2013-04-17 21:09:55 -06:00
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// Copyright 2013 Dolphin Emulator Project
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// Licensed under GPLv2
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// Refer to the license.txt file included.
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2009-02-22 23:17:57 -07:00
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2014-02-10 11:54:46 -07:00
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#pragma once
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2009-02-22 23:17:57 -07:00
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2011-02-01 21:40:27 -07:00
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#ifdef _WIN32
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#include <windows.h>
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#endif
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2014-02-17 03:18:15 -07:00
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#include "Common/Common.h"
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#include "Common/MathUtil.h"
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#include "VideoCommon/VideoBackendBase.h"
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2009-02-22 23:17:57 -07:00
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2009-02-28 12:02:37 -07:00
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// These are accurate (disregarding AA modes).
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enum
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{
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2009-02-22 23:17:57 -07:00
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EFB_WIDTH = 640,
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EFB_HEIGHT = 528,
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};
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2012-12-30 02:28:50 -07:00
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// XFB width is decided by EFB copy operation. The VI can do horizontal
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// scaling (TODO: emulate).
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const u32 MAX_XFB_WIDTH = EFB_WIDTH;
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2009-07-14 18:51:24 -06:00
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2012-12-30 02:28:50 -07:00
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// Although EFB height is 528, 574-line XFB's can be created either with
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// vertical scaling by the EFB copy operation or copying to multiple XFB's
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// that are next to each other in memory (TODO: handle that situation).
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const u32 MAX_XFB_HEIGHT = 574;
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2009-02-22 23:17:57 -07:00
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2009-07-14 18:51:24 -06:00
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// This structure should only be used to represent a rectangle in EFB
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// coordinates, where the origin is at the upper left and the frame dimensions
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// are 640 x 528.
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2011-09-05 14:04:28 -06:00
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typedef MathUtil::Rectangle<int> EFBRectangle;
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2009-02-22 23:17:57 -07:00
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2009-09-03 15:56:08 -06:00
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// This structure should only be used to represent a rectangle in standard target
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// coordinates, where the origin is at the lower left and the frame dimensions
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// depend on the resolution settings. Use Renderer::ConvertEFBRectangle to
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// convert an EFBRectangle to a TargetRectangle.
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struct TargetRectangle : public MathUtil::Rectangle<int>
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2009-09-13 02:21:35 -06:00
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{
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#ifdef _WIN32
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2011-02-13 19:18:03 -07:00
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// Only used by D3D backend.
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2010-11-17 19:21:26 -07:00
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const RECT *AsRECT() const
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{
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2009-09-13 02:21:35 -06:00
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// The types are binary compatible so this works.
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return (const RECT *)this;
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}
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2010-11-17 19:21:26 -07:00
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RECT *AsRECT()
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{
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// The types are binary compatible so this works.
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return (RECT *)this;
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}
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2009-09-13 02:21:35 -06:00
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#endif
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};
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2009-02-22 23:17:57 -07:00
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#ifdef _WIN32
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2012-08-20 05:12:49 -06:00
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#define PRIM_LOG(...) DEBUG_LOG(VIDEO, __VA_ARGS__)
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2009-02-22 23:17:57 -07:00
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#else
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#define PRIM_LOG(...) DEBUG_LOG(VIDEO, ##__VA_ARGS__)
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2009-02-22 23:17:57 -07:00
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#endif
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2013-02-21 03:45:29 -07:00
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// warning: mapping buffer should be disabled to use this
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2013-02-21 05:45:48 -07:00
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// #define LOG_VTX() DEBUG_LOG(VIDEO, "vtx: %f %f %f, ", ((float*)VertexManager::s_pCurBufferPointer)[-3], ((float*)VertexManager::s_pCurBufferPointer)[-2], ((float*)VertexManager::s_pCurBufferPointer)[-1]);
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2009-09-08 15:16:05 -06:00
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#define LOG_VTX()
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2009-02-22 23:17:57 -07:00
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2010-06-14 08:36:01 -06:00
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typedef enum
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{
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2011-06-10 13:16:09 -06:00
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API_OPENGL = 1,
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2014-02-09 14:03:16 -07:00
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API_D3D = 2,
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API_NONE = 3
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2010-06-14 08:36:01 -06:00
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} API_TYPE;
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2010-12-26 20:09:11 -07:00
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inline u32 RGBA8ToRGBA6ToRGBA8(u32 src)
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{
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u32 color = src;
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color &= 0xFCFCFCFC;
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color |= (color >> 6) & 0x03030303;
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return color;
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}
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2010-12-27 11:09:03 -07:00
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inline u32 RGBA8ToRGB565ToRGBA8(u32 src)
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2010-12-26 20:09:11 -07:00
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{
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2011-01-28 21:31:56 -07:00
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u32 color = (src & 0xF8FCF8);
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color |= (color >> 5) & 0x070007;
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color |= (color >> 6) & 0x000300;
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color |= 0xFF000000;
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2010-12-26 20:09:11 -07:00
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return color;
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}
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2010-12-27 11:09:03 -07:00
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inline u32 Z24ToZ16ToZ24(u32 src)
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{
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return (src & 0xFFFF00) | (src >> 16);
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}
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2010-12-26 20:09:11 -07:00
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2011-01-03 07:35:07 -07:00
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/* Returns the smallest power of 2 which is greater than or equal to num */
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inline u32 MakePow2(u32 num)
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{
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--num;
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num |= num >> 1;
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num |= num >> 2;
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num |= num >> 4;
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num |= num >> 8;
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num |= num >> 16;
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++num;
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return num;
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}
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2011-01-02 16:13:29 -07:00
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// returns the exponent of the smallest power of two which is greater than val
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2011-01-02 18:59:44 -07:00
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inline unsigned int GetPow2(unsigned int val)
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2011-01-02 16:13:29 -07:00
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{
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unsigned int ret = 0;
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for (; val; val >>= 1)
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++ret;
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return ret;
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}
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