jdk-24/test/jdk/java/lang/invoke/condy/CondyStaticArgumentsTest.java
Adam Sotona 2b00ac0d02 8308753: Class-File API transition to Preview
Reviewed-by: ihse, mchung, vromero
2023-12-04 07:07:57 +00:00

211 lines
8.2 KiB
Java

/*
* Copyright (c) 2017, Oracle and/or its 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
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*/
/*
* @test
* @bug 8186046
* @summary Test bootstrap arguments for condy
* @library /java/lang/invoke/common
* @build test.java.lang.invoke.lib.InstructionHelper
* @enablePreview
* @run testng CondyStaticArgumentsTest
* @run testng/othervm -XX:+UnlockDiagnosticVMOptions -XX:UseBootstrapCallInfo=3 CondyStaticArgumentsTest
*/
import org.testng.Assert;
import org.testng.annotations.Test;
import test.java.lang.invoke.lib.InstructionHelper;
import java.lang.constant.*;
import java.lang.invoke.*;
import java.lang.reflect.Method;
import java.math.BigDecimal;
import java.math.MathContext;
import java.util.StringJoiner;
import java.util.stream.Stream;
import static java.lang.invoke.MethodType.methodType;
public class CondyStaticArgumentsTest {
static final MethodHandles.Lookup L = MethodHandles.lookup();
private static final DirectMethodHandleDesc bigDecimalMhDesc = directMhDesc("bigDecimal");
private static final DirectMethodHandleDesc mathContextMhDesc = directMhDesc("mathContext");
static class BSMInfo {
final String methodName;
final MethodHandle handle;
final String descriptor;
BSMInfo(String name) {
methodName = name;
Method m = Stream.of(CondyStaticArgumentsTest.class.getDeclaredMethods())
.filter(x -> x.getName().equals(methodName)).findFirst()
.get();
try {
handle = MethodHandles.lookup().unreflect(m);
} catch (Exception e) {
throw new Error(e);
}
descriptor = handle.type().toMethodDescriptorString();
}
static BSMInfo of(String name) {
return new BSMInfo(name);
}
}
static String basicArgs(MethodHandles.Lookup l, String name, Class<?> type,
int i, long j, float f, double d,
Class<?> c, String s,
MethodType mt, MethodHandle mh) {
return new StringJoiner("-")
.add(name)
.add(type.getSimpleName())
.add(Integer.toString(i))
.add(Long.toString(j))
.add(Float.toString(f))
.add(Double.toString(d))
.add(c.getSimpleName())
.add(s)
.add(mt.toString())
.add(Integer.toString(mh.type().parameterCount()))
.toString();
}
@Test
public void testBasicArgs() throws Throwable {
BSMInfo bi = BSMInfo.of("basicArgs");
MethodHandleInfo mhi = MethodHandles.lookup().revealDirect(bi.handle);
MethodHandle mh = InstructionHelper.ldcDynamicConstant(
L, "constant-name", String.class,
bi.methodName, bi.handle.type(),
1, 2L, 3.0f, 4.0d,
ClassDesc.ofDescriptor(Number.class.descriptorString()),
"something",
MethodTypeDesc.ofDescriptor("(IJFD)V"),
MethodHandleDesc.ofMethod(DirectMethodHandleDesc.Kind.valueOf(mhi.getReferenceKind()),
ClassDesc.ofDescriptor(mhi.getDeclaringClass().descriptorString()),
mhi.getName(), MethodTypeDesc.ofDescriptor(mhi.getMethodType().descriptorString()))
);
Assert.assertEquals(mh.invoke(), "constant-name-String-1-2-3.0-4.0-Number-something-(int,long,float,double)void-11");
}
static MathContext mathContext(MethodHandles.Lookup l, String value, Class<?> type) {
switch (value) {
case "UNLIMITED":
return MathContext.UNLIMITED;
case "DECIMAL32":
return MathContext.DECIMAL32;
case "DECIMAL64":
return MathContext.DECIMAL64;
case "DECIMAL128":
return MathContext.DECIMAL128;
default:
throw new UnsupportedOperationException();
}
}
static BigDecimal bigDecimal(MethodHandles.Lookup l, String name, Class<?> type,
String value, MathContext mc) {
return new BigDecimal(value, mc);
}
static String condyWithCondy(MethodHandles.Lookup l, String name, Class<?> type,
BigDecimal d) {
return new StringJoiner("-")
.add(name)
.add(type.getSimpleName())
.add(d.toString())
.add(Integer.toString(d.precision()))
.toString();
}
@Test
public void testCondyWithCondy() throws Throwable {
BSMInfo bi = BSMInfo.of("condyWithCondy");
MethodHandle mh = InstructionHelper.ldcDynamicConstant(
L, "big-decimal-math-context", String.class,
bi.methodName, bi.handle.type(),
DynamicConstantDesc.ofNamed(
bigDecimalMhDesc,
"big-decimal",
InstructionHelper.classDesc(BigDecimal.class),
"3.14159265358979323846",
DynamicConstantDesc.ofNamed(
mathContextMhDesc,
"DECIMAL32",
InstructionHelper.classDesc(MathContext.class)
)
)
);
Assert.assertEquals(mh.invoke(), "big-decimal-math-context-String-3.141593-7");
}
static ConstantCallSite indyWithCondy(MethodHandles.Lookup l, String name, MethodType type,
BigDecimal d) {
String s = new StringJoiner("-")
.add(name)
.add(type.toMethodDescriptorString())
.add(d.toString())
.add(Integer.toString(d.precision()))
.toString();
return new ConstantCallSite(MethodHandles.constant(String.class, s));
}
@Test
public void testIndyWithCondy() throws Throwable {
BSMInfo bi = BSMInfo.of("indyWithCondy");
MethodHandle mh = InstructionHelper.invokedynamic(
L, "big-decimal-math-context", methodType(String.class),
bi.methodName, bi.handle.type(),
DynamicConstantDesc.ofNamed(
bigDecimalMhDesc,
"big-decimal",
InstructionHelper.classDesc(BigDecimal.class),
"3.14159265358979323846",
DynamicConstantDesc.ofNamed(
mathContextMhDesc,
"DECIMAL32",
InstructionHelper.classDesc(MathContext.class)
)
));
Assert.assertEquals(mh.invoke(), "big-decimal-math-context-()Ljava/lang/String;-3.141593-7");
}
private static DirectMethodHandleDesc directMhDesc(String methodName) {
MethodHandleInfo mhi = MethodHandles.lookup().revealDirect(BSMInfo.of(methodName).handle);
return MethodHandleDesc.of(
DirectMethodHandleDesc.Kind.valueOf(mhi.getReferenceKind()),
ClassDesc.ofDescriptor(mhi.getDeclaringClass().descriptorString()),
mhi.getName(),
mhi.getMethodType().descriptorString()
);
}
}