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 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
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 * published by the Free Software Foundation.  Oracle designates this
 * particular file as subject to the "Classpath" exception as provided
 * by Oracle in the LICENSE file that accompanied this code.
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 * This code is distributed in the hope that it will be useful, but WITHOUT
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 * 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).
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package com.sun.tools.classfile;

import java.util.ArrayList;
import java.util.HashSet;
import java.util.List;
import java.util.Objects;
import java.util.Set;
import com.sun.tools.classfile.Instruction.TypeKind;
import static com.sun.tools.classfile.ConstantPool.*;

A utility class to find where in a ClassFile references a method, a interface method, or a field.
/** * A utility class to find where in a ClassFile references * a {@link CONSTANT_Methodref_info method}, * a {@link CONSTANT_InterfaceMethodref_info interface method}, * or a {@link CONSTANT_Fieldref_info field}. */
public final class ReferenceFinder {
Filter for ReferenceFinder of what constant pool entries for reference lookup.
/** * Filter for ReferenceFinder of what constant pool entries for reference lookup. */
public interface Filter {
Decides if the given CPRefInfo entry should be accepted or filtered.
Params:
  • cpool – ConstantPool of the ClassFile being parsed
  • cpref – constant pool entry representing a reference to a fields method, and interface method.
Returns:true if accepted; otherwise false
/** * Decides if the given CPRefInfo entry should be accepted or filtered. * * @param cpool ConstantPool of the ClassFile being parsed * @param cpref constant pool entry representing a reference to * a fields method, and interface method. * @return {@code true} if accepted; otherwise {@code false} */
boolean accept(ConstantPool cpool, CPRefInfo cpref); }
Visitor of individual method of a ClassFile that references the accepted field, method, or interface method references.
/** * Visitor of individual method of a ClassFile that references the * accepted field, method, or interface method references. */
public interface Visitor {
Invoked for a method containing one or more accepted CPRefInfo entries
Params:
  • cf – ClassFile
  • method – Method that does the references the accepted references
  • refs – Accepted constant pool method/field reference
/** * Invoked for a method containing one or more accepted CPRefInfo entries * * @param cf ClassFile * @param method Method that does the references the accepted references * @param refs Accepted constant pool method/field reference */
void visit(ClassFile cf, Method method, List<CPRefInfo> refConstantPool); } private final Filter filter; private final Visitor visitor;
Constructor.
/** * Constructor. */
public ReferenceFinder(Filter filter, Visitor visitor) { this.filter = Objects.requireNonNull(filter); this.visitor = Objects.requireNonNull(visitor); }
Parses a given ClassFile and invoke the visitor if there is any reference to the constant pool entries referencing field, method, or interface method that are accepted. This method will return true if there is one or more accepted constant pool entries to lookup; otherwise, it will return false.
Params:
  • cf – ClassFile
Throws:
Returns:true if the given class file is processed to lookup references
/** * Parses a given ClassFile and invoke the visitor if there is any reference * to the constant pool entries referencing field, method, or * interface method that are accepted. This method will return * {@code true} if there is one or more accepted constant pool entries * to lookup; otherwise, it will return {@code false}. * * @param cf ClassFile * @return {@code true} if the given class file is processed to lookup * references * @throws ConstantPoolException if an error of the constant pool */
public boolean parse(ClassFile cf) throws ConstantPoolException { List<Integer> cprefs = new ArrayList<>(); int index = 1; for (ConstantPool.CPInfo cpInfo : cf.constant_pool.entries()) { if (cpInfo.accept(cpVisitor, cf.constant_pool)) { cprefs.add(index); } index += cpInfo.size(); } if (cprefs.isEmpty()) { return false; } for (Method m : cf.methods) { Set<Integer> ids = new HashSet<>(); Code_attribute c_attr = (Code_attribute) m.attributes.get(Attribute.Code); if (c_attr != null) { for (Instruction instr : c_attr.getInstructions()) { int idx = instr.accept(codeVisitor, cprefs); if (idx > 0) { ids.add(idx); } } } if (ids.size() > 0) { List<CPRefInfo> refInfos = new ArrayList<>(ids.size()); for (int id : ids) { refInfos.add(CPRefInfo.class.cast(cf.constant_pool.get(id))); } visitor.visit(cf, m, refInfos); } } return true; } private ConstantPool.Visitor<Boolean,ConstantPool> cpVisitor = new ConstantPool.Visitor<Boolean,ConstantPool>() { public Boolean visitClass(CONSTANT_Class_info info, ConstantPool cpool) { return false; } public Boolean visitFieldref(CONSTANT_Fieldref_info info, ConstantPool cpool) { return filter.accept(cpool, info); } public Boolean visitDouble(CONSTANT_Double_info info, ConstantPool cpool) { return false; } public Boolean visitFloat(CONSTANT_Float_info info, ConstantPool cpool) { return false; } public Boolean visitInteger(CONSTANT_Integer_info info, ConstantPool cpool) { return false; } public Boolean visitInterfaceMethodref(CONSTANT_InterfaceMethodref_info info, ConstantPool cpool) { return filter.accept(cpool, info); } public Boolean visitInvokeDynamic(CONSTANT_InvokeDynamic_info info, ConstantPool cpool) { return false; } @Override public Boolean visitDynamicConstant(CONSTANT_Dynamic_info info, ConstantPool constantPool) { return false; } public Boolean visitLong(CONSTANT_Long_info info, ConstantPool cpool) { return false; } public Boolean visitMethodHandle(CONSTANT_MethodHandle_info info, ConstantPool cpool) { return false; } public Boolean visitMethodref(CONSTANT_Methodref_info info, ConstantPool cpool) { return filter.accept(cpool, info); } public Boolean visitMethodType(CONSTANT_MethodType_info info, ConstantPool cpool) { return false; } public Boolean visitModule(CONSTANT_Module_info info, ConstantPool cpool) { return false; } public Boolean visitNameAndType(CONSTANT_NameAndType_info info, ConstantPool cpool) { return false; } public Boolean visitPackage(CONSTANT_Package_info info, ConstantPool cpool) { return false; } public Boolean visitString(CONSTANT_String_info info, ConstantPool cpool) { return false; } public Boolean visitUtf8(CONSTANT_Utf8_info info, ConstantPool cpool) { return false; } }; private Instruction.KindVisitor<Integer, List<Integer>> codeVisitor = new Instruction.KindVisitor<Integer, List<Integer>>() { public Integer visitNoOperands(Instruction instr, List<Integer> p) { return 0; } public Integer visitArrayType(Instruction instr, TypeKind kind, List<Integer> p) { return 0; } public Integer visitBranch(Instruction instr, int offset, List<Integer> p) { return 0; } public Integer visitConstantPoolRef(Instruction instr, int index, List<Integer> p) { return p.contains(index) ? index : 0; } public Integer visitConstantPoolRefAndValue(Instruction instr, int index, int value, List<Integer> p) { return p.contains(index) ? index : 0; } public Integer visitLocal(Instruction instr, int index, List<Integer> p) { return 0; } public Integer visitLocalAndValue(Instruction instr, int index, int value, List<Integer> p) { return 0; } public Integer visitLookupSwitch(Instruction instr, int default_, int npairs, int[] matches, int[] offsets, List<Integer> p) { return 0; } public Integer visitTableSwitch(Instruction instr, int default_, int low, int high, int[] offsets, List<Integer> p) { return 0; } public Integer visitValue(Instruction instr, int value, List<Integer> p) { return 0; } public Integer visitUnknown(Instruction instr, List<Integer> p) { return 0; } }; }