`third_party/node/node_modules` is generated by `./mach vendor node`. Differential Revision: https://phabricator.services.mozilla.com/D320322
284 lines
7.4 KiB
JavaScript
284 lines
7.4 KiB
JavaScript
/*
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MIT License http://www.opensource.org/licenses/mit-license.php
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Author Tobias Koppers @sokra
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*/
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"use strict";
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const TOMBSTONE = Symbol("tombstone");
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const UNDEFINED_MARKER = Symbol("undefined");
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/**
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* Public cell value exposed by `StackedMap`, where `undefined` is preserved as
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* a valid stored result.
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* @template T
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* @typedef {T | undefined} Cell<T>
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*/
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/**
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* Internal cell value used to distinguish deleted entries and explicit
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* `undefined` assignments while traversing stacked scopes.
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* @template T
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* @typedef {T | typeof TOMBSTONE | typeof UNDEFINED_MARKER} InternalCell<T>
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*/
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/**
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* Converts an internal key/value pair into the external representation returned
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* by iteration helpers.
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* @template K
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* @template V
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* @param {[K, InternalCell<V>]} pair the internal cell
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* @returns {[K, Cell<V>]} its “safe” representation
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*/
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const extractPair = (pair) => {
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const key = pair[0];
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const val = pair[1];
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if (val === UNDEFINED_MARKER || val === TOMBSTONE) {
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return [key, undefined];
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}
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return /** @type {[K, Cell<V>]} */ (pair);
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};
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/**
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* Layered map that supports child scopes while memoizing lookups from parent
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* scopes. Layers form a linked parent chain, so `createChild` is O(1) instead
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* of copying a layer array per scope. A layer's `Map` is only allocated on its
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* first own write, and lookup results are memoized into the nearest
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* `Map`-bearing layer of the walk — read-only layers (most block scopes) stay
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* allocation-free and share their parent's memoized entries.
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* @template K
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* @template V
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*/
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class StackedMap {
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/**
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* Creates a new map layer on top of an optional parent.
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* @param {StackedMap<K, V>=} parent an optional parent map
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*/
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constructor(parent) {
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/** @type {Map<K, InternalCell<V>> | undefined} */
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this.map = undefined;
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/** @type {StackedMap<K, V> | undefined} */
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this.parent = parent;
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}
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/**
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* Stores a value in the current layer, preserving explicit `undefined`
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* values with an internal marker.
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* @param {K} item the key of the element to add
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* @param {V} value the value of the element to add
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* @returns {void}
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*/
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set(item, value) {
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(this.map || (this.map = new Map())).set(
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item,
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value === undefined ? UNDEFINED_MARKER : value
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);
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}
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/**
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* Deletes a key from the current view, either by removing it outright in the
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* root layer or by recording a tombstone in child layers.
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* @param {K} item the item to delete
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* @returns {void}
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*/
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delete(item) {
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if (this.parent !== undefined) {
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(this.map || (this.map = new Map())).set(item, TOMBSTONE);
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} else if (this.map !== undefined) {
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this.map.delete(item);
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}
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}
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/**
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* Checks whether a key exists in the current scope chain, caching any parent
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* lookup result in the nearest `Map`-bearing layer.
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* @param {K} item the item to test
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* @returns {boolean} true if the item exists in this set
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*/
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has(item) {
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const own = this.map;
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if (own !== undefined) {
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const topValue = own.get(item);
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if (topValue !== undefined) {
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return topValue !== TOMBSTONE;
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}
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}
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/** @type {StackedMap<K, V> | undefined} */
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let memoTarget = own !== undefined ? this : undefined;
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/** @type {StackedMap<K, V> | undefined} */
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let current = this.parent;
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while (current !== undefined) {
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const map = current.map;
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if (map !== undefined) {
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const value = map.get(item);
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if (value !== undefined) {
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if (memoTarget !== undefined) {
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/** @type {Map<K, InternalCell<V>>} */ (memoTarget.map).set(
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item,
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value
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);
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}
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return value !== TOMBSTONE;
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}
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if (memoTarget === undefined) memoTarget = current;
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}
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current = current.parent;
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}
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if (memoTarget !== undefined) {
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/** @type {Map<K, InternalCell<V>>} */ (memoTarget.map).set(
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item,
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TOMBSTONE
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);
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}
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return false;
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}
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/**
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* Returns the visible value for a key, caching parent hits and misses in the
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* nearest `Map`-bearing layer so repeated lookups (from this layer or any
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* sibling below that layer) answer with a single probe.
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* @param {K} item the key of the element to return
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* @returns {Cell<V>} the value of the element
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*/
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get(item) {
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const own = this.map;
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if (own !== undefined) {
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const topValue = own.get(item);
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if (topValue !== undefined) {
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return topValue === TOMBSTONE || topValue === UNDEFINED_MARKER
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? undefined
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: topValue;
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}
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}
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/** @type {StackedMap<K, V> | undefined} */
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let memoTarget = own !== undefined ? this : undefined;
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/** @type {StackedMap<K, V> | undefined} */
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let current = this.parent;
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while (current !== undefined) {
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const map = current.map;
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if (map !== undefined) {
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const value = map.get(item);
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if (value !== undefined) {
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if (memoTarget !== undefined) {
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/** @type {Map<K, InternalCell<V>>} */ (memoTarget.map).set(
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item,
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value
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);
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}
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return value === TOMBSTONE || value === UNDEFINED_MARKER
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? undefined
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: value;
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}
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if (memoTarget === undefined) memoTarget = current;
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}
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current = current.parent;
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}
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if (memoTarget !== undefined) {
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/** @type {Map<K, InternalCell<V>>} */ (memoTarget.map).set(
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item,
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TOMBSTONE
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);
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}
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}
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/**
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* Collapses the parent chain into a single concrete map.
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*/
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_compress() {
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if (this.parent === undefined) {
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const map = this.map;
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if (map === undefined) {
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this.map = new Map();
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return;
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}
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// a parent-less layer holds tombstones only as memoized misses
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// (deletes remove outright) — drop them from the visible view
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for (const pair of map) {
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if (pair[1] === TOMBSTONE) map.delete(pair[0]);
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}
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return;
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}
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/** @type {StackedMap<K, V>[]} */
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const layers = [];
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/** @type {StackedMap<K, V> | undefined} */
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let current = this;
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do {
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layers.push(current);
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current = current.parent;
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} while (current !== undefined);
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const map = new Map();
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for (let i = layers.length - 1; i >= 0; i--) {
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const layerMap = layers[i].map;
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if (layerMap !== undefined) {
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for (const pair of layerMap) {
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if (pair[1] === TOMBSTONE) {
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map.delete(pair[0]);
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} else {
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map.set(pair[0], pair[1]);
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}
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}
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}
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}
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this.map = map;
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this.parent = undefined;
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}
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/**
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* Returns the visible keys as an array after collapsing the stack.
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* @returns {K[]} array of keys
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*/
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asArray() {
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this._compress();
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return [.../** @type {Map<K, InternalCell<V>>} */ (this.map).keys()];
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}
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/**
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* Returns the visible keys as a `Set` after collapsing the stack.
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* @returns {Set<K>} set of keys
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*/
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asSet() {
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this._compress();
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return new Set(/** @type {Map<K, InternalCell<V>>} */ (this.map).keys());
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}
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/**
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* Returns visible key/value pairs using the external representation.
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* @returns {[K, Cell<V>][]} array of key/value pairs
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*/
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asPairArray() {
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this._compress();
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return Array.from(
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/** @type {Map<K, InternalCell<V>>} */ (this.map).entries(),
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extractPair
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);
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}
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/**
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* Returns the visible contents as a plain `Map`.
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* @returns {Map<K, Cell<V>>} materialized map
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*/
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asMap() {
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return new Map(this.asPairArray());
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}
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/**
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* Returns the number of visible keys after collapsing the stack.
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* @returns {number} number of keys
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*/
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get size() {
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this._compress();
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return /** @type {Map<K, InternalCell<V>>} */ (this.map).size;
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}
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/**
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* Creates a child `StackedMap` that sees the current layers as its parent
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* scope.
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* @returns {StackedMap<K, V>} child map
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*/
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createChild() {
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return new StackedMap(this);
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}
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}
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module.exports = StackedMap;
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