Files
ClaudeDo/tests/ClaudeDo.Worker.Tests/Queue/QueuePickerTests.cs
T
mika kuns 6c8ec245b3 feat(worker): dependsOn via MCP + honest staleness signal in merge preview
Adds a user/MCP-declared task dependency (DependsOnTaskId) distinct from the
planning chain's internal BlockedByTaskId: add_task/update_task can set it,
the queue picker skips a Queued task until the dependency reaches Done, a
Failed/Cancelled dependency leaves the dependent blocked instead of starving
silently, and setting a link rejects self-reference/unknown-id/cycles.
get_task/list_tasks/batch_get_tasks now report blocked/blockedReason, and
wait_for_task_change reports "Blocked" immediately instead of running out its
timeout on a task the picker will never claim.

preview_merge/preview_merge_set gain staleFiles: files a branch touches that
the target branch also changed since the branch's fork point, a more honest
staleness signal than `behind` alone.
2026-08-10 14:18:55 +02:00

243 lines
8.5 KiB
C#

using ClaudeDo.Data;
using ClaudeDo.Data.Models;
using ClaudeDo.Data.Repositories;
using ClaudeDo.Worker.Queue;
using ClaudeDo.Worker.Tests.Infrastructure;
using TaskStatus = ClaudeDo.Data.Models.TaskStatus;
namespace ClaudeDo.Worker.Tests.Queue;
public sealed class QueuePickerTests : IDisposable
{
private readonly DbFixture _db = new();
private readonly ClaudeDoDbContext _ctx;
private readonly TaskRepository _tasks;
private readonly ListRepository _lists;
private readonly QueuePicker _picker;
public QueuePickerTests()
{
_ctx = _db.CreateContext();
_tasks = new TaskRepository(_ctx);
_lists = new ListRepository(_ctx);
_picker = new QueuePicker(_db.CreateFactory());
}
public void Dispose()
{
_ctx.Dispose();
_db.Dispose();
}
private async Task<string> CreateListAsync(bool listAgentTag = false)
{
var listId = Guid.NewGuid().ToString();
await _lists.AddAsync(new ListEntity
{
Id = listId,
Name = "Test",
CreatedAt = DateTime.UtcNow,
});
return listId;
}
private async Task<TaskEntity> SeedAsync(
string listId,
TaskStatus status = TaskStatus.Queued,
DateTime? createdAt = null,
DateTime? scheduledFor = null,
string? blockedBy = null,
bool taskAgentTag = false,
int? sortOrder = null,
bool isManual = false,
string? dependsOn = null)
{
var task = new TaskEntity
{
Id = Guid.NewGuid().ToString(),
ListId = listId,
Title = "T",
Status = status,
CreatedAt = createdAt ?? DateTime.UtcNow,
ScheduledFor = scheduledFor,
BlockedByTaskId = blockedBy,
DependsOnTaskId = dependsOn,
CommitType = "feat",
IsManual = isManual,
};
await _tasks.AddAsync(task);
if (sortOrder is not null)
{
task.SortOrder = sortOrder.Value;
await _tasks.UpdateAsync(task);
}
return task;
}
[Fact]
public async Task ClaimNextAsync_Skips_ManualTasks()
{
var listId = await CreateListAsync();
await SeedAsync(listId, isManual: true);
Assert.Null(await _picker.ClaimNextAsync(DateTime.UtcNow, CancellationToken.None));
}
[Fact]
public async Task ClaimNextAsync_Skips_ManualTask_ButClaimsTheNextOne()
{
var listId = await CreateListAsync();
await SeedAsync(listId, createdAt: DateTime.UtcNow.AddMinutes(-5), isManual: true);
var claudeTask = await SeedAsync(listId, createdAt: DateTime.UtcNow);
var picked = await _picker.ClaimNextAsync(DateTime.UtcNow, CancellationToken.None);
Assert.NotNull(picked);
Assert.Equal(claudeTask.Id, picked!.Id);
}
[Fact]
public async Task ClaimNextAsync_Skips_TasksWithBlockedByTaskId()
{
var listId = await CreateListAsync(listAgentTag: true);
var blocker = await SeedAsync(listId);
await SeedAsync(listId, blockedBy: blocker.Id);
// Only `blocker` is unblocked → it should be claimed; the second pick is null.
var first = await _picker.ClaimNextAsync(DateTime.UtcNow, CancellationToken.None);
Assert.NotNull(first);
Assert.Equal(blocker.Id, first!.Id);
var second = await _picker.ClaimNextAsync(DateTime.UtcNow, CancellationToken.None);
Assert.Null(second);
}
[Fact]
public async Task ClaimNextAsync_Skips_TasksWithUnmetDependsOn()
{
var listId = await CreateListAsync();
var dependency = await SeedAsync(listId, status: TaskStatus.Idle);
await SeedAsync(listId, dependsOn: dependency.Id);
// The dependency is only Idle (not Done), so both stay unclaimed: the dependent is
// gated on depends_on_task_id, and the dependency itself was never queued.
Assert.Null(await _picker.ClaimNextAsync(DateTime.UtcNow, CancellationToken.None));
}
[Fact]
public async Task ClaimNextAsync_Claims_TaskWhoseDependsOnIsDone()
{
var listId = await CreateListAsync();
var dependency = await SeedAsync(listId, status: TaskStatus.Done);
var dependent = await SeedAsync(listId, dependsOn: dependency.Id);
var picked = await _picker.ClaimNextAsync(DateTime.UtcNow, CancellationToken.None);
Assert.NotNull(picked);
Assert.Equal(dependent.Id, picked!.Id);
}
[Fact]
public async Task ClaimNextAsync_Skips_TaskWhoseDependsOnFailed_ButKeepsClaimingOthers()
{
var listId = await CreateListAsync();
var dependency = await SeedAsync(listId, status: TaskStatus.Failed);
await SeedAsync(listId, dependsOn: dependency.Id);
var independent = await SeedAsync(listId, createdAt: DateTime.UtcNow.AddMinutes(1));
// A Failed dependency does not cascade-cancel or auto-unblock the dependent (unlike the
// planning chain's BlockedByTaskId) -- it just stays Queued and skipped forever.
var first = await _picker.ClaimNextAsync(DateTime.UtcNow, CancellationToken.None);
Assert.NotNull(first);
Assert.Equal(independent.Id, first!.Id);
var second = await _picker.ClaimNextAsync(DateTime.UtcNow, CancellationToken.None);
Assert.Null(second);
}
[Fact]
public async Task ClaimNextAsync_Picks_TasksWithoutAgentTag()
{
// Queueing a task is itself the explicit "run me" signal — no tag gate.
var listId = await CreateListAsync(listAgentTag: false);
var task = await SeedAsync(listId);
var picked = await _picker.ClaimNextAsync(DateTime.UtcNow, CancellationToken.None);
Assert.NotNull(picked);
Assert.Equal(task.Id, picked!.Id);
}
[Fact]
public async Task ClaimNextAsync_Skips_FutureScheduledFor()
{
var listId = await CreateListAsync(listAgentTag: true);
await SeedAsync(listId, scheduledFor: DateTime.UtcNow.AddHours(1));
var picked = await _picker.ClaimNextAsync(DateTime.UtcNow, CancellationToken.None);
Assert.Null(picked);
}
[Fact]
public async Task ClaimNextAsync_Skips_NonQueuedStatuses()
{
var listId = await CreateListAsync(listAgentTag: true);
await SeedAsync(listId, status: TaskStatus.Idle);
await SeedAsync(listId, status: TaskStatus.Running);
await SeedAsync(listId, status: TaskStatus.Done);
await SeedAsync(listId, status: TaskStatus.Failed);
await SeedAsync(listId, status: TaskStatus.Cancelled);
var picked = await _picker.ClaimNextAsync(DateTime.UtcNow, CancellationToken.None);
Assert.Null(picked);
}
[Fact]
public async Task ClaimNextAsync_Picks_ByUserSortOrder_ThenCreatedAt()
{
var listId = await CreateListAsync(listAgentTag: true);
// Created in order first, second; reorder so second is sort-order 0.
var first = await SeedAsync(listId, createdAt: DateTime.UtcNow.AddMinutes(-10));
var second = await SeedAsync(listId, createdAt: DateTime.UtcNow);
await _tasks.ReorderAsync(listId, new[] { second.Id, first.Id });
var picked = await _picker.ClaimNextAsync(DateTime.UtcNow, CancellationToken.None);
Assert.NotNull(picked);
Assert.Equal(second.Id, picked!.Id);
}
[Fact]
public async Task ClaimNextAsync_FlipsToRunning_WithStartedAt()
{
var listId = await CreateListAsync(listAgentTag: true);
var task = await SeedAsync(listId);
var before = DateTime.UtcNow;
var picked = await _picker.ClaimNextAsync(before, CancellationToken.None);
Assert.NotNull(picked);
var loaded = await _tasks.GetByIdAsync(task.Id);
Assert.Equal(TaskStatus.Running, loaded!.Status);
Assert.NotNull(loaded.StartedAt);
}
[Fact]
public async Task ClaimNextAsync_TwoParallelPickers_OnlyOneClaimsRow()
{
var listId = await CreateListAsync(listAgentTag: true);
await SeedAsync(listId);
// Two pickers, same DB factory, racing each other.
var picker1 = new QueuePicker(_db.CreateFactory());
var picker2 = new QueuePicker(_db.CreateFactory());
var t1 = Task.Run(() => picker1.ClaimNextAsync(DateTime.UtcNow, CancellationToken.None));
var t2 = Task.Run(() => picker2.ClaimNextAsync(DateTime.UtcNow, CancellationToken.None));
var results = await Task.WhenAll(t1, t2);
var nonNull = results.Where(r => r is not null).ToList();
Assert.Single(nonNull);
}
}