187c01607SMichael Jones //===-- Unittests for strtof ---------------------------------------------===//
287c01607SMichael Jones //
387c01607SMichael Jones // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
487c01607SMichael Jones // See https://llvm.org/LICENSE.txt for license information.
587c01607SMichael Jones // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
687c01607SMichael Jones //
787c01607SMichael Jones //===----------------------------------------------------------------------===//
887c01607SMichael Jones
987c01607SMichael Jones #include "src/__support/FPUtil/FPBits.h"
1087c01607SMichael Jones #include "src/stdlib/strtof.h"
1187c01607SMichael Jones
1287c01607SMichael Jones #include "utils/UnitTest/Test.h"
13*04c681d1SAlex Brachet #include "utils/testutils/RoundingModeUtils.h"
1487c01607SMichael Jones
1587c01607SMichael Jones #include <errno.h>
1687c01607SMichael Jones #include <limits.h>
1787c01607SMichael Jones #include <stddef.h>
1887c01607SMichael Jones
19*04c681d1SAlex Brachet using __llvm_libc::testutils::ForceRoundingModeTest;
20*04c681d1SAlex Brachet using __llvm_libc::testutils::RoundingMode;
21*04c681d1SAlex Brachet
22*04c681d1SAlex Brachet class LlvmLibcStrToFTest : public __llvm_libc::testing::Test,
23*04c681d1SAlex Brachet ForceRoundingModeTest<RoundingMode::Nearest> {
2487c01607SMichael Jones public:
run_test(const char * inputString,const ptrdiff_t expectedStrLen,const uint32_t expectedRawData,const int expectedErrno=0)2525226f3eSMichael Jones void run_test(const char *inputString, const ptrdiff_t expectedStrLen,
2687c01607SMichael Jones const uint32_t expectedRawData, const int expectedErrno = 0) {
2787c01607SMichael Jones // expectedRawData is the expected float result as a uint32_t, organized
2887c01607SMichael Jones // according to IEEE754:
2987c01607SMichael Jones //
3087c01607SMichael Jones // +-- 1 Sign Bit +-- 23 Mantissa bits
3187c01607SMichael Jones // | |
3287c01607SMichael Jones // | +----------+----------+
3387c01607SMichael Jones // | | |
3487c01607SMichael Jones // SEEEEEEEEMMMMMMMMMMMMMMMMMMMMMMM
3587c01607SMichael Jones // | |
3687c01607SMichael Jones // +--+---+
3787c01607SMichael Jones // |
3887c01607SMichael Jones // +-- 8 Exponent Bits
3987c01607SMichael Jones //
4087c01607SMichael Jones // This is so that the result can be compared in parts.
4125226f3eSMichael Jones char *str_end = nullptr;
4287c01607SMichael Jones
4325226f3eSMichael Jones __llvm_libc::fputil::FPBits<float> expected_fp =
4487c01607SMichael Jones __llvm_libc::fputil::FPBits<float>(expectedRawData);
4587c01607SMichael Jones
4687c01607SMichael Jones errno = 0;
4725226f3eSMichael Jones float result = __llvm_libc::strtof(inputString, &str_end);
4887c01607SMichael Jones
4925226f3eSMichael Jones __llvm_libc::fputil::FPBits<float> actual_fp =
5087c01607SMichael Jones __llvm_libc::fputil::FPBits<float>(result);
5187c01607SMichael Jones
5225226f3eSMichael Jones EXPECT_EQ(str_end - inputString, expectedStrLen);
5387c01607SMichael Jones
5425226f3eSMichael Jones EXPECT_EQ(actual_fp.bits, expected_fp.bits);
5525226f3eSMichael Jones EXPECT_EQ(actual_fp.get_sign(), expected_fp.get_sign());
5625226f3eSMichael Jones EXPECT_EQ(actual_fp.get_exponent(), expected_fp.get_exponent());
5725226f3eSMichael Jones EXPECT_EQ(actual_fp.get_mantissa(), expected_fp.get_mantissa());
5887c01607SMichael Jones EXPECT_EQ(errno, expectedErrno);
5987c01607SMichael Jones }
6087c01607SMichael Jones };
6187c01607SMichael Jones
6287c01607SMichael Jones // This is the set of tests that I have working (verified correct when compared
6387c01607SMichael Jones // to system libc). This is here so I don't break more things when I try to fix
6487c01607SMichael Jones // them.
6587c01607SMichael Jones
TEST_F(LlvmLibcStrToFTest,BasicDecimalTests)6687c01607SMichael Jones TEST_F(LlvmLibcStrToFTest, BasicDecimalTests) {
6725226f3eSMichael Jones run_test("1", 1, 0x3f800000);
6825226f3eSMichael Jones run_test("123", 3, 0x42f60000);
6925226f3eSMichael Jones run_test("1234567890", 10, 0x4e932c06u);
7025226f3eSMichael Jones run_test("123456789012345678901", 21, 0x60d629d4);
7125226f3eSMichael Jones run_test("0.1", 3, 0x3dcccccdu);
7225226f3eSMichael Jones run_test(".1", 2, 0x3dcccccdu);
7325226f3eSMichael Jones run_test("-0.123456789", 12, 0xbdfcd6eau);
7425226f3eSMichael Jones run_test("0.11111111111111111111", 22, 0x3de38e39u);
7525226f3eSMichael Jones run_test("0.0000000000000000000000001", 27, 0x15f79688u);
7687c01607SMichael Jones }
7787c01607SMichael Jones
TEST_F(LlvmLibcStrToFTest,DecimalOutOfRangeTests)7887c01607SMichael Jones TEST_F(LlvmLibcStrToFTest, DecimalOutOfRangeTests) {
7925226f3eSMichael Jones run_test("555E36", 6, 0x7f800000, ERANGE);
8025226f3eSMichael Jones run_test("1e-10000", 8, 0x0, ERANGE);
8187c01607SMichael Jones }
8287c01607SMichael Jones
TEST_F(LlvmLibcStrToFTest,DecimalsWithRoundingProblems)8387c01607SMichael Jones TEST_F(LlvmLibcStrToFTest, DecimalsWithRoundingProblems) {
8425226f3eSMichael Jones run_test("20040229", 8, 0x4b98e512);
8525226f3eSMichael Jones run_test("20040401", 8, 0x4b98e568);
8625226f3eSMichael Jones run_test("9E9", 3, 0x50061c46);
8787c01607SMichael Jones }
8887c01607SMichael Jones
TEST_F(LlvmLibcStrToFTest,DecimalSubnormals)8987c01607SMichael Jones TEST_F(LlvmLibcStrToFTest, DecimalSubnormals) {
9025226f3eSMichael Jones run_test("1.4012984643248170709237295832899161312802619418765e-45", 55, 0x1,
914cdf9884SMichael Jones ERANGE);
9287c01607SMichael Jones }
9387c01607SMichael Jones
TEST_F(LlvmLibcStrToFTest,DecimalWithLongExponent)9487c01607SMichael Jones TEST_F(LlvmLibcStrToFTest, DecimalWithLongExponent) {
9525226f3eSMichael Jones run_test("1e2147483648", 12, 0x7f800000, ERANGE);
9625226f3eSMichael Jones run_test("1e2147483646", 12, 0x7f800000, ERANGE);
9725226f3eSMichael Jones run_test("100e2147483646", 14, 0x7f800000, ERANGE);
9825226f3eSMichael Jones run_test("1e-2147483647", 13, 0x0, ERANGE);
9925226f3eSMichael Jones run_test("1e-2147483649", 13, 0x0, ERANGE);
10087c01607SMichael Jones }
10187c01607SMichael Jones
TEST_F(LlvmLibcStrToFTest,BasicHexadecimalTests)10287c01607SMichael Jones TEST_F(LlvmLibcStrToFTest, BasicHexadecimalTests) {
10325226f3eSMichael Jones run_test("0x1", 3, 0x3f800000);
10425226f3eSMichael Jones run_test("0x10", 4, 0x41800000);
10525226f3eSMichael Jones run_test("0x11", 4, 0x41880000);
10625226f3eSMichael Jones run_test("0x0.1234", 8, 0x3d91a000);
10787c01607SMichael Jones }
10887c01607SMichael Jones
TEST_F(LlvmLibcStrToFTest,HexadecimalSubnormalTests)10987c01607SMichael Jones TEST_F(LlvmLibcStrToFTest, HexadecimalSubnormalTests) {
11025226f3eSMichael Jones run_test("0x0.0000000000000000000000000000000002", 38, 0x4000, ERANGE);
11187c01607SMichael Jones
11287c01607SMichael Jones // This is the largest subnormal number as represented in hex
11325226f3eSMichael Jones run_test("0x0.00000000000000000000000000000003fffff8", 42, 0x7fffff, ERANGE);
11487c01607SMichael Jones }
11587c01607SMichael Jones
TEST_F(LlvmLibcStrToFTest,HexadecimalSubnormalRoundingTests)11687c01607SMichael Jones TEST_F(LlvmLibcStrToFTest, HexadecimalSubnormalRoundingTests) {
11787c01607SMichael Jones // This is the largest subnormal number that gets rounded down to 0 (as a
11887c01607SMichael Jones // float)
11925226f3eSMichael Jones run_test("0x0.00000000000000000000000000000000000004", 42, 0x0, ERANGE);
12087c01607SMichael Jones
12187c01607SMichael Jones // This is slightly larger, and thus rounded up
12225226f3eSMichael Jones run_test("0x0.000000000000000000000000000000000000041", 43, 0x00000001,
12387c01607SMichael Jones ERANGE);
12487c01607SMichael Jones
12587c01607SMichael Jones // These check that we're rounding to even properly
12625226f3eSMichael Jones run_test("0x0.0000000000000000000000000000000000000b", 42, 0x00000001,
12725226f3eSMichael Jones ERANGE);
12825226f3eSMichael Jones run_test("0x0.0000000000000000000000000000000000000c", 42, 0x00000002,
12925226f3eSMichael Jones ERANGE);
130201cc2d8STue Ly
131201cc2d8STue Ly // These check that we're rounding to even properly even when the input bits
132201cc2d8STue Ly // are longer than the bit fields can contain.
13325226f3eSMichael Jones run_test("0x1.000000000000000000000p-150", 30, 0x00000000, ERANGE);
13425226f3eSMichael Jones run_test("0x1.000010000000000001000p-150", 30, 0x00000001, ERANGE);
13525226f3eSMichael Jones run_test("0x1.000100000000000001000p-134", 30, 0x00008001, ERANGE);
13625226f3eSMichael Jones run_test("0x1.FFFFFC000000000001000p-127", 30, 0x007FFFFF, ERANGE);
13725226f3eSMichael Jones run_test("0x1.FFFFFE000000000000000p-127", 30, 0x00800000);
13887c01607SMichael Jones }
13987c01607SMichael Jones
TEST_F(LlvmLibcStrToFTest,HexadecimalNormalRoundingTests)14087c01607SMichael Jones TEST_F(LlvmLibcStrToFTest, HexadecimalNormalRoundingTests) {
14187c01607SMichael Jones // This also checks the round to even behavior by checking three adjacent
14287c01607SMichael Jones // numbers.
14387c01607SMichael Jones // This gets rounded down to even
14425226f3eSMichael Jones run_test("0x123456500", 11, 0x4f91a2b2);
14587c01607SMichael Jones // This doesn't get rounded at all
14625226f3eSMichael Jones run_test("0x123456600", 11, 0x4f91a2b3);
14787c01607SMichael Jones // This gets rounded up to even
14825226f3eSMichael Jones run_test("0x123456700", 11, 0x4f91a2b4);
149201cc2d8STue Ly // Correct rounding for long input
15025226f3eSMichael Jones run_test("0x1.000001000000000000000", 25, 0x3f800000);
15125226f3eSMichael Jones run_test("0x1.000001000000000000100", 25, 0x3f800001);
15287c01607SMichael Jones }
15387c01607SMichael Jones
TEST_F(LlvmLibcStrToFTest,HexadecimalsWithRoundingProblems)1548298424cSMichael Jones TEST_F(LlvmLibcStrToFTest, HexadecimalsWithRoundingProblems) {
15525226f3eSMichael Jones run_test("0xFFFFFFFF", 10, 0x4f800000);
1568298424cSMichael Jones }
1578298424cSMichael Jones
TEST_F(LlvmLibcStrToFTest,HexadecimalOutOfRangeTests)15887c01607SMichael Jones TEST_F(LlvmLibcStrToFTest, HexadecimalOutOfRangeTests) {
15925226f3eSMichael Jones run_test("0x123456789123456789123456789123456789", 38, 0x7f800000, ERANGE);
16025226f3eSMichael Jones run_test("-0x123456789123456789123456789123456789", 39, 0xff800000, ERANGE);
16125226f3eSMichael Jones run_test("0x0.00000000000000000000000000000000000001", 42, 0x0, ERANGE);
16287c01607SMichael Jones }
16387c01607SMichael Jones
TEST_F(LlvmLibcStrToFTest,InfTests)16487c01607SMichael Jones TEST_F(LlvmLibcStrToFTest, InfTests) {
16525226f3eSMichael Jones run_test("INF", 3, 0x7f800000);
16625226f3eSMichael Jones run_test("INFinity", 8, 0x7f800000);
16725226f3eSMichael Jones run_test("infnity", 3, 0x7f800000);
16825226f3eSMichael Jones run_test("infinit", 3, 0x7f800000);
16925226f3eSMichael Jones run_test("infinfinit", 3, 0x7f800000);
17025226f3eSMichael Jones run_test("innf", 0, 0x0);
17125226f3eSMichael Jones run_test("-inf", 4, 0xff800000);
17225226f3eSMichael Jones run_test("-iNfInItY", 9, 0xff800000);
17387c01607SMichael Jones }
17487c01607SMichael Jones
TEST_F(LlvmLibcStrToFTest,SimpleNaNTests)17547d0c83eSMichael Jones TEST_F(LlvmLibcStrToFTest, SimpleNaNTests) {
17625226f3eSMichael Jones run_test("NaN", 3, 0x7fc00000);
17725226f3eSMichael Jones run_test("-nAn", 4, 0xffc00000);
17847d0c83eSMichael Jones }
17947d0c83eSMichael Jones
18047d0c83eSMichael Jones // These NaNs are of the form `NaN(n-character-sequence)` where the
18147d0c83eSMichael Jones // n-character-sequence is 0 or more letters or numbers. If there is anything
18247d0c83eSMichael Jones // other than a letter or a number, then the valid number is just `NaN`. If
18347d0c83eSMichael Jones // the sequence is valid, then the interpretation of them is implementation
18447d0c83eSMichael Jones // defined, in this case it's passed to strtoll with an automatic base, and
18547d0c83eSMichael Jones // the result is put into the mantissa if it takes up the whole width of the
18647d0c83eSMichael Jones // parentheses.
TEST_F(LlvmLibcStrToFTest,NaNWithParenthesesEmptyTest)18747d0c83eSMichael Jones TEST_F(LlvmLibcStrToFTest, NaNWithParenthesesEmptyTest) {
18825226f3eSMichael Jones run_test("NaN()", 5, 0x7fc00000);
18947d0c83eSMichael Jones }
19047d0c83eSMichael Jones
TEST_F(LlvmLibcStrToFTest,NaNWithParenthesesValidNumberTests)19147d0c83eSMichael Jones TEST_F(LlvmLibcStrToFTest, NaNWithParenthesesValidNumberTests) {
19225226f3eSMichael Jones run_test("NaN(1234)", 9, 0x7fc004d2);
19325226f3eSMichael Jones run_test("NaN(0x1234)", 11, 0x7fc01234);
19425226f3eSMichael Jones run_test("NaN(01234)", 10, 0x7fc0029c);
19547d0c83eSMichael Jones }
19647d0c83eSMichael Jones
TEST_F(LlvmLibcStrToFTest,NaNWithParenthesesInvalidSequenceTests)19747d0c83eSMichael Jones TEST_F(LlvmLibcStrToFTest, NaNWithParenthesesInvalidSequenceTests) {
19825226f3eSMichael Jones run_test("NaN( 1234)", 3, 0x7fc00000);
19925226f3eSMichael Jones run_test("NaN(-1234)", 3, 0x7fc00000);
20025226f3eSMichael Jones run_test("NaN(asd&f)", 3, 0x7fc00000);
20125226f3eSMichael Jones run_test("NaN(123 )", 3, 0x7fc00000);
20225226f3eSMichael Jones run_test("NaN(123+asdf)", 3, 0x7fc00000);
20325226f3eSMichael Jones run_test("NaN(123", 3, 0x7fc00000);
20447d0c83eSMichael Jones }
20547d0c83eSMichael Jones
TEST_F(LlvmLibcStrToFTest,NaNWithParenthesesValidSequenceInvalidNumberTests)20647d0c83eSMichael Jones TEST_F(LlvmLibcStrToFTest, NaNWithParenthesesValidSequenceInvalidNumberTests) {
20725226f3eSMichael Jones run_test("NaN(1a)", 7, 0x7fc00000);
20825226f3eSMichael Jones run_test("NaN(asdf)", 9, 0x7fc00000);
20925226f3eSMichael Jones run_test("NaN(1A1)", 8, 0x7fc00000);
21087c01607SMichael Jones }
211