package org.graalvm.compiler.hotspot.jdk9.test;
import static org.junit.Assume.assumeTrue;
import java.util.ArrayList;
import java.util.Collection;
import java.util.List;
import org.graalvm.compiler.api.test.Graal;
import org.graalvm.compiler.core.test.GraalCompilerTest;
import org.graalvm.compiler.hotspot.HotSpotGraalRuntimeProvider;
import org.graalvm.compiler.runtime.RuntimeProvider;
import org.graalvm.compiler.test.AddExports;
import org.junit.Before;
import org.junit.Test;
import org.junit.runner.RunWith;
import org.junit.runners.Parameterized;
import org.junit.runners.Parameterized.Parameter;
import org.junit.runners.Parameterized.Parameters;
import jdk.vm.ci.amd64.AMD64;
@AddExports({"java.base/java.lang"})
@RunWith(Parameterized.class)
public final class MathFloatFMATest extends GraalCompilerTest {
@Before
public void checkAMD64() {
assumeTrue("skipping AMD64 specific test", getTarget().arch instanceof AMD64);
HotSpotGraalRuntimeProvider rt = (HotSpotGraalRuntimeProvider) Graal.getRequiredCapability(RuntimeProvider.class);
assumeTrue("skipping FMA specific tests", rt.getVMConfig().useFMAIntrinsics);
}
@Parameters(name = "{0}, {1}, {2}")
public static Collection<Object[]> data() {
float[] inputs = {0.0f, 1.0f, 4.0f, -0.0f, -1.0f, 4.0f, Float.MIN_VALUE, Float.MAX_VALUE, Float.NEGATIVE_INFINITY, Float.POSITIVE_INFINITY,
Float.NaN, Float.intBitsToFloat(0xff800001)};
List<Object[]> tests = new ArrayList<>();
for (float a : inputs) {
for (float b : inputs) {
for (float c : inputs) {
tests.add(new Object[]{a, b, c});
}
}
}
return tests;
}
@Parameter(value = 0) public float input0;
@Parameter(value = 1) public float input1;
@Parameter(value = 2) public float input2;
public static float fma(float a, float b, float c) {
return Math.fma(a, b, c);
}
@Test
public void testFMA() {
test("fma", input0, input1, input2);
}
}