mirror of
https://github.com/GPUOpen-LibrariesAndSDKs/VulkanMemoryAllocator.git
synced 2024-11-22 15:04:34 +00:00
Better tracking of allocations.
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parent
4d63e9d886
commit
71f3d067c5
@ -233,25 +233,22 @@ private:
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uint32_t m_VmaFrameIndex = 0;
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// Any of these handles null means it was created in original but couldn't be created now.
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// Any of these handles null can mean it was created in original but couldn't be created now.
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struct Pool
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{
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VmaPool pool;
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};
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struct Buffer
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struct Allocation
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{
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VmaAllocation allocation;
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VkBuffer buffer;
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VmaAllocation allocation;
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};
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struct Image
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{
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VkImage image;
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VmaAllocation allocation;
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};
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std::unordered_map<uint64_t, Pool> m_Pools;
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std::unordered_map<uint64_t, Buffer> m_Buffers;
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std::unordered_map<uint64_t, Image> m_Images;
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std::unordered_map<uint64_t, Allocation> m_Allocations;
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void Destroy(const Allocation& alloc);
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// Increments warning counter. Returns true if warning message should be printed.
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bool IssueWarning() { return m_WarningCount++ < MAX_WARNINGS_TO_SHOW; }
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@ -263,12 +260,15 @@ private:
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// If parmeter count doesn't match, issues warning and returns false.
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bool ValidateFunctionParameterCount(size_t lineNumber, const CsvSplit& csvSplit, size_t expectedParamCount, bool lastUnbound);
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void CreatePool(size_t lineNumber, const CsvSplit& csvSplit);
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void DestroyPool(size_t lineNumber, const CsvSplit& csvSplit);
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void CreateBuffer(size_t lineNumber, const CsvSplit& csvSplit);
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void DestroyBuffer(size_t lineNumber, const CsvSplit& csvSplit);
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void CreateImage(size_t lineNumber, const CsvSplit& csvSplit);
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void DestroyImage(size_t lineNumber, const CsvSplit& csvSplit);
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void ExecuteCreatePool(size_t lineNumber, const CsvSplit& csvSplit);
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void ExecuteDestroyPool(size_t lineNumber, const CsvSplit& csvSplit);
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void ExecuteCreateBuffer(size_t lineNumber, const CsvSplit& csvSplit);
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void ExecuteDestroyBuffer(size_t lineNumber, const CsvSplit& csvSplit) { DestroyAllocation(lineNumber, csvSplit); }
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void ExecuteCreateImage(size_t lineNumber, const CsvSplit& csvSplit);
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void ExecuteDestroyImage(size_t lineNumber, const CsvSplit& csvSplit) { DestroyAllocation(lineNumber, csvSplit); }
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void ExecuteFreeMemory(size_t lineNumber, const CsvSplit& csvSplit) { DestroyAllocation(lineNumber, csvSplit); }
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void DestroyAllocation(size_t lineNumber, const CsvSplit& csvSplit);
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};
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Player::Player()
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@ -322,9 +322,9 @@ void Player::ExecuteLine(size_t lineNumber, const StrRange& line)
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}
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}
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else if(StrRangeEq(functionName, "vmaCreatePool"))
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CreatePool(lineNumber, csvSplit);
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ExecuteCreatePool(lineNumber, csvSplit);
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else if(StrRangeEq(functionName, "vmaDestroyPool"))
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DestroyPool(lineNumber, csvSplit);
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ExecuteDestroyPool(lineNumber, csvSplit);
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else if(StrRangeEq(functionName, "vmaSetAllocationUserData"))
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{
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if(ValidateFunctionParameterCount(lineNumber, csvSplit, 2, true))
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@ -333,13 +333,15 @@ void Player::ExecuteLine(size_t lineNumber, const StrRange& line)
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}
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}
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else if(StrRangeEq(functionName, "vmaCreateBuffer"))
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CreateBuffer(lineNumber, csvSplit);
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ExecuteCreateBuffer(lineNumber, csvSplit);
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else if(StrRangeEq(functionName, "vmaDestroyBuffer"))
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DestroyBuffer(lineNumber, csvSplit);
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ExecuteDestroyBuffer(lineNumber, csvSplit);
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else if(StrRangeEq(functionName, "vmaCreateImage"))
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CreateImage(lineNumber, csvSplit);
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ExecuteCreateImage(lineNumber, csvSplit);
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else if(StrRangeEq(functionName, "vmaDestroyImage"))
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DestroyImage(lineNumber, csvSplit);
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ExecuteDestroyImage(lineNumber, csvSplit);
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else if(StrRangeEq(functionName, "vmaFreeMemory"))
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ExecuteFreeMemory(lineNumber, csvSplit);
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else
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{
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if(IssueWarning())
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@ -353,6 +355,21 @@ void Player::ExecuteLine(size_t lineNumber, const StrRange& line)
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}
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}
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void Player::Destroy(const Allocation& alloc)
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{
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if(alloc.buffer)
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{
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assert(alloc.image == VK_NULL_HANDLE);
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vmaDestroyBuffer(m_Allocator, alloc.buffer, alloc.allocation);
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}
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else if(alloc.image)
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{
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vmaDestroyImage(m_Allocator, alloc.image, alloc.allocation);
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}
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else
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vmaFreeMemory(m_Allocator, alloc.allocation);
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}
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int Player::InitVulkan()
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{
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printf("Initializing Vulkan...\n");
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@ -540,24 +557,16 @@ int Player::InitVulkan()
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void Player::FinalizeVulkan()
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{
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if(!m_Images.empty())
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if(!m_Allocations.empty())
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{
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printf("WARNING: Images not destroyed: %zu.\n", m_Images.size());
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printf("WARNING: Allocations not destroyed: %zu.\n", m_Allocations.size());
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for(const auto it : m_Images)
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for(const auto it : m_Allocations)
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{
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vmaDestroyImage(m_Allocator, it.second.image, it.second.allocation);
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Destroy(it.second);
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}
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}
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if(!m_Buffers.empty())
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{
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printf("WARNING: Buffers not destroyed: %zu.\n", m_Buffers.size());
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for(const auto it : m_Buffers)
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{
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vmaDestroyBuffer(m_Allocator, it.second.buffer, it.second.allocation);
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}
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m_Allocations.clear();
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}
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if(!m_Pools.empty())
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@ -565,9 +574,9 @@ void Player::FinalizeVulkan()
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printf("WARNING: Pools not destroyed: %zu.\n", m_Pools.size());
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for(const auto it : m_Pools)
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{
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vmaDestroyPool(m_Allocator, it.second.pool);
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}
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m_Pools.clear();
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}
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vkDeviceWaitIdle(m_Device);
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@ -641,7 +650,7 @@ bool Player::ValidateFunctionParameterCount(size_t lineNumber, const CsvSplit& c
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return ok;
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}
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void Player::CreatePool(size_t lineNumber, const CsvSplit& csvSplit)
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void Player::ExecuteCreatePool(size_t lineNumber, const CsvSplit& csvSplit)
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{
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if(ValidateFunctionParameterCount(lineNumber, csvSplit, 7, false))
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{
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@ -682,7 +691,7 @@ void Player::CreatePool(size_t lineNumber, const CsvSplit& csvSplit)
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}
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}
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void Player::DestroyPool(size_t lineNumber, const CsvSplit& csvSplit)
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void Player::ExecuteDestroyPool(size_t lineNumber, const CsvSplit& csvSplit)
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{
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if(ValidateFunctionParameterCount(lineNumber, csvSplit, 1, false))
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{
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@ -710,7 +719,7 @@ void Player::DestroyPool(size_t lineNumber, const CsvSplit& csvSplit)
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}
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}
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void Player::CreateBuffer(size_t lineNumber, const CsvSplit& csvSplit)
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void Player::ExecuteCreateBuffer(size_t lineNumber, const CsvSplit& csvSplit)
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{
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if(ValidateFunctionParameterCount(lineNumber, csvSplit, 12, true))
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{
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@ -743,15 +752,15 @@ void Player::CreateBuffer(size_t lineNumber, const CsvSplit& csvSplit)
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}
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}
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Buffer bufDesc = {};
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VkResult res = vmaCreateBuffer(m_Allocator, &bufCreateInfo, &allocCreateInfo, &bufDesc.buffer, &bufDesc.allocation, nullptr);
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Allocation allocDesc = {};
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VkResult res = vmaCreateBuffer(m_Allocator, &bufCreateInfo, &allocCreateInfo, &allocDesc.buffer, &allocDesc.allocation, nullptr);
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if(res == VK_SUCCESS)
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{
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const auto existingIt = m_Buffers.find(origPtr);
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if(existingIt != m_Buffers.end())
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const auto existingIt = m_Allocations.find(origPtr);
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if(existingIt != m_Allocations.end())
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{
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if(IssueWarning())
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printf("Line %zu: Allocation %llX for buffer already exists.\n", lineNumber, origPtr);
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printf("Line %zu: Allocation %llX already exists.\n", lineNumber, origPtr);
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}
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}
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else
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@ -759,7 +768,7 @@ void Player::CreateBuffer(size_t lineNumber, const CsvSplit& csvSplit)
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if(IssueWarning())
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printf("Line %zu: vmaCreateBuffer failed (%u).\n", lineNumber, res);
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}
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m_Buffers[origPtr] = bufDesc;
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m_Allocations[origPtr] = allocDesc;
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}
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else
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{
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@ -769,7 +778,7 @@ void Player::CreateBuffer(size_t lineNumber, const CsvSplit& csvSplit)
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}
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}
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void Player::DestroyBuffer(size_t lineNumber, const CsvSplit& csvSplit)
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void Player::DestroyAllocation(size_t lineNumber, const CsvSplit& csvSplit)
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{
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if(ValidateFunctionParameterCount(lineNumber, csvSplit, 1, false))
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{
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@ -777,16 +786,16 @@ void Player::DestroyBuffer(size_t lineNumber, const CsvSplit& csvSplit)
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if(StrRangeToPtr(csvSplit.GetRange(FIRST_PARAM_INDEX), origAllocPtr))
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{
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const auto it = m_Buffers.find(origAllocPtr);
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if(it != m_Buffers.end())
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const auto it = m_Allocations.find(origAllocPtr);
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if(it != m_Allocations.end())
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{
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vmaDestroyBuffer(m_Allocator, it->second.buffer, it->second.allocation);
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m_Buffers.erase(it);
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Destroy(it->second);
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m_Allocations.erase(it);
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}
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else
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{
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if(IssueWarning())
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printf("Line %zu: Allocation %llX for buffer not found.\n", lineNumber, origAllocPtr);
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printf("Line %zu: Allocation %llX not found.\n", lineNumber, origAllocPtr);
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}
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}
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else
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@ -797,7 +806,7 @@ void Player::DestroyBuffer(size_t lineNumber, const CsvSplit& csvSplit)
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}
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}
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void Player::CreateImage(size_t lineNumber, const CsvSplit& csvSplit)
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void Player::ExecuteCreateImage(size_t lineNumber, const CsvSplit& csvSplit)
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{
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if(ValidateFunctionParameterCount(lineNumber, csvSplit, 21, true))
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{
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@ -839,15 +848,15 @@ void Player::CreateImage(size_t lineNumber, const CsvSplit& csvSplit)
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}
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}
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Image imageDesc = {};
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VkResult res = vmaCreateImage(m_Allocator, &imageCreateInfo, &allocCreateInfo, &imageDesc.image, &imageDesc.allocation, nullptr);
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Allocation allocDesc = {};
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VkResult res = vmaCreateImage(m_Allocator, &imageCreateInfo, &allocCreateInfo, &allocDesc.image, &allocDesc.allocation, nullptr);
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if(res == VK_SUCCESS)
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{
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const auto existingIt = m_Images.find(origPtr);
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if(existingIt != m_Images.end())
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const auto existingIt = m_Allocations.find(origPtr);
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if(existingIt != m_Allocations.end())
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{
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if(IssueWarning())
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printf("Line %zu: Allocation %llX for image already exists.\n", lineNumber, origPtr);
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printf("Line %zu: Allocation %llX already exists.\n", lineNumber, origPtr);
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}
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}
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else
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@ -855,7 +864,7 @@ void Player::CreateImage(size_t lineNumber, const CsvSplit& csvSplit)
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if(IssueWarning())
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printf("Line %zu: vmaCreateImage failed (%u).\n", lineNumber, res);
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}
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m_Images[origPtr] = imageDesc;
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m_Allocations[origPtr] = allocDesc;
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}
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else
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{
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@ -865,34 +874,6 @@ void Player::CreateImage(size_t lineNumber, const CsvSplit& csvSplit)
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}
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}
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void Player::DestroyImage(size_t lineNumber, const CsvSplit& csvSplit)
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{
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if(ValidateFunctionParameterCount(lineNumber, csvSplit, 1, false))
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{
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uint64_t origAllocPtr = 0;
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if(StrRangeToPtr(csvSplit.GetRange(FIRST_PARAM_INDEX), origAllocPtr))
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{
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const auto it = m_Images.find(origAllocPtr);
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if(it != m_Images.end())
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{
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vmaDestroyImage(m_Allocator, it->second.image, it->second.allocation);
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m_Images.erase(it);
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}
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else
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{
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if(IssueWarning())
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printf("Line %zu: Allocation %llX for image not found.\n", lineNumber, origAllocPtr);
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}
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}
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else
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{
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if(IssueWarning())
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printf("Line %zu: Invalid parameters for vmaDestroyBuffer.\n", lineNumber);
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}
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}
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}
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////////////////////////////////////////////////////////////////////////////////
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// Main functions
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@ -9927,8 +9927,20 @@ void vmaFreeMemory(
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VmaAllocator allocator,
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VmaAllocation allocation)
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{
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Crash();
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VMA_ASSERT(allocator);
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{
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VmaMutexLock lock(g_FileMutex, true);
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EnsureFile();
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LARGE_INTEGER counter; QueryPerformanceCounter(&counter);
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const DWORD threadId = GetCurrentThreadId();
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const double time = (double)(counter.QuadPart - g_StartCounter.QuadPart) / (double)g_Freq.QuadPart;
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const uint32_t frameIndex = allocator->GetCurrentFrameIndex();
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fprintf(g_File, "%u,%.3f,%u,vmaFreeMemory,%p\n", threadId, time, frameIndex,
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allocation);
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fflush(g_File);
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}
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VMA_DEBUG_LOG("vmaFreeMemory");
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VMA_DEBUG_GLOBAL_MUTEX_LOCK
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if(allocation != VK_NULL_HANDLE)
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