1 | // RUN: %clang_builtins %s %librt -o %t && %run %t |
2 | // REQUIRES: librt_has_floatdixf |
3 | |
4 | #include "int_lib.h" |
5 | #include <stdio.h> |
6 | |
7 | #if HAS_80_BIT_LONG_DOUBLE |
8 | // Returns: convert a to a long double, rounding toward even. |
9 | |
10 | // Assumption: long double is a IEEE 80 bit floating point type padded to 128 bits |
11 | // di_int is a 64 bit integral type |
12 | |
13 | // gggg gggg gggg gggg gggg gggg gggg gggg | gggg gggg gggg gggg seee eeee eeee eeee | |
14 | // 1mmm mmmm mmmm mmmm mmmm mmmm mmmm mmmm | mmmm mmmm mmmm mmmm mmmm mmmm mmmm mmmm |
15 | |
16 | long COMPILER_RT_ABI double __floatdixf(di_int a); |
17 | |
18 | int test__floatdixf(di_int a, long double expected) |
19 | { |
20 | long double x = __floatdixf(a); |
21 | if (x != expected) |
22 | printf(format: "error in __floatdixf(%llX) = %LA, expected %LA\n" , |
23 | a, x, expected); |
24 | return x != expected; |
25 | } |
26 | |
27 | char assumption_1[sizeof(di_int) == 2*sizeof(si_int)] = {0}; |
28 | char assumption_2[sizeof(di_int)*CHAR_BIT == 64] = {0}; |
29 | char assumption_3[sizeof(long double)*CHAR_BIT == 128] = {0}; |
30 | #endif |
31 | |
32 | int main() |
33 | { |
34 | #if HAS_80_BIT_LONG_DOUBLE |
35 | if (test__floatdixf(a: 0, expected: 0.0)) |
36 | return 1; |
37 | |
38 | if (test__floatdixf(a: 1, expected: 1.0)) |
39 | return 1; |
40 | if (test__floatdixf(a: 2, expected: 2.0)) |
41 | return 1; |
42 | if (test__floatdixf(a: 20, expected: 20.0)) |
43 | return 1; |
44 | if (test__floatdixf(a: -1, expected: -1.0)) |
45 | return 1; |
46 | if (test__floatdixf(a: -2, expected: -2.0)) |
47 | return 1; |
48 | if (test__floatdixf(a: -20, expected: -20.0)) |
49 | return 1; |
50 | |
51 | if (test__floatdixf(a: 0x7FFFFF8000000000LL, expected: 0x1.FFFFFEp+62)) |
52 | return 1; |
53 | if (test__floatdixf(a: 0x7FFFFFFFFFFFF800LL, expected: 0x1.FFFFFFFFFFFFEp+62)) |
54 | return 1; |
55 | if (test__floatdixf(a: 0x7FFFFF0000000000LL, expected: 0x1.FFFFFCp+62)) |
56 | return 1; |
57 | if (test__floatdixf(a: 0x7FFFFFFFFFFFF000LL, expected: 0x1.FFFFFFFFFFFFCp+62)) |
58 | return 1; |
59 | |
60 | if (test__floatdixf(a: 0x8000008000000000LL, expected: -0x1.FFFFFEp+62)) |
61 | return 1; |
62 | if (test__floatdixf(a: 0x8000000000000800LL, expected: -0x1.FFFFFFFFFFFFEp+62)) |
63 | return 1; |
64 | if (test__floatdixf(a: 0x8000010000000000LL, expected: -0x1.FFFFFCp+62)) |
65 | return 1; |
66 | if (test__floatdixf(a: 0x8000000000001000LL, expected: -0x1.FFFFFFFFFFFFCp+62)) |
67 | return 1; |
68 | |
69 | if (test__floatdixf(a: 0x8000000000000000LL, expected: -0x1.000000p+63)) |
70 | return 1; |
71 | if (test__floatdixf(a: 0x8000000000000001LL, expected: -0x1.FFFFFFFFFFFFFFFCp+62L)) |
72 | return 1; |
73 | |
74 | if (test__floatdixf(a: 0x0007FB72E8000000LL, expected: 0x1.FEDCBAp+50)) |
75 | return 1; |
76 | |
77 | if (test__floatdixf(a: 0x0007FB72EA000000LL, expected: 0x1.FEDCBA8p+50)) |
78 | return 1; |
79 | if (test__floatdixf(a: 0x0007FB72EB000000LL, expected: 0x1.FEDCBACp+50)) |
80 | return 1; |
81 | if (test__floatdixf(a: 0x0007FB72EBFFFFFFLL, expected: 0x1.FEDCBAFFFFFFCp+50)) |
82 | return 1; |
83 | if (test__floatdixf(a: 0x0007FB72EC000000LL, expected: 0x1.FEDCBBp+50)) |
84 | return 1; |
85 | if (test__floatdixf(a: 0x0007FB72E8000001LL, expected: 0x1.FEDCBA0000004p+50)) |
86 | return 1; |
87 | |
88 | if (test__floatdixf(a: 0x0007FB72E6000000LL, expected: 0x1.FEDCB98p+50)) |
89 | return 1; |
90 | if (test__floatdixf(a: 0x0007FB72E7000000LL, expected: 0x1.FEDCB9Cp+50)) |
91 | return 1; |
92 | if (test__floatdixf(a: 0x0007FB72E7FFFFFFLL, expected: 0x1.FEDCB9FFFFFFCp+50)) |
93 | return 1; |
94 | if (test__floatdixf(a: 0x0007FB72E4000001LL, expected: 0x1.FEDCB90000004p+50)) |
95 | return 1; |
96 | if (test__floatdixf(a: 0x0007FB72E4000000LL, expected: 0x1.FEDCB9p+50)) |
97 | return 1; |
98 | |
99 | if (test__floatdixf(a: 0x023479FD0E092DC0LL, expected: 0x1.1A3CFE870496Ep+57)) |
100 | return 1; |
101 | if (test__floatdixf(a: 0x023479FD0E092DA1LL, expected: 0x8.D1E7F43824B684p+54L)) |
102 | return 1; |
103 | if (test__floatdixf(a: 0x023479FD0E092DB0LL, expected: 0x8.D1E7f43824B6Cp+54L)) |
104 | return 1; |
105 | if (test__floatdixf(a: 0x023479FD0E092DB8LL, expected: 0x8.D1E7F43824B6Ep+54L)) |
106 | return 1; |
107 | if (test__floatdixf(a: 0x023479FD0E092DB6LL, expected: 0x8.D1E7F43824B6D8p+54L)) |
108 | return 1; |
109 | if (test__floatdixf(a: 0x023479FD0E092DBFLL, expected: 0x8.D1E7F43824B6FCp+54L)) |
110 | return 1; |
111 | if (test__floatdixf(a: 0x023479FD0E092DC1LL, expected: 0x8.D1E7F43824B704p+54L)) |
112 | return 1; |
113 | if (test__floatdixf(a: 0x023479FD0E092DC7LL, expected: 0x8.D1E7F43824B71Cp+54L)) |
114 | return 1; |
115 | if (test__floatdixf(a: 0x023479FD0E092DC8LL, expected: 0x8.D1E7F43824B72p+54L)) |
116 | return 1; |
117 | if (test__floatdixf(a: 0x023479FD0E092DCFLL, expected: 0x8.D1E7F43824B73Cp+54L)) |
118 | return 1; |
119 | if (test__floatdixf(a: 0x023479FD0E092DD0LL, expected: 0x8.D1E7F43824B74p+54L)) |
120 | return 1; |
121 | if (test__floatdixf(a: 0x023479FD0E092DD1LL, expected: 0x8.D1E7F43824B744p+54L)) |
122 | return 1; |
123 | if (test__floatdixf(a: 0x023479FD0E092DD8LL, expected: 0x8.D1E7F43824B76p+54L)) |
124 | return 1; |
125 | if (test__floatdixf(a: 0x023479FD0E092DDFLL, expected: 0x8.D1E7F43824B77Cp+54L)) |
126 | return 1; |
127 | if (test__floatdixf(a: 0x023479FD0E092DE0LL, expected: 0x1.1A3CFE870496Fp+57)) |
128 | return 1; |
129 | |
130 | #else |
131 | printf("skipped\n" ); |
132 | #endif |
133 | return 0; |
134 | } |
135 | |