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+// This code contains NVIDIA Confidential Information and is disclosed to you
+// under a form of NVIDIA software license agreement provided separately to you.
+//
+// Notice
+// NVIDIA Corporation and its licensors retain all intellectual property and
+// proprietary rights in and to this software and related documentation and
+// any modifications thereto. Any use, reproduction, disclosure, or
+// distribution of this software and related documentation without an express
+// license agreement from NVIDIA Corporation is strictly prohibited.
+//
+// ALL NVIDIA DESIGN SPECIFICATIONS, CODE ARE PROVIDED "AS IS.". NVIDIA MAKES
+// NO WARRANTIES, EXPRESSED, IMPLIED, STATUTORY, OR OTHERWISE WITH RESPECT TO
+// THE MATERIALS, AND EXPRESSLY DISCLAIMS ALL IMPLIED WARRANTIES OF NONINFRINGEMENT,
+// MERCHANTABILITY, AND FITNESS FOR A PARTICULAR PURPOSE.
+//
+// Information and code furnished is believed to be accurate and reliable.
+// However, NVIDIA Corporation assumes no responsibility for the consequences of use of such
+// information or for any infringement of patents or other rights of third parties that may
+// result from its use. No license is granted by implication or otherwise under any patent
+// or patent rights of NVIDIA Corporation. Details are subject to change without notice.
+// This code supersedes and replaces all information previously supplied.
+// NVIDIA Corporation products are not authorized for use as critical
+// components in life support devices or systems without express written approval of
+// NVIDIA Corporation.
+//
+// Copyright (c) 2008-2015 NVIDIA Corporation. All rights reserved.
+
+// This file was generated by NvParameterized/scripts/GenParameterized.pl
+
+
+#include "AttractorFSAssetParams.h"
+#include <string.h>
+#include <stdlib.h>
+
+using namespace NvParameterized;
+
+namespace nvidia
+{
+namespace basicfs
+{
+
+using namespace AttractorFSAssetParamsNS;
+
+const char* const AttractorFSAssetParamsFactory::vptr =
+ NvParameterized::getVptr<AttractorFSAssetParams, AttractorFSAssetParams::ClassAlignment>();
+
+const uint32_t NumParamDefs = 9;
+static NvParameterized::DefinitionImpl* ParamDefTable; // now allocated in buildTree [NumParamDefs];
+
+
+static const size_t ParamLookupChildrenTable[] =
+{
+ 1, 2, 3, 4, 5, 6, 7, 8,
+};
+
+#define TENUM(type) nvidia::##type
+#define CHILDREN(index) &ParamLookupChildrenTable[index]
+static const NvParameterized::ParamLookupNode ParamLookupTable[NumParamDefs] =
+{
+ { TYPE_STRUCT, false, 0, CHILDREN(0), 8 },
+ { TYPE_F32, false, (size_t)(&((ParametersStruct*)0)->boundaryFadePercentage), NULL, 0 }, // boundaryFadePercentage
+ { TYPE_F32, false, (size_t)(&((ParametersStruct*)0)->radius), NULL, 0 }, // radius
+ { TYPE_F32, false, (size_t)(&((ParametersStruct*)0)->constFieldStrength), NULL, 0 }, // constFieldStrength
+ { TYPE_F32, false, (size_t)(&((ParametersStruct*)0)->variableFieldStrength), NULL, 0 }, // variableFieldStrength
+ { TYPE_F32, false, (size_t)(&((ParametersStruct*)0)->fieldDragCoeff), NULL, 0 }, // fieldDragCoeff
+ { TYPE_F32, false, (size_t)(&((ParametersStruct*)0)->fieldWeight), NULL, 0 }, // fieldWeight
+ { TYPE_STRING, false, (size_t)(&((ParametersStruct*)0)->fieldBoundaryFilterDataName), NULL, 0 }, // fieldBoundaryFilterDataName
+ { TYPE_STRING, false, (size_t)(&((ParametersStruct*)0)->fieldSamplerFilterDataName), NULL, 0 }, // fieldSamplerFilterDataName
+};
+
+
+bool AttractorFSAssetParams::mBuiltFlag = false;
+NvParameterized::MutexType AttractorFSAssetParams::mBuiltFlagMutex;
+
+AttractorFSAssetParams::AttractorFSAssetParams(NvParameterized::Traits* traits, void* buf, int32_t* refCount) :
+ NvParameters(traits, buf, refCount)
+{
+ //mParameterizedTraits->registerFactory(className(), &AttractorFSAssetParamsFactoryInst);
+
+ if (!buf) //Do not init data if it is inplace-deserialized
+ {
+ initDynamicArrays();
+ initStrings();
+ initReferences();
+ initDefaults();
+ }
+}
+
+AttractorFSAssetParams::~AttractorFSAssetParams()
+{
+ freeStrings();
+ freeReferences();
+ freeDynamicArrays();
+}
+
+void AttractorFSAssetParams::destroy()
+{
+ // We cache these fields here to avoid overwrite in destructor
+ bool doDeallocateSelf = mDoDeallocateSelf;
+ NvParameterized::Traits* traits = mParameterizedTraits;
+ int32_t* refCount = mRefCount;
+ void* buf = mBuffer;
+
+ this->~AttractorFSAssetParams();
+
+ NvParameters::destroy(this, traits, doDeallocateSelf, refCount, buf);
+}
+
+const NvParameterized::DefinitionImpl* AttractorFSAssetParams::getParameterDefinitionTree(void)
+{
+ if (!mBuiltFlag) // Double-checked lock
+ {
+ NvParameterized::MutexType::ScopedLock lock(mBuiltFlagMutex);
+ if (!mBuiltFlag)
+ {
+ buildTree();
+ }
+ }
+
+ return(&ParamDefTable[0]);
+}
+
+const NvParameterized::DefinitionImpl* AttractorFSAssetParams::getParameterDefinitionTree(void) const
+{
+ AttractorFSAssetParams* tmpParam = const_cast<AttractorFSAssetParams*>(this);
+
+ if (!mBuiltFlag) // Double-checked lock
+ {
+ NvParameterized::MutexType::ScopedLock lock(mBuiltFlagMutex);
+ if (!mBuiltFlag)
+ {
+ tmpParam->buildTree();
+ }
+ }
+
+ return(&ParamDefTable[0]);
+}
+
+NvParameterized::ErrorType AttractorFSAssetParams::getParameterHandle(const char* long_name, Handle& handle) const
+{
+ ErrorType Ret = NvParameters::getParameterHandle(long_name, handle);
+ if (Ret != ERROR_NONE)
+ {
+ return(Ret);
+ }
+
+ size_t offset;
+ void* ptr;
+
+ getVarPtr(handle, ptr, offset);
+
+ if (ptr == NULL)
+ {
+ return(ERROR_INDEX_OUT_OF_RANGE);
+ }
+
+ return(ERROR_NONE);
+}
+
+NvParameterized::ErrorType AttractorFSAssetParams::getParameterHandle(const char* long_name, Handle& handle)
+{
+ ErrorType Ret = NvParameters::getParameterHandle(long_name, handle);
+ if (Ret != ERROR_NONE)
+ {
+ return(Ret);
+ }
+
+ size_t offset;
+ void* ptr;
+
+ getVarPtr(handle, ptr, offset);
+
+ if (ptr == NULL)
+ {
+ return(ERROR_INDEX_OUT_OF_RANGE);
+ }
+
+ return(ERROR_NONE);
+}
+
+void AttractorFSAssetParams::getVarPtr(const Handle& handle, void*& ptr, size_t& offset) const
+{
+ ptr = getVarPtrHelper(&ParamLookupTable[0], const_cast<AttractorFSAssetParams::ParametersStruct*>(&parameters()), handle, offset);
+}
+
+
+/* Dynamic Handle Indices */
+
+void AttractorFSAssetParams::freeParameterDefinitionTable(NvParameterized::Traits* traits)
+{
+ if (!traits)
+ {
+ return;
+ }
+
+ if (!mBuiltFlag) // Double-checked lock
+ {
+ return;
+ }
+
+ NvParameterized::MutexType::ScopedLock lock(mBuiltFlagMutex);
+
+ if (!mBuiltFlag)
+ {
+ return;
+ }
+
+ for (uint32_t i = 0; i < NumParamDefs; ++i)
+ {
+ ParamDefTable[i].~DefinitionImpl();
+ }
+
+ traits->free(ParamDefTable);
+
+ mBuiltFlag = false;
+}
+
+#define PDEF_PTR(index) (&ParamDefTable[index])
+
+void AttractorFSAssetParams::buildTree(void)
+{
+
+ uint32_t allocSize = sizeof(NvParameterized::DefinitionImpl) * NumParamDefs;
+ ParamDefTable = (NvParameterized::DefinitionImpl*)(mParameterizedTraits->alloc(allocSize));
+ memset(ParamDefTable, 0, allocSize);
+
+ for (uint32_t i = 0; i < NumParamDefs; ++i)
+ {
+ NV_PARAM_PLACEMENT_NEW(ParamDefTable + i, NvParameterized::DefinitionImpl)(*mParameterizedTraits);
+ }
+
+ // Initialize DefinitionImpl node: nodeIndex=0, longName=""
+ {
+ NvParameterized::DefinitionImpl* ParamDef = &ParamDefTable[0];
+ ParamDef->init("", TYPE_STRUCT, "STRUCT", true);
+
+#ifdef NV_PARAMETERIZED_HIDE_DESCRIPTIONS
+
+#else
+
+ static HintImpl HintTable[1];
+ static Hint* HintPtrTable[1] = { &HintTable[0], };
+ HintTable[0].init("shortDescription", "Contains the asset properties for this Attractor Field Sampler.", true);
+ ParamDefTable[0].setHints((const NvParameterized::Hint**)HintPtrTable, 1);
+
+#endif /* NV_PARAMETERIZED_HIDE_DESCRIPTIONS */
+
+
+
+
+
+ }
+
+ // Initialize DefinitionImpl node: nodeIndex=1, longName="boundaryFadePercentage"
+ {
+ NvParameterized::DefinitionImpl* ParamDef = &ParamDefTable[1];
+ ParamDef->init("boundaryFadePercentage", TYPE_F32, NULL, true);
+
+#ifdef NV_PARAMETERIZED_HIDE_DESCRIPTIONS
+
+ static HintImpl HintTable[2];
+ static Hint* HintPtrTable[2] = { &HintTable[0], &HintTable[1], };
+ HintTable[0].init("max", uint64_t(1), true);
+ HintTable[1].init("min", uint64_t(0), true);
+ ParamDefTable[1].setHints((const NvParameterized::Hint**)HintPtrTable, 2);
+
+#else
+
+ static HintImpl HintTable[3];
+ static Hint* HintPtrTable[3] = { &HintTable[0], &HintTable[1], &HintTable[2], };
+ HintTable[0].init("max", uint64_t(1), true);
+ HintTable[1].init("min", uint64_t(0), true);
+ HintTable[2].init("shortDescription", "Percentage of distance from boundary to center where fade out starts.", true);
+ ParamDefTable[1].setHints((const NvParameterized::Hint**)HintPtrTable, 3);
+
+#endif /* NV_PARAMETERIZED_HIDE_DESCRIPTIONS */
+
+
+
+
+
+ }
+
+ // Initialize DefinitionImpl node: nodeIndex=2, longName="radius"
+ {
+ NvParameterized::DefinitionImpl* ParamDef = &ParamDefTable[2];
+ ParamDef->init("radius", TYPE_F32, NULL, true);
+
+#ifdef NV_PARAMETERIZED_HIDE_DESCRIPTIONS
+
+#else
+
+ static HintImpl HintTable[1];
+ static Hint* HintPtrTable[1] = { &HintTable[0], };
+ HintTable[0].init("shortDescription", "Radius of the sphere where attracting force is acting.", true);
+ ParamDefTable[2].setHints((const NvParameterized::Hint**)HintPtrTable, 1);
+
+#endif /* NV_PARAMETERIZED_HIDE_DESCRIPTIONS */
+
+
+
+
+
+ }
+
+ // Initialize DefinitionImpl node: nodeIndex=3, longName="constFieldStrength"
+ {
+ NvParameterized::DefinitionImpl* ParamDef = &ParamDefTable[3];
+ ParamDef->init("constFieldStrength", TYPE_F32, NULL, true);
+
+#ifdef NV_PARAMETERIZED_HIDE_DESCRIPTIONS
+
+#else
+
+ static HintImpl HintTable[1];
+ static Hint* HintPtrTable[1] = { &HintTable[0], };
+ HintTable[0].init("shortDescription", "Coefficient that sets strength of the constant part of attracting force.", true);
+ ParamDefTable[3].setHints((const NvParameterized::Hint**)HintPtrTable, 1);
+
+#endif /* NV_PARAMETERIZED_HIDE_DESCRIPTIONS */
+
+
+
+
+
+ }
+
+ // Initialize DefinitionImpl node: nodeIndex=4, longName="variableFieldStrength"
+ {
+ NvParameterized::DefinitionImpl* ParamDef = &ParamDefTable[4];
+ ParamDef->init("variableFieldStrength", TYPE_F32, NULL, true);
+
+#ifdef NV_PARAMETERIZED_HIDE_DESCRIPTIONS
+
+#else
+
+ static HintImpl HintTable[2];
+ static Hint* HintPtrTable[2] = { &HintTable[0], &HintTable[1], };
+ HintTable[0].init("longDescription", "Variable part of the force is proportional to this coefficient and inverse proportional to distance from the senter of attractor.", true);
+ HintTable[1].init("shortDescription", "Coefficient that sets strength of the variable part of attracting force.", true);
+ ParamDefTable[4].setHints((const NvParameterized::Hint**)HintPtrTable, 2);
+
+#endif /* NV_PARAMETERIZED_HIDE_DESCRIPTIONS */
+
+
+
+
+
+ }
+
+ // Initialize DefinitionImpl node: nodeIndex=5, longName="fieldDragCoeff"
+ {
+ NvParameterized::DefinitionImpl* ParamDef = &ParamDefTable[5];
+ ParamDef->init("fieldDragCoeff", TYPE_F32, NULL, true);
+
+#ifdef NV_PARAMETERIZED_HIDE_DESCRIPTIONS
+
+ static HintImpl HintTable[1];
+ static Hint* HintPtrTable[1] = { &HintTable[0], };
+ HintTable[0].init("min", uint64_t(0), true);
+ ParamDefTable[5].setHints((const NvParameterized::Hint**)HintPtrTable, 1);
+
+#else
+
+ static HintImpl HintTable[2];
+ static Hint* HintPtrTable[2] = { &HintTable[0], &HintTable[1], };
+ HintTable[0].init("min", uint64_t(0), true);
+ HintTable[1].init("shortDescription", "Field drag coefficient. When it equals to 0, then the field is applied as a direct velocity.", true);
+ ParamDefTable[5].setHints((const NvParameterized::Hint**)HintPtrTable, 2);
+
+#endif /* NV_PARAMETERIZED_HIDE_DESCRIPTIONS */
+
+
+
+
+
+ }
+
+ // Initialize DefinitionImpl node: nodeIndex=6, longName="fieldWeight"
+ {
+ NvParameterized::DefinitionImpl* ParamDef = &ParamDefTable[6];
+ ParamDef->init("fieldWeight", TYPE_F32, NULL, true);
+
+#ifdef NV_PARAMETERIZED_HIDE_DESCRIPTIONS
+
+ static HintImpl HintTable[2];
+ static Hint* HintPtrTable[2] = { &HintTable[0], &HintTable[1], };
+ HintTable[0].init("max", uint64_t(1), true);
+ HintTable[1].init("min", uint64_t(0), true);
+ ParamDefTable[6].setHints((const NvParameterized::Hint**)HintPtrTable, 2);
+
+#else
+
+ static HintImpl HintTable[3];
+ static Hint* HintPtrTable[3] = { &HintTable[0], &HintTable[1], &HintTable[2], };
+ HintTable[0].init("max", uint64_t(1), true);
+ HintTable[1].init("min", uint64_t(0), true);
+ HintTable[2].init("shortDescription", "A weight for the field, it controls how strongly the field affects particles", true);
+ ParamDefTable[6].setHints((const NvParameterized::Hint**)HintPtrTable, 3);
+
+#endif /* NV_PARAMETERIZED_HIDE_DESCRIPTIONS */
+
+
+
+
+
+ }
+
+ // Initialize DefinitionImpl node: nodeIndex=7, longName="fieldBoundaryFilterDataName"
+ {
+ NvParameterized::DefinitionImpl* ParamDef = &ParamDefTable[7];
+ ParamDef->init("fieldBoundaryFilterDataName", TYPE_STRING, NULL, true);
+
+#ifdef NV_PARAMETERIZED_HIDE_DESCRIPTIONS
+
+ static HintImpl HintTable[1];
+ static Hint* HintPtrTable[1] = { &HintTable[0], };
+ HintTable[0].init("HIDDEN", uint64_t(1), true);
+ ParamDefTable[7].setHints((const NvParameterized::Hint**)HintPtrTable, 1);
+
+#else
+
+ static HintImpl HintTable[2];
+ static Hint* HintPtrTable[2] = { &HintTable[0], &HintTable[1], };
+ HintTable[0].init("HIDDEN", uint64_t(1), true);
+ HintTable[1].init("shortDescription", "The filter data name for AttractorFS vs Field Boundaries interaction.", true);
+ ParamDefTable[7].setHints((const NvParameterized::Hint**)HintPtrTable, 2);
+
+#endif /* NV_PARAMETERIZED_HIDE_DESCRIPTIONS */
+
+
+
+
+
+ }
+
+ // Initialize DefinitionImpl node: nodeIndex=8, longName="fieldSamplerFilterDataName"
+ {
+ NvParameterized::DefinitionImpl* ParamDef = &ParamDefTable[8];
+ ParamDef->init("fieldSamplerFilterDataName", TYPE_STRING, NULL, true);
+
+#ifdef NV_PARAMETERIZED_HIDE_DESCRIPTIONS
+
+#else
+
+ static HintImpl HintTable[1];
+ static Hint* HintPtrTable[1] = { &HintTable[0], };
+ HintTable[0].init("shortDescription", "The filter data name for AttractorFS vs other Field Samplers interaction.", true);
+ ParamDefTable[8].setHints((const NvParameterized::Hint**)HintPtrTable, 1);
+
+#endif /* NV_PARAMETERIZED_HIDE_DESCRIPTIONS */
+
+
+
+
+
+ }
+
+ // SetChildren for: nodeIndex=0, longName=""
+ {
+ static Definition* Children[8];
+ Children[0] = PDEF_PTR(1);
+ Children[1] = PDEF_PTR(2);
+ Children[2] = PDEF_PTR(3);
+ Children[3] = PDEF_PTR(4);
+ Children[4] = PDEF_PTR(5);
+ Children[5] = PDEF_PTR(6);
+ Children[6] = PDEF_PTR(7);
+ Children[7] = PDEF_PTR(8);
+
+ ParamDefTable[0].setChildren(Children, 8);
+ }
+
+ mBuiltFlag = true;
+
+}
+void AttractorFSAssetParams::initStrings(void)
+{
+ fieldBoundaryFilterDataName.isAllocated = true;
+ fieldBoundaryFilterDataName.buf = NULL;
+ fieldSamplerFilterDataName.isAllocated = true;
+ fieldSamplerFilterDataName.buf = NULL;
+}
+
+void AttractorFSAssetParams::initDynamicArrays(void)
+{
+}
+
+void AttractorFSAssetParams::initDefaults(void)
+{
+
+ freeStrings();
+ freeReferences();
+ freeDynamicArrays();
+ boundaryFadePercentage = float(0.1);
+ radius = float(0);
+ constFieldStrength = float(0);
+ variableFieldStrength = float(0);
+ fieldDragCoeff = float(0);
+ fieldWeight = float(1);
+
+ initDynamicArrays();
+ initStrings();
+ initReferences();
+}
+
+void AttractorFSAssetParams::initReferences(void)
+{
+}
+
+void AttractorFSAssetParams::freeDynamicArrays(void)
+{
+}
+
+void AttractorFSAssetParams::freeStrings(void)
+{
+
+ if (fieldBoundaryFilterDataName.isAllocated && fieldBoundaryFilterDataName.buf)
+ {
+ mParameterizedTraits->strfree((char*)fieldBoundaryFilterDataName.buf);
+ }
+
+ if (fieldSamplerFilterDataName.isAllocated && fieldSamplerFilterDataName.buf)
+ {
+ mParameterizedTraits->strfree((char*)fieldSamplerFilterDataName.buf);
+ }
+}
+
+void AttractorFSAssetParams::freeReferences(void)
+{
+}
+
+} // namespace basicfs
+} // namespace nvidia