fix(alarms): truncation-safe transitions; perf: single-pass alarm parse; configurable poll cadence
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@@ -317,6 +317,346 @@ public sealed class WnWrapAlarmConsumerXmlTests
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Assert.Equal(MxAlarmStateKind.AckAlm, changedTransition.Record.State);
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}
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// -------------------------------------------------------------------------
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// Truncation cliff (Task 23). GetXmlCurrentAlarms2 caps its reply at
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// maxAlmCnt with no "more available" flag. Before the guard, a capped fetch
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// shrank the retained snapshot, and every alarm past the cap vanished from
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// SnapshotActiveAlarms — which the gateway's reconcile pass reads as a
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// Clear and broadcasts to every StreamAlarms subscriber.
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// -------------------------------------------------------------------------
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/// <summary>
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/// A fetch that comes back holding exactly the cap must be treated as
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/// truncated; anything below the cap must not.
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/// </summary>
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/// <param name="fetchedRecordCount">Records the reply carried.</param>
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/// <param name="maxAlarmsPerFetch">The cap passed to the fetch.</param>
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/// <param name="expected">Whether the reply must read as truncated.</param>
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[Theory]
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[InlineData(1024, 1024, true)]
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[InlineData(1023, 1024, false)]
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[InlineData(0, 1024, false)]
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[InlineData(64, 64, true)]
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public void IsTruncatedFetch_AtOrAboveCap_IsTruncated(
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int fetchedRecordCount,
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int maxAlarmsPerFetch,
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bool expected)
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{
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Assert.Equal(
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expected,
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WnWrapAlarmConsumer.IsTruncatedFetch(fetchedRecordCount, maxAlarmsPerFetch));
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}
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/// <summary>
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/// THE truncation-correctness test. A 1024-record fetch against a
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/// 1024 cap that does not mention a known-active alarm must NOT evict
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/// that alarm from the retained snapshot: the snapshot is what
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/// <see cref="WnWrapAlarmConsumer.SnapshotActiveAlarms"/> returns and
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/// what the gateway's reconcile diffs its cache against, so an
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/// eviction here is a Clear broadcast for an alarm that never cleared.
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/// </summary>
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[Fact]
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public void ApplySnapshotUpdate_WhenFetchTruncated_RetainsAlarmMissingFromCappedFetch()
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{
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const int Cap = 1024;
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Guid missingGuid = new Guid("11111111-1111-1111-1111-111111111111");
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string xml = BuildAlarmXml(Cap);
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Dictionary<Guid, MxAlarmSnapshotRecord> next =
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WnWrapAlarmConsumer.ParseSnapshotXml(xml, out int fetchedRecordCount);
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Assert.Equal(Cap, fetchedRecordCount);
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Assert.Equal(Cap, next.Count);
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Assert.False(next.ContainsKey(missingGuid));
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Assert.True(WnWrapAlarmConsumer.IsTruncatedFetch(fetchedRecordCount, Cap));
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Dictionary<Guid, MxAlarmSnapshotRecord> snapshot = new()
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{
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[missingGuid] = NewRecord(missingGuid, MxAlarmStateKind.UnackAlm),
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};
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// The diff itself never emits a Clear for a disappearance — the Clear
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// is the eviction, one level up. Pin both halves.
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IReadOnlyList<MxAlarmTransitionEvent> transitions =
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WnWrapAlarmConsumer.ComputeTransitions(snapshot, next);
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Assert.DoesNotContain(transitions, t => t.Record.AlarmGuid == missingGuid);
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WnWrapAlarmConsumer.ApplySnapshotUpdate(snapshot, next, truncated: true);
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// NO Clear: the alarm the capped fetch had no room to mention survives,
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// so the gateway's reconcile still sees it active.
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Assert.True(snapshot.ContainsKey(missingGuid));
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Assert.Equal(MxAlarmStateKind.UnackAlm, snapshot[missingGuid].State);
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Assert.Equal(Cap + 1, snapshot.Count);
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}
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/// <summary>
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/// The control case: the same missing alarm against a sub-cap fetch
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/// must still be evicted, because a complete fetch IS authoritative
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/// about absence. Without this, the truncation guard would have
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/// silently disabled clears altogether.
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/// </summary>
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[Fact]
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public void ApplySnapshotUpdate_WhenFetchBelowCap_EvictsAlarmMissingFromFetch()
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{
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const int Cap = 1024;
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Guid missingGuid = new Guid("11111111-1111-1111-1111-111111111111");
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string xml = BuildAlarmXml(Cap - 1);
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Dictionary<Guid, MxAlarmSnapshotRecord> next =
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WnWrapAlarmConsumer.ParseSnapshotXml(xml, out int fetchedRecordCount);
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Assert.Equal(Cap - 1, fetchedRecordCount);
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Assert.False(WnWrapAlarmConsumer.IsTruncatedFetch(fetchedRecordCount, Cap));
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Dictionary<Guid, MxAlarmSnapshotRecord> snapshot = new()
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{
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[missingGuid] = NewRecord(missingGuid, MxAlarmStateKind.UnackAlm),
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};
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WnWrapAlarmConsumer.ApplySnapshotUpdate(snapshot, next, truncated: false);
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// Clear as today: the alarm drops out of the snapshot, and the
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// gateway's reconcile turns that absence into a Clear.
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Assert.False(snapshot.ContainsKey(missingGuid));
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Assert.Equal(Cap - 1, snapshot.Count);
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}
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/// <summary>
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/// A truncated fetch must still apply the alarms it DID carry — the
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/// guard suppresses eviction, not the update. An alarm whose state
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/// changed inside a capped reply still transitions.
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/// </summary>
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[Fact]
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public void ApplySnapshotUpdate_WhenFetchTruncated_StillAppliesPresentAlarms()
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{
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Guid presentGuid = new Guid("22222222-2222-2222-2222-222222222222");
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Guid missingGuid = new Guid("11111111-1111-1111-1111-111111111111");
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Dictionary<Guid, MxAlarmSnapshotRecord> snapshot = new()
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{
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[presentGuid] = NewRecord(presentGuid, MxAlarmStateKind.UnackAlm),
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[missingGuid] = NewRecord(missingGuid, MxAlarmStateKind.UnackAlm),
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};
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Dictionary<Guid, MxAlarmSnapshotRecord> next = new()
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{
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[presentGuid] = NewRecord(presentGuid, MxAlarmStateKind.AckAlm),
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};
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IReadOnlyList<MxAlarmTransitionEvent> transitions =
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WnWrapAlarmConsumer.ComputeTransitions(snapshot, next);
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MxAlarmTransitionEvent single = Assert.Single(transitions);
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Assert.Equal(presentGuid, single.Record.AlarmGuid);
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Assert.Equal(MxAlarmStateKind.UnackAlm, single.PreviousState);
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Assert.Equal(MxAlarmStateKind.AckAlm, single.Record.State);
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WnWrapAlarmConsumer.ApplySnapshotUpdate(snapshot, next, truncated: true);
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Assert.Equal(MxAlarmStateKind.AckAlm, snapshot[presentGuid].State);
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Assert.True(snapshot.ContainsKey(missingGuid));
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}
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/// <summary>
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/// Truncation is detected from the raw ALARM-element count, not the
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/// parsed dictionary size. A record dropped for a malformed GUID still
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/// consumed a slot in the capped reply, so counting only survivors
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/// would let a truncated fetch pass as complete and re-open the cliff.
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/// </summary>
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[Fact]
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public void ParseSnapshotXml_CountsRawAlarmElements_IncludingRecordsDroppedForBadGuid()
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{
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const int Cap = 64;
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string xml = BuildAlarmXml(Cap).Replace(
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"<GUID>00000000000000000000000000000001</GUID>",
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"<GUID>not-a-guid</GUID>");
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Dictionary<Guid, MxAlarmSnapshotRecord> records =
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WnWrapAlarmConsumer.ParseSnapshotXml(xml, out int fetchedRecordCount);
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Assert.Equal(Cap, fetchedRecordCount);
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Assert.Equal(Cap - 1, records.Count);
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Assert.True(WnWrapAlarmConsumer.IsTruncatedFetch(fetchedRecordCount, Cap));
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}
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/// <summary>
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/// The per-fetch cap comes from the launcher-set environment variable;
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/// a missing, unparseable, or below-floor value must fall back to the
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/// 1024 default rather than throw. A bad environment value must never
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/// stop the alarm consumer from starting.
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/// </summary>
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/// <param name="environmentValue">Raw environment value under test.</param>
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/// <param name="expected">Expected resolved cap.</param>
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[Theory]
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[InlineData(null, 1024)]
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[InlineData("", 1024)]
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[InlineData("not-a-number", 1024)]
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[InlineData("0", 1024)]
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[InlineData("-5", 1024)]
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[InlineData("63", 1024)]
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[InlineData("64", 64)]
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[InlineData("4096", 4096)]
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public void ResolveMaxAlarmsPerFetch_WithEnvironmentValue_FallsBackToDefaultWhenUnusable(
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string? environmentValue,
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int expected)
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{
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string? original = Environment.GetEnvironmentVariable(
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WnWrapAlarmConsumer.MaxAlarmsPerFetchEnvironmentVariableName);
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try
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{
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Environment.SetEnvironmentVariable(
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WnWrapAlarmConsumer.MaxAlarmsPerFetchEnvironmentVariableName,
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environmentValue);
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Assert.Equal(expected, WnWrapAlarmConsumer.ResolveMaxAlarmsPerFetch());
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}
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finally
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{
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Environment.SetEnvironmentVariable(
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WnWrapAlarmConsumer.MaxAlarmsPerFetchEnvironmentVariableName,
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original);
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}
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}
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/// <summary>
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/// Builds a well-formed ALARM_RECORDS payload with
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/// <paramref name="count"/> distinct alarms. GUIDs are the dashless
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/// 32-char hex form wnwrap actually emits, numbered from 1 so a test
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/// can name one (e.g. ...0001) to corrupt.
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/// </summary>
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/// <param name="count">Number of ALARM elements to emit.</param>
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/// <returns>The XML payload.</returns>
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private static string BuildAlarmXml(int count)
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{
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System.Text.StringBuilder sb = new System.Text.StringBuilder();
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sb.Append("<?xml version=\"1.0\"?><ALARM_RECORDS COUNT=\"")
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.Append(count)
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.Append("\">");
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for (int index = 1; index <= count; index++)
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{
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sb.Append("<ALARM><GUID>")
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.Append(index.ToString("X32", System.Globalization.CultureInfo.InvariantCulture))
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.Append("</GUID>")
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.Append("<DATE>2026/5/1</DATE><TIME>13:26:14.709</TIME>")
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.Append("<GMTOFFSET>240</GMTOFFSET><DSTADJUST>0</DSTADJUST>")
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.Append("<PROVIDER_NODE>TEST-NODE</PROVIDER_NODE>")
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.Append("<PROVIDER_NAME>Galaxy</PROVIDER_NAME>")
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.Append("<GROUP>TestArea</GROUP>")
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.Append("<TAGNAME>TestMachine_")
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.Append(index.ToString(System.Globalization.CultureInfo.InvariantCulture))
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.Append(".TestAlarm</TAGNAME>")
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.Append("<TYPE>DSC</TYPE><VALUE>true</VALUE><LIMIT>true</LIMIT>")
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.Append("<PRIORITY>500</PRIORITY><STATE>UNACK_ALM</STATE>")
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.Append("<OPERATOR_NODE></OPERATOR_NODE><OPERATOR_NAME></OPERATOR_NAME>")
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.Append("<ALARM_COMMENT>Test alarm</ALARM_COMMENT></ALARM>");
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}
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sb.Append("</ALARM_RECORDS>");
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return sb.ToString();
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}
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// -------------------------------------------------------------------------
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// Single-pass parse parity (Task 23). The per-field SelectSingleNode calls
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// were replaced by one walk over ChildNodes; these pin the semantics that
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// walk has to reproduce.
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// -------------------------------------------------------------------------
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/// <summary>
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/// An absent child element and a present-but-empty one must both yield
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/// <see cref="string.Empty"/>, exactly as
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/// <c>SelectSingleNode(name)?.InnerText ?? string.Empty</c> did.
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/// </summary>
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[Fact]
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public void ParseSnapshotXml_WithAbsentAndEmptyChildren_YieldsEmptyStrings()
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{
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string xml =
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"<?xml version=\"1.0\"?><ALARM_RECORDS COUNT=\"1\">" +
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"<ALARM><GUID>BCC4705395424D65BDAABCDEA6A32A73</GUID>" +
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"<TAGNAME></TAGNAME>" +
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"<STATE>UNACK_ALM</STATE></ALARM>" +
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"</ALARM_RECORDS>";
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Dictionary<Guid, MxAlarmSnapshotRecord> records = WnWrapAlarmConsumer.ParseSnapshotXml(xml);
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MxAlarmSnapshotRecord record = records[new Guid("BCC47053-9542-4D65-BDAA-BCDEA6A32A73")];
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Assert.Equal(string.Empty, record.TagName); // present but empty
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Assert.Equal(string.Empty, record.ProviderNode); // absent
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Assert.Equal(string.Empty, record.Value); // absent
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Assert.Equal(string.Empty, record.AlarmComment); // absent
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Assert.Equal(0, record.Priority); // absent → ParseInt("") → 0
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Assert.Equal(MxAlarmStateKind.UnackAlm, record.State);
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}
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/// <summary>
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/// Duplicate child elements must resolve to the FIRST occurrence —
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/// <c>SelectSingleNode</c> returned the first match, so a last-wins
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/// walk would silently change which value a malformed payload yields.
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/// </summary>
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[Fact]
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public void ParseSnapshotXml_WithDuplicateChildElements_TakesFirstOccurrence()
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{
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string xml =
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"<?xml version=\"1.0\"?><ALARM_RECORDS COUNT=\"1\">" +
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"<ALARM><GUID>BCC4705395424D65BDAABCDEA6A32A73</GUID>" +
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"<TAGNAME>First</TAGNAME><TAGNAME>Second</TAGNAME>" +
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"<PRIORITY>100</PRIORITY><PRIORITY>900</PRIORITY>" +
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"<STATE>UNACK_ALM</STATE></ALARM>" +
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"</ALARM_RECORDS>";
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Dictionary<Guid, MxAlarmSnapshotRecord> records = WnWrapAlarmConsumer.ParseSnapshotXml(xml);
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MxAlarmSnapshotRecord record = records[new Guid("BCC47053-9542-4D65-BDAA-BCDEA6A32A73")];
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Assert.Equal("First", record.TagName);
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Assert.Equal(100, record.Priority);
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}
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/// <summary>
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/// Field names are matched ordinally and case-sensitively, as the
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/// XPath node test was. A lowercase element must not populate the
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/// field its uppercase counterpart owns.
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/// </summary>
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[Fact]
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public void ParseSnapshotXml_WithWrongCaseChildElement_DoesNotPopulateField()
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{
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string xml =
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"<?xml version=\"1.0\"?><ALARM_RECORDS COUNT=\"1\">" +
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"<ALARM><GUID>BCC4705395424D65BDAABCDEA6A32A73</GUID>" +
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"<tagname>ShouldBeIgnored</tagname>" +
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"<STATE>UNACK_ALM</STATE></ALARM>" +
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"</ALARM_RECORDS>";
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Dictionary<Guid, MxAlarmSnapshotRecord> records = WnWrapAlarmConsumer.ParseSnapshotXml(xml);
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MxAlarmSnapshotRecord record = records[new Guid("BCC47053-9542-4D65-BDAA-BCDEA6A32A73")];
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Assert.Equal(string.Empty, record.TagName);
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}
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/// <summary>
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/// Non-element children (whitespace text, comments, CDATA) must be
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/// skipped rather than matched by name, and a nested element must
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/// contribute its InnerText exactly as <c>InnerText</c> always did.
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/// </summary>
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[Fact]
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public void ParseSnapshotXml_WithCommentsAndWhitespace_IgnoresNonElementChildren()
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{
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string xml =
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"<?xml version=\"1.0\"?><ALARM_RECORDS COUNT=\"1\">\n" +
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" <ALARM>\n" +
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" <!-- a comment -->\n" +
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" <GUID>BCC4705395424D65BDAABCDEA6A32A73</GUID>\n" +
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" <TAGNAME>TestMachine.TestAlarm</TAGNAME>\n" +
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" <STATE>UNACK_ALM</STATE>\n" +
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" </ALARM>\n" +
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"</ALARM_RECORDS>";
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Dictionary<Guid, MxAlarmSnapshotRecord> records =
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WnWrapAlarmConsumer.ParseSnapshotXml(xml, out int fetchedRecordCount);
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Assert.Equal(1, fetchedRecordCount);
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MxAlarmSnapshotRecord record = Assert.Single(records).Value;
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Assert.Equal("TestMachine.TestAlarm", record.TagName);
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Assert.Equal(MxAlarmStateKind.UnackAlm, record.State);
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}
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private static MxAlarmSnapshotRecord NewRecord(Guid guid, MxAlarmStateKind state)
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{
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return new MxAlarmSnapshotRecord
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