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https://github.com/yuzu-emu/yuzu-android.git
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Address feedback
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013b689153
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@ -199,10 +199,10 @@ void DrawManager::DrawTexture() {
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draw_texture_state.src_x0 = static_cast<float>(regs.draw_texture.src_x0) / 4096.f;
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draw_texture_state.src_x0 = static_cast<float>(regs.draw_texture.src_x0) / 4096.f;
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draw_texture_state.src_y0 = static_cast<float>(regs.draw_texture.src_y0) / 4096.f;
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draw_texture_state.src_y0 = static_cast<float>(regs.draw_texture.src_y0) / 4096.f;
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draw_texture_state.src_x1 =
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draw_texture_state.src_x1 =
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(static_cast<float>(regs.draw_texture.dx_du) / 4294967295.f) * dst_width +
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(static_cast<float>(regs.draw_texture.dx_du) / 4294967296.f) * dst_width +
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draw_texture_state.src_x0;
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draw_texture_state.src_x0;
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draw_texture_state.src_y1 =
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draw_texture_state.src_y1 =
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(static_cast<float>(regs.draw_texture.dy_dv) / 4294967295.f) * dst_height +
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(static_cast<float>(regs.draw_texture.dy_dv) / 4294967296.f) * dst_height +
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draw_texture_state.src_y0;
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draw_texture_state.src_y0;
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draw_texture_state.src_sampler = regs.draw_texture.src_sampler;
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draw_texture_state.src_sampler = regs.draw_texture.src_sampler;
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draw_texture_state.src_texture = regs.draw_texture.src_texture;
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draw_texture_state.src_texture = regs.draw_texture.src_texture;
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@ -32,4 +32,4 @@ void main() {
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float y = float((VERTEX_ID & 2) << 1);
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float y = float((VERTEX_ID & 2) << 1);
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gl_Position = vec4(x - 1.0, FLIPY * (y - 1.0), 0.0, 1.0);
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gl_Position = vec4(x - 1.0, FLIPY * (y - 1.0), 0.0, 1.0);
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texcoord = fma(vec2(x, y) / 2.0, tex_scale, tex_offset);
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texcoord = fma(vec2(x, y) / 2.0, tex_scale, tex_offset);
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}
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}
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@ -350,6 +350,51 @@ VkExtent2D GetConversionExtent(const ImageView& src_image_view) {
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.height = is_rescaled ? resolution.ScaleUp(height) : height,
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.height = is_rescaled ? resolution.ScaleUp(height) : height,
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};
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};
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}
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}
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void TransitionImageLayout(vk::CommandBuffer& cmdbuf, VkImage image, VkImageLayout target_layout,
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VkImageLayout source_layout = VK_IMAGE_LAYOUT_GENERAL) {
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constexpr VkFlags flags{VK_ACCESS_COLOR_ATTACHMENT_READ_BIT |
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VK_ACCESS_COLOR_ATTACHMENT_WRITE_BIT | VK_ACCESS_SHADER_READ_BIT};
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const VkImageMemoryBarrier barrier{
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.sType = VK_STRUCTURE_TYPE_IMAGE_MEMORY_BARRIER,
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.pNext = nullptr,
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.srcAccessMask = flags,
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.dstAccessMask = flags,
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.oldLayout = source_layout,
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.newLayout = target_layout,
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.srcQueueFamilyIndex = VK_QUEUE_FAMILY_IGNORED,
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.dstQueueFamilyIndex = VK_QUEUE_FAMILY_IGNORED,
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.image = image,
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.subresourceRange{
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.aspectMask = VK_IMAGE_ASPECT_COLOR_BIT,
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.baseMipLevel = 0,
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.levelCount = 1,
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.baseArrayLayer = 0,
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.layerCount = 1,
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},
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};
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cmdbuf.PipelineBarrier(VK_PIPELINE_STAGE_ALL_COMMANDS_BIT, VK_PIPELINE_STAGE_ALL_COMMANDS_BIT,
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0, barrier);
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}
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void BeginRenderPass(vk::CommandBuffer& cmdbuf, const Framebuffer* framebuffer) {
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const VkRenderPass render_pass = framebuffer->RenderPass();
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const VkFramebuffer framebuffer_handle = framebuffer->Handle();
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const VkExtent2D render_area = framebuffer->RenderArea();
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const VkRenderPassBeginInfo renderpass_bi{
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.sType = VK_STRUCTURE_TYPE_RENDER_PASS_BEGIN_INFO,
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.pNext = nullptr,
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.renderPass = render_pass,
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.framebuffer = framebuffer_handle,
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.renderArea{
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.offset{},
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.extent = render_area,
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},
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.clearValueCount = 0,
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.pClearValues = nullptr,
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};
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cmdbuf.BeginRenderPass(renderpass_bi, VK_SUBPASS_CONTENTS_INLINE);
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}
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} // Anonymous namespace
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} // Anonymous namespace
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BlitImageHelper::BlitImageHelper(const Device& device_, Scheduler& scheduler_,
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BlitImageHelper::BlitImageHelper(const Device& device_, Scheduler& scheduler_,
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@ -408,18 +453,20 @@ void BlitImageHelper::BlitColor(const Framebuffer* dst_framebuffer, VkImageView
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}
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}
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void BlitImageHelper::BlitColor(const Framebuffer* dst_framebuffer, VkImageView src_image_view,
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void BlitImageHelper::BlitColor(const Framebuffer* dst_framebuffer, VkImageView src_image_view,
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VkSampler src_sampler, const Region2D& dst_region,
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VkImage src_image, VkSampler src_sampler,
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const Region2D& src_region, const Extent3D& src_size) {
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const Region2D& dst_region, const Region2D& src_region,
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const Extent3D& src_size) {
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const BlitImagePipelineKey key{
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const BlitImagePipelineKey key{
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.renderpass = dst_framebuffer->RenderPass(),
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.renderpass = dst_framebuffer->RenderPass(),
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.operation = Tegra::Engines::Fermi2D::Operation::SrcCopy,
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.operation = Tegra::Engines::Fermi2D::Operation::SrcCopy,
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};
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};
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const VkPipelineLayout layout = *one_texture_pipeline_layout;
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const VkPipelineLayout layout = *one_texture_pipeline_layout;
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const VkPipeline pipeline = FindOrEmplaceColorPipeline(key);
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const VkPipeline pipeline = FindOrEmplaceColorPipeline(key);
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scheduler.RequestRenderpass(dst_framebuffer);
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scheduler.RequestOutsideRenderPassOperationContext();
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scheduler.Record([this, dst_region, src_region, src_size, pipeline, layout, src_sampler,
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scheduler.Record([this, dst_framebuffer, src_image_view, src_image, src_sampler, dst_region,
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src_image_view](vk::CommandBuffer cmdbuf) {
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src_region, src_size, pipeline, layout](vk::CommandBuffer cmdbuf) {
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// TODO: Barriers
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TransitionImageLayout(cmdbuf, src_image, VK_IMAGE_LAYOUT_READ_ONLY_OPTIMAL);
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BeginRenderPass(cmdbuf, dst_framebuffer);
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const VkDescriptorSet descriptor_set = one_texture_descriptor_allocator.Commit();
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const VkDescriptorSet descriptor_set = one_texture_descriptor_allocator.Commit();
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UpdateOneTextureDescriptorSet(device, descriptor_set, src_sampler, src_image_view);
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UpdateOneTextureDescriptorSet(device, descriptor_set, src_sampler, src_image_view);
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cmdbuf.BindPipeline(VK_PIPELINE_BIND_POINT_GRAPHICS, pipeline);
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cmdbuf.BindPipeline(VK_PIPELINE_BIND_POINT_GRAPHICS, pipeline);
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@ -427,8 +474,8 @@ void BlitImageHelper::BlitColor(const Framebuffer* dst_framebuffer, VkImageView
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nullptr);
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nullptr);
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BindBlitState(cmdbuf, layout, dst_region, src_region, src_size);
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BindBlitState(cmdbuf, layout, dst_region, src_region, src_size);
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cmdbuf.Draw(3, 1, 0, 0);
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cmdbuf.Draw(3, 1, 0, 0);
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cmdbuf.EndRenderPass();
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});
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});
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scheduler.InvalidateState();
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}
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}
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void BlitImageHelper::BlitDepthStencil(const Framebuffer* dst_framebuffer,
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void BlitImageHelper::BlitDepthStencil(const Framebuffer* dst_framebuffer,
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@ -39,8 +39,8 @@ public:
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Tegra::Engines::Fermi2D::Operation operation);
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Tegra::Engines::Fermi2D::Operation operation);
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void BlitColor(const Framebuffer* dst_framebuffer, VkImageView src_image_view,
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void BlitColor(const Framebuffer* dst_framebuffer, VkImageView src_image_view,
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VkSampler src_sampler, const Region2D& dst_region, const Region2D& src_region,
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VkImage src_image, VkSampler src_sampler, const Region2D& dst_region,
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const Extent3D& src_size);
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const Region2D& src_region, const Extent3D& src_size);
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void BlitDepthStencil(const Framebuffer* dst_framebuffer, VkImageView src_depth_view,
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void BlitDepthStencil(const Framebuffer* dst_framebuffer, VkImageView src_depth_view,
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VkImageView src_stencil_view, const Region2D& dst_region,
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VkImageView src_stencil_view, const Region2D& dst_region,
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@ -289,8 +289,9 @@ void RasterizerVulkan::DrawTexture() {
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.y = static_cast<s32>(draw_texture_state.src_y0)},
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.y = static_cast<s32>(draw_texture_state.src_y0)},
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Offset2D{.x = static_cast<s32>(draw_texture_state.src_x1),
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Offset2D{.x = static_cast<s32>(draw_texture_state.src_x1),
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.y = static_cast<s32>(draw_texture_state.src_y1)}};
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.y = static_cast<s32>(draw_texture_state.src_y1)}};
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blit_image.BlitColor(texture_cache.GetFramebuffer(), texture.RenderTarget(), sampler->Handle(),
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blit_image.BlitColor(texture_cache.GetFramebuffer(), texture.RenderTarget(),
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dst_region, src_region, texture.size);
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texture.ImageHandle(), sampler->Handle(), dst_region, src_region,
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texture.size);
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}
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}
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void RasterizerVulkan::Clear(u32 layer_count) {
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void RasterizerVulkan::Clear(u32 layer_count) {
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