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All rights reserved. // This file was generated by NvParameterized/scripts/GenParameterized.pl #ifndef HEADER_MeshCookedCollisionStream_h #define HEADER_MeshCookedCollisionStream_h #include "NvParametersTypes.h" #ifndef NV_PARAMETERIZED_ONLY_LAYOUTS #include "nvparameterized/NvParameterized.h" #include "nvparameterized/NvParameterizedTraits.h" #include "NvParameters.h" #include "NvTraitsInternal.h" #endif namespace nvidia { namespace destructible { #if PX_VC #pragma warning(push) #pragma warning(disable: 4324) // structure was padded due to __declspec(align()) #endif namespace MeshCookedCollisionStreamNS { struct U8_DynamicArray1D_Type { uint8_t* buf; bool isAllocated; int32_t elementSize; int32_t arraySizes[1]; }; struct ParametersStruct { U8_DynamicArray1D_Type bytes; }; static const uint32_t checksum[] = { 0x10ac85d4, 0x690961af, 0x1dfeb2cb, 0x4494e6fa, }; } // namespace MeshCookedCollisionStreamNS #ifndef NV_PARAMETERIZED_ONLY_LAYOUTS class MeshCookedCollisionStream : public NvParameterized::NvParameters, public MeshCookedCollisionStreamNS::ParametersStruct { public: MeshCookedCollisionStream(NvParameterized::Traits* traits, void* buf = 0, int32_t* refCount = 0); virtual ~MeshCookedCollisionStream(); virtual void destroy(); static const char* staticClassName(void) { return("MeshCookedCollisionStream"); } const char* className(void) const { return(staticClassName()); } static const uint32_t ClassVersion = ((uint32_t)0 << 16) + (uint32_t)0; static uint32_t staticVersion(void) { return ClassVersion; } uint32_t version(void) const { return(staticVersion()); } static const uint32_t ClassAlignment = 8; static const uint32_t* staticChecksum(uint32_t& bits) { bits = 8 * sizeof(MeshCookedCollisionStreamNS::checksum); return MeshCookedCollisionStreamNS::checksum; } static void freeParameterDefinitionTable(NvParameterized::Traits* traits); const uint32_t* checksum(uint32_t& bits) const { return staticChecksum(bits); } const MeshCookedCollisionStreamNS::ParametersStruct& parameters(void) const { MeshCookedCollisionStream* tmpThis = const_cast(this); return *(static_cast(tmpThis)); } MeshCookedCollisionStreamNS::ParametersStruct& parameters(void) { return *(static_cast(this)); } virtual NvParameterized::ErrorType getParameterHandle(const char* long_name, NvParameterized::Handle& handle) const; virtual NvParameterized::ErrorType getParameterHandle(const char* long_name, NvParameterized::Handle& handle); void initDefaults(void); protected: virtual const NvParameterized::DefinitionImpl* getParameterDefinitionTree(void); virtual const NvParameterized::DefinitionImpl* getParameterDefinitionTree(void) const; virtual void getVarPtr(const NvParameterized::Handle& handle, void*& ptr, size_t& offset) const; private: void buildTree(void); void initDynamicArrays(void); void initStrings(void); void initReferences(void); void freeDynamicArrays(void); void freeStrings(void); void freeReferences(void); static bool mBuiltFlag; static NvParameterized::MutexType mBuiltFlagMutex; }; class MeshCookedCollisionStreamFactory : public NvParameterized::Factory { static const char* const vptr; public: virtual void freeParameterDefinitionTable(NvParameterized::Traits* traits) { MeshCookedCollisionStream::freeParameterDefinitionTable(traits); } virtual NvParameterized::Interface* create(NvParameterized::Traits* paramTraits) { // placement new on this class using mParameterizedTraits void* newPtr = paramTraits->alloc(sizeof(MeshCookedCollisionStream), MeshCookedCollisionStream::ClassAlignment); if (!NvParameterized::IsAligned(newPtr, MeshCookedCollisionStream::ClassAlignment)) { NV_PARAM_TRAITS_WARNING(paramTraits, "Unaligned memory allocation for class MeshCookedCollisionStream"); paramTraits->free(newPtr); return 0; } memset(newPtr, 0, sizeof(MeshCookedCollisionStream)); // always initialize memory allocated to zero for default values return NV_PARAM_PLACEMENT_NEW(newPtr, MeshCookedCollisionStream)(paramTraits); } virtual NvParameterized::Interface* finish(NvParameterized::Traits* paramTraits, void* bufObj, void* bufStart, int32_t* refCount) { if (!NvParameterized::IsAligned(bufObj, MeshCookedCollisionStream::ClassAlignment) || !NvParameterized::IsAligned(bufStart, MeshCookedCollisionStream::ClassAlignment)) { NV_PARAM_TRAITS_WARNING(paramTraits, "Unaligned memory allocation for class MeshCookedCollisionStream"); return 0; } // Init NvParameters-part // We used to call empty constructor of MeshCookedCollisionStream here // but it may call default constructors of members and spoil the data NV_PARAM_PLACEMENT_NEW(bufObj, NvParameterized::NvParameters)(paramTraits, bufStart, refCount); // Init vtable (everything else is already initialized) *(const char**)bufObj = vptr; return (MeshCookedCollisionStream*)bufObj; } virtual const char* getClassName() { return (MeshCookedCollisionStream::staticClassName()); } virtual uint32_t getVersion() { return (MeshCookedCollisionStream::staticVersion()); } virtual uint32_t getAlignment() { return (MeshCookedCollisionStream::ClassAlignment); } virtual const uint32_t* getChecksum(uint32_t& bits) { return (MeshCookedCollisionStream::staticChecksum(bits)); } }; #endif // NV_PARAMETERIZED_ONLY_LAYOUTS } // namespace destructible } // namespace nvidia #if PX_VC #pragma warning(pop) #endif #endif