using Microsoft.Data.Sqlite; using ZB.MOM.WW.Secrets.Abstractions; using ZB.MOM.WW.Secrets.Sqlite; namespace ZB.MOM.WW.Secrets.Tests.Sqlite; public sealed class SqliteSecretStoreTests : IAsyncLifetime, IDisposable { private readonly string _dbPath = Path.Combine(Path.GetTempPath(), $"zb-secrets-store-{Guid.NewGuid():N}.db"); private readonly SecretsSqliteConnectionFactory _factory; private readonly SqliteSecretStore _store; public SqliteSecretStoreTests() { _factory = new SecretsSqliteConnectionFactory(_dbPath); _store = new SqliteSecretStore(_factory); } public async Task InitializeAsync() => await new SqliteSecretsStoreMigrator(_factory).MigrateAsync(CancellationToken.None); public Task DisposeAsync() => Task.CompletedTask; private static StoredSecret MakeSecret( string name, long revision = 0, byte[]? ciphertext = null, DateTimeOffset? updatedUtc = null, DateTimeOffset? createdUtc = null, bool isDeleted = false, DateTimeOffset? deletedUtc = null, string? createdBy = "alice", string? updatedBy = "alice") => new() { Name = new SecretName(name), Description = "desc", ContentType = SecretContentType.ConnectionString, Ciphertext = ciphertext ?? [1, 2, 3], Nonce = [4, 5, 6], Tag = [7, 8, 9], WrappedDek = [10, 11, 12], WrapNonce = [13, 14, 15], WrapTag = [16, 17, 18], KekId = "kek-1", Revision = revision, IsDeleted = isDeleted, DeletedUtc = deletedUtc, CreatedUtc = createdUtc ?? DateTimeOffset.UtcNow, UpdatedUtc = updatedUtc ?? DateTimeOffset.UtcNow, CreatedBy = createdBy, UpdatedBy = updatedBy, }; [Fact] public async Task Upsert_Then_Get_RoundTrips() { StoredSecret row = MakeSecret("app/db-conn"); await _store.UpsertAsync(row, CancellationToken.None); StoredSecret? got = await _store.GetAsync(new SecretName("app/db-conn"), CancellationToken.None); Assert.NotNull(got); Assert.Equal("app/db-conn", got!.Name.Value); Assert.Equal("desc", got.Description); Assert.Equal(SecretContentType.ConnectionString, got.ContentType); Assert.Equal(new byte[] { 1, 2, 3 }, got.Ciphertext); Assert.Equal(new byte[] { 4, 5, 6 }, got.Nonce); Assert.Equal(new byte[] { 7, 8, 9 }, got.Tag); Assert.Equal(new byte[] { 10, 11, 12 }, got.WrappedDek); Assert.Equal(new byte[] { 13, 14, 15 }, got.WrapNonce); Assert.Equal(new byte[] { 16, 17, 18 }, got.WrapTag); Assert.Equal("kek-1", got.KekId); Assert.Equal(0, got.Revision); Assert.False(got.IsDeleted); Assert.Null(got.DeletedUtc); Assert.Equal("alice", got.CreatedBy); Assert.Equal("alice", got.UpdatedBy); } [Fact] public async Task Get_ReturnsNull_WhenAbsent() { StoredSecret? got = await _store.GetAsync(new SecretName("nope"), CancellationToken.None); Assert.Null(got); } [Fact] public async Task Upsert_Existing_OverwritesInPlace_BumpsRevision() { StoredSecret first = MakeSecret("app/rotating", ciphertext: [1, 1, 1], createdBy: "alice", updatedBy: "alice"); await _store.UpsertAsync(first, CancellationToken.None); StoredSecret afterFirst = (await _store.GetAsync(new SecretName("app/rotating"), CancellationToken.None))!; Assert.Equal(0, afterFirst.Revision); DateTimeOffset originalCreatedUtc = afterFirst.CreatedUtc; // Second write: different crypto bytes and a different actor. StoredSecret second = MakeSecret("app/rotating", ciphertext: [9, 9, 9], createdBy: "bob", updatedBy: "bob"); await _store.UpsertAsync(second, CancellationToken.None); StoredSecret afterSecond = (await _store.GetAsync(new SecretName("app/rotating"), CancellationToken.None))!; Assert.Equal(1, afterSecond.Revision); Assert.Equal(new byte[] { 9, 9, 9 }, afterSecond.Ciphertext); // created_utc / created_by are preserved from the original insert. Assert.Equal(originalCreatedUtc, afterSecond.CreatedUtc); Assert.Equal("alice", afterSecond.CreatedBy); // updated_by reflects the second write. Assert.Equal("bob", afterSecond.UpdatedBy); Assert.False(afterSecond.IsDeleted); } [Fact] public async Task List_ExcludesTombstoned_ByDefault() { await _store.UpsertAsync(MakeSecret("keep"), CancellationToken.None); await _store.UpsertAsync(MakeSecret("gone"), CancellationToken.None); await _store.DeleteAsync(new SecretName("gone"), "carol", CancellationToken.None); IReadOnlyList visible = await _store.ListAsync(includeDeleted: false, CancellationToken.None); Assert.DoesNotContain(visible, m => m.Name.Value == "gone"); Assert.Contains(visible, m => m.Name.Value == "keep"); IReadOnlyList all = await _store.ListAsync(includeDeleted: true, CancellationToken.None); Assert.Contains(all, m => m.Name.Value == "gone"); Assert.Contains(all, m => m.Name.Value == "keep"); // Compile-time proof the projection carries no byte[] members: SecretMetadata is the element type. SecretMetadata sample = all[0]; Assert.NotNull(sample); } [Fact] public async Task Delete_SetsTombstone_BumpsRevision_ReturnsFalseWhenAbsent() { await _store.UpsertAsync(MakeSecret("app/secret"), CancellationToken.None); bool first = await _store.DeleteAsync(new SecretName("app/secret"), "carol", CancellationToken.None); Assert.True(first); StoredSecret tombstoned = (await _store.GetAsync(new SecretName("app/secret"), CancellationToken.None))!; Assert.True(tombstoned.IsDeleted); Assert.NotNull(tombstoned.DeletedUtc); Assert.Equal(1, tombstoned.Revision); Assert.Equal("carol", tombstoned.UpdatedBy); // Deleting an already-tombstoned row returns false. bool second = await _store.DeleteAsync(new SecretName("app/secret"), "carol", CancellationToken.None); Assert.False(second); // Deleting an unknown name returns false. bool unknown = await _store.DeleteAsync(new SecretName("never-existed"), "carol", CancellationToken.None); Assert.False(unknown); } [Fact] public async Task GetManifest_ReturnsAllRows() { await _store.UpsertAsync(MakeSecret("a"), CancellationToken.None); await _store.UpsertAsync(MakeSecret("b"), CancellationToken.None); await _store.DeleteAsync(new SecretName("b"), "carol", CancellationToken.None); IReadOnlyList manifest = await _store.GetManifestAsync(CancellationToken.None); Assert.Equal(2, manifest.Count); SecretManifestEntry a = manifest.Single(e => e.Name.Value == "a"); SecretManifestEntry b = manifest.Single(e => e.Name.Value == "b"); Assert.False(a.IsDeleted); Assert.Equal(0, a.Revision); Assert.True(b.IsDeleted); Assert.Equal(1, b.Revision); } [Fact] public async Task ApplyReplicated_AppliesNewer_IgnoresStale() { DateTimeOffset t1 = new(2026, 1, 1, 0, 0, 0, TimeSpan.Zero); DateTimeOffset t2 = new(2026, 1, 2, 0, 0, 0, TimeSpan.Zero); DateTimeOffset t3 = new(2026, 1, 3, 0, 0, 0, TimeSpan.Zero); // Seed a local row at revision 5 / T2. StoredSecret seed = MakeSecret("repl", revision: 5, ciphertext: [5, 5, 5], updatedUtc: t2, createdUtc: t1); await _store.ApplyReplicatedAsync(seed, CancellationToken.None); StoredSecret afterSeed = (await _store.GetAsync(new SecretName("repl"), CancellationToken.None))!; Assert.Equal(5, afterSeed.Revision); // Newer row (revision 6 / T3) is applied verbatim (revision NOT bumped past 6). StoredSecret newer = MakeSecret("repl", revision: 6, ciphertext: [6, 6, 6], updatedUtc: t3, createdUtc: t1); await _store.ApplyReplicatedAsync(newer, CancellationToken.None); StoredSecret afterNewer = (await _store.GetAsync(new SecretName("repl"), CancellationToken.None))!; Assert.Equal(6, afterNewer.Revision); Assert.Equal(new byte[] { 6, 6, 6 }, afterNewer.Ciphertext); Assert.Equal(t3, afterNewer.UpdatedUtc); // Stale row (revision 4 / T1) is ignored. StoredSecret stale = MakeSecret("repl", revision: 4, ciphertext: [4, 4, 4], updatedUtc: t1, createdUtc: t1); await _store.ApplyReplicatedAsync(stale, CancellationToken.None); StoredSecret afterStale = (await _store.GetAsync(new SecretName("repl"), CancellationToken.None))!; Assert.Equal(6, afterStale.Revision); Assert.Equal(new byte[] { 6, 6, 6 }, afterStale.Ciphertext); } [Fact] public async Task ApplyRewrap_ChangesOnlyWrapEnvelopeAndKekId_PreservingRevisionBodyAndTimestamps() { DateTimeOffset created = new(2026, 1, 1, 0, 0, 0, TimeSpan.Zero); StoredSecret seed = MakeSecret("app/rewrap", ciphertext: [1, 2, 3], createdUtc: created); await _store.UpsertAsync(seed, CancellationToken.None); // Bump the revision once so we can prove ApplyRewrap does NOT change it. await _store.UpsertAsync(MakeSecret("app/rewrap", ciphertext: [1, 2, 3]), CancellationToken.None); StoredSecret before = (await _store.GetAsync(new SecretName("app/rewrap"), CancellationToken.None))!; Assert.Equal(1, before.Revision); // Re-wrap: only the four wrap-related fields differ; everything else is carried from `before`. StoredSecret rewrapped = before with { WrappedDek = [90, 91, 92], WrapNonce = [93, 94, 95], WrapTag = [96, 97, 98], KekId = "kek-2", }; bool applied = await _store.ApplyRewrapAsync(rewrapped, before.WrappedDek, CancellationToken.None); Assert.True(applied); StoredSecret after = (await _store.GetAsync(new SecretName("app/rewrap"), CancellationToken.None))!; // Wrap envelope + kek_id changed... Assert.Equal(new byte[] { 90, 91, 92 }, after.WrappedDek); Assert.Equal(new byte[] { 93, 94, 95 }, after.WrapNonce); Assert.Equal(new byte[] { 96, 97, 98 }, after.WrapTag); Assert.Equal("kek-2", after.KekId); // ...but revision, updated timestamp, the sealed body, and audit stamps are untouched. Assert.Equal(before.Revision, after.Revision); Assert.Equal(before.UpdatedUtc, after.UpdatedUtc); Assert.Equal(before.CreatedUtc, after.CreatedUtc); Assert.Equal(before.UpdatedBy, after.UpdatedBy); Assert.Equal(new byte[] { 1, 2, 3 }, after.Ciphertext); Assert.Equal(before.Nonce, after.Nonce); Assert.Equal(before.Tag, after.Tag); } [Fact] public async Task ApplyRewrap_RewrapsTombstonedRows() { await _store.UpsertAsync(MakeSecret("app/dead"), CancellationToken.None); await _store.DeleteAsync(new SecretName("app/dead"), "carol", CancellationToken.None); StoredSecret tomb = (await _store.GetAsync(new SecretName("app/dead"), CancellationToken.None))!; Assert.True(tomb.IsDeleted); bool applied = await _store.ApplyRewrapAsync( tomb with { WrappedDek = [1], WrapNonce = [2], WrapTag = [3], KekId = "kek-2" }, tomb.WrappedDek, CancellationToken.None); Assert.True(applied); StoredSecret after = (await _store.GetAsync(new SecretName("app/dead"), CancellationToken.None))!; Assert.Equal("kek-2", after.KekId); // The tombstone survives the rewrap. Assert.True(after.IsDeleted); Assert.Equal(tomb.Revision, after.Revision); } [Fact] public async Task ApplyRewrap_ReturnsFalse_WhenRowAbsent() { StoredSecret ghost = MakeSecret("never-existed") with { KekId = "kek-2" }; bool applied = await _store.ApplyRewrapAsync(ghost, ghost.WrappedDek, CancellationToken.None); Assert.False(applied); } [Fact] public async Task ApplyRewrap_ReturnsFalse_WhenCurrentWrapChanged_UnderConcurrentWrite() { StoredSecret original = MakeSecret("app/cas", ciphertext: [1, 2, 3]); await _store.UpsertAsync(original, CancellationToken.None); StoredSecret before = (await _store.GetAsync(new SecretName("app/cas"), CancellationToken.None))!; // Simulate a concurrent set/rotate: a fresh write changes the wrapped DEK out from under us. await _store.UpsertAsync( MakeSecret("app/cas", ciphertext: [9, 9, 9]) with { WrappedDek = [77, 78, 79] }, CancellationToken.None); // A rewrap that still expects the ORIGINAL wrap must NOT apply (0 rows) — it would otherwise // pair a stale re-wrap with the newer body and corrupt the row. bool applied = await _store.ApplyRewrapAsync( before with { WrappedDek = [1], WrapNonce = [2], WrapTag = [3], KekId = "kek-2" }, before.WrappedDek, CancellationToken.None); Assert.False(applied); StoredSecret after = (await _store.GetAsync(new SecretName("app/cas"), CancellationToken.None))!; // The concurrent write's wrap survived untouched; no stale re-wrap was applied. Assert.Equal(new byte[] { 77, 78, 79 }, after.WrappedDek); Assert.Equal("kek-1", after.KekId); } public void Dispose() { // Drop pooled connections so the WAL/-shm/-wal sidecars release before we delete. SqliteConnection.ClearAllPools(); foreach (string path in new[] { _dbPath, _dbPath + "-wal", _dbPath + "-shm" }) { try { if (File.Exists(path)) { File.Delete(path); } } catch (IOException) { // Best-effort temp cleanup; a leaked temp file is not a test failure. } } } }