dart-build-cli-app

작성자: flutter

진입점 구조, 종료 코드, 크로스 플랫폼 스크립트. 명령줄 유틸리티, 스크립트 또는 애플리케이션을 빌드할 때 사용합니다.

npx skills add https://github.com/flutter/agent-plugins --skill dart-build-cli-app

Building Dart CLI Applications

Contents


1. Core Architecture & Process Lifecycle

Avoid Destructive Exits (exit(N))

Calling dart:io's exit(int code) invokes Platform::Exit(code) in the C++ runtime. It immediately terminates the OS process without unwinding the Dart stack:

  • Debugger Disconnect: When launched with --pause-isolates-on-exit, the VM Service pauses isolates before shutdown to allow IDE inspection. exit() terminates the OS process before the VM Service can pause or inspect state.
  • Coverage Loss: package:coverage queries execution lines over VM Service RPCs during the paused-on-exit state. exit() destroys the process before RPC extraction, yielding 0% coverage.
  • Buffer Truncation: stdout and stderr are buffered asynchronous IOSink streams. exit() drops unflushed bytes.
  • Resource Leaks: finally blocks (closing locks, deleting temp directories) are bypassed.

Rule: Avoid calling exit(code) directly during normal execution; set exitCode = code or return an integer exit code from CommandRunner<int> (from package:args) and allow the asynchronous main() function to return naturally. Do not call exit() on unhandled errors; throw an unhandled Error or exception so the runtime unwinds cleanly and exits with a non-zero status.

Standard POSIX exit codes (/usr/include/sysexits.h):

  • 0: Success (EX_OK / ExitCode.success.code)
  • 64: Command-line usage error (EX_USAGE / ExitCode.usage.code)
  • 65: Data format error (EX_DATAERR / ExitCode.data.code)
  • 70: Internal software crash (EX_SOFTWARE / ExitCode.software.code)
  • 78: Configuration error (EX_CONFIG / ExitCode.config.code)

Note: Prefer importing package:io/io.dart and using ExitCode constants (e.g., ExitCode.usage.code, ExitCode.software.code) rather than magic integer literals. For minimal standalone scripts without package dependencies, standard POSIX integer literals (0, 64, 70) may be used.

import 'dart:io';
import 'package:args/command_runner.dart';
import 'package:io/io.dart' show ExitCode; // Provides standard POSIX ExitCode constants

Future<void> main(List<String> args) async {
  final runner = CommandRunner<int>('tool', 'CLI tool description.');
  try {
    final status = await runner.run(args);
    exitCode = status ?? ExitCode.success.code;
  } on UsageException catch (e) {
    stderr
      ..writeln(e.message)
      ..writeln(e.usage);
    exitCode = ExitCode.usage.code;
  }
}

The Thin Entrypoint Pattern (bin/ vs. lib/src/)

Keep bin/*.dart files strictly as minimal entrypoint trampolines (instantiate runner, pass args, await exit code). Place all command definitions, argument parsers, formatters, and business logic inside lib/src/.

  • Rationale: Code in bin/ cannot be cleanly imported via package: URIs. Moving logic into lib/src/ allows the entire command runner, subcommand hierarchy, and business logic to be unit-tested in-memory in milliseconds (< 2ms) without spawning OS subprocesses.
// bin/my_cli.dart — Thin entrypoint trampoline
import 'dart:io';
import 'package:my_cli/src/cli.dart';

Future<void> main(List<String> args) async {
  exitCode = await runCli(args);
}

2. Output, Diagnostics & Formatting

  • Data vs. Diagnostics: Write intended program results and machine-readable data exclusively to stdout. Write warnings, error messages, and debug logs exclusively to stderr.
  • The Error Usage Rule: When an argument parsing or mandatory option error occurs (FormatException, UsageException, or ArgumentError thrown when accessing a missing mandatory: true option via results.option(...)), both the error message and the usage text must write to stderr, and exit code 64 (EX_USAGE / ExitCode.usage.code) must be returned. stdout should ONLY receive usage help when the user explicitly requests it via --help or -h.
  • No print() in Error Handlers: print() routes to stdout. Use stderr.writeln() for all failure notifications. For standard output, prefer stdout.writeln() over print() to comply with the avoid_print lint rule (unless analysis_options.yaml explicitly configures avoid_print: false).
  • Terminal Capability Detection & NO_COLOR: Verify stdout.hasTerminal, stdout.supportsAnsiEscapes, and !Platform.environment.containsKey('NO_COLOR') before emitting ANSI color or cursor escape codes:
    bool get useAnsi =>
        stdout.hasTerminal &&
        stdout.supportsAnsiEscapes &&
        !Platform.environment.containsKey('NO_COLOR');
    
  • Machine-Readable Modes: When --json or --machine flags are passed, format data as JSON to stdout and route logs to stderr.

3. Project Configuration & Packaging

Scaffolding & Pubspec Executable Mapping (executables:)

Scaffold new command-line projects using dart create -t console <package_name>, which initializes the standard bin/ and lib/ layout. Always declare executables in pubspec.yaml under executables: to map command names to scripts in bin/, enabling clean invocation via dart run <command> (without specifying bin/...dart) and configuring global binary symlinks for dart install:

name: my_cli
description: High-performance CLI tool.
version: 1.0.0

executables:
  my_cli: # Maps to bin/my_cli.dart
  secondary_cmd: helper # Maps to bin/helper.dart

Single-Source Versioning (package:build_version)

Avoid hardcoding --version strings in bin/*.dart or manually synchronizing constant files. Use package:build_version to generate lib/src/version.dart containing const packageVersion = 'x.y.z'; directly from pubspec.yaml during builds.

Caching Conventions

Store transient cache files in .dart_tool/<package_name>/. Never write persistent cache files directly to the project root.


4. Argument Parsing & Command Routing

Import package:args to manage command-line arguments:

  • Simple Scripts: Use ArgParser directly with addFlag() and addOption().
  • Multi-Command Tools: Implement CommandRunner<int> and extend Command<int> for each subcommand, returning POSIX exit codes directly.
  • Type-Safe Accessors: Use results.flag('name'), results.option('name'), and results.multiOption('name') (available in package:args 2.5+) instead of map indexing operator [] to eliminate manual type casts (as bool, as String?).
  • Complex Options Models: For applications with extensive flags, use package:build_cli to generate strongly-typed options classes. Leverage named default overrides (e.g. {String? hostDefaultOverride}) to cleanly merge configuration files with CLI flags.

5. Native Async & Modern Stack Traces

  • Avoid Chain.capture(): The Dart VM natively preserves asynchronous stack frames across await suspension points. Chain.capture wraps the event loop in custom Zones, incurring substantial allocation overhead and trapping errors across Zone boundaries.
  • Sanitize with Trace.from(st).terse: Use static utilities from package:stack_trace on uncaught errors without capturing zones:
import 'dart:io';
import 'package:io/io.dart' show ExitCode;
import 'package:stack_trace/stack_trace.dart';

Future<void> runMain(List<String> args) async {
  try {
    await executeLogic(args);
    exitCode = ExitCode.success.code;
  } catch (e, st) {
    stderr.writeln('Fatal error: $e');
    if (args.contains('-v') || args.contains('--verbose')) {
      stderr.writeln(Trace.from(st).terse);
    }
    exitCode = ExitCode.software.code;
  }
}

6. Subprocess Spawning & AOT Resilience

When spawning Dart SDK subprocesses or executing other Dart tools (e.g., dart format, dart test, build_runner):

  • Do not assume Platform.resolvedExecutable or Platform.executable points to the dart command-line executable: In standalone AOT-compiled binaries (dart install / dart compile exe), resolvedExecutable points to the compiled application binary itself, causing recursive self-invocation loops or flag rejection crashes.
  • Use package:cli_util: Resolve the Dart SDK executable using cli_util.dartExecutable or cli_util.sdkPath instead of writing custom PATH or directory scrapers.
  • See version requirements and detailed technical guide in references/aot_sdk_discovery.md.

7. Signal Handling & Terminal Teardown

If your CLI alters terminal modes, displays spinners, or opens listening sockets:

  • Windows Signal Guard: On Windows, ProcessSignal.sigterm.watch() throws UnsupportedError. Guard sigterm with if (!Platform.isWindows).
  • Echo & Line Mode Teardown: If setting stdin.echoMode = false or stdin.lineMode = false, check if (!stdin.hasTerminal) return; first, and install a SIGINT listener and finally block to restore them so user keystrokes remain visible after exit.
  • Cursor Visibility: If emitting ANSI hide-cursor (\x1B[?25l), always restore cursor visibility (\x1B[?25h) on exit or cancellation.
  • Socket Cleanup: Explicitly close listening HttpServer or ServerSocket instances (server.close(force: true)) on termination signals to immediately release OS ports.
  • See detailed patterns in references/signals_and_terminal.md.

8. Testing CLI Applications

Structure testing across two distinct layers:

  1. Unit Tests (In-Memory, < 5ms): Test command classes, option parsing, and business logic directly by importing package:<pkg>/src/... in test/.
  2. Integration Tests (Subprocesses): Use package:test_process and package:test_descriptor to verify end-to-end binary execution, process I/O streaming, and OS exit codes:
import 'package:test/test.dart';
import 'package:test_descriptor/test_descriptor.dart' as d;
import 'package:test_process/test_process.dart';

void main() {
  test('CLI processes input and exits cleanly', () async {
    await d.file('input.txt', 'hello').create();

    final process = await TestProcess.start('dart', [
      'run',
      'bin/my_cli.dart',
      '--input',
      d.path('input.txt'),
    ]);

    await expectLater(process.stdout, emitsThrough('Processing complete.'));
    await process.shouldExit(0);
  });
}

9. Modern Compilation & Distribution

Dart 3.12+ standardizes CLI distribution around dart run and dart install (moving away from dart pub global activate):

  • Ephemeral Execution (JIT): dart run <package>@<version> [args] downloads and runs the CLI on demand.
  • Global Installation (Native AOT): dart install <package> compiles the package entrypoint to a fast native standalone binary in ~/.dart/install/bin/.
  • Local Development: Use dart run <command> (resolves via executables: in pubspec.yaml) or dart run bin/cli.dart.
  • Bundling Dynamic Libraries & Code Assets: Use dart build cli. Outputs bundle to build/cli/_/bundle/.
  • Standalone Executable Compilation: Use dart compile exe bin/cli.dart -o <output_path>.

10. Workflows & Audit Checklist

Implementation Workflow

  • Declare entry points in pubspec.yaml under executables:.
  • Keep bin/*.dart as a thin entrypoint; place command logic in lib/src/.
  • Return integer exit codes or set exitCode = N; avoid raw exit(N).
  • Direct errors, warnings, and usage on parse failure to stderr.
  • Use results.flag(), results.option(), and results.multiOption() for type safety.
  • Validate useAnsi (checking stdout.hasTerminal, supportsAnsiEscapes, and NO_COLOR) before emitting ANSI codes.
  • Spawn child tools using cli_util.dartExecutable, never Platform.resolvedExecutable.
  • Unit-test command runners in-memory; test end-to-end binary execution with test_process.

References & Examples

flutter의 다른 스킬

dart-modern-features
flutter
현대화를 위한 후보를 찾으려면:
flutter-fix-layout-issues
flutter
Flutter 레이아웃 오류(오버플로우, 무제한 제약 조건)를 Dart 및 Flutter MCP 도구를 사용하여 수정합니다. "RenderFlex overflowed", "Vertical…" 문제를 해결할 때 사용하세요.
adding-release-notes
flutter
사용자 대상 변경 사항 설명을 DevTools 릴리스 노트에 추가합니다. NEXT_RELEASE_NOTES.md 파일에 개선 사항, 수정 사항 또는 새로운 기능을 문서화할 때 사용하세요.
reviewing-devtools-prs
flutter
DevTools 저장소 전용 PR 리뷰 워크플로로, DevTools 스타일 가이드라인과 일반적인 리뷰 패턴을 적용합니다. 풀 리퀘스트를 리뷰할 때 사용하세요…
dart-use-primary-constructors
flutter
사용자가 Dart에서 구문 및 의미적으로 올바른 primary constructor를 작성하고, 새로운 생성자 구문, 빈 본문 세미콜론 구문 등으로 마이그레이션/사용할 수 있도록 지원합니다.
code-documentation
flutter
효과적인 코드 문서 작성 가이드로, docstrings, JSDoc, dartdoc 및 구현 주석을 포함합니다. 새 코드를 작성하거나 추가할 때 이 스킬을 사용하세요…
api-review
flutter
지정된 코드를 표준 API 설계 지침에 맞춰 검토합니다. 사용자가 API 리뷰를 요청하거나 API 설계에 따라 코드를 확인할 때 이 스킬을 사용하세요…
flutter-accessibility
flutter
Flutter 앱에서 WCAG 2 및 EN 301 549 접근성 표준과 적응형 레이아웃을 구현합니다. 모바일, 웹, 데스크톱 플랫폼에서 시맨틱 주석, 탭 대상 크기(최소 48x48 dp), 텍스트 대비 비율(작은 텍스트 4.5:1, 큰 텍스트 3:1)을 적용합니다. 웹 시맨틱 초기화, 대화형 위젯 래핑, 화면 크기 기반 레이아웃 전환, 키보드/마우스 입력 처리를 위한 결정 로직을 제공합니다. FocusTraversalGroup을 통한 포커스 이동 관리를 포함합니다...