mirror of
https://github.com/dolphin-emu/dolphin.git
synced 2025-01-25 23:41:19 +01:00
c98f8a96d2
in general cleanup and bugfix disable pierre patch for the moment as it causes problem in some games and hopefully fix the remaining missing textures for nvidia users in opengl. make the code in pixelshadergen looks nice and readable. D3D: this is a ultra experimental commit please check for regressions or error. make the efb Scale / super sampling level customizable to improve the output quality and let the user configure quality according to his hardware. is everyone likes this change will translate it to opengl please test git-svn-id: https://dolphin-emu.googlecode.com/svn/trunk@5612 8ced0084-cf51-0410-be5f-012b33b47a6e
336 lines
8.4 KiB
C++
336 lines
8.4 KiB
C++
// Copyright (C) 2003 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 "FileUtil.h"
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#include "D3DBase.h"
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#include "Statistics.h"
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#include "Profiler.h"
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#include "VertexManager.h"
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#include "OpcodeDecoding.h"
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#include "IndexGenerator.h"
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#include "VertexShaderManager.h"
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#include "VertexShaderCache.h"
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#include "PixelShaderManager.h"
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#include "PixelShaderCache.h"
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#include "Utils.h"
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#include "NativeVertexFormat.h"
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#include "NativeVertexWriter.h"
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#include "TextureCache.h"
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#include "BPStructs.h"
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#include "XFStructs.h"
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#include "debugger/debugger.h"
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using namespace D3D;
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// internal state for loading vertices
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extern NativeVertexFormat *g_nativeVertexFmt;
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namespace VertexManager
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{
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static int lastPrimitive;
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static u8 *LocalVBuffer;
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static u16 *TIBuffer;
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static u16 *LIBuffer;
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static u16 *PIBuffer;
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#define MAXVBUFFERSIZE 0x50000
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#define MAXIBUFFERSIZE 0xFFFF
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static bool Flushed=false;
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void CreateDeviceObjects();
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void DestroyDeviceObjects();
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bool Init()
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{
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LocalVBuffer = new u8[MAXVBUFFERSIZE];
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TIBuffer = new u16[MAXIBUFFERSIZE];
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LIBuffer = new u16[MAXIBUFFERSIZE];
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PIBuffer = new u16[MAXIBUFFERSIZE];
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s_pCurBufferPointer = LocalVBuffer;
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Flushed=false;
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IndexGenerator::Start(TIBuffer,LIBuffer,PIBuffer);
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return true;
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}
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void ResetBuffer()
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{
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s_pCurBufferPointer = LocalVBuffer;
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}
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void Shutdown()
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{
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DestroyDeviceObjects();
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delete [] LocalVBuffer;
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delete [] TIBuffer;
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delete [] LIBuffer;
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delete [] PIBuffer;
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ResetBuffer();
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}
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void CreateDeviceObjects()
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{
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}
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void DestroyDeviceObjects()
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{
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}
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void AddIndices(int _primitive, int _numVertices)
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{
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switch (_primitive)
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{
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case GX_DRAW_QUADS: IndexGenerator::AddQuads(_numVertices); break;
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case GX_DRAW_TRIANGLES: IndexGenerator::AddList(_numVertices); break;
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case GX_DRAW_TRIANGLE_STRIP: IndexGenerator::AddStrip(_numVertices); break;
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case GX_DRAW_TRIANGLE_FAN: IndexGenerator::AddFan(_numVertices); break;
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case GX_DRAW_LINE_STRIP: IndexGenerator::AddLineStrip(_numVertices); break;
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case GX_DRAW_LINES: IndexGenerator::AddLineList(_numVertices); break;
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case GX_DRAW_POINTS: IndexGenerator::AddPoints(_numVertices); break;
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}
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}
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int GetRemainingSize()
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{
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return MAXVBUFFERSIZE - (int)(s_pCurBufferPointer - LocalVBuffer);
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}
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int GetRemainingVertices(int primitive)
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{
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switch (primitive)
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{
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case GX_DRAW_QUADS:
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case GX_DRAW_TRIANGLES:
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case GX_DRAW_TRIANGLE_STRIP:
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case GX_DRAW_TRIANGLE_FAN:
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return (MAXIBUFFERSIZE - IndexGenerator::GetTriangleindexLen())/3;
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case GX_DRAW_LINE_STRIP:
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case GX_DRAW_LINES:
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return (MAXIBUFFERSIZE - IndexGenerator::GetLineindexLen())/2;
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case GX_DRAW_POINTS:
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return (MAXIBUFFERSIZE - IndexGenerator::GetPointindexLen());
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default: return 0;
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}
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}
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void AddVertices(int _primitive, int _numVertices)
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{
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if (_numVertices <= 0)
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return;
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switch (_primitive)
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{
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case GX_DRAW_QUADS:
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case GX_DRAW_TRIANGLES:
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case GX_DRAW_TRIANGLE_STRIP:
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case GX_DRAW_TRIANGLE_FAN:
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if(MAXIBUFFERSIZE - IndexGenerator::GetTriangleindexLen() < 3 * _numVertices)
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Flush();
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break;
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case GX_DRAW_LINE_STRIP:
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case GX_DRAW_LINES:
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if(MAXIBUFFERSIZE - IndexGenerator::GetLineindexLen() < 2 * _numVertices)
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Flush();
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break;
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case GX_DRAW_POINTS:
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if(MAXIBUFFERSIZE - IndexGenerator::GetPointindexLen() < _numVertices)
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Flush();
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break;
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default: return;
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}
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if(Flushed)
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{
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IndexGenerator::Start(TIBuffer,LIBuffer,PIBuffer);
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Flushed=false;
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}
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lastPrimitive = _primitive;
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ADDSTAT(stats.thisFrame.numPrims, _numVertices);
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INCSTAT(stats.thisFrame.numPrimitiveJoins);
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AddIndices(_primitive, _numVertices);
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}
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inline void DumpBadShaders()
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{
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#if defined(_DEBUG) || defined(DEBUGFAST)
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std::string error_shaders;
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error_shaders.append(VertexShaderCache::GetCurrentShaderCode());
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error_shaders.append(PixelShaderCache::GetCurrentShaderCode());
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char filename[512] = "bad_shader_combo_0.txt";
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int which = 0;
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while (File::Exists(filename))
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{
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which++;
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sprintf(filename, "bad_shader_combo_%i.txt", which);
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}
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File::WriteStringToFile(true, error_shaders, filename);
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PanicAlert("DrawIndexedPrimitiveUP failed. Shaders written to %s", filename);
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#endif
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}
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inline void Draw(int stride)
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{
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if(IndexGenerator::GetNumTriangles() > 0)
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{
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if (FAILED(D3D::dev->DrawIndexedPrimitiveUP(
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D3DPT_TRIANGLELIST,
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0, IndexGenerator::GetNumVerts(), IndexGenerator::GetNumTriangles(),
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TIBuffer,
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D3DFMT_INDEX16,
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LocalVBuffer,
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stride)))
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{
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DumpBadShaders();
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}
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INCSTAT(stats.thisFrame.numIndexedDrawCalls);
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}
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if(IndexGenerator::GetNumLines() > 0)
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{
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if (FAILED(D3D::dev->DrawIndexedPrimitiveUP(
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D3DPT_LINELIST,
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0, IndexGenerator::GetNumVerts(), IndexGenerator::GetNumLines(),
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LIBuffer,
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D3DFMT_INDEX16,
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LocalVBuffer,
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stride)))
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{
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DumpBadShaders();
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}
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INCSTAT(stats.thisFrame.numIndexedDrawCalls);
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}
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if(IndexGenerator::GetNumPoints() > 0)
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{
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if (FAILED(D3D::dev->DrawIndexedPrimitiveUP(
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D3DPT_POINTLIST,
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0, IndexGenerator::GetNumVerts(), IndexGenerator::GetNumPoints(),
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PIBuffer,
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D3DFMT_INDEX16,
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LocalVBuffer,
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stride)))
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{
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DumpBadShaders();
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}
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INCSTAT(stats.thisFrame.numIndexedDrawCalls);
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}
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}
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void Flush()
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{
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if (LocalVBuffer == s_pCurBufferPointer) return;
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if(Flushed) return;
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Flushed=true;
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DVSTARTPROFILE();
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u32 usedtextures = 0;
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for (u32 i = 0; i < (u32)bpmem.genMode.numtevstages + 1; ++i) {
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if (bpmem.tevorders[i/2].getEnable(i & 1))
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usedtextures |= 1 << bpmem.tevorders[i/2].getTexMap(i & 1);
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}
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if (bpmem.genMode.numindstages > 0) {
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for (u32 i = 0; i < (u32)bpmem.genMode.numtevstages + 1; ++i) {
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if (bpmem.tevind[i].IsActive() && bpmem.tevind[i].bt < bpmem.genMode.numindstages) {
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usedtextures |= 1 << bpmem.tevindref.getTexMap(bpmem.tevind[i].bt);
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}
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}
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}
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u32 nonpow2tex = 0;
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for (int i = 0; i < 8; i++)
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{
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if (usedtextures & (1 << i)) {
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Renderer::SetSamplerState(i & 3, i >> 2);
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FourTexUnits &tex = bpmem.tex[i >> 2];
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TextureCache::TCacheEntry* tentry = TextureCache::Load(i,
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(tex.texImage3[i&3].image_base/* & 0x1FFFFF*/) << 5,
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tex.texImage0[i&3].width + 1, tex.texImage0[i&3].height + 1,
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tex.texImage0[i&3].format, tex.texTlut[i&3].tmem_offset<<9,
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tex.texTlut[i&3].tlut_format,
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(tex.texMode0[i&3].min_filter & 3) && (tex.texMode0[i&3].min_filter != 8) && g_ActiveConfig.bUseNativeMips,
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(tex.texMode1[i&3].max_lod >> 5));
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if (tentry) {
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PixelShaderManager::SetTexDims(i, tentry->w, tentry->h, 0, 0);
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if (tentry->scaleX != 1.0f || tentry->scaleY != 1.0f)
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PixelShaderManager::SetCustomTexScale(i, tentry->scaleX, tentry->scaleY);
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}
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else
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{
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DEBUGGER_PAUSE_LOG_AT(NEXT_ERROR,true,{printf("Fail to load texture\n");});
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ERROR_LOG(VIDEO, "error loading texture");
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}
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}
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}
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PixelShaderManager::SetTexturesUsed(0);
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// set global constants
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VertexShaderManager::SetConstants();
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PixelShaderManager::SetConstants();
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if (!PixelShaderCache::SetShader(false))
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{
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DEBUGGER_PAUSE_LOG_AT(NEXT_ERROR,true,{printf("Fail to set pixel shader\n");});
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goto shader_fail;
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}
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if (!VertexShaderCache::SetShader(g_nativeVertexFmt->m_components))
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{
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DEBUGGER_PAUSE_LOG_AT(NEXT_ERROR,true,{printf("Fail to set vertex shader\n");});
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goto shader_fail;
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}
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int stride = g_nativeVertexFmt->GetVertexStride();
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g_nativeVertexFmt->SetupVertexPointers();
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Draw(stride);
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if (bpmem.dstalpha.enable && bpmem.blendmode.alphaupdate)
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{
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DWORD write = 0;
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if (!PixelShaderCache::SetShader(true))
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{
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DEBUGGER_PAUSE_LOG_AT(NEXT_ERROR,true,{printf("Fail to set pixel shader\n");});
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goto shader_fail;
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}
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// update alpha only
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D3D::ChangeRenderState(D3DRS_COLORWRITEENABLE, D3DCOLORWRITEENABLE_ALPHA);
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D3D::ChangeRenderState(D3DRS_ALPHABLENDENABLE, false);
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Draw(stride);
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D3D::RefreshRenderState(D3DRS_COLORWRITEENABLE);
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D3D::RefreshRenderState(D3DRS_ALPHABLENDENABLE);
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}
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DEBUGGER_PAUSE_AT(NEXT_FLUSH,true);
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shader_fail:
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ResetBuffer();
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}
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} // namespace
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