Bind queued actions and pending inventory requests to exact live incarnations, separate optimistic placement from authoritative responses, and serialize retail-style inventory ownership across UI surfaces. Co-authored-by: OpenAI Codex <codex@openai.com>
106 lines
4 KiB
C#
106 lines
4 KiB
C#
using System.Numerics;
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using AcDream.App.Input;
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using AcDream.App.Interaction;
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using AcDream.Core.Physics;
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using AcDream.Core.Physics.Motion;
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using AcDream.Core.World;
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namespace AcDream.App.Tests.Interaction;
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public sealed class PlayerInteractionMovementSinkTests
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{
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private const uint Player = 0x5000_0001u;
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private const uint Target = 0x7000_0001u;
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private const uint Cell = 0x0101_0001u;
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[Fact]
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public void MissingPlayerDoesNotArmTheIntent()
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{
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var sink = new PlayerInteractionMovementSink(() => null);
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bool armed = false;
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Assert.False(sink.BeginApproach(Approach(closeRange: true), () => armed = true));
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Assert.False(armed);
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}
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[Theory]
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[InlineData(true, MovementType.TurnToObject)]
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[InlineData(false, MovementType.MoveToObject)]
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public void ProductionSinkCancelsThenArmsAndInstallsExactMovement(
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bool closeRange,
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MovementType expectedType)
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{
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var controller = new PlayerMovementController(new PhysicsEngine());
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controller.SetPosition(Vector3.Zero, Cell);
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bool nonAutonomousAtTargetInstall = false;
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int cancellations = 0;
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double targetQuantum = 0d;
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var moveTo = new MoveToManager(
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controller.Motion,
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stopCompletely: () => { },
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getPosition: () => controller.CellPosition,
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getHeading: () => MoveToMath.HeadingFromYaw(controller.Yaw),
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setHeading: (heading, _) => controller.Yaw = MoveToMath.YawFromHeading(heading),
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getOwnRadius: () => 0.4f,
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getOwnHeight: () => 1.8f,
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contact: () => true,
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isInterpolating: () => false,
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getVelocity: () => Vector3.Zero,
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getSelfId: () => Player,
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setTarget: (_, topLevelId, radius, quantum) =>
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{
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Assert.Equal(Target, topLevelId);
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Assert.Equal(0.5f, radius);
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targetQuantum = quantum;
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nonAutonomousAtTargetInstall =
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controller.Motion.PhysicsObj?.LastMoveWasAutonomous == false;
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},
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clearTarget: () => { },
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getTargetQuantum: () => targetQuantum,
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setTargetQuantum: quantum => targetQuantum = quantum);
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moveTo.MoveToCancelled = _ => cancellations++;
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controller.MoveTo = moveTo;
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// Prove the sink's explicit cancel occurs before its arm callback.
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moveTo.MoveToPosition(
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new Position(Cell, new Vector3(2f, 0f, 0f), Quaternion.Identity),
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new MovementParameters { UseSpheres = false });
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bool armedAfterCancellation = false;
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var sink = new PlayerInteractionMovementSink(() => controller);
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Assert.True(sink.BeginApproach(
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Approach(closeRange),
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() => armedAfterCancellation = cancellations == 1 && !moveTo.IsMovingTo()));
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Assert.True(armedAfterCancellation);
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Assert.True(nonAutonomousAtTargetInstall);
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Assert.Equal(expectedType, moveTo.MovementTypeState);
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Assert.Equal(Target, moveTo.SoughtObjectId);
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Assert.Equal(Target, moveTo.TopLevelObjectId);
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Assert.Equal(closeRange ? 0f : 0.75f, moveTo.SoughtObjectRadius);
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Assert.Equal(closeRange ? 0f : 2.25f, moveTo.SoughtObjectHeight);
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Assert.Equal(0.6f, moveTo.Params.DistanceToObject);
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Assert.Equal(!closeRange, moveTo.Params.CanCharge);
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}
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private static InteractionApproach Approach(bool closeRange)
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{
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var entity = new WorldEntity
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{
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Id = 101u,
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ServerGuid = Target,
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SourceGfxObjOrSetupId = 0x0200_0001u,
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Position = new Vector3(5f, 0f, 0f),
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Rotation = Quaternion.Identity,
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MeshRefs = [],
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};
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return new InteractionApproach(
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new WorldInteractionTarget(Target, entity.Id, entity),
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new PlayerInteractionPose(Cell, Vector3.Zero),
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UseRadius: 0.6f,
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IsCloseRange: closeRange,
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CanCharge: !closeRange,
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TargetRadius: 0.75f,
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TargetHeight: 2.25f);
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}
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}
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