32ac72c3d3
Co-authored-by: Maurizio Cimadamore <mcimadamore@openjdk.org> Co-authored-by: Jorn Vernee <jvernee@openjdk.org> Co-authored-by: Per Minborg <pminborg@openjdk.org> Reviewed-by: dholmes, psandoz, mcimadamore, alanb
152 lines
7.0 KiB
Java
152 lines
7.0 KiB
Java
/*
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* Copyright (c) 2023, Oracle and/or its affiliates. All rights reserved.
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* DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
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*
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* This code is free software; you can redistribute it and/or modify it
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* under the terms of the GNU General Public License version 2 only, as
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* published by the Free Software Foundation.
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*
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* This code is distributed in the hope that it will be useful, but WITHOUT
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* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
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* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
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* version 2 for more details (a copy is included in the LICENSE file that
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* accompanied this code).
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*
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* You should have received a copy of the GNU General Public License version
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* 2 along with this work; if not, write to the Free Software Foundation,
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* Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
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*
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* Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
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* or visit www.oracle.com if you need additional information or have any
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* questions.
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*/
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/*
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* @test id=specialized
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* @library ../
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* @requires (!(os.name == "Mac OS X" & os.arch == "aarch64") | jdk.foreign.linker != "FALLBACK")
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* @modules java.base/jdk.internal.foreign
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* @run testng/othervm
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* --enable-native-access=ALL-UNNAMED
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* -Djdk.internal.foreign.DowncallLinker.USE_SPEC=true
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* -Djdk.internal.foreign.UpcallLinker.USE_SPEC=true
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* TestArrayStructs
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*/
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/*
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* @test id=interpreted
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* @library ../
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* @requires (!(os.name == "Mac OS X" & os.arch == "aarch64") | jdk.foreign.linker != "FALLBACK")
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* @modules java.base/jdk.internal.foreign
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* @run testng/othervm
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* --enable-native-access=ALL-UNNAMED
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* -Djdk.internal.foreign.DowncallLinker.USE_SPEC=false
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* -Djdk.internal.foreign.UpcallLinker.USE_SPEC=false
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* TestArrayStructs
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*/
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import org.testng.annotations.DataProvider;
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import org.testng.annotations.Test;
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import java.lang.foreign.Arena;
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import java.lang.foreign.FunctionDescriptor;
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import java.lang.foreign.MemoryLayout;
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import java.lang.foreign.MemorySegment;
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import java.lang.foreign.StructLayout;
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import java.lang.invoke.MethodHandle;
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import java.util.ArrayList;
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import java.util.Collections;
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import java.util.List;
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import java.util.concurrent.atomic.AtomicReference;
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import java.util.function.Consumer;
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import java.util.stream.Stream;
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import static java.lang.foreign.MemoryLayout.sequenceLayout;
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import static java.lang.foreign.MemoryLayout.structLayout;
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public class TestArrayStructs extends NativeTestHelper {
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static {
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System.loadLibrary("ArrayStructs");
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}
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// Test if structs of various different sizes, including non-powers of two, work correctly
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@Test(dataProvider = "arrayStructs")
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public void testArrayStruct(String functionName, FunctionDescriptor baseDesc, int numPrefixArgs, int numElements) throws Throwable {
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FunctionDescriptor downcallDesc = baseDesc.insertArgumentLayouts(0, C_POINTER); // CB
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MemoryLayout[] elementLayouts = Collections.nCopies(numElements, C_CHAR).toArray(MemoryLayout[]::new);
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FunctionDescriptor upcallDesc = baseDesc.appendArgumentLayouts(elementLayouts);
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try (Arena arena = Arena.ofConfined()) {
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TestValue[] testArgs = genTestArgs(baseDesc, arena);
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MethodHandle downcallHandle = downcallHandle(functionName, downcallDesc);
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Object[] args = new Object[downcallDesc.argumentLayouts().size() + 1]; // +1 for return allocator
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AtomicReference<Object[]> returnBox = new AtomicReference<>();
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int returnIdx = numPrefixArgs;
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int argIdx = 0;
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args[argIdx++] = arena;
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args[argIdx++] = makeArgSaverCB(upcallDesc, arena, returnBox, returnIdx);
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for (TestValue testArg : testArgs) {
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args[argIdx++] = testArg.value();
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}
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MemorySegment returned = (MemorySegment) downcallHandle.invokeWithArguments(args);
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Consumer<Object> structCheck = testArgs[returnIdx].check();
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structCheck.accept(returned);
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Object[] capturedArgs = returnBox.get();
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int capturedArgIdx;
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for (capturedArgIdx = numPrefixArgs; capturedArgIdx < testArgs.length; capturedArgIdx++) {
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testArgs[capturedArgIdx].check().accept(capturedArgs[capturedArgIdx]);
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}
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byte[] elements = new byte[numElements];
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for (int elIdx = 0; elIdx < numElements; elIdx++, capturedArgIdx++) {
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elements[elIdx] = (byte) capturedArgs[capturedArgIdx];
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}
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structCheck.accept(MemorySegment.ofArray(elements)); // reuse the check for the struct
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}
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}
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@DataProvider
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public static Object[][] arrayStructs() {
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List<Object[]> cases = new ArrayList<>();
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for (int i = 0; i < layouts.size(); i++) {
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StructLayout layout = layouts.get(i);
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int numElements = i + 1;
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cases.add(new Object[]{"F" + numElements, FunctionDescriptor.of(layout, layout), 0, numElements});
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}
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for (int i = 0; i < layouts.size(); i++) {
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StructLayout layout = layouts.get(i);
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MemoryLayout[] argLayouts = Stream.concat(PREFIX_LAYOUTS.stream(), Stream.of(layout)).toArray(MemoryLayout[]::new);
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int numElements = i + 1;
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cases.add(new Object[]{"F" + numElements + "_stack", FunctionDescriptor.of(layout, argLayouts), PREFIX_LAYOUTS.size(), numElements});
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}
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return cases.toArray(Object[][]::new);
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}
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static final List<MemoryLayout> PREFIX_LAYOUTS = List.of(
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C_LONG_LONG, C_LONG_LONG, C_LONG_LONG, C_LONG_LONG, C_LONG_LONG, C_LONG_LONG, C_LONG_LONG, C_LONG_LONG,
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C_DOUBLE, C_DOUBLE, C_DOUBLE, C_DOUBLE, C_DOUBLE, C_DOUBLE, C_DOUBLE, C_DOUBLE);
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static final List<StructLayout> layouts = List.of(
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structLayout(sequenceLayout(1, C_CHAR).withName("f0")).withName("S1"),
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structLayout(sequenceLayout(2, C_CHAR).withName("f0")).withName("S2"),
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structLayout(sequenceLayout(3, C_CHAR).withName("f0")).withName("S3"),
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structLayout(sequenceLayout(4, C_CHAR).withName("f0")).withName("S4"),
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structLayout(sequenceLayout(5, C_CHAR).withName("f0")).withName("S5"),
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structLayout(sequenceLayout(6, C_CHAR).withName("f0")).withName("S6"),
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structLayout(sequenceLayout(7, C_CHAR).withName("f0")).withName("S7"),
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structLayout(sequenceLayout(8, C_CHAR).withName("f0")).withName("S8"),
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structLayout(sequenceLayout(9, C_CHAR).withName("f0")).withName("S9"),
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structLayout(sequenceLayout(10, C_CHAR).withName("f0")).withName("S10"),
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structLayout(sequenceLayout(11, C_CHAR).withName("f0")).withName("S11"),
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structLayout(sequenceLayout(12, C_CHAR).withName("f0")).withName("S12"),
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structLayout(sequenceLayout(13, C_CHAR).withName("f0")).withName("S13"),
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structLayout(sequenceLayout(14, C_CHAR).withName("f0")).withName("S14"),
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structLayout(sequenceLayout(15, C_CHAR).withName("f0")).withName("S15"),
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structLayout(sequenceLayout(16, C_CHAR).withName("f0")).withName("S16"));
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}
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