double.h 3.5 KB

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  1. /*
  2. * Definitions for IEEE Double Precision
  3. */
  4. #if _FP_W_TYPE_SIZE < 32
  5. #error "Here's a nickel kid. Go buy yourself a real computer."
  6. #endif
  7. #if _FP_W_TYPE_SIZE < 64
  8. #define _FP_FRACTBITS_D (2 * _FP_W_TYPE_SIZE)
  9. #else
  10. #define _FP_FRACTBITS_D _FP_W_TYPE_SIZE
  11. #endif
  12. #define _FP_FRACBITS_D 53
  13. #define _FP_FRACXBITS_D (_FP_FRACTBITS_D - _FP_FRACBITS_D)
  14. #define _FP_WFRACBITS_D (_FP_WORKBITS + _FP_FRACBITS_D)
  15. #define _FP_WFRACXBITS_D (_FP_FRACTBITS_D - _FP_WFRACBITS_D)
  16. #define _FP_EXPBITS_D 11
  17. #define _FP_EXPBIAS_D 1023
  18. #define _FP_EXPMAX_D 2047
  19. #define _FP_QNANBIT_D \
  20. ((_FP_W_TYPE)1 << ((_FP_FRACBITS_D-2) % _FP_W_TYPE_SIZE))
  21. #define _FP_IMPLBIT_D \
  22. ((_FP_W_TYPE)1 << ((_FP_FRACBITS_D-1) % _FP_W_TYPE_SIZE))
  23. #define _FP_OVERFLOW_D \
  24. ((_FP_W_TYPE)1 << (_FP_WFRACBITS_D % _FP_W_TYPE_SIZE))
  25. #if _FP_W_TYPE_SIZE < 64
  26. union _FP_UNION_D
  27. {
  28. double flt;
  29. struct {
  30. #if __BYTE_ORDER == __BIG_ENDIAN
  31. unsigned sign : 1;
  32. unsigned exp : _FP_EXPBITS_D;
  33. unsigned frac1 : _FP_FRACBITS_D - (_FP_IMPLBIT_D != 0) - _FP_W_TYPE_SIZE;
  34. unsigned frac0 : _FP_W_TYPE_SIZE;
  35. #else
  36. unsigned frac0 : _FP_W_TYPE_SIZE;
  37. unsigned frac1 : _FP_FRACBITS_D - (_FP_IMPLBIT_D != 0) - _FP_W_TYPE_SIZE;
  38. unsigned exp : _FP_EXPBITS_D;
  39. unsigned sign : 1;
  40. #endif
  41. } bits __attribute__((packed));
  42. };
  43. #define FP_DECL_D(X) _FP_DECL(2,X)
  44. #define FP_UNPACK_RAW_D(X,val) _FP_UNPACK_RAW_2(D,X,val)
  45. #define FP_PACK_RAW_D(val,X) _FP_PACK_RAW_2(D,val,X)
  46. #define FP_UNPACK_D(X,val) \
  47. do { \
  48. _FP_UNPACK_RAW_2(D,X,val); \
  49. _FP_UNPACK_CANONICAL(D,2,X); \
  50. } while (0)
  51. #define FP_PACK_D(val,X) \
  52. do { \
  53. _FP_PACK_CANONICAL(D,2,X); \
  54. _FP_PACK_RAW_2(D,val,X); \
  55. } while (0)
  56. #define FP_NEG_D(R,X) _FP_NEG(D,2,R,X)
  57. #define FP_ADD_D(R,X,Y) _FP_ADD(D,2,R,X,Y)
  58. #define FP_SUB_D(R,X,Y) _FP_SUB(D,2,R,X,Y)
  59. #define FP_MUL_D(R,X,Y) _FP_MUL(D,2,R,X,Y)
  60. #define FP_DIV_D(R,X,Y) _FP_DIV(D,2,R,X,Y)
  61. #define FP_SQRT_D(R,X) _FP_SQRT(D,2,R,X)
  62. #define FP_CMP_D(r,X,Y,un) _FP_CMP(D,2,r,X,Y,un)
  63. #define FP_CMP_EQ_D(r,X,Y) _FP_CMP_EQ(D,2,r,X,Y)
  64. #define FP_TO_INT_D(r,X,rsz,rsg) _FP_TO_INT(D,2,r,X,rsz,rsg)
  65. #define FP_FROM_INT_D(X,r,rs,rt) _FP_FROM_INT(D,2,X,r,rs,rt)
  66. #else
  67. union _FP_UNION_D
  68. {
  69. double flt;
  70. struct {
  71. #if __BYTE_ORDER == __BIG_ENDIAN
  72. unsigned sign : 1;
  73. unsigned exp : _FP_EXPBITS_D;
  74. unsigned long frac : _FP_FRACBITS_D - (_FP_IMPLBIT_D != 0);
  75. #else
  76. unsigned long frac : _FP_FRACBITS_D - (_FP_IMPLBIT_D != 0);
  77. unsigned exp : _FP_EXPBITS_D;
  78. unsigned sign : 1;
  79. #endif
  80. } bits __attribute__((packed));
  81. };
  82. #define FP_DECL_D(X) _FP_DECL(1,X)
  83. #define FP_UNPACK_RAW_D(X,val) _FP_UNPACK_RAW_1(D,X,val)
  84. #define FP_PACK_RAW_D(val,X) _FP_PACK_RAW_1(D,val,X)
  85. #define FP_UNPACK_D(X,val) \
  86. do { \
  87. _FP_UNPACK_RAW_1(D,X,val); \
  88. _FP_UNPACK_CANONICAL(D,1,X); \
  89. } while (0)
  90. #define FP_PACK_D(val,X) \
  91. do { \
  92. _FP_PACK_CANONICAL(D,1,X); \
  93. _FP_PACK_RAW_1(D,val,X); \
  94. } while (0)
  95. #define FP_NEG_D(R,X) _FP_NEG(D,1,R,X)
  96. #define FP_ADD_D(R,X,Y) _FP_ADD(D,1,R,X,Y)
  97. #define FP_SUB_D(R,X,Y) _FP_SUB(D,1,R,X,Y)
  98. #define FP_MUL_D(R,X,Y) _FP_MUL(D,1,R,X,Y)
  99. #define FP_DIV_D(R,X,Y) _FP_DIV(D,1,R,X,Y)
  100. #define FP_SQRT_D(R,X) _FP_SQRT(D,1,R,X)
  101. /* The implementation of _FP_MUL_D and _FP_DIV_D should be chosen by
  102. the target machine. */
  103. #define FP_CMP_D(r,X,Y,un) _FP_CMP(D,1,r,X,Y,un)
  104. #define FP_CMP_EQ_D(r,X,Y) _FP_CMP_EQ(D,1,r,X,Y)
  105. #define FP_TO_INT_D(r,X,rsz,rsg) _FP_TO_INT(D,1,r,X,rsz,rsg)
  106. #define FP_FROM_INT_D(X,r,rs,rt) _FP_FROM_INT(D,1,X,r,rs,rt)
  107. #endif /* W_TYPE_SIZE < 64 */