Revert GX2 stuff till fixed
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parent
6414744c28
commit
457e4f6808
@ -1,4 +1,4 @@
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using System;
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using System;
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using System.Linq;
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using System.Collections.Generic;
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@ -47,6 +47,8 @@ namespace Switch_Toolbox.Library
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public uint[] texRegs;
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};
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public static int m_configFlags = 4;
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public static uint expPitch = 0;
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public static uint expHeight = 0;
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public static uint expNumSlices = 0;
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@ -715,6 +717,11 @@ namespace Switch_Toolbox.Library
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return (n + d - 1) / d;
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}
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private static uint powTwoAlign_0(uint x, uint align)
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{
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return (x + align - 1) & ~(align - 1);
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}
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/*---------------------------------------
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*
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@ -746,15 +753,15 @@ namespace Switch_Toolbox.Library
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public static byte[] deswizzle(uint width, uint height, uint depth, uint height_, uint format_, uint tileMode, uint swizzle_,
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uint pitch, uint bpp, byte[] data, int depthLevel)
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{
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return swizzleSurf(width, height, depth, format_, tileMode, swizzle_, pitch, bpp, data, depthLevel, 0);
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return swizzleSurf(width, height, depth, height_, format_, tileMode, swizzle_, pitch, bpp, data, depthLevel, 0);
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}
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public static byte[] swizzle(uint width, uint height, uint depth, uint height_, uint format_, uint tileMode, uint swizzle_,
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uint pitch, uint bpp, byte[] data, int depthLevel)
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{
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return swizzleSurf(width, height, depth, format_, tileMode, swizzle_, pitch, bpp, data, depthLevel, 1);
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return swizzleSurf(width, height, depth, height_, format_, tileMode, swizzle_, pitch, bpp, data, depthLevel, 1);
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}
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private static byte[] swizzleSurf(uint width, uint height,uint depth, uint format, uint tileMode, uint swizzle_,
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private static byte[] swizzleSurf(uint width, uint height,uint depth, uint height_, uint format, uint tileMode, uint swizzle_,
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uint pitch, uint bitsPerPixel, byte[] data, int depthLevel, int swizzle)
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{
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uint bytesPerPixel = bitsPerPixel / 8;
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@ -791,7 +798,7 @@ namespace Switch_Toolbox.Library
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}
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else
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{
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pos = computeSurfaceAddrFromCoordMacroTiled((uint)x, (uint)y, bitsPerPixel, pitch, height, (AddrTileMode)tileMode, pipeSwizzle, bankSwizzle);
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pos = computeSurfaceAddrFromCoordMacroTiled((uint)x, (uint)y, bitsPerPixel, pitch, height_, (AddrTileMode)tileMode, pipeSwizzle, bankSwizzle);
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}
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@ -1019,7 +1026,7 @@ namespace Switch_Toolbox.Library
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}
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}
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private static uint computeSurfaceBankSwappedWidth(AddrTileMode tileMode, uint bpp, uint numSamples, uint pitch)
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private static uint computeSurfaceBankSwappedWidth(AddrTileMode tileMode, uint bpp, uint pitch, uint numSamples)
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{
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if (isBankSwappedTileMode(tileMode) == 0)
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return 0;
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@ -1154,15 +1161,24 @@ namespace Switch_Toolbox.Library
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uint macroTileIndexY = y / macroTileHeight;
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ulong macroTileOffset = (macroTileIndexX + macroTilesPerRow * macroTileIndexY) * macroTileBytes;
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if (isBankSwappedTileMode(tileMode) != 0)
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switch (tileMode)
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{
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bankSwapWidth = computeSurfaceBankSwappedWidth(tileMode, bpp, 1, pitch);
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swapIndex = macroTilePitch * macroTileIndexX / bankSwapWidth;
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bank ^= bankSwapOrder[swapIndex & 3];
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case AddrTileMode.ADDR_TM_2B_TILED_THIN1:
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case AddrTileMode.ADDR_TM_2B_TILED_THIN2:
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case AddrTileMode.ADDR_TM_2B_TILED_THIN4:
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case AddrTileMode.ADDR_TM_2B_TILED_THICK:
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case AddrTileMode.ADDR_TM_3B_TILED_THIN1:
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case AddrTileMode.ADDR_TM_3B_TILED_THICK:
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{
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bankSwapWidth = computeSurfaceBankSwappedWidth(tileMode, bpp, pitch, 1);
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swapIndex = macroTilePitch * macroTileIndexX / bankSwapWidth;
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bank ^= bankSwapOrder[swapIndex & 3];
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break;
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}
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}
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ulong totalOffset = elemOffset + ((macroTileOffset + sliceOffset) >> 3);
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return bank << 9 | pipe << 8 | totalOffset & 255 | (ulong)((int)totalOffset & -256) << 3;
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return bank << 9 | pipe << 8 | 255 & totalOffset | (ulong)((int)totalOffset & -256) << 3;
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}
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public static uint computeSurfaceMipLevelTileMode(uint baseTileMode, uint bpp, uint level, uint width, uint height,
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@ -1210,79 +1226,83 @@ namespace Switch_Toolbox.Library
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if (DebugSurface)
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Console.WriteLine("computeSurfaceMipLevelTileMode expTileMode " + expTileMode);
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if (noRecursive != 0 || level == 0)
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return expTileMode;
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switch (bpp)
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if (noRecursive == 0)
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{
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case 24:
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case 48:
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case 96:
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bpp /= 3;
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break;
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switch (bpp)
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{
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case 24:
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case 48:
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case 96:
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bpp /= 3;
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break;
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}
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widtha = nextPow2(width);
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heighta = nextPow2(height);
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numSlicesa = nextPow2(numSlices);
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if (level != 0)
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{
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expTileMode = convertToNonBankSwappedMode((AddrTileMode)expTileMode);
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thickness = computeSurfaceThickness((AddrTileMode)expTileMode);
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microTileBytes = (numSamples * bpp * (thickness << 6) + 7) >> 3;
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if (microTileBytes < 256)
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{
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widthAlignFactor = Math.Max(1, 256 / microTileBytes);
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}
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if (expTileMode == 4 || expTileMode == 12)
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{
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if ((widtha < widthAlignFactor * macroTileWidth) || heighta < macroTileHeight)
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expTileMode = 2;
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}
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else if (expTileMode == 5)
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{
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macroTileWidth = 16;
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macroTileHeight = 32;
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if ((widtha < widthAlignFactor * macroTileWidth) || heighta < macroTileHeight)
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expTileMode = 2;
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}
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else if (expTileMode == 6)
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{
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macroTileWidth = 8;
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macroTileHeight = 64;
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if ((widtha < widthAlignFactor * macroTileWidth) || heighta < macroTileHeight)
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expTileMode = 2;
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}
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else if (expTileMode == 7 || expTileMode == 13)
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{
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if ((widtha < widthAlignFactor * macroTileWidth) || heighta < macroTileHeight)
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expTileMode = 3;
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}
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if (numSlicesa < 4)
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{
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if (expTileMode == 3)
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expTileMode = 2;
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else if (expTileMode == 7)
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expTileMode = 4;
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else if (expTileMode == 13)
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expTileMode = 12;
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}
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return computeSurfaceMipLevelTileMode(
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expTileMode,
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bpp,
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level,
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widtha,
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heighta,
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numSlicesa,
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numSamples,
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isDepth,
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1);
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}
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}
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widtha = nextPow2(width);
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heighta = nextPow2(height);
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numSlicesa = nextPow2(numSlices);
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expTileMode = convertToNonBankSwappedMode((AddrTileMode)expTileMode);
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thickness = computeSurfaceThickness((AddrTileMode)expTileMode);
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microTileBytes = (numSamples * bpp * (thickness << 6) + 7) >> 3;
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if (microTileBytes < 256)
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{
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widthAlignFactor = Math.Max(1, 256 / microTileBytes);
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}
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if (expTileMode == 4 || expTileMode == 12)
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{
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if ((widtha < widthAlignFactor * macroTileWidth) || heighta < macroTileHeight)
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expTileMode = 2;
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}
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else if (expTileMode == 5)
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{
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macroTileWidth = 16;
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macroTileHeight = 32;
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if ((widtha < widthAlignFactor * macroTileWidth) || heighta < macroTileHeight)
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expTileMode = 2;
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}
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else if (expTileMode == 6)
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{
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macroTileWidth = 8;
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macroTileHeight = 64;
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if ((widtha < widthAlignFactor * macroTileWidth) || heighta < macroTileHeight)
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expTileMode = 2;
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}
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else if (expTileMode == 7 || expTileMode == 13)
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{
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if ((widtha < widthAlignFactor * macroTileWidth) || heighta < macroTileHeight)
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expTileMode = 3;
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}
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if (numSlicesa < 4)
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{
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if (expTileMode == 3)
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expTileMode = 2;
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else if (expTileMode == 7)
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expTileMode = 4;
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else if (expTileMode == 13)
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expTileMode = 12;
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}
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return computeSurfaceMipLevelTileMode(
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expTileMode,
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bpp,
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level,
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widtha,
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heighta,
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numSlicesa,
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numSamples,
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isDepth,
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1);
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return expTileMode;
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}
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private static uint computeSurfaceTileSlices(uint tileMode, uint bpp, uint numSamples)
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{
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uint bytePerSample = ((bpp << 6) + 7) >> 3;
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@ -1302,6 +1322,11 @@ namespace Switch_Toolbox.Library
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return tileSlices;
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}
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private static int getFillSizeFieldsFlags()
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{
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return (m_configFlags >> 6) & 1;
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}
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private static uint ComputeSurfaceInfoEx()
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{
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uint tileMode = pIn.tileMode;
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@ -1551,6 +1576,7 @@ namespace Switch_Toolbox.Library
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tileMode,
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padDims,
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(flags.value >> 4) & 1,
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(flags.value >> 7) & 1,
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pitchAlign,
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heightAlign,
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microTileThickness);
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@ -1789,6 +1815,7 @@ namespace Switch_Toolbox.Library
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expTileMode,
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padDims,
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(flags.value >> 4) & 1,
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(flags.value >> 7) & 1,
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pitchAlign,
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heightAlign,
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microTileThickness);
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@ -1816,7 +1843,14 @@ namespace Switch_Toolbox.Library
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return new uint[] { valid, pPitchOut, pHeightOut, pNumSlicesOut, pSurfSize, pTileModeOut, pBaseAlign, pPitchAlign, pHeightAlign, pDepthAlign };
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}
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private static Tuple<uint, uint, uint> padDimensions(uint tileMode, uint padDims, uint isCube, uint pitchAlign, uint heightAlign, uint sliceAlign)
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private static uint IsPow2(uint dim)
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{
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if ((dim & (dim - 1)) == 0)
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return 1;
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else
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return 0;
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}
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private static Tuple<uint, uint, uint> padDimensions(uint tileMode, uint padDims, uint isCube, uint cubeAsArray, uint pitchAlign, uint heightAlign, uint sliceAlign)
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{
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uint thickness = computeSurfaceThickness((AddrTileMode)tileMode);
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if (padDims == 0)
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@ -1826,7 +1860,7 @@ namespace Switch_Toolbox.Library
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expPitch = powTwoAlign(expPitch, pitchAlign);
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else
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{
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expPitch += pitchAlign - 1;
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expPitch = pitchAlign + expPitch - 1;
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expPitch /= pitchAlign;
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expPitch *= pitchAlign;
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}
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@ -1836,7 +1870,7 @@ namespace Switch_Toolbox.Library
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if (padDims > 2 || thickness > 1)
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{
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if (isCube != 0)
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if (isCube != 0 || cubeAsArray != 0)
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expNumSlices = nextPow2(expNumSlices);
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if (thickness > 1)
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@ -1901,7 +1935,7 @@ namespace Switch_Toolbox.Library
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macroWidth = tup.Item4;
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macroHeight = tup.Item5;
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bankSwappedWidth = computeSurfaceBankSwappedWidth((AddrTileMode)tileMode, bpp, numSamples, pitch);
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bankSwappedWidth = computeSurfaceBankSwappedWidth((AddrTileMode)tileMode, bpp, pitch, numSamples);
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if (bankSwappedWidth > pitchAlign)
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pitchAlign = bankSwappedWidth;
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@ -1912,7 +1946,8 @@ namespace Switch_Toolbox.Library
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(flags.value >> 4) & 1,
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(flags.value >> 7) & 1,
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pitchAlign,
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heightAlign);
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heightAlign,
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microTileThickness);
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expPitch = padDimens.Item1;
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expHeight = padDimens.Item2;
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@ -1987,7 +2022,7 @@ namespace Switch_Toolbox.Library
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macroWidth = tup.Item4;
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macroHeight = tup.Item5;
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bankSwappedWidth = computeSurfaceBankSwappedWidth((AddrTileMode)tileMode, bpp, numSamples, pitch);
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bankSwappedWidth = computeSurfaceBankSwappedWidth((AddrTileMode)tileMode, bpp, pitch, numSamples);
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if (bankSwappedWidth > pitchAlign)
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pitchAlign = bankSwappedWidth;
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@ -1997,7 +2032,8 @@ namespace Switch_Toolbox.Library
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(flags.value >> 4) & 1,
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(flags.value >> 7) & 1,
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pitchAlign,
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heightAlign);
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heightAlign,
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microTileThickness);
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expPitch = padDimens.Item1;
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expHeight = padDimens.Item2;
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@ -2082,7 +2118,7 @@ namespace Switch_Toolbox.Library
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private static uint adjustPitchAlignment(Flags flags, uint pitchAlign)
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{
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if (((flags.value >> 13) & 1) != 0)
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pitchAlign = powTwoAlign(pitchAlign, 0x20);
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pitchAlign = powTwoAlign_0(pitchAlign, 0x20);
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return pitchAlign;
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}
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@ -2163,6 +2199,10 @@ namespace Switch_Toolbox.Library
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return 0;
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}
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private static uint useTileIndex(int index)
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{
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return 0;
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}
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private static void computeMipLevel()
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{
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uint slices = 0;
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@ -2479,9 +2519,6 @@ namespace Switch_Toolbox.Library
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pSurfOut = pOut;
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}
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if (pSurfOut.tileMode == 0)
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pSurfOut.tileMode = 16;
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return pSurfOut;
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}
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}
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