// RUN: %clang_builtins %s %librt -o %t && %run %t #define DOUBLE_PRECISION #include #include #include #include #include #include "fp_lib.h" int test__compiler_rt_scalbn(const char *mode, fp_t x, int y) { #if defined(__ve__) if (fpclassify(x) == FP_SUBNORMAL) return 0; #endif fp_t crt_value = __compiler_rt_scalbn(x, y); fp_t libm_value = scalbn(x, y); // Consider +/-0 unequal, but disregard the sign/payload of NaN. if (toRep(crt_value) != toRep(libm_value) && !(crt_isnan(crt_value) && crt_isnan(libm_value))) { printf("error: [%s] in __compiler_rt_scalbn(%a [%llX], %d) = %a [%llX] " "!= %a [%llX]\n", mode, x, (unsigned long long)toRep(x), y, crt_value, (unsigned long long)toRep(crt_value), libm_value, (unsigned long long)toRep(libm_value)); return 1; } return 0; } fp_t cases[] = { -NAN, NAN, -INFINITY, INFINITY, -0.0, 0.0, -1, 1, -2, 2, DBL_TRUE_MIN, DBL_TRUE_MIN*7, DBL_MIN, DBL_MAX, -1.001, 1.001, -1.002, 1.002, 1.e-6, -1.e-6, 0x1.0p-1021, 0x1.0p-1022, 0x1.0p-1023, // subnormal 0x1.0p-1024, // subnormal }; int iterate_cases(const char *mode) { const unsigned N = sizeof(cases) / sizeof(cases[0]); unsigned i; for (i = 0; i < N; ++i) { int j; for (j = -5; j <= 5; ++j) { if (test__compiler_rt_scalbn(mode, cases[i], j)) return 1; } if (test__compiler_rt_scalbn(mode, cases[i], -10000)) return 1; if (test__compiler_rt_scalbn(mode, cases[i], 10000)) return 1; if (test__compiler_rt_scalbn(mode, cases[i], INT_MIN)) return 1; if (test__compiler_rt_scalbn(mode, cases[i], INT_MAX)) return 1; } return 0; } int main() { if (iterate_cases("default")) return 1; // Rounding mode tests on supported architectures. __compiler_rt_scalbn // should have the same rounding behavior as double-precision multiplication. #if (defined(__arm__) || defined(__aarch64__)) && defined(__ARM_FP) || \ defined(__i386__) || defined(__x86_64__) // Skip these tests on Windows because the UCRT scalbn function always behaves // as if the default rounding mode is set (FE_TONEAREST). // Also skip for newlib because although its scalbn function does respect the // rounding mode, where the tests trigger an underflow or overflow using a // large exponent the result is rounded in the opposite direction to that which // would be expected in the (FE_UPWARD) and (FE_DOWNWARD) modes. # if !defined(_WIN32) && !defined(_NEWLIB_VERSION) fesetround(FE_UPWARD); if (iterate_cases("FE_UPWARD")) return 1; fesetround(FE_DOWNWARD); if (iterate_cases("FE_DOWNWARD")) return 1; fesetround(FE_TOWARDZERO); if (iterate_cases("FE_TOWARDZERO")) return 1; #endif fesetround(FE_TONEAREST); if (iterate_cases("FE_TONEAREST")) return 1; #endif return 0; }