hotspot/src/share/vm/classfile/dictionary.hpp
author coleenp
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6990754: Use native memory and reference counting to implement SymbolTable Summary: move symbols from permgen into C heap and reference count them Reviewed-by: never, acorn, jmasa, stefank
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/*
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 * Copyright (c) 2003, 2010, 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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#ifndef SHARE_VM_CLASSFILE_DICTIONARY_HPP
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#define SHARE_VM_CLASSFILE_DICTIONARY_HPP
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#include "classfile/systemDictionary.hpp"
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#include "oops/instanceKlass.hpp"
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#include "oops/oop.hpp"
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#include "utilities/hashtable.hpp"
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class DictionaryEntry;
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//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
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// The data structure for the system dictionary (and the shared system
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// dictionary).
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class Dictionary : public TwoOopHashtable<klassOop> {
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  friend class VMStructs;
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private:
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  // current iteration index.
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  static int                    _current_class_index;
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  // pointer to the current hash table entry.
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  static DictionaryEntry*       _current_class_entry;
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  DictionaryEntry* get_entry(int index, unsigned int hash,
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                             Symbol* name, Handle loader);
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  DictionaryEntry* bucket(int i) {
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    return (DictionaryEntry*)Hashtable<klassOop>::bucket(i);
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  }
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  // The following method is not MT-safe and must be done under lock.
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  DictionaryEntry** bucket_addr(int i) {
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    return (DictionaryEntry**)Hashtable<klassOop>::bucket_addr(i);
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  }
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  void add_entry(int index, DictionaryEntry* new_entry) {
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    Hashtable<klassOop>::add_entry(index, (HashtableEntry<oop>*)new_entry);
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  }
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public:
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  Dictionary(int table_size);
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  Dictionary(int table_size, HashtableBucket* t, int number_of_entries);
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  DictionaryEntry* new_entry(unsigned int hash, klassOop klass, oop loader);
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  DictionaryEntry* new_entry();
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  void free_entry(DictionaryEntry* entry);
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  void add_klass(Symbol* class_name, Handle class_loader,KlassHandle obj);
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  klassOop find_class(int index, unsigned int hash,
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                      Symbol* name, Handle loader);
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  klassOop find_shared_class(int index, unsigned int hash, Symbol* name);
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  // Compiler support
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  klassOop try_get_next_class();
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  // GC support
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  void oops_do(OopClosure* f);
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  void always_strong_classes_do(OopClosure* blk);
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  void classes_do(void f(klassOop));
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  void classes_do(void f(klassOop, TRAPS), TRAPS);
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  void classes_do(void f(klassOop, oop));
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  void classes_do(void f(klassOop, oop, TRAPS), TRAPS);
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  void methods_do(void f(methodOop));
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  // Classes loaded by the bootstrap loader are always strongly reachable.
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  // If we're not doing class unloading, all classes are strongly reachable.
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  static bool is_strongly_reachable(oop class_loader, klassOop klass) {
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    assert (klass != NULL, "should have non-null klass");
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    return (class_loader == NULL || !ClassUnloading);
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  }
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  // Unload (that is, break root links to) all unmarked classes and
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  // loaders.  Returns "true" iff something was unloaded.
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  bool do_unloading(BoolObjectClosure* is_alive);
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  // Protection domains
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  klassOop find(int index, unsigned int hash, Symbol* name,
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                Handle loader, Handle protection_domain, TRAPS);
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  bool is_valid_protection_domain(int index, unsigned int hash,
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                                  Symbol* name, Handle class_loader,
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                                  Handle protection_domain);
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  void add_protection_domain(int index, unsigned int hash,
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                             instanceKlassHandle klass, Handle loader,
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                             Handle protection_domain, TRAPS);
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  // Sharing support
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  void dump(SerializeOopClosure* soc);
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  void restore(SerializeOopClosure* soc);
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  void reorder_dictionary();
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#ifndef PRODUCT
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  void print();
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#endif
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  void verify();
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};
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// The following classes can be in dictionary.cpp, but we need these
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// to be in header file so that SA's vmStructs can access.
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class ProtectionDomainEntry :public CHeapObj {
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  friend class VMStructs;
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  ProtectionDomainEntry* _next;
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  oop                    _protection_domain;
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  ProtectionDomainEntry(oop protection_domain, ProtectionDomainEntry* next) {
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    _protection_domain = protection_domain;
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    _next              = next;
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  }
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  ProtectionDomainEntry* next() { return _next; }
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  oop protection_domain() { return _protection_domain; }
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};
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// An entry in the system dictionary, this describes a class as
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// { klassOop, loader, protection_domain }.
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class DictionaryEntry : public HashtableEntry<klassOop> {
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  friend class VMStructs;
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  // Contains the set of approved protection domains that can access
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  // this system dictionary entry.
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  ProtectionDomainEntry* _pd_set;
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  oop                    _loader;
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  // Tells whether a protection is in the approved set.
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  bool contains_protection_domain(oop protection_domain) const;
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  // Adds a protection domain to the approved set.
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  void add_protection_domain(oop protection_domain);
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  klassOop klass() const { return (klassOop)literal(); }
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  klassOop* klass_addr() { return (klassOop*)literal_addr(); }
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  DictionaryEntry* next() const {
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    return (DictionaryEntry*)HashtableEntry<klassOop>::next();
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  }
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  DictionaryEntry** next_addr() {
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    return (DictionaryEntry**)HashtableEntry<klassOop>::next_addr();
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  }
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  oop loader() const { return _loader; }
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  void set_loader(oop loader) { _loader = loader; }
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  oop* loader_addr() { return &_loader; }
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  ProtectionDomainEntry* pd_set() const { return _pd_set; }
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  void set_pd_set(ProtectionDomainEntry* pd_set) { _pd_set = pd_set; }
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  bool has_protection_domain() { return _pd_set != NULL; }
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  // Tells whether the initiating class' protection can access the this _klass
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  bool is_valid_protection_domain(Handle protection_domain) {
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    if (!ProtectionDomainVerification) return true;
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    if (!SystemDictionary::has_checkPackageAccess()) return true;
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    return protection_domain() == NULL
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         ? true
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         : contains_protection_domain(protection_domain());
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  }
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  void protection_domain_set_oops_do(OopClosure* f) {
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    for (ProtectionDomainEntry* current = _pd_set;
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                                current != NULL;
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                                current = current->_next) {
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      f->do_oop(&(current->_protection_domain));
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    }
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  }
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  void verify_protection_domain_set() {
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    for (ProtectionDomainEntry* current = _pd_set;
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                                current != NULL;
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                                current = current->_next) {
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      current->_protection_domain->verify();
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    }
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  }
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  bool equals(Symbol* class_name, oop class_loader) const {
1
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    klassOop klass = (klassOop)literal();
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    return (instanceKlass::cast(klass)->name() == class_name &&
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            _loader == class_loader);
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  }
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  void print() {
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    int count = 0;
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    for (ProtectionDomainEntry* current = _pd_set;
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                                current != NULL;
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                                current = current->_next) {
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      count++;
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    }
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    tty->print_cr("pd set = #%d", count);
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  }
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};
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// Entry in a SymbolPropertyTable, mapping a single Symbol*
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// to a managed and an unmanaged pointer.
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class SymbolPropertyEntry : public HashtableEntry<Symbol*> {
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  friend class VMStructs;
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 private:
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  intptr_t _symbol_mode;  // secondary key
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  oop     _property_oop;
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  address _property_data;
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 public:
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  Symbol* symbol() const            { return literal(); }
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  intptr_t symbol_mode() const      { return _symbol_mode; }
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  void set_symbol_mode(intptr_t m)  { _symbol_mode = m; }
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  oop      property_oop() const     { return _property_oop; }
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  void set_property_oop(oop p)      { _property_oop = p; }
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  address  property_data() const    { return _property_data; }
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  void set_property_data(address p) { _property_data = p; }
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  SymbolPropertyEntry* next() const {
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    return (SymbolPropertyEntry*)HashtableEntry<Symbol*>::next();
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  }
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  SymbolPropertyEntry** next_addr() {
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    return (SymbolPropertyEntry**)HashtableEntry<Symbol*>::next_addr();
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  }
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  oop* property_oop_addr()          { return &_property_oop; }
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  void print_on(outputStream* st) const {
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    symbol()->print_value_on(st);
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    st->print("/mode="INTX_FORMAT, symbol_mode());
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    st->print(" -> ");
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    bool printed = false;
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    if (property_oop() != NULL) {
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      property_oop()->print_value_on(st);
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      printed = true;
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    }
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    if (property_data() != NULL) {
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      if (printed)  st->print(" and ");
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      st->print(INTPTR_FORMAT, property_data());
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      printed = true;
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    }
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    st->print_cr(printed ? "" : "(empty)");
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  }
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};
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// A system-internal mapping of symbols to pointers, both managed
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// and unmanaged.  Used to record the auto-generation of each method
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// MethodHandle.invoke(S)T, for all signatures (S)T.
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class SymbolPropertyTable : public Hashtable<Symbol*> {
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  friend class VMStructs;
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private:
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  SymbolPropertyEntry* bucket(int i) {
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    return (SymbolPropertyEntry*) Hashtable<Symbol*>::bucket(i);
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  }
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  // The following method is not MT-safe and must be done under lock.
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  SymbolPropertyEntry** bucket_addr(int i) {
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    return (SymbolPropertyEntry**) Hashtable<Symbol*>::bucket_addr(i);
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  }
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  void add_entry(int index, SymbolPropertyEntry* new_entry) {
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    ShouldNotReachHere();
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  }
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  void set_entry(int index, SymbolPropertyEntry* new_entry) {
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    ShouldNotReachHere();
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  }
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  SymbolPropertyEntry* new_entry(unsigned int hash, Symbol* symbol, intptr_t symbol_mode) {
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    SymbolPropertyEntry* entry = (SymbolPropertyEntry*) Hashtable<Symbol*>::new_entry(hash, symbol);
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    // Hashtable with Symbol* literal must increment and decrement refcount.
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    symbol->increment_refcount();
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    entry->set_symbol_mode(symbol_mode);
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    entry->set_property_oop(NULL);
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    entry->set_property_data(NULL);
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    return entry;
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  }
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public:
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  SymbolPropertyTable(int table_size);
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  SymbolPropertyTable(int table_size, HashtableBucket* t, int number_of_entries);
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  void free_entry(SymbolPropertyEntry* entry) {
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    // decrement Symbol refcount here because hashtable doesn't.
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    entry->literal()->decrement_refcount();
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    Hashtable<Symbol*>::free_entry(entry);
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  }
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  unsigned int compute_hash(Symbol* sym, intptr_t symbol_mode) {
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    // Use the regular identity_hash.
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    return Hashtable<Symbol*>::compute_hash(sym) ^ symbol_mode;
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  }
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  int index_for(Symbol* name, intptr_t symbol_mode) {
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    return hash_to_index(compute_hash(name, symbol_mode));
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  }
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  // need not be locked; no state change
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  SymbolPropertyEntry* find_entry(int index, unsigned int hash, Symbol* name, intptr_t name_mode);
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  // must be done under SystemDictionary_lock
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  SymbolPropertyEntry* add_entry(int index, unsigned int hash, Symbol* name, intptr_t name_mode);
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  // GC support
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  void oops_do(OopClosure* f);
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  void methods_do(void f(methodOop));
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  // Sharing support
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  void dump(SerializeOopClosure* soc);
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  void restore(SerializeOopClosure* soc);
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  void reorder_dictionary();
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#ifndef PRODUCT
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  void print();
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#endif
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  void verify();
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};
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#endif // SHARE_VM_CLASSFILE_DICTIONARY_HPP