25d895d 🐛 fix(gitea_workflow): clean up temp repos after job steps 2bc3b11 🐛 fix(gitea_workflow): clean up temporary repo dirs in workflows 98c3f30 📝 docs(agent_rules): allow plan execution on current branch 16c7230 📝 docs(prompts): define custom verify layering 8efc4dd 🐛 fix(skills): quote commit-message description bc8498f 🐛 fix(ci): install tomli for gitea tests 55cda3b 🐛 fix(tests): report missing toml parser clearly c0729c7 🐛 fix(playbook): import Optional for cli compatibility 63e24bf 📦 deps(skills): sync thirdparty skills d2f9356 🐛 fix(ci): isolate gitea workflow repos 588b81d 🐛 fix(ci): inline gitea workflow bootstrap e0b1c3a ♻️ refactor(skills): standardize first-party skill contracts 2c5050d ♻️ refactor(skills): rename repo skills source dir f049dfb 📦 deps(skills): drop duplicate first-party superpowers skills 234b335 ✨ feat(workflow): add superpowers planning and execution state tracking c1702a6 📝 docs(markdown): format tracked markdown and drop stale templates 2325409 📝 docs(markdown): clarify optional markdownlint usage 214c44e 🔧 chore(markdown): add markdownlint baseline and lint fixes a22b324 📝 docs(templates): add execution and memory-bank prompt templates 223a797 📝 docs(templates): update README for Claude Code and current features 4ac8672 📝 docs: simplify README + platform-agnostic tools + auto-create local rules 2431c9d 📝 docs: add claude_md config and use cross-platform paths d64b248 📝 docs: fix README.md inaccuracies and add Claude Code info c8d6bf2 🐛 fix(playbook): use relative paths in CLAUDE.md when not at project root 6518f0f ✨ feat(playbook): auto-create CLAUDE.md with path discovery 6ec9a45 ✨ feat(skills): add skill_link symlink support + platform-agnostic prompt 9f8b6b5 📝 docs: update README and config example for Claude Code support 79cff6c 📝 docs(skills): add Claude Code platform support 452c6f5 ✨ feat(playbook): auto-inject AGENTS.md into CLAUDE.md e1dbf3c 🐛 fix(skills): remove dual-path from commit-message skill f3a7259 🔧 chore(ci): use prepare_repo.sh in both workflows da08212 🔧 chore(ci): extract prepare_repo.sh and clean up workflows 7ade85e 🗑️ remove(tsl): drop syntax_book/, data/ source and build script f94dba0 ♻️ refactor(skills): update playbook.py and tests for thirdparty/ layout b3df412 ♻️ refactor(skills): separate thirdparty skills into thirdparty/ subdirectory 64950e7 📦 deps(skills): sync thirdparty skills a2e3cb0 ✨ feat(playbook): add no_backup deploy controls 8609d59 🐛 fix(docs): repair reference catalog source links 956da11 🐛 fix(playbook): publish hidden ci test fixes 3f67754 📦 deps(skills): sync thirdparty skills 08ca87b 📦 deps(skills): add karpathy thirdparty sync 96b705b 📝 docs(tsl): rebuild canonical syntax and routing manual 3ed5052 📦 deps(skills): sync thirdparty skills 60108dd 📦 deps(skills): sync thirdparty skills da85d4e 🐛 fix(thirdparty): prune nested project snapshots a2a697e 📦 deps(skills): sync thirdparty skills 9df610a 🐛 fix(thirdparty): exclude duplicated superpowers skills 33dd5bb 🐛 fix(thirdparty): preserve optional manifest fields 91b0ea7 🐛 fix(thirdparty): preserve manifest during snapshot update 2e26f98 🔧 chore(thirdparty): generalize skills sync pipeline 5b9c1e3 📦 deps(skills): sync superpowers 2f2d34a 📝 docs(readme): normalize subtree command spacing 62db7db 🐛 fix(ci): serialize superpowers update and sync 3463223 🐛 fix(ci): use literal superpowers sync paths 48f6de8 📦 deps(skills): sync superpowers 4b23529 🔧 chore(ci): merge superpowers update and sync workflow a56d75b 📦 deps(skills): sync superpowers 84bcefa 🔧 chore(ci): use ci[bot] commit author name 00a07e5 📦 deps(skills): sync superpowers 7b84daf 🐛 fix(templates): enforce main loop progress tracking 51373d7 🔧 chore(ci): automate superpowers sync workflow eaaa39c 🐛 fix(ci): prevent stale superpowers sync from restoring skills block 79755c6 📦 deps(skills): sync superpowers 836d878 📦 deps(skills): sync superpowers 8216c9f 📦 deps(skills): sync superpowers 9439505 🐛 fix(playbook): address reported repo issues git-subtree-dir: docs/standards/playbook git-subtree-split: 25d895d8b3f56624ccfe99ad7289e9eb49e0f316
159 lines
4.9 KiB
TypeScript
159 lines
4.9 KiB
TypeScript
// Complete implementation of condition-based waiting utilities
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// From: Lace test infrastructure improvements (2025-10-03)
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// Context: Fixed 15 flaky tests by replacing arbitrary timeouts
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import type { ThreadManager } from '~/threads/thread-manager';
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import type { LaceEvent, LaceEventType } from '~/threads/types';
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/**
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* Wait for a specific event type to appear in thread
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*
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* @param threadManager - The thread manager to query
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* @param threadId - Thread to check for events
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* @param eventType - Type of event to wait for
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* @param timeoutMs - Maximum time to wait (default 5000ms)
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* @returns Promise resolving to the first matching event
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*
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* Example:
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* await waitForEvent(threadManager, agentThreadId, 'TOOL_RESULT');
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*/
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export function waitForEvent(
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threadManager: ThreadManager,
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threadId: string,
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eventType: LaceEventType,
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timeoutMs = 5000
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): Promise<LaceEvent> {
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return new Promise((resolve, reject) => {
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const startTime = Date.now();
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const check = () => {
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const events = threadManager.getEvents(threadId);
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const event = events.find((e) => e.type === eventType);
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if (event) {
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resolve(event);
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} else if (Date.now() - startTime > timeoutMs) {
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reject(new Error(`Timeout waiting for ${eventType} event after ${timeoutMs}ms`));
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} else {
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setTimeout(check, 10); // Poll every 10ms for efficiency
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}
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};
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check();
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});
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}
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/**
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* Wait for a specific number of events of a given type
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*
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* @param threadManager - The thread manager to query
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* @param threadId - Thread to check for events
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* @param eventType - Type of event to wait for
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* @param count - Number of events to wait for
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* @param timeoutMs - Maximum time to wait (default 5000ms)
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* @returns Promise resolving to all matching events once count is reached
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*
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* Example:
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* // Wait for 2 AGENT_MESSAGE events (initial response + continuation)
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* await waitForEventCount(threadManager, agentThreadId, 'AGENT_MESSAGE', 2);
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*/
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export function waitForEventCount(
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threadManager: ThreadManager,
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threadId: string,
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eventType: LaceEventType,
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count: number,
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timeoutMs = 5000
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): Promise<LaceEvent[]> {
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return new Promise((resolve, reject) => {
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const startTime = Date.now();
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const check = () => {
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const events = threadManager.getEvents(threadId);
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const matchingEvents = events.filter((e) => e.type === eventType);
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if (matchingEvents.length >= count) {
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resolve(matchingEvents);
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} else if (Date.now() - startTime > timeoutMs) {
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reject(
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new Error(
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`Timeout waiting for ${count} ${eventType} events after ${timeoutMs}ms (got ${matchingEvents.length})`
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)
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);
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} else {
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setTimeout(check, 10);
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}
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};
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check();
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});
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}
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/**
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* Wait for an event matching a custom predicate
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* Useful when you need to check event data, not just type
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*
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* @param threadManager - The thread manager to query
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* @param threadId - Thread to check for events
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* @param predicate - Function that returns true when event matches
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* @param description - Human-readable description for error messages
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* @param timeoutMs - Maximum time to wait (default 5000ms)
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* @returns Promise resolving to the first matching event
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*
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* Example:
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* // Wait for TOOL_RESULT with specific ID
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* await waitForEventMatch(
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* threadManager,
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* agentThreadId,
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* (e) => e.type === 'TOOL_RESULT' && e.data.id === 'call_123',
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* 'TOOL_RESULT with id=call_123'
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* );
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*/
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export function waitForEventMatch(
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threadManager: ThreadManager,
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threadId: string,
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predicate: (event: LaceEvent) => boolean,
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description: string,
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timeoutMs = 5000
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): Promise<LaceEvent> {
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return new Promise((resolve, reject) => {
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const startTime = Date.now();
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const check = () => {
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const events = threadManager.getEvents(threadId);
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const event = events.find(predicate);
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if (event) {
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resolve(event);
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} else if (Date.now() - startTime > timeoutMs) {
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reject(new Error(`Timeout waiting for ${description} after ${timeoutMs}ms`));
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} else {
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setTimeout(check, 10);
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}
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};
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check();
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});
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}
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// Usage example from actual debugging session:
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//
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// BEFORE (flaky):
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// ---------------
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// const messagePromise = agent.sendMessage('Execute tools');
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// await new Promise(r => setTimeout(r, 300)); // Hope tools start in 300ms
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// agent.abort();
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// await messagePromise;
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// await new Promise(r => setTimeout(r, 50)); // Hope results arrive in 50ms
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// expect(toolResults.length).toBe(2); // Fails randomly
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//
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// AFTER (reliable):
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// ----------------
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// const messagePromise = agent.sendMessage('Execute tools');
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// await waitForEventCount(threadManager, threadId, 'TOOL_CALL', 2); // Wait for tools to start
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// agent.abort();
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// await messagePromise;
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// await waitForEventCount(threadManager, threadId, 'TOOL_RESULT', 2); // Wait for results
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// expect(toolResults.length).toBe(2); // Always succeeds
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//
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// Result: 60% pass rate → 100%, 40% faster execution
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