ed53d6d215
Key changes from review:
- Use separate _sessionContext field instead of mutating _systemPromptBase
- Parameterize compaction prompt via buildCompactionPrompt() instead of duplicating
- Fix flaky TTL=0 test to use hardcoded past expiry date
- Route memory extraction to {userNamespace}/facts when namespace is set
- Document future considerations (config refactor, concurrent writes, token counting)
Co-Authored-By: Claude Opus 4.6 <noreply@anthropic.com>
805 lines
25 KiB
Markdown
805 lines
25 KiB
Markdown
# Pi-Inspired Personal Assistant Memory — Implementation Plan
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> **For Claude:** REQUIRED SUB-SKILL: Use superpowers:executing-plans to implement this plan task-by-task.
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**Goal:** Add two-tier personal-assistant memory: a unified `user/*` namespace shared across channels and a working-memory layer (`user/working`) that survives restarts and is injected at session start.
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**Architecture:** `user/working` is written on every compaction (TTL-based flat file with header metadata). On the first message of a new session, `user/profile` and `user/working` are composed into the system prompt alongside the existing memory context. All behavior is behind a `memory.user_namespace` config key; when unset the feature is entirely inert.
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**Tech Stack:** TypeScript, Vitest, existing `MemoryStore` (`src/memory/store.ts`), `AgentOrchestrator` (`src/backends/native/orchestrator.ts`), Zod config schema
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**Key design decisions (from review):**
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- Session context is stored in a separate `_sessionContext` field — `_systemPromptBase` is never mutated
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- Compaction prompt is parameterized via `buildCompactionPrompt()` rather than duplicating the constant
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- Expired-memory test uses a hardcoded past date (not TTL=0) for determinism
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- Memory extraction writes to `{userNamespace}/facts` when user namespace is set
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---
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## Task 1: Config schema — new memory fields
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**Files:**
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- Modify: `src/config/schema.ts`
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Add four new fields to `memorySchema`. They must come before `.default({})`.
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**Step 1: Run baseline typecheck**
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```bash
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pnpm typecheck
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```
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Expected: passes (baseline).
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**Step 2: Add fields to memorySchema**
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In `src/config/schema.ts`, inside `memorySchema` (after `qmd: qmdSchema,`, before `}).default({});`), add:
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```typescript
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/**
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* When set, all channels share user/* memory (unified identity namespace).
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* Absent = current session-scoped behavior, unchanged.
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*/
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user_namespace: z.string().optional(),
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/** How long working memory remains valid after the last compaction (days). */
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working_memory_ttl_days: z.number().min(1).max(365).default(14),
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/** Token budget for working memory injection at session start. */
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working_memory_max_tokens: z.number().min(100).max(4000).default(1000),
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/** When true, instruct the model to acknowledge prior context on session start. */
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proactive_session_greeting: z.boolean().default(false),
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```
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**Step 3: Run typecheck**
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```bash
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pnpm typecheck
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```
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Expected: no errors.
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**Step 4: Commit**
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```bash
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git add src/config/schema.ts
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git commit -m "feat(memory): add user_namespace and working memory config fields"
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```
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---
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## Task 2: WorkingMemory module
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**Files:**
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- Create: `src/memory/workingMemory.ts`
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- Create: `src/memory/workingMemory.test.ts`
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Working memory file format (stored at `{ns}/working.md`):
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```
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# Working Memory
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Updated: 2026-02-25T11:30:00Z
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Expires: 2026-03-10T11:30:00Z
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[content]
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```
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**Step 1: Write the failing tests**
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Create `src/memory/workingMemory.test.ts`:
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```typescript
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import { describe, it, expect } from 'vitest';
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import { join } from 'path';
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import { mkdtempSync, rmSync } from 'fs';
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import { tmpdir } from 'os';
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import { MemoryStore } from './store.js';
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import { writeWorkingMemory, readWorkingMemory } from './workingMemory.js';
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function makeStore(): { store: MemoryStore; dir: string } {
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const dir = mkdtempSync(join(tmpdir(), 'wm-test-'));
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const store = new MemoryStore({ dir, maxContextTokens: 2000 });
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return { store, dir };
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}
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describe('writeWorkingMemory', () => {
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it('writes a file with Updated/Expires headers', () => {
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const { store, dir } = makeStore();
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writeWorkingMemory(store, 'user/working', 'some content', 14, 1000);
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const raw = store.read('user/working');
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expect(raw).toContain('# Working Memory');
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expect(raw).toContain('Updated:');
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expect(raw).toContain('Expires:');
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expect(raw).toContain('some content');
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rmSync(dir, { recursive: true });
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});
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it('truncates content to token budget', () => {
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const { store, dir } = makeStore();
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const longContent = 'x'.repeat(10000);
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writeWorkingMemory(store, 'user/working', longContent, 14, 100);
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const raw = store.read('user/working');
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// 100 tokens * 4 chars = 400 chars budget for content
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const contentPart = raw.split('\n\n').slice(1).join('\n\n');
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expect(contentPart.length).toBeLessThanOrEqual(400 + 10); // small tolerance
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rmSync(dir, { recursive: true });
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});
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});
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describe('readWorkingMemory', () => {
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it('returns null when file does not exist', () => {
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const { store, dir } = makeStore();
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expect(readWorkingMemory(store, 'user/working')).toBeNull();
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rmSync(dir, { recursive: true });
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});
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it('returns content when not expired', () => {
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const { store, dir } = makeStore();
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writeWorkingMemory(store, 'user/working', 'hello world', 14, 1000);
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const result = readWorkingMemory(store, 'user/working');
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expect(result).not.toBeNull();
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expect(result!.content).toBe('hello world');
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rmSync(dir, { recursive: true });
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});
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it('returns null when expired', () => {
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const { store, dir } = makeStore();
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// Write a file with a hardcoded past expiry date for deterministic testing
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const expiredFile = [
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'# Working Memory',
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'Updated: 2025-01-01T00:00:00Z',
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'Expires: 2025-01-02T00:00:00Z',
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'',
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'stale content',
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].join('\n');
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store.write('user/working', expiredFile, 'replace');
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const result = readWorkingMemory(store, 'user/working');
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expect(result).toBeNull();
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rmSync(dir, { recursive: true });
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});
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it('returns null for malformed file', () => {
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const { store, dir } = makeStore();
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store.write('user/working', 'no headers here', 'replace');
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expect(readWorkingMemory(store, 'user/working')).toBeNull();
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rmSync(dir, { recursive: true });
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});
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});
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```
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**Step 2: Run test to verify it fails**
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```bash
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pnpm test:run src/memory/workingMemory.test.ts
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```
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Expected: FAIL — module not found.
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**Step 3: Implement `src/memory/workingMemory.ts`**
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```typescript
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import type { MemoryStore } from './store.js';
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export interface WorkingMemoryEntry {
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content: string;
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updatedAt: Date;
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expiresAt: Date;
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}
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const HEADER_PREFIX = '# Working Memory\n';
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/**
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* Write a compaction summary to the working memory namespace.
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* Content is capped at maxTokens (estimated at 4 chars/token).
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* The file format includes Updated/Expires timestamps for lazy expiry checks.
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*/
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export function writeWorkingMemory(
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store: MemoryStore,
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namespace: string,
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content: string,
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ttlDays: number,
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maxTokens: number,
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): void {
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const now = new Date();
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const expiresAt = new Date(now.getTime() + ttlDays * 24 * 60 * 60 * 1000);
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const maxChars = maxTokens * 4;
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const truncatedContent = content.length > maxChars ? content.slice(0, maxChars) : content;
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const file = [
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'# Working Memory',
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`Updated: ${now.toISOString()}`,
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`Expires: ${expiresAt.toISOString()}`,
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'',
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truncatedContent,
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].join('\n');
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store.write(namespace, file, 'replace');
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}
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/**
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* Read working memory. Returns null if the file is absent, malformed, or expired.
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* MemoryStore.read() returns '' for missing files, so falsy check works.
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* Expiry is checked lazily here — no background cleanup needed.
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*/
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export function readWorkingMemory(
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store: MemoryStore,
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namespace: string,
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): WorkingMemoryEntry | null {
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const raw = store.read(namespace);
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if (!raw) {
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return null;
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}
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if (!raw.startsWith(HEADER_PREFIX)) {
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return null;
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}
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const lines = raw.split('\n');
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let updatedAt: Date | null = null;
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let expiresAt: Date | null = null;
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let contentStartLine = 0;
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for (let i = 1; i < lines.length; i++) {
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const line = lines[i];
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if (line.startsWith('Updated: ')) {
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updatedAt = new Date(line.slice('Updated: '.length));
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} else if (line.startsWith('Expires: ')) {
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expiresAt = new Date(line.slice('Expires: '.length));
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} else if (line === '' && expiresAt !== null) {
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contentStartLine = i + 1;
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break;
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}
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}
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if (!updatedAt || !expiresAt || isNaN(expiresAt.getTime())) {
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return null;
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}
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if (expiresAt.getTime() <= Date.now()) {
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console.debug('[Flynn:working-memory] Working memory expired, skipping injection');
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return null;
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}
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const content = lines.slice(contentStartLine).join('\n').trim();
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return { content, updatedAt, expiresAt };
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}
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```
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**Step 4: Run tests**
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```bash
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pnpm test:run src/memory/workingMemory.test.ts
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```
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Expected: all pass.
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**Step 5: Typecheck**
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```bash
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pnpm typecheck
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```
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Expected: no errors.
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**Step 6: Commit**
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```bash
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git add src/memory/workingMemory.ts src/memory/workingMemory.test.ts
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git commit -m "feat(memory): add working memory read/write with TTL expiry"
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```
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---
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## Task 3: Parameterized compaction prompt
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**Files:**
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- Modify: `src/backends/native/prompts.ts`
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Instead of duplicating `COMPACTION_SYSTEM_PROMPT`, add a `buildCompactionPrompt()` function that shares rules and parameterizes the focus section. The existing `COMPACTION_SYSTEM_PROMPT` constant stays for backward compatibility.
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**Step 1: Add the parameterized prompt builder**
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In `src/backends/native/prompts.ts`, after `COMPACTION_SYSTEM_PROMPT`, add:
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```typescript
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/**
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* Build a compaction system prompt. When `personalAssistant` is true,
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* the prompt focuses on continuity context (what the user was working on,
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* decisions, preferences, open threads) rather than generic summarization.
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*
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* The shared rules (preserve facts, 20% length, bullet points, no invention,
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* skip transient content) are identical in both variants.
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*/
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export function buildCompactionPrompt(opts?: { personalAssistant?: boolean }): string {
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const focus = opts?.personalAssistant
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? `Focus on:
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- What the user was working on and its current status (be specific: which files, commands, or steps were involved)
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- Decisions made and why (include rationale when stated)
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- Preferences or constraints the user expressed (tools, styles, approaches to avoid or prefer)
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- Open threads, unresolved questions, or explicit follow-up items`
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: `Focus on:
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- Key topics discussed and conclusions reached
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- Important decisions, commitments, or action items
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- Technical details, code changes, or configurations that were established`;
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const preamble = opts?.personalAssistant
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? 'You are summarising a conversation for a personal assistant. Your summary will be injected at the start of the next session so the assistant can pick up exactly where things left off.'
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: 'You are a conversation summarizer. Create a concise summary of the conversation that captures all important information.';
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return `${preamble}
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${focus}
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Rules:
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- Preserve key facts, file paths, error messages, and specific values verbatim.
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- Be concise but complete — aim for roughly 20% of the original length.
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- Use bullet points under short descriptive headings.
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- Never invent information not present in the conversation.
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- Skip purely transient content (one-off commands, status messages with no lasting significance).
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Output format:
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Return a markdown summary. No preamble — output only the summary.`;
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}
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```
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**Step 2: Typecheck**
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```bash
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pnpm typecheck
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```
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Expected: no errors.
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**Step 3: Commit**
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```bash
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git add src/backends/native/prompts.ts
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git commit -m "feat(memory): add parameterized compaction prompt builder"
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```
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---
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## Task 4: Thread working memory through compaction
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**Files:**
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- Modify: `src/context/compaction.ts`
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Add `summary` to `CompactionResult` so the orchestrator can write it to `user/working` without re-computing it. Thread the PA prompt option. Also route memory extraction to `{userNamespace}/facts` when namespace is set.
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**Step 1: Update `CompactionResult` interface**
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In `src/context/compaction.ts`, add `summary` to `CompactionResult`:
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```typescript
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export interface CompactionResult {
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/** The compacted messages: [summary, ...recentMessages]. */
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messages: Message[];
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/** Number of messages that were compacted (removed). */
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compactedCount: number;
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/** Estimated tokens before compaction. */
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tokensBefore: number;
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/** Estimated tokens after compaction. */
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tokensAfter: number;
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/** The raw summary text produced by the compaction model (populated when compaction ran). */
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summary?: string;
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}
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```
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**Step 2: Add `usePersonalAssistantPrompt` option and populate `summary`**
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Update the `compactHistory` function signature:
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```typescript
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export async function compactHistory(opts: {
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messages: Message[];
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orchestrator: AgentOrchestrator;
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config: CompactionConfig;
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memoryStore?: MemoryStore;
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autoExtract?: boolean;
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usePersonalAssistantPrompt?: boolean;
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memoryExtractionNamespace?: string;
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}): Promise<CompactionResult> {
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```
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Update the imports to include `buildCompactionPrompt`:
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```typescript
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import { COMPACTION_SYSTEM_PROMPT, MEMORY_EXTRACTION_PROMPT, buildCompactionPrompt } from '../backends/native/prompts.js';
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```
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In the body, replace the hardcoded `COMPACTION_SYSTEM_PROMPT` in the `orchestrator.delegate()` call:
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```typescript
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const systemPrompt = opts.usePersonalAssistantPrompt
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? buildCompactionPrompt({ personalAssistant: true })
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: COMPACTION_SYSTEM_PROMPT;
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const result = await orchestrator.delegate({
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task: 'compaction',
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tier,
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systemPrompt,
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message: formattedConversation,
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maxTokens: config.summaryMaxTokens,
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});
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```
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Populate `summary` in the return value:
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```typescript
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return {
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messages: [...preservedMessages, summaryMessage, ...toKeep],
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compactedCount: toSummarize.length,
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tokensBefore: estimateMessageTokens(messages),
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tokensAfter: estimateMessageTokens([...preservedMessages, summaryMessage, ...toKeep]),
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summary: result.content,
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};
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```
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**Step 3: Route memory extraction to user namespace when set**
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In the memory extraction block (around line 133), change the write target:
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```typescript
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if (opts.memoryStore && opts.autoExtract !== false) {
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try {
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// ...existing extraction delegate call...
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const extractedContent = extraction.content.trim();
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if (extractedContent.length > 0 && !extractedContent.toLowerCase().includes('no facts')) {
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const extractionNs = opts.memoryExtractionNamespace ?? 'global';
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opts.memoryStore.write(extractionNs, extractedContent, 'append');
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console.log(`[Flynn:memory] Extracted ${extractedContent.length} chars of facts to ${extractionNs} memory`);
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}
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} catch (error) {
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console.warn('[Flynn:memory] Failed to extract facts during compaction:', error);
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}
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}
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```
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|
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**Step 4: Typecheck**
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|
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```bash
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pnpm typecheck
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```
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Expected: no errors.
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|
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**Step 5: Run full test suite**
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```bash
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pnpm test:run
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```
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Expected: all pass (summary field is additive, existing tests unaffected).
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**Step 6: Commit**
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```bash
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git add src/context/compaction.ts src/backends/native/prompts.ts
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git commit -m "feat(memory): thread summary and PA prompt through compaction result"
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```
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---
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## Task 5: Orchestrator — session-start injection + post-compaction write
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**Files:**
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- Modify: `src/backends/native/orchestrator.ts`
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This task has two parts:
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1. Write working memory after every compaction (when `userNamespace` is set)
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2. Inject `user/profile` + `user/working` into the system prompt on first message
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**Critical design note:** `_systemPromptBase` must remain immutable (set once in constructor). Session context is stored in a separate `_sessionContext` field and composed into the system prompt in `_injectMemoryContext()`.
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**Step 1: Explore existing test patterns**
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```bash
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ls src/backends/native/*.test.ts
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```
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Examine the existing orchestrator test setup to understand mock patterns before writing the integration test.
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**Step 2: Add new fields to `OrchestratorConfig`**
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In `src/backends/native/orchestrator.ts`, in `OrchestratorConfig` (after `attachmentCollector`), add:
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```typescript
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/** Shared identity namespace for cross-channel memory (e.g. 'user'). Absent = session-scoped. */
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userNamespace?: string;
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/** TTL in days for working memory. Defaults to 14. */
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workingMemoryTtlDays?: number;
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/** Token budget for working memory injection. Defaults to 1000. */
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workingMemoryMaxTokens?: number;
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/** When true, instruct the model to acknowledge prior context on session start. */
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proactiveSessionGreeting?: boolean;
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```
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**Step 3: Store new config fields on the class**
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Add private fields (near the other `_memory*` fields):
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```typescript
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private _userNamespace?: string;
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private _workingMemoryTtlDays: number;
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private _workingMemoryMaxTokens: number;
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private _proactiveSessionGreeting: boolean;
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private _sessionContext: string | null = null;
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```
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In the constructor, after the existing memory field assignments:
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|
|
|
```typescript
|
|
this._userNamespace = config.userNamespace;
|
|
this._workingMemoryTtlDays = config.workingMemoryTtlDays ?? 14;
|
|
this._workingMemoryMaxTokens = config.workingMemoryMaxTokens ?? 1000;
|
|
this._proactiveSessionGreeting = config.proactiveSessionGreeting ?? false;
|
|
```
|
|
|
|
**Step 4: Post-compaction write in `compact()`**
|
|
|
|
Import `writeWorkingMemory` at the top of orchestrator.ts:
|
|
|
|
```typescript
|
|
import { writeWorkingMemory } from '../../memory/workingMemory.js';
|
|
```
|
|
|
|
In the `compact()` method, after the `auditLogger?.sessionCompact(...)` call, add:
|
|
|
|
```typescript
|
|
// Write working memory when user namespace is configured
|
|
if (result.summary && this._userNamespace && this._memoryStore) {
|
|
const workingNs = `${this._userNamespace}/working`;
|
|
writeWorkingMemory(
|
|
this._memoryStore,
|
|
workingNs,
|
|
result.summary,
|
|
this._workingMemoryTtlDays,
|
|
this._workingMemoryMaxTokens,
|
|
);
|
|
console.log(`[Flynn:working-memory] Updated ${workingNs} after compaction`);
|
|
}
|
|
```
|
|
|
|
Also, pass `usePersonalAssistantPrompt` and `memoryExtractionNamespace` to `compactHistory()` in `compact()`:
|
|
|
|
```typescript
|
|
const result = await compactHistory({
|
|
messages,
|
|
orchestrator: this,
|
|
config,
|
|
memoryStore: this._memoryStore,
|
|
autoExtract: this._memoryAutoExtract,
|
|
usePersonalAssistantPrompt: Boolean(this._userNamespace),
|
|
memoryExtractionNamespace: this._userNamespace ? `${this._userNamespace}/facts` : undefined,
|
|
});
|
|
```
|
|
|
|
**Step 5: Session-start injection — `_buildSessionContext()`**
|
|
|
|
Add a private method that builds the session context string (but does NOT mutate `_systemPromptBase`):
|
|
|
|
```typescript
|
|
/**
|
|
* Build session context from user/profile and user/working memory.
|
|
* Called once on first process() call. Returns null if no context available.
|
|
* Does NOT mutate _systemPromptBase — the result is stored in _sessionContext
|
|
* and composed into the system prompt by _injectMemoryContext().
|
|
*/
|
|
private _buildSessionContext(): void {
|
|
if (this._sessionContext !== null || !this._memoryStore || !this._userNamespace) {
|
|
return;
|
|
}
|
|
|
|
const sections: string[] = [];
|
|
|
|
// User profile block
|
|
const profile = this._memoryStore.read(`${this._userNamespace}/profile`);
|
|
if (profile.length > 0) {
|
|
sections.push(`--- Who you're talking to ---\n${profile}`);
|
|
}
|
|
|
|
// Working memory block
|
|
const working = readWorkingMemory(this._memoryStore, `${this._userNamespace}/working`);
|
|
if (working) {
|
|
sections.push(`--- Recent context ---\n${working.content}`);
|
|
}
|
|
|
|
if (sections.length === 0) {
|
|
// Set to empty string (not null) to indicate we've run but found nothing.
|
|
// Null means "not yet computed".
|
|
this._sessionContext = '';
|
|
return;
|
|
}
|
|
|
|
let ctx = sections.join('\n\n');
|
|
|
|
if (this._proactiveSessionGreeting) {
|
|
ctx += '\n\n[If relevant, briefly acknowledge what the user was last working on before responding to their first message.]';
|
|
}
|
|
|
|
this._sessionContext = ctx;
|
|
}
|
|
```
|
|
|
|
Add the import at the top of orchestrator.ts:
|
|
|
|
```typescript
|
|
import { writeWorkingMemory, readWorkingMemory } from '../../memory/workingMemory.js';
|
|
```
|
|
|
|
**Step 6: Compose session context in `_injectMemoryContext()`**
|
|
|
|
In `_injectMemoryContext()`, change the base prompt computation to include session context:
|
|
|
|
Where the method currently does:
|
|
```typescript
|
|
this._agent.setSystemPrompt(this._systemPromptBase);
|
|
// and later:
|
|
const enrichedPrompt = `${this._systemPromptBase}\n\n# Memory Context\n\n...`;
|
|
```
|
|
|
|
Change to compose session context into the effective base:
|
|
```typescript
|
|
const effectiveBase = this._sessionContext
|
|
? `${this._systemPromptBase}\n\n${this._sessionContext}`
|
|
: this._systemPromptBase;
|
|
```
|
|
|
|
Then use `effectiveBase` everywhere `_systemPromptBase` was used in that method.
|
|
|
|
**Step 7: Call `_buildSessionContext()` from `process()`**
|
|
|
|
In the `process()` method, before `_injectMemoryContext()`:
|
|
|
|
```typescript
|
|
// One-time session-start context injection (user/profile + user/working)
|
|
this._buildSessionContext();
|
|
this._injectMemoryContext(userMessage);
|
|
```
|
|
|
|
**Step 8: Reset session context in `reset()`**
|
|
|
|
```typescript
|
|
reset(): void {
|
|
this._agent.reset();
|
|
this._usageByTier.clear();
|
|
this._lastContextAlertLevel = null;
|
|
this._pendingContextAlert = undefined;
|
|
this._lastCheckpointAt = 0;
|
|
this._sessionContext = null; // ← add: re-read on next process()
|
|
}
|
|
```
|
|
|
|
**Step 9: Typecheck**
|
|
|
|
```bash
|
|
pnpm typecheck
|
|
```
|
|
Expected: no errors.
|
|
|
|
**Step 10: Run full test suite**
|
|
|
|
```bash
|
|
pnpm test:run
|
|
```
|
|
Expected: all pass.
|
|
|
|
**Step 11: Commit**
|
|
|
|
```bash
|
|
git add src/backends/native/orchestrator.ts
|
|
git commit -m "feat(memory): inject session context and write working memory after compaction"
|
|
```
|
|
|
|
---
|
|
|
|
## Task 6: Daemon routing — wire new config fields
|
|
|
|
**Files:**
|
|
- Modify: `src/daemon/routing.ts`
|
|
|
|
**Step 1: Add the new fields after `memoryDailyLogMaxAssistantChars`**
|
|
|
|
In `src/daemon/routing.ts`, after:
|
|
```typescript
|
|
memoryDailyLogMaxAssistantChars: deps.config.memory?.daily_log?.max_assistant_chars,
|
|
```
|
|
|
|
Add:
|
|
```typescript
|
|
userNamespace: deps.config.memory?.user_namespace,
|
|
workingMemoryTtlDays: deps.config.memory?.working_memory_ttl_days,
|
|
workingMemoryMaxTokens: deps.config.memory?.working_memory_max_tokens,
|
|
proactiveSessionGreeting: deps.config.memory?.proactive_session_greeting,
|
|
```
|
|
|
|
**Step 2: Typecheck**
|
|
|
|
```bash
|
|
pnpm typecheck
|
|
```
|
|
Expected: no errors.
|
|
|
|
**Step 3: Run full test suite**
|
|
|
|
```bash
|
|
pnpm test:run
|
|
```
|
|
Expected: all pass.
|
|
|
|
**Step 4: Commit**
|
|
|
|
```bash
|
|
git add src/daemon/routing.ts
|
|
git commit -m "feat(memory): wire user_namespace and working memory config to orchestrator"
|
|
```
|
|
|
|
---
|
|
|
|
## Task 7: Smoke test and state.json update
|
|
|
|
**Step 1: Run full test suite one final time**
|
|
|
|
```bash
|
|
pnpm test:run
|
|
```
|
|
Expected: all pass.
|
|
|
|
**Step 2: Manual smoke test (optional but recommended)**
|
|
|
|
Add this to your `config.yaml`:
|
|
```yaml
|
|
memory:
|
|
user_namespace: "user"
|
|
working_memory_ttl_days: 14
|
|
working_memory_max_tokens: 1000
|
|
proactive_session_greeting: false
|
|
```
|
|
|
|
Start a session, chat for a while, trigger a compaction (or wait for auto-compaction), then restart and start a new session. Verify `user/working.md` exists in your memory dir and is injected on the new session's first turn.
|
|
|
|
**Step 3: Update state.json**
|
|
|
|
In `docs/plans/state.json`, add an entry to `completed`:
|
|
|
|
```json
|
|
"pi_personal_assistant_memory": {
|
|
"status": "complete",
|
|
"commit": "<sha>",
|
|
"summary": "Two-tier personal assistant memory: working memory (user/working, TTL-based) written on compaction, injected at session start; unified user/* namespace across channels; parameterized compaction prompt; memory extraction routed to user/facts; proactive session greeting option."
|
|
}
|
|
```
|
|
|
|
**Step 4: Final commit**
|
|
|
|
```bash
|
|
git add docs/plans/state.json
|
|
git commit -m "docs(state): mark pi personal assistant memory as complete"
|
|
```
|
|
|
|
---
|
|
|
|
## Success Criteria Checklist
|
|
|
|
- [ ] `user_namespace` absent → zero behavior change (all new code paths guarded by `this._userNamespace` check)
|
|
- [ ] After compaction with `user_namespace` set, `user/working.md` exists in memory dir
|
|
- [ ] Daemon restart + new session → `user/working` content appears in the first-turn system prompt
|
|
- [ ] Telegram and web UI sessions share the same `user/working` file
|
|
- [ ] Expired working memory (TTL elapsed) is silently ignored
|
|
- [ ] `_systemPromptBase` is never mutated — session context composed via `_sessionContext` field
|
|
- [ ] Memory extraction writes to `{userNamespace}/facts` when namespace set, `global` otherwise
|
|
- [ ] All existing tests pass
|
|
|
|
---
|
|
|
|
## Future considerations (not in scope)
|
|
|
|
- **OrchestratorConfig refactor:** Group the 17+ flat `memory*` fields into a nested `MemoryConfig` interface. Mechanical but improves readability. Do this in a separate PR.
|
|
- **Concurrent compaction guard:** Multiple sessions could write `user/working` simultaneously. `writeFileSync` is atomic per-call so data won't corrupt, but the last-writer-wins. Consider a merge strategy if this becomes a problem.
|
|
- **Token counting:** Currently using `maxTokens * 4` char heuristic. Could reuse `estimateMessageTokens()` for consistency.
|
|
|
|
---
|
|
|
|
## Reference: Config
|
|
|
|
```yaml
|
|
memory:
|
|
# Enables shared identity and working memory. Absent = unchanged behavior.
|
|
user_namespace: "user"
|
|
working_memory_ttl_days: 14 # default
|
|
working_memory_max_tokens: 1000 # default
|
|
proactive_session_greeting: false # default
|
|
```
|