Improve OpenChamber responsiveness under large session workloads while fixing cache, synchronization, and persistence correctness across runtimes, projects, directories, and worktrees. - prioritize selected and visible sessions during bootstrap and defer non-critical enrichment work - reduce redundant message loading, event processing, store publication, and hidden sidebar work - prevent stale session and message requests from overwriting newer authoritative state - preserve existing data when authoritative fetches fail instead of treating failures as successful empty responses - scope session materialization, messages, drafts, queues, todos, pins, permissions, folders, tabs, Git state, and pull request data by runtime and directory identity - harden runtime switching, reconnect, cleanup, mutation reconciliation, and persisted-state ordering - preserve live subagent Task linkage when metadata arrives after an older message request or while streaming parts are suspended - coalesce overlapping tail refreshes without losing newer refresh demand - improve cold-session loading by moving deferrable work out of the critical bootstrap path - isolate URL authentication, mobile credentials, native secrets, and other runtime-owned state across endpoint changes - bound long-lived caches and remove avoidable allocations from event and rendering hot paths - limit virtualization to archive collections where it improves rendering without disrupting active sidebar layout - stabilize session folders, pin ordering, expanded state, and persisted sidebar behavior - open skill files through the same secure editor and outside-workspace grant flow used by file navigation, including worktree sessions - expand regression coverage for stale completions, runtime collisions, reconnect behavior, persistence races, authoritative empty results, and subagent refresh ordering - document the updated synchronization, cache ownership, performance, and runtime-isolation invariants
137 lines
5.4 KiB
TypeScript
137 lines
5.4 KiB
TypeScript
import { beforeEach, describe, expect, mock, test } from 'bun:test';
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const storage = new Map<string, string>();
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let storageSetCount = 0;
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let runtimeKey = 'runtime-a';
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let diskResponseBody: Record<string, unknown> = { version: 1, exists: false };
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const safeStorage = {
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getItem: (key: string) => storage.get(key) ?? null,
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setItem: (key: string, value: string) => {
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storageSetCount += 1;
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storage.set(key, value);
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},
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removeItem: (key: string) => {
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storage.delete(key);
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},
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clear: () => {
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storage.clear();
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},
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key: (index: number) => Array.from(storage.keys())[index] ?? null,
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get length() {
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return storage.size;
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},
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} as Storage;
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mock.module('./utils/safeStorage', () => ({
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getDeferredSafeStorage: () => safeStorage,
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getSafeStorage: () => safeStorage,
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}));
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mock.module('@/lib/desktop', () => ({
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isVSCodeRuntime: () => false,
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}));
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mock.module('@/lib/runtime-fetch', () => ({
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runtimeFetch: mock(async () => new Response(JSON.stringify(diskResponseBody), { headers: { 'Content-Type': 'application/json' } })),
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}));
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mock.module('@/lib/runtime-switch', () => ({ getRuntimeKey: () => runtimeKey }));
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const { useSessionFoldersStore } = await import('./useSessionFoldersStore');
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const waitForPersist = () => new Promise((resolve) => setTimeout(resolve, 350));
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describe('useSessionFoldersStore folder assignments', () => {
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beforeEach(() => {
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storage.clear();
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storageSetCount = 0;
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runtimeKey = 'runtime-a';
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diskResponseBody = { version: 1, exists: false };
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useSessionFoldersStore.getState().resetForRuntimeSwitch(runtimeKey);
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useSessionFoldersStore.setState({
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foldersMap: {},
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collapsedFolderIds: new Set<string>(),
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});
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});
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test('repeated addSessionToFolder to the same folder preserves foldersMap reference', async () => {
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const store = useSessionFoldersStore.getState();
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const folder = store.createFolder('/workspace/project', 'Work');
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store.addSessionToFolder('/workspace/project', folder.id, 'ses_1');
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await waitForPersist();
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storageSetCount = 0;
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const before = useSessionFoldersStore.getState().foldersMap;
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useSessionFoldersStore.getState().addSessionToFolder('/workspace/project', folder.id, 'ses_1');
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await waitForPersist();
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expect(useSessionFoldersStore.getState().foldersMap).toBe(before);
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expect(storageSetCount).toBe(0);
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});
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test('repeated addSessionsToFolder to the same folder preserves foldersMap reference', async () => {
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const store = useSessionFoldersStore.getState();
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const folder = store.createFolder('/workspace/project', 'Batch');
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store.addSessionsToFolder('/workspace/project', folder.id, ['ses_1', 'ses_2']);
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await waitForPersist();
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storageSetCount = 0;
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const before = useSessionFoldersStore.getState().foldersMap;
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useSessionFoldersStore.getState().addSessionsToFolder('/workspace/project', folder.id, ['ses_1', 'ses_2']);
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await waitForPersist();
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expect(useSessionFoldersStore.getState().foldersMap).toBe(before);
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expect(storageSetCount).toBe(0);
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});
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test('restores independent folder snapshots across runtime switches', async () => {
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useSessionFoldersStore.getState().createFolder('/workspace/project', 'Runtime A');
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await waitForPersist();
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runtimeKey = 'runtime-b';
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useSessionFoldersStore.getState().resetForRuntimeSwitch(runtimeKey);
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expect(useSessionFoldersStore.getState().getFoldersForScope('/workspace/project')).toEqual([]);
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useSessionFoldersStore.getState().createFolder('/workspace/project', 'Runtime B');
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await waitForPersist();
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runtimeKey = 'runtime-a';
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useSessionFoldersStore.getState().resetForRuntimeSwitch(runtimeKey);
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expect(useSessionFoldersStore.getState().getFoldersForScope('/workspace/project').map((folder) => folder.name)).toEqual(['Runtime A']);
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});
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test('flushes the outgoing runtime before a debounced browser write can be lost', () => {
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useSessionFoldersStore.getState().createFolder('/workspace/project', 'Runtime A pending');
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runtimeKey = 'runtime-b';
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useSessionFoldersStore.getState().resetForRuntimeSwitch(runtimeKey);
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runtimeKey = 'runtime-a';
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useSessionFoldersStore.getState().resetForRuntimeSwitch(runtimeKey);
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expect(useSessionFoldersStore.getState().getFoldersForScope('/workspace/project').map((folder) => folder.name)).toEqual(['Runtime A pending']);
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});
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test('does not replace browser folders when the server has no disk snapshot', async () => {
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useSessionFoldersStore.getState().createFolder('/workspace/project', 'Browser folder');
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runtimeKey = 'runtime-b';
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useSessionFoldersStore.getState().resetForRuntimeSwitch(runtimeKey);
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runtimeKey = 'runtime-a';
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useSessionFoldersStore.getState().resetForRuntimeSwitch(runtimeKey);
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await new Promise((resolve) => setTimeout(resolve, 0));
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expect(useSessionFoldersStore.getState().getFoldersForScope('/workspace/project').map((folder) => folder.name)).toEqual(['Browser folder']);
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});
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test('does not silently evict folder state from older runtimes', () => {
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for (let index = 0; index < 10; index += 1) {
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runtimeKey = `runtime-${index}`;
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useSessionFoldersStore.getState().resetForRuntimeSwitch(runtimeKey);
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useSessionFoldersStore.getState().createFolder('/workspace/project', `Folder ${index}`);
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}
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runtimeKey = 'runtime-0';
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useSessionFoldersStore.getState().resetForRuntimeSwitch(runtimeKey);
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expect(useSessionFoldersStore.getState().getFoldersForScope('/workspace/project').map((folder) => folder.name)).toEqual(['Folder 0']);
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});
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});
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