gf_4vect_mad_vsx.c 3.2 KB

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  1. #include "ec_base_vsx.h"
  2. void gf_4vect_mad_vsx(int len, int vec, int vec_i, unsigned char *gftbls,
  3. unsigned char *src, unsigned char **dest)
  4. {
  5. unsigned char *s, *t0, *t1, *t2, *t3;
  6. vector unsigned char vX1, vX2, vX3, vX4;
  7. vector unsigned char vY1, vY2, vY3, vY4, vY5, vY6, vY7, vY8;
  8. vector unsigned char vYD, vYE, vYF, vYG, vYH, vYI, vYJ, vYK;
  9. vector unsigned char vhi0, vlo0, vhi1, vlo1, vhi2, vlo2, vhi3, vlo3;
  10. int i, head;
  11. s = (unsigned char *)src;
  12. t0 = (unsigned char *)dest[0];
  13. t1 = (unsigned char *)dest[1];
  14. t2 = (unsigned char *)dest[2];
  15. t3 = (unsigned char *)dest[3];
  16. head = len % 64;
  17. if (head != 0) {
  18. gf_vect_mad_base(head, vec, vec_i, &gftbls[0 * 32 * vec], src, t0);
  19. gf_vect_mad_base(head, vec, vec_i, &gftbls[1 * 32 * vec], src, t1);
  20. gf_vect_mad_base(head, vec, vec_i, &gftbls[2 * 32 * vec], src, t2);
  21. gf_vect_mad_base(head, vec, vec_i, &gftbls[3 * 32 * vec], src, t3);
  22. }
  23. vlo0 = EC_vec_xl(0, gftbls + (((0 * vec) << 5) + (vec_i << 5)));
  24. vhi0 = EC_vec_xl(16, gftbls + (((0 * vec) << 5) + (vec_i << 5)));
  25. vlo1 = EC_vec_xl(0, gftbls + (((1 * vec) << 5) + (vec_i << 5)));
  26. vhi1 = EC_vec_xl(16, gftbls + (((1 * vec) << 5) + (vec_i << 5)));
  27. vlo2 = EC_vec_xl(0, gftbls + (((2 * vec) << 5) + (vec_i << 5)));
  28. vhi2 = EC_vec_xl(16, gftbls + (((2 * vec) << 5) + (vec_i << 5)));
  29. vlo3 = EC_vec_xl(0, gftbls + (((3 * vec) << 5) + (vec_i << 5)));
  30. vhi3 = EC_vec_xl(16, gftbls + (((3 * vec) << 5) + (vec_i << 5)));
  31. for (i = head; i < len - 63; i += 64) {
  32. vX1 = vec_xl(0, s + i);
  33. vX2 = vec_xl(16, s + i);
  34. vX3 = vec_xl(32, s + i);
  35. vX4 = vec_xl(48, s + i);
  36. vY1 = vec_xl(0, t0 + i);
  37. vY2 = vec_xl(16, t0 + i);
  38. vYD = vec_xl(32, t0 + i);
  39. vYE = vec_xl(48, t0 + i);
  40. vY1 = vY1 ^ EC_vec_permxor(vhi0, vlo0, vX1);
  41. vY2 = vY2 ^ EC_vec_permxor(vhi0, vlo0, vX2);
  42. vYD = vYD ^ EC_vec_permxor(vhi0, vlo0, vX3);
  43. vYE = vYE ^ EC_vec_permxor(vhi0, vlo0, vX4);
  44. vY3 = vec_xl(0, t1 + i);
  45. vY4 = vec_xl(16, t1 + i);
  46. vYF = vec_xl(32, t1 + i);
  47. vYG = vec_xl(48, t1 + i);
  48. vec_xst(vY1, 0, t0 + i);
  49. vec_xst(vY2, 16, t0 + i);
  50. vec_xst(vYD, 32, t0 + i);
  51. vec_xst(vYE, 48, t0 + i);
  52. vY3 = vY3 ^ EC_vec_permxor(vhi1, vlo1, vX1);
  53. vY4 = vY4 ^ EC_vec_permxor(vhi1, vlo1, vX2);
  54. vYF = vYF ^ EC_vec_permxor(vhi1, vlo1, vX3);
  55. vYG = vYG ^ EC_vec_permxor(vhi1, vlo1, vX4);
  56. vY5 = vec_xl(0, t2 + i);
  57. vY6 = vec_xl(16, t2 + i);
  58. vYH = vec_xl(32, t2 + i);
  59. vYI = vec_xl(48, t2 + i);
  60. vec_xst(vY3, 0, t1 + i);
  61. vec_xst(vY4, 16, t1 + i);
  62. vec_xst(vYF, 32, t1 + i);
  63. vec_xst(vYG, 48, t1 + i);
  64. vY5 = vY5 ^ EC_vec_permxor(vhi2, vlo2, vX1);
  65. vY6 = vY6 ^ EC_vec_permxor(vhi2, vlo2, vX2);
  66. vYH = vYH ^ EC_vec_permxor(vhi2, vlo2, vX3);
  67. vYI = vYI ^ EC_vec_permxor(vhi2, vlo2, vX4);
  68. vY7 = vec_xl(0, t3 + i);
  69. vY8 = vec_xl(16, t3 + i);
  70. vYJ = vec_xl(32, t3 + i);
  71. vYK = vec_xl(48, t3 + i);
  72. vec_xst(vY5, 0, t2 + i);
  73. vec_xst(vY6, 16, t2 + i);
  74. vec_xst(vYH, 32, t2 + i);
  75. vec_xst(vYI, 48, t2 + i);
  76. vY7 = vY7 ^ EC_vec_permxor(vhi3, vlo3, vX1);
  77. vY8 = vY8 ^ EC_vec_permxor(vhi3, vlo3, vX2);
  78. vYJ = vYJ ^ EC_vec_permxor(vhi3, vlo3, vX3);
  79. vYK = vYK ^ EC_vec_permxor(vhi3, vlo3, vX4);
  80. vec_xst(vY7, 0, t3 + i);
  81. vec_xst(vY8, 16, t3 + i);
  82. vec_xst(vYJ, 32, t3 + i);
  83. vec_xst(vYK, 48, t3 + i);
  84. }
  85. return;
  86. }