// SPDX-License-Identifier: BSD-3-Clause // Copyright (c) 2024, The OpenROAD Authors #include #include #include #include #include #include "gtest/gtest.h" #include "utl/algorithms.h" namespace utl { TEST(Utl, SortAndUnique) { std::vector v{3, 1, 2, 1, 3, 2}; sort_and_unique(v); const std::vector expected{1, 2, 3}; EXPECT_EQ(v, expected); } // The failure mode the `precision <= 0` guard covers. // // std::fixed emits no decimal point at a precision of 0, so the trailing-zero // strip used to run across the integer part instead of a fractional one. For a // value that formats to all zeros it consumed the whole string, and the back() // that follows then read an empty string: undefined behavior, an abort under a // hardened libstdc++ (which is on by default at -O0, hence a CMake debug CI // build), silently "" in an optimized one. Reached in practice through a // DBU-per-micron scale of 1, which makes web::dbuPrecision return 0. TEST(Utl, ToNumericStringPrecisionZeroFormatsZeroAsZero) { EXPECT_EQ(to_numeric_string(0.0, 0), "0"); EXPECT_EQ(to_numeric_string(0.4, 0), "0"); EXPECT_EQ(to_numeric_string(0.49999, 0), "0"); // Negative values that round to zero keep the sign std::fixed gives them, // rather than being stripped down to a bare "-". EXPECT_EQ(to_numeric_string(-0.0, 0), "-0"); EXPECT_EQ(to_numeric_string(-0.4, 0), "-0"); } // An integer part ending in zeros must survive: there is no fractional part for // the strip to work on, so it must not run at all. TEST(Utl, ToNumericStringPrecisionZeroKeepsTheIntegerPart) { EXPECT_EQ(to_numeric_string(10.0, 0), "10"); EXPECT_EQ(to_numeric_string(100.0, 0), "100"); EXPECT_EQ(to_numeric_string(1200.0, 0), "1200"); EXPECT_EQ(to_numeric_string(-1200.0, 0), "-1200"); } // Precision 0 rounds to the nearest whole number and emits no point. TEST(Utl, ToNumericStringPrecisionZeroRoundsToWholeNumbers) { EXPECT_EQ(to_numeric_string(7.0, 0), "7"); EXPECT_EQ(to_numeric_string(123.0, 0), "123"); EXPECT_EQ(to_numeric_string(-7.0, 0), "-7"); EXPECT_EQ(to_numeric_string(0.6, 0), "1"); EXPECT_EQ(to_numeric_string(3.7, 0), "4"); } // A negative precision cannot reach the strip either; std::setprecision treats // it as 6, so the output keeps whatever std::fixed produced. TEST(Utl, ToNumericStringNegativePrecisionDoesNotStrip) { EXPECT_EQ(to_numeric_string(1200.0, -1), "1200.000000"); EXPECT_EQ(to_numeric_string(0.0, -1), "0.000000"); } // The guard must not disturb any precision the callers actually use. Integer // parts ending in zeros are safe here precisely because the '.' stops the // strip. TEST(Utl, ToNumericStringDropsTrailingFractionalZeros) { EXPECT_EQ(to_numeric_string(10.20, 2), "10.2"); EXPECT_EQ(to_numeric_string(11.00, 2), "11"); EXPECT_EQ(to_numeric_string(0.0, 3), "0"); EXPECT_EQ(to_numeric_string(-0.0001, 3), "-0"); EXPECT_EQ(to_numeric_string(0.001, 3), "0.001"); EXPECT_EQ(to_numeric_string(974.4, 3), "974.4"); EXPECT_EQ(to_numeric_string(-5.76, 3), "-5.76"); EXPECT_EQ(to_numeric_string(100.0, 3), "100"); EXPECT_EQ(to_numeric_string(1200.0, 1), "1200"); EXPECT_EQ(to_numeric_string(0.0001, 4), "0.0001"); EXPECT_EQ(to_numeric_string(0.0005, 4), "0.0005"); } } // namespace utl