Files
clide/test/cli/clide_cli_e2e_test.dart
jpmschweitzerandClaude Opus 4.8 679b5ba9d9 feat(cli): clide instances / instance verbs for instance discovery (T-247)
Closes the observability half of T-247: a way to find and identify running
clides. `clide instances` scans the runtime socket dir, probes each live
*.sock, and prints its identity (version/pid/workspace/socketPath) as jsonl;
dead sockets are skipped. `clide instance` reports the one you're connected
to. Combined with CLIDE_SOCK honoring (this same ticket), you can now list
instances and pin the CLI to a chosen one.

Server: a new `instance` dispatcher command (registered in buildDispatcher
with the live workspace/pid/socket) returns the identity map; added to the
argv translator's umbrella set so a bare `instance` token routes to it.
Client: a POSIX dir-scan in clide.c (Windows stub until it ships).

Tests: e2e `instances` lists the live test server with its identity; a
cc-free unit test covers the `instance` command shape.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-06-27 15:51:13 +02:00

233 lines
10 KiB
Dart

/// End-to-end test for the C `clide` shell client (T-126).
///
/// Compiles native/clide-cli/clide.c via the host `cc` (skip if not
/// available), starts an IpcServer with a controlled workspace root,
/// and exercises the client as a child process. Verifies the
/// cross-language FNV-1a hash agreement: if the C binary and the
/// Dart server compute the same socket path for the same workspace,
/// the round-trip works; if not, the connect fails.
library;
import 'dart:convert';
import 'dart:io';
import 'package:clide/kernel/src/events/bus.dart';
import 'package:clide/kernel/src/events/types.dart';
import 'package:clide/kernel/src/log.dart';
import 'package:clide/src/cli/argv_dispatch.dart';
import 'package:clide/src/daemon/dispatcher.dart';
import 'package:clide/src/daemon/instance_command.dart';
import 'package:clide/src/ipc/envelope.dart';
import 'package:clide/src/ipc/server.dart';
import 'package:test/test.dart';
void main() {
// Build the binary once for the whole suite.
late final String binaryPath;
late final bool hasCC;
late final Directory workspaceRoot;
late final IpcServer server;
late final DaemonDispatcher dispatcher;
late final DaemonBus streamingBus;
setUpAll(() async {
final repoRoot = Directory.current.path;
final ccProbe = await Process.run('sh', ['-c', 'command -v cc']);
hasCC = ccProbe.exitCode == 0;
if (!hasCC) return;
final src = '$repoRoot/native/clide-cli/clide.c';
final out = '${Directory.systemTemp.createTempSync('clide-cli-test-').path}/clide';
final build = await Process.run('cc', ['-std=c99', '-O2', '-Wall', src, '-o', out]);
expect(build.exitCode, 0, reason: 'cc failed: ${build.stderr}');
binaryPath = out;
// Synthetic git workspace — the C client walks up looking for
// `.git`, hashes whatever it lands on, and connects to the
// matching socket. Match it by handing the same root to the
// server. Canonicalise: the client resolves its CWD via the OS
// (getcwd), so on macOS it hashes /private/tmp/… while a raw
// createTemp path is /tmp/… — the two hashes must agree.
workspaceRoot = Directory(Directory.systemTemp.createTempSync('clide-ws-').resolveSymbolicLinksSync());
Directory('${workspaceRoot.path}/.git').createSync();
dispatcher = DaemonDispatcher();
registerArgvUnwrap(dispatcher);
streamingBus = DaemonBus();
server = IpcServer(
dispatcher: dispatcher,
workspaceRoot: workspaceRoot.path,
log: Logger(minLevel: LogLevel.error, sinks: const []),
events: streamingBus,
);
await server.start();
// The `instance` command isn't a dispatcher builtin (main.dart registers it
// with the live workspace/pid); register it here so `clide instances` has
// identity to read back (T-247).
registerInstanceCommand(dispatcher, version: '9.9.9-test', pid: 4242, workspace: workspaceRoot.path, socketPath: server.socketPath);
});
tearDownAll(() async {
if (!hasCC) return;
try {
await server.stop();
} catch (_) {}
await streamingBus.dispose();
if (workspaceRoot.existsSync()) {
workspaceRoot.deleteSync(recursive: true);
}
});
// Clear any inherited CLIDE_SOCK so these tests exercise workspace discovery
// hermetically — the suite may run *inside* a clide instance, which exports
// CLIDE_SOCK to child processes (T-247). Empty string reads as unset to the
// client, which then falls back to per-workspace discovery.
Future<ProcessResult> runCli(List<String> argv) {
return Process.run(binaryPath, argv, workingDirectory: workspaceRoot.path, environment: const {'CLIDE_SOCK': ''});
}
group('clide-cli (T-126)', () {
test('no args → EX_USAGE (64) with a usage banner on stderr', () async {
if (!hasCC) {
markTestSkipped('cc not available');
return;
}
final r = await runCli(const []);
expect(r.exitCode, 64);
expect(r.stderr.toString(), contains('usage'));
});
test('outside a git repo → EX_USAGE', () async {
if (!hasCC) {
markTestSkipped('cc not available');
return;
}
final outside = Directory.systemTemp.createTempSync('clide-no-git-');
addTearDown(() => outside.deleteSync(recursive: true));
final r = await Process.run(binaryPath, ['status'], workingDirectory: outside.path, environment: const {'CLIDE_SOCK': ''});
expect(r.exitCode, 64);
expect(r.stderr.toString(), contains('git repository'));
});
test('ping returns ok JSON on stdout, exit 0', () async {
if (!hasCC) {
markTestSkipped('cc not available');
return;
}
final r = await runCli(['ping']);
expect(r.exitCode, 0, reason: 'stderr: ${r.stderr}');
final data = jsonDecode(r.stdout.toString().trim()) as Map<String, Object?>;
expect(data['pong'], isTrue);
});
test('subsystem.verb routing through the dispatcher', () async {
if (!hasCC) {
markTestSkipped('cc not available');
return;
}
// Stub handler that echoes the request's args back so we can
// verify the wire shape end-to-end.
dispatcher.register('probe.echo', (req) async => IpcResponse.ok(id: req.id, data: req.args));
final r = await runCli(['probe', 'echo', 'first', '--flag=val', '--bool', '--', 'pass1']);
expect(r.exitCode, 0, reason: 'stderr: ${r.stderr}');
final data = jsonDecode(r.stdout.toString().trim()) as Map<String, Object?>;
expect(data['positional'], ['first']);
expect((data['flags'] as Map)['flag'], 'val');
expect((data['flags'] as Map)['bool'], isTrue);
expect(data['passthrough'], ['pass1']);
});
test('unknown verb → notFound exit code', () async {
if (!hasCC) {
markTestSkipped('cc not available');
return;
}
final r = await runCli(['nosuchsub', 'nosuchverb']);
expect(r.exitCode, isNot(0));
expect(r.stderr.toString(), isNotEmpty);
});
test('tail --events streams bus events to stdout (T-129)', () async {
if (!hasCC) {
markTestSkipped('cc not available');
return;
}
final proc = await Process.start(
binaryPath,
['tail', '--events', '--filter', 'pane'],
workingDirectory: workspaceRoot.path,
environment: const {'CLIDE_SOCK': ''},
);
addTearDown(() => proc.kill());
final lines = <String>[];
final sub = proc.stdout.transform(utf8.decoder).transform(const LineSplitter()).listen(lines.add);
addTearDown(sub.cancel);
// Wait for the ack so the server has registered us.
var attempts = 0;
while (lines.isEmpty && attempts < 50) {
await Future<void>.delayed(const Duration(milliseconds: 20));
attempts++;
}
expect(lines, isNotEmpty, reason: 'no ack received');
// Emit two events.
streamingBus.emit(DaemonEvent(subsystem: 'pane', kind: 'spawned', data: const {'id': 'p1'}, ts: DateTime.now().toUtc()));
streamingBus.emit(DaemonEvent(subsystem: 'pane', kind: 'closed', data: const {'id': 'p1'}, ts: DateTime.now().toUtc()));
attempts = 0;
while (lines.length < 3 && attempts < 100) {
await Future<void>.delayed(const Duration(milliseconds: 20));
attempts++;
}
expect(lines.length, greaterThanOrEqualTo(3), reason: 'expected ack + 2 events, got: $lines');
final concatenated = lines.skip(1).join('\n');
expect(concatenated, contains('"kind":"spawned"'));
expect(concatenated, contains('"kind":"closed"'));
});
test('CLIDE_SOCK pins to that instance, beating workspace discovery (T-247)', () async {
if (!hasCC) {
markTestSkipped('cc not available');
return;
}
// From a NON-git dir (where discovery would fail), an explicit CLIDE_SOCK
// still connects — it's the explicit target.
final outside = Directory.systemTemp.createTempSync('clide-sock-');
addTearDown(() => outside.deleteSync(recursive: true));
final r = await Process.run(binaryPath, ['ping'], workingDirectory: outside.path, environment: {'CLIDE_SOCK': server.socketPath});
expect(r.exitCode, 0, reason: 'stderr: ${r.stderr}');
expect((jsonDecode(r.stdout.toString().trim()) as Map)['pong'], isTrue);
});
test('a dead CLIDE_SOCK fails loudly, never falling back to discovery (T-247)', () async {
if (!hasCC) {
markTestSkipped('cc not available');
return;
}
// Run from the REAL workspace — discovery WOULD succeed — to prove the
// bogus explicit target aborts instead of silently hitting another instance.
final bogus = '${workspaceRoot.path}/DOES_NOT_EXIST.sock';
final r = await Process.run(binaryPath, ['ping'], workingDirectory: workspaceRoot.path, environment: {'CLIDE_SOCK': bogus});
expect(r.exitCode, isNot(0));
expect(r.stderr.toString(), contains('cannot connect'));
expect(r.stdout.toString().trim(), isEmpty, reason: 'must not return data from a different instance');
});
test('instances lists live instances with their identity (T-247)', () async {
if (!hasCC) {
markTestSkipped('cc not available');
return;
}
final r = await Process.run(binaryPath, ['instances'], workingDirectory: workspaceRoot.path, environment: const {'CLIDE_SOCK': ''});
expect(r.exitCode, 0, reason: 'stderr: ${r.stderr}');
// This test server is one live instance; its socket path must appear.
// Other live clides on the machine may also be listed — assert ours is
// present and carries the full identity payload, not an exact count.
final lines = const LineSplitter().convert(r.stdout.toString());
final mine = lines.where((l) => l.contains(server.socketPath)).toList();
expect(mine, hasLength(1), reason: 'expected exactly one line for our socket, got: $lines');
final obj = jsonDecode(mine.single) as Map<String, Object?>;
expect(obj['workspace'], workspaceRoot.path);
expect(obj['version'], '9.9.9-test');
expect(obj['pid'], 4242);
expect(obj['socketPath'], server.socketPath);
});
});
}