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https://github.com/rennf93/roboco.git
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fix(deps): gate the pre-assigned dev path on unmet dependencies
A dev subtask is always pre-assigned (assigned_to=<dev>), so it never flows through the unassigned claim pool's dependency filter (list_pending(filter_by_dependencies=True)). Every path that acts on a pre-assigned pending dev subtask previously ignored dependency_ids: the orchestrator spawned the dev container, give_me_work offered the task, and the claim verb accepted it — letting a frontend dev code ahead of an unfinished UX/UI design. Hold the pre-assigned dev at each path it actually arrives by, until every dependency reaches a terminal state: - orchestrator _validate_task_for_spawn now consults dependency_ids via _check_dependencies_terminal and skips the spawn while any dependency is non-terminal (fail-closed on an unreadable dependency); - TaskService.list_pending_for_agent excludes a pre-assigned task with unmet dependencies so give_me_work does not offer it; - the Choreographer claim guard set rejects the claim with a clear remediate via a new unmet_dependency_guard. Add TaskService.unmet_dependency_ids as the single source of truth for "which dependency IDs are not yet terminal" and route the existing inherit_unmet_dependencies through it.
This commit is contained in:
@@ -3314,25 +3314,14 @@ Start by:
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"""
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from roboco.agents_config import get_agent_role
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task_id = task.get("id")
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if not task_id:
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return "Task missing ID"
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min_description_len = 10
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if shape_err := await self._check_spawn_task_shape(client, task):
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return shape_err
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description = (task.get("description") or "").strip()
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if len(description) < min_description_len:
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return (
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f"Task {task_id} has inadequate description ({len(description)} chars)"
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)
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# A coordination task carries a product instead of a repo; only a task
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# with neither is genuinely unroutable.
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if not task.get("project_id") and not _is_coordination_task(task):
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await self._auto_block_task(
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client, task_id, "Task needs a project_id or product_id"
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)
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return f"Task {task_id} needs a project or product"
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if dep_err := await self._check_dependencies_terminal(client, task):
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return dep_err
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# _check_spawn_task_shape guarantees a non-empty id past this point.
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task_id = str(task.get("id"))
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parent_id = task.get("parent_task_id")
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if parent_id:
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err = await self._check_parent_branch_ready(client, task_id, parent_id)
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@@ -3348,6 +3337,54 @@ Start by:
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return None # All validations passed
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async def _check_spawn_task_shape(
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self, client: httpx.AsyncClient, task: dict[str, Any]
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) -> str | None:
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"""Reject a task that is structurally unroutable (id/description/repo)."""
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task_id = task.get("id")
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if not task_id:
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return "Task missing ID"
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min_description_len = 10
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description = (task.get("description") or "").strip()
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if len(description) < min_description_len:
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return (
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f"Task {task_id} has inadequate description ({len(description)} chars)"
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)
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# A coordination task carries a product instead of a repo; only a task
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# with neither is genuinely unroutable.
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if not task.get("project_id") and not _is_coordination_task(task):
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await self._auto_block_task(
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client, task_id, "Task needs a project_id or product_id"
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)
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return f"Task {task_id} needs a project or product"
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return None
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async def _check_dependencies_terminal(
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self, client: httpx.AsyncClient, task: dict[str, Any]
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) -> str | None:
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"""Hold a pre-assigned task whose dependencies are not yet terminal.
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A dev subtask is always pre-assigned, so it never passes through the
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unassigned claim pool's dependency filter. Without this gate the
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dispatcher would spawn the dev container while a cross-cell dependency
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(e.g. the UX/UI design the frontend dev waits on) is still open. Return
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a skip reason while ANY dependency is non-terminal; allow the spawn
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once every dependency reaches completed/cancelled.
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"""
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dependency_ids = task.get("dependency_ids") or []
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if not dependency_ids:
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return None
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terminal = ("completed", "cancelled")
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for dep_id in dependency_ids:
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dep_resp = await client.get(f"{self._api_url}/tasks/{dep_id}")
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# A dependency we cannot read is treated as unmet — fail closed
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# rather than spawn ahead of work whose state is unknown.
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if not dep_resp.is_success or dep_resp.json().get("status") not in terminal:
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return (
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f"Task {task.get('id')} waiting on non-terminal dependency {dep_id}"
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)
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return None
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async def _auto_block_task(
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self, client: httpx.AsyncClient, task_id: str, reason: str
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) -> None:
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@@ -25,6 +25,7 @@ from roboco.services.gateway.claim_guards import (
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already_active_guard,
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paused_tasks_guard,
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sibling_sequence_guard,
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unmet_dependency_guard,
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)
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from roboco.services.gateway.envelope import Envelope
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from roboco.services.gateway.evidence_builder import (
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@@ -700,6 +701,11 @@ class Choreographer:
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paused = await self.task.list_paused_for_agent(agent_id)
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if guard := paused_tasks_guard(paused):
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return guard
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dep_ids = list(task.dependency_ids)
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if dep_ids:
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unmet = await self.task.unmet_dependency_ids(dep_ids)
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if guard := unmet_dependency_guard(task, unmet):
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return guard
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if not skip_sequence:
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siblings = await self._fetch_siblings(task)
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if guard := sibling_sequence_guard(task, siblings):
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@@ -81,6 +81,34 @@ def paused_tasks_guard(paused_tasks: list[Any]) -> Envelope | None:
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)
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def unmet_dependency_guard(
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target_task: Any, unmet_dependency_ids: list[UUID]
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) -> Envelope | None:
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"""Refuse claim while the task has non-terminal dependencies.
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A task may not be claimed until every task it ``depends_on`` reaches a
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terminal state (completed/cancelled). This holds the pre-assigned dev
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that arrives via the claim verb directly — the dependency filter on the
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unassigned claim pool (``list_pending(filter_by_dependencies=True)``)
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never sees a pre-assigned task. ``unmet_dependency_ids`` is resolved by
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the caller (it requires a DB read) so this predicate stays pure.
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"""
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if not unmet_dependency_ids:
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return None
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blockers = ", ".join(str(dep_id) for dep_id in unmet_dependency_ids)
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return Envelope.invalid_state(
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message=(
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f"task {target_task.id} depends on unfinished work; "
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f"{len(unmet_dependency_ids)} dependency(ies) not yet "
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"completed/cancelled."
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),
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remediate=(
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f"wait for dependency task(s) {blockers} to reach "
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"completed/cancelled before claiming this task"
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),
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)
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def _earlier_blocking_sibling(
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target_task: Any, siblings: list[Any], my_sequence: int
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) -> Any | None:
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+40
-10
@@ -4192,6 +4192,30 @@ class TaskService(BaseService):
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task.dependency_ids = [*task.dependency_ids, depends_on_id]
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await self.session.flush()
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async def unmet_dependency_ids(self, dependency_ids: list[UUID]) -> list[UUID]:
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"""Return the subset of dependency IDs whose status is non-terminal.
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A dependency is "met" only once it reaches a terminal state
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(completed/cancelled). This is the single source of truth for the
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"can a task that depends on these proceed?" question — reused by
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`list_pending`, `list_pending_for_agent`, `inherit_unmet_dependencies`,
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and the claim-time dependency guard. An empty input returns an empty
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list (no dependencies = nothing unmet).
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"""
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if not dependency_ids:
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return []
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terminal = {TaskStatus.COMPLETED, TaskStatus.CANCELLED}
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dep_result = await self.session.execute(
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select(TaskTable.id, TaskTable.status).where(
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TaskTable.id.in_(dependency_ids)
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)
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)
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return [
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dep_id
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for dep_id, dep_status in dep_result.all()
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if dep_status not in terminal
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]
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async def inherit_unmet_dependencies(
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self, subtask_id: UUID, parent_id: UUID
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) -> None:
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@@ -4208,15 +4232,8 @@ class TaskService(BaseService):
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parent = await self.get(parent_id)
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if parent is None or not parent.dependency_ids:
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return
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dep_result = await self.session.execute(
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select(TaskTable.id, TaskTable.status).where(
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TaskTable.id.in_(parent.dependency_ids)
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)
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)
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terminal = {TaskStatus.COMPLETED, TaskStatus.CANCELLED}
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for dep_id, dep_status in dep_result.all():
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if dep_status not in terminal:
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await self.add_dependency(subtask_id, dep_id)
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for dep_id in await self.unmet_dependency_ids(list(parent.dependency_ids)):
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await self.add_dependency(subtask_id, dep_id)
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async def get_subtasks(self, parent_task_id: UUID) -> list[TaskTable]:
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"""Get all subtasks of a parent task."""
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@@ -4990,6 +5007,13 @@ class TaskService(BaseService):
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assigned_to=<them> + status=pending got 'no work' until they
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triage()'d explicitly.
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A pre-assigned task with unmet (non-terminal) dependencies is held
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back: offering it would let the agent claim and work ahead of a
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dependency that has not resolved (e.g. a frontend dev coding before
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the UX/UI design lands). The pre-assigned path bypasses
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`list_pending(filter_by_dependencies=True)`, so the dependency gate
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must be applied here too.
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Ordered by sequence asc, then priority asc, then created_at asc so
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earlier-sequence tasks win.
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"""
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@@ -5006,7 +5030,13 @@ class TaskService(BaseService):
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)
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)
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result = await self.session.execute(query)
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return list(result.scalars().all())
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tasks = list(result.scalars().all())
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available: list[TaskTable] = []
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for task in tasks:
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if await self.unmet_dependency_ids(list(task.dependency_ids)):
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continue
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available.append(task)
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return available
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async def list_paused_for_agent(self, agent_id: UUID) -> list[TaskTable]:
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"""Paused tasks assigned to the agent."""
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@@ -0,0 +1,308 @@
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"""A pre-assigned dev subtask with an unmet (non-terminal) dependency must be
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held at EVERY path the developer actually arrives by — not only by the
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unassigned claim pool's dependency filter.
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A dev subtask is always pre-assigned (``assigned_to=<dev>``), so it never flows
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through ``list_pending(filter_by_dependencies=True)``. The three real arrival
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paths are exercised here against a real database:
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(a) orchestrator spawn dispatch — ``_validate_task_for_spawn`` (the HTTP path
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the dev container is spawned by) must return a skip reason and not spawn;
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(b) ``give_me_work`` — ``TaskService.list_pending_for_agent`` must exclude it;
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(c) claim — the Choreographer's ``_run_claim_guards`` (invoked by the
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``i_will_work_on`` verb) must reject it.
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Once the UX/UI dependency reaches a terminal state, all three allow the dev to
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proceed. This intentionally does NOT assert via
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``list_pending(filter_by_dependencies=True)`` — that gate serves the
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unassigned claim pool, not the pre-assigned dev.
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"""
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from __future__ import annotations
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from typing import TYPE_CHECKING
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from unittest.mock import PropertyMock, patch
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from uuid import uuid4
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import pytest
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import pytest_asyncio
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from fastapi import FastAPI
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from httpx import ASGITransport, AsyncClient
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from roboco.api.deps import get_db
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from roboco.api.routes.tasks import router as tasks_router
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from roboco.db.tables import AgentTable, ProductTable, ProjectTable, TaskTable
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from roboco.models import AgentRole, AgentStatus, Team
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from roboco.models.base import Complexity, TaskNature, TaskStatus, TaskType
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from roboco.models.task import TaskCreateRequest
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from roboco.runtime.orchestrator import AgentOrchestrator
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from roboco.services.gateway.choreographer._impl import (
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Choreographer,
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ChoreographerDeps,
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)
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from roboco.services.task import TaskService
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if TYPE_CHECKING:
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from collections.abc import AsyncIterator
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from sqlalchemy.ext.asyncio import AsyncSession
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# A canonical developer slug so the orchestrator's get_agent_role() classifies
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# the assignee as "developer" and the real dev-spawn validation runs.
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_DEV_SLUG = "fe-dev-1"
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_API_BASE = "http://test/api"
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@pytest_asyncio.fixture
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async def dep_gate_setup(db_session: AsyncSession) -> AsyncIterator[dict]:
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system = AgentTable(
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id=uuid4(),
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name="System",
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slug=f"system-{uuid4().hex[:8]}",
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role=AgentRole.SYSTEM,
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team=None,
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status=AgentStatus.ACTIVE,
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model_config={},
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system_prompt="s",
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capabilities=[],
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permissions={},
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metrics={},
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)
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fe_dev = AgentTable(
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id=uuid4(),
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name="FE Dev",
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slug=f"fe-dev-{uuid4().hex[:8]}",
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role=AgentRole.DEVELOPER,
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team=Team.FRONTEND,
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status=AgentStatus.ACTIVE,
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model_config={},
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system_prompt="s",
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capabilities=[],
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permissions={},
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metrics={},
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)
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db_session.add_all([system, fe_dev])
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await db_session.flush()
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fe_project = ProjectTable(
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id=uuid4(),
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name="FE",
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slug=f"fe-{uuid4().hex[:6]}",
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git_url="https://example.com/fe.git",
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assigned_cell=Team.FRONTEND,
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created_by=system.id,
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)
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ux_project = ProjectTable(
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id=uuid4(),
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name="UX",
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slug=f"ux-{uuid4().hex[:6]}",
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git_url="https://example.com/ux.git",
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assigned_cell=Team.UX_UI,
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created_by=system.id,
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)
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product = ProductTable(
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id=uuid4(),
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name="Prod",
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slug=f"prod-{uuid4().hex[:6]}",
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created_by=system.id,
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)
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db_session.add_all([fe_project, ux_project, product])
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await db_session.flush()
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svc = TaskService(db_session)
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choreo = Choreographer(
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ChoreographerDeps(
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task=svc,
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work_session=None,
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git=None,
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a2a=None,
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journal=None,
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audit=None,
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evidence_repo=None,
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)
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)
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app = FastAPI()
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app.include_router(tasks_router, prefix="/api/tasks")
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async def _override_db() -> AsyncIterator[AsyncSession]:
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yield db_session
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app.dependency_overrides[get_db] = _override_db
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# Bare orchestrator (skip __init__/settings I/O); _api_url is patched to the
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# in-process ASGI app so its HTTP dispatch hits the real DB.
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orch = AgentOrchestrator.__new__(AgentOrchestrator)
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transport = ASGITransport(app=app)
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async with AsyncClient(transport=transport, base_url="http://test") as client:
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with patch.object(
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AgentOrchestrator,
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"_api_url",
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new_callable=PropertyMock,
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return_value=_API_BASE,
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):
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yield {
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"svc": svc,
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"choreo": choreo,
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"orch": orch,
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"client": client,
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"creator": system.id,
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"fe_dev_db_id": fe_dev.id,
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"fe_project_id": fe_project.id,
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"ux_project_id": ux_project.id,
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"product_id": product.id,
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}
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app.dependency_overrides.clear()
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async def _seed_dev_subtask_with_unmet_dep(setup: dict) -> dict:
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"""A frontend dev subtask pre-assigned to the dev, depending on a UX task.
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Mirrors the product fan-out: a UX/UI cell task and a frontend cell task
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under a board root, with a pre-assigned dev subtask under the frontend cell
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whose dependency is the (still pending) UX task.
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"""
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svc: TaskService = setup["svc"]
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root = await svc.create(
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TaskCreateRequest(
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title="Build the feature (board fan-out)",
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description="a real coordination task description over twenty chars",
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acceptance_criteria=["delegated to frontend + ux_ui cells"],
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team=Team.BOARD,
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created_by=setup["creator"],
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project_id=None,
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product_id=setup["product_id"],
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task_type=TaskType.CODE,
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nature=TaskNature.NON_TECHNICAL,
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estimated_complexity=Complexity.HIGH,
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)
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)
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ux_cell = await svc.create_subtask(
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TaskCreateRequest(
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title="UX/UI design for the feature",
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description="a real ux design task description over twenty chars",
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acceptance_criteria=["wireframes approved"],
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team=Team.UX_UI,
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created_by=setup["creator"],
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project_id=setup["ux_project_id"],
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product_id=setup["product_id"],
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parent_task_id=root.id,
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task_type=TaskType.DESIGN,
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nature=TaskNature.TECHNICAL,
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estimated_complexity=Complexity.MEDIUM,
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)
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)
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fe_cell = await svc.create_subtask(
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TaskCreateRequest(
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title="Frontend implementation for the feature",
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description="a real frontend cell task description over twenty chars",
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acceptance_criteria=["UI matches the design"],
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team=Team.FRONTEND,
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created_by=setup["creator"],
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project_id=setup["fe_project_id"],
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product_id=setup["product_id"],
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parent_task_id=root.id,
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task_type=TaskType.CODE,
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nature=TaskNature.TECHNICAL,
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estimated_complexity=Complexity.MEDIUM,
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)
|
||||
)
|
||||
# Give the frontend cell (the dev subtask's parent) a branch so the
|
||||
# orchestrator's parent-branch gate is satisfied and the dependency gate is
|
||||
# the only thing that can hold the dev.
|
||||
fe_cell.branch_name = "feature/frontend/FECELL01"
|
||||
await svc.session.flush()
|
||||
|
||||
dev_subtask = await svc.create_subtask(
|
||||
TaskCreateRequest(
|
||||
title="Implement the login form component",
|
||||
description="a real dev subtask description over twenty chars long",
|
||||
acceptance_criteria=["form renders and submits"],
|
||||
team=Team.FRONTEND,
|
||||
created_by=setup["creator"],
|
||||
project_id=setup["fe_project_id"],
|
||||
product_id=setup["product_id"],
|
||||
parent_task_id=fe_cell.id,
|
||||
assigned_to=setup["fe_dev_db_id"],
|
||||
task_type=TaskType.CODE,
|
||||
nature=TaskNature.TECHNICAL,
|
||||
estimated_complexity=Complexity.MEDIUM,
|
||||
)
|
||||
)
|
||||
assert dev_subtask.status == TaskStatus.PENDING
|
||||
# The dev subtask depends on the UX cell task (cross-cell sequencing).
|
||||
await svc.add_dependency(dev_subtask.id, ux_cell.id)
|
||||
await svc.session.flush()
|
||||
refreshed = await svc.get(dev_subtask.id)
|
||||
assert refreshed is not None
|
||||
assert ux_cell.id in refreshed.dependency_ids, (
|
||||
"precondition: dev subtask must depend on the UX cell task"
|
||||
)
|
||||
return {"ux_cell": ux_cell, "fe_cell": fe_cell, "dev_subtask": dev_subtask}
|
||||
|
||||
|
||||
def _as_dict(task: TaskTable) -> dict:
|
||||
"""The task dict the orchestrator dispatcher operates on."""
|
||||
return {
|
||||
"id": str(task.id),
|
||||
"description": task.description,
|
||||
"project_id": str(task.project_id) if task.project_id else None,
|
||||
"product_id": str(task.product_id) if task.product_id else None,
|
||||
"parent_task_id": str(task.parent_task_id) if task.parent_task_id else None,
|
||||
"dependency_ids": [str(d) for d in task.dependency_ids],
|
||||
"estimated_complexity": task.estimated_complexity.value,
|
||||
"task_type": task.task_type.value,
|
||||
}
|
||||
|
||||
|
||||
@pytest.mark.asyncio
|
||||
async def test_all_three_dev_paths_gate_then_release(dep_gate_setup: dict) -> None:
|
||||
svc: TaskService = dep_gate_setup["svc"]
|
||||
choreo: Choreographer = dep_gate_setup["choreo"]
|
||||
orch: AgentOrchestrator = dep_gate_setup["orch"]
|
||||
client: AsyncClient = dep_gate_setup["client"]
|
||||
fe_dev_db_id = dep_gate_setup["fe_dev_db_id"]
|
||||
|
||||
tree = await _seed_dev_subtask_with_unmet_dep(dep_gate_setup)
|
||||
ux_cell = tree["ux_cell"]
|
||||
dev_subtask = tree["dev_subtask"]
|
||||
dev_dict = _as_dict(dev_subtask)
|
||||
|
||||
# --- (a) orchestrator spawn dispatch: _validate_task_for_spawn ---
|
||||
# REAL boundary: the dev container is spawned by _spawn_pending_dev ->
|
||||
# _validate_task_for_spawn. With UX pending, it must return a skip reason.
|
||||
issue = await orch._validate_task_for_spawn(client, dev_dict, _DEV_SLUG)
|
||||
assert issue is not None, "spawn validation must hold the dev while UX is unmet"
|
||||
assert "dependency" in issue
|
||||
|
||||
# --- (b) give_me_work: list_pending_for_agent ---
|
||||
offered = await svc.list_pending_for_agent(fe_dev_db_id)
|
||||
assert dev_subtask.id not in {t.id for t in offered}, (
|
||||
"give_me_work must not offer the dev subtask while UX is unmet"
|
||||
)
|
||||
|
||||
# --- (c) claim: _run_claim_guards (the i_will_work_on guard set) ---
|
||||
held = await svc.get(dev_subtask.id)
|
||||
guard = await choreo._run_claim_guards(agent_id=fe_dev_db_id, task=held)
|
||||
assert guard is not None, "claim guard must reject while UX is unmet"
|
||||
assert guard.error == "invalid_state"
|
||||
assert guard.remediate is not None
|
||||
assert str(ux_cell.id) in guard.remediate
|
||||
|
||||
# --- UX dependency reaches a terminal state ---
|
||||
ux_row = await svc.get(ux_cell.id)
|
||||
assert ux_row is not None
|
||||
ux_row.status = TaskStatus.COMPLETED
|
||||
await svc.session.flush()
|
||||
|
||||
# All three now allow the dev to proceed.
|
||||
assert await orch._validate_task_for_spawn(client, dev_dict, _DEV_SLUG) is None, (
|
||||
"spawn validation must allow the dev once UX is terminal"
|
||||
)
|
||||
offered_after = await svc.list_pending_for_agent(fe_dev_db_id)
|
||||
assert dev_subtask.id in {t.id for t in offered_after}, (
|
||||
"give_me_work must offer the dev subtask once UX is terminal"
|
||||
)
|
||||
released = await svc.get(dev_subtask.id)
|
||||
assert (
|
||||
await choreo._run_claim_guards(agent_id=fe_dev_db_id, task=released) is None
|
||||
), "claim guard must allow once UX is terminal"
|
||||
Reference in New Issue
Block a user