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  1. /*
  2. * copyright (c) 2006 Michael Niedermayer <michaelni@gmx.at>
  3. *
  4. * This file is part of FFmpeg.
  5. *
  6. * FFmpeg is free software; you can redistribute it and/or
  7. * modify it under the terms of the GNU Lesser General Public
  8. * License as published by the Free Software Foundation; either
  9. * version 2.1 of the License, or (at your option) any later version.
  10. *
  11. * FFmpeg is distributed in the hope that it will be useful,
  12. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  13. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  14. * Lesser General Public License for more details.
  15. *
  16. * You should have received a copy of the GNU Lesser General Public
  17. * License along with FFmpeg; if not, write to the Free Software
  18. * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
  19. */
  20. #include <inttypes.h>
  21. #include "softfloat.h"
  22. #include "common.h"
  23. #include "log.h"
  24. void av_sincos_sf(int a, int *s, int *c)
  25. {
  26. int idx, sign;
  27. int sv, cv;
  28. int st, ct;
  29. idx = a >> 26;
  30. sign = (idx << 27) >> 31;
  31. cv = av_costbl_1_sf[idx & 0xf];
  32. cv = (cv ^ sign) - sign;
  33. idx -= 8;
  34. sign = (idx << 27) >> 31;
  35. sv = av_costbl_1_sf[idx & 0xf];
  36. sv = (sv ^ sign) - sign;
  37. idx = a >> 21;
  38. ct = av_costbl_2_sf[idx & 0x1f];
  39. st = av_sintbl_2_sf[idx & 0x1f];
  40. idx = (int)(((int64_t)cv * ct - (int64_t)sv * st + 0x20000000) >> 30);
  41. sv = (int)(((int64_t)cv * st + (int64_t)sv * ct + 0x20000000) >> 30);
  42. cv = idx;
  43. idx = a >> 16;
  44. ct = av_costbl_3_sf[idx & 0x1f];
  45. st = av_sintbl_3_sf[idx & 0x1f];
  46. idx = (int)(((int64_t)cv * ct - (int64_t)sv * st + 0x20000000) >> 30);
  47. sv = (int)(((int64_t)cv * st + (int64_t)sv * ct + 0x20000000) >> 30);
  48. cv = idx;
  49. idx = a >> 11;
  50. ct = (int)(((int64_t)av_costbl_4_sf[idx & 0x1f] * (0x800 - (a & 0x7ff)) +
  51. (int64_t)av_costbl_4_sf[(idx & 0x1f)+1]*(a & 0x7ff) +
  52. 0x400) >> 11);
  53. st = (int)(((int64_t)av_sintbl_4_sf[idx & 0x1f] * (0x800 - (a & 0x7ff)) +
  54. (int64_t)av_sintbl_4_sf[(idx & 0x1f) + 1] * (a & 0x7ff) +
  55. 0x400) >> 11);
  56. *c = (int)(((int64_t)cv * ct + (int64_t)sv * st + 0x20000000) >> 30);
  57. *s = (int)(((int64_t)cv * st + (int64_t)sv * ct + 0x20000000) >> 30);
  58. }
  59. #ifdef TEST
  60. #include <stdio.h>
  61. static const SoftFloat FLOAT_0_017776489257 = {0x1234, 12};
  62. static const SoftFloat FLOAT_1374_40625 = {0xabcd, 25};
  63. static const SoftFloat FLOAT_0_1249694824218 = {0xFFF, 15};
  64. int main(void){
  65. SoftFloat one= av_int2sf(1, 0);
  66. SoftFloat sf1, sf2, sf3;
  67. double d1, d2, d3;
  68. int i, j;
  69. av_log_set_level(AV_LOG_DEBUG);
  70. d1= 1;
  71. for(i= 0; i<10; i++){
  72. d1= 1/(d1+1);
  73. }
  74. printf("test1 double=%d\n", (int)(d1 * (1<<24)));
  75. sf1= one;
  76. for(i= 0; i<10; i++){
  77. sf1= av_div_sf(one, av_normalize_sf(av_add_sf(one, sf1)));
  78. }
  79. printf("test1 sf =%d\n", av_sf2int(sf1, 24));
  80. for(i= 0; i<100; i++){
  81. START_TIMER
  82. d1= i;
  83. d2= i/100.0;
  84. for(j= 0; j<1000; j++){
  85. d1= (d1+1)*d2;
  86. }
  87. STOP_TIMER("float add mul")
  88. }
  89. printf("test2 double=%d\n", (int)(d1 * (1<<24)));
  90. for(i= 0; i<100; i++){
  91. START_TIMER
  92. sf1= av_int2sf(i, 0);
  93. sf2= av_div_sf(av_int2sf(i, 2), av_int2sf(200, 3));
  94. for(j= 0; j<1000; j++){
  95. sf1= av_mul_sf(av_add_sf(sf1, one),sf2);
  96. }
  97. STOP_TIMER("softfloat add mul")
  98. }
  99. printf("test2 sf =%d (%d %d)\n", av_sf2int(sf1, 24), sf1.exp, sf1.mant);
  100. d1 = 0.0177764893;
  101. d2 = 1374.40625;
  102. d3 = 0.1249694824;
  103. d2 += d1;
  104. d3 += d2;
  105. printf("test3 double: %.10lf\n", d3);
  106. sf1 = FLOAT_0_017776489257;
  107. sf2 = FLOAT_1374_40625;
  108. sf3 = FLOAT_0_1249694824218;
  109. sf2 = av_add_sf(sf1, sf2);
  110. sf3 = av_add_sf(sf3, sf2);
  111. printf("test3 softfloat: %.10lf (0x%08x %d)\n", (double)av_sf2double(sf3), sf3.mant, sf3.exp);
  112. sf1 = av_int2sf(0xFFFFFFF0, 0);
  113. printf("test4 softfloat: %.10lf (0x%08x %d)\n", (double)av_sf2double(sf1), sf1.mant, sf1.exp);
  114. sf1 = av_int2sf(0x00000010, 0);
  115. printf("test4 softfloat: %.10lf (0x%08x %d)\n", (double)av_sf2double(sf1), sf1.mant, sf1.exp);
  116. sf1 = av_int2sf(0x1FFFFFFF, 0);
  117. printf("test4 softfloat: %.10lf (0x%08x %d)\n", (double)av_sf2double(sf1), sf1.mant, sf1.exp);
  118. sf1 = av_int2sf(0xE0000001, 0);
  119. printf("test4 softfloat: %.10lf (0x%08x %d)\n", (double)av_sf2double(sf1), sf1.mant, sf1.exp);
  120. return 0;
  121. }
  122. #endif