Files
roboco/tests/unit/services/test_task.py
T
1114ee5ea0 [77719d3f] A2A team telemetry: coordination event notifications for 5 event types (#477)
* [13d03d5c] Add 5 coordination-event notification producers + wire at chokepoints (#472) (#474)

* [13d03d5c] Add 5 coordination-event notification producer methods

* [13d03d5c] Wire reassignment/collision/unblock/dependency-revival notifications

* [13d03d5c] Wire stale-claim-reaped notification into orchestrator reaper

* [13d03d5c] fix(runtime): guard reaper's UUID annotation + defensive attr access

The stale-claim-reaped notification hook added a runtime-unquoted
`UUID` type annotation (only imported under TYPE_CHECKING, so the
module raised NameError on import) and a direct `t.assigned_to`
attribute access that crashes against the minimal test doubles the
existing reaper test suite uses. Quote the annotation and switch to
getattr-defensive access, matching `_assignee_is_provider_parked`'s
existing convention in the same file.

* [13d03d5c] test(notification): unit coverage for 5 coordination-event producers

One test per new send_* method (reassignment, collision-sequencing,
unblock, dependency-revival, stale-claim-reaped) following the
existing _FakeDb/_patch_db_context pattern, asserting subject/body/
related_task_id/priority/recipient-count, plus a no-recipients no-op
case for reassignment.

* [13d03d5c] test(task): prove reassign + unblock don't double-fire notifications

Two chokepoint-level tests mocking NotificationService at its defining
module: a repeated reassign() to the same already-current target skips
the notification (guarded by comparing against the pre-mutation
assignee), and a repeated unblock() on the same task only notifies
once since the second call short-circuits on the status!=BLOCKED
guard.

* [13d03d5c] style(task): ruff format the collision-sequencing wiring block

No behavior change — reflows the newly-added _notify_collision_sequencing
call site to satisfy ruff format's line-length rules.

* [13d03d5c] docs(backend): add coordination-event notification producers guide

Documented the 5 new NotificationService producers (reassignment, collision-sequencing,
unblock, dependency-revival, stale-claim-reaped) with fire conditions, double-fire
prevention mechanisms, and implementation patterns. Updated backend README to link the
new services guide for developers integrating new coordination events.

---------

Co-authored-by: Backend Developer 1 <be-dev-1@roboco.tech>
Co-authored-by: Backend Documenter <be-doc@roboco.tech>

* [3ee8150b] Frontend: render coordination-event notifications + e2e smoke coverage (#475)

* [69777c3a] test(e2e-smoke): add coverage for soft-block + unblock coordination notifications (#471)

Co-authored-by: Frontend Developer 2 <fe-dev-2@roboco.tech>

* [8eb82639] Render 5 coordination-event notification types with task deep-links (#470)

* [8eb82639] feat(notifications): add APPROVAL type icon and deep-link component test

Add missing APPROVAL member to the frontend NotificationType enum to
match backend roboco/models/base.py, wire its icon into the existing
typeIcons Record in the notifications page, and add a component test
covering type rendering and the task deep-link.

* [8eb82639] docs(notifications): document 5 coordination-event types and APPROVAL enum addition

Added comprehensive reference guide explaining the 5 notification types
(TASK_ASSIGNMENT, BLOCKER_ESCALATION, REVIEW_REQUEST, DOCUMENTATION_REQUEST,
APPROVAL), their visual identities (icon + color), use cases, and
deep-linking behavior to related tasks. Updated panel README with quick
reference table. TypeScript Record pattern ensures exhaustive type coverage
at build time.

---------

Co-authored-by: Frontend Developer 1 <fe-dev-1@roboco.tech>
Co-authored-by: Frontend Documenter <fe-doc@roboco.tech>

---------

Co-authored-by: Frontend Developer 2 <fe-dev-2@roboco.tech>
Co-authored-by: Frontend Developer 1 <fe-dev-1@roboco.tech>
Co-authored-by: Frontend Documenter <fe-doc@roboco.tech>

* [a27de2a8] fix(docs): reflow hard-wrapped notification-types.md to pass markdown gate (#479) (#481)

The Python quality gate on assembled PR #477 was red because the newly
added docs/frontend/components/notification-types.md (introduced by the
frontend coordination-event rendering commit) had manually wrapped prose
paragraphs, which scripts/reflow_md.py --check rejects as part of make
quality. Reflowed the file with scripts/reflow_md.py --apply (whitespace
only, no content change) so the check passes. ruff format/check, mypy,
xenon, vulture, bandit, and the full pytest suite (10284 passed) all
confirmed green on this commit; notification.py, task.py, and
orchestrator.py are untouched.

Co-authored-by: Backend Developer 1 <be-dev-1@roboco.tech>

* [705419d5] Remove duplicate unblock notification and fix its dependent tests (#485) (#488)

* [705419d5] fix(notifications): remove duplicate unblock notification, fix its tests

The /unblock route was still calling delivery.notify_assignee_of_unblock()
(TASK_ASSIGNMENT) after TaskService.unblock() already sent the
send_unblock_notification() ALERT wired in by an earlier task — a real
duplicate notification on every unblock. Delete the route-layer call and
the now-dead NotificationDeliveryService.notify_assignee_of_unblock
method, fix the integration test that mocked it, and fix/extend the e2e
notification-coordination-events test to assert the persisted ALERT rows
(exact subjects) for both the direct-unblock and dependency-revival
producers instead of the old TASK_ASSIGNMENT assertion.

* [705419d5] docs(backend): update coordination-events doc for unblock duplicate removal

---------

Co-authored-by: Backend Developer 1 <be-dev-1@roboco.tech>
Co-authored-by: Backend Documenter <be-doc@roboco.tech>

* [6c142a73] docs(changelog): document restored coordination-event notification producers and add collision-sequencing double-fire test (#489) (#490)

Co-authored-by: Backend Developer 2 <be-dev-2@roboco.tech>

* [77719d3f] Seed system agent in e2e harness to fix unblock/dependency-revival notifications

The e2e harness's seed_company omitted the system sentinel agent that
production seeds via initial_data.py. The unblock and dependency-revival
notification producers default to from_agent="system", which
_resolve_agent_uuid looks up by slug in the DB. With no system row the
resolver returns None and _create_notification silently skips the
notification, so the two ALERT assertions got 0 rows instead of 1.

The soft-block test passed because it uses NotificationDeliveryService
which creates the notification directly with a real agent UUID as
from_agent, bypassing the slug resolution path entirely.

* [77719d3f] Use foundation UUID for system agent to avoid slug collision

The first attempt seeded the system agent with a random UUID. Other
tests (_seed_system_and_secretary, _seed_video_agents) check by the
fixed foundation UUID via session.get(AgentTable, uuid); not finding
it they INSERT their own system row, hitting ix_agents_slug. Using the
foundation UUID makes their check find the seed_company row and skip.

* [77719d3f] Fix dependency-revival notification event loop mismatch

The dependency-revival test calls _unblock_dependents directly via
stack.run_db, which creates a new asyncio event loop. Inside,
_notify_dependency_revival -> NotificationService._create_notification
opened its own session via get_db_context(), which reuses the singleton
_DbHolder engine — bound to the FastAPI server's event loop. The
asyncpg connection raised 'Future attached to a different loop' and the
exception was silently caught + logged as a warning, so the notification
never persisted and the test saw 0 rows.

Fix: add an optional db_session parameter to _create_notification and
the two send methods. When provided, use the caller's session directly
and skip the internal commit (the caller owns the transaction). The
TaskService's _notify_unblock and _notify_dependency_revival now pass
self.session, keeping the notification in the same event loop + session
as the task transition.

* [77719d3f] Scope system-agent seeding to notification tests only

Seeding the system sentinel in seed_company (commits 3bba7b32/617b7890)
fixed the 0-notification bug but caused 3 i_documented gateway_timeout
failures: every e2e test now paid notification-creation latency for
system-origin notifications that were previously silently skipped,
pushing the already-slow i_documented verb past its 120s timeout.

Move system-agent seeding out of seed_company and into a scoped
_seed_system_agent helper called only by the two coordination-event
tests that exercise send_unblock_notification /
send_dependency_revival_notification (both resolve from_agent='system'
via DB lookup). dev_lifecycle and state_machine tests revert to the
pre-fix behavior (system-origin notifications silently skipped, no extra
latency).

The event-loop fix (commit 7b95d77d: pass db_session=self.session to
_create_notification) is unchanged — dependency_revival still needs it
because stack.run_db creates a new event loop while _DbHolder.engine is
bound to the FastAPI server loop.

* [77719d3f] Fix reassignment notification deadlock + suppressed-notification commit regression

Two fixes in notification.py / task.py:

1. Cross-session self-deadlock in send_reassignment_notification:
   TaskService.reassign() flushes an uncommitted row lock on the task,
   then calls _notify_reassignment -> send_reassignment_notification ->
   _create_notification(db_session=None) which opens a SEPARATE session
   via get_db_context() and INSERTs a notification with related_task_id
   FK -> tasks.id. The FK key-share lock blocks on the request session's
   uncommitted exclusive lock, but the request can't commit until the
   notify returns -> 120s verb hard-cut. Fix: pass db_session=self.session
   so the notification joins the verb's own transaction, same pattern as
   the unblock/dependency-revival fix in 7b95d77d.

2. Suppressed-notification commit regression: the 7b95d77d refactor moved
   await db.commit() out of _create_notification_with_session into
   _create_notification's db_session=None branch, where it ran
   unconditionally — even when _create_notification_with_session returned
   early (suppressed: unresolvable from_agent / no recipients /
   refire-guard / dedup-hit). Fix: _create_notification_with_session now
   returns bool (False at each early return, True after delivery);
   _create_notification commits only when created is True.

---------

Co-authored-by: Backend Developer 1 <be-dev-1@roboco.tech>
Co-authored-by: Backend Documenter <be-doc@roboco.tech>
Co-authored-by: Frontend Developer 2 <fe-dev-2@roboco.tech>
Co-authored-by: Frontend Developer 1 <fe-dev-1@roboco.tech>
Co-authored-by: Frontend Documenter <fe-doc@roboco.tech>
Co-authored-by: Backend Developer 2 <be-dev-2@roboco.tech>
Co-authored-by: Renn F <rennf93@users.noreply.github.com>
2026-07-13 06:38:15 +02:00

2269 lines
83 KiB
Python

"""Unit tests for TaskService gateway-backfill methods.
These cover the methods the Choreographer calls into; full end-to-end
behavior is exercised by the gateway tests. Each test mocks the DB
session boundary and checks the method's contract.
"""
from __future__ import annotations
from datetime import UTC, datetime, timedelta
from types import SimpleNamespace
from typing import TYPE_CHECKING, Any, cast
from unittest.mock import AsyncMock, MagicMock, patch
from uuid import UUID, uuid4
import pytest
from roboco.config import settings
from roboco.db.tables import AgentTable, AuditLogTable, ProjectTable, TaskTable
from roboco.exceptions import TaskLifecycleError
from roboco.foundation.policy.content import markers
from roboco.models.base import (
AgentRole,
AgentStatus,
BlockerResolverType,
Complexity,
TaskNature,
TaskStatus,
TaskType,
Team,
)
from roboco.models.task import TaskCreateRequest
from roboco.services.learning import LearningType
from roboco.services.task import (
VIDEO_SOURCE,
GatewayAgentView,
TaskService,
_ceo_reject_finding_texts,
get_task_service,
)
from sqlalchemy import select
if TYPE_CHECKING:
from sqlalchemy.ext.asyncio import AsyncSession
def _build_task(**overrides: object) -> MagicMock:
base: dict[str, object] = {
"id": uuid4(),
"status": TaskStatus.PENDING,
"branch_name": "feature/backend/abc12345",
"assigned_to": None,
"claimed_by": None,
"claimed_at": None,
"plan": None,
"qa_evidence_inspected": False,
"pre_block_state": None,
"pre_block_assignee": None,
"pre_block_metadata": None,
"blocker_resolver_type": None,
"blocker_raised_by": None,
"commits": [],
"dev_notes": None,
}
base.update(overrides)
return MagicMock(**base)
def _service_with(execute_returns: object) -> TaskService:
"""Build a TaskService whose session.execute returns `execute_returns`."""
session = MagicMock()
session.execute = AsyncMock(return_value=execute_returns)
session.flush = AsyncMock()
return TaskService(session)
def _bind(svc: TaskService, name: str, value: object) -> None:
"""Stub `name` on `svc` without tripping mypy's method-assign check."""
object.__setattr__(svc, name, value)
# ---------------------------------------------------------------------------
# Aliases / thin wrappers
# ---------------------------------------------------------------------------
@pytest.mark.asyncio
async def test_list_blocked_for_team_filters_by_team() -> None:
svc = TaskService(MagicMock())
list_blocked_mock = AsyncMock(return_value=[MagicMock(id="t1")])
_bind(svc, "list_blocked", list_blocked_mock)
out = await svc.list_blocked_for_team(Team.BACKEND)
list_blocked_mock.assert_awaited_once_with(team=Team.BACKEND)
assert len(out) == 1
@pytest.mark.asyncio
async def test_list_blocked_all_teams_passes_no_team() -> None:
svc = TaskService(MagicMock())
list_blocked_mock = AsyncMock(return_value=[])
_bind(svc, "list_blocked", list_blocked_mock)
await svc.list_blocked_all_teams()
list_blocked_mock.assert_awaited_once_with()
@pytest.mark.asyncio
async def test_list_awaiting_pm_review_for_team_passes_team() -> None:
svc = TaskService(MagicMock())
list_pm_mock = AsyncMock(return_value=[])
_bind(svc, "list_awaiting_pm_review", list_pm_mock)
await svc.list_awaiting_pm_review_for_team(Team.FRONTEND)
list_pm_mock.assert_awaited_once_with(team=Team.FRONTEND)
@pytest.mark.asyncio
async def test_submit_verification_records_progress_when_notes_given() -> None:
svc = TaskService(MagicMock())
add_progress_mock = AsyncMock()
submit_for_verification_mock = AsyncMock(return_value=MagicMock())
_bind(svc, "add_progress", add_progress_mock)
_bind(svc, "submit_for_verification", submit_for_verification_mock)
agent_id = uuid4()
task_id = uuid4()
await svc.submit_verification(agent_id, task_id, "implemented login")
add_progress_mock.assert_awaited_once_with(task_id, agent_id, "implemented login")
submit_for_verification_mock.assert_awaited_once_with(
task_id, agent_role="developer"
)
@pytest.mark.asyncio
async def test_submit_verification_skips_progress_when_notes_empty() -> None:
svc = TaskService(MagicMock())
add_progress_mock = AsyncMock()
_bind(svc, "add_progress", add_progress_mock)
_bind(svc, "submit_for_verification", AsyncMock(return_value=MagicMock()))
await svc.submit_verification(uuid4(), uuid4(), "")
add_progress_mock.assert_not_called()
@pytest.mark.asyncio
async def test_submit_qa_records_progress_when_notes_given() -> None:
svc = TaskService(MagicMock())
add_progress_mock = AsyncMock()
submit_for_qa_mock = AsyncMock(return_value=MagicMock())
_bind(svc, "add_progress", add_progress_mock)
_bind(svc, "submit_for_qa", submit_for_qa_mock)
agent_id = uuid4()
task_id = uuid4()
await svc.submit_qa(agent_id, task_id, "ready for review")
add_progress_mock.assert_awaited_once()
submit_for_qa_mock.assert_awaited_once_with(task_id, agent_role="developer")
# ---------------------------------------------------------------------------
# list_assigned_for_agent
# ---------------------------------------------------------------------------
@pytest.mark.asyncio
async def test_list_assigned_for_agent_returns_active_tasks() -> None:
expected_tasks = [MagicMock(id="t1"), MagicMock(id="t2")]
scalars = MagicMock()
scalars.all.return_value = expected_tasks
result = MagicMock()
result.scalars.return_value = scalars
svc = _service_with(result)
out = await svc.list_assigned_for_agent(uuid4())
assert out == expected_tasks
# ---------------------------------------------------------------------------
# agent_for
# ---------------------------------------------------------------------------
@pytest.mark.asyncio
async def test_agent_for_returns_view_with_role_team_skills(
monkeypatch: pytest.MonkeyPatch,
) -> None:
fake_agent = MagicMock(
id=uuid4(), slug="be-pm", role=AgentRole.CELL_PM, team=Team.BACKEND
)
result = MagicMock()
result.scalar_one_or_none.return_value = fake_agent
svc = _service_with(result)
monkeypatch.setattr(
"roboco.agents_config.get_escalation_target", lambda _slug: "main_pm"
)
monkeypatch.setattr(
"roboco.agents_config.get_agent_skills",
lambda _slug: [{"id": "task_management"}],
)
view = await svc.agent_for(uuid4())
assert isinstance(view, GatewayAgentView)
assert view.role == "cell_pm"
assert view.team == "backend"
assert view.escalation_target == "main_pm"
assert view.skills == [{"id": "task_management"}]
@pytest.mark.asyncio
async def test_agent_for_returns_none_when_missing() -> None:
result = MagicMock()
result.scalar_one_or_none.return_value = None
svc = _service_with(result)
assert await svc.agent_for(uuid4()) is None
# ---------------------------------------------------------------------------
# qa/documenter/cell_pm for_team
# ---------------------------------------------------------------------------
@pytest.mark.asyncio
async def test_qa_agent_for_team_finds_qa() -> None:
qa = MagicMock(id=uuid4(), role=AgentRole.QA, team=Team.BACKEND)
scalars = MagicMock()
scalars.first.return_value = qa
result = MagicMock()
result.scalars.return_value = scalars
svc = _service_with(result)
out = await svc.qa_agent_for_team(Team.BACKEND)
assert out is qa
@pytest.mark.asyncio
async def test_documenter_for_team_returns_none_when_missing() -> None:
scalars = MagicMock()
scalars.first.return_value = None
result = MagicMock()
result.scalars.return_value = scalars
svc = _service_with(result)
assert await svc.documenter_for_team(Team.BACKEND) is None
@pytest.mark.asyncio
async def test_cell_pm_for_team_finds_pm() -> None:
pm = MagicMock(id=uuid4(), role=AgentRole.CELL_PM, team=Team.UX_UI)
scalars = MagicMock()
scalars.first.return_value = pm
result = MagicMock()
result.scalars.return_value = scalars
svc = _service_with(result)
assert await svc.cell_pm_for_team(Team.UX_UI) is pm
# ---------------------------------------------------------------------------
# get_active_task_for_agent + list_paused_for_agent
# ---------------------------------------------------------------------------
@pytest.mark.asyncio
async def test_get_active_task_for_agent_returns_top_task() -> None:
task = MagicMock(id=uuid4(), status=TaskStatus.IN_PROGRESS)
result = MagicMock()
result.scalar_one_or_none.return_value = task
svc = _service_with(result)
assert await svc.get_active_task_for_agent(uuid4()) is task
@pytest.mark.asyncio
async def test_list_paused_for_agent_returns_paused_tasks() -> None:
paused = [MagicMock(id=uuid4(), status=TaskStatus.PAUSED)]
scalars = MagicMock()
scalars.all.return_value = paused
result = MagicMock()
result.scalars.return_value = scalars
svc = _service_with(result)
out = await svc.list_paused_for_agent(uuid4())
assert out == paused
# ---------------------------------------------------------------------------
# list_awaiting_main_pm_all
# ---------------------------------------------------------------------------
@pytest.mark.asyncio
async def test_list_awaiting_main_pm_all_returns_root_tasks() -> None:
roots = [MagicMock(id=uuid4(), parent_task_id=None)]
scalars = MagicMock()
scalars.all.return_value = roots
result = MagicMock()
result.scalars.return_value = scalars
svc = _service_with(result)
out = await svc.list_awaiting_main_pm_all()
assert out == roots
# ---------------------------------------------------------------------------
# list_video_pipeline_tasks — pipeline-strip basis (task 1, 2026-07-09)
# ---------------------------------------------------------------------------
@pytest.mark.asyncio
async def test_list_video_pipeline_tasks_keeps_non_terminal_and_unrendered() -> None:
"""The query itself only excludes CANCELLED at the SQL level; the
COMPLETED-but-rendered drop happens in Python off the marker, so this
exercises that filter directly against a mixed mocked result set."""
in_progress = _build_task(status=TaskStatus.IN_PROGRESS, orchestration_markers=None)
awaiting_ceo = _build_task(
status=TaskStatus.AWAITING_CEO_APPROVAL, orchestration_markers=None
)
rendered = _build_task(
status=TaskStatus.COMPLETED,
orchestration_markers={"video_draft": {"render_status": "rendered"}},
)
pending_render = _build_task(
status=TaskStatus.COMPLETED,
orchestration_markers={"video_draft": {"render_attempts": 2}},
)
failed_render = _build_task(
status=TaskStatus.COMPLETED,
orchestration_markers={
"video_draft": {"render_status": "failed", "render_error": "boom"}
},
)
scalars = MagicMock()
scalars.all.return_value = [
in_progress,
awaiting_ceo,
rendered,
pending_render,
failed_render,
]
result = MagicMock()
result.scalars.return_value = scalars
svc = _service_with(result)
out = await svc.list_video_pipeline_tasks()
assert out == [in_progress, awaiting_ceo, pending_render, failed_render]
@pytest.mark.asyncio
async def test_list_video_pipeline_tasks_empty_when_nothing_in_flight() -> None:
scalars = MagicMock()
scalars.all.return_value = []
result = MagicMock()
result.scalars.return_value = scalars
svc = _service_with(result)
assert await svc.list_video_pipeline_tasks() == []
# ---------------------------------------------------------------------------
# all_subtasks_terminal
# ---------------------------------------------------------------------------
@pytest.mark.asyncio
async def test_all_subtasks_terminal_true_when_all_completed() -> None:
scalars = MagicMock()
scalars.all.return_value = [TaskStatus.COMPLETED, TaskStatus.CANCELLED]
result = MagicMock()
result.scalars.return_value = scalars
svc = _service_with(result)
assert await svc.all_subtasks_terminal(uuid4()) is True
@pytest.mark.asyncio
async def test_all_subtasks_terminal_false_when_one_active() -> None:
scalars = MagicMock()
scalars.all.return_value = [TaskStatus.COMPLETED, TaskStatus.IN_PROGRESS]
result = MagicMock()
result.scalars.return_value = scalars
svc = _service_with(result)
assert await svc.all_subtasks_terminal(uuid4()) is False
@pytest.mark.asyncio
async def test_all_subtasks_terminal_true_when_no_subtasks() -> None:
scalars = MagicMock()
scalars.all.return_value = []
result = MagicMock()
result.scalars.return_value = scalars
svc = _service_with(result)
assert await svc.all_subtasks_terminal(uuid4()) is True
# ---------------------------------------------------------------------------
# set_plan
# ---------------------------------------------------------------------------
@pytest.mark.asyncio
async def test_set_plan_wraps_string_into_text_dict() -> None:
task = _build_task()
svc = TaskService(MagicMock(flush=AsyncMock()))
_bind(svc, "get", AsyncMock(return_value=task))
out = await svc.set_plan(task.id, "do the thing")
assert task.plan == {"text": "do the thing"}
assert out is task
@pytest.mark.asyncio
async def test_set_plan_passes_dict_through() -> None:
task = _build_task()
svc = TaskService(MagicMock(flush=AsyncMock()))
_bind(svc, "get", AsyncMock(return_value=task))
out = await svc.set_plan(task.id, {"steps": ["a", "b"]})
assert task.plan == {"steps": ["a", "b"]}
assert out is task
@pytest.mark.asyncio
async def test_set_plan_returns_none_when_task_missing() -> None:
svc = TaskService(MagicMock(flush=AsyncMock()))
_bind(svc, "get", AsyncMock(return_value=None))
assert await svc.set_plan(uuid4(), "plan") is None
# ---------------------------------------------------------------------------
# mark_evidence_inspected + mark_agent_idle
# ---------------------------------------------------------------------------
@pytest.mark.asyncio
async def test_mark_evidence_inspected_sets_flag() -> None:
task = _build_task(qa_evidence_inspected=False)
svc = TaskService(MagicMock(flush=AsyncMock()))
_bind(svc, "get", AsyncMock(return_value=task))
await svc.mark_evidence_inspected(task.id)
assert task.qa_evidence_inspected is True
@pytest.mark.asyncio
async def test_mark_evidence_inspected_no_op_on_missing_task() -> None:
svc = TaskService(MagicMock(flush=AsyncMock()))
_bind(svc, "get", AsyncMock(return_value=None))
await svc.mark_evidence_inspected(uuid4()) # must not raise
@pytest.mark.asyncio
async def test_reassign_sets_assigned_to_and_claimed_by() -> None:
task = _build_task(assigned_to=None, claimed_by=None)
svc = TaskService(MagicMock(flush=AsyncMock()))
_bind(svc, "get", AsyncMock(return_value=task))
new_assignee = uuid4()
out = await svc.reassign(task.id, new_assignee)
assert out is task
assert task.assigned_to == new_assignee
assert task.claimed_by == new_assignee
@pytest.mark.asyncio
async def test_reassign_clears_assignment_when_none() -> None:
prev = uuid4()
task = _build_task(assigned_to=prev, claimed_by=prev)
svc = TaskService(MagicMock(flush=AsyncMock()))
_bind(svc, "get", AsyncMock(return_value=task))
out = await svc.reassign(task.id, None)
assert out is task
assert task.assigned_to is None
assert task.claimed_by is None
@pytest.mark.asyncio
async def test_reassign_returns_none_when_task_missing() -> None:
svc = TaskService(MagicMock(flush=AsyncMock()))
_bind(svc, "get", AsyncMock(return_value=None))
out = await svc.reassign(uuid4(), uuid4())
assert out is None
@pytest.mark.asyncio
async def test_reassign_notifies_once_not_twice_for_same_target() -> None:
"""Repeated reassign to the SAME target must not double-fire.
`reassign` runs every time it's called (even a no-op redirect); the
coordination notification is guarded separately by comparing the new
assignee against the assignee captured before the mutation, so a second
call with an already-current target must skip the notification.
"""
task = _build_task(assigned_to=None, claimed_by=None)
svc = TaskService(MagicMock(flush=AsyncMock()))
_bind(svc, "get", AsyncMock(return_value=task))
new_assignee = uuid4()
mock_ns = MagicMock()
mock_ns.send_reassignment_notification = AsyncMock()
with patch(
"roboco.services.notification.NotificationService", return_value=mock_ns
):
await svc.reassign(task.id, new_assignee)
await svc.reassign(task.id, new_assignee)
mock_ns.send_reassignment_notification.assert_awaited_once()
@pytest.mark.asyncio
async def test_unblock_notifies_once_not_twice_on_repeated_call() -> None:
"""Repeated unblock() against the same task must not double-fire.
`unblock` only mutates + notifies a task whose status is currently
BLOCKED; the first call flips it to IN_PROGRESS/PENDING, so a second
call against the same task_id short-circuits on the status guard and
must not send a second notification.
"""
raiser = uuid4()
task = _build_task(
status=TaskStatus.BLOCKED, branch_name=None, blocker_raised_by=raiser
)
svc = TaskService(MagicMock(flush=AsyncMock()))
_bind(svc, "get", AsyncMock(return_value=task))
_bind(svc, "_index_lifecycle_event_background", AsyncMock())
mock_ns = MagicMock()
mock_ns.send_unblock_notification = AsyncMock()
with patch(
"roboco.services.notification.NotificationService", return_value=mock_ns
):
first = await svc.unblock(task.id)
second = await svc.unblock(task.id)
assert first is task
assert second is None
mock_ns.send_unblock_notification.assert_awaited_once()
@pytest.mark.asyncio
async def test_wire_sibling_collision_dag_notifies_only_for_new_edges() -> None:
"""Collision-sequencing notification fires only for freshly-added edges.
`add_dependency` returns True only on a new edge; a subsequent wiring
pass over the same pair returns False and must skip the notification,
so the coordination ALERT cannot double-fire.
"""
parent_id = uuid4()
held_back_id = uuid4()
blocking_id = uuid4()
held_back = _build_task(id=held_back_id, assigned_to=uuid4())
blocking = _build_task(id=blocking_id)
svc = TaskService(MagicMock(flush=AsyncMock()))
_bind(svc, "get_subtasks", AsyncMock(return_value=[held_back, blocking]))
add_dep_mock = AsyncMock(side_effect=[True, False])
_bind(svc, "add_dependency", add_dep_mock)
mock_ns = MagicMock()
mock_ns.send_collision_sequencing_notification = AsyncMock()
wiring_passes = 2
with (
patch(
"roboco.services.sequencing.dev_task_collision_edges",
return_value=[(blocking_id, held_back_id)],
),
patch(
"roboco.services.notification.NotificationService",
return_value=mock_ns,
),
):
for _ in range(wiring_passes):
await svc.wire_sibling_collision_dag(parent_id)
mock_ns.send_collision_sequencing_notification.assert_awaited_once()
assert add_dep_mock.await_count == wiring_passes
@pytest.mark.asyncio
async def test_mark_agent_idle_sets_status_idle() -> None:
agent = MagicMock(id=uuid4(), status=AgentStatus.ACTIVE)
result = MagicMock()
result.scalar_one_or_none.return_value = agent
svc = _service_with(result)
await svc.mark_agent_idle(agent.id)
assert agent.status == AgentStatus.IDLE
# ---------------------------------------------------------------------------
# qa_claim / doc_claim
# ---------------------------------------------------------------------------
@pytest.mark.asyncio
async def test_qa_claim_sets_assignment_on_awaiting_qa() -> None:
task = _build_task(status=TaskStatus.AWAITING_QA, active_claimant_id=None)
result = MagicMock()
result.scalar_one_or_none.return_value = task
session = MagicMock(flush=AsyncMock())
session.execute = AsyncMock(return_value=result)
svc = TaskService(session)
qa_id = uuid4()
out = await svc.qa_claim(qa_id, task.id)
assert out is task
assert task.assigned_to == qa_id
assert task.claimed_by == qa_id
assert isinstance(task.claimed_at, datetime)
@pytest.mark.asyncio
async def test_qa_claim_rejects_wrong_status() -> None:
task = _build_task(status=TaskStatus.IN_PROGRESS, active_claimant_id=None)
result = MagicMock()
result.scalar_one_or_none.return_value = task
session = MagicMock(flush=AsyncMock())
session.execute = AsyncMock(return_value=result)
svc = TaskService(session)
out = await svc.qa_claim(uuid4(), task.id)
assert out is None
@pytest.mark.asyncio
async def test_doc_claim_sets_assignment_on_awaiting_documentation() -> None:
task = _build_task(
status=TaskStatus.AWAITING_DOCUMENTATION, active_claimant_id=None
)
result = MagicMock()
result.scalar_one_or_none.return_value = task
session = MagicMock(flush=AsyncMock())
session.execute = AsyncMock(return_value=result)
svc = TaskService(session)
doc_id = uuid4()
out = await svc.doc_claim(doc_id, task.id)
assert out is task
assert task.assigned_to == doc_id
# ---------------------------------------------------------------------------
# qa_pass / qa_fail
# ---------------------------------------------------------------------------
@pytest.mark.asyncio
async def test_qa_pass_delegates_to_pass_qa() -> None:
qa_id = uuid4()
task_id = uuid4()
task = _build_task(id=task_id, claimed_by=qa_id)
svc = TaskService(MagicMock(flush=AsyncMock()))
pass_qa_mock = AsyncMock(return_value=MagicMock())
_bind(svc, "get", AsyncMock(return_value=task))
_bind(svc, "pass_qa", pass_qa_mock)
await svc.qa_pass(qa_id, task_id, "looks good")
pass_qa_mock.assert_awaited_once_with(task_id, notes="looks good", agent_role="qa")
@pytest.mark.asyncio
async def test_qa_fail_does_not_touch_dev_notes() -> None:
"""qa_fail must NOT raw-append issues onto dev_notes (the data-loss bug the
revision-findings ledger fix retires) — the choreographer's fail_review verb
already persisted the concrete findings structurally (the ledger + the
QaNote) before this call. The next developer handoff note must be free to
fully overwrite dev_notes without destroying anything qa_fail wrote."""
qa_id = uuid4()
task = _build_task(dev_notes=None, claimed_by=qa_id)
svc = TaskService(MagicMock(flush=AsyncMock()))
fail_qa_mock = AsyncMock(return_value=task)
_bind(svc, "get", AsyncMock(return_value=task))
_bind(svc, "fail_qa", fail_qa_mock)
issues = ["missing test", "no docstring"]
await svc.qa_fail(qa_id, task.id, "blocking", issues)
assert task.dev_notes is None
fail_qa_mock.assert_awaited_once_with(task.id, notes="blocking", agent_role="qa")
# ---------------------------------------------------------------------------
# unblock_with_restore
# ---------------------------------------------------------------------------
@pytest.mark.asyncio
async def test_unblock_with_restore_returns_to_pre_block_state() -> None:
pre_assignee = uuid4()
task = _build_task(
status=TaskStatus.BLOCKED,
pre_block_state="in_progress",
pre_block_assignee=pre_assignee,
pre_block_metadata={"foo": "bar"},
blocker_resolver_type=BlockerResolverType.AGENT,
blocker_raised_by=pre_assignee,
)
svc = TaskService(MagicMock(flush=AsyncMock()))
_bind(svc, "get", AsyncMock(return_value=task))
out = await svc.unblock_with_restore(uuid4(), task.id, restore=True)
assert out is task
assert task.status == TaskStatus.IN_PROGRESS
assert task.assigned_to == pre_assignee
assert task.pre_block_state is None
assert task.pre_block_assignee is None
@pytest.mark.asyncio
async def test_unblock_with_restore_falls_through_when_no_snapshot() -> None:
task = _build_task(status=TaskStatus.BLOCKED, pre_block_state=None)
svc = TaskService(MagicMock(flush=AsyncMock()))
unblock_mock = AsyncMock(return_value=task)
_bind(svc, "get", AsyncMock(return_value=task))
_bind(svc, "unblock", unblock_mock)
out = await svc.unblock_with_restore(uuid4(), task.id, restore=True)
unblock_mock.assert_awaited_once()
assert out is task
@pytest.mark.asyncio
async def test_unblock_with_restore_calls_legacy_unblock_when_restore_false() -> None:
task = _build_task(
status=TaskStatus.BLOCKED, pre_block_state=TaskStatus.IN_PROGRESS.value
)
svc = TaskService(MagicMock(flush=AsyncMock()))
unblock_mock = AsyncMock(return_value=task)
_bind(svc, "get", AsyncMock(return_value=task))
_bind(svc, "unblock", unblock_mock)
await svc.unblock_with_restore(uuid4(), task.id, restore=False)
unblock_mock.assert_awaited_once()
@pytest.mark.asyncio
async def test_unblock_no_branch_returns_to_pending() -> None:
# A task blocked before it was ever claimed (a dependency-gated claim that
# got escalated) has no branch — unblock must return it to pending, not a
# branchless in_progress the dispatcher refuses to spawn (spawn-loop).
raiser = uuid4()
task = _build_task(
status=TaskStatus.BLOCKED, branch_name=None, blocker_raised_by=raiser
)
svc = TaskService(MagicMock(flush=AsyncMock()))
_bind(svc, "get", AsyncMock(return_value=task))
_bind(svc, "_index_lifecycle_event_background", AsyncMock())
out = await svc.unblock(task.id)
assert out is task
assert task.status == TaskStatus.PENDING
assert task.assigned_to == raiser
@pytest.mark.asyncio
async def test_admin_set_status_out_of_blocked_restores_pre_block_owner() -> None:
# A code task a dev escalated to its cell PM (assigned_to=PM, BLOCKED,
# snapshot=dev). Taking it out of blocked via the admin override (operator
# PATCH, or the orchestrator's auto-recover/auto-resume) must hand ownership
# back to the dev — otherwise it re-enters pending/in_progress still owned by
# the PM and the dispatcher execute-spawns the PM on a dev code task (loop).
dev = uuid4()
pm = uuid4()
task = _build_task(
status=TaskStatus.BLOCKED,
assigned_to=pm,
claimed_by=pm,
branch_name="feature/frontend/abc--def--ghi",
pre_block_state="in_progress",
pre_block_assignee=dev,
)
svc = TaskService(MagicMock(flush=AsyncMock()))
_bind(svc, "get", AsyncMock(return_value=task))
out = await svc.admin_set_status(task.id, TaskStatus.IN_PROGRESS)
assert out is task
assert task.status == TaskStatus.IN_PROGRESS
assert task.assigned_to == dev
assert task.claimed_by == dev
assert task.pre_block_assignee is None
assert task.pre_block_state is None
@pytest.mark.asyncio
async def test_admin_set_status_non_blocked_is_bare_status_set() -> None:
# The restore branch fires ONLY on blocked -> pending/in_progress with a
# snapshot. Every other override stays a plain status set; the owner is
# untouched (no spurious restore/divert).
owner = uuid4()
task = _build_task(
status=TaskStatus.AWAITING_PM_REVIEW,
assigned_to=owner,
claimed_by=owner,
)
svc = TaskService(MagicMock(flush=AsyncMock()))
_bind(svc, "get", AsyncMock(return_value=task))
out = await svc.admin_set_status(task.id, TaskStatus.COMPLETED)
assert out is task
assert task.status == TaskStatus.COMPLETED
assert task.assigned_to == owner
@pytest.mark.asyncio
async def test_admin_set_status_into_review_queue_clears_active_claimant() -> None:
# M19 follow-on: a non-blocked admin override into a review/queue state
# must clear any stale active_claimant_id, else the next legitimate claim
# (qa_claim/doc_claim) is rejected by the competing-claimant guard. The
# blocked->review path is handled by _admin_out_of_blocked; this covers
# IN_PROGRESS->AWAITING_QA and similar direct admin jumps.
dev = uuid4()
task = _build_task(
status=TaskStatus.IN_PROGRESS,
assigned_to=dev,
claimed_by=dev,
active_claimant_id=dev,
)
svc = TaskService(MagicMock(flush=AsyncMock()))
_bind(svc, "get", AsyncMock(return_value=task))
out = await svc.admin_set_status(task.id, TaskStatus.AWAITING_QA)
assert out is task
assert task.status == TaskStatus.AWAITING_QA
assert task.active_claimant_id is None
@pytest.mark.asyncio
async def test_admin_set_status_non_review_queue_keeps_active_claimant() -> None:
# A non-review-queue admin override (e.g. -> IN_PROGRESS) must NOT clear
# the active claimant — the owner is still actively working it.
dev = uuid4()
task = _build_task(
status=TaskStatus.AWAITING_QA,
assigned_to=dev,
claimed_by=dev,
active_claimant_id=dev,
)
svc = TaskService(MagicMock(flush=AsyncMock()))
_bind(svc, "get", AsyncMock(return_value=task))
out = await svc.admin_set_status(task.id, TaskStatus.IN_PROGRESS)
assert out is task
assert task.active_claimant_id == dev
@pytest.mark.asyncio
async def test_admin_set_status_force_emits_distinct_override_audit_row() -> None:
"""#13: a forced override (force=True) emits a distinct ``task.admin_override``
audit row marking the bypass past the lifecycle gate — distinguishable from
the in-band transition row. Without force, no override row is emitted."""
owner = uuid4()
task = _build_task(
status=TaskStatus.AWAITING_PM_REVIEW,
assigned_to=owner,
claimed_by=owner,
)
added: list[object] = []
session = MagicMock()
session.flush = AsyncMock()
session.add.side_effect = added.append
svc = TaskService(session)
_bind(svc, "get", AsyncMock(return_value=task))
await svc.admin_set_status(
task.id, TaskStatus.COMPLETED, actor_id=owner, actor_role="ceo", force=True
)
rows = [r for r in added if isinstance(r, AuditLogTable)]
override_rows = [r for r in rows if r.event_type == "task.admin_override"]
assert len(override_rows) == 1
row = override_rows[0]
assert row.target_id == task.id
assert row.severity == "warning"
assert row.details["forced"] is True
assert row.details["from_status"] == "awaiting_pm_review"
assert row.details["to_status"] == "completed"
assert row.agent_id == owner
@pytest.mark.asyncio
async def test_admin_set_status_no_force_emits_no_override_audit_row() -> None:
"""#13: without force, only the transition row is emitted — no
``task.admin_override`` row (the bypass was not acknowledged)."""
owner = uuid4()
task = _build_task(
status=TaskStatus.BLOCKED,
assigned_to=owner,
claimed_by=owner,
)
added: list[object] = []
session = MagicMock()
session.flush = AsyncMock()
session.add.side_effect = added.append
svc = TaskService(session)
_bind(svc, "get", AsyncMock(return_value=task))
await svc.admin_set_status(task.id, TaskStatus.PENDING, actor_id=owner)
rows = [r for r in added if isinstance(r, AuditLogTable)]
assert not any(r.event_type == "task.admin_override" for r in rows)
@pytest.mark.asyncio
async def test_admin_set_status_blocked_restore_attributes_admin_actor() -> None:
"""#2176: an admin restore out of BLOCKED (with a pre-block snapshot) must
stamp the ADMIN actor on the audit rows — not the restored owner — and emit
a task.admin_override row so the re-owning is traceable. Previously this
branch returned early via _apply_pre_block_restore with agent_role=None and
audit_agent_id=restored_owner, and (force=false here) wrote no override row,
so the privilege use was untraceable."""
dev = uuid4()
pm = uuid4()
admin = uuid4()
task = _build_task(
status=TaskStatus.BLOCKED,
assigned_to=pm,
claimed_by=pm,
branch_name="feature/backend/abc--def",
pre_block_state="in_progress",
pre_block_assignee=dev,
)
added: list[object] = []
session = MagicMock()
session.flush = AsyncMock()
session.add.side_effect = added.append
svc = TaskService(session)
_bind(svc, "get", AsyncMock(return_value=task))
# force defaults to False — pending is not a hatch destination, so the only
# way this override is recorded is the restore branch's own override row.
out = await svc.admin_set_status(
task.id, TaskStatus.PENDING, actor_id=admin, actor_role="ceo"
)
assert out is task
assert task.status == TaskStatus.PENDING
assert task.assigned_to == dev # ownership restored to the pre-block dev
rows = [r for r in added if isinstance(r, AuditLogTable)]
override_rows = [r for r in rows if r.event_type == "task.admin_override"]
assert len(override_rows) == 1
override = override_rows[0]
assert override.agent_id == admin # the admin, not the restored dev
assert override.details["restore"] is True
assert override.details["forced"] is False
# Every audit row (the transition row AND the override row) is attributed to
# the admin actor — the restored owner is NOT recorded as the actor.
assert all(r.agent_id == admin for r in rows)
assert not any(r.agent_id == dev for r in rows)
@pytest.mark.asyncio
async def test_admin_set_status_blocked_to_review_state_clears_claim() -> None:
"""Forcing a BLOCKED task into a review/queue state must clear the claim.
Live wedge (2026-07-01 22:13Z): the CEO forced blocked ->
awaiting_pm_review, the stale escalation claim (main-pm) survived, and the
respawned cell PM was handed the task by give_me_work while every
note(task_id=...) bounced not_authorized "you do not hold the claim" — so
it re-blocked. Review-state targets are re-claimed via the claim verbs, so
the override must leave no stale claimant behind.
"""
pm = uuid4()
task = _build_task(
status=TaskStatus.BLOCKED,
assigned_to=pm,
claimed_by=pm,
claimed_at=datetime.now(UTC),
active_claimant_id=pm,
pre_block_state="awaiting_pm_review",
pre_block_assignee=pm,
)
svc = TaskService(MagicMock(flush=AsyncMock()))
_bind(svc, "get", AsyncMock(return_value=task))
out = await svc.admin_set_status(task.id, TaskStatus.AWAITING_PM_REVIEW)
assert out is task
assert task.status == TaskStatus.AWAITING_PM_REVIEW
assert task.claimed_by is None
assert task.claimed_at is None
assert task.active_claimant_id is None
# The consumed snapshot must not survive to confuse a later unblock.
assert task.pre_block_state is None
assert task.pre_block_assignee is None
@pytest.mark.asyncio
async def test_admin_set_status_blocked_to_needs_revision_clears_claim() -> None:
"""blocked -> needs_revision (the other live recovery target) also clears
the claim so the revision coordinator / re-claiming dev starts clean."""
pm = uuid4()
task = _build_task(
status=TaskStatus.BLOCKED,
assigned_to=pm,
claimed_by=pm,
claimed_at=datetime.now(UTC),
active_claimant_id=pm,
pre_block_state="awaiting_pm_review",
pre_block_assignee=pm,
)
svc = TaskService(MagicMock(flush=AsyncMock()))
_bind(svc, "get", AsyncMock(return_value=task))
out = await svc.admin_set_status(task.id, TaskStatus.NEEDS_REVISION)
assert out is task
assert task.status == TaskStatus.NEEDS_REVISION
assert task.claimed_by is None
assert task.claimed_at is None
assert task.active_claimant_id is None
@pytest.mark.asyncio
async def test_admin_set_status_non_blocked_source_keeps_claim() -> None:
"""The claim-clear fires only when leaving BLOCKED — a plain override on a
non-blocked task (e.g. completing a reviewed task) must not strip the
owner's claim."""
owner = uuid4()
claimed_at = datetime.now(UTC)
task = _build_task(
status=TaskStatus.AWAITING_PM_REVIEW,
assigned_to=owner,
claimed_by=owner,
claimed_at=claimed_at,
active_claimant_id=owner,
)
svc = TaskService(MagicMock(flush=AsyncMock()))
_bind(svc, "get", AsyncMock(return_value=task))
await svc.admin_set_status(task.id, TaskStatus.COMPLETED)
assert task.claimed_by == owner
assert task.claimed_at == claimed_at
assert task.active_claimant_id == owner
@pytest.mark.asyncio
async def test_request_changes_routes_leaf_back_to_original_dev() -> None:
"""PM merge-review reject: awaiting_pm_review -> needs_revision, task
re-owned by the original developer (the QA-fail routing), stale claimant
cleared. Issues no longer raw-append onto dev_notes (the data-loss bug the
revision-findings ledger fix retires — the choreographer's request_changes
verb persists them structurally, into pm_notes + the ledger, before this
call) so dev_notes stays exactly as it was."""
dev = uuid4()
pm = uuid4()
task = _build_task(
status=TaskStatus.AWAITING_PM_REVIEW,
assigned_to=pm,
claimed_by=pm,
active_claimant_id=pm,
dev_notes=None,
orchestration_markers={"original_developer": str(dev)},
)
svc = TaskService(MagicMock(flush=AsyncMock()))
_bind(svc, "get", AsyncMock(return_value=task))
_bind(svc, "_validate_and_set_status", MagicMock())
out = await svc.request_changes(
pm, task.id, "scope violation", ["frontend/CLAUDE.md modified out of scope"]
)
assert out is task
assert task.assigned_to == dev
assert task.claimed_by == dev
assert task.active_claimant_id is None
assert task.dev_notes is None
@pytest.mark.asyncio
async def test_request_changes_without_dev_marker_routes_to_revision_pm() -> None:
"""An assembled task (no original-developer marker) lands on the PM who
owns its revision — same fallback pr_fail uses."""
cell_pm = SimpleNamespace(id=uuid4())
actor = uuid4()
task = _build_task(
status=TaskStatus.AWAITING_PM_REVIEW,
assigned_to=actor,
claimed_by=actor,
active_claimant_id=actor,
dev_notes=None,
orchestration_markers=None,
)
svc = TaskService(MagicMock(flush=AsyncMock()))
_bind(svc, "get", AsyncMock(return_value=task))
_bind(svc, "_validate_and_set_status", MagicMock())
_bind(svc, "_revision_pm_for_task", AsyncMock(return_value=cell_pm))
out = await svc.request_changes(actor, task.id, "assembly issue", ["bad merge"])
assert out is task
assert task.assigned_to == cell_pm.id
assert task.claimed_by == cell_pm.id
assert task.active_claimant_id is None
@pytest.mark.asyncio
async def test_request_changes_rejects_wrong_status() -> None:
"""Only awaiting_pm_review is a valid source — anything else returns None
(the gateway spec gate rejects earlier; this is the service backstop)."""
task = _build_task(status=TaskStatus.IN_PROGRESS)
svc = TaskService(MagicMock(flush=AsyncMock()))
_bind(svc, "get", AsyncMock(return_value=task))
out = await svc.request_changes(uuid4(), task.id, "notes", ["issue"])
assert out is None
@pytest.mark.asyncio
async def test_admin_set_status_pre_block_restore_syncs_active_claimant() -> None:
"""The pending/in_progress restore path re-owns the task to the pre-block
dev — active_claimant_id must follow, or the restored dev's content writes
bounce off the stale claimant exactly like the review-state wedge."""
dev = uuid4()
pm = uuid4()
task = _build_task(
status=TaskStatus.BLOCKED,
assigned_to=pm,
claimed_by=pm,
active_claimant_id=pm,
branch_name="feature/backend/abc--def",
pre_block_state="in_progress",
pre_block_assignee=dev,
)
svc = TaskService(MagicMock(flush=AsyncMock()))
_bind(svc, "get", AsyncMock(return_value=task))
out = await svc.admin_set_status(task.id, TaskStatus.IN_PROGRESS)
assert out is task
assert task.assigned_to == dev
assert task.claimed_by == dev
assert task.active_claimant_id == dev
@pytest.mark.asyncio
async def test_pre_block_restore_skips_revision_count_bump() -> None:
"""#101 Gap B: restoring a blocked task to its snapshotted needs_revision
state is a RESTORE, not a rework bounce — ``revision_count`` must not
increment. The rework counter counts rejections INTO needs_revision, and
this task was already rejected before it was blocked; unblocking it back to
needs_revision is the same rework cycle resuming, not a new one."""
REWORK_BOUNCES_BEFORE_BLOCK = 2
dev = uuid4()
task = _build_task(
status=TaskStatus.BLOCKED,
assigned_to=dev,
claimed_by=dev,
branch_name="feature/backend/abc--def--ghi",
pre_block_state="needs_revision",
pre_block_assignee=dev,
revision_count=REWORK_BOUNCES_BEFORE_BLOCK,
)
svc = TaskService(MagicMock(flush=AsyncMock()))
_bind(svc, "get", AsyncMock(return_value=task))
out = await svc.unblock_with_restore(task.id, uuid4(), restore=True)
assert out is task
assert task.status == TaskStatus.NEEDS_REVISION
# A restore must NOT bump the rework counter — only a fresh rejection does.
assert task.revision_count == REWORK_BOUNCES_BEFORE_BLOCK
@pytest.mark.asyncio
async def test_activate_batch_root_subtasks_emits_audit_for_activated_child() -> None:
"""#101 Gap A: ``_activate_batch_root_subtasks`` sets a held root-subtask
BACKLOG→PENDING directly. No status change may bypass the audit log — the
transition journey (the metric source of truth) must record the activation,
or the child's lifecycle reconstruction silently drops its start point."""
batch = uuid4()
child = _build_task(
status=TaskStatus.BACKLOG,
batch_id=batch,
team=Team.BOARD,
task_type=TaskType.CODE,
)
umbrella = _build_task(
status=TaskStatus.PENDING,
batch_id=batch,
parent_task_id=None,
team=Team.BOARD,
task_type=TaskType.PLANNING,
)
added: list[object] = []
session = MagicMock()
session.flush = AsyncMock()
session.add.side_effect = added.append
svc = TaskService(session)
_bind(svc, "get_subtasks", AsyncMock(return_value=[child]))
await svc._activate_batch_root_subtasks(umbrella)
assert child.status == TaskStatus.PENDING
rows = [r for r in added if isinstance(r, AuditLogTable)]
assert any(
r.event_type == "task.pending" and r.target_id == child.id for r in rows
), "batch root-subtask activation must emit a task.pending audit row"
@pytest.mark.asyncio
async def test_create_generates_ac_ids_and_carries_parent_ac_refs() -> None:
# Every task gets one stable id per acceptance criterion (1:1), and a
# decomposition child carries the parent AC ids it covers — the linkage the
# coverage + roll-up gates rely on.
svc = TaskService(
MagicMock(add=MagicMock(), flush=AsyncMock(), execute=AsyncMock())
)
req = TaskCreateRequest(
title="t",
description="d",
acceptance_criteria=["crit a", "crit b", "crit c"],
team=Team.BACKEND,
created_by=uuid4(),
task_type=TaskType.CODE,
nature=TaskNature.TECHNICAL,
estimated_complexity=Complexity.MEDIUM,
project_id=uuid4(),
parent_ac_refs=["parent-ac-1", "parent-ac-2"],
)
task = await svc.create(req)
n = len(req.acceptance_criteria)
assert len(task.acceptance_criteria_ids) == n
assert len(set(task.acceptance_criteria_ids)) == n
assert list(task.parent_ac_refs) == ["parent-ac-1", "parent-ac-2"]
def _svc_with_children(parent: object, child_rows: list[tuple]) -> TaskService:
"""TaskService whose get() returns `parent` and whose execute() yields the
(status, parent_ac_refs) child rows the coverage primitive selects."""
rows = MagicMock()
rows.all.return_value = child_rows
svc = TaskService(MagicMock(execute=AsyncMock(return_value=rows)))
_bind(svc, "get", AsyncMock(return_value=parent))
return svc
@pytest.mark.asyncio
async def test_uncovered_parent_acs_inert_without_declared_coverage() -> None:
# No child declares parent_ac_refs -> coverage tracking inactive -> the gate
# is inert (legacy/in-flight tasks are never blocked).
parent = _build_task(
acceptance_criteria=["a", "b"], acceptance_criteria_ids=["id-a", "id-b"]
)
svc = _svc_with_children(
parent, [(TaskStatus.COMPLETED, []), (TaskStatus.COMPLETED, [])]
)
assert await svc.uncovered_parent_acceptance_criteria(parent.id) == []
@pytest.mark.asyncio
async def test_uncovered_parent_acs_flags_unsatisfied_and_ignores_cancelled() -> None:
parent = _build_task(
acceptance_criteria=["crit a", "crit b", "crit c"],
acceptance_criteria_ids=["id-a", "id-b", "id-c"],
)
svc = _svc_with_children(
parent,
[
(TaskStatus.COMPLETED, ["id-a"]), # covers crit a
(TaskStatus.CANCELLED, ["id-b"]), # cancelled -> does NOT cover crit b
],
)
assert await svc.uncovered_parent_acceptance_criteria(parent.id) == [
"crit b",
"crit c",
]
@pytest.mark.asyncio
async def test_uncovered_parent_acs_empty_when_all_covered() -> None:
parent = _build_task(
acceptance_criteria=["a", "b"], acceptance_criteria_ids=["id-a", "id-b"]
)
svc = _svc_with_children(parent, [(TaskStatus.COMPLETED, ["id-a", "id-b"])])
assert await svc.uncovered_parent_acceptance_criteria(parent.id) == []
@pytest.mark.asyncio
async def test_uncovered_parent_acs_recognizes_text_declared_coverage() -> None:
# Regression (phantom re-delegation): a PM may declare covers_parent_criteria
# by the criterion's full TEXT instead of its id. Matching is by id, so a
# COMPLETED child that declared coverage by text used to read "uncovered" —
# and the PM re-delegated the already-finished work as an empty phantom
# subtask (0 commits, no PR) that could never close. _parent_ac_ref_sets now
# normalizes text -> id so coverage counts regardless of how it was declared.
parent = _build_task(
acceptance_criteria=["crit a", "crit b"],
acceptance_criteria_ids=["id-a", "id-b"],
)
svc = _svc_with_children(
parent,
[
(TaskStatus.COMPLETED, ["crit a"]), # declared by TEXT, not "id-a"
(TaskStatus.COMPLETED, ["id-b"]), # declared by id
],
)
assert await svc.uncovered_parent_acceptance_criteria(parent.id) == []
def test_unknown_ac_refs_flags_refs_not_on_parent() -> None:
# declare_coverage's validation primitive: accepts a parent criterion by
# id OR exact text; anything else is unknown and must be rejected with
# the parent's real AC list in the remediate.
parent = _build_task(
acceptance_criteria=["crit a", "crit b"],
acceptance_criteria_ids=["id-a", "id-b"],
)
assert TaskService.unknown_ac_refs(parent, ["id-a", "crit b", "bogus"]) == ["bogus"]
assert TaskService.unknown_ac_refs(parent, ["id-a", "crit b"]) == []
@pytest.mark.asyncio
async def test_parent_ac_coverage_normalizes_text_refs() -> None:
# A text-declared coverage ref from a COMPLETED child surfaces as
# claimed+verified, same as an id-declared one.
parent = _build_task(
acceptance_criteria=["crit a", "crit b"],
acceptance_criteria_ids=["id-a", "id-b"],
parent_ac_refs=[],
)
svc = _svc_with_children(parent, [(TaskStatus.COMPLETED, ["crit a"])])
cov = await svc.parent_ac_coverage(parent.id)
assert cov[0] == {
"id": "id-a",
"text": "crit a",
"claimed": True,
"verified": True,
"claimed_by": "child",
}
@pytest.mark.asyncio
async def test_parent_ac_coverage_maps_claimed_and_verified() -> None:
# Per-criterion visibility: a COMPLETED child both claims and verifies its
# criterion; an in-flight child only claims; an untouched criterion is
# neither. This is the digest a decomposing PM reads from the briefing.
parent = _build_task(
acceptance_criteria=["crit a", "crit b", "crit c"],
acceptance_criteria_ids=["id-a", "id-b", "id-c"],
parent_ac_refs=[],
)
svc = _svc_with_children(
parent,
[
(TaskStatus.COMPLETED, ["id-a"]),
(TaskStatus.IN_PROGRESS, ["id-b"]),
],
)
assert await svc.parent_ac_coverage(parent.id) == [
{
"id": "id-a",
"text": "crit a",
"claimed": True,
"verified": True,
"claimed_by": "child",
},
{
"id": "id-b",
"text": "crit b",
"claimed": True,
"verified": False,
"claimed_by": "child",
},
{
"id": "id-c",
"text": "crit c",
"claimed": False,
"verified": False,
"claimed_by": None,
},
]
@pytest.mark.asyncio
async def test_parent_ac_coverage_empty_without_ac_ids() -> None:
# No stable ids on the parent (e.g. created before the linkage) -> nothing to
# report; the digest stays absent rather than emitting bogus rows.
parent = _build_task(acceptance_criteria=["a"], acceptance_criteria_ids=[])
svc = _svc_with_children(parent, [(TaskStatus.IN_PROGRESS, ["id-a"])])
assert await svc.parent_ac_coverage(parent.id) == []
@pytest.mark.asyncio
async def test_parent_ac_coverage_marks_root_owned_claimed_by() -> None:
# A criterion the parent declared on ITS OWN parent_ac_refs (root-owned,
# via declare_coverage(task_id=<own root>, ...)) reads claimed_by="root";
# one claimed only via a child reads "child"; untouched is None.
parent = _build_task(
acceptance_criteria=["crit a", "crit b", "crit c"],
acceptance_criteria_ids=["id-a", "id-b", "id-c"],
parent_ac_refs=["id-a"],
)
svc = _svc_with_children(parent, [(TaskStatus.COMPLETED, ["id-b"])])
assert await svc.parent_ac_coverage(parent.id) == [
{
"id": "id-a",
"text": "crit a",
"claimed": True,
"verified": True,
"claimed_by": "root",
},
{
"id": "id-b",
"text": "crit b",
"claimed": True,
"verified": True,
"claimed_by": "child",
},
{
"id": "id-c",
"text": "crit c",
"claimed": False,
"verified": False,
"claimed_by": None,
},
]
@pytest.mark.asyncio
async def test_uncovered_parent_acs_root_owned_satisfied_without_child() -> None:
# Root-owned refs are satisfied unconditionally -- no child, no COMPLETED
# status to wait on. The root's own machinery (PR-supersede, closing a
# contributor PR) does the work at/after submit, not a cell.
parent = _build_task(
acceptance_criteria=["crit a", "crit b"],
acceptance_criteria_ids=["id-a", "id-b"],
parent_ac_refs=["id-a"],
)
svc = _svc_with_children(parent, [])
assert await svc.uncovered_parent_acceptance_criteria(parent.id) == ["crit b"]
@pytest.mark.asyncio
async def test_unclaimed_parent_acs_root_owned_counts_as_claimed() -> None:
parent = _build_task(
acceptance_criteria=["crit a", "crit b"],
acceptance_criteria_ids=["id-a", "id-b"],
parent_ac_refs=["id-a"],
)
svc = _svc_with_children(parent, [])
assert await svc.unclaimed_parent_acceptance_criteria(parent.id) == ["crit b"]
@pytest.mark.asyncio
async def test_production_replay_mixed_child_and_root_owned_coverage() -> None:
# The live pattern: a Main-PM root with 5 ACs -- 3 satisfied by a
# completed cell subtask, 2 that only the root's own machinery can
# satisfy (PR-supersede, closing a contributor PR) and are declared
# root-owned instead of pushed into the cell's acceptance_criteria. Both
# the idle gate (unclaimed) and the roll-up gate (uncovered) must pass.
ids = [f"id-{i}" for i in range(5)]
parent = _build_task(
acceptance_criteria=[f"crit {i}" for i in range(5)],
acceptance_criteria_ids=ids,
parent_ac_refs=["id-3", "id-4"],
)
svc = _svc_with_children(parent, [(TaskStatus.COMPLETED, ["id-0", "id-1", "id-2"])])
assert await svc.unclaimed_parent_acceptance_criteria(parent.id) == []
assert await svc.uncovered_parent_acceptance_criteria(parent.id) == []
@pytest.mark.asyncio
async def test_unclaimed_parent_acs_inert_without_declared_coverage() -> None:
# The decomposition floor is opt-in: with no child declaring parent_ac_refs
# it returns [] so a PM who never adopts coverage is never blocked at idle.
parent = _build_task(
acceptance_criteria=["a", "b"], acceptance_criteria_ids=["id-a", "id-b"]
)
svc = _svc_with_children(
parent, [(TaskStatus.IN_PROGRESS, []), (TaskStatus.IN_PROGRESS, [])]
)
assert await svc.unclaimed_parent_acceptance_criteria(parent.id) == []
@pytest.mark.asyncio
async def test_unclaimed_parent_acs_counts_live_children_not_just_completed() -> None:
# The distinction from the roll-up gate: an in-flight child *claims* its
# criterion (so the decomposition floor is satisfied) even though it has not
# yet *verified* it (so the roll-up gate still flags it). A cancelled child's
# claim does not count -- its work died with it.
parent = _build_task(
acceptance_criteria=["crit a", "crit b", "crit c"],
acceptance_criteria_ids=["id-a", "id-b", "id-c"],
)
rows = [
(TaskStatus.IN_PROGRESS, ["id-a"]), # live -> claims crit a
(TaskStatus.CANCELLED, ["id-b"]), # cancelled -> claim void
]
# unclaimed: crit a is claimed by the live child; crit b (only the cancelled
# child) and crit c (nobody) remain.
assert await _svc_with_children(parent, rows).unclaimed_parent_acceptance_criteria(
parent.id
) == ["crit b", "crit c"]
# roll-up still flags crit a too: the live child has not COMPLETED it.
assert await _svc_with_children(parent, rows).uncovered_parent_acceptance_criteria(
parent.id
) == [
"crit a",
"crit b",
"crit c",
]
def _svc_with_sibling_status_seq(rows: list[tuple]) -> TaskService:
"""TaskService whose execute() yields (status, sequence[, created_at])
sibling rows; 2-tuples are padded with created_at=None (only compared on
a sequence tie)."""
row_width = 3 # (status, sequence, created_at)
res = MagicMock()
res.all.return_value = [r if len(r) == row_width else (*r, None) for r in rows]
return TaskService(MagicMock(execute=AsyncMock(return_value=res)))
@pytest.mark.asyncio
async def test_earlier_incomplete_code_sibling_true_for_live_lower_seq() -> None:
# A dev's queued code leaf (seq 2) is lane-held while its own seq-0 sibling
# is still in flight — so it must not pin the dev to idle.
task = _build_task(
task_type=TaskType.CODE.value,
parent_task_id=uuid4(),
assigned_to=uuid4(),
sequence=2,
)
svc = _svc_with_sibling_status_seq([(TaskStatus.IN_PROGRESS, 0)])
assert await svc.has_earlier_incomplete_code_sibling(task) is True
@pytest.mark.asyncio
async def test_earlier_incomplete_code_sibling_false_when_earlier_terminal() -> None:
task = _build_task(
task_type=TaskType.CODE.value,
parent_task_id=uuid4(),
assigned_to=uuid4(),
sequence=2,
)
svc = _svc_with_sibling_status_seq(
[(TaskStatus.COMPLETED, 0), (TaskStatus.CANCELLED, 1)]
)
assert await svc.has_earlier_incomplete_code_sibling(task) is False
@pytest.mark.asyncio
async def test_earlier_incomplete_code_sibling_tie_breaks_by_created_at() -> None:
# Wave ties (equal sequence) order by created_at: the earlier-created
# tied sibling holds the later one; a later-created one does not.
task = _build_task(
task_type=TaskType.CODE.value,
parent_task_id=uuid4(),
assigned_to=uuid4(),
sequence=1,
created_at=datetime(2026, 7, 10, 12, 0, tzinfo=UTC),
)
earlier = datetime(2026, 7, 10, 11, 0, tzinfo=UTC)
later = datetime(2026, 7, 10, 13, 0, tzinfo=UTC)
svc = _svc_with_sibling_status_seq([(TaskStatus.IN_PROGRESS, 1, earlier)])
assert await svc.has_earlier_incomplete_code_sibling(task) is True
svc = _svc_with_sibling_status_seq([(TaskStatus.IN_PROGRESS, 1, later)])
assert await svc.has_earlier_incomplete_code_sibling(task) is False
@pytest.mark.asyncio
async def test_earlier_incomplete_code_sibling_false_for_higher_seq_only() -> None:
# A LATER sibling (seq 3) does not hold an earlier leaf (seq 2).
task = _build_task(
task_type=TaskType.CODE.value,
parent_task_id=uuid4(),
assigned_to=uuid4(),
sequence=2,
)
svc = _svc_with_sibling_status_seq([(TaskStatus.IN_PROGRESS, 3)])
assert await svc.has_earlier_incomplete_code_sibling(task) is False
@pytest.mark.asyncio
async def test_earlier_incomplete_code_sibling_non_code_short_circuits() -> None:
# Only code queues sequence this way; a planning/doc leaf never queries.
session = MagicMock(execute=AsyncMock())
svc = TaskService(session)
task = _build_task(
task_type="planning",
parent_task_id=uuid4(),
assigned_to=uuid4(),
sequence=2,
)
assert await svc.has_earlier_incomplete_code_sibling(task) is False
session.execute.assert_not_awaited()
@pytest.mark.asyncio
async def test_earlier_incomplete_code_sibling_false_when_fields_missing() -> None:
task = _build_task(
task_type=TaskType.CODE.value,
parent_task_id=None,
assigned_to=uuid4(),
sequence=2,
)
svc = _svc_with_sibling_status_seq([(TaskStatus.IN_PROGRESS, 0)])
assert await svc.has_earlier_incomplete_code_sibling(task) is False
@pytest.mark.asyncio
async def test_unblock_with_branch_resumes_in_progress() -> None:
# A task claimed (has a branch) before it blocked resumes in_progress.
task = _build_task(
status=TaskStatus.BLOCKED,
branch_name="feature/backend/abc12345",
blocker_raised_by=uuid4(),
)
svc = TaskService(MagicMock(flush=AsyncMock()))
_bind(svc, "get", AsyncMock(return_value=task))
_bind(svc, "_index_lifecycle_event_background", AsyncMock())
out = await svc.unblock(task.id)
assert out is task
assert task.status == TaskStatus.IN_PROGRESS
# ---------------------------------------------------------------------------
# cell_pm_complete
# ---------------------------------------------------------------------------
@pytest.mark.asyncio
async def test_cell_pm_complete_appends_merge_commit() -> None:
task = _build_task(commits=[{"hash": "old", "message": "earlier"}])
svc = TaskService(MagicMock(flush=AsyncMock()))
complete_mock = AsyncMock(return_value=task)
_bind(svc, "get", AsyncMock(return_value=task))
_bind(svc, "complete", complete_mock)
pm_id = uuid4()
await svc.cell_pm_complete(pm_id, task.id, "all good", merge_commit="deadbeef")
assert task.commits[-1]["hash"] == "deadbeef"
assert task.commits[-1]["kind"] == "merge"
complete_mock.assert_awaited_once_with(task.id, agent_id=pm_id)
@pytest.mark.asyncio
async def test_cell_pm_complete_skips_merge_when_none() -> None:
task = _build_task(commits=[])
svc = TaskService(MagicMock(flush=AsyncMock()))
complete_mock = AsyncMock(return_value=task)
_bind(svc, "get", AsyncMock(return_value=task))
_bind(svc, "complete", complete_mock)
await svc.cell_pm_complete(uuid4(), task.id, "all good", merge_commit=None)
assert task.commits == []
# ---------------------------------------------------------------------------
# escalate / escalate_up_to_role
# ---------------------------------------------------------------------------
@pytest.mark.asyncio
async def test_escalate_returns_none_when_no_target_configured(
monkeypatch: pytest.MonkeyPatch,
) -> None:
task = _build_task()
agent = MagicMock(id=uuid4(), slug="lone-agent")
agent_result = MagicMock()
agent_result.scalar_one_or_none.return_value = agent
session = MagicMock()
session.execute = AsyncMock(return_value=agent_result)
session.flush = AsyncMock()
svc = TaskService(session)
_bind(svc, "get", AsyncMock(return_value=task))
monkeypatch.setattr(
"roboco.agents_config.get_escalation_target", lambda _slug: None
)
out = await svc.escalate(uuid4(), task.id, "stuck")
assert out is None
@pytest.mark.asyncio
async def test_escalate_up_to_role_returns_none_for_unknown_role() -> None:
task = _build_task()
agent = MagicMock(id=uuid4(), slug="some-agent")
agent_result = MagicMock()
agent_result.scalar_one_or_none.return_value = agent
session = MagicMock()
session.execute = AsyncMock(return_value=agent_result)
svc = TaskService(session)
_bind(svc, "get", AsyncMock(return_value=task))
out = await svc.escalate_up_to_role(uuid4(), task.id, "bogus_role", "reason")
assert out is None
# ---------------------------------------------------------------------------
# _ensure_branch_for_task — coordination/fan-out tasks do no git
# ---------------------------------------------------------------------------
@pytest.mark.asyncio
async def test_ensure_branch_returns_existing_branch() -> None:
"""An already-branched task short-circuits before any project check."""
svc = TaskService(MagicMock())
task = MagicMock(branch_name="feature/backend/abc12345", project_id=None)
assert (
await svc._ensure_branch_for_task(task, uuid4()) == "feature/backend/abc12345"
)
@pytest.mark.asyncio
async def test_ensure_branch_coordination_root_cuts_integration_branch() -> None:
"""A product-backed root cuts feature/main_pm/{root} in each product repo."""
svc = TaskService(MagicMock())
task = MagicMock(branch_name=None, project_id=None, product_id=uuid4())
create_in_project = AsyncMock(return_value="feature/main_pm/root1234")
_bind(svc, "_create_branch_in_project", create_in_project)
product_svc = MagicMock(distinct_project_ids=AsyncMock(return_value=[uuid4()]))
project_svc = MagicMock(get=AsyncMock(return_value=MagicMock()))
with (
patch("roboco.services.product.get_product_service", return_value=product_svc),
patch("roboco.services.project.get_project_service", return_value=project_svc),
):
result = await svc._ensure_branch_for_task(task, uuid4())
assert result == "feature/main_pm/root1234"
create_in_project.assert_awaited_once()
@pytest.mark.asyncio
async def test_ensure_branch_coordination_root_no_cell_map_stays_branchless() -> None:
"""A product with no cell->repo map yet stays branchless (graceful fallback)."""
svc = TaskService(MagicMock())
task = MagicMock(branch_name=None, project_id=None, product_id=uuid4())
product_svc = MagicMock(distinct_project_ids=AsyncMock(return_value=[]))
with patch("roboco.services.product.get_product_service", return_value=product_svc):
result = await svc._ensure_branch_for_task(task, uuid4())
assert result == ""
@pytest.mark.asyncio
async def test_ensure_branch_cell_map_root_cuts_integration_branch_per_project() -> (
None
):
"""An ad-hoc cell_projects root cuts feature/main_pm/{root} in each distinct
project the map spans — the product-root path with the map sourced from the
task instead of a Product."""
svc = TaskService(MagicMock())
be_proj, fe_proj = uuid4(), uuid4()
cell_map = [
SimpleNamespace(team=Team.BACKEND, project_id=be_proj),
SimpleNamespace(team=Team.FRONTEND, project_id=fe_proj),
]
task = MagicMock(
branch_name=None,
project_id=None,
product_id=None,
batch_id=uuid4(),
parent_task_id=uuid4(),
cell_projects=cell_map,
)
create_in_project = AsyncMock(return_value="feature/main_pm/root1234")
_bind(svc, "_create_branch_in_project", create_in_project)
project_svc = MagicMock(get=AsyncMock(return_value=MagicMock()))
with patch("roboco.services.project.get_project_service", return_value=project_svc):
result = await svc._ensure_branch_for_task(task, uuid4())
assert result == "feature/main_pm/root1234"
# one integration branch per distinct project in the map (here 2 cells, 2 projects)
assert create_in_project.await_count == len(cell_map)
@pytest.mark.asyncio
async def test_distinct_projects_for_task_dedupes_cell_map_by_project_id() -> None:
"""Two cells mapping at the same project (the monorepo case) yield ONE
integration branch, not two — mirroring product distinct_project_ids."""
svc = TaskService(MagicMock())
shared = uuid4()
task = MagicMock(
project_id=None,
product_id=None,
cell_projects=[
SimpleNamespace(team=Team.FRONTEND, project_id=shared),
SimpleNamespace(team=Team.BACKEND, project_id=shared),
],
)
ids = await svc._distinct_projects_for_task(task)
assert ids == [shared]
@pytest.mark.asyncio
async def test_ensure_branch_raises_when_neither_project_nor_product() -> None:
"""A task with neither a project, a product, nor a cell map is misconfigured."""
svc = TaskService(MagicMock())
task = MagicMock(
branch_name=None,
project_id=None,
product_id=None,
cell_projects=[],
batch_id=None,
parent_task_id=None,
)
with pytest.raises(ValueError, match="project_id"):
await svc._ensure_branch_for_task(task, uuid4())
# ---------------------------------------------------------------------------
# _finalize_claim — branch-creation failure rollback (F060)
# ---------------------------------------------------------------------------
@pytest.mark.asyncio
async def test_finalize_claim_rollback_emits_reversal_audit() -> None:
"""When branch creation fails mid-claim, the rollback must emit a REVERSAL
audit row (CLAIMED -> original) so the audit journey matches the real
(rolled-back) task state. The audit service writes on its own connection, so
the forward `task.claimed` row is NOT undone by the rollback's flush.
"""
session = MagicMock()
session.flush = AsyncMock()
svc = TaskService(session)
task = _build_task(
status=TaskStatus.PENDING,
branch_name=None, # forces the branch-creation path
project_id=uuid4(),
product_id=None,
batch_id=None,
parent_task_id=None,
cell_projects=[], # a plain code task, not a branchless coordination root
pr_created=False,
pr_number=None,
)
agent = MagicMock(id=uuid4(), role=AgentRole.DEVELOPER)
audit_calls: list[dict[str, Any]] = []
def _capture(
_task: object, *, from_status: str, to_status: str, **_kw: object
) -> None:
audit_calls.append({"from": from_status, "to": to_status})
_bind(svc, "_emit_status_transition_audit", _capture)
_bind(
svc,
"_ensure_branch_for_task",
AsyncMock(side_effect=RuntimeError("branch boom")),
)
with pytest.raises(RuntimeError, match="branch boom"):
await svc._finalize_claim(task, agent, agent.id)
# The task reverted to its pre-claim status (the existing behavior).
assert task.status == TaskStatus.PENDING
# The forward claim row was emitted...
assert {"from": "pending", "to": "claimed"} in audit_calls
# ...AND the reversal row is emitted so the journey's last event matches
# the rolled-back state (the F060 fix). Before the fix this was missing.
assert {"from": "claimed", "to": "pending"} in audit_calls
@pytest.mark.asyncio
async def test_emit_status_transition_audit_writes_in_session_atomically() -> None:
"""The status-transition audit row is written into the CALLER's session (same
transaction as the transition), not fire-and-forget on a separate connection,
so it commits/rolls back atomically with the transition and cannot diverge
from real state. Asserted at the unit level: the row is ``session.add``-ed
(same txn) and NO fire-and-forget background task is spawned.
"""
session = MagicMock()
added: list[object] = []
session.add.side_effect = added.append
svc = TaskService(session)
prior_bg = set(svc._background_tasks)
task = MagicMock(id=uuid4(), claimed_by=uuid4(), team=Team.BACKEND)
svc._emit_status_transition_audit(
task,
from_status="pending",
to_status="claimed",
agent_role="developer",
audit_agent_id=None,
)
# The audit row is added to the CALLER's session (same transaction) — not
# dispatched to a separate fire-and-forget connection.
rows = [r for r in added if isinstance(r, AuditLogTable)]
assert len(rows) == 1
row = rows[0]
assert row.event_type == "task.claimed"
assert row.target_type == "task"
assert row.target_id == task.id
assert row.details["from_status"] == "pending"
assert row.details["to_status"] == "claimed"
assert row.details["agent_role"] == "developer"
assert row.details["team"] == "backend"
# The claiming agent is attributed (resolved from claimed_by).
assert row.agent_id == task.claimed_by
# No fire-and-forget audit task was spawned (the old decoupled path).
assert svc._background_tasks == prior_bg
# ---------------------------------------------------------------------------
# _resolve_doc_abspath — normalize documenter-supplied paths under /app/docs
# ---------------------------------------------------------------------------
def test_resolve_doc_abspath_strips_redundant_docs_prefix() -> None:
"""A `docs/`-rooted relative path must not double the base segment.
DOCS_BASE_PATH is /app/docs; joining it with `docs/design/x.md` produced
/app/docs/docs/design/x.md, so the file was never found and never indexed.
"""
assert (
TaskService._resolve_doc_abspath("docs/design/spec.md")
== "/app/docs/design/spec.md"
)
def test_resolve_doc_abspath_keeps_plain_relative_path() -> None:
"""A relative path with no `docs/` prefix joins under the base unchanged."""
assert (
TaskService._resolve_doc_abspath("design/spec.md") == "/app/docs/design/spec.md"
)
def test_resolve_doc_abspath_passes_absolute_path_through() -> None:
"""An absolute path already correctly rooted under the base is unchanged."""
assert (
TaskService._resolve_doc_abspath("/app/docs/design/spec.md")
== "/app/docs/design/spec.md"
)
def test_resolve_doc_abspath_collapses_doubled_absolute_docs() -> None:
"""An absolute path that doubled the base segment is collapsed.
The documenter sometimes records `/app/docs/docs/...`; previously it was
returned verbatim and never resolved on disk (the recurring "Source not
found" warning).
"""
assert (
TaskService._resolve_doc_abspath("/app/docs/docs/backend/api/prompter.md")
== "/app/docs/backend/api/prompter.md"
)
def test_resolve_doc_abspath_leaves_external_absolute_path() -> None:
"""An absolute path outside the docs root is left as-is for the indexer to skip."""
external = "/data/workspaces/panel/frontend/fe-dev-1/src/page.tsx"
assert TaskService._resolve_doc_abspath(external) == external
@pytest.mark.asyncio
async def test_update_skips_none_to_protect_partial_callers() -> None:
"""update() must skip None values, not write them.
Callers pass field=dict.get('x'), which is None when the key is absent —
e.g. the board-redraft update_live_draft path passes title/acceptance_criteria
that way. Without the None-skip guard those None values would null-wipe
existing data. Explicit clearing is the update ROUTE's job (a field
whitelist), never this shared service method. Locks that contract so the
guard can't be silently removed again.
"""
task = SimpleNamespace(title="original", acceptance_criteria=["keep me"])
svc = TaskService(MagicMock(flush=AsyncMock()))
with patch.object(svc, "get", AsyncMock(return_value=task)):
result: Any = await svc.update(
uuid4(), title="updated", acceptance_criteria=None
)
assert result is task
assert task.title == "updated" # explicit, non-None value is applied
assert task.acceptance_criteria == ["keep me"] # None skipped, not wiped
# ---------------------------------------------------------------------------
# M20: admin_set_status terminal guard + skip revision bump under force
# ---------------------------------------------------------------------------
@pytest.mark.asyncio
async def test_admin_set_status_refuses_terminal_to_non_terminal_without_force(
db_session: AsyncSession,
) -> None:
agent = AgentTable(
id=uuid4(),
name="A",
slug=f"a-{uuid4().hex[:8]}",
role=AgentRole.DEVELOPER,
team=Team.BACKEND,
status=AgentStatus.ACTIVE,
model_config={},
system_prompt="dev",
capabilities=[],
permissions={},
metrics={},
)
db_session.add(agent)
await db_session.flush()
project = ProjectTable(
id=uuid4(),
name="P",
slug=f"p-{uuid4().hex[:6]}",
git_url="https://example.com/r.git",
assigned_cell=Team.BACKEND,
created_by=agent.id,
)
db_session.add(project)
await db_session.flush()
tid = uuid4()
db_session.add(
TaskTable(
id=tid,
title="t",
description="d",
acceptance_criteria=["done"],
status=TaskStatus.COMPLETED,
priority=2,
task_type=TaskType.CODE,
nature=TaskNature.TECHNICAL,
estimated_complexity=Complexity.LOW,
team=Team.BACKEND,
confirmed_by_human=True,
project_id=project.id,
created_by=agent.id,
branch_name="feature/x",
revision_count=2,
)
)
await db_session.flush()
svc = get_task_service(db_session)
with pytest.raises(TaskLifecycleError):
await svc.admin_set_status(tid, TaskStatus.NEEDS_REVISION)
@pytest.mark.asyncio
async def test_admin_set_status_force_no_revision_bump(
db_session: AsyncSession,
) -> None:
agent = AgentTable(
id=uuid4(),
name="A",
slug=f"a-{uuid4().hex[:8]}",
role=AgentRole.DEVELOPER,
team=Team.BACKEND,
status=AgentStatus.ACTIVE,
model_config={},
system_prompt="dev",
capabilities=[],
permissions={},
metrics={},
)
db_session.add(agent)
await db_session.flush()
project = ProjectTable(
id=uuid4(),
name="P",
slug=f"p-{uuid4().hex[:6]}",
git_url="https://example.com/r.git",
assigned_cell=Team.BACKEND,
created_by=agent.id,
)
db_session.add(project)
await db_session.flush()
tid = uuid4()
db_session.add(
TaskTable(
id=tid,
title="t",
description="d",
acceptance_criteria=["done"],
status=TaskStatus.COMPLETED,
priority=2,
task_type=TaskType.CODE,
nature=TaskNature.TECHNICAL,
estimated_complexity=Complexity.LOW,
team=Team.BACKEND,
confirmed_by_human=True,
project_id=project.id,
created_by=agent.id,
branch_name="feature/x",
revision_count=2,
)
)
await db_session.flush()
svc = get_task_service(db_session)
await svc.admin_set_status(
tid, TaskStatus.NEEDS_REVISION, force=True, actor_id=cast("UUID", agent.id)
)
row = (
await db_session.execute(select(TaskTable).where(TaskTable.id == tid))
).scalar_one()
assert row.status == TaskStatus.NEEDS_REVISION
expected_revision_count = 2
assert row.revision_count == expected_revision_count, (
"admin force terminal->needs_revision bumped revision_count — "
"admin recovery must not be counted as rework in metrics"
)
# ---------------------------------------------------------------------------
# _extract_completion_learnings — dead-letter on record_learning failure
# ---------------------------------------------------------------------------
@pytest.mark.asyncio
async def test_extract_completion_learnings_dead_letters_on_failure() -> None:
"""A record_learning failure (embedder down) is persisted to the
rag_index_failures dead-letter instead of dropped. The caller's commit
is never blocked — the dead-letter uses its own session."""
svc = TaskService(MagicMock())
task = MagicMock(spec=TaskTable)
task.id = uuid4()
task.title = "do thing"
task.team = Team.BACKEND
task.started_at = datetime.now(UTC)
task.completed_at = datetime.now(UTC)
task.estimated_complexity = Complexity.MEDIUM
task.commits = []
task.dev_notes = "notes"
task.qa_notes = None
task.assigned_to = uuid4()
task.acceptance_criteria = ["ac1"]
learning_svc = MagicMock()
learning_svc.record_learning = AsyncMock(side_effect=RuntimeError("embedder 429"))
async def _fake_completion_learnings_for(
_snapshot: object, _ac: object
) -> list[tuple[str, LearningType]]:
return [("a lesson", LearningType.SOLUTION)]
_bind(svc, "_completion_learnings_for", _fake_completion_learnings_for)
with (
patch(
"roboco.services.learning.get_learning_service",
AsyncMock(return_value=learning_svc),
),
patch(
"roboco.services.rag_index_failures.persist_failure",
new=AsyncMock(),
) as mock_persist,
):
await svc._extract_completion_learnings(task, agent_id=None)
mock_persist.assert_awaited_once()
call_args = mock_persist.await_args
assert call_args is not None
assert call_args.args[0] == "completion_learning"
payload = call_args.args[1]
assert payload["content"] == "a lesson"
assert payload["learning_type"] == LearningType.SOLUTION.value
# ---------------------------------------------------------------------------
# list_completed_video_tasks — bounded scan (M4)
# ---------------------------------------------------------------------------
@pytest.mark.asyncio
async def test_list_completed_video_tasks_bounded_to_scan_limit(
db_session: AsyncSession,
) -> None:
"""Render-loop scan basis must be bounded to ``video_render_scan_limit``.
Pre-fix returned every completed VIDEO_SOURCE task ever (unbounded). With
the bound + descending order, the ``video_render_scan_limit`` newest are
returned and the 50 unrendered newest (the ones the loop actually acts
on) are included.
"""
scan_limit = settings.video_render_scan_limit
old_rendered_count = 250
new_unrendered_count = 50
assert scan_limit < old_rendered_count + new_unrendered_count, (
"test fixture assumes the scan limit is smaller than the seeded set"
)
system_agent = AgentTable(
id=uuid4(),
name="System",
slug=f"system-{uuid4().hex[:8]}",
role=AgentRole.SYSTEM,
team=None,
status=AgentStatus.ACTIVE,
model_config={},
system_prompt="system",
capabilities=[],
permissions={},
metrics={},
)
db_session.add(system_agent)
await db_session.flush()
project = ProjectTable(
id=uuid4(),
name="Video Bounded Scan Test",
slug=f"video-bounded-{uuid4().hex[:8]}",
git_url="https://github.com/example/video-bounded.git",
default_branch="main",
protected_branches=["main"],
assigned_cell=Team.UX_UI,
created_by=system_agent.id,
is_active=True,
)
db_session.add(project)
await db_session.flush()
base = datetime(2026, 1, 1, tzinfo=UTC)
seeded_ids: list[Any] = []
# Older completed video tasks — render_status="rendered" (already handled
# by a prior render pass; the loop skips them in Python).
for i in range(old_rendered_count):
task = TaskTable(
id=uuid4(),
title=f"video-old-{i}",
description="older rendered video task",
acceptance_criteria=["criterion"],
status=TaskStatus.COMPLETED,
priority=2,
task_type=TaskType.CODE,
nature=TaskNature.TECHNICAL,
project_id=project.id,
branch_name=f"feature/ux-ui/OLD{i}",
source=VIDEO_SOURCE,
created_at=base + timedelta(minutes=i),
created_by=system_agent.id,
team=Team.UX_UI,
dependency_ids=[],
blocker_ids=[],
sequence=0,
estimated_complexity=Complexity.MEDIUM,
)
markers.set_video_draft(
task,
{
"composition_id": f"comp-old-{i}",
"render_status": "rendered",
"platforms": ["x"],
},
)
db_session.add(task)
seeded_ids.append(task.id)
# Newer completed video tasks — render_status unset (the loop's actual
# work queue). created_at after every older task so they sort newest
# under .order_by(created_at.desc()).
newest_ids: list[Any] = []
for i in range(new_unrendered_count):
task = TaskTable(
id=uuid4(),
title=f"video-new-{i}",
description="newest unrendered video task",
acceptance_criteria=["criterion"],
status=TaskStatus.COMPLETED,
priority=2,
task_type=TaskType.CODE,
nature=TaskNature.TECHNICAL,
project_id=project.id,
branch_name=f"feature/ux-ui/NEW{i}",
source=VIDEO_SOURCE,
created_at=base + timedelta(hours=10, minutes=i),
created_by=system_agent.id,
team=Team.UX_UI,
dependency_ids=[],
blocker_ids=[],
sequence=0,
estimated_complexity=Complexity.MEDIUM,
)
markers.set_video_draft(
task,
{"composition_id": f"comp-new-{i}", "platforms": ["x"]},
)
db_session.add(task)
newest_ids.append(task.id)
await db_session.commit()
svc = TaskService(db_session)
rows = await svc.list_completed_video_tasks()
assert len(rows) <= scan_limit, f"scan not bounded: returned {len(rows)}"
assert len(rows) == scan_limit, f"expected exactly the limit, got {len(rows)}"
# Newest-first ordering.
created_times = [r.created_at for r in rows]
assert created_times == sorted(created_times, reverse=True)
# The unrendered newest are all inside the bounded window.
returned_ids = {r.id for r in rows}
missing_new = set(newest_ids) - returned_ids
assert not missing_new, (
f"{len(missing_new)} newest unrendered tasks dropped by the bound"
)
# ---------------------------------------------------------------------------
# _ceo_reject_finding_texts — caller-side truncation for the ceo_reject finding
# ---------------------------------------------------------------------------
_CEO_ACTUAL_CAP = 300
_CEO_EVIDENCE_CAP = 2000
def test_ceo_reject_finding_texts_short_reason_untruncated() -> None:
actual, evidence = _ceo_reject_finding_texts("redo the auth flow")
assert actual == "redo the auth flow"
assert evidence is None
def test_ceo_reject_finding_texts_truncates_over_actual_cap() -> None:
reason = "x" * (_CEO_ACTUAL_CAP + 50)
actual, evidence = _ceo_reject_finding_texts(reason)
assert len(actual) <= _CEO_ACTUAL_CAP
assert actual.endswith("]")
assert "chars omitted" in actual
# The untruncated reason survives in evidence (well under its own cap).
assert evidence == reason
def test_ceo_reject_finding_texts_caps_evidence_too() -> None:
reason = "y" * (_CEO_EVIDENCE_CAP + 500)
actual, evidence = _ceo_reject_finding_texts(reason)
assert len(actual) <= _CEO_ACTUAL_CAP
assert evidence is not None
assert len(evidence) <= _CEO_EVIDENCE_CAP
assert "chars omitted" in evidence
def test_ceo_reject_finding_texts_strips_whitespace() -> None:
actual, evidence = _ceo_reject_finding_texts(" redo it ")
assert actual == "redo it"
assert evidence is None