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557 lines
24 KiB
Java
557 lines
24 KiB
Java
/*
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* Copyright (c) 2016, 2021, 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. Oracle designates this
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* particular file as subject to the "Classpath" exception as provided
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* by Oracle in the LICENSE file that accompanied this code.
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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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package java.lang.invoke;
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import jdk.internal.org.objectweb.asm.ClassWriter;
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import jdk.internal.org.objectweb.asm.Opcodes;
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import sun.invoke.util.Wrapper;
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import java.util.ArrayList;
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import java.util.HashSet;
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import java.util.Map;
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import java.util.Objects;
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import java.util.Set;
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import java.util.TreeMap;
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import java.util.TreeSet;
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import java.util.stream.Stream;
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import static java.lang.invoke.LambdaForm.BasicType.*;
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import static java.lang.invoke.MethodTypeForm.*;
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import static java.lang.invoke.LambdaForm.Kind.*;
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/**
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* Helper class to assist the GenerateJLIClassesPlugin to get access to
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* generate classes ahead of time.
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*/
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class GenerateJLIClassesHelper {
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// Map from DirectMethodHandle method type name to index to LambdForms
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static final Map<String, Integer> DMH_METHOD_TYPE_MAP =
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Map.of(
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DIRECT_INVOKE_VIRTUAL.methodName, LF_INVVIRTUAL,
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DIRECT_INVOKE_STATIC.methodName, LF_INVSTATIC,
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DIRECT_INVOKE_SPECIAL.methodName, LF_INVSPECIAL,
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DIRECT_NEW_INVOKE_SPECIAL.methodName, LF_NEWINVSPECIAL,
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DIRECT_INVOKE_INTERFACE.methodName, LF_INVINTERFACE,
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DIRECT_INVOKE_STATIC_INIT.methodName, LF_INVSTATIC_INIT,
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DIRECT_INVOKE_SPECIAL_IFC.methodName, LF_INVSPECIAL_IFC
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);
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static final String DIRECT_HOLDER = "java/lang/invoke/DirectMethodHandle$Holder";
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static final String DELEGATING_HOLDER = "java/lang/invoke/DelegatingMethodHandle$Holder";
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static final String BASIC_FORMS_HOLDER = "java/lang/invoke/LambdaForm$Holder";
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static final String INVOKERS_HOLDER = "java/lang/invoke/Invokers$Holder";
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static final String INVOKERS_HOLDER_CLASS_NAME = INVOKERS_HOLDER.replace('/', '.');
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static final String BMH_SPECIES_PREFIX = "java.lang.invoke.BoundMethodHandle$Species_";
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static class HolderClassBuilder {
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private final TreeSet<String> speciesTypes = new TreeSet<>();
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private final TreeSet<String> invokerTypes = new TreeSet<>();
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private final TreeSet<String> callSiteTypes = new TreeSet<>();
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private final Map<String, Set<String>> dmhMethods = new TreeMap<>();
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HolderClassBuilder addSpeciesType(String type) {
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speciesTypes.add(expandSignature(type));
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return this;
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}
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HolderClassBuilder addInvokerType(String methodType) {
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validateMethodType(methodType);
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invokerTypes.add(methodType);
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return this;
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}
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HolderClassBuilder addCallSiteType(String csType) {
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validateMethodType(csType);
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callSiteTypes.add(csType);
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return this;
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}
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Map<String, byte[]> build() {
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int count = 0;
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for (Set<String> entry : dmhMethods.values()) {
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count += entry.size();
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}
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MethodType[] directMethodTypes = new MethodType[count];
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int[] dmhTypes = new int[count];
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int index = 0;
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for (Map.Entry<String, Set<String>> entry : dmhMethods.entrySet()) {
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String dmhType = entry.getKey();
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for (String type : entry.getValue()) {
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// The DMH type to actually ask for is retrieved by removing
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// the first argument, which needs to be of Object.class
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MethodType mt = asMethodType(type);
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if (mt.parameterCount() < 1 ||
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mt.parameterType(0) != Object.class) {
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throw new RuntimeException(
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"DMH type parameter must start with L: " + dmhType + " " + type);
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}
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// Adapt the method type of the LF to retrieve
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directMethodTypes[index] = mt.dropParameterTypes(0, 1);
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// invokeVirtual and invokeInterface must have a leading Object
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// parameter, i.e., the receiver
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dmhTypes[index] = DMH_METHOD_TYPE_MAP.get(dmhType);
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if (dmhTypes[index] == LF_INVINTERFACE || dmhTypes[index] == LF_INVVIRTUAL) {
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if (mt.parameterCount() < 2 ||
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mt.parameterType(1) != Object.class) {
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throw new RuntimeException(
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"DMH type parameter must start with LL: " + dmhType + " " + type);
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}
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}
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index++;
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}
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}
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// The invoker type to ask for is retrieved by removing the first
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// and the last argument, which needs to be of Object.class
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MethodType[] invokerMethodTypes = new MethodType[invokerTypes.size()];
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index = 0;
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for (String invokerType : invokerTypes) {
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MethodType mt = asMethodType(invokerType);
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final int lastParam = mt.parameterCount() - 1;
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if (mt.parameterCount() < 2 ||
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mt.parameterType(0) != Object.class ||
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mt.parameterType(lastParam) != Object.class) {
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throw new RuntimeException(
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"Invoker type parameter must start and end with Object: " + invokerType);
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}
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mt = mt.dropParameterTypes(lastParam, lastParam + 1);
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invokerMethodTypes[index] = mt.dropParameterTypes(0, 1);
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index++;
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}
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// The callSite type to ask for is retrieved by removing the last
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// argument, which needs to be of Object.class
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MethodType[] callSiteMethodTypes = new MethodType[callSiteTypes.size()];
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index = 0;
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for (String callSiteType : callSiteTypes) {
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MethodType mt = asMethodType(callSiteType);
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final int lastParam = mt.parameterCount() - 1;
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if (mt.parameterCount() < 1 ||
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mt.parameterType(lastParam) != Object.class) {
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throw new RuntimeException(
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"CallSite type parameter must end with Object: " + callSiteType);
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}
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callSiteMethodTypes[index] = mt.dropParameterTypes(lastParam, lastParam + 1);
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index++;
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}
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Map<String, byte[]> result = new TreeMap<>();
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result.put(DIRECT_HOLDER,
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generateDirectMethodHandleHolderClassBytes(
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DIRECT_HOLDER, directMethodTypes, dmhTypes));
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result.put(DELEGATING_HOLDER,
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generateDelegatingMethodHandleHolderClassBytes(
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DELEGATING_HOLDER, directMethodTypes));
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result.put(INVOKERS_HOLDER,
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generateInvokersHolderClassBytes(INVOKERS_HOLDER,
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invokerMethodTypes, callSiteMethodTypes));
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result.put(BASIC_FORMS_HOLDER,
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generateBasicFormsClassBytes(BASIC_FORMS_HOLDER));
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speciesTypes.forEach(types -> {
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Map.Entry<String, byte[]> entry = generateConcreteBMHClassBytes(types);
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result.put(entry.getKey(), entry.getValue());
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});
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// clear builder
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speciesTypes.clear();
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invokerTypes.clear();
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callSiteTypes.clear();
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dmhMethods.clear();
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return result;
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}
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private static MethodType asMethodType(String basicSignatureString) {
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String[] parts = basicSignatureString.split("_");
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assert (parts.length == 2);
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assert (parts[1].length() == 1);
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String parameters = expandSignature(parts[0]);
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Class<?> rtype = simpleType(parts[1].charAt(0));
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if (parameters.isEmpty()) {
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return MethodType.methodType(rtype);
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} else {
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Class<?>[] ptypes = new Class<?>[parameters.length()];
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for (int i = 0; i < ptypes.length; i++) {
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ptypes[i] = simpleType(parameters.charAt(i));
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}
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return MethodType.methodType(rtype, ptypes);
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}
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}
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private void addDMHMethodType(String dmh, String methodType) {
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validateMethodType(methodType);
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Set<String> methodTypes = dmhMethods.get(dmh);
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if (methodTypes == null) {
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methodTypes = new TreeSet<>();
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dmhMethods.put(dmh, methodTypes);
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}
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methodTypes.add(methodType);
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}
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private static void validateMethodType(String type) {
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String[] typeParts = type.split("_");
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// check return type (second part)
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if (typeParts.length != 2 || typeParts[1].length() != 1
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|| !isBasicTypeChar(typeParts[1].charAt(0))) {
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throw new RuntimeException(
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"Method type signature must be of form [LJIFD]*_[LJIFDV]");
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}
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// expand and check arguments (first part)
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expandSignature(typeParts[0]);
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}
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// Convert LL -> LL, L3 -> LLL
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private static String expandSignature(String signature) {
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StringBuilder sb = new StringBuilder();
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char last = 'X';
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int count = 0;
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for (int i = 0; i < signature.length(); i++) {
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char c = signature.charAt(i);
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if (c >= '0' && c <= '9') {
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count *= 10;
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count += (c - '0');
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} else {
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requireBasicType(c);
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for (int j = 1; j < count; j++) {
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sb.append(last);
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}
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sb.append(c);
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last = c;
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count = 0;
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}
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}
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// ended with a number, e.g., "L2": append last char count - 1 times
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if (count > 1) {
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requireBasicType(last);
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for (int j = 1; j < count; j++) {
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sb.append(last);
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}
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}
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return sb.toString();
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}
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private static void requireBasicType(char c) {
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if (!isArgBasicTypeChar(c)) {
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throw new RuntimeException(
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"Character " + c + " must correspond to a basic field type: LIJFD");
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}
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}
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private static Class<?> simpleType(char c) {
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if (isBasicTypeChar(c)) {
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return LambdaForm.BasicType.basicType(c).basicTypeClass();
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}
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switch (c) {
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case 'Z':
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case 'B':
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case 'S':
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case 'C':
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throw new IllegalArgumentException("Not a valid primitive: " + c +
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" (use I instead)");
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default:
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throw new IllegalArgumentException("Not a primitive: " + c);
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}
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}
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}
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/*
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* Returns a map of class name in internal form to the corresponding class bytes
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* per the given stream of SPECIES_RESOLVE and LF_RESOLVE trace logs.
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*
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* Used by GenerateJLIClassesPlugin to pre-generate holder classes during
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* jlink phase.
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*/
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static Map<String, byte[]> generateHolderClasses(Stream<String> traces) {
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Objects.requireNonNull(traces);
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HolderClassBuilder builder = new HolderClassBuilder();
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traces.map(line -> line.split(" "))
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.forEach(parts -> {
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switch (parts[0]) {
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case "[SPECIES_RESOLVE]":
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// Allow for new types of species data classes being resolved here
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assert parts.length >= 2;
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if (parts[1].startsWith(BMH_SPECIES_PREFIX)) {
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String species = parts[1].substring(BMH_SPECIES_PREFIX.length());
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if (!"L".equals(species)) {
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builder.addSpeciesType(species);
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}
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}
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break;
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case "[LF_RESOLVE]":
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assert parts.length > 3;
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String methodType = parts[3];
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if (parts[1].equals(INVOKERS_HOLDER_CLASS_NAME)) {
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if ("linkToTargetMethod".equals(parts[2]) ||
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"linkToCallSite".equals(parts[2])) {
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builder.addCallSiteType(methodType);
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} else {
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builder.addInvokerType(methodType);
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}
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} else if (parts[1].contains("DirectMethodHandle")) {
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String dmh = parts[2];
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// ignore getObject etc for now (generated by default)
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if (DMH_METHOD_TYPE_MAP.containsKey(dmh)) {
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builder.addDMHMethodType(dmh, methodType);
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}
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}
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break;
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default:
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break; // ignore
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}
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});
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return builder.build();
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}
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/**
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* Returns a {@code byte[]} representation of a class implementing
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* the zero and identity forms of all {@code LambdaForm.BasicType}s.
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*/
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static byte[] generateBasicFormsClassBytes(String className) {
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ArrayList<LambdaForm> forms = new ArrayList<>();
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ArrayList<String> names = new ArrayList<>();
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HashSet<String> dedupSet = new HashSet<>();
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for (LambdaForm.BasicType type : LambdaForm.BasicType.values()) {
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LambdaForm zero = LambdaForm.zeroForm(type);
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String name = zero.kind.defaultLambdaName
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+ "_" + zero.returnType().basicTypeChar();
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if (dedupSet.add(name)) {
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names.add(name);
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forms.add(zero);
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}
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LambdaForm identity = LambdaForm.identityForm(type);
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name = identity.kind.defaultLambdaName
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+ "_" + identity.returnType().basicTypeChar();
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if (dedupSet.add(name)) {
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names.add(name);
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forms.add(identity);
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}
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}
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return generateCodeBytesForLFs(className,
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names.toArray(new String[0]),
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forms.toArray(new LambdaForm[0]));
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}
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/**
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* Returns a {@code byte[]} representation of a class implementing
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* DirectMethodHandle of each pairwise combination of {@code MethodType} and
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* an {@code int} representing method type.
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*/
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static byte[] generateDirectMethodHandleHolderClassBytes(String className,
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MethodType[] methodTypes, int[] types) {
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ArrayList<LambdaForm> forms = new ArrayList<>();
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ArrayList<String> names = new ArrayList<>();
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for (int i = 0; i < methodTypes.length; i++) {
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// invokeVirtual and invokeInterface must have a leading Object
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// parameter, i.e., the receiver
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if (types[i] == LF_INVVIRTUAL || types[i] == LF_INVINTERFACE) {
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if (methodTypes[i].parameterCount() < 1 ||
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methodTypes[i].parameterType(0) != Object.class) {
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throw new InternalError("Invalid method type for " +
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(types[i] == LF_INVVIRTUAL ? "invokeVirtual" : "invokeInterface") +
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" DMH, needs at least two leading reference arguments: " +
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methodTypes[i]);
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}
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}
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LambdaForm form = DirectMethodHandle.makePreparedLambdaForm(methodTypes[i], types[i]);
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forms.add(form);
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names.add(form.kind.defaultLambdaName);
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}
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for (Wrapper wrapper : Wrapper.values()) {
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if (wrapper == Wrapper.VOID) {
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continue;
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}
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for (byte b = DirectMethodHandle.AF_GETFIELD; b < DirectMethodHandle.AF_LIMIT; b++) {
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int ftype = DirectMethodHandle.ftypeKind(wrapper.primitiveType());
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LambdaForm form = DirectMethodHandle
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.makePreparedFieldLambdaForm(b, /*isVolatile*/false, ftype);
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if (form.kind != LambdaForm.Kind.GENERIC) {
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forms.add(form);
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names.add(form.kind.defaultLambdaName);
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}
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// volatile
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form = DirectMethodHandle
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.makePreparedFieldLambdaForm(b, /*isVolatile*/true, ftype);
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if (form.kind != LambdaForm.Kind.GENERIC) {
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forms.add(form);
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names.add(form.kind.defaultLambdaName);
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}
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}
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}
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return generateCodeBytesForLFs(className,
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names.toArray(new String[0]),
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forms.toArray(new LambdaForm[0]));
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}
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/**
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* Returns a {@code byte[]} representation of a class implementing
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* DelegatingMethodHandles of each {@code MethodType} kind in the
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* {@code methodTypes} argument.
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*/
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static byte[] generateDelegatingMethodHandleHolderClassBytes(String className,
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MethodType[] methodTypes) {
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HashSet<MethodType> dedupSet = new HashSet<>();
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ArrayList<LambdaForm> forms = new ArrayList<>();
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ArrayList<String> names = new ArrayList<>();
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for (int i = 0; i < methodTypes.length; i++) {
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// generate methods representing the DelegatingMethodHandle
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if (dedupSet.add(methodTypes[i])) {
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// reinvokers are variant with the associated SpeciesData
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// and shape of the target LF, but we can easily pregenerate
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// the basic reinvokers associated with Species_L. Ultimately we
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// may want to consider pregenerating more of these, which will
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// require an even more complex naming scheme
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LambdaForm reinvoker = makeReinvokerFor(methodTypes[i]);
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forms.add(reinvoker);
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String speciesSig = BoundMethodHandle.speciesDataFor(reinvoker).key();
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assert(speciesSig.equals("L"));
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names.add(reinvoker.kind.defaultLambdaName + "_" + speciesSig);
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LambdaForm delegate = makeDelegateFor(methodTypes[i]);
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forms.add(delegate);
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names.add(delegate.kind.defaultLambdaName);
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}
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}
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return generateCodeBytesForLFs(className,
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names.toArray(new String[0]),
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forms.toArray(new LambdaForm[0]));
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}
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/**
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* Returns a {@code byte[]} representation of a class implementing
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* the invoker forms for the set of supplied {@code invokerMethodTypes}
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* and {@code callSiteMethodTypes}.
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*/
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static byte[] generateInvokersHolderClassBytes(String className,
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MethodType[] invokerMethodTypes, MethodType[] callSiteMethodTypes) {
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HashSet<MethodType> dedupSet = new HashSet<>();
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ArrayList<LambdaForm> forms = new ArrayList<>();
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ArrayList<String> names = new ArrayList<>();
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int[] types = {
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MethodTypeForm.LF_EX_LINKER,
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MethodTypeForm.LF_EX_INVOKER,
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MethodTypeForm.LF_GEN_LINKER,
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MethodTypeForm.LF_GEN_INVOKER
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};
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for (int i = 0; i < invokerMethodTypes.length; i++) {
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// generate methods representing invokers of the specified type
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if (dedupSet.add(invokerMethodTypes[i])) {
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for (int type : types) {
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LambdaForm invokerForm = Invokers.invokeHandleForm(invokerMethodTypes[i],
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/*customized*/false, type);
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forms.add(invokerForm);
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names.add(invokerForm.kind.defaultLambdaName);
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}
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}
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}
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dedupSet = new HashSet<>();
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for (int i = 0; i < callSiteMethodTypes.length; i++) {
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// generate methods representing invokers of the specified type
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|
if (dedupSet.add(callSiteMethodTypes[i])) {
|
|
LambdaForm callSiteForm = Invokers.callSiteForm(callSiteMethodTypes[i], true);
|
|
forms.add(callSiteForm);
|
|
names.add(callSiteForm.kind.defaultLambdaName);
|
|
|
|
LambdaForm methodHandleForm = Invokers.callSiteForm(callSiteMethodTypes[i], false);
|
|
forms.add(methodHandleForm);
|
|
names.add(methodHandleForm.kind.defaultLambdaName);
|
|
}
|
|
}
|
|
|
|
return generateCodeBytesForLFs(className,
|
|
names.toArray(new String[0]),
|
|
forms.toArray(new LambdaForm[0]));
|
|
}
|
|
|
|
/*
|
|
* Generate customized code for a set of LambdaForms of specified types into
|
|
* a class with a specified name.
|
|
*/
|
|
private static byte[] generateCodeBytesForLFs(String className, String[] names, LambdaForm[] forms) {
|
|
ClassWriter cw = new ClassWriter(ClassWriter.COMPUTE_MAXS + ClassWriter.COMPUTE_FRAMES);
|
|
cw.visit(Opcodes.V1_8, Opcodes.ACC_PRIVATE + Opcodes.ACC_FINAL + Opcodes.ACC_SUPER,
|
|
className, null, InvokerBytecodeGenerator.INVOKER_SUPER_NAME, null);
|
|
cw.visitSource(className.substring(className.lastIndexOf('/') + 1), null);
|
|
|
|
for (int i = 0; i < forms.length; i++) {
|
|
InvokerBytecodeGenerator g
|
|
= new InvokerBytecodeGenerator(className, names[i], forms[i], forms[i].methodType());
|
|
g.setClassWriter(cw);
|
|
g.addMethod();
|
|
}
|
|
|
|
return cw.toByteArray();
|
|
}
|
|
|
|
private static LambdaForm makeReinvokerFor(MethodType type) {
|
|
MethodHandle emptyHandle = MethodHandles.empty(type);
|
|
return DelegatingMethodHandle.makeReinvokerForm(emptyHandle,
|
|
MethodTypeForm.LF_REBIND,
|
|
BoundMethodHandle.speciesData_L(),
|
|
BoundMethodHandle.speciesData_L().getterFunction(0));
|
|
}
|
|
|
|
private static LambdaForm makeDelegateFor(MethodType type) {
|
|
MethodHandle handle = MethodHandles.empty(type);
|
|
return DelegatingMethodHandle.makeReinvokerForm(
|
|
handle,
|
|
MethodTypeForm.LF_DELEGATE,
|
|
DelegatingMethodHandle.class,
|
|
DelegatingMethodHandle.NF_getTarget);
|
|
}
|
|
|
|
/**
|
|
* Returns a {@code byte[]} representation of {@code BoundMethodHandle}
|
|
* species class implementing the signature defined by {@code types}.
|
|
*/
|
|
@SuppressWarnings({"rawtypes", "unchecked"})
|
|
static Map.Entry<String, byte[]> generateConcreteBMHClassBytes(final String types) {
|
|
for (char c : types.toCharArray()) {
|
|
if (!isArgBasicTypeChar(c)) {
|
|
throw new IllegalArgumentException("All characters must "
|
|
+ "correspond to a basic field type: LIJFD");
|
|
}
|
|
}
|
|
final BoundMethodHandle.SpeciesData species = BoundMethodHandle.SPECIALIZER.findSpecies(types);
|
|
final String className = species.speciesCode().getName();
|
|
final ClassSpecializer.Factory factory = BoundMethodHandle.SPECIALIZER.factory();
|
|
final byte[] code = factory.generateConcreteSpeciesCodeFile(className, species);
|
|
return Map.entry(className.replace('.', '/'), code);
|
|
}
|
|
|
|
}
|