#pragma once
#include "rtcore_buffer.h"
#include "rtcore_quaternion.h"
RTC_NAMESPACE_BEGIN
typedef struct RTCSceneTy* RTCScene;
typedef struct RTCGeometryTy* RTCGeometry;
enum RTCGeometryType
{
RTC_GEOMETRY_TYPE_TRIANGLE = 0, RTC_GEOMETRY_TYPE_QUAD = 1, RTC_GEOMETRY_TYPE_GRID = 2,
RTC_GEOMETRY_TYPE_SUBDIVISION = 8,
RTC_GEOMETRY_TYPE_CONE_LINEAR_CURVE = 15, RTC_GEOMETRY_TYPE_ROUND_LINEAR_CURVE = 16, RTC_GEOMETRY_TYPE_FLAT_LINEAR_CURVE = 17,
RTC_GEOMETRY_TYPE_ROUND_BEZIER_CURVE = 24, RTC_GEOMETRY_TYPE_FLAT_BEZIER_CURVE = 25, RTC_GEOMETRY_TYPE_NORMAL_ORIENTED_BEZIER_CURVE = 26,
RTC_GEOMETRY_TYPE_ROUND_BSPLINE_CURVE = 32, RTC_GEOMETRY_TYPE_FLAT_BSPLINE_CURVE = 33, RTC_GEOMETRY_TYPE_NORMAL_ORIENTED_BSPLINE_CURVE = 34,
RTC_GEOMETRY_TYPE_ROUND_HERMITE_CURVE = 40, RTC_GEOMETRY_TYPE_FLAT_HERMITE_CURVE = 41, RTC_GEOMETRY_TYPE_NORMAL_ORIENTED_HERMITE_CURVE = 42,
RTC_GEOMETRY_TYPE_SPHERE_POINT = 50,
RTC_GEOMETRY_TYPE_DISC_POINT = 51,
RTC_GEOMETRY_TYPE_ORIENTED_DISC_POINT = 52,
RTC_GEOMETRY_TYPE_ROUND_CATMULL_ROM_CURVE = 58, RTC_GEOMETRY_TYPE_FLAT_CATMULL_ROM_CURVE = 59, RTC_GEOMETRY_TYPE_NORMAL_ORIENTED_CATMULL_ROM_CURVE = 60,
RTC_GEOMETRY_TYPE_USER = 120, RTC_GEOMETRY_TYPE_INSTANCE = 121 };
enum RTCSubdivisionMode
{
RTC_SUBDIVISION_MODE_NO_BOUNDARY = 0,
RTC_SUBDIVISION_MODE_SMOOTH_BOUNDARY = 1,
RTC_SUBDIVISION_MODE_PIN_CORNERS = 2,
RTC_SUBDIVISION_MODE_PIN_BOUNDARY = 3,
RTC_SUBDIVISION_MODE_PIN_ALL = 4,
};
enum RTCCurveFlags
{
RTC_CURVE_FLAG_NEIGHBOR_LEFT = (1 << 0), RTC_CURVE_FLAG_NEIGHBOR_RIGHT = (1 << 1) };
struct RTCBoundsFunctionArguments
{
void* geometryUserPtr;
unsigned int primID;
unsigned int timeStep;
struct RTCBounds* bounds_o;
};
typedef void (*RTCBoundsFunction)(const struct RTCBoundsFunctionArguments* args);
struct RTCIntersectFunctionNArguments
{
int* valid;
void* geometryUserPtr;
unsigned int primID;
struct RTCRayQueryContext* context;
struct RTCRayHitN* rayhit;
unsigned int N;
unsigned int geomID;
};
struct RTCOccludedFunctionNArguments
{
int* valid;
void* geometryUserPtr;
unsigned int primID;
struct RTCRayQueryContext* context;
struct RTCRayN* ray;
unsigned int N;
unsigned int geomID;
};
struct RTCDisplacementFunctionNArguments
{
void* geometryUserPtr;
RTCGeometry geometry;
unsigned int primID;
unsigned int timeStep;
const float* u;
const float* v;
const float* Ng_x;
const float* Ng_y;
const float* Ng_z;
float* P_x;
float* P_y;
float* P_z;
unsigned int N;
};
typedef void (*RTCDisplacementFunctionN)(const struct RTCDisplacementFunctionNArguments* args);
RTC_API RTCGeometry rtcNewGeometry(RTCDevice device, enum RTCGeometryType type);
RTC_API void rtcRetainGeometry(RTCGeometry geometry);
RTC_API void rtcReleaseGeometry(RTCGeometry geometry);
RTC_API void rtcCommitGeometry(RTCGeometry geometry);
RTC_API void rtcEnableGeometry(RTCGeometry geometry);
RTC_API void rtcDisableGeometry(RTCGeometry geometry);
RTC_API void rtcSetGeometryTimeStepCount(RTCGeometry geometry, unsigned int timeStepCount);
RTC_API void rtcSetGeometryTimeRange(RTCGeometry geometry, float startTime, float endTime);
RTC_API void rtcSetGeometryVertexAttributeCount(RTCGeometry geometry, unsigned int vertexAttributeCount);
RTC_API void rtcSetGeometryMask(RTCGeometry geometry, unsigned int mask);
RTC_API void rtcSetGeometryBuildQuality(RTCGeometry geometry, enum RTCBuildQuality quality);
RTC_API void rtcSetGeometryMaxRadiusScale(RTCGeometry geometry, float maxRadiusScale);
RTC_API void rtcSetGeometryBuffer(RTCGeometry geometry, enum RTCBufferType type, unsigned int slot, enum RTCFormat format, RTCBuffer buffer, size_t byteOffset, size_t byteStride, size_t itemCount);
RTC_API void rtcSetSharedGeometryBuffer(RTCGeometry geometry, enum RTCBufferType type, unsigned int slot, enum RTCFormat format, const void* ptr, size_t byteOffset, size_t byteStride, size_t itemCount);
RTC_API void* rtcSetNewGeometryBuffer(RTCGeometry geometry, enum RTCBufferType type, unsigned int slot, enum RTCFormat format, size_t byteStride, size_t itemCount);
RTC_API void* rtcGetGeometryBufferData(RTCGeometry geometry, enum RTCBufferType type, unsigned int slot);
RTC_API void rtcUpdateGeometryBuffer(RTCGeometry geometry, enum RTCBufferType type, unsigned int slot);
RTC_API void rtcSetGeometryIntersectFilterFunction(RTCGeometry geometry, RTCFilterFunctionN filter);
RTC_API void rtcSetGeometryOccludedFilterFunction(RTCGeometry geometry, RTCFilterFunctionN filter);
RTC_API void rtcSetGeometryEnableFilterFunctionFromArguments(RTCGeometry geometry, bool enable);
RTC_API void rtcSetGeometryUserData(RTCGeometry geometry, void* ptr);
RTC_API void* rtcGetGeometryUserData(RTCGeometry geometry);
RTC_API void rtcSetGeometryPointQueryFunction(RTCGeometry geometry, RTCPointQueryFunction pointQuery);
RTC_API void rtcSetGeometryUserPrimitiveCount(RTCGeometry geometry, unsigned int userPrimitiveCount);
RTC_API void rtcSetGeometryBoundsFunction(RTCGeometry geometry, RTCBoundsFunction bounds, void* userPtr);
RTC_API void rtcSetGeometryIntersectFunction(RTCGeometry geometry, RTCIntersectFunctionN intersect);
RTC_API void rtcSetGeometryOccludedFunction(RTCGeometry geometry, RTCOccludedFunctionN occluded);
RTC_SYCL_API void rtcInvokeIntersectFilterFromGeometry(const struct RTCIntersectFunctionNArguments* args, const struct RTCFilterFunctionNArguments* filterArgs);
RTC_SYCL_API void rtcInvokeOccludedFilterFromGeometry(const struct RTCOccludedFunctionNArguments* args, const struct RTCFilterFunctionNArguments* filterArgs);
RTC_API void rtcSetGeometryInstancedScene(RTCGeometry geometry, RTCScene scene);
RTC_API void rtcSetGeometryTransform(RTCGeometry geometry, unsigned int timeStep, enum RTCFormat format, const void* xfm);
RTC_API void rtcSetGeometryTransformQuaternion(RTCGeometry geometry, unsigned int timeStep, const struct RTCQuaternionDecomposition* qd);
RTC_API void rtcGetGeometryTransform(RTCGeometry geometry, float time, enum RTCFormat format, void* xfm);
RTC_API void rtcSetGeometryTessellationRate(RTCGeometry geometry, float tessellationRate);
RTC_API void rtcSetGeometryTopologyCount(RTCGeometry geometry, unsigned int topologyCount);
RTC_API void rtcSetGeometrySubdivisionMode(RTCGeometry geometry, unsigned int topologyID, enum RTCSubdivisionMode mode);
RTC_API void rtcSetGeometryVertexAttributeTopology(RTCGeometry geometry, unsigned int vertexAttributeID, unsigned int topologyID);
RTC_API void rtcSetGeometryDisplacementFunction(RTCGeometry geometry, RTCDisplacementFunctionN displacement);
RTC_API unsigned int rtcGetGeometryFirstHalfEdge(RTCGeometry geometry, unsigned int faceID);
RTC_API unsigned int rtcGetGeometryFace(RTCGeometry geometry, unsigned int edgeID);
RTC_API unsigned int rtcGetGeometryNextHalfEdge(RTCGeometry geometry, unsigned int edgeID);
RTC_API unsigned int rtcGetGeometryPreviousHalfEdge(RTCGeometry geometry, unsigned int edgeID);
RTC_API unsigned int rtcGetGeometryOppositeHalfEdge(RTCGeometry geometry, unsigned int topologyID, unsigned int edgeID);
struct RTCInterpolateArguments
{
RTCGeometry geometry;
unsigned int primID;
float u;
float v;
enum RTCBufferType bufferType;
unsigned int bufferSlot;
float* P;
float* dPdu;
float* dPdv;
float* ddPdudu;
float* ddPdvdv;
float* ddPdudv;
unsigned int valueCount;
};
RTC_API void rtcInterpolate(const struct RTCInterpolateArguments* args);
RTC_FORCEINLINE void rtcInterpolate0(RTCGeometry geometry, unsigned int primID, float u, float v, enum RTCBufferType bufferType, unsigned int bufferSlot, float* P, unsigned int valueCount)
{
struct RTCInterpolateArguments args;
args.geometry = geometry;
args.primID = primID;
args.u = u;
args.v = v;
args.bufferType = bufferType;
args.bufferSlot = bufferSlot;
args.P = P;
args.dPdu = NULL;
args.dPdv = NULL;
args.ddPdudu = NULL;
args.ddPdvdv = NULL;
args.ddPdudv = NULL;
args.valueCount = valueCount;
rtcInterpolate(&args);
}
RTC_FORCEINLINE void rtcInterpolate1(RTCGeometry geometry, unsigned int primID, float u, float v, enum RTCBufferType bufferType, unsigned int bufferSlot,
float* P, float* dPdu, float* dPdv, unsigned int valueCount)
{
struct RTCInterpolateArguments args;
args.geometry = geometry;
args.primID = primID;
args.u = u;
args.v = v;
args.bufferType = bufferType;
args.bufferSlot = bufferSlot;
args.P = P;
args.dPdu = dPdu;
args.dPdv = dPdv;
args.ddPdudu = NULL;
args.ddPdvdv = NULL;
args.ddPdudv = NULL;
args.valueCount = valueCount;
rtcInterpolate(&args);
}
RTC_FORCEINLINE void rtcInterpolate2(RTCGeometry geometry, unsigned int primID, float u, float v, enum RTCBufferType bufferType, unsigned int bufferSlot,
float* P, float* dPdu, float* dPdv, float* ddPdudu, float* ddPdvdv, float* ddPdudv, unsigned int valueCount)
{
struct RTCInterpolateArguments args;
args.geometry = geometry;
args.primID = primID;
args.u = u;
args.v = v;
args.bufferType = bufferType;
args.bufferSlot = bufferSlot;
args.P = P;
args.dPdu = dPdu;
args.dPdv = dPdv;
args.ddPdudu = ddPdudu;
args.ddPdvdv = ddPdvdv;
args.ddPdudv = ddPdudv;
args.valueCount = valueCount;
rtcInterpolate(&args);
}
struct RTCInterpolateNArguments
{
RTCGeometry geometry;
const void* valid;
const unsigned int* primIDs;
const float* u;
const float* v;
unsigned int N;
enum RTCBufferType bufferType;
unsigned int bufferSlot;
float* P;
float* dPdu;
float* dPdv;
float* ddPdudu;
float* ddPdvdv;
float* ddPdudv;
unsigned int valueCount;
};
RTC_API void rtcInterpolateN(const struct RTCInterpolateNArguments* args);
struct RTCGrid
{
unsigned int startVertexID;
unsigned int stride;
unsigned short width,height; };
RTC_NAMESPACE_END