xref: /aosp_15_r20/external/llvm-libc/test/src/math/smoke/LdExpTest.h (revision 71db0c75aadcf003ffe3238005f61d7618a3fead)
1*71db0c75SAndroid Build Coastguard Worker //===-- Utility class to test different flavors of ldexp --------*- C++ -*-===//
2*71db0c75SAndroid Build Coastguard Worker //
3*71db0c75SAndroid Build Coastguard Worker // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4*71db0c75SAndroid Build Coastguard Worker // See https://llvm.org/LICENSE.txt for license information.
5*71db0c75SAndroid Build Coastguard Worker // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
6*71db0c75SAndroid Build Coastguard Worker //
7*71db0c75SAndroid Build Coastguard Worker //===----------------------------------------------------------------------===//
8*71db0c75SAndroid Build Coastguard Worker 
9*71db0c75SAndroid Build Coastguard Worker #ifndef LLVM_LIBC_TEST_SRC_MATH_LDEXPTEST_H
10*71db0c75SAndroid Build Coastguard Worker #define LLVM_LIBC_TEST_SRC_MATH_LDEXPTEST_H
11*71db0c75SAndroid Build Coastguard Worker 
12*71db0c75SAndroid Build Coastguard Worker #include "src/__support/CPP/limits.h" // INT_MAX
13*71db0c75SAndroid Build Coastguard Worker #include "src/__support/FPUtil/FPBits.h"
14*71db0c75SAndroid Build Coastguard Worker #include "src/__support/FPUtil/NormalFloat.h"
15*71db0c75SAndroid Build Coastguard Worker #include "test/UnitTest/FEnvSafeTest.h"
16*71db0c75SAndroid Build Coastguard Worker #include "test/UnitTest/FPMatcher.h"
17*71db0c75SAndroid Build Coastguard Worker #include "test/UnitTest/Test.h"
18*71db0c75SAndroid Build Coastguard Worker 
19*71db0c75SAndroid Build Coastguard Worker #include <stdint.h>
20*71db0c75SAndroid Build Coastguard Worker 
21*71db0c75SAndroid Build Coastguard Worker using LIBC_NAMESPACE::Sign;
22*71db0c75SAndroid Build Coastguard Worker 
23*71db0c75SAndroid Build Coastguard Worker template <typename T, typename U = int>
24*71db0c75SAndroid Build Coastguard Worker class LdExpTestTemplate : public LIBC_NAMESPACE::testing::FEnvSafeTest {
25*71db0c75SAndroid Build Coastguard Worker   using FPBits = LIBC_NAMESPACE::fputil::FPBits<T>;
26*71db0c75SAndroid Build Coastguard Worker   using NormalFloat = LIBC_NAMESPACE::fputil::NormalFloat<T>;
27*71db0c75SAndroid Build Coastguard Worker   using StorageType = typename FPBits::StorageType;
28*71db0c75SAndroid Build Coastguard Worker 
29*71db0c75SAndroid Build Coastguard Worker   const T inf = FPBits::inf(Sign::POS).get_val();
30*71db0c75SAndroid Build Coastguard Worker   const T neg_inf = FPBits::inf(Sign::NEG).get_val();
31*71db0c75SAndroid Build Coastguard Worker   const T zero = FPBits::zero(Sign::POS).get_val();
32*71db0c75SAndroid Build Coastguard Worker   const T neg_zero = FPBits::zero(Sign::NEG).get_val();
33*71db0c75SAndroid Build Coastguard Worker   const T nan = FPBits::quiet_nan().get_val();
34*71db0c75SAndroid Build Coastguard Worker 
35*71db0c75SAndroid Build Coastguard Worker   // A normalized mantissa to be used with tests.
36*71db0c75SAndroid Build Coastguard Worker   static constexpr StorageType MANTISSA = NormalFloat::ONE + 0x123;
37*71db0c75SAndroid Build Coastguard Worker 
38*71db0c75SAndroid Build Coastguard Worker public:
39*71db0c75SAndroid Build Coastguard Worker   typedef T (*LdExpFunc)(T, U);
40*71db0c75SAndroid Build Coastguard Worker 
testSpecialNumbers(LdExpFunc func)41*71db0c75SAndroid Build Coastguard Worker   void testSpecialNumbers(LdExpFunc func) {
42*71db0c75SAndroid Build Coastguard Worker     int exp_array[5] = {INT_MIN, -10, 0, 10, INT_MAX};
43*71db0c75SAndroid Build Coastguard Worker     for (int exp : exp_array) {
44*71db0c75SAndroid Build Coastguard Worker       ASSERT_FP_EQ(zero, func(zero, exp));
45*71db0c75SAndroid Build Coastguard Worker       ASSERT_FP_EQ(neg_zero, func(neg_zero, exp));
46*71db0c75SAndroid Build Coastguard Worker       ASSERT_FP_EQ(inf, func(inf, exp));
47*71db0c75SAndroid Build Coastguard Worker       ASSERT_FP_EQ(neg_inf, func(neg_inf, exp));
48*71db0c75SAndroid Build Coastguard Worker       ASSERT_FP_EQ(nan, func(nan, exp));
49*71db0c75SAndroid Build Coastguard Worker     }
50*71db0c75SAndroid Build Coastguard Worker 
51*71db0c75SAndroid Build Coastguard Worker     if constexpr (sizeof(U) < sizeof(long) || sizeof(long) == sizeof(int))
52*71db0c75SAndroid Build Coastguard Worker       return;
53*71db0c75SAndroid Build Coastguard Worker     long long_exp_array[4] = {LONG_MIN, static_cast<long>(INT_MIN - 1LL),
54*71db0c75SAndroid Build Coastguard Worker                               static_cast<long>(INT_MAX + 1LL), LONG_MAX};
55*71db0c75SAndroid Build Coastguard Worker     for (long exp : long_exp_array) {
56*71db0c75SAndroid Build Coastguard Worker       ASSERT_FP_EQ(zero, func(zero, exp));
57*71db0c75SAndroid Build Coastguard Worker       ASSERT_FP_EQ(neg_zero, func(neg_zero, exp));
58*71db0c75SAndroid Build Coastguard Worker       ASSERT_FP_EQ(inf, func(inf, exp));
59*71db0c75SAndroid Build Coastguard Worker       ASSERT_FP_EQ(neg_inf, func(neg_inf, exp));
60*71db0c75SAndroid Build Coastguard Worker       ASSERT_FP_EQ(nan, func(nan, exp));
61*71db0c75SAndroid Build Coastguard Worker     }
62*71db0c75SAndroid Build Coastguard Worker   }
63*71db0c75SAndroid Build Coastguard Worker 
testPowersOfTwo(LdExpFunc func)64*71db0c75SAndroid Build Coastguard Worker   void testPowersOfTwo(LdExpFunc func) {
65*71db0c75SAndroid Build Coastguard Worker     int32_t exp_array[5] = {1, 2, 3, 4, 5};
66*71db0c75SAndroid Build Coastguard Worker     int32_t val_array[6] = {1, 2, 4, 8, 16, 32};
67*71db0c75SAndroid Build Coastguard Worker     for (int32_t exp : exp_array) {
68*71db0c75SAndroid Build Coastguard Worker       for (int32_t val : val_array) {
69*71db0c75SAndroid Build Coastguard Worker         ASSERT_FP_EQ(T(val << exp), func(T(val), exp));
70*71db0c75SAndroid Build Coastguard Worker         ASSERT_FP_EQ(T(-1 * (val << exp)), func(T(-val), exp));
71*71db0c75SAndroid Build Coastguard Worker       }
72*71db0c75SAndroid Build Coastguard Worker     }
73*71db0c75SAndroid Build Coastguard Worker   }
74*71db0c75SAndroid Build Coastguard Worker 
testOverflow(LdExpFunc func)75*71db0c75SAndroid Build Coastguard Worker   void testOverflow(LdExpFunc func) {
76*71db0c75SAndroid Build Coastguard Worker     NormalFloat x(Sign::POS, FPBits::MAX_BIASED_EXPONENT - 10,
77*71db0c75SAndroid Build Coastguard Worker                   NormalFloat::ONE + 0xFB);
78*71db0c75SAndroid Build Coastguard Worker     for (int32_t exp = 10; exp < 100; ++exp) {
79*71db0c75SAndroid Build Coastguard Worker       ASSERT_FP_EQ(inf, func(T(x), exp));
80*71db0c75SAndroid Build Coastguard Worker       ASSERT_FP_EQ(neg_inf, func(-T(x), exp));
81*71db0c75SAndroid Build Coastguard Worker     }
82*71db0c75SAndroid Build Coastguard Worker   }
83*71db0c75SAndroid Build Coastguard Worker 
testUnderflowToZeroOnNormal(LdExpFunc func)84*71db0c75SAndroid Build Coastguard Worker   void testUnderflowToZeroOnNormal(LdExpFunc func) {
85*71db0c75SAndroid Build Coastguard Worker     // In this test, we pass a normal nubmer to func and expect zero
86*71db0c75SAndroid Build Coastguard Worker     // to be returned due to underflow.
87*71db0c75SAndroid Build Coastguard Worker     int32_t base_exponent = FPBits::EXP_BIAS + FPBits::FRACTION_LEN;
88*71db0c75SAndroid Build Coastguard Worker     int32_t exp_array[] = {base_exponent + 5, base_exponent + 4,
89*71db0c75SAndroid Build Coastguard Worker                            base_exponent + 3, base_exponent + 2,
90*71db0c75SAndroid Build Coastguard Worker                            base_exponent + 1};
91*71db0c75SAndroid Build Coastguard Worker     T x = NormalFloat(Sign::POS, 0, MANTISSA);
92*71db0c75SAndroid Build Coastguard Worker     for (int32_t exp : exp_array) {
93*71db0c75SAndroid Build Coastguard Worker       ASSERT_FP_EQ(func(x, -exp), x > 0 ? zero : neg_zero);
94*71db0c75SAndroid Build Coastguard Worker     }
95*71db0c75SAndroid Build Coastguard Worker   }
96*71db0c75SAndroid Build Coastguard Worker 
testUnderflowToZeroOnSubnormal(LdExpFunc func)97*71db0c75SAndroid Build Coastguard Worker   void testUnderflowToZeroOnSubnormal(LdExpFunc func) {
98*71db0c75SAndroid Build Coastguard Worker     // In this test, we pass a normal nubmer to func and expect zero
99*71db0c75SAndroid Build Coastguard Worker     // to be returned due to underflow.
100*71db0c75SAndroid Build Coastguard Worker     int32_t base_exponent = FPBits::EXP_BIAS + FPBits::FRACTION_LEN;
101*71db0c75SAndroid Build Coastguard Worker     int32_t exp_array[] = {base_exponent + 5, base_exponent + 4,
102*71db0c75SAndroid Build Coastguard Worker                            base_exponent + 3, base_exponent + 2,
103*71db0c75SAndroid Build Coastguard Worker                            base_exponent + 1};
104*71db0c75SAndroid Build Coastguard Worker     T x = NormalFloat(Sign::POS, -FPBits::EXP_BIAS, MANTISSA);
105*71db0c75SAndroid Build Coastguard Worker     for (int32_t exp : exp_array) {
106*71db0c75SAndroid Build Coastguard Worker       ASSERT_FP_EQ(func(x, -exp), x > 0 ? zero : neg_zero);
107*71db0c75SAndroid Build Coastguard Worker     }
108*71db0c75SAndroid Build Coastguard Worker   }
109*71db0c75SAndroid Build Coastguard Worker 
testNormalOperation(LdExpFunc func)110*71db0c75SAndroid Build Coastguard Worker   void testNormalOperation(LdExpFunc func) {
111*71db0c75SAndroid Build Coastguard Worker     T val_array[] = {// Normal numbers
112*71db0c75SAndroid Build Coastguard Worker                      NormalFloat(Sign::POS, 10, MANTISSA),
113*71db0c75SAndroid Build Coastguard Worker                      NormalFloat(Sign::POS, -10, MANTISSA),
114*71db0c75SAndroid Build Coastguard Worker                      NormalFloat(Sign::NEG, 10, MANTISSA),
115*71db0c75SAndroid Build Coastguard Worker                      NormalFloat(Sign::NEG, -10, MANTISSA),
116*71db0c75SAndroid Build Coastguard Worker                      // Subnormal numbers
117*71db0c75SAndroid Build Coastguard Worker                      NormalFloat(Sign::POS, -FPBits::EXP_BIAS, MANTISSA),
118*71db0c75SAndroid Build Coastguard Worker                      NormalFloat(Sign::NEG, -FPBits::EXP_BIAS, MANTISSA)};
119*71db0c75SAndroid Build Coastguard Worker     for (int32_t exp = 0; exp <= FPBits::FRACTION_LEN; ++exp) {
120*71db0c75SAndroid Build Coastguard Worker       for (T x : val_array) {
121*71db0c75SAndroid Build Coastguard Worker         // We compare the result of ldexp with the result
122*71db0c75SAndroid Build Coastguard Worker         // of the native multiplication/division instruction.
123*71db0c75SAndroid Build Coastguard Worker 
124*71db0c75SAndroid Build Coastguard Worker         // We need to use a NormalFloat here (instead of 1 << exp), because
125*71db0c75SAndroid Build Coastguard Worker         // there are 32 bit systems that don't support 128bit long ints but
126*71db0c75SAndroid Build Coastguard Worker         // support long doubles. This test can do 1 << 64, which would fail
127*71db0c75SAndroid Build Coastguard Worker         // in these systems.
128*71db0c75SAndroid Build Coastguard Worker         NormalFloat two_to_exp = NormalFloat(static_cast<T>(1.L));
129*71db0c75SAndroid Build Coastguard Worker         two_to_exp = two_to_exp.mul2(exp);
130*71db0c75SAndroid Build Coastguard Worker 
131*71db0c75SAndroid Build Coastguard Worker         ASSERT_FP_EQ(func(x, exp), x * static_cast<T>(two_to_exp));
132*71db0c75SAndroid Build Coastguard Worker         ASSERT_FP_EQ(func(x, -exp), x / static_cast<T>(two_to_exp));
133*71db0c75SAndroid Build Coastguard Worker       }
134*71db0c75SAndroid Build Coastguard Worker     }
135*71db0c75SAndroid Build Coastguard Worker 
136*71db0c75SAndroid Build Coastguard Worker     // Normal which trigger mantissa overflow.
137*71db0c75SAndroid Build Coastguard Worker     T x = NormalFloat(Sign::POS, -FPBits::EXP_BIAS + 1,
138*71db0c75SAndroid Build Coastguard Worker                       StorageType(2) * NormalFloat::ONE - StorageType(1));
139*71db0c75SAndroid Build Coastguard Worker     ASSERT_FP_EQ(func(x, -1), x / 2);
140*71db0c75SAndroid Build Coastguard Worker     ASSERT_FP_EQ(func(-x, -1), -x / 2);
141*71db0c75SAndroid Build Coastguard Worker 
142*71db0c75SAndroid Build Coastguard Worker     // Start with a normal number high exponent but pass a very low number for
143*71db0c75SAndroid Build Coastguard Worker     // exp. The result should be a subnormal number.
144*71db0c75SAndroid Build Coastguard Worker     x = NormalFloat(Sign::POS, FPBits::EXP_BIAS, NormalFloat::ONE);
145*71db0c75SAndroid Build Coastguard Worker     int exp = -FPBits::MAX_BIASED_EXPONENT - 5;
146*71db0c75SAndroid Build Coastguard Worker     T result = func(x, exp);
147*71db0c75SAndroid Build Coastguard Worker     FPBits result_bits(result);
148*71db0c75SAndroid Build Coastguard Worker     ASSERT_FALSE(result_bits.is_zero());
149*71db0c75SAndroid Build Coastguard Worker     // Verify that the result is indeed subnormal.
150*71db0c75SAndroid Build Coastguard Worker     ASSERT_EQ(result_bits.get_biased_exponent(), uint16_t(0));
151*71db0c75SAndroid Build Coastguard Worker     // But if the exp is so less that normalization leads to zero, then
152*71db0c75SAndroid Build Coastguard Worker     // the result should be zero.
153*71db0c75SAndroid Build Coastguard Worker     result = func(x, -FPBits::MAX_BIASED_EXPONENT - FPBits::FRACTION_LEN - 5);
154*71db0c75SAndroid Build Coastguard Worker     ASSERT_TRUE(FPBits(result).is_zero());
155*71db0c75SAndroid Build Coastguard Worker 
156*71db0c75SAndroid Build Coastguard Worker     // Start with a subnormal number but pass a very high number for exponent.
157*71db0c75SAndroid Build Coastguard Worker     // The result should not be infinity.
158*71db0c75SAndroid Build Coastguard Worker     x = NormalFloat(Sign::POS, -FPBits::EXP_BIAS + 1, NormalFloat::ONE >> 10);
159*71db0c75SAndroid Build Coastguard Worker     exp = FPBits::MAX_BIASED_EXPONENT + 5;
160*71db0c75SAndroid Build Coastguard Worker     ASSERT_FALSE(FPBits(func(x, exp)).is_inf());
161*71db0c75SAndroid Build Coastguard Worker     // But if the exp is large enough to oversome than the normalization shift,
162*71db0c75SAndroid Build Coastguard Worker     // then it should result in infinity.
163*71db0c75SAndroid Build Coastguard Worker     exp = FPBits::MAX_BIASED_EXPONENT + 15;
164*71db0c75SAndroid Build Coastguard Worker     ASSERT_FP_EQ(func(x, exp), inf);
165*71db0c75SAndroid Build Coastguard Worker   }
166*71db0c75SAndroid Build Coastguard Worker };
167*71db0c75SAndroid Build Coastguard Worker 
168*71db0c75SAndroid Build Coastguard Worker #define LIST_LDEXP_TESTS(T, func)                                              \
169*71db0c75SAndroid Build Coastguard Worker   using LlvmLibcLdExpTest = LdExpTestTemplate<T>;                              \
170*71db0c75SAndroid Build Coastguard Worker   TEST_F(LlvmLibcLdExpTest, SpecialNumbers) { testSpecialNumbers(&func); }     \
171*71db0c75SAndroid Build Coastguard Worker   TEST_F(LlvmLibcLdExpTest, PowersOfTwo) { testPowersOfTwo(&func); }           \
172*71db0c75SAndroid Build Coastguard Worker   TEST_F(LlvmLibcLdExpTest, OverFlow) { testOverflow(&func); }                 \
173*71db0c75SAndroid Build Coastguard Worker   TEST_F(LlvmLibcLdExpTest, UnderflowToZeroOnNormal) {                         \
174*71db0c75SAndroid Build Coastguard Worker     testUnderflowToZeroOnNormal(&func);                                        \
175*71db0c75SAndroid Build Coastguard Worker   }                                                                            \
176*71db0c75SAndroid Build Coastguard Worker   TEST_F(LlvmLibcLdExpTest, UnderflowToZeroOnSubnormal) {                      \
177*71db0c75SAndroid Build Coastguard Worker     testUnderflowToZeroOnSubnormal(&func);                                     \
178*71db0c75SAndroid Build Coastguard Worker   }                                                                            \
179*71db0c75SAndroid Build Coastguard Worker   TEST_F(LlvmLibcLdExpTest, NormalOperation) { testNormalOperation(&func); }   \
180*71db0c75SAndroid Build Coastguard Worker   static_assert(true)
181*71db0c75SAndroid Build Coastguard Worker 
182*71db0c75SAndroid Build Coastguard Worker #endif // LLVM_LIBC_TEST_SRC_MATH_LDEXPTEST_H
183