support Windows
parent
c00f6631ad
commit
212c79289f
|
|
@ -560,6 +560,8 @@ TEST(HybridBayesNet, Sampling) {
|
||||||
EXPECT_DOUBLES_EQUAL(0.477, discrete_sum / num_samples, 1e-9);
|
EXPECT_DOUBLES_EQUAL(0.477, discrete_sum / num_samples, 1e-9);
|
||||||
#elif __linux__
|
#elif __linux__
|
||||||
EXPECT_DOUBLES_EQUAL(0.477, discrete_sum / num_samples, 1e-9);
|
EXPECT_DOUBLES_EQUAL(0.477, discrete_sum / num_samples, 1e-9);
|
||||||
|
#elif _WIN32
|
||||||
|
EXPECT_DOUBLES_EQUAL(0.477, discrete_sum / num_samples, 1e-9);
|
||||||
#endif
|
#endif
|
||||||
|
|
||||||
VectorValues expected;
|
VectorValues expected;
|
||||||
|
|
@ -570,6 +572,8 @@ TEST(HybridBayesNet, Sampling) {
|
||||||
EXPECT(assert_equal(expected, average_continuous.scale(1.0 / num_samples)));
|
EXPECT(assert_equal(expected, average_continuous.scale(1.0 / num_samples)));
|
||||||
#elif __linux__
|
#elif __linux__
|
||||||
EXPECT(assert_equal(expected, average_continuous.scale(1.0 / num_samples)));
|
EXPECT(assert_equal(expected, average_continuous.scale(1.0 / num_samples)));
|
||||||
|
#elif _WIN32
|
||||||
|
EXPECT(assert_equal(expected, average_continuous.scale(1.0 / num_samples)));
|
||||||
#endif
|
#endif
|
||||||
}
|
}
|
||||||
|
|
||||||
|
|
|
||||||
|
|
@ -194,6 +194,9 @@ TEST(GaussianBayesNet, sample) {
|
||||||
#elif __linux__
|
#elif __linux__
|
||||||
EXPECT(assert_equal(Vector2(20.0129382, 40.0039798), actual[X(1)], 1e-5));
|
EXPECT(assert_equal(Vector2(20.0129382, 40.0039798), actual[X(1)], 1e-5));
|
||||||
EXPECT(assert_equal(Vector2(110.032083, 230.039811), actual[X(0)], 1e-5));
|
EXPECT(assert_equal(Vector2(110.032083, 230.039811), actual[X(0)], 1e-5));
|
||||||
|
#elif _WIN32
|
||||||
|
EXPECT(assert_equal(Vector2(20.0129382, 40.0039798), actual[X(1)], 1e-5));
|
||||||
|
EXPECT(assert_equal(Vector2(110.032083, 230.039811), actual[X(0)], 1e-5));
|
||||||
#endif
|
#endif
|
||||||
}
|
}
|
||||||
|
|
||||||
|
|
|
||||||
|
|
@ -469,6 +469,8 @@ TEST(GaussianConditional, sample) {
|
||||||
EXPECT(assert_equal(Vector2(31.0111856, 64.9850775), actual2[X(0)], 1e-5));
|
EXPECT(assert_equal(Vector2(31.0111856, 64.9850775), actual2[X(0)], 1e-5));
|
||||||
#elif __linux__
|
#elif __linux__
|
||||||
EXPECT(assert_equal(Vector2(31.0111856, 64.9850775), actual2[X(0)], 1e-5));
|
EXPECT(assert_equal(Vector2(31.0111856, 64.9850775), actual2[X(0)], 1e-5));
|
||||||
|
#elif _WIN32
|
||||||
|
EXPECT(assert_equal(Vector2(31.0111856, 64.9850775), actual2[X(0)], 1e-5));
|
||||||
#endif
|
#endif
|
||||||
}
|
}
|
||||||
|
|
||||||
|
|
|
||||||
Loading…
Reference in New Issue