mirror of
https://github.com/dolphin-emu/dolphin.git
synced 2025-04-25 14:54:56 +00:00
This makes the OS X build more robust and should help pave the way for the integration of the video plugins as well as LTO. There are now no more global class level namespace conflicts left, as evidenced by the fact that Dolphin can be linked with -all_load, not that you would want to. git-svn-id: https://dolphin-emu.googlecode.com/svn/trunk@6958 8ced0084-cf51-0410-be5f-012b33b47a6e
270 lines
7.5 KiB
C++
270 lines
7.5 KiB
C++
// Copyright (C) 2003-2009 Dolphin Project.
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// This program is free software: you can redistribute it and/or modify
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// it under the terms of the GNU General Public License as published by
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// the Free Software Foundation, version 2.0.
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// This program is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU General Public License 2.0 for more details.
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// A copy of the GPL 2.0 should have been included with the program.
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// If not, see http://www.gnu.org/licenses/
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// Official SVN repository and contact information can be found at
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// http://code.google.com/p/dolphin-emu/
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#include "Common.h"
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#include "main.h"
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#include "DebugUtil.h"
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#include "BPMemLoader.h"
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#include "TextureSampler.h"
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#include "VideoConfig.h"
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#include "EfbInterface.h"
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#include "Statistics.h"
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#include "HwRasterizer.h"
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#include "StringUtil.h"
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#include "CommandProcessor.h"
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#include "../../../Core/VideoCommon/Src/ImageWrite.h"
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#include "FileUtil.h"
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namespace DebugUtil
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{
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u32 skipFrames = 0;
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bool drawingHwTriangles = false;
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enum { NumObjectBuffers = 40};
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u32 ObjectBuffer[NumObjectBuffers][EFB_WIDTH*EFB_HEIGHT];
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u32 TempBuffer[NumObjectBuffers];
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bool DrawnToBuffer[NumObjectBuffers];
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const char* ObjectBufferName[NumObjectBuffers];
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int BufferBase[NumObjectBuffers];
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void Init()
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{
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for (int i = 0; i < NumObjectBuffers; i++)
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{
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memset(ObjectBuffer[i], 0, sizeof(ObjectBuffer[i]));
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DrawnToBuffer[i] = false;
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ObjectBufferName[i] = 0;
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BufferBase[i] = 0;
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}
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}
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void SaveTexture(const char* filename, u32 texmap, s32 mip)
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{
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FourTexUnits& texUnit = bpmem.tex[(texmap >> 2) & 1];
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u8 subTexmap = texmap & 3;
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TexImage0& ti0 = texUnit.texImage0[subTexmap];
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int width = ti0.width + 1;
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int height = ti0.height + 1;
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u8 *data = new u8[width * height * 4];
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GetTextureBGRA(data, texmap, mip, width, height);
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(void)SaveTGA(filename, width, height, data);
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delete []data;
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}
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void GetTextureBGRA(u8 *dst, u32 texmap, s32 mip, int width, int height)
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{
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u8 sample[4];
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for (int y = 0; y < height; y++)
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for (int x = 0; x < width; x++) {
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TextureSampler::SampleMip(x << 7, y << 7, mip, false, texmap, sample);
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// rgba to bgra
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*(dst++) = sample[2];
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*(dst++) = sample[1];
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*(dst++) = sample[0];
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*(dst++) = sample[3];
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}
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}
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s32 GetMaxTextureLod(u32 texmap)
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{
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FourTexUnits& texUnit = bpmem.tex[(texmap >> 2) & 1];
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u8 subTexmap = texmap & 3;
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u8 maxLod = texUnit.texMode1[subTexmap].max_lod;
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u8 mip = maxLod >> 4;
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u8 fract = maxLod & 0xf;
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if(fract)
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++mip;
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return (s32)mip;
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}
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void DumpActiveTextures()
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{
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for (unsigned int stageNum = 0; stageNum < bpmem.genMode.numindstages; stageNum++)
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{
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u32 texmap = bpmem.tevindref.getTexMap(stageNum);
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s32 maxLod = GetMaxTextureLod(texmap);
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for (s32 mip = 0; mip <= maxLod; ++mip)
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{
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SaveTexture(StringFromFormat("%star%i_ind%i_map%i_mip%i.tga", File::GetUserPath(D_DUMPTEXTURES_IDX), stats.thisFrame.numDrawnObjects, stageNum, texmap, mip).c_str(), texmap, mip);
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}
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}
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for (unsigned int stageNum = 0; stageNum <= bpmem.genMode.numtevstages; stageNum++)
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{
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int stageNum2 = stageNum >> 1;
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int stageOdd = stageNum&1;
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TwoTevStageOrders &order = bpmem.tevorders[stageNum2];
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int texmap = order.getTexMap(stageOdd);
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s32 maxLod = GetMaxTextureLod(texmap);
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for (s32 mip = 0; mip <= maxLod; ++mip)
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{
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SaveTexture(StringFromFormat("%star%i_stage%i_map%i_mip%i.tga", File::GetUserPath(D_DUMPTEXTURES_IDX), stats.thisFrame.numDrawnObjects, stageNum, texmap, mip).c_str(), texmap, mip);
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}
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}
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}
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void DumpEfb(const char* filename)
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{
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u8 *data = new u8[EFB_WIDTH * EFB_HEIGHT * 4];
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u8 *writePtr = data;
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u8 sample[4];
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for (int y = 0; y < EFB_HEIGHT; y++)
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for (int x = 0; x < EFB_WIDTH; x++) {
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EfbInterface::GetColor(x, y, sample);
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// ABGR to BGRA
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*(writePtr++) = sample[1];
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*(writePtr++) = sample[2];
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*(writePtr++) = sample[3];
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*(writePtr++) = sample[0];
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}
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(void)SaveTGA(filename, EFB_WIDTH, EFB_HEIGHT, data);
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delete []data;
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}
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void DumpDepth(const char* filename)
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{
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u8 *data = new u8[EFB_WIDTH * EFB_HEIGHT * 4];
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u8 *writePtr = data;
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for (int y = 0; y < EFB_HEIGHT; y++)
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for (int x = 0; x < EFB_WIDTH; x++) {
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u32 depth = EfbInterface::GetDepth(x, y);
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// depth to bgra
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*(writePtr++) = (depth >> 16) & 0xff;
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*(writePtr++) = (depth >> 8) & 0xff;
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*(writePtr++) = depth & 0xff;
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*(writePtr++) = 255;
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}
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(void)SaveTGA(filename, EFB_WIDTH, EFB_HEIGHT, data);
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delete []data;
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}
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void DrawObjectBuffer(s16 x, s16 y, u8 *color, int bufferBase, int subBuffer, const char *name)
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{
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int buffer = bufferBase + subBuffer;
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u32 offset = (x + y * EFB_WIDTH) * 4;
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u8 *dst = (u8*)&ObjectBuffer[buffer][offset];
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*(dst++) = color[2];
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*(dst++) = color[1];
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*(dst++) = color[0];
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*(dst++) = color[3];
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DrawnToBuffer[buffer] = true;
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ObjectBufferName[buffer] = name;
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BufferBase[buffer] = bufferBase;
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}
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void DrawTempBuffer(u8 *color, int buffer)
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{
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u8 *dst = (u8*)&TempBuffer[buffer];
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*(dst++) = color[2];
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*(dst++) = color[1];
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*(dst++) = color[0];
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*(dst++) = color[3];
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}
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void CopyTempBuffer(s16 x, s16 y, int bufferBase, int subBuffer, const char *name)
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{
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int buffer = bufferBase + subBuffer;
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u32 offset = (x + y * EFB_WIDTH);
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ObjectBuffer[buffer][offset] = TempBuffer[buffer];
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DrawnToBuffer[buffer] = true;
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ObjectBufferName[buffer] = name;
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BufferBase[buffer] = bufferBase;
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}
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void OnObjectBegin()
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{
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if (!g_bSkipCurrentFrame)
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{
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if (g_SWVideoConfig.bDumpTextures && stats.thisFrame.numDrawnObjects >= g_SWVideoConfig.drawStart && stats.thisFrame.numDrawnObjects < g_SWVideoConfig.drawEnd)
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DumpActiveTextures();
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if (g_SWVideoConfig.bHwRasterizer)
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{
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HwRasterizer::BeginTriangles();
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drawingHwTriangles = true;
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}
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}
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}
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void OnObjectEnd()
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{
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if (!g_bSkipCurrentFrame)
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{
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if (g_SWVideoConfig.bDumpObjects && stats.thisFrame.numDrawnObjects >= g_SWVideoConfig.drawStart && stats.thisFrame.numDrawnObjects < g_SWVideoConfig.drawEnd)
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DumpEfb(StringFromFormat("%sobject%i.tga", File::GetUserPath(D_DUMPFRAMES_IDX), stats.thisFrame.numDrawnObjects).c_str());
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if (g_SWVideoConfig.bHwRasterizer || drawingHwTriangles)
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{
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HwRasterizer::EndTriangles();
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drawingHwTriangles = false;
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}
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for (int i = 0; i < NumObjectBuffers; i++)
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{
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if (DrawnToBuffer[i])
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{
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DrawnToBuffer[i] = false;
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(void)SaveTGA(StringFromFormat("%sobject%i_%s(%i).tga", File::GetUserPath(D_DUMPFRAMES_IDX),
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stats.thisFrame.numDrawnObjects, ObjectBufferName[i], i - BufferBase[i]).c_str(), EFB_WIDTH, EFB_HEIGHT, ObjectBuffer[i]);
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memset(ObjectBuffer[i], 0, sizeof(ObjectBuffer[i]));
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}
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}
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stats.thisFrame.numDrawnObjects++;
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}
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}
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void OnFrameEnd()
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{
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if (!g_bSkipCurrentFrame)
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{
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if (g_SWVideoConfig.bDumpFrames)
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{
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DumpEfb(StringFromFormat("%sframe%i_color.tga", File::GetUserPath(D_DUMPFRAMES_IDX), stats.frameCount).c_str());
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DumpDepth(StringFromFormat("%sframe%i_depth.tga", File::GetUserPath(D_DUMPFRAMES_IDX), stats.frameCount).c_str());
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}
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}
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}
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}
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