`bin/clide` gains the single-word shortcuts CLAUDE.md's tier 2 spells out: open, active, insert, replace-selection, save. Each maps the flat positional argv into the canonical editor.* IPC shape. Insert and replace-selection accept a lone `-` to read text from stdin so piping works (`pbpaste | clide replace-selection -`). `clide tail --events` is the subscribe mode. Same socket as the request side; the client just reads + filters events. --filter SUBSYSTEM or SUBSYSTEM:ID narrows the stream. Exits cleanly on SIGINT. defaultSocketPath() now respects CLIDE_SOCKET_PATH before XDG — the existing override callers always had this up their sleeve (via XDG_RUNTIME_DIR manipulation) but making it explicit unblocks parallel test runs where each test needs its own daemon socket. The new end-to-end CLI suite does exactly that: 5 tests spin up real daemon subprocesses and exercise the shortcut surface through the live IPC stack. 74 core tests pass; round-trip verified by hand (open README.md → insert → tail --events captures editor.opened / edited / selection-changed / saved). Co-Authored-By: Claude <noreply@anthropic.com>
167 lines
5.0 KiB
Dart
167 lines
5.0 KiB
Dart
/// End-to-end tests for the tier-2 CLI shortcuts.
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///
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/// Each test launches `bin/clide --daemon` as a subprocess, exercises
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/// a shortcut (`open`, `active`, `insert`, `save`, `tail`), and
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/// asserts the JSON response shape. Requires a built `bin/clide`
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/// binary — `ci/test_core.sh` runs `make build` first when needed,
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/// or here we build on demand.
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library;
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import 'dart:async';
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import 'dart:convert';
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import 'dart:io';
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import 'package:test/test.dart';
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const _socketEnv = 'CLIDE_SOCKET_PATH';
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void main() {
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late Directory sandbox;
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late Process daemon;
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late String socketPath;
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late String clideBin;
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setUpAll(() async {
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final candidate = File('bin/clide');
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if (!candidate.existsSync()) {
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final built = await Process.run('make', const ['build']);
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if (built.exitCode != 0) {
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throw StateError('make build failed: ${built.stderr}');
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}
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}
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clideBin = candidate.absolute.path;
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});
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setUp(() async {
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sandbox = await Directory.systemTemp.createTemp('clide-cli-t2-');
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await File('${sandbox.path}/doc.md').writeAsString('alpha beta');
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// Each test gets its own socket path so concurrent test runs don't
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// collide. Passed through the daemon via env.
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socketPath = '${sandbox.path}/daemon.sock';
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daemon = await Process.start(
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clideBin,
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const ['--daemon'],
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workingDirectory: sandbox.path,
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environment: {
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...Platform.environment,
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_socketEnv: socketPath,
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},
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);
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// Wait for the "listening" line on stderr so we know it's ready.
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final ready = Completer<void>();
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daemon.stderr
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.transform(utf8.decoder)
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.transform(const LineSplitter())
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.listen((line) {
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if (!ready.isCompleted && line.contains('listening')) {
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ready.complete();
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}
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});
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await ready.future.timeout(const Duration(seconds: 5));
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});
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tearDown(() async {
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daemon.kill(ProcessSignal.sigterm);
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await daemon.exitCode.timeout(const Duration(seconds: 3),
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onTimeout: () {
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daemon.kill(ProcessSignal.sigkill);
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return -1;
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});
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if (sandbox.existsSync()) sandbox.deleteSync(recursive: true);
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});
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Future<Map<String, Object?>> run(List<String> args) async {
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final r = await Process.run(
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clideBin,
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args,
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workingDirectory: sandbox.path,
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environment: {
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...Platform.environment,
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_socketEnv: socketPath,
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},
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);
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expect(r.exitCode, 0, reason: 'stderr: ${r.stderr}');
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return jsonDecode(r.stdout.toString().trim()) as Map<String, Object?>;
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}
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test('clide open <path> returns buffer metadata', () async {
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final r = await run(['open', 'doc.md']);
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expect(r['id'], startsWith('b_'));
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expect(r['path'], 'doc.md');
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});
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test('clide active reflects the most recent open', () async {
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await run(['open', 'doc.md']);
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final r = await run(['active']);
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final active = r['active']! as Map;
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expect(active['path'], 'doc.md');
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});
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test('clide insert + clide active round-trip', () async {
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await run(['open', 'doc.md']);
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await run(['insert', 'hello ']);
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final r = await run(['active']);
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final active = r['active']! as Map;
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expect(active['dirty'], isTrue);
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expect((active['length'] as num).toInt(), greaterThan('alpha beta'.length));
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});
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test('clide save clears dirty + writes to disk', () async {
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await run(['open', 'doc.md']);
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await run(['insert', 'X ']);
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await run(['save']);
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final active = (await run(['active']))['active']! as Map;
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expect(active['dirty'], isFalse);
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final disk = await File('${sandbox.path}/doc.md').readAsString();
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expect(disk.startsWith('X '), isTrue);
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});
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test('clide tail --events streams editor.* events', () async {
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// Start a tail subscriber.
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final tail = await Process.start(
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clideBin,
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const ['tail', '--events', '--filter', 'editor'],
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workingDirectory: sandbox.path,
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environment: {
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...Platform.environment,
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_socketEnv: socketPath,
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},
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);
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final received = <Map<String, Object?>>[];
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final sub = tail.stdout
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.transform(utf8.decoder)
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.transform(const LineSplitter())
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.listen((line) {
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if (line.isEmpty) return;
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received.add(jsonDecode(line) as Map<String, Object?>);
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});
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// Give the subscriber a beat to connect.
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await Future<void>.delayed(const Duration(milliseconds: 200));
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await run(['open', 'doc.md']);
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await run(['insert', 'T ']);
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// Wait up to 2s for events.
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for (var i = 0; i < 20 && received.length < 3; i++) {
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await Future<void>.delayed(const Duration(milliseconds: 100));
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}
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tail.kill(ProcessSignal.sigint);
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await tail.exitCode.timeout(const Duration(seconds: 2),
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onTimeout: () {
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tail.kill(ProcessSignal.sigkill);
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return -1;
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});
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await sub.cancel();
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final kinds = received.map((e) => e['kind']).toList();
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expect(kinds, containsAll(['editor.opened', 'editor.edited']));
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// Confirm filter actually filtered — no pane events made it in.
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for (final e in received) {
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expect(e['subsystem'], 'editor');
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}
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});
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}
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