reactivity.esm-browser.js 42 KB

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  1. /**
  2. * Make a map and return a function for checking if a key
  3. * is in that map.
  4. * IMPORTANT: all calls of this function must be prefixed with
  5. * \/\*#\_\_PURE\_\_\*\/
  6. * So that rollup can tree-shake them if necessary.
  7. */
  8. function makeMap(str, expectsLowerCase) {
  9. const map = Object.create(null);
  10. const list = str.split(',');
  11. for (let i = 0; i < list.length; i++) {
  12. map[list[i]] = true;
  13. }
  14. return expectsLowerCase ? val => !!map[val.toLowerCase()] : val => !!map[val];
  15. }
  16. Object.freeze({})
  17. ;
  18. Object.freeze([]) ;
  19. const extend = Object.assign;
  20. const hasOwnProperty = Object.prototype.hasOwnProperty;
  21. const hasOwn = (val, key) => hasOwnProperty.call(val, key);
  22. const isArray = Array.isArray;
  23. const isMap = (val) => toTypeString(val) === '[object Map]';
  24. const isFunction = (val) => typeof val === 'function';
  25. const isString = (val) => typeof val === 'string';
  26. const isSymbol = (val) => typeof val === 'symbol';
  27. const isObject = (val) => val !== null && typeof val === 'object';
  28. const objectToString = Object.prototype.toString;
  29. const toTypeString = (value) => objectToString.call(value);
  30. const toRawType = (value) => {
  31. // extract "RawType" from strings like "[object RawType]"
  32. return toTypeString(value).slice(8, -1);
  33. };
  34. const isIntegerKey = (key) => isString(key) &&
  35. key !== 'NaN' &&
  36. key[0] !== '-' &&
  37. '' + parseInt(key, 10) === key;
  38. const cacheStringFunction = (fn) => {
  39. const cache = Object.create(null);
  40. return ((str) => {
  41. const hit = cache[str];
  42. return hit || (cache[str] = fn(str));
  43. });
  44. };
  45. /**
  46. * @private
  47. */
  48. const capitalize = cacheStringFunction((str) => str.charAt(0).toUpperCase() + str.slice(1));
  49. // compare whether a value has changed, accounting for NaN.
  50. const hasChanged = (value, oldValue) => !Object.is(value, oldValue);
  51. const def = (obj, key, value) => {
  52. Object.defineProperty(obj, key, {
  53. configurable: true,
  54. enumerable: false,
  55. value
  56. });
  57. };
  58. const toNumber = (val) => {
  59. const n = parseFloat(val);
  60. return isNaN(n) ? val : n;
  61. };
  62. function warn(msg, ...args) {
  63. console.warn(`[Vue warn] ${msg}`, ...args);
  64. }
  65. let activeEffectScope;
  66. class EffectScope {
  67. constructor(detached = false) {
  68. this.detached = detached;
  69. /**
  70. * @internal
  71. */
  72. this.active = true;
  73. /**
  74. * @internal
  75. */
  76. this.effects = [];
  77. /**
  78. * @internal
  79. */
  80. this.cleanups = [];
  81. this.parent = activeEffectScope;
  82. if (!detached && activeEffectScope) {
  83. this.index =
  84. (activeEffectScope.scopes || (activeEffectScope.scopes = [])).push(this) - 1;
  85. }
  86. }
  87. run(fn) {
  88. if (this.active) {
  89. const currentEffectScope = activeEffectScope;
  90. try {
  91. activeEffectScope = this;
  92. return fn();
  93. }
  94. finally {
  95. activeEffectScope = currentEffectScope;
  96. }
  97. }
  98. else {
  99. warn(`cannot run an inactive effect scope.`);
  100. }
  101. }
  102. /**
  103. * This should only be called on non-detached scopes
  104. * @internal
  105. */
  106. on() {
  107. activeEffectScope = this;
  108. }
  109. /**
  110. * This should only be called on non-detached scopes
  111. * @internal
  112. */
  113. off() {
  114. activeEffectScope = this.parent;
  115. }
  116. stop(fromParent) {
  117. if (this.active) {
  118. let i, l;
  119. for (i = 0, l = this.effects.length; i < l; i++) {
  120. this.effects[i].stop();
  121. }
  122. for (i = 0, l = this.cleanups.length; i < l; i++) {
  123. this.cleanups[i]();
  124. }
  125. if (this.scopes) {
  126. for (i = 0, l = this.scopes.length; i < l; i++) {
  127. this.scopes[i].stop(true);
  128. }
  129. }
  130. // nested scope, dereference from parent to avoid memory leaks
  131. if (!this.detached && this.parent && !fromParent) {
  132. // optimized O(1) removal
  133. const last = this.parent.scopes.pop();
  134. if (last && last !== this) {
  135. this.parent.scopes[this.index] = last;
  136. last.index = this.index;
  137. }
  138. }
  139. this.parent = undefined;
  140. this.active = false;
  141. }
  142. }
  143. }
  144. function effectScope(detached) {
  145. return new EffectScope(detached);
  146. }
  147. function recordEffectScope(effect, scope = activeEffectScope) {
  148. if (scope && scope.active) {
  149. scope.effects.push(effect);
  150. }
  151. }
  152. function getCurrentScope() {
  153. return activeEffectScope;
  154. }
  155. function onScopeDispose(fn) {
  156. if (activeEffectScope) {
  157. activeEffectScope.cleanups.push(fn);
  158. }
  159. else {
  160. warn(`onScopeDispose() is called when there is no active effect scope` +
  161. ` to be associated with.`);
  162. }
  163. }
  164. const createDep = (effects) => {
  165. const dep = new Set(effects);
  166. dep.w = 0;
  167. dep.n = 0;
  168. return dep;
  169. };
  170. const wasTracked = (dep) => (dep.w & trackOpBit) > 0;
  171. const newTracked = (dep) => (dep.n & trackOpBit) > 0;
  172. const initDepMarkers = ({ deps }) => {
  173. if (deps.length) {
  174. for (let i = 0; i < deps.length; i++) {
  175. deps[i].w |= trackOpBit; // set was tracked
  176. }
  177. }
  178. };
  179. const finalizeDepMarkers = (effect) => {
  180. const { deps } = effect;
  181. if (deps.length) {
  182. let ptr = 0;
  183. for (let i = 0; i < deps.length; i++) {
  184. const dep = deps[i];
  185. if (wasTracked(dep) && !newTracked(dep)) {
  186. dep.delete(effect);
  187. }
  188. else {
  189. deps[ptr++] = dep;
  190. }
  191. // clear bits
  192. dep.w &= ~trackOpBit;
  193. dep.n &= ~trackOpBit;
  194. }
  195. deps.length = ptr;
  196. }
  197. };
  198. const targetMap = new WeakMap();
  199. // The number of effects currently being tracked recursively.
  200. let effectTrackDepth = 0;
  201. let trackOpBit = 1;
  202. /**
  203. * The bitwise track markers support at most 30 levels of recursion.
  204. * This value is chosen to enable modern JS engines to use a SMI on all platforms.
  205. * When recursion depth is greater, fall back to using a full cleanup.
  206. */
  207. const maxMarkerBits = 30;
  208. let activeEffect;
  209. const ITERATE_KEY = Symbol('iterate' );
  210. const MAP_KEY_ITERATE_KEY = Symbol('Map key iterate' );
  211. class ReactiveEffect {
  212. constructor(fn, scheduler = null, scope) {
  213. this.fn = fn;
  214. this.scheduler = scheduler;
  215. this.active = true;
  216. this.deps = [];
  217. this.parent = undefined;
  218. recordEffectScope(this, scope);
  219. }
  220. run() {
  221. if (!this.active) {
  222. return this.fn();
  223. }
  224. let parent = activeEffect;
  225. let lastShouldTrack = shouldTrack;
  226. while (parent) {
  227. if (parent === this) {
  228. return;
  229. }
  230. parent = parent.parent;
  231. }
  232. try {
  233. this.parent = activeEffect;
  234. activeEffect = this;
  235. shouldTrack = true;
  236. trackOpBit = 1 << ++effectTrackDepth;
  237. if (effectTrackDepth <= maxMarkerBits) {
  238. initDepMarkers(this);
  239. }
  240. else {
  241. cleanupEffect(this);
  242. }
  243. return this.fn();
  244. }
  245. finally {
  246. if (effectTrackDepth <= maxMarkerBits) {
  247. finalizeDepMarkers(this);
  248. }
  249. trackOpBit = 1 << --effectTrackDepth;
  250. activeEffect = this.parent;
  251. shouldTrack = lastShouldTrack;
  252. this.parent = undefined;
  253. if (this.deferStop) {
  254. this.stop();
  255. }
  256. }
  257. }
  258. stop() {
  259. // stopped while running itself - defer the cleanup
  260. if (activeEffect === this) {
  261. this.deferStop = true;
  262. }
  263. else if (this.active) {
  264. cleanupEffect(this);
  265. if (this.onStop) {
  266. this.onStop();
  267. }
  268. this.active = false;
  269. }
  270. }
  271. }
  272. function cleanupEffect(effect) {
  273. const { deps } = effect;
  274. if (deps.length) {
  275. for (let i = 0; i < deps.length; i++) {
  276. deps[i].delete(effect);
  277. }
  278. deps.length = 0;
  279. }
  280. }
  281. function effect(fn, options) {
  282. if (fn.effect) {
  283. fn = fn.effect.fn;
  284. }
  285. const _effect = new ReactiveEffect(fn);
  286. if (options) {
  287. extend(_effect, options);
  288. if (options.scope)
  289. recordEffectScope(_effect, options.scope);
  290. }
  291. if (!options || !options.lazy) {
  292. _effect.run();
  293. }
  294. const runner = _effect.run.bind(_effect);
  295. runner.effect = _effect;
  296. return runner;
  297. }
  298. function stop(runner) {
  299. runner.effect.stop();
  300. }
  301. let shouldTrack = true;
  302. const trackStack = [];
  303. function pauseTracking() {
  304. trackStack.push(shouldTrack);
  305. shouldTrack = false;
  306. }
  307. function enableTracking() {
  308. trackStack.push(shouldTrack);
  309. shouldTrack = true;
  310. }
  311. function resetTracking() {
  312. const last = trackStack.pop();
  313. shouldTrack = last === undefined ? true : last;
  314. }
  315. function track(target, type, key) {
  316. if (shouldTrack && activeEffect) {
  317. let depsMap = targetMap.get(target);
  318. if (!depsMap) {
  319. targetMap.set(target, (depsMap = new Map()));
  320. }
  321. let dep = depsMap.get(key);
  322. if (!dep) {
  323. depsMap.set(key, (dep = createDep()));
  324. }
  325. const eventInfo = { effect: activeEffect, target, type, key }
  326. ;
  327. trackEffects(dep, eventInfo);
  328. }
  329. }
  330. function trackEffects(dep, debuggerEventExtraInfo) {
  331. let shouldTrack = false;
  332. if (effectTrackDepth <= maxMarkerBits) {
  333. if (!newTracked(dep)) {
  334. dep.n |= trackOpBit; // set newly tracked
  335. shouldTrack = !wasTracked(dep);
  336. }
  337. }
  338. else {
  339. // Full cleanup mode.
  340. shouldTrack = !dep.has(activeEffect);
  341. }
  342. if (shouldTrack) {
  343. dep.add(activeEffect);
  344. activeEffect.deps.push(dep);
  345. if (activeEffect.onTrack) {
  346. activeEffect.onTrack(Object.assign({ effect: activeEffect }, debuggerEventExtraInfo));
  347. }
  348. }
  349. }
  350. function trigger(target, type, key, newValue, oldValue, oldTarget) {
  351. const depsMap = targetMap.get(target);
  352. if (!depsMap) {
  353. // never been tracked
  354. return;
  355. }
  356. let deps = [];
  357. if (type === "clear" /* TriggerOpTypes.CLEAR */) {
  358. // collection being cleared
  359. // trigger all effects for target
  360. deps = [...depsMap.values()];
  361. }
  362. else if (key === 'length' && isArray(target)) {
  363. const newLength = toNumber(newValue);
  364. depsMap.forEach((dep, key) => {
  365. if (key === 'length' || key >= newLength) {
  366. deps.push(dep);
  367. }
  368. });
  369. }
  370. else {
  371. // schedule runs for SET | ADD | DELETE
  372. if (key !== void 0) {
  373. deps.push(depsMap.get(key));
  374. }
  375. // also run for iteration key on ADD | DELETE | Map.SET
  376. switch (type) {
  377. case "add" /* TriggerOpTypes.ADD */:
  378. if (!isArray(target)) {
  379. deps.push(depsMap.get(ITERATE_KEY));
  380. if (isMap(target)) {
  381. deps.push(depsMap.get(MAP_KEY_ITERATE_KEY));
  382. }
  383. }
  384. else if (isIntegerKey(key)) {
  385. // new index added to array -> length changes
  386. deps.push(depsMap.get('length'));
  387. }
  388. break;
  389. case "delete" /* TriggerOpTypes.DELETE */:
  390. if (!isArray(target)) {
  391. deps.push(depsMap.get(ITERATE_KEY));
  392. if (isMap(target)) {
  393. deps.push(depsMap.get(MAP_KEY_ITERATE_KEY));
  394. }
  395. }
  396. break;
  397. case "set" /* TriggerOpTypes.SET */:
  398. if (isMap(target)) {
  399. deps.push(depsMap.get(ITERATE_KEY));
  400. }
  401. break;
  402. }
  403. }
  404. const eventInfo = { target, type, key, newValue, oldValue, oldTarget }
  405. ;
  406. if (deps.length === 1) {
  407. if (deps[0]) {
  408. {
  409. triggerEffects(deps[0], eventInfo);
  410. }
  411. }
  412. }
  413. else {
  414. const effects = [];
  415. for (const dep of deps) {
  416. if (dep) {
  417. effects.push(...dep);
  418. }
  419. }
  420. {
  421. triggerEffects(createDep(effects), eventInfo);
  422. }
  423. }
  424. }
  425. function triggerEffects(dep, debuggerEventExtraInfo) {
  426. // spread into array for stabilization
  427. const effects = isArray(dep) ? dep : [...dep];
  428. for (const effect of effects) {
  429. if (effect.computed) {
  430. triggerEffect(effect, debuggerEventExtraInfo);
  431. }
  432. }
  433. for (const effect of effects) {
  434. if (!effect.computed) {
  435. triggerEffect(effect, debuggerEventExtraInfo);
  436. }
  437. }
  438. }
  439. function triggerEffect(effect, debuggerEventExtraInfo) {
  440. if (effect !== activeEffect || effect.allowRecurse) {
  441. if (effect.onTrigger) {
  442. effect.onTrigger(extend({ effect }, debuggerEventExtraInfo));
  443. }
  444. if (effect.scheduler) {
  445. effect.scheduler();
  446. }
  447. else {
  448. effect.run();
  449. }
  450. }
  451. }
  452. const isNonTrackableKeys = /*#__PURE__*/ makeMap(`__proto__,__v_isRef,__isVue`);
  453. const builtInSymbols = new Set(
  454. /*#__PURE__*/
  455. Object.getOwnPropertyNames(Symbol)
  456. // ios10.x Object.getOwnPropertyNames(Symbol) can enumerate 'arguments' and 'caller'
  457. // but accessing them on Symbol leads to TypeError because Symbol is a strict mode
  458. // function
  459. .filter(key => key !== 'arguments' && key !== 'caller')
  460. .map(key => Symbol[key])
  461. .filter(isSymbol));
  462. const get = /*#__PURE__*/ createGetter();
  463. const shallowGet = /*#__PURE__*/ createGetter(false, true);
  464. const readonlyGet = /*#__PURE__*/ createGetter(true);
  465. const shallowReadonlyGet = /*#__PURE__*/ createGetter(true, true);
  466. const arrayInstrumentations = /*#__PURE__*/ createArrayInstrumentations();
  467. function createArrayInstrumentations() {
  468. const instrumentations = {};
  469. ['includes', 'indexOf', 'lastIndexOf'].forEach(key => {
  470. instrumentations[key] = function (...args) {
  471. const arr = toRaw(this);
  472. for (let i = 0, l = this.length; i < l; i++) {
  473. track(arr, "get" /* TrackOpTypes.GET */, i + '');
  474. }
  475. // we run the method using the original args first (which may be reactive)
  476. const res = arr[key](...args);
  477. if (res === -1 || res === false) {
  478. // if that didn't work, run it again using raw values.
  479. return arr[key](...args.map(toRaw));
  480. }
  481. else {
  482. return res;
  483. }
  484. };
  485. });
  486. ['push', 'pop', 'shift', 'unshift', 'splice'].forEach(key => {
  487. instrumentations[key] = function (...args) {
  488. pauseTracking();
  489. const res = toRaw(this)[key].apply(this, args);
  490. resetTracking();
  491. return res;
  492. };
  493. });
  494. return instrumentations;
  495. }
  496. function createGetter(isReadonly = false, shallow = false) {
  497. return function get(target, key, receiver) {
  498. if (key === "__v_isReactive" /* ReactiveFlags.IS_REACTIVE */) {
  499. return !isReadonly;
  500. }
  501. else if (key === "__v_isReadonly" /* ReactiveFlags.IS_READONLY */) {
  502. return isReadonly;
  503. }
  504. else if (key === "__v_isShallow" /* ReactiveFlags.IS_SHALLOW */) {
  505. return shallow;
  506. }
  507. else if (key === "__v_raw" /* ReactiveFlags.RAW */ &&
  508. receiver ===
  509. (isReadonly
  510. ? shallow
  511. ? shallowReadonlyMap
  512. : readonlyMap
  513. : shallow
  514. ? shallowReactiveMap
  515. : reactiveMap).get(target)) {
  516. return target;
  517. }
  518. const targetIsArray = isArray(target);
  519. if (!isReadonly && targetIsArray && hasOwn(arrayInstrumentations, key)) {
  520. return Reflect.get(arrayInstrumentations, key, receiver);
  521. }
  522. const res = Reflect.get(target, key, receiver);
  523. if (isSymbol(key) ? builtInSymbols.has(key) : isNonTrackableKeys(key)) {
  524. return res;
  525. }
  526. if (!isReadonly) {
  527. track(target, "get" /* TrackOpTypes.GET */, key);
  528. }
  529. if (shallow) {
  530. return res;
  531. }
  532. if (isRef(res)) {
  533. // ref unwrapping - skip unwrap for Array + integer key.
  534. return targetIsArray && isIntegerKey(key) ? res : res.value;
  535. }
  536. if (isObject(res)) {
  537. // Convert returned value into a proxy as well. we do the isObject check
  538. // here to avoid invalid value warning. Also need to lazy access readonly
  539. // and reactive here to avoid circular dependency.
  540. return isReadonly ? readonly(res) : reactive(res);
  541. }
  542. return res;
  543. };
  544. }
  545. const set = /*#__PURE__*/ createSetter();
  546. const shallowSet = /*#__PURE__*/ createSetter(true);
  547. function createSetter(shallow = false) {
  548. return function set(target, key, value, receiver) {
  549. let oldValue = target[key];
  550. if (isReadonly(oldValue) && isRef(oldValue) && !isRef(value)) {
  551. return false;
  552. }
  553. if (!shallow) {
  554. if (!isShallow(value) && !isReadonly(value)) {
  555. oldValue = toRaw(oldValue);
  556. value = toRaw(value);
  557. }
  558. if (!isArray(target) && isRef(oldValue) && !isRef(value)) {
  559. oldValue.value = value;
  560. return true;
  561. }
  562. }
  563. const hadKey = isArray(target) && isIntegerKey(key)
  564. ? Number(key) < target.length
  565. : hasOwn(target, key);
  566. const result = Reflect.set(target, key, value, receiver);
  567. // don't trigger if target is something up in the prototype chain of original
  568. if (target === toRaw(receiver)) {
  569. if (!hadKey) {
  570. trigger(target, "add" /* TriggerOpTypes.ADD */, key, value);
  571. }
  572. else if (hasChanged(value, oldValue)) {
  573. trigger(target, "set" /* TriggerOpTypes.SET */, key, value, oldValue);
  574. }
  575. }
  576. return result;
  577. };
  578. }
  579. function deleteProperty(target, key) {
  580. const hadKey = hasOwn(target, key);
  581. const oldValue = target[key];
  582. const result = Reflect.deleteProperty(target, key);
  583. if (result && hadKey) {
  584. trigger(target, "delete" /* TriggerOpTypes.DELETE */, key, undefined, oldValue);
  585. }
  586. return result;
  587. }
  588. function has(target, key) {
  589. const result = Reflect.has(target, key);
  590. if (!isSymbol(key) || !builtInSymbols.has(key)) {
  591. track(target, "has" /* TrackOpTypes.HAS */, key);
  592. }
  593. return result;
  594. }
  595. function ownKeys(target) {
  596. track(target, "iterate" /* TrackOpTypes.ITERATE */, isArray(target) ? 'length' : ITERATE_KEY);
  597. return Reflect.ownKeys(target);
  598. }
  599. const mutableHandlers = {
  600. get,
  601. set,
  602. deleteProperty,
  603. has,
  604. ownKeys
  605. };
  606. const readonlyHandlers = {
  607. get: readonlyGet,
  608. set(target, key) {
  609. {
  610. warn(`Set operation on key "${String(key)}" failed: target is readonly.`, target);
  611. }
  612. return true;
  613. },
  614. deleteProperty(target, key) {
  615. {
  616. warn(`Delete operation on key "${String(key)}" failed: target is readonly.`, target);
  617. }
  618. return true;
  619. }
  620. };
  621. const shallowReactiveHandlers = /*#__PURE__*/ extend({}, mutableHandlers, {
  622. get: shallowGet,
  623. set: shallowSet
  624. });
  625. // Props handlers are special in the sense that it should not unwrap top-level
  626. // refs (in order to allow refs to be explicitly passed down), but should
  627. // retain the reactivity of the normal readonly object.
  628. const shallowReadonlyHandlers = /*#__PURE__*/ extend({}, readonlyHandlers, {
  629. get: shallowReadonlyGet
  630. });
  631. const toShallow = (value) => value;
  632. const getProto = (v) => Reflect.getPrototypeOf(v);
  633. function get$1(target, key, isReadonly = false, isShallow = false) {
  634. // #1772: readonly(reactive(Map)) should return readonly + reactive version
  635. // of the value
  636. target = target["__v_raw" /* ReactiveFlags.RAW */];
  637. const rawTarget = toRaw(target);
  638. const rawKey = toRaw(key);
  639. if (!isReadonly) {
  640. if (key !== rawKey) {
  641. track(rawTarget, "get" /* TrackOpTypes.GET */, key);
  642. }
  643. track(rawTarget, "get" /* TrackOpTypes.GET */, rawKey);
  644. }
  645. const { has } = getProto(rawTarget);
  646. const wrap = isShallow ? toShallow : isReadonly ? toReadonly : toReactive;
  647. if (has.call(rawTarget, key)) {
  648. return wrap(target.get(key));
  649. }
  650. else if (has.call(rawTarget, rawKey)) {
  651. return wrap(target.get(rawKey));
  652. }
  653. else if (target !== rawTarget) {
  654. // #3602 readonly(reactive(Map))
  655. // ensure that the nested reactive `Map` can do tracking for itself
  656. target.get(key);
  657. }
  658. }
  659. function has$1(key, isReadonly = false) {
  660. const target = this["__v_raw" /* ReactiveFlags.RAW */];
  661. const rawTarget = toRaw(target);
  662. const rawKey = toRaw(key);
  663. if (!isReadonly) {
  664. if (key !== rawKey) {
  665. track(rawTarget, "has" /* TrackOpTypes.HAS */, key);
  666. }
  667. track(rawTarget, "has" /* TrackOpTypes.HAS */, rawKey);
  668. }
  669. return key === rawKey
  670. ? target.has(key)
  671. : target.has(key) || target.has(rawKey);
  672. }
  673. function size(target, isReadonly = false) {
  674. target = target["__v_raw" /* ReactiveFlags.RAW */];
  675. !isReadonly && track(toRaw(target), "iterate" /* TrackOpTypes.ITERATE */, ITERATE_KEY);
  676. return Reflect.get(target, 'size', target);
  677. }
  678. function add(value) {
  679. value = toRaw(value);
  680. const target = toRaw(this);
  681. const proto = getProto(target);
  682. const hadKey = proto.has.call(target, value);
  683. if (!hadKey) {
  684. target.add(value);
  685. trigger(target, "add" /* TriggerOpTypes.ADD */, value, value);
  686. }
  687. return this;
  688. }
  689. function set$1(key, value) {
  690. value = toRaw(value);
  691. const target = toRaw(this);
  692. const { has, get } = getProto(target);
  693. let hadKey = has.call(target, key);
  694. if (!hadKey) {
  695. key = toRaw(key);
  696. hadKey = has.call(target, key);
  697. }
  698. else {
  699. checkIdentityKeys(target, has, key);
  700. }
  701. const oldValue = get.call(target, key);
  702. target.set(key, value);
  703. if (!hadKey) {
  704. trigger(target, "add" /* TriggerOpTypes.ADD */, key, value);
  705. }
  706. else if (hasChanged(value, oldValue)) {
  707. trigger(target, "set" /* TriggerOpTypes.SET */, key, value, oldValue);
  708. }
  709. return this;
  710. }
  711. function deleteEntry(key) {
  712. const target = toRaw(this);
  713. const { has, get } = getProto(target);
  714. let hadKey = has.call(target, key);
  715. if (!hadKey) {
  716. key = toRaw(key);
  717. hadKey = has.call(target, key);
  718. }
  719. else {
  720. checkIdentityKeys(target, has, key);
  721. }
  722. const oldValue = get ? get.call(target, key) : undefined;
  723. // forward the operation before queueing reactions
  724. const result = target.delete(key);
  725. if (hadKey) {
  726. trigger(target, "delete" /* TriggerOpTypes.DELETE */, key, undefined, oldValue);
  727. }
  728. return result;
  729. }
  730. function clear() {
  731. const target = toRaw(this);
  732. const hadItems = target.size !== 0;
  733. const oldTarget = isMap(target)
  734. ? new Map(target)
  735. : new Set(target)
  736. ;
  737. // forward the operation before queueing reactions
  738. const result = target.clear();
  739. if (hadItems) {
  740. trigger(target, "clear" /* TriggerOpTypes.CLEAR */, undefined, undefined, oldTarget);
  741. }
  742. return result;
  743. }
  744. function createForEach(isReadonly, isShallow) {
  745. return function forEach(callback, thisArg) {
  746. const observed = this;
  747. const target = observed["__v_raw" /* ReactiveFlags.RAW */];
  748. const rawTarget = toRaw(target);
  749. const wrap = isShallow ? toShallow : isReadonly ? toReadonly : toReactive;
  750. !isReadonly && track(rawTarget, "iterate" /* TrackOpTypes.ITERATE */, ITERATE_KEY);
  751. return target.forEach((value, key) => {
  752. // important: make sure the callback is
  753. // 1. invoked with the reactive map as `this` and 3rd arg
  754. // 2. the value received should be a corresponding reactive/readonly.
  755. return callback.call(thisArg, wrap(value), wrap(key), observed);
  756. });
  757. };
  758. }
  759. function createIterableMethod(method, isReadonly, isShallow) {
  760. return function (...args) {
  761. const target = this["__v_raw" /* ReactiveFlags.RAW */];
  762. const rawTarget = toRaw(target);
  763. const targetIsMap = isMap(rawTarget);
  764. const isPair = method === 'entries' || (method === Symbol.iterator && targetIsMap);
  765. const isKeyOnly = method === 'keys' && targetIsMap;
  766. const innerIterator = target[method](...args);
  767. const wrap = isShallow ? toShallow : isReadonly ? toReadonly : toReactive;
  768. !isReadonly &&
  769. track(rawTarget, "iterate" /* TrackOpTypes.ITERATE */, isKeyOnly ? MAP_KEY_ITERATE_KEY : ITERATE_KEY);
  770. // return a wrapped iterator which returns observed versions of the
  771. // values emitted from the real iterator
  772. return {
  773. // iterator protocol
  774. next() {
  775. const { value, done } = innerIterator.next();
  776. return done
  777. ? { value, done }
  778. : {
  779. value: isPair ? [wrap(value[0]), wrap(value[1])] : wrap(value),
  780. done
  781. };
  782. },
  783. // iterable protocol
  784. [Symbol.iterator]() {
  785. return this;
  786. }
  787. };
  788. };
  789. }
  790. function createReadonlyMethod(type) {
  791. return function (...args) {
  792. {
  793. const key = args[0] ? `on key "${args[0]}" ` : ``;
  794. console.warn(`${capitalize(type)} operation ${key}failed: target is readonly.`, toRaw(this));
  795. }
  796. return type === "delete" /* TriggerOpTypes.DELETE */ ? false : this;
  797. };
  798. }
  799. function createInstrumentations() {
  800. const mutableInstrumentations = {
  801. get(key) {
  802. return get$1(this, key);
  803. },
  804. get size() {
  805. return size(this);
  806. },
  807. has: has$1,
  808. add,
  809. set: set$1,
  810. delete: deleteEntry,
  811. clear,
  812. forEach: createForEach(false, false)
  813. };
  814. const shallowInstrumentations = {
  815. get(key) {
  816. return get$1(this, key, false, true);
  817. },
  818. get size() {
  819. return size(this);
  820. },
  821. has: has$1,
  822. add,
  823. set: set$1,
  824. delete: deleteEntry,
  825. clear,
  826. forEach: createForEach(false, true)
  827. };
  828. const readonlyInstrumentations = {
  829. get(key) {
  830. return get$1(this, key, true);
  831. },
  832. get size() {
  833. return size(this, true);
  834. },
  835. has(key) {
  836. return has$1.call(this, key, true);
  837. },
  838. add: createReadonlyMethod("add" /* TriggerOpTypes.ADD */),
  839. set: createReadonlyMethod("set" /* TriggerOpTypes.SET */),
  840. delete: createReadonlyMethod("delete" /* TriggerOpTypes.DELETE */),
  841. clear: createReadonlyMethod("clear" /* TriggerOpTypes.CLEAR */),
  842. forEach: createForEach(true, false)
  843. };
  844. const shallowReadonlyInstrumentations = {
  845. get(key) {
  846. return get$1(this, key, true, true);
  847. },
  848. get size() {
  849. return size(this, true);
  850. },
  851. has(key) {
  852. return has$1.call(this, key, true);
  853. },
  854. add: createReadonlyMethod("add" /* TriggerOpTypes.ADD */),
  855. set: createReadonlyMethod("set" /* TriggerOpTypes.SET */),
  856. delete: createReadonlyMethod("delete" /* TriggerOpTypes.DELETE */),
  857. clear: createReadonlyMethod("clear" /* TriggerOpTypes.CLEAR */),
  858. forEach: createForEach(true, true)
  859. };
  860. const iteratorMethods = ['keys', 'values', 'entries', Symbol.iterator];
  861. iteratorMethods.forEach(method => {
  862. mutableInstrumentations[method] = createIterableMethod(method, false, false);
  863. readonlyInstrumentations[method] = createIterableMethod(method, true, false);
  864. shallowInstrumentations[method] = createIterableMethod(method, false, true);
  865. shallowReadonlyInstrumentations[method] = createIterableMethod(method, true, true);
  866. });
  867. return [
  868. mutableInstrumentations,
  869. readonlyInstrumentations,
  870. shallowInstrumentations,
  871. shallowReadonlyInstrumentations
  872. ];
  873. }
  874. const [mutableInstrumentations, readonlyInstrumentations, shallowInstrumentations, shallowReadonlyInstrumentations] = /* #__PURE__*/ createInstrumentations();
  875. function createInstrumentationGetter(isReadonly, shallow) {
  876. const instrumentations = shallow
  877. ? isReadonly
  878. ? shallowReadonlyInstrumentations
  879. : shallowInstrumentations
  880. : isReadonly
  881. ? readonlyInstrumentations
  882. : mutableInstrumentations;
  883. return (target, key, receiver) => {
  884. if (key === "__v_isReactive" /* ReactiveFlags.IS_REACTIVE */) {
  885. return !isReadonly;
  886. }
  887. else if (key === "__v_isReadonly" /* ReactiveFlags.IS_READONLY */) {
  888. return isReadonly;
  889. }
  890. else if (key === "__v_raw" /* ReactiveFlags.RAW */) {
  891. return target;
  892. }
  893. return Reflect.get(hasOwn(instrumentations, key) && key in target
  894. ? instrumentations
  895. : target, key, receiver);
  896. };
  897. }
  898. const mutableCollectionHandlers = {
  899. get: /*#__PURE__*/ createInstrumentationGetter(false, false)
  900. };
  901. const shallowCollectionHandlers = {
  902. get: /*#__PURE__*/ createInstrumentationGetter(false, true)
  903. };
  904. const readonlyCollectionHandlers = {
  905. get: /*#__PURE__*/ createInstrumentationGetter(true, false)
  906. };
  907. const shallowReadonlyCollectionHandlers = {
  908. get: /*#__PURE__*/ createInstrumentationGetter(true, true)
  909. };
  910. function checkIdentityKeys(target, has, key) {
  911. const rawKey = toRaw(key);
  912. if (rawKey !== key && has.call(target, rawKey)) {
  913. const type = toRawType(target);
  914. console.warn(`Reactive ${type} contains both the raw and reactive ` +
  915. `versions of the same object${type === `Map` ? ` as keys` : ``}, ` +
  916. `which can lead to inconsistencies. ` +
  917. `Avoid differentiating between the raw and reactive versions ` +
  918. `of an object and only use the reactive version if possible.`);
  919. }
  920. }
  921. const reactiveMap = new WeakMap();
  922. const shallowReactiveMap = new WeakMap();
  923. const readonlyMap = new WeakMap();
  924. const shallowReadonlyMap = new WeakMap();
  925. function targetTypeMap(rawType) {
  926. switch (rawType) {
  927. case 'Object':
  928. case 'Array':
  929. return 1 /* TargetType.COMMON */;
  930. case 'Map':
  931. case 'Set':
  932. case 'WeakMap':
  933. case 'WeakSet':
  934. return 2 /* TargetType.COLLECTION */;
  935. default:
  936. return 0 /* TargetType.INVALID */;
  937. }
  938. }
  939. function getTargetType(value) {
  940. return value["__v_skip" /* ReactiveFlags.SKIP */] || !Object.isExtensible(value)
  941. ? 0 /* TargetType.INVALID */
  942. : targetTypeMap(toRawType(value));
  943. }
  944. function reactive(target) {
  945. // if trying to observe a readonly proxy, return the readonly version.
  946. if (isReadonly(target)) {
  947. return target;
  948. }
  949. return createReactiveObject(target, false, mutableHandlers, mutableCollectionHandlers, reactiveMap);
  950. }
  951. /**
  952. * Return a shallowly-reactive copy of the original object, where only the root
  953. * level properties are reactive. It also does not auto-unwrap refs (even at the
  954. * root level).
  955. */
  956. function shallowReactive(target) {
  957. return createReactiveObject(target, false, shallowReactiveHandlers, shallowCollectionHandlers, shallowReactiveMap);
  958. }
  959. /**
  960. * Creates a readonly copy of the original object. Note the returned copy is not
  961. * made reactive, but `readonly` can be called on an already reactive object.
  962. */
  963. function readonly(target) {
  964. return createReactiveObject(target, true, readonlyHandlers, readonlyCollectionHandlers, readonlyMap);
  965. }
  966. /**
  967. * Returns a reactive-copy of the original object, where only the root level
  968. * properties are readonly, and does NOT unwrap refs nor recursively convert
  969. * returned properties.
  970. * This is used for creating the props proxy object for stateful components.
  971. */
  972. function shallowReadonly(target) {
  973. return createReactiveObject(target, true, shallowReadonlyHandlers, shallowReadonlyCollectionHandlers, shallowReadonlyMap);
  974. }
  975. function createReactiveObject(target, isReadonly, baseHandlers, collectionHandlers, proxyMap) {
  976. if (!isObject(target)) {
  977. {
  978. console.warn(`value cannot be made reactive: ${String(target)}`);
  979. }
  980. return target;
  981. }
  982. // target is already a Proxy, return it.
  983. // exception: calling readonly() on a reactive object
  984. if (target["__v_raw" /* ReactiveFlags.RAW */] &&
  985. !(isReadonly && target["__v_isReactive" /* ReactiveFlags.IS_REACTIVE */])) {
  986. return target;
  987. }
  988. // target already has corresponding Proxy
  989. const existingProxy = proxyMap.get(target);
  990. if (existingProxy) {
  991. return existingProxy;
  992. }
  993. // only specific value types can be observed.
  994. const targetType = getTargetType(target);
  995. if (targetType === 0 /* TargetType.INVALID */) {
  996. return target;
  997. }
  998. const proxy = new Proxy(target, targetType === 2 /* TargetType.COLLECTION */ ? collectionHandlers : baseHandlers);
  999. proxyMap.set(target, proxy);
  1000. return proxy;
  1001. }
  1002. function isReactive(value) {
  1003. if (isReadonly(value)) {
  1004. return isReactive(value["__v_raw" /* ReactiveFlags.RAW */]);
  1005. }
  1006. return !!(value && value["__v_isReactive" /* ReactiveFlags.IS_REACTIVE */]);
  1007. }
  1008. function isReadonly(value) {
  1009. return !!(value && value["__v_isReadonly" /* ReactiveFlags.IS_READONLY */]);
  1010. }
  1011. function isShallow(value) {
  1012. return !!(value && value["__v_isShallow" /* ReactiveFlags.IS_SHALLOW */]);
  1013. }
  1014. function isProxy(value) {
  1015. return isReactive(value) || isReadonly(value);
  1016. }
  1017. function toRaw(observed) {
  1018. const raw = observed && observed["__v_raw" /* ReactiveFlags.RAW */];
  1019. return raw ? toRaw(raw) : observed;
  1020. }
  1021. function markRaw(value) {
  1022. def(value, "__v_skip" /* ReactiveFlags.SKIP */, true);
  1023. return value;
  1024. }
  1025. const toReactive = (value) => isObject(value) ? reactive(value) : value;
  1026. const toReadonly = (value) => isObject(value) ? readonly(value) : value;
  1027. function trackRefValue(ref) {
  1028. if (shouldTrack && activeEffect) {
  1029. ref = toRaw(ref);
  1030. {
  1031. trackEffects(ref.dep || (ref.dep = createDep()), {
  1032. target: ref,
  1033. type: "get" /* TrackOpTypes.GET */,
  1034. key: 'value'
  1035. });
  1036. }
  1037. }
  1038. }
  1039. function triggerRefValue(ref, newVal) {
  1040. ref = toRaw(ref);
  1041. if (ref.dep) {
  1042. {
  1043. triggerEffects(ref.dep, {
  1044. target: ref,
  1045. type: "set" /* TriggerOpTypes.SET */,
  1046. key: 'value',
  1047. newValue: newVal
  1048. });
  1049. }
  1050. }
  1051. }
  1052. function isRef(r) {
  1053. return !!(r && r.__v_isRef === true);
  1054. }
  1055. function ref(value) {
  1056. return createRef(value, false);
  1057. }
  1058. function shallowRef(value) {
  1059. return createRef(value, true);
  1060. }
  1061. function createRef(rawValue, shallow) {
  1062. if (isRef(rawValue)) {
  1063. return rawValue;
  1064. }
  1065. return new RefImpl(rawValue, shallow);
  1066. }
  1067. class RefImpl {
  1068. constructor(value, __v_isShallow) {
  1069. this.__v_isShallow = __v_isShallow;
  1070. this.dep = undefined;
  1071. this.__v_isRef = true;
  1072. this._rawValue = __v_isShallow ? value : toRaw(value);
  1073. this._value = __v_isShallow ? value : toReactive(value);
  1074. }
  1075. get value() {
  1076. trackRefValue(this);
  1077. return this._value;
  1078. }
  1079. set value(newVal) {
  1080. const useDirectValue = this.__v_isShallow || isShallow(newVal) || isReadonly(newVal);
  1081. newVal = useDirectValue ? newVal : toRaw(newVal);
  1082. if (hasChanged(newVal, this._rawValue)) {
  1083. this._rawValue = newVal;
  1084. this._value = useDirectValue ? newVal : toReactive(newVal);
  1085. triggerRefValue(this, newVal);
  1086. }
  1087. }
  1088. }
  1089. function triggerRef(ref) {
  1090. triggerRefValue(ref, ref.value );
  1091. }
  1092. function unref(ref) {
  1093. return isRef(ref) ? ref.value : ref;
  1094. }
  1095. const shallowUnwrapHandlers = {
  1096. get: (target, key, receiver) => unref(Reflect.get(target, key, receiver)),
  1097. set: (target, key, value, receiver) => {
  1098. const oldValue = target[key];
  1099. if (isRef(oldValue) && !isRef(value)) {
  1100. oldValue.value = value;
  1101. return true;
  1102. }
  1103. else {
  1104. return Reflect.set(target, key, value, receiver);
  1105. }
  1106. }
  1107. };
  1108. function proxyRefs(objectWithRefs) {
  1109. return isReactive(objectWithRefs)
  1110. ? objectWithRefs
  1111. : new Proxy(objectWithRefs, shallowUnwrapHandlers);
  1112. }
  1113. class CustomRefImpl {
  1114. constructor(factory) {
  1115. this.dep = undefined;
  1116. this.__v_isRef = true;
  1117. const { get, set } = factory(() => trackRefValue(this), () => triggerRefValue(this));
  1118. this._get = get;
  1119. this._set = set;
  1120. }
  1121. get value() {
  1122. return this._get();
  1123. }
  1124. set value(newVal) {
  1125. this._set(newVal);
  1126. }
  1127. }
  1128. function customRef(factory) {
  1129. return new CustomRefImpl(factory);
  1130. }
  1131. function toRefs(object) {
  1132. if (!isProxy(object)) {
  1133. console.warn(`toRefs() expects a reactive object but received a plain one.`);
  1134. }
  1135. const ret = isArray(object) ? new Array(object.length) : {};
  1136. for (const key in object) {
  1137. ret[key] = toRef(object, key);
  1138. }
  1139. return ret;
  1140. }
  1141. class ObjectRefImpl {
  1142. constructor(_object, _key, _defaultValue) {
  1143. this._object = _object;
  1144. this._key = _key;
  1145. this._defaultValue = _defaultValue;
  1146. this.__v_isRef = true;
  1147. }
  1148. get value() {
  1149. const val = this._object[this._key];
  1150. return val === undefined ? this._defaultValue : val;
  1151. }
  1152. set value(newVal) {
  1153. this._object[this._key] = newVal;
  1154. }
  1155. }
  1156. function toRef(object, key, defaultValue) {
  1157. const val = object[key];
  1158. return isRef(val)
  1159. ? val
  1160. : new ObjectRefImpl(object, key, defaultValue);
  1161. }
  1162. var _a;
  1163. class ComputedRefImpl {
  1164. constructor(getter, _setter, isReadonly, isSSR) {
  1165. this._setter = _setter;
  1166. this.dep = undefined;
  1167. this.__v_isRef = true;
  1168. this[_a] = false;
  1169. this._dirty = true;
  1170. this.effect = new ReactiveEffect(getter, () => {
  1171. if (!this._dirty) {
  1172. this._dirty = true;
  1173. triggerRefValue(this);
  1174. }
  1175. });
  1176. this.effect.computed = this;
  1177. this.effect.active = this._cacheable = !isSSR;
  1178. this["__v_isReadonly" /* ReactiveFlags.IS_READONLY */] = isReadonly;
  1179. }
  1180. get value() {
  1181. // the computed ref may get wrapped by other proxies e.g. readonly() #3376
  1182. const self = toRaw(this);
  1183. trackRefValue(self);
  1184. if (self._dirty || !self._cacheable) {
  1185. self._dirty = false;
  1186. self._value = self.effect.run();
  1187. }
  1188. return self._value;
  1189. }
  1190. set value(newValue) {
  1191. this._setter(newValue);
  1192. }
  1193. }
  1194. _a = "__v_isReadonly" /* ReactiveFlags.IS_READONLY */;
  1195. function computed(getterOrOptions, debugOptions, isSSR = false) {
  1196. let getter;
  1197. let setter;
  1198. const onlyGetter = isFunction(getterOrOptions);
  1199. if (onlyGetter) {
  1200. getter = getterOrOptions;
  1201. setter = () => {
  1202. console.warn('Write operation failed: computed value is readonly');
  1203. }
  1204. ;
  1205. }
  1206. else {
  1207. getter = getterOrOptions.get;
  1208. setter = getterOrOptions.set;
  1209. }
  1210. const cRef = new ComputedRefImpl(getter, setter, onlyGetter || !setter, isSSR);
  1211. if (debugOptions && !isSSR) {
  1212. cRef.effect.onTrack = debugOptions.onTrack;
  1213. cRef.effect.onTrigger = debugOptions.onTrigger;
  1214. }
  1215. return cRef;
  1216. }
  1217. var _a$1;
  1218. const tick = /*#__PURE__*/ Promise.resolve();
  1219. const queue = [];
  1220. let queued = false;
  1221. const scheduler = (fn) => {
  1222. queue.push(fn);
  1223. if (!queued) {
  1224. queued = true;
  1225. tick.then(flush);
  1226. }
  1227. };
  1228. const flush = () => {
  1229. for (let i = 0; i < queue.length; i++) {
  1230. queue[i]();
  1231. }
  1232. queue.length = 0;
  1233. queued = false;
  1234. };
  1235. class DeferredComputedRefImpl {
  1236. constructor(getter) {
  1237. this.dep = undefined;
  1238. this._dirty = true;
  1239. this.__v_isRef = true;
  1240. this[_a$1] = true;
  1241. let compareTarget;
  1242. let hasCompareTarget = false;
  1243. let scheduled = false;
  1244. this.effect = new ReactiveEffect(getter, (computedTrigger) => {
  1245. if (this.dep) {
  1246. if (computedTrigger) {
  1247. compareTarget = this._value;
  1248. hasCompareTarget = true;
  1249. }
  1250. else if (!scheduled) {
  1251. const valueToCompare = hasCompareTarget ? compareTarget : this._value;
  1252. scheduled = true;
  1253. hasCompareTarget = false;
  1254. scheduler(() => {
  1255. if (this.effect.active && this._get() !== valueToCompare) {
  1256. triggerRefValue(this);
  1257. }
  1258. scheduled = false;
  1259. });
  1260. }
  1261. // chained upstream computeds are notified synchronously to ensure
  1262. // value invalidation in case of sync access; normal effects are
  1263. // deferred to be triggered in scheduler.
  1264. for (const e of this.dep) {
  1265. if (e.computed instanceof DeferredComputedRefImpl) {
  1266. e.scheduler(true /* computedTrigger */);
  1267. }
  1268. }
  1269. }
  1270. this._dirty = true;
  1271. });
  1272. this.effect.computed = this;
  1273. }
  1274. _get() {
  1275. if (this._dirty) {
  1276. this._dirty = false;
  1277. return (this._value = this.effect.run());
  1278. }
  1279. return this._value;
  1280. }
  1281. get value() {
  1282. trackRefValue(this);
  1283. // the computed ref may get wrapped by other proxies e.g. readonly() #3376
  1284. return toRaw(this)._get();
  1285. }
  1286. }
  1287. _a$1 = "__v_isReadonly" /* ReactiveFlags.IS_READONLY */;
  1288. function deferredComputed(getter) {
  1289. return new DeferredComputedRefImpl(getter);
  1290. }
  1291. export { EffectScope, ITERATE_KEY, ReactiveEffect, computed, customRef, deferredComputed, effect, effectScope, enableTracking, getCurrentScope, isProxy, isReactive, isReadonly, isRef, isShallow, markRaw, onScopeDispose, pauseTracking, proxyRefs, reactive, readonly, ref, resetTracking, shallowReactive, shallowReadonly, shallowRef, stop, toRaw, toRef, toRefs, track, trigger, triggerRef, unref };