jdk/test/hotspot/jtreg/compiler/vectorapi/VectorMaskCastIdentityTest.java

139 lines
5.7 KiB
Java

/*
* Copyright (c) 2025, 2026, NVIDIA CORPORATION & AFFILIATES. All rights reserved.
* DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
*
* This code is free software; you can redistribute it and/or modify it
* under the terms of the GNU General Public License version 2 only, as
* published by the Free Software Foundation.
*
* This code is distributed in the hope that it will be useful, but WITHOUT
* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
* version 2 for more details (a copy is included in the LICENSE file that
* accompanied this code).
*
* You should have received a copy of the GNU General Public License version
* 2 along with this work; if not, write to the Free Software Foundation,
* Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
*
* Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
* or visit www.oracle.com if you need additional information or have any
* questions.
*/
/*
* @test
* @bug 8356760 8370863
* @key randomness
* @library /test/lib /
* @summary test VectorMaskCast Identity() optimizations
* @modules jdk.incubator.vector
*
* @run driver compiler.vectorapi.VectorMaskCastIdentityTest
*/
package compiler.vectorapi;
import compiler.lib.ir_framework.*;
import java.util.Random;
import jdk.incubator.vector.*;
import jdk.test.lib.Asserts;
import jdk.test.lib.Utils;
public class VectorMaskCastIdentityTest {
private static final boolean[] mr = new boolean[128]; // 128 is large enough
private static final Random rd = Utils.getRandomInstance();
static {
for (int i = 0; i < mr.length; i++) {
mr[i] = rd.nextBoolean();
}
}
@Test
@IR(counts = { IRNode.VECTOR_MASK_CAST, "= 0" },
applyIfCPUFeatureOr = { "asimd", "true", "avx2", "true" },
applyIf = { "MaxVectorSize", ">= 16" })
public static int testOneCastToSameType() {
// The types before and after the cast sequence are the same,
// so the casts will be eliminated.
VectorMask<Integer> mInt128 = VectorMask.fromArray(IntVector.SPECIES_128, mr, 0);
mInt128 = mInt128.cast(IntVector.SPECIES_128);
// Insert a not() to prevent the casts being optimized by the optimization:
// (VectorStoreMask (VectorMaskCast* (VectorLoadMask x))) => x
return mInt128.not().trueCount();
}
@Run(test = "testOneCastToSameType")
public static void testOneCastToSameType_runner() {
int count = testOneCastToSameType();
VectorMask<Integer> mInt128 = VectorMask.fromArray(IntVector.SPECIES_128, mr, 0);
Asserts.assertEquals(count, mInt128.not().trueCount());
}
@Test
@IR(counts = { IRNode.VECTOR_MASK_CAST, "= 0" },
applyIfCPUFeatureOr = { "asimd", "true", "avx2", "true" },
applyIf = { "MaxVectorSize", ">= 16" })
public static int testTwoCastToSameType() {
// The types before and after the cast sequence are the same,
// so the casts will be eliminated.
VectorMask<Integer> mInt128 = VectorMask.fromArray(IntVector.SPECIES_128, mr, 0);
VectorMask<Float> mFloat128 = mInt128.cast(FloatVector.SPECIES_128);
VectorMask<Integer> mInt128_2 = mFloat128.cast(IntVector.SPECIES_128);
return mInt128_2.not().trueCount();
}
@Run(test = "testTwoCastToSameType")
public static void testTwoCastToSameType_runner() {
int count = testTwoCastToSameType();
VectorMask<Integer> mInt128 = VectorMask.fromArray(IntVector.SPECIES_128, mr, 0);
Asserts.assertEquals(count, mInt128.not().trueCount());
}
@Test
@IR(counts = { IRNode.VECTOR_MASK_CAST, "= 1" },
applyIfCPUFeatureOr = { "asimd", "true", "avx2", "true" },
applyIf = { "MaxVectorSize", ">= 16" })
public static int testOneCastToDifferentType() {
// The types before and after the cast sequence are different,
// so the casts will not be eliminated.
VectorMask<Integer> mInt128 = VectorMask.fromArray(IntVector.SPECIES_128, mr, 0);
VectorMask<Short> mShort64 = mInt128.cast(ShortVector.SPECIES_64);
return mShort64.not().trueCount();
}
@Run(test = "testOneCastToDifferentType")
public static void testOneCastToDifferentType_runner() {
int count = testOneCastToDifferentType();
VectorMask<Integer> mInt128 = VectorMask.fromArray(IntVector.SPECIES_128, mr, 0);
Asserts.assertEquals(count, mInt128.not().trueCount());
}
@Test
@IR(counts = { IRNode.VECTOR_MASK_CAST, "= 2" },
applyIfCPUFeatureOr = { "asimd", "true", "avx2", "true" },
applyIf = { "MaxVectorSize", ">= 16" })
public static int testTwoCastToDifferentType() {
// The types before and after the cast sequence are different,
// so the casts will not be eliminated.
VectorMask<Short> mShort64 = VectorMask.fromArray(ShortVector.SPECIES_64, mr, 0);
VectorMask<Float> mFloat128 = mShort64.cast(FloatVector.SPECIES_128);
VectorMask<Integer> mInt128 = mFloat128.cast(IntVector.SPECIES_128);
return mInt128.not().trueCount();
}
@Run(test = "testTwoCastToDifferentType")
public static void testTwoCastToDifferentType_runner() {
int count = testTwoCastToDifferentType();
VectorMask<Short> mShort64 = VectorMask.fromArray(ShortVector.SPECIES_64, mr, 0);
Asserts.assertEquals(count, mShort64.not().trueCount());
}
public static void main(String[] args) {
TestFramework testFramework = new TestFramework();
testFramework.setDefaultWarmup(10000)
.addFlags("--add-modules=jdk.incubator.vector")
.start();
}
}