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fermi_2d: Implement simple copies with AccelerateSurfaceCopy.
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parent
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3 changed files with 35 additions and 23 deletions
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@ -4,11 +4,13 @@
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#include "core/memory.h"
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#include "video_core/engines/fermi_2d.h"
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#include "video_core/rasterizer_interface.h"
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#include "video_core/textures/decoders.h"
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namespace Tegra::Engines {
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Fermi2D::Fermi2D(MemoryManager& memory_manager) : memory_manager(memory_manager) {}
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Fermi2D::Fermi2D(VideoCore::RasterizerInterface& rasterizer, MemoryManager& memory_manager)
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: memory_manager(memory_manager), rasterizer{rasterizer} {}
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void Fermi2D::WriteReg(u32 method, u32 value) {
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ASSERT_MSG(method < Regs::NUM_REGS,
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@ -44,27 +46,31 @@ void Fermi2D::HandleSurfaceCopy() {
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u32 src_bytes_per_pixel = RenderTargetBytesPerPixel(regs.src.format);
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u32 dst_bytes_per_pixel = RenderTargetBytesPerPixel(regs.dst.format);
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if (regs.src.linear == regs.dst.linear) {
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// If the input layout and the output layout are the same, just perform a raw copy.
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ASSERT(regs.src.BlockHeight() == regs.dst.BlockHeight());
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Memory::CopyBlock(dest_cpu, source_cpu,
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src_bytes_per_pixel * regs.dst.width * regs.dst.height);
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return;
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}
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if (!rasterizer.AccelerateSurfaceCopy(regs.src, regs.dst)) {
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// TODO(bunnei): The below implementation currently will not get hit, as
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// AccelerateSurfaceCopy tries to always copy and will always return success. This should be
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// changed once we properly support flushing.
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u8* src_buffer = Memory::GetPointer(source_cpu);
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u8* dst_buffer = Memory::GetPointer(dest_cpu);
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if (!regs.src.linear && regs.dst.linear) {
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// If the input is tiled and the output is linear, deswizzle the input and copy it over.
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Texture::CopySwizzledData(regs.src.width, regs.src.height, src_bytes_per_pixel,
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dst_bytes_per_pixel, src_buffer, dst_buffer, true,
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regs.src.BlockHeight());
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} else {
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// If the input is linear and the output is tiled, swizzle the input and copy it over.
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Texture::CopySwizzledData(regs.src.width, regs.src.height, src_bytes_per_pixel,
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dst_bytes_per_pixel, dst_buffer, src_buffer, false,
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regs.dst.BlockHeight());
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if (regs.src.linear == regs.dst.linear) {
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// If the input layout and the output layout are the same, just perform a raw copy.
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ASSERT(regs.src.BlockHeight() == regs.dst.BlockHeight());
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Memory::CopyBlock(dest_cpu, source_cpu,
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src_bytes_per_pixel * regs.dst.width * regs.dst.height);
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return;
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}
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u8* src_buffer = Memory::GetPointer(source_cpu);
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u8* dst_buffer = Memory::GetPointer(dest_cpu);
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if (!regs.src.linear && regs.dst.linear) {
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// If the input is tiled and the output is linear, deswizzle the input and copy it over.
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Texture::CopySwizzledData(regs.src.width, regs.src.height, src_bytes_per_pixel,
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dst_bytes_per_pixel, src_buffer, dst_buffer, true,
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regs.src.BlockHeight());
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} else {
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// If the input is linear and the output is tiled, swizzle the input and copy it over.
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Texture::CopySwizzledData(regs.src.width, regs.src.height, src_bytes_per_pixel,
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dst_bytes_per_pixel, dst_buffer, src_buffer, false,
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regs.dst.BlockHeight());
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}
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}
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}
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@ -12,6 +12,10 @@
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#include "video_core/gpu.h"
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#include "video_core/memory_manager.h"
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namespace VideoCore {
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class RasterizerInterface;
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}
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namespace Tegra::Engines {
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#define FERMI2D_REG_INDEX(field_name) \
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@ -19,7 +23,7 @@ namespace Tegra::Engines {
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class Fermi2D final {
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public:
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explicit Fermi2D(MemoryManager& memory_manager);
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explicit Fermi2D(VideoCore::RasterizerInterface& rasterizer, MemoryManager& memory_manager);
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~Fermi2D() = default;
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/// Write the value to the register identified by method.
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@ -94,6 +98,8 @@ public:
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MemoryManager& memory_manager;
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private:
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VideoCore::RasterizerInterface& rasterizer;
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/// Performs the copy from the source surface to the destination surface as configured in the
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/// registers.
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void HandleSurfaceCopy();
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@ -25,7 +25,7 @@ u32 FramebufferConfig::BytesPerPixel(PixelFormat format) {
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GPU::GPU(VideoCore::RasterizerInterface& rasterizer) {
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memory_manager = std::make_unique<Tegra::MemoryManager>();
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maxwell_3d = std::make_unique<Engines::Maxwell3D>(rasterizer, *memory_manager);
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fermi_2d = std::make_unique<Engines::Fermi2D>(*memory_manager);
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fermi_2d = std::make_unique<Engines::Fermi2D>(rasterizer, *memory_manager);
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maxwell_compute = std::make_unique<Engines::MaxwellCompute>();
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maxwell_dma = std::make_unique<Engines::MaxwellDMA>(*memory_manager);
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kepler_memory = std::make_unique<Engines::KeplerMemory>(*memory_manager);
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