profit ac01fffd9a checkpoint: matrix-agent-validated (2026-04-25)
Architectural snapshot of the lakehouse codebase at the point where the
full matrix-driven agent loop with Mem0 versioning + deletion was
validated end-to-end.

WHAT THIS REPO IS
A clean single-commit snapshot of the lakehouse code. Heavy test data
(.parquet datasets, vector indexes) excluded — see REPLICATION.md for
regen path. Full lakehouse history at git.agentview.dev/profit/lakehouse.

WHAT WAS PROVEN
- Vector retrieval across multi-corpora matrix (chicago_permits + entity
  briefs + sec_tickers + distilled procedural + llm_team runs)
- Observer hand-review (cloud + heuristic fallback) gating each candidate
- Local-model agent loop (qwen3.5:latest) with tool use + scratchpad
- Playbook seal on success → next-iter retrieval surfaces it as preamble
- Mem0 versioning + deletion in pathway_memory:
    * UPSERT: ADD on new workflow, UPDATE bumps replay_count on identical
    * REVISE: chains versions, parent.superseded_at + superseded_by stamped
    * RETIRE: marks specific trace retired with reason, excluded from retrieval
    * HISTORY: walks chain root→tip, cycle-safe

KEY DIRECTORIES
- crates/vectord/src/pathway_memory.rs — Mem0 ops live here
- crates/vectord/src/playbook_memory.rs — original Mem0 reference
- tests/agent_test/ — local-model agent harness + PRD + session archives
- scripts/dump_raw_corpus.sh — MinIO bucket dump (raw test corpus)
- scripts/vectorize_raw_corpus.ts — corpus → vector indexes
- scripts/analyze_chicago_contracts.ts — real inference pipeline
- scripts/seal_agent_playbook.ts — Mem0 upsert from agent traces

Replication: see REPLICATION.md for Debian 13 clean install + cloud-only
adaptation (no local Ollama).

Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>
2026-04-25 19:43:27 -05:00

78 lines
2.8 KiB
TypeScript

import { test, expect } from "bun:test";
import { normalizeInputSync, normalizeInput } from "./normalize.ts";
test("structured FillEvent → fast path", () => {
const n = normalizeInputSync({
kind: "baseline_fill", role: "Welder", city: "Nashville",
state: "TN", count: 4,
});
expect(n.extraction_method).toBe("structured");
expect(n.role).toBe("Welder");
expect(n.city).toBe("Nashville");
expect(n.state).toBe("TN");
expect(n.count).toBe(4);
expect(n.confidence).toBe("high");
expect(n.missing_fields.length).toBe(0);
});
test("misplacement kind → rescue intent", () => {
const n = normalizeInputSync({ kind: "misplacement", role: "Welder", city: "Nashville", state: "TN", count: 1 });
expect(n.intent).toBe("rescue");
});
test("structured with full state name normalizes to abbrev", () => {
const n = normalizeInputSync({ role: "Welder", city: "Nashville", state: "Tennessee" });
expect(n.state).toBe("TN");
});
test("natural-language regex path extracts count + role + city + state", () => {
const n = normalizeInputSync("I need 3 Welders in Nashville, TN for next week");
expect(n.role).toBe("Welder");
expect(n.city).toBe("Nashville");
expect(n.state).toBe("TN");
expect(n.count).toBe(3);
expect(n.intent).toBe("fill");
expect(n.extraction_method).toBe("regex");
});
test("natural language with plural role + full state name", () => {
const n = normalizeInputSync("fill 5 Forklift Operators in Chicago, Illinois");
expect(n.role).toBe("Forklift Operator");
expect(n.city).toBe("Chicago");
expect(n.state).toBe("IL");
expect(n.count).toBe(5);
});
test("rescue intent keyword beats fill", () => {
const n = normalizeInputSync("we need to rescue the Nashville welder fill, 2 workers");
expect(n.intent).toBe("rescue");
expect(n.count).toBe(2);
expect(n.role).toBe("Welder");
});
test("partial input reports missing fields with confidence=low or medium", () => {
const n = normalizeInputSync("need welders");
expect(n.role).toBe("Welder");
expect(n.city).toBeNull();
expect(n.state).toBeNull();
expect(n.count).toBeNull();
expect(n.missing_fields).toContain("city");
expect(n.missing_fields).toContain("state");
expect(n.confidence).toBe("low");
});
test("empty object does NOT go through structured path (no role or city)", () => {
const n = normalizeInputSync({});
expect(n.extraction_method).toBe("regex");
});
test("async normalizeInput on clean structured input matches sync", async () => {
const input = { role: "Welder", city: "Nashville", state: "TN", count: 3 };
const sync = normalizeInputSync(input);
const async_ = await normalizeInput(input);
expect(async_.role).toBe(sync.role);
expect(async_.city).toBe(sync.city);
expect(async_.state).toBe(sync.state);
expect(async_.count).toBe(sync.count);
});