test(auditlog): partition-switch purge end-to-end (#23 M6)
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using Akka.Actor;
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using Akka.TestKit.Xunit2;
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using Microsoft.Data.SqlClient;
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using Microsoft.EntityFrameworkCore;
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using Microsoft.Extensions.DependencyInjection;
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using Microsoft.Extensions.Logging.Abstractions;
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using Microsoft.Extensions.Options;
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using ScadaLink.AuditLog.Central;
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using ScadaLink.AuditLog.Configuration;
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using ScadaLink.Commons.Entities.Audit;
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using ScadaLink.Commons.Interfaces.Repositories;
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using ScadaLink.Commons.Types.Enums;
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using ScadaLink.ConfigurationDatabase;
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using ScadaLink.ConfigurationDatabase.Repositories;
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using ScadaLink.ConfigurationDatabase.Tests.Migrations;
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namespace ScadaLink.AuditLog.Tests.Integration;
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/// <summary>
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/// Bundle F (#23 M6-T11) end-to-end test for the daily partition-switch
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/// purge: seeds three monthly partitions (Jan / Feb / Mar 2026) with direct
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/// INSERTs that bypass the standard repository ingest path (so the seed
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/// timestamps are explicit), drives <see cref="AuditLogPurgeActor"/> against
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/// the real <see cref="AuditLogRepository"/> + per-test
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/// <see cref="MsSqlMigrationFixture"/> database, and asserts:
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/// <list type="number">
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/// <item>The oldest partition (Jan) is removed.</item>
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/// <item>Newer partitions (Feb + Mar) are untouched.</item>
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/// <item>The <c>UX_AuditLog_EventId</c> unique index survives the
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/// drop-and-rebuild dance.</item>
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/// <item><see cref="IAuditLogRepository.InsertIfNotExistsAsync"/> remains
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/// idempotent against the rebuilt index after the purge.</item>
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/// </list>
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/// </summary>
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/// <remarks>
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/// The brief calls out that direct INSERTs bypass the writer role's INSERT-only
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/// grant; the fixture connects as <c>sa</c> (see
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/// <see cref="MsSqlMigrationFixture"/>'s default admin connection string), so
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/// the seed step does not need the writer role at all. The drop-and-rebuild
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/// dance itself runs under the same admin connection because the test owns
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/// the database — the role granularity is exercised in the repository tests,
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/// not here.
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/// </remarks>
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public class PartitionPurgeTests : TestKit, IClassFixture<MsSqlMigrationFixture>
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{
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private readonly MsSqlMigrationFixture _fixture;
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public PartitionPurgeTests(MsSqlMigrationFixture fixture)
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{
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_fixture = fixture;
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}
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private ScadaLinkDbContext CreateContext() =>
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new(new DbContextOptionsBuilder<ScadaLinkDbContext>()
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.UseSqlServer(_fixture.ConnectionString).Options);
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/// <summary>
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/// Direct INSERT into <c>dbo.AuditLog</c> bypassing
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/// <see cref="IAuditLogRepository.InsertIfNotExistsAsync"/>. Used by the
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/// seed step so the test can place rows in arbitrary partitions without
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/// the repository's idempotency wrapper or ingest-stamping behaviour
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/// affecting the seed payload.
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/// </summary>
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private async Task DirectInsertAsync(
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SqlConnection conn,
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Guid eventId,
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DateTime occurredAtUtc,
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string siteId)
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{
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await using var cmd = conn.CreateCommand();
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cmd.CommandText = @"
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INSERT INTO dbo.AuditLog
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(EventId, OccurredAtUtc, IngestedAtUtc, Channel, Kind, CorrelationId,
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SourceSiteId, SourceInstanceId, SourceScript, Actor, Target, Status,
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HttpStatus, DurationMs, ErrorMessage, ErrorDetail, RequestSummary,
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ResponseSummary, PayloadTruncated, Extra, ForwardState)
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VALUES
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(@EventId, @OccurredAtUtc, @IngestedAtUtc, 'ApiOutbound', 'ApiCall', NULL,
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@SourceSiteId, NULL, NULL, NULL, NULL, 'Delivered',
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NULL, NULL, NULL, NULL, NULL,
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NULL, 0, NULL, NULL);";
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cmd.Parameters.Add("@EventId", System.Data.SqlDbType.UniqueIdentifier).Value = eventId;
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// SqlDbType.DateTime2 with explicit Scale 7 matches the
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// OccurredAtUtc column shape (datetime2(7)) and avoids the implicit
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// narrowing that SqlClient's default DateTime → datetime applies via
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// AddWithValue. Critical for partition assignment: the partition
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// function key column is datetime2(7); a narrowed value would still
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// land in the correct partition for first-of-month seeds, but
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// explicit typing here documents the intent and matches how the
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// production repository INSERT shapes its parameters.
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var occurredParam = cmd.Parameters.Add("@OccurredAtUtc", System.Data.SqlDbType.DateTime2);
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occurredParam.Scale = 7;
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occurredParam.Value = occurredAtUtc;
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var ingestedParam = cmd.Parameters.Add("@IngestedAtUtc", System.Data.SqlDbType.DateTime2);
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ingestedParam.Scale = 7;
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ingestedParam.Value = DateTime.UtcNow;
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cmd.Parameters.Add("@SourceSiteId", System.Data.SqlDbType.VarChar, 64).Value = siteId;
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await cmd.ExecuteNonQueryAsync();
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}
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/// <summary>
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/// Asserts that <c>UX_AuditLog_EventId</c> exists in
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/// <c>sys.indexes</c>. The drop-and-rebuild dance briefly removes the
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/// index inside its transaction; this check is meant to fire AFTER the
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/// actor's purge tick has committed so the rebuilt index is observable.
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/// </summary>
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private static async Task AssertUxIndexExistsAsync(SqlConnection conn)
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{
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await using var cmd = conn.CreateCommand();
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cmd.CommandText = @"
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SELECT COUNT(*)
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FROM sys.indexes
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WHERE name = 'UX_AuditLog_EventId'
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AND object_id = OBJECT_ID('dbo.AuditLog');";
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var raw = await cmd.ExecuteScalarAsync();
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var count = Convert.ToInt32(raw);
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Assert.True(count == 1, $"UX_AuditLog_EventId should be present post-purge; sys.indexes count was {count}.");
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}
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private IActorRef CreateActor(
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IServiceProvider sp,
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AuditLogPurgeOptions purgeOptions,
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AuditLogOptions auditOptions)
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{
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return Sys.ActorOf(Props.Create(() => new AuditLogPurgeActor(
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sp,
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Options.Create(purgeOptions),
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Options.Create(auditOptions),
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NullLogger<AuditLogPurgeActor>.Instance)));
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}
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private static (DateTime Jan, DateTime Feb, DateTime Mar) SeedOccurredAt() => (
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new DateTime(2026, 1, 15, 0, 0, 0, DateTimeKind.Utc),
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new DateTime(2026, 2, 15, 0, 0, 0, DateTimeKind.Utc),
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new DateTime(2026, 3, 15, 0, 0, 0, DateTimeKind.Utc));
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// ---------------------------------------------------------------------
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// 1. EndToEnd_OldestPartition_PurgedViaActor_NewerKept
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// ---------------------------------------------------------------------
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[SkippableFact]
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public async Task EndToEnd_OldestPartition_PurgedViaActor_NewerKept()
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{
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Skip.IfNot(_fixture.Available, _fixture.SkipReason);
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// Test date is ~2026-05-20 per environment. We want a threshold that
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// sits strictly between Jan 15 (the Jan partition's MAX) and Feb 15
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// (the Feb partition's MAX) so only the Jan-2026 partition is
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// eligible for purge. RetentionDays = 100 gives a threshold of
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// ~2026-02-09 — Jan 15 is older (purged), Feb 15 and Mar 15 are
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// newer (kept). The window between Jan 15 and Feb 15 is wide enough
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// (~30 days) to tolerate any plausible test-clock drift in CI.
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var siteId = "purge-e2e-" + Guid.NewGuid().ToString("N").Substring(0, 8);
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var janEventId = Guid.NewGuid();
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var febEventId = Guid.NewGuid();
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var marEventId = Guid.NewGuid();
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var (janOccurred, febOccurred, marOccurred) = SeedOccurredAt();
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await using (var seedConn = _fixture.OpenConnection())
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{
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await DirectInsertAsync(seedConn, janEventId, janOccurred, siteId);
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await DirectInsertAsync(seedConn, febEventId, febOccurred, siteId);
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await DirectInsertAsync(seedConn, marEventId, marOccurred, siteId);
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}
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// Wire the actor with a real EF context against the fixture DB.
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var services = new ServiceCollection();
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services.AddDbContext<ScadaLinkDbContext>(
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opts => opts.UseSqlServer(_fixture.ConnectionString),
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ServiceLifetime.Scoped);
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services.AddScoped<IAuditLogRepository, AuditLogRepository>();
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var sp = services.BuildServiceProvider();
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var probe = CreateTestProbe();
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Sys.EventStream.Subscribe(probe.Ref, typeof(AuditLogPurgedEvent));
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var purgeOptions = new AuditLogPurgeOptions
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{
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IntervalHours = 24,
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IntervalOverride = TimeSpan.FromMilliseconds(100),
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};
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var auditOptions = new AuditLogOptions { RetentionDays = 100 };
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CreateActor(sp, purgeOptions, auditOptions);
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// Wait for the actor's tick to purge the Jan-2026 partition.
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// Concurrent test runs against the same fixture might also create
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// eligible partitions, but each test class owns its own fixture DB
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// (MsSqlMigrationFixture seeds a guid-named DB per class), so the
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// Jan-2026 boundary is the only one this test can have produced.
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var janBoundary = new DateTime(2026, 1, 1, 0, 0, 0, DateTimeKind.Utc);
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var matched = probe.FishForMessage<AuditLogPurgedEvent>(
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isMessage: m => m.MonthBoundary == janBoundary,
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max: TimeSpan.FromSeconds(30));
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Assert.True(matched.RowsDeleted >= 1,
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$"Expected RowsDeleted >= 1 for Jan-2026 boundary; got {matched.RowsDeleted}.");
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// Allow a brief settle in case the actor is mid-tick on Feb/Mar
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// (it shouldn't be, since RetentionDays = 90 means only Jan is
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// eligible, but the actor MAY re-enumerate quickly while we read).
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await Task.Delay(TimeSpan.FromMilliseconds(500));
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await using var verify = CreateContext();
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var rows = await verify.Set<AuditEvent>()
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.Where(e => e.SourceSiteId == siteId)
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.ToListAsync();
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// Jan removed; Feb + Mar untouched. Because the test owns the site
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// id and the fixture DB, exact set membership is observable.
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Assert.DoesNotContain(rows, r => r.EventId == janEventId);
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Assert.Contains(rows, r => r.EventId == febEventId);
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Assert.Contains(rows, r => r.EventId == marEventId);
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}
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// ---------------------------------------------------------------------
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// 2. EndToEnd_UxIndexRebuilt_AfterPurge
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// ---------------------------------------------------------------------
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[SkippableFact]
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public async Task EndToEnd_UxIndexRebuilt_AfterPurge()
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{
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Skip.IfNot(_fixture.Available, _fixture.SkipReason);
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// Same shape as test 1 — purge the Jan-2026 partition and then
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// assert the UX_AuditLog_EventId index is still present. The
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// drop-and-rebuild dance briefly removes it inside its transaction
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// (the SWITCH PARTITION step requires the non-aligned unique index
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// to be absent), but step 5 rebuilds it before committing. Sanity-
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// checking the post-COMMIT shape here documents the invariant in an
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// assertable way.
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var siteId = "purge-uxidx-" + Guid.NewGuid().ToString("N").Substring(0, 8);
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var janEventId = Guid.NewGuid();
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var (janOccurred, _, _) = SeedOccurredAt();
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await using (var seedConn = _fixture.OpenConnection())
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{
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await DirectInsertAsync(seedConn, janEventId, janOccurred, siteId);
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}
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var services = new ServiceCollection();
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services.AddDbContext<ScadaLinkDbContext>(
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opts => opts.UseSqlServer(_fixture.ConnectionString),
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ServiceLifetime.Scoped);
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services.AddScoped<IAuditLogRepository, AuditLogRepository>();
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var sp = services.BuildServiceProvider();
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var probe = CreateTestProbe();
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Sys.EventStream.Subscribe(probe.Ref, typeof(AuditLogPurgedEvent));
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CreateActor(
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sp,
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new AuditLogPurgeOptions
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{
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IntervalHours = 24,
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IntervalOverride = TimeSpan.FromMilliseconds(100),
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},
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new AuditLogOptions { RetentionDays = 90 });
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var janBoundary = new DateTime(2026, 1, 1, 0, 0, 0, DateTimeKind.Utc);
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probe.FishForMessage<AuditLogPurgedEvent>(
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isMessage: m => m.MonthBoundary == janBoundary,
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max: TimeSpan.FromSeconds(30));
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// Open a fresh connection (the actor's pool is owned by EF) and
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// assert the index is present post-purge.
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await using var check = _fixture.OpenConnection();
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await AssertUxIndexExistsAsync(check);
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}
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// ---------------------------------------------------------------------
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// 3. EndToEnd_InsertIfNotExistsAsync_StillIdempotent_AfterPurge
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// ---------------------------------------------------------------------
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[SkippableFact]
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public async Task EndToEnd_InsertIfNotExistsAsync_StillIdempotent_AfterPurge()
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{
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Skip.IfNot(_fixture.Available, _fixture.SkipReason);
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// Seed + purge a Jan-2026 row, THEN exercise InsertIfNotExistsAsync
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// twice for a fresh (May-2026) EventId. The second call must be a
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// no-op (duplicate-key collision swallowed by the repository, per
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// M2 Bundle A's race-fix) — which means the rebuilt
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// UX_AuditLog_EventId unique index is functioning as intended.
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var siteId = "purge-idem-" + Guid.NewGuid().ToString("N").Substring(0, 8);
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var janEventId = Guid.NewGuid();
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var (janOccurred, _, _) = SeedOccurredAt();
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await using (var seedConn = _fixture.OpenConnection())
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{
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await DirectInsertAsync(seedConn, janEventId, janOccurred, siteId);
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}
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var services = new ServiceCollection();
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services.AddDbContext<ScadaLinkDbContext>(
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opts => opts.UseSqlServer(_fixture.ConnectionString),
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ServiceLifetime.Scoped);
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services.AddScoped<IAuditLogRepository, AuditLogRepository>();
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var sp = services.BuildServiceProvider();
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var probe = CreateTestProbe();
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Sys.EventStream.Subscribe(probe.Ref, typeof(AuditLogPurgedEvent));
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CreateActor(
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sp,
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new AuditLogPurgeOptions
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{
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IntervalHours = 24,
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IntervalOverride = TimeSpan.FromMilliseconds(100),
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},
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new AuditLogOptions { RetentionDays = 90 });
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var janBoundary = new DateTime(2026, 1, 1, 0, 0, 0, DateTimeKind.Utc);
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probe.FishForMessage<AuditLogPurgedEvent>(
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isMessage: m => m.MonthBoundary == janBoundary,
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max: TimeSpan.FromSeconds(30));
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// Settle then exercise InsertIfNotExistsAsync twice for the same
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// EventId. The repository's idempotency relies on
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// UX_AuditLog_EventId being present so the IF NOT EXISTS … INSERT
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// race window resolves to a duplicate-key violation the repo
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// swallows. If the index were missing here, two rows would land
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// and the second InsertIfNotExistsAsync would silently double-insert.
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await Task.Delay(TimeSpan.FromMilliseconds(500));
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var freshEventId = Guid.NewGuid();
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var freshOccurred = new DateTime(2026, 5, 15, 12, 0, 0, DateTimeKind.Utc);
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var freshSite = "purge-idem-fresh-" + Guid.NewGuid().ToString("N").Substring(0, 8);
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var freshEvt = new AuditEvent
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{
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EventId = freshEventId,
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OccurredAtUtc = freshOccurred,
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Channel = AuditChannel.ApiOutbound,
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Kind = AuditKind.ApiCall,
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Status = AuditStatus.Delivered,
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SourceSiteId = freshSite,
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Target = "system-x/method",
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};
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await using (var ctx = CreateContext())
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{
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var repo = new AuditLogRepository(ctx);
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await repo.InsertIfNotExistsAsync(freshEvt);
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// Same row a second time — must be a silent no-op.
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await repo.InsertIfNotExistsAsync(freshEvt);
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}
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await using var verify = CreateContext();
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var rows = await verify.Set<AuditEvent>()
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.Where(e => e.SourceSiteId == freshSite)
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.ToListAsync();
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Assert.Single(rows);
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Assert.Equal(freshEventId, rows[0].EventId);
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}
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}
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