using System.Numerics;
using AcDream.App.Rendering;
using AcDream.App.Rendering.Gpu;
using AcDream.App.Rendering.Walk;
using AcDream.App.Tests.Rendering;
using AcDream.Core.Rendering;
namespace AcDream.App.Tests.Rendering.Walk;
///
/// Campaign OVERHAUL S3 chunk 1 (§11.2): tests T1/T2 for the print-only walk
/// transcript emitter (, gated by
/// ), plus the
/// §11.2 B4 offline signature-diff self-check. Reuses
/// 's own private fixture types via the
/// shared partial class — the SAME minimal interior two-cell flood
/// (one exit view) that file's own
/// RunFrame_InteriorFloodWithExitView_FreshDriverSkipsTheGatedClearThenDrawsSealsAndFloodCells
/// test already exercises and proves correct; here only
/// runs (no Replay/GPU
/// submission), since every transcript print fires synchronously during the
/// walk itself.
///
///
/// and
/// are both process-wide mutable statics — joins
/// for the SAME reason
/// CornerFloodReplayTests/Issue181WallPressEquilibriumTests do
/// (that collection's own doc comment, issue #251): interleaved
/// Console.SetOut redirection across parallel test classes can
/// restore a disposed process-wide.
///
///
[Collection(CameraDiagnosticsCollection.Name)]
public sealed partial class WalkFrameDriverTests
{
private static (WalkCell Cell1, WalkCell Cell2) BuildTranscriptFixtureCells(TestContext ctx)
{
var cell1 = new WalkCell
{
CellId = 0x100,
StabList = [0x101u],
Portals =
[
new WalkCellPortal
{
OtherCellId = 0x101, PolygonIndex = 0, PortalSide = 0, OtherPortalId = 0,
},
// The exit portal — raises ov to 1, so the flood draws the
// (empty, zero-block) landscape too, exercising LS.
new WalkCellPortal
{
OtherCellId = 0xFFFFFFFF, PolygonIndex = 1, PortalSide = 0, OtherPortalId = -1,
},
],
PortalPolygons = [Quad(-2f), Quad(-3f)],
};
var cell2 = new WalkCell
{
CellId = 0x101,
Portals = [new WalkCellPortal
{
OtherCellId = 0x100, PolygonIndex = 0, PortalSide = 1, OtherPortalId = 0,
}],
PortalPolygons = [Quad(-2f)],
};
ctx.Cells[cell1.CellId] = cell1;
ctx.Cells[cell2.CellId] = cell2;
return (cell1, cell2);
}
/// T1 (§11.3): the flag off — zero output, and the emitter's
/// own methods (the only code this chunk adds to the walk path)
/// allocate nothing. The walk itself is NOT independently zero-alloc
/// (e.g. RetailFrameWalk.EmitDrawCells allocates its cell-id
/// array on every call — pre-existing, unrelated to this chunk), so the
/// allocation bound below is scoped to
/// itself, matching B1's actual contract ("allocates nothing EXTRA").
[Fact]
public void TranscriptEmitter_FlagOff_EveryPrintMethodIsAZeroCostNoOp()
{
bool previous = RenderingDiagnostics.DumpWalkTranscriptEnabled;
RenderingDiagnostics.DumpWalkTranscriptEnabled = false;
TextWriter originalOut = Console.Out;
var capture = new StringWriter();
try
{
Console.SetOut(capture);
var cells = new List { 0x100u, 0x101u };
void Step()
{
WalkTranscriptDump.PrintFrameRoot(1, 0x100u, Vector3.Zero, Vector3.UnitY);
WalkTranscriptDump.PrintLandscape();
WalkTranscriptDump.PrintBuilding(0x100u);
WalkTranscriptDump.PrintDrawInside(0x100u);
WalkTranscriptDump.PrintDrawCells(outdoorPview: false, 1, cells);
WalkTranscriptDump.PrintLandCell(0xF4180001u);
WalkTranscriptDump.PrintSortCell(0xF4180001u);
WalkTranscriptDump.PrintEnvCellShell(0x101u);
WalkTranscriptDump.PrintObjectCellTurn(0x101u);
}
ZeroAllocationProbe.AssertAllocatesNothing(
"WalkTranscriptDump.Print* (flag off)", Step);
AssertNoTranscriptLines(capture);
}
finally
{
Console.SetOut(originalOut);
RenderingDiagnostics.DumpWalkTranscriptEnabled = previous;
}
}
/// T1's integration half: a full synthetic interior frame,
/// driven through the SAME path
/// production uses, produces literally NO transcript output when the
/// flag is off. S3 chunk 1 fix round 1 (G1): TWO Collect calls,
/// not one — structurally discards
/// the last (open) frame (its own class doc: the capture harness
/// detaches at the frame marker, so the final "F n" never records its
/// own draws), so a SINGLE-frame transcript parses to zero frames
/// whether or not the flag actually gated anything — a one-Collect-call
/// version of this test is vacuous (it would pass exactly as well with
/// the flag gate forced true). Two Collect calls give the parser a real
/// COMPLETE frame to see if the gate leaked (MUTATION CHECK: forcing
/// RenderingDiagnostics.DumpWalkTranscriptEnabled true right
/// after setting it false here makes AssertNoTranscriptLines
/// fail, both on the parsed-frame-count assertion and the prefix
/// scan).
[Fact]
public void Collect_TranscriptFlagOff_ProducesNoConsoleOutput()
{
bool previous = RenderingDiagnostics.DumpWalkTranscriptEnabled;
RenderingDiagnostics.DumpWalkTranscriptEnabled = false;
TextWriter originalOut = Console.Out;
var capture = new StringWriter();
try
{
Console.SetOut(capture);
using var fx = new DispatcherFixture();
var ctx = new TestContext();
(WalkCell cell1, _) = BuildTranscriptFixtureCells(ctx);
var landscape = new WalkLandscape { MidWidth = 1, Blocks = new WalkLandBlock?[1] };
var worldData = new FakeWorldData();
var leaf = new RecordingLeafRenderer(new List());
using ClipFrame clipFrame = ClipFrame.NoClip();
var driver = new WalkFrameDriver(fx.Dispatcher, leaf, worldData, clipFrame: clipFrame);
var walk = new RetailFrameWalk();
driver.Collect(
walk, cell1.CellId, cell1, landscape, ctx, Matrix4x4.Identity, Vector3.Zero);
driver.Collect(
walk, cell1.CellId, cell1, landscape, ctx, Matrix4x4.Identity, Vector3.Zero);
AssertNoTranscriptLines(capture);
}
finally
{
Console.SetOut(originalOut);
RenderingDiagnostics.DumpWalkTranscriptEnabled = previous;
}
}
///
/// The ten transcript line-kind prefixes
/// ever emits — F /P /LS/LC /SC /
/// BLD /DI /DC /EC /OC — matching
/// each print method's own exact Console.WriteLine format
/// (S3 chunk 1 fix round 1, G1).
///
private static readonly string[] TranscriptLinePrefixes =
["F ", "P ", "LS", "LC ", "SC ", "BLD ", "DI ", "DC ", "EC ", "OC "];
///
/// Asserts NONE of 's own line kinds
/// appear in — robust to unrelated
/// noise from another test class running in
/// parallel (a real, observed hazard: xUnit runs distinct classes
/// concurrently by default, and is a
/// process-wide static — see CameraDiagnosticsCollection's own
/// doc comment, issue #251). A plain Assert.Empty(capture.ToString())
/// is NOT this robust: an unrelated class's unconditional
/// Console.WriteLine can land inside this test's redirect window
/// and fail it for a reason that has nothing to do with the transcript
/// flag. only ever appends a frame
/// once it sees a well-formed F <n> marker line — arbitrary
/// unrelated text can never satisfy that regex, so a truly EMPTY parsed
/// frame list is exactly as strong a proof that THIS code printed
/// nothing, without being sensitive to what else shares the process
/// console. S3 chunk 1 fix round 1 (G1) adds a second, independent
/// check: no captured line starts with any of the ten transcript
/// prefixes — those exact tokens never begin an unrelated test class's
/// own console noise, so this stays robust to the SAME parallel hazard
/// while also catching a leak the parser's own drop-last-frame quirk
/// could otherwise hide (a caller that (mistakenly) drives only ONE
/// frame).
///
private static void AssertNoTranscriptLines(StringWriter capture)
{
string[] lines = capture.ToString()
.Split('\n', StringSplitOptions.RemoveEmptyEntries)
.Select(l => l.TrimEnd('\r'))
.ToArray();
Assert.Empty(WalkOracleTrace.Parse(lines));
Assert.DoesNotContain(
lines,
l => Array.Exists(
TranscriptLinePrefixes, p => l.StartsWith(p, StringComparison.Ordinal)));
}
/// T2 (§11.3): flag on, one synthetic interior frame — the
/// printed lines parse with the extended
/// into the same events the driver recorded (emitter/parser round
/// trip). Asserted structurally (kinds, cell ids, counts) rather than
/// against a hand-predicted exact ordering, so the test does not
/// silently pin an assumption about traversal order it never
/// independently verified.
[Fact]
public void Collect_TranscriptFlagOn_PrintedLinesRoundTripThroughTheParser()
{
bool previous = RenderingDiagnostics.DumpWalkTranscriptEnabled;
RenderingDiagnostics.DumpWalkTranscriptEnabled = true;
TextWriter originalOut = Console.Out;
var capture = new StringWriter();
try
{
Console.SetOut(capture);
using var fx = new DispatcherFixture();
var ctx = new TestContext();
(WalkCell cell1, WalkCell cell2) = BuildTranscriptFixtureCells(ctx);
var landscape = new WalkLandscape { MidWidth = 1, Blocks = new WalkLandBlock?[1] };
var worldData = new FakeWorldData();
var leaf = new RecordingLeafRenderer(new List());
using ClipFrame clipFrame = ClipFrame.NoClip();
var driver = new WalkFrameDriver(fx.Dispatcher, leaf, worldData, clipFrame: clipFrame);
var walk = new RetailFrameWalk();
// Two Collect calls: WalkOracleTrace.Parse (like every real
// capture) only flushes a frame once the NEXT "F n" marker
// appears — it deliberately drops the final in-progress frame
// (the detach-frame rule). One frame alone would parse to zero
// complete frames.
driver.Collect(
walk, cell1.CellId, cell1, landscape, ctx, Matrix4x4.Identity, Vector3.Zero);
driver.Collect(
walk, cell1.CellId, cell1, landscape, ctx, Matrix4x4.Identity, Vector3.Zero);
Console.Out.Flush();
string[] lines = capture.ToString()
.Split('\n', StringSplitOptions.RemoveEmptyEntries)
.Select(l => l.TrimEnd('\r'))
.ToArray();
Assert.NotEmpty(lines);
IReadOnlyList frames = WalkOracleTrace.Parse(lines);
WalkOracleFrame frame = Assert.Single(frames);
Assert.Equal(1, frame.Number);
Assert.NotNull(frame.Pose);
Assert.Equal(cell1.CellId, frame.Pose!.CellId);
Assert.Equal(cell1.CellId, frame.InteriorRootCell);
Assert.True(frame.HasLandscape);
WalkOracleEvent dc = Assert.Single(
frame.Events, e => e.Kind == WalkOracleEventKind.DrawCells);
Assert.Equal(1, dc.OutsideViewCount);
Assert.Equal(
new HashSet { cell1.CellId, cell2.CellId },
dc.Cells.ToHashSet());
// The interior root's own flood visits both cells for a shell
// AND an object-list turn — EC/OC pair, one line per cell, no
// dedupe (this is the interior root's OWN flood — the ONE case
// WalkTranscriptDump.PrintEnvCellShell's own doc comment (G9)
// still guarantees EC==OC count for; a look-in flood matches
// too, but G8's per-frame trailing weather OC does not, and
// never fires here since this fixture's landscape has zero
// blocks/buildings).
List ec = frame.Events
.Where(e => e.Kind == WalkOracleEventKind.EnvCellShell)
.Select(e => e.CellId!.Value).ToList();
List oc = frame.Events
.Where(e => e.Kind == WalkOracleEventKind.ObjectCellTurn)
.Select(e => e.CellId!.Value).ToList();
Assert.Equal(new HashSet { cell1.CellId, cell2.CellId }, ec.ToHashSet());
Assert.Equal(new HashSet { cell1.CellId, cell2.CellId }, oc.ToHashSet());
Assert.Equal(2, ec.Count);
Assert.Equal(2, oc.Count);
// No landblocks were published (the stub 1x1 landscape), so no
// LC/SC/BLD turns exist this frame — the transcript format and
// relative order for those three kinds is proven by
// OutdoorRoot_TranscriptFlagOn_PrintsLandscapeThenLandCellThenSortCellThenBuilding_InOrder
// below (S3 chunk 1 fix round 1, G3), and separately against
// real retail data by WalkOracleTraceTests.AllFixtures and
// WalkLandCellOrderTests.
Assert.DoesNotContain(frame.Events, e => e.Kind
is WalkOracleEventKind.LandCell or WalkOracleEventKind.SortCell
or WalkOracleEventKind.Building);
}
finally
{
Console.SetOut(originalOut);
RenderingDiagnostics.DumpWalkTranscriptEnabled = previous;
}
}
/// S3 chunk 1 fix round 1 (G3): the outdoor-root half T2 never
/// covered — the flag-on round trip above uses a stub 1x1 landscape with
/// zero blocks, so LC/SC/BLD never fire at all. Drives
/// directly with the SAME
/// deterministic "CY-only" admission
/// technique OutdoorRoot_LandCellPrecedesItsOwnCellsObjectTurn_ThenFlushesAtReplaysEnd
/// uses (a real root's default
/// full-viewport view depends on this suite's synthetic ray caster,
/// which does not model screen geometry faithfully enough to predict
/// block/cell admission from — see that test's own doc comment), with a
/// building attached to the one admitted cell so BLD fires too. Checked
/// against the RAW captured lines directly (not
/// ) — this test only needs kind
/// presence and relative order, not a complete F/P-framed capture.
/// MUTATION CHECK: deleting WalkTranscriptDump.PrintLandCell's
/// call site (or its body) makes the "expected an LC line" assertion
/// fail.
[Fact]
public void OutdoorRoot_TranscriptFlagOn_PrintsLandscapeThenLandCellThenSortCellThenBuilding_InOrder()
{
bool previous = RenderingDiagnostics.DumpWalkTranscriptEnabled;
RenderingDiagnostics.DumpWalkTranscriptEnabled = true;
TextWriter originalOut = Console.Out;
var capture = new StringWriter();
try
{
Console.SetOut(capture);
using var fx = new DispatcherFixture();
var leaf = new RecordingLeafRenderer(new List());
leaf.CellsWithoutEmitters.UnionWith(CoarseLandscapeBuckets(0xF4180000u));
var ctx = new TestContext();
var driver = new WalkFrameDriver(fx.Dispatcher, leaf, new FakeWorldData());
var walk = new RetailFrameWalk();
var landscape = new WalkLandscape { MidWidth = 1, Blocks = new WalkLandBlock?[1] };
var block = new WalkLandBlock
{
LandblockId = 0xF4180000u, SideCellCount = 1, MaxZ = 10f, MinZ = 0f,
};
block.EnsureCellArrays();
block.CellBuildings[0] = new WalkBuilding { PositionCellId = 0xF4180000u };
landscape.Blocks[0] = block;
driver.BeginFrame(ctx, Matrix4x4.Identity, Vector3.Zero);
walk.DrawLandscape(landscape, OneDegenerateView(), ctx, driver);
driver.EndFrame();
Console.Out.Flush();
string[] lines = capture.ToString()
.Split('\n', StringSplitOptions.RemoveEmptyEntries)
.Select(l => l.TrimEnd('\r'))
.ToArray();
int lsIndex = Array.IndexOf(lines, "LS");
int lcIndex = Array.FindIndex(
lines, l => l.StartsWith("LC ", StringComparison.Ordinal));
int scIndex = Array.FindIndex(
lines, l => l.StartsWith("SC ", StringComparison.Ordinal));
int bldIndex = Array.FindIndex(
lines, l => l.StartsWith("BLD ", StringComparison.Ordinal));
Assert.True(lsIndex >= 0, "expected an LS line");
Assert.True(lcIndex >= 0, "expected an LC line");
Assert.True(scIndex >= 0, "expected an SC line");
Assert.True(bldIndex >= 0, "expected a BLD line");
Assert.True(lsIndex < lcIndex, "LS must precede LC");
Assert.True(
lcIndex < scIndex,
"LC must precede SC — RenderDeviceD3D::DrawLandCell before DrawSortCell");
Assert.True(
scIndex < bldIndex,
"SC must precede BLD — S3 chunk 1 fix round 1 (G7): DrawSortCell entry, "
+ "before its own DrawBuilding call");
Assert.Equal("LC f4180001", lines[lcIndex]);
Assert.Equal("SC f4180001", lines[scIndex]);
Assert.Equal("BLD f4180000", lines[bldIndex]);
}
finally
{
Console.SetOut(originalOut);
RenderingDiagnostics.DumpWalkTranscriptEnabled = previous;
}
}
/// §11.2 B4: the offline signature diff, self-checked over a
/// synthetic pair — the SAME captured T2 transcript versus itself with
/// its own LAST event removed. Reuses Collect_TranscriptFlagOn_…'s
/// own capture rather than duplicating the walk drive.
[Fact]
public void SignatureDiff_ReportsTheExactRemovedEvent()
{
bool previous = RenderingDiagnostics.DumpWalkTranscriptEnabled;
RenderingDiagnostics.DumpWalkTranscriptEnabled = true;
TextWriter originalOut = Console.Out;
var capture = new StringWriter();
try
{
Console.SetOut(capture);
using var fx = new DispatcherFixture();
var ctx = new TestContext();
(WalkCell cell1, _) = BuildTranscriptFixtureCells(ctx);
var landscape = new WalkLandscape { MidWidth = 1, Blocks = new WalkLandBlock?[1] };
var worldData = new FakeWorldData();
var leaf = new RecordingLeafRenderer(new List());
using ClipFrame clipFrame = ClipFrame.NoClip();
var driver = new WalkFrameDriver(fx.Dispatcher, leaf, worldData, clipFrame: clipFrame);
var walk = new RetailFrameWalk();
// Two Collect calls — see the round-trip test's own comment on
// why one alone parses to zero complete frames.
driver.Collect(
walk, cell1.CellId, cell1, landscape, ctx, Matrix4x4.Identity, Vector3.Zero);
driver.Collect(
walk, cell1.CellId, cell1, landscape, ctx, Matrix4x4.Identity, Vector3.Zero);
Console.Out.Flush();
string[] lines = capture.ToString()
.Split('\n', StringSplitOptions.RemoveEmptyEntries)
.Select(l => l.TrimEnd('\r'))
.ToArray();
IReadOnlyList expected = WalkOracleTrace.Parse(lines);
WalkOracleFrame expectedFrame = Assert.Single(expected);
Assert.NotEmpty(expectedFrame.Events);
// Self-vs-self (unmutated copy): no divergence at all.
IReadOnlyList unchanged =
[expectedFrame with { Events = expectedFrame.Events.ToList() }];
Assert.Null(WalkTranscriptSignatureDiff.FirstDivergence(expected, unchanged));
// Self-vs-self-minus-one (the LAST event removed): the reported
// divergence is exact — same frame number, position exactly at
// the new (shorter) end, expected = the removed event's own
// signature string, actual = "".
int lastIndex = expectedFrame.Events.Count - 1;
List truncated = expectedFrame.Events.Take(lastIndex).ToList();
IReadOnlyList actual =
[expectedFrame with { Events = truncated }];
WalkTranscriptSignatureDiff.Divergence? divergence =
WalkTranscriptSignatureDiff.FirstDivergence(expected, actual);
Assert.NotNull(divergence);
Assert.Equal(expectedFrame.Number, divergence!.Value.FrameNumber);
Assert.Equal(lastIndex, divergence.Value.Position);
Assert.Equal("", divergence.Value.Actual);
Assert.NotEqual("", divergence.Value.Expected);
}
finally
{
Console.SetOut(originalOut);
RenderingDiagnostics.DumpWalkTranscriptEnabled = previous;
}
}
}