Refactored particle fire example
This commit is contained in:
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54801493aa
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52a7da9ace
1 changed files with 35 additions and 70 deletions
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@ -124,8 +124,9 @@ public:
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VulkanExample() : VulkanExampleBase(ENABLE_VALIDATION)
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VulkanExample() : VulkanExampleBase(ENABLE_VALIDATION)
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{
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{
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zoom = -90.0f;
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zoom = -75.0f;
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rotation = { -15.0f, 45.0f, 0.0f };
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rotation = { -15.0f, 45.0f, 0.0f };
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enableTextOverlay = true;
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title = "Vulkan Example - Particle system";
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title = "Vulkan Example - Particle system";
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zoomSpeed *= 1.5f;
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zoomSpeed *= 1.5f;
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timerSpeed *= 8.0f;
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timerSpeed *= 8.0f;
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@ -178,30 +179,19 @@ public:
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renderPassBeginInfo.clearValueCount = 2;
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renderPassBeginInfo.clearValueCount = 2;
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renderPassBeginInfo.pClearValues = clearValues;
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renderPassBeginInfo.pClearValues = clearValues;
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VkResult err;
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for (int32_t i = 0; i < drawCmdBuffers.size(); ++i)
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for (int32_t i = 0; i < drawCmdBuffers.size(); ++i)
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{
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{
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// Set target frame buffer
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// Set target frame buffer
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renderPassBeginInfo.framebuffer = frameBuffers[i];
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renderPassBeginInfo.framebuffer = frameBuffers[i];
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err = vkBeginCommandBuffer(drawCmdBuffers[i], &cmdBufInfo);
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VK_CHECK_RESULT(vkBeginCommandBuffer(drawCmdBuffers[i], &cmdBufInfo));
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assert(!err);
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vkCmdBeginRenderPass(drawCmdBuffers[i], &renderPassBeginInfo, VK_SUBPASS_CONTENTS_INLINE);
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vkCmdBeginRenderPass(drawCmdBuffers[i], &renderPassBeginInfo, VK_SUBPASS_CONTENTS_INLINE);
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VkViewport viewport = vkTools::initializers::viewport(
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VkViewport viewport = vkTools::initializers::viewport((float)width, (float)height, 0.0f, 1.0f);
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(float)width,
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(float)height,
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0.0f,
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1.0f);
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vkCmdSetViewport(drawCmdBuffers[i], 0, 1, &viewport);
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vkCmdSetViewport(drawCmdBuffers[i], 0, 1, &viewport);
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VkRect2D scissor = vkTools::initializers::rect2D(
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VkRect2D scissor = vkTools::initializers::rect2D(width, height, 0,0);
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width,
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height,
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0,
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0);
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vkCmdSetScissor(drawCmdBuffers[i], 0, 1, &scissor);
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vkCmdSetScissor(drawCmdBuffers[i], 0, 1, &scissor);
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// Environment
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// Environment
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@ -216,38 +206,10 @@ public:
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vkCmdEndRenderPass(drawCmdBuffers[i]);
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vkCmdEndRenderPass(drawCmdBuffers[i]);
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err = vkEndCommandBuffer(drawCmdBuffers[i]);
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VK_CHECK_RESULT(vkEndCommandBuffer(drawCmdBuffers[i]));
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assert(!err);
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}
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}
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}
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}
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void draw()
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{
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VkResult err;
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// Get next image in the swap chain (back/front buffer)
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err = swapChain.acquireNextImage(semaphores.presentComplete, ¤tBuffer);
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assert(!err);
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submitPostPresentBarrier(swapChain.buffers[currentBuffer].image);
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// Command buffer to be sumitted to the queue
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submitInfo.commandBufferCount = 1;
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submitInfo.pCommandBuffers = &drawCmdBuffers[currentBuffer];
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// Submit to queue
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err = vkQueueSubmit(queue, 1, &submitInfo, VK_NULL_HANDLE);
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assert(!err);
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submitPrePresentBarrier(swapChain.buffers[currentBuffer].image);
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err = swapChain.queuePresent(queue, currentBuffer, semaphores.renderComplete);
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assert(!err);
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err = vkQueueWaitIdle(queue);
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assert(!err);
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}
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float rnd(float range)
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float rnd(float range)
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{
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{
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return range * (rand() / double(RAND_MAX));
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return range * (rand() / double(RAND_MAX));
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@ -323,8 +285,7 @@ public:
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&particles.memory);
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&particles.memory);
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// Map the memory and store the pointer for reuse
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// Map the memory and store the pointer for reuse
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VkResult err = vkMapMemory(device, particles.memory, 0, particles.size, 0, &particles.mappedMemory);
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VK_CHECK_RESULT(vkMapMemory(device, particles.memory, 0, particles.size, 0, &particles.mappedMemory));
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assert(!err);
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}
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}
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void updateParticles()
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void updateParticles()
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@ -399,8 +360,7 @@ public:
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samplerCreateInfo.anisotropyEnable = VK_TRUE;
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samplerCreateInfo.anisotropyEnable = VK_TRUE;
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// Use a different border color (than the normal texture loader) for additive blending
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// Use a different border color (than the normal texture loader) for additive blending
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samplerCreateInfo.borderColor = VK_BORDER_COLOR_FLOAT_TRANSPARENT_BLACK;
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samplerCreateInfo.borderColor = VK_BORDER_COLOR_FLOAT_TRANSPARENT_BLACK;
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VkResult err = vkCreateSampler(device, &samplerCreateInfo, nullptr, &textures.particles.sampler);
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VK_CHECK_RESULT(vkCreateSampler(device, &samplerCreateInfo, nullptr, &textures.particles.sampler));
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assert(!err);
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}
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}
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void loadMeshes()
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void loadMeshes()
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@ -486,8 +446,7 @@ public:
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poolSizes.data(),
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poolSizes.data(),
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2);
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2);
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VkResult vkRes = vkCreateDescriptorPool(device, &descriptorPoolInfo, nullptr, &descriptorPool);
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VK_CHECK_RESULT(vkCreateDescriptorPool(device, &descriptorPoolInfo, nullptr, &descriptorPool));
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assert(!vkRes);
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}
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}
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void setupDescriptorSetLayout()
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void setupDescriptorSetLayout()
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@ -516,16 +475,14 @@ public:
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setLayoutBindings.data(),
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setLayoutBindings.data(),
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setLayoutBindings.size());
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setLayoutBindings.size());
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VkResult err = vkCreateDescriptorSetLayout(device, &descriptorLayout, nullptr, &descriptorSetLayout);
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VK_CHECK_RESULT(vkCreateDescriptorSetLayout(device, &descriptorLayout, nullptr, &descriptorSetLayout));
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assert(!err);
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VkPipelineLayoutCreateInfo pPipelineLayoutCreateInfo =
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VkPipelineLayoutCreateInfo pPipelineLayoutCreateInfo =
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vkTools::initializers::pipelineLayoutCreateInfo(
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vkTools::initializers::pipelineLayoutCreateInfo(
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&descriptorSetLayout,
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&descriptorSetLayout,
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1);
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1);
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err = vkCreatePipelineLayout(device, &pPipelineLayoutCreateInfo, nullptr, &pipelineLayout);
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VK_CHECK_RESULT(vkCreatePipelineLayout(device, &pPipelineLayoutCreateInfo, nullptr, &pipelineLayout));
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assert(!err);
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}
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}
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void setupDescriptorSets()
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void setupDescriptorSets()
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@ -536,8 +493,7 @@ public:
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&descriptorSetLayout,
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&descriptorSetLayout,
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1);
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1);
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VkResult vkRes = vkAllocateDescriptorSets(device, &allocInfo, &descriptorSet);
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VK_CHECK_RESULT(vkAllocateDescriptorSets(device, &allocInfo, &descriptorSet));
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assert(!vkRes);
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// Image descriptor for the color map texture
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// Image descriptor for the color map texture
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VkDescriptorImageInfo texDescriptorSmoke =
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VkDescriptorImageInfo texDescriptorSmoke =
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@ -576,8 +532,7 @@ public:
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vkUpdateDescriptorSets(device, writeDescriptorSets.size(), writeDescriptorSets.data(), 0, NULL);
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vkUpdateDescriptorSets(device, writeDescriptorSets.size(), writeDescriptorSets.data(), 0, NULL);
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// Environment
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// Environment
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vkRes = vkAllocateDescriptorSets(device, &allocInfo, &meshes.environment.descriptorSet);
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VK_CHECK_RESULT(vkAllocateDescriptorSets(device, &allocInfo, &meshes.environment.descriptorSet));
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assert(!vkRes);
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VkDescriptorImageInfo texDescriptorColorMap =
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VkDescriptorImageInfo texDescriptorColorMap =
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vkTools::initializers::descriptorImageInfo(
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vkTools::initializers::descriptorImageInfo(
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@ -701,8 +656,7 @@ public:
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blendAttachmentState.alphaBlendOp = VK_BLEND_OP_ADD;
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blendAttachmentState.alphaBlendOp = VK_BLEND_OP_ADD;
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blendAttachmentState.colorWriteMask = VK_COLOR_COMPONENT_R_BIT | VK_COLOR_COMPONENT_G_BIT | VK_COLOR_COMPONENT_B_BIT | VK_COLOR_COMPONENT_A_BIT;
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blendAttachmentState.colorWriteMask = VK_COLOR_COMPONENT_R_BIT | VK_COLOR_COMPONENT_G_BIT | VK_COLOR_COMPONENT_B_BIT | VK_COLOR_COMPONENT_A_BIT;
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VkResult err = vkCreateGraphicsPipelines(device, pipelineCache, 1, &pipelineCreateInfo, nullptr, &pipelines.particles);
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VK_CHECK_RESULT(vkCreateGraphicsPipelines(device, pipelineCache, 1, &pipelineCreateInfo, nullptr, &pipelines.particles));
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assert(!err);
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// Environment rendering pipeline (normal mapped)
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// Environment rendering pipeline (normal mapped)
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shaderStages[0] = loadShader(getAssetPath() + "shaders/particlefire/normalmap.vert.spv", VK_SHADER_STAGE_VERTEX_BIT);
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shaderStages[0] = loadShader(getAssetPath() + "shaders/particlefire/normalmap.vert.spv", VK_SHADER_STAGE_VERTEX_BIT);
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@ -711,8 +665,8 @@ public:
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blendAttachmentState.blendEnable = VK_FALSE;
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blendAttachmentState.blendEnable = VK_FALSE;
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depthStencilState.depthWriteEnable = VK_TRUE;
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depthStencilState.depthWriteEnable = VK_TRUE;
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inputAssemblyState.topology = VK_PRIMITIVE_TOPOLOGY_TRIANGLE_LIST;
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inputAssemblyState.topology = VK_PRIMITIVE_TOPOLOGY_TRIANGLE_LIST;
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err = vkCreateGraphicsPipelines(device, pipelineCache, 1, &pipelineCreateInfo, nullptr, &pipelines.environment);
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VK_CHECK_RESULT(vkCreateGraphicsPipelines(device, pipelineCache, 1, &pipelineCreateInfo, nullptr, &pipelines.environment));
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assert(!err);
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meshes.environment.pipeline = pipelines.environment;
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meshes.environment.pipeline = pipelines.environment;
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meshes.environment.pipelineLayout = pipelineLayout;
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meshes.environment.pipelineLayout = pipelineLayout;
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}
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}
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@ -723,6 +677,7 @@ public:
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// Vertex shader uniform buffer block
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// Vertex shader uniform buffer block
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createBuffer(
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createBuffer(
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VK_BUFFER_USAGE_UNIFORM_BUFFER_BIT,
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VK_BUFFER_USAGE_UNIFORM_BUFFER_BIT,
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VK_MEMORY_PROPERTY_HOST_VISIBLE_BIT | VK_MEMORY_PROPERTY_HOST_COHERENT_BIT,
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sizeof(uboVS),
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sizeof(uboVS),
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&uboVS,
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&uboVS,
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&uniformData.fire.buffer,
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&uniformData.fire.buffer,
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@ -732,6 +687,7 @@ public:
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// Vertex shader uniform buffer block
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// Vertex shader uniform buffer block
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createBuffer(
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createBuffer(
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VK_BUFFER_USAGE_UNIFORM_BUFFER_BIT,
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VK_BUFFER_USAGE_UNIFORM_BUFFER_BIT,
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VK_MEMORY_PROPERTY_HOST_VISIBLE_BIT | VK_MEMORY_PROPERTY_HOST_COHERENT_BIT,
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sizeof(uboEnv),
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sizeof(uboEnv),
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&uboEnv,
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&uboEnv,
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&uniformData.environment.buffer,
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&uniformData.environment.buffer,
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@ -748,8 +704,7 @@ public:
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uboEnv.lightPos.y = 0.0f;
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uboEnv.lightPos.y = 0.0f;
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uboEnv.lightPos.z = cos(timer * 2 * M_PI) * 1.5f;
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uboEnv.lightPos.z = cos(timer * 2 * M_PI) * 1.5f;
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uint8_t *pData;
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uint8_t *pData;
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VkResult err = vkMapMemory(device, uniformData.environment.memory, 0, sizeof(uboEnv), 0, (void **)&pData);
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VK_CHECK_RESULT(vkMapMemory(device, uniformData.environment.memory, 0, sizeof(uboEnv), 0, (void **)&pData));
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assert(!err);
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memcpy(pData, &uboEnv, sizeof(uboEnv));
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memcpy(pData, &uboEnv, sizeof(uboEnv));
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vkUnmapMemory(device, uniformData.environment.memory);
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vkUnmapMemory(device, uniformData.environment.memory);
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}
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}
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@ -770,8 +725,7 @@ public:
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uboVS.viewportDim = glm::vec2((float)width, (float)height);
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uboVS.viewportDim = glm::vec2((float)width, (float)height);
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uint8_t *pData;
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uint8_t *pData;
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VkResult err = vkMapMemory(device, uniformData.fire.memory, 0, sizeof(uboVS), 0, (void **)&pData);
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VK_CHECK_RESULT(vkMapMemory(device, uniformData.fire.memory, 0, sizeof(uboVS), 0, (void **)&pData));
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assert(!err);
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memcpy(pData, &uboVS, sizeof(uboVS));
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memcpy(pData, &uboVS, sizeof(uboVS));
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vkUnmapMemory(device, uniformData.fire.memory);
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vkUnmapMemory(device, uniformData.fire.memory);
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uboEnv.model = uboVS.model;
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uboEnv.model = uboVS.model;
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uboEnv.normal = glm::inverseTranspose(uboEnv.model);
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uboEnv.normal = glm::inverseTranspose(uboEnv.model);
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uboEnv.cameraPos = glm::vec4(0.0, 0.0, zoom, 0.0);
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uboEnv.cameraPos = glm::vec4(0.0, 0.0, zoom, 0.0);
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err = vkMapMemory(device, uniformData.environment.memory, 0, sizeof(uboEnv), 0, (void **)&pData);
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VK_CHECK_RESULT(vkMapMemory(device, uniformData.environment.memory, 0, sizeof(uboEnv), 0, (void **)&pData));
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assert(!err);
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memcpy(pData, &uboEnv, sizeof(uboEnv));
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memcpy(pData, &uboEnv, sizeof(uboEnv));
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vkUnmapMemory(device, uniformData.environment.memory);
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vkUnmapMemory(device, uniformData.environment.memory);
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}
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}
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void draw()
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{
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VulkanExampleBase::prepareFrame();
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// Command buffer to be sumitted to the queue
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submitInfo.commandBufferCount = 1;
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submitInfo.pCommandBuffers = &drawCmdBuffers[currentBuffer];
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// Submit to queue
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VK_CHECK_RESULT(vkQueueSubmit(queue, 1, &submitInfo, VK_NULL_HANDLE));
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VulkanExampleBase::submitFrame();
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}
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void prepare()
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void prepare()
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{
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{
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VulkanExampleBase::prepare();
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VulkanExampleBase::prepare();
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@ -806,9 +773,7 @@ public:
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{
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{
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if (!prepared)
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if (!prepared)
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return;
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return;
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vkDeviceWaitIdle(device);
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draw();
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draw();
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vkDeviceWaitIdle(device);
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if (!paused)
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if (!paused)
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{
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{
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updateUniformBufferLight();
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updateUniformBufferLight();
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