403 lines
15 KiB
JavaScript
403 lines
15 KiB
JavaScript
"use strict";
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Object.defineProperty(exports, "__esModule", { value: true });
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const PendingOperation_1 = require("./PendingOperation");
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const Resource_1 = require("./Resource");
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const utils_1 = require("./utils");
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const events_1 = require("events");
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class Pool {
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constructor(opt) {
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this.destroyed = false;
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this.emitter = new events_1.EventEmitter();
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opt = opt || {};
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if (!opt.create) {
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throw new Error('Tarn: opt.create function most be provided');
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}
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if (!opt.destroy) {
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throw new Error('Tarn: opt.destroy function most be provided');
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}
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if (typeof opt.min !== 'number' || opt.min < 0 || opt.min !== Math.round(opt.min)) {
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throw new Error('Tarn: opt.min must be an integer >= 0');
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}
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if (typeof opt.max !== 'number' || opt.max <= 0 || opt.max !== Math.round(opt.max)) {
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throw new Error('Tarn: opt.max must be an integer > 0');
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}
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if (opt.min > opt.max) {
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throw new Error('Tarn: opt.max is smaller than opt.min');
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}
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if (!utils_1.checkOptionalTime(opt.acquireTimeoutMillis)) {
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throw new Error('Tarn: invalid opt.acquireTimeoutMillis ' + JSON.stringify(opt.acquireTimeoutMillis));
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}
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if (!utils_1.checkOptionalTime(opt.createTimeoutMillis)) {
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throw new Error('Tarn: invalid opt.createTimeoutMillis ' + JSON.stringify(opt.createTimeoutMillis));
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}
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if (!utils_1.checkOptionalTime(opt.destroyTimeoutMillis)) {
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throw new Error('Tarn: invalid opt.destroyTimeoutMillis ' + JSON.stringify(opt.destroyTimeoutMillis));
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}
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if (!utils_1.checkOptionalTime(opt.idleTimeoutMillis)) {
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throw new Error('Tarn: invalid opt.idleTimeoutMillis ' + JSON.stringify(opt.idleTimeoutMillis));
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}
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if (!utils_1.checkOptionalTime(opt.reapIntervalMillis)) {
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throw new Error('Tarn: invalid opt.reapIntervalMillis ' + JSON.stringify(opt.reapIntervalMillis));
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}
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if (!utils_1.checkOptionalTime(opt.createRetryIntervalMillis)) {
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throw new Error('Tarn: invalid opt.createRetryIntervalMillis ' +
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JSON.stringify(opt.createRetryIntervalMillis));
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}
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const allowedKeys = {
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create: true,
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validate: true,
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destroy: true,
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log: true,
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min: true,
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max: true,
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acquireTimeoutMillis: true,
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createTimeoutMillis: true,
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destroyTimeoutMillis: true,
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idleTimeoutMillis: true,
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reapIntervalMillis: true,
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createRetryIntervalMillis: true,
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propagateCreateError: true
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};
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for (let key of Object.keys(opt)) {
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if (!allowedKeys[key]) {
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throw new Error(`Tarn: unsupported option opt.${key}`);
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}
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}
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this.creator = opt.create;
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this.destroyer = opt.destroy;
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this.validate = typeof opt.validate === 'function' ? opt.validate : () => true;
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this.log = opt.log || (() => { });
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this.acquireTimeoutMillis = opt.acquireTimeoutMillis || 30000;
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this.createTimeoutMillis = opt.createTimeoutMillis || 30000;
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this.destroyTimeoutMillis = opt.destroyTimeoutMillis || 5000;
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this.idleTimeoutMillis = opt.idleTimeoutMillis || 30000;
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this.reapIntervalMillis = opt.reapIntervalMillis || 1000;
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this.createRetryIntervalMillis = opt.createRetryIntervalMillis || 200;
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this.propagateCreateError = !!opt.propagateCreateError;
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this.min = opt.min;
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this.max = opt.max;
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this.used = [];
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this.free = [];
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this.pendingCreates = [];
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this.pendingAcquires = [];
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this.pendingDestroys = [];
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this.destroyed = false;
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this.interval = null;
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this.eventId = 1;
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}
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numUsed() {
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return this.used.length;
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}
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numFree() {
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return this.free.length;
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}
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numPendingAcquires() {
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return this.pendingAcquires.length;
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}
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numPendingCreates() {
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return this.pendingCreates.length;
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}
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acquire() {
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const eventId = this.eventId++;
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this._executeEventHandlers('acquireRequest', eventId);
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const pendingAcquire = new PendingOperation_1.PendingOperation(this.acquireTimeoutMillis);
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this.pendingAcquires.push(pendingAcquire);
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// If the acquire fails for whatever reason
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// remove it from the pending queue.
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pendingAcquire.promise = pendingAcquire.promise
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.then(resource => {
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this._executeEventHandlers('acquireSuccess', eventId, resource);
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return resource;
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})
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.catch(err => {
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this._executeEventHandlers('acquireFail', eventId, err);
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remove(this.pendingAcquires, pendingAcquire);
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return Promise.reject(err);
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});
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this._tryAcquireOrCreate();
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return pendingAcquire;
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}
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release(resource) {
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this._executeEventHandlers('release', resource);
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for (let i = 0, l = this.used.length; i < l; ++i) {
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const used = this.used[i];
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if (used.resource === resource) {
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this.used.splice(i, 1);
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this.free.push(used.resolve());
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this._tryAcquireOrCreate();
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return true;
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}
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}
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return false;
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}
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isEmpty() {
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return ([this.numFree(), this.numUsed(), this.numPendingAcquires(), this.numPendingCreates()].reduce((total, value) => total + value) === 0);
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}
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check() {
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const timestamp = utils_1.now();
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const newFree = [];
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const minKeep = this.min - this.used.length;
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const maxDestroy = this.free.length - minKeep;
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let numDestroyed = 0;
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this.free.forEach(free => {
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if (utils_1.duration(timestamp, free.timestamp) >= this.idleTimeoutMillis &&
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numDestroyed < maxDestroy) {
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numDestroyed++;
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this._destroy(free.resource);
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}
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else {
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newFree.push(free);
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}
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});
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this.free = newFree;
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// Pool is completely empty, stop reaping.
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// Next .acquire will start reaping interval again.
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if (this.isEmpty()) {
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this._stopReaping();
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}
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}
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destroy() {
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const eventId = this.eventId++;
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this._executeEventHandlers('poolDestroyRequest', eventId);
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this._stopReaping();
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this.destroyed = true;
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// First wait for all the pending creates get ready.
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return utils_1.reflect(Promise.all(this.pendingCreates.map(create => utils_1.reflect(create.promise)))
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.then(() => {
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// Wait for all the used resources to be freed.
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return Promise.all(this.used.map(used => utils_1.reflect(used.promise)));
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})
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.then(() => {
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// Abort all pending acquires.
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return Promise.all(this.pendingAcquires.map(acquire => {
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acquire.abort();
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return utils_1.reflect(acquire.promise);
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}));
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})
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.then(() => {
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// Now we can destroy all the freed resources.
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return Promise.all(this.free.map(free => utils_1.reflect(this._destroy(free.resource))));
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})
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.then(() => {
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// Also wait rest of the pending destroys to finish
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return Promise.all(this.pendingDestroys.map(pd => pd.promise));
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})
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.then(() => {
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this.free = [];
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this.pendingAcquires = [];
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})).then(res => {
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this._executeEventHandlers('poolDestroySuccess', eventId);
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this.emitter.removeAllListeners();
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return res;
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});
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}
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on(event, listener) {
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this.emitter.on(event, listener);
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}
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removeListener(event, listener) {
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this.emitter.removeListener(event, listener);
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}
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removeAllListeners(event) {
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this.emitter.removeAllListeners(event);
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}
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_tryAcquireOrCreate() {
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if (this.destroyed) {
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return;
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}
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if (this._hasFreeResources()) {
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this._doAcquire();
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}
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else if (this._shouldCreateMoreResources()) {
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this._doCreate();
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}
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}
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_hasFreeResources() {
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return this.free.length > 0;
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}
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_doAcquire() {
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let didDestroyResources = false;
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while (this._canAcquire()) {
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const pendingAcquire = this.pendingAcquires[0];
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const free = this.free[this.free.length - 1];
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if (!this._validateResource(free.resource)) {
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this.free.pop();
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this._destroy(free.resource);
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didDestroyResources = true;
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continue;
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}
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this.pendingAcquires.shift();
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this.free.pop();
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this.used.push(free.resolve());
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//At least one active resource, start reaping
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this._startReaping();
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pendingAcquire.resolve(free.resource);
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}
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// If we destroyed invalid resources, we may need to create new ones.
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if (didDestroyResources) {
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this._tryAcquireOrCreate();
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}
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}
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_canAcquire() {
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return this.free.length > 0 && this.pendingAcquires.length > 0;
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}
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_validateResource(resource) {
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try {
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return !!this.validate(resource);
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}
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catch (err) {
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// There's nothing we can do here but log the error. This would otherwise
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// leak out as an unhandled exception.
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this.log('Tarn: resource validator threw an exception ' + err.stack, 'warn');
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return false;
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}
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}
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_shouldCreateMoreResources() {
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return (this.used.length + this.pendingCreates.length < this.max &&
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this.pendingCreates.length < this.pendingAcquires.length);
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}
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_doCreate() {
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const pendingAcquiresBeforeCreate = this.pendingAcquires.slice();
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const pendingCreate = this._create();
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pendingCreate.promise
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.then(() => {
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// Not returned on purpose.
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this._tryAcquireOrCreate();
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return null;
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})
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.catch(err => {
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if (this.propagateCreateError && this.pendingAcquires.length !== 0) {
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// If propagateCreateError is true, we don't retry the create
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// but reject the first pending acquire immediately. Intentionally
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// use `this.pendingAcquires` instead of `pendingAcquiresBeforeCreate`
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// in case some acquires in pendingAcquiresBeforeCreate have already
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// been resolved.
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this.pendingAcquires[0].reject(err);
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}
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// Save the create error to all pending acquires so that we can use it
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// as the error to reject the acquire if it times out.
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pendingAcquiresBeforeCreate.forEach(pendingAcquire => {
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pendingAcquire.possibleTimeoutCause = err;
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});
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// Not returned on purpose.
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utils_1.delay(this.createRetryIntervalMillis).then(() => this._tryAcquireOrCreate());
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});
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}
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_create() {
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const eventId = this.eventId++;
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this._executeEventHandlers('createRequest', eventId);
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const pendingCreate = new PendingOperation_1.PendingOperation(this.createTimeoutMillis);
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this.pendingCreates.push(pendingCreate);
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callbackOrPromise(this.creator)
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.then(resource => {
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remove(this.pendingCreates, pendingCreate);
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this.free.push(new Resource_1.Resource(resource));
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// Not returned on purpose.
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pendingCreate.resolve(resource);
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this._executeEventHandlers('createSuccess', eventId, resource);
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return null;
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})
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.catch(err => {
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remove(this.pendingCreates, pendingCreate);
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// Not returned on purpose.
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pendingCreate.reject(err);
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this._executeEventHandlers('createFail', eventId, err);
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return null;
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});
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return pendingCreate;
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}
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_destroy(resource) {
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const eventId = this.eventId++;
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this._executeEventHandlers('destroyRequest', eventId, resource);
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// this.destroyer can be both synchronous and asynchronous.
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// so we wrap it to promise to get all exceptions through same pipeline
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const pendingDestroy = new PendingOperation_1.PendingOperation(this.destroyTimeoutMillis);
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const retVal = Promise.resolve().then(() => this.destroyer(resource));
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retVal
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.then(() => {
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pendingDestroy.resolve(resource);
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})
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.catch((err) => {
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pendingDestroy.reject(err);
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});
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this.pendingDestroys.push(pendingDestroy);
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// In case of an error there's nothing we can do here but log it.
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return pendingDestroy.promise
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.then(res => {
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this._executeEventHandlers('destroySuccess', eventId, resource);
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return res;
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})
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.catch(err => this._logDestroyerError(eventId, resource, err))
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.then(res => {
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const index = this.pendingDestroys.findIndex(pd => pd === pendingDestroy);
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this.pendingDestroys.splice(index, 1);
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return res;
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});
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}
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_logDestroyerError(eventId, resource, err) {
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this._executeEventHandlers('destroyFail', eventId, resource, err);
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this.log('Tarn: resource destroyer threw an exception ' + err.stack, 'warn');
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}
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_startReaping() {
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if (!this.interval) {
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this._executeEventHandlers('startReaping');
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this.interval = setInterval(() => this.check(), this.reapIntervalMillis);
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}
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}
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_stopReaping() {
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if (this.interval !== null) {
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this._executeEventHandlers('stopReaping');
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clearInterval(this.interval);
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}
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this.interval = null;
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}
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_executeEventHandlers(eventName, ...args) {
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const listeners = this.emitter.listeners(eventName);
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// just calling .emit() would stop running rest of the listeners if one them fails
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listeners.forEach(listener => {
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try {
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listener(...args);
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}
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catch (err) {
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// There's nothing we can do here but log the error. This would otherwise
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// leak out as an unhandled exception.
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this.log(`Tarn: event handler "${eventName}" threw an exception ${err.stack}`, 'warn');
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}
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});
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}
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}
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exports.Pool = Pool;
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function remove(arr, item) {
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var idx = arr.indexOf(item);
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if (idx === -1) {
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return false;
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}
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else {
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arr.splice(idx, 1);
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return true;
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}
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}
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function callbackOrPromise(func) {
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return new Promise((resolve, reject) => {
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const callback = (err, resource) => {
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if (err) {
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reject(err);
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}
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else {
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resolve(resource);
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}
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};
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utils_1.tryPromise(() => func(callback))
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.then(res => {
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// If the result is falsy, we assume that the callback will
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// be called instead of interpreting the falsy value as a
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// result value.
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if (res) {
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resolve(res);
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}
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})
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.catch(err => {
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reject(err);
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});
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});
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}
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