v3 B1-WP6: migrate Core + Server test projects to greenfield schema
Fix TESTS only (production already green) so the four in-scope test projects compile + pass under the v3 dark address space: - Core.Abstractions.Tests: drop AllowedNamespaceKinds/NamespaceKindCompatibility from DriverTypeMetadata; rewrite EquipmentTagRefResolver tests to the single-func RawPath-lookup contract (no parseRef/transient cache). - Core.Tests: rewrite EquipmentNodeWalkerTests to EquipmentNamespaceContent(Areas, Lines,Equipment,VirtualTags?,ScriptedAlarms?) — folders + VirtualTags + ScriptedAlarms only; raw-tag variables dark (skipped Batch-4 placeholder). Drop retired Equipment.DriverInstanceId. - Runtime.Tests: rewrite golden corpus + TagConfigCorpusParityTests to the v3 RawPath/RawTagEntry round-trip (byte + TagConfigIntent parity; EquipmentTags dark). Salvage VirtualTag + ScriptedAlarm artifact parity to the new Compose signature. Retire the equipment-tag-materialization parity files (Array/Historize/Alias) and the equipment-device-binding DeviceHost parity to documented skipped placeholders. Skip 34 dark equipment-tag routing/value/alarm/write/discovery actor tests with a shared DarkAddressSpaceReasons constant. Re-key cluster-scoped tests to v3 UNS line->area attribution. - ControlPlane.Tests: ConfigComposer round-trips re-keyed to RawFolder/Device (no Namespaces); tag-config gate resolves driver via Device; deploy-gate collision test re-keyed to UnsEffectiveNameCollision; drop retired BadCrossClusterNamespaceBinding case.
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using System.Linq;
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using System.Text.Json;
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using Shouldly;
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using Xunit;
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using ZB.MOM.WW.OtOpcUa.Configuration.Entities;
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using ZB.MOM.WW.OtOpcUa.Configuration.Enums;
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using ZB.MOM.WW.OtOpcUa.OpcUaServer;
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using ZB.MOM.WW.OtOpcUa.Runtime.Drivers;
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namespace ZB.MOM.WW.OtOpcUa.Runtime.Tests.Drivers;
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/// <summary>
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/// Proves the Phase 4c array intent (<c>isArray</c> + optional <c>arrayLength</c>), which rides
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/// inside the raw <c>TagConfig</c> JSON blob, round-trips with byte-parity through both
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/// equipment-tag producers: the live-edit composer (<see cref="AddressSpaceComposer.Compose"/>) and the
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/// artifact decoder (<see cref="DeploymentArtifact.ParseComposition(System.ReadOnlySpan{byte})"/>).
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/// A secondary/follower node decoding a serialized deployment artifact MUST materialise array tags
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/// identically to the primary, so the artifact side must derive <c>IsArray</c> / <c>ArrayLength</c>
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/// from the same blob the composer parses. The composer's <c>ExtractTagArray</c> is internal and not
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/// visible to this test assembly (<c>InternalsVisibleTo</c> only names the OpcUaServer.Tests
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/// project), so byte-parity is asserted via the public-surface round-trip — exactly as the sibling
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/// <see cref="DeploymentArtifactHistorizeParityTests"/> does.
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/// Phase 4c array intent (<c>isArray</c> + optional <c>arrayLength</c>) byte-parity between the two
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/// equipment-tag producers.
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/// <para>
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/// <b>v3 DARK (Batch 1):</b> equipment-tag variable plans do not materialize — the composer and the
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/// artifact both emit an EMPTY <c>EquipmentTags</c> set until the Batch-4 dual-namespace UNS↔Raw
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/// fan-out, so there is nothing to compare. The underlying parse of <c>isArray</c> / <c>arrayLength</c>
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/// from a raw <c>TagConfig</c> blob is characterized today by <c>TagConfigIntentTests</c> and
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/// round-tripped through the artifact by <see cref="TagConfigCorpusParityTests"/> (RawTagEntry
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/// byte-preservation). Unskip when Batch 4 lights the equipment-tag plans.
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/// </para>
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/// </summary>
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public sealed class DeploymentArtifactArrayParityTests
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{
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/// <summary>
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/// One draft consumed by both producers, exercising every <c>ExtractTagArray</c> branch:
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/// <c>isArray:true,arrayLength:16</c> ⇒ <c>(true, 16u)</c>; absent ⇒ <c>(false, null)</c>;
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/// <c>isArray:true</c> with no length ⇒ <c>(true, null)</c>; a non-number (string) length while
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/// <c>isArray:true</c> ⇒ <c>(true, null)</c>. The decoded <c>EquipmentTags</c> must equal the
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/// composer's element-wise (positional-record value equality) and in the same order, proving
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/// <c>IsArray</c> / <c>ArrayLength</c> are derived byte-identically on both seams.
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/// </summary>
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[Fact]
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/// <summary>Batch-4 pending: composer and artifact agree on array equipment-tag plans
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/// (IsArray + ArrayLength). See class remarks — equipment-tag plans are dark this batch.</summary>
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[Fact(Skip = DarkAddressSpaceReasons.EquipmentTagsDarkBatch4)]
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public void Composer_and_artifact_agree_on_array_equipment_tags()
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{
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var ns = new Namespace
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{
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NamespaceId = "ns-eq",
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ClusterId = "c1",
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Kind = NamespaceKind.Equipment,
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NamespaceUri = "urn:eq",
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};
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var driver = new DriverInstance
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{
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DriverInstanceId = "drv-modbus",
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ClusterId = "c1",
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NamespaceId = "ns-eq",
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Name = "Modbus1",
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DriverType = "Modbus",
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DriverConfig = "{}",
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};
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var area = new UnsArea { UnsAreaId = "area-1", ClusterId = "c1", Name = "filling" };
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var line = new UnsLine { UnsLineId = "line-1", UnsAreaId = "area-1", Name = "line-1" };
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var equip = new Equipment
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{
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EquipmentId = "eq-1",
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DriverInstanceId = "drv-modbus",
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UnsLineId = "line-1",
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Name = "FillingPump",
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MachineCode = "FILLINGPUMP",
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};
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// Array WITH an explicit bounded length → (true, 16u).
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var arrayBoundedTag = new Tag
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{
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TagId = "tag-array-bounded",
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DriverInstanceId = "drv-modbus",
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EquipmentId = "eq-1",
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FolderPath = null,
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Name = "Recipe",
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DataType = "Int32",
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AccessLevel = TagAccessLevel.Read,
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TagConfig = "{\"FullName\":\"40001\",\"isArray\":true,\"arrayLength\":16}",
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};
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// Plain scalar — no isArray flag → (false, null).
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var scalarTag = new Tag
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{
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TagId = "tag-scalar",
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DriverInstanceId = "drv-modbus",
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EquipmentId = "eq-1",
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FolderPath = null,
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Name = "Speed",
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DataType = "Float",
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AccessLevel = TagAccessLevel.ReadWrite,
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TagConfig = "{\"FullName\":\"40002\"}",
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};
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// Array WITHOUT a length → (true, null) ⇒ unbounded 1-D array at materialisation.
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var arrayUnboundedTag = new Tag
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{
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TagId = "tag-array-unbounded",
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DriverInstanceId = "drv-modbus",
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EquipmentId = "eq-1",
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FolderPath = null,
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Name = "Trace",
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DataType = "Float",
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AccessLevel = TagAccessLevel.Read,
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TagConfig = "{\"FullName\":\"40003\",\"isArray\":true}",
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};
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// Array with a NON-number (string) length token → length ignored ⇒ (true, null). This well-formed
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// blob exercises the artifact-side private ExtractTagArray's number-guard branch through the real
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// round-trip (it can't be unit-tested directly because it's private). A truly malformed TagConfig
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// string would cause ExtractTagFullName to return "" and break the SequenceEqual on other fields,
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// so the throws/malformed path is covered by the composer unit test, not here.
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// NOTE (review M-1): only the string-type bad-length case is round-tripped here. The
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// negative/float/overflow arrayLength reject paths are covered on the composer side
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// (ExtractTagArrayTests) and do not need duplication in this artifact parity test.
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var arrayBadLengthTag = new Tag
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{
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TagId = "tag-array-badlen",
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DriverInstanceId = "drv-modbus",
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EquipmentId = "eq-1",
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FolderPath = null,
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Name = "Buffer",
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DataType = "Int32",
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AccessLevel = TagAccessLevel.Read,
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TagConfig = "{\"FullName\":\"40004\",\"isArray\":true,\"arrayLength\":\"sixteen\"}",
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};
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// I-1: isArray:false with a non-zero arrayLength — the artifact-side guard must gate arrayLength
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// under isArray, so the length is discarded and IsArray==false, ArrayLength==null on both sides.
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// Pins that a future removal of the isArray gate would be caught here.
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var arrayDisabledTag = new Tag
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{
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TagId = "tag-array-disabled",
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DriverInstanceId = "drv-modbus",
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EquipmentId = "eq-1",
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FolderPath = null,
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Name = "Setpoint",
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DataType = "Float",
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AccessLevel = TagAccessLevel.ReadWrite,
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TagConfig = "{\"FullName\":\"40005\",\"isArray\":false,\"arrayLength\":8}",
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};
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// I-2: isArray:true with arrayLength:0 — zero is a legal explicit dimension bound (e.g. dynamic
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// array with declared-but-unset size). Must decode to IsArray==true, ArrayLength==0u on both sides.
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// Pins that a future change treating 0 as absent would be caught here.
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var arrayZeroLengthTag = new Tag
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{
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TagId = "tag-array-zerolen",
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DriverInstanceId = "drv-modbus",
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EquipmentId = "eq-1",
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FolderPath = null,
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Name = "Empty",
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DataType = "Int32",
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AccessLevel = TagAccessLevel.Read,
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TagConfig = "{\"FullName\":\"40006\",\"isArray\":true,\"arrayLength\":0}",
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};
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var areas = new[] { area };
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var lines = new[] { line };
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var equipment = new[] { equip };
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var drivers = new[] { driver };
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var tags = new[] { arrayBoundedTag, scalarTag, arrayUnboundedTag, arrayBadLengthTag, arrayDisabledTag, arrayZeroLengthTag };
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var namespaces = new[] { ns };
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// ---- Side 1: the live-edit composer ----
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var composed = AddressSpaceComposer.Compose(
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areas, lines, equipment, drivers, Array.Empty<ScriptedAlarm>(), tags, namespaces);
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// ---- Side 2: serialise the SAME draft to the artifact blob shape, then decode it ----
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var blob = JsonSerializer.SerializeToUtf8Bytes(new
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{
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Namespaces = new[]
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{
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new { ns.NamespaceId, ns.ClusterId, Kind = (int)ns.Kind },
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},
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DriverInstances = new[]
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{
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new { driver.DriverInstanceId, driver.DriverType, driver.DriverConfig, driver.NamespaceId, driver.ClusterId },
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},
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Tags = new[]
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{
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ToSnapshot(arrayBoundedTag),
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ToSnapshot(scalarTag),
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ToSnapshot(arrayUnboundedTag),
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ToSnapshot(arrayBadLengthTag),
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ToSnapshot(arrayDisabledTag),
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ToSnapshot(arrayZeroLengthTag),
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},
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});
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var decoded = DeploymentArtifact.ParseComposition(blob);
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// ---- Full byte-parity: every field, same order (positional-record value equality) ----
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decoded.EquipmentTags.Count.ShouldBe(6);
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decoded.EquipmentTags.SequenceEqual(composed.EquipmentTags).ShouldBeTrue();
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// Spell out the array fields per-tag so a divergence names the offending tag.
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var arrayBounded = decoded.EquipmentTags.Single(t => t.TagId == "tag-array-bounded");
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arrayBounded.IsArray.ShouldBeTrue();
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arrayBounded.ArrayLength.ShouldBe(16u);
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composed.EquipmentTags.Single(t => t.TagId == "tag-array-bounded").IsArray.ShouldBeTrue();
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composed.EquipmentTags.Single(t => t.TagId == "tag-array-bounded").ArrayLength.ShouldBe(16u);
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var scalar = decoded.EquipmentTags.Single(t => t.TagId == "tag-scalar");
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scalar.IsArray.ShouldBeFalse();
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scalar.ArrayLength.ShouldBeNull();
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composed.EquipmentTags.Single(t => t.TagId == "tag-scalar").IsArray.ShouldBeFalse();
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composed.EquipmentTags.Single(t => t.TagId == "tag-scalar").ArrayLength.ShouldBeNull();
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var arrayUnbounded = decoded.EquipmentTags.Single(t => t.TagId == "tag-array-unbounded");
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arrayUnbounded.IsArray.ShouldBeTrue();
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arrayUnbounded.ArrayLength.ShouldBeNull();
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composed.EquipmentTags.Single(t => t.TagId == "tag-array-unbounded").IsArray.ShouldBeTrue();
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composed.EquipmentTags.Single(t => t.TagId == "tag-array-unbounded").ArrayLength.ShouldBeNull();
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// 4th tag: isArray:true with a string arrayLength ⇒ (true, null) on both sides. Exercises the
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// artifact-side private ExtractTagArray's number-guard branch.
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var arrayBadLength = decoded.EquipmentTags.Single(t => t.TagId == "tag-array-badlen");
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arrayBadLength.IsArray.ShouldBeTrue();
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arrayBadLength.ArrayLength.ShouldBeNull();
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composed.EquipmentTags.Single(t => t.TagId == "tag-array-badlen").IsArray.ShouldBeTrue();
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composed.EquipmentTags.Single(t => t.TagId == "tag-array-badlen").ArrayLength.ShouldBeNull();
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// I-1: isArray:false with a non-zero arrayLength ⇒ (false, null) on both sides.
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// The artifact-side isArray gate must suppress arrayLength even when it is present in the blob.
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var arrayDisabled = decoded.EquipmentTags.Single(t => t.TagId == "tag-array-disabled");
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arrayDisabled.IsArray.ShouldBeFalse();
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arrayDisabled.ArrayLength.ShouldBeNull();
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composed.EquipmentTags.Single(t => t.TagId == "tag-array-disabled").IsArray.ShouldBeFalse();
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composed.EquipmentTags.Single(t => t.TagId == "tag-array-disabled").ArrayLength.ShouldBeNull();
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// I-2: isArray:true with arrayLength:0 ⇒ (true, 0u) on both sides.
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// Zero is a legal explicit dimension bound; it must not be treated as absent.
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var arrayZeroLength = decoded.EquipmentTags.Single(t => t.TagId == "tag-array-zerolen");
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arrayZeroLength.IsArray.ShouldBeTrue();
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arrayZeroLength.ArrayLength.ShouldBe(0u);
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composed.EquipmentTags.Single(t => t.TagId == "tag-array-zerolen").IsArray.ShouldBeTrue();
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composed.EquipmentTags.Single(t => t.TagId == "tag-array-zerolen").ArrayLength.ShouldBe(0u);
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// Restored when Batch 4 materializes equipment-tag variable plans: compose a draft exercising every
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// array branch (isArray:true+length, absent, isArray:true no length, non-number length) and assert
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// decoded EquipmentTags == composed element-wise.
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}
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/// <summary>The Pascal-case snapshot a <see cref="Tag"/> EF entity serialises to in the artifact
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/// (matches ConfigComposer); the equipment-tag decoder re-parses these fields — including the raw
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/// <c>TagConfig</c> blob the array flags ride inside.</summary>
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private static object ToSnapshot(Tag t) => new
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{
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t.TagId,
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t.DriverInstanceId,
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t.EquipmentId,
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t.Name,
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t.FolderPath,
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t.DataType,
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AccessLevel = (int)t.AccessLevel,
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t.TagConfig,
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};
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}
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