/** * @file TightDataPointStorageF.h * @author Sheng Di and Dingwen Tao * @date Aug, 2016 * @brief Header file for the tight data point storage (TDPS). * (C) 2016 by Mathematics and Computer Science (MCS), Argonne National Laboratory. * See COPYRIGHT in top-level directory. */ #ifndef _TightDataPointStorageF_H #define _TightDataPointStorageF_H #ifdef __cplusplus extern "C" { #endif #include typedef struct TightDataPointStorageF { size_t dataSeriesLength; int allSameData; double realPrecision; //it's used as the pwrErrBoundRatio when errBoundMode==PW_REL float medianValue; char reqLength; char radExpo; //used to compute reqLength based on segmented precisions in "pw_rel_compression" int stateNum; int allNodes; size_t exactDataNum; float reservedValue; unsigned char* rtypeArray; size_t rtypeArray_size; unsigned char* typeArray; //its size is dataSeriesLength/4 (or xxx/4+1) size_t typeArray_size; unsigned char* leadNumArray; //its size is exactDataNum/4 (or exactDataNum/4+1) size_t leadNumArray_size; unsigned char* exactMidBytes; size_t exactMidBytes_size; unsigned char* residualMidBits; size_t residualMidBits_size; unsigned int intervals; //quantization_intervals unsigned char isLossless; //a mark to denote whether it's lossless compression (1 is yes, 0 is no) size_t segment_size; unsigned char* pwrErrBoundBytes; int pwrErrBoundBytes_size; } TightDataPointStorageF; void new_TightDataPointStorageF_Empty(TightDataPointStorageF **self); int new_TightDataPointStorageF_fromFlatBytes(TightDataPointStorageF **self, unsigned char* flatBytes, size_t flatBytesLength); void new_TightDataPointStorageF(TightDataPointStorageF **self, size_t dataSeriesLength, size_t exactDataNum, int* type, unsigned char* exactMidBytes, size_t exactMidBytes_size, unsigned char* leadNumIntArray, //leadNumIntArray contains readable numbers.... unsigned char* resiMidBits, size_t resiMidBits_size, unsigned char resiBitLength, double realPrecision, float medianValue, char reqLength, unsigned int intervals, unsigned char* pwrErrBoundBytes, size_t pwrErrBoundBytes_size, unsigned char radExpo); /** * This function is designed for first-version of the point-wise relative error bound (developed by Sheng Di for TPDS18 paper) * * */ void new_TightDataPointStorageF2(TightDataPointStorageF **self, size_t dataSeriesLength, size_t exactDataNum, int* type, unsigned char* exactMidBytes, size_t exactMidBytes_size, unsigned char* leadNumIntArray, //leadNumIntArray contains readable numbers.... unsigned char* resiMidBits, size_t resiMidBits_size, unsigned char* resiBitLength, size_t resiBitLengthSize, double realPrecision, float medianValue, char reqLength, unsigned int intervals, unsigned char* pwrErrBoundBytes, size_t pwrErrBoundBytes_size, unsigned char radExpo); void convertTDPStoBytes_float(TightDataPointStorageF* tdps, unsigned char* bytes, unsigned char* dsLengthBytes, unsigned char sameByte); void convertTDPStoBytes_float_reserve(TightDataPointStorageF* tdps, unsigned char* bytes, unsigned char* dsLengthBytes, unsigned char sameByte); void convertTDPStoFlatBytes_float(TightDataPointStorageF *tdps, unsigned char** bytes, size_t *size); void convertTDPStoFlatBytes_float_args(TightDataPointStorageF *tdps, unsigned char* bytes, size_t *size); void free_TightDataPointStorageF(TightDataPointStorageF *tdps); void free_TightDataPointStorageF2(TightDataPointStorageF *tdps); #ifdef __cplusplus } #endif #endif /* ----- #ifndef _TightDataPointStorageF_H ----- */