test_cmath.cpp 6.1 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173
  1. // Boost.Units - A C++ library for zero-overhead dimensional analysis and
  2. // unit/quantity manipulation and conversion
  3. //
  4. // Copyright (C) 2003-2008 Matthias Christian Schabel
  5. // Copyright (C) 2008 Steven Watanabe
  6. //
  7. // Distributed under the Boost Software License, Version 1.0. (See
  8. // accompanying file LICENSE_1_0.txt or copy at
  9. // http://www.boost.org/LICENSE_1_0.txt)
  10. /**
  11. \file
  12. \brief test_units_1.cpp
  13. \details
  14. Test unit class.
  15. Output:
  16. @verbatim
  17. @endverbatim
  18. **/
  19. #include <limits>
  20. #include <boost/units/cmath.hpp>
  21. #include "test_header.hpp"
  22. namespace bu = boost::units;
  23. int test_main(int,char *[])
  24. {
  25. BOOST_CONSTEXPR_OR_CONST double inf = std::numeric_limits<double>::infinity(),
  26. nan = std::numeric_limits<double>::quiet_NaN();
  27. // default constructor
  28. BOOST_CONSTEXPR_OR_CONST bu::quantity<bu::energy> E1(0.0*bu::joules),
  29. E2(inf*bu::joules),
  30. E3(nan*bu::joules);
  31. BOOST_CHECK((bu::isfinite)(E1) == true);
  32. BOOST_CHECK((bu::isfinite)(E2) == false);
  33. BOOST_CHECK((bu::isfinite)(E3) == false);
  34. BOOST_CHECK((bu::isinf)(E1) == false);
  35. BOOST_CHECK((bu::isinf)(E2) == true);
  36. BOOST_CHECK((bu::isinf)(E3) == false);
  37. BOOST_CHECK((bu::isnan)(E1) == false);
  38. BOOST_CHECK((bu::isnan)(E2) == false);
  39. BOOST_CHECK((bu::isnan)(E3) == true);
  40. BOOST_CHECK((bu::isnormal)(E1) == false);
  41. BOOST_CHECK((bu::isnormal)(E2) == false);
  42. BOOST_CHECK((bu::isnormal)(E3) == false);
  43. BOOST_CONSTEXPR_OR_CONST bu::quantity<bu::energy> E4(-2.5*bu::joules),
  44. E5(2.5*bu::joules);
  45. BOOST_CHECK((bu::isgreater)(E4,E5) == false);
  46. BOOST_CHECK((bu::isgreater)(E5,E4) == true);
  47. BOOST_CHECK((bu::isgreater)(E4,E4) == false);
  48. BOOST_CHECK((bu::isgreater)(E3,E4) == false);
  49. BOOST_CHECK((bu::isgreater)(E4,E3) == false);
  50. BOOST_CHECK((bu::isgreaterequal)(E4,E5) == false);
  51. BOOST_CHECK((bu::isgreaterequal)(E5,E4) == true);
  52. BOOST_CHECK((bu::isgreaterequal)(E4,E4) == true);
  53. BOOST_CHECK((bu::isgreaterequal)(E3,E4) == false);
  54. BOOST_CHECK((bu::isgreaterequal)(E4,E3) == false);
  55. BOOST_CHECK((bu::isless)(E4,E5) == true);
  56. BOOST_CHECK((bu::isless)(E5,E4) == false);
  57. BOOST_CHECK((bu::isless)(E4,E4) == false);
  58. BOOST_CHECK((bu::isless)(E3,E4) == false);
  59. BOOST_CHECK((bu::isless)(E4,E3) == false);
  60. BOOST_CHECK((bu::islessequal)(E4,E5) == true);
  61. BOOST_CHECK((bu::islessequal)(E5,E4) == false);
  62. BOOST_CHECK((bu::islessequal)(E4,E4) == true);
  63. BOOST_CHECK((bu::islessequal)(E3,E4) == false);
  64. BOOST_CHECK((bu::islessequal)(E4,E3) == false);
  65. BOOST_CHECK((bu::islessgreater)(E4,E5) == true);
  66. BOOST_CHECK((bu::islessgreater)(E5,E4) == true);
  67. BOOST_CHECK((bu::islessgreater)(E4,E4) == false);
  68. BOOST_CHECK((bu::islessgreater)(E3,E4) == false);
  69. BOOST_CHECK((bu::islessgreater)(E4,E3) == false);
  70. BOOST_CHECK((bu::isunordered)(E4,E5) == false);
  71. BOOST_CHECK((bu::isunordered)(E5,E4) == false);
  72. BOOST_CHECK((bu::isunordered)(E4,E4) == false);
  73. BOOST_CHECK((bu::isunordered)(E3,E4) == true);
  74. BOOST_CHECK((bu::isunordered)(E4,E3) == true);
  75. BOOST_CHECK((bu::abs)(E4) == E5);
  76. BOOST_CHECK((bu::ceil)(E4) == -2.0*bu::joules);
  77. BOOST_CHECK((bu::copysign)(E4,E5) == E5);
  78. BOOST_CHECK((bu::fabs)(E4) == E5);
  79. BOOST_CHECK((bu::floor)(E4) == -3.0*bu::joules);
  80. BOOST_CHECK((bu::fdim)(E4,E5) == 0.0*bu::joules);
  81. BOOST_CHECK((bu::fdim)(E5,E4) == E5-E4);
  82. BOOST_CONSTEXPR_OR_CONST bu::quantity<bu::length> L1(3.0*bu::meters),
  83. L2(4.0*bu::meters);
  84. BOOST_CONSTEXPR_OR_CONST bu::quantity<bu::area> A1(4.0*bu::square_meters),
  85. A2(L1*L2+A1);
  86. #if 0
  87. BOOST_CHECK((bu::fma)(L1,L2,A1) == A2);
  88. #endif
  89. BOOST_CHECK((bu::fmax)(E4,E5) == E5);
  90. BOOST_CHECK((bu::fmin)(E4,E5) == E4);
  91. // need to test fpclassify
  92. BOOST_CHECK(bu::hypot(L1,L2) == 5.0*bu::meters);
  93. #if 0
  94. // BOOST_CHECK(bu::llrint(E4).value() == bu::detail::llrint(E4.value()));
  95. // BOOST_CHECK(bu::llround(E4).value() == bu::detail::llround(E4.value()));
  96. BOOST_CHECK((bu::nearbyint)(E4).value() == (bu::detail::nearbyint)(E4.value()));
  97. BOOST_CHECK((bu::rint)(E4).value() == (bu::detail::rint)(E4.value()));
  98. #endif
  99. BOOST_CHECK((bu::nextafter)(E4,E5).value() == (boost::math::nextafter)(E4.value(),E5.value()));
  100. BOOST_CHECK((bu::nextafter)(E5,E4).value() == (boost::math::nextafter)(E5.value(),E4.value()));
  101. BOOST_CHECK((bu::nexttoward)(E4,E5).value() == (boost::math::nextafter)(E4.value(),E5.value()));
  102. BOOST_CHECK((bu::nexttoward)(E5,E4).value() == (boost::math::nextafter)(E5.value(),E4.value()));
  103. BOOST_CHECK((bu::round)(E4 - 0.00000000001 * bu::joules) == -3.0*bu::joules);
  104. BOOST_CHECK((bu::round)(E5 + 0.00000000001 * bu::joules) == 3.0*bu::joules);
  105. BOOST_CHECK((bu::signbit)(E4) != 0);
  106. BOOST_CHECK((bu::signbit)(E5) == 0);
  107. BOOST_CHECK((bu::trunc)(E4) == -2.0*bu::joules);
  108. BOOST_CHECK((bu::trunc)(E5) == 2.0*bu::joules);
  109. BOOST_CHECK((bu::fmod)(E4,E5) == -0.0*bu::joules);
  110. bu::quantity<bu::energy> pint;
  111. BOOST_CHECK((bu::modf)(E4,&pint) == -0.5*bu::joules);
  112. BOOST_CHECK(pint == -2.0*bu::joules);
  113. int ex;
  114. const bu::quantity<bu::energy> E6((bu::frexp)(E4,&ex));
  115. BOOST_CHECK(E6 == -0.625*bu::joules);
  116. BOOST_CHECK(ex == 2);
  117. BOOST_CHECK((bu::ldexp)(E6,ex) == E4);
  118. BOOST_CONSTEXPR_OR_CONST bu::quantity<bu::dimensionless> E7(1.0);
  119. BOOST_CHECK(bu::pow(E7,E7) == 1.0*1.0);
  120. const bu::quantity<bu::dimensionless> E8((bu::exp)(E7));
  121. BOOST_CHECK(std::abs(E8 - std::exp(1.0)) < .000001);
  122. BOOST_CHECK(bu::log(E8) == E7);
  123. BOOST_CONSTEXPR_OR_CONST bu::quantity<bu::dimensionless> E9(100.0);
  124. BOOST_CHECK(bu::log10(E9) == 2.0);
  125. BOOST_CHECK(bu::sqrt(A1) == 2.0*bu::meters);
  126. return 0;
  127. }