mirror of
https://github.com/GPUOpen-LibrariesAndSDKs/VulkanMemoryAllocator
synced 2024-11-05 12:20:07 +00:00
Bumped recording file format version to 1.5.
(Partial cherry pick from branch sparse_binding_example.)
This commit is contained in:
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0d601d8789
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@ -23,7 +23,7 @@ Formats with only minor version incremented are backward compatible.
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VmaReplay application supports all older versions.
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Current version is:
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1,4
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1,5
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# Configuration
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@ -230,10 +230,14 @@ If `VMA_ALLOCATION_CREATE_USER_DATA_COPY_STRING_BIT` was used with the allocatio
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It may contain additional commas.
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It should not contain end-of-line characters - results are then undefined.
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**list of (...)** (min format version: 1.5)
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An ordered sequence of values of some type, separated by single space.
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# Example file
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Vulkan Memory Allocator,Calls recording
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1,4
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1,5
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Config,Begin
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PhysicalDevice,apiVersion,4198477
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PhysicalDevice,driverVersion,8388653
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@ -1,5 +1,29 @@
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#include "Common.h"
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bool StrRangeToPtrList(const StrRange& s, std::vector<uint64_t>& out)
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{
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out.clear();
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StrRange currRange = { s.beg, nullptr };
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while(currRange.beg < s.end)
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{
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currRange.end = currRange.beg;
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while(currRange.end < s.end && *currRange.end != ' ')
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{
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++currRange.end;
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}
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uint64_t ptr = 0;
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if(!StrRangeToPtr(currRange, ptr))
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{
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return false;
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}
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out.push_back(ptr);
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currRange.beg = currRange.end + 1;
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}
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return true;
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}
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////////////////////////////////////////////////////////////////////////////////
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// LineSplit class
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@ -111,6 +111,7 @@ inline bool StrRangeToBool(const StrRange& s, bool& out)
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return true;
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}
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bool StrRangeToPtrList(const StrRange& s, std::vector<uint64_t>& out);
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class LineSplit
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{
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@ -150,7 +150,7 @@ static size_t g_DefragmentAfterLineNextIndex = 0;
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static bool ValidateFileVersion()
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{
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if(GetVersionMajor(g_FileVersion) == 1 &&
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GetVersionMinor(g_FileVersion) <= 4)
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GetVersionMinor(g_FileVersion) <= 5)
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{
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return true;
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}
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@ -200,7 +200,7 @@ public:
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void RegisterCreateImage(uint32_t usage, uint32_t tiling);
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void RegisterCreateBuffer(uint32_t usage);
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void RegisterCreatePool();
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void RegisterCreateAllocation();
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void RegisterCreateAllocation(size_t allocCount = 1);
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void UpdateMemStats(const VmaStats& currStats);
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@ -369,9 +369,9 @@ void Statistics::RegisterCreatePool()
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++m_PoolCreationCount;
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}
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void Statistics::RegisterCreateAllocation()
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void Statistics::RegisterCreateAllocation(size_t allocCount)
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{
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++m_AllocationCreationCount;
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m_AllocationCreationCount += allocCount;
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}
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void Statistics::UpdateMemStats(const VmaStats& currStats)
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@ -966,10 +966,10 @@ private:
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};
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struct Allocation
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{
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uint32_t allocationFlags;
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VmaAllocation allocation;
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VkBuffer buffer;
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VkImage image;
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uint32_t allocationFlags = 0;
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VmaAllocation allocation = VK_NULL_HANDLE;
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VkBuffer buffer = VK_NULL_HANDLE;
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VkImage image = VK_NULL_HANDLE;
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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, Allocation> m_Allocations;
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@ -1014,10 +1014,10 @@ private:
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void ExecuteDestroyPool(size_t lineNumber, const CsvSplit& csvSplit);
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void ExecuteSetAllocationUserData(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) { m_Stats.RegisterFunctionCall(VMA_FUNCTION::DestroyBuffer); DestroyAllocation(lineNumber, csvSplit); }
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void ExecuteDestroyBuffer(size_t lineNumber, const CsvSplit& csvSplit) { m_Stats.RegisterFunctionCall(VMA_FUNCTION::DestroyBuffer); DestroyAllocation(lineNumber, csvSplit, "vmaDestroyBuffer"); }
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void ExecuteCreateImage(size_t lineNumber, const CsvSplit& csvSplit);
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void ExecuteDestroyImage(size_t lineNumber, const CsvSplit& csvSplit) { m_Stats.RegisterFunctionCall(VMA_FUNCTION::DestroyImage); DestroyAllocation(lineNumber, csvSplit); }
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void ExecuteFreeMemory(size_t lineNumber, const CsvSplit& csvSplit) { m_Stats.RegisterFunctionCall(VMA_FUNCTION::FreeMemory); DestroyAllocation(lineNumber, csvSplit); }
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void ExecuteDestroyImage(size_t lineNumber, const CsvSplit& csvSplit) { m_Stats.RegisterFunctionCall(VMA_FUNCTION::DestroyImage); DestroyAllocation(lineNumber, csvSplit, "vmaDestroyImage"); }
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void ExecuteFreeMemory(size_t lineNumber, const CsvSplit& csvSplit) { m_Stats.RegisterFunctionCall(VMA_FUNCTION::FreeMemory); DestroyAllocation(lineNumber, csvSplit, "vmaFreeMemory"); }
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void ExecuteCreateLostAllocation(size_t lineNumber, const CsvSplit& csvSplit);
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void ExecuteAllocateMemory(size_t lineNumber, const CsvSplit& csvSplit);
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void ExecuteAllocateMemoryForBufferOrImage(size_t lineNumber, const CsvSplit& csvSplit, OBJECT_TYPE objType);
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@ -1030,7 +1030,7 @@ private:
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void ExecuteMakePoolAllocationsLost(size_t lineNumber, const CsvSplit& csvSplit);
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void ExecuteResizeAllocation(size_t lineNumber, const CsvSplit& csvSplit);
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void DestroyAllocation(size_t lineNumber, const CsvSplit& csvSplit);
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void DestroyAllocation(size_t lineNumber, const CsvSplit& csvSplit, const char* functionName);
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void PrintStats(const VmaStats& stats, const char* suffix);
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void PrintStatInfo(const VmaStatInfo& info);
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@ -1135,45 +1135,45 @@ void Player::ExecuteLine(size_t lineNumber, const StrRange& line)
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// Nothing.
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}
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}
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else if(StrRangeEq(functionName, "vmaCreatePool"))
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else if(StrRangeEq(functionName, VMA_FUNCTION_NAMES[(uint32_t)VMA_FUNCTION::CreatePool]))
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ExecuteCreatePool(lineNumber, csvSplit);
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else if(StrRangeEq(functionName, "vmaDestroyPool"))
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else if(StrRangeEq(functionName, VMA_FUNCTION_NAMES[(uint32_t)VMA_FUNCTION::DestroyPool]))
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ExecuteDestroyPool(lineNumber, csvSplit);
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else if(StrRangeEq(functionName, "vmaSetAllocationUserData"))
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else if(StrRangeEq(functionName, VMA_FUNCTION_NAMES[(uint32_t)VMA_FUNCTION::SetAllocationUserData]))
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ExecuteSetAllocationUserData(lineNumber, csvSplit);
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else if(StrRangeEq(functionName, "vmaCreateBuffer"))
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else if(StrRangeEq(functionName, VMA_FUNCTION_NAMES[(uint32_t)VMA_FUNCTION::CreateBuffer]))
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ExecuteCreateBuffer(lineNumber, csvSplit);
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else if(StrRangeEq(functionName, "vmaDestroyBuffer"))
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else if(StrRangeEq(functionName, VMA_FUNCTION_NAMES[(uint32_t)VMA_FUNCTION::DestroyBuffer]))
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ExecuteDestroyBuffer(lineNumber, csvSplit);
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else if(StrRangeEq(functionName, "vmaCreateImage"))
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else if(StrRangeEq(functionName, VMA_FUNCTION_NAMES[(uint32_t)VMA_FUNCTION::CreateImage]))
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ExecuteCreateImage(lineNumber, csvSplit);
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else if(StrRangeEq(functionName, "vmaDestroyImage"))
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else if(StrRangeEq(functionName, VMA_FUNCTION_NAMES[(uint32_t)VMA_FUNCTION::DestroyImage]))
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ExecuteDestroyImage(lineNumber, csvSplit);
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else if(StrRangeEq(functionName, "vmaFreeMemory"))
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else if(StrRangeEq(functionName, VMA_FUNCTION_NAMES[(uint32_t)VMA_FUNCTION::FreeMemory]))
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ExecuteFreeMemory(lineNumber, csvSplit);
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else if(StrRangeEq(functionName, "vmaCreateLostAllocation"))
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else if(StrRangeEq(functionName, VMA_FUNCTION_NAMES[(uint32_t)VMA_FUNCTION::CreateLostAllocation]))
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ExecuteCreateLostAllocation(lineNumber, csvSplit);
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else if(StrRangeEq(functionName, "vmaAllocateMemory"))
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else if(StrRangeEq(functionName, VMA_FUNCTION_NAMES[(uint32_t)VMA_FUNCTION::AllocateMemory]))
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ExecuteAllocateMemory(lineNumber, csvSplit);
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else if(StrRangeEq(functionName, "vmaAllocateMemoryForBuffer"))
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else if(StrRangeEq(functionName, VMA_FUNCTION_NAMES[(uint32_t)VMA_FUNCTION::AllocateMemoryForBuffer]))
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ExecuteAllocateMemoryForBufferOrImage(lineNumber, csvSplit, OBJECT_TYPE::BUFFER);
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else if(StrRangeEq(functionName, "vmaAllocateMemoryForImage"))
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else if(StrRangeEq(functionName, VMA_FUNCTION_NAMES[(uint32_t)VMA_FUNCTION::AllocateMemoryForImage]))
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ExecuteAllocateMemoryForBufferOrImage(lineNumber, csvSplit, OBJECT_TYPE::IMAGE);
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else if(StrRangeEq(functionName, "vmaMapMemory"))
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else if(StrRangeEq(functionName, VMA_FUNCTION_NAMES[(uint32_t)VMA_FUNCTION::MapMemory]))
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ExecuteMapMemory(lineNumber, csvSplit);
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else if(StrRangeEq(functionName, "vmaUnmapMemory"))
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else if(StrRangeEq(functionName, VMA_FUNCTION_NAMES[(uint32_t)VMA_FUNCTION::UnmapMemory]))
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ExecuteUnmapMemory(lineNumber, csvSplit);
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else if(StrRangeEq(functionName, "vmaFlushAllocation"))
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else if(StrRangeEq(functionName, VMA_FUNCTION_NAMES[(uint32_t)VMA_FUNCTION::FlushAllocation]))
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ExecuteFlushAllocation(lineNumber, csvSplit);
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else if(StrRangeEq(functionName, "vmaInvalidateAllocation"))
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else if(StrRangeEq(functionName, VMA_FUNCTION_NAMES[(uint32_t)VMA_FUNCTION::InvalidateAllocation]))
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ExecuteInvalidateAllocation(lineNumber, csvSplit);
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else if(StrRangeEq(functionName, "vmaTouchAllocation"))
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else if(StrRangeEq(functionName, VMA_FUNCTION_NAMES[(uint32_t)VMA_FUNCTION::TouchAllocation]))
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ExecuteTouchAllocation(lineNumber, csvSplit);
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else if(StrRangeEq(functionName, "vmaGetAllocationInfo"))
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else if(StrRangeEq(functionName, VMA_FUNCTION_NAMES[(uint32_t)VMA_FUNCTION::GetAllocationInfo]))
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ExecuteGetAllocationInfo(lineNumber, csvSplit);
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else if(StrRangeEq(functionName, "vmaMakePoolAllocationsLost"))
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else if(StrRangeEq(functionName, VMA_FUNCTION_NAMES[(uint32_t)VMA_FUNCTION::MakePoolAllocationsLost]))
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ExecuteMakePoolAllocationsLost(lineNumber, csvSplit);
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else if(StrRangeEq(functionName, "vmaResizeAllocation"))
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else if(StrRangeEq(functionName, VMA_FUNCTION_NAMES[(uint32_t)VMA_FUNCTION::ResizeAllocation]))
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ExecuteResizeAllocation(lineNumber, csvSplit);
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else
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{
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@ -2241,7 +2241,7 @@ void Player::ExecuteCreateBuffer(size_t lineNumber, const CsvSplit& csvSplit)
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}
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}
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void Player::DestroyAllocation(size_t lineNumber, const CsvSplit& csvSplit)
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void Player::DestroyAllocation(size_t lineNumber, const CsvSplit& csvSplit, const char* functionName)
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{
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if(ValidateFunctionParameterCount(lineNumber, csvSplit, 1, false))
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{
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@ -2271,7 +2271,7 @@ void Player::DestroyAllocation(size_t lineNumber, const CsvSplit& csvSplit)
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{
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if(IssueWarning())
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{
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printf("Line %zu: Invalid parameters for vmaDestroyBuffer.\n", lineNumber);
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printf("Line %zu: Invalid parameters for %s.\n", lineNumber, functionName);
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}
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}
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}
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@ -6397,6 +6397,7 @@ private:
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int64_t m_StartCounter;
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void GetBasicParams(CallParams& outParams);
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void PrintPointerList(uint64_t count, const VmaAllocation* pItems);
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void Flush();
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};
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@ -13235,7 +13236,7 @@ VkResult VmaRecorder::Init(const VmaRecordSettings& settings, bool useMutex)
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// Write header.
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fprintf(m_File, "%s\n", "Vulkan Memory Allocator,Calls recording");
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fprintf(m_File, "%s\n", "1,4");
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fprintf(m_File, "%s\n", "1,5");
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return VK_SUCCESS;
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}
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@ -13682,6 +13683,18 @@ void VmaRecorder::GetBasicParams(CallParams& outParams)
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outParams.time = (double)(counter.QuadPart - m_StartCounter) / (double)m_Freq;
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}
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void VmaRecorder::PrintPointerList(uint64_t count, const VmaAllocation* pItems)
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{
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if(count)
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{
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fprintf(m_File, "%p", pItems[0]);
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for(uint64_t i = 1; i < count; ++i)
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{
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fprintf(m_File, " %p", pItems[i]);
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}
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}
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}
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void VmaRecorder::Flush()
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{
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if((m_Flags & VMA_RECORD_FLUSH_AFTER_CALL_BIT) != 0)
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