fix: avoid duplicate per task function name usage statistics
[poolifier.git] / src / pools / abstract-pool.ts
1 import { randomUUID } from 'node:crypto'
2 import { performance } from 'node:perf_hooks'
3 import { existsSync } from 'node:fs'
4 import { type TransferListItem } from 'node:worker_threads'
5 import type {
6 MessageValue,
7 PromiseResponseWrapper,
8 Task
9 } from '../utility-types'
10 import {
11 DEFAULT_TASK_NAME,
12 DEFAULT_WORKER_CHOICE_STRATEGY_OPTIONS,
13 EMPTY_FUNCTION,
14 isKillBehavior,
15 isPlainObject,
16 median,
17 round,
18 updateMeasurementStatistics
19 } from '../utils'
20 import { KillBehaviors } from '../worker/worker-options'
21 import {
22 type IPool,
23 PoolEmitter,
24 PoolEvents,
25 type PoolInfo,
26 type PoolOptions,
27 type PoolType,
28 PoolTypes,
29 type TasksQueueOptions
30 } from './pool'
31 import type {
32 IWorker,
33 IWorkerNode,
34 WorkerInfo,
35 WorkerType,
36 WorkerUsage
37 } from './worker'
38 import {
39 type MeasurementStatisticsRequirements,
40 Measurements,
41 WorkerChoiceStrategies,
42 type WorkerChoiceStrategy,
43 type WorkerChoiceStrategyOptions
44 } from './selection-strategies/selection-strategies-types'
45 import { WorkerChoiceStrategyContext } from './selection-strategies/worker-choice-strategy-context'
46 import { version } from './version'
47 import { WorkerNode } from './worker-node'
48
49 /**
50 * Base class that implements some shared logic for all poolifier pools.
51 *
52 * @typeParam Worker - Type of worker which manages this pool.
53 * @typeParam Data - Type of data sent to the worker. This can only be structured-cloneable data.
54 * @typeParam Response - Type of execution response. This can only be structured-cloneable data.
55 */
56 export abstract class AbstractPool<
57 Worker extends IWorker,
58 Data = unknown,
59 Response = unknown
60 > implements IPool<Worker, Data, Response> {
61 /** @inheritDoc */
62 public readonly workerNodes: Array<IWorkerNode<Worker, Data>> = []
63
64 /** @inheritDoc */
65 public readonly emitter?: PoolEmitter
66
67 /**
68 * The task execution response promise map.
69 *
70 * - `key`: The message id of each submitted task.
71 * - `value`: An object that contains the worker, the execution response promise resolve and reject callbacks.
72 *
73 * When we receive a message from the worker, we get a map entry with the promise resolve/reject bound to the message id.
74 */
75 protected promiseResponseMap: Map<string, PromiseResponseWrapper<Response>> =
76 new Map<string, PromiseResponseWrapper<Response>>()
77
78 /**
79 * Worker choice strategy context referencing a worker choice algorithm implementation.
80 */
81 protected workerChoiceStrategyContext: WorkerChoiceStrategyContext<
82 Worker,
83 Data,
84 Response
85 >
86
87 /**
88 * Whether the pool is starting or not.
89 */
90 private readonly starting: boolean
91 /**
92 * The start timestamp of the pool.
93 */
94 private readonly startTimestamp
95
96 /**
97 * Constructs a new poolifier pool.
98 *
99 * @param numberOfWorkers - Number of workers that this pool should manage.
100 * @param filePath - Path to the worker file.
101 * @param opts - Options for the pool.
102 */
103 public constructor (
104 protected readonly numberOfWorkers: number,
105 protected readonly filePath: string,
106 protected readonly opts: PoolOptions<Worker>
107 ) {
108 if (!this.isMain()) {
109 throw new Error(
110 'Cannot start a pool from a worker with the same type as the pool'
111 )
112 }
113 this.checkNumberOfWorkers(this.numberOfWorkers)
114 this.checkFilePath(this.filePath)
115 this.checkPoolOptions(this.opts)
116
117 this.chooseWorkerNode = this.chooseWorkerNode.bind(this)
118 this.executeTask = this.executeTask.bind(this)
119 this.enqueueTask = this.enqueueTask.bind(this)
120 this.dequeueTask = this.dequeueTask.bind(this)
121 this.checkAndEmitEvents = this.checkAndEmitEvents.bind(this)
122
123 if (this.opts.enableEvents === true) {
124 this.emitter = new PoolEmitter()
125 }
126 this.workerChoiceStrategyContext = new WorkerChoiceStrategyContext<
127 Worker,
128 Data,
129 Response
130 >(
131 this,
132 this.opts.workerChoiceStrategy,
133 this.opts.workerChoiceStrategyOptions
134 )
135
136 this.setupHook()
137
138 this.starting = true
139 this.startPool()
140 this.starting = false
141
142 this.startTimestamp = performance.now()
143 }
144
145 private checkFilePath (filePath: string): void {
146 if (
147 filePath == null ||
148 typeof filePath !== 'string' ||
149 (typeof filePath === 'string' && filePath.trim().length === 0)
150 ) {
151 throw new Error('Please specify a file with a worker implementation')
152 }
153 if (!existsSync(filePath)) {
154 throw new Error(`Cannot find the worker file '${filePath}'`)
155 }
156 }
157
158 private checkNumberOfWorkers (numberOfWorkers: number): void {
159 if (numberOfWorkers == null) {
160 throw new Error(
161 'Cannot instantiate a pool without specifying the number of workers'
162 )
163 } else if (!Number.isSafeInteger(numberOfWorkers)) {
164 throw new TypeError(
165 'Cannot instantiate a pool with a non safe integer number of workers'
166 )
167 } else if (numberOfWorkers < 0) {
168 throw new RangeError(
169 'Cannot instantiate a pool with a negative number of workers'
170 )
171 } else if (this.type === PoolTypes.fixed && numberOfWorkers === 0) {
172 throw new RangeError('Cannot instantiate a fixed pool with zero worker')
173 }
174 }
175
176 protected checkDynamicPoolSize (min: number, max: number): void {
177 if (this.type === PoolTypes.dynamic) {
178 if (max == null) {
179 throw new Error(
180 'Cannot instantiate a dynamic pool without specifying the maximum pool size'
181 )
182 } else if (!Number.isSafeInteger(max)) {
183 throw new TypeError(
184 'Cannot instantiate a dynamic pool with a non safe integer maximum pool size'
185 )
186 } else if (min > max) {
187 throw new RangeError(
188 'Cannot instantiate a dynamic pool with a maximum pool size inferior to the minimum pool size'
189 )
190 } else if (max === 0) {
191 throw new RangeError(
192 'Cannot instantiate a dynamic pool with a maximum pool size equal to zero'
193 )
194 } else if (min === max) {
195 throw new RangeError(
196 'Cannot instantiate a dynamic pool with a minimum pool size equal to the maximum pool size. Use a fixed pool instead'
197 )
198 }
199 }
200 }
201
202 private checkPoolOptions (opts: PoolOptions<Worker>): void {
203 if (isPlainObject(opts)) {
204 this.opts.workerChoiceStrategy =
205 opts.workerChoiceStrategy ?? WorkerChoiceStrategies.ROUND_ROBIN
206 this.checkValidWorkerChoiceStrategy(this.opts.workerChoiceStrategy)
207 this.opts.workerChoiceStrategyOptions =
208 opts.workerChoiceStrategyOptions ??
209 DEFAULT_WORKER_CHOICE_STRATEGY_OPTIONS
210 this.checkValidWorkerChoiceStrategyOptions(
211 this.opts.workerChoiceStrategyOptions
212 )
213 this.opts.restartWorkerOnError = opts.restartWorkerOnError ?? true
214 this.opts.enableEvents = opts.enableEvents ?? true
215 this.opts.enableTasksQueue = opts.enableTasksQueue ?? false
216 if (this.opts.enableTasksQueue) {
217 this.checkValidTasksQueueOptions(
218 opts.tasksQueueOptions as TasksQueueOptions
219 )
220 this.opts.tasksQueueOptions = this.buildTasksQueueOptions(
221 opts.tasksQueueOptions as TasksQueueOptions
222 )
223 }
224 } else {
225 throw new TypeError('Invalid pool options: must be a plain object')
226 }
227 }
228
229 private checkValidWorkerChoiceStrategy (
230 workerChoiceStrategy: WorkerChoiceStrategy
231 ): void {
232 if (!Object.values(WorkerChoiceStrategies).includes(workerChoiceStrategy)) {
233 throw new Error(
234 `Invalid worker choice strategy '${workerChoiceStrategy}'`
235 )
236 }
237 }
238
239 private checkValidWorkerChoiceStrategyOptions (
240 workerChoiceStrategyOptions: WorkerChoiceStrategyOptions
241 ): void {
242 if (!isPlainObject(workerChoiceStrategyOptions)) {
243 throw new TypeError(
244 'Invalid worker choice strategy options: must be a plain object'
245 )
246 }
247 if (
248 workerChoiceStrategyOptions.weights != null &&
249 Object.keys(workerChoiceStrategyOptions.weights).length !== this.maxSize
250 ) {
251 throw new Error(
252 'Invalid worker choice strategy options: must have a weight for each worker node'
253 )
254 }
255 if (
256 workerChoiceStrategyOptions.measurement != null &&
257 !Object.values(Measurements).includes(
258 workerChoiceStrategyOptions.measurement
259 )
260 ) {
261 throw new Error(
262 `Invalid worker choice strategy options: invalid measurement '${workerChoiceStrategyOptions.measurement}'`
263 )
264 }
265 }
266
267 private checkValidTasksQueueOptions (
268 tasksQueueOptions: TasksQueueOptions
269 ): void {
270 if (tasksQueueOptions != null && !isPlainObject(tasksQueueOptions)) {
271 throw new TypeError('Invalid tasks queue options: must be a plain object')
272 }
273 if (
274 tasksQueueOptions?.concurrency != null &&
275 !Number.isSafeInteger(tasksQueueOptions.concurrency)
276 ) {
277 throw new TypeError(
278 'Invalid worker tasks concurrency: must be an integer'
279 )
280 }
281 if (
282 tasksQueueOptions?.concurrency != null &&
283 tasksQueueOptions.concurrency <= 0
284 ) {
285 throw new Error(
286 `Invalid worker tasks concurrency '${tasksQueueOptions.concurrency}'`
287 )
288 }
289 }
290
291 private startPool (): void {
292 while (
293 this.workerNodes.reduce(
294 (accumulator, workerNode) =>
295 !workerNode.info.dynamic ? accumulator + 1 : accumulator,
296 0
297 ) < this.numberOfWorkers
298 ) {
299 this.createAndSetupWorkerNode()
300 }
301 }
302
303 /** @inheritDoc */
304 public get info (): PoolInfo {
305 return {
306 version,
307 type: this.type,
308 worker: this.worker,
309 ready: this.ready,
310 strategy: this.opts.workerChoiceStrategy as WorkerChoiceStrategy,
311 minSize: this.minSize,
312 maxSize: this.maxSize,
313 ...(this.workerChoiceStrategyContext.getTaskStatisticsRequirements()
314 .runTime.aggregate &&
315 this.workerChoiceStrategyContext.getTaskStatisticsRequirements()
316 .waitTime.aggregate && { utilization: round(this.utilization) }),
317 workerNodes: this.workerNodes.length,
318 idleWorkerNodes: this.workerNodes.reduce(
319 (accumulator, workerNode) =>
320 workerNode.usage.tasks.executing === 0
321 ? accumulator + 1
322 : accumulator,
323 0
324 ),
325 busyWorkerNodes: this.workerNodes.reduce(
326 (accumulator, workerNode) =>
327 workerNode.usage.tasks.executing > 0 ? accumulator + 1 : accumulator,
328 0
329 ),
330 executedTasks: this.workerNodes.reduce(
331 (accumulator, workerNode) =>
332 accumulator + workerNode.usage.tasks.executed,
333 0
334 ),
335 executingTasks: this.workerNodes.reduce(
336 (accumulator, workerNode) =>
337 accumulator + workerNode.usage.tasks.executing,
338 0
339 ),
340 ...(this.opts.enableTasksQueue === true && {
341 queuedTasks: this.workerNodes.reduce(
342 (accumulator, workerNode) =>
343 accumulator + workerNode.usage.tasks.queued,
344 0
345 )
346 }),
347 ...(this.opts.enableTasksQueue === true && {
348 maxQueuedTasks: this.workerNodes.reduce(
349 (accumulator, workerNode) =>
350 accumulator + (workerNode.usage.tasks?.maxQueued ?? 0),
351 0
352 )
353 }),
354 failedTasks: this.workerNodes.reduce(
355 (accumulator, workerNode) =>
356 accumulator + workerNode.usage.tasks.failed,
357 0
358 ),
359 ...(this.workerChoiceStrategyContext.getTaskStatisticsRequirements()
360 .runTime.aggregate && {
361 runTime: {
362 minimum: round(
363 Math.min(
364 ...this.workerNodes.map(
365 (workerNode) => workerNode.usage.runTime?.minimum ?? Infinity
366 )
367 )
368 ),
369 maximum: round(
370 Math.max(
371 ...this.workerNodes.map(
372 (workerNode) => workerNode.usage.runTime?.maximum ?? -Infinity
373 )
374 )
375 ),
376 average: round(
377 this.workerNodes.reduce(
378 (accumulator, workerNode) =>
379 accumulator + (workerNode.usage.runTime?.aggregate ?? 0),
380 0
381 ) /
382 this.workerNodes.reduce(
383 (accumulator, workerNode) =>
384 accumulator + (workerNode.usage.tasks?.executed ?? 0),
385 0
386 )
387 ),
388 ...(this.workerChoiceStrategyContext.getTaskStatisticsRequirements()
389 .runTime.median && {
390 median: round(
391 median(
392 this.workerNodes.map(
393 (workerNode) => workerNode.usage.runTime?.median ?? 0
394 )
395 )
396 )
397 })
398 }
399 }),
400 ...(this.workerChoiceStrategyContext.getTaskStatisticsRequirements()
401 .waitTime.aggregate && {
402 waitTime: {
403 minimum: round(
404 Math.min(
405 ...this.workerNodes.map(
406 (workerNode) => workerNode.usage.waitTime?.minimum ?? Infinity
407 )
408 )
409 ),
410 maximum: round(
411 Math.max(
412 ...this.workerNodes.map(
413 (workerNode) => workerNode.usage.waitTime?.maximum ?? -Infinity
414 )
415 )
416 ),
417 average: round(
418 this.workerNodes.reduce(
419 (accumulator, workerNode) =>
420 accumulator + (workerNode.usage.waitTime?.aggregate ?? 0),
421 0
422 ) /
423 this.workerNodes.reduce(
424 (accumulator, workerNode) =>
425 accumulator + (workerNode.usage.tasks?.executed ?? 0),
426 0
427 )
428 ),
429 ...(this.workerChoiceStrategyContext.getTaskStatisticsRequirements()
430 .waitTime.median && {
431 median: round(
432 median(
433 this.workerNodes.map(
434 (workerNode) => workerNode.usage.waitTime?.median ?? 0
435 )
436 )
437 )
438 })
439 }
440 })
441 }
442 }
443
444 /**
445 * The pool readiness boolean status.
446 */
447 private get ready (): boolean {
448 return (
449 this.workerNodes.reduce(
450 (accumulator, workerNode) =>
451 !workerNode.info.dynamic && workerNode.info.ready
452 ? accumulator + 1
453 : accumulator,
454 0
455 ) >= this.minSize
456 )
457 }
458
459 /**
460 * The approximate pool utilization.
461 *
462 * @returns The pool utilization.
463 */
464 private get utilization (): number {
465 const poolTimeCapacity =
466 (performance.now() - this.startTimestamp) * this.maxSize
467 const totalTasksRunTime = this.workerNodes.reduce(
468 (accumulator, workerNode) =>
469 accumulator + (workerNode.usage.runTime?.aggregate ?? 0),
470 0
471 )
472 const totalTasksWaitTime = this.workerNodes.reduce(
473 (accumulator, workerNode) =>
474 accumulator + (workerNode.usage.waitTime?.aggregate ?? 0),
475 0
476 )
477 return (totalTasksRunTime + totalTasksWaitTime) / poolTimeCapacity
478 }
479
480 /**
481 * The pool type.
482 *
483 * If it is `'dynamic'`, it provides the `max` property.
484 */
485 protected abstract get type (): PoolType
486
487 /**
488 * The worker type.
489 */
490 protected abstract get worker (): WorkerType
491
492 /**
493 * The pool minimum size.
494 */
495 protected abstract get minSize (): number
496
497 /**
498 * The pool maximum size.
499 */
500 protected abstract get maxSize (): number
501
502 /**
503 * Checks if the worker id sent in the received message from a worker is valid.
504 *
505 * @param message - The received message.
506 * @throws {@link https://nodejs.org/api/errors.html#class-error} If the worker id is invalid.
507 */
508 private checkMessageWorkerId (message: MessageValue<Response>): void {
509 if (message.workerId == null) {
510 throw new Error('Worker message received without worker id')
511 } else if (
512 message.workerId != null &&
513 this.getWorkerNodeKeyByWorkerId(message.workerId) === -1
514 ) {
515 throw new Error(
516 `Worker message received from unknown worker '${message.workerId}'`
517 )
518 }
519 }
520
521 /**
522 * Gets the given worker its worker node key.
523 *
524 * @param worker - The worker.
525 * @returns The worker node key if found in the pool worker nodes, `-1` otherwise.
526 */
527 private getWorkerNodeKeyByWorker (worker: Worker): number {
528 return this.workerNodes.findIndex(
529 (workerNode) => workerNode.worker === worker
530 )
531 }
532
533 /**
534 * Gets the worker node key given its worker id.
535 *
536 * @param workerId - The worker id.
537 * @returns The worker node key if the worker id is found in the pool worker nodes, `-1` otherwise.
538 */
539 private getWorkerNodeKeyByWorkerId (workerId: number): number {
540 return this.workerNodes.findIndex(
541 (workerNode) => workerNode.info.id === workerId
542 )
543 }
544
545 /** @inheritDoc */
546 public setWorkerChoiceStrategy (
547 workerChoiceStrategy: WorkerChoiceStrategy,
548 workerChoiceStrategyOptions?: WorkerChoiceStrategyOptions
549 ): void {
550 this.checkValidWorkerChoiceStrategy(workerChoiceStrategy)
551 this.opts.workerChoiceStrategy = workerChoiceStrategy
552 this.workerChoiceStrategyContext.setWorkerChoiceStrategy(
553 this.opts.workerChoiceStrategy
554 )
555 if (workerChoiceStrategyOptions != null) {
556 this.setWorkerChoiceStrategyOptions(workerChoiceStrategyOptions)
557 }
558 for (const [workerNodeKey, workerNode] of this.workerNodes.entries()) {
559 workerNode.resetUsage()
560 this.sendStatisticsMessageToWorker(workerNodeKey)
561 }
562 }
563
564 /** @inheritDoc */
565 public setWorkerChoiceStrategyOptions (
566 workerChoiceStrategyOptions: WorkerChoiceStrategyOptions
567 ): void {
568 this.checkValidWorkerChoiceStrategyOptions(workerChoiceStrategyOptions)
569 this.opts.workerChoiceStrategyOptions = workerChoiceStrategyOptions
570 this.workerChoiceStrategyContext.setOptions(
571 this.opts.workerChoiceStrategyOptions
572 )
573 }
574
575 /** @inheritDoc */
576 public enableTasksQueue (
577 enable: boolean,
578 tasksQueueOptions?: TasksQueueOptions
579 ): void {
580 if (this.opts.enableTasksQueue === true && !enable) {
581 this.flushTasksQueues()
582 }
583 this.opts.enableTasksQueue = enable
584 this.setTasksQueueOptions(tasksQueueOptions as TasksQueueOptions)
585 }
586
587 /** @inheritDoc */
588 public setTasksQueueOptions (tasksQueueOptions: TasksQueueOptions): void {
589 if (this.opts.enableTasksQueue === true) {
590 this.checkValidTasksQueueOptions(tasksQueueOptions)
591 this.opts.tasksQueueOptions =
592 this.buildTasksQueueOptions(tasksQueueOptions)
593 } else if (this.opts.tasksQueueOptions != null) {
594 delete this.opts.tasksQueueOptions
595 }
596 }
597
598 private buildTasksQueueOptions (
599 tasksQueueOptions: TasksQueueOptions
600 ): TasksQueueOptions {
601 return {
602 concurrency: tasksQueueOptions?.concurrency ?? 1
603 }
604 }
605
606 /**
607 * Whether the pool is full or not.
608 *
609 * The pool filling boolean status.
610 */
611 protected get full (): boolean {
612 return this.workerNodes.length >= this.maxSize
613 }
614
615 /**
616 * Whether the pool is busy or not.
617 *
618 * The pool busyness boolean status.
619 */
620 protected abstract get busy (): boolean
621
622 /**
623 * Whether worker nodes are executing concurrently their tasks quota or not.
624 *
625 * @returns Worker nodes busyness boolean status.
626 */
627 protected internalBusy (): boolean {
628 if (this.opts.enableTasksQueue === true) {
629 return (
630 this.workerNodes.findIndex(
631 (workerNode) =>
632 workerNode.info.ready &&
633 workerNode.usage.tasks.executing <
634 (this.opts.tasksQueueOptions?.concurrency as number)
635 ) === -1
636 )
637 } else {
638 return (
639 this.workerNodes.findIndex(
640 (workerNode) =>
641 workerNode.info.ready && workerNode.usage.tasks.executing === 0
642 ) === -1
643 )
644 }
645 }
646
647 /** @inheritDoc */
648 public listTaskFunctions (): string[] {
649 if (
650 Array.isArray(this.getWorkerInfo(0).taskFunctions) &&
651 (this.getWorkerInfo(0).taskFunctions as string[]).length > 0
652 ) {
653 return this.getWorkerInfo(0).taskFunctions as string[]
654 } else {
655 return []
656 }
657 }
658
659 /** @inheritDoc */
660 public async execute (
661 data?: Data,
662 name?: string,
663 transferList?: TransferListItem[]
664 ): Promise<Response> {
665 return await new Promise<Response>((resolve, reject) => {
666 if (name != null && typeof name !== 'string') {
667 reject(new TypeError('name argument must be a string'))
668 }
669 if (
670 name != null &&
671 typeof name === 'string' &&
672 name.trim().length === 0
673 ) {
674 reject(new TypeError('name argument must not be an empty string'))
675 }
676 if (transferList != null && !Array.isArray(transferList)) {
677 reject(new TypeError('transferList argument must be an array'))
678 }
679 const timestamp = performance.now()
680 const workerNodeKey = this.chooseWorkerNode()
681 if (
682 name != null &&
683 Array.isArray(this.getWorkerInfo(workerNodeKey).taskFunctions) &&
684 !(this.getWorkerInfo(workerNodeKey).taskFunctions as string[]).includes(
685 name
686 )
687 ) {
688 reject(
689 new Error(`Task function '${name}' is not registered in the pool`)
690 )
691 }
692 const task: Task<Data> = {
693 name: name ?? DEFAULT_TASK_NAME,
694 // eslint-disable-next-line @typescript-eslint/consistent-type-assertions
695 data: data ?? ({} as Data),
696 transferList,
697 timestamp,
698 workerId: this.getWorkerInfo(workerNodeKey).id as number,
699 taskId: randomUUID()
700 }
701 this.promiseResponseMap.set(task.taskId as string, {
702 resolve,
703 reject,
704 workerNodeKey
705 })
706 if (
707 this.opts.enableTasksQueue === false ||
708 (this.opts.enableTasksQueue === true &&
709 this.workerNodes[workerNodeKey].usage.tasks.executing <
710 (this.opts.tasksQueueOptions?.concurrency as number))
711 ) {
712 this.executeTask(workerNodeKey, task)
713 } else {
714 this.enqueueTask(workerNodeKey, task)
715 }
716 this.checkAndEmitEvents()
717 })
718 }
719
720 /** @inheritDoc */
721 public async destroy (): Promise<void> {
722 await Promise.all(
723 this.workerNodes.map(async (_, workerNodeKey) => {
724 await this.destroyWorkerNode(workerNodeKey)
725 })
726 )
727 this.emitter?.emit(PoolEvents.destroy)
728 }
729
730 protected async sendKillMessageToWorker (
731 workerNodeKey: number,
732 workerId: number
733 ): Promise<void> {
734 await new Promise<void>((resolve, reject) => {
735 this.registerWorkerMessageListener(workerNodeKey, (message) => {
736 if (message.kill === 'success') {
737 resolve()
738 } else if (message.kill === 'failure') {
739 reject(new Error(`Worker ${workerId} kill message handling failed`))
740 }
741 })
742 this.sendToWorker(workerNodeKey, { kill: true, workerId })
743 })
744 }
745
746 /**
747 * Terminates the worker node given its worker node key.
748 *
749 * @param workerNodeKey - The worker node key.
750 */
751 protected abstract destroyWorkerNode (workerNodeKey: number): Promise<void>
752
753 /**
754 * Setup hook to execute code before worker nodes are created in the abstract constructor.
755 * Can be overridden.
756 *
757 * @virtual
758 */
759 protected setupHook (): void {
760 // Intentionally empty
761 }
762
763 /**
764 * Should return whether the worker is the main worker or not.
765 */
766 protected abstract isMain (): boolean
767
768 /**
769 * Hook executed before the worker task execution.
770 * Can be overridden.
771 *
772 * @param workerNodeKey - The worker node key.
773 * @param task - The task to execute.
774 */
775 protected beforeTaskExecutionHook (
776 workerNodeKey: number,
777 task: Task<Data>
778 ): void {
779 const workerUsage = this.workerNodes[workerNodeKey].usage
780 ++workerUsage.tasks.executing
781 this.updateWaitTimeWorkerUsage(workerUsage, task)
782 if (this.canUpdateTaskWorkerUsage(workerNodeKey)) {
783 const taskWorkerUsage = this.workerNodes[
784 workerNodeKey
785 ].getTaskWorkerUsage(task.name as string) as WorkerUsage
786 ++taskWorkerUsage.tasks.executing
787 this.updateWaitTimeWorkerUsage(taskWorkerUsage, task)
788 }
789 }
790
791 /**
792 * Hook executed after the worker task execution.
793 * Can be overridden.
794 *
795 * @param workerNodeKey - The worker node key.
796 * @param message - The received message.
797 */
798 protected afterTaskExecutionHook (
799 workerNodeKey: number,
800 message: MessageValue<Response>
801 ): void {
802 const workerUsage = this.workerNodes[workerNodeKey].usage
803 this.updateTaskStatisticsWorkerUsage(workerUsage, message)
804 this.updateRunTimeWorkerUsage(workerUsage, message)
805 this.updateEluWorkerUsage(workerUsage, message)
806 if (this.canUpdateTaskWorkerUsage(workerNodeKey)) {
807 const taskWorkerUsage = this.workerNodes[
808 workerNodeKey
809 ].getTaskWorkerUsage(
810 message.taskPerformance?.name ?? DEFAULT_TASK_NAME
811 ) as WorkerUsage
812 this.updateTaskStatisticsWorkerUsage(taskWorkerUsage, message)
813 this.updateRunTimeWorkerUsage(taskWorkerUsage, message)
814 this.updateEluWorkerUsage(taskWorkerUsage, message)
815 }
816 }
817
818 private canUpdateTaskWorkerUsage (workerNodeKey: number): boolean {
819 return (
820 Array.isArray(this.getWorkerInfo(workerNodeKey).taskFunctions) &&
821 (this.getWorkerInfo(workerNodeKey).taskFunctions as string[]).length > 1
822 )
823 }
824
825 private updateTaskStatisticsWorkerUsage (
826 workerUsage: WorkerUsage,
827 message: MessageValue<Response>
828 ): void {
829 const workerTaskStatistics = workerUsage.tasks
830 --workerTaskStatistics.executing
831 if (message.taskError == null) {
832 ++workerTaskStatistics.executed
833 } else {
834 ++workerTaskStatistics.failed
835 }
836 }
837
838 private updateRunTimeWorkerUsage (
839 workerUsage: WorkerUsage,
840 message: MessageValue<Response>
841 ): void {
842 updateMeasurementStatistics(
843 workerUsage.runTime,
844 this.workerChoiceStrategyContext.getTaskStatisticsRequirements().runTime,
845 message.taskPerformance?.runTime ?? 0,
846 workerUsage.tasks.executed
847 )
848 }
849
850 private updateWaitTimeWorkerUsage (
851 workerUsage: WorkerUsage,
852 task: Task<Data>
853 ): void {
854 const timestamp = performance.now()
855 const taskWaitTime = timestamp - (task.timestamp ?? timestamp)
856 updateMeasurementStatistics(
857 workerUsage.waitTime,
858 this.workerChoiceStrategyContext.getTaskStatisticsRequirements().waitTime,
859 taskWaitTime,
860 workerUsage.tasks.executed
861 )
862 }
863
864 private updateEluWorkerUsage (
865 workerUsage: WorkerUsage,
866 message: MessageValue<Response>
867 ): void {
868 const eluTaskStatisticsRequirements: MeasurementStatisticsRequirements =
869 this.workerChoiceStrategyContext.getTaskStatisticsRequirements().elu
870 updateMeasurementStatistics(
871 workerUsage.elu.active,
872 eluTaskStatisticsRequirements,
873 message.taskPerformance?.elu?.active ?? 0,
874 workerUsage.tasks.executed
875 )
876 updateMeasurementStatistics(
877 workerUsage.elu.idle,
878 eluTaskStatisticsRequirements,
879 message.taskPerformance?.elu?.idle ?? 0,
880 workerUsage.tasks.executed
881 )
882 if (eluTaskStatisticsRequirements.aggregate) {
883 if (message.taskPerformance?.elu != null) {
884 if (workerUsage.elu.utilization != null) {
885 workerUsage.elu.utilization =
886 (workerUsage.elu.utilization +
887 message.taskPerformance.elu.utilization) /
888 2
889 } else {
890 workerUsage.elu.utilization = message.taskPerformance.elu.utilization
891 }
892 }
893 }
894 }
895
896 /**
897 * Chooses a worker node for the next task.
898 *
899 * The default worker choice strategy uses a round robin algorithm to distribute the tasks.
900 *
901 * @returns The chosen worker node key
902 */
903 private chooseWorkerNode (): number {
904 if (this.shallCreateDynamicWorker()) {
905 const workerNodeKey = this.createAndSetupDynamicWorkerNode()
906 if (
907 this.workerChoiceStrategyContext.getStrategyPolicy().useDynamicWorker
908 ) {
909 return workerNodeKey
910 }
911 }
912 return this.workerChoiceStrategyContext.execute()
913 }
914
915 /**
916 * Conditions for dynamic worker creation.
917 *
918 * @returns Whether to create a dynamic worker or not.
919 */
920 private shallCreateDynamicWorker (): boolean {
921 return this.type === PoolTypes.dynamic && !this.full && this.internalBusy()
922 }
923
924 /**
925 * Sends a message to worker given its worker node key.
926 *
927 * @param workerNodeKey - The worker node key.
928 * @param message - The message.
929 * @param transferList - The optional array of transferable objects.
930 */
931 protected abstract sendToWorker (
932 workerNodeKey: number,
933 message: MessageValue<Data>,
934 transferList?: TransferListItem[]
935 ): void
936
937 /**
938 * Creates a new worker.
939 *
940 * @returns Newly created worker.
941 */
942 protected abstract createWorker (): Worker
943
944 /**
945 * Creates a new, completely set up worker node.
946 *
947 * @returns New, completely set up worker node key.
948 */
949 protected createAndSetupWorkerNode (): number {
950 const worker = this.createWorker()
951
952 worker.on('online', this.opts.onlineHandler ?? EMPTY_FUNCTION)
953 worker.on('message', this.opts.messageHandler ?? EMPTY_FUNCTION)
954 worker.on('error', this.opts.errorHandler ?? EMPTY_FUNCTION)
955 worker.on('error', (error) => {
956 const workerNodeKey = this.getWorkerNodeKeyByWorker(worker)
957 const workerInfo = this.getWorkerInfo(workerNodeKey)
958 workerInfo.ready = false
959 this.workerNodes[workerNodeKey].closeChannel()
960 this.emitter?.emit(PoolEvents.error, error)
961 if (this.opts.restartWorkerOnError === true && !this.starting) {
962 if (workerInfo.dynamic) {
963 this.createAndSetupDynamicWorkerNode()
964 } else {
965 this.createAndSetupWorkerNode()
966 }
967 }
968 if (this.opts.enableTasksQueue === true) {
969 this.redistributeQueuedTasks(workerNodeKey)
970 }
971 })
972 worker.on('exit', this.opts.exitHandler ?? EMPTY_FUNCTION)
973 worker.once('exit', () => {
974 this.removeWorkerNode(worker)
975 })
976
977 const workerNodeKey = this.addWorkerNode(worker)
978
979 this.afterWorkerNodeSetup(workerNodeKey)
980
981 return workerNodeKey
982 }
983
984 /**
985 * Creates a new, completely set up dynamic worker node.
986 *
987 * @returns New, completely set up dynamic worker node key.
988 */
989 protected createAndSetupDynamicWorkerNode (): number {
990 const workerNodeKey = this.createAndSetupWorkerNode()
991 this.registerWorkerMessageListener(workerNodeKey, (message) => {
992 const localWorkerNodeKey = this.getWorkerNodeKeyByWorkerId(
993 message.workerId
994 )
995 const workerUsage = this.workerNodes[localWorkerNodeKey].usage
996 // Kill message received from worker
997 if (
998 isKillBehavior(KillBehaviors.HARD, message.kill) ||
999 (isKillBehavior(KillBehaviors.SOFT, message.kill) &&
1000 ((this.opts.enableTasksQueue === false &&
1001 workerUsage.tasks.executing === 0) ||
1002 (this.opts.enableTasksQueue === true &&
1003 workerUsage.tasks.executing === 0 &&
1004 this.tasksQueueSize(localWorkerNodeKey) === 0)))
1005 ) {
1006 this.destroyWorkerNode(localWorkerNodeKey).catch((error) => {
1007 this.emitter?.emit(PoolEvents.error, error)
1008 })
1009 }
1010 })
1011 const workerInfo = this.getWorkerInfo(workerNodeKey)
1012 this.sendToWorker(workerNodeKey, {
1013 checkActive: true,
1014 workerId: workerInfo.id as number
1015 })
1016 workerInfo.dynamic = true
1017 if (this.workerChoiceStrategyContext.getStrategyPolicy().useDynamicWorker) {
1018 workerInfo.ready = true
1019 }
1020 return workerNodeKey
1021 }
1022
1023 /**
1024 * Registers a listener callback on the worker given its worker node key.
1025 *
1026 * @param workerNodeKey - The worker node key.
1027 * @param listener - The message listener callback.
1028 */
1029 protected abstract registerWorkerMessageListener<
1030 Message extends Data | Response
1031 >(
1032 workerNodeKey: number,
1033 listener: (message: MessageValue<Message>) => void
1034 ): void
1035
1036 /**
1037 * Method hooked up after a worker node has been newly created.
1038 * Can be overridden.
1039 *
1040 * @param workerNodeKey - The newly created worker node key.
1041 */
1042 protected afterWorkerNodeSetup (workerNodeKey: number): void {
1043 // Listen to worker messages.
1044 this.registerWorkerMessageListener(workerNodeKey, this.workerListener())
1045 // Send the startup message to worker.
1046 this.sendStartupMessageToWorker(workerNodeKey)
1047 // Send the statistics message to worker.
1048 this.sendStatisticsMessageToWorker(workerNodeKey)
1049 }
1050
1051 /**
1052 * Sends the startup message to worker given its worker node key.
1053 *
1054 * @param workerNodeKey - The worker node key.
1055 */
1056 protected abstract sendStartupMessageToWorker (workerNodeKey: number): void
1057
1058 /**
1059 * Sends the statistics message to worker given its worker node key.
1060 *
1061 * @param workerNodeKey - The worker node key.
1062 */
1063 private sendStatisticsMessageToWorker (workerNodeKey: number): void {
1064 this.sendToWorker(workerNodeKey, {
1065 statistics: {
1066 runTime:
1067 this.workerChoiceStrategyContext.getTaskStatisticsRequirements()
1068 .runTime.aggregate,
1069 elu: this.workerChoiceStrategyContext.getTaskStatisticsRequirements()
1070 .elu.aggregate
1071 },
1072 workerId: this.getWorkerInfo(workerNodeKey).id as number
1073 })
1074 }
1075
1076 private redistributeQueuedTasks (workerNodeKey: number): void {
1077 while (this.tasksQueueSize(workerNodeKey) > 0) {
1078 let targetWorkerNodeKey: number = workerNodeKey
1079 let minQueuedTasks = Infinity
1080 let executeTask = false
1081 for (const [workerNodeId, workerNode] of this.workerNodes.entries()) {
1082 const workerInfo = this.getWorkerInfo(workerNodeId)
1083 if (
1084 workerNodeId !== workerNodeKey &&
1085 workerInfo.ready &&
1086 workerNode.usage.tasks.queued === 0
1087 ) {
1088 if (
1089 this.workerNodes[workerNodeId].usage.tasks.executing <
1090 (this.opts.tasksQueueOptions?.concurrency as number)
1091 ) {
1092 executeTask = true
1093 }
1094 targetWorkerNodeKey = workerNodeId
1095 break
1096 }
1097 if (
1098 workerNodeId !== workerNodeKey &&
1099 workerInfo.ready &&
1100 workerNode.usage.tasks.queued < minQueuedTasks
1101 ) {
1102 minQueuedTasks = workerNode.usage.tasks.queued
1103 targetWorkerNodeKey = workerNodeId
1104 }
1105 }
1106 if (executeTask) {
1107 this.executeTask(
1108 targetWorkerNodeKey,
1109 this.dequeueTask(workerNodeKey) as Task<Data>
1110 )
1111 } else {
1112 this.enqueueTask(
1113 targetWorkerNodeKey,
1114 this.dequeueTask(workerNodeKey) as Task<Data>
1115 )
1116 }
1117 }
1118 }
1119
1120 /**
1121 * This method is the listener registered for each worker message.
1122 *
1123 * @returns The listener function to execute when a message is received from a worker.
1124 */
1125 protected workerListener (): (message: MessageValue<Response>) => void {
1126 return (message) => {
1127 this.checkMessageWorkerId(message)
1128 if (message.ready != null) {
1129 // Worker ready response received from worker
1130 this.handleWorkerReadyResponse(message)
1131 } else if (message.taskId != null) {
1132 // Task execution response received from worker
1133 this.handleTaskExecutionResponse(message)
1134 } else if (message.taskFunctions != null) {
1135 // Task functions message received from worker
1136 this.getWorkerInfo(
1137 this.getWorkerNodeKeyByWorkerId(message.workerId)
1138 ).taskFunctions = message.taskFunctions
1139 }
1140 }
1141 }
1142
1143 private handleWorkerReadyResponse (message: MessageValue<Response>): void {
1144 if (message.ready === false) {
1145 throw new Error(`Worker ${message.workerId} failed to initialize`)
1146 }
1147 this.getWorkerInfo(
1148 this.getWorkerNodeKeyByWorkerId(message.workerId)
1149 ).ready = message.ready as boolean
1150 if (this.emitter != null && this.ready) {
1151 this.emitter.emit(PoolEvents.ready, this.info)
1152 }
1153 }
1154
1155 private handleTaskExecutionResponse (message: MessageValue<Response>): void {
1156 const promiseResponse = this.promiseResponseMap.get(
1157 message.taskId as string
1158 )
1159 if (promiseResponse != null) {
1160 if (message.taskError != null) {
1161 this.emitter?.emit(PoolEvents.taskError, message.taskError)
1162 promiseResponse.reject(message.taskError.message)
1163 } else {
1164 promiseResponse.resolve(message.data as Response)
1165 }
1166 const workerNodeKey = promiseResponse.workerNodeKey
1167 this.afterTaskExecutionHook(workerNodeKey, message)
1168 this.promiseResponseMap.delete(message.taskId as string)
1169 if (
1170 this.opts.enableTasksQueue === true &&
1171 this.tasksQueueSize(workerNodeKey) > 0 &&
1172 this.workerNodes[workerNodeKey].usage.tasks.executing <
1173 (this.opts.tasksQueueOptions?.concurrency as number)
1174 ) {
1175 this.executeTask(
1176 workerNodeKey,
1177 this.dequeueTask(workerNodeKey) as Task<Data>
1178 )
1179 }
1180 this.workerChoiceStrategyContext.update(workerNodeKey)
1181 }
1182 }
1183
1184 private checkAndEmitEvents (): void {
1185 if (this.emitter != null) {
1186 if (this.busy) {
1187 this.emitter.emit(PoolEvents.busy, this.info)
1188 }
1189 if (this.type === PoolTypes.dynamic && this.full) {
1190 this.emitter.emit(PoolEvents.full, this.info)
1191 }
1192 }
1193 }
1194
1195 /**
1196 * Gets the worker information given its worker node key.
1197 *
1198 * @param workerNodeKey - The worker node key.
1199 * @returns The worker information.
1200 */
1201 protected getWorkerInfo (workerNodeKey: number): WorkerInfo {
1202 return this.workerNodes[workerNodeKey].info
1203 }
1204
1205 /**
1206 * Adds the given worker in the pool worker nodes.
1207 *
1208 * @param worker - The worker.
1209 * @returns The added worker node key.
1210 * @throws {@link https://nodejs.org/api/errors.html#class-error} If the added worker node is not found.
1211 */
1212 private addWorkerNode (worker: Worker): number {
1213 const workerNode = new WorkerNode<Worker, Data>(worker, this.worker)
1214 // Flag the worker node as ready at pool startup.
1215 if (this.starting) {
1216 workerNode.info.ready = true
1217 }
1218 this.workerNodes.push(workerNode)
1219 const workerNodeKey = this.getWorkerNodeKeyByWorker(worker)
1220 if (workerNodeKey === -1) {
1221 throw new Error('Worker node not found')
1222 }
1223 return workerNodeKey
1224 }
1225
1226 /**
1227 * Removes the given worker from the pool worker nodes.
1228 *
1229 * @param worker - The worker.
1230 */
1231 private removeWorkerNode (worker: Worker): void {
1232 const workerNodeKey = this.getWorkerNodeKeyByWorker(worker)
1233 if (workerNodeKey !== -1) {
1234 this.workerNodes.splice(workerNodeKey, 1)
1235 this.workerChoiceStrategyContext.remove(workerNodeKey)
1236 }
1237 }
1238
1239 /**
1240 * Executes the given task on the worker given its worker node key.
1241 *
1242 * @param workerNodeKey - The worker node key.
1243 * @param task - The task to execute.
1244 */
1245 private executeTask (workerNodeKey: number, task: Task<Data>): void {
1246 this.beforeTaskExecutionHook(workerNodeKey, task)
1247 this.sendToWorker(workerNodeKey, task, task.transferList)
1248 }
1249
1250 private enqueueTask (workerNodeKey: number, task: Task<Data>): number {
1251 return this.workerNodes[workerNodeKey].enqueueTask(task)
1252 }
1253
1254 private dequeueTask (workerNodeKey: number): Task<Data> | undefined {
1255 return this.workerNodes[workerNodeKey].dequeueTask()
1256 }
1257
1258 private tasksQueueSize (workerNodeKey: number): number {
1259 return this.workerNodes[workerNodeKey].tasksQueueSize()
1260 }
1261
1262 protected flushTasksQueue (workerNodeKey: number): void {
1263 while (this.tasksQueueSize(workerNodeKey) > 0) {
1264 this.executeTask(
1265 workerNodeKey,
1266 this.dequeueTask(workerNodeKey) as Task<Data>
1267 )
1268 }
1269 this.workerNodes[workerNodeKey].clearTasksQueue()
1270 }
1271
1272 private flushTasksQueues (): void {
1273 for (const [workerNodeKey] of this.workerNodes.entries()) {
1274 this.flushTasksQueue(workerNodeKey)
1275 }
1276 }
1277 }