arm_scale_q15.c 5.7 KB

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  1. /* ----------------------------------------------------------------------
  2. * Project: CMSIS DSP Library
  3. * Title: arm_scale_q15.c
  4. * Description: Multiplies a Q15 vector by a scalar
  5. *
  6. * $Date: 18. March 2019
  7. * $Revision: V1.6.0
  8. *
  9. * Target Processor: Cortex-M cores
  10. * -------------------------------------------------------------------- */
  11. /*
  12. * Copyright (C) 2010-2019 ARM Limited or its affiliates. All rights reserved.
  13. *
  14. * SPDX-License-Identifier: Apache-2.0
  15. *
  16. * Licensed under the Apache License, Version 2.0 (the License); you may
  17. * not use this file except in compliance with the License.
  18. * You may obtain a copy of the License at
  19. *
  20. * www.apache.org/licenses/LICENSE-2.0
  21. *
  22. * Unless required by applicable law or agreed to in writing, software
  23. * distributed under the License is distributed on an AS IS BASIS, WITHOUT
  24. * WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
  25. * See the License for the specific language governing permissions and
  26. * limitations under the License.
  27. */
  28. #include "arm_math.h"
  29. /**
  30. @ingroup groupMath
  31. */
  32. /**
  33. @addtogroup BasicScale
  34. @{
  35. */
  36. /**
  37. @brief Multiplies a Q15 vector by a scalar.
  38. @param[in] pSrc points to the input vector
  39. @param[in] scaleFract fractional portion of the scale value
  40. @param[in] shift number of bits to shift the result by
  41. @param[out] pDst points to the output vector
  42. @param[in] blockSize number of samples in each vector
  43. @return none
  44. @par Scaling and Overflow Behavior
  45. The input data <code>*pSrc</code> and <code>scaleFract</code> are in 1.15 format.
  46. These are multiplied to yield a 2.30 intermediate result and this is shifted with saturation to 1.15 format.
  47. */
  48. #if defined(ARM_MATH_MVEI)
  49. #include "arm_helium_utils.h"
  50. void arm_scale_q15(
  51. const q15_t * pSrc,
  52. q15_t scaleFract,
  53. int8_t shift,
  54. q15_t * pDst,
  55. uint32_t blockSize)
  56. {
  57. uint32_t blkCnt; /* loop counters */
  58. q15x8_t vecSrc;
  59. q15x8_t vecDst;
  60. /* Compute 8 outputs at a time */
  61. blkCnt = blockSize >> 3;
  62. while (blkCnt > 0U)
  63. {
  64. /*
  65. * C = A * scale
  66. * Scale the input and then store the result in the destination buffer.
  67. */
  68. vecSrc = vld1q(pSrc);
  69. vecDst = vmulhq(vecSrc, vdupq_n_s16(scaleFract));
  70. vecDst = vqshlq_r(vecDst, shift + 1);
  71. vst1q(pDst, vecDst);
  72. /*
  73. * Decrement the blockSize loop counter
  74. */
  75. blkCnt--;
  76. /*
  77. * advance vector source and destination pointers
  78. */
  79. pSrc += 8;
  80. pDst += 8;
  81. }
  82. /*
  83. * tail
  84. */
  85. blkCnt = blockSize & 7;
  86. if (blkCnt > 0U)
  87. {
  88. mve_pred16_t p0 = vctp16q(blkCnt);;
  89. vecSrc = vld1q(pSrc);
  90. vecDst = vmulhq(vecSrc, vdupq_n_s16(scaleFract));
  91. vecDst = vqshlq_r(vecDst, shift + 1);
  92. vstrhq_p(pDst, vecDst, p0);
  93. }
  94. }
  95. #else
  96. void arm_scale_q15(
  97. const q15_t *pSrc,
  98. q15_t scaleFract,
  99. int8_t shift,
  100. q15_t *pDst,
  101. uint32_t blockSize)
  102. {
  103. uint32_t blkCnt; /* Loop counter */
  104. int8_t kShift = 15 - shift; /* Shift to apply after scaling */
  105. #if defined (ARM_MATH_LOOPUNROLL)
  106. #if defined (ARM_MATH_DSP)
  107. q31_t inA1, inA2;
  108. q31_t out1, out2, out3, out4; /* Temporary output variables */
  109. q15_t in1, in2, in3, in4; /* Temporary input variables */
  110. #endif
  111. #endif
  112. #if defined (ARM_MATH_LOOPUNROLL)
  113. /* Loop unrolling: Compute 4 outputs at a time */
  114. blkCnt = blockSize >> 2U;
  115. while (blkCnt > 0U)
  116. {
  117. /* C = A * scale */
  118. #if defined (ARM_MATH_DSP)
  119. /* read 2 times 2 samples at a time from source */
  120. inA1 = read_q15x2_ia ((q15_t **) &pSrc);
  121. inA2 = read_q15x2_ia ((q15_t **) &pSrc);
  122. /* Scale inputs and store result in temporary variables
  123. * in single cycle by packing the outputs */
  124. out1 = (q31_t) ((q15_t) (inA1 >> 16) * scaleFract);
  125. out2 = (q31_t) ((q15_t) (inA1 ) * scaleFract);
  126. out3 = (q31_t) ((q15_t) (inA2 >> 16) * scaleFract);
  127. out4 = (q31_t) ((q15_t) (inA2 ) * scaleFract);
  128. /* apply shifting */
  129. out1 = out1 >> kShift;
  130. out2 = out2 >> kShift;
  131. out3 = out3 >> kShift;
  132. out4 = out4 >> kShift;
  133. /* saturate the output */
  134. in1 = (q15_t) (__SSAT(out1, 16));
  135. in2 = (q15_t) (__SSAT(out2, 16));
  136. in3 = (q15_t) (__SSAT(out3, 16));
  137. in4 = (q15_t) (__SSAT(out4, 16));
  138. /* store result to destination */
  139. write_q15x2_ia (&pDst, __PKHBT(in2, in1, 16));
  140. write_q15x2_ia (&pDst, __PKHBT(in4, in3, 16));
  141. #else
  142. *pDst++ = (q15_t) (__SSAT(((q31_t) *pSrc++ * scaleFract) >> kShift, 16));
  143. *pDst++ = (q15_t) (__SSAT(((q31_t) *pSrc++ * scaleFract) >> kShift, 16));
  144. *pDst++ = (q15_t) (__SSAT(((q31_t) *pSrc++ * scaleFract) >> kShift, 16));
  145. *pDst++ = (q15_t) (__SSAT(((q31_t) *pSrc++ * scaleFract) >> kShift, 16));
  146. #endif
  147. /* Decrement loop counter */
  148. blkCnt--;
  149. }
  150. /* Loop unrolling: Compute remaining outputs */
  151. blkCnt = blockSize % 0x4U;
  152. #else
  153. /* Initialize blkCnt with number of samples */
  154. blkCnt = blockSize;
  155. #endif /* #if defined (ARM_MATH_LOOPUNROLL) */
  156. while (blkCnt > 0U)
  157. {
  158. /* C = A * scale */
  159. /* Scale input and store result in destination buffer. */
  160. *pDst++ = (q15_t) (__SSAT(((q31_t) *pSrc++ * scaleFract) >> kShift, 16));
  161. /* Decrement loop counter */
  162. blkCnt--;
  163. }
  164. }
  165. #endif /* defined(ARM_MATH_MVEI) */
  166. /**
  167. @} end of BasicScale group
  168. */