ModernUO/Projects/UOContent.Tests/Tests/Engines/Pathing/Multi/MultiMaskCacheTests.cs
Kamron Batman 8613f7d480 test(uocontent): skip tile-data-dependent tests when client files absent
Now that CI actually runs the test projects (previous commits), it exposed
that the UOContent.Tests bootstrap force-loaded UO client tile data
(tiledata.mul) unconditionally in the collection-fixture constructor. On
CI the copyrighted client files are absent, so TileData.Load() threw and
xUnit failed every test in the collection with the same
FileNotFoundException - 337 failures, most of them collateral (packet,
scheduler, spawner tests that don't need tile data at all).

Mirror the graceful pattern Server.Tests already uses:

- TestServerInitializer now probes for tiledata.mul (Core.FindDataFile +
  File.Exists) and only force-loads tile data / runs the tile-dependent
  configure steps (MultiData.Configure, VerifyTrammelTileDataLoaded) when
  present. It exposes TileDataLoaded so the fixture constructor no longer
  throws when the files are missing.
- Add a shared TileDataRequirement.SkipIfMissing() guard and apply it to
  exactly the 31 pathfinding/multi/AI tests that genuinely require real
  tile/multi data, converting them to [SkippableFact]/[SkippableTheory].

Result: with client data absent (CI) the suite is 0 failed / 32 skipped /
469 passed; with data present (dev) it is 0 failed / 0 skipped / 501
passed. The 306 collateral failures are gone because the fixture no longer
throws.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-07-02 22:32:25 -07:00

277 lines
11 KiB
C#

using Server.Engines.Pathing.Cache;
using Server.Items;
using Xunit;
namespace Server.Tests.Pathfinding;
[Collection("Sequential Pathfinding Tests")]
public class MultiMaskCacheTests
{
private const int MapId = 1;
private const int GuildHouseId = 0x74;
private const int PlaceX = 1480;
private const int PlaceY = 1620;
[SkippableFact]
public void TryResolveCoveringMulti_FindsPlacedMulti_AndLocalIndices()
{
TileDataRequirement.SkipIfMissing();
StepCache.Instance.Clear();
var map = Map.Maps[MapId];
map.GetAverageZ(PlaceX, PlaceY, out _, out var z, out _);
var loc = new Point3D(PlaceX, PlaceY, (sbyte)z);
var multi = new TestMulti(GuildHouseId);
try
{
multi.MoveToWorld(loc, map);
Assert.True(MultiMaskCache.TryResolveCoveringMulti(map, PlaceX, PlaceY, out var found, out var lx, out var ly));
Assert.Same(multi, found);
var mcl = multi.Components;
Assert.Equal(PlaceX - multi.X - mcl.Min.X, lx);
Assert.Equal(PlaceY - multi.Y - mcl.Min.Y, ly);
Assert.False(MultiMaskCache.TryResolveCoveringMulti(map, PlaceX + 200, PlaceY + 200, out _, out _, out _));
}
finally
{
multi.Delete();
}
}
[SkippableFact]
public void IsInteriorLocalCell_TrueDeepInside_FalseAtEdge()
{
TileDataRequirement.SkipIfMissing();
var multi = new TestMulti(GuildHouseId);
try
{
var mcl = multi.Components;
var foundInterior = false;
var foundEdge = false;
for (var ly = 0; ly < mcl.Height && (!foundInterior || !foundEdge); ly++)
{
for (var lx = 0; lx < mcl.Width; lx++)
{
if (mcl.Tiles[lx][ly].Length == 0)
{
continue;
}
if (MultiMaskCache.IsInteriorLocalCell(mcl, lx, ly))
{
foundInterior = true;
}
else
{
foundEdge = true;
}
}
}
Assert.True(foundInterior, "a guild house must have at least one interior cell");
Assert.True(foundEdge, "a guild house must have at least one edge/perimeter cell");
}
finally
{
multi.Delete();
}
}
[Fact]
public void LocalWorldZ_RoundTrips_AndPreservesMasks()
{
var world = new StepMask(
walkMask: 0b1010_1010, wetMask: 0b0101_0101,
walkZN: 10, walkZNE: 11, walkZE: 12, walkZSE: 13, walkZS: 14, walkZSW: 15, walkZW: 16, walkZNW: 17,
swimZN: -1, swimZNE: -2, swimZE: -3, swimZSE: -4, swimZS: -5, swimZSW: -6, swimZW: -7, swimZNW: -8
);
const int multiZ = 7;
Assert.True(MultiMaskCache.TryToLocalZ(world, multiZ, out var local));
var back = MultiMaskCache.ToWorldZ(local, multiZ);
Assert.Equal(world.WalkMask, back.WalkMask);
Assert.Equal(world.WetMask, back.WetMask);
for (var d = 0; d < 8; d++)
{
Assert.Equal(world.GetWalkZ((Direction)d), back.GetWalkZ((Direction)d));
Assert.Equal(world.GetSwimZ((Direction)d), back.GetSwimZ((Direction)d));
}
}
[Fact]
public void TryToLocalZ_RejectsOverflow()
{
var world = new StepMask(
walkMask: 0xFF, wetMask: 0,
walkZN: 100, walkZNE: 0, walkZE: 0, walkZSE: 0, walkZS: 0, walkZSW: 0, walkZW: 0, walkZNW: 0,
swimZN: 0, swimZNE: 0, swimZE: 0, swimZSE: 0, swimZS: 0, swimZSW: 0, swimZW: 0, swimZNW: 0
);
Assert.False(MultiMaskCache.TryToLocalZ(world, -100, out _));
}
[Fact]
public void TerrainTopBelow_TrueWhenFloorWellAboveGround()
{
StepCache.Instance.Clear();
var map = Map.Maps[MapId];
map.GetAverageZ(PlaceX, PlaceY, out _, out var ground, out _);
// Floor far above ground → terrain is below → guard passes.
Assert.True(MultiMaskCache.TerrainTopBelow(map, PlaceX, PlaceY, (sbyte)(ground + 50)));
// Floor at/below ground → terrain reaches the envelope → guard fails.
Assert.False(MultiMaskCache.TerrainTopBelow(map, PlaceX, PlaceY, (sbyte)(ground - 50)));
}
[SkippableFact]
public void PathThroughHouseInterior_IncrementsMultiMaskCacheHits()
{
TileDataRequirement.SkipIfMissing();
// (PlaceX,PlaceY)=(1480,1620) is cluttered (footprint overlaps tall map statics → dirty), so it
// would never serve the interior cache under the footprint-clean gate. Use a known flat/clear
// spot so a house there is footprint-clean and its interior cells serve from the cache.
const int CleanX = 1560;
const int CleanY = 1616;
var map = Map.Maps[MapId];
map.GetAverageZ(CleanX, CleanY, out _, out var z, out _);
var houseLoc = new Point3D(CleanX, CleanY, (sbyte)z);
var multi = new TestMulti(GuildHouseId);
var cacheWas = Server.Systems.FeatureFlags.ContentFeatureFlags.BitmapPathfindingCache;
Server.Systems.FeatureFlags.ContentFeatureFlags.BitmapPathfindingCache = true;
var mover = MultiTestSupport.GetWalkerOracle(map, new Point3D(CleanX, CleanY + 10, (sbyte)z));
try
{
multi.MoveToWorld(houseLoc, map);
Assert.True(MultiMaskCache.ComputeFootprintClean(map, multi),
"precondition: (1560,1616) must be footprint-clean for the cache to serve");
StepCache.Instance.Clear();
var start = new Point3D(CleanX, CleanY + 10, (sbyte)z);
var goal = new Point3D(CleanX, CleanY - 10, (sbyte)z);
// First pass builds the interior cache (live synth); second pass should hit it.
Server.PathAlgorithms.BitmapAStarAlgorithm.Instance.Find(mover, map, start, goal);
var before = StepCache.Instance.GetStats().MultiMaskCacheHits;
Server.PathAlgorithms.BitmapAStarAlgorithm.Instance.Find(mover, map, start, goal);
var after = StepCache.Instance.GetStats().MultiMaskCacheHits;
Assert.True(after > before, $"expected MultiMaskCacheHits to increase, before={before} after={after}");
}
finally
{
mover.Delete();
multi.Delete();
Server.Systems.FeatureFlags.ContentFeatureFlags.BitmapPathfindingCache = cacheWas;
}
}
[Fact]
public void ClutteredHouse_DoesNotServeCache_ButStillPaths()
{
var map = Map.Maps[MapId];
map.GetAverageZ(PlaceX, PlaceY, out _, out var z, out _);
var multi = new TestMulti(GuildHouseId);
var cacheWas = Server.Systems.FeatureFlags.ContentFeatureFlags.BitmapPathfindingCache;
Server.Systems.FeatureFlags.ContentFeatureFlags.BitmapPathfindingCache = true;
var mover = MultiTestSupport.GetWalkerOracle(map, new Point3D(PlaceX, PlaceY + 10, (sbyte)z));
try
{
// (1480,1620) overlaps tall map statics → footprint dirty → cache must NOT serve.
multi.MoveToWorld(new Point3D(PlaceX, PlaceY, (sbyte)z), map);
Assert.False(MultiMaskCache.ComputeFootprintClean(map, multi),
"precondition: (1480,1620) must be footprint-dirty for this test to be meaningful");
StepCache.Instance.Clear();
var start = new Point3D(PlaceX, PlaceY + 10, (sbyte)z);
var goal = new Point3D(PlaceX, PlaceY - 10, (sbyte)z);
Server.PathAlgorithms.BitmapAStarAlgorithm.Instance.Find(mover, map, start, goal); // warm
var before = StepCache.Instance.GetStats().MultiMaskCacheHits;
var path = Server.PathAlgorithms.BitmapAStarAlgorithm.Instance.Find(mover, map, start, goal);
var after = StepCache.Instance.GetStats().MultiMaskCacheHits;
Assert.NotNull(path); // pathfinding still works (degraded to live-synth)
Assert.Equal(before, after); // dirty footprint → zero cache serves
}
finally
{
mover.Delete();
multi.Delete();
Server.Systems.FeatureFlags.ContentFeatureFlags.BitmapPathfindingCache = cacheWas;
}
}
[Fact]
public void PathInteriorCacheState_ResetsOnMove()
{
var map = Map.Maps[MapId];
var multi = new TestMulti(GuildHouseId);
try
{
multi.MoveToWorld(new Point3D(PlaceX, PlaceY, 0), map);
multi.PathInteriorCacheState = MultiInteriorCacheState.Clean;
// A move changes the footprint's world terrain, so the gate must reset to Unknown and
// recompute on next use. (BaseMulti.OnLocationChange does this; subclasses like BaseHouse
// and BaseBoat must call base for it to fire — this pins that contract.)
multi.MoveToWorld(new Point3D(PlaceX + 8, PlaceY + 8, 0), map);
Assert.Equal(MultiInteriorCacheState.Unknown, multi.PathInteriorCacheState);
}
finally
{
multi.Delete();
}
}
[Fact]
public void PathInteriorCacheState_ResetsOnItemIdChange()
{
var map = Map.Maps[MapId];
var multi = new TestMulti(GuildHouseId);
try
{
multi.MoveToWorld(new Point3D(PlaceX, PlaceY, 0), map);
multi.PathInteriorCacheState = MultiInteriorCacheState.Clean;
// Changing ItemID swaps the footprint (e.g. a boat changing heading), so the gate must
// reset to recompute cleanliness for the new shape.
multi.ItemID = 0x7A; // Tower
Assert.Equal(MultiInteriorCacheState.Unknown, multi.PathInteriorCacheState);
}
finally
{
multi.Delete();
}
}
[SkippableFact]
public void ComputeFootprintClean_TrueAtNormalPlacement_FalseWhenSunk()
{
TileDataRequirement.SkipIfMissing();
// (PlaceX,PlaceY) is a cluttered spot whose footprint overlaps tall map statics, so a guild
// house there is never footprint-clean. Use a known flat/clear spot for the clean assertion.
const int CleanX = 1560;
const int CleanY = 1616;
StepCache.Instance.Clear();
var map = Map.Maps[MapId];
map.GetAverageZ(CleanX, CleanY, out _, out var ground, out _);
var normal = new TestMulti(GuildHouseId);
var sunk = new TestMulti(GuildHouseId);
try
{
normal.MoveToWorld(new Point3D(CleanX, CleanY, (sbyte)ground), map);
Assert.True(MultiMaskCache.ComputeFootprintClean(map, normal));
sunk.MoveToWorld(new Point3D(CleanX + 60, CleanY, (sbyte)(ground - 40)), map);
Assert.False(MultiMaskCache.ComputeFootprintClean(map, sunk));
}
finally
{
normal.Delete();
sunk.Delete();
}
}
}