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arm_abs_q31.c
00001 /* ---------------------------------------------------------------------- 00002 * Copyright (C) 2010 ARM Limited. All rights reserved. 00003 * 00004 * $Date: 29. November 2010 00005 * $Revision: V1.0.3 00006 * 00007 * Project: CMSIS DSP Library 00008 * Title: arm_abs_q31.c 00009 * 00010 * Description: Q31 vector absolute value. 00011 * 00012 * Target Processor: Cortex-M4/Cortex-M3 00013 * 00014 * Version 1.0.3 2010/11/29 00015 * Re-organized the CMSIS folders and updated documentation. 00016 * 00017 * Version 1.0.2 2010/11/11 00018 * Documentation updated. 00019 * 00020 * Version 1.0.1 2010/10/05 00021 * Production release and review comments incorporated. 00022 * 00023 * Version 1.0.0 2010/09/20 00024 * Production release and review comments incorporated. 00025 * 00026 * Version 0.0.7 2010/06/10 00027 * Misra-C changes done 00028 * -------------------------------------------------------------------- */ 00029 00030 #include "arm_math.h" 00031 00032 /** 00033 * @ingroup groupMath 00034 */ 00035 00036 /** 00037 * @addtogroup BasicAbs 00038 * @{ 00039 */ 00040 00041 00042 /** 00043 * @brief Q31 vector absolute value. 00044 * @param[in] *pSrc points to the input buffer 00045 * @param[out] *pDst points to the output buffer 00046 * @param[in] blockSize number of samples in each vector 00047 * @return none. 00048 * 00049 * <b>Scaling and Overflow Behavior:</b> 00050 * \par 00051 * The function uses saturating arithmetic. 00052 * The Q31 value -1 (0x80000000) will be saturated to the maximum allowable positive value 0x7FFFFFFF. 00053 */ 00054 00055 void arm_abs_q31( 00056 q31_t * pSrc, 00057 q31_t * pDst, 00058 uint32_t blockSize) 00059 { 00060 uint32_t blkCnt; /* loop counter */ 00061 q31_t in; /* Input value */ 00062 00063 /*loop Unrolling */ 00064 blkCnt = blockSize >> 2u; 00065 00066 /* First part of the processing with loop unrolling. Compute 4 outputs at a time. 00067 ** a second loop below computes the remaining 1 to 3 samples. */ 00068 while(blkCnt > 0u) 00069 { 00070 /* C = |A| */ 00071 /* Calculate absolute of input (if -1 then saturated to 0x7fffffff) and then store the results in the destination buffer. */ 00072 in = *pSrc++; 00073 *pDst++ = (in > 0) ? in : ((in == 0x80000000) ? 0x7fffffff : -in); 00074 in = *pSrc++; 00075 *pDst++ = (in > 0) ? in : ((in == 0x80000000) ? 0x7fffffff : -in); 00076 in = *pSrc++; 00077 *pDst++ = (in > 0) ? in : ((in == 0x80000000) ? 0x7fffffff : -in); 00078 in = *pSrc++; 00079 *pDst++ = (in > 0) ? in : ((in == 0x80000000) ? 0x7fffffff : -in); 00080 00081 /* Decrement the loop counter */ 00082 blkCnt--; 00083 } 00084 00085 /* If the blockSize is not a multiple of 4, compute any remaining output samples here. 00086 ** No loop unrolling is used. */ 00087 blkCnt = blockSize % 0x4u; 00088 00089 while(blkCnt > 0u) 00090 { 00091 /* C = |A| */ 00092 /* Calculate absolute value of the input (if -1 then saturated to 0x7fffffff) and then store the results in the destination buffer. */ 00093 in = *pSrc++; 00094 *pDst++ = (in > 0) ? in : ((in == 0x80000000) ? 0x7fffffff : -in); 00095 00096 /* Decrement the loop counter */ 00097 blkCnt--; 00098 } 00099 } 00100 00101 /** 00102 * @} end of BasicAbs group 00103 */
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