sad4d_avx512.c 3.1 KB

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  1. /*
  2. * Copyright (c) 2017 The WebM project authors. All Rights Reserved.
  3. *
  4. * Use of this source code is governed by a BSD-style license
  5. * that can be found in the LICENSE file in the root of the source
  6. * tree. An additional intellectual property rights grant can be found
  7. * in the file PATENTS. All contributing project authors may
  8. * be found in the AUTHORS file in the root of the source tree.
  9. */
  10. #include <immintrin.h> // AVX512
  11. #include "./vpx_dsp_rtcd.h"
  12. #include "vpx/vpx_integer.h"
  13. void vpx_sad64x64x4d_avx512(const uint8_t *src_ptr, int src_stride,
  14. const uint8_t *const ref_array[4], int ref_stride,
  15. uint32_t res[4]) {
  16. __m512i src_reg, ref0_reg, ref1_reg, ref2_reg, ref3_reg;
  17. __m512i sum_ref0, sum_ref1, sum_ref2, sum_ref3;
  18. __m512i sum_mlow, sum_mhigh;
  19. int i;
  20. const uint8_t *ref0, *ref1, *ref2, *ref3;
  21. ref0 = ref_array[0];
  22. ref1 = ref_array[1];
  23. ref2 = ref_array[2];
  24. ref3 = ref_array[3];
  25. sum_ref0 = _mm512_set1_epi16(0);
  26. sum_ref1 = _mm512_set1_epi16(0);
  27. sum_ref2 = _mm512_set1_epi16(0);
  28. sum_ref3 = _mm512_set1_epi16(0);
  29. for (i = 0; i < 64; i++) {
  30. // load src and all ref[]
  31. src_reg = _mm512_loadu_si512((const __m512i *)src_ptr);
  32. ref0_reg = _mm512_loadu_si512((const __m512i *)ref0);
  33. ref1_reg = _mm512_loadu_si512((const __m512i *)ref1);
  34. ref2_reg = _mm512_loadu_si512((const __m512i *)ref2);
  35. ref3_reg = _mm512_loadu_si512((const __m512i *)ref3);
  36. // sum of the absolute differences between every ref[] to src
  37. ref0_reg = _mm512_sad_epu8(ref0_reg, src_reg);
  38. ref1_reg = _mm512_sad_epu8(ref1_reg, src_reg);
  39. ref2_reg = _mm512_sad_epu8(ref2_reg, src_reg);
  40. ref3_reg = _mm512_sad_epu8(ref3_reg, src_reg);
  41. // sum every ref[]
  42. sum_ref0 = _mm512_add_epi32(sum_ref0, ref0_reg);
  43. sum_ref1 = _mm512_add_epi32(sum_ref1, ref1_reg);
  44. sum_ref2 = _mm512_add_epi32(sum_ref2, ref2_reg);
  45. sum_ref3 = _mm512_add_epi32(sum_ref3, ref3_reg);
  46. src_ptr += src_stride;
  47. ref0 += ref_stride;
  48. ref1 += ref_stride;
  49. ref2 += ref_stride;
  50. ref3 += ref_stride;
  51. }
  52. {
  53. __m256i sum256;
  54. __m128i sum128;
  55. // in sum_ref[] the result is saved in the first 4 bytes
  56. // the other 4 bytes are zeroed.
  57. // sum_ref1 and sum_ref3 are shifted left by 4 bytes
  58. sum_ref1 = _mm512_bslli_epi128(sum_ref1, 4);
  59. sum_ref3 = _mm512_bslli_epi128(sum_ref3, 4);
  60. // merge sum_ref0 and sum_ref1 also sum_ref2 and sum_ref3
  61. sum_ref0 = _mm512_or_si512(sum_ref0, sum_ref1);
  62. sum_ref2 = _mm512_or_si512(sum_ref2, sum_ref3);
  63. // merge every 64 bit from each sum_ref[]
  64. sum_mlow = _mm512_unpacklo_epi64(sum_ref0, sum_ref2);
  65. sum_mhigh = _mm512_unpackhi_epi64(sum_ref0, sum_ref2);
  66. // add the low 64 bit to the high 64 bit
  67. sum_mlow = _mm512_add_epi32(sum_mlow, sum_mhigh);
  68. // add the low 128 bit to the high 128 bit
  69. sum256 = _mm256_add_epi32(_mm512_castsi512_si256(sum_mlow),
  70. _mm512_extracti32x8_epi32(sum_mlow, 1));
  71. sum128 = _mm_add_epi32(_mm256_castsi256_si128(sum256),
  72. _mm256_extractf128_si256(sum256, 1));
  73. _mm_storeu_si128((__m128i *)(res), sum128);
  74. }
  75. }