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696e1b40b5
Ideally Common.h wouldn't be a header in the Common library, and instead be renamed to something else, like PlatformCompatibility.h or something, but even then, there's still some things in the header that don't really fall under that label This moves the version strings out to their own version header that doesn't dump a bunch of other unrelated things into scope, like what Common.h was doing. This also places them into the Common namespace, as opposed to letting them sit in the global namespace.
185 lines
5.2 KiB
C++
185 lines
5.2 KiB
C++
// Copyright 2009 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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#include <cstring>
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#include <memory>
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#include <string>
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#include <utility>
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#include "Common/CommonTypes.h"
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#include "VideoBackends/Software/Clipper.h"
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#include "VideoBackends/Software/DebugUtil.h"
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#include "VideoBackends/Software/EfbCopy.h"
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#include "VideoBackends/Software/EfbInterface.h"
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#include "VideoBackends/Software/Rasterizer.h"
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#include "VideoBackends/Software/SWOGLWindow.h"
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#include "VideoBackends/Software/SWRenderer.h"
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#include "VideoBackends/Software/SWTexture.h"
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#include "VideoBackends/Software/SWVertexLoader.h"
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#include "VideoBackends/Software/VideoBackend.h"
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#include "VideoCommon/FramebufferManagerBase.h"
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#include "VideoCommon/OnScreenDisplay.h"
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#include "VideoCommon/TextureCacheBase.h"
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#include "VideoCommon/VideoCommon.h"
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#include "VideoCommon/VideoConfig.h"
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#define VSYNC_ENABLED 0
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namespace SW
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{
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class PerfQuery : public PerfQueryBase
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{
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public:
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PerfQuery() {}
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~PerfQuery() {}
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void EnableQuery(PerfQueryGroup type) override {}
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void DisableQuery(PerfQueryGroup type) override {}
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void ResetQuery() override
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{
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memset(EfbInterface::perf_values, 0, sizeof(EfbInterface::perf_values));
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}
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u32 GetQueryResult(PerfQueryType type) override { return EfbInterface::perf_values[type]; }
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void FlushResults() override {}
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bool IsFlushed() const override { return true; }
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};
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class TextureCache : public TextureCacheBase
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{
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public:
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bool CompileShaders() override { return true; }
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void DeleteShaders() override {}
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void ConvertTexture(TCacheEntry* entry, TCacheEntry* unconverted, const void* palette,
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TLUTFormat format) override
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{
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}
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void CopyEFB(u8* dst, const EFBCopyParams& params, u32 native_width, u32 bytes_per_row,
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u32 num_blocks_y, u32 memory_stride, const EFBRectangle& src_rect,
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bool scale_by_half) override
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{
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EfbCopy::CopyEfb();
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}
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private:
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std::unique_ptr<AbstractTexture> CreateTexture(const TextureConfig& config) override
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{
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return std::make_unique<SWTexture>(config);
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}
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void CopyEFBToCacheEntry(TCacheEntry* entry, bool is_depth_copy, const EFBRectangle& src_rect,
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bool scale_by_half, unsigned int cbuf_id, const float* colmat) override
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{
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EfbCopy::CopyEfb();
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}
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};
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class XFBSource : public XFBSourceBase
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{
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void DecodeToTexture(u32 xfbAddr, u32 fbWidth, u32 fbHeight) override {}
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void CopyEFB(float Gamma) override {}
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};
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class FramebufferManager : public FramebufferManagerBase
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{
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std::unique_ptr<XFBSourceBase> CreateXFBSource(unsigned int target_width,
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unsigned int target_height,
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unsigned int layers) override
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{
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return std::make_unique<XFBSource>();
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}
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std::pair<u32, u32> GetTargetSize() const override { return std::make_pair(0, 0); }
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void CopyToRealXFB(u32 xfbAddr, u32 fbStride, u32 fbHeight, const EFBRectangle& sourceRc,
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float Gamma = 1.0f) override
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{
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EfbCopy::CopyEfb();
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}
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};
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std::string VideoSoftware::GetName() const
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{
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return "Software Renderer";
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}
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std::string VideoSoftware::GetDisplayName() const
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{
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return "Software Renderer";
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}
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void VideoSoftware::InitBackendInfo()
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{
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g_Config.backend_info.api_type = APIType::Nothing;
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g_Config.backend_info.MaxTextureSize = 16384;
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g_Config.backend_info.bSupports3DVision = false;
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g_Config.backend_info.bSupportsDualSourceBlend = true;
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g_Config.backend_info.bSupportsEarlyZ = true;
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g_Config.backend_info.bSupportsOversizedViewports = true;
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g_Config.backend_info.bSupportsPrimitiveRestart = false;
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g_Config.backend_info.bSupportsMultithreading = false;
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g_Config.backend_info.bSupportsComputeShaders = false;
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g_Config.backend_info.bSupportsInternalResolutionFrameDumps = false;
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g_Config.backend_info.bSupportsGPUTextureDecoding = false;
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g_Config.backend_info.bSupportsST3CTextures = false;
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g_Config.backend_info.bSupportsBPTCTextures = false;
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// aamodes
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g_Config.backend_info.AAModes = {1};
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}
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bool VideoSoftware::Initialize(void* window_handle)
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{
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InitBackendInfo();
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InitializeShared();
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SWOGLWindow::Init(window_handle);
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Clipper::Init();
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Rasterizer::Init();
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SWRenderer::Init();
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DebugUtil::Init();
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return true;
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}
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void VideoSoftware::Shutdown()
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{
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SWOGLWindow::Shutdown();
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ShutdownShared();
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}
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void VideoSoftware::Video_Cleanup()
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{
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CleanupShared();
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SWRenderer::Shutdown();
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DebugUtil::Shutdown();
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// The following calls are NOT Thread Safe
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// And need to be called from the video thread
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SWRenderer::Shutdown();
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g_framebuffer_manager.reset();
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g_texture_cache.reset();
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g_perf_query.reset();
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g_vertex_manager.reset();
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g_renderer.reset();
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}
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// This is called after Video_Initialize() from the Core
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void VideoSoftware::Video_Prepare()
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{
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g_renderer = std::make_unique<SWRenderer>();
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g_vertex_manager = std::make_unique<SWVertexLoader>();
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g_perf_query = std::make_unique<PerfQuery>();
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g_texture_cache = std::make_unique<TextureCache>();
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SWRenderer::Init();
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g_framebuffer_manager = std::make_unique<FramebufferManager>();
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}
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unsigned int VideoSoftware::PeekMessages()
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{
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return SWOGLWindow::s_instance->PeekMessages();
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}
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}
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