UNPKG

@opentelemetry/sdk-metrics

Version:
200 lines 8.61 kB
/* * Copyright The OpenTelemetry Authors * SPDX-License-Identifier: Apache-2.0 */ import * as api from '@opentelemetry/api'; import { internal, ExportResultCode, globalErrorHandler, } from '@opentelemetry/core'; import { MetricReader } from './MetricReader'; import { callWithTimeout, TimeoutError } from '../utils'; import { InstrumentType } from './MetricData'; import { splitMetricData } from './MetricDataSplitter'; import { OTEL_COMPONENT_TYPE_VALUE_PERIODIC_METRIC_READER } from '../semconv'; /** * {@link MetricReader} which collects metrics based on a user-configurable time interval, and passes the metrics to * the configured {@link PushMetricExporter} */ export class PeriodicExportingMetricReader extends MetricReader { _interval; _exporter; _exportInterval; _exportTimeout; _maxExportBatchSize; _ongoingExportPromise = null; constructor(options) { const { exporter, exportIntervalMillis = 60000, metricProducers, cardinalityLimits, maxExportBatchSize, } = options; let { exportTimeoutMillis = 30000 } = options; super({ aggregationSelector: exporter.selectAggregation?.bind(exporter), aggregationTemporalitySelector: exporter.selectAggregationTemporality?.bind(exporter), otelComponentType: OTEL_COMPONENT_TYPE_VALUE_PERIODIC_METRIC_READER, metricProducers, cardinalitySelector: (instrumentType) => { const limits = { default: 2000, ...cardinalityLimits, }; switch (instrumentType) { case InstrumentType.COUNTER: return limits.counter ?? limits.default; case InstrumentType.GAUGE: return limits.gauge ?? limits.default; case InstrumentType.HISTOGRAM: return limits.histogram ?? limits.default; case InstrumentType.OBSERVABLE_COUNTER: return limits.observableCounter ?? limits.default; case InstrumentType.OBSERVABLE_UP_DOWN_COUNTER: return limits.observableUpDownCounter ?? limits.default; case InstrumentType.OBSERVABLE_GAUGE: return limits.observableGauge ?? limits.default; case InstrumentType.UP_DOWN_COUNTER: return limits.upDownCounter ?? limits.default; default: return limits.default; } }, }); if (exportIntervalMillis <= 0) { throw Error('exportIntervalMillis must be greater than 0'); } if (exportTimeoutMillis <= 0) { throw Error('exportTimeoutMillis must be greater than 0'); } if (maxExportBatchSize !== undefined && (!Number.isInteger(maxExportBatchSize) || maxExportBatchSize <= 0)) { throw Error('maxExportBatchSize must be a positive integer'); } if (exportIntervalMillis < exportTimeoutMillis) { if ('exportIntervalMillis' in options && 'exportTimeoutMillis' in options) { // An invalid combination of values was explicitly provided. throw Error('exportIntervalMillis must be greater than or equal to exportTimeoutMillis'); } else { // An invalid combination of value was implicitly provided. api.diag.info(`Timeout of ${exportTimeoutMillis} exceeds the interval of ${exportIntervalMillis}. Clamping timeout to interval duration.`); exportTimeoutMillis = exportIntervalMillis; } } this._exportInterval = exportIntervalMillis; this._exportTimeout = exportTimeoutMillis; this._exporter = exporter; this._maxExportBatchSize = maxExportBatchSize; } async _runOnce() { try { await this._doRun(); } catch (err) { globalErrorHandler(err); } } async _doRun() { if (this._ongoingExportPromise) { api.diag.debug('PeriodicExportingMetricReader: export already in progress, skipping'); return; } const currentRun = async () => { const { resourceMetrics, errors } = await this.collect({ timeoutMillis: this._exportTimeout, }); if (errors.length > 0) { api.diag.error('PeriodicExportingMetricReader: metrics collection errors', ...errors); } if (resourceMetrics.resource.asyncAttributesPending) { try { await resourceMetrics.resource.waitForAsyncAttributes?.(); } catch (e) { api.diag.debug('Error while resolving async portion of resource: ', e); globalErrorHandler(e); } } if (resourceMetrics.scopeMetrics.length === 0) { return; } const batches = this._maxExportBatchSize ? splitMetricData(resourceMetrics, this._maxExportBatchSize) : [resourceMetrics]; let anyErr = null; for (const batch of batches) { try { const result = await callWithTimeout(internal._export(this._exporter, batch), this._exportTimeout); if (result.code !== ExportResultCode.SUCCESS) { const err = new Error(`PeriodicExportingMetricReader: metrics export failed (error ${result.error})`); anyErr = err; } } catch (e) { if (e instanceof TimeoutError) { api.diag.error(`PeriodicExportingMetricReader: metrics export timed out after ${this._exportTimeout}ms`); break; } else { api.diag.error('PeriodicExportingMetricReader: metrics export threw error', e); anyErr = e instanceof Error ? e : new Error(String(e)); } } } if (anyErr) { throw anyErr; } }; this._ongoingExportPromise = currentRun(); try { await this._ongoingExportPromise; } finally { this._ongoingExportPromise = null; } } onInitialized() { // start running the interval as soon as this reader is initialized and keep handle for shutdown. this._interval = setInterval(() => { // this._runOnce never rejects. Using void operator to suppress @typescript-eslint/no-floating-promises. void this._runOnce(); }, this._exportInterval); // depending on runtime, this may be a 'number' or NodeJS.Timeout if (typeof this._interval !== 'number') { this._interval.unref(); } } async onForceFlush() { // Wait for any in-progress export to finish first so that we never run // collect + export concurrently with it. await this._awaitOngoingExport(); // forceFlush SHOULD collect and export the latest metrics. If a concurrent // caller already started a fresh export while we were waiting above, await // that one instead of starting yet another collect + export cycle; // otherwise run our own. if (this._ongoingExportPromise) { await this._awaitOngoingExport(); } else { await this._runOnce(); } await this._exporter.forceFlush(); } /** * Helper function to wait for an ongoing export to complete. * Errors are swallowed and handled by the original _runOnce(). */ async _awaitOngoingExport() { if (this._ongoingExportPromise) { api.diag.debug('PeriodicExportingMetricReader: export already in progress, awaiting ongoing export'); try { await this._ongoingExportPromise; } catch { // Error is handled by the _runOnce() that initiated the export. } } } async onShutdown() { if (this._interval) { clearInterval(this._interval); } await this.onForceFlush(); await this._exporter.shutdown(); } } //# sourceMappingURL=PeriodicExportingMetricReader.js.map