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Add true color support to voxel renderer
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parent
0cea344dce
commit
5a85fabfa6
5 changed files with 83 additions and 3 deletions
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@ -392,6 +392,52 @@ FVoxel::~FVoxel()
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if (Palette != NULL) delete [] Palette;
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}
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//==========================================================================
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//
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// Create true color version of the slab data
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//
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//==========================================================================
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void FVoxel::CreateBgraSlabData()
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{
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assert(Palette != NULL);
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for (int i = 0; i < NumMips; ++i)
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{
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int size = Mips[i].OffsetX[Mips[i].SizeX];
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if (size <= 0) continue;
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Mips[i].SlabDataBgra.Resize(size);
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kvxslab_t *src = (kvxslab_t*)Mips[i].SlabData;
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kvxslab_bgra_t *dest = (kvxslab_bgra_t*)&Mips[i].SlabDataBgra[0];
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while (size >= 3)
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{
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dest->backfacecull = src->backfacecull;
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dest->ztop = src->ztop;
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dest->zleng = src->zleng;
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int slabzleng = src->zleng;
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for (int j = 0; j < slabzleng; ++j)
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{
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int colorIndex = src->col[j];
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uint32_t red = (Palette[colorIndex * 3 + 0] << 2) | (Palette[colorIndex * 3 + 0] >> 4);
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uint32_t green = (Palette[colorIndex * 3 + 1] << 2) | (Palette[colorIndex * 3 + 1] >> 4);
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uint32_t blue = (Palette[colorIndex * 3 + 2] << 2) | (Palette[colorIndex * 3 + 2] >> 4);
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dest->col[j] = 0xff000000 | (red << 16) | (green << 8) | blue;
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}
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slabzleng += 3;
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dest = (kvxslab_bgra_t *)((uint32_t *)dest + slabzleng);
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src = (kvxslab_t *)((BYTE *)src + slabzleng);
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size -= slabzleng;
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}
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}
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}
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//==========================================================================
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//
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// Remap the voxel to the game palette
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@ -15,6 +15,14 @@ struct kvxslab_t
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BYTE col[1/*zleng*/];// color data from top to bottom
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};
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struct kvxslab_bgra_t
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{
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uint32_t ztop; // starting z coordinate of top of slab
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uint32_t zleng; // # of bytes in the color array - slab height
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uint32_t backfacecull; // low 6 bits tell which of 6 faces are exposed
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uint32_t col[1/*zleng*/];// color data from top to bottom
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};
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struct FVoxelMipLevel
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{
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FVoxelMipLevel();
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@ -27,6 +35,7 @@ struct FVoxelMipLevel
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int *OffsetX;
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short *OffsetXY;
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BYTE *SlabData;
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TArray<uint32_t> SlabDataBgra;
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};
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struct FVoxel
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@ -39,6 +48,7 @@ struct FVoxel
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FVoxel();
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~FVoxel();
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void CreateBgraSlabData();
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void Remap();
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void RemovePalette();
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};
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@ -187,6 +187,7 @@ void FSoftwareRenderer::RemapVoxels()
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{
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for (unsigned i=0; i<Voxels.Size(); i++)
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{
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Voxels[i]->CreateBgraSlabData();
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Voxels[i]->Remap();
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}
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}
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@ -538,6 +538,18 @@ namespace swrenderer
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}
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z2a[xxx] = MIN<int>(z2, dadmost[lxt + xxx]);
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}
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const uint8_t *columnColors = col;
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bool bgra = viewport->RenderTarget->IsBgra();
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if (bgra)
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{
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// The true color slab data array is identical, except its using uint32 instead of uint8.
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//
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// We can find the same slab column by calculating the offset from the start of SlabData
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// and use that to offset into the BGRA version of the same data.
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columnColors = (const uint8_t *)(&mip->SlabDataBgra[0] + (ptrdiff_t)(col - mip->SlabData));
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}
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// Find top and bottom pixels that match and draw them as one strip
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for (int xxl = 0, xxr; xxl < stripwidth; )
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{
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@ -559,7 +571,7 @@ namespace swrenderer
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{
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drawerargs.SetDest(lxt + x, z1);
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drawerargs.SetCount(z2 - z1);
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drawerargs.DrawVoxelColumn(thread, yplc[xxl], yinc, col, zleng);
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drawerargs.DrawVoxelColumn(thread, yplc[xxl], yinc, columnColors, zleng);
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}
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/*
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@ -499,8 +499,19 @@ namespace swrenderer
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void SpriteDrawerArgs::DrawVoxelColumn(RenderThread *thread, fixed_t vPos, fixed_t vStep, const uint8_t *voxels, int voxelsCount)
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{
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dc_iscale = vStep;
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if (RenderViewport::Instance()->RenderTarget->IsBgra())
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{
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double v = vPos / (double)voxelsCount / FRACUNIT;
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double vstep = vStep / (double)voxelsCount / FRACUNIT;
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dc_texturefrac = (int)(v * (1 << 30));
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dc_iscale = (int)(vstep * (1 << 30));
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}
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else
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{
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dc_texturefrac = vPos;
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dc_iscale = vStep;
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}
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dc_texturefracx = 0;
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dc_source = voxels;
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dc_source2 = 0;
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