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| 56 | mjames | 1 | /* ---------------------------------------------------------------------- |
| 2 | * Project: CMSIS DSP Library |
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| 3 | * Title: arm_shift_q15.c |
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| 4 | * Description: Shifts the elements of a Q15 vector by a specified number of bits |
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| 5 | * |
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| 6 | * $Date: 27. January 2017 |
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| 7 | * $Revision: V.1.5.1 |
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| 8 | * |
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| 9 | * Target Processor: Cortex-M cores |
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| 10 | * -------------------------------------------------------------------- */ |
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| 11 | /* |
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| 12 | * Copyright (C) 2010-2017 ARM Limited or its affiliates. All rights reserved. |
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| 13 | * |
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| 14 | * SPDX-License-Identifier: Apache-2.0 |
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| 15 | * |
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| 16 | * Licensed under the Apache License, Version 2.0 (the License); you may |
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| 17 | * not use this file except in compliance with the License. |
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| 18 | * You may obtain a copy of the License at |
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| 19 | * |
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| 20 | * www.apache.org/licenses/LICENSE-2.0 |
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| 21 | * |
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| 22 | * Unless required by applicable law or agreed to in writing, software |
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| 23 | * distributed under the License is distributed on an AS IS BASIS, WITHOUT |
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| 24 | * WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. |
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| 25 | * See the License for the specific language governing permissions and |
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| 26 | * limitations under the License. |
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| 27 | */ |
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| 28 | |||
| 29 | #include "arm_math.h" |
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| 30 | |||
| 31 | /** |
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| 32 | * @ingroup groupMath |
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| 33 | */ |
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| 34 | |||
| 35 | /** |
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| 36 | * @addtogroup shift |
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| 37 | * @{ |
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| 38 | */ |
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| 39 | |||
| 40 | /** |
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| 41 | * @brief Shifts the elements of a Q15 vector a specified number of bits. |
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| 42 | * @param[in] *pSrc points to the input vector |
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| 43 | * @param[in] shiftBits number of bits to shift. A positive value shifts left; a negative value shifts right. |
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| 44 | * @param[out] *pDst points to the output vector |
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| 45 | * @param[in] blockSize number of samples in the vector |
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| 46 | * @return none. |
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| 47 | * |
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| 48 | * <b>Scaling and Overflow Behavior:</b> |
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| 49 | * \par |
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| 50 | * The function uses saturating arithmetic. |
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| 51 | * Results outside of the allowable Q15 range [0x8000 0x7FFF] will be saturated. |
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| 52 | */ |
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| 53 | |||
| 54 | void arm_shift_q15( |
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| 55 | q15_t * pSrc, |
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| 56 | int8_t shiftBits, |
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| 57 | q15_t * pDst, |
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| 58 | uint32_t blockSize) |
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| 59 | { |
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| 60 | uint32_t blkCnt; /* loop counter */ |
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| 61 | uint8_t sign; /* Sign of shiftBits */ |
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| 62 | |||
| 63 | #if defined (ARM_MATH_DSP) |
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| 64 | |||
| 65 | /* Run the below code for Cortex-M4 and Cortex-M3 */ |
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| 66 | |||
| 67 | q15_t in1, in2; /* Temporary variables */ |
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| 68 | |||
| 69 | |||
| 70 | /*loop Unrolling */ |
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| 71 | blkCnt = blockSize >> 2U; |
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| 72 | |||
| 73 | /* Getting the sign of shiftBits */ |
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| 74 | sign = (shiftBits & 0x80); |
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| 75 | |||
| 76 | /* If the shift value is positive then do right shift else left shift */ |
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| 77 | if (sign == 0U) |
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| 78 | { |
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| 79 | /* First part of the processing with loop unrolling. Compute 4 outputs at a time. |
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| 80 | ** a second loop below computes the remaining 1 to 3 samples. */ |
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| 81 | while (blkCnt > 0U) |
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| 82 | { |
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| 83 | /* Read 2 inputs */ |
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| 84 | in1 = *pSrc++; |
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| 85 | in2 = *pSrc++; |
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| 86 | /* C = A << shiftBits */ |
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| 87 | /* Shift the inputs and then store the results in the destination buffer. */ |
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| 88 | #ifndef ARM_MATH_BIG_ENDIAN |
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| 89 | |||
| 90 | *__SIMD32(pDst)++ = __PKHBT(__SSAT((in1 << shiftBits), 16), |
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| 91 | __SSAT((in2 << shiftBits), 16), 16); |
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| 92 | |||
| 93 | #else |
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| 94 | |||
| 95 | *__SIMD32(pDst)++ = __PKHBT(__SSAT((in2 << shiftBits), 16), |
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| 96 | __SSAT((in1 << shiftBits), 16), 16); |
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| 97 | |||
| 98 | #endif /* #ifndef ARM_MATH_BIG_ENDIAN */ |
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| 99 | |||
| 100 | in1 = *pSrc++; |
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| 101 | in2 = *pSrc++; |
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| 102 | |||
| 103 | #ifndef ARM_MATH_BIG_ENDIAN |
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| 104 | |||
| 105 | *__SIMD32(pDst)++ = __PKHBT(__SSAT((in1 << shiftBits), 16), |
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| 106 | __SSAT((in2 << shiftBits), 16), 16); |
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| 107 | |||
| 108 | #else |
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| 109 | |||
| 110 | *__SIMD32(pDst)++ = __PKHBT(__SSAT((in2 << shiftBits), 16), |
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| 111 | __SSAT((in1 << shiftBits), 16), 16); |
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| 112 | |||
| 113 | #endif /* #ifndef ARM_MATH_BIG_ENDIAN */ |
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| 114 | |||
| 115 | /* Decrement the loop counter */ |
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| 116 | blkCnt--; |
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| 117 | } |
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| 118 | |||
| 119 | /* If the blockSize is not a multiple of 4, compute any remaining output samples here. |
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| 120 | ** No loop unrolling is used. */ |
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| 121 | blkCnt = blockSize % 0x4U; |
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| 122 | |||
| 123 | while (blkCnt > 0U) |
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| 124 | { |
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| 125 | /* C = A << shiftBits */ |
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| 126 | /* Shift and then store the results in the destination buffer. */ |
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| 127 | *pDst++ = __SSAT((*pSrc++ << shiftBits), 16); |
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| 128 | |||
| 129 | /* Decrement the loop counter */ |
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| 130 | blkCnt--; |
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| 131 | } |
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| 132 | } |
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| 133 | else |
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| 134 | { |
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| 135 | /* First part of the processing with loop unrolling. Compute 4 outputs at a time. |
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| 136 | ** a second loop below computes the remaining 1 to 3 samples. */ |
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| 137 | while (blkCnt > 0U) |
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| 138 | { |
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| 139 | /* Read 2 inputs */ |
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| 140 | in1 = *pSrc++; |
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| 141 | in2 = *pSrc++; |
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| 142 | |||
| 143 | /* C = A >> shiftBits */ |
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| 144 | /* Shift the inputs and then store the results in the destination buffer. */ |
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| 145 | #ifndef ARM_MATH_BIG_ENDIAN |
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| 146 | |||
| 147 | *__SIMD32(pDst)++ = __PKHBT((in1 >> -shiftBits), |
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| 148 | (in2 >> -shiftBits), 16); |
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| 149 | |||
| 150 | #else |
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| 151 | |||
| 152 | *__SIMD32(pDst)++ = __PKHBT((in2 >> -shiftBits), |
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| 153 | (in1 >> -shiftBits), 16); |
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| 154 | |||
| 155 | #endif /* #ifndef ARM_MATH_BIG_ENDIAN */ |
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| 156 | |||
| 157 | in1 = *pSrc++; |
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| 158 | in2 = *pSrc++; |
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| 159 | |||
| 160 | #ifndef ARM_MATH_BIG_ENDIAN |
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| 161 | |||
| 162 | *__SIMD32(pDst)++ = __PKHBT((in1 >> -shiftBits), |
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| 163 | (in2 >> -shiftBits), 16); |
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| 164 | |||
| 165 | #else |
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| 166 | |||
| 167 | *__SIMD32(pDst)++ = __PKHBT((in2 >> -shiftBits), |
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| 168 | (in1 >> -shiftBits), 16); |
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| 169 | |||
| 170 | #endif /* #ifndef ARM_MATH_BIG_ENDIAN */ |
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| 171 | |||
| 172 | /* Decrement the loop counter */ |
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| 173 | blkCnt--; |
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| 174 | } |
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| 175 | |||
| 176 | /* If the blockSize is not a multiple of 4, compute any remaining output samples here. |
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| 177 | ** No loop unrolling is used. */ |
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| 178 | blkCnt = blockSize % 0x4U; |
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| 179 | |||
| 180 | while (blkCnt > 0U) |
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| 181 | { |
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| 182 | /* C = A >> shiftBits */ |
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| 183 | /* Shift the inputs and then store the results in the destination buffer. */ |
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| 184 | *pDst++ = (*pSrc++ >> -shiftBits); |
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| 185 | |||
| 186 | /* Decrement the loop counter */ |
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| 187 | blkCnt--; |
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| 188 | } |
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| 189 | } |
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| 190 | |||
| 191 | #else |
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| 192 | |||
| 193 | /* Run the below code for Cortex-M0 */ |
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| 194 | |||
| 195 | /* Getting the sign of shiftBits */ |
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| 196 | sign = (shiftBits & 0x80); |
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| 197 | |||
| 198 | /* If the shift value is positive then do right shift else left shift */ |
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| 199 | if (sign == 0U) |
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| 200 | { |
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| 201 | /* Initialize blkCnt with number of samples */ |
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| 202 | blkCnt = blockSize; |
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| 203 | |||
| 204 | while (blkCnt > 0U) |
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| 205 | { |
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| 206 | /* C = A << shiftBits */ |
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| 207 | /* Shift and then store the results in the destination buffer. */ |
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| 208 | *pDst++ = __SSAT(((q31_t) * pSrc++ << shiftBits), 16); |
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| 209 | |||
| 210 | /* Decrement the loop counter */ |
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| 211 | blkCnt--; |
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| 212 | } |
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| 213 | } |
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| 214 | else |
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| 215 | { |
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| 216 | /* Initialize blkCnt with number of samples */ |
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| 217 | blkCnt = blockSize; |
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| 218 | |||
| 219 | while (blkCnt > 0U) |
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| 220 | { |
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| 221 | /* C = A >> shiftBits */ |
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| 222 | /* Shift the inputs and then store the results in the destination buffer. */ |
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| 223 | *pDst++ = (*pSrc++ >> -shiftBits); |
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| 224 | |||
| 225 | /* Decrement the loop counter */ |
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| 226 | blkCnt--; |
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| 227 | } |
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| 228 | } |
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| 229 | |||
| 230 | #endif /* #if defined (ARM_MATH_DSP) */ |
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| 231 | |||
| 232 | } |
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| 233 | |||
| 234 | /** |
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| 235 | * @} end of shift group |
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| 236 | */ |