Files
ClaudeDo/tests/ClaudeDo.Data.Tests/ForeignKeyTests.cs
T
mika kuns 9e46c96b24 feat(data): add task numbers schema, allocator, and backfill migration
TaskEntity.Number is a global, monotonically increasing, never-reused
integer (displayed as #123), allocated from AppSettingsEntity.NextTaskNumber
via a single UPDATE...RETURNING statement rather than MAX(number)+1, which
would reissue a deleted task's number. Both insert paths (TaskRepository.
AddAsync and CreateChildAsync) route through the new TaskNumberAllocator,
with a bounded retry on a unique-index collision. One migration adds the
columns, backfills existing rows in creation order, and creates the unique
index afterwards. Data-layer only; MCP/UI wiring is later slices.
2026-08-11 10:49:06 +02:00

145 lines
5.4 KiB
C#

using ClaudeDo.Data;
using ClaudeDo.Data.Models;
using ClaudeDo.Data.Repositories;
using Microsoft.EntityFrameworkCore;
using TaskStatus = ClaudeDo.Data.Models.TaskStatus;
namespace ClaudeDo.Data.Tests;
/// <summary>
/// Proves that FK enforcement (PRAGMA foreign_keys=ON) is active on every
/// IDbContextFactory-created context, not just the MigrateAndConfigure context.
/// </summary>
public sealed class ForeignKeyTests : IDisposable
{
private readonly string _dbPath;
private readonly DbContextOptions<ClaudeDoDbContext> _options;
public ForeignKeyTests()
{
_dbPath = Path.Combine(Path.GetTempPath(), $"claudedo_fktest_{Guid.NewGuid():N}.db");
_options = new DbContextOptionsBuilder<ClaudeDoDbContext>()
.UseSqlite($"Data Source={_dbPath}")
.Options;
// EnsureCreated creates the schema including FK constraints in DDL.
using var ctx = new ClaudeDoDbContext(_options);
ctx.Database.EnsureCreated();
}
public void Dispose()
{
foreach (var suffix in new[] { "", "-wal", "-shm" })
try { File.Delete(_dbPath + suffix); } catch { }
}
private ClaudeDoDbContext Open() => new(_options);
// ---- FK interceptor: ON DELETE SET NULL ----
[Fact]
public async Task BlockedByTaskId_is_nulled_when_predecessor_deleted_on_fresh_context()
{
var listId = Guid.NewGuid().ToString();
var parentId = Guid.NewGuid().ToString();
var childId = Guid.NewGuid().ToString();
await using (var ctx = Open())
{
ctx.Lists.Add(new ListEntity { Id = listId, Name = "L", CreatedAt = DateTime.UtcNow });
ctx.Tasks.Add(new TaskEntity { Id = parentId, Number = 1, ListId = listId, Title = "Predecessor", Status = TaskStatus.Idle, CreatedAt = DateTime.UtcNow });
ctx.Tasks.Add(new TaskEntity { Id = childId, Number = 2, ListId = listId, Title = "Blocked", Status = TaskStatus.Idle, BlockedByTaskId = parentId, CreatedAt = DateTime.UtcNow });
await ctx.SaveChangesAsync();
}
// Delete predecessor in a brand-new context (simulates factory-created context).
// Without the FK interceptor, PRAGMA foreign_keys is OFF and SQLite silently
// leaves blocked_by_task_id pointing at the deleted row.
await using (var ctx = Open())
{
var predecessor = await ctx.Tasks.FindAsync(parentId);
ctx.Tasks.Remove(predecessor!);
await ctx.SaveChangesAsync();
}
await using (var ctx = Open())
{
var child = await ctx.Tasks.AsNoTracking().FirstAsync(t => t.Id == childId);
Assert.Null(child.BlockedByTaskId);
}
}
[Fact]
public async Task DependsOnTaskId_is_nulled_when_predecessor_deleted_on_fresh_context()
{
var listId = Guid.NewGuid().ToString();
var predecessorId = Guid.NewGuid().ToString();
var dependentId = Guid.NewGuid().ToString();
await using (var ctx = Open())
{
ctx.Lists.Add(new ListEntity { Id = listId, Name = "L", CreatedAt = DateTime.UtcNow });
ctx.Tasks.Add(new TaskEntity { Id = predecessorId, Number = 1, ListId = listId, Title = "Predecessor", Status = TaskStatus.Idle, CreatedAt = DateTime.UtcNow });
ctx.Tasks.Add(new TaskEntity { Id = dependentId, Number = 2, ListId = listId, Title = "Dependent", Status = TaskStatus.Idle, DependsOnTaskId = predecessorId, CreatedAt = DateTime.UtcNow });
await ctx.SaveChangesAsync();
}
await using (var ctx = Open())
{
var predecessor = await ctx.Tasks.FindAsync(predecessorId);
ctx.Tasks.Remove(predecessor!);
await ctx.SaveChangesAsync();
}
await using (var ctx = Open())
{
var dependent = await ctx.Tasks.AsNoTracking().FirstAsync(t => t.Id == dependentId);
Assert.Null(dependent.DependsOnTaskId);
}
}
// ---- AppSettingsRepository: get-or-create resilience ----
[Fact]
public async Task GetAsync_returns_existing_row_when_present()
{
await using var ctx = Open();
var repo = new AppSettingsRepository(ctx);
var first = await repo.GetAsync();
var second = await repo.GetAsync();
Assert.Equal(AppSettingsEntity.SingletonId, first.Id);
Assert.Equal(AppSettingsEntity.SingletonId, second.Id);
}
[Fact]
public async Task GetAsync_creates_row_when_absent()
{
// Use a fresh DB with no HasData seed (EnsureCreated skips HasData seeding).
var path = Path.Combine(Path.GetTempPath(), $"claudedo_fktest_empty_{Guid.NewGuid():N}.db");
try
{
var opts = new DbContextOptionsBuilder<ClaudeDoDbContext>()
.UseSqlite($"Data Source={path}")
.Options;
await using var ctx = new ClaudeDoDbContext(opts);
ctx.Database.EnsureCreated();
var repo = new AppSettingsRepository(ctx);
var settings = await repo.GetAsync();
Assert.Equal(AppSettingsEntity.SingletonId, settings.Id);
// A second call should find the row and not re-insert.
var settings2 = await repo.GetAsync();
Assert.Equal(AppSettingsEntity.SingletonId, settings2.Id);
}
finally
{
foreach (var suffix in new[] { "", "-wal", "-shm" })
try { File.Delete(path + suffix); } catch { }
}
}
}