isinf.m4 4.8 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157
  1. # isinf.m4 serial 11
  2. dnl Copyright (C) 2007-2017 Free Software Foundation, Inc.
  3. dnl This file is free software; the Free Software Foundation
  4. dnl gives unlimited permission to copy and/or distribute it,
  5. dnl with or without modifications, as long as this notice is preserved.
  6. AC_DEFUN([gl_ISINF],
  7. [
  8. AC_REQUIRE([gl_MATH_H_DEFAULTS])
  9. dnl Persuade glibc <math.h> to declare isinf.
  10. AC_REQUIRE([gl_USE_SYSTEM_EXTENSIONS])
  11. AC_CHECK_DECLS([isinf], , ,
  12. [[#include <math.h>
  13. #ifndef isinf
  14. #error "isinf must be a macro, not a function"
  15. #endif
  16. ]])
  17. if test "$ac_cv_have_decl_isinf" = yes; then
  18. gl_CHECK_MATH_LIB([ISINF_LIBM], [x = isinf (x) + isinf ((float) x);])
  19. if test "$ISINF_LIBM" != missing; then
  20. dnl Test whether isinf() on 'long double' works.
  21. gl_ISINFL_WORKS
  22. case "$gl_cv_func_isinfl_works" in
  23. *yes) ;;
  24. *) ISINF_LIBM=missing;;
  25. esac
  26. fi
  27. fi
  28. if test "$ac_cv_have_decl_isinf" != yes ||
  29. test "$ISINF_LIBM" = missing; then
  30. REPLACE_ISINF=1
  31. dnl No libraries are needed to link lib/isinf.c.
  32. ISINF_LIBM=
  33. fi
  34. AC_SUBST([ISINF_LIBM])
  35. ])
  36. dnl Test whether isinf() works:
  37. dnl 1) Whether it correctly returns false for LDBL_MAX.
  38. dnl 2) Whether on 'long double' recognizes all canonical values which are
  39. dnl infinite.
  40. AC_DEFUN([gl_ISINFL_WORKS],
  41. [
  42. AC_REQUIRE([AC_PROG_CC])
  43. AC_REQUIRE([gl_BIGENDIAN])
  44. AC_REQUIRE([gl_LONG_DOUBLE_VS_DOUBLE])
  45. AC_REQUIRE([AC_CANONICAL_HOST]) dnl for cross-compiles
  46. AC_CACHE_CHECK([whether isinf(long double) works], [gl_cv_func_isinfl_works],
  47. [
  48. AC_RUN_IFELSE(
  49. [AC_LANG_SOURCE([[
  50. #include <float.h>
  51. #include <limits.h>
  52. #include <math.h>
  53. #define NWORDS \
  54. ((sizeof (long double) + sizeof (unsigned int) - 1) / sizeof (unsigned int))
  55. typedef union { unsigned int word[NWORDS]; long double value; }
  56. memory_long_double;
  57. /* On Irix 6.5, gcc 3.4.3 can't compute compile-time NaN, and needs the
  58. runtime type conversion. */
  59. #ifdef __sgi
  60. static long double NaNl ()
  61. {
  62. double zero = 0.0;
  63. return zero / zero;
  64. }
  65. #else
  66. # define NaNl() (0.0L / 0.0L)
  67. #endif
  68. int main ()
  69. {
  70. int result = 0;
  71. if (isinf (LDBL_MAX))
  72. result |= 1;
  73. {
  74. memory_long_double m;
  75. unsigned int i;
  76. /* The isinf macro should be immune against changes in the sign bit and
  77. in the mantissa bits. The xor operation twiddles a bit that can only be
  78. a sign bit or a mantissa bit (since the exponent never extends to
  79. bit 31). */
  80. m.value = NaNl ();
  81. m.word[NWORDS / 2] ^= (unsigned int) 1 << (sizeof (unsigned int) * CHAR_BIT - 1);
  82. for (i = 0; i < NWORDS; i++)
  83. m.word[i] |= 1;
  84. if (isinf (m.value))
  85. result |= 2;
  86. }
  87. #if ((defined __ia64 && LDBL_MANT_DIG == 64) || (defined __x86_64__ || defined __amd64__) || (defined __i386 || defined __i386__ || defined _I386 || defined _M_IX86 || defined _X86_)) && !HAVE_SAME_LONG_DOUBLE_AS_DOUBLE
  88. /* Representation of an 80-bit 'long double' as an initializer for a sequence
  89. of 'unsigned int' words. */
  90. # ifdef WORDS_BIGENDIAN
  91. # define LDBL80_WORDS(exponent,manthi,mantlo) \
  92. { ((unsigned int) (exponent) << 16) | ((unsigned int) (manthi) >> 16), \
  93. ((unsigned int) (manthi) << 16) | ((unsigned int) (mantlo) >> 16), \
  94. (unsigned int) (mantlo) << 16 \
  95. }
  96. # else
  97. # define LDBL80_WORDS(exponent,manthi,mantlo) \
  98. { mantlo, manthi, exponent }
  99. # endif
  100. { /* Quiet NaN. */
  101. static memory_long_double x =
  102. { LDBL80_WORDS (0xFFFF, 0xC3333333, 0x00000000) };
  103. if (isinf (x.value))
  104. result |= 2;
  105. }
  106. {
  107. /* Signalling NaN. */
  108. static memory_long_double x =
  109. { LDBL80_WORDS (0xFFFF, 0x83333333, 0x00000000) };
  110. if (isinf (x.value))
  111. result |= 2;
  112. }
  113. /* isinf should return something even for noncanonical values. */
  114. { /* Pseudo-NaN. */
  115. static memory_long_double x =
  116. { LDBL80_WORDS (0xFFFF, 0x40000001, 0x00000000) };
  117. if (isinf (x.value) && !isinf (x.value))
  118. result |= 4;
  119. }
  120. { /* Pseudo-Infinity. */
  121. static memory_long_double x =
  122. { LDBL80_WORDS (0xFFFF, 0x00000000, 0x00000000) };
  123. if (isinf (x.value) && !isinf (x.value))
  124. result |= 8;
  125. }
  126. { /* Pseudo-Zero. */
  127. static memory_long_double x =
  128. { LDBL80_WORDS (0x4004, 0x00000000, 0x00000000) };
  129. if (isinf (x.value) && !isinf (x.value))
  130. result |= 16;
  131. }
  132. { /* Unnormalized number. */
  133. static memory_long_double x =
  134. { LDBL80_WORDS (0x4000, 0x63333333, 0x00000000) };
  135. if (isinf (x.value) && !isinf (x.value))
  136. result |= 32;
  137. }
  138. { /* Pseudo-Denormal. */
  139. static memory_long_double x =
  140. { LDBL80_WORDS (0x0000, 0x83333333, 0x00000000) };
  141. if (isinf (x.value) && !isinf (x.value))
  142. result |= 64;
  143. }
  144. #endif
  145. return result;
  146. }]])], [gl_cv_func_isinfl_works=yes], [gl_cv_func_isinfl_works=no],
  147. [gl_cv_func_isinfl_works="guessing yes"])
  148. ])
  149. ])