Demonstrated on CLI 2.1.173: resuming a live session interleaves both
TUIs into one transcript (no lock, no warning) — liveness detection via
registry pid+procStart is mandatory; --fork-session is safe on live
sessions; --resume must run in the session's original cwd ("No
conversation found" otherwise); registry files are cleaned on graceful
exit AND SIGTERM, may be GC'd later after SIGKILL — never reason on
file presence. ANSI-stripped TUI text loses spaces (cursor-positioned
painting) — confirms @xterm/headless for screen parsing.
Flood: 21 MB through node-pty with 10s pause => 0 bytes leaked, no
loss, 4.7 ms echo after flood.
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
156 lines
5.9 KiB
JavaScript
156 lines
5.9 KiB
JavaScript
#!/usr/bin/env node
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// Spike S1 — resume/fork/vivacité. Scénarios :
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// 1. session A vivante → claude --resume <id> en B : comportement (interleave ?)
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// 2. --fork-session sur session vivante : nouveau fichier, original intact
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// 3. kill -9 : fichier registre stale détectable (pid/procStart), resume sûr ensuite
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// 4. resume depuis un autre cwd : cwd effectif
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// 5. sortie gracieuse : nettoyage du fichier registre ?
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import { execSync } from 'node:child_process';
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import { mkdirSync, writeFileSync, existsSync, rmSync } from 'node:fs';
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import { join } from 'node:path';
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import {
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ClaudeSession, registrySnapshot, jsonlInfo, listJsonl, sleep, setLogFile, log, munge,
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} from './harness.mjs';
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const CAPTURES = new URL('./captures/', import.meta.url).pathname;
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mkdirSync(CAPTURES, { recursive: true });
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setLogFile(join(CAPTURES, 'steps.jsonl'));
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const REPO = '/tmp/spike-s1-repo';
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const OTHER = '/tmp/spike-s1-other';
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for (const d of [REPO, OTHER]) {
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rmSync(d, { recursive: true, force: true });
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mkdirSync(d, { recursive: true });
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execSync(`git init -q -b main && echo hello > witness.txt && git add -A && git -c user.email=s@s -c user.name=spike commit -qm init`, { cwd: d, shell: '/bin/bash' });
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}
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const results = {};
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const save = () => writeFileSync(join(CAPTURES, 'results.json'), JSON.stringify(results, null, 1));
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try {
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// ---------- Scénario 1 : resume d'une session VIVANTE ----------
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log('=== S1.1 spawn session A ===');
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const A = new ClaudeSession([], REPO, 'A', CAPTURES);
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const regA = await A.waitReady();
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const sid = regA.sessionId;
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log('A: sessionId', { sid, pid: A.pid });
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await A.type('Reply with exactly: PONG-ALPHA');
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await A.waitTurnDone();
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results.s1_initial = { sid, jsonl: jsonlInfo(REPO, sid) };
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save();
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log('=== S1.1 spawn B = claude --resume <sid> pendant que A est vivante ===');
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const B = new ClaudeSession(['--resume', sid], REPO, 'B', CAPTURES);
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let regB = null;
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try { regB = await B.waitReady(30000); } catch { /* peut refuser/ne pas s'inscrire */ }
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await sleep(3000);
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results.s1_resumeLive = {
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bStarted: !!regB,
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bSessionId: regB?.sessionId ?? null,
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bSameId: regB?.sessionId === sid,
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bExit: B.exited,
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bScreenTail: B.tail(900),
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registryAfterB: registrySnapshot().filter((r) => [A.pid, B.pid].includes(r.pid)),
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};
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save();
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if (regB && !B.exited) {
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await B.type('Reply with exactly: PONG-BRAVO');
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await B.waitTurnDone();
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await A.type('Reply with exactly: PONG-CHARLIE');
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await A.waitTurnDone();
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await sleep(2000);
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const fileSid = jsonlInfo(REPO, sid);
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const fileB = regB.sessionId !== sid ? jsonlInfo(REPO, regB.sessionId) : null;
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results.s1_interleave = {
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originalFile: fileSid,
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bFile: fileB,
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interleaved: fileSid.userTexts.some((t) => t.includes('PONG-BRAVO')) && fileSid.userTexts.some((t) => t.includes('PONG-CHARLIE')),
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aScreenTail: A.tail(600),
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};
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save();
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}
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// ---------- Scénario 2 : fork d'une session vivante ----------
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log('=== S1.2 fork-session pendant que A est vivante ===');
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if (regB && !B.exited) { B.kill('SIGTERM'); await sleep(1500); }
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const beforeFork = jsonlInfo(REPO, sid);
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const C = new ClaudeSession(['--resume', sid, '--fork-session'], REPO, 'C', CAPTURES);
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const regC = await C.waitReady();
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await C.type('Reply with exactly: PONG-DELTA');
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await C.waitTurnDone();
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await sleep(2000);
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const afterFork = jsonlInfo(REPO, sid);
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results.s2_fork = {
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cSessionId: regC.sessionId,
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forked: regC.sessionId !== sid,
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cFile: jsonlInfo(REPO, regC.sessionId),
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originalUserTexts: afterFork.userTexts,
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originalGotDelta: afterFork.userTexts.some((t) => t.includes('PONG-DELTA')),
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allJsonl: listJsonl(REPO),
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};
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save();
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// ---------- Scénario 3 : kill -9 → registre stale → resume sûr ----------
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log('=== S1.3 kill -9 de C, détection stale, resume après mort ===');
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const cPid = C.pid, cSid = regC.sessionId;
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C.kill('SIGKILL');
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await sleep(2500);
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const staleSnap = registrySnapshot().filter((r) => r.pid === cPid);
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results.s3_kill9 = { registryFileRemains: staleSnap.length > 0, entry: staleSnap[0] ?? null };
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const D = new ClaudeSession(['--resume', cSid], REPO, 'D', CAPTURES);
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const regD = await D.waitReady();
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await D.type('Reply with exactly: PONG-ECHO');
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await D.waitTurnDone();
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results.s3_resumeAfterDeath = {
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dSessionId: regD.sessionId, sameAsC: regD.sessionId === cSid,
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dFile: jsonlInfo(REPO, regD.sessionId),
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};
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save();
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// ---------- Scénario 5 : sortie gracieuse — nettoyage du registre ? ----------
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log('=== S1.5 sortie gracieuse de D (/exit) ===');
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await D.type('/exit');
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await sleep(4000);
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if (!D.exited) { D.write('\r'); await sleep(4000); }
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results.s5_gracefulExit = {
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exited: D.exited,
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registryCleaned: registrySnapshot().filter((r) => r.pid === D.pid).length === 0,
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};
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save();
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// ---------- Scénario 4 : resume depuis un AUTRE cwd ----------
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log('=== S1.4 resume de la session de A depuis un autre cwd ===');
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A.kill('SIGTERM');
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await sleep(2000);
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const E = new ClaudeSession(['--resume', sid], OTHER, 'E', CAPTURES);
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let regE = null;
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try { regE = await E.waitReady(30000); } catch {}
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if (regE) {
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await E.type('Without using any tool, what is the current working directory given in your environment context? Reply with the path only.');
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await E.waitTurnDone();
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await sleep(1500);
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}
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results.s4_otherCwd = {
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started: !!regE,
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eSessionId: regE?.sessionId ?? null,
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registryCwd: regE?.cwd ?? null,
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eScreenTail: E.tail(900),
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jsonlInRepoDir: listJsonl(REPO),
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jsonlInOtherDir: listJsonl(OTHER),
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};
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E.kill('SIGTERM');
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save();
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log('=== S1 terminé ===');
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} catch (err) {
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results.fatalError = String(err);
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save();
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log('ERREUR FATALE', { err: String(err) });
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} finally {
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// Nettoyage : tuer tout claude restant lancé par ce script (pas ceux de l'utilisateur !)
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await sleep(1000);
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save();
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process.exit(0);
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}
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