The NuGetAuditSuppress in Directory.Packages.props was masking a LIVE high-severity
vulnerability, not documenting an accepted one. Only the Host project resolved a
patched SQLitePCLRaw.lib.e_sqlite3 2.1.12 (transitively, via ZB.MOM.WW.Auth.ApiKeys).
Every other SQLite consumer - AuditLog, SiteRuntime, StoreAndForward, SiteEventLogging
and 11 test projects - still resolved the vulnerable 2.1.11.
The suppression's rationale was factually wrong: it claimed 'the only patched native
lib is the SQLitePCLRaw 3.x line'. 2.1.12 patches this advisory within the 2.1.x line,
so the feared risky force-override of the whole family to 3.x is unnecessary.
Fix: explicit PackageReference to the patched 2.1.12 in each SQLite-consuming project,
plus the central PackageVersion row. Suppression removed, so the advisory is audited
again rather than silenced.
Rejected alternative: CentralPackageTransitivePinningEnabled. It clears the advisory in
one line but makes every central version a ceiling for transitive resolution, demanding
bumps to Google.Protobuf, Grpc.Net.Client, Microsoft.Data.SqlClient and Newtonsoft.Json.
That is a gRPC/data-access change to a production SCADA platform and deserves its own
reviewed commit.
Verified: forced full-solution restore reports no NU1903 (only the pre-existing,
unrelated AngleSharp NU1902 in CentralUI.Tests); all four previously-vulnerable src
projects now resolve 2.1.12; 55 projects build 0 warnings / 0 errors; 1108 tests pass
across the SQLite layer (AuditLog 354, ConfigurationDatabase 357, Security 181,
StoreAndForward 152, SiteEventLogging 64).
The host does not guarantee IHostedService.StopAsync is driven before the DI
container is disposed — WebApplicationFactory's teardown reaches Dispose first
— so cancelling the internal CTS from StopAsync threw ObjectDisposedException
and aborted the host's whole shutdown sequence. Four services shared the same
copy-pasted lifecycle and the same two races: StopAsync cancelling an already-
disposed CTS, and StartAsync reading _cts.Token lazily inside the Task.Run
lambda, which faults the loop task the host awaits when Dispose wins that race.
Each service now captures the token on the caller's thread, tolerates a
disposed CTS, and cancels-before-disposing so the loop is always signalled and
its pending Task.Delay sees a cancelled token rather than a dead source.
SiteAuditBacklogReporter also gains the outer OperationCanceledException guard
its sibling SiteAuditRetentionService already carried (arch-review 04 R2, R7),
without which a shutdown landing mid-probe threw TaskCanceledException out of
Host.StopAsync.
Surfaced while verifying the Gitea #15 test-harness fix: in Host.Tests the
aborted teardown skipped the fixture's env-var restore, contaminating every
later test in the run.
Refs: Gitea #15
AddSiteEventLogHealthMetricsBridge registered via AddHostedService(factory-lambda),
which sets ImplementationFactory and leaves ImplementationType null. The prior
ImplementationType == guard was therefore silently dead — a second call would spin
up a second SiteEventLogFailureCountReporter. Fix: add a private
SiteEventLogHealthMetricsBridgeMarker singleton and guard on its ServiceType instead.
Also corrects the cycle-path comment in both ServiceCollectionExtensions.cs and
SiteEventLogFailureCountReporter.cs: StoreAndForward.csproj does reference
SiteEventLogging.csproj, so the transitive path HealthMonitoring → StoreAndForward →
SiteEventLogging is real, but adding a direct HealthMonitoring → SiteEventLogging
reference would NOT create a cycle (SiteEventLogging has no back-edge to HealthMonitoring).
The Func<long> seam is a coupling-avoidance measure, not a cycle-breaker.
Adds AddSiteEventLogHealthMetricsBridgeTests.AddSiteEventLogHealthMetricsBridge_IsIdempotent_DoesNotDoubleRegister_HostedService
as a regression test (builds provider and asserts exactly one reporter via GetServices<IHostedService>().OfType<T>()).
Perf re-baseline (HotPathLatencyTests): empirical p95 on Apple M-series Release
build: 4KB DetailsJson slow path ≈14 µs, small-DetailsJson no-redactors ≈2 µs,
true no-op fast path ≈0 µs. Thresholds updated: 200 µs / 30 µs / 5 µs (≈15×
headroom for contested CI runners). Old thresholds (50 µs / 10 µs) were set for
the pre-C3 typed-field path; canonical JSON parse+rewrite is empirically faster.
Adds a third test (Filter_Apply_NoDetailsJson_FastPath) that asserts same-instance
return on the DetailsJson-null + within-cap fast path. Env-var overrides retained.
CollapseAuditLogToCanonicalMigrationTests (new): three MSSQL-gated [SkippableFact]
tests verifying Action/Category/Outcome projection, NULL Actor, DetailsJson codec
round-trip, and all six persisted computed columns (Kind/Status/SourceSiteId/
ExecutionId/ParentExecutionId) for ApiOutbound, InboundAuthFailure, and Failed-
status rows.
AddAuditLogTableMigrationTests: rename CreatesFiveNamedIndexes →
CreatesNineNamedIndexes; expand coverage from 5 original indexes to all 9 named
non-clustered indexes present after CollapseAuditLogToCanonical (adds
IX_AuditLog_Execution, IX_AuditLog_ParentExecution, IX_AuditLog_Node_Occurred,
UX_AuditLog_EventId).
Dead-cref cleanup: zero references to the deleted IAuditPayloadFilter /
DefaultAuditPayloadFilter / SafeDefaultAuditPayloadFilter types remain in any
.cs file (source or test). 26 occurrences across 13 files replaced with correct
references to IAuditRedactor / ScadaBridgeAuditRedactor / SafeDefaultAuditRedactor
or reworded as plain prose.
Residual sweep: no unused transitional code found beyond the acknowledged
"C3 transitional shim" comments on IngestedAtUtc stamping (active code, not dead).