xref: /aosp_15_r20/external/llvm-libc/test/src/math/expf_test.cpp (revision 71db0c75aadcf003ffe3238005f61d7618a3fead)
1 //===-- Unittests for expf ------------------------------------------------===//
2 //
3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4 // See https://llvm.org/LICENSE.txt for license information.
5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
6 //
7 //===----------------------------------------------------------------------===//
8 
9 #include "hdr/math_macros.h"
10 #include "src/__support/FPUtil/FPBits.h"
11 #include "src/errno/libc_errno.h"
12 #include "src/math/expf.h"
13 #include "test/UnitTest/FPMatcher.h"
14 #include "test/UnitTest/Test.h"
15 #include "utils/MPFRWrapper/MPFRUtils.h"
16 
17 #include <stdint.h>
18 
19 using LlvmLibcExpfTest = LIBC_NAMESPACE::testing::FPTest<float>;
20 
21 namespace mpfr = LIBC_NAMESPACE::testing::mpfr;
22 
TEST_F(LlvmLibcExpfTest,SpecialNumbers)23 TEST_F(LlvmLibcExpfTest, SpecialNumbers) {
24   LIBC_NAMESPACE::libc_errno = 0;
25 
26   EXPECT_FP_EQ(aNaN, LIBC_NAMESPACE::expf(aNaN));
27   EXPECT_MATH_ERRNO(0);
28 
29   EXPECT_FP_EQ(inf, LIBC_NAMESPACE::expf(inf));
30   EXPECT_MATH_ERRNO(0);
31 
32   EXPECT_FP_EQ(0.0f, LIBC_NAMESPACE::expf(neg_inf));
33   EXPECT_MATH_ERRNO(0);
34 
35   EXPECT_FP_EQ(1.0f, LIBC_NAMESPACE::expf(0.0f));
36   EXPECT_MATH_ERRNO(0);
37 
38   EXPECT_FP_EQ(1.0f, LIBC_NAMESPACE::expf(-0.0f));
39   EXPECT_MATH_ERRNO(0);
40 }
41 
TEST_F(LlvmLibcExpfTest,Overflow)42 TEST_F(LlvmLibcExpfTest, Overflow) {
43   LIBC_NAMESPACE::libc_errno = 0;
44   EXPECT_FP_EQ_WITH_EXCEPTION(
45       inf, LIBC_NAMESPACE::expf(FPBits(0x7f7fffffU).get_val()), FE_OVERFLOW);
46   EXPECT_MATH_ERRNO(ERANGE);
47 
48   EXPECT_FP_EQ_WITH_EXCEPTION(
49       inf, LIBC_NAMESPACE::expf(FPBits(0x42cffff8U).get_val()), FE_OVERFLOW);
50   EXPECT_MATH_ERRNO(ERANGE);
51 
52   EXPECT_FP_EQ_WITH_EXCEPTION(
53       inf, LIBC_NAMESPACE::expf(FPBits(0x42d00008U).get_val()), FE_OVERFLOW);
54   EXPECT_MATH_ERRNO(ERANGE);
55 }
56 
TEST_F(LlvmLibcExpfTest,Underflow)57 TEST_F(LlvmLibcExpfTest, Underflow) {
58   LIBC_NAMESPACE::libc_errno = 0;
59   EXPECT_FP_EQ_WITH_EXCEPTION(
60       0.0f, LIBC_NAMESPACE::expf(FPBits(0xff7fffffU).get_val()), FE_UNDERFLOW);
61   EXPECT_MATH_ERRNO(ERANGE);
62 
63   float x = FPBits(0xc2cffff8U).get_val();
64   EXPECT_MPFR_MATCH_ALL_ROUNDING(mpfr::Operation::Exp, x,
65                                  LIBC_NAMESPACE::expf(x), 0.5);
66   EXPECT_MATH_ERRNO(ERANGE);
67 
68   x = FPBits(0xc2d00008U).get_val();
69   EXPECT_MPFR_MATCH_ALL_ROUNDING(mpfr::Operation::Exp, x,
70                                  LIBC_NAMESPACE::expf(x), 0.5);
71   EXPECT_MATH_ERRNO(ERANGE);
72 }
73 
74 // Test with inputs which are the borders of underflow/overflow but still
75 // produce valid results without setting errno.
TEST_F(LlvmLibcExpfTest,Borderline)76 TEST_F(LlvmLibcExpfTest, Borderline) {
77   float x;
78 
79   LIBC_NAMESPACE::libc_errno = 0;
80   x = FPBits(0x42affff8U).get_val();
81   ASSERT_MPFR_MATCH_ALL_ROUNDING(mpfr::Operation::Exp, x,
82                                  LIBC_NAMESPACE::expf(x), 0.5);
83   EXPECT_MATH_ERRNO(0);
84 
85   x = FPBits(0x42b00008U).get_val();
86   ASSERT_MPFR_MATCH_ALL_ROUNDING(mpfr::Operation::Exp, x,
87                                  LIBC_NAMESPACE::expf(x), 0.5);
88   EXPECT_MATH_ERRNO(0);
89 
90   x = FPBits(0xc2affff8U).get_val();
91   ASSERT_MPFR_MATCH_ALL_ROUNDING(mpfr::Operation::Exp, x,
92                                  LIBC_NAMESPACE::expf(x), 0.5);
93   EXPECT_MATH_ERRNO(0);
94 
95   x = FPBits(0xc2b00008U).get_val();
96   ASSERT_MPFR_MATCH_ALL_ROUNDING(mpfr::Operation::Exp, x,
97                                  LIBC_NAMESPACE::expf(x), 0.5);
98   EXPECT_MATH_ERRNO(0);
99 
100   x = FPBits(0xc236bd8cU).get_val();
101   EXPECT_MPFR_MATCH_ALL_ROUNDING(mpfr::Operation::Exp, x,
102                                  LIBC_NAMESPACE::expf(x), 0.5);
103   EXPECT_MATH_ERRNO(0);
104 }
105 
TEST_F(LlvmLibcExpfTest,InFloatRange)106 TEST_F(LlvmLibcExpfTest, InFloatRange) {
107   constexpr uint32_t COUNT = 100'000;
108   constexpr uint32_t STEP = UINT32_MAX / COUNT;
109   for (uint32_t i = 0, v = 0; i <= COUNT; ++i, v += STEP) {
110     float x = FPBits(v).get_val();
111     if (FPBits(v).is_nan() || FPBits(v).is_inf())
112       continue;
113     LIBC_NAMESPACE::libc_errno = 0;
114     float result = LIBC_NAMESPACE::expf(x);
115 
116     // If the computation resulted in an error or did not produce valid result
117     // in the single-precision floating point range, then ignore comparing with
118     // MPFR result as MPFR can still produce valid results because of its
119     // wider precision.
120     if (FPBits(result).is_nan() || FPBits(result).is_inf() ||
121         LIBC_NAMESPACE::libc_errno != 0)
122       continue;
123     EXPECT_MPFR_MATCH_ALL_ROUNDING(mpfr::Operation::Exp, x,
124                                    LIBC_NAMESPACE::expf(x), 0.5);
125   }
126 }
127