1 1.1 joerg //===-- fixunsxfsi_test.c - Test __fixunsxfsi -----------------------------===// 2 1.1 joerg // 3 1.1 joerg // The LLVM Compiler Infrastructure 4 1.1 joerg // 5 1.1 joerg // This file is dual licensed under the MIT and the University of Illinois Open 6 1.1 joerg // Source Licenses. See LICENSE.TXT for details. 7 1.1 joerg // 8 1.1 joerg //===----------------------------------------------------------------------===// 9 1.1 joerg // 10 1.1 joerg // This file tests __fixunsxfsi for the compiler_rt library. 11 1.1 joerg // 12 1.1 joerg //===----------------------------------------------------------------------===// 13 1.1 joerg 14 1.1 joerg #include "int_lib.h" 15 1.1 joerg #include <stdio.h> 16 1.1 joerg 17 1.1 joerg #if HAS_80_BIT_LONG_DOUBLE 18 1.1 joerg // Returns: convert a to a unsigned int, rounding toward zero. 19 1.1 joerg // Negative values all become zero. 20 1.1 joerg 21 1.1 joerg // Assumption: long double is an intel 80 bit floating point type padded with 6 bytes 22 1.1 joerg // su_int is a 32 bit integral type 23 1.1 joerg // value in long double is representable in su_int or is negative 24 1.1 joerg // (no range checking performed) 25 1.1 joerg 26 1.1 joerg // gggg gggg gggg gggg gggg gggg gggg gggg | gggg gggg gggg gggg seee eeee eeee eeee | 27 1.1 joerg // 1mmm mmmm mmmm mmmm mmmm mmmm mmmm mmmm | mmmm mmmm mmmm mmmm mmmm mmmm mmmm mmmm 28 1.1 joerg 29 1.1 joerg su_int __fixunsxfsi(long double a); 30 1.1 joerg 31 1.1 joerg int test__fixunsxfsi(long double a, su_int expected) 32 1.1 joerg { 33 1.1 joerg su_int x = __fixunsxfsi(a); 34 1.1 joerg if (x != expected) 35 1.1 joerg printf("error in __fixunsxfsi(%LA) = %X, expected %X\n", a, x, expected); 36 1.1 joerg return x != expected; 37 1.1 joerg } 38 1.1 joerg 39 1.1 joerg char assumption_2[sizeof(su_int)*CHAR_BIT == 32] = {0}; 40 1.1 joerg char assumption_3[sizeof(long double)*CHAR_BIT == 128] = {0}; 41 1.1 joerg #endif 42 1.1 joerg 43 1.1 joerg int main() 44 1.1 joerg { 45 1.1 joerg #if HAS_80_BIT_LONG_DOUBLE 46 1.1 joerg if (test__fixunsxfsi(0.0, 0)) 47 1.1 joerg return 1; 48 1.1 joerg 49 1.1 joerg if (test__fixunsxfsi(0.5, 0)) 50 1.1 joerg return 1; 51 1.1 joerg if (test__fixunsxfsi(0.99, 0)) 52 1.1 joerg return 1; 53 1.1 joerg if (test__fixunsxfsi(1.0, 1)) 54 1.1 joerg return 1; 55 1.1 joerg if (test__fixunsxfsi(1.5, 1)) 56 1.1 joerg return 1; 57 1.1 joerg if (test__fixunsxfsi(1.99, 1)) 58 1.1 joerg return 1; 59 1.1 joerg if (test__fixunsxfsi(2.0, 2)) 60 1.1 joerg return 1; 61 1.1 joerg if (test__fixunsxfsi(2.01, 2)) 62 1.1 joerg return 1; 63 1.1 joerg if (test__fixunsxfsi(-0.5, 0)) 64 1.1 joerg return 1; 65 1.1 joerg if (test__fixunsxfsi(-0.99, 0)) 66 1.1 joerg return 1; 67 1.1 joerg #if !TARGET_LIBGCC 68 1.1 joerg if (test__fixunsxfsi(-1.0, 0)) // libgcc ignores "returns 0 for negative input" spec 69 1.1 joerg return 1; 70 1.1 joerg if (test__fixunsxfsi(-1.5, 0)) 71 1.1 joerg return 1; 72 1.1 joerg if (test__fixunsxfsi(-1.99, 0)) 73 1.1 joerg return 1; 74 1.1 joerg if (test__fixunsxfsi(-2.0, 0)) 75 1.1 joerg return 1; 76 1.1 joerg if (test__fixunsxfsi(-2.01, 0)) 77 1.1 joerg return 1; 78 1.1 joerg #endif 79 1.1 joerg 80 1.1 joerg if (test__fixunsxfsi(0x1.000000p+31, 0x80000000)) 81 1.1 joerg return 1; 82 1.1 joerg if (test__fixunsxfsi(0x1.FFFFFEp+31, 0xFFFFFF00)) 83 1.1 joerg return 1; 84 1.1 joerg if (test__fixunsxfsi(0x1.FFFFFEp+30, 0x7FFFFF80)) 85 1.1 joerg return 1; 86 1.1 joerg if (test__fixunsxfsi(0x1.FFFFFCp+30, 0x7FFFFF00)) 87 1.1 joerg return 1; 88 1.1 joerg 89 1.1 joerg #if !TARGET_LIBGCC 90 1.1 joerg if (test__fixunsxfsi(-0x1.FFFFFEp+30, 0)) 91 1.1 joerg return 1; 92 1.1 joerg if (test__fixunsxfsi(-0x1.FFFFFCp+30, 0)) 93 1.1 joerg return 1; 94 1.1 joerg #endif 95 1.1 joerg 96 1.1 joerg if (test__fixunsxfsi(0x1.FFFFFFFEp+31, 0xFFFFFFFF)) 97 1.1 joerg return 1; 98 1.1 joerg if (test__fixunsxfsi(0x1.FFFFFFFC00000p+30, 0x7FFFFFFF)) 99 1.1 joerg return 1; 100 1.1 joerg if (test__fixunsxfsi(0x1.FFFFFFF800000p+30, 0x7FFFFFFE)) 101 1.1 joerg return 1; 102 1.1 joerg 103 1.1 joerg #endif 104 1.1 joerg return 0; 105 1.1 joerg } 106