1
0

atan2.c 3.7 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119
  1. /* origin: FreeBSD /usr/src/lib/msun/src/e_atan2.c */
  2. /*
  3. * ====================================================
  4. * Copyright (C) 1993 by Sun Microsystems, Inc. All rights reserved.
  5. *
  6. * Developed at SunSoft, a Sun Microsystems, Inc. business.
  7. * Permission to use, copy, modify, and distribute this
  8. * software is freely granted, provided that this notice
  9. * is preserved.
  10. * ====================================================
  11. *
  12. */
  13. /* atan2(y,x)
  14. * Method :
  15. * 1. Reduce y to positive by atan2(y,x)=-atan2(-y,x).
  16. * 2. Reduce x to positive by (if x and y are unexceptional):
  17. * ARG (x+iy) = arctan(y/x) ... if x > 0,
  18. * ARG (x+iy) = pi - arctan[y/(-x)] ... if x < 0,
  19. *
  20. * Special cases:
  21. *
  22. * ATAN2((anything), NaN ) is NaN;
  23. * ATAN2(NAN , (anything) ) is NaN;
  24. * ATAN2(+-0, +(anything but NaN)) is +-0 ;
  25. * ATAN2(+-0, -(anything but NaN)) is +-pi ;
  26. * ATAN2(+-(anything but 0 and NaN), 0) is +-pi/2;
  27. * ATAN2(+-(anything but INF and NaN), +INF) is +-0 ;
  28. * ATAN2(+-(anything but INF and NaN), -INF) is +-pi;
  29. * ATAN2(+-INF,+INF ) is +-pi/4 ;
  30. * ATAN2(+-INF,-INF ) is +-3pi/4;
  31. * ATAN2(+-INF, (anything but,0,NaN, and INF)) is +-pi/2;
  32. *
  33. * Constants:
  34. * The hexadecimal values are the intended ones for the following
  35. * constants. The decimal values may be used, provided that the
  36. * compiler will convert from decimal to binary accurately enough
  37. * to produce the hexadecimal values shown.
  38. */
  39. #include "libm.h"
  40. // FIXME
  41. static const volatile double
  42. tiny = 1.0e-300;
  43. static const double
  44. pi_o_4 = 7.8539816339744827900E-01, /* 0x3FE921FB, 0x54442D18 */
  45. pi_o_2 = 1.5707963267948965580E+00, /* 0x3FF921FB, 0x54442D18 */
  46. pi = 3.1415926535897931160E+00; /* 0x400921FB, 0x54442D18 */
  47. static const volatile double
  48. pi_lo = 1.2246467991473531772E-16; /* 0x3CA1A626, 0x33145C07 */
  49. double atan2(double y, double x)
  50. {
  51. double z;
  52. int32_t k,m,hx,hy,ix,iy;
  53. uint32_t lx,ly;
  54. EXTRACT_WORDS(hx, lx, x);
  55. ix = hx & 0x7fffffff;
  56. EXTRACT_WORDS(hy, ly, y);
  57. iy = hy & 0x7fffffff;
  58. if ((ix|((lx|-lx)>>31)) > 0x7ff00000 ||
  59. (iy|((ly|-ly)>>31)) > 0x7ff00000) /* x or y is NaN */
  60. return x+y;
  61. if ((hx-0x3ff00000 | lx) == 0) /* x = 1.0 */
  62. return atan(y);
  63. m = ((hy>>31)&1) | ((hx>>30)&2); /* 2*sign(x)+sign(y) */
  64. /* when y = 0 */
  65. if ((iy|ly) == 0) {
  66. switch(m) {
  67. case 0:
  68. case 1: return y; /* atan(+-0,+anything)=+-0 */
  69. case 2: return pi+tiny; /* atan(+0,-anything) = pi */
  70. case 3: return -pi-tiny; /* atan(-0,-anything) =-pi */
  71. }
  72. }
  73. /* when x = 0 */
  74. if ((ix|lx) == 0)
  75. return hy < 0 ? -pi_o_2-tiny : pi_o_2+tiny;
  76. /* when x is INF */
  77. if (ix == 0x7ff00000) {
  78. if (iy == 0x7ff00000) {
  79. switch(m) {
  80. case 0: return pi_o_4+tiny; /* atan(+INF,+INF) */
  81. case 1: return -pi_o_4-tiny; /* atan(-INF,+INF) */
  82. case 2: return 3.0*pi_o_4+tiny; /* atan(+INF,-INF) */
  83. case 3: return -3.0*pi_o_4-tiny; /* atan(-INF,-INF) */
  84. }
  85. } else {
  86. switch(m) {
  87. case 0: return 0.0; /* atan(+...,+INF) */
  88. case 1: return -0.0; /* atan(-...,+INF) */
  89. case 2: return pi+tiny; /* atan(+...,-INF) */
  90. case 3: return -pi-tiny; /* atan(-...,-INF) */
  91. }
  92. }
  93. }
  94. /* when y is INF */
  95. if (iy == 0x7ff00000)
  96. return hy < 0 ? -pi_o_2-tiny : pi_o_2+tiny;
  97. /* compute y/x */
  98. k = (iy-ix)>>20;
  99. if (k > 60) { /* |y/x| > 2**60 */
  100. z = pi_o_2+0.5*pi_lo;
  101. m &= 1;
  102. } else if (hx < 0 && k < -60) /* 0 > |y|/x > -2**-60 */
  103. z = 0.0;
  104. else /* safe to do y/x */
  105. z = atan(fabs(y/x));
  106. switch (m) {
  107. case 0: return z; /* atan(+,+) */
  108. case 1: return -z; /* atan(-,+) */
  109. case 2: return pi - (z-pi_lo); /* atan(+,-) */
  110. default: /* case 3 */
  111. return (z-pi_lo) - pi; /* atan(-,-) */
  112. }
  113. }