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error-handling

Patterns for robust error handling across TypeScript, Python, and Go. Covers typed errors, error boundaries, retries, circuit breakers, and user-facing error messages. Use when designing error types, retries, circuit breakers, or user-facing failure messages in TypeScript, Python, or Go.

What is error-handling?

error-handling is a Claude Code agent skill that patterns for robust error handling across TypeScript, Python, and Go. Covers typed errors, error boundaries, retries, circuit breakers, and user-facing error messages. Use when designing error types, retries, circuit breakers, or user-facing failure messages in TypeScript, Python, or Go.

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Documentation

Error Handling Patterns

Consistent, robust error handling patterns for production applications.

When to Activate

  • Designing error types or exception hierarchies for a new module or service
  • Adding retry logic or circuit breakers for unreliable external dependencies
  • Reviewing API endpoints for missing error handling
  • Implementing user-facing error messages and feedback
  • Debugging cascading failures or silent error swallowing

Core Principles

  1. Fail fast and loudly — surface errors at the boundary where they occur; don't bury them
  2. Typed errors over string messages — errors are first-class values with structure
  3. User messages ≠ developer messages — show friendly text to users, log full context server-side
  4. Never swallow errors silently — every catch block must either handle, re-throw, or log
  5. Errors are part of your API contract — document every error code a client may receive

TypeScript / JavaScript

Typed Error Classes

// Define an error hierarchy for your domain
export class AppError extends Error {
  constructor(
    message: string,
    public readonly code: string,
    public readonly statusCode: number = 500,
    public readonly details?: unknown,
  ) {
    super(message)
    this.name = this.constructor.name
    // Maintain correct prototype chain in transpiled ES5 JavaScript.
    // Required for `instanceof` checks (e.g., `error instanceof NotFoundError`)
    // to work correctly when extending the built-in Error class.
    Object.setPrototypeOf(this, new.target.prototype)
  }
}

export class NotFoundError extends AppError {
  constructor(resource: string, id: string) {
    super(`${resource} not found: ${id}`, 'NOT_FOUND', 404)
  }
}

export class ValidationError extends AppError {
  constructor(message: string, details: { field: string; message: string }[]) {
    super(message, 'VALIDATION_ERROR', 422, details)
  }
}

export class UnauthorizedError extends AppError {
  constructor(reason = 'Authentication required') {
    super(reason, 'UNAUTHORIZED', 401)
  }
}

export class RateLimitError extends AppError {
  constructor(public readonly retryAfterMs: number) {
    super('Rate limit exceeded', 'RATE_LIMITED', 429)
  }
}

Result Pattern (no-throw style)

For operations where failure is expected and common (parsing, external calls):

type Result<T, E = AppError> =
  | { ok: true; value: T }
  | { ok: false; error: E }

function ok<T>(value: T): Result<T> {
  return { ok: true, value }
}

function err<E>(error: E): Result<never, E> {
  return { ok: false, error }
}

// Usage
async function fetchUser(id: string): Promise<Result<User>> {
  try {
    const user = await db.users.findUnique({ where: { id } })
    if (!user) return err(new NotFoundError('User', id))
    return ok(user)
  } catch (e) {
    return err(new AppError('Database error', 'DB_ERROR'))
  }
}

const result = await fetchUser('abc-123')
if (!result.ok) {
  // TypeScript knows result.error here
  logger.error('Failed to fetch user', { error: result.error })
  return
}
// TypeScript knows result.value here
console.log(result.value.email)

API Error Handler (Next.js / Express)

import { NextRequest, NextResponse } from 'next/server'

function handleApiError(error: unknown): NextResponse {
  // Known application error
  if (error instanceof AppError) {
    return NextResponse.json(
      {
        error: {
          code: error.code,
          message: error.message,
          ...(error.details ? { details: error.details } : {}),
        },
      },
      { status: error.statusCode },
    )
  }

  // Zod validation error
  if (error instanceof z.ZodError) {
    return NextResponse.json(
      {
        error: {
          code: 'VALIDATION_ERROR',
          message: 'Request validation failed',
          details: error.issues.map(i => ({
            field: i.path.join('.'),
            message: i.message,
          })),
        },
      },
      { status: 422 },
    )
  }

  // Unexpected error — log details, return generic message
  console.error('Unexpected error:', error)
  return NextResponse.json(
    { error: { code: 'INTERNAL_ERROR', message: 'An unexpected error occurred' } },
    { status: 500 },
  )
}

export async function POST(req: NextRequest) {
  try {
    // ... handler logic
  } catch (error) {
    return handleApiError(error)
  }
}

React Error Boundary

import { Component, ErrorInfo, ReactNode } from 'react'

interface Props {
  fallback: ReactNode
  onError?: (error: Error, info: ErrorInfo) => void
  children: ReactNode
}

interface State {
  hasError: boolean
  error: Error | null
}

export class ErrorBoundary extends Component<Props, State> {
  state: State = { hasError: false, error: null }

  static getDerivedStateFromError(error: Error): State {
    return { hasError: true, error }
  }

  componentDidCatch(error: Error, info: ErrorInfo) {
    this.props.onError?.(error, info)
    console.error('Unhandled React error:', error, info)
  }

  render() {
    if (this.state.hasError) return this.props.fallback
    return this.props.children
  }
}

// Usage
<ErrorBoundary fallback={<p>Something went wrong. Please refresh.</p>}>
  <MyComponent />
</ErrorBoundary>

Python

Custom Exception Hierarchy

class AppError(Exception):
    """Base application error."""
    def __init__(self, message: str, code: str, status_code: int = 500):
        super().__init__(message)
        self.code = code
        self.status_code = status_code

class NotFoundError(AppError):
    def __init__(self, resource: str, id: str):
        super().__init__(f"{resource} not found: {id}", "NOT_FOUND", 404)

class ValidationError(AppError):
    def __init__(self, message: str, details: list[dict] | None = None):
        super().__init__(message, "VALIDATION_ERROR", 422)
        self.details = details or []

FastAPI Global Exception Handler

from fastapi import FastAPI, Request
from fastapi.responses import JSONResponse

app = FastAPI()

@app.exception_handler(AppError)
async def app_error_handler(request: Request, exc: AppError) -> JSONResponse:
    return JSONResponse(
        status_code=exc.status_code,
        content={"error": {"code": exc.code, "message": str(exc)}},
    )

@app.exception_handler(Exception)
async def generic_error_handler(request: Request, exc: Exception) -> JSONResponse:
    # Log full details, return generic message
    logger.exception("Unexpected error", exc_info=exc)
    return JSONResponse(
        status_code=500,
        content={"error": {"code": "INTERNAL_ERROR", "message": "An unexpected error occurred"}},
    )

Go

Sentinel Errors and Error Wrapping

package domain

import "errors"

// Sentinel errors for type-checking
var (
    ErrNotFound    = errors.New("not found")
    ErrUnauthorized = errors.New("unauthorized")
    ErrConflict     = errors.New("conflict")
)

// Wrap errors with context — never lose the original
func (r *UserRepository) FindByID(ctx context.Context, id string) (*User, error) {
    user, err := r.db.QueryRow(ctx, "SELECT * FROM users WHERE id = $1", id)
    if errors.Is(err, sql.ErrNoRows) {
        return nil, fmt.Errorf("user %s: %w", id, ErrNotFound)
    }
    if err != nil {
        return nil, fmt.Errorf("querying user %s: %w", id, err)
    }
    return user, nil
}

// At the handler level, unwrap to determine response
func (h *Handler) GetUser(w http.ResponseWriter, r *http.Request) {
    user, err := h.service.GetUser(r.Context(), chi.URLParam(r, "id"))
    if err != nil {
        switch {
        case errors.Is(err, domain.ErrNotFound):
            writeError(w, http.StatusNotFound, "not_found", err.Error())
        case errors.Is(err, domain.ErrUnauthorized):
            writeError(w, http.StatusForbidden, "forbidden", "Access denied")
        default:
            slog.Error("unexpected error", "err", err)
            writeError(w, http.StatusInternalServerError, "internal_error", "An unexpected error occurred")
        }
        return
    }
    writeJSON(w, http.StatusOK, user)
}

Retry with Exponential Backoff

interface RetryOptions {
  maxAttempts?: number
  baseDelayMs?: number
  maxDelayMs?: number
  retryIf?: (error: unknown) => boolean
}

async function withRetry<T>(
  fn: () => Promise<T>,
  options: RetryOptions = {},
): Promise<T> {
  const {
    maxAttempts = 3,
    baseDelayMs = 500,
    maxDelayMs = 10_000,
    retryIf = () => true,
  } = options

  let lastError: unknown

  for (let attempt = 1; attempt <= maxAttempts; attempt++) {
    try {
      return await fn()
    } catch (error) {
      lastError = error
      if (attempt === maxAttempts || !retryIf(error)) throw error

      const jitter = Math.random() * baseDelayMs
      const delay = Math.min(baseDelayMs * 2 ** (attempt - 1) + jitter, maxDelayMs)
      await new Promise(resolve => setTimeout(resolve, delay))
    }
  }

  throw lastError
}

// Usage: retry transient network errors, not 4xx
const data = await withRetry(() => fetch('/api/data').then(r => r.json()), {
  maxAttempts: 3,
  retryIf: (error) => !(error instanceof AppError && error.statusCode < 500),
})

User-Facing Error Messages

Map error codes to human-readable messages. Keep technical details out of user-visible text.

const USER_ERROR_MESSAGES: Record<string, string> = {
  NOT_FOUND: 'The requested item could not be found.',
  UNAUTHORIZED: 'Please sign in to continue.',
  FORBIDDEN: "You don't have permission to do that.",
  VALIDATION_ERROR: 'Please check your input and try again.',
  RATE_LIMITED: 'Too many requests. Please wait a moment and try again.',
  INTERNAL_ERROR: 'Something went wrong on our end. Please try again later.',
}

export function getUserMessage(code: string): string {
  return USER_ERROR_MESSAGES[code] ?? USER_ERROR_MESSAGES.INTERNAL_ERROR
}

Error Handling Checklist

Before merging any code that touches error handling:

  • Every catch block handles, re-throws, or logs — no silent swallowing
  • API errors follow the standard envelope { error: { code, message } }
  • User-facing messages contain no stack traces or internal details
  • Full error context is logged server-side
  • Custom error classes extend a base AppError with a code field
  • Async functions surface errors to callers — no fire-and-forget without fallback
  • Retry logic only retries retriable errors (not 4xx client errors)
  • React components are wrapped in ErrorBoundary for rendering errors

Individual skills in this repo

This repo contains 20 individual skills — each has its own dedicated page.

accessibility

Design, implement, and audit inclusive digital products using WCAG 2.2 Level AA. Use when building or auditing UI that must meet WCAG 2.2 Level AA, or when reviewing a change for keyboard, contrast, or screen-reader support.

affaan-m/claude-api

Anthropic Claude API patterns for Python and TypeScript. Covers Messages API, streaming, tool use, vision, extended thinking, batches, prompt caching, and Claude Agent SDK. Use when building applications with the Claude API or Anthropic SDKs.

affaan-m/everything-claude-code

End-to-end marketing campaign planning and execution. Covers audience research, positioning, campaign angle definition, landing page copy, email sequences, social posts, ad copy, short-form video scripts, and content calendars. Use as the orchestration layer for multi-channel product launches. Use when planning or executing a multi-channel product launch, or producing landing page, email, social, or ad copy.

affaan-m/everything-claude-code

Development conventions and patterns for everything-claude-code. JavaScript project with conventional commits.

affaan-m/everything-claude-code-conventions

Development conventions and patterns for everything-claude-code. JavaScript project with conventional commits.

affaan-m/frontend-design

Create distinctive, production-grade frontend interfaces with high design quality. Use when the user asks to build web components, pages, or applications and the visual direction matters as much as the code quality.

affaan-m/gget

gget CLI and Python workflow for quick genomic database queries, sequence lookup, BLAST-style searches, enrichment checks, and reproducible bioinformatics evidence logs.

affaan-m/literature-review

Systematic literature-review workflow for academic, biomedical, technical, and scientific topics, including search planning, source screening, synthesis, citation checks, and evidence logging.

affaan-m/motion-ui

Production-ready UI motion system for React/Next.js. Use when implementing animations, transitions, or motion patterns.

affaan-m/project-guidelines-example

Example project-specific skill template based on a real production application.

affaan-m/pubmed-database

Direct PubMed and NCBI E-utilities search workflows for biomedical literature, MeSH queries, PMID lookup, citation retrieval, and API-backed literature monitoring.

affaan-m/scholar-evaluation

Structured scholarly-work evaluation for papers, proposals, literature reviews, methods sections, evidence quality, citation support, and research-writing feedback.

affaan-m/uspto-database

USPTO patent and trademark data workflow for official record lookup, PatentSearch queries, TSDR checks, assignment data, and reproducible IP research logs.

agent-architecture-audit

Full-stack diagnostic for agent and LLM applications. Audits the 12-layer agent stack for wrapper regression, memory pollution, tool discipline failures, hidden repair loops, and rendering corruption. Produces severity-ranked findings with code-first fixes. Essential for developers building agent applications, autonomous loops, or any LLM-powered feature. Use when an agent or LLM feature misbehaves and the failing layer is unknown, or before shipping an agent stack.

agent-eval

Head-to-head comparison of coding agents (Claude Code, Aider, Codex, etc.) on custom tasks with pass rate, cost, time, and consistency metrics. Use when choosing between coding agents, or when a change to an agent setup needs measured pass rate, cost, and time rather than an impression.

agent-harness-construction

Design and optimize AI agent action spaces, tool definitions, and observation formatting for higher completion rates. Use when defining or revising an agent

agentic-engineering

Operate as an agentic engineer using eval-first execution, decomposition, and cost-aware model routing. Use when planning or executing engineering work that agents will carry out end to end.

agentic-os

Build persistent multi-agent operating systems on Claude Code. Covers kernel architecture, specialist agents, slash commands, file-based memory, scheduled automation, and state management without external databases. Use when building a persistent multi-agent system on Claude Code with its own memory, commands, and scheduling.

agent-introspection-debugging

Structured self-debugging workflow for AI agent failures using capture, diagnosis, contained recovery, and introspection reports. Use when an agent run fails and you need a reproducible diagnosis instead of a retry.

agent-payment-x402

Add x402 payment execution to AI agents with per-task budgets, spending controls, and non-custodial wallets. Supports Base through agentwallet-sdk and X Layer through OKX Payments / OKX Agent Payments Protocol. Use when an agent must pay for something itself and needs per-task budgets, spending controls, and a non-custodial wallet.

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