mirror of
https://github.com/GPUOpen-LibrariesAndSDKs/VulkanMemoryAllocator.git
synced 2024-11-22 23:04:35 +00:00
Improved error handling.
This commit is contained in:
parent
ec5fecf51a
commit
4d63e9d886
@ -1,19 +1,6 @@
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#include "Common.h"
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#include "Common.h"
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void ReadFile(std::vector<char>& out, const char* fileName)
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/*
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{
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std::ifstream file(fileName, std::ios::ate | std::ios::binary);
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assert(file.is_open());
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size_t fileSize = (size_t)file.tellg();
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if(fileSize > 0)
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{
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out.resize(fileSize);
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file.seekg(0);
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file.read(out.data(), fileSize);
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}
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else
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out.clear();
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}
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void SetConsoleColor(CONSOLE_COLOR color)
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void SetConsoleColor(CONSOLE_COLOR color)
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{
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{
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@ -139,16 +126,4 @@ void PrintErrorF(const wchar_t* format, ...)
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PrintMessageV(CONSOLE_COLOR::WARNING, format, argList);
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PrintMessageV(CONSOLE_COLOR::WARNING, format, argList);
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va_end(argList);
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va_end(argList);
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}
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}
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*/
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void SaveFile(const wchar_t* filePath, const void* data, size_t dataSize)
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{
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FILE* f = nullptr;
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_wfopen_s(&f, filePath, L"wb");
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if(f)
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{
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fwrite(data, 1, dataSize, f);
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fclose(f);
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}
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else
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assert(0);
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}
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@ -22,8 +22,6 @@
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typedef std::chrono::high_resolution_clock::time_point time_point;
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typedef std::chrono::high_resolution_clock::time_point time_point;
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typedef std::chrono::high_resolution_clock::duration duration;
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typedef std::chrono::high_resolution_clock::duration duration;
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#define ERR_GUARD_VULKAN(Expr) do { VkResult res__ = (Expr); if (res__ < 0) assert(0); } while(0)
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inline float ToFloatSeconds(duration d)
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inline float ToFloatSeconds(duration d)
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{
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{
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return std::chrono::duration_cast<std::chrono::duration<float>>(d).count();
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return std::chrono::duration_cast<std::chrono::duration<float>>(d).count();
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@ -41,6 +39,7 @@ static inline T align_up(T val, T align)
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return (val + align - 1) / align * align;
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return (val + align - 1) / align * align;
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}
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}
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/*
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class RandomNumberGenerator
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class RandomNumberGenerator
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{
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{
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public:
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public:
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@ -54,8 +53,6 @@ private:
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uint32_t GenerateFast() { return m_Value = (m_Value * 196314165 + 907633515); }
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uint32_t GenerateFast() { return m_Value = (m_Value * 196314165 + 907633515); }
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};
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};
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void ReadFile(std::vector<char>& out, const char* fileName);
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enum class CONSOLE_COLOR
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enum class CONSOLE_COLOR
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{
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{
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INFO,
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INFO,
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@ -85,5 +82,4 @@ void PrintWarningF(const char* format, ...);
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void PrintWarningF(const wchar_t* format, ...);
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void PrintWarningF(const wchar_t* format, ...);
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void PrintErrorF(const char* format, ...);
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void PrintErrorF(const char* format, ...);
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void PrintErrorF(const wchar_t* format, ...);
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void PrintErrorF(const wchar_t* format, ...);
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*/
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void SaveFile(const wchar_t* filePath, const void* data, size_t dataSize);
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@ -28,6 +28,7 @@ static const int RESULT_EXCEPTION = -1000;
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static const int RESULT_ERROR_COMMAND_LINE = -1;
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static const int RESULT_ERROR_COMMAND_LINE = -1;
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static const int RESULT_ERROR_SOURCE_FILE = -2;
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static const int RESULT_ERROR_SOURCE_FILE = -2;
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static const int RESULT_ERROR_FORMAT = -3;
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static const int RESULT_ERROR_FORMAT = -3;
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static const int RESULT_ERROR_VULKAN = -4;
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struct StrRange
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struct StrRange
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{
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{
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@ -46,24 +47,21 @@ static inline bool StrRangeEq(const StrRange& lhs, const char* rhsSz)
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static inline bool StrRangeToUint(const StrRange& s, uint32_t& out)
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static inline bool StrRangeToUint(const StrRange& s, uint32_t& out)
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{
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{
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// TODO handle failure.
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char* end = (char*)s.end;
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char* end = (char*)s.end;
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out = (uint32_t)strtoul(s.beg, &end, 10);
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out = (uint32_t)strtoul(s.beg, &end, 10);
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return true;
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return end == s.end;
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}
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}
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static inline bool StrRangeToUint(const StrRange& s, uint64_t& out)
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static inline bool StrRangeToUint(const StrRange& s, uint64_t& out)
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{
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{
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// TODO handle failure.
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char* end = (char*)s.end;
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char* end = (char*)s.end;
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out = (uint64_t)strtoull(s.beg, &end, 10);
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out = (uint64_t)strtoull(s.beg, &end, 10);
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return true;
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return end == s.end;
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}
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}
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static inline bool StrRangeToPtr(const StrRange& s, uint64_t& out)
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static inline bool StrRangeToPtr(const StrRange& s, uint64_t& out)
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{
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{
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// TODO handle failure.
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char* end = (char*)s.end;
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char* end = (char*)s.end;
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out = (uint64_t)strtoull(s.beg, &end, 16);
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out = (uint64_t)strtoull(s.beg, &end, 16);
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return true;
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return end == s.end;
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}
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}
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////////////////////////////////////////////////////////////////////////////////
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////////////////////////////////////////////////////////////////////////////////
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@ -212,7 +210,7 @@ class Player
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{
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{
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public:
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public:
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Player();
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Player();
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void Init();
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int Init();
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~Player();
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~Player();
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void ExecuteLine(size_t lineNumber, const StrRange& line);
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void ExecuteLine(size_t lineNumber, const StrRange& line);
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@ -258,7 +256,7 @@ private:
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// Increments warning counter. Returns true if warning message should be printed.
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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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bool IssueWarning() { return m_WarningCount++ < MAX_WARNINGS_TO_SHOW; }
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void InitVulkan();
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int InitVulkan();
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void FinalizeVulkan();
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void FinalizeVulkan();
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void RegisterDebugCallbacks();
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void RegisterDebugCallbacks();
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@ -277,9 +275,9 @@ Player::Player()
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{
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{
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}
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}
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void Player::Init()
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int Player::Init()
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{
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{
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InitVulkan();
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return InitVulkan();
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}
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}
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Player::~Player()
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Player::~Player()
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@ -355,16 +353,19 @@ void Player::ExecuteLine(size_t lineNumber, const StrRange& line)
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}
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}
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}
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}
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void Player::InitVulkan()
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int Player::InitVulkan()
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{
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{
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printf("Initializing Vulkan...\n");
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printf("Initializing Vulkan...\n");
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uint32_t instanceLayerPropCount = 0;
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uint32_t instanceLayerPropCount = 0;
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ERR_GUARD_VULKAN( vkEnumerateInstanceLayerProperties(&instanceLayerPropCount, nullptr) );
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VkResult res = vkEnumerateInstanceLayerProperties(&instanceLayerPropCount, nullptr);
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assert(res == VK_SUCCESS);
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std::vector<VkLayerProperties> instanceLayerProps(instanceLayerPropCount);
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std::vector<VkLayerProperties> instanceLayerProps(instanceLayerPropCount);
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if(instanceLayerPropCount > 0)
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if(instanceLayerPropCount > 0)
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{
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{
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ERR_GUARD_VULKAN( vkEnumerateInstanceLayerProperties(&instanceLayerPropCount, instanceLayerProps.data()) );
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res = vkEnumerateInstanceLayerProperties(&instanceLayerPropCount, instanceLayerProps.data());
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assert(res == VK_SUCCESS);
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}
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}
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if(g_EnableValidationLayer == true)
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if(g_EnableValidationLayer == true)
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@ -381,7 +382,7 @@ void Player::InitVulkan()
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//instanceExtensions.push_back(VK_KHR_WIN32_SURFACE_EXTENSION_NAME);
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//instanceExtensions.push_back(VK_KHR_WIN32_SURFACE_EXTENSION_NAME);
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std::vector<const char*> instanceLayers;
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std::vector<const char*> instanceLayers;
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if(g_EnableValidationLayer == true)
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if(g_EnableValidationLayer)
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{
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{
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instanceLayers.push_back(VALIDATION_LAYER_NAME);
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instanceLayers.push_back(VALIDATION_LAYER_NAME);
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instanceExtensions.push_back("VK_EXT_debug_report");
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instanceExtensions.push_back("VK_EXT_debug_report");
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@ -401,18 +402,32 @@ void Player::InitVulkan()
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instInfo.enabledLayerCount = (uint32_t)instanceLayers.size();
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instInfo.enabledLayerCount = (uint32_t)instanceLayers.size();
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instInfo.ppEnabledLayerNames = instanceLayers.data();
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instInfo.ppEnabledLayerNames = instanceLayers.data();
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ERR_GUARD_VULKAN( vkCreateInstance(&instInfo, NULL, &m_VulkanInstance) );
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res = vkCreateInstance(&instInfo, NULL, &m_VulkanInstance);
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if(res != VK_SUCCESS)
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{
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printf("ERROR: vkCreateInstance failed (%u)\n", res);
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return RESULT_ERROR_VULKAN;
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}
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if(g_EnableValidationLayer)
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RegisterDebugCallbacks();
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RegisterDebugCallbacks();
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// Find physical device
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// Find physical device
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uint32_t deviceCount = 0;
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uint32_t deviceCount = 0;
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ERR_GUARD_VULKAN( vkEnumeratePhysicalDevices(m_VulkanInstance, &deviceCount, nullptr) );
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res = vkEnumeratePhysicalDevices(m_VulkanInstance, &deviceCount, nullptr);
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assert(deviceCount > 0);
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assert(res == VK_SUCCESS);
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if(deviceCount == 0)
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{
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printf("ERROR: No Vulkan physical devices found.\n");
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return RESULT_ERROR_VULKAN;
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}
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else if(deviceCount > 1)
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printf("WARNING: %u Vulkan physical devices found. Choosing first one.\n", deviceCount);
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std::vector<VkPhysicalDevice> physicalDevices(deviceCount);
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std::vector<VkPhysicalDevice> physicalDevices(deviceCount);
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ERR_GUARD_VULKAN( vkEnumeratePhysicalDevices(m_VulkanInstance, &deviceCount, physicalDevices.data()) );
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res = vkEnumeratePhysicalDevices(m_VulkanInstance, &deviceCount, physicalDevices.data());
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assert(res == VK_SUCCESS);
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m_PhysicalDevice = physicalDevices[0];
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m_PhysicalDevice = physicalDevices[0];
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@ -420,21 +435,25 @@ void Player::InitVulkan()
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uint32_t queueFamilyCount = 0;
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uint32_t queueFamilyCount = 0;
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vkGetPhysicalDeviceQueueFamilyProperties(m_PhysicalDevice, &queueFamilyCount, nullptr);
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vkGetPhysicalDeviceQueueFamilyProperties(m_PhysicalDevice, &queueFamilyCount, nullptr);
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assert(queueFamilyCount > 0);
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if(queueFamilyCount)
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{
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std::vector<VkQueueFamilyProperties> queueFamilies(queueFamilyCount);
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std::vector<VkQueueFamilyProperties> queueFamilies(queueFamilyCount);
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vkGetPhysicalDeviceQueueFamilyProperties(m_PhysicalDevice, &queueFamilyCount, queueFamilies.data());
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vkGetPhysicalDeviceQueueFamilyProperties(m_PhysicalDevice, &queueFamilyCount, queueFamilies.data());
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for(uint32_t i = 0; i < queueFamilyCount; ++i)
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for(uint32_t i = 0; i < queueFamilyCount; ++i)
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{
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{
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if(queueFamilies[i].queueCount > 0)
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if(queueFamilies[i].queueCount > 0 &&
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{
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(queueFamilies[i].queueFlags & VK_QUEUE_GRAPHICS_BIT) != 0)
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if((queueFamilies[i].queueFlags & VK_QUEUE_GRAPHICS_BIT) != 0)
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{
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{
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m_GraphicsQueueFamilyIndex = i;
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m_GraphicsQueueFamilyIndex = i;
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break;
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break;
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}
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}
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}
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}
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}
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}
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assert(m_GraphicsQueueFamilyIndex != UINT_MAX);
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if(m_GraphicsQueueFamilyIndex == UINT_MAX)
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{
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printf("ERROR: Couldn't find graphics queue.\n");
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return RESULT_ERROR_VULKAN;
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}
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// Create logical device
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// Create logical device
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@ -459,12 +478,14 @@ void Player::InitVulkan()
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//enabledDeviceExtensions.push_back(VK_KHR_SWAPCHAIN_EXTENSION_NAME);
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//enabledDeviceExtensions.push_back(VK_KHR_SWAPCHAIN_EXTENSION_NAME);
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{
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{
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uint32_t propertyCount = 0;
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uint32_t propertyCount = 0;
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ERR_GUARD_VULKAN( vkEnumerateDeviceExtensionProperties(m_PhysicalDevice, nullptr, &propertyCount, nullptr) );
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res = vkEnumerateDeviceExtensionProperties(m_PhysicalDevice, nullptr, &propertyCount, nullptr);
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assert(res == VK_SUCCESS);
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if(propertyCount)
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if(propertyCount)
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{
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{
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std::vector<VkExtensionProperties> properties{propertyCount};
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std::vector<VkExtensionProperties> properties{propertyCount};
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ERR_GUARD_VULKAN( vkEnumerateDeviceExtensionProperties(m_PhysicalDevice, nullptr, &propertyCount, properties.data()) );
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res = vkEnumerateDeviceExtensionProperties(m_PhysicalDevice, nullptr, &propertyCount, properties.data());
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assert(res == VK_SUCCESS);
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for(uint32_t i = 0; i < propertyCount; ++i)
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for(uint32_t i = 0; i < propertyCount; ++i)
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{
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{
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@ -489,7 +510,12 @@ void Player::InitVulkan()
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deviceCreateInfo.pQueueCreateInfos = &deviceQueueCreateInfo;
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deviceCreateInfo.pQueueCreateInfos = &deviceQueueCreateInfo;
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deviceCreateInfo.pEnabledFeatures = &deviceFeatures;
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deviceCreateInfo.pEnabledFeatures = &deviceFeatures;
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ERR_GUARD_VULKAN( vkCreateDevice(m_PhysicalDevice, &deviceCreateInfo, nullptr, &m_Device) );
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res = vkCreateDevice(m_PhysicalDevice, &deviceCreateInfo, nullptr, &m_Device);
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if(res != VK_SUCCESS)
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{
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printf("ERROR: vkCreateDevice failed (%u)\n", res);
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return RESULT_ERROR_VULKAN;
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}
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// Create memory allocator
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// Create memory allocator
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@ -502,7 +528,14 @@ void Player::InitVulkan()
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allocatorInfo.flags |= VMA_ALLOCATOR_CREATE_KHR_DEDICATED_ALLOCATION_BIT;
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allocatorInfo.flags |= VMA_ALLOCATOR_CREATE_KHR_DEDICATED_ALLOCATION_BIT;
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}
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}
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ERR_GUARD_VULKAN( vmaCreateAllocator(&allocatorInfo, &m_Allocator) );
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res = vmaCreateAllocator(&allocatorInfo, &m_Allocator);
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if(res != VK_SUCCESS)
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{
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printf("ERROR: vmaCreateAllocator failed (%u)\n", res);
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return RESULT_ERROR_VULKAN;
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}
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return 0;
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}
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}
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void Player::FinalizeVulkan()
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void Player::FinalizeVulkan()
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@ -587,7 +620,8 @@ void Player::RegisterDebugCallbacks()
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VK_DEBUG_REPORT_DEBUG_BIT_EXT*/;
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VK_DEBUG_REPORT_DEBUG_BIT_EXT*/;
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callbackCreateInfo.pfnCallback = &MyDebugReportCallback;
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callbackCreateInfo.pfnCallback = &MyDebugReportCallback;
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ERR_GUARD_VULKAN( m_pvkCreateDebugReportCallbackEXT(m_VulkanInstance, &callbackCreateInfo, nullptr, &m_hCallback) );
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VkResult res = m_pvkCreateDebugReportCallbackEXT(m_VulkanInstance, &callbackCreateInfo, nullptr, &m_hCallback);
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assert(res == VK_SUCCESS);
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}
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}
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bool Player::ValidateFunctionParameterCount(size_t lineNumber, const CsvSplit& csvSplit, size_t expectedParamCount, bool lastUnbound)
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bool Player::ValidateFunctionParameterCount(size_t lineNumber, const CsvSplit& csvSplit, size_t expectedParamCount, bool lastUnbound)
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@ -892,8 +926,9 @@ static int ProcessFile(const char* data, size_t numBytes)
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}
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}
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Player player;
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Player player;
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player.Init();
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int result = player.Init();
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if(result == 0)
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{
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printf("Playing...\n");
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printf("Playing...\n");
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while(lineSplit.GetNextLine(line))
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while(lineSplit.GetNextLine(line))
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{
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{
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@ -903,13 +938,14 @@ static int ProcessFile(const char* data, size_t numBytes)
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// End stats.
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// End stats.
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printf("Done.\n");
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printf("Done.\n");
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printf("File lines: %zu\n", lineSplit.GetNextLineIndex());
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printf("File lines: %zu\n", lineSplit.GetNextLineIndex());
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}
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return 0;
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return result;
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}
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}
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static int ProcessFile(const char* filePath)
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static int ProcessFile(const char* filePath)
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{
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{
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printf("Replaying file \"%s\"...\n", filePath);
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printf("Loading file \"%s\"...\n", filePath);
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int result = 0;
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int result = 0;
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FILE* file = nullptr;
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FILE* file = nullptr;
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