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MaisonMaison Skill Infrastructure cloud sentry-architecture-variants

Modèles d'architecture Sentry pour différents types d'applications. À utiliser lors de la configuration de Sentry pour des architectures monolithiques, à microservices, sans serveur ou hybrides.Déclenchez la recherche avec des expressions telles que « configuration Sentry pour monolithes », « Sentry pour microservices », « Sentry pour applications sans serveur » ou « modèle d'architecture Sentry ».

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Heure mise à jour 29 juin 2026

À propos sentry-architecture-variants

La compétence «sentry-architecture-variants » est conçue pour rationaliser l’installation et la configuration de Sentry sur diverses architectures d’applications. Elle simplifie le processus de mise en œuvre de Sentry pour différents types de systèmes, notamment les architectures monolithiques, à microservices, sans serveur et hybrides. Cette compétence automatise la mise en place de fonctionnalités clés telles que la structure de projet, le traçage, l’isolation des locataires et les contrôles d’accès des équipes, garantissant ainsi que la configuration de Sentry réponde aux besoins spécifiques de l’architecture. En automatisant ces tâches, la compétence réduit l’effort manuel requis et accélère le déploiement de Sentry dans des environnements complexes.

Les principales fonctionnalités de cette compétence incluent la création de configurations Sentry adaptées à chaque architecture, notamment la mise en place du traçage distribué pour les microservices, les applications sans serveur et les systèmes hybrides. La compétence prend également en charge l’intégration de la surveillance des fonctions en périphérie, la propagation du contexte de traçage des files d’attente de messages et les contrôles d’accès par équipe. Elle garantit que la structure du projet correspond à la topologie de l’application et permet une gestion aisée des accès et du traçage entre les différents composants. Cette approche globale garantit que Sentry est configuré pour surveiller et gérer efficacement le signalement des erreurs et la surveillance des performances.

La compétence «sentry-architecture-variants » est idéale pour les équipes chargées de la mise en place et de la maintenance de Sentry dans des applications utilisant diverses architectures. Elle s’adresse aux professionnels du DevOps, aux administrateurs système et aux ingénieurs travaillant sur des applications monolithiques, des microservices ou des systèmes hybrides basés sur le cloud. Cette compétence permet de rationaliser la mise en place de Sentry et garantit que les outils de surveillance sont correctement configurés pour répondre aux besoins spécifiques de chaque type d’application, qu’il s’agisse de configurations centralisées ou de systèmes distribués complexes comportant plusieurs services et locataires.

FAQ

Comment déclencher cette compétence ?

Vous pouvez déclencher cette compétence à l’aide d’expressions telles que « sentry monolith setup », « sentry microservices », « sentry serverless » ou « sentry architecture pattern ».

Cette compétence est-elle compatible avec tous les types d’applications ?

Oui, cette compétence est conçue pour fonctionner avec des architectures monolithiques, à microservices, sans serveur et hybrides.

Quelles sont les conditions préalables à l'utilisation de cette compétence ?

Avant d’utiliser cette compétence, assurez-vous que l’architecture de votre application est documentée, que vous disposez d’un inventaire des services, que la responsabilité au sein de l’équipe est clairement définie et que le modèle de déploiement est bien compris.

Cette compétence prend-elle en charge les applications multi-locataires ?

Oui, cette compétence permet d’ajouter des balises d’isolation des locataires pour les applications multi-locataires.

Quels outils sont nécessaires pour utiliser cette compétence ?

Cette compétence nécessite les outils suivants : Read, Write, Edit et Grep.

Voir sur GitHub

Sentry Architecture Variants

Overview

Choose the right Sentry SDK, project layout, and tracing strategy for eachapplication architecture. Every pattern below uses Sentry SDK v8 APIs —@sentry/node, @sentry/browser, @sentry/react, @sentry/react-native,@sentry/aws-serverless, and @sentry/google-cloud-serverless. The goal isone coherent trace from the user's device through every backend hop, regardlessof how many runtimes or deployment targets sit in between.

Deep-dive references for each pattern:Monolith |Microservices |Serverless |Event-driven |Frontend SPA |Mobile |Hybrid |Errors

Prerequisites

  • Node.js 18+ (or target platform runtime)
  • Sentry organization with at least one project created at sentry.io
  • SENTRY_DSN available as an environment variable (one per Sentry project)
  • Application architecture documented — service inventory, deployment targets, team ownership mapped
  • For distributed tracing: all inter-service transports identified (HTTP, gRPC, Kafka, SQS)

Instructions

Step 1 — Identify Your Architecture and Select SDK Packages

Map every runtime in your system to the correct Sentry SDK package and project layout.

ArchitectureSDK PackageSentry ProjectsKey Integration
Monolith@sentry/node1 project, env tagsModule tags + ownership rules
Microservices@sentry/node (per service)1 project per serviceDistributed tracing via headers
Serverless (Lambda)@sentry/aws-serverless1 per function groupSentry.wrapHandler() + auto-flush
Serverless (GCP)@sentry/google-cloud-serverless1 per function groupSentry.wrapCloudEventFunction()
Event-driven (Kafka/SQS)@sentry/node1 per consumer groupcontinueTrace() from message headers
Frontend SPA@sentry/browser or @sentry/react1 frontend projectbrowserTracingIntegration()
Mobile (React Native)@sentry/react-native1 mobile projectNative crash reporting + JS errors
HybridMix of above1 per deployment targetCross-platform trace correlation

Install the SDK for your architecture:

# Monolith / Microservices / Event-drivennpm install @sentry/node @sentry/profiling-node# Serverless — AWS Lambdanpm install @sentry/aws-serverless# Serverless — Google Cloud Functionsnpm install @sentry/google-cloud-serverless# Frontend SPA (React)npm install @sentry/react# Mobile — React Nativenpx @sentry/wizard@latest -i reactNative

Step 2 — Initialize Sentry for Each Architecture Pattern

Monolith — Single Project, Module Tags

One DSN, one project. Separate concerns with module tags and team ownership rules.

// instrument.mjs — load via: node --import ./instrument.mjs app.jsimport * as Sentry from '@sentry/node';Sentry.init({  dsn: process.env.SENTRY_DSN,  environment: process.env.NODE_ENV,  release: process.env.APP_VERSION,  tracesSampleRate: 0.1,  initialScope: { tags: { app: 'monolith' } },});// Tag errors by module so each team sees only their issuesfunction captureModuleError(module: string, error: Error) {  Sentry.withScope((scope) => {    scope.setTag('module', module);    scope.setTag('team', getTeamForModule(module));    Sentry.captureException(error);  });}// Module-based breadcrumbs for traceabilitySentry.addBreadcrumb({ category: 'auth', message: 'Login attempt', level: 'info' });captureModuleError('auth', new Error('Token expired'));// Dashboard ownership: tags.module:auth → #platform-team

Microservices — Project-per-Service, Distributed Tracing

Each service gets its own Sentry project. A shared config package keeps init consistent.

// packages/sentry-config/index.ts — shared across all servicesimport * as Sentry from '@sentry/node';export function initServiceSentry(serviceName: string) {  Sentry.init({    dsn: process.env.SENTRY_DSN,    environment: process.env.NODE_ENV,    release: `${serviceName}@${process.env.APP_VERSION}`,    serverName: serviceName,    tracesSampleRate: 0.1,    sendDefaultPii: false,    initialScope: {      tags: {        service: serviceName,        cluster: process.env.K8S_CLUSTER || 'default',        namespace: process.env.K8S_NAMESPACE || 'default',      },    },  });}// Usage: initServiceSentry('api-gateway');

HTTP tracing works automatically — SDK v8 propagates sentry-trace and baggage headers on all outbound HTTP requests. For service mesh (Istio/Linkerd), headers pass through transparently. For non-HTTP transports (gRPC, message queues), see event-driven pattern below and microservices deep-dive.

Serverless — Lambda and Cloud Functions

Serverless SDKs wrap your handler to auto-capture errors and flush events before the runtime freezes.

// AWS Lambda — handler.tsimport * as Sentry from '@sentry/aws-serverless';Sentry.init({  dsn: process.env.SENTRY_DSN,  environment: process.env.STAGE,  tracesSampleRate: 0.1,});export const handler = Sentry.wrapHandler(async (event, context) => {  Sentry.setTag('function', context.functionName);  Sentry.setTag('region', process.env.AWS_REGION);  // Track cold starts  const isColdStart = !global.__sentryWarm;  global.__sentryWarm = true;  Sentry.setTag('cold_start', String(isColdStart));  const result = await processRequest(event);  return { statusCode: 200, body: JSON.stringify(result) };});// wrapHandler auto-calls flush() — do NOT call it yourself (double-flush causes timeout)
// Google Cloud Functions — index.tsimport * as Sentry from '@sentry/google-cloud-serverless';Sentry.init({ dsn: process.env.SENTRY_DSN, tracesSampleRate: 0.1 });export const httpHandler = Sentry.wrapHttpFunction(async (req, res) => {  res.json(await processRequest(req.body));});export const eventHandler = Sentry.wrapCloudEventFunction(async (event) => {  await processEvent(event.data);});

Event-Driven — Kafka, SQS, and Message Queues

Propagate trace context through message headers so consumer spans connect to producer traces.

import * as Sentry from '@sentry/node';// Producer: embed trace context in message headersasync function publishToKafka(topic: string, payload: object) {  const activeSpan = Sentry.getActiveSpan();  const headers: Record<string, string> = {};  if (activeSpan) {    headers['sentry-trace'] = Sentry.spanToTraceHeader(activeSpan);    headers['baggage'] = Sentry.spanToBaggageHeader(activeSpan) || '';  }  await Sentry.startSpan(    { name: `kafka.produce.${topic}`, op: 'queue.publish' },    () => kafka.send({ topic, messages: [{ value: JSON.stringify(payload), headers }] })  );}// Consumer: continue the producer's traceasync function consumeFromKafka(message: KafkaMessage) {  const headers = message.headers || {};  Sentry.continueTrace(    {      sentryTrace: headers['sentry-trace']?.toString(), // Buffer → string      baggage: headers['baggage']?.toString(),    },    () => {      Sentry.startSpan(        { name: `kafka.consume.${message.topic}`, op: 'queue.process' },        async (span) => {          try {            await processMessage(message);            span.setStatus({ code: 1 });          } catch (error) {            span.setStatus({ code: 2, message: 'consumer_error' });            Sentry.captureException(error);            throw error;          }        }      );    }  );}

For SQS consumers on Lambda, see event-driven deep-dive.

Frontend SPA — Browser and React

import * as Sentry from '@sentry/react';Sentry.init({  dsn: process.env.REACT_APP_SENTRY_DSN,  release: process.env.REACT_APP_VERSION,  tracesSampleRate: 0.1,  replaysOnErrorSampleRate: 1.0,  integrations: [    Sentry.browserTracingIntegration(),    Sentry.replayIntegration({ maskAllText: true, blockAllMedia: true }),  ],  // Must match your API domain or frontend-to-backend traces break  tracePropagationTargets: ['localhost', /^https:\/\/api\.yourapp\.com/],});

Route-based transactions, error boundaries, and session replay configuration: see frontend SPA deep-dive.

Mobile — React Native

import * as Sentry from '@sentry/react-native';Sentry.init({  dsn: process.env.SENTRY_DSN,  tracesSampleRate: 0.2,  integrations: [    Sentry.reactNativeTracingIntegration({      routingInstrumentation: Sentry.reactNavigationIntegration(),    }),  ],  tracePropagationTargets: [/^https:\/\/api\.yourapp\.com/],  enableNativeCrashHandling: true,  attachScreenshot: true,  attachViewHierarchy: true,});export default Sentry.wrap(App);// Upload source maps + dSYMs in CI — see mobile deep-dive

Full navigation instrumentation and CI upload commands: see mobile deep-dive.

Step 3 — Wire Up Hybrid and Cross-Platform Tracing

For systems that span multiple architectures, connect traces end-to-end. The trace flow for a typical hybrid system:

  1. @sentry/react creates a transaction on user click
  2. Browser SDK adds sentry-trace + baggage headers to fetch()
  3. API gateway (@sentry/node) auto-continues the trace
  4. API gateway calls payment-service — headers propagate via HTTP
  5. payment-service publishes to Kafka — headers injected manually (see event-driven pattern)
  6. Worker (@sentry/node) continues trace from Kafka headers

Result: single trace ID visible across all services in Sentry Trace View. Backend-to-frontend correlation requires tracePropagationTargets in the browser SDK matching your API domains. Without this, the browser SDK will not attach trace headers and traces break at the browser-to-server boundary. See hybrid deep-dive.

Architecture decision matrix:

ArchitectureProjectsTracing StrategySDK FlushKey Gotcha
Monolith1Single-service spansAutomaticModule tag cardinality — keep under 50
Microservices1 per serviceDistributed via HTTP headersAutomaticMissing baggage breaks sampling
Serverless1 per function groupPer-invocation, auto-flushwrapHandler()Double-flush causes timeout
Event-driven1 per consumer groupcontinueTrace() from headersManual periodicDLQ needs separate error capture
Frontend SPA1browserTracingIntegration()Automatic (beacon)tracePropagationTargets required
Mobile1reactNativeTracingIntegration()AutomaticSource maps + dSYMs required
HybridMix of aboveEnd-to-end header propagationPer-componentOne missing link breaks whole trace

Output

After applying the appropriate pattern, you will have:

  • Architecture-specific Sentry.init() configuration with correct SDK package
  • Distributed tracing connected across all services (HTTP, gRPC, and message queues)
  • Serverless handlers wrapped with automatic error capture and event flushing
  • Event-driven consumers that continue producer traces via message headers
  • Frontend SPA with route-based transactions, session replay, and backend trace correlation
  • Mobile app with native crash reporting, screenshot capture, and navigation tracing
  • Hybrid systems with end-to-end trace visibility from browser/mobile through every backend hop

Error Handling

ErrorCauseSolution
Distributed traces brokenMissing header propagationVerify sentry-trace AND baggage headers in every inter-service call
Lambda events lost after timeoutCalling flush() inside wrapHandlerRemove manual flush()wrapHandler auto-flushes
Kafka consumer traces disconnectedHeaders not serialized as stringsCall .toString() on Kafka message headers before continueTrace()
SPA traces stop at API boundarytracePropagationTargets missingAdd API domain regex to browser SDK init
React Native traces unreadableMissing source maps / dSYMsRun sentry-cli sourcemaps upload and sentry-cli upload-dif in CI
Multi-tenant data leakagesetTag() at global scopeUse withScope() per request — global tags persist across requests
Worker events silently droppedNo periodic flushAdd setInterval(() => Sentry.flush(2000), 30_000)
High cardinality alertDynamic values in span namesUse parameterized names: kafka.consume.orders not kafka.consume.order-12345

See also: Full error reference

Examples

Example 1 — Monolith with 5 teams:Request: "Set up Sentry for a monolith with auth, billing, inventory, shipping, and analytics modules."Result: Single Sentry project with module and team tags. Each team filters issues via tags.module:billing. Ownership rules route alerts to the correct Slack channel.

Example 2 — Microservices with Kafka:Request: "Configure Sentry for 12 microservices communicating via REST and Kafka."Result: 12 Sentry projects with shared initServiceSentry(). HTTP traces auto-propagate. Kafka producers inject sentry-trace/baggage into headers. Consumers call continueTrace(). Trace view: api-gateway -> order-service -> [kafka] -> fulfillment-worker.

Example 3 — Serverless API on Lambda:Request: "Add Sentry to 8 AWS Lambda functions behind API Gateway."Result: One Sentry project. Each handler wrapped with Sentry.wrapHandler(). Cold starts tagged. No manual flush() calls.

Example 4 — React SPA + Node API:Request: "Full-stack Sentry for a React frontend calling a Node.js Express API."Result: Two projects (frontend + backend). React uses @sentry/react with browserTracingIntegration() and replayIntegration(). tracePropagationTargets connects frontend to backend traces.

See also: Full examples

Resources

  • Node.js SDK Guide
  • AWS Lambda Guide
  • Google Cloud Functions Guide
  • React SDK Guide
  • React Native SDK Guide
  • Distributed Tracing
  • Session Replay
  • Performance Monitoring

Next Steps

  • Run the sentry-performance-tuning skill to optimize tracesSampleRate and tracesSampler for production traffic volumes
  • Use sentry-cost-tuning to set rate limits and event budgets per project
  • Configure sentry-deploy-integration to tie releases to deploys for regression detection
  • Set up sentry-multi-env-setup to manage DSN routing across staging/production
  • Apply sentry-reliability-patterns for retry logic and circuit breakers around Sentry calls

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