250 lines
5.9 KiB
C++
250 lines
5.9 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 "BPFunctions.h"
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#include "D3DBase.h"
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#include "VideoConfig.h"
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#include "Common.h"
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#include "TextureCache.h"
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#include "VertexManager.h"
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#include "VertexShaderManager.h"
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#include "Utils.h"
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#include "debugger/debugger.h"
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#include "TextureConverter.h"
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bool textureChanged[8];
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const bool renderFog = false;
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using namespace D3D;
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static const D3DCULL d3dCullModes[4] =
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{
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D3DCULL_NONE,
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D3DCULL_CCW,
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D3DCULL_CW,
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D3DCULL_CCW
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};
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static const D3DCMPFUNC d3dCmpFuncs[8] =
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{
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D3DCMP_NEVER,
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D3DCMP_LESS,
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D3DCMP_EQUAL,
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D3DCMP_LESSEQUAL,
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D3DCMP_GREATER,
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D3DCMP_NOTEQUAL,
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D3DCMP_GREATEREQUAL,
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D3DCMP_ALWAYS
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};
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static const D3DTEXTUREFILTERTYPE d3dMipFilters[4] =
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{
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D3DTEXF_NONE,
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D3DTEXF_POINT,
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D3DTEXF_LINEAR,
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D3DTEXF_LINEAR, //reserved
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};
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static const D3DTEXTUREADDRESS d3dClamps[4] =
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{
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D3DTADDRESS_CLAMP,
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D3DTADDRESS_WRAP,
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D3DTADDRESS_MIRROR,
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D3DTADDRESS_WRAP //reserved
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};
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namespace BPFunctions
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{
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void FlushPipeline()
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{
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VertexManager::Flush();
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}
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void SetGenerationMode(const BPCmd &bp)
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{
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D3D::SetRenderState(D3DRS_CULLMODE, d3dCullModes[bpmem.genMode.cullmode]);
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if (bpmem.genMode.cullmode == 3)
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{
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D3D::SetRenderState(D3DRS_COLORWRITEENABLE, 0);
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}
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else
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{
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DWORD write = 0;
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if (bpmem.blendmode.alphaupdate)
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write = D3DCOLORWRITEENABLE_ALPHA;
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if (bpmem.blendmode.colorupdate)
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write |= D3DCOLORWRITEENABLE_RED | D3DCOLORWRITEENABLE_GREEN | D3DCOLORWRITEENABLE_BLUE;
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D3D::SetRenderState(D3DRS_COLORWRITEENABLE, write);
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}
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}
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void SetScissor(const BPCmd &bp)
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{
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Renderer::SetScissorRect();
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}
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void SetLineWidth(const BPCmd &bp)
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{
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// We can't change line width in D3D unless we use ID3DXLine
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float psize = float(bpmem.lineptwidth.pointsize) * 6.0f;
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D3D::SetRenderState(D3DRS_POINTSIZE, *((DWORD*)&psize));
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}
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void SetDepthMode(const BPCmd &bp)
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{
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if (bpmem.zmode.testenable)
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{
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D3D::SetRenderState(D3DRS_ZENABLE, TRUE);
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D3D::SetRenderState(D3DRS_ZWRITEENABLE, bpmem.zmode.updateenable);
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D3D::SetRenderState(D3DRS_ZFUNC, d3dCmpFuncs[bpmem.zmode.func]);
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}
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else
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{
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D3D::SetRenderState(D3DRS_ZENABLE, FALSE);
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D3D::SetRenderState(D3DRS_ZWRITEENABLE, FALSE); // ??
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}
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}
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void SetBlendMode(const BPCmd &bp)
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{
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Renderer::SetBlendMode(false);
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}
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void SetDitherMode(const BPCmd &bp)
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{
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D3D::SetRenderState(D3DRS_DITHERENABLE,bpmem.blendmode.dither);
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}
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void SetLogicOpMode(const BPCmd &bp)
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{
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// Logic op blending. D3D can't do this but can fake some modes.
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}
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void SetColorMask(const BPCmd &bp)
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{
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Renderer::SetColorMask();
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}
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void CopyEFB(const BPCmd &bp, const EFBRectangle &rc, const u32 &address, const bool &fromZBuffer, const bool &isIntensityFmt, const u32 ©fmt, const int &scaleByHalf)
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{
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if (!g_ActiveConfig.bEFBCopyDisable)
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{
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//uncomment this to see the efb to ram work in progress
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/*if (g_ActiveConfig.bCopyEFBToRAM)
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{
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// To RAM, not implemented yet
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TextureConverter::EncodeToRam(address, fromZBuffer, isIntensityFmt, copyfmt, scaleByHalf, rc);
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}
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else // To D3D Texture*/
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{
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TextureCache::CopyRenderTargetToTexture(address, fromZBuffer, isIntensityFmt, copyfmt, scaleByHalf, rc);
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}
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}
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}
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void ClearScreen(const BPCmd &bp, const EFBRectangle &rc)
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{
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// it seems that the GC is able to alpha blend on color-fill
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// we cant do that so if alpha is != 255 we skip it
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bool colorEnable = bpmem.blendmode.colorupdate;
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bool alphaEnable = (bpmem.zcontrol.pixel_format == PIXELFMT_RGBA6_Z24 && bpmem.blendmode.alphaupdate);
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bool zEnable = bpmem.zmode.updateenable;
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if (colorEnable || alphaEnable || zEnable)
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{
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u32 color = (bpmem.clearcolorAR << 16) | bpmem.clearcolorGB;
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u32 z = bpmem.clearZValue;
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Renderer::ClearScreen(rc, colorEnable, alphaEnable, zEnable, color, z);
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}
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}
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void RestoreRenderState(const BPCmd &bp)
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{
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//Renderer::SetRenderMode(Renderer::RM_Normal);
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}
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bool GetConfig(const int &type)
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{
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switch (type)
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{
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case CONFIG_ISWII:
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return g_VideoInitialize.bWii;
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case CONFIG_DISABLEFOG:
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return false;
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case CONFIG_SHOWEFBREGIONS:
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return false;
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default:
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PanicAlert("GetConfig Error: Unknown Config Type!");
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return false;
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}
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}
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u8 *GetPointer(const u32 &address)
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{
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return g_VideoInitialize.pGetMemoryPointer(address);
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}
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void SetSamplerState(const BPCmd &bp)
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{
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const FourTexUnits &tex = bpmem.tex[(bp.address & 0xE0) == 0xA0];
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int stage = (bp.address & 3);//(addr>>4)&2;
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const TexMode0 &tm0 = tex.texMode0[stage];
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D3DTEXTUREFILTERTYPE min, mag, mip;
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if (g_ActiveConfig.bForceFiltering)
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{
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min = mag = mip = D3DTEXF_LINEAR;
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}
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else
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{
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min = (tm0.min_filter & 4) ? D3DTEXF_LINEAR : D3DTEXF_POINT;
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mag = tm0.mag_filter ? D3DTEXF_LINEAR : D3DTEXF_POINT;
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mip = d3dMipFilters[tm0.min_filter & 3];
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}
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if ((bp.address & 0xE0) == 0xA0)
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stage += 4;
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if (mag == D3DTEXF_LINEAR && min == D3DTEXF_LINEAR &&
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g_ActiveConfig.iMaxAnisotropy > 1)
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{
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min = D3DTEXF_ANISOTROPIC;
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}
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D3D::SetSamplerState(stage, D3DSAMP_MINFILTER, min);
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D3D::SetSamplerState(stage, D3DSAMP_MAGFILTER, mag);
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D3D::SetSamplerState(stage, D3DSAMP_MIPFILTER, mip);
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D3D::SetSamplerState(stage, D3DSAMP_ADDRESSU, d3dClamps[tm0.wrap_s]);
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D3D::SetSamplerState(stage, D3DSAMP_ADDRESSV, d3dClamps[tm0.wrap_t]);
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//wip
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//dev->SetSamplerState(stage,D3DSAMP_MIPMAPLODBIAS,tm0.lod_bias/4.0f);
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//char temp[256];
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//sprintf(temp,"lod %f",tm0.lod_bias/4.0f);
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//g_VideoInitialize.pLog(temp);
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}
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void SetInterlacingMode(const BPCmd &bp)
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{
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// TODO
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}
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}; |