|  | // RUN: %clang_cc1 -std=c++17 -fsyntax-only -verify %s | 
|  | // RUN: %clang_cc1 -std=c++17 -fsyntax-only -verify -fexperimental-new-constant-interpreter %s | 
|  | // expected-no-diagnostics | 
|  |  | 
|  | constexpr double NaN = __builtin_nan(""); | 
|  | constexpr double SNaN = __builtin_nans(""); | 
|  | constexpr double Inf = __builtin_inf(); | 
|  | constexpr double NegInf = -__builtin_inf(); | 
|  |  | 
|  | #define FMINIMUMNUM_TEST_SIMPLE(T, FUNC)                           \ | 
|  | static_assert(T(1.2345) == FUNC(T(1.2345), T(6.7890))); \ | 
|  | static_assert(T(1.2345) == FUNC(T(6.7890), T(1.2345))); | 
|  |  | 
|  | #define FMINIMUMNUM_TEST_NAN(T, FUNC)                          \ | 
|  | static_assert(Inf == FUNC(NaN, Inf));               \ | 
|  | static_assert(NegInf == FUNC(NegInf, NaN));         \ | 
|  | static_assert(0.0 == FUNC(NaN, 0.0));               \ | 
|  | static_assert(-0.0 == FUNC(-0.0, NaN));             \ | 
|  | static_assert(T(-1.2345) == FUNC(NaN, T(-1.2345))); \ | 
|  | static_assert(T(1.2345) == FUNC(T(1.2345), NaN));   \ | 
|  | static_assert(__builtin_isnan(FUNC(NaN, NaN))); | 
|  |  | 
|  | #define FMINIMUMNUM_TEST_SNAN(T, FUNC)                          \ | 
|  | static_assert(Inf == FUNC(SNaN, Inf));               \ | 
|  | static_assert(NegInf == FUNC(NegInf, SNaN));         \ | 
|  | static_assert(0.0 == FUNC(SNaN, 0.0));               \ | 
|  | static_assert(-0.0 == FUNC(-0.0, SNaN));             \ | 
|  | static_assert(T(-1.2345) == FUNC(SNaN, T(-1.2345))); \ | 
|  | static_assert(T(1.2345) == FUNC(T(1.2345), SNaN));   \ | 
|  | static_assert(__builtin_isnan(FUNC(SNaN, SNaN)));    \ | 
|  | static_assert(__builtin_isnan(FUNC(NaN, SNaN)));    \ | 
|  | static_assert(!__builtin_issignaling(FUNC(SNaN, SNaN)));  \ | 
|  | static_assert(!__builtin_issignaling(FUNC(NaN, SNaN))); | 
|  |  | 
|  | #define FMINIMUMNUM_TEST_INF(T, FUNC)                        \ | 
|  | static_assert(NegInf == FUNC(NegInf, Inf));       \ | 
|  | static_assert(0.0 == FUNC(Inf, 0.0));             \ | 
|  | static_assert(-0.0 == FUNC(-0.0, Inf));           \ | 
|  | static_assert(T(1.2345) == FUNC(Inf, T(1.2345))); \ | 
|  | static_assert(T(-1.2345) == FUNC(T(-1.2345), Inf)); | 
|  |  | 
|  | #define FMINIMUMNUM_TEST_NEG_INF(T, FUNC)                     \ | 
|  | static_assert(NegInf == FUNC(Inf, NegInf));        \ | 
|  | static_assert(NegInf == FUNC(NegInf, 0.0));        \ | 
|  | static_assert(NegInf == FUNC(-0.0, NegInf));       \ | 
|  | static_assert(NegInf == FUNC(NegInf, T(-1.2345))); \ | 
|  | static_assert(NegInf == FUNC(T(1.2345), NegInf)); | 
|  |  | 
|  | #define FMINIMUMNUM_TEST_BOTH_ZERO(T, FUNC)                                 \ | 
|  | static_assert(__builtin_copysign(1.0, FUNC(0.0, 0.0)) == 1.0);   \ | 
|  | static_assert(__builtin_copysign(1.0, FUNC(-0.0, 0.0)) == -1.0); \ | 
|  | static_assert(__builtin_copysign(1.0, FUNC(0.0, -0.0)) == -1.0); \ | 
|  | static_assert(__builtin_copysign(1.0, FUNC(-0.0, -0.0)) == -1.0); | 
|  |  | 
|  | #define LIST_FMINIMUMNUM_TESTS(T, FUNC) \ | 
|  | FMINIMUMNUM_TEST_SIMPLE(T, FUNC)    \ | 
|  | FMINIMUMNUM_TEST_NAN(T, FUNC)       \ | 
|  | FMINIMUMNUM_TEST_SNAN(T, FUNC)      \ | 
|  | FMINIMUMNUM_TEST_INF(T, FUNC)       \ | 
|  | FMINIMUMNUM_TEST_NEG_INF(T, FUNC)   \ | 
|  | FMINIMUMNUM_TEST_BOTH_ZERO(T, FUNC) | 
|  |  | 
|  | LIST_FMINIMUMNUM_TESTS(double, __builtin_fminimum_num) | 
|  | LIST_FMINIMUMNUM_TESTS(float, __builtin_fminimum_numf) | 
|  | LIST_FMINIMUMNUM_TESTS((long double), __builtin_fminimum_numl) | 
|  | LIST_FMINIMUMNUM_TESTS(__fp16, __builtin_fminimum_numf16) | 
|  | #ifdef __FLOAT128__ | 
|  | LIST_FMINIMUMNUM_TESTS(__float128, __builtin_fminimum_numf128) | 
|  | #endif |