The test expected one extra TEV register to grow the uniform by exactly
16 bytes, but the allocation is alignment-rounded, so it failed on the
fork's baseline. Build the uniform and check that the register and the
K color after it are packed next to each other instead.
From upstream patchzyy/Wiicompiled 6f14bde (#244, KartPad batch).
Co-Authored-By: Claude Opus 5.5 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01Wg7mB8ogCWmp9GH19Uc82B
The BP register cache skips writes equal to the cached value, and the
cache starts at zero. A cold GEN_MODE write of zero (one TEV stage, no
culling, no channels or texgens) was therefore dropped, leaving the
decoded state at zero TEV stages until some other GEN_MODE value arrived.
Seed the cache's register ID byte so the first write always decodes.
From upstream patchzyy/Wiicompiled 6f14bde (#244, KartPad batch).
Co-Authored-By: Claude Opus 5.5 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01Wg7mB8ogCWmp9GH19Uc82B
Incomplete primitives no longer emit indices: quads drop a one- or
two-vertex tail and draw a three-vertex tail as a triangle, triangle
lists ignore leftover vertices, and fans or strips under three vertices
emit nothing. Draws with no complete primitive are skipped. Previously an
incomplete quad indexed vertices that belonged to the next merged draw,
or past the end of the buffer.
Merging now stops before the 16-bit index offset would wrap, never folds
triangles into a single-instance line or point draw, and breaks after
GXInvalidateVtxCache or a vertex-format switch, so the next draw uploads
fresh arrays and uses its own format's shader.
From upstream patchzyy/Wiicompiled 6f14bde (#244, KartPad batch).
Co-Authored-By: Claude Opus 5.5 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01Wg7mB8ogCWmp9GH19Uc82B
- Updated stereo_frame_worker_smoke.cpp to allow dynamic headset rates and prediction lead time.
- Improved logging to include motion diagnostics and adjusted frame submission logic based on headset frequency.
- Enhanced stereo_interpolation_test.cpp with additional tests for camera motion separation and playback cadence.
- Introduced MkwVRReadSceneView function to read the camera view matrix for improved scene rendering.
- Modified VR first-person logic to support scene view reading and validation.
- Added scene_camera.hpp to encapsulate camera motion handling and inverse view calculations.
- Ensured that the VR integration layer correctly logs motion diagnostics and handles scene playback accurately.
Brings in patchzyy/Wiicompiled main: os_sleep parked-thread fix (#195),
HTTPS Retro WFC payload (#198), macOS build guide (#177), and the
reverse-Z depth fix (#134).
Conflicts were in aurora-main/lib/gfx/common.cpp and lib/gx/shader.cpp,
both from #134, which lands squarely on the VR stereo replay path.
#134 makes UseReversedZ genuinely reversed: the near/far correction now
applies exactly once, inside effective_projection(), instead of being
applied there AND per-vertex in the shader (the double application had
been cancelling out, so "reversed" Z silently behaved like forward Z).
Three pieces of the VR path were built against that old behaviour and
would have broken silently, so they are adapted here:
- shader.cpp exact-screen-depth parked the virtual screen at -0.5*w
specifically so the shader's following negation would land it at
+0.5*w. With that negation gone it now writes +0.5*w directly; keeping
the minus sign would park the screen at NDC -0.5, outside the clip
volume, discarding every 2D/HUD draw.
- stereo_replay.hpp backend_ndc_depth_row re-applied the correction to
the projection it was handed. That projection is effective_projection()
output, which now already carries it, so the function is a pass-through
of the Z row and no longer depends on the reversed-Z setting; the dead
bool parameter is dropped. Re-applying it would invert the virtual
screen's depth ordering, so 2D layers meant to sit on top would lose
the depth test to the ones behind them.
- shader_info.cpp stages the host depth window for that exact-depth path.
It now uses the same reversed-Z remap as upstream's new SetViewport
code, since frag_depth is written directly and has to reproduce the
window the fixed viewport transform would have applied. Restricted
depth windows (how the game forces an element in front of everything)
are exactly the 2D draws the virtual screen carries.
The SetViewport resolution keeps upstream's remap but retains the
ordering/clamp guard our version had: for any ordered guest range the
result is identical to upstream, and it avoids handing WebGPU
minDepth > maxDepth for the swapped pair MKW is known to emit. The VR eye
replay reuses these recorded values, so the guard covers that path too.
Test updates:
- stereo_replay_test now asserts the composed Z row against the staged
projection's own Z row rather than against the helper's output, so it
actually catches a re-introduced double correction (verified: it fails
when the old negation is put back; the previous self-consistent form
passed).
- gx_fifo_test's clearDepthValue expectation followed #134's deliberate
clear_depth_value() inversion, expressed through UseReversedZ rather
than hardcoded. Upstream changed the behaviour without updating this
test, so it fails on upstream/main as-is.
Verified: aurora suite 247 passed with the same 2 failures that already
fail on the pre-merge branch (IndexedPaletteHistoryKeepsAbsoluteVertexSlots,
PacksOneUniformWhenBothHalvesNeedInitialValue - both pre-existing, unrelated
to depth); shader.cpp and common.cpp compile clean; translator suite 577
passed. Not yet validated on-device in VR.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>