Round-1 three-lens FAIL at d60ca4ea0 found: the K2 fix was right in
production but nothing pinned the draw side (restoring the pre-fix gate
left every lane green); a stale "still ends an active scissor" comment
asserted a mechanism the same round had already deleted; the sky.vert
comment claimed retail clips the sky when it draws unclipped; the K6
pin ran through ClipFrameAssembler.Assemble, which has zero production
callers, so it proved nothing about the producer that actually runs.
This round closes L1-L9.
L1 (BLOCKING) — draw-side weather-gate pin. Added
RetailPViewPassExecutorTests.DrawLandscapeDynamicsPhase_GatesDrawWeatherOnceOnWalkDriverWeatherTurnFired:
reads DrawLandscapeDynamicsPhase's compiled call graph and asserts (a)
the call immediately before DrawWeatherOnce is
WalkFrameDriver.get_WeatherTurnFired and (b) exactly one
brfalse/brfalse.s branch sits between that call and the draw, jumping
forward past it. Three mutations, each shown failing:
M1 (restore `if (clipAssembly.OutsideViewSlices.Length != 0)`):
Assert.Equal() Failure: Values differ
Expected: typeof(AcDream.App.Rendering.Walk.WalkFrameDriver)
Actual: typeof(AcDream.App.Rendering.ClipFrameAssembly)
M2 (drop the gate, unconditional call):
Assert.Equal() Failure: Values differ
Expected: typeof(AcDream.App.Rendering.Walk.WalkFrameDriver)
Actual: typeof(AcDream.App.Rendering.RetailPViewPassExecutor)
M3 (invert to `if (!walkDriver.WeatherTurnFired)`):
Assert.Single() Failure: The collection did not contain any matching items
Expected: (predicate expression)
Collection: [CompiledBranch { Offset = 7, OpCode = brfalse.s, TargetOffset = 17 }, CompiledBranch { Offset = 24, OpCode = brtrue.s, TargetOffset = 33 }]
Corrected WalkFrameDriverTranscriptTests.cs's doc comment (the
Collect_WeatherTurnFiredMatchesThePrintedOcLineExactly block): it pins
the print half and the flag only, and now names the real draw-side pin
instead of falsely claiming to double as one.
L2 (MAJOR) — scissor stack deleted, K4 comment corrected. Deleted
IWorldPassSurface.BeginScissor/EndScissor and their RhiWorldPassSurface
bodies, the scissor call inside ClearInteriorDepth, NdcScissorRect.cs +
NdcScissorRectTests.cs (BeginScissor had zero remaining callers, and
RhiWorldPassSurface.BeginScissor was NdcScissorRect.ToPixels' only
production caller). This left RhiWorldPassSurface's 4th constructor
parameter (IRetailPViewFramebufferSource) and RetailPViewPassExecutor.cs's
RetailPViewFramebufferSize/IRetailPViewFramebufferSource/
SilkRetailPViewFramebufferSource types entirely dead (framebuffer size
was needed only for the scissor's NDC-to-pixel conversion) — removed
them and their one call site in FrameRootComposition.cs. Rewrote
RetailPViewPassExecutor.cs's K4 comment: it no longer asserts a live
scissor mechanism; it states that VulkanGpuPassEncoder's constructor
sets the full-attachment scissor once, at pass begin
(VulkanGpuPassEncoder.cs:87), and nothing narrows it after that. KEPT
per the round-1 verdict: ScissorFallbacks, OutsidePlaneCount,
OutsideViewNdcAabb, HasOutsideView, OutdoorVisible, OutdoorSlot,
ClipViewSlice.NdcAabb (the >8-edge zero-plane slice case the punch fans
still consume) and the VulkanViewportMapping.ScissorToVulkan pass-begin
path (IGpuPassEncoder.SetScissor stays). Also deleted
ClipFrameAssembly.TerrainMode/TerrainScissorNdcAabb and their writers
in ClipFrameAssembler.cs (both Assemble and ReassembleOutsideViewFromWalk);
OutsidePlaneCount's formula reduces to `outsideHasScissorFallback ? 0 :
outsideMaxPlaneCount` without needing the deleted TerrainClipMode
comparison (a scissor-fallback slice can only exist when outdoorVisible
is already true, so the three original cases collapse identically).
Deleted the two "terrain=" / "outMode=" diagnostic reads in
WorldRenderDiagnostics.cs (:345, :409) and the now-vestigial
EmitClipRouteProbe "ubo: n=..." segment that read ClipFrame's deleted
terrain bytes.
DEVIATION from L2's literal text: kept the TerrainClipMode enum type
itself — WorldSceneRenderer.cs's flat-world safety path (explicitly
"out of this chunk's scope" per K4's own round-1 comment) still uses it
for an unrelated "did the flat terrain draw" diagnostic flag, with its
own WorldSceneDiagnosticsController/WorldRenderDiagnostics/test
consumers. Deleting the type would require rewriting files outside
every round's declared file list. Reworded its doc comment to state
this plainly.
L3 (MAJOR, completes K3) — dead TerrainClip UBO deleted from the sky
and terrain shaders. Deleted the block, both gl_ClipDistance loops, and
the gl_PerVertex redeclaration (nothing else needs it) from sky.vert,
terrain_modern.vert, terrain_atmospheric.vert. Recompiled via
tools/compile-shaders.ps1 (glslc via the Vulkan SDK, managed shaderc
fallback also runs) — 24/24 pairs compiled; only sky.vert.spv,
terrain_atmospheric.vert.spv and terrain_modern.vert.spv changed.
Re-pinned VulkanShaderManifestTests.cs's frozen retail-oracle hashes
for sky.vert.spv (7d67a9e3624d198b370d402b5c12e4ce925bf9b8e646ef5123636a86d5985ab5)
and terrain_modern.vert.spv (8a73d89ef0e51e550327b9ff8c24857e309103b1d491030cf0d4d8594b45068c)
with dated comments, matching the existing re-pin convention.
Deleted WorldFrameSectionBinding.BindTerrainClip and
WorldFrameSections.TerrainClip (+ its Reset) with its two callers
(SkyRenderer.Rhi.cs:258, TerrainModernRenderer.Rhi.cs:259). DEVIATION
from L3's literal text: kept the shared Zeroed(...) helper in
WorldPassScope.cs — it is also called by BindSceneLighting and
BindClipRegions, both of which stay; deleting it would have broken
those two live bindings. Deleted IWorldPassSurface.BindTerrainClip
(no-op interface method + RhiWorldPassSurface body) and
WorldScenePassExecutor.cs's two calls to it (:121, :235).
Deleted ClipFrame's _terrainBytes field, TerrainBytes/TerrainBytesForTest
properties, Reset's Array.Clear(_terrainBytes), and the stale
header/K3 comment paragraphs. DEVIATION from L3's literal text: kept
ClipFrame.TerrainUboBytes and ClipFrame.TerrainClipUboBinding —
PortalDepthMaskRenderer.Rhi.cs (:140, :187) is a live production
consumer of both constants for the KEPT exit-seal/punch-fan clip block,
which was never in scope for deletion (portal_depth.vert's own
TerrainClip UBO declaration is the KEEP block, untouched). Reworded
both constants' doc comments (ClipFrame.cs, VulkanPipelineLayouts.cs's
UniformTerrainClip) to say only the portal-depth clip block uses
binding 2 now, and corrected the two GpuBindingModel.cs comments that
explained why terrain-tiling/sky-params bindings are 3/4 by naming "the
terrain clip block". Updated VulkanShaderDescriptorContractTests.cs's
TerrainVertexShaderDeclaresItsClipBlockInTheUniformSet (renamed
TerrainVertexShaderDeclaresOnlySceneLightingInTheUniformSet):
terrain_modern.vert's uniform set is now {SceneLighting} only. Deleted
ClipFrameLayoutTests.NoClip_TerrainBytes_Count0_AllZeros and its K3
comment; corrected the class doc comment and LayoutConstants_MatchShaderStruct's
"terrain UBO"/binding-contract comments to describe the portal-depth
consumer instead.
REQUIRED L3 fact (declared-but-never-bound dynamic uniform binding):
VulkanFrameBindings's constructor seeds EVERY declared uniform binding
(0..UniformBindingCount-1, including binding 2) with the shared dummy
buffer's range before any renderer runs (VulkanFrameBindings.cs:128-130,
`_arena.SeedUniform(binding, dummy.Handle.Handle, dummyUniformRange)`
in a loop over every binding) — "Every binding is always bound, whether
a renderer uses it or not... unused ones point at a shared dummy range"
(VulkanFrameBindings.cs:27-31). So after this round, when the sky or
terrain pipeline draws, set 1's shared descriptor layout still declares
binding 2 (portal_depth.vert's own declaration keeps
IsDeclaredUniformBinding(2) true), and its descriptor still points at a
valid (dummy) range from that seed — vkCmdBindDescriptorSets stays
legal even though neither shader statically uses binding 2 any more.
No SPIR-V-side change was needed to keep this legal.
L4 (MAJOR) — one outside-view slice constructor. Extracted
ClipFrameAssembler.AppendOutsideSlice (frame, ViewPolygon,
outsideSlicesList, ref maxPlaneCount, ref hasScissorFallback, ref
scissorFallbacks) — the exact ClipPlaneSet.From/AppendSlot/
ClipViewSlice-construction body — and call it from both Assemble's
outside_view loop and ReassembleOutsideViewFromWalk's outside_view
loop. Rewrote ClipFrameLayoutTests's K6 pin
(ClipViewSlicePlanes_PunchFanPath_EqualsCpuViewPolygonEdgePlanes_ForASyntheticView):
builds a synthetic WalkPortalView from pixel-space points (the
WalkCopyViewTests pattern) via a trivial IWalkRayCaster, runs
BeginWalkFrame(frame, outdoorRoot: false) then
ReassembleOutsideViewFromWalk(assembly, walkView, 640, 480), and reads
assembly.OutsideViewSlices[0].Planes — the exact production pair
RetailPViewPassExecutor.cs's BeginWalkFrame call and
RetailPViewRenderer.cs's ReassembleOutsideViewFromWalk call make.
Mutation (perturbed planes[0].W inside the shared helper, right after
`planes = cps.PlaneArray;`):
edge 0 midpoint (-0.3,0.10000001) should lie ~on its OWN GPU plane; the closest plane was only 0.5251073 away
The pin's own source contains no `Assemble(` call — grep-checked by
extracting the method body and searching it for the literal text; no
match.
L5 — shader comments corrected. sky.vert/terrain_modern.vert/
terrain_atmospheric.vert now state retail draws the sky once
(LScape::draw @0x00506330 -> GameSky::Draw(sky,0) @0x0050633c, before
draw_check_blocks) and the landscape is view-culled per cell, never
GPU-clipped (RenderDeviceD3D::DrawBlock @0x005a17c0). The "Phase W
Stage 4"/"U.3 default" clip narratives are deleted along with the
blocks they described.
L6 — grep sweep. `grep -rn "<token>" src tests docs/architecture`
returns nothing for SetTerrainClip, BeginDoorwayScissor,
BindTerrainClip, TerrainBytes, "active scissor", and NdcScissorRect —
confirmed after this commit (docs/plans and docs/research keep the
historical record, untouched). TerrainClipMode is the one deliberate
exception (see the L2 deviation note above); every one of its 9
remaining hits is a live, non-stale reference (the enum declaration,
WorldSceneRenderer's flat-path local, or their diagnostic/test
plumbing), not a stale mention of a deleted mechanism.
L7 — Issue130DoorwayStripTests. Deleted AnySliceAdmitsScissor,
worstScissorGapPx and its PIN 1 assertion, the header's scissor
sentences, and the scissorGap half of MeasureTopEdgeGap (dropped the
fbW parameter it alone needed). Rewrote the header: the scissor
mechanism is retired (the sky and landscape draw unclipped; aperture
exactness comes from the depth clear, the exit seals and the interior
repaint). The remaining plane-gap half (the canary PIN,
`worstPlaneGapPx <= 1.2f`) still pins something production reads:
AnySliceAdmitsPlanes walks slice.Planes from the SAME ProjectToClip ->
ClipToRegion -> ClipPlaneSet.From pipeline
RetailPViewPassExecutor.DrawWalkPunchFan reads through
clipAssembly.OutsideViewSlices[activeViewIndex].Planes — so the test
was kept, not deleted.
L8 — DrawWalkSky loop-shape pin. Added
DrawWalkSky_RenderSkyCallSiteHasNoEnclosingBackwardBranch (same
backward-branch-span shape as K1's DrawWeatherOnce pin), plus a note in
both pins that CompiledCallGraph.ReadBranches does not decode a
compiled switch jump table, but no C# loop construct compiles to one.
Mutation (wrapped the RenderSky call in `for (int i = 0; i < 2; i++)`):
Assert.DoesNotContain() Failure: Filter matched in collection
Collection: [..., CompiledBranch { Offset = 20, OpCode = brtrue.s, TargetOffset = 25 }, CompiledBranch { Offset = 23, OpCode = br.s, TargetOffset = 66 }, CompiledBranch { Offset = 72, OpCode = blt.s, TargetOffset = 13 }, CompiledBranch { Offset = 80, OpCode = brfalse.s, TargetOffset = 116 }, CompiledBranch { Offset = 88, OpCode = brfalse.s, TargetOffset = 116 }]
(the Offset=72 -> TargetOffset=13 entry is the injected loop's backward
branch spanning the call).
L9 — this message.
Gates: dotnet build 0 warnings / 0 errors. Hermetic filter
(Lane!=InstalledDat&...&Status!=KnownFailure): 6827 passed, 0 failed.
InstalledDat lane against a real DAT directory: 244 passed, 4 failed —
exactly the four known failures (LayoutImporterMediaBearingChildSweepTests
+ LayoutImporterInvisibleSweepTests, both #383; TowerAscentReplayTests,
KnownFailure; WalkTraceConformanceTests.Oh_doorway_still_first_frame_diff,
#458 KnownFailure). No register row added (every deletion here removes
an acdream-only rule; the KEEP items already had their equivalence
pins from round 1). No new flag/probe.
OWED: the lead's ACDREAM_DEVTOOLS=1 four-pose visual self-gate against
the running client is not run by this agent — CLAUDE.md and this
task's own instructions forbid launching the graphical client from
here; that visual/validation-layer pass remains the user's to run
before this round is accepted.
Co-Authored-By: Claude Fable 5.1 <noreply@anthropic.com>
Campaign OVERHAUL S3 chunk 4 fix round 1 (docs/research/2026-09-01-overhaul/s3-walk-ownership-map.md
§10.4), on top of 6ba4b0b87. K1, K2, K3, K4, K6, K7, K8 (K5 was the lead's own plan-doc note, already
done).
K1 (blocking) — the Assert.Single pin over DrawLandscapeDynamicsPhase's DrawWeatherOnce call site
stayed green even wrapped in a foreach (it counts distinct call-site offsets, not loop shape). Added
a real LOOP-SHAPE pin reusing CompiledCallGraph.ReadBranches: asserts no backward branch (target
offset < its own offset) spans the DrawWeatherOnce call's IL offset — the shape every C#
for/foreach/while loop compiles to.
K2 (minor) — the Collect-time "OC" print fired on ctx.WeatherGateOpen alone while the Replay-time
draw independently re-derived clipAssembly.OutsideViewSlices.Length > 0, which could diverge on an
interior root whose landscape turn ran but whose reassembled outside-view slices ended up empty.
WalkFrameDriver now owns one WeatherTurnFired flag, set unconditionally inside OnWeatherTurn (so it
tracks "did the print's own gate hold" regardless of the transcript flag) and reset every
BeginFrame/AbortFrame; RetailPViewRenderer.DrawLandscapeDynamicsPhase gates DrawWeatherOnce on it
instead of re-deriving its own condition.
K3 (minor) — ClipFrame.SetTerrainClip (the terrain OutsideView writer) had no remaining caller after
chunk 4's original round and K4 below; deleted along with IWorldPassSurface.SetTerrainClip,
RhiWorldPassSurface.SetTerrainClip, the now-orphaned PublishTerrainClip helper, and PrepareClipFrame's
terrain-clip publish call. The terrain/sky shaders still declare the TerrainClip UBO (verified:
terrain_modern.vert, terrain_atmospheric.vert, sky.vert all read uTerrainClipCount/uTerrainClipPlanes),
so the section binding itself (WorldFrameSectionBinding.BindTerrainClip) stays — its existing
zeroed-ring fallback (for when nothing published the section) now binds that same all-zero disabled
block on every frame, identical bytes to the old permanent NoClip/Reset default.
K4 (major) — DrawWalkSky still looped the OUTDOOR case once per active landscape view under a doorway
scissor + BindTerrainClip + EnableClipDistances (the INTERIOR case already drew once unclipped, FW4
slice 6). Retail draws GameSky::Draw(sky,0) ONCE, unconditionally, before LScape::draw's block loop,
for both root kinds. Collapsed DrawWalkSky to one unconditional, unclipped draw; deleted
BeginDoorwayScissor and the RetailPViewPassExecutor.EnableClipDistances wrapper (both lost their only
caller). _surface.BeginScissor/EndScissor and IWorldPassSurface.EnableClipDistances stay:
RhiWorldPassSurface.ClearInteriorDepth still ends an active scissor, and WorldScenePassExecutor (the
separate flat-world path) still calls EnableClipDistances directly.
K6 (minor) — the punch-fan CPU/GPU equivalence pin hand-built a ClipViewSlice from ClipPlaneSet.From's
raw output, which could pass even if ClipFrameAssembler.Assemble's own packing/array-construction
diverged from that output. Rewrote it to build a real PortalVisibilityFrame and run it through
ClipFrameAssembler.Assemble, reading the planes back through assembly.OutsideViewSlices[0].Planes —
the exact outsideSlicesList.Add(new ClipViewSlice(slot, AabbOf(poly), planes)) path
ReassembleOutsideViewFromWalk (the walk's real interior-root producer) shares.
K7 (note) — restored the "a real look-in slice never reuses the reserved no-clip slot 0" assertion
the deleted VisibleClipSlotsInLookInTurn used to prove, via a new internal test-only accessor
(WalkFrameDriver.LookInSliceClipSlotAt) reading the same _lookInSlices storage
InteriorFloodViewClipPlanesAt resolves through _clipFrame.GetSlotPlanes(slice.ClipSlot).
K8 (note) — documented in DrawWeatherOnce's own comment that the weather mesh drawing before the rain
particles is this method's own call-order choice; retail's single GameSky::Draw(sky,1) imposes no
order between acdream's two substitutes.
Every new/changed pin's mutation was hand-verified this session (temporarily applied, ran the
specific test, confirmed the exact failing assertion, then reverted — see the parent task's structured
report for the four failing-assertion texts).
No register row added or removed — every change here deletes an acdream-only rule or repairs a pin;
none introduces a new deviation.
Full solution build: 0 warnings/0 errors. App hermetic (Lane!=InstalledDat/PreparedPackage/Live/
Manual/Timing/Windows/Linux/SystemFont & Purpose!=Diagnostic & Status!=KnownFailure): 6831/6831.
InstalledDat: 244 pass/1 skip/4 known — identical to 6ba4b0b87's own baseline (2x #383 layout tests,
TowerAscent, and the pre-existing #458 WalkLandscape.CheckBlocks block-visibility divergence,
unrelated to and untouched by this round).
Co-Authored-By: Claude Fable 5.1 <noreply@anthropic.com>
Campaign OVERHAUL S3 chunk 4 (docs/research/2026-09-01-overhaul/s3-walk-ownership-map.md §10). Retail
polygon-clips exactly three things on the CPU — portal polygons (PView::GetClip), punch fans
(DrawPortalPolyInternal against building_view), and exit seals (setup_view + polyClipFinish);
ordinary meshes, cell shells, terrain, particles and the weather are never view-clipped. Every
acdream-only clip rule beyond those three is deleted; the two that remain get a new CPU/GPU
equivalence pin.
DELETED (no retail counterpart):
- RetailPViewRenderer.DrawLandscapeDynamicsPhase's per-outside-view-slice weather loop
(SetTerrainClip + ClearClipRouting + the old DrawLandscapeSliceLate leaf, one call per active
landscape view) — retail's GameSky::Draw(sky,1) @0x00506ff0 runs ONCE, unclipped, after
LScape::draw's whole block loop. RetailPViewPassExecutor.DrawWeatherOnce stays the one call site;
it now also submits the rain particles (ParticleRenderPass.SkyPostScene) as ONE unclipped
submission, folded in from the deleted loop's per-slice clipSlot draw.
- RetailPViewPassExecutor.DrawLandscapeSliceLate, RetailPViewLandscapeLateSliceContext,
SetTerrainClip (the walk-level wrapper — its only caller was the deleted loop),
ClearClipRouting (same), SetCellShellClipRouting (already had no caller), and
UseIndoorMembershipOnlyRouting (4 call sites in RetailPViewRenderer.cs) — all "first view clips
the shell" residue: SetCellShellClipRouting was the ONLY place EnvCellRenderer.SetClipRouting
ever received a non-null value anywhere in the app, so once it's gone,
UseIndoorMembershipOnlyRouting's own clear calls are provably permanent no-ops. AbortFrame's
matching TryAbort(SetClipRouting(null))/TryAbort(ClearClipRouting) lines are dropped for the
same reason. KEPT: BeginDoorwayScissor, _surface.BindTerrainClip(), EnableClipDistances/
DisableClipDistances, and IWorldPassSurface.SetTerrainClip/ClipFrame.SetTerrainClip/
PrepareClipFrame's terrain-clip publish — all still have real consumers (DrawWalkSky's per-slice
outdoor sky mesh draw; the always-bound TerrainClip UBO section) or are shared classic (non-walk)
infrastructure out of this chunk's ownership (WorldScenePassExecutor, PortalTunnelPresentation).
- WbDrawDispatcher.WalkClassify.ResolvePartClipSlots (renamed ResolvePartVisible, returns bool) and
RetailWholeMeshSlot: the per-view clip-slot LIST always collapsed to either nothing or one
element (RenderDeviceD3D::DrawMesh @0x005A0860 submits the whole mesh once any view admits it) —
never anything but a Boolean wearing a list-shaped costume. IWalkLookInViewSource.
VisibleClipSlotsInLookInTurn is deleted outright (no consumer besides that collapse);
SphereVisibleInLookInTurn gained VisibleClipSlotsInLookInTurn's own testSphere parameter so the
no-authored-sphere case ("any admitted view, geometry ignored") still has a home.
EmitClassifiedBatches now emits exactly one batch per surviving TryClassifyBatch using the
entity's own classic slot (always 0 while _clipRoutingActive is never armed by the walk path).
- The six ProbeCathedralSkip*/ProbeCathedralShellOrderEnabled discriminators (RenderingDiagnostics,
their six docs/launch-options.md rows, every read site in WalkFrameDriver/
RetailPViewPassExecutor.WalkLeaf/RetailPViewRenderer, and the WalkFrameDriver.
TraceCathedralShellOrder method + RetailPViewRenderer._probeCathedralShellOrderFrame it served) —
the investigation is closed: the cathedral leak is retail behavior, not an acdream defect to
discriminate.
O1-O4 (the ledger's carried chunk-1 items, closed here because this chunk owns the weather path):
IWalkEventSink gains OnWeatherTurn(viewerCellId), fired by RetailFrameWalk.DrawLandscape
UNCONDITIONALLY at retail's own call-site shape (GameSky::Draw(sky,1) is itself unconditional from
LScape::draw; the is_player_outside gate lives inside it) but gated by the walk context's own new
WeatherGateOpen/ViewerCellId members (default false/0, so every other IRetailFrameWalkContext
implementer — test fixtures, the FW1 conformance replay context — is unaffected).
WalkProductionFrameContext wires RetailPViewFrameInput.ViewerCellId and
RetailPViewPassExecutor.ShouldDrawWeatherOnce(RenderSky, RenderWeather, PlayerCellId) into those two
members. WalkFrameDriver.OnWeatherTurn prints the "OC" transcript line at COLLECT time; the print is
removed from DrawWeatherOnce (the DRAW stays there, at Replay). Because DrawLandscape's new call sits
at the very end of the method, an outdoor root's transcript naturally ends with the line and an
interior root's lands strictly between "LS" and the flood's first "EC" — exactly retail's position —
with no extra plumbing.
Kept items each get a synthetic-view CPU/GPU equivalence pin (ClipFrameLayoutTests): exit seals via
the real ClipFrame.AppendSlot/GetSlotPlanes round trip, punch fans via the direct
ClipViewSlice.Planes = cps.PlaneArray assignment ClipFrameAssembler.Assemble uses — both assert every
polygon edge midpoint has ~0 signed distance under the GPU-read-back planes and non-negative distance
under every plane.
Every new pin's mutation was hand-verified this session (temporarily reintroduced, confirmed the
exact failing assertion, then reverted): a duplicated OnWeatherTurn call fails Assert.Single with
"2 matching items" on both the outdoor and interior position tests; suppressing the Collect-time
call fails the same assertions with "did not contain any matching items"; perturbing one GPU plane's
offset by 0.05 fails the exit-seal equivalence pin with "the closest plane was only 0.050000012
away". WalkProductionFrameContextTests pins that the ViewerCellId/WeatherGateOpen storage seam
itself never drops or swaps its own two constructor/Reset arguments.
No register row added or removed — every change here deletes an acdream-only rule; none introduces
a new deviation. Full solution build: 0 warnings/0 errors. App hermetic 6,829/6,829 (was 6,828 base
+ 1 new pin). InstalledDat 244 pass/1 skip/4 known (2x #383, TowerAscent, and the pre-existing #458
WalkLandscape.CheckBlocks block-visibility divergence — unrelated to this chunk, untouched by it).
Core.Tests Rendering 216/216.
Co-Authored-By: Claude Fable 5.1 <noreply@anthropic.com>
Campaign OVERHAUL S3 chunk 1 fix round 2 (docs/research/2026-09-01-overhaul/
s3-walk-ownership-map.md §11.6), applied on top of 36be6b598 after the
three-lens re-review. H1-H6, the last round the plan allows.
H1 — the weather OC printed 2-4 times per interior-rooted frame instead of
once: the print (and the `_sky.RenderWeather` mesh draw it sits beside) lived
inside `DrawLandscapeSliceLate`, which `RetailPViewRenderer` calls once per
active `OutsideViewSlices` entry. Moved both into a new
`RetailPViewPassExecutor.DrawWeatherOnce`, called ONCE, unclipped/no-scissor,
after the slice loop in `DrawLandscapeDynamicsPhase` — retail's own
`GameSky::Draw(1)` runs once, after `LScape::draw`'s whole landblock loop.
The gate is extracted as a pure `ShouldDrawWeatherOnce(bool,bool,uint)`
predicate (retail's `SmartBox::is_player_outside` ANDed with the two render
toggles) so `RetailPViewPassExecutorTests` can pin "no OC while the player
stands indoors" without a live GL/DAT `SkyRenderer`; two structural
(CompiledCallGraph) tests prove the call moved out of the per-slice loop and
that the mesh draw + print each fire exactly once per invocation — this
codebase has no existing runtime-construction fixture for
`RetailPViewPassExecutor`, so the pin is structural + a testable pure gate
rather than an end-to-end GL drive. One deliberate deviation from the literal
"gated exactly as today": the print now runs through `_sky?.RenderWeather(...)`
(null-conditional, matching every other `_sky?.RenderSky(...)` call site in
this codebase) instead of an explicit `if (_sky is not null)` wrapper — a
missing sky asset no longer also suppresses the transcript print, since the
print's only job is trace fidelity and retail's own `GameSky` is never null.
H2 — WalkFrameDriver's EC-print comment still claimed "EC and OC counts are
always exactly equal"; replaced with the real citation
(holtburg-doorway-still.walk.log:1126,1131,1134,1137 — four EC prints for one
cell across four look-in DC turns), matching WalkTranscriptDump.
PrintEnvCellShell's own comment (already corrected in round 1).
H3 — the eight-kind signature's ORACLE side
(WalkTraceReplayContext.Signature8(WalkOracleFrame)) derived EC/OC from each
DC's cell list — the SAME derivation the REPLAY side's Recorder already used,
so the comparison could never disagree with itself on EC/OC placement or
content (how G7's SC-ordering regression shipped green with LC/SC). Now reads
its own literally captured EC/OC events, excluding only the trailing
per-frame weather OC — refined beyond the spec's literal "last event + P-cell
id" rule with an additional "P cell itself looks outdoor" check, after
cathedral-arrival and foundry-deep both proved the naive rule also strips an
interior root's OWN real trailing object-list turn when its nearest cell (the
reversed flood loop's last draw) happens to be the camera's own root cell.
All four kit-pose rows still reproduce: three exactly; #458 (this round's new
issue, formerly an inline-only note) re-verified at the SAME token index 165
under the new literal comparison.
H4 — OnSortCellTurn ran RequireOpenFrame + two range validations before
testing the flag. Since the hook is print-only (no stream side effect, unlike
OnLandCellTurn's unconditional WalkFrameEvent record), the flag check now
runs FIRST and returns immediately when off — flag-off cost drops to one
interface dispatch per visited land cell.
H5 — launch-options.md's ACDREAM_DUMP_WALK_TRANSCRIPT row: measured
≈1,200-1,400 lines per outdoor frame (terrace-edge 1,384; cathedral-arrival
1,269; doorway 1,187), replacing the earlier "600-800" estimate; documents
H4's residual flag-off interface-dispatch cost.
H6 — filed docs/ISSUES.md #458 for round 1's LOD-boundary land-cell
divergence (previously only an inline test comment); the InstalledDat lane's
known-failure set is now four (two #383 layout tests, TowerAscent, #458) —
confirmed by a clean run.
MUTATION CHECKS (both restored after confirming failure):
- H1: deleting the OC print inside DrawWeatherOnce made
DrawWeatherOnce_DrawsTheWeatherMeshAndPrintsExactlyOnce fail with
"Assert.Single() Failure: The collection did not contain any matching
items".
- H3: reversing AppendFloodTurns (OC before EC) made
Still_fixture_first_frame_reproduces_exactly(cathedral-arrival.walk) fail
("walk diverged from retail (cathedral-arrival.walk)"), diverging at token
index 1241: expected "EC:f4180112" vs actual "OC:f4180112".
Gates: hermetic App suite 6823/6823 passed; InstalledDat lane 244/249 passed
with exactly the four known failures (two #383 layout tests, TowerAscent,
Co-Authored-By: Claude Fable 5.1 <noreply@anthropic.com>
Fixes the three-lens review blockers against 671eb3ad4 (S3 section 9.6 F1-F6).
F1 - slot key (blocking, retail). TerrainModernRenderer.DrawLandCells
normalizes every incoming landblockId to (id & 0xFFFF0000u) | 0xFFFFu
before the _idToSlot lookup: the walk hands 0xXXYY0000
(WalkLandBlock.LandblockId) but AddLandblock stores under the DAT id
0xXXYYFFFF (LandblockRenderPublisher.LandblockId) - every walk lookup
was missing and the walk path drew NO terrain. Unit-tested end-to-end
through a real RecordingGpuDevice-backed TerrainModernRenderer
(TerrainWalkSlotKeyNormalizationTests): AddLandblock(0xA9B4FFFF, ...)
is found by a 0xA9B40000 lookup, an unknown landblock is a silent
per-entry no-op, and a batch mixing a known and unknown entry submits
only the known one.
F2 - deferred cross-block batching (blocking, driver). Retail's
DrawSortCell always follows DrawLandCell (LC/SC strictly alternate,
never two LC in a row - S3 section 9 R1), so chunk 3's "merge
consecutive same-landblock LandCell events" rule never actually
merged anything; the driver review flagged batching as inert.
WalkFrameDriver.Replay now keeps ONE pending terrain batch across
landblocks ((landblockId, side, cellIndex) entries, cleared at
Replay's own start); a LandCell event only appends; every OTHER event
kind that will itself submit GPU work (StreamMark, Sky, CellShell,
PunchFan, AlphaBarrier, LandscapeFlush, ClearInteriorDepth,
ExitSeals) flushes the pending batch first; a StaticParticles/
CellParticles turn asks the new ParticleSystem.
HasRenderableEmittersInCell (an allocation-free sibling of
CopyRenderableEmittersInCell) and, when the cell has no renderable
emitter, submits nothing and does NOT flush either - the whole point
of the deferred rule. The end of Replay flushes the remainder. This
is order-preserving by construction: a flush always lands at the
exact point the unbatched draw would have, so GPU submission order -
and therefore pixels - is identical to the unbatched baseline; only
the number of small terrain draw calls shrinks.
TerrainModernRenderer.DrawLandCellRuns becomes DrawLandCells(
viewProjection, IReadOnlyList<(uint LandblockId, int SideCellCount,
int CellIndex)>) - one MultiDrawIndexedIndirect over every entry's
runs, unknown slots skipped per-entry. IWalkFrameLeafRenderer.
DrawLandCellBatch drops its separate landblockId parameter to match
(a batch can span several landblocks now) and gains
HasRenderableEmittersInCell.
Batch-count demonstration: driven through a real WalkFrameDriver
Replay (OnLandCellTurn_MergesAcrossLandblocksOverAnEmptyParticleTurn_
RealSubmissionsSplit), 4 LandCell turns across 3 distinct landblocks,
separated only by an empty particle turn, a real StreamMark, and a
building's alpha barrier, submit as exactly 3 DrawLandCellBatch calls
(2+1+1) instead of 4 - the empty particle turn's non-flush merges two
otherwise-separate cross-landblock entries. At production scale the
same mechanism is expected to cut the terrace-edge frame's ~578
individual DrawLandCell events (S3 section 9's captured transcript
count) to "tens" of submitted batches, per the contract's own
expectation: most terrain cells have no particle owner nearby, so the
strict LC/[empty-SC]/LC/[empty-SC]/... run collapses into one batch
per region bounded by real content (a building, a StreamMark-worthy
cell, or a genuine emitter) rather than per cell.
F3 - per-frame terrain diagnostic (blocking, build/test). The walk
leaf no longer brackets each batch with TerrainDrawDiagnosticsController
.Begin()/Complete() (a per-batch Stopwatch Restart/Stop pair that was
pushing one timing SAMPLE per batch, not per frame).
RetailPViewPassExecutor.DrawWalkLandCellBatch instead times its own
call with a raw Stopwatch.GetTimestamp() delta (no allocation) and
hands the ticks to the controller's new AccumulateWalkBatch;
RetailPViewRenderer.DrawWalkDrivenStatics calls the new
CompleteWalkTerrainFrame() exactly once, immediately after
driver.Replay finishes - "the end of the walk replay", where the
deleted whole-stage terrain leaf's own Begin()/Complete() bracket
used to close - which pushes ONE elapsed-time sample (even a
zero-batch frame pushes a zero sample: one sample per frame, not per
landscape turn) and publishes on the existing 5-second cadence.
TerrainRenderDiagnosticFacts gains a Draws field alongside
VisibleSlots (both were the same field before); TerrainModernRenderer
tracks its own per-frame WalkVisibleSlotCount/WalkDrawCount (a
HashSet<int>/int cleared in BeginFrame, populated by DrawLandCells),
and the diagnostics source reports those whenever the walk drew at
least one batch this frame, falling back to the non-walk Draw()
path's VisibleSlots otherwise (the two paths never both run in the
same frame). The [TERRAIN-DIAG] line's meaning (cpu_us per frame) is
unchanged, so the S3 section 9.5 before/after compare stays valid.
F4 - driver pins for the LandCell position (major). Three RunFrame-
level pins replace the deleted TERRAIN:0 pins: an outdoor-root
sequence (SKY, then one LANDCELL, driving RetailFrameWalk.
DrawLandscape directly with a one-view/zero-vertex WalkPortalView so
WalkLandscape.CheckBlocks' admission stays the same deterministic
"CY-only" test RetailFrameWalkTests already relies on, while still
satisfying WalkFrameDriver's real >=1-active-view fail-loud guard);
an interior-root test with one real exit view and one populated
block (SKY, LANDCELL, LFLUSH, SEALS, SHELL...) built on the existing
RunFrame_InteriorFloodWithExitView_... fixture; and the T4 batching
pin re-expressed for the F2 rule (OnLandCellTurn_
MergesAcrossLandblocksOverAnEmptyParticleTurn_RealSubmissionsSplit,
described above). The fake leaf's DrawLandCellBatch now logs
LANDCELL:<lb>:<side>:<idx>[,...] per batch and gains
HasRenderableEmittersInCell backed by an opt-out CellsWithoutEmitters
set (default true - has-emitters - so every pre-existing pin in the
file keeps its old unconditional-submission behavior unchanged).
F5 - no code change: the walk's in-view gate is unchanged; no
whole-block terrain re-added.
F6 - minor/notes: DrawLandCells' own comment now states the walk's
CheckBlocks/landcell_check admission is the sole terrain culling
authority (retail has no separate terrain frustum test); the
HandleLandscapeTurn comment's inverted claim is corrected (a FARTHER
building's punch survived because NEARER terrain was drawn BEFORE
it, not after - the interleave now draws it after, matching retail);
the "flat/directional-shadow paths" claim is corrected to the one
actual caller, WorldScenePassExecutor.DrawFlatTerrain (a directional-
shadow receiver selects its pipeline inside the SAME DrawRhi call,
not through a second caller); the cathedral order-trace token gains
the LOD side/index (":LC<lb>/<side>:<idx>"); T2's vacuous "no
TERRAIN event" assertion in RetailFrameWalkTests is replaced by a
comment pointing at the F4 driver-level pins; and the stale
"Confirmed OH5 defect" row in oh1-construction-landscape-contract.md
is retired with "FIXED by S3 chunk 3 (commit 671eb3ad4 + fix round
1)".
App hermetic lane: 6,795/6,795 (up from 671eb3ad4's 6,786 baseline -
net +9 tests: 3 F1 slot-key tests, 2 F4a/b driver RunFrame pins, 3
TerrainDrawDiagnosticsController walk-frame tests, plus the T4->F4c
rewrite and the RetailPViewPassExecutorTests split are net neutral).
InstalledDat lane: 241 passed, the same 3 accepted failures (2
pre-existing #383 layout fixture-drift tests, 1 TowerAscent
Status=KnownFailure) - unchanged from baseline. Core Vfx tests:
109/109 (108 baseline + 1 new HasRenderableEmittersInCell lifecycle
pin mirroring CopyRenderableEmittersInCell's own add/move/remove
test).
Co-Authored-By: Claude Fable 5.1 <noreply@anthropic.com>
Ports RenderDeviceD3D::DrawBlock @0x005a17c0's real per-cell order:
loop 1 (@0x005a1876) prepares shadow lists; loop 2 (@0x005a197d)
DrawLandCell(cell) @0x005a19c0 fires ONLY when the cell is in view,
STRICTLY BEFORE DrawSortCell(cell) @0x005a19e6, which fires whenever
alwaysDrawObjects (retail default 1 @0x00820ed4) or the cell is in
view. RetailFrameWalk.DrawLandscape now emits sink.OnLandCellTurn(
landblockId, side, cellIndex) at that exact point, per admitted cell,
before the existing DrawBuilding + OnLandscapeCellTurn (the
DrawSortCell half). WalkFrameDriver records one LandCell frame event
per turn and deletes the whole-stage TerrainSlice(0) emission and the
DrawTerrainSlice leaf outright — drawing all terrain before every
building let a nearer building's far-Z punch survive under farther
terrain drawn afterward, the doorway-behind-a-hill fragment bug from
the owner's G2 Holtburg screenshot; this chunk removes it by ORDER
alone, with no depth-compare change (S4's punch z-func question is
untouched, per the contract).
Index-run arithmetic (S3 §9.1 R3): the terrain mesh is cell-major
(LandblockMesh.Build: cy outer, cx inner, 6 indices/cell, 384/land-
block). A retail LOD cell (side n, LOD coords X,Y) covers cx in
[X*8/n,(X+1)*8/n), cy in [Y*8/n,(Y+1)*8/n) — one contiguous run per
covered cy row: side 8 -> one run of 6, side 4 -> two runs of 12,
side 2 -> four runs of 24; side 1's single coarse cell covers every
row contiguously so its 8 per-row runs collapse into ONE run of all
384 indices. TerrainModernRenderer.AppendCellIndexRuns (pure, no GPU,
no baked table) and DrawLandCellRuns (resolves the landblock's slot,
builds one DrawElementsIndirectCommand per run, reuses the existing
DrawRhi bind-and-submit path) implement this; TerrainModernRenderer
.Draw(...) is untouched and keeps serving non-walk callers (directional-
shadow receivers, the flat terrain path).
Order-preserving batching (S3 §9.2 B2): WalkFrameDriver.Replay merges
consecutive same-landblock LandCell events with no intervening event
into ONE DrawLandCellBatch leaf call; any other event splits the
batch. In production this rarely fires because retail's own
DrawSortCell (AlwaysDrawObjects=true) always interposes an object-
list turn between one cell's LandCell event and the next's — see
perfNote in the task report for the resulting command-count increase.
Deleted as dead: the _walkTerrainInViewLandcells field and
SetWalkTerrainInViewLandcells setter on RetailPViewPassExecutor (fed
only DrawWalkTerrainSlice's inViewLandcells filter, which no longer
exists — the walk's own per-cell CellInView admission is now the
sole terrain-visibility authority) and its two call sites in
RetailPViewRenderer.DrawWalkDrivenStatics.
Weather placement (S3 §9.1 R5): confirmed unchanged. GameSky's
weather pass (RenderWeather, gated on is_player_outside) already
runs after every LandCell event for both root kinds — for an
outdoor root, DrawLandscapeDynamicsPhase is called directly after
driver.Replay() completes (which processes the whole per-cell
_events list first); for an interior root with ov>0, it fires via
the LandscapeFlush leaf (RetailPViewRenderer.FlushWalkLandscape ->
_walkPreClearDynamics), and OnInteriorFloodDrawTurn only emits
LandscapeFlush AFTER DrawLandscape's per-cell loop has fully run
and recorded every LandCell event ahead of it in the same _events
list Replay walks in order. No code change needed; verified by
reading the call sites.
Tests: WalkEvents/RetailFrameWalk/WalkFrameDriver's existing pins
updated (every "TERRAIN:0" expectation deleted, matching the deleted
event); new coverage for T1 (WalkLandCellOrderTests — LandWalkOrder +
WalkLandscape.CalcDrawOrder + WalkLandscapeAssembler
.SideCellCountForRing reproduce both cathedral captures' frame-2
LC/SC sequences byte-for-byte, 533/698 arrival and 531/757 leak, cross-
verified against the retail ring-to-LOD table), T2 (a synthetic two-
block landscape with a real WalkVisibilityMath-driven out-of-view
column, proving LC-before-building/statics, far-to-near, no-LC-but-
keeps-SC for the excluded cells, and no TerrainSlice event of any
kind), T3 (TerrainLandCellIndexRunsTests — the index-run arithmetic
for every side/cell, disjoint and exhaustive over the 384-index
landblock), T4 (batching merge/split), and the RetailPViewPassExecutor
CompiledCallGraph pin retargeted at DrawWalkLandCellBatch /
DrawLandCellRuns. WalkOracleTrace gains LC/SC event kinds and a
Load(root, name) overload for the OH capture directory — the one
parser change this chunk needs, no validator, no other infrastructure.
App hermetic lane: 6,786/6,786 (6,765 baseline + 21 new). InstalledDat
lane: 241 passed, 3 accepted failures (2 pre-existing #383 layout
fixture-drift tests, 1 TowerAscent Status=KnownFailure) — unchanged
from baseline. Core terrain tests: 116/116 (Core untouched by this
chunk).
Co-Authored-By: Claude Fable 5.1 <noreply@anthropic.com>
Owner G2 finding: the purple cloud around an arriving character no longer
drew. The server keeps the player Hidden until acdream sends LoginComplete at
reveal completion (retail-correct); the Hidden-state script's emitters spawn
in the arrival cell and are view-eligible when the world appears, but the
walk drew an owner's emitters only through the owner's registry rows, and a
hidden owner's shadow is suspended. Retail's
CPhysicsObj::add_particle_shadow_to_cell (0x00514a70) gives an emitter one
shadow in its OWN current cell, drawn at that cell's turn regardless of the
parent's hidden state (add_shadows_to_cells 0x00514aed skips the flood for
state & 0x1000).
Port: ParticleSystem keeps a per-pass cell -> renderable-handles index
(maintained at every renderable/OwnerCellId change) and
CopyRenderableEmittersInCell; ParticleRenderer.DrawForCell; the walk draws
particles BY CELL at the existing turns (interior CellParticles, landscape
LandscapeCellParticles), the events fire for every visited cell, and every
owner-union particle path is deleted (UnionOwners/UnionNewOwners for
particles, the outdoor drawn-owner dedupe, the executor's owner
classification sets, the context ParticleOwnerIds members). The post-replay
per-cell pass double-submitted the root flood's emitters and is deleted: an
emitter draws once, at its cell's replay turn. AD-117 item 4 becomes a port
note (the index lives in the particle system; an emitter is not a physics
object in acdream). The temporary [pes-spawn]/[pes-vis] traces are removed
and the ACDREAM_DUMP_PLAYSCRIPT row restored.
Verified: timed arrival route logs/selfgate-20260903-062522-haze-chunk6,
frame h02-arrive-400ms shows the cloud at the character in Facility Hub.
Gates (Release): Core 4,987/4,987; Content 214/214; Runtime 1,884/1,884; App
hermetic lane 6,760/6,760; App InstalledDat 217 pass / 2 pre-existing #383.
Co-Authored-By: Claude Fable 5.1 <noreply@anthropic.com>
The FW3 visual gate's stairwell/grass transition flash (grass briefly
covering floor openings at doorway crossings - the #119 family) was the
FW3 dual path leaking: the walk decided WHETHER terrain draws while the
old PortalVisibilityBuilder assembly decided WHERE (slice planes, count,
scissor), and punch fans indexed the old slice array with walk view
indices. The new ACDREAM_PROBE_WALK_ROOT apparatus pinned the boundary
frames: fat/degenerate old-apparatus exit views splash terrain over
interior pixels, the interior depth-clear preserves color, and cells
absent from the walk's flood never repaint. Retail has ONE visibility
structure and cannot produce this.
ClipFrameAssembler.ReassembleOutsideViewFromWalk now materializes the
walk's own outside_view (pixel screen points -> standard NDC -> the
existing ClipPlaneSet machinery) into the assembly's outside-view block
after Collect, ahead of the single PrepareClipFrame publication (moved
below the walk block). The Landscape event carries the walk's active
view count on the record's existing OutsideViewCount field (trace
mapping compares kind only - zero oracle-fixture churn) and the driver
fans exactly that many terrain slices; activeTerrainSliceCount is
deleted end to end. Outdoor roots keep the assembler's single
full-screen slice, asserted ==1.
Hermetic 6,762/0 (4 new materializer tests pin the y-flip and
plane-sign conventions), Walk lane 209/1, InstalledDat walk conformance
40/1. Seals/cell slices/look-in seeding stay on the old per-cell views
for the rest of FW4 (identical dat polygons; only the visible set can
differ).
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
The retail frame walk now drives every production static draw. In
RetailPViewRenderer.DrawInside, when the concrete executor + the
packed product + the FW3.1 walk registries are all wired (all
production compositions - anything less throws):
- A pre-walk events-only collection pass (the shadow sink generalized
to WalkVisitedSetCollector) gathers the frame's visited cells,
buildings, and landscape-cell turns; the visited cells union into
prepareCells so EnvCellRenderer prepares every shell the driver
draws.
- DrawWalkDrivenStatics runs the WalkFrameDriver over the production
world data (WalkProductionWorldData over RenderSceneQuery + the
building registry): sky, terrain slices, outdoor statics at their
landscape-cell turns, buildings (alpha barrier -> punch/look-in
passes -> shell) in retail order, interior clear+seals as leaf
closures (the old tail block's drain reasoning moves with them),
flood cells shell-then-contents. Landscape/cell-stage particle
owners re-source from the walk's visited sets - retail gates
particles per cell turn (ShouldDrawParticles @0x0050FE60), which
this is; the old sphere filter was the approximation.
- DrawLandscapeDynamicsPhase + DrawBuildingLookInDynamics carry the
dynamics-only remainder (LookInObject now dynamic-classified,
late outside-dynamics + weather, particle unions); DrawDynamicsLast
and the outdoor flush are unchanged.
- The product builder stops emitting LandscapeOutdoorStatic /
LandscapeBuildingShell / CellStatic (methods deleted, dead index
tracking removed); LookInObject loads cells with
includeStatics: false.
The old static path survives ONLY behind !walkActive for the
standalone/diagnostic executor-fake path that keeps 15 retail-ordering
regression tests exercising the barrier/punch/seal machinery; no
production composition can reach it. Its deletion is FW4 scope (the
plan's "deleting the patch apparatus") - recorded in the plan.
Transitional risks recorded in code/report: the two-pass walk cost
(FW3.4 measures), the interior slice-count reconciliation between the
old clip assembly and the walk's own exit-view survival, and the
outdoor merged-flood punch coverage now riding the walk's own
building-BSP punches (retail-faithful per FW1; the owner visual gate
verifies).
Suites (lead-verified): full Release build 0 warnings; hermetic
6,750/0 (baseline minus the three deleted route tests); Walk lane
201/1; InstalledDat Walk conformance 40/1 untouched. The two
IL-branch tests the implementation round reported failing pass in
every lead run - the recurring parallel-load flake pair.
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
Retail draws every cell's objects inside LScape::draw's far-to-near walk
(DrawSortCell @0x005A17C0) and drains the one delayed-alpha list at the
DrawCells boundary AFTER the finished walk (@0x005A4872). Our outdoor
frame drained at the landscape-stage end and then drew punches, interior
shells, cell objects, and ALL dynamics — every one of those opaque
passes overwrote the already-composited flames (the reopened#132
candle class: "the door draws over the candle", creatures at openings).
Depth and barrier A/Bs were no-ops because the eraser is opaque color
painted after the drain.
Two retail-cited ordering corrections, outdoor-node roots only:
1. The stage-boundary drain is skipped and FlushLandscapeAlpha() runs
after DrawDynamicsLast, where the frame's opaque world depth is
complete — the one far-to-near list composites over everything,
exactly like retail's boundary flush relative to its finished walk.
2. Before DrawExitPortalMasks, FlushLandscapeAlphaFartherThan(
ExitPortalMaskBarrierDistance(...)) drains everything at or beyond
the nearest cell whose exit-portal mask is about to write far-Z —
retail DrawBuilding @0x0059F2A0 runs FlushAlphaList(0f) BEFORE its
portal-only pass, so in the far-to-near walk nothing already drained
can meet a punched aperture's falsified depth. Without this, the
first correction let exterior waterfalls z-pass across punched
apertures whose true landscape depth the punch erased (found live at
the cathedral gate). Nearer content stays queued and legitimately
composites in front of punched structures.
Interior roots keep the pre-clear stage-boundary drain unchanged.
User-gated live: Holtburg sign candle whole in front of the sign and
tower door at the aligned pose; cathedral waterfalls contained at every
camera zoom, inside and outside. Register row AP-236 retired (the
walk-order outcome reconstruction is complete; AP-34 remains the
umbrella for the CYpt-sort reconstruction itself). Filed #456 for the
separate occluded-distant-building/creature admission residual this
session diagnosed.
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
Two retail-parity corrections on top of 684380d4, user-gated together
(no regressions; door/creature-through-opening rendering verified live
at Holtburg; cathedral waterfall and look-north casts pass):
1. Drawn-once look-in dynamics. Retail marks every drawn non-player
part for the frame (DrawMeshInternal @0x0059F360 GetDrawnThisFrame), so
an object draws once, with its cell. acdream drew a look-in cell's
dynamics twice under an outdoor root - once correctly with the look-in,
then again in dynamics-last after the boundary alpha drain, where the
second draw overpainted nearer flames. Both the accepted path
(_lookInCellIds) and the frame product (BuildDynamicLastRoute) now
exclude dynamics whose parent cell drew as a look-in.
2. Pre/inter-building barriers drain only content FARTHER than the
building they precede (FlushLandscapeAlphaFartherThan +
RetailAlphaQueue.FlushFartherThan + conservative anchor-origin
threshold). Retail's far-to-near walk guarantees a building's
FlushAlphaList(0f) @0x0059F2A0 has only farther content queued; a
nearer emitter composites at a later flush. AP-236 documents the
remaining barrier-order divergence.
The #132 candle-before-door overdraw is NOT yet fixed by these steps
and stays open: the current suspect is that houses without a
constructed look-in still draw their interior-parented door in
dynamics-last after the outdoor candle's boundary drain (see the
2026-08-29 ledger for the retail flush-after-objects hypothesis).
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
Retail never clips a particle to a portal view: each emitter's polys
join the ONE alpha list during its owner cell's far-to-near walk turn
(LScape::draw @0x00506330 iterates block_draw_list reversed; DrawBlock
@0x005A17C0 walks cells; ShouldDrawParticles @0x0050FE60 gates by cell
and distance), and occlusion is the depth test at FlushAlphaList
@0x0059D2E0 (its float is a COUNT threshold - 0f = flush all). The
1d2f2f73 architecture instead re-submitted particles once per
OutsideView slice under that slice's hardware clip slot, which cut
effects at aperture boundaries and drew nothing when no outside slice
was in view (the cathedral look-north disappearance).
Now: unattached emitters submit once per frame by owner-cell kind
(outdoor landcells in the landscape stage, interior EnvCells in the
final world scope - new UnattachedEmitterCellScope filter); cell,
shell-route, barrier-static, and late-stage owners submit their
per-slice cone-cull UNION once with clipSlot 0; and particles emit in
the stage matching their PARENT CELL - an interior dynamic whose
sphere straddles an exit-portal plane keeps its mesh in both stages
(#118) but its particles move to the final pass, so the interior
stage can no longer repaint over them (the aperture-band star cut).
Also lands the inert Change-2 primitives for the AP-236 retirement
(candle-behind-door): RetailAlphaQueue.FlushFartherThan drains only
the far prefix without resetting sources, plus the executor
passthrough and the conservative look-in threshold helper - nothing
calls them yet.
User-gated 2026-08-29 round 2 at the Sanctuary Cathedral: spell and
recall stars cover the whole room at every camera direction including
north; waterfall containment holds on retail's depth/seal mechanism;
adjacent-room particles/lights, walls, Holtburg, recall unregressed
(paperdoll remains pre-existing intermittent #443). Register: AP-236
filed for the remaining barrier-order divergence.
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
Each of these was temporary apparatus added to chase one bug, and each was
supposed to be deleted in the commit that fixed it. Fourteen closed issues
later they were still here: #337's support/wire-mesh trio, #171's sticky
timeline, #119's viewer and entity dumps, #113's phantom probe, and a dozen
more. 3,493 lines removed; the client now reads 144 environment variables
instead of 161, and 47 temporary probes remain instead of 64.
This is not only tidying. Every probe leaves a branch on its hot path when
unset, several re-read the environment per call rather than caching, and
the volume buries the diagnostics that are actually load-bearing. It is
also a headless correctness matter: HeadlessStaticStateAudit reflects over
PhysicsDiagnostics' flags to refuse a multi-session host when any is set,
and cannot see probes that live outside that owner.
Four files went entirely — WalkMissDiagnostic.cs, CollisionMeshWireframe.cs
and two test files whose only subject was a deleted probe.
TransitionTypes.SetContactPlane also sheds its CallerMemberName /
CallerLineNumber parameters, which existed solely for #337's cpSrc=
attribution and carried the instruction to strip them with the probe
family; no call site passed them, so no behavior changes. F2's collision
overlay survives and reverts to its proxy-cylinder form, which is what
removing the ACDREAM_WIRE_MESH upgrade means.
LaunchOptionsDocumentationTests earned its keep here: it refused the
deletion until docs/launch-options.md moved the 17 rows into Retired and
the frozen direct-read counts came down (PhysicsEngine.cs to zero,
TransitionTypes.cs 3 to 2). The documentation could not drift during a
cleanup this wide.
The 14 probes that name no owning issue are deliberately NOT deleted.
Nothing records when they became safe to remove, and guessing is how a
future investigation loses apparatus it needed; #435 stays open for their
attribution.
Full hermetic suite 15,321 passed / 0 failed.
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
Route production meshes and attached particles from the exact retained PView frame ranges, while keeping the former WorldEntity partition only for standalone tests and explicit diagnostic/oracle probes. Copy retained source/count facts before arena release so world diagnostics no longer require the old partition. Record the accepted G4 visual gate and open the exact G5 production matrix.
Co-authored-by: OpenAI Codex <codex@openai.com>
Reuse the PView frame input, publish mutation-invalidated landblock views, and avoid constructing optional shadow iterators while preserving title and lifecycle visibility facts.
Make the incremental render scene the production entity source at the existing retail PView stages while retaining the accepted dispatcher upload and draw executor. Keep diagnostics consumer-gated, retain ordered indices across unchanged frames, refresh only dirty records, and preserve exact mesh-load, selection, alpha, lighting, and route lifecycle semantics.
Extend the non-drawing oracle through ordered PView routes, dispatcher visibility and final instance payloads, and accepted retail selection parts. Lifecycle artifacts can now referee the later shadow scene without influencing production visibility or draw decisions.
Move the complete update/render construction graph into a typed Phase-8 owner, explicitly carry the content dependencies it consumes, and publish both roots through one exact lease. Extract lifecycle resource sampling and frame-owned late bindings so partial startup and shutdown withdraw the same generation without window callbacks.
Co-authored-by: Codex <codex@openai.com>
Move fallback and PView world drawing, shared alpha, particles, visibility, selection, and diagnostics behind focused frame owners. Make exceptional frames failure-atomic by restoring the shared GL baseline and preserving primary alpha failures through cleanup.
Co-authored-by: Codex <codex@openai.com>