WIP Binding vertex buffers
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@@ -865,3 +865,16 @@ void KRMeshManager::primeVBO(KRVBOData *vbo_data)
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m_vbosActive[vbo_data->m_data] = vbo_data;
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}
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}
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VkBuffer& KRMeshManager::KRVBOData::getVertexBuffer()
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{
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assert(m_is_vbo_ready);
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return m_allocations->vertex_buffer;
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}
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VkBuffer& KRMeshManager::KRVBOData::getIndexBuffer()
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{
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assert(m_is_vbo_ready);
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return m_allocations->index_buffer;
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}
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@@ -111,6 +111,9 @@ public:
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float getStreamPriority();
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void _swapHandles();
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VkBuffer& getVertexBuffer();
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VkBuffer& getIndexBuffer();
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private:
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KRMeshManager *m_manager;
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@@ -184,12 +184,32 @@ KRPipeline::KRPipeline(KRContext& context, KrDeviceHandle deviceHandle, VkFormat
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// failed! TODO - Error handling
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}
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// TODO - Make bindings dynamic...
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VkVertexInputBindingDescription bindingDescription{};
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bindingDescription.binding = 0;
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bindingDescription.stride = sizeof(float) * 3 + sizeof(uint16_t) * 2;
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bindingDescription.inputRate = VK_VERTEX_INPUT_RATE_VERTEX;
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const int kMaxVertexDescriptions = 16;
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VkVertexInputAttributeDescription vertexAttributeDescriptions[kMaxVertexDescriptions]{};
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// position
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vertexAttributeDescriptions[0].binding = 0;
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vertexAttributeDescriptions[0].location = 0;
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vertexAttributeDescriptions[0].format = VK_FORMAT_R32G32B32_SFLOAT;
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vertexAttributeDescriptions[0].offset = 0;
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// uv
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vertexAttributeDescriptions[1].binding = 0;
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vertexAttributeDescriptions[1].location = 1;
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vertexAttributeDescriptions[1].format = VK_FORMAT_R32G32_SFLOAT;
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vertexAttributeDescriptions[1].offset = sizeof(float) * 3;
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VkPipelineVertexInputStateCreateInfo vertexInputInfo{};
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vertexInputInfo.sType = VK_STRUCTURE_TYPE_PIPELINE_VERTEX_INPUT_STATE_CREATE_INFO;
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vertexInputInfo.vertexBindingDescriptionCount = 0;
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vertexInputInfo.pVertexBindingDescriptions = nullptr; // TODO
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vertexInputInfo.vertexAttributeDescriptionCount = 0;
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vertexInputInfo.pVertexAttributeDescriptions = nullptr; // TODO
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vertexInputInfo.vertexBindingDescriptionCount = 1;
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vertexInputInfo.pVertexBindingDescriptions = &bindingDescription;
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vertexInputInfo.vertexAttributeDescriptionCount = 2;
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vertexInputInfo.pVertexAttributeDescriptions = vertexAttributeDescriptions;
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VkPipelineInputAssemblyStateCreateInfo inputAssembly{};
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inputAssembly.sType = VK_STRUCTURE_TYPE_PIPELINE_INPUT_ASSEMBLY_STATE_CREATE_INFO;
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@@ -141,6 +141,9 @@ void KRPresentationThread::renderFrame()
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VkCommandBuffer commandBuffer = device.m_graphicsCommandBuffers[imageIndex];
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KRPipeline* testPipeline = m_pContext->getPipelineManager()->get("vulkan_test");
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KRMeshManager::KRVBOData& testVertices = getContext().getMeshManager()->KRENGINE_VBO_DATA_2D_SQUARE_VERTICES;
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bool haveMesh = testVertices.isVBOReady();
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VkCommandBufferBeginInfo beginInfo{};
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beginInfo.sType = VK_STRUCTURE_TYPE_COMMAND_BUFFER_BEGIN_INFO;
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beginInfo.flags = 0;
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@@ -164,7 +167,14 @@ void KRPresentationThread::renderFrame()
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vkCmdBeginRenderPass(commandBuffer, &renderPassInfo, VK_SUBPASS_CONTENTS_INLINE);
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vkCmdBindPipeline(commandBuffer, VK_PIPELINE_BIND_POINT_GRAPHICS, testPipeline->getPipeline());
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vkCmdDraw(commandBuffer, 3, 1, 0, 0);
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if (haveMesh) {
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VkBuffer vertexBuffers[] = { testVertices.getVertexBuffer() };
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VkDeviceSize offsets[] = { 0 };
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vkCmdBindVertexBuffers(commandBuffer, 0, 1, vertexBuffers, offsets);
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vkCmdDraw(commandBuffer, 3, 1, 0, 0);
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}
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vkCmdEndRenderPass(commandBuffer);
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if (vkEndCommandBuffer(commandBuffer) != VK_SUCCESS) {
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m_activeState = PresentThreadState::error;
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