basic-test.c 5.6 KB

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  1. /* Copyright (C) 1999 Free Software Foundation, Inc.
  2. This file is part of the GNU C Library.
  3. Contributed by Andreas Jaeger <aj@suse.de>, 1999.
  4. The GNU C Library is free software; you can redistribute it and/or
  5. modify it under the terms of the GNU Lesser General Public
  6. License as published by the Free Software Foundation; either
  7. version 2.1 of the License, or (at your option) any later version.
  8. The GNU C Library is distributed in the hope that it will be useful,
  9. but WITHOUT ANY WARRANTY; without even the implied warranty of
  10. MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  11. Lesser General Public License for more details.
  12. You should have received a copy of the GNU Lesser General Public
  13. License along with the GNU C Library; if not, write to the Free
  14. Software Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA
  15. 02111-1307 USA. */
  16. #define _ISOC99_SOURCE
  17. #include <math.h>
  18. #include <float.h>
  19. #include <stdio.h>
  20. static int errors = 0;
  21. static void
  22. check (const char *testname, int result)
  23. {
  24. if (!result) {
  25. printf ("Failure: %s\n", testname);
  26. errors++;
  27. }
  28. }
  29. #define TEST_FUNC(NAME, FLOAT, NANFUNC, EPSILON, HUGEVAL) \
  30. static void \
  31. NAME (void) \
  32. { \
  33. /* Variables are declared volatile to forbid some compiler \
  34. optimizations. */ \
  35. volatile FLOAT Inf_var, NaN_var, zero_var, one_var; \
  36. FLOAT x1, x2; \
  37. \
  38. zero_var = 0.0; \
  39. one_var = 1.0; \
  40. NaN_var = zero_var/zero_var; \
  41. Inf_var = one_var / zero_var; \
  42. \
  43. (void) &zero_var; \
  44. (void) &one_var; \
  45. (void) &NaN_var; \
  46. (void) &Inf_var; \
  47. \
  48. \
  49. check (#FLOAT " isinf (inf) == 1", isinf (Inf_var) == 1); \
  50. check (#FLOAT " isinf (-inf) == -1", isinf (-Inf_var) == -1); \
  51. check (#FLOAT " !isinf (1)", !(isinf (one_var))); \
  52. check (#FLOAT " !isinf (NaN)", !(isinf (NaN_var))); \
  53. \
  54. check (#FLOAT " isnan (NaN)", isnan (NaN_var)); \
  55. check (#FLOAT " isnan (-NaN)", isnan (-NaN_var)); \
  56. check (#FLOAT " !isnan (1)", !(isnan (one_var))); \
  57. check (#FLOAT " !isnan (inf)", !(isnan (Inf_var))); \
  58. \
  59. /* \
  60. the same tests but this time with NAN from <bits/nan.h> \
  61. NAN is a double const \
  62. */ \
  63. check (#FLOAT " isnan (NAN)", isnan (NAN)); \
  64. check (#FLOAT " isnan (-NAN)", isnan (-NAN)); \
  65. check (#FLOAT " !isinf (NAN)", !(isinf (NAN))); \
  66. check (#FLOAT " !isinf (-NAN)", !(isinf (-NAN))); \
  67. \
  68. /* \
  69. And again with the value returned by the `nan' function. \
  70. */ \
  71. check (#FLOAT " isnan (NAN)", isnan (NANFUNC (""))); \
  72. check (#FLOAT " isnan (-NAN)", isnan (-NANFUNC (""))); \
  73. check (#FLOAT " !isinf (NAN)", !(isinf (NANFUNC ("")))); \
  74. check (#FLOAT " !isinf (-NAN)", !(isinf (-NANFUNC ("")))); \
  75. check (#FLOAT " NAN != NAN", NANFUNC ("") != NANFUNC ("")); \
  76. \
  77. /* test if HUGE_VALx is ok */ \
  78. x1 = HUGEVAL; \
  79. check (#FLOAT " isinf (HUGE_VALx) == +1", isinf (x1) == +1); \
  80. x1 = - HUGEVAL; \
  81. check (#FLOAT " isinf (-HUGE_VALx) == -1", isinf (x1) == -1); \
  82. }
  83. #ifndef DO_C99_MATH
  84. # undef TEST_FUNC
  85. # define TEST_FUNC(NAME, FLOAT, NANFUNC, EPSILON, HUGEVAL) \
  86. static void \
  87. NAME(void) \
  88. { /* nothing */ }
  89. #endif
  90. #define TEST_VAL(NAME, FLOAT, NANFUNC, EPSILON, HUGEVAL) \
  91. static void \
  92. NAME (void) \
  93. { \
  94. /* Variables are declared volatile to forbid some compiler \
  95. optimizations. */ \
  96. volatile FLOAT Inf_var, NaN_var, zero_var, one_var; \
  97. FLOAT x1, x2; \
  98. \
  99. zero_var = 0.0; \
  100. one_var = 1.0; \
  101. NaN_var = zero_var/zero_var; \
  102. Inf_var = one_var / zero_var; \
  103. \
  104. (void) &zero_var; \
  105. (void) &one_var; \
  106. (void) &NaN_var; \
  107. (void) &Inf_var; \
  108. \
  109. \
  110. check (#FLOAT " inf == inf", Inf_var == Inf_var); \
  111. check (#FLOAT " -inf == -inf", -Inf_var == -Inf_var); \
  112. check (#FLOAT " inf != -inf", Inf_var != -Inf_var); \
  113. check (#FLOAT " NaN != NaN", NaN_var != NaN_var); \
  114. \
  115. check (#FLOAT " NAN != NAN", NAN != NAN); \
  116. \
  117. \
  118. /* test if EPSILON is ok */ \
  119. x1 = 1.0; \
  120. x2 = x1 + EPSILON; \
  121. check (#FLOAT " 1 != 1+EPSILON", x1 != x2); \
  122. \
  123. x1 = 1.0; \
  124. x2 = x1 - EPSILON; \
  125. check (#FLOAT " 1 != 1-EPSILON", x1 != x2); \
  126. \
  127. }
  128. TEST_VAL (float_test_value, float, nanf, FLT_EPSILON, HUGE_VALF)
  129. TEST_FUNC (float_test_call, float, nanf, FLT_EPSILON, HUGE_VALF)
  130. TEST_VAL (double_test_value, double, nan, DBL_EPSILON, HUGE_VAL)
  131. TEST_FUNC (double_test_call, double, nan, DBL_EPSILON, HUGE_VAL)
  132. #ifndef NO_LONG_DOUBLE
  133. TEST_VAL (ldouble_test_value, long double, nanl, LDBL_EPSILON, HUGE_VALL)
  134. TEST_FUNC (ldouble_test_call, long double, nanl, LDBL_EPSILON, HUGE_VALL)
  135. #endif
  136. int
  137. main (void)
  138. {
  139. float_test_value ();
  140. float_test_call ();
  141. double_test_value ();
  142. double_test_call ();
  143. #ifndef NO_LONG_DOUBLE
  144. ldouble_test_value ();
  145. ldouble_test_call ();
  146. #endif
  147. return errors != 0;
  148. }