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* test(e2e): record/replay front-back contract verification Guards the front-back contract with a deterministic, key-free record/replay harness (mirrors open-design's golden-trace approach): - ReplayChatModel (tests/replay_provider.py): replays recorded LLM turns by a normalized hash of the model input. Strips <system-reminder>/date/uuid/tmp-path so one fixture replays across days and from both the browser and direct-POST paths; a miss raises loudly (no silent divergence). - Recording is record-through-browser (scripts/record_gateway.py + build_fixture_from_jsonl.py + frontend/tests/e2e-record): a real run is driven through the real frontend so captured inputs match exactly what the browser sends; fixtures contain no API key. - Layer 1 — backend golden (tests/test_replay_golden.py): replay through the real gateway, assert the SSE event sequence == committed golden. - Layer 2 — full-stack render (frontend/tests/e2e-real-backend): real Next.js + real gateway (replay model) + Chromium; assert the replayed auto-title and follow-up suggestions render. DOM assertions are the gate; visual regression is a local dev gate (CI uploads the render as an artifact). - CI (.github/workflows/replay-e2e.yml): both layers, triggered on EITHER side of the contract (frontend/** or backend gateway/harness/fixtures). * test(e2e): multi-run render-order cross-stack scenario (#3352) Guards the dangerous front-back class where a backend ordering change silently breaks a frontend assumption while both sides' unit tests stay green. Reproduces issue #3352: backend list_by_thread returns runs newest-first (#2932) and the frontend prepended per-run pages, inverting chronological order once the checkpoint no longer held the older messages. - tests/seed_runs_router.py: test-only seeder, mounted on the replay gateway only when DEERFLOW_ENABLE_TEST_SEED=1 (never in the production app). Seeds a thread with >=2 runs + per-run message events and no checkpoint -- the #3352 precondition -- so the frontend per-run reload path is the sole source of truth and the prepend inversion is observable. - frontend/tests/e2e-real-backend/multi-run-order.spec.ts: drives the real frontend against the real gateway, asserts the first run renders above the second. Reverting the #3354 fix turns it red. - replay-e2e.yml: trigger on the new replay test-infra paths. - docs: REPLAY_E2E.md cross-stack scenario section. * test(e2e): address Copilot review on the replay harness - Fix stale recorder references (scripts/record_traces.py -> scripts/record_gateway.py + scripts/build_fixture_from_jsonl.py) in replay_provider.py, test_replay_golden.py, _replay_fixture.py. - MODE_CONTEXT['ultra']: thinking_enabled False -> True, mirroring the frontend's `context.mode !== 'flash'` (hooks.ts). It did not affect the hashed input (Layer 1 golden still green), but the table now matches the real frontend context it claims to mirror. - replay_provider.py docstring: stop claiming memory is recorded-enabled; the replay config disables memory/summarization for determinism (title stays, as an in-graph deterministic call). - record_gateway.py / run_replay_gateway.py: override DEER_FLOW_HOME instead of setdefault, so an outer value can't leak into the hermetic harness. - record_gateway.py: clear error when DEERFLOW_RECORD_OUT is unset (was a bare KeyError). - playwright.record.config.ts: forward OPENAI_*/DEERFLOW_RECORD_OUT only when set, so the gateway raises a clear 'missing env' error instead of getting ''. * test(e2e): address Copilot review round 2 - seed_runs_router.py: constrain SeedMessage.role to Literal['human','ai'] so a bad value is a clean 422 at the boundary instead of a 500 (KeyError on _EVENT_TYPE). - record-write-read-file.spec.ts: waitForCaptureStable now throws on timeout instead of returning the last count, so a truncated/partial recording can't pass silently. - real-backend-render.spec.ts: guard the suggestions JSON.parse; a bracket-prefixed non-JSON turn falls back to '' so the existing not.toBe('') assertion fails clearly instead of a generic parse throw.
164 lines
6.0 KiB
Python
164 lines
6.0 KiB
Python
"""Shared config + gateway-drive helpers for the record/replay e2e.
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Record (``scripts/record_gateway.py`` + ``scripts/build_fixture_from_jsonl.py``)
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and replay (``tests/test_replay_golden.py``)
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MUST drive the gateway through an identical, prompt-affecting config — otherwise
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the system prompt differs and the recorded input hashes never match on replay.
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Centralising the config builder + drive loop here makes that identity hold by
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construction; only the ``models[].use`` block differs (real model vs
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``ReplayChatModel``).
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"""
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from __future__ import annotations
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import json
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import uuid
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from pathlib import Path
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# mode -> (thinking_enabled, is_plan_mode, subagent_enabled). Mirrors the
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# frontend mapping in core/threads/hooks.ts.
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MODE_CONTEXT: dict[str, tuple[bool, bool, bool]] = {
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"flash": (False, False, False),
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"thinking": (True, False, False),
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"pro": (True, True, False),
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# thinking_enabled mirrors the frontend `context.mode !== "flash"` (hooks.ts),
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# so ultra is thinking-enabled too.
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"ultra": (True, True, True),
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}
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# The replay model block: same model NAME as recording (so nothing in the prompt
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# shifts), only ``use`` swapped to the deterministic replay provider.
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REPLAY_MODEL_BLOCK = """\
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- name: scenario-model
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display_name: Scenario Model
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use: replay_provider:ReplayChatModel
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model: replay"""
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def real_model_block(model: str) -> str:
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return f"""\
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- name: scenario-model
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display_name: Scenario Model
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use: langchain_openai:ChatOpenAI
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model: {model}
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api_key: $OPENAI_API_KEY
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base_url: $OPENAI_API_BASE"""
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def build_config_yaml(*, model_block: str, home: Path) -> str:
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"""Full gateway config. Only ``model_block`` varies between record/replay.
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Everything that shapes the system prompt is pinned so record, replay, and CI
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produce byte-identical prompts regardless of the machine:
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- sandbox / tool_groups / tools — fixed here
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- skills — pointed at an empty ``<home>/skills`` so filesystem skills (incl.
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gitignored custom skills present only on a dev box) never leak into the
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prompt. Pair with an empty ``extensions_config.json`` (no MCP) via
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:func:`prepare_hermetic_extras`.
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- memory / summarization — disabled (background, non-deterministic timing)
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"""
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return f"""\
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log_level: warning
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models:
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{model_block}
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sandbox:
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use: deerflow.sandbox.local:LocalSandboxProvider
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skills:
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path: {home / "skills"}
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container_path: /mnt/skills
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tool_groups:
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- name: file:read
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- name: file:write
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tools:
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- name: ls
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group: file:read
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use: deerflow.sandbox.tools:ls_tool
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- name: read_file
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group: file:read
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use: deerflow.sandbox.tools:read_file_tool
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- name: write_file
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group: file:write
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use: deerflow.sandbox.tools:write_file_tool
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# Memory + summarization make background / debounced model calls whose timing is
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# non-deterministic; disable them so record and replay see the same model-call
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# set. (Title stays — it is an in-graph, deterministic call we record.)
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memory:
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enabled: false
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injection_enabled: false
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summarization:
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enabled: false
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agents_api:
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enabled: true
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database:
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backend: sqlite
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sqlite_dir: {home / "db"}
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"""
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def prepare_hermetic_extras(home: Path) -> Path:
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"""Create the empty skills tree + an empty extensions_config.json so the
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system prompt has no environment-dependent skills/MCP content.
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Returns the extensions-config path; the caller must point
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``DEER_FLOW_EXTENSIONS_CONFIG_PATH`` at it. Call before starting the gateway.
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"""
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(home / "skills" / "public").mkdir(parents=True, exist_ok=True)
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(home / "skills" / "custom").mkdir(parents=True, exist_ok=True)
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extensions = home / "extensions_config.json"
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extensions.write_text(json.dumps({"mcpServers": {}, "skills": {}}), encoding="utf-8")
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return extensions
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def sse_event_shapes(resp) -> list[dict]:
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"""Reduce an SSE stream to (event name, sorted top-level data keys).
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Snapshots the *shape* of the stream, not volatile values, so the golden is
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stable across runs while still catching event-sequence / payload-shape drift.
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"""
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events: list[dict] = []
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current: str | None = None
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for line in resp.iter_lines():
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if line.startswith("event:"):
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current = line[len("event:") :].strip()
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elif line.startswith("data:"):
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raw = line[len("data:") :].strip()
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try:
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data = json.loads(raw) if raw else {}
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except json.JSONDecodeError:
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data = {"_raw": raw[:200]}
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events.append({"event": current, "keys": sorted(data.keys()) if isinstance(data, dict) else None})
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return events
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def drive_gateway(app, *, prompt: str, context: dict) -> list[dict]:
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"""Register -> create thread -> POST /runs/stream; return SSE event shapes.
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This is the exact wire path the React frontend uses (LangGraph SDK), driven
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in-process via Starlette's TestClient with the real auth flow.
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"""
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from starlette.testclient import TestClient
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with TestClient(app) as client:
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reg = client.post(
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"/api/v1/auth/register",
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json={"email": f"e2e-{uuid.uuid4().hex[:8]}@example.com", "password": "very-strong-password-123"},
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)
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assert reg.status_code == 201, reg.text
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csrf = client.cookies.get("csrf_token")
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assert csrf, "register must set csrf_token cookie"
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thread_id = str(uuid.uuid4())
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created = client.post("/api/threads", json={"thread_id": thread_id, "metadata": {}}, headers={"X-CSRF-Token": csrf})
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assert created.status_code == 200, created.text
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body = {
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"assistant_id": "lead_agent",
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"input": {"messages": [{"role": "user", "content": prompt}]},
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"config": {"recursion_limit": 50},
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"context": context,
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"stream_mode": ["values"],
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}
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with client.stream("POST", f"/api/threads/{thread_id}/runs/stream", json=body, headers={"X-CSRF-Token": csrf}) as resp:
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assert resp.status_code == 200, resp.read().decode()
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return sse_event_shapes(resp)
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