payload.tooltip }; this._tryShow({ offsetX: payload.x, offsetY: payload.y, target: el }, dispatchAction); } else if (dataByCoordSys) this._tryShow({ offsetX: payload.x, offsetY: payload.y, position: payload.position, dataByCoordSys, tooltipOption: payload.tooltipOption }, dispatchAction); else if (payload.seriesIndex != null) { if (this._manuallyAxisShowTip(tooltipModel, ecModel, api, payload)) return; var pointInfo = findPointFromSeries(payload, ecModel); var cx = pointInfo.point[0]; var cy = pointInfo.point[1]; if (cx != null && cy != null) this._tryShow({ offsetX: cx, offsetY: cy, target: pointInfo.el, position: payload.position, positionDefault: "bottom" }, dispatchAction); } else if (payload.x != null && payload.y != null) { api.dispatchAction({ type: "updateAxisPointer", x: payload.x, y: payload.y }); this._tryShow({ offsetX: payload.x, offsetY: payload.y, position: payload.position, target: api.getZr().findHover(payload.x, payload.y).target }, dispatchAction); } }; TooltipView.prototype.manuallyHideTip = function(tooltipModel, ecModel, api, payload) { var tooltipContent = this._tooltipContent; if (this._tooltipModel) tooltipContent.hideLater(this._tooltipModel.get("hideDelay")); this._lastX = this._lastY = this._lastDataByCoordSys = null; this._cbParamsList = null; if (payload.from !== this.uid) this._hide(makeDispatchAction(payload, api)); }; TooltipView.prototype._manuallyAxisShowTip = function(tooltipModel, ecModel, api, payload) { var seriesIndex = payload.seriesIndex; var dataIndex = payload.dataIndex; var coordSysAxesInfo = ecModel.getComponent("axisPointer").coordSysAxesInfo; if (seriesIndex == null || dataIndex == null || coordSysAxesInfo == null) return; var seriesModel = ecModel.getSeriesByIndex(seriesIndex); if (!seriesModel) return; if (buildTooltipModel([ seriesModel.getData().getItemModel(dataIndex), seriesModel, (seriesModel.coordinateSystem || {}).model ], this._tooltipModel).get("trigger") !== "axis") return; api.dispatchAction({ type: "updateAxisPointer", seriesIndex, dataIndex, position: payload.position }); return true; }; TooltipView.prototype._tryShow = function(e, dispatchAction) { var el = e.target; if (!this._tooltipModel) return; this._lastX = e.offsetX; this._lastY = e.offsetY; var dataByCoordSys = e.dataByCoordSys; if (dataByCoordSys && dataByCoordSys.length) this._showAxisTooltip(dataByCoordSys, e); else if (el) { if (getECData(el).ssrType === "legend") return; this._lastDataByCoordSys = null; this._cbParamsList = null; var seriesDispatcher_1; var cmptDispatcher_1; findEventDispatcher(el, function(target) { if (target.tooltipDisabled) { seriesDispatcher_1 = cmptDispatcher_1 = null; return true; } if (seriesDispatcher_1 || cmptDispatcher_1) return; if (getECData(target).dataIndex != null) seriesDispatcher_1 = target; else if (getECData(target).tooltipConfig != null) cmptDispatcher_1 = target; }, true); if (seriesDispatcher_1) this._showSeriesItemTooltip(e, seriesDispatcher_1, dispatchAction); else if (cmptDispatcher_1) this._showComponentItemTooltip(e, cmptDispatcher_1, dispatchAction); else this._hide(dispatchAction); } else { this._lastDataByCoordSys = null; this._cbParamsList = null; this._hide(dispatchAction); } }; TooltipView.prototype._showOrMove = function(tooltipModel, cb) { var delay = tooltipModel.get("showDelay"); cb = bind$1(cb, this); clearTimeout(this._showTimout); delay > 0 ? this._showTimout = setTimeout(cb, delay) : cb(); }; TooltipView.prototype._showAxisTooltip = function(dataByCoordSys, e) { var ecModel = this._ecModel; var globalTooltipModel = this._tooltipModel; var point = [e.offsetX, e.offsetY]; var singleTooltipModel = buildTooltipModel([e.tooltipOption], globalTooltipModel); var renderMode = this._renderMode; var cbParamsList = []; var articleMarkup = createTooltipMarkup("section", { blocks: [], noHeader: true }); var markupTextArrLegacy = []; var markupStyleCreator = new TooltipMarkupStyleCreator(); each$4(dataByCoordSys, function(itemCoordSys) { each$4(itemCoordSys.dataByAxis, function(axisItem) { var axisModel = ecModel.getComponent(axisItem.axisDim + "Axis", axisItem.axisIndex); var axisValue = axisItem.value; var axis = axisModel.axis; var axisValueParsed = axis.scale.parse(axisValue); if (!axisModel || axisValue == null) return; var axisValueLabel = getValueLabel(axisValue, axis, ecModel, axisItem.seriesDataIndices, axisItem.valueLabelOpt); var axisSectionMarkup = createTooltipMarkup("section", { header: axisValueLabel, noHeader: !trim(axisValueLabel), sortBlocks: true, blocks: [] }); articleMarkup.blocks.push(axisSectionMarkup); each$4(axisItem.seriesDataIndices, function(idxItem) { var series = ecModel.getSeriesByIndex(idxItem.seriesIndex); var dataIndex = idxItem.dataIndexInside; var cbParams = series.getDataParams(dataIndex); if (cbParams.dataIndex < 0) return; cbParams.axisDim = axisItem.axisDim; cbParams.axisIndex = axisItem.axisIndex; cbParams.axisType = axisItem.axisType; cbParams.axisId = axisItem.axisId; cbParams.axisValue = getAxisRawValue(axisModel.axis, { value: axisValueParsed }); cbParams.axisValueLabel = axisValueLabel; cbParams.marker = markupStyleCreator.makeTooltipMarker("item", convertToColorString(cbParams.color), renderMode); var seriesTooltipResult = normalizeTooltipFormatResult(series.formatTooltip(dataIndex, true, null)); var frag = seriesTooltipResult.frag; if (frag) { var valueFormatter = buildTooltipModel([series], globalTooltipModel).get("valueFormatter"); axisSectionMarkup.blocks.push(valueFormatter ? extend({ valueFormatter }, frag) : frag); } if (seriesTooltipResult.text) markupTextArrLegacy.push(seriesTooltipResult.text); cbParamsList.push(cbParams); }); }); }); articleMarkup.blocks.reverse(); markupTextArrLegacy.reverse(); var positionExpr = e.position; var builtMarkupText = buildTooltipMarkup(articleMarkup, markupStyleCreator, renderMode, singleTooltipModel.get("order"), ecModel.get("useUTC"), singleTooltipModel.get("textStyle")); builtMarkupText && markupTextArrLegacy.unshift(builtMarkupText); var blockBreak = renderMode === "richText" ? "\n\n" : "
"; var allMarkupText = markupTextArrLegacy.join(blockBreak); this._showOrMove(singleTooltipModel, function() { if (this._updateContentNotChangedOnAxis(dataByCoordSys, cbParamsList)) this._updatePosition(singleTooltipModel, positionExpr, point[0], point[1], this._tooltipContent, cbParamsList); else this._showTooltipContent(singleTooltipModel, allMarkupText, cbParamsList, Math.random() + "", point[0], point[1], positionExpr, null, markupStyleCreator); }); }; TooltipView.prototype._showSeriesItemTooltip = function(e, dispatcher, dispatchAction) { var ecModel = this._ecModel; var ecData = getECData(dispatcher); var seriesIndex = ecData.seriesIndex; var seriesModel = ecModel.getSeriesByIndex(seriesIndex); var dataModel = ecData.dataModel || seriesModel; var dataIndex = ecData.dataIndex; var dataType = ecData.dataType; var data = dataModel.getData(dataType); var renderMode = this._renderMode; var positionDefault = e.positionDefault; var tooltipModel = buildTooltipModel([ data.getItemModel(dataIndex), dataModel, seriesModel && (seriesModel.coordinateSystem || {}).model ], this._tooltipModel, positionDefault ? { position: positionDefault } : null); var tooltipTrigger = tooltipModel.get("trigger"); if (tooltipTrigger != null && tooltipTrigger !== "item") return; var params = dataModel.getDataParams(dataIndex, dataType); var markupStyleCreator = new TooltipMarkupStyleCreator(); params.marker = markupStyleCreator.makeTooltipMarker("item", convertToColorString(params.color), renderMode); var seriesTooltipResult = normalizeTooltipFormatResult(dataModel.formatTooltip(dataIndex, false, dataType)); var orderMode = tooltipModel.get("order"); var valueFormatter = tooltipModel.get("valueFormatter"); var frag = seriesTooltipResult.frag; var markupText = frag ? buildTooltipMarkup(valueFormatter ? extend({ valueFormatter }, frag) : frag, markupStyleCreator, renderMode, orderMode, ecModel.get("useUTC"), tooltipModel.get("textStyle")) : seriesTooltipResult.text; var asyncTicket = "item_" + dataModel.name + "_" + dataIndex; this._showOrMove(tooltipModel, function() { this._showTooltipContent(tooltipModel, markupText, params, asyncTicket, e.offsetX, e.offsetY, e.position, e.target, markupStyleCreator); }); dispatchAction({ type: "showTip", dataIndexInside: dataIndex, dataIndex: data.getRawIndex(dataIndex), seriesIndex, from: this.uid }); }; TooltipView.prototype._showComponentItemTooltip = function(e, el, dispatchAction) { var isHTMLRenderMode = this._renderMode === "html"; var ecData = getECData(el); var tooltipOpt = ecData.tooltipConfig.option || {}; var encodeHTMLContent = tooltipOpt.encodeHTMLContent; if (isString(tooltipOpt)) { var content = tooltipOpt; tooltipOpt = { content, formatter: content }; encodeHTMLContent = true; } if (encodeHTMLContent && isHTMLRenderMode && tooltipOpt.content) { tooltipOpt = clone$2(tooltipOpt); tooltipOpt.content = encodeHTML(tooltipOpt.content); } var tooltipModelCascade = [tooltipOpt]; var cmpt = this._ecModel.getComponent(ecData.componentMainType, ecData.componentIndex); if (cmpt) tooltipModelCascade.push(cmpt); tooltipModelCascade.push({ formatter: tooltipOpt.content }); var positionDefault = e.positionDefault; var subTooltipModel = buildTooltipModel(tooltipModelCascade, this._tooltipModel, positionDefault ? { position: positionDefault } : null); var defaultHtml = subTooltipModel.get("content"); var asyncTicket = Math.random() + ""; var markupStyleCreator = new TooltipMarkupStyleCreator(); this._showOrMove(subTooltipModel, function() { var formatterParams = clone$2(subTooltipModel.get("formatterParams") || {}); this._showTooltipContent(subTooltipModel, defaultHtml, formatterParams, asyncTicket, e.offsetX, e.offsetY, e.position, el, markupStyleCreator); }); dispatchAction({ type: "showTip", from: this.uid }); }; TooltipView.prototype._showTooltipContent = function(tooltipModel, defaultHtml, params, asyncTicket, x, y, positionExpr, el, markupStyleCreator) { this._ticket = ""; if (!tooltipModel.get("showContent") || !tooltipModel.get("show")) return; var tooltipContent = this._tooltipContent; tooltipContent.setEnterable(tooltipModel.get("enterable")); var formatter = tooltipModel.get("formatter"); positionExpr = positionExpr || tooltipModel.get("position"); var html = defaultHtml; var nearPointColor = this._getNearestPoint([x, y], params, tooltipModel.get("trigger"), tooltipModel.get("borderColor"), tooltipModel.get("defaultBorderColor", true)).color; if (formatter) if (isString(formatter)) { var useUTC = tooltipModel.ecModel.get("useUTC"); var params0 = isArray(params) ? params[0] : params; var isTimeAxis = params0 && params0.axisType && params0.axisType.indexOf("time") >= 0; html = formatter; if (isTimeAxis) html = format(params0.axisValue, html, useUTC); html = formatTpl(html, params, true); } else if (isFunction(formatter)) { var callback = bind$1(function(cbTicket, html) { if (cbTicket === this._ticket) { tooltipContent.setContent(html, markupStyleCreator, tooltipModel, nearPointColor, positionExpr); this._updatePosition(tooltipModel, positionExpr, x, y, tooltipContent, params, el); } }, this); this._ticket = asyncTicket; html = formatter(params, asyncTicket, callback); } else html = formatter; tooltipContent.setContent(html, markupStyleCreator, tooltipModel, nearPointColor, positionExpr); tooltipContent.show(tooltipModel, nearPointColor); this._updatePosition(tooltipModel, positionExpr, x, y, tooltipContent, params, el); }; TooltipView.prototype._getNearestPoint = function(point, tooltipDataParams, trigger, borderColor, defaultBorderColor) { if (trigger === "axis" || isArray(tooltipDataParams)) return { color: borderColor || defaultBorderColor }; if (!isArray(tooltipDataParams)) return { color: borderColor || tooltipDataParams.color || tooltipDataParams.borderColor }; }; TooltipView.prototype._updatePosition = function(tooltipModel, positionExpr, x, y, content, params, el) { var viewWidth = this._api.getWidth(); var viewHeight = this._api.getHeight(); positionExpr = positionExpr || tooltipModel.get("position"); var contentSize = content.getSize(); var align = tooltipModel.get("align"); var vAlign = tooltipModel.get("verticalAlign"); var rect = el && el.getBoundingRect().clone(); el && rect.applyTransform(el.transform); if (isFunction(positionExpr)) positionExpr = positionExpr([x, y], params, content.el, rect, { viewSize: [viewWidth, viewHeight], contentSize: contentSize.slice() }); if (isArray(positionExpr)) { x = parsePercent(positionExpr[0], viewWidth); y = parsePercent(positionExpr[1], viewHeight); } else if (isObject$2(positionExpr)) { var boxLayoutPosition = positionExpr; boxLayoutPosition.width = contentSize[0]; boxLayoutPosition.height = contentSize[1]; var layoutRect = getLayoutRect(boxLayoutPosition, { width: viewWidth, height: viewHeight }); x = layoutRect.x; y = layoutRect.y; align = null; vAlign = null; } else if (isString(positionExpr) && el) { var pos = calcTooltipPosition(positionExpr, rect, contentSize, tooltipModel.get("borderWidth")); x = pos[0]; y = pos[1]; } else { var pos = refixTooltipPosition(x, y, content, viewWidth, viewHeight, align ? null : 20, vAlign ? null : 20); x = pos[0]; y = pos[1]; } align && (x -= isCenterAlign(align) ? contentSize[0] / 2 : align === "right" ? contentSize[0] : 0); vAlign && (y -= isCenterAlign(vAlign) ? contentSize[1] / 2 : vAlign === "bottom" ? contentSize[1] : 0); if (shouldTooltipConfine(tooltipModel)) { var pos = confineTooltipPosition(x, y, content, viewWidth, viewHeight); x = pos[0]; y = pos[1]; } content.moveTo(x, y); }; TooltipView.prototype._updateContentNotChangedOnAxis = function(dataByCoordSys, cbParamsList) { var lastCoordSys = this._lastDataByCoordSys; var lastCbParamsList = this._cbParamsList; var contentNotChanged = !!lastCoordSys && lastCoordSys.length === dataByCoordSys.length; contentNotChanged && each$4(lastCoordSys, function(lastItemCoordSys, indexCoordSys) { var lastDataByAxis = lastItemCoordSys.dataByAxis || []; var thisDataByAxis = (dataByCoordSys[indexCoordSys] || {}).dataByAxis || []; contentNotChanged = contentNotChanged && lastDataByAxis.length === thisDataByAxis.length; contentNotChanged && each$4(lastDataByAxis, function(lastItem, indexAxis) { var thisItem = thisDataByAxis[indexAxis] || {}; var lastIndices = lastItem.seriesDataIndices || []; var newIndices = thisItem.seriesDataIndices || []; contentNotChanged = contentNotChanged && lastItem.value === thisItem.value && lastItem.axisType === thisItem.axisType && lastItem.axisId === thisItem.axisId && lastIndices.length === newIndices.length; contentNotChanged && each$4(lastIndices, function(lastIdxItem, j) { var newIdxItem = newIndices[j]; contentNotChanged = contentNotChanged && lastIdxItem.seriesIndex === newIdxItem.seriesIndex && lastIdxItem.dataIndex === newIdxItem.dataIndex; }); lastCbParamsList && each$4(lastItem.seriesDataIndices, function(idxItem) { var seriesIdx = idxItem.seriesIndex; var cbParams = cbParamsList[seriesIdx]; var lastCbParams = lastCbParamsList[seriesIdx]; if (cbParams && lastCbParams && lastCbParams.data !== cbParams.data) contentNotChanged = false; }); }); }); this._lastDataByCoordSys = dataByCoordSys; this._cbParamsList = cbParamsList; return !!contentNotChanged; }; TooltipView.prototype._hide = function(dispatchAction) { this._lastDataByCoordSys = null; this._cbParamsList = null; dispatchAction({ type: "hideTip", from: this.uid }); }; TooltipView.prototype.dispose = function(ecModel, api) { if (env.node || !api.getDom()) return; clear(this, "_updatePosition"); this._tooltipContent.dispose(); unregister("itemTooltip", api); this._tooltipContent = null; this._tooltipModel = null; this._lastDataByCoordSys = null; this._cbParamsList = null; }; TooltipView.type = "tooltip"; return TooltipView; }(ComponentView); /** * From top to bottom. (the last one should be globalTooltipModel); */ function buildTooltipModel(modelCascade, globalTooltipModel, defaultTooltipOption) { var ecModel = globalTooltipModel.ecModel; var resultModel; if (defaultTooltipOption) { resultModel = new Model(defaultTooltipOption, ecModel, ecModel); resultModel = new Model(globalTooltipModel.option, resultModel, ecModel); } else resultModel = globalTooltipModel; for (var i = modelCascade.length - 1; i >= 0; i--) { var tooltipOpt = modelCascade[i]; if (tooltipOpt) { if (tooltipOpt instanceof Model) tooltipOpt = tooltipOpt.get("tooltip", true); if (isString(tooltipOpt)) tooltipOpt = { formatter: tooltipOpt }; if (tooltipOpt) resultModel = new Model(tooltipOpt, resultModel, ecModel); } } return resultModel; } function makeDispatchAction(payload, api) { return payload.dispatchAction || bind$1(api.dispatchAction, api); } function refixTooltipPosition(x, y, content, viewWidth, viewHeight, gapH, gapV) { var size = content.getSize(); var width = size[0]; var height = size[1]; if (gapH != null) if (x + width + gapH + 2 > viewWidth) x -= width + gapH; else x += gapH; if (gapV != null) if (y + height + gapV > viewHeight) y -= height + gapV; else y += gapV; return [x, y]; } function confineTooltipPosition(x, y, content, viewWidth, viewHeight) { var size = content.getSize(); var width = size[0]; var height = size[1]; x = Math.min(x + width, viewWidth) - width; y = Math.min(y + height, viewHeight) - height; x = Math.max(x, 0); y = Math.max(y, 0); return [x, y]; } function calcTooltipPosition(position, rect, contentSize, borderWidth) { var domWidth = contentSize[0]; var domHeight = contentSize[1]; var offset = Math.ceil(Math.SQRT2 * borderWidth) + 8; var x = 0; var y = 0; var rectWidth = rect.width; var rectHeight = rect.height; switch (position) { case "inside": x = rect.x + rectWidth / 2 - domWidth / 2; y = rect.y + rectHeight / 2 - domHeight / 2; break; case "top": x = rect.x + rectWidth / 2 - domWidth / 2; y = rect.y - domHeight - offset; break; case "bottom": x = rect.x + rectWidth / 2 - domWidth / 2; y = rect.y + rectHeight + offset; break; case "left": x = rect.x - domWidth - offset; y = rect.y + rectHeight / 2 - domHeight / 2; break; case "right": x = rect.x + rectWidth + offset; y = rect.y + rectHeight / 2 - domHeight / 2; } return [x, y]; } function isCenterAlign(align) { return align === "center" || align === "middle"; } /** * Find target component by payload like: * ```js * { legendId: 'some_id', name: 'xxx' } * { toolboxIndex: 1, name: 'xxx' } * { geoName: 'some_name', name: 'xxx' } * ``` * PENDING: at present only * * If not found, return null/undefined. */ function findComponentReference(payload, ecModel, api) { var queryOptionMap = preParseFinder(payload).queryOptionMap; var componentMainType = queryOptionMap.keys()[0]; if (!componentMainType || componentMainType === "series") return; var model = queryReferringComponents(ecModel, componentMainType, queryOptionMap.get(componentMainType), { useDefault: false, enableAll: false, enableNone: false }).models[0]; if (!model) return; var view = api.getViewOfComponentModel(model); var el; view.group.traverse(function(subEl) { var tooltipConfig = getECData(subEl).tooltipConfig; if (tooltipConfig && tooltipConfig.name === payload.name) { el = subEl; return true; } }); if (el) return { componentMainType, componentIndex: model.componentIndex, el }; } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/component/tooltip/install.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ function install$5(registers) { use(install$7); registers.registerComponentModel(TooltipModel); registers.registerComponentView(TooltipView); /** * @action * @property {string} type * @property {number} seriesIndex * @property {number} dataIndex * @property {number} [x] * @property {number} [y] */ registers.registerAction({ type: "showTip", event: "showTip", update: "tooltip:manuallyShowTip" }, noop); registers.registerAction({ type: "hideTip", event: "hideTip", update: "tooltip:manuallyHideTip" }, noop); } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/component/title/install.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var TitleModel = function(_super) { __extends(TitleModel, _super); function TitleModel() { var _this = _super !== null && _super.apply(this, arguments) || this; _this.type = TitleModel.type; _this.layoutMode = { type: "box", ignoreSize: true }; return _this; } TitleModel.type = "title"; TitleModel.defaultOption = { z: 6, show: true, text: "", target: "blank", subtext: "", subtarget: "blank", left: "center", top: tokens.size.m, backgroundColor: tokens.color.transparent, borderColor: tokens.color.primary, borderWidth: 0, padding: 5, itemGap: 10, textStyle: { fontSize: 18, fontWeight: "bold", color: tokens.color.primary }, subtextStyle: { fontSize: 12, color: tokens.color.quaternary } }; return TitleModel; }(ComponentModel); var TitleView = function(_super) { __extends(TitleView, _super); function TitleView() { var _this = _super !== null && _super.apply(this, arguments) || this; _this.type = TitleView.type; return _this; } TitleView.prototype.render = function(titleModel, ecModel, api) { this.group.removeAll(); if (!titleModel.get("show")) return; var group = this.group; var textStyleModel = titleModel.getModel("textStyle"); var subtextStyleModel = titleModel.getModel("subtextStyle"); var textAlign = titleModel.get("textAlign"); var textVerticalAlign = retrieve2(titleModel.get("textBaseline"), titleModel.get("textVerticalAlign")); var textEl = new ZRText({ style: createTextStyle(textStyleModel, { text: titleModel.get("text"), fill: textStyleModel.getTextColor() }, { disableBox: true }), z2: 10 }); var textRect = textEl.getBoundingRect(); var subText = titleModel.get("subtext"); var subTextEl = new ZRText({ style: createTextStyle(subtextStyleModel, { text: subText, fill: subtextStyleModel.getTextColor(), y: textRect.height + titleModel.get("itemGap"), verticalAlign: "top" }, { disableBox: true }), z2: 10 }); var link = titleModel.get("link"); var sublink = titleModel.get("sublink"); var triggerEvent = titleModel.get("triggerEvent", true); textEl.silent = !link && !triggerEvent; subTextEl.silent = !sublink && !triggerEvent; if (link) textEl.on("click", function() { windowOpen(link, "_" + titleModel.get("target")); }); if (sublink) subTextEl.on("click", function() { windowOpen(sublink, "_" + titleModel.get("subtarget")); }); getECData(textEl).eventData = getECData(subTextEl).eventData = triggerEvent ? { componentType: "title", componentIndex: titleModel.componentIndex } : null; group.add(textEl); subText && group.add(subTextEl); var groupRect = group.getBoundingRect(); var layoutOption = titleModel.getBoxLayoutParams(); layoutOption.width = groupRect.width; layoutOption.height = groupRect.height; var layoutRect = getLayoutRect(layoutOption, createBoxLayoutReference(titleModel, api).refContainer, titleModel.get("padding")); if (!textAlign) { textAlign = titleModel.get("left") || titleModel.get("right"); if (textAlign === "middle") textAlign = "center"; if (textAlign === "right") layoutRect.x += layoutRect.width; else if (textAlign === "center") layoutRect.x += layoutRect.width / 2; } if (!textVerticalAlign) { textVerticalAlign = titleModel.get("top") || titleModel.get("bottom"); if (textVerticalAlign === "center") textVerticalAlign = "middle"; if (textVerticalAlign === "bottom") layoutRect.y += layoutRect.height; else if (textVerticalAlign === "middle") layoutRect.y += layoutRect.height / 2; textVerticalAlign = textVerticalAlign || "top"; } group.x = layoutRect.x; group.y = layoutRect.y; group.markRedraw(); var alignStyle = { align: textAlign, verticalAlign: textVerticalAlign }; textEl.setStyle(alignStyle); subTextEl.setStyle(alignStyle); groupRect = group.getBoundingRect(); var padding = layoutRect.margin; var style = titleModel.getItemStyle(["color", "opacity"]); style.fill = titleModel.get("backgroundColor"); var rect = new Rect({ shape: { x: groupRect.x - padding[3], y: groupRect.y - padding[0], width: groupRect.width + padding[1] + padding[3], height: groupRect.height + padding[0] + padding[2], r: titleModel.get("borderRadius") }, style, subPixelOptimize: true, silent: true }); group.add(rect); }; TitleView.type = "title"; return TitleView; }(ComponentView); function install$4(registers) { registers.registerComponentModel(TitleModel); registers.registerComponentView(TitleView); } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/component/legend/LegendModel.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var getDefaultSelectorOptions = function(ecModel, type) { if (type === "all") return { type: "all", title: ecModel.getLocaleModel().get([ "legend", "selector", "all" ]) }; else if (type === "inverse") return { type: "inverse", title: ecModel.getLocaleModel().get([ "legend", "selector", "inverse" ]) }; }; var LegendModel = function(_super) { __extends(LegendModel, _super); function LegendModel() { var _this = _super !== null && _super.apply(this, arguments) || this; _this.type = LegendModel.type; _this.layoutMode = { type: "box", ignoreSize: true }; return _this; } LegendModel.prototype.init = function(option, parentModel, ecModel) { this.mergeDefaultAndTheme(option, ecModel); option.selected = option.selected || {}; this._updateSelector(option); }; LegendModel.prototype.mergeOption = function(option, ecModel) { _super.prototype.mergeOption.call(this, option, ecModel); this._updateSelector(option); }; LegendModel.prototype._updateSelector = function(option) { var selector = option.selector; var ecModel = this.ecModel; if (selector === true) selector = option.selector = ["all", "inverse"]; if (isArray(selector)) each$4(selector, function(item, index) { isString(item) && (item = { type: item }); selector[index] = merge(item, getDefaultSelectorOptions(ecModel, item.type)); }); }; LegendModel.prototype.optionUpdated = function() { this._updateData(this.ecModel); var legendData = this._data; if (legendData[0] && this.get("selectedMode") === "single") { var hasSelected = false; for (var i = 0; i < legendData.length; i++) { var name_1 = legendData[i].get("name"); if (this.isSelected(name_1)) { this.select(name_1); hasSelected = true; break; } } !hasSelected && this.select(legendData[0].get("name")); } }; LegendModel.prototype._updateData = function(ecModel) { var potentialData = []; var availableNames = []; ecModel.eachRawSeries(function(seriesModel) { var seriesName = seriesModel.name; availableNames.push(seriesName); var isPotential; if (seriesModel.legendVisualProvider) { var names = seriesModel.legendVisualProvider.getAllNames(); if (!ecModel.isSeriesFiltered(seriesModel)) availableNames = availableNames.concat(names); if (names.length) potentialData = potentialData.concat(names); else isPotential = true; } else isPotential = true; if (isPotential && isNameSpecified(seriesModel)) potentialData.push(seriesModel.name); }); /** * @type {Array.} * @private */ this._availableNames = availableNames; var rawData = this.get("data") || potentialData; var legendNameMap = createHashMap(); var legendData = map$1(rawData, function(dataItem) { if (isString(dataItem) || isNumber(dataItem)) dataItem = { name: dataItem }; if (legendNameMap.get(dataItem.name)) return null; legendNameMap.set(dataItem.name, true); return new Model(dataItem, this, this.ecModel); }, this); /** * @type {Array.} * @private */ this._data = filter(legendData, function(item) { return !!item; }); }; LegendModel.prototype.getData = function() { return this._data; }; LegendModel.prototype.select = function(name) { var selected = this.option.selected; if (this.get("selectedMode") === "single") { var data = this._data; each$4(data, function(dataItem) { selected[dataItem.get("name")] = false; }); } selected[name] = true; }; LegendModel.prototype.unSelect = function(name) { if (this.get("selectedMode") !== "single") this.option.selected[name] = false; }; LegendModel.prototype.toggleSelected = function(name) { var selected = this.option.selected; if (!selected.hasOwnProperty(name)) selected[name] = true; this[selected[name] ? "unSelect" : "select"](name); }; LegendModel.prototype.allSelect = function() { var data = this._data; var selected = this.option.selected; each$4(data, function(dataItem) { selected[dataItem.get("name", true)] = true; }); }; LegendModel.prototype.inverseSelect = function() { var data = this._data; var selected = this.option.selected; each$4(data, function(dataItem) { var name = dataItem.get("name", true); if (!selected.hasOwnProperty(name)) selected[name] = true; selected[name] = !selected[name]; }); }; LegendModel.prototype.isSelected = function(name) { var selected = this.option.selected; return !(selected.hasOwnProperty(name) && !selected[name]) && indexOf(this._availableNames, name) >= 0; }; LegendModel.prototype.getOrient = function() { return this.get("orient") === "vertical" ? { index: 1, name: "vertical" } : { index: 0, name: "horizontal" }; }; LegendModel.type = "legend.plain"; LegendModel.dependencies = ["series"]; LegendModel.defaultOption = { z: 4, show: true, orient: "horizontal", left: "center", bottom: tokens.size.m, align: "auto", backgroundColor: tokens.color.transparent, borderColor: tokens.color.border, borderRadius: 0, borderWidth: 0, padding: 5, itemGap: 8, itemWidth: 25, itemHeight: 14, symbolRotate: "inherit", symbolKeepAspect: true, inactiveColor: tokens.color.disabled, inactiveBorderColor: tokens.color.disabled, inactiveBorderWidth: "auto", itemStyle: { color: "inherit", opacity: "inherit", borderColor: "inherit", borderWidth: "auto", borderCap: "inherit", borderJoin: "inherit", borderDashOffset: "inherit", borderMiterLimit: "inherit" }, lineStyle: { width: "auto", color: "inherit", inactiveColor: tokens.color.disabled, inactiveWidth: 2, opacity: "inherit", type: "inherit", cap: "inherit", join: "inherit", dashOffset: "inherit", miterLimit: "inherit" }, textStyle: { color: tokens.color.secondary }, selectedMode: true, selector: false, selectorLabel: { show: true, borderRadius: 10, padding: [ 3, 5, 3, 5 ], fontSize: 12, fontFamily: "sans-serif", color: tokens.color.tertiary, borderWidth: 1, borderColor: tokens.color.border }, emphasis: { selectorLabel: { show: true, color: tokens.color.quaternary } }, selectorPosition: "auto", selectorItemGap: 7, selectorButtonGap: 10, tooltip: { show: false }, triggerEvent: false }; return LegendModel; }(ComponentModel); //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/component/legend/LegendView.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var curry = curry$1; var each = each$4; var Group$1 = Group$2; var LegendView = function(_super) { __extends(LegendView, _super); function LegendView() { var _this = _super !== null && _super.apply(this, arguments) || this; _this.type = LegendView.type; _this.newlineDisabled = false; return _this; } LegendView.prototype.init = function() { this.group.add(this._contentGroup = new Group$1()); this.group.add(this._selectorGroup = new Group$1()); this._isFirstRender = true; }; /** * @protected */ LegendView.prototype.getContentGroup = function() { return this._contentGroup; }; /** * @protected */ LegendView.prototype.getSelectorGroup = function() { return this._selectorGroup; }; /** * @override */ LegendView.prototype.render = function(legendModel, ecModel, api) { var isFirstRender = this._isFirstRender; this._isFirstRender = false; this.resetInner(); if (!legendModel.get("show", true)) return; var itemAlign = legendModel.get("align"); var orient = legendModel.get("orient"); if (!itemAlign || itemAlign === "auto") itemAlign = legendModel.get("left") === "right" && orient === "vertical" ? "right" : "left"; var selector = legendModel.get("selector", true); var selectorPosition = legendModel.get("selectorPosition", true); if (selector && (!selectorPosition || selectorPosition === "auto")) selectorPosition = orient === "horizontal" ? "end" : "start"; this.renderInner(itemAlign, legendModel, ecModel, api, selector, orient, selectorPosition); var refContainer = createBoxLayoutReference(legendModel, api).refContainer; var positionInfo = legendModel.getBoxLayoutParams(); var padding = legendModel.get("padding"); var maxSize = getLayoutRect(positionInfo, refContainer, padding); var mainRect = this.layoutInner(legendModel, itemAlign, maxSize, isFirstRender, selector, selectorPosition); var layoutRect = getLayoutRect(defaults({ width: mainRect.width, height: mainRect.height }, positionInfo), refContainer, padding); this.group.x = layoutRect.x - mainRect.x; this.group.y = layoutRect.y - mainRect.y; this.group.markRedraw(); this.group.add(this._backgroundEl = makeBackground(mainRect, legendModel)); }; LegendView.prototype.resetInner = function() { this.getContentGroup().removeAll(); this._backgroundEl && this.group.remove(this._backgroundEl); this.getSelectorGroup().removeAll(); }; LegendView.prototype.renderInner = function(itemAlign, legendModel, ecModel, api, selector, orient, selectorPosition) { var contentGroup = this.getContentGroup(); var legendDrawnMap = createHashMap(); var selectMode = legendModel.get("selectedMode"); var triggerEvent = legendModel.get("triggerEvent"); var excludeSeriesId = []; ecModel.eachRawSeries(function(seriesModel) { !seriesModel.get("legendHoverLink") && excludeSeriesId.push(seriesModel.id); }); each(legendModel.getData(), function(legendItemModel, dataIndex) { var _this = this; var name = legendItemModel.get("name"); if (!this.newlineDisabled && (name === "" || name === "\n")) { var g = new Group$1(); g.newline = true; contentGroup.add(g); return; } var seriesModel = ecModel.getSeriesByName(name)[0]; if (legendDrawnMap.get(name)) return; if (seriesModel) { var data = seriesModel.getData(); var lineVisualStyle = data.getVisual("legendLineStyle") || {}; var legendIcon = data.getVisual("legendIcon"); /** * `data.getVisual('style')` may be the color from the register * in series. For example, for line series, */ var style = data.getVisual("style"); var itemGroup = this._createItem(seriesModel, name, dataIndex, legendItemModel, legendModel, itemAlign, lineVisualStyle, style, legendIcon, selectMode, api); itemGroup.on("click", curry(dispatchSelectAction, name, null, api, excludeSeriesId)).on("mouseover", curry(dispatchHighlightAction, seriesModel.name, null, api, excludeSeriesId)).on("mouseout", curry(dispatchDownplayAction, seriesModel.name, null, api, excludeSeriesId)); if (ecModel.ssr) itemGroup.eachChild(function(child) { var ecData = getECData(child); ecData.seriesIndex = seriesModel.seriesIndex; ecData.dataIndex = dataIndex; ecData.ssrType = "legend"; }); if (triggerEvent) itemGroup.eachChild(function(child) { _this.packEventData(child, legendModel, seriesModel, dataIndex, name); }); legendDrawnMap.set(name, true); } else ecModel.eachRawSeries(function(seriesModel) { var _this = this; if (legendDrawnMap.get(name)) return; if (seriesModel.legendVisualProvider) { var provider = seriesModel.legendVisualProvider; if (!provider.containName(name)) return; var idx = provider.indexOfName(name); var style = provider.getItemVisual(idx, "style"); var legendIcon = provider.getItemVisual(idx, "legendIcon"); var colorArr = parse(style.fill); if (colorArr && colorArr[3] === 0) { colorArr[3] = .2; style = extend(extend({}, style), { fill: stringify(colorArr, "rgba") }); } var itemGroup = this._createItem(seriesModel, name, dataIndex, legendItemModel, legendModel, itemAlign, {}, style, legendIcon, selectMode, api); itemGroup.on("click", curry(dispatchSelectAction, null, name, api, excludeSeriesId)).on("mouseover", curry(dispatchHighlightAction, null, name, api, excludeSeriesId)).on("mouseout", curry(dispatchDownplayAction, null, name, api, excludeSeriesId)); if (ecModel.ssr) itemGroup.eachChild(function(child) { var ecData = getECData(child); ecData.seriesIndex = seriesModel.seriesIndex; ecData.dataIndex = dataIndex; ecData.ssrType = "legend"; }); if (triggerEvent) itemGroup.eachChild(function(child) { _this.packEventData(child, legendModel, seriesModel, dataIndex, name); }); legendDrawnMap.set(name, true); } }, this); }, this); if (selector) this._createSelector(selector, legendModel, api, orient, selectorPosition); }; LegendView.prototype.packEventData = function(el, legendModel, seriesModel, dataIndex, name) { var eventData = { componentType: "legend", componentIndex: legendModel.componentIndex, dataIndex, value: name, seriesIndex: seriesModel.seriesIndex }; getECData(el).eventData = eventData; }; LegendView.prototype._createSelector = function(selector, legendModel, api, orient, selectorPosition) { var selectorGroup = this.getSelectorGroup(); each(selector, function createSelectorButton(selectorItem) { var type = selectorItem.type; var labelText = new ZRText({ style: { x: 0, y: 0, align: "center", verticalAlign: "middle" }, onclick: function() { api.dispatchAction({ type: type === "all" ? "legendAllSelect" : "legendInverseSelect", legendId: legendModel.id }); } }); selectorGroup.add(labelText); setLabelStyle(labelText, { normal: legendModel.getModel("selectorLabel"), emphasis: legendModel.getModel(["emphasis", "selectorLabel"]) }, { defaultText: selectorItem.title }); enableHoverEmphasis(labelText); }); }; LegendView.prototype._createItem = function(seriesModel, name, dataIndex, legendItemModel, legendModel, itemAlign, lineVisualStyle, itemVisualStyle, legendIcon, selectMode, api) { var drawType = seriesModel.visualDrawType; var itemWidth = legendModel.get("itemWidth"); var itemHeight = legendModel.get("itemHeight"); var isSelected = legendModel.isSelected(name); var iconRotate = legendItemModel.get("symbolRotate"); var symbolKeepAspect = legendItemModel.get("symbolKeepAspect"); var legendIconType = legendItemModel.get("icon"); legendIcon = legendIconType || legendIcon || "roundRect"; var style = getLegendStyle(legendIcon, legendItemModel, lineVisualStyle, itemVisualStyle, drawType, isSelected, api); var itemGroup = new Group$1(); var textStyleModel = legendItemModel.getModel("textStyle"); if (isFunction(seriesModel.getLegendIcon) && (!legendIconType || legendIconType === "inherit")) itemGroup.add(seriesModel.getLegendIcon({ itemWidth, itemHeight, icon: legendIcon, iconRotate, itemStyle: style.itemStyle, lineStyle: style.lineStyle, symbolKeepAspect })); else { var rotate = legendIconType === "inherit" && seriesModel.getData().getVisual("symbol") ? iconRotate === "inherit" ? seriesModel.getData().getVisual("symbolRotate") : iconRotate : 0; itemGroup.add(getDefaultLegendIcon({ itemWidth, itemHeight, icon: legendIcon, iconRotate: rotate, itemStyle: style.itemStyle, lineStyle: style.lineStyle, symbolKeepAspect })); } var textX = itemAlign === "left" ? itemWidth + 5 : -5; var textAlign = itemAlign; var formatter = legendModel.get("formatter"); var content = name; if (isString(formatter) && formatter) content = formatter.replace("{name}", name != null ? name : ""); else if (isFunction(formatter)) content = formatter(name); var textColor = isSelected ? textStyleModel.getTextColor() : legendItemModel.get("inactiveColor"); itemGroup.add(new ZRText({ style: createTextStyle(textStyleModel, { text: content, x: textX, y: itemHeight / 2, fill: textColor, align: textAlign, verticalAlign: "middle" }, { inheritColor: textColor }) })); var hitRect = new Rect({ shape: itemGroup.getBoundingRect(), style: { fill: "transparent" } }); var tooltipModel = legendItemModel.getModel("tooltip"); if (tooltipModel.get("show")) setTooltipConfig({ el: hitRect, componentModel: legendModel, itemName: name, itemTooltipOption: tooltipModel.option }); itemGroup.add(hitRect); itemGroup.eachChild(function(child) { child.silent = true; }); hitRect.silent = !selectMode; this.getContentGroup().add(itemGroup); enableHoverEmphasis(itemGroup); itemGroup.__legendDataIndex = dataIndex; return itemGroup; }; LegendView.prototype.layoutInner = function(legendModel, itemAlign, maxSize, isFirstRender, selector, selectorPosition) { var contentGroup = this.getContentGroup(); var selectorGroup = this.getSelectorGroup(); box(legendModel.get("orient"), contentGroup, legendModel.get("itemGap"), maxSize.width, maxSize.height); var contentRect = contentGroup.getBoundingRect(); var contentPos = [-contentRect.x, -contentRect.y]; selectorGroup.markRedraw(); contentGroup.markRedraw(); if (selector) { box("horizontal", selectorGroup, legendModel.get("selectorItemGap", true)); var selectorRect = selectorGroup.getBoundingRect(); var selectorPos = [-selectorRect.x, -selectorRect.y]; var selectorButtonGap = legendModel.get("selectorButtonGap", true); var orientIdx = legendModel.getOrient().index; var wh = orientIdx === 0 ? "width" : "height"; var hw = orientIdx === 0 ? "height" : "width"; var yx = orientIdx === 0 ? "y" : "x"; if (selectorPosition === "end") selectorPos[orientIdx] += contentRect[wh] + selectorButtonGap; else contentPos[orientIdx] += selectorRect[wh] + selectorButtonGap; selectorPos[1 - orientIdx] += contentRect[hw] / 2 - selectorRect[hw] / 2; selectorGroup.x = selectorPos[0]; selectorGroup.y = selectorPos[1]; contentGroup.x = contentPos[0]; contentGroup.y = contentPos[1]; var mainRect = { x: 0, y: 0 }; mainRect[wh] = contentRect[wh] + selectorButtonGap + selectorRect[wh]; mainRect[hw] = Math.max(contentRect[hw], selectorRect[hw]); mainRect[yx] = Math.min(0, selectorRect[yx] + selectorPos[1 - orientIdx]); return mainRect; } else { contentGroup.x = contentPos[0]; contentGroup.y = contentPos[1]; return this.group.getBoundingRect(); } }; /** * @protected */ LegendView.prototype.remove = function() { this.getContentGroup().removeAll(); this._isFirstRender = true; }; LegendView.type = "legend.plain"; return LegendView; }(ComponentView); function getLegendStyle(iconType, legendItemModel, lineVisualStyle, itemVisualStyle, drawType, isSelected, api) { /** * Use series style if is inherit; * elsewise, use legend style */ function handleCommonProps(style, visualStyle) { if (style.lineWidth === "auto") style.lineWidth = visualStyle.lineWidth > 0 ? 2 : 0; each(style, function(propVal, propName) { style[propName] === "inherit" && (style[propName] = visualStyle[propName]); }); } var itemStyleModel = legendItemModel.getModel("itemStyle"); var itemStyle = itemStyleModel.getItemStyle(); var iconBrushType = iconType.lastIndexOf("empty", 0) === 0 ? "fill" : "stroke"; var decalStyle = itemStyleModel.getShallow("decal"); itemStyle.decal = !decalStyle || decalStyle === "inherit" ? itemVisualStyle.decal : createOrUpdatePatternFromDecal(decalStyle, api); if (itemStyle.fill === "inherit") /** * Series with visualDrawType as 'stroke' should have * series stroke as legend fill */ itemStyle.fill = itemVisualStyle[drawType]; if (itemStyle.stroke === "inherit") /** * icon type with "emptyXXX" should use fill color * in visual style */ itemStyle.stroke = itemVisualStyle[iconBrushType]; if (itemStyle.opacity === "inherit") /** * Use lineStyle.opacity if drawType is stroke */ itemStyle.opacity = (drawType === "fill" ? itemVisualStyle : lineVisualStyle).opacity; handleCommonProps(itemStyle, itemVisualStyle); var legendLineModel = legendItemModel.getModel("lineStyle"); var lineStyle = legendLineModel.getLineStyle(); handleCommonProps(lineStyle, lineVisualStyle); itemStyle.fill === "auto" && (itemStyle.fill = itemVisualStyle.fill); itemStyle.stroke === "auto" && (itemStyle.stroke = itemVisualStyle.fill); lineStyle.stroke === "auto" && (lineStyle.stroke = itemVisualStyle.fill); if (!isSelected) { var borderWidth = legendItemModel.get("inactiveBorderWidth"); /** * Since stroke is set to be inactiveBorderColor, it may occur that * there is no border in series but border in legend, so we need to * use border only when series has border if is set to be auto */ var visualHasBorder = itemStyle[iconBrushType]; itemStyle.lineWidth = borderWidth === "auto" ? itemVisualStyle.lineWidth > 0 && visualHasBorder ? 2 : 0 : itemStyle.lineWidth; itemStyle.fill = legendItemModel.get("inactiveColor"); itemStyle.stroke = legendItemModel.get("inactiveBorderColor"); lineStyle.stroke = legendLineModel.get("inactiveColor"); lineStyle.lineWidth = legendLineModel.get("inactiveWidth"); } return { itemStyle, lineStyle }; } function getDefaultLegendIcon(opt) { var symboType = opt.icon || "roundRect"; var icon = createSymbol(symboType, 0, 0, opt.itemWidth, opt.itemHeight, opt.itemStyle.fill, opt.symbolKeepAspect); icon.setStyle(opt.itemStyle); icon.rotation = (opt.iconRotate || 0) * Math.PI / 180; icon.setOrigin([opt.itemWidth / 2, opt.itemHeight / 2]); if (symboType.indexOf("empty") > -1) { icon.style.stroke = icon.style.fill; icon.style.fill = tokens.color.neutral00; icon.style.lineWidth = 2; } return icon; } function dispatchSelectAction(seriesName, dataName, api, excludeSeriesId) { dispatchDownplayAction(seriesName, dataName, api, excludeSeriesId); api.dispatchAction({ type: "legendToggleSelect", name: seriesName != null ? seriesName : dataName }); dispatchHighlightAction(seriesName, dataName, api, excludeSeriesId); } function dispatchHighlightAction(seriesName, dataName, api, excludeSeriesId) { if (!api.usingTHL()) api.dispatchAction({ type: "highlight", seriesName, name: dataName, excludeSeriesId }); } function dispatchDownplayAction(seriesName, dataName, api, excludeSeriesId) { if (!api.usingTHL()) api.dispatchAction({ type: "downplay", seriesName, name: dataName, excludeSeriesId }); } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/component/legend/legendAction.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ function legendSelectActionHandler(methodName, payload, ecModel) { var isAllSelect = methodName === "allSelect" || methodName === "inverseSelect"; var selectedMap = {}; var actionLegendIndices = []; ecModel.eachComponent({ mainType: "legend", query: payload }, function(legendModel) { if (isAllSelect) legendModel[methodName](); else legendModel[methodName](payload.name); makeSelectedMap(legendModel, selectedMap); actionLegendIndices.push(legendModel.componentIndex); }); var allSelectedMap = {}; ecModel.eachComponent("legend", function(legendModel) { each$4(selectedMap, function(isSelected, name) { legendModel[isSelected ? "select" : "unSelect"](name); }); makeSelectedMap(legendModel, allSelectedMap); }); return isAllSelect ? { selected: allSelectedMap, legendIndex: actionLegendIndices } : { name: payload.name, selected: allSelectedMap }; } function makeSelectedMap(legendModel, out) { var selectedMap = out || {}; each$4(legendModel.getData(), function(model) { var name = model.get("name"); if (name === "\n" || name === "") return; var isItemSelected = legendModel.isSelected(name); if (hasOwn(selectedMap, name)) selectedMap[name] = selectedMap[name] && isItemSelected; else selectedMap[name] = isItemSelected; }); return selectedMap; } function installLegendAction(registers) { /** * @event legendToggleSelect * @type {Object} * @property {string} type 'legendToggleSelect' * @property {string} [from] * @property {string} name Series name or data item name */ registers.registerAction("legendToggleSelect", "legendselectchanged", curry$1(legendSelectActionHandler, "toggleSelected")); registers.registerAction("legendAllSelect", "legendselectall", curry$1(legendSelectActionHandler, "allSelect")); registers.registerAction("legendInverseSelect", "legendinverseselect", curry$1(legendSelectActionHandler, "inverseSelect")); /** * @event legendSelect * @type {Object} * @property {string} type 'legendSelect' * @property {string} name Series name or data item name */ registers.registerAction("legendSelect", "legendselected", curry$1(legendSelectActionHandler, "select")); /** * @event legendUnSelect * @type {Object} * @property {string} type 'legendUnSelect' * @property {string} name Series name or data item name */ registers.registerAction("legendUnSelect", "legendunselected", curry$1(legendSelectActionHandler, "unSelect")); } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/component/legend/legendFilter.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var legendFilterStageHandler = createSimpleOverallStageHandler2(legendFilter); function legendFilter(ecModel) { var legendModels = ecModel.findComponents({ mainType: "legend" }); if (legendModels && legendModels.length) ecModel.filterSeries(function(series) { for (var i = 0; i < legendModels.length; i++) if (!legendModels[i].isSelected(series.name)) return false; return true; }); } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/component/legend/installLegendPlain.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ function install$3(registers) { registers.registerComponentModel(LegendModel); registers.registerComponentView(LegendView); registers.registerProcessor(registers.PRIORITY.PROCESSOR.SERIES_FILTER, legendFilterStageHandler); registers.registerSubTypeDefaulter("legend", function() { return "plain"; }); installLegendAction(registers); } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/component/legend/ScrollableLegendModel.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ var ScrollableLegendModel = function(_super) { __extends(ScrollableLegendModel, _super); function ScrollableLegendModel() { var _this = _super !== null && _super.apply(this, arguments) || this; _this.type = ScrollableLegendModel.type; return _this; } /** * @param {number} scrollDataIndex */ ScrollableLegendModel.prototype.setScrollDataIndex = function(scrollDataIndex) { this.option.scrollDataIndex = scrollDataIndex; }; ScrollableLegendModel.prototype.init = function(option, parentModel, ecModel) { var inputPositionParams = getLayoutParams(option); _super.prototype.init.call(this, option, parentModel, ecModel); mergeAndNormalizeLayoutParams(this, option, inputPositionParams); }; /** * @override */ ScrollableLegendModel.prototype.mergeOption = function(option, ecModel) { _super.prototype.mergeOption.call(this, option, ecModel); mergeAndNormalizeLayoutParams(this, this.option, option); }; ScrollableLegendModel.type = "legend.scroll"; ScrollableLegendModel.defaultOption = inheritDefaultOption(LegendModel.defaultOption, { scrollDataIndex: 0, pageButtonItemGap: 5, pageButtonGap: null, pageButtonPosition: "end", pageFormatter: "{current}/{total}", pageIcons: { horizontal: ["M0,0L12,-10L12,10z", "M0,0L-12,-10L-12,10z"], vertical: ["M0,0L20,0L10,-20z", "M0,0L20,0L10,20z"] }, pageIconColor: tokens.color.accent50, pageIconInactiveColor: tokens.color.accent10, pageIconSize: 15, pageTextStyle: { color: tokens.color.tertiary }, animationDurationUpdate: 800 }); return ScrollableLegendModel; }(LegendModel); function mergeAndNormalizeLayoutParams(legendModel, target, raw) { var orient = legendModel.getOrient(); var ignoreSize = [1, 1]; ignoreSize[orient.index] = 0; mergeLayoutParam(target, raw, { type: "box", ignoreSize: !!ignoreSize }); } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/component/legend/ScrollableLegendView.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ /** * Separate legend and scrollable legend to reduce package size. */ var Group = Group$2; var WH = ["width", "height"]; var XY = ["x", "y"]; var ScrollableLegendView = function(_super) { __extends(ScrollableLegendView, _super); function ScrollableLegendView() { var _this = _super !== null && _super.apply(this, arguments) || this; _this.type = ScrollableLegendView.type; _this.newlineDisabled = true; _this._currentIndex = 0; return _this; } ScrollableLegendView.prototype.init = function() { _super.prototype.init.call(this); this.group.add(this._containerGroup = new Group()); this._containerGroup.add(this.getContentGroup()); this.group.add(this._controllerGroup = new Group()); }; /** * @override */ ScrollableLegendView.prototype.resetInner = function() { _super.prototype.resetInner.call(this); this._controllerGroup.removeAll(); this._containerGroup.removeClipPath(); this._containerGroup.__rectSize = null; }; /** * @override */ ScrollableLegendView.prototype.renderInner = function(itemAlign, legendModel, ecModel, api, selector, orient, selectorPosition) { var self = this; _super.prototype.renderInner.call(this, itemAlign, legendModel, ecModel, api, selector, orient, selectorPosition); var controllerGroup = this._controllerGroup; var pageIconSize = legendModel.get("pageIconSize", true); var pageIconSizeArr = isArray(pageIconSize) ? pageIconSize : [pageIconSize, pageIconSize]; createPageButton("pagePrev", 0); var pageTextStyleModel = legendModel.getModel("pageTextStyle"); controllerGroup.add(new ZRText({ name: "pageText", style: { text: "xx/xx", fill: pageTextStyleModel.getTextColor(), font: pageTextStyleModel.getFont(), verticalAlign: "middle", align: "center" }, silent: true })); createPageButton("pageNext", 1); function createPageButton(name, iconIdx) { var pageDataIndexName = name + "DataIndex"; var icon = createIcon(legendModel.get("pageIcons", true)[legendModel.getOrient().name][iconIdx], { onclick: bind$1(self._pageGo, self, pageDataIndexName, legendModel, api) }, { x: -pageIconSizeArr[0] / 2, y: -pageIconSizeArr[1] / 2, width: pageIconSizeArr[0], height: pageIconSizeArr[1] }); icon.name = name; controllerGroup.add(icon); } }; /** * @override */ ScrollableLegendView.prototype.layoutInner = function(legendModel, itemAlign, maxSize, isFirstRender, selector, selectorPosition) { var selectorGroup = this.getSelectorGroup(); var orientIdx = legendModel.getOrient().index; var wh = WH[orientIdx]; var xy = XY[orientIdx]; var hw = WH[1 - orientIdx]; var yx = XY[1 - orientIdx]; selector && box("horizontal", selectorGroup, legendModel.get("selectorItemGap", true)); var selectorButtonGap = legendModel.get("selectorButtonGap", true); var selectorRect = selectorGroup.getBoundingRect(); var selectorPos = [-selectorRect.x, -selectorRect.y]; var processMaxSize = clone$2(maxSize); selector && (processMaxSize[wh] = maxSize[wh] - selectorRect[wh] - selectorButtonGap); var mainRect = this._layoutContentAndController(legendModel, isFirstRender, processMaxSize, orientIdx, wh, hw, yx, xy); if (selector) { if (selectorPosition === "end") selectorPos[orientIdx] += mainRect[wh] + selectorButtonGap; else { var offset = selectorRect[wh] + selectorButtonGap; selectorPos[orientIdx] -= offset; mainRect[xy] -= offset; } mainRect[wh] += selectorRect[wh] + selectorButtonGap; selectorPos[1 - orientIdx] += mainRect[yx] + mainRect[hw] / 2 - selectorRect[hw] / 2; mainRect[hw] = Math.max(mainRect[hw], selectorRect[hw]); mainRect[yx] = Math.min(mainRect[yx], selectorRect[yx] + selectorPos[1 - orientIdx]); selectorGroup.x = selectorPos[0]; selectorGroup.y = selectorPos[1]; selectorGroup.markRedraw(); } return mainRect; }; ScrollableLegendView.prototype._layoutContentAndController = function(legendModel, isFirstRender, maxSize, orientIdx, wh, hw, yx, xy) { var contentGroup = this.getContentGroup(); var containerGroup = this._containerGroup; var controllerGroup = this._controllerGroup; box(legendModel.get("orient"), contentGroup, legendModel.get("itemGap"), !orientIdx ? null : maxSize.width, orientIdx ? null : maxSize.height); box("horizontal", controllerGroup, legendModel.get("pageButtonItemGap", true)); var contentRect = contentGroup.getBoundingRect(); var controllerRect = controllerGroup.getBoundingRect(); var showController = this._showController = contentRect[wh] > maxSize[wh]; var contentPos = [-contentRect.x, -contentRect.y]; if (!isFirstRender) contentPos[orientIdx] = contentGroup[xy]; var containerPos = [0, 0]; var controllerPos = [-controllerRect.x, -controllerRect.y]; var pageButtonGap = retrieve2(legendModel.get("pageButtonGap", true), legendModel.get("itemGap", true)); if (showController) if (legendModel.get("pageButtonPosition", true) === "end") controllerPos[orientIdx] += maxSize[wh] - controllerRect[wh]; else containerPos[orientIdx] += controllerRect[wh] + pageButtonGap; controllerPos[1 - orientIdx] += contentRect[hw] / 2 - controllerRect[hw] / 2; contentGroup.setPosition(contentPos); containerGroup.setPosition(containerPos); controllerGroup.setPosition(controllerPos); var mainRect = { x: 0, y: 0 }; mainRect[wh] = showController ? maxSize[wh] : contentRect[wh]; mainRect[hw] = Math.max(contentRect[hw], controllerRect[hw]); mainRect[yx] = Math.min(0, controllerRect[yx] + controllerPos[1 - orientIdx]); containerGroup.__rectSize = maxSize[wh]; if (showController) { var clipShape = { x: 0, y: 0 }; clipShape[wh] = Math.max(maxSize[wh] - controllerRect[wh] - pageButtonGap, 0); clipShape[hw] = mainRect[hw]; containerGroup.setClipPath(new Rect({ shape: clipShape })); containerGroup.__rectSize = clipShape[wh]; } else controllerGroup.eachChild(function(child) { child.attr({ invisible: true, silent: true }); }); var pageInfo = this._getPageInfo(legendModel); pageInfo.pageIndex != null && updateProps$1(contentGroup, { x: pageInfo.contentPosition[0], y: pageInfo.contentPosition[1] }, showController ? legendModel : null); this._updatePageInfoView(legendModel, pageInfo); return mainRect; }; ScrollableLegendView.prototype._pageGo = function(to, legendModel, api) { var scrollDataIndex = this._getPageInfo(legendModel)[to]; scrollDataIndex != null && api.dispatchAction({ type: "legendScroll", scrollDataIndex, legendId: legendModel.id }); }; ScrollableLegendView.prototype._updatePageInfoView = function(legendModel, pageInfo) { var controllerGroup = this._controllerGroup; each$4(["pagePrev", "pageNext"], function(name) { var canJump = pageInfo[name + "DataIndex"] != null; var icon = controllerGroup.childOfName(name); if (icon) { icon.setStyle("fill", canJump ? legendModel.get("pageIconColor", true) : legendModel.get("pageIconInactiveColor", true)); icon.cursor = canJump ? "pointer" : "default"; } }); var pageText = controllerGroup.childOfName("pageText"); var pageFormatter = legendModel.get("pageFormatter"); var pageIndex = pageInfo.pageIndex; var current = pageIndex != null ? pageIndex + 1 : 0; var total = pageInfo.pageCount; pageText && pageFormatter && pageText.setStyle("text", isString(pageFormatter) ? pageFormatter.replace("{current}", current == null ? "" : current + "").replace("{total}", total == null ? "" : total + "") : pageFormatter({ current, total })); }; /** * contentPosition: Array., null when data item not found. * pageIndex: number, null when data item not found. * pageCount: number, always be a number, can be 0. * pagePrevDataIndex: number, null when no previous page. * pageNextDataIndex: number, null when no next page. * } */ ScrollableLegendView.prototype._getPageInfo = function(legendModel) { var scrollDataIndex = legendModel.get("scrollDataIndex", true); var contentGroup = this.getContentGroup(); var containerRectSize = this._containerGroup.__rectSize; var orientIdx = legendModel.getOrient().index; var wh = WH[orientIdx]; var xy = XY[orientIdx]; var targetItemIndex = this._findTargetItemIndex(scrollDataIndex); var children = contentGroup.children(); var targetItem = children[targetItemIndex]; var itemCount = children.length; var pCount = !itemCount ? 0 : 1; var result = { contentPosition: [contentGroup.x, contentGroup.y], pageCount: pCount, pageIndex: pCount - 1, pagePrevDataIndex: null, pageNextDataIndex: null }; if (!targetItem) return result; var targetItemInfo = getItemInfo(targetItem); result.contentPosition[orientIdx] = -targetItemInfo.s; for (var i = targetItemIndex + 1, winStartItemInfo = targetItemInfo, winEndItemInfo = targetItemInfo, currItemInfo = null; i <= itemCount; ++i) { currItemInfo = getItemInfo(children[i]); if (!currItemInfo && winEndItemInfo.e > winStartItemInfo.s + containerRectSize || currItemInfo && !intersect(currItemInfo, winStartItemInfo.s)) { if (winEndItemInfo.i > winStartItemInfo.i) winStartItemInfo = winEndItemInfo; else winStartItemInfo = currItemInfo; if (winStartItemInfo) { if (result.pageNextDataIndex == null) result.pageNextDataIndex = winStartItemInfo.i; ++result.pageCount; } } winEndItemInfo = currItemInfo; } for (var i = targetItemIndex - 1, winStartItemInfo = targetItemInfo, winEndItemInfo = targetItemInfo, currItemInfo = null; i >= -1; --i) { currItemInfo = getItemInfo(children[i]); if ((!currItemInfo || !intersect(winEndItemInfo, currItemInfo.s)) && winStartItemInfo.i < winEndItemInfo.i) { winEndItemInfo = winStartItemInfo; if (result.pagePrevDataIndex == null) result.pagePrevDataIndex = winStartItemInfo.i; ++result.pageCount; ++result.pageIndex; } winStartItemInfo = currItemInfo; } return result; function getItemInfo(el) { if (el) { var itemRect = el.getBoundingRect(); var start = itemRect[xy] + el[xy]; return { s: start, e: start + itemRect[wh], i: el.__legendDataIndex }; } } function intersect(itemInfo, winStart) { return itemInfo.e >= winStart && itemInfo.s <= winStart + containerRectSize; } }; ScrollableLegendView.prototype._findTargetItemIndex = function(targetDataIndex) { if (!this._showController) return 0; var index; var contentGroup = this.getContentGroup(); var defaultIndex; contentGroup.eachChild(function(child, idx) { var legendDataIdx = child.__legendDataIndex; if (defaultIndex == null && legendDataIdx != null) defaultIndex = idx; if (legendDataIdx === targetDataIndex) index = idx; }); return index != null ? index : defaultIndex; }; ScrollableLegendView.type = "legend.scroll"; return ScrollableLegendView; }(LegendView); //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/component/legend/scrollableLegendAction.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ function installScrollableLegendAction(registers) { /** * @event legendScroll * @type {Object} * @property {string} type 'legendScroll' * @property {string} scrollDataIndex */ registers.registerAction("legendScroll", "legendscroll", function(payload, ecModel) { var scrollDataIndex = payload.scrollDataIndex; scrollDataIndex != null && ecModel.eachComponent({ mainType: "legend", subType: "scroll", query: payload }, function(legendModel) { legendModel.setScrollDataIndex(scrollDataIndex); }); }); } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/component/legend/installLegendScroll.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ function install$2(registers) { use(install$3); registers.registerComponentModel(ScrollableLegendModel); registers.registerComponentView(ScrollableLegendView); installScrollableLegendAction(registers); } //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/component/legend/install.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ function install$1(registers) { use(install$3); use(install$2); } //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/canvas/Layer.js function createDom(id, painter, dpr) { var newDom = platformApi.createCanvas(); var width = painter.getWidth(); var height = painter.getHeight(); var newDomStyle = newDom.style; if (newDomStyle) { newDomStyle.position = "absolute"; newDomStyle.left = "0"; newDomStyle.top = "0"; newDomStyle.width = width + "px"; newDomStyle.height = height + "px"; newDom.setAttribute("data-zr-dom-id", id); } newDom.width = width * dpr; newDom.height = height * dpr; return newDom; } function isIncrementalLayer(layer) { return !layer.__cursors.get(0); } function getStartEndFromCursor(layer) { var cursor = layer.__cursors.get(0); return { startIdx: cursor ? cursor.startIdx : 0, endIdx: cursor ? cursor.endIdx : 0 }; } var Layer = function(_super) { __extends(Layer, _super); function Layer(id, painter, dpr) { var _this = _super.call(this) || this; _this.motionBlur = false; _this.lastFrameAlpha = .7; _this.dpr = 1; _this.virtual = false; _this.config = {}; _this.zlevel = 0; _this.zlevel2 = 0; _this.maxRepaintRectCount = 5; _this.__dirty = true; _this.__firstTimePaint = true; _this.__prevIdx = { startIdx: 0, endIdx: 0 }; var dom; dpr = dpr || devicePixelRatio; if (typeof id === "string") dom = createDom(id, painter, dpr); else if (isObject$2(id)) { dom = id; id = dom.id; } _this.id = id; _this.dom = dom; var domStyle = dom.style; if (domStyle) { disableUserSelect(dom); dom.onselectstart = function() { return false; }; domStyle.padding = "0"; domStyle.margin = "0"; domStyle.borderWidth = "0"; } _this.painter = painter; _this.dpr = dpr; return _this; } Layer.prototype.afterBrush = function() { this.__prevIdx = getStartEndFromCursor(this); }; Layer.prototype.initContext = function() { this.ctx = this.dom.getContext("2d"); this.ctx.dpr = this.dpr; }; Layer.prototype.setUnpainted = function() { this.__firstTimePaint = true; }; Layer.prototype.createBackBuffer = function() { var dpr = this.dpr; this.domBack = createDom("back-" + this.id, this.painter, dpr); this.ctxBack = this.domBack.getContext("2d"); if (dpr !== 1) this.ctxBack.scale(dpr, dpr); }; Layer.prototype.createRepaintRects = function(displayList, prevList, viewWidth, viewHeight) { if (this.__firstTimePaint) { this.__firstTimePaint = false; return null; } var mergedRepaintRects = []; var maxRepaintRectCount = this.maxRepaintRectCount; var full = false; var pendingRect = new BoundingRect(0, 0, 0, 0); function addRectToMergePool(rect) { if (!rect.isFinite() || rect.isZero()) return; if (mergedRepaintRects.length === 0) { var boundingRect = new BoundingRect(0, 0, 0, 0); boundingRect.copy(rect); mergedRepaintRects.push(boundingRect); } else { var isMerged = false; var minDeltaArea = Infinity; var bestRectToMergeIdx = 0; for (var i = 0; i < mergedRepaintRects.length; ++i) { var mergedRect = mergedRepaintRects[i]; if (mergedRect.intersect(rect)) { var pendingRect_1 = new BoundingRect(0, 0, 0, 0); pendingRect_1.copy(mergedRect); pendingRect_1.union(rect); mergedRepaintRects[i] = pendingRect_1; isMerged = true; break; } else if (full) { pendingRect.copy(rect); pendingRect.union(mergedRect); var aArea = rect.width * rect.height; var bArea = mergedRect.width * mergedRect.height; var deltaArea = pendingRect.width * pendingRect.height - aArea - bArea; if (deltaArea < minDeltaArea) { minDeltaArea = deltaArea; bestRectToMergeIdx = i; } } } if (full) { mergedRepaintRects[bestRectToMergeIdx].union(rect); isMerged = true; } if (!isMerged) { var boundingRect = new BoundingRect(0, 0, 0, 0); boundingRect.copy(rect); mergedRepaintRects.push(boundingRect); } if (!full) full = mergedRepaintRects.length >= maxRepaintRectCount; } } var se = getStartEndFromCursor(this); for (var i = se.startIdx; i < se.endIdx; ++i) { var el = displayList[i]; if (el) { var shouldPaint = el.shouldBePainted(viewWidth, viewHeight, true, true); var prevRect = el.__isRendered && (el.__dirty & 1 || !shouldPaint) ? el.getPrevPaintRect() : null; if (prevRect) addRectToMergePool(prevRect); var curRect = shouldPaint && (el.__dirty & 1 || !el.__isRendered) ? el.getPaintRect() : null; if (curRect) addRectToMergePool(curRect); } } var prevIdx = this.__prevIdx; for (var i = prevIdx.startIdx; i < prevIdx.endIdx; ++i) { var el = prevList[i]; var shouldPaint = el && el.shouldBePainted(viewWidth, viewHeight, true, true); if (el && (!shouldPaint || !el.__zr) && el.__isRendered) { var prevRect = el.getPrevPaintRect(); if (prevRect) addRectToMergePool(prevRect); } } var hasIntersections; do { hasIntersections = false; for (var i = 0; i < mergedRepaintRects.length;) { if (mergedRepaintRects[i].isZero()) { mergedRepaintRects.splice(i, 1); continue; } for (var j = i + 1; j < mergedRepaintRects.length;) if (mergedRepaintRects[i].intersect(mergedRepaintRects[j])) { hasIntersections = true; mergedRepaintRects[i].union(mergedRepaintRects[j]); mergedRepaintRects.splice(j, 1); } else j++; i++; } } while (hasIntersections); this._paintRects = mergedRepaintRects; return mergedRepaintRects; }; Layer.prototype.debugGetPaintRects = function() { return (this._paintRects || []).slice(); }; Layer.prototype.resize = function(width, height) { var dpr = this.dpr; var dom = this.dom; var domStyle = dom.style; var domBack = this.domBack; if (domStyle) { domStyle.width = width + "px"; domStyle.height = height + "px"; } dom.width = width * dpr; dom.height = height * dpr; if (domBack) { domBack.width = width * dpr; domBack.height = height * dpr; if (dpr !== 1) this.ctxBack.scale(dpr, dpr); } }; Layer.prototype.clear = function(clearAll, clearColor, repaintRects) { var dom = this.dom; var ctx = this.ctx; var width = dom.width; var height = dom.height; clearColor = clearColor || this.clearColor; var haveMotionBLur = this.motionBlur && !clearAll; var lastFrameAlpha = this.lastFrameAlpha; var dpr = this.dpr; var self = this; if (haveMotionBLur) { if (!this.domBack) this.createBackBuffer(); this.ctxBack.globalCompositeOperation = "copy"; this.ctxBack.drawImage(dom, 0, 0, width / dpr, height / dpr); } var domBack = this.domBack; function doClear(x, y, width, height) { ctx.clearRect(x, y, width, height); if (clearColor && clearColor !== "transparent") { var clearColorGradientOrPattern = void 0; if (isGradientObject(clearColor)) { clearColorGradientOrPattern = (clearColor.global || clearColor.__width === width && clearColor.__height === height) && clearColor.__canvasGradient || getCanvasGradient(ctx, clearColor, { x: 0, y: 0, width, height }); clearColor.__canvasGradient = clearColorGradientOrPattern; clearColor.__width = width; clearColor.__height = height; } else if (isImagePatternObject(clearColor)) { clearColor.scaleX = clearColor.scaleX || dpr; clearColor.scaleY = clearColor.scaleY || dpr; clearColorGradientOrPattern = createCanvasPattern(ctx, clearColor, { dirty: function() { self.setUnpainted(); self.painter.refresh(); } }); } ctx.save(); ctx.fillStyle = clearColorGradientOrPattern || clearColor; ctx.fillRect(x, y, width, height); ctx.restore(); } if (haveMotionBLur) { ctx.save(); ctx.globalAlpha = lastFrameAlpha; ctx.drawImage(domBack, x, y, width, height); ctx.restore(); } } if (!repaintRects || haveMotionBLur) doClear(0, 0, width, height); else if (repaintRects.length) each$4(repaintRects, function(rect) { doClear(rect.x * dpr, rect.y * dpr, rect.width * dpr, rect.height * dpr); }); }; return Layer; }(Eventful); //#endregion //#region node_modules/.pnpm/zrender@6.1.0/node_modules/zrender/lib/canvas/Painter.js var HOVER_LAYER_ZLEVEL = 1e5; var CANVAS_ZLEVEL = 314159; var HOVER_LAYER_DIRTY_NO = void 0; var HOVER_LAYER_DIRTY_REPAINT_IF_EXISTING = 1; var HOVER_LAYER_DIRTY_REPAINT = 2; function isLayerValid(layer) { if (!layer) return false; if (layer.__builtin__) return true; if (typeof layer.resize !== "function" || typeof layer.refresh !== "function") return false; return true; } function createRoot(width, height) { var domRoot = document.createElement("div"); domRoot.style.cssText = [ "position:relative", "width:" + width + "px", "height:" + height + "px", "padding:0", "margin:0", "border-width:0" ].join(";") + ";"; return domRoot; } function createBuiltinLayer(id, painter, zlevel, zlevel2) { var layer = new Layer(id, painter, painter.dpr); layer.zlevel = zlevel; layer.zlevel2 = zlevel2; layer.__builtin__ = true; resetLayerDrawCursors(layer); return layer; } function resetLayerDrawCursors(layer) { layer.__cursorStack = []; layer.__cursors = createHashMap(); } function resetLayerDrawCursor(cursor) { cursor.startIdx = cursor.drawIdx = cursor.endIdx = cursor.endIdxNew = 0; cursor.used = false; cursor.first = cursor.last = NaN; cursor.notClearIdx = -1; return cursor; } function ensureLayerDrawCursor(layer, incrementalCompat) { var cursors = layer.__cursors; var incremental = +incrementalCompat; return cursors.get(incremental) || (layer.__cursorStack.push(incremental), cursors.set(incremental, resetLayerDrawCursor({ key: incremental }))); } function eachCursorInLayer(layer, cb) { var cursorStack = layer.__cursorStack; for (var i = 0; i < cursorStack.length; i++) cb(layer.__cursors.get(cursorStack[i])); } function ensureLayerListInZLevel(internal, zlevel) { var layers = internal.layers; return layers[zlevel] || (layers[zlevel] = new Array(3)); } function eachLayer(internal, cb, filter) { var layerStack = internal.layerStack; for (var i = 0; i < layerStack.length; i++) { var zlevel = layerStack[i].zl; var zlevel2 = layerStack[i].zl2; var layer = internal.layers[zlevel][zlevel2]; if (!filter || (!(filter & EACH_LAYER_BUILTIN) || layer.__builtin__) && (!(filter & EACH_LAYER_NOT_BUILTIN) || !layer.__builtin__) && (!(filter & EACH_LAYER_NOT_HOVER) || layer !== internal.hoverlayer)) cb(layer, zlevel, zlevel2, i); } } var EACH_LAYER_BUILTIN = 1; var EACH_LAYER_NOT_BUILTIN = 2; var EACH_LAYER_NOT_HOVER = 4; var EACH_LAYER_BUILTIN_NOT_HOVER = EACH_LAYER_BUILTIN | EACH_LAYER_NOT_HOVER; var CanvasPainter = function() { function CanvasPainter(root, storage, opts, id) { this.type = "canvas"; this._prevDisplayList = []; this._layerConfig = {}; this._needsManuallyCompositing = false; this.type = "canvas"; this._i = { layerStack: [], layers: [] }; var singleCanvas = !root.nodeName || root.nodeName.toUpperCase() === "CANVAS"; this._opts = opts = extend({}, opts || {}); this.dpr = opts.devicePixelRatio || devicePixelRatio; this._singleCanvas = singleCanvas; this.root = root; if (root.style) { disableUserSelect(root); root.innerHTML = ""; } this.storage = storage; this._prevDisplayList = []; if (!singleCanvas) { this._width = getSize(root, 0, opts); this._height = getSize(root, 1, opts); var domRoot = this._domRoot = createRoot(this._width, this._height); root.appendChild(domRoot); } else { var rootCanvas = root; var width = rootCanvas.width; var height = rootCanvas.height; if (opts.width != null) width = opts.width; if (opts.height != null) height = opts.height; this.dpr = opts.devicePixelRatio || 1; rootCanvas.width = width * this.dpr; rootCanvas.height = height * this.dpr; this._width = width; this._height = height; var singleLayer = createBuiltinLayer(rootCanvas, this, CANVAS_ZLEVEL, 0); singleLayer.initContext(); this._insertLayer(singleLayer, CANVAS_ZLEVEL, 0, true); this._domRoot = root; } } CanvasPainter.prototype.getType = function() { return "canvas"; }; CanvasPainter.prototype.isSingleCanvas = function() { return this._singleCanvas; }; CanvasPainter.prototype.getViewportRoot = function() { return this._domRoot; }; CanvasPainter.prototype.getViewportRootOffset = function() { var viewportRoot = this.getViewportRoot(); if (viewportRoot) return { offsetLeft: viewportRoot.offsetLeft || 0, offsetTop: viewportRoot.offsetTop || 0 }; }; CanvasPainter.prototype.refresh = function(optOrPaintAll) { var opt; if (optOrPaintAll && !isObject$2(optOrPaintAll)) opt = { paintAll: !!optOrPaintAll }; else opt = optOrPaintAll || {}; var refresh = retrieve2(opt.refresh, true); var refreshHover = retrieve2(opt.refreshHover, false); if (refreshHover) this._hoverLayerDirty = HOVER_LAYER_DIRTY_REPAINT; if (!refresh) { if (refreshHover) this._paintHoverList(this.storage.getDisplayList(false)); return this; } var list = this.storage.getDisplayList(true); this._updateLayerStatus(list, opt.paintAll); this._redrawId = Math.random(); var prevList = this._prevDisplayList; this._paintList(list, prevList, this._redrawId); var bgColor = this._backgroundColor; eachLayer(this._i, function(layer, zlevel, zlevel2, idx) { if (layer.refresh) layer.refresh(idx === 0 ? bgColor : null); }, EACH_LAYER_NOT_BUILTIN); if (this._opts.useDirtyRect) this._prevDisplayList = list.slice(); return this; }; CanvasPainter.prototype._paintHoverList = function(list) { var hoverLayer = this._i.hoverlayer; var hoverLayerDirty = this._hoverLayerDirty; this._hoverLayerDirty = HOVER_LAYER_DIRTY_NO; if (hoverLayerDirty === HOVER_LAYER_DIRTY_NO) return; if (!hoverLayer && hoverLayerDirty === HOVER_LAYER_DIRTY_REPAINT) hoverLayer = this._i.hoverlayer = this._ensureLayer(HOVER_LAYER_ZLEVEL); if (!hoverLayer) return; hoverLayer.clear(); var scope = { inHover: true, viewWidth: this._width, viewHeight: this._height, beforeBrushParam: {} }; var ctx; for (var i = 0, len = list.length; i < len; i++) { var el = list[i]; if (!el.__inHover) continue; if (!ctx) { ctx = hoverLayer.ctx; ctx.save(); } var hoverStyle = el.__hoverStyle; var originalStyle = void 0; if (hoverStyle) { originalStyle = el.style; el.style = hoverStyle; } brush(ctx, el, scope); if (hoverStyle) el.style = originalStyle; } if (ctx) { brushLoopFinalize(ctx, scope); ctx.restore(); } }; CanvasPainter.prototype.getHoverLayer = function() { return this._ensureLayer(HOVER_LAYER_ZLEVEL); }; CanvasPainter.prototype.paintOne = function(ctx, el) { brushSingle(ctx, el); }; CanvasPainter.prototype._paintList = function(list, prevList, redrawId) { if (this._redrawId !== redrawId) return; var finished = this._doPaintList(list, prevList); if (this._needsManuallyCompositing) this._compositeManually(); if (!finished) { var self_1 = this; requestAnimationFrame(function() { self_1._paintList(list, prevList, redrawId); }); } else { eachLayer(this._i, function(layer) { layer.afterBrush && layer.afterBrush(); }, EACH_LAYER_BUILTIN_NOT_HOVER); this._paintHoverList(list); } }; CanvasPainter.prototype._compositeManually = function() { var ctx = this._ensureLayer(CANVAS_ZLEVEL).ctx; var width = this._domRoot.width; var height = this._domRoot.height; ctx.clearRect(0, 0, width, height); eachLayer(this._i, function(layer) { if (layer.virtual) ctx.drawImage(layer.dom, 0, 0, width, height); }, EACH_LAYER_BUILTIN); }; CanvasPainter.prototype._doPaintList = function(list, prevList) { var painter = this; var finished = true; eachLayer(this._i, function(layer) { var needDraw = false; eachCursorInLayer(layer, function(cursor) { if (cursor.drawIdx < cursor.endIdx || cursor.notClearIdx >= 0) needDraw = true; }); if (!needDraw && !layer.__dirty) return; var repaintRects = painter._opts.useDirtyRect && !isIncrementalLayer(layer) ? layer.createRepaintRects(list, prevList, painter._width, painter._height) : null; var firstLayerKey = painter._i.layerStack[0]; var contentRetained = true; if (layer.__dirty) { contentRetained = false; layer.__dirty = false; var clearColor = layer.zlevel === firstLayerKey.zl && layer.zlevel2 === firstLayerKey.zl2 ? painter._backgroundColor : null; layer.clear(false, clearColor, repaintRects); } eachCursorInLayer(layer, function(cursor) { var cursorFinished = painter._paintPerCursor(layer, cursor, list, repaintRects, contentRetained); finished = finished && cursorFinished; }); }, EACH_LAYER_BUILTIN_NOT_HOVER); if (env.wxa) eachLayer(this._i, function(layer) { if (layer && layer.ctx && layer.ctx.draw) layer.ctx.draw(); }); return finished; }; CanvasPainter.prototype._paintPerCursor = function(layer, layerCursor, list, repaintRects, contentRetained) { var ctx = layer.ctx; if (repaintRects) if (!repaintRects.length) layerCursor.drawIdx = layerCursor.endIdx; else { var dpr = this.dpr; for (var r = 0; r < repaintRects.length; ++r) { var rect = repaintRects[r]; ctx.save(); ctx.beginPath(); ctx.rect(rect.x * dpr, rect.y * dpr, rect.width * dpr, rect.height * dpr); ctx.clip(); this._paintPerCursorInRect(layer, layerCursor, list, rect, contentRetained); ctx.restore(); } } else { ctx.save(); this._paintPerCursorInRect(layer, layerCursor, list, null, contentRetained); ctx.restore(); } return layerCursor.drawIdx >= layerCursor.endIdx; }; CanvasPainter.prototype._paintPerCursorInRect = function(layer, layerCursor, list, repaintRect, contentRetained) { var scope = { inHover: false, allClipped: false, prevEl: null, viewWidth: this._width, viewHeight: this._height, beforeBrushParam: { contentRetained } }; var ctx = layer.ctx; var useTimer = isIncrementalLayer(layer); var startTime = useTimer && platformApi.getTime(); var drawIdxBegin = layerCursor.drawIdx; var notClearIdx = layerCursor.notClearIdx; var idx = notClearIdx >= 0 ? Math.min(notClearIdx, drawIdxBegin) : drawIdxBegin; for (; idx < layerCursor.endIdx; idx++) { var el = list[idx]; if (idx < drawIdxBegin && !el.notClear) continue; if (el.__inHover) this._hoverLayerDirty = HOVER_LAYER_DIRTY_REPAINT; if (repaintRect != null) { var paintRect = el.getPaintRect(); if (paintRect && paintRect.intersect(repaintRect)) { brush(ctx, el, scope); el.setPrevPaintRect(paintRect); } } else brush(ctx, el, scope); if (useTimer) { if (platformApi.getTime() - startTime > 15) { idx++; break; } } } brushLoopFinalize(ctx, scope); layerCursor.drawIdx = Math.max(idx, drawIdxBegin); }; CanvasPainter.prototype.getLayer = function(zlevel, virtual) { return this._ensureLayer(zlevel, 0, virtual); }; CanvasPainter.prototype._ensureLayer = function(zlevel, zlevel2, virtual) { zlevel2 = zlevel2 || 0; var singleCanvas = this._singleCanvas; if (singleCanvas && !this._needsManuallyCompositing) { zlevel = CANVAS_ZLEVEL; zlevel2 = 0; } var layer = ensureLayerListInZLevel(this._i, zlevel)[zlevel2]; if (!layer) { layer = createBuiltinLayer("zr_" + zlevel + "." + zlevel2, this, zlevel, zlevel2); if (this._layerConfig[zlevel]) merge(layer, this._layerConfig[zlevel], true); if (virtual || singleCanvas && zlevel !== CANVAS_ZLEVEL) layer.virtual = true; this._insertLayer(layer, zlevel, zlevel2, false); layer.initContext(); } return layer; }; CanvasPainter.prototype.insertLayer = function(zlevel, layer) { this._insertLayer(layer, zlevel, 0, false); }; CanvasPainter.prototype._insertLayer = function(layer, zlevel, zlevel2, suppressDOMInsert) { var internal = this._i; var layersMap = internal.layers; var layerStack = internal.layerStack; var domRoot = this._domRoot; var prevLayer = null; if (layersMap[zlevel] && layersMap[zlevel][zlevel2]) return; if (!isLayerValid(layer)) return; var len = layerStack.length; var i = 0; while (i < len && (layerStack[i].zl < zlevel || layerStack[i].zl === zlevel && layerStack[i].zl2 < zlevel2)) i++; if (i > 0) prevLayer = ensureLayerListInZLevel(internal, layerStack[i - 1].zl)[layerStack[i - 1].zl2]; layerStack.splice(i, 0, { zl: zlevel, zl2: zlevel2 }); ensureLayerListInZLevel(internal, zlevel)[zlevel2] = layer; if (!suppressDOMInsert && !layer.virtual) if (prevLayer) { var prevDom = prevLayer.dom; if (prevDom.nextSibling) domRoot.insertBefore(layer.dom, prevDom.nextSibling); else domRoot.appendChild(layer.dom); } else if (domRoot.firstChild) domRoot.insertBefore(layer.dom, domRoot.firstChild); else domRoot.appendChild(layer.dom); layer.painter || (layer.painter = this); }; CanvasPainter.prototype.eachLayer = function(cb, context) { return eachLayer(this._i, function(layer, zlevel) { cb.call(context, layer, zlevel); }); }; CanvasPainter.prototype.eachBuiltinLayer = function(cb, context) { return eachLayer(this._i, function(layer, zlevel) { cb.call(context, layer, zlevel); }, EACH_LAYER_BUILTIN); }; CanvasPainter.prototype.eachOtherLayer = function(cb, context) { return eachLayer(this._i, function(layer, zlevel) { cb.call(context, layer, zlevel); }, EACH_LAYER_NOT_BUILTIN); }; CanvasPainter.prototype.getLayers = function() { var layers = {}; eachLayer(this._i, function(layer, zlevel, zlevel2) { layers[layer.id] = layer; }); return layers; }; CanvasPainter.prototype._updateLayerStatus = function(list, paintAll) { var painter = this; if (painter._singleCanvas) for (var i = 1; i < list.length; i++) { var el = list[i]; if (el.zlevel !== list[i - 1].zlevel || el.incremental) { painter._needsManuallyCompositing = true; break; } } eachLayer(painter._i, function(layer) { layer.__dirty = false; eachCursorInLayer(layer, function(cursor) { cursor.used = false; cursor.endIdxNew = 0; cursor.notClearIdx = -1; }); }, EACH_LAYER_BUILTIN_NOT_HOVER); var prevZLevel; var currLayer = null; var currCursor = null; var aboveIncrementalInCurrZLevel = false; for (var idx = 0, len = list.length; idx < len; idx++) { var el = list[idx]; var zlevel = el.zlevel; var elIncremental = el.incremental; var zlevel2 = void 0; if (prevZLevel !== zlevel) { prevZLevel = zlevel; aboveIncrementalInCurrZLevel = false; } if (elIncremental) { aboveIncrementalInCurrZLevel = true; zlevel2 = 1; } else zlevel2 = aboveIncrementalInCurrZLevel ? 2 : 0; if (!currLayer || zlevel !== currLayer.zlevel || zlevel2 !== currLayer.zlevel2) { currLayer = painter._ensureLayer(zlevel, zlevel2); currCursor = null; if (!currLayer.__builtin__) { logError("ZLevel " + zlevel + " has been used by unknown layer " + currLayer.id); continue; } } if (!currCursor || elIncremental !== currCursor.key) { currCursor = ensureLayerDrawCursor(currLayer, elIncremental); if (!currCursor.used) { currCursor.used = true; if (!paintAll && currCursor.first === el.id) { var idxShift = idx - currCursor.startIdx; currCursor.startIdx = idx; currCursor.drawIdx += idxShift; currCursor.endIdx += idxShift; } else { currLayer.__dirty = true; currCursor.first = el.id; currCursor.startIdx = currCursor.drawIdx = idx; currCursor.endIdx = idx + 1; } } } currCursor.endIdxNew = idx + 1; if (el.__dirty & 1 && !el.__inHover) { if (!elIncremental || !el.notClear && idx < currCursor.drawIdx) currLayer.__dirty = true; if (elIncremental && el.notClear && currCursor.notClearIdx < 0) currCursor.notClearIdx = idx; } } eachLayer(painter._i, function(layer) { var cursorStack = layer.__cursorStack; var cursors = layer.__cursors; for (var i = cursorStack.length - 1; i >= 0; i--) { var cursor = cursors.get(cursorStack[i]); if (!cursor.used) { layer.__dirty = true; cursors.removeKey(cursorStack[i]); cursorStack.splice(i, 1); } else { var endIdxNew = cursor.endIdxNew; if (isIncrementalLayer(layer) ? endIdxNew < cursor.drawIdx : endIdxNew !== cursor.endIdx || !endIdxNew || list[endIdxNew - 1].id !== cursor.last) layer.__dirty = true; cursor.endIdx = cursor.endIdxNew; cursor.last = endIdxNew ? list[endIdxNew - 1].id : NaN; } } if (layer.__dirty) { eachCursorInLayer(layer, function(cursor) { cursor.drawIdx = cursor.startIdx; }); if (painter._hoverLayerDirty === HOVER_LAYER_DIRTY_NO) painter._hoverLayerDirty = HOVER_LAYER_DIRTY_REPAINT_IF_EXISTING; } }, EACH_LAYER_BUILTIN_NOT_HOVER); }; CanvasPainter.prototype.clear = function() { eachLayer(this._i, function(layer) { layer.clear(); resetLayerDrawCursors(layer); }, EACH_LAYER_BUILTIN); return this; }; CanvasPainter.prototype.setBackgroundColor = function(backgroundColor) { this._backgroundColor = backgroundColor; eachLayer(this._i, function(layer) { layer.setUnpainted(); }); }; CanvasPainter.prototype.configLayer = function(zlevel, config) { if (config) { var layerConfig_1 = this._layerConfig; if (!layerConfig_1[zlevel]) layerConfig_1[zlevel] = config; else merge(layerConfig_1[zlevel], config, true); eachLayer(this._i, function(layer, zlevel) { merge(layer, layerConfig_1[zlevel], true); }); } }; CanvasPainter.prototype.delLayer = function(zlevel) { var layerStack = this._i.layerStack; var layersMap = this._i.layers; for (var i = layerStack.length - 1; i >= 0; i--) { var key = layerStack[i]; if (key.zl === zlevel) { var layer = layersMap[zlevel][key.zl2]; if (layer.__builtin__) continue; layerStack.splice(i, 1); layersMap[zlevel][key.zl2] = void 0; if (!layer.virtual) { var parentNode = layer.dom.parentNode; parentNode && parentNode.removeChild(layer.dom); } } } }; CanvasPainter.prototype.resize = function(width, height) { if (!this._domRoot.style) { if (width == null || height == null) return; this._width = width; this._height = height; this._ensureLayer(CANVAS_ZLEVEL).resize(width, height); } else { var domRoot = this._domRoot; domRoot.style.display = "none"; var opts = this._opts; var root = this.root; width != null && (opts.width = width); height != null && (opts.height = height); width = getSize(root, 0, opts); height = getSize(root, 1, opts); domRoot.style.display = ""; if (this._width !== width || height !== this._height) { domRoot.style.width = width + "px"; domRoot.style.height = height + "px"; eachLayer(this._i, function(layer) { layer.resize(width, height); }); this.refresh({ paintAll: true }); } this._width = width; this._height = height; } return this; }; CanvasPainter.prototype.clearLayer = function(zlevel) { each$4(this._i.layers[zlevel], function(layer) { if (layer && !layer.__builtin__) layer.clear(); }); }; CanvasPainter.prototype.dispose = function() { this.root.innerHTML = ""; this.root = this.storage = this._domRoot = this._i = null; }; CanvasPainter.prototype.getRenderedCanvas = function(opts) { opts = opts || {}; if (this._singleCanvas && !this._compositeManually) return this._i.layers[CANVAS_ZLEVEL][0].dom; var imageLayer = new Layer("image", this, opts.pixelRatio || this.dpr); imageLayer.initContext(); imageLayer.clear(false, opts.backgroundColor || this._backgroundColor); var ctx = imageLayer.ctx; if (opts.pixelRatio <= this.dpr) { this.refresh(); var width_1 = imageLayer.dom.width; var height_1 = imageLayer.dom.height; eachLayer(this._i, function(layer) { if (layer.__builtin__) ctx.drawImage(layer.dom, 0, 0, width_1, height_1); else if (layer.renderToCanvas) { ctx.save(); layer.renderToCanvas(ctx); ctx.restore(); } }); } else { var scope = { inHover: false, viewWidth: this._width, viewHeight: this._height, beforeBrushParam: {} }; var displayList = this.storage.getDisplayList(true); for (var i = 0, len = displayList.length; i < len; i++) { var el = displayList[i]; brush(ctx, el, scope); } brushLoopFinalize(ctx, scope); } return imageLayer.dom; }; CanvasPainter.prototype.getWidth = function() { return this._width; }; CanvasPainter.prototype.getHeight = function() { return this._height; }; return CanvasPainter; }(); //#endregion //#region node_modules/.pnpm/echarts@6.1.0/node_modules/echarts/lib/renderer/installCanvasRenderer.js /** * AUTO-GENERATED FILE. DO NOT MODIFY. */ function install(registers) { registers.registerPainter("canvas", CanvasPainter); } //#endregion //#region node_modules/.pnpm/vue-echarts@8.0.1_echarts@6.1.0_vue@3.5.35_typescript@6.0.3_/node_modules/vue-echarts/dist/index.js var METHOD_NAMES = [ "getWidth", "getHeight", "getDom", "getOption", "resize", "dispatchAction", "convertToPixel", "convertFromPixel", "containPixel", "getDataURL", "getConnectedDataURL", "appendData", "clear", "isDisposed", "dispose" ]; function usePublicAPI(chart) { function makePublicMethod(name) { const fn = function(...args) { if (!chart.value) throw new Error("ECharts is not initialized yet."); return Reflect.apply(chart.value[name], chart.value, args); }; return fn; } return METHOD_NAMES.reduce((acc, name) => { acc[name] = makePublicMethod(name); return acc; }, {}); } function useAutoresize(chart, autoresize, root) { watch([ root, chart, autoresize ], ([root$1, chart$1, autoresize$1], _, onCleanup) => { let ro = null; if (root$1 && chart$1 && autoresize$1) { const { offsetWidth, offsetHeight } = root$1; const { throttle: wait = 100, onResize } = autoresize$1 === true ? {} : autoresize$1; let initialResizeTriggered = false; const callback = () => { chart$1.resize(); onResize?.(); }; const resizeCallback = wait ? throttle(callback, wait) : callback; ro = new ResizeObserver(() => { if (!initialResizeTriggered) { initialResizeTriggered = true; if (root$1.offsetWidth === offsetWidth && root$1.offsetHeight === offsetHeight) return; } if (root$1.offsetWidth === 0 || root$1.offsetHeight === 0) return; resizeCallback(); }); ro.observe(root$1); } onCleanup(() => { if (ro) { ro.disconnect(); ro = null; } }); }); } var autoresizeProps = { autoresize: [Boolean, Object] }; var LOADING_OPTIONS_KEY = Symbol(); function useLoading(chart, loading, loadingOptions) { const defaultLoadingOptions = inject(LOADING_OPTIONS_KEY, {}); const realLoadingOptions = computed(() => ({ ...toValue(defaultLoadingOptions), ...loadingOptions?.value })); watchEffect(() => { const instance = chart.value; if (!instance) return; if (loading.value) instance.showLoading(realLoadingOptions.value); else instance.hideLoading(); }); } var loadingProps = { loading: Boolean, loadingOptions: Object }; function isBrowser() { return typeof window !== "undefined" && typeof document !== "undefined"; } var onRE = /^on[^a-z]/; var isOn = (key) => onRE.test(key); function omitOn(attrs) { const result = {}; for (const key in attrs) if (!isOn(key)) result[key] = attrs[key]; return result; } function isValidArrayIndex(key) { const num = Number(key); return Number.isInteger(num) && num >= 0 && num < Math.pow(2, 32) - 1 && String(num) === key; } function isSameSet(a, b) { const setA = new Set(a); const setB = new Set(b); if (setA.size !== setB.size) return false; for (const val of setA) if (!setB.has(val)) return false; return true; } function isPlainObject(v) { return v != null && typeof v === "object" && !Array.isArray(v); } var LOG_PREFIX = "[vue-echarts]"; function warn$1(message) { warn(`${LOG_PREFIX} ${message}`); } var SLOT_OPTION_PATHS = { tooltip: ["tooltip", "formatter"], dataView: [ "toolbox", "feature", "dataView", "optionToContent" ] }; var SLOT_PREFIXES = Object.keys(SLOT_OPTION_PATHS); function isValidSlotName(key) { return SLOT_PREFIXES.some((slotPrefix) => key === slotPrefix || key.startsWith(slotPrefix + "-")); } function useSlotOption(slots, onSlotsChange) { const detachedRoot = isBrowser() ? document.createElement("div") : void 0; const containers = shallowReactive({}); const initialized = shallowReactive({}); const params = shallowReactive({}); const isMounted = shallowRef(false); const teleportedSlots = () => { return isMounted.value && detachedRoot ? h(Teleport, { to: detachedRoot }, Object.entries(slots).filter(([key]) => isValidSlotName(key)).map(([key, slot]) => { const slotName = key; return h("div", { ref: (el) => { if (el instanceof HTMLElement) containers[slotName] = el; }, style: { display: "contents" } }, initialized[slotName] ? slot?.(params[slotName]) : void 0); })) : void 0; }; function isObject(val) { return val !== null && typeof val === "object" && !Array.isArray(val); } function patchOption(src) { const root = { ...src }; const ensureChild = (parent, seg) => { const next = parent[seg]; if (Array.isArray(next)) { parent[seg] = [...next]; return parent[seg]; } if (isObject(next)) { parent[seg] = { ...next }; return parent[seg]; } if (next === void 0) { parent[seg] = isValidArrayIndex(seg) ? [] : {}; return parent[seg]; } }; Object.keys(slots).filter((key) => { const valid = isValidSlotName(key); if (!valid) warn$1(`Invalid slot name: ${key}`); return valid; }).forEach((key) => { const [prefix, ...rest] = key.split("-"); const tail = SLOT_OPTION_PATHS[prefix]; if (!tail) return; const path = [...rest, ...tail]; if (path.length === 0) return; let cur = root; for (let i = 0; i < path.length - 1; i++) { cur = ensureChild(cur, path[i]); if (!cur) return; } cur[path[path.length - 1]] = (p) => { initialized[key] = true; params[key] = p; return containers[key]; }; }); return root; } let slotNames = []; onUpdated(() => { const newSlotNames = Object.keys(slots).filter(isValidSlotName); if (!isSameSet(newSlotNames, slotNames)) { slotNames.forEach((key) => { if (!newSlotNames.includes(key)) { delete params[key]; delete initialized[key]; delete containers[key]; } }); slotNames = newSlotNames; onSlotsChange(); } }); onMounted(() => { isMounted.value = true; }); onUnmounted(() => { detachedRoot?.remove(); }); return { teleportedSlots, patchOption }; } var registered = null; var TAG_NAME = "x-vue-echarts"; function register() { if (registered != null) return registered; const registry = globalThis.customElements; if (!isBrowser() || !registry?.get) { registered = false; return registered; } if (!registry.get(TAG_NAME)) try { class ECElement extends HTMLElement { __dispose = null; disconnectedCallback() { if (this.__dispose) { this.__dispose(); this.__dispose = null; } } } registry.define(TAG_NAME, ECElement); } catch { registered = false; return registered; } registered = true; return registered; } /** * Read an item's `id` as a string. * Only accept string or number. Other types are ignored to surface inconsistent data early. */ function readId(item) { if (!isPlainObject(item)) return; const raw = item.id; if (typeof raw === "string") return raw; if (typeof raw === "number" && Number.isFinite(raw)) return String(raw); } /** * Build a minimal signature from a full ECharts option. * Only top-level keys are inspected. */ function buildSignature(option) { const opt = option; const optionsLength = Array.isArray(opt.options) ? opt.options.length : 0; const mediaLength = Array.isArray(opt.media) ? opt.media.length : 0; const arrays = Object.create(null); const objects = []; const scalars = []; for (const key of Object.keys(opt)) { if (key === "options" || key === "media") continue; const value = opt[key]; if (Array.isArray(value)) { const items = value; const ids = /* @__PURE__ */ new Set(); let noIdCount = 0; for (let i = 0; i < items.length; i++) { const id = readId(items[i]); if (id !== void 0) ids.add(id); else noIdCount++; } arrays[key] = { idsSorted: ids.size > 0 ? Array.from(ids).sort() : [], noIdCount }; } else if (isPlainObject(value)) objects.push(key); else if (value !== void 0) scalars.push(key); } if (objects.length > 1) objects.sort(); if (scalars.length > 1) scalars.sort(); return { optionsLength, mediaLength, arrays, objects, scalars }; } function diffKeys(prevKeys, nextKeys) { if (prevKeys.length === 0) return []; if (nextKeys.length === 0) return prevKeys.slice(); const nextSet = new Set(nextKeys); const missing = []; for (let i = 0; i < prevKeys.length; i++) { const key = prevKeys[i]; if (!nextSet.has(key)) missing.push(key); } return missing; } function hasMissingIds(prevIds, nextIds) { if (prevIds.length === 0) return false; if (nextIds.length === 0) return true; const nextSet = new Set(nextIds); for (let i = 0; i < prevIds.length; i++) if (!nextSet.has(prevIds[i])) return true; return false; } /** * Produce an update plan plus a normalized option that encodes common deletions. * Falls back to `notMerge: true` when the change looks complex. */ function planUpdate(prev, option) { const next = buildSignature(option); if (!prev) return { option, signature: next, plan: { notMerge: false } }; if (next.optionsLength < prev.optionsLength) return { option, signature: next, plan: { notMerge: true } }; if (next.mediaLength < prev.mediaLength) return { option, signature: next, plan: { notMerge: true } }; if (diffKeys(prev.scalars, next.scalars).length > 0) return { option, signature: next, plan: { notMerge: true } }; const replace = /* @__PURE__ */ new Set(); const overrides = /* @__PURE__ */ new Map(); const missingObjects = diffKeys(prev.objects, next.objects); for (let i = 0; i < missingObjects.length; i++) overrides.set(missingObjects[i], null); for (const key of Object.keys(prev.arrays)) { const prevArray = prev.arrays[key]; if (!prevArray) continue; const nextArray = next.arrays[key]; if (!nextArray) { if (prevArray.idsSorted.length > 0 || prevArray.noIdCount > 0) { overrides.set(key, []); replace.add(key); } continue; } if (hasMissingIds(prevArray.idsSorted, nextArray.idsSorted)) { replace.add(key); continue; } if (nextArray.noIdCount < prevArray.noIdCount) replace.add(key); } let normalizedOption = option; let signature = next; if (overrides.size > 0) { const clone = { ...option }; overrides.forEach((value, key) => { clone[key] = value; }); normalizedOption = clone; signature = buildSignature(normalizedOption); } const replaceMerge = replace.size > 0 ? Array.from(replace).sort() : void 0; return { option: normalizedOption, signature, plan: replaceMerge ? { notMerge: false, replaceMerge } : { notMerge: false } }; } var style_default = "x-vue-echarts{display:block;width:100%;height:100%;min-width:0;}\nx-vue-echarts>:first-child,x-vue-echarts>:first-child>canvas{border-radius:inherit;}\n"; if (typeof document !== "undefined") if (Array.isArray(document.adoptedStyleSheets) && "replaceSync" in CSSStyleSheet.prototype) { const sheet = new CSSStyleSheet(); sheet.replaceSync(style_default); document.adoptedStyleSheets = [...document.adoptedStyleSheets, sheet]; } else { const styleEl = document.createElement("style"); styleEl.textContent = style_default; document.head.appendChild(styleEl); } var wcRegistered = register(); var THEME_KEY = Symbol(); var INIT_OPTIONS_KEY = Symbol(); var UPDATE_OPTIONS_KEY = Symbol(); var src_default = defineComponent({ name: "Echarts", inheritAttrs: false, props: { option: Object, theme: { type: [Object, String] }, initOptions: Object, updateOptions: Object, group: String, manualUpdate: Boolean, ...autoresizeProps, ...loadingProps }, emits: {}, slots: Object, setup(props, { attrs, expose, slots }) { const root = shallowRef(); const chart = shallowRef(); const defaultTheme = inject(THEME_KEY, null); const defaultInitOptions = inject(INIT_OPTIONS_KEY, null); const defaultUpdateOptions = inject(UPDATE_OPTIONS_KEY, null); const { autoresize, manualUpdate, loading, loadingOptions } = toRefs(props); const realTheme = computed(() => props.theme || toValue(defaultTheme)); const realInitOptions = computed(() => props.initOptions || toValue(defaultInitOptions) || void 0); const realUpdateOptions = computed(() => props.updateOptions || toValue(defaultUpdateOptions)); const nonEventAttrs = computed(() => omitOn(attrs)); const nativeListeners = {}; const listeners = /* @__PURE__ */ new Map(); const { teleportedSlots, patchOption } = useSlotOption(slots, () => { if (!manualUpdate.value && props.option && chart.value) applyOption(chart.value, props.option); }); let lastSignature; function resolveUpdateOptions(plan) { const result = {}; const replacements = (plan?.replaceMerge ?? []).filter((key) => key != null); if (replacements.length > 0) result.replaceMerge = [...new Set(replacements)]; if (plan?.notMerge !== void 0) result.notMerge = plan.notMerge; return result; } function applyOption(instance, option, override, manual = false) { const patched = patchOption(option); if (manual) { instance.setOption(patched, override ?? {}); lastSignature = void 0; return; } if (realUpdateOptions.value) { const updateOptions$1 = override ?? realUpdateOptions.value; instance.setOption(patched, updateOptions$1); lastSignature = void 0; return; } const planned = planUpdate(lastSignature, patched); const updateOptions = resolveUpdateOptions(planned.plan); instance.setOption(planned.option, updateOptions); lastSignature = planned.signature; } Object.keys(attrs).filter((key) => isOn(key)).forEach((key) => { if (key.indexOf("Native:") === 2) { const nativeKey = `on${key.charAt(9).toUpperCase()}${key.slice(10)}`; nativeListeners[nativeKey] = attrs[key]; return; } let event = key.charAt(2).toLowerCase() + key.slice(3); let zr; if (event.indexOf("zr:") === 0) { zr = true; event = event.substring(3); } let once; if (event.substring(event.length - 4) === "Once") { once = true; event = event.substring(0, event.length - 4); } listeners.set({ event, zr, once }, attrs[key]); }); function init$1() { if (!root.value) return; const instance = chart.value = init(root.value, realTheme.value, realInitOptions.value); if (props.group) instance.group = props.group; listeners.forEach((handler, { zr, once, event }) => { if (!handler) return; const target = zr ? instance.getZr() : instance; if (once) { const raw = handler; let called = false; handler = (...args) => { if (called) return; called = true; raw(...args); target.off(event, handler); }; } target.on(event, handler); }); function resize() { if (instance && !instance.isDisposed()) instance.resize(); } function commit() { const { option } = props; if (manualUpdate.value) { if (option) applyOption(instance, option, void 0, true); return; } if (option) applyOption(instance, option); } if (autoresize.value) nextTick(() => { resize(); commit(); }); else commit(); } const setOption = (option, notMerge, lazyUpdate) => { if (!props.manualUpdate) { warn$1("`setOption` is only available when `manual-update` is `true`."); return; } const updateOptions = typeof notMerge === "boolean" ? { notMerge, lazyUpdate } : notMerge; if (!chart.value) return; applyOption(chart.value, option, updateOptions ?? void 0, true); }; function cleanup() { if (chart.value) { chart.value.dispose(); chart.value = void 0; } lastSignature = void 0; } watch(() => props.option, (option) => { if (!option) { lastSignature = void 0; return; } if (manualUpdate.value) { warn$1("`option` prop changes are ignored when `manual-update` is `true`."); return; } if (!chart.value) return; applyOption(chart.value, option); }, { deep: true }); watch([manualUpdate, realInitOptions], () => { cleanup(); init$1(); }, { deep: true }); watch(realTheme, (theme) => { chart.value?.setTheme(theme || {}); }, { deep: true }); watchEffect(() => { if (props.group && chart.value) chart.value.group = props.group; }); const publicApi = usePublicAPI(chart); useLoading(chart, loading, loadingOptions); useAutoresize(chart, autoresize, root); onMounted(() => { init$1(); }); onBeforeUnmount(() => { if (wcRegistered && root.value) root.value.__dispose = cleanup; else cleanup(); }); expose({ setOption, root, chart, ...publicApi }); return (() => h(TAG_NAME, { ...nonEventAttrs.value, ...nativeListeners, ref: root, class: ["echarts", nonEventAttrs.value.class] }, teleportedSlots())); } }); //#endregion //#region src/client/components/ServerChart.vue?vue&type=script&setup=true&lang.ts var _hoisted_1$2 = { class: "h-full w-[calc(100vw-100px)] translate-x-0 transform overflow-auto border-none bg-main shadow-lg transition-transform duration-300" }; var _hoisted_2$2 = { p4: "" }; var _hoisted_3$2 = { key: 0, flex: "~", "h-40": "", "w-full": "" }; var _hoisted_4$2 = { key: 1, class: "my-auto ml-8 text-sm font-mono" }; //#endregion //#region src/client/components/ServerChart.vue var ServerChart_default = /* @__PURE__ */ defineComponent({ __name: "ServerChart", async setup(__props) { let __temp, __restore; use([ install, install$9, install$4, install$5, install$1, install$6 ]); const payload = usePayloadStore(); const metrics = ref(([__temp, __restore] = withAsyncContext(() => rpc.getServerMetrics(payload.query)), __temp = await __temp, __restore(), __temp)); function getMiddlewareTotalTime(m) { return m[m.length - 1].total; } const middlewareYData = computed(() => { return Object.keys(metrics.value.middleware || {}).sort((a, b) => getMiddlewareTotalTime(metrics.value.middleware[a]) - getMiddlewareTotalTime(metrics.value.middleware[b])).slice(-50); }); const middewareSeries = computed(() => { return Array.from(middlewareYData.value.reduce((acc, m) => { metrics.value.middleware?.[m].forEach(({ name }) => acc.add(name)); return acc; }, /* @__PURE__ */ new Set())).sort((a, b) => a.localeCompare(b)).map((m) => ({ name: m, stack: "time", type: "bar", barWidth: 12, data: middlewareYData.value.map((url) => { const middleware = metrics.value.middleware[url].find(({ name }) => name === m); return middleware ? middleware.self : 0; }) })); }); const foregroundColor = computed(() => isDark.value ? "#fff" : "#111"); const backgroundColor = computed(() => isDark.value ? "#111" : "#fff"); const borderColor = computed(() => "#8888"); const baseOption = computed(() => ({ tooltip: { trigger: "axis", axisPointer: { type: "shadow" }, borderColor: borderColor.value, backgroundColor: backgroundColor.value, textStyle: { color: foregroundColor.value } }, legend: { top: 10, textStyle: { color: foregroundColor.value } }, grid: { left: "4%", right: "2%", top: 60, bottom: "2%", containLabel: true }, xAxis: { type: "value", minInterval: 10, splitLine: { lineStyle: { color: borderColor.value } }, axisLine: { lineStyle: { color: borderColor.value } } }, yAxis: { type: "category", axisTick: { show: false }, axisLine: { show: false, lineStyle: { opacity: .5, color: borderColor.value } }, axisLabel: { color: foregroundColor.value, fontSize: 12, formatter(value) { return value.split("/").slice(-3).join("/"); } } } })); const middlewareOption = computed(() => { const tooltip = { ...baseOption.value.tooltip, formatter(params) { return [params[0].name, ...params.map(({ marker, seriesName, value }) => `${marker}${seriesName} (${value}ms)`)].join("
"); } }; const yAxis = { ...baseOption.value.yAxis, data: middlewareYData.value }; return { ...baseOption.value, yAxis, tooltip, series: middewareSeries.value }; }); const middlewareStyle = computed(() => { return { height: `${Math.max(middlewareYData.value.length * 28, 200)}px` }; }); return (_ctx, _cache) => { return openBlock(), createElementBlock("div", _hoisted_1$2, [createBaseVNode("div", _hoisted_2$2, [ !unref(middlewareYData).length ? (openBlock(), createElementBlock("div", _hoisted_3$2, [..._cache[0] || (_cache[0] = [createBaseVNode("div", { ma: "", italic: "", op50: "" }, " No middleware metric data ", -1)])])) : createCommentVNode("", true), unref(middlewareYData).length ? (openBlock(), createElementBlock("div", _hoisted_4$2, " Metrics for top50 urls ")) : createCommentVNode("", true), unref(middlewareYData).length ? (openBlock(), createBlock(unref(src_default), { key: 2, class: "h-200 w-100%", style: normalizeStyle$1(unref(middlewareStyle)), option: unref(middlewareOption), autoresize: "" }, null, 8, ["style", "option"])) : createCommentVNode("", true) ])]); }; } }); //#endregion //#region src/client/components/PluginChart.vue?vue&type=script&setup=true&lang.ts var _hoisted_1$1 = { class: "h-full w-[calc(100vw-100px)] translate-x-0 transform overflow-auto border-none bg-main shadow-lg transition-transform duration-300" }; var _hoisted_2$1 = { class: "my-auto text-sm font-mono" }; var _hoisted_3$1 = { p4: "" }; var _hoisted_4$1 = { key: 0, flex: "~", "h-40": "", "w-full": "" }; //#endregion //#region src/client/components/PluginChart.vue var PluginChart_default = /* @__PURE__ */ defineComponent({ __name: "PluginChart", props: { plugin: {}, hook: {}, exit: { type: Function } }, setup(__props) { const props = __props; use([ install, install$9, install$4, install$5, install$1, install$6 ]); const search = useSearchResults(); const sortedSearchResults = computed(() => { return search.results.filter(({ plugins }) => { const plugin = plugins.find(({ name, ...hooks }) => name === props.plugin && hooks[props.hook]); return plugin ? plugin[props.hook] : false; }).sort((next, cur) => { return next.plugins.find(({ name }) => name === props.plugin)[props.hook] - cur.plugins.find(({ name }) => name === props.plugin)[props.hook]; }); }); const yData = computed(() => { return sortedSearchResults.value.map(({ id }) => id); }); const seriesData = computed(() => { return sortedSearchResults.value.map(({ plugins }) => { const hookTime = plugins.find(({ name, ...hooks }) => name === props.plugin && hooks[props.hook])[props.hook]; return { itemStyle: { color: hookTime > 50 ? "rgba(255, 0, 0, 400)" : hookTime > 20 ? "#faee58" : "#91cc75" }, value: hookTime }; }); }); const foregroundColor = computed(() => isDark.value ? "#fff" : "#111"); const backgroundColor = computed(() => isDark.value ? "#111" : "#fff"); const borderColor = computed(() => "#8888"); const option = computed(() => ({ tooltip: { trigger: "axis", axisPointer: { type: "shadow" }, borderColor: borderColor.value, backgroundColor: backgroundColor.value, textStyle: { color: foregroundColor.value }, formatter(params) { const { name, seriesName, value, marker } = params[0]; return `${name}
${marker}${seriesName} (${value}ms)`; } }, grid: { left: "1%", right: "2%", top: "3%", bottom: "2%", containLabel: true }, xAxis: { type: "value", minInterval: 10, splitLine: { lineStyle: { color: borderColor.value } }, axisLine: { lineStyle: { color: borderColor.value } } }, yAxis: { type: "category", axisTick: { show: false }, axisLine: { show: false, lineStyle: { opacity: .5, color: borderColor.value } }, axisLabel: { color: foregroundColor.value, fontSize: 12, formatter(value) { return value.split("/").slice(-3).join("/"); } }, data: yData.value }, series: [{ name: props.plugin, type: "bar", barWidth: 12, colorBy: "data", data: seriesData.value }] })); const chartStyle = computed(() => { return { height: `${Math.max(sortedSearchResults.value.length * 24, 200)}px` }; }); return (_ctx, _cache) => { const _component_NavBar = NavBar_default; return openBlock(), createElementBlock("div", _hoisted_1$1, [createVNode(_component_NavBar, null, { actions: withCtx(() => [..._cache[2] || (_cache[2] = [createBaseVNode("div", null, null, -1)])]), default: withCtx(() => [createBaseVNode("a", { class: "my-auto icon-btn !outline-none", onClick: _cache[0] || (_cache[0] = ($event) => props.exit()) }, [..._cache[1] || (_cache[1] = [createBaseVNode("div", { "i-carbon-chevron-left": "" }, null, -1)])]), createBaseVNode("div", _hoisted_2$1, " Metrics for " + toDisplayString(props.plugin), 1)]), _: 1 }), createBaseVNode("div", _hoisted_3$1, [!unref(yData).length ? (openBlock(), createElementBlock("div", _hoisted_4$1, [..._cache[3] || (_cache[3] = [createBaseVNode("div", { ma: "", italic: "", op50: "" }, " No data for this plugin ", -1)])])) : createCommentVNode("", true), createVNode(unref(src_default), { class: "w-100%", style: normalizeStyle$1(unref(chartStyle)), option: unref(option), autoresize: "" }, null, 8, ["style", "option"])])]); }; } }); //#endregion //#region src/client/pages/index/metric.vue?vue&type=script&setup=true&lang.ts var _hoisted_1 = { key: 2, class: "grid grid-cols-[1fr_max-content_max-content_max-content_max-content_max-content_1fr] mb-4 mt-2 whitespace-nowrap text-sm font-mono children:border-b children:border-main children:px-4 children:py-2 children:align-middle" }; var _hoisted_2 = { class: "text-xs font-bold" }; var _hoisted_3 = ["onClick"]; var _hoisted_4 = { key: 1 }; var _hoisted_5 = { class: "flex items-center text-center p0!" }; var _hoisted_6 = { class: "text-right" }; //#endregion //#region src/client/pages/index/metric.vue var metric_default = /* @__PURE__ */ defineComponent({ __name: "metric", async setup(__props) { let __temp, __restore; const options = useOptionsStore(); const payload = usePayloadStore(); const metrics = ref(([__temp, __restore] = withAsyncContext(() => rpc.getPluginMetrics(payload.query)), __temp = await __temp, __restore(), __temp)); const selectedPlugin = ref(""); const displayHookOptions = [ "transform", "resolveId", isStaticMode ? "" : "server" ].filter(Boolean).map((h) => ({ label: { transform: "transform", resolveId: "resolveId", server: "server.middleware" }[h], value: h })); const plugins = computed(() => { if (options.view.metricDisplayHook === "server") return []; return metrics.value.map((info) => { if (options.view.metricDisplayHook === "transform") return { name: info.name, enforce: info.enforce, totalTime: info.transform.totalTime, invokeCount: info.transform.invokeCount }; else return { name: info.name, enforce: info.enforce, totalTime: info.resolveId.totalTime, invokeCount: info.resolveId.invokeCount }; }).sort((a, b) => b.invokeCount - a.invokeCount).sort((a, b) => b.totalTime - a.totalTime); }); async function refetch() { metrics.value = await rpc.getPluginMetrics(payload.query); } watch(() => payload.query, () => refetch(), { deep: true }); onModuleUpdated.on(async () => { await refetch(); }); function selectPlugin(plugin) { selectedPlugin.value = plugin; } function clearPlugin() { selectedPlugin.value = ""; } watch(() => options.view.metricDisplayHook, clearPlugin); getHot().then((hot) => { if (hot) hot.on("vite-plugin-inspect:update", () => { refetch(); }); }); return (_ctx, _cache) => { const _component_RouterLink = resolveComponent("RouterLink"); const _component_SegmentControl = SegmentControl_default; const _component_QuerySelector = QuerySelector_default; const _component_NavBar = NavBar_default; const _component_PluginChart = PluginChart_default; const _component_ServerChart = ServerChart_default; const _component_PluginName = PluginName_default; const _component_Badge = Badge_default; const _component_DurationDisplay = DurationDisplay_default; const _component_Container = Container_default; return openBlock(), createElementBlock(Fragment, null, [createVNode(_component_NavBar, null, { default: withCtx(() => [ createVNode(_component_RouterLink, { class: "my-auto icon-btn !outline-none", to: "/" }, { default: withCtx(() => [..._cache[2] || (_cache[2] = [createBaseVNode("span", { "i-carbon-arrow-left": "" }, null, -1)])]), _: 1 }), _cache[4] || (_cache[4] = createBaseVNode("div", { "my-auto": "", "text-sm": "", "font-mono": "" }, " Metrics ", -1)), createVNode(_component_SegmentControl, { modelValue: unref(options).view.metricDisplayHook, "onUpdate:modelValue": _cache[0] || (_cache[0] = ($event) => unref(options).view.metricDisplayHook = $event), options: unref(displayHookOptions) }, null, 8, ["modelValue", "options"]), _cache[5] || (_cache[5] = createBaseVNode("div", { "flex-auto": "" }, null, -1)), createVNode(_component_QuerySelector), _cache[6] || (_cache[6] = createBaseVNode("div", { mx1: "", "h-full": "", "w-0": "", border: "r main" }, null, -1)), !unref(payload).isStatic ? (openBlock(), createElementBlock("button", { key: 0, class: "icon-btn text-lg", title: "Refetch", onClick: _cache[1] || (_cache[1] = ($event) => refetch()) }, [..._cache[3] || (_cache[3] = [createBaseVNode("div", { "i-carbon-renew": "" }, null, -1)])])) : createCommentVNode("", true) ]), _: 1 }), unref(metrics) ? (openBlock(), createBlock(_component_Container, { key: 0, "of-auto": "" }, { default: withCtx(() => [unref(selectedPlugin) && unref(options).view.metricDisplayHook !== "server" ? (openBlock(), createBlock(_component_PluginChart, { key: 0, plugin: unref(selectedPlugin), hook: unref(options).view.metricDisplayHook, exit: clearPlugin }, null, 8, ["plugin", "hook"])) : createCommentVNode("", true), unref(options).view.metricDisplayHook === "server" ? (openBlock(), createBlock(_component_ServerChart, { key: 1 })) : (openBlock(), createElementBlock("div", _hoisted_1, [ _cache[12] || (_cache[12] = createBaseVNode("div", null, null, -1)), createBaseVNode("div", _hoisted_2, " Name (" + toDisplayString(unref(plugins).length) + ") ", 1), _cache[13] || (_cache[13] = createBaseVNode("div", { class: "text-center text-xs font-bold" }, " Type ", -1)), _cache[14] || (_cache[14] = createBaseVNode("div", { class: "text-right text-xs font-bold" }, " Passes ", -1)), _cache[15] || (_cache[15] = createBaseVNode("div", { class: "text-right text-xs font-bold" }, " Average Time ", -1)), _cache[16] || (_cache[16] = createBaseVNode("div", { class: "text-right text-xs font-bold" }, " Total Time ", -1)), _cache[17] || (_cache[17] = createBaseVNode("div", null, null, -1)), (openBlock(true), createElementBlock(Fragment, null, renderList(unref(plugins), ({ name, totalTime, invokeCount, enforce }) => { return openBlock(), createElementBlock(Fragment, { key: name }, [ _cache[10] || (_cache[10] = createBaseVNode("div", null, null, -1)), totalTime > 0 ? (openBlock(), createElementBlock("div", { key: 0, class: "cursor-pointer hover:underline", onClick: ($event) => selectPlugin(name) }, [createVNode(_component_PluginName, { name, colored: "" }, null, 8, ["name"])], 8, _hoisted_3)) : (openBlock(), createElementBlock("div", _hoisted_4, [createVNode(_component_PluginName, { name, class: "op75 saturate-50" }, null, 8, ["name"])])), createBaseVNode("div", _hoisted_5, [enforce ? (openBlock(), createBlock(_component_Badge, { key: 0, "m-auto": "", "text-xs": "", text: enforce }, null, 8, ["text"])) : createCommentVNode("", true)]), invokeCount ? (openBlock(), createElementBlock(Fragment, { key: 2 }, [ createBaseVNode("div", _hoisted_6, toDisplayString(invokeCount), 1), createVNode(_component_DurationDisplay, { class: "text-right", duration: totalTime / invokeCount }, null, 8, ["duration"]), createVNode(_component_DurationDisplay, { class: "text-right", duration: totalTime }, null, 8, ["duration"]) ], 64)) : (openBlock(), createElementBlock(Fragment, { key: 3 }, [ _cache[7] || (_cache[7] = createBaseVNode("div", { class: "text-right text-gray:50" }, " - ", -1)), _cache[8] || (_cache[8] = createBaseVNode("div", { class: "text-right text-gray:50" }, " - ", -1)), _cache[9] || (_cache[9] = createBaseVNode("div", { class: "text-right text-gray:50" }, " - ", -1)) ], 64)), _cache[11] || (_cache[11] = createBaseVNode("div", null, null, -1)) ], 64); }), 128)) ]))]), _: 1 })) : createCommentVNode("", true)], 64); }; } }); //#endregion export { metric_default as default };