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klz-cables.com/.pnpm-store/v10/files/b2/85bc9b36f0e911199f22104880f15fba5c5e230caf84469baba1849de1aa822b0efaca8173aace35c55823c5391baf9a0bbf8981b2c771b723e3a27164b6df
Marc Mintel 5397309103
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fix(products): fix breadcrumbs and product filtering (backport from main)
2026-02-24 16:04:21 +01:00

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Object.defineProperty(exports, Symbol.toStringTag, { value: 'Module' });
const diagnosticsChannel = require('node:diagnostics_channel');
const api = require('@opentelemetry/api');
const core$1 = require('@opentelemetry/core');
const instrumentation = require('@opentelemetry/instrumentation');
const core = require('@sentry/core');
const debugBuild = require('../../debug-build.js');
const getRequestUrl = require('../../utils/getRequestUrl.js');
const constants = require('./constants.js');
const outgoingHttpRequest = require('../../utils/outgoingHttpRequest.js');
/**
* This custom HTTP instrumentation is used to isolate incoming requests and annotate them with additional information.
* It does not emit any spans.
*
* The reason this is isolated from the OpenTelemetry instrumentation is that users may overwrite this,
* which would lead to Sentry not working as expected.
*
* Important note: Contrary to other OTEL instrumentation, this one cannot be unwrapped.
* It only does minimal things though and does not emit any spans.
*
* This is heavily inspired & adapted from:
* https://github.com/open-telemetry/opentelemetry-js/blob/f8ab5592ddea5cba0a3b33bf8d74f27872c0367f/experimental/packages/opentelemetry-instrumentation-http/src/http.ts
*/
class SentryHttpInstrumentation extends instrumentation.InstrumentationBase {
constructor(config = {}) {
super(constants.INSTRUMENTATION_NAME, core.SDK_VERSION, config);
this._propagationDecisionMap = new core.LRUMap(100);
this._ignoreOutgoingRequestsMap = new WeakMap();
}
/** @inheritdoc */
init() {
// We register handlers when either http or https is instrumented
// but we only want to register them once, whichever is loaded first
let hasRegisteredHandlers = false;
const onHttpClientResponseFinish = ((_data) => {
const data = _data ;
this._onOutgoingRequestFinish(data.request, data.response);
}) ;
const onHttpClientRequestError = ((_data) => {
const data = _data ;
this._onOutgoingRequestFinish(data.request, undefined);
}) ;
const onHttpClientRequestCreated = ((_data) => {
const data = _data ;
this._onOutgoingRequestCreated(data.request);
}) ;
const wrap = (moduleExports) => {
if (hasRegisteredHandlers) {
return moduleExports;
}
hasRegisteredHandlers = true;
diagnosticsChannel.subscribe('http.client.response.finish', onHttpClientResponseFinish);
// When an error happens, we still want to have a breadcrumb
// In this case, `http.client.response.finish` is not triggered
diagnosticsChannel.subscribe('http.client.request.error', onHttpClientRequestError);
// NOTE: This channel only exist since Node 22
// Before that, outgoing requests are not patched
// and trace headers are not propagated, sadly.
if (this.getConfig().propagateTraceInOutgoingRequests) {
diagnosticsChannel.subscribe('http.client.request.created', onHttpClientRequestCreated);
}
return moduleExports;
};
const unwrap = () => {
diagnosticsChannel.unsubscribe('http.client.response.finish', onHttpClientResponseFinish);
diagnosticsChannel.unsubscribe('http.client.request.error', onHttpClientRequestError);
diagnosticsChannel.unsubscribe('http.client.request.created', onHttpClientRequestCreated);
};
/**
* You may be wondering why we register these diagnostics-channel listeners
* in such a convoluted way (as InstrumentationNodeModuleDefinition...)˝,
* instead of simply subscribing to the events once in here.
* The reason for this is timing semantics: These functions are called once the http or https module is loaded.
* If we'd subscribe before that, there seem to be conflicts with the OTEL native instrumentation in some scenarios,
* especially the "import-on-top" pattern of setting up ESM applications.
*/
return [
new instrumentation.InstrumentationNodeModuleDefinition('http', ['*'], wrap, unwrap),
new instrumentation.InstrumentationNodeModuleDefinition('https', ['*'], wrap, unwrap),
];
}
/**
* This is triggered when an outgoing request finishes.
* It has access to the final request and response objects.
*/
_onOutgoingRequestFinish(request, response) {
debugBuild.DEBUG_BUILD && core.debug.log(constants.INSTRUMENTATION_NAME, 'Handling finished outgoing request');
const _breadcrumbs = this.getConfig().breadcrumbs;
const breadCrumbsEnabled = typeof _breadcrumbs === 'undefined' ? true : _breadcrumbs;
// Note: We cannot rely on the map being set by `_onOutgoingRequestCreated`, because that is not run in Node <22
const shouldIgnore = this._ignoreOutgoingRequestsMap.get(request) ?? this._shouldIgnoreOutgoingRequest(request);
this._ignoreOutgoingRequestsMap.set(request, shouldIgnore);
if (breadCrumbsEnabled && !shouldIgnore) {
outgoingHttpRequest.addRequestBreadcrumb(request, response);
}
}
/**
* This is triggered when an outgoing request is created.
* It has access to the request object, and can mutate it before the request is sent.
*/
_onOutgoingRequestCreated(request) {
const shouldIgnore = this._ignoreOutgoingRequestsMap.get(request) ?? this._shouldIgnoreOutgoingRequest(request);
this._ignoreOutgoingRequestsMap.set(request, shouldIgnore);
if (shouldIgnore) {
return;
}
outgoingHttpRequest.addTracePropagationHeadersToOutgoingRequest(request, this._propagationDecisionMap);
}
/**
* Check if the given outgoing request should be ignored.
*/
_shouldIgnoreOutgoingRequest(request) {
if (core$1.isTracingSuppressed(api.context.active())) {
return true;
}
const ignoreOutgoingRequests = this.getConfig().ignoreOutgoingRequests;
if (!ignoreOutgoingRequests) {
return false;
}
const options = outgoingHttpRequest.getRequestOptions(request);
const url = getRequestUrl.getRequestUrl(request);
return ignoreOutgoingRequests(url, options);
}
}
exports.SentryHttpInstrumentation = SentryHttpInstrumentation;
//# sourceMappingURL=SentryHttpInstrumentation.js.map