Sunshine bf740ffa90
feat(auth): add personal access tokens for programmatic API access (#5041)
* feat(auth): add personal access tokens for programmatic API access (#4849)

Backend-first implementation of the PAT contract from #4849: show-once
dfp_ tokens bound to their owning user (AUTH_SOURCE_PAT,
is_internal=false), digest-only storage (migration 0017), strict
credential precedence (invalid Bearer is a 401, never cookie fallback),
CSRF double-submit skipped only for Bearer requests while
auth-endpoint origin checks still run, scopes intersecting the authz
route permissions, session-auth-only PAT management and password
changes, and throttled best-effort last_used_at stamps.

* fix(auth): harden PAT scope boundary and schema parity from adversarial review

Independent review of the initial draft found: (1) scopes only constrained
the threads/runs permission axis while admin routes treated a PAT as its
(possibly admin) owner — is_admin_user now rejects PAT callers outright
since no scope grants admin capability; (2) the model declared a column
UNIQUE constraint while migration 0017 created a named unique index, so
downgrade failed on create_all-bootstrapped DBs — both now use the named
unique index; (3) auth-disabled mode is an operator override and now stays
ahead of the Bearer check so a stray Authorization header cannot 401 an
E2E sandbox; plus wiring the previously-unused constants, bounding the
last_used_at stamp cache, and four new tests (middleware-level expiry,
expires_in_days, admin-capability rejection with session control, and the
auth-disabled precedence).

* docs(api): document personal access tokens for programmatic API access

* fix(auth): close PAT security boundaries from review (default-deny routes, extension admin suppression)

P1-1: scope intersection only constrains @require_permission routes, so
undecorated mutation routes (DELETE /api/memory, POST /api/agents, Lark
credential switching, channel config) accepted a PAT holding a single read
scope. AuthMiddleware now enforces a default-deny route policy in
auth/pat.py: PAT requests are admitted only to the thread/run lifecycle
routes the v1 scopes govern; everything else answers 403 regardless of
scopes. Session-cookie callers are unaffected.

P1-2: the extension principal resolver projected is_admin/roles from the
raw system_role, so an admin-owned PAT passed
deerflow_extension_api.require_admin on contributed routes despite the
documented no-admin guarantee. The projection is now PAT-aware and
suppresses every admin signal for PAT callers, mirroring
deps.is_admin_user.

Both fixes carry regression tests (route outside policy 403 + session
control; production resolver admin suppression), and API.md documents the
default-deny boundary.

* fix(auth): enforce PAT scopes on stateless run entry and harden decorator

Follow-up hardening from an independent audit of the P1 fixes:

- POST /api/runs/stream and /api/runs/wait were the only allowlisted run
  entrypoints without @require_permission, so a threads:read-only PAT
  could still start runs (same bug class as P1-1, now closed): both now
  carry @require_permission("runs", "create"). POST /api/threads and
  POST /api/threads/search gain threads:write / threads:read for the
  same reason. Authorization-disabled deployments see no change (the
  permission set resolves to all permissions).
- require_permission now binds the wrapped signature to locate a
  positionally-passed request before injecting the test stub, fixing
  'got multiple values for argument' on direct positional unit-test
  calls.
- API.md: the intro PAT example used GET /api/models, which the new
  default-deny policy 403s — replaced with GET /api/threads; the
  default-deny route list now spells out method sets.

Regression test: threads:read-only PAT is 403 on the decorated stateless
entry while a runs:create PAT passes.

* fix(auth): address review P2s (empty Authorization header, PAT name trimming, API example)

- CSRFMiddleware treats an explicitly empty Authorization header as
  present (is None), so an invalid credential always reaches
  AuthMiddleware's uniform 401 instead of a CSRF 403 that varies by
  method/CSRF state. Regression: empty-header request dies at auth.
- PATCreateRequest strips the name and rejects whitespace-only values
  before token generation; created names are stored trimmed.
- API.md intro PAT example now uses the implemented
  POST /api/threads/search endpoint (GET /api/threads does not exist).
- AGENTS.md trimmed back under the guidance soft budget after the
  upstream merge.

* fix(auth): tighten PAT route policy to implemented methods only

The allowlist admitted GET /api/threads, a method no router implements.
Pre-authorizing a dead method weakens the default-deny boundary: a
future GET collection route added without a permission decorator would
become PAT-reachable without an explicit policy change. Restrict the
rule to POST, fix the stale GET description in API.md's PAT
constraints, and document the default-deny boundary accurately in the
gateway AGENTS.md guidance (only the threads/runs allowlist is
PAT-reachable; every other authenticated route 403s PAT callers).

Audited every remaining rule against the mounted routers: all other
method+path entries map to real routes. Regression:
test_pat_policy_does_not_pre_authorize_unimplemented_methods.

* test(auth): guarantee the negative digest test mutates the token

token[:-1] + "X" is identical to the original whenever the generated
token already ends in X (1/62), making the negative digest assertion
fail intermittently. Choose the replacement character based on the
existing tail so the mutated token always differs.

* fix(auth): require runs:cancel for cancel-then-stream requests

stream_existing_run is gated at runs:read so action-less stream joins
work with read-only credentials, but its ?action=interrupt|rollback
branch cancels the run — a separate permission. A runs:read-only PAT
passed both the PAT route policy and the route decorator and could
interrupt or roll back an active run, bypassing the runs:cancel scope.

Decorators cannot express query-parameter-conditional permissions, so
the check lives in require_cancel_permission_when_action(), applied at
the top of the handler. Regression drives the real helper through the
production middleware: runs:read-only PAT + action is 403, the same
token joins action-less, runs:read+cancel passes, session control
unaffected.

* docs(changelog): add the PAT feature entry

* docs(readme): add personal access tokens section

Repo documentation-update policy requires user-facing features to
update README.md in the same changeset; the PAT feature previously
touched only backend/docs/API.md and the gateway AGENTS.md.

* fix(auth): require runs:cancel for mutating multitask strategies

All five run-creation entrypoints were gated only by runs:create, but
RunCreateRequest.multitask_strategy accepts interrupt/rollback and
start_run forwards it to create_or_reject, which terminates an
already-active run. A runs:create-only PAT could therefore kill an
existing run through a create request, bypassing runs:cancel.

Decorators cannot express body-parameter-conditional permissions, and
per-route checks leave the same hole for the next entrypoint, so the
gate lives in start_run itself — the single choke point every
run-creation path (HTTP routes and internal launchers) flows through.
Regenerate launches pass multitask_strategy="reject" and are
unaffected; requests without a stamped auth context (internal/test
compositions) skip the gate.

The check is the shared authz.require_cancel_permission_if primitive;
require_cancel_permission_when_action now delegates to it, so every
request dimension that carries cancel capability (query action, body
strategy) flows through one gate.

Regression drives the real middleware stack: runs:create-only PAT +
interrupt/rollback is 403 with the exact detail, reject (explicit and
default) stays available, runs:create+cancel passes, session control
unaffected; a source anchor pins the gate inside start_run.

* fix(runs): keep observer joins from applying creator cancel-on-disconnect

sse_consumer's finally block applied the record's on_disconnect=cancel
policy on ANY consumer's disconnect. The join surfaces (GET /join and
the action-less GET/POST stream join) feed it the existing RunRecord,
so anyone with thread read access — including a runs:read-only PAT —
could cancel a locally-owned running run simply by closing the SSE
connection, without runs:cancel. The policy expresses the creator's
intent for their own connection; an observer's disconnect must never
be read as that intent.

sse_consumer gains apply_on_disconnect (default True). The two join
surfaces pass False; the creating endpoints (thread-scoped and
stateless create-and-stream) keep the creator semantics unchanged.
wait_for_run_completion needs no change: its callers are creator-side
or post-explicit-cancel paths only.

Regression exercises a real generator close — the same machinery
Starlette drives on client disconnect — against the production
sse_consumer: creator stream disconnect cancels, observer join
disconnect does not; a wiring anchor pins both join call sites and the
creator defaults. API.md documents the cancel-capability constraint
(this fix plus the action/strategy gates) in PAT Constraints.

* test(auth): pin the multitask gate behaviorally; state wait invariant

Independent adversarial review of the round-5 fixes found the P1-a
regression only mirror-pinned: the source anchor could be satisfied by
a comment, and deleting the gate from start_run would not fail the
suite. This drives the production start_run directly — a create-only
auth context gets 403 with the exact detail for interrupt, and a
reject request with no cancel permission at all proceeds past the gate
(never a permission 403).

Also documents wait_for_run_completion's creator-side invariant
(every caller is the creating endpoint or post-explicit-cancel) so a
future observer wiring thinks twice before reusing it — the one-caller-
away variant of the observer-disconnect P1.

* docs(changelog): correct the PAT entry's digest and route-policy description

The entry said HMAC digests (the implementation stores SHA-256 digests,
as documented in API.md and pinned by the repository tests) and claimed
the route policy admits 'implemented stateless endpoints' (it admits
the thread/run lifecycle routes, narrowing further by scopes). Also
notes the cancel-capability gate now covering action and multitask
strategies.

* fix(auth): enumerate the PAT runs route policy per implemented subroute

The runs subtree rule was a GET|POST /runs(/.*)? wildcard — it
pre-authorized every current and future subroute under /runs, including
methods the router never implemented (e.g. GET /runs/stream), which is
the same latent default-deny weakening the threads collection rule was
tightened for: a future route added under /runs would become
PAT-reachable without an explicit policy change.

The wildcard is replaced with six segment-precise rules covering exactly
the 14 implemented method+path combinations; the {run_id} slot
necessarily matches any single segment, so the POST-only collection
names (stream, wait, regenerate, edit-regenerate) are excluded from the
GET run-id rule via negative lookahead — no dead method stays
pre-authorized. Behavior for implemented routes is unchanged.

test_pat_runs_policy_admits_exactly_the_mounted_routes derives the
expected set from the mounted thread_runs router instead of a
hand-maintained list: every implemented GET/POST route under /runs must
be admitted, routes in this router outside the subtree stay denied, and
representative unimplemented neighbors are denied — so adding a route
under /runs now fails CI until it is explicitly allowlisted, and a
removed route leaves a dead rule visible. API.md's PAT constraints list
the enumerated routes and drops a feedback mention that belonged to the
stateless /api/runs axis.

* docs(migration): add the 0017 renumbering coordination note to 0017

The PR's migration-coordination comment states each migration file
carries the note; the file did not. Adds it: numbering was generated
against main head 0016 alongside #5078 and #4843; whoever merges first
keeps the slot, the others renumber on rebase (revision/down_revision
plus the bootstrap head assertions).

* fix(auth): pad base62 tokens to a fixed 43-char width

int.from_bytes discards leading zero bytes, so the unpadded encoder
returned a variable-length body — empty for all-zero input, and shorter
than 40 characters for any draw below 62**39 (~1 in 14.5M), leaving
test_generate_pat_token_format probabilistically flaky and the token
body without stable width (review round 6, P3).

_base62 now left-pads with "0" to _base62_width(len(data)) — the exact
integer digit count (62^43 > 2^256 > 62^42, so 43 for 32 bytes). The
format test asserts the exact fixed width instead of a probabilistic
floor, and a new unit test pins the all-zero, leading-zero-byte, and
max-value edges deterministically.
2026-08-29 23:50:45 +08:00

911 lines
40 KiB
Python

import asyncio
import logging
from collections.abc import AsyncGenerator
from contextlib import asynccontextmanager
from deerflow_extension_api import EXTENSION_PRINCIPAL_RESOLVER_KEY, ExtensionPrincipal
from fastapi import FastAPI
from fastapi.middleware.cors import CORSMiddleware
from app.gateway.auth_disabled import AUTH_SOURCE_INTERNAL, AUTH_SOURCE_PAT, warn_if_auth_disabled_enabled
from app.gateway.auth_middleware import AuthMiddleware
from app.gateway.browser_capability import ensure_browser_runtime_available
from app.gateway.config import get_gateway_config
from app.gateway.csrf_middleware import CORS_EXPOSED_HEADERS, CSRFMiddleware, get_configured_cors_origins
from app.gateway.deps import langgraph_runtime
from app.gateway.routers import (
agents,
artifacts,
assistants_compat,
auth,
browser,
channel_connections,
channels,
console,
features,
feedback,
github_webhooks,
input_polish,
integrations,
mcp,
mcp_tasks,
memory,
models,
runs,
scheduled_tasks,
skills,
subagent_batches,
subagents,
suggestions,
thread_runs,
threads,
uploads,
)
from app.gateway.trace_middleware import TraceMiddleware, resolve_trace_enabled
from deerflow.config import app_config as deerflow_app_config
from deerflow.logging_config import DEFAULT_LOG_DATE_FORMAT, DEFAULT_LOG_FORMAT, configure_logging
from deerflow.tracing.monocle import setup_monocle_tracing_if_enabled
from deerflow.uploads.manager import cleanup_stale_upload_staging_files
AppConfig = deerflow_app_config.AppConfig
get_app_config = deerflow_app_config.get_app_config
# Default logging; lifespan overrides from config.yaml log_level.
logging.basicConfig(
level=logging.INFO,
format=DEFAULT_LOG_FORMAT,
datefmt=DEFAULT_LOG_DATE_FORMAT,
)
logger = logging.getLogger(__name__)
# Upper bound (seconds) each lifespan shutdown hook is allowed to run.
# Bounds worker exit time so uvicorn's reload supervisor does not keep
# firing signals into a worker that is stuck waiting for shutdown cleanup.
_SHUTDOWN_HOOK_TIMEOUT_SECONDS = 5.0
# The retrieval index is derived state, so shutdown only waits briefly for its
# startup rebuild. The canonical memory flush keeps its full configured budget.
_RETRIEVAL_WARM_SHUTDOWN_TIMEOUT_SECONDS = 1.0
async def _ensure_admin_user(app: FastAPI) -> None:
"""Startup hook: handle first boot and migrate orphan threads otherwise.
After admin creation, migrate orphan threads from the LangGraph
store (metadata.user_id unset) to the admin account. This is the
"no-auth → with-auth" upgrade path: users who ran DeerFlow without
authentication have existing LangGraph thread data that needs an
owner assigned.
First boot (no admin exists):
- Does NOT create any user accounts automatically.
- The operator must visit ``/setup`` to create the first admin.
Subsequent boots (admin already exists):
- Runs the one-time "no-auth → with-auth" orphan thread migration for
existing LangGraph thread metadata that has no user_id.
No SQL persistence migration is needed: the four user_id columns
(threads_meta, runs, run_events, feedback) only come into existence
alongside the auth module via create_all, so freshly created tables
never contain NULL-owner rows.
"""
from sqlalchemy import select
from app.gateway.deps import get_local_provider
from deerflow.persistence.engine import get_session_factory
from deerflow.persistence.user.model import UserRow
try:
provider = get_local_provider()
except RuntimeError:
# Auth persistence may not be initialized in some test/boot paths.
# Skip admin migration work rather than failing gateway startup.
logger.warning("Auth persistence not ready; skipping admin bootstrap check")
return
sf = get_session_factory()
if sf is None:
return
admin_count = await provider.count_admin_users()
if admin_count == 0:
logger.info("=" * 60)
logger.info(" First boot detected — no admin account exists.")
logger.info(" Visit /setup to complete admin account creation.")
logger.info("=" * 60)
return
# Admin already exists — run orphan thread migration for any
# LangGraph thread metadata that pre-dates the auth module.
async with sf() as session:
stmt = select(UserRow).where(UserRow.system_role == "admin").limit(1)
row = (await session.execute(stmt)).scalar_one_or_none()
if row is None:
return # Should not happen (admin_count > 0 above), but be safe.
admin_id = str(row.id)
# LangGraph store orphan migration — non-fatal.
# This covers the "no-auth → with-auth" upgrade path for users
# whose existing LangGraph thread metadata has no user_id set.
store = getattr(app.state, "store", None)
if store is not None:
try:
migrated = await _migrate_orphaned_threads(store, admin_id)
if migrated:
logger.info("Migrated %d orphan LangGraph thread(s) to admin", migrated)
except Exception:
logger.exception("LangGraph thread migration failed (non-fatal)")
async def _iter_store_items(store, namespace, *, page_size: int = 500):
"""Paginated async iterator over a LangGraph store namespace.
Replaces the old hardcoded ``limit=1000`` call with a cursor-style
loop so that environments with more than one page of orphans do
not silently lose data. Terminates when a page is empty OR when a
short page arrives (indicating the last page).
"""
offset = 0
while True:
batch = await store.asearch(namespace, limit=page_size, offset=offset)
if not batch:
return
for item in batch:
yield item
if len(batch) < page_size:
return
offset += page_size
async def _migrate_orphaned_threads(store, admin_user_id: str) -> int:
"""Migrate LangGraph store threads with no user_id to the given admin.
Uses cursor pagination so all orphans are migrated regardless of
count. Returns the number of rows migrated.
"""
migrated = 0
async for item in _iter_store_items(store, ("threads",)):
metadata = item.value.get("metadata", {})
if not metadata.get("user_id"):
metadata["user_id"] = admin_user_id
item.value["metadata"] = metadata
await store.aput(("threads",), item.key, item.value)
migrated += 1
return migrated
async def _warm_memory_retrieval(manager) -> None:
"""Rebuild the derived retrieval index without delaying Gateway readiness."""
try:
rebuilt = await asyncio.to_thread(manager.warm_retrieval)
if rebuilt:
logger.info("Memory retrieval index rebuilt successfully")
else:
logger.warning("Memory retrieval index rebuild failed; scoped searches will retry lazily")
except Exception:
logger.warning("Memory retrieval index rebuild skipped", exc_info=True)
@asynccontextmanager
async def lifespan(app: FastAPI) -> AsyncGenerator[None, None]:
"""Application lifespan handler."""
# Load config and check necessary environment variables at startup.
# `startup_config` is a local snapshot used only for one-shot bootstrap
# work (logging level, langgraph_runtime engines, channels). Request-time
# config resolution always routes through `get_app_config()` in
# `app/gateway/deps.py::get_config()` so `config.yaml` edits become
# visible without a process restart. We deliberately do NOT cache this
# snapshot on `app.state` to keep that contract enforceable.
try:
startup_config = get_app_config()
from deerflow.config.subagent_batches_config import SubagentBatchesConfig
from deerflow.config.subagent_runtime_config import SubagentRuntimeConfig
from deerflow.subagents.capacity import configure_subagent_execution_capacity
subagent_runtime_config = getattr(startup_config, "subagent_runtime", None)
if not isinstance(subagent_runtime_config, SubagentRuntimeConfig):
subagent_runtime_config = SubagentRuntimeConfig()
subagent_batches_config = getattr(startup_config, "subagent_batches", None)
if not isinstance(subagent_batches_config, SubagentBatchesConfig):
subagent_batches_config = SubagentBatchesConfig()
configure_subagent_execution_capacity(subagent_runtime_config)
configure_logging(startup_config)
ensure_browser_runtime_available(startup_config)
logger.info("Configuration loaded successfully")
warn_if_auth_disabled_enabled()
except Exception as e:
error_msg = f"Failed to load configuration during gateway startup: {e}"
logger.exception(error_msg)
raise RuntimeError(error_msg) from e
config = get_gateway_config()
logger.info(f"Starting API Gateway on {config.host}:{config.port}")
from deerflow.skills.projection import ensure_public_skill_projection
public_projection_ready = await asyncio.to_thread(ensure_public_skill_projection, app_config=startup_config)
if public_projection_ready:
logger.info("Ensured the public skill projection; user projections repair lazily on sandbox acquire")
# Agent observability (Monocle). Off by default; enabled with
# MONOCLE_TRACING. Initialized here at startup — not at import time — so a
# plain `import deerflow.agents` never installs a process-global tracer.
# Unlike LangSmith/Langfuse, whose validation failures abort the agent run,
# a bad Monocle config only logs: the Gateway keeps serving without tracing.
try:
setup_monocle_tracing_if_enabled()
except Exception: # observability must never break startup
logger.exception("Monocle tracing setup failed; continuing without it")
# Rebuild the derived memory retrieval index in the background. Scoped
# searches remain correct while this runs because DeerMem lazily rebuilds
# the requested scope when the full warm-up has not completed yet.
retrieval_warm_task: asyncio.Task[None] | None = None
try:
from deerflow.agents.memory import get_memory_manager
if startup_config.memory.enabled:
manager = await asyncio.to_thread(get_memory_manager)
warm_retrieval = getattr(manager, "warm_retrieval", None)
if callable(warm_retrieval):
retrieval_warm_task = asyncio.create_task(
_warm_memory_retrieval(manager),
name="memory-retrieval-warm-up",
)
else:
logger.info("Memory is disabled; skipping retrieval index rebuild")
except Exception:
logger.warning("Memory retrieval index rebuild skipped", exc_info=True)
# Pre-warm tiktoken encoding cache so the first memory-injection request
# never blocks on the BPE data download (which hits an OpenAI/Azure URL
# that may be unreachable in restricted networks — see issue #3402).
# Warm-up runs via the manager's `warm()` tier-3 hook. DeerMem.warm re-checks
# token_counting=="char" and returns early, so char-mode backends never touch
# tiktoken (avoids even the 5s probe in network-restricted deployments - see
# issue #3429). A backend with nothing to warm (e.g. noop) returns None from
# the base default -- log "skipping" instead of the misleading "warmed
# successfully" so the log reflects what actually happened.
try:
from deerflow.agents.memory import get_memory_manager
manager = await asyncio.to_thread(get_memory_manager)
warmed = await asyncio.wait_for(
asyncio.to_thread(manager.warm),
timeout=5,
)
if warmed is None:
logger.info("Memory backend %s has nothing to warm; skipping tiktoken warm-up", type(manager).__name__)
elif warmed:
logger.info("tiktoken encoding cache warmed successfully")
else:
logger.warning("tiktoken encoding cache warm-up failed; token counting will use character-based fallback until tiktoken loads successfully")
except TimeoutError:
logger.warning("tiktoken encoding cache warm-up timed out; token counting will use character-based fallback until tiktoken loads successfully")
except Exception:
logger.warning("tiktoken warm-up skipped", exc_info=True)
try:
removed_upload_staging_files = await asyncio.to_thread(cleanup_stale_upload_staging_files)
if removed_upload_staging_files:
logger.info("Removed %d stale upload staging file(s)", removed_upload_staging_files)
except Exception:
logger.warning("Upload staging file cleanup skipped", exc_info=True)
# Initialize LangGraph runtime components (StreamBridge, RunManager, checkpointer, store)
async with langgraph_runtime(app, startup_config):
logger.info("LangGraph runtime initialised")
# Check admin bootstrap state and migrate orphan threads after admin exists.
# Must run AFTER langgraph_runtime so app.state.store is available for thread migration
await _ensure_admin_user(app)
# Start IM channel service if any channels are configured
try:
from app.channels.service import start_channel_service
# Closure over `app` (mirrors ScheduledTaskService's `launch_run`
# below) rather than resolving `app.state.stream_bridge` here
# directly: `stream_bridge` is a STARTUP_ONLY_FIELDS singleton set
# once, above, by `langgraph_runtime(app, startup_config)`, so
# either shape is safe by construction — the closure is just the
# more defensive/consistent-with-precedent form, and it is what
# ChannelManager's follow-up-drain watcher (issue #4121 Slice 2)
# uses to reach the same StreamBridge every other run consumer
# goes through `get_stream_bridge(request)` for.
channel_service = await start_channel_service(
startup_config,
get_stream_bridge=lambda: getattr(app.state, "stream_bridge", None),
)
logger.info("Channel service started: %s", channel_service.get_status())
except Exception:
logger.exception("No IM channels configured or channel service failed to start")
try:
from app.gateway.services import launch_scheduled_thread_run
from app.scheduler import ScheduledTaskService
if getattr(app.state, "scheduled_task_repo", None) is not None and getattr(app.state, "scheduled_task_run_repo", None) is not None:
scheduled_task_service = ScheduledTaskService(
task_repo=app.state.scheduled_task_repo,
task_run_repo=app.state.scheduled_task_run_repo,
launch_run=lambda **kwargs: launch_scheduled_thread_run(app=app, **kwargs),
poll_interval_seconds=startup_config.scheduler.poll_interval_seconds,
lease_seconds=startup_config.scheduler.lease_seconds,
max_concurrent_runs=startup_config.scheduler.max_concurrent_runs,
queue_timeout_seconds=startup_config.scheduler.queue_timeout_seconds,
multi_instance=startup_config.scheduler.multi_instance,
run_lease_grace_seconds=startup_config.run_ownership.grace_seconds,
)
app.state.scheduled_task_service = scheduled_task_service
if startup_config.scheduler.enabled:
await scheduled_task_service.start()
except Exception:
logger.exception("Failed to initialize scheduled task service")
from app.gateway.services import launch_mcp_task_notification_run
from app.mcp_tasks import McpTaskService
from deerflow.config.extensions_config import ExtensionsConfig
from deerflow.config.mcp_tasks_config import McpTasksConfig
from deerflow.mcp.task_tool_caller import McpTaskToolCaller
from deerflow.mcp.tasks import (
ORDINARY_MCP_TASK_DRIVER,
McpTaskDriverRegistry,
OrdinaryMcpTaskDriver,
)
from deerflow.mcp.tasks.runtime import (
configured_task_toolset_count,
set_mcp_task_config_snapshot,
set_mcp_task_submitter,
validate_mcp_task_runtime_configuration,
)
task_extensions_config = ExtensionsConfig.from_file()
mcp_tasks_config = getattr(startup_config, "mcp_tasks", McpTasksConfig())
mcp_task_repo = getattr(app.state, "mcp_task_repo", None)
app.state.mcp_tasks_available = False
set_mcp_task_submitter(None)
set_mcp_task_config_snapshot(task_extensions_config)
validate_mcp_task_runtime_configuration(
mcp_tasks_config=mcp_tasks_config,
extensions_config=task_extensions_config,
repository_available=mcp_task_repo is not None,
)
if mcp_task_repo is not None:
mcp_task_drivers = McpTaskDriverRegistry()
if configured_task_toolset_count(task_extensions_config):
mcp_task_drivers.register(
ORDINARY_MCP_TASK_DRIVER,
OrdinaryMcpTaskDriver(McpTaskToolCaller(task_extensions_config)),
)
mcp_task_service = McpTaskService(
repository=mcp_task_repo,
drivers=mcp_task_drivers,
poll_interval_seconds=mcp_tasks_config.poll_interval_seconds,
lease_seconds=mcp_tasks_config.lease_seconds,
max_concurrent_polls=mcp_tasks_config.max_concurrent_polls,
max_poll_backoff_seconds=mcp_tasks_config.max_poll_backoff_seconds,
input_required_poll_interval_seconds=mcp_tasks_config.input_required_poll_interval_seconds,
tracking_degraded_after_errors=mcp_tasks_config.tracking_degraded_after_errors,
max_result_bytes=mcp_tasks_config.max_result_bytes,
result_preview_max_chars=mcp_tasks_config.result_preview_max_chars,
launch_notification=lambda **kwargs: launch_mcp_task_notification_run(app=app, **kwargs),
get_run=lambda run_id, **kwargs: app.state.run_manager.get(
run_id,
raise_on_store_error=True,
**kwargs,
),
)
app.state.mcp_task_drivers = mcp_task_drivers
app.state.mcp_task_service = mcp_task_service
if mcp_tasks_config.enabled:
await mcp_task_service.start()
set_mcp_task_submitter(mcp_task_service)
app.state.mcp_tasks_available = True
from app.subagent_batches import SubagentBatchService
from deerflow.subagents.batch_runtime import set_subagent_batch_submitter
batch_repo = getattr(app.state, "subagent_batch_repo", None)
app.state.subagent_batches_available = False
set_subagent_batch_submitter(None)
if subagent_batches_config.enabled and batch_repo is None:
raise RuntimeError("subagent_batches.enabled requires database.backend sqlite or postgres")
if batch_repo is not None:
batch_service = SubagentBatchService(
repository=batch_repo,
config=subagent_batches_config,
runtime_config=subagent_runtime_config,
)
app.state.subagent_batch_service = batch_service
if subagent_batches_config.enabled:
await batch_service.start()
set_subagent_batch_submitter(batch_service)
app.state.subagent_batches_available = True
yield
try:
await auth.close_oidc_service()
except Exception:
logger.exception("Failed to close OIDC service")
# Stop channel service on shutdown (bounded to prevent worker hang)
try:
from app.channels.service import stop_channel_service
await asyncio.wait_for(
stop_channel_service(),
timeout=_SHUTDOWN_HOOK_TIMEOUT_SECONDS,
)
except TimeoutError:
logger.warning(
"Channel service shutdown exceeded %.1fs; proceeding with worker exit.",
_SHUTDOWN_HOOK_TIMEOUT_SECONDS,
)
except Exception:
logger.exception("Failed to stop channel service")
if getattr(app.state, "scheduled_task_service", None) is not None:
try:
await app.state.scheduled_task_service.stop()
except Exception:
logger.exception("Failed to stop scheduled task service")
if getattr(app.state, "mcp_task_service", None) is not None:
app.state.mcp_tasks_available = False
try:
await app.state.mcp_task_service.stop()
except Exception:
logger.exception("Failed to stop MCP task service")
finally:
from deerflow.mcp.tasks.runtime import set_mcp_task_submitter
set_mcp_task_submitter(None)
from deerflow.mcp.tasks.runtime import set_mcp_task_config_snapshot
set_mcp_task_config_snapshot(None)
if getattr(app.state, "subagent_batch_service", None) is not None:
app.state.subagent_batches_available = False
try:
await app.state.subagent_batch_service.stop()
except Exception:
logger.exception("Failed to stop subagent batch service")
finally:
from deerflow.subagents.batch_runtime import set_subagent_batch_submitter
set_subagent_batch_submitter(None)
try:
from deerflow.community.browser_automation import get_browser_session_manager
closed = await asyncio.wait_for(
get_browser_session_manager().close_all_sessions(),
timeout=_SHUTDOWN_HOOK_TIMEOUT_SECONDS,
)
if closed:
logger.info("Closed %d browser session(s)", closed)
except TimeoutError:
logger.warning(
"Browser session shutdown exceeded %.1fs; proceeding with worker exit.",
_SHUTDOWN_HOOK_TIMEOUT_SECONDS,
)
except Exception:
logger.exception("Failed to close browser sessions")
# Drain the memory backend's pending-update buffer before the worker
# exits (best-effort, bounded). IM channels and the scheduler are
# already stopped above, so no new IM/scheduler updates arrive during
# the drain; the LangGraph runtime / in-flight HTTP requests can still
# complete memory enqueues in a narrow window, but anything added after
# the drain copies the buffer only resets the debounce Timer
# (best-effort, same as today).
#
# No host-level pending/processing guard: ``shutdown_flush``
# short-circuits on a truly idle buffer (returns True immediately), so
# calling it unconditionally is cheap and keeps the in-flight-worker
# race entirely inside the backend (where the buffer lives) -- the host
# cannot "forget" that case the way a ``pending_count > 0``-only guard
# would (review #6 on the original PR).
#
# K8s caveat: ``shutdown_flush_timeout_seconds`` must fit inside the
# pod's ``terminationGracePeriodSeconds`` (channel stop + browser
# session close + the brief retrieval-warm wait + this drain + buffer),
# set on the gateway Helm deployment -- or K8s SIGKILLs the drain
# mid-flight and the loss this is fixing is silently re-introduced.
# The retrieval index is derived from canonical memory files, so its
# wait is independently capped and never consumes the flush budget.
retrieval_warm_finished = True
if retrieval_warm_task is not None and not retrieval_warm_task.done():
try:
await asyncio.wait_for(
asyncio.shield(retrieval_warm_task),
timeout=min(
_RETRIEVAL_WARM_SHUTDOWN_TIMEOUT_SECONDS,
startup_config.memory.shutdown_flush_timeout_seconds,
),
)
except TimeoutError:
retrieval_warm_finished = False
logger.warning("Memory retrieval index rebuild is still running; leaving its connection open during shutdown")
manager = None
try:
# Memory shutdown runs on a worker thread and can trigger detached
# system-model callbacks. Stop accepting those callbacks before
# flushing, while keeping the registered loop alive for awaited
# task hooks until langgraph_runtime drains runs and subagents.
from deerflow.extensions.notify import suspend_extension_system_observations
suspend_extension_system_observations()
except Exception:
logger.debug("Failed to suspend extension system observations (non-fatal)", exc_info=True)
try:
app_cfg = get_app_config()
if app_cfg.memory.enabled:
from deerflow.agents.memory import get_memory_manager
manager = await asyncio.to_thread(get_memory_manager)
flush_timeout = app_cfg.memory.shutdown_flush_timeout_seconds
completed = await asyncio.to_thread(manager.shutdown_flush, flush_timeout)
if completed:
logger.info("Memory queue flush completed within %.1fs", flush_timeout)
else:
logger.warning(
"Memory queue flush did not finish within %.1fs; remaining updates may be lost",
flush_timeout,
)
except Exception:
logger.exception("Failed to flush memory queue on shutdown")
finally:
close = getattr(manager, "close", None)
if callable(close) and retrieval_warm_finished:
try:
await asyncio.to_thread(close)
except Exception:
logger.exception("Failed to close memory backend on shutdown")
logger.info("Shutting down API Gateway")
def create_app() -> FastAPI:
"""Create and configure the FastAPI application.
Returns:
Configured FastAPI application instance.
"""
config = get_gateway_config()
docs_url = "/docs" if config.enable_docs else None
redoc_url = "/redoc" if config.enable_docs else None
openapi_url = "/openapi.json" if config.enable_docs else None
app = FastAPI(
title="DeerFlow API Gateway",
description="""
## DeerFlow API Gateway
API Gateway for DeerFlow - A LangGraph-based AI agent backend with sandbox execution capabilities.
### Features
- **Models Management**: Query and retrieve available AI models
- **MCP Configuration**: Manage Model Context Protocol (MCP) server configurations
- **Memory Management**: Access and manage global memory data for personalized conversations
- **Skills Management**: Query and manage skills and their enabled status
- **Artifacts**: Access thread artifacts and generated files
- **Health Monitoring**: System health check endpoints
### Architecture
LangGraph-compatible requests are routed through nginx to this gateway.
This gateway provides runtime endpoints for agent runs plus custom endpoints for models, MCP configuration, skills, and artifacts.
""",
version="0.1.0",
lifespan=lifespan,
docs_url=docs_url,
redoc_url=redoc_url,
openapi_url=openapi_url,
openapi_tags=[
{
"name": "models",
"description": "Operations for querying available AI models and their configurations",
},
{
"name": "mcp",
"description": "Manage Model Context Protocol (MCP) server configurations",
},
{
"name": "memory",
"description": "Access and manage global memory data for personalized conversations",
},
{
"name": "skills",
"description": "Manage skills and their configurations",
},
{
"name": "artifacts",
"description": "Access and download thread artifacts and generated files",
},
{
"name": "uploads",
"description": "Upload and manage user files for threads",
},
{
"name": "threads",
"description": "Manage DeerFlow thread-local filesystem data",
},
{
"name": "agents",
"description": "Create and manage custom agents with per-agent config and prompts",
},
{
"name": "suggestions",
"description": "Generate follow-up question suggestions for conversations",
},
{
"name": "input-polish",
"description": "Polish composer draft input before sending",
},
{
"name": "channels",
"description": "Manage IM channel integrations (Feishu, Slack, Telegram)",
},
{
"name": "assistants-compat",
"description": "LangGraph Platform-compatible assistants API (stub)",
},
{
"name": "runs",
"description": "LangGraph Platform-compatible runs lifecycle (create, stream, cancel)",
},
{
"name": "health",
"description": "Health check and system status endpoints",
},
],
)
# Auth: reject unauthenticated requests to non-public paths (fail-closed safety net)
app.add_middleware(AuthMiddleware)
# Give contributed routers a neutral way to ask "is this caller an admin"
# without importing app.gateway.deps, which would pin them to an
# unpublished internal layer and defeat independent distribution. The
# resolver mirrors require_admin_user's primary path (deps.py): it reads
# request.state.user, which AuthMiddleware stamps before any router runs,
# rather than the async get_current_user_from_request/get_optional_user_from_request
# accessors that exist for tests and alternative ASGI compositions. Staying
# synchronous keeps resolve_principal/require_admin usable from both sync
# and async route handlers.
def _resolve_extension_principal(request):
"""Project the host's auth context into the neutral extension shape.
Deliberately a projection, not a handle: an extension gets the
questions it may ask (who, is that an admin, and what role they
hold), not the host's AuthContext, which would pin every extension to
its internals.
"""
user = getattr(request.state, "user", None)
if user is None:
return None
system_role = getattr(user, "system_role", None)
# PAT credentials never carry admin capability (#5041): suppress every
# admin signal — both ``is_admin`` and the ``admin`` role — so an
# admin-owned PAT cannot regain admin through extension-side
# require_admin, mirroring deps.is_admin_user's PAT guard.
auth_source = getattr(request.state, "auth_source", None)
is_pat = auth_source == AUTH_SOURCE_PAT
is_admin = system_role == "admin" and not is_pat
roles = () if is_pat and system_role == "admin" else (system_role,) if isinstance(system_role, str) and system_role else ()
return ExtensionPrincipal(
user_id=str(user.id),
is_admin=is_admin,
is_internal=auth_source == AUTH_SOURCE_INTERNAL,
# The host's only role concept is the single system_role column
# (e.g. "admin", "user") — there is no multi-role system to
# project, so a set role becomes the one-element tuple rather
# than reading a "roles" attribute the user model never had.
roles=roles,
)
setattr(app.state, EXTENSION_PRINCIPAL_RESOLVER_KEY, _resolve_extension_principal)
# CSRF: Double Submit Cookie pattern for state-changing requests
app.add_middleware(CSRFMiddleware)
# CORS: the unified nginx endpoint is same-origin by default. Split-origin
# browser clients must opt in with this explicit Gateway allowlist so CORS
# and CSRF origin checks share the same source of truth. They also need the
# run id the Gateway returns in a non-safelisted response header; without
# exposing it the SDK never reports a created run, so a new thread keeps its
# placeholder route and every action gated on an established thread stays
# hidden until the page is reloaded.
cors_origins = sorted(get_configured_cors_origins())
if cors_origins:
app.add_middleware(
CORSMiddleware,
allow_origins=cors_origins,
allow_credentials=True,
allow_methods=["*"],
allow_headers=["*"],
expose_headers=list(CORS_EXPOSED_HEADERS),
)
# Request trace correlation: when logging.enhance.enabled=true, bind one
# trace id per Gateway HTTP request and write it to response start headers.
# `logging` is registered as restart-required (see reload_boundary.py) so we
# snapshot the flag from the startup AppConfig instead of reading live; a
# runtime toggle would otherwise leave the log formatter (installed once by
# configure_logging() at lifespan startup) out of sync with the middleware.
app.add_middleware(TraceMiddleware, enabled=_resolve_trace_enabled_for_app_construction())
# Python extensions load once while the Gateway app is constructed. Agent
# middleware builders consume the same immutable set through the process
# singleton; app.state exposes it to the Gateway runtime.
from deerflow.extensions import (
EMPTY_EXTENSIONS,
ExtensionLoadError,
initialize_runtime_diagnostics,
load_extensions,
record_runtime_diagnostics,
set_loaded_extensions,
)
# Resolving the configured plugin list is deliberately outside the
# fail-open guard below: a config.yaml that exists but cannot be parsed or
# validated is a configuration failure, not an extension failure. Reporting
# it as the latter would silently drop a `required: true` extension instead
# of failing the boot. Only an absent config.yaml is tolerated, mirroring
# _resolve_trace_enabled_for_app_construction() — create_app() runs at
# import time, and lifespan still performs strict config loading before
# serving.
try:
configured_plugins = get_app_config().plugins
except FileNotFoundError:
logger.debug("config.yaml not found while constructing Gateway app; loading no extensions for this app instance")
configured_plugins = []
try:
loaded_extensions, extension_diagnostics = load_extensions(configured_plugins)
except ExtensionLoadError:
# `required: true` makes the extension part of the startup contract.
# Booting without it would silently change configured behaviour.
raise
except Exception:
logger.exception("Extension loading failed; continuing with no extensions")
loaded_extensions, extension_diagnostics = EMPTY_EXTENSIONS, []
set_loaded_extensions(loaded_extensions)
app.state.extensions = loaded_extensions
app.state.extension_diagnostics = initialize_runtime_diagnostics(extension_diagnostics)
# Include routers
# Models API is mounted at /api/models
app.include_router(models.router)
# Features API is mounted at /api/features
app.include_router(features.router)
# Console API (cross-thread observability) is mounted at /api/console
app.include_router(console.router)
# MCP API is mounted at /api/mcp
app.include_router(mcp.router)
# Durable MCP tasks are scoped to their owning thread.
app.include_router(mcp_tasks.router)
app.include_router(subagent_batches.router)
# Memory API is mounted at /api/memory
app.include_router(memory.router)
# Skills API is mounted at /api/skills
app.include_router(skills.router)
# First-party integrations API is mounted at /api/integrations
app.include_router(integrations.router)
# Artifacts API is mounted at /api/threads/{thread_id}/artifacts
app.include_router(artifacts.router)
# Browser API is mounted at /api/threads/{thread_id}/browser
app.include_router(browser.router)
# Uploads API is mounted at /api/threads/{thread_id}/uploads
app.include_router(uploads.router)
# Thread cleanup API is mounted at /api/threads/{thread_id}
app.include_router(threads.router)
# Scheduled tasks API is mounted at /api/scheduled-tasks
app.include_router(scheduled_tasks.router)
# Agents API is mounted at /api/agents
app.include_router(agents.router)
# Deployment-level subagent catalog and admin management.
app.include_router(subagents.router)
# Suggestions API is mounted at /api/threads/{thread_id}/suggestions
app.include_router(suggestions.router)
# Input polishing API is mounted at /api/input-polish
app.include_router(input_polish.router)
# User-facing IM channel connection API is mounted at /api/channels
app.include_router(channel_connections.router)
# Channels API is mounted at /api/channels
app.include_router(channels.router)
# Assistants compatibility API (LangGraph Platform stub)
app.include_router(assistants_compat.router)
# Auth API is mounted at /api/v1/auth
app.include_router(auth.router)
# Feedback API is mounted at /api/threads/{thread_id}/runs/{run_id}/feedback
app.include_router(feedback.router)
# Thread Runs API (LangGraph Platform-compatible runs lifecycle)
app.include_router(thread_runs.router)
# Stateless Runs API (stream/wait without a pre-existing thread)
app.include_router(runs.router)
# GitHub webhooks API is mounted at /api/webhooks/github
# Exempt from auth and CSRF middleware (see auth_middleware._PUBLIC_PATH_PREFIXES
# and csrf_middleware.should_check_csrf); authenticity is enforced via the
# X-Hub-Signature-256 HMAC against GITHUB_WEBHOOK_SECRET.
# Including this router transitively imports app.gateway.github, which
# registers the GitHub channel's ChannelRunPolicy as an import side-effect.
#
# Fail-closed: only mount the route when a webhook secret is configured
# (or when the explicit DEER_FLOW_ALLOW_UNVERIFIED_GITHUB_WEBHOOKS=1
# dev opt-in is set). A misconfigured deployment without a secret cannot
# serve forged deliveries because the URL responds 404 — there is no
# handler to reach.
if github_webhooks.is_route_enabled():
app.include_router(github_webhooks.router)
logger.info("GitHub webhooks route mounted at /api/webhooks/github")
else:
logger.warning("GitHub webhooks route NOT mounted: GITHUB_WEBHOOK_SECRET unset and DEER_FLOW_ALLOW_UNVERIFIED_GITHUB_WEBHOOKS not set. /api/webhooks/github will respond 404. Configure either env var to enable the route.")
@app.get("/health", tags=["health"])
async def health_check() -> dict[str, str]:
"""Health check endpoint.
Returns:
Service health status information.
"""
return {"status": "healthy", "service": "deer-flow-gateway"}
# Extension routes are deliberately last: FastAPI/Starlette dispatches in
# registration order, so every host route (including conditional routes
# and /health) keeps precedence. Definite shadows are rejected with an
# attributed diagnostic while unrelated extension routers still mount.
from deerflow.extensions.gateway import include_contributed_routers
record_runtime_diagnostics(include_contributed_routers(app, loaded_extensions))
return app
def _resolve_trace_enabled_for_app_construction() -> bool:
"""Resolve the trace middleware flag without making imports require config.yaml."""
try:
return resolve_trace_enabled(get_app_config())
except FileNotFoundError:
# Startup lifespan still performs strict config loading before serving.
logger.debug("config.yaml not found while constructing Gateway app; TraceMiddleware disabled for this app instance")
return False
# Create app instance for uvicorn
app = create_app()