mirror of
https://github.com/love2d/love.git
synced 2026-08-17 11:00:31 +02:00
vulkan: add support for custom depth/stencil tex
This commit is contained in:
@@ -240,6 +240,11 @@ void Graphics::present(void *screenshotCallbackdata)
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if (!isActive())
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return;
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if (isRenderTargetActive())
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throw love::Exception("present cannot be called while a render target is active.");
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deprecations.draw(this);
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submitGpuCommands(true);
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VkPresentInfoKHR presentInfo{};
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@@ -266,6 +271,13 @@ void Graphics::present(void *screenshotCallbackdata)
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else if (result != VK_SUCCESS)
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throw love::Exception("failed to present swap chain image");
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drawCalls = 0;
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renderTargetSwitchCount = 0;
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drawCallsBatched = 0;
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updatePendingReadbacks();
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updateTemporaryResources();
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currentFrame = (currentFrame + 1) % MAX_FRAMES_IN_FLIGHT;
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beginFrame();
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@@ -720,7 +732,7 @@ bool Graphics::dispatch(int x, int y, int z)
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vkCmdBindPipeline(commandBuffers.at(currentFrame), VK_PIPELINE_BIND_POINT_COMPUTE, computeShader->getComputePipeline());
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computeShader->cmdPushDescriptorSets(commandBuffers.at(currentFrame), currentFrame, VK_PIPELINE_BIND_POINT_COMPUTE);
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computeShader->cmdPushDescriptorSets(commandBuffers.at(currentFrame), static_cast<uint32_t>(currentFrame), VK_PIPELINE_BIND_POINT_COMPUTE);
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vkCmdDispatch(commandBuffers.at(currentFrame), static_cast<uint32_t>(x), static_cast<uint32_t>(y), static_cast<uint32_t>(z));
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@@ -1475,8 +1487,8 @@ VkPresentModeKHR Graphics::chooseSwapPresentMode(const std::vector<VkPresentMode
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{
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int vsync = Vulkan::getVsync();
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auto begin = availablePresentModes.begin();
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auto end = availablePresentModes.end();
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const auto begin = availablePresentModes.begin();
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const auto end = availablePresentModes.end();
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switch (vsync) {
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case -1:
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@@ -217,7 +217,7 @@ void Shader::unloadVolatile()
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descriptorSetsVector.clear();
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}
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const std::vector<VkPipelineShaderStageCreateInfo>& Shader::getShaderStages() const
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const std::vector<VkPipelineShaderStageCreateInfo> &Shader::getShaderStages() const
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{
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return shaderStages;
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}
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@@ -232,7 +232,7 @@ VkPipeline Shader::getComputePipeline() const
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return computePipeline;
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}
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static VkDescriptorImageInfo* createDescriptorImageInfo(graphics::Texture* texture, bool sampler)
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static VkDescriptorImageInfo* createDescriptorImageInfo(graphics::Texture *texture, bool sampler)
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{
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auto vkTexture = (Texture*)texture;
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@@ -409,13 +409,13 @@ void Shader::attach()
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vgfx->setComputeShader(this);
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}
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int Shader::getVertexAttributeIndex(const std::string& name)
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int Shader::getVertexAttributeIndex(const std::string &name)
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{
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auto it = attributes.find(name);
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return it == attributes.end() ? -1 : it->second;
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}
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const Shader::UniformInfo* Shader::getUniformInfo(const std::string& name) const
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const Shader::UniformInfo* Shader::getUniformInfo(const std::string &name) const
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{
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return &uniformInfos.at(name);
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}
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@@ -425,7 +425,13 @@ const Shader::UniformInfo* Shader::getUniformInfo(BuiltinUniform builtin) const
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return builtinUniformInfo[builtin];
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}
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void Shader::sendTextures(const UniformInfo* info, graphics::Texture** textures, int count)
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void Shader::updateUniform(const UniformInfo* info, int count)
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{
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if (current == this)
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Graphics::flushBatchedDrawsGlobal();
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}
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void Shader::sendTextures(const UniformInfo *info, graphics::Texture **textures, int count)
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{
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for (unsigned i = 0; i < count; i++)
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{
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@@ -447,7 +453,7 @@ void Shader::calculateUniformBufferSizeAligned()
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uniformBufferSizeAligned = factor * minAlignment;
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}
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void Shader::buildLocalUniforms(spirv_cross::Compiler& comp, const spirv_cross::SPIRType &type, size_t baseoff, const std::string &basename)
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void Shader::buildLocalUniforms(spirv_cross::Compiler &comp, const spirv_cross::SPIRType &type, size_t baseoff, const std::string &basename)
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{
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using namespace spirv_cross;
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@@ -1,8 +1,8 @@
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#pragma once
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// LÖVE
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#include <graphics/Shader.h>
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#include <graphics/vulkan/ShaderStage.h>
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#include "graphics/Shader.h"
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#include "graphics/vulkan/ShaderStage.h"
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#include "Vulkan.h"
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// Libraries
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@@ -39,7 +39,7 @@ public:
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VkPipeline getComputePipeline() const;
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const std::vector<VkPipelineShaderStageCreateInfo>& getShaderStages() const;
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const std::vector<VkPipelineShaderStageCreateInfo> &getShaderStages() const;
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const VkPipelineLayout getGraphicsPipelineLayout() const;
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@@ -51,26 +51,23 @@ public:
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std::string getWarnings() const override { return ""; }
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int getVertexAttributeIndex(const std::string& name) override;
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int getVertexAttributeIndex(const std::string &name) override;
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const UniformInfo* getUniformInfo(const std::string& name) const override;
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const UniformInfo* getUniformInfo(BuiltinUniform builtin) const override;
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const UniformInfo *getUniformInfo(const std::string &name) const override;
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const UniformInfo *getUniformInfo(BuiltinUniform builtin) const override;
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// Not needed right now, since the logic that links the values of the uniforms to the shader is done in cmdPushDescriptorSets
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// which gets called from the vulkan::Graphics class whenever a draw call happens.
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// I'll have to reevaluate the use of this function in the future though.
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void updateUniform(const UniformInfo* info, int count) override {}
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void updateUniform(const UniformInfo *info, int count) override;
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void sendTextures(const UniformInfo* info, graphics::Texture** textures, int count) override;
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void sendBuffers(const UniformInfo* info, love::graphics::Buffer** buffers, int count) override {}
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void sendTextures(const UniformInfo *info, graphics::Texture **textures, int count) override;
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void sendBuffers(const UniformInfo *info, love::graphics::Buffer **buffers, int count) override {}
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bool hasUniform(const std::string& name) const override;
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bool hasUniform(const std::string &name) const override;
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void setVideoTextures(graphics::Texture* ytexture, graphics::Texture* cbtexture, graphics::Texture* crtexture) override;
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void setVideoTextures(graphics::Texture *ytexture, graphics::Texture *cbtexture, graphics::Texture *crtexture) override;
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// fixme: use normal methods for this in the future.
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void setUniformData(BuiltinUniformData& data);
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void setMainTex(graphics::Texture* texture);
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void setUniformData(BuiltinUniformData &data);
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void setMainTex(graphics::Texture *texture);
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private:
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void calculateUniformBufferSizeAligned();
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@@ -79,10 +76,10 @@ private:
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void createPipelineLayout();
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void createStreamBuffers();
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void buildLocalUniforms(
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spirv_cross::Compiler& comp,
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const spirv_cross::SPIRType& type,
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spirv_cross::Compiler &comp,
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const spirv_cross::SPIRType &type,
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size_t baseoff,
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const std::string& basename);
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const std::string &basename);
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VkDescriptorSet allocateDescriptorSet();
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@@ -112,7 +109,7 @@ private:
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bool isCompute = false;
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std::unordered_map<std::string, graphics::Shader::UniformInfo> uniformInfos;
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UniformInfo* builtinUniformInfo[BUILTIN_MAX_ENUM];
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UniformInfo *builtinUniformInfo[BUILTIN_MAX_ENUM];
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std::unique_ptr<StreamBuffer> uniformBufferObjectBuffer;
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std::vector<uint8> localUniformStagingData;
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@@ -79,7 +79,11 @@ bool Texture::loadVolatile()
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auto commandBuffer = vgfx->getCommandBufferForDataTransfer();
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if (computeWrite)
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if (isPixelFormatDepthStencil(format))
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imageLayout = VK_IMAGE_LAYOUT_DEPTH_STENCIL_ATTACHMENT_OPTIMAL;
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else if (isPixelFormatDepth(format))
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imageLayout = VK_IMAGE_LAYOUT_DEPTH_ATTACHMENT_OPTIMAL;
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else if (computeWrite)
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imageLayout = VK_IMAGE_LAYOUT_GENERAL;
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else
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imageLayout = VK_IMAGE_LAYOUT_SHADER_READ_ONLY_OPTIMAL;
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@@ -103,7 +107,7 @@ bool Texture::loadVolatile()
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sliceCount = slices.getSliceCount();
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for (int slice = 0; slice < sliceCount; slice++)
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{
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auto* id = slices.get(slice, mip);
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auto *id = slices.get(slice, mip);
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if (id != nullptr)
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uploadImageData(id, mip, slice, 0, 0);
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}
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@@ -200,29 +204,54 @@ void Texture::clear()
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{
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auto commandBuffer = vgfx->getCommandBufferForDataTransfer();
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auto clearColor = getClearValue();
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VkImageSubresourceRange range{};
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range.aspectMask = VK_IMAGE_ASPECT_COLOR_BIT;
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if (isPixelFormatDepthStencil(format))
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range.aspectMask = VK_IMAGE_ASPECT_DEPTH_BIT | VK_IMAGE_ASPECT_STENCIL_BIT;
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else if (isPixelFormatDepth(format))
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range.aspectMask = VK_IMAGE_ASPECT_DEPTH_BIT;
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else
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range.aspectMask = VK_IMAGE_ASPECT_COLOR_BIT;
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range.baseMipLevel = 0;
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range.levelCount = VK_REMAINING_MIP_LEVELS;
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range.baseArrayLayer = 0;
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range.layerCount = VK_REMAINING_ARRAY_LAYERS;
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if (imageLayout != VK_IMAGE_LAYOUT_GENERAL)
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if (imageLayout == VK_IMAGE_LAYOUT_SHADER_READ_ONLY_OPTIMAL)
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{
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Vulkan::cmdTransitionImageLayout(commandBuffer, textureImage,
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VK_IMAGE_LAYOUT_SHADER_READ_ONLY_OPTIMAL, VK_IMAGE_LAYOUT_TRANSFER_DST_OPTIMAL,
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0, range.levelCount, 0, range.layerCount);
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Vulkan::cmdTransitionImageLayout(commandBuffer, textureImage,
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VK_IMAGE_LAYOUT_SHADER_READ_ONLY_OPTIMAL, VK_IMAGE_LAYOUT_TRANSFER_DST_OPTIMAL,
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0, VK_REMAINING_MIP_LEVELS, 0, VK_REMAINING_ARRAY_LAYERS);
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auto clearColor = getClearValue();
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vkCmdClearColorImage(commandBuffer, textureImage, VK_IMAGE_LAYOUT_TRANSFER_DST_OPTIMAL, &clearColor, 1, &range);
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Vulkan::cmdTransitionImageLayout(commandBuffer, textureImage,
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VK_IMAGE_LAYOUT_TRANSFER_DST_OPTIMAL, VK_IMAGE_LAYOUT_SHADER_READ_ONLY_OPTIMAL,
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0, range.levelCount, 0, range.layerCount);
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Vulkan::cmdTransitionImageLayout(commandBuffer, textureImage,
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VK_IMAGE_LAYOUT_TRANSFER_DST_OPTIMAL, VK_IMAGE_LAYOUT_SHADER_READ_ONLY_OPTIMAL,
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0, VK_REMAINING_MIP_LEVELS, 0, VK_REMAINING_ARRAY_LAYERS);
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}
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else if (imageLayout == VK_IMAGE_LAYOUT_GENERAL)
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{
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auto clearColor = getClearValue();
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vkCmdClearColorImage(commandBuffer, textureImage, VK_IMAGE_LAYOUT_GENERAL, &clearColor, 1, &range);
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}
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else
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vkCmdClearColorImage(commandBuffer, textureImage, VK_IMAGE_LAYOUT_GENERAL, &clearColor, 1, &range);
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{
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Vulkan::cmdTransitionImageLayout(commandBuffer, textureImage,
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imageLayout, VK_IMAGE_LAYOUT_TRANSFER_DST_OPTIMAL,
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0, VK_REMAINING_MIP_LEVELS, 0, VK_REMAINING_ARRAY_LAYERS);
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VkClearDepthStencilValue depthStencilColor{};
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depthStencilColor.depth = 0.0f;
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depthStencilColor.stencil = 0;
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vkCmdClearDepthStencilImage(commandBuffer, textureImage, VK_IMAGE_LAYOUT_TRANSFER_DST_OPTIMAL, &depthStencilColor, 1, &range);
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Vulkan::cmdTransitionImageLayout(commandBuffer, textureImage,
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VK_IMAGE_LAYOUT_TRANSFER_DST_OPTIMAL, imageLayout,
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0, VK_REMAINING_MIP_LEVELS, 0, VK_REMAINING_ARRAY_LAYERS);
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}
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}
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VkClearColorValue Texture::getClearValue()
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@@ -789,6 +789,33 @@ void Vulkan::cmdTransitionImageLayout(VkCommandBuffer commandBuffer, VkImage ima
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sourceStage = VK_PIPELINE_STAGE_TOP_OF_PIPE_BIT;
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destinationStage = VK_PIPELINE_STAGE_COMPUTE_SHADER_BIT | VK_PIPELINE_STAGE_FRAGMENT_SHADER_BIT | VK_PIPELINE_STAGE_TRANSFER_BIT;
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}
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else if (oldLayout == VK_IMAGE_LAYOUT_UNDEFINED &&
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(newLayout == VK_IMAGE_LAYOUT_DEPTH_STENCIL_ATTACHMENT_OPTIMAL || newLayout == VK_IMAGE_LAYOUT_DEPTH_ATTACHMENT_OPTIMAL))
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{
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barrier.srcAccessMask = 0;
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barrier.dstAccessMask = VK_ACCESS_DEPTH_STENCIL_ATTACHMENT_WRITE_BIT | VK_ACCESS_DEPTH_STENCIL_ATTACHMENT_READ_BIT;
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sourceStage = VK_PIPELINE_STAGE_TOP_OF_PIPE_BIT;
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destinationStage = VK_PIPELINE_STAGE_EARLY_FRAGMENT_TESTS_BIT | VK_PIPELINE_STAGE_LATE_FRAGMENT_TESTS_BIT;
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}
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else if ((oldLayout == VK_IMAGE_LAYOUT_DEPTH_STENCIL_ATTACHMENT_OPTIMAL || oldLayout == VK_IMAGE_LAYOUT_DEPTH_ATTACHMENT_OPTIMAL) &&
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newLayout == VK_IMAGE_LAYOUT_TRANSFER_DST_OPTIMAL)
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{
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barrier.srcAccessMask = VK_ACCESS_DEPTH_STENCIL_ATTACHMENT_WRITE_BIT | VK_ACCESS_DEPTH_STENCIL_ATTACHMENT_READ_BIT;
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barrier.dstAccessMask = VK_ACCESS_TRANSFER_WRITE_BIT;
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sourceStage = VK_PIPELINE_STAGE_EARLY_FRAGMENT_TESTS_BIT | VK_PIPELINE_STAGE_LATE_FRAGMENT_TESTS_BIT;
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destinationStage = VK_PIPELINE_STAGE_TRANSFER_BIT;
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}
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else if (oldLayout == VK_IMAGE_LAYOUT_TRANSFER_DST_OPTIMAL &&
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(newLayout == VK_IMAGE_LAYOUT_DEPTH_STENCIL_ATTACHMENT_OPTIMAL || newLayout == VK_IMAGE_LAYOUT_DEPTH_ATTACHMENT_OPTIMAL))
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{
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barrier.srcAccessMask = VK_ACCESS_TRANSFER_WRITE_BIT;
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barrier.dstAccessMask = VK_ACCESS_DEPTH_STENCIL_ATTACHMENT_WRITE_BIT | VK_ACCESS_DEPTH_STENCIL_ATTACHMENT_READ_BIT;
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sourceStage = VK_PIPELINE_STAGE_TRANSFER_BIT;
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destinationStage = VK_PIPELINE_STAGE_EARLY_FRAGMENT_TESTS_BIT | VK_PIPELINE_STAGE_LATE_FRAGMENT_TESTS_BIT;
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}
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else
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throw std::invalid_argument("unsupported layout transition!");
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@@ -801,6 +828,7 @@ void Vulkan::cmdTransitionImageLayout(VkCommandBuffer commandBuffer, VkImage ima
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1, &barrier
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);
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}
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} // vulkan
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} // graphics
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} // love
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