classFileParser.cpp 214.9 KB
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/*
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 * Copyright (c) 1997, 2013, Oracle and/or its affiliates. All rights reserved.
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 * 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.
 *
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 * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
 * or visit www.oracle.com if you need additional information or have any
 * questions.
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 *
 */

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#include "precompiled.hpp"
#include "classfile/classFileParser.hpp"
#include "classfile/classLoader.hpp"
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#include "classfile/classLoaderData.hpp"
#include "classfile/classLoaderData.inline.hpp"
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#include "classfile/defaultMethods.hpp"
#include "classfile/genericSignatures.hpp"
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#include "classfile/javaClasses.hpp"
#include "classfile/symbolTable.hpp"
#include "classfile/systemDictionary.hpp"
#include "classfile/verificationType.hpp"
#include "classfile/verifier.hpp"
#include "classfile/vmSymbols.hpp"
#include "memory/allocation.hpp"
#include "memory/gcLocker.hpp"
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#include "memory/metadataFactory.hpp"
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#include "memory/oopFactory.hpp"
#include "memory/universe.inline.hpp"
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#include "oops/constantPool.hpp"
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#include "oops/fieldStreams.hpp"
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#include "oops/instanceKlass.hpp"
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#include "oops/instanceMirrorKlass.hpp"
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#include "oops/klass.inline.hpp"
#include "oops/klassVtable.hpp"
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#include "oops/method.hpp"
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#include "oops/symbol.hpp"
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#include "prims/jvm.h"
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#include "prims/jvmtiExport.hpp"
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#include "prims/jvmtiThreadState.hpp"
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#include "runtime/javaCalls.hpp"
#include "runtime/perfData.hpp"
#include "runtime/reflection.hpp"
#include "runtime/signature.hpp"
#include "runtime/timer.hpp"
#include "services/classLoadingService.hpp"
#include "services/threadService.hpp"
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#include "utilities/array.hpp"
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#include "utilities/globalDefinitions.hpp"
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// We generally try to create the oops directly when parsing, rather than
// allocating temporary data structures and copying the bytes twice. A
// temporary area is only needed when parsing utf8 entries in the constant
// pool and when parsing line number tables.
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// We add assert in debug mode when class format is not checked.

#define JAVA_CLASSFILE_MAGIC              0xCAFEBABE
#define JAVA_MIN_SUPPORTED_VERSION        45
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#define JAVA_MAX_SUPPORTED_VERSION        52
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#define JAVA_MAX_SUPPORTED_MINOR_VERSION  0

// Used for two backward compatibility reasons:
// - to check for new additions to the class file format in JDK1.5
// - to check for bug fixes in the format checker in JDK1.5
#define JAVA_1_5_VERSION                  49

// Used for backward compatibility reasons:
// - to check for javac bug fixes that happened after 1.5
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// - also used as the max version when running in jdk6
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#define JAVA_6_VERSION                    50

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// Used for backward compatibility reasons:
// - to check NameAndType_info signatures more aggressively
#define JAVA_7_VERSION                    51

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// Extension method support.
#define JAVA_8_VERSION                    52

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void ClassFileParser::parse_constant_pool_entries(ClassLoaderData* loader_data, constantPoolHandle cp, int length, TRAPS) {
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  // Use a local copy of ClassFileStream. It helps the C++ compiler to optimize
  // this function (_current can be allocated in a register, with scalar
  // replacement of aggregates). The _current pointer is copied back to
  // stream() when this function returns. DON'T call another method within
  // this method that uses stream().
  ClassFileStream* cfs0 = stream();
  ClassFileStream cfs1 = *cfs0;
  ClassFileStream* cfs = &cfs1;
#ifdef ASSERT
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  assert(cfs->allocated_on_stack(),"should be local");
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  u1* old_current = cfs0->current();
#endif
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  Handle class_loader(THREAD, loader_data->class_loader());
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  // Used for batching symbol allocations.
  const char* names[SymbolTable::symbol_alloc_batch_size];
  int lengths[SymbolTable::symbol_alloc_batch_size];
  int indices[SymbolTable::symbol_alloc_batch_size];
  unsigned int hashValues[SymbolTable::symbol_alloc_batch_size];
  int names_count = 0;

  // parsing  Index 0 is unused
  for (int index = 1; index < length; index++) {
    // Each of the following case guarantees one more byte in the stream
    // for the following tag or the access_flags following constant pool,
    // so we don't need bounds-check for reading tag.
    u1 tag = cfs->get_u1_fast();
    switch (tag) {
      case JVM_CONSTANT_Class :
        {
          cfs->guarantee_more(3, CHECK);  // name_index, tag/access_flags
          u2 name_index = cfs->get_u2_fast();
          cp->klass_index_at_put(index, name_index);
        }
        break;
      case JVM_CONSTANT_Fieldref :
        {
          cfs->guarantee_more(5, CHECK);  // class_index, name_and_type_index, tag/access_flags
          u2 class_index = cfs->get_u2_fast();
          u2 name_and_type_index = cfs->get_u2_fast();
          cp->field_at_put(index, class_index, name_and_type_index);
        }
        break;
      case JVM_CONSTANT_Methodref :
        {
          cfs->guarantee_more(5, CHECK);  // class_index, name_and_type_index, tag/access_flags
          u2 class_index = cfs->get_u2_fast();
          u2 name_and_type_index = cfs->get_u2_fast();
          cp->method_at_put(index, class_index, name_and_type_index);
        }
        break;
      case JVM_CONSTANT_InterfaceMethodref :
        {
          cfs->guarantee_more(5, CHECK);  // class_index, name_and_type_index, tag/access_flags
          u2 class_index = cfs->get_u2_fast();
          u2 name_and_type_index = cfs->get_u2_fast();
          cp->interface_method_at_put(index, class_index, name_and_type_index);
        }
        break;
      case JVM_CONSTANT_String :
        {
          cfs->guarantee_more(3, CHECK);  // string_index, tag/access_flags
          u2 string_index = cfs->get_u2_fast();
          cp->string_index_at_put(index, string_index);
        }
        break;
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      case JVM_CONSTANT_MethodHandle :
      case JVM_CONSTANT_MethodType :
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        if (_major_version < Verifier::INVOKEDYNAMIC_MAJOR_VERSION) {
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          classfile_parse_error(
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            "Class file version does not support constant tag %u in class file %s",
            tag, CHECK);
        }
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        if (!EnableInvokeDynamic) {
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          classfile_parse_error(
            "This JVM does not support constant tag %u in class file %s",
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            tag, CHECK);
        }
        if (tag == JVM_CONSTANT_MethodHandle) {
          cfs->guarantee_more(4, CHECK);  // ref_kind, method_index, tag/access_flags
          u1 ref_kind = cfs->get_u1_fast();
          u2 method_index = cfs->get_u2_fast();
          cp->method_handle_index_at_put(index, ref_kind, method_index);
        } else if (tag == JVM_CONSTANT_MethodType) {
          cfs->guarantee_more(3, CHECK);  // signature_index, tag/access_flags
          u2 signature_index = cfs->get_u2_fast();
          cp->method_type_index_at_put(index, signature_index);
        } else {
          ShouldNotReachHere();
        }
        break;
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      case JVM_CONSTANT_InvokeDynamic :
        {
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          if (_major_version < Verifier::INVOKEDYNAMIC_MAJOR_VERSION) {
            classfile_parse_error(
              "Class file version does not support constant tag %u in class file %s",
              tag, CHECK);
          }
          if (!EnableInvokeDynamic) {
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            classfile_parse_error(
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              "This JVM does not support constant tag %u in class file %s",
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              tag, CHECK);
          }
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          cfs->guarantee_more(5, CHECK);  // bsm_index, nt, tag/access_flags
          u2 bootstrap_specifier_index = cfs->get_u2_fast();
          u2 name_and_type_index = cfs->get_u2_fast();
          if (_max_bootstrap_specifier_index < (int) bootstrap_specifier_index)
            _max_bootstrap_specifier_index = (int) bootstrap_specifier_index;  // collect for later
          cp->invoke_dynamic_at_put(index, bootstrap_specifier_index, name_and_type_index);
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        }
        break;
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      case JVM_CONSTANT_Integer :
        {
          cfs->guarantee_more(5, CHECK);  // bytes, tag/access_flags
          u4 bytes = cfs->get_u4_fast();
          cp->int_at_put(index, (jint) bytes);
        }
        break;
      case JVM_CONSTANT_Float :
        {
          cfs->guarantee_more(5, CHECK);  // bytes, tag/access_flags
          u4 bytes = cfs->get_u4_fast();
          cp->float_at_put(index, *(jfloat*)&bytes);
        }
        break;
      case JVM_CONSTANT_Long :
        // A mangled type might cause you to overrun allocated memory
        guarantee_property(index+1 < length,
                           "Invalid constant pool entry %u in class file %s",
                           index, CHECK);
        {
          cfs->guarantee_more(9, CHECK);  // bytes, tag/access_flags
          u8 bytes = cfs->get_u8_fast();
          cp->long_at_put(index, bytes);
        }
        index++;   // Skip entry following eigth-byte constant, see JVM book p. 98
        break;
      case JVM_CONSTANT_Double :
        // A mangled type might cause you to overrun allocated memory
        guarantee_property(index+1 < length,
                           "Invalid constant pool entry %u in class file %s",
                           index, CHECK);
        {
          cfs->guarantee_more(9, CHECK);  // bytes, tag/access_flags
          u8 bytes = cfs->get_u8_fast();
          cp->double_at_put(index, *(jdouble*)&bytes);
        }
        index++;   // Skip entry following eigth-byte constant, see JVM book p. 98
        break;
      case JVM_CONSTANT_NameAndType :
        {
          cfs->guarantee_more(5, CHECK);  // name_index, signature_index, tag/access_flags
          u2 name_index = cfs->get_u2_fast();
          u2 signature_index = cfs->get_u2_fast();
          cp->name_and_type_at_put(index, name_index, signature_index);
        }
        break;
      case JVM_CONSTANT_Utf8 :
        {
          cfs->guarantee_more(2, CHECK);  // utf8_length
          u2  utf8_length = cfs->get_u2_fast();
          u1* utf8_buffer = cfs->get_u1_buffer();
          assert(utf8_buffer != NULL, "null utf8 buffer");
          // Got utf8 string, guarantee utf8_length+1 bytes, set stream position forward.
          cfs->guarantee_more(utf8_length+1, CHECK);  // utf8 string, tag/access_flags
          cfs->skip_u1_fast(utf8_length);
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          // Before storing the symbol, make sure it's legal
          if (_need_verify) {
            verify_legal_utf8((unsigned char*)utf8_buffer, utf8_length, CHECK);
          }

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          if (EnableInvokeDynamic && has_cp_patch_at(index)) {
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            Handle patch = clear_cp_patch_at(index);
            guarantee_property(java_lang_String::is_instance(patch()),
                               "Illegal utf8 patch at %d in class file %s",
                               index, CHECK);
            char* str = java_lang_String::as_utf8_string(patch());
            // (could use java_lang_String::as_symbol instead, but might as well batch them)
            utf8_buffer = (u1*) str;
            utf8_length = (int) strlen(str);
          }

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          unsigned int hash;
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          Symbol* result = SymbolTable::lookup_only((char*)utf8_buffer, utf8_length, hash);
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          if (result == NULL) {
            names[names_count] = (char*)utf8_buffer;
            lengths[names_count] = utf8_length;
            indices[names_count] = index;
            hashValues[names_count++] = hash;
            if (names_count == SymbolTable::symbol_alloc_batch_size) {
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              SymbolTable::new_symbols(loader_data, cp, names_count, names, lengths, indices, hashValues, CHECK);
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              names_count = 0;
            }
          } else {
            cp->symbol_at_put(index, result);
          }
        }
        break;
      default:
        classfile_parse_error(
          "Unknown constant tag %u in class file %s", tag, CHECK);
        break;
    }
  }

  // Allocate the remaining symbols
  if (names_count > 0) {
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    SymbolTable::new_symbols(loader_data, cp, names_count, names, lengths, indices, hashValues, CHECK);
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  }

  // Copy _current pointer of local copy back to stream().
#ifdef ASSERT
  assert(cfs0->current() == old_current, "non-exclusive use of stream()");
#endif
  cfs0->set_current(cfs1.current());
}

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// This class unreferences constant pool symbols if an error has occurred
// while parsing the class before it is assigned into the class.
// If it gets an error after that it is unloaded and the constant pool will
// be cleaned up then.
class ConstantPoolCleaner : public StackObj {
  constantPoolHandle _cphandle;
  bool               _in_error;
 public:
  ConstantPoolCleaner(constantPoolHandle cp) : _cphandle(cp), _in_error(true) {}
  ~ConstantPoolCleaner() {
    if (_in_error && _cphandle.not_null()) {
      _cphandle->unreference_symbols();
    }
  }
  void set_in_error(bool clean) { _in_error = clean; }
};

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bool inline valid_cp_range(int index, int length) { return (index > 0 && index < length); }

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inline Symbol* check_symbol_at(constantPoolHandle cp, int index) {
  if (valid_cp_range(index, cp->length()) && cp->tag_at(index).is_utf8())
    return cp->symbol_at(index);
  else
    return NULL;
}

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constantPoolHandle ClassFileParser::parse_constant_pool(ClassLoaderData* loader_data, TRAPS) {
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  ClassFileStream* cfs = stream();
  constantPoolHandle nullHandle;

  cfs->guarantee_more(3, CHECK_(nullHandle)); // length, first cp tag
  u2 length = cfs->get_u2_fast();
  guarantee_property(
    length >= 1, "Illegal constant pool size %u in class file %s",
    length, CHECK_(nullHandle));
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  ConstantPool* constant_pool =
                      ConstantPool::allocate(loader_data,
                                                    length,
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                                                   CHECK_(nullHandle));
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  constantPoolHandle cp (THREAD, constant_pool);

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  ConstantPoolCleaner cp_in_error(cp); // set constant pool to be cleaned up.
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  // parsing constant pool entries
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  parse_constant_pool_entries(loader_data, cp, length, CHECK_(nullHandle));
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  int index = 1;  // declared outside of loops for portability

  // first verification pass - validate cross references and fixup class and string constants
  for (index = 1; index < length; index++) {          // Index 0 is unused
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    jbyte tag = cp->tag_at(index).value();
    switch (tag) {
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      case JVM_CONSTANT_Class :
        ShouldNotReachHere();     // Only JVM_CONSTANT_ClassIndex should be present
        break;
      case JVM_CONSTANT_Fieldref :
        // fall through
      case JVM_CONSTANT_Methodref :
        // fall through
      case JVM_CONSTANT_InterfaceMethodref : {
        if (!_need_verify) break;
        int klass_ref_index = cp->klass_ref_index_at(index);
        int name_and_type_ref_index = cp->name_and_type_ref_index_at(index);
        check_property(valid_cp_range(klass_ref_index, length) &&
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                       is_klass_reference(cp, klass_ref_index),
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                       "Invalid constant pool index %u in class file %s",
                       klass_ref_index,
                       CHECK_(nullHandle));
        check_property(valid_cp_range(name_and_type_ref_index, length) &&
                       cp->tag_at(name_and_type_ref_index).is_name_and_type(),
                       "Invalid constant pool index %u in class file %s",
                       name_and_type_ref_index,
                       CHECK_(nullHandle));
        break;
      }
      case JVM_CONSTANT_String :
        ShouldNotReachHere();     // Only JVM_CONSTANT_StringIndex should be present
        break;
      case JVM_CONSTANT_Integer :
        break;
      case JVM_CONSTANT_Float :
        break;
      case JVM_CONSTANT_Long :
      case JVM_CONSTANT_Double :
        index++;
        check_property(
          (index < length && cp->tag_at(index).is_invalid()),
          "Improper constant pool long/double index %u in class file %s",
          index, CHECK_(nullHandle));
        break;
      case JVM_CONSTANT_NameAndType : {
        if (!_need_verify) break;
        int name_ref_index = cp->name_ref_index_at(index);
        int signature_ref_index = cp->signature_ref_index_at(index);
        check_property(
          valid_cp_range(name_ref_index, length) &&
            cp->tag_at(name_ref_index).is_utf8(),
          "Invalid constant pool index %u in class file %s",
          name_ref_index, CHECK_(nullHandle));
        check_property(
          valid_cp_range(signature_ref_index, length) &&
            cp->tag_at(signature_ref_index).is_utf8(),
          "Invalid constant pool index %u in class file %s",
          signature_ref_index, CHECK_(nullHandle));
        break;
      }
      case JVM_CONSTANT_Utf8 :
        break;
      case JVM_CONSTANT_UnresolvedClass :         // fall-through
      case JVM_CONSTANT_UnresolvedClassInError:
        ShouldNotReachHere();     // Only JVM_CONSTANT_ClassIndex should be present
        break;
      case JVM_CONSTANT_ClassIndex :
        {
          int class_index = cp->klass_index_at(index);
          check_property(
            valid_cp_range(class_index, length) &&
              cp->tag_at(class_index).is_utf8(),
            "Invalid constant pool index %u in class file %s",
            class_index, CHECK_(nullHandle));
          cp->unresolved_klass_at_put(index, cp->symbol_at(class_index));
        }
        break;
      case JVM_CONSTANT_StringIndex :
        {
          int string_index = cp->string_index_at(index);
          check_property(
            valid_cp_range(string_index, length) &&
              cp->tag_at(string_index).is_utf8(),
            "Invalid constant pool index %u in class file %s",
            string_index, CHECK_(nullHandle));
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          Symbol* sym = cp->symbol_at(string_index);
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          cp->unresolved_string_at_put(index, sym);
        }
        break;
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      case JVM_CONSTANT_MethodHandle :
        {
          int ref_index = cp->method_handle_index_at(index);
          check_property(
            valid_cp_range(ref_index, length) &&
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                EnableInvokeDynamic,
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              "Invalid constant pool index %u in class file %s",
              ref_index, CHECK_(nullHandle));
          constantTag tag = cp->tag_at(ref_index);
          int ref_kind  = cp->method_handle_ref_kind_at(index);
          switch (ref_kind) {
          case JVM_REF_getField:
          case JVM_REF_getStatic:
          case JVM_REF_putField:
          case JVM_REF_putStatic:
            check_property(
              tag.is_field(),
              "Invalid constant pool index %u in class file %s (not a field)",
              ref_index, CHECK_(nullHandle));
            break;
          case JVM_REF_invokeVirtual:
          case JVM_REF_invokeStatic:
          case JVM_REF_invokeSpecial:
          case JVM_REF_newInvokeSpecial:
            check_property(
              tag.is_method(),
              "Invalid constant pool index %u in class file %s (not a method)",
              ref_index, CHECK_(nullHandle));
            break;
          case JVM_REF_invokeInterface:
            check_property(
              tag.is_interface_method(),
              "Invalid constant pool index %u in class file %s (not an interface method)",
              ref_index, CHECK_(nullHandle));
            break;
          default:
            classfile_parse_error(
              "Bad method handle kind at constant pool index %u in class file %s",
              index, CHECK_(nullHandle));
          }
          // Keep the ref_index unchanged.  It will be indirected at link-time.
        }
        break;
      case JVM_CONSTANT_MethodType :
        {
          int ref_index = cp->method_type_index_at(index);
          check_property(
            valid_cp_range(ref_index, length) &&
                cp->tag_at(ref_index).is_utf8() &&
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                EnableInvokeDynamic,
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              "Invalid constant pool index %u in class file %s",
              ref_index, CHECK_(nullHandle));
        }
        break;
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      case JVM_CONSTANT_InvokeDynamic :
        {
          int name_and_type_ref_index = cp->invoke_dynamic_name_and_type_ref_index_at(index);
          check_property(valid_cp_range(name_and_type_ref_index, length) &&
                         cp->tag_at(name_and_type_ref_index).is_name_and_type(),
                         "Invalid constant pool index %u in class file %s",
                         name_and_type_ref_index,
                         CHECK_(nullHandle));
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          // bootstrap specifier index must be checked later, when BootstrapMethods attr is available
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          break;
        }
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      default:
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        fatal(err_msg("bad constant pool tag value %u",
                      cp->tag_at(index).value()));
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        ShouldNotReachHere();
        break;
    } // end of switch
  } // end of for

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  if (_cp_patches != NULL) {
    // need to treat this_class specially...
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    assert(EnableInvokeDynamic, "");
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    int this_class_index;
    {
      cfs->guarantee_more(8, CHECK_(nullHandle));  // flags, this_class, super_class, infs_len
      u1* mark = cfs->current();
      u2 flags         = cfs->get_u2_fast();
      this_class_index = cfs->get_u2_fast();
      cfs->set_current(mark);  // revert to mark
    }

    for (index = 1; index < length; index++) {          // Index 0 is unused
      if (has_cp_patch_at(index)) {
        guarantee_property(index != this_class_index,
                           "Illegal constant pool patch to self at %d in class file %s",
                           index, CHECK_(nullHandle));
        patch_constant_pool(cp, index, cp_patch_at(index), CHECK_(nullHandle));
      }
    }
  }

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  if (!_need_verify) {
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    cp_in_error.set_in_error(false);
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    return cp;
  }

  // second verification pass - checks the strings are of the right format.
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  // but not yet to the other entries
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  for (index = 1; index < length; index++) {
    jbyte tag = cp->tag_at(index).value();
    switch (tag) {
      case JVM_CONSTANT_UnresolvedClass: {
554
        Symbol*  class_name = cp->unresolved_klass_at(index);
555
        // check the name, even if _cp_patches will overwrite it
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        verify_legal_class_name(class_name, CHECK_(nullHandle));
        break;
      }
559 560 561 562
      case JVM_CONSTANT_NameAndType: {
        if (_need_verify && _major_version >= JAVA_7_VERSION) {
          int sig_index = cp->signature_ref_index_at(index);
          int name_index = cp->name_ref_index_at(index);
563 564
          Symbol*  name = cp->symbol_at(name_index);
          Symbol*  sig = cp->symbol_at(sig_index);
565 566 567 568 569 570 571 572
          if (sig->byte_at(0) == JVM_SIGNATURE_FUNC) {
            verify_legal_method_signature(name, sig, CHECK_(nullHandle));
          } else {
            verify_legal_field_signature(name, sig, CHECK_(nullHandle));
          }
        }
        break;
      }
573
      case JVM_CONSTANT_InvokeDynamic:
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      case JVM_CONSTANT_Fieldref:
      case JVM_CONSTANT_Methodref:
      case JVM_CONSTANT_InterfaceMethodref: {
        int name_and_type_ref_index = cp->name_and_type_ref_index_at(index);
        // already verified to be utf8
        int name_ref_index = cp->name_ref_index_at(name_and_type_ref_index);
        // already verified to be utf8
        int signature_ref_index = cp->signature_ref_index_at(name_and_type_ref_index);
582 583
        Symbol*  name = cp->symbol_at(name_ref_index);
        Symbol*  signature = cp->symbol_at(signature_ref_index);
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        if (tag == JVM_CONSTANT_Fieldref) {
          verify_legal_field_name(name, CHECK_(nullHandle));
586 587 588 589 590 591 592 593 594 595
          if (_need_verify && _major_version >= JAVA_7_VERSION) {
            // Signature is verified above, when iterating NameAndType_info.
            // Need only to be sure it's the right type.
            if (signature->byte_at(0) == JVM_SIGNATURE_FUNC) {
              throwIllegalSignature(
                  "Field", name, signature, CHECK_(nullHandle));
            }
          } else {
            verify_legal_field_signature(name, signature, CHECK_(nullHandle));
          }
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        } else {
          verify_legal_method_name(name, CHECK_(nullHandle));
598 599 600 601 602 603 604 605 606 607
          if (_need_verify && _major_version >= JAVA_7_VERSION) {
            // Signature is verified above, when iterating NameAndType_info.
            // Need only to be sure it's the right type.
            if (signature->byte_at(0) != JVM_SIGNATURE_FUNC) {
              throwIllegalSignature(
                  "Method", name, signature, CHECK_(nullHandle));
            }
          } else {
            verify_legal_method_signature(name, signature, CHECK_(nullHandle));
          }
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          if (tag == JVM_CONSTANT_Methodref) {
            // 4509014: If a class method name begins with '<', it must be "<init>".
610
            assert(name != NULL, "method name in constant pool is null");
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            unsigned int name_len = name->utf8_length();
            assert(name_len > 0, "bad method name");  // already verified as legal name
            if (name->byte_at(0) == '<') {
614
              if (name != vmSymbols::object_initializer_name()) {
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                classfile_parse_error(
                  "Bad method name at constant pool index %u in class file %s",
                  name_ref_index, CHECK_(nullHandle));
              }
            }
          }
        }
        break;
      }
624 625 626 627 628 629 630 631 632 633 634
      case JVM_CONSTANT_MethodHandle: {
        int ref_index = cp->method_handle_index_at(index);
        int ref_kind  = cp->method_handle_ref_kind_at(index);
        switch (ref_kind) {
        case JVM_REF_invokeVirtual:
        case JVM_REF_invokeStatic:
        case JVM_REF_invokeSpecial:
        case JVM_REF_newInvokeSpecial:
          {
            int name_and_type_ref_index = cp->name_and_type_ref_index_at(ref_index);
            int name_ref_index = cp->name_ref_index_at(name_and_type_ref_index);
635
            Symbol*  name = cp->symbol_at(name_ref_index);
636
            if (ref_kind == JVM_REF_newInvokeSpecial) {
637
              if (name != vmSymbols::object_initializer_name()) {
638 639 640 641 642
                classfile_parse_error(
                  "Bad constructor name at constant pool index %u in class file %s",
                  name_ref_index, CHECK_(nullHandle));
              }
            } else {
643
              if (name == vmSymbols::object_initializer_name()) {
644 645 646 647 648 649 650 651 652 653 654 655
                classfile_parse_error(
                  "Bad method name at constant pool index %u in class file %s",
                  name_ref_index, CHECK_(nullHandle));
              }
            }
          }
          break;
          // Other ref_kinds are already fully checked in previous pass.
        }
        break;
      }
      case JVM_CONSTANT_MethodType: {
656 657
        Symbol* no_name = vmSymbols::type_name(); // place holder
        Symbol*  signature = cp->method_type_signature_at(index);
658 659 660
        verify_legal_method_signature(no_name, signature, CHECK_(nullHandle));
        break;
      }
661 662 663
      case JVM_CONSTANT_Utf8: {
        assert(cp->symbol_at(index)->refcount() != 0, "count corrupted");
      }
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    }  // end of switch
  }  // end of for

667
  cp_in_error.set_in_error(false);
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  return cp;
}


672
void ClassFileParser::patch_constant_pool(constantPoolHandle cp, int index, Handle patch, TRAPS) {
673
  assert(EnableInvokeDynamic, "");
674
  BasicType patch_type = T_VOID;
675

676 677 678 679 680
  switch (cp->tag_at(index).value()) {

  case JVM_CONSTANT_UnresolvedClass :
    // Patching a class means pre-resolving it.
    // The name in the constant pool is ignored.
681
    if (java_lang_Class::is_instance(patch())) {
682 683 684
      guarantee_property(!java_lang_Class::is_primitive(patch()),
                         "Illegal class patch at %d in class file %s",
                         index, CHECK);
685
      cp->klass_at_put(index, java_lang_Class::as_Klass(patch()));
686 687 688 689
    } else {
      guarantee_property(java_lang_String::is_instance(patch()),
                         "Illegal class patch at %d in class file %s",
                         index, CHECK);
690 691
      Symbol* name = java_lang_String::as_symbol(patch(), CHECK);
      cp->unresolved_klass_at_put(index, name);
692 693 694
    }
    break;

695 696 697 698
  case JVM_CONSTANT_String :
    // skip this patch and don't clear it.  Needs the oop array for resolved
    // references to be created first.
    return;
699 700 701 702 703 704 705 706 707 708 709 710 711 712 713 714 715 716 717 718 719 720 721 722 723 724 725 726 727 728 729 730 731 732 733 734

  case JVM_CONSTANT_Integer : patch_type = T_INT;    goto patch_prim;
  case JVM_CONSTANT_Float :   patch_type = T_FLOAT;  goto patch_prim;
  case JVM_CONSTANT_Long :    patch_type = T_LONG;   goto patch_prim;
  case JVM_CONSTANT_Double :  patch_type = T_DOUBLE; goto patch_prim;
  patch_prim:
    {
      jvalue value;
      BasicType value_type = java_lang_boxing_object::get_value(patch(), &value);
      guarantee_property(value_type == patch_type,
                         "Illegal primitive patch at %d in class file %s",
                         index, CHECK);
      switch (value_type) {
      case T_INT:    cp->int_at_put(index,   value.i); break;
      case T_FLOAT:  cp->float_at_put(index, value.f); break;
      case T_LONG:   cp->long_at_put(index,  value.j); break;
      case T_DOUBLE: cp->double_at_put(index, value.d); break;
      default:       assert(false, "");
      }
    }
    break;

  default:
    // %%% TODO: put method handles into CONSTANT_InterfaceMethodref, etc.
    guarantee_property(!has_cp_patch_at(index),
                       "Illegal unexpected patch at %d in class file %s",
                       index, CHECK);
    return;
  }

  // On fall-through, mark the patch as used.
  clear_cp_patch_at(index);
}



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class NameSigHash: public ResourceObj {
 public:
737 738
  Symbol*       _name;       // name
  Symbol*       _sig;        // signature
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  NameSigHash*  _next;       // Next entry in hash table
};


#define HASH_ROW_SIZE 256

745
unsigned int hash(Symbol* name, Symbol* sig) {
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  unsigned int raw_hash = 0;
  raw_hash += ((unsigned int)(uintptr_t)name) >> (LogHeapWordSize + 2);
  raw_hash += ((unsigned int)(uintptr_t)sig) >> LogHeapWordSize;

  return (raw_hash + (unsigned int)(uintptr_t)name) % HASH_ROW_SIZE;
}


void initialize_hashtable(NameSigHash** table) {
  memset((void*)table, 0, sizeof(NameSigHash*) * HASH_ROW_SIZE);
}

// Return false if the name/sig combination is found in table.
// Return true if no duplicate is found. And name/sig is added as a new entry in table.
// The old format checker uses heap sort to find duplicates.
// NOTE: caller should guarantee that GC doesn't happen during the life cycle
762 763
// of table since we don't expect Symbol*'s to move.
bool put_after_lookup(Symbol* name, Symbol* sig, NameSigHash** table) {
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  assert(name != NULL, "name in constant pool is NULL");

  // First lookup for duplicates
  int index = hash(name, sig);
  NameSigHash* entry = table[index];
  while (entry != NULL) {
    if (entry->_name == name && entry->_sig == sig) {
      return false;
    }
    entry = entry->_next;
  }

  // No duplicate is found, allocate a new entry and fill it.
  entry = new NameSigHash();
  entry->_name = name;
  entry->_sig = sig;

  // Insert into hash table
  entry->_next = table[index];
  table[index] = entry;

  return true;
}


789
Array<Klass*>* ClassFileParser::parse_interfaces(constantPoolHandle cp,
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                                                 int length,
791
                                                 ClassLoaderData* loader_data,
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                                                 Handle protection_domain,
793
                                                 Symbol* class_name,
794
                                                 bool* has_default_methods,
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                                                 TRAPS) {
  ClassFileStream* cfs = stream();
  assert(length > 0, "only called for length>0");
798 799
  // FIXME: Leak at later OOM.
  Array<Klass*>* interfaces = MetadataFactory::new_array<Klass*>(loader_data, length, NULL, CHECK_NULL);
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  int index;
  for (index = 0; index < length; index++) {
803
    u2 interface_index = cfs->get_u2(CHECK_NULL);
804
    KlassHandle interf;
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    check_property(
      valid_cp_range(interface_index, cp->length()) &&
807
      is_klass_reference(cp, interface_index),
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      "Interface name has bad constant pool index %u in class file %s",
809
      interface_index, CHECK_NULL);
810 811 812
    if (cp->tag_at(interface_index).is_klass()) {
      interf = KlassHandle(THREAD, cp->resolved_klass_at(interface_index));
    } else {
813
      Symbol*  unresolved_klass  = cp->klass_name_at(interface_index);
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815 816 817
      // Don't need to check legal name because it's checked when parsing constant pool.
      // But need to make sure it's not an array type.
      guarantee_property(unresolved_klass->byte_at(0) != JVM_SIGNATURE_ARRAY,
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                         "Bad interface name in class file %s", CHECK_NULL);
      Handle class_loader(THREAD, loader_data->class_loader());
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821
      // Call resolve_super so classcircularity is checked
822
      Klass* k = SystemDictionary::resolve_super_or_fail(class_name,
823
                    unresolved_klass, class_loader, protection_domain,
824
                    false, CHECK_NULL);
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      interf = KlassHandle(THREAD, k);
    }
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    if (!interf()->is_interface()) {
829
      THROW_MSG_(vmSymbols::java_lang_IncompatibleClassChangeError(), "Implementing class", NULL);
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    }
831 832 833
    if (InstanceKlass::cast(interf())->has_default_methods()) {
      *has_default_methods = true;
    }
834
    interfaces->at_put(index, interf());
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  }

  if (!_need_verify || length <= 1) {
    return interfaces;
  }

  // Check if there's any duplicates in interfaces
  ResourceMark rm(THREAD);
  NameSigHash** interface_names = NEW_RESOURCE_ARRAY_IN_THREAD(
    THREAD, NameSigHash*, HASH_ROW_SIZE);
  initialize_hashtable(interface_names);
  bool dup = false;
  {
    debug_only(No_Safepoint_Verifier nsv;)
    for (index = 0; index < length; index++) {
850 851
      Klass* k = interfaces->at(index);
      Symbol* name = InstanceKlass::cast(k)->name();
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      // If no duplicates, add (name, NULL) in hashtable interface_names.
      if (!put_after_lookup(name, NULL, interface_names)) {
        dup = true;
        break;
      }
    }
  }
  if (dup) {
860
    classfile_parse_error("Duplicate interface name in class file %s", CHECK_NULL);
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  }

  return interfaces;
}


void ClassFileParser::verify_constantvalue(int constantvalue_index, int signature_index, constantPoolHandle cp, TRAPS) {
  // Make sure the constant pool entry is of a type appropriate to this field
  guarantee_property(
    (constantvalue_index > 0 &&
      constantvalue_index < cp->length()),
    "Bad initial value index %u in ConstantValue attribute in class file %s",
    constantvalue_index, CHECK);
  constantTag value_type = cp->tag_at(constantvalue_index);
  switch ( cp->basic_type_for_signature_at(signature_index) ) {
    case T_LONG:
      guarantee_property(value_type.is_long(), "Inconsistent constant value type in class file %s", CHECK);
      break;
    case T_FLOAT:
      guarantee_property(value_type.is_float(), "Inconsistent constant value type in class file %s", CHECK);
      break;
    case T_DOUBLE:
      guarantee_property(value_type.is_double(), "Inconsistent constant value type in class file %s", CHECK);
      break;
    case T_BYTE: case T_CHAR: case T_SHORT: case T_BOOLEAN: case T_INT:
      guarantee_property(value_type.is_int(), "Inconsistent constant value type in class file %s", CHECK);
      break;
    case T_OBJECT:
889
      guarantee_property((cp->symbol_at(signature_index)->equals("Ljava/lang/String;")
890
                         && value_type.is_string()),
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                         "Bad string initial value in class file %s", CHECK);
      break;
    default:
      classfile_parse_error(
        "Unable to set initial value %u in class file %s",
        constantvalue_index, CHECK);
  }
}


// Parse attributes for a field.
902 903
void ClassFileParser::parse_field_attributes(ClassLoaderData* loader_data,
                                             constantPoolHandle cp,
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                                             u2 attributes_count,
                                             bool is_static, u2 signature_index,
                                             u2* constantvalue_index_addr,
                                             bool* is_synthetic_addr,
                                             u2* generic_signature_index_addr,
909
                                             AnnotationArray** field_annotations,
910
                                             AnnotationArray** field_type_annotations,
911
                                             ClassFileParser::FieldAnnotationCollector* parsed_annotations,
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                                             TRAPS) {
  ClassFileStream* cfs = stream();
  assert(attributes_count > 0, "length should be greater than 0");
  u2 constantvalue_index = 0;
  u2 generic_signature_index = 0;
  bool is_synthetic = false;
  u1* runtime_visible_annotations = NULL;
  int runtime_visible_annotations_length = 0;
  u1* runtime_invisible_annotations = NULL;
  int runtime_invisible_annotations_length = 0;
922 923 924 925
  u1* runtime_visible_type_annotations = NULL;
  int runtime_visible_type_annotations_length = 0;
  u1* runtime_invisible_type_annotations = NULL;
  int runtime_invisible_type_annotations_length = 0;
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  while (attributes_count--) {
    cfs->guarantee_more(6, CHECK);  // attribute_name_index, attribute_length
    u2 attribute_name_index = cfs->get_u2_fast();
    u4 attribute_length = cfs->get_u4_fast();
    check_property(valid_cp_range(attribute_name_index, cp->length()) &&
                   cp->tag_at(attribute_name_index).is_utf8(),
                   "Invalid field attribute index %u in class file %s",
                   attribute_name_index,
                   CHECK);
935
    Symbol* attribute_name = cp->symbol_at(attribute_name_index);
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    if (is_static && attribute_name == vmSymbols::tag_constant_value()) {
      // ignore if non-static
      if (constantvalue_index != 0) {
        classfile_parse_error("Duplicate ConstantValue attribute in class file %s", CHECK);
      }
      check_property(
        attribute_length == 2,
        "Invalid ConstantValue field attribute length %u in class file %s",
        attribute_length, CHECK);
      constantvalue_index = cfs->get_u2(CHECK);
      if (_need_verify) {
        verify_constantvalue(constantvalue_index, signature_index, cp, CHECK);
      }
    } else if (attribute_name == vmSymbols::tag_synthetic()) {
      if (attribute_length != 0) {
        classfile_parse_error(
          "Invalid Synthetic field attribute length %u in class file %s",
          attribute_length, CHECK);
      }
      is_synthetic = true;
    } else if (attribute_name == vmSymbols::tag_deprecated()) { // 4276120
      if (attribute_length != 0) {
        classfile_parse_error(
          "Invalid Deprecated field attribute length %u in class file %s",
          attribute_length, CHECK);
      }
    } else if (_major_version >= JAVA_1_5_VERSION) {
      if (attribute_name == vmSymbols::tag_signature()) {
        if (attribute_length != 2) {
          classfile_parse_error(
            "Wrong size %u for field's Signature attribute in class file %s",
            attribute_length, CHECK);
        }
        generic_signature_index = cfs->get_u2(CHECK);
      } else if (attribute_name == vmSymbols::tag_runtime_visible_annotations()) {
        runtime_visible_annotations_length = attribute_length;
        runtime_visible_annotations = cfs->get_u1_buffer();
        assert(runtime_visible_annotations != NULL, "null visible annotations");
974 975 976 977 978 979
        parse_annotations(loader_data,
                          runtime_visible_annotations,
                          runtime_visible_annotations_length,
                          cp,
                          parsed_annotations,
                          CHECK);
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        cfs->skip_u1(runtime_visible_annotations_length, CHECK);
      } else if (PreserveAllAnnotations && attribute_name == vmSymbols::tag_runtime_invisible_annotations()) {
        runtime_invisible_annotations_length = attribute_length;
        runtime_invisible_annotations = cfs->get_u1_buffer();
        assert(runtime_invisible_annotations != NULL, "null invisible annotations");
        cfs->skip_u1(runtime_invisible_annotations_length, CHECK);
986 987 988 989 990 991 992 993 994 995
      } else if (attribute_name == vmSymbols::tag_runtime_visible_type_annotations()) {
        runtime_visible_type_annotations_length = attribute_length;
        runtime_visible_type_annotations = cfs->get_u1_buffer();
        assert(runtime_visible_type_annotations != NULL, "null visible type annotations");
        cfs->skip_u1(runtime_visible_type_annotations_length, CHECK);
      } else if (PreserveAllAnnotations && attribute_name == vmSymbols::tag_runtime_invisible_type_annotations()) {
        runtime_invisible_type_annotations_length = attribute_length;
        runtime_invisible_type_annotations = cfs->get_u1_buffer();
        assert(runtime_invisible_type_annotations != NULL, "null invisible type annotations");
        cfs->skip_u1(runtime_invisible_type_annotations_length, CHECK);
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      } else {
        cfs->skip_u1(attribute_length, CHECK);  // Skip unknown attributes
      }
    } else {
      cfs->skip_u1(attribute_length, CHECK);  // Skip unknown attributes
    }
  }

  *constantvalue_index_addr = constantvalue_index;
  *is_synthetic_addr = is_synthetic;
  *generic_signature_index_addr = generic_signature_index;
1007 1008
  *field_annotations = assemble_annotations(loader_data,
                                            runtime_visible_annotations,
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                                            runtime_visible_annotations_length,
                                            runtime_invisible_annotations,
                                            runtime_invisible_annotations_length,
                                            CHECK);
1013 1014 1015 1016 1017 1018
  *field_type_annotations = assemble_annotations(loader_data,
                                            runtime_visible_type_annotations,
                                            runtime_visible_type_annotations_length,
                                            runtime_invisible_type_annotations,
                                            runtime_invisible_type_annotations_length,
                                            CHECK);
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  return;
}


// Field allocation types. Used for computing field offsets.

enum FieldAllocationType {
  STATIC_OOP,           // Oops
  STATIC_BYTE,          // Boolean, Byte, char
  STATIC_SHORT,         // shorts
  STATIC_WORD,          // ints
1030
  STATIC_DOUBLE,        // aligned long or double
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  NONSTATIC_OOP,
  NONSTATIC_BYTE,
  NONSTATIC_SHORT,
  NONSTATIC_WORD,
  NONSTATIC_DOUBLE,
1036 1037
  MAX_FIELD_ALLOCATION_TYPE,
  BAD_ALLOCATION_TYPE = -1
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};

1040 1041 1042 1043 1044
static FieldAllocationType _basic_type_to_atype[2 * (T_CONFLICT + 1)] = {
  BAD_ALLOCATION_TYPE, // 0
  BAD_ALLOCATION_TYPE, // 1
  BAD_ALLOCATION_TYPE, // 2
  BAD_ALLOCATION_TYPE, // 3
1045 1046 1047 1048 1049 1050 1051 1052 1053 1054 1055 1056 1057 1058 1059 1060
  NONSTATIC_BYTE ,     // T_BOOLEAN     =  4,
  NONSTATIC_SHORT,     // T_CHAR        =  5,
  NONSTATIC_WORD,      // T_FLOAT       =  6,
  NONSTATIC_DOUBLE,    // T_DOUBLE      =  7,
  NONSTATIC_BYTE,      // T_BYTE        =  8,
  NONSTATIC_SHORT,     // T_SHORT       =  9,
  NONSTATIC_WORD,      // T_INT         = 10,
  NONSTATIC_DOUBLE,    // T_LONG        = 11,
  NONSTATIC_OOP,       // T_OBJECT      = 12,
  NONSTATIC_OOP,       // T_ARRAY       = 13,
  BAD_ALLOCATION_TYPE, // T_VOID        = 14,
  BAD_ALLOCATION_TYPE, // T_ADDRESS     = 15,
  BAD_ALLOCATION_TYPE, // T_NARROWOOP   = 16,
  BAD_ALLOCATION_TYPE, // T_METADATA    = 17,
  BAD_ALLOCATION_TYPE, // T_NARROWKLASS = 18,
  BAD_ALLOCATION_TYPE, // T_CONFLICT    = 19,
1061 1062 1063 1064
  BAD_ALLOCATION_TYPE, // 0
  BAD_ALLOCATION_TYPE, // 1
  BAD_ALLOCATION_TYPE, // 2
  BAD_ALLOCATION_TYPE, // 3
1065 1066 1067 1068 1069 1070 1071 1072 1073 1074 1075 1076 1077 1078 1079 1080
  STATIC_BYTE ,        // T_BOOLEAN     =  4,
  STATIC_SHORT,        // T_CHAR        =  5,
  STATIC_WORD,         // T_FLOAT       =  6,
  STATIC_DOUBLE,       // T_DOUBLE      =  7,
  STATIC_BYTE,         // T_BYTE        =  8,
  STATIC_SHORT,        // T_SHORT       =  9,
  STATIC_WORD,         // T_INT         = 10,
  STATIC_DOUBLE,       // T_LONG        = 11,
  STATIC_OOP,          // T_OBJECT      = 12,
  STATIC_OOP,          // T_ARRAY       = 13,
  BAD_ALLOCATION_TYPE, // T_VOID        = 14,
  BAD_ALLOCATION_TYPE, // T_ADDRESS     = 15,
  BAD_ALLOCATION_TYPE, // T_NARROWOOP   = 16,
  BAD_ALLOCATION_TYPE, // T_METADATA    = 17,
  BAD_ALLOCATION_TYPE, // T_NARROWKLASS = 18,
  BAD_ALLOCATION_TYPE, // T_CONFLICT    = 19,
1081 1082 1083 1084 1085 1086 1087 1088
};

static FieldAllocationType basic_type_to_atype(bool is_static, BasicType type) {
  assert(type >= T_BOOLEAN && type < T_VOID, "only allowable values");
  FieldAllocationType result = _basic_type_to_atype[type + (is_static ? (T_CONFLICT + 1) : 0)];
  assert(result != BAD_ALLOCATION_TYPE, "bad type");
  return result;
}
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1090 1091
class FieldAllocationCount: public ResourceObj {
 public:
1092
  u2 count[MAX_FIELD_ALLOCATION_TYPE];
1093 1094 1095 1096 1097 1098 1099 1100 1101

  FieldAllocationCount() {
    for (int i = 0; i < MAX_FIELD_ALLOCATION_TYPE; i++) {
      count[i] = 0;
    }
  }

  FieldAllocationType update(bool is_static, BasicType type) {
    FieldAllocationType atype = basic_type_to_atype(is_static, type);
1102 1103
    // Make sure there is no overflow with injected fields.
    assert(count[atype] < 0xFFFF, "More than 65535 fields");
1104 1105 1106
    count[atype]++;
    return atype;
  }
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};

1109 1110
Array<u2>* ClassFileParser::parse_fields(ClassLoaderData* loader_data,
                                         Symbol* class_name,
1111 1112 1113
                                         constantPoolHandle cp,
                                         bool is_interface,
                                         FieldAllocationCount *fac,
1114
                                         Array<AnnotationArray*>** fields_annotations,
1115
                                         Array<AnnotationArray*>** fields_type_annotations,
1116
                                         u2* java_fields_count_ptr, TRAPS) {
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  ClassFileStream* cfs = stream();
1118
  cfs->guarantee_more(2, CHECK_NULL);  // length
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  u2 length = cfs->get_u2_fast();
1120 1121 1122 1123
  *java_fields_count_ptr = length;

  int num_injected = 0;
  InjectedField* injected = JavaClasses::get_injected(class_name, &num_injected);
1124 1125 1126 1127 1128 1129 1130 1131 1132 1133 1134 1135 1136 1137 1138 1139 1140 1141 1142 1143 1144 1145 1146 1147 1148
  int total_fields = length + num_injected;

  // The field array starts with tuples of shorts
  // [access, name index, sig index, initial value index, byte offset].
  // A generic signature slot only exists for field with generic
  // signature attribute. And the access flag is set with
  // JVM_ACC_FIELD_HAS_GENERIC_SIGNATURE for that field. The generic
  // signature slots are at the end of the field array and after all
  // other fields data.
  //
  //   f1: [access, name index, sig index, initial value index, low_offset, high_offset]
  //   f2: [access, name index, sig index, initial value index, low_offset, high_offset]
  //       ...
  //   fn: [access, name index, sig index, initial value index, low_offset, high_offset]
  //       [generic signature index]
  //       [generic signature index]
  //       ...
  //
  // Allocate a temporary resource array for field data. For each field,
  // a slot is reserved in the temporary array for the generic signature
  // index. After parsing all fields, the data are copied to a permanent
  // array and any unused slots will be discarded.
  ResourceMark rm(THREAD);
  u2* fa = NEW_RESOURCE_ARRAY_IN_THREAD(
             THREAD, u2, total_fields * (FieldInfo::field_slots + 1));
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1150
  AnnotationArray* field_annotations = NULL;
1151
  AnnotationArray* field_type_annotations = NULL;
1152 1153 1154
  // The generic signature slots start after all other fields' data.
  int generic_signature_slot = total_fields * FieldInfo::field_slots;
  int num_generic_signature = 0;
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  for (int n = 0; n < length; n++) {
1156
    cfs->guarantee_more(8, CHECK_NULL);  // access_flags, name_index, descriptor_index, attributes_count
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    AccessFlags access_flags;
    jint flags = cfs->get_u2_fast() & JVM_RECOGNIZED_FIELD_MODIFIERS;
1160
    verify_legal_field_modifiers(flags, is_interface, CHECK_NULL);
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    access_flags.set_flags(flags);

    u2 name_index = cfs->get_u2_fast();
    int cp_size = cp->length();
    check_property(
      valid_cp_range(name_index, cp_size) && cp->tag_at(name_index).is_utf8(),
      "Invalid constant pool index %u for field name in class file %s",
1168
      name_index, CHECK_NULL);
1169
    Symbol*  name = cp->symbol_at(name_index);
1170
    verify_legal_field_name(name, CHECK_NULL);
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    u2 signature_index = cfs->get_u2_fast();
    check_property(
      valid_cp_range(signature_index, cp_size) &&
        cp->tag_at(signature_index).is_utf8(),
      "Invalid constant pool index %u for field signature in class file %s",
1177
      signature_index, CHECK_NULL);
1178
    Symbol*  sig = cp->symbol_at(signature_index);
1179
    verify_legal_field_signature(name, sig, CHECK_NULL);
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    u2 constantvalue_index = 0;
    bool is_synthetic = false;
    u2 generic_signature_index = 0;
    bool is_static = access_flags.is_static();
1185
    FieldAnnotationCollector parsed_annotations;
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    u2 attributes_count = cfs->get_u2_fast();
    if (attributes_count > 0) {
1189 1190
      parse_field_attributes(loader_data,
                             cp, attributes_count, is_static, signature_index,
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                             &constantvalue_index, &is_synthetic,
                             &generic_signature_index, &field_annotations,
1193
                             &field_type_annotations, &parsed_annotations,
1194 1195 1196 1197 1198 1199
                             CHECK_NULL);
      if (field_annotations != NULL) {
        if (*fields_annotations == NULL) {
          *fields_annotations = MetadataFactory::new_array<AnnotationArray*>(
                                             loader_data, length, NULL,
                                             CHECK_NULL);
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        }
1201
        (*fields_annotations)->at_put(n, field_annotations);
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      }
1203 1204 1205 1206 1207 1208 1209 1210
      if (field_type_annotations != NULL) {
        if (*fields_type_annotations == NULL) {
          *fields_type_annotations = MetadataFactory::new_array<AnnotationArray*>(
                                                  loader_data, length, NULL,
                                                  CHECK_NULL);
        }
        (*fields_type_annotations)->at_put(n, field_type_annotations);
      }
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      if (is_synthetic) {
        access_flags.set_is_synthetic();
      }
1214 1215 1216 1217 1218 1219
      if (generic_signature_index != 0) {
        access_flags.set_field_has_generic_signature();
        fa[generic_signature_slot] = generic_signature_index;
        generic_signature_slot ++;
        num_generic_signature ++;
      }
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    }

1222
    FieldInfo* field = FieldInfo::from_field_array(fa, n);
1223 1224 1225
    field->initialize(access_flags.as_short(),
                      name_index,
                      signature_index,
1226
                      constantvalue_index);
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    BasicType type = cp->basic_type_for_signature_at(signature_index);
1228 1229 1230

    // Remember how many oops we encountered and compute allocation type
    FieldAllocationType atype = fac->update(is_static, type);
1231
    field->set_allocation_type(atype);
1232

1233 1234 1235
    // After field is initialized with type, we can augment it with aux info
    if (parsed_annotations.has_any_annotations())
      parsed_annotations.apply_to(field);
1236 1237
  }

1238
  int index = length;
1239 1240 1241 1242 1243 1244 1245 1246
  if (num_injected != 0) {
    for (int n = 0; n < num_injected; n++) {
      // Check for duplicates
      if (injected[n].may_be_java) {
        Symbol* name      = injected[n].name();
        Symbol* signature = injected[n].signature();
        bool duplicate = false;
        for (int i = 0; i < length; i++) {
1247
          FieldInfo* f = FieldInfo::from_field_array(fa, i);
1248 1249 1250 1251 1252
          if (name      == cp->symbol_at(f->name_index()) &&
              signature == cp->symbol_at(f->signature_index())) {
            // Symbol is desclared in Java so skip this one
            duplicate = true;
            break;
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          }
1254 1255 1256 1257 1258
        }
        if (duplicate) {
          // These will be removed from the field array at the end
          continue;
        }
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      }
1260 1261

      // Injected field
1262
      FieldInfo* field = FieldInfo::from_field_array(fa, index);
1263 1264 1265 1266 1267 1268 1269 1270 1271
      field->initialize(JVM_ACC_FIELD_INTERNAL,
                        injected[n].name_index,
                        injected[n].signature_index,
                        0);

      BasicType type = FieldType::basic_type(injected[n].signature());

      // Remember how many oops we encountered and compute allocation type
      FieldAllocationType atype = fac->update(false, type);
1272
      field->set_allocation_type(atype);
1273
      index++;
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    }
1275
  }
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  // Now copy the fields' data from the temporary resource array.
  // Sometimes injected fields already exist in the Java source so
  // the fields array could be too long.  In that case the
  // fields array is trimed. Also unused slots that were reserved
  // for generic signature indexes are discarded.
1282 1283 1284
  Array<u2>* fields = MetadataFactory::new_array<u2>(
          loader_data, index * FieldInfo::field_slots + num_generic_signature,
          CHECK_NULL);
1285 1286 1287
  {
    int i = 0;
    for (; i < index * FieldInfo::field_slots; i++) {
1288
      fields->at_put(i, fa[i]);
1289 1290 1291
    }
    for (int j = total_fields * FieldInfo::field_slots;
         j < generic_signature_slot; j++) {
1292
      fields->at_put(i++, fa[j]);
1293
    }
1294
    assert(i == fields->length(), "");
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  }

  if (_need_verify && length > 1) {
    // Check duplicated fields
    ResourceMark rm(THREAD);
    NameSigHash** names_and_sigs = NEW_RESOURCE_ARRAY_IN_THREAD(
      THREAD, NameSigHash*, HASH_ROW_SIZE);
    initialize_hashtable(names_and_sigs);
    bool dup = false;
    {
      debug_only(No_Safepoint_Verifier nsv;)
1306 1307 1308
      for (AllFieldStream fs(fields, cp); !fs.done(); fs.next()) {
        Symbol* name = fs.name();
        Symbol* sig = fs.signature();
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        // If no duplicates, add name/signature in hashtable names_and_sigs.
        if (!put_after_lookup(name, sig, names_and_sigs)) {
          dup = true;
          break;
        }
      }
    }
    if (dup) {
      classfile_parse_error("Duplicate field name&signature in class file %s",
1318
                            CHECK_NULL);
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    }
  }

  return fields;
}


static void copy_u2_with_conversion(u2* dest, u2* src, int length) {
  while (length-- > 0) {
    *dest++ = Bytes::get_Java_u2((u1*) (src++));
  }
}


1333 1334
u2* ClassFileParser::parse_exception_table(ClassLoaderData* loader_data,
                                           u4 code_length,
1335 1336 1337
                                           u4 exception_table_length,
                                           constantPoolHandle cp,
                                           TRAPS) {
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  ClassFileStream* cfs = stream();

1340 1341 1342 1343 1344 1345 1346 1347 1348 1349
  u2* exception_table_start = cfs->get_u2_buffer();
  assert(exception_table_start != NULL, "null exception table");
  cfs->guarantee_more(8 * exception_table_length, CHECK_NULL); // start_pc, end_pc, handler_pc, catch_type_index
  // Will check legal target after parsing code array in verifier.
  if (_need_verify) {
    for (unsigned int i = 0; i < exception_table_length; i++) {
      u2 start_pc = cfs->get_u2_fast();
      u2 end_pc = cfs->get_u2_fast();
      u2 handler_pc = cfs->get_u2_fast();
      u2 catch_type_index = cfs->get_u2_fast();
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      guarantee_property((start_pc < end_pc) && (end_pc <= code_length),
1351 1352
                         "Illegal exception table range in class file %s",
                         CHECK_NULL);
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      guarantee_property(handler_pc < code_length,
1354 1355
                         "Illegal exception table handler in class file %s",
                         CHECK_NULL);
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      if (catch_type_index != 0) {
        guarantee_property(valid_cp_range(catch_type_index, cp->length()) &&
1358
                           is_klass_reference(cp, catch_type_index),
1359
                           "Catch type in exception table has bad constant type in class file %s", CHECK_NULL);
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      }
    }
1362 1363
  } else {
    cfs->skip_u2_fast(exception_table_length * 4);
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  }
1365
  return exception_table_start;
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}

void ClassFileParser::parse_linenumber_table(
    u4 code_attribute_length, u4 code_length,
    CompressedLineNumberWriteStream** write_stream, TRAPS) {
  ClassFileStream* cfs = stream();
  unsigned int num_entries = cfs->get_u2(CHECK);

  // Each entry is a u2 start_pc, and a u2 line_number
  unsigned int length_in_bytes = num_entries * (sizeof(u2) + sizeof(u2));

  // Verify line number attribute and table length
  check_property(
    code_attribute_length == sizeof(u2) + length_in_bytes,
    "LineNumberTable attribute has wrong length in class file %s", CHECK);

  cfs->guarantee_more(length_in_bytes, CHECK);

  if ((*write_stream) == NULL) {
    if (length_in_bytes > fixed_buffer_size) {
      (*write_stream) = new CompressedLineNumberWriteStream(length_in_bytes);
    } else {
      (*write_stream) = new CompressedLineNumberWriteStream(
        linenumbertable_buffer, fixed_buffer_size);
    }
  }

  while (num_entries-- > 0) {
    u2 bci  = cfs->get_u2_fast(); // start_pc
    u2 line = cfs->get_u2_fast(); // line_number
    guarantee_property(bci < code_length,
        "Invalid pc in LineNumberTable in class file %s", CHECK);
    (*write_stream)->write_pair(bci, line);
  }
}


// Class file LocalVariableTable elements.
class Classfile_LVT_Element VALUE_OBJ_CLASS_SPEC {
 public:
  u2 start_bci;
  u2 length;
  u2 name_cp_index;
  u2 descriptor_cp_index;
  u2 slot;
};


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class LVT_Hash: public CHeapObj<mtClass> {
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 public:
  LocalVariableTableElement  *_elem;  // element
  LVT_Hash*                   _next;  // Next entry in hash table
};

unsigned int hash(LocalVariableTableElement *elem) {
  unsigned int raw_hash = elem->start_bci;

  raw_hash = elem->length        + raw_hash * 37;
  raw_hash = elem->name_cp_index + raw_hash * 37;
  raw_hash = elem->slot          + raw_hash * 37;

  return raw_hash % HASH_ROW_SIZE;
}

void initialize_hashtable(LVT_Hash** table) {
  for (int i = 0; i < HASH_ROW_SIZE; i++) {
    table[i] = NULL;
  }
}

void clear_hashtable(LVT_Hash** table) {
  for (int i = 0; i < HASH_ROW_SIZE; i++) {
    LVT_Hash* current = table[i];
    LVT_Hash* next;
    while (current != NULL) {
      next = current->_next;
      current->_next = NULL;
      delete(current);
      current = next;
    }
    table[i] = NULL;
  }
}

LVT_Hash* LVT_lookup(LocalVariableTableElement *elem, int index, LVT_Hash** table) {
  LVT_Hash* entry = table[index];

  /*
   * 3-tuple start_bci/length/slot has to be unique key,
   * so the following comparison seems to be redundant:
   *       && elem->name_cp_index == entry->_elem->name_cp_index
   */
  while (entry != NULL) {
    if (elem->start_bci           == entry->_elem->start_bci
     && elem->length              == entry->_elem->length
     && elem->name_cp_index       == entry->_elem->name_cp_index
     && elem->slot                == entry->_elem->slot
    ) {
      return entry;
    }
    entry = entry->_next;
  }
  return NULL;
}

// Return false if the local variable is found in table.
// Return true if no duplicate is found.
// And local variable is added as a new entry in table.
bool LVT_put_after_lookup(LocalVariableTableElement *elem, LVT_Hash** table) {
  // First lookup for duplicates
  int index = hash(elem);
  LVT_Hash* entry = LVT_lookup(elem, index, table);

  if (entry != NULL) {
      return false;
  }
  // No duplicate is found, allocate a new entry and fill it.
  if ((entry = new LVT_Hash()) == NULL) {
    return false;
  }
  entry->_elem = elem;

  // Insert into hash table
  entry->_next = table[index];
  table[index] = entry;

  return true;
}

void copy_lvt_element(Classfile_LVT_Element *src, LocalVariableTableElement *lvt) {
  lvt->start_bci           = Bytes::get_Java_u2((u1*) &src->start_bci);
  lvt->length              = Bytes::get_Java_u2((u1*) &src->length);
  lvt->name_cp_index       = Bytes::get_Java_u2((u1*) &src->name_cp_index);
  lvt->descriptor_cp_index = Bytes::get_Java_u2((u1*) &src->descriptor_cp_index);
  lvt->signature_cp_index  = 0;
  lvt->slot                = Bytes::get_Java_u2((u1*) &src->slot);
}

// Function is used to parse both attributes:
//       LocalVariableTable (LVT) and LocalVariableTypeTable (LVTT)
u2* ClassFileParser::parse_localvariable_table(u4 code_length,
                                               u2 max_locals,
                                               u4 code_attribute_length,
                                               constantPoolHandle cp,
                                               u2* localvariable_table_length,
                                               bool isLVTT,
                                               TRAPS) {
  ClassFileStream* cfs = stream();
  const char * tbl_name = (isLVTT) ? "LocalVariableTypeTable" : "LocalVariableTable";
  *localvariable_table_length = cfs->get_u2(CHECK_NULL);
  unsigned int size = (*localvariable_table_length) * sizeof(Classfile_LVT_Element) / sizeof(u2);
  // Verify local variable table attribute has right length
  if (_need_verify) {
    guarantee_property(code_attribute_length == (sizeof(*localvariable_table_length) + size * sizeof(u2)),
                       "%s has wrong length in class file %s", tbl_name, CHECK_NULL);
  }
  u2* localvariable_table_start = cfs->get_u2_buffer();
  assert(localvariable_table_start != NULL, "null local variable table");
  if (!_need_verify) {
    cfs->skip_u2_fast(size);
  } else {
    cfs->guarantee_more(size * 2, CHECK_NULL);
    for(int i = 0; i < (*localvariable_table_length); i++) {
      u2 start_pc = cfs->get_u2_fast();
      u2 length = cfs->get_u2_fast();
      u2 name_index = cfs->get_u2_fast();
      u2 descriptor_index = cfs->get_u2_fast();
      u2 index = cfs->get_u2_fast();
      // Assign to a u4 to avoid overflow
      u4 end_pc = (u4)start_pc + (u4)length;

      if (start_pc >= code_length) {
        classfile_parse_error(
          "Invalid start_pc %u in %s in class file %s",
          start_pc, tbl_name, CHECK_NULL);
      }
      if (end_pc > code_length) {
        classfile_parse_error(
          "Invalid length %u in %s in class file %s",
          length, tbl_name, CHECK_NULL);
      }
      int cp_size = cp->length();
      guarantee_property(
        valid_cp_range(name_index, cp_size) &&
          cp->tag_at(name_index).is_utf8(),
        "Name index %u in %s has bad constant type in class file %s",
        name_index, tbl_name, CHECK_NULL);
      guarantee_property(
        valid_cp_range(descriptor_index, cp_size) &&
          cp->tag_at(descriptor_index).is_utf8(),
        "Signature index %u in %s has bad constant type in class file %s",
        descriptor_index, tbl_name, CHECK_NULL);

1559 1560
      Symbol*  name = cp->symbol_at(name_index);
      Symbol*  sig = cp->symbol_at(descriptor_index);
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      verify_legal_field_name(name, CHECK_NULL);
      u2 extra_slot = 0;
      if (!isLVTT) {
        verify_legal_field_signature(name, sig, CHECK_NULL);

        // 4894874: check special cases for double and long local variables
1567 1568
        if (sig == vmSymbols::type_signature(T_DOUBLE) ||
            sig == vmSymbols::type_signature(T_LONG)) {
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          extra_slot = 1;
        }
      }
      guarantee_property((index + extra_slot) < max_locals,
                          "Invalid index %u in %s in class file %s",
                          index, tbl_name, CHECK_NULL);
    }
  }
  return localvariable_table_start;
}


void ClassFileParser::parse_type_array(u2 array_length, u4 code_length, u4* u1_index, u4* u2_index,
                                      u1* u1_array, u2* u2_array, constantPoolHandle cp, TRAPS) {
  ClassFileStream* cfs = stream();
  u2 index = 0; // index in the array with long/double occupying two slots
  u4 i1 = *u1_index;
  u4 i2 = *u2_index + 1;
  for(int i = 0; i < array_length; i++) {
    u1 tag = u1_array[i1++] = cfs->get_u1(CHECK);
    index++;
    if (tag == ITEM_Long || tag == ITEM_Double) {
      index++;
    } else if (tag == ITEM_Object) {
      u2 class_index = u2_array[i2++] = cfs->get_u2(CHECK);
      guarantee_property(valid_cp_range(class_index, cp->length()) &&
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                         is_klass_reference(cp, class_index),
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                         "Bad class index %u in StackMap in class file %s",
                         class_index, CHECK);
    } else if (tag == ITEM_Uninitialized) {
      u2 offset = u2_array[i2++] = cfs->get_u2(CHECK);
      guarantee_property(
        offset < code_length,
        "Bad uninitialized type offset %u in StackMap in class file %s",
        offset, CHECK);
    } else {
      guarantee_property(
        tag <= (u1)ITEM_Uninitialized,
        "Unknown variable type %u in StackMap in class file %s",
        tag, CHECK);
    }
  }
  u2_array[*u2_index] = index;
  *u1_index = i1;
  *u2_index = i2;
}

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Array<u1>* ClassFileParser::parse_stackmap_table(
    ClassLoaderData* loader_data,
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    u4 code_attribute_length, TRAPS) {
  if (code_attribute_length == 0)
    return NULL;

  ClassFileStream* cfs = stream();
  u1* stackmap_table_start = cfs->get_u1_buffer();
  assert(stackmap_table_start != NULL, "null stackmap table");

  // check code_attribute_length first
  stream()->skip_u1(code_attribute_length, CHECK_NULL);

  if (!_need_verify && !DumpSharedSpaces) {
    return NULL;
  }

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  Array<u1>* stackmap_data =
    MetadataFactory::new_array<u1>(loader_data, code_attribute_length, 0, CHECK_NULL);
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  memcpy((void*)stackmap_data->adr_at(0),
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         (void*)stackmap_table_start, code_attribute_length);
  return stackmap_data;
}

u2* ClassFileParser::parse_checked_exceptions(u2* checked_exceptions_length,
                                              u4 method_attribute_length,
                                              constantPoolHandle cp, TRAPS) {
  ClassFileStream* cfs = stream();
  cfs->guarantee_more(2, CHECK_NULL);  // checked_exceptions_length
  *checked_exceptions_length = cfs->get_u2_fast();
  unsigned int size = (*checked_exceptions_length) * sizeof(CheckedExceptionElement) / sizeof(u2);
  u2* checked_exceptions_start = cfs->get_u2_buffer();
  assert(checked_exceptions_start != NULL, "null checked exceptions");
  if (!_need_verify) {
    cfs->skip_u2_fast(size);
  } else {
    // Verify each value in the checked exception table
    u2 checked_exception;
    u2 len = *checked_exceptions_length;
    cfs->guarantee_more(2 * len, CHECK_NULL);
    for (int i = 0; i < len; i++) {
      checked_exception = cfs->get_u2_fast();
      check_property(
        valid_cp_range(checked_exception, cp->length()) &&
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        is_klass_reference(cp, checked_exception),
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        "Exception name has bad type at constant pool %u in class file %s",
        checked_exception, CHECK_NULL);
    }
  }
  // check exceptions attribute length
  if (_need_verify) {
    guarantee_property(method_attribute_length == (sizeof(*checked_exceptions_length) +
                                                   sizeof(u2) * size),
                      "Exceptions attribute has wrong length in class file %s", CHECK_NULL);
  }
  return checked_exceptions_start;
}

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void ClassFileParser::throwIllegalSignature(
1676
    const char* type, Symbol* name, Symbol* sig, TRAPS) {
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  ResourceMark rm(THREAD);
  Exceptions::fthrow(THREAD_AND_LOCATION,
      vmSymbols::java_lang_ClassFormatError(),
      "%s \"%s\" in class %s has illegal signature \"%s\"", type,
      name->as_C_string(), _class_name->as_C_string(), sig->as_C_string());
}
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// Skip an annotation.  Return >=limit if there is any problem.
int ClassFileParser::skip_annotation(u1* buffer, int limit, int index) {
  // annotation := atype:u2 do(nmem:u2) {member:u2 value}
  // value := switch (tag:u1) { ... }
  index += 2;  // skip atype
  if ((index += 2) >= limit)  return limit;  // read nmem
  int nmem = Bytes::get_Java_u2(buffer+index-2);
  while (--nmem >= 0 && index < limit) {
    index += 2; // skip member
    index = skip_annotation_value(buffer, limit, index);
  }
  return index;
}

// Skip an annotation value.  Return >=limit if there is any problem.
int ClassFileParser::skip_annotation_value(u1* buffer, int limit, int index) {
  // value := switch (tag:u1) {
  //   case B, C, I, S, Z, D, F, J, c: con:u2;
  //   case e: e_class:u2 e_name:u2;
  //   case s: s_con:u2;
  //   case [: do(nval:u2) {value};
  //   case @: annotation;
  //   case s: s_con:u2;
  // }
  if ((index += 1) >= limit)  return limit;  // read tag
  u1 tag = buffer[index-1];
  switch (tag) {
  case 'B': case 'C': case 'I': case 'S': case 'Z':
  case 'D': case 'F': case 'J': case 'c': case 's':
    index += 2;  // skip con or s_con
    break;
  case 'e':
    index += 4;  // skip e_class, e_name
    break;
  case '[':
    {
      if ((index += 2) >= limit)  return limit;  // read nval
      int nval = Bytes::get_Java_u2(buffer+index-2);
      while (--nval >= 0 && index < limit) {
        index = skip_annotation_value(buffer, limit, index);
      }
    }
    break;
  case '@':
    index = skip_annotation(buffer, limit, index);
    break;
  default:
    assert(false, "annotation tag");
    return limit;  //  bad tag byte
  }
  return index;
}

// Sift through annotations, looking for those significant to the VM:
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void ClassFileParser::parse_annotations(ClassLoaderData* loader_data,
                                        u1* buffer, int limit,
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                                        constantPoolHandle cp,
                                        ClassFileParser::AnnotationCollector* coll,
                                        TRAPS) {
  // annotations := do(nann:u2) {annotation}
  int index = 0;
  if ((index += 2) >= limit)  return;  // read nann
  int nann = Bytes::get_Java_u2(buffer+index-2);
  enum {  // initial annotation layout
    atype_off = 0,      // utf8 such as 'Ljava/lang/annotation/Retention;'
    count_off = 2,      // u2   such as 1 (one value)
    member_off = 4,     // utf8 such as 'value'
    tag_off = 6,        // u1   such as 'c' (type) or 'e' (enum)
    e_tag_val = 'e',
      e_type_off = 7,   // utf8 such as 'Ljava/lang/annotation/RetentionPolicy;'
      e_con_off = 9,    // utf8 payload, such as 'SOURCE', 'CLASS', 'RUNTIME'
      e_size = 11,     // end of 'e' annotation
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    c_tag_val = 'c',    // payload is type
      c_con_off = 7,    // utf8 payload, such as 'I'
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      c_size = 9,       // end of 'c' annotation
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    s_tag_val = 's',    // payload is String
      s_con_off = 7,    // utf8 payload, such as 'Ljava/lang/String;'
      s_size = 9,
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    min_size = 6        // smallest possible size (zero members)
  };
  while ((--nann) >= 0 && (index-2 + min_size <= limit)) {
    int index0 = index;
    index = skip_annotation(buffer, limit, index);
    u1* abase = buffer + index0;
    int atype = Bytes::get_Java_u2(abase + atype_off);
    int count = Bytes::get_Java_u2(abase + count_off);
    Symbol* aname = check_symbol_at(cp, atype);
    if (aname == NULL)  break;  // invalid annotation name
    Symbol* member = NULL;
    if (count >= 1) {
      int member_index = Bytes::get_Java_u2(abase + member_off);
      member = check_symbol_at(cp, member_index);
      if (member == NULL)  break;  // invalid member name
    }

    // Here is where parsing particular annotations will take place.
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    AnnotationCollector::ID id = coll->annotation_index(loader_data, aname);
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    if (id == AnnotationCollector::_unknown)  continue;
    coll->set_annotation(id);
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    if (id == AnnotationCollector::_sun_misc_Contended) {
      if (count == 1
          && s_size == (index - index0)  // match size
          && s_tag_val == *(abase + tag_off)
          && member == vmSymbols::value_name()) {
        u2 group_index = Bytes::get_Java_u2(abase + s_con_off);
        coll->set_contended_group(group_index);
      } else {
        coll->set_contended_group(0); // default contended group
      }
      coll->set_contended(true);
    } else {
      coll->set_contended(false);
    }
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  }
}

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ClassFileParser::AnnotationCollector::ID
ClassFileParser::AnnotationCollector::annotation_index(ClassLoaderData* loader_data,
                                                                Symbol* name) {
1804
  vmSymbols::SID sid = vmSymbols::find_sid(name);
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  // Privileged code can use all annotations.  Other code silently drops some.
  bool privileged = loader_data->is_the_null_class_loader_data() ||
                    loader_data->is_anonymous();
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  switch (sid) {
  case vmSymbols::VM_SYMBOL_ENUM_NAME(java_lang_invoke_ForceInline_signature):
    if (_location != _in_method)  break;  // only allow for methods
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    if (!privileged)              break;  // only allow in privileged code
1812
    return _method_ForceInline;
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  case vmSymbols::VM_SYMBOL_ENUM_NAME(java_lang_invoke_DontInline_signature):
    if (_location != _in_method)  break;  // only allow for methods
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    if (!privileged)              break;  // only allow in privileged code
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    return _method_DontInline;
  case vmSymbols::VM_SYMBOL_ENUM_NAME(java_lang_invoke_LambdaForm_Compiled_signature):
    if (_location != _in_method)  break;  // only allow for methods
1819
    if (!privileged)              break;  // only allow in privileged code
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    return _method_LambdaForm_Compiled;
  case vmSymbols::VM_SYMBOL_ENUM_NAME(java_lang_invoke_LambdaForm_Hidden_signature):
    if (_location != _in_method)  break;  // only allow for methods
1823
    if (!privileged)              break;  // only allow in privileged code
1824
    return _method_LambdaForm_Hidden;
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  case vmSymbols::VM_SYMBOL_ENUM_NAME(sun_misc_Contended_signature):
    if (_location != _in_field && _location != _in_class)          break;  // only allow for fields and classes
    if (!EnableContended || (RestrictContended && !privileged))    break;  // honor privileges
    return _sun_misc_Contended;
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  default: break;
  }
  return AnnotationCollector::_unknown;
}

void ClassFileParser::FieldAnnotationCollector::apply_to(FieldInfo* f) {
1835 1836
  if (is_contended())
    f->set_contended_group(contended_group());
1837 1838 1839 1840 1841
}

void ClassFileParser::MethodAnnotationCollector::apply_to(methodHandle m) {
  if (has_annotation(_method_ForceInline))
    m->set_force_inline(true);
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  if (has_annotation(_method_DontInline))
    m->set_dont_inline(true);
  if (has_annotation(_method_LambdaForm_Compiled) && m->intrinsic_id() == vmIntrinsics::_none)
    m->set_intrinsic_id(vmIntrinsics::_compiledLambdaForm);
  if (has_annotation(_method_LambdaForm_Hidden))
    m->set_hidden(true);
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}

void ClassFileParser::ClassAnnotationCollector::apply_to(instanceKlassHandle k) {
1851
  k->set_is_contended(is_contended());
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}


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#define MAX_ARGS_SIZE 255
#define MAX_CODE_SIZE 65535
#define INITIAL_MAX_LVT_NUMBER 256

// Note: the parse_method below is big and clunky because all parsing of the code and exceptions
1860
// attribute is inlined. This is cumbersome to avoid since we inline most of the parts in the
1861
// Method* to save footprint, so we only know the size of the resulting Method* when the
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// entire method attribute is parsed.
//
// The promoted_flags parameter is used to pass relevant access_flags
// from the method back up to the containing klass. These flag values
// are added to klass's access_flags.

1868 1869 1870
methodHandle ClassFileParser::parse_method(ClassLoaderData* loader_data,
                                           constantPoolHandle cp,
                                           bool is_interface,
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                                           AccessFlags *promoted_flags,
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                                           AnnotationArray** method_annotations,
                                           AnnotationArray** method_parameter_annotations,
                                           AnnotationArray** method_default_annotations,
1875
                                           AnnotationArray** method_type_annotations,
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                                           TRAPS) {
  ClassFileStream* cfs = stream();
  methodHandle nullHandle;
  ResourceMark rm(THREAD);
  // Parse fixed parts
  cfs->guarantee_more(8, CHECK_(nullHandle)); // access_flags, name_index, descriptor_index, attributes_count

  int flags = cfs->get_u2_fast();
  u2 name_index = cfs->get_u2_fast();
  int cp_size = cp->length();
  check_property(
    valid_cp_range(name_index, cp_size) &&
      cp->tag_at(name_index).is_utf8(),
    "Illegal constant pool index %u for method name in class file %s",
    name_index, CHECK_(nullHandle));
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  Symbol*  name = cp->symbol_at(name_index);
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  verify_legal_method_name(name, CHECK_(nullHandle));

  u2 signature_index = cfs->get_u2_fast();
  guarantee_property(
    valid_cp_range(signature_index, cp_size) &&
      cp->tag_at(signature_index).is_utf8(),
    "Illegal constant pool index %u for method signature in class file %s",
    signature_index, CHECK_(nullHandle));
1900
  Symbol*  signature = cp->symbol_at(signature_index);
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  AccessFlags access_flags;
  if (name == vmSymbols::class_initializer_name()) {
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    // We ignore the other access flags for a valid class initializer.
    // (JVM Spec 2nd ed., chapter 4.6)
    if (_major_version < 51) { // backward compatibility
      flags = JVM_ACC_STATIC;
    } else if ((flags & JVM_ACC_STATIC) == JVM_ACC_STATIC) {
      flags &= JVM_ACC_STATIC | JVM_ACC_STRICT;
    }
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  } else {
    verify_legal_method_modifiers(flags, is_interface, name, CHECK_(nullHandle));
  }

  int args_size = -1;  // only used when _need_verify is true
  if (_need_verify) {
    args_size = ((flags & JVM_ACC_STATIC) ? 0 : 1) +
                 verify_legal_method_signature(name, signature, CHECK_(nullHandle));
    if (args_size > MAX_ARGS_SIZE) {
      classfile_parse_error("Too many arguments in method signature in class file %s", CHECK_(nullHandle));
    }
  }

  access_flags.set_flags(flags & JVM_RECOGNIZED_METHOD_MODIFIERS);

  // Default values for code and exceptions attribute elements
  u2 max_stack = 0;
  u2 max_locals = 0;
  u4 code_length = 0;
  u1* code_start = 0;
  u2 exception_table_length = 0;
1932
  u2* exception_table_start = NULL;
1933
  Array<int>* exception_handlers = Universe::the_empty_int_array();
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  u2 checked_exceptions_length = 0;
  u2* checked_exceptions_start = NULL;
  CompressedLineNumberWriteStream* linenumber_table = NULL;
  int linenumber_table_length = 0;
  int total_lvt_length = 0;
  u2 lvt_cnt = 0;
  u2 lvtt_cnt = 0;
  bool lvt_allocated = false;
  u2 max_lvt_cnt = INITIAL_MAX_LVT_NUMBER;
  u2 max_lvtt_cnt = INITIAL_MAX_LVT_NUMBER;
  u2* localvariable_table_length;
  u2** localvariable_table_start;
  u2* localvariable_type_table_length;
  u2** localvariable_type_table_start;
1948 1949
  u2 method_parameters_length = 0;
  u1* method_parameters_data = NULL;
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  bool method_parameters_seen = false;
  bool method_parameters_four_byte_flags;
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  bool parsed_code_attribute = false;
  bool parsed_checked_exceptions_attribute = false;
  bool parsed_stackmap_attribute = false;
  // stackmap attribute - JDK1.5
1956
  Array<u1>* stackmap_data = NULL;
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  u2 generic_signature_index = 0;
1958
  MethodAnnotationCollector parsed_annotations;
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  u1* runtime_visible_annotations = NULL;
  int runtime_visible_annotations_length = 0;
  u1* runtime_invisible_annotations = NULL;
  int runtime_invisible_annotations_length = 0;
  u1* runtime_visible_parameter_annotations = NULL;
  int runtime_visible_parameter_annotations_length = 0;
  u1* runtime_invisible_parameter_annotations = NULL;
  int runtime_invisible_parameter_annotations_length = 0;
1967 1968 1969 1970
  u1* runtime_visible_type_annotations = NULL;
  int runtime_visible_type_annotations_length = 0;
  u1* runtime_invisible_type_annotations = NULL;
  int runtime_invisible_type_annotations_length = 0;
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  u1* annotation_default = NULL;
  int annotation_default_length = 0;

  // Parse code and exceptions attribute
  u2 method_attributes_count = cfs->get_u2_fast();
  while (method_attributes_count--) {
    cfs->guarantee_more(6, CHECK_(nullHandle));  // method_attribute_name_index, method_attribute_length
    u2 method_attribute_name_index = cfs->get_u2_fast();
    u4 method_attribute_length = cfs->get_u4_fast();
    check_property(
      valid_cp_range(method_attribute_name_index, cp_size) &&
        cp->tag_at(method_attribute_name_index).is_utf8(),
      "Invalid method attribute name index %u in class file %s",
      method_attribute_name_index, CHECK_(nullHandle));

1986
    Symbol* method_attribute_name = cp->symbol_at(method_attribute_name_index);
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    if (method_attribute_name == vmSymbols::tag_code()) {
      // Parse Code attribute
      if (_need_verify) {
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        guarantee_property(
            !access_flags.is_native() && !access_flags.is_abstract(),
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                        "Code attribute in native or abstract methods in class file %s",
                         CHECK_(nullHandle));
      }
      if (parsed_code_attribute) {
        classfile_parse_error("Multiple Code attributes in class file %s", CHECK_(nullHandle));
      }
      parsed_code_attribute = true;

      // Stack size, locals size, and code size
      if (_major_version == 45 && _minor_version <= 2) {
        cfs->guarantee_more(4, CHECK_(nullHandle));
        max_stack = cfs->get_u1_fast();
        max_locals = cfs->get_u1_fast();
        code_length = cfs->get_u2_fast();
      } else {
        cfs->guarantee_more(8, CHECK_(nullHandle));
        max_stack = cfs->get_u2_fast();
        max_locals = cfs->get_u2_fast();
        code_length = cfs->get_u4_fast();
      }
      if (_need_verify) {
        guarantee_property(args_size <= max_locals,
                           "Arguments can't fit into locals in class file %s", CHECK_(nullHandle));
        guarantee_property(code_length > 0 && code_length <= MAX_CODE_SIZE,
                           "Invalid method Code length %u in class file %s",
                           code_length, CHECK_(nullHandle));
      }
      // Code pointer
      code_start = cfs->get_u1_buffer();
      assert(code_start != NULL, "null code start");
      cfs->guarantee_more(code_length, CHECK_(nullHandle));
      cfs->skip_u1_fast(code_length);

      // Exception handler table
      cfs->guarantee_more(2, CHECK_(nullHandle));  // exception_table_length
      exception_table_length = cfs->get_u2_fast();
      if (exception_table_length > 0) {
2029
        exception_table_start =
2030
              parse_exception_table(loader_data, code_length, exception_table_length, cp, CHECK_(nullHandle));
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      }

      // Parse additional attributes in code attribute
      cfs->guarantee_more(2, CHECK_(nullHandle));  // code_attributes_count
      u2 code_attributes_count = cfs->get_u2_fast();
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      unsigned int calculated_attribute_length = 0;

      if (_major_version > 45 || (_major_version == 45 && _minor_version > 2)) {
        calculated_attribute_length =
            sizeof(max_stack) + sizeof(max_locals) + sizeof(code_length);
      } else {
        // max_stack, locals and length are smaller in pre-version 45.2 classes
        calculated_attribute_length = sizeof(u1) + sizeof(u1) + sizeof(u2);
      }
      calculated_attribute_length +=
        code_length +
        sizeof(exception_table_length) +
        sizeof(code_attributes_count) +
        exception_table_length *
            ( sizeof(u2) +   // start_pc
              sizeof(u2) +   // end_pc
              sizeof(u2) +   // handler_pc
              sizeof(u2) );  // catch_type_index
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      while (code_attributes_count--) {
        cfs->guarantee_more(6, CHECK_(nullHandle));  // code_attribute_name_index, code_attribute_length
        u2 code_attribute_name_index = cfs->get_u2_fast();
        u4 code_attribute_length = cfs->get_u4_fast();
        calculated_attribute_length += code_attribute_length +
                                       sizeof(code_attribute_name_index) +
                                       sizeof(code_attribute_length);
        check_property(valid_cp_range(code_attribute_name_index, cp_size) &&
                       cp->tag_at(code_attribute_name_index).is_utf8(),
                       "Invalid code attribute name index %u in class file %s",
                       code_attribute_name_index,
                       CHECK_(nullHandle));
        if (LoadLineNumberTables &&
            cp->symbol_at(code_attribute_name_index) == vmSymbols::tag_line_number_table()) {
          // Parse and compress line number table
          parse_linenumber_table(code_attribute_length, code_length,
            &linenumber_table, CHECK_(nullHandle));

        } else if (LoadLocalVariableTables &&
                   cp->symbol_at(code_attribute_name_index) == vmSymbols::tag_local_variable_table()) {
          // Parse local variable table
          if (!lvt_allocated) {
            localvariable_table_length = NEW_RESOURCE_ARRAY_IN_THREAD(
              THREAD, u2,  INITIAL_MAX_LVT_NUMBER);
            localvariable_table_start = NEW_RESOURCE_ARRAY_IN_THREAD(
              THREAD, u2*, INITIAL_MAX_LVT_NUMBER);
            localvariable_type_table_length = NEW_RESOURCE_ARRAY_IN_THREAD(
              THREAD, u2,  INITIAL_MAX_LVT_NUMBER);
            localvariable_type_table_start = NEW_RESOURCE_ARRAY_IN_THREAD(
              THREAD, u2*, INITIAL_MAX_LVT_NUMBER);
            lvt_allocated = true;
          }
          if (lvt_cnt == max_lvt_cnt) {
            max_lvt_cnt <<= 1;
            REALLOC_RESOURCE_ARRAY(u2, localvariable_table_length, lvt_cnt, max_lvt_cnt);
            REALLOC_RESOURCE_ARRAY(u2*, localvariable_table_start, lvt_cnt, max_lvt_cnt);
          }
          localvariable_table_start[lvt_cnt] =
            parse_localvariable_table(code_length,
                                      max_locals,
                                      code_attribute_length,
                                      cp,
                                      &localvariable_table_length[lvt_cnt],
                                      false,    // is not LVTT
                                      CHECK_(nullHandle));
          total_lvt_length += localvariable_table_length[lvt_cnt];
          lvt_cnt++;
        } else if (LoadLocalVariableTypeTables &&
                   _major_version >= JAVA_1_5_VERSION &&
                   cp->symbol_at(code_attribute_name_index) == vmSymbols::tag_local_variable_type_table()) {
          if (!lvt_allocated) {
            localvariable_table_length = NEW_RESOURCE_ARRAY_IN_THREAD(
              THREAD, u2,  INITIAL_MAX_LVT_NUMBER);
            localvariable_table_start = NEW_RESOURCE_ARRAY_IN_THREAD(
              THREAD, u2*, INITIAL_MAX_LVT_NUMBER);
            localvariable_type_table_length = NEW_RESOURCE_ARRAY_IN_THREAD(
              THREAD, u2,  INITIAL_MAX_LVT_NUMBER);
            localvariable_type_table_start = NEW_RESOURCE_ARRAY_IN_THREAD(
              THREAD, u2*, INITIAL_MAX_LVT_NUMBER);
            lvt_allocated = true;
          }
          // Parse local variable type table
          if (lvtt_cnt == max_lvtt_cnt) {
            max_lvtt_cnt <<= 1;
            REALLOC_RESOURCE_ARRAY(u2, localvariable_type_table_length, lvtt_cnt, max_lvtt_cnt);
            REALLOC_RESOURCE_ARRAY(u2*, localvariable_type_table_start, lvtt_cnt, max_lvtt_cnt);
          }
          localvariable_type_table_start[lvtt_cnt] =
            parse_localvariable_table(code_length,
                                      max_locals,
                                      code_attribute_length,
                                      cp,
                                      &localvariable_type_table_length[lvtt_cnt],
                                      true,     // is LVTT
                                      CHECK_(nullHandle));
          lvtt_cnt++;
        } else if (UseSplitVerifier &&
                   _major_version >= Verifier::STACKMAP_ATTRIBUTE_MAJOR_VERSION &&
                   cp->symbol_at(code_attribute_name_index) == vmSymbols::tag_stack_map_table()) {
          // Stack map is only needed by the new verifier in JDK1.5.
          if (parsed_stackmap_attribute) {
            classfile_parse_error("Multiple StackMapTable attributes in class file %s", CHECK_(nullHandle));
          }
2139
          stackmap_data = parse_stackmap_table(loader_data, code_attribute_length, CHECK_(nullHandle));
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          parsed_stackmap_attribute = true;
        } else {
          // Skip unknown attributes
          cfs->skip_u1(code_attribute_length, CHECK_(nullHandle));
        }
      }
      // check method attribute length
      if (_need_verify) {
        guarantee_property(method_attribute_length == calculated_attribute_length,
                           "Code segment has wrong length in class file %s", CHECK_(nullHandle));
      }
    } else if (method_attribute_name == vmSymbols::tag_exceptions()) {
      // Parse Exceptions attribute
      if (parsed_checked_exceptions_attribute) {
        classfile_parse_error("Multiple Exceptions attributes in class file %s", CHECK_(nullHandle));
      }
      parsed_checked_exceptions_attribute = true;
      checked_exceptions_start =
            parse_checked_exceptions(&checked_exceptions_length,
                                     method_attribute_length,
                                     cp, CHECK_(nullHandle));
2161
    } else if (method_attribute_name == vmSymbols::tag_method_parameters()) {
2162 2163 2164 2165 2166
      // reject multiple method parameters
      if (method_parameters_seen) {
        classfile_parse_error("Multiple MethodParameters attributes in class file %s", CHECK_(nullHandle));
      }
      method_parameters_seen = true;
2167
      method_parameters_length = cfs->get_u1_fast();
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      // Track the actual size (note: this is written for clarity; a
      // decent compiler will CSE and constant-fold this into a single
      // expression)
2171 2172 2173 2174 2175 2176
      // Use the attribute length to figure out the size of flags
      if (method_attribute_length == (method_parameters_length * 6u) + 1u) {
        method_parameters_four_byte_flags = true;
      } else if (method_attribute_length == (method_parameters_length * 4u) + 1u) {
        method_parameters_four_byte_flags = false;
      } else {
2177
        classfile_parse_error(
2178
          "Invalid MethodParameters method attribute length %u in class file",
2179 2180
          method_attribute_length, CHECK_(nullHandle));
      }
2181 2182 2183 2184 2185 2186 2187
      method_parameters_data = cfs->get_u1_buffer();
      cfs->skip_u2_fast(method_parameters_length);
      if (method_parameters_four_byte_flags) {
        cfs->skip_u4_fast(method_parameters_length);
      } else {
        cfs->skip_u2_fast(method_parameters_length);
      }
2188 2189 2190
      // ignore this attribute if it cannot be reflected
      if (!SystemDictionary::Parameter_klass_loaded())
        method_parameters_length = 0;
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    } else if (method_attribute_name == vmSymbols::tag_synthetic()) {
      if (method_attribute_length != 0) {
        classfile_parse_error(
          "Invalid Synthetic method attribute length %u in class file %s",
          method_attribute_length, CHECK_(nullHandle));
      }
      // Should we check that there hasn't already been a synthetic attribute?
      access_flags.set_is_synthetic();
    } else if (method_attribute_name == vmSymbols::tag_deprecated()) { // 4276120
      if (method_attribute_length != 0) {
        classfile_parse_error(
          "Invalid Deprecated method attribute length %u in class file %s",
          method_attribute_length, CHECK_(nullHandle));
      }
    } else if (_major_version >= JAVA_1_5_VERSION) {
      if (method_attribute_name == vmSymbols::tag_signature()) {
        if (method_attribute_length != 2) {
          classfile_parse_error(
            "Invalid Signature attribute length %u in class file %s",
            method_attribute_length, CHECK_(nullHandle));
        }
        cfs->guarantee_more(2, CHECK_(nullHandle));  // generic_signature_index
        generic_signature_index = cfs->get_u2_fast();
      } else if (method_attribute_name == vmSymbols::tag_runtime_visible_annotations()) {
        runtime_visible_annotations_length = method_attribute_length;
        runtime_visible_annotations = cfs->get_u1_buffer();
        assert(runtime_visible_annotations != NULL, "null visible annotations");
2218 2219
        parse_annotations(loader_data,
            runtime_visible_annotations,
2220 2221
            runtime_visible_annotations_length, cp, &parsed_annotations,
            CHECK_(nullHandle));
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        cfs->skip_u1(runtime_visible_annotations_length, CHECK_(nullHandle));
      } else if (PreserveAllAnnotations && method_attribute_name == vmSymbols::tag_runtime_invisible_annotations()) {
        runtime_invisible_annotations_length = method_attribute_length;
        runtime_invisible_annotations = cfs->get_u1_buffer();
        assert(runtime_invisible_annotations != NULL, "null invisible annotations");
        cfs->skip_u1(runtime_invisible_annotations_length, CHECK_(nullHandle));
      } else if (method_attribute_name == vmSymbols::tag_runtime_visible_parameter_annotations()) {
        runtime_visible_parameter_annotations_length = method_attribute_length;
        runtime_visible_parameter_annotations = cfs->get_u1_buffer();
        assert(runtime_visible_parameter_annotations != NULL, "null visible parameter annotations");
        cfs->skip_u1(runtime_visible_parameter_annotations_length, CHECK_(nullHandle));
      } else if (PreserveAllAnnotations && method_attribute_name == vmSymbols::tag_runtime_invisible_parameter_annotations()) {
        runtime_invisible_parameter_annotations_length = method_attribute_length;
        runtime_invisible_parameter_annotations = cfs->get_u1_buffer();
        assert(runtime_invisible_parameter_annotations != NULL, "null invisible parameter annotations");
        cfs->skip_u1(runtime_invisible_parameter_annotations_length, CHECK_(nullHandle));
      } else if (method_attribute_name == vmSymbols::tag_annotation_default()) {
        annotation_default_length = method_attribute_length;
        annotation_default = cfs->get_u1_buffer();
        assert(annotation_default != NULL, "null annotation default");
        cfs->skip_u1(annotation_default_length, CHECK_(nullHandle));
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      } else if (method_attribute_name == vmSymbols::tag_runtime_visible_type_annotations()) {
        runtime_visible_type_annotations_length = method_attribute_length;
        runtime_visible_type_annotations = cfs->get_u1_buffer();
        assert(runtime_visible_type_annotations != NULL, "null visible type annotations");
        // No need for the VM to parse Type annotations
        cfs->skip_u1(runtime_visible_type_annotations_length, CHECK_(nullHandle));
      } else if (PreserveAllAnnotations && method_attribute_name == vmSymbols::tag_runtime_invisible_type_annotations()) {
        runtime_invisible_type_annotations_length = method_attribute_length;
        runtime_invisible_type_annotations = cfs->get_u1_buffer();
        assert(runtime_invisible_type_annotations != NULL, "null invisible type annotations");
        cfs->skip_u1(runtime_invisible_type_annotations_length, CHECK_(nullHandle));
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      } else {
        // Skip unknown attributes
        cfs->skip_u1(method_attribute_length, CHECK_(nullHandle));
      }
    } else {
      // Skip unknown attributes
      cfs->skip_u1(method_attribute_length, CHECK_(nullHandle));
    }
  }

  if (linenumber_table != NULL) {
    linenumber_table->write_terminator();
    linenumber_table_length = linenumber_table->position();
  }

  // Make sure there's at least one Code attribute in non-native/non-abstract method
  if (_need_verify) {
    guarantee_property(access_flags.is_native() || access_flags.is_abstract() || parsed_code_attribute,
                      "Absent Code attribute in method that is not native or abstract in class file %s", CHECK_(nullHandle));
  }

2275
  // All sizing information for a Method* is finally available, now create it
2276 2277 2278
  Method* m = Method::allocate(
      loader_data, code_length, access_flags, linenumber_table_length,
      total_lvt_length, exception_table_length, checked_exceptions_length,
2279 2280
      method_parameters_length, generic_signature_index,
      ConstMethod::NORMAL, CHECK_(nullHandle));
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2282
  ClassLoadingService::add_class_method_size(m->size()*HeapWordSize);
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  // Fill in information from fixed part (access_flags already set)
  m->set_constants(cp());
  m->set_name_index(name_index);
  m->set_signature_index(signature_index);
#ifdef CC_INTERP
  // hmm is there a gc issue here??
  ResultTypeFinder rtf(cp->symbol_at(signature_index));
  m->set_result_index(rtf.type());
#endif

  if (args_size >= 0) {
    m->set_size_of_parameters(args_size);
  } else {
    m->compute_size_of_parameters(THREAD);
  }
#ifdef ASSERT
  if (args_size >= 0) {
    m->compute_size_of_parameters(THREAD);
    assert(args_size == m->size_of_parameters(), "");
  }
#endif

  // Fill in code attribute information
  m->set_max_stack(max_stack);
  m->set_max_locals(max_locals);
2309
  m->constMethod()->set_stackmap_data(stackmap_data);
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  // Copy byte codes
2312
  m->set_code(code_start);
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  // Copy line number table
  if (linenumber_table != NULL) {
    memcpy(m->compressed_linenumber_table(),
           linenumber_table->buffer(), linenumber_table_length);
  }

2320 2321 2322 2323 2324 2325 2326 2327
  // Copy exception table
  if (exception_table_length > 0) {
    int size =
      exception_table_length * sizeof(ExceptionTableElement) / sizeof(u2);
    copy_u2_with_conversion((u2*) m->exception_table_start(),
                             exception_table_start, size);
  }

2328 2329 2330
  // Copy method parameters
  if (method_parameters_length > 0) {
    MethodParametersElement* elem = m->constMethod()->method_parameters_start();
2331 2332
    for (int i = 0; i < method_parameters_length; i++) {
      elem[i].name_cp_index = Bytes::get_Java_u2(method_parameters_data);
2333
      method_parameters_data += 2;
2334 2335 2336 2337 2338 2339 2340
      if (method_parameters_four_byte_flags) {
        elem[i].flags = Bytes::get_Java_u4(method_parameters_data);
        method_parameters_data += 4;
      } else {
        elem[i].flags = Bytes::get_Java_u2(method_parameters_data);
        method_parameters_data += 2;
      }
2341 2342 2343
    }
  }

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  // Copy checked exceptions
  if (checked_exceptions_length > 0) {
    int size = checked_exceptions_length * sizeof(CheckedExceptionElement) / sizeof(u2);
    copy_u2_with_conversion((u2*) m->checked_exceptions_start(), checked_exceptions_start, size);
  }

  /* Copy class file LVT's/LVTT's into the HotSpot internal LVT.
   *
   * Rules for LVT's and LVTT's are:
   *   - There can be any number of LVT's and LVTT's.
   *   - If there are n LVT's, it is the same as if there was just
   *     one LVT containing all the entries from the n LVT's.
   *   - There may be no more than one LVT entry per local variable.
   *     Two LVT entries are 'equal' if these fields are the same:
   *        start_pc, length, name, slot
   *   - There may be no more than one LVTT entry per each LVT entry.
   *     Each LVTT entry has to match some LVT entry.
   *   - HotSpot internal LVT keeps natural ordering of class file LVT entries.
   */
  if (total_lvt_length > 0) {
    int tbl_no, idx;

    promoted_flags->set_has_localvariable_table();

    LVT_Hash** lvt_Hash = NEW_RESOURCE_ARRAY(LVT_Hash*, HASH_ROW_SIZE);
    initialize_hashtable(lvt_Hash);

    // To fill LocalVariableTable in
    Classfile_LVT_Element*  cf_lvt;
    LocalVariableTableElement* lvt = m->localvariable_table_start();

    for (tbl_no = 0; tbl_no < lvt_cnt; tbl_no++) {
      cf_lvt = (Classfile_LVT_Element *) localvariable_table_start[tbl_no];
      for (idx = 0; idx < localvariable_table_length[tbl_no]; idx++, lvt++) {
        copy_lvt_element(&cf_lvt[idx], lvt);
        // If no duplicates, add LVT elem in hashtable lvt_Hash.
        if (LVT_put_after_lookup(lvt, lvt_Hash) == false
          && _need_verify
          && _major_version >= JAVA_1_5_VERSION ) {
          clear_hashtable(lvt_Hash);
          classfile_parse_error("Duplicated LocalVariableTable attribute "
                                "entry for '%s' in class file %s",
                                 cp->symbol_at(lvt->name_cp_index)->as_utf8(),
                                 CHECK_(nullHandle));
        }
      }
    }

    // To merge LocalVariableTable and LocalVariableTypeTable
    Classfile_LVT_Element* cf_lvtt;
    LocalVariableTableElement lvtt_elem;

    for (tbl_no = 0; tbl_no < lvtt_cnt; tbl_no++) {
      cf_lvtt = (Classfile_LVT_Element *) localvariable_type_table_start[tbl_no];
      for (idx = 0; idx < localvariable_type_table_length[tbl_no]; idx++) {
        copy_lvt_element(&cf_lvtt[idx], &lvtt_elem);
        int index = hash(&lvtt_elem);
        LVT_Hash* entry = LVT_lookup(&lvtt_elem, index, lvt_Hash);
        if (entry == NULL) {
          if (_need_verify) {
            clear_hashtable(lvt_Hash);
            classfile_parse_error("LVTT entry for '%s' in class file %s "
                                  "does not match any LVT entry",
                                   cp->symbol_at(lvtt_elem.name_cp_index)->as_utf8(),
                                   CHECK_(nullHandle));
          }
        } else if (entry->_elem->signature_cp_index != 0 && _need_verify) {
          clear_hashtable(lvt_Hash);
          classfile_parse_error("Duplicated LocalVariableTypeTable attribute "
                                "entry for '%s' in class file %s",
                                 cp->symbol_at(lvtt_elem.name_cp_index)->as_utf8(),
                                 CHECK_(nullHandle));
        } else {
          // to add generic signatures into LocalVariableTable
          entry->_elem->signature_cp_index = lvtt_elem.descriptor_cp_index;
        }
      }
    }
    clear_hashtable(lvt_Hash);
  }

2425 2426
  if (parsed_annotations.has_any_annotations())
    parsed_annotations.apply_to(m);
2427 2428
  *method_annotations = assemble_annotations(loader_data,
                                             runtime_visible_annotations,
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                                             runtime_visible_annotations_length,
                                             runtime_invisible_annotations,
                                             runtime_invisible_annotations_length,
                                             CHECK_(nullHandle));
2433 2434
  *method_parameter_annotations = assemble_annotations(loader_data,
                                                       runtime_visible_parameter_annotations,
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                                                       runtime_visible_parameter_annotations_length,
                                                       runtime_invisible_parameter_annotations,
                                                       runtime_invisible_parameter_annotations_length,
                                                       CHECK_(nullHandle));
2439 2440
  *method_default_annotations = assemble_annotations(loader_data,
                                                     annotation_default,
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                                                     annotation_default_length,
                                                     NULL,
                                                     0,
                                                     CHECK_(nullHandle));
2445 2446 2447 2448 2449 2450
  *method_type_annotations = assemble_annotations(loader_data,
                                                  runtime_visible_type_annotations,
                                                  runtime_visible_type_annotations_length,
                                                  runtime_invisible_type_annotations,
                                                  runtime_invisible_type_annotations_length,
                                                  CHECK_(nullHandle));
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2452 2453
  if (name == vmSymbols::finalize_method_name() &&
      signature == vmSymbols::void_method_signature()) {
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    if (m->is_empty_method()) {
      _has_empty_finalizer = true;
    } else {
      _has_finalizer = true;
    }
  }
2460 2461
  if (name == vmSymbols::object_initializer_name() &&
      signature == vmSymbols::void_method_signature() &&
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      m->is_vanilla_constructor()) {
    _has_vanilla_constructor = true;
  }

  return m;
}


// The promoted_flags parameter is used to pass relevant access_flags
// from the methods back up to the containing klass. These flag values
// are added to klass's access_flags.

2474
Array<Method*>* ClassFileParser::parse_methods(ClassLoaderData* loader_data,
2475 2476 2477 2478 2479 2480 2481
                                               constantPoolHandle cp,
                                               bool is_interface,
                                               AccessFlags* promoted_flags,
                                               bool* has_final_method,
                                               Array<AnnotationArray*>** methods_annotations,
                                               Array<AnnotationArray*>** methods_parameter_annotations,
                                               Array<AnnotationArray*>** methods_default_annotations,
2482
                                               Array<AnnotationArray*>** methods_type_annotations,
2483
                                               bool* has_default_methods,
2484
                                               TRAPS) {
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  ClassFileStream* cfs = stream();
2486 2487 2488
  AnnotationArray* method_annotations = NULL;
  AnnotationArray* method_parameter_annotations = NULL;
  AnnotationArray* method_default_annotations = NULL;
2489
  AnnotationArray* method_type_annotations = NULL;
2490
  cfs->guarantee_more(2, CHECK_NULL);  // length
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  u2 length = cfs->get_u2_fast();
  if (length == 0) {
2493
    return Universe::the_empty_method_array();
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  } else {
2495 2496 2497
    // FIXME: Handle leaks at later failures.
    Array<Method*>* methods = MetadataFactory::new_array<Method*>(loader_data, length, NULL, CHECK_NULL);

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    HandleMark hm(THREAD);
    for (int index = 0; index < length; index++) {
2500 2501
      methodHandle method = parse_method(loader_data,
                                         cp, is_interface,
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                                         promoted_flags,
                                         &method_annotations,
                                         &method_parameter_annotations,
                                         &method_default_annotations,
2506
                                         &method_type_annotations,
2507 2508
                                         CHECK_NULL);

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      if (method->is_final()) {
        *has_final_method = true;
      }
2512 2513 2514 2515
      if (is_interface && !method->is_abstract() && !method->is_static()) {
        // default method
        *has_default_methods = true;
      }
2516
      methods->at_put(index, method());
2517 2518 2519 2520 2521 2522 2523

      if (method_annotations != NULL) {
        if (*methods_annotations == NULL) {
          *methods_annotations =
              MetadataFactory::new_array<AnnotationArray*>(loader_data, length, NULL, CHECK_NULL);
        }
        (*methods_annotations)->at_put(index, method_annotations);
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      }
2525 2526 2527 2528 2529 2530 2531

      if (method_parameter_annotations != NULL) {
        if (*methods_parameter_annotations == NULL) {
          *methods_parameter_annotations =
              MetadataFactory::new_array<AnnotationArray*>(loader_data, length, NULL, CHECK_NULL);
        }
        (*methods_parameter_annotations)->at_put(index, method_parameter_annotations);
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      }
2533 2534 2535 2536 2537 2538 2539

      if (method_default_annotations != NULL) {
        if (*methods_default_annotations == NULL) {
          *methods_default_annotations =
              MetadataFactory::new_array<AnnotationArray*>(loader_data, length, NULL, CHECK_NULL);
        }
        (*methods_default_annotations)->at_put(index, method_default_annotations);
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      }
2541 2542 2543 2544 2545 2546 2547

      if (method_type_annotations != NULL) {
        if (*methods_type_annotations == NULL) {
          *methods_type_annotations =
              MetadataFactory::new_array<AnnotationArray*>(loader_data, length, NULL, CHECK_NULL);
        }
        (*methods_type_annotations)->at_put(index, method_type_annotations);
2548
      }
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    }
2550

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    if (_need_verify && length > 1) {
      // Check duplicated methods
      ResourceMark rm(THREAD);
      NameSigHash** names_and_sigs = NEW_RESOURCE_ARRAY_IN_THREAD(
        THREAD, NameSigHash*, HASH_ROW_SIZE);
      initialize_hashtable(names_and_sigs);
      bool dup = false;
      {
        debug_only(No_Safepoint_Verifier nsv;)
        for (int i = 0; i < length; i++) {
2561
          Method* m = methods->at(i);
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          // If no duplicates, add name/signature in hashtable names_and_sigs.
          if (!put_after_lookup(m->name(), m->signature(), names_and_sigs)) {
            dup = true;
            break;
          }
        }
      }
      if (dup) {
        classfile_parse_error("Duplicate method name&signature in class file %s",
2571
                              CHECK_NULL);
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      }
    }
    return methods;
  }
}


2579 2580 2581 2582 2583
Array<int>* ClassFileParser::sort_methods(ClassLoaderData* loader_data,
                                          Array<Method*>* methods,
                                          Array<AnnotationArray*>* methods_annotations,
                                          Array<AnnotationArray*>* methods_parameter_annotations,
                                          Array<AnnotationArray*>* methods_default_annotations,
2584
                                          Array<AnnotationArray*>* methods_type_annotations,
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                                              TRAPS) {
2586
  int length = methods->length();
2587
  // If JVMTI original method ordering or sharing is enabled we have to
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  // remember the original class file ordering.
2589
  // We temporarily use the vtable_index field in the Method* to store the
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  // class file index, so we can read in after calling qsort.
2591 2592
  // Put the method ordering in the shared archive.
  if (JvmtiExport::can_maintain_original_method_order() || DumpSharedSpaces) {
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    for (int index = 0; index < length; index++) {
2594
      Method* m = methods->at(index);
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      assert(!m->valid_vtable_index(), "vtable index should not be set");
      m->set_vtable_index(index);
    }
  }
  // Sort method array by ascending method name (for faster lookups & vtable construction)
2600
  // Note that the ordering is not alphabetical, see Symbol::fast_compare
2601 2602
  Method::sort_methods(methods, methods_annotations,
                       methods_parameter_annotations,
2603 2604
                       methods_default_annotations,
                       methods_type_annotations);
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2606 2607 2608
  // If JVMTI original method ordering or sharing is enabled construct int
  // array remembering the original ordering
  if (JvmtiExport::can_maintain_original_method_order() || DumpSharedSpaces) {
2609
    Array<int>* method_ordering = MetadataFactory::new_array<int>(loader_data, length, CHECK_NULL);
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    for (int index = 0; index < length; index++) {
2611
      Method* m = methods->at(index);
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      int old_index = m->vtable_index();
      assert(old_index >= 0 && old_index < length, "invalid method index");
2614 2615
      method_ordering->at_put(index, old_index);
      m->set_vtable_index(Method::invalid_vtable_index);
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    }
    return method_ordering;
  } else {
2619
    return Universe::the_empty_int_array();
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  }
}


2624
void ClassFileParser::parse_classfile_sourcefile_attribute(constantPoolHandle cp, TRAPS) {
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  ClassFileStream* cfs = stream();
  cfs->guarantee_more(2, CHECK);  // sourcefile_index
  u2 sourcefile_index = cfs->get_u2_fast();
  check_property(
    valid_cp_range(sourcefile_index, cp->length()) &&
      cp->tag_at(sourcefile_index).is_utf8(),
    "Invalid SourceFile attribute at constant pool index %u in class file %s",
    sourcefile_index, CHECK);
2633
  set_class_sourcefile(cp->symbol_at(sourcefile_index));
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}



void ClassFileParser::parse_classfile_source_debug_extension_attribute(constantPoolHandle cp,
                                                                       int length, TRAPS) {
  ClassFileStream* cfs = stream();
  u1* sde_buffer = cfs->get_u1_buffer();
  assert(sde_buffer != NULL, "null sde buffer");

  // Don't bother storing it if there is no way to retrieve it
  if (JvmtiExport::can_get_source_debug_extension()) {
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    assert((length+1) > length, "Overflow checking");
    u1* sde = NEW_RESOURCE_ARRAY_IN_THREAD(THREAD, u1, length+1);
    for (int i = 0; i < length; i++) {
      sde[i] = sde_buffer[i];
    }
    sde[length] = '\0';
    set_class_sde_buffer((char*)sde, length);
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  }
  // Got utf8 string, set stream position forward
  cfs->skip_u1(length, CHECK);
}


// Inner classes can be static, private or protected (classic VM does this)
#define RECOGNIZED_INNER_CLASS_MODIFIERS (JVM_RECOGNIZED_CLASS_MODIFIERS | JVM_ACC_PRIVATE | JVM_ACC_PROTECTED | JVM_ACC_STATIC)

// Return number of classes in the inner classes attribute table
2663 2664
u2 ClassFileParser::parse_classfile_inner_classes_attribute(ClassLoaderData* loader_data,
                                                            u1* inner_classes_attribute_start,
2665 2666 2667 2668
                                                            bool parsed_enclosingmethod_attribute,
                                                            u2 enclosing_method_class_index,
                                                            u2 enclosing_method_method_index,
                                                            constantPoolHandle cp,
2669
                                                            TRAPS) {
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  ClassFileStream* cfs = stream();
2671 2672 2673 2674 2675 2676 2677
  u1* current_mark = cfs->current();
  u2 length = 0;
  if (inner_classes_attribute_start != NULL) {
    cfs->set_current(inner_classes_attribute_start);
    cfs->guarantee_more(2, CHECK_0);  // length
    length = cfs->get_u2_fast();
  }
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2679 2680 2681 2682 2683 2684 2685 2686 2687 2688
  // 4-tuples of shorts of inner classes data and 2 shorts of enclosing
  // method data:
  //   [inner_class_info_index,
  //    outer_class_info_index,
  //    inner_name_index,
  //    inner_class_access_flags,
  //    ...
  //    enclosing_method_class_index,
  //    enclosing_method_method_index]
  int size = length * 4 + (parsed_enclosingmethod_attribute ? 2 : 0);
2689 2690
  // FIXME: Will leak on exceptions.
  Array<u2>* inner_classes = MetadataFactory::new_array<u2>(loader_data, size, CHECK_0);
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  int index = 0;
  int cp_size = cp->length();
  cfs->guarantee_more(8 * length, CHECK_0);  // 4-tuples of u2
  for (int n = 0; n < length; n++) {
    // Inner class index
    u2 inner_class_info_index = cfs->get_u2_fast();
    check_property(
      inner_class_info_index == 0 ||
        (valid_cp_range(inner_class_info_index, cp_size) &&
2700
        is_klass_reference(cp, inner_class_info_index)),
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      "inner_class_info_index %u has bad constant type in class file %s",
      inner_class_info_index, CHECK_0);
    // Outer class index
    u2 outer_class_info_index = cfs->get_u2_fast();
    check_property(
      outer_class_info_index == 0 ||
        (valid_cp_range(outer_class_info_index, cp_size) &&
2708
        is_klass_reference(cp, outer_class_info_index)),
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      "outer_class_info_index %u has bad constant type in class file %s",
      outer_class_info_index, CHECK_0);
    // Inner class name
    u2 inner_name_index = cfs->get_u2_fast();
    check_property(
      inner_name_index == 0 || (valid_cp_range(inner_name_index, cp_size) &&
        cp->tag_at(inner_name_index).is_utf8()),
      "inner_name_index %u has bad constant type in class file %s",
      inner_name_index, CHECK_0);
    if (_need_verify) {
      guarantee_property(inner_class_info_index != outer_class_info_index,
                         "Class is both outer and inner class in class file %s", CHECK_0);
    }
    // Access flags
    AccessFlags inner_access_flags;
    jint flags = cfs->get_u2_fast() & RECOGNIZED_INNER_CLASS_MODIFIERS;
    if ((flags & JVM_ACC_INTERFACE) && _major_version < JAVA_6_VERSION) {
      // Set abstract bit for old class files for backward compatibility
      flags |= JVM_ACC_ABSTRACT;
    }
    verify_legal_class_modifiers(flags, CHECK_0);
    inner_access_flags.set_flags(flags);

2732 2733 2734 2735
    inner_classes->at_put(index++, inner_class_info_index);
    inner_classes->at_put(index++, outer_class_info_index);
    inner_classes->at_put(index++, inner_name_index);
    inner_classes->at_put(index++, inner_access_flags.as_short());
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  }

  // 4347400: make sure there's no duplicate entry in the classes array
  if (_need_verify && _major_version >= JAVA_1_5_VERSION) {
2740 2741
    for(int i = 0; i < length * 4; i += 4) {
      for(int j = i + 4; j < length * 4; j += 4) {
2742 2743 2744 2745
        guarantee_property((inner_classes->at(i)   != inner_classes->at(j) ||
                            inner_classes->at(i+1) != inner_classes->at(j+1) ||
                            inner_classes->at(i+2) != inner_classes->at(j+2) ||
                            inner_classes->at(i+3) != inner_classes->at(j+3)),
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                            "Duplicate entry in InnerClasses in class file %s",
                            CHECK_0);
      }
    }
  }

2752 2753
  // Set EnclosingMethod class and method indexes.
  if (parsed_enclosingmethod_attribute) {
2754 2755
    inner_classes->at_put(index++, enclosing_method_class_index);
    inner_classes->at_put(index++, enclosing_method_method_index);
2756 2757 2758
  }
  assert(index == size, "wrong size");

2759
  // Update InstanceKlass with inner class info.
2760
  set_class_inner_classes(inner_classes);
2761 2762 2763 2764

  // Restore buffer's current position.
  cfs->set_current(current_mark);

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  return length;
}

2768 2769
void ClassFileParser::parse_classfile_synthetic_attribute(constantPoolHandle cp, TRAPS) {
  set_class_synthetic_flag(true);
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}

2772
void ClassFileParser::parse_classfile_signature_attribute(constantPoolHandle cp, TRAPS) {
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  ClassFileStream* cfs = stream();
  u2 signature_index = cfs->get_u2(CHECK);
  check_property(
    valid_cp_range(signature_index, cp->length()) &&
      cp->tag_at(signature_index).is_utf8(),
    "Invalid constant pool index %u in Signature attribute in class file %s",
    signature_index, CHECK);
2780
  set_class_generic_signature(cp->symbol_at(signature_index));
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}

2783 2784
void ClassFileParser::parse_classfile_bootstrap_methods_attribute(ClassLoaderData* loader_data,
                                                                  constantPoolHandle cp,
2785 2786 2787 2788 2789 2790 2791 2792 2793 2794 2795 2796 2797 2798 2799 2800 2801 2802 2803 2804 2805
                                                                  u4 attribute_byte_length, TRAPS) {
  ClassFileStream* cfs = stream();
  u1* current_start = cfs->current();

  cfs->guarantee_more(2, CHECK);  // length
  int attribute_array_length = cfs->get_u2_fast();

  guarantee_property(_max_bootstrap_specifier_index < attribute_array_length,
                     "Short length on BootstrapMethods in class file %s",
                     CHECK);

  // The attribute contains a counted array of counted tuples of shorts,
  // represending bootstrap specifiers:
  //    length*{bootstrap_method_index, argument_count*{argument_index}}
  int operand_count = (attribute_byte_length - sizeof(u2)) / sizeof(u2);
  // operand_count = number of shorts in attr, except for leading length

  // The attribute is copied into a short[] array.
  // The array begins with a series of short[2] pairs, one for each tuple.
  int index_size = (attribute_array_length * 2);

2806
  Array<u2>* operands = MetadataFactory::new_array<u2>(loader_data, index_size + operand_count, CHECK);
2807 2808 2809 2810 2811 2812

  int operand_fill_index = index_size;
  int cp_size = cp->length();

  for (int n = 0; n < attribute_array_length; n++) {
    // Store a 32-bit offset into the header of the operand array.
2813
    ConstantPool::operand_offset_at_put(operands, n, operand_fill_index);
2814 2815 2816 2817 2818 2819 2820 2821 2822

    // Read a bootstrap specifier.
    cfs->guarantee_more(sizeof(u2) * 2, CHECK);  // bsm, argc
    u2 bootstrap_method_index = cfs->get_u2_fast();
    u2 argument_count = cfs->get_u2_fast();
    check_property(
      valid_cp_range(bootstrap_method_index, cp_size) &&
      cp->tag_at(bootstrap_method_index).is_method_handle(),
      "bootstrap_method_index %u has bad constant type in class file %s",
2823
      bootstrap_method_index,
2824
      CHECK);
2825 2826
    operands->at_put(operand_fill_index++, bootstrap_method_index);
    operands->at_put(operand_fill_index++, argument_count);
2827 2828 2829

    cfs->guarantee_more(sizeof(u2) * argument_count, CHECK);  // argv[argc]
    for (int j = 0; j < argument_count; j++) {
2830
      u2 argument_index = cfs->get_u2_fast();
2831
      check_property(
2832 2833
        valid_cp_range(argument_index, cp_size) &&
        cp->tag_at(argument_index).is_loadable_constant(),
2834
        "argument_index %u has bad constant type in class file %s",
2835
        argument_index,
2836
        CHECK);
2837
      operands->at_put(operand_fill_index++, argument_index);
2838 2839 2840
    }
  }

2841 2842
  assert(operand_fill_index == operands->length(), "exact fill");
  assert(ConstantPool::operand_array_length(operands) == attribute_array_length, "correct decode");
2843 2844 2845 2846 2847 2848

  u1* current_end = cfs->current();
  guarantee_property(current_end == current_start + attribute_byte_length,
                     "Bad length on BootstrapMethods in class file %s",
                     CHECK);

2849
  cp->set_operands(operands);
2850 2851
}

2852 2853
void ClassFileParser::parse_classfile_attributes(ClassLoaderData* loader_data,
                                                 constantPoolHandle cp,
2854 2855
                                                 ClassFileParser::ClassAnnotationCollector* parsed_annotations,
                                                 TRAPS) {
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  ClassFileStream* cfs = stream();
  // Set inner classes attribute to default sentinel
2858
  set_class_inner_classes(Universe::the_empty_short_array());
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  cfs->guarantee_more(2, CHECK);  // attributes_count
  u2 attributes_count = cfs->get_u2_fast();
  bool parsed_sourcefile_attribute = false;
  bool parsed_innerclasses_attribute = false;
  bool parsed_enclosingmethod_attribute = false;
2864
  bool parsed_bootstrap_methods_attribute = false;
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  u1* runtime_visible_annotations = NULL;
  int runtime_visible_annotations_length = 0;
  u1* runtime_invisible_annotations = NULL;
  int runtime_invisible_annotations_length = 0;
2869 2870 2871 2872
  u1* runtime_visible_type_annotations = NULL;
  int runtime_visible_type_annotations_length = 0;
  u1* runtime_invisible_type_annotations = NULL;
  int runtime_invisible_type_annotations_length = 0;
2873 2874 2875 2876
  u1* inner_classes_attribute_start = NULL;
  u4  inner_classes_attribute_length = 0;
  u2  enclosing_method_class_index = 0;
  u2  enclosing_method_method_index = 0;
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  // Iterate over attributes
  while (attributes_count--) {
    cfs->guarantee_more(6, CHECK);  // attribute_name_index, attribute_length
    u2 attribute_name_index = cfs->get_u2_fast();
    u4 attribute_length = cfs->get_u4_fast();
    check_property(
      valid_cp_range(attribute_name_index, cp->length()) &&
        cp->tag_at(attribute_name_index).is_utf8(),
      "Attribute name has bad constant pool index %u in class file %s",
      attribute_name_index, CHECK);
2887
    Symbol* tag = cp->symbol_at(attribute_name_index);
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    if (tag == vmSymbols::tag_source_file()) {
      // Check for SourceFile tag
      if (_need_verify) {
        guarantee_property(attribute_length == 2, "Wrong SourceFile attribute length in class file %s", CHECK);
      }
      if (parsed_sourcefile_attribute) {
        classfile_parse_error("Multiple SourceFile attributes in class file %s", CHECK);
      } else {
        parsed_sourcefile_attribute = true;
      }
2898
      parse_classfile_sourcefile_attribute(cp, CHECK);
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2899 2900
    } else if (tag == vmSymbols::tag_source_debug_extension()) {
      // Check for SourceDebugExtension tag
2901
      parse_classfile_source_debug_extension_attribute(cp, (int)attribute_length, CHECK);
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    } else if (tag == vmSymbols::tag_inner_classes()) {
      // Check for InnerClasses tag
      if (parsed_innerclasses_attribute) {
        classfile_parse_error("Multiple InnerClasses attributes in class file %s", CHECK);
      } else {
        parsed_innerclasses_attribute = true;
      }
2909 2910 2911
      inner_classes_attribute_start = cfs->get_u1_buffer();
      inner_classes_attribute_length = attribute_length;
      cfs->skip_u1(inner_classes_attribute_length, CHECK);
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    } else if (tag == vmSymbols::tag_synthetic()) {
      // Check for Synthetic tag
      // Shouldn't we check that the synthetic flags wasn't already set? - not required in spec
      if (attribute_length != 0) {
        classfile_parse_error(
          "Invalid Synthetic classfile attribute length %u in class file %s",
          attribute_length, CHECK);
      }
2920
      parse_classfile_synthetic_attribute(cp, CHECK);
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    } else if (tag == vmSymbols::tag_deprecated()) {
      // Check for Deprecatd tag - 4276120
      if (attribute_length != 0) {
        classfile_parse_error(
          "Invalid Deprecated classfile attribute length %u in class file %s",
          attribute_length, CHECK);
      }
    } else if (_major_version >= JAVA_1_5_VERSION) {
      if (tag == vmSymbols::tag_signature()) {
        if (attribute_length != 2) {
          classfile_parse_error(
            "Wrong Signature attribute length %u in class file %s",
            attribute_length, CHECK);
        }
2935
        parse_classfile_signature_attribute(cp, CHECK);
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      } else if (tag == vmSymbols::tag_runtime_visible_annotations()) {
        runtime_visible_annotations_length = attribute_length;
        runtime_visible_annotations = cfs->get_u1_buffer();
        assert(runtime_visible_annotations != NULL, "null visible annotations");
2940 2941
        parse_annotations(loader_data,
                          runtime_visible_annotations,
2942 2943 2944 2945
                          runtime_visible_annotations_length,
                          cp,
                          parsed_annotations,
                          CHECK);
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        cfs->skip_u1(runtime_visible_annotations_length, CHECK);
      } else if (PreserveAllAnnotations && tag == vmSymbols::tag_runtime_invisible_annotations()) {
        runtime_invisible_annotations_length = attribute_length;
        runtime_invisible_annotations = cfs->get_u1_buffer();
        assert(runtime_invisible_annotations != NULL, "null invisible annotations");
        cfs->skip_u1(runtime_invisible_annotations_length, CHECK);
      } else if (tag == vmSymbols::tag_enclosing_method()) {
        if (parsed_enclosingmethod_attribute) {
          classfile_parse_error("Multiple EnclosingMethod attributes in class file %s", CHECK);
        }   else {
          parsed_enclosingmethod_attribute = true;
        }
        cfs->guarantee_more(4, CHECK);  // class_index, method_index
2959 2960 2961
        enclosing_method_class_index  = cfs->get_u2_fast();
        enclosing_method_method_index = cfs->get_u2_fast();
        if (enclosing_method_class_index == 0) {
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          classfile_parse_error("Invalid class index in EnclosingMethod attribute in class file %s", CHECK);
        }
        // Validate the constant pool indices and types
2965 2966
        if (!cp->is_within_bounds(enclosing_method_class_index) ||
            !is_klass_reference(cp, enclosing_method_class_index)) {
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2967 2968
          classfile_parse_error("Invalid or out-of-bounds class index in EnclosingMethod attribute in class file %s", CHECK);
        }
2969 2970 2971
        if (enclosing_method_method_index != 0 &&
            (!cp->is_within_bounds(enclosing_method_method_index) ||
             !cp->tag_at(enclosing_method_method_index).is_name_and_type())) {
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          classfile_parse_error("Invalid or out-of-bounds method index in EnclosingMethod attribute in class file %s", CHECK);
        }
2974 2975 2976 2977 2978
      } else if (tag == vmSymbols::tag_bootstrap_methods() &&
                 _major_version >= Verifier::INVOKEDYNAMIC_MAJOR_VERSION) {
        if (parsed_bootstrap_methods_attribute)
          classfile_parse_error("Multiple BootstrapMethods attributes in class file %s", CHECK);
        parsed_bootstrap_methods_attribute = true;
2979
        parse_classfile_bootstrap_methods_attribute(loader_data, cp, attribute_length, CHECK);
2980 2981 2982 2983 2984 2985 2986 2987 2988 2989 2990
      } else if (tag == vmSymbols::tag_runtime_visible_type_annotations()) {
        runtime_visible_type_annotations_length = attribute_length;
        runtime_visible_type_annotations = cfs->get_u1_buffer();
        assert(runtime_visible_type_annotations != NULL, "null visible type annotations");
        // No need for the VM to parse Type annotations
        cfs->skip_u1(runtime_visible_type_annotations_length, CHECK);
      } else if (PreserveAllAnnotations && tag == vmSymbols::tag_runtime_invisible_type_annotations()) {
        runtime_invisible_type_annotations_length = attribute_length;
        runtime_invisible_type_annotations = cfs->get_u1_buffer();
        assert(runtime_invisible_type_annotations != NULL, "null invisible type annotations");
        cfs->skip_u1(runtime_invisible_type_annotations_length, CHECK);
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      } else {
        // Unknown attribute
        cfs->skip_u1(attribute_length, CHECK);
      }
    } else {
      // Unknown attribute
      cfs->skip_u1(attribute_length, CHECK);
    }
  }
3000 3001
  AnnotationArray* annotations = assemble_annotations(loader_data,
                                                      runtime_visible_annotations,
3002 3003 3004 3005
                                                      runtime_visible_annotations_length,
                                                      runtime_invisible_annotations,
                                                      runtime_invisible_annotations_length,
                                                      CHECK);
3006
  set_class_annotations(annotations);
3007 3008 3009 3010 3011 3012 3013
  AnnotationArray* type_annotations = assemble_annotations(loader_data,
                                                           runtime_visible_type_annotations,
                                                           runtime_visible_type_annotations_length,
                                                           runtime_invisible_type_annotations,
                                                           runtime_invisible_type_annotations_length,
                                                           CHECK);
  set_class_type_annotations(type_annotations);
3014

3015 3016
  if (parsed_innerclasses_attribute || parsed_enclosingmethod_attribute) {
    u2 num_of_classes = parse_classfile_inner_classes_attribute(
3017
                            loader_data,
3018 3019 3020 3021
                            inner_classes_attribute_start,
                            parsed_innerclasses_attribute,
                            enclosing_method_class_index,
                            enclosing_method_method_index,
3022
                            cp, CHECK);
3023 3024 3025 3026 3027 3028 3029
    if (parsed_innerclasses_attribute &&_need_verify && _major_version >= JAVA_1_5_VERSION) {
      guarantee_property(
        inner_classes_attribute_length == sizeof(num_of_classes) + 4 * sizeof(u2) * num_of_classes,
        "Wrong InnerClasses attribute length in class file %s", CHECK);
    }
  }

3030 3031 3032 3033
  if (_max_bootstrap_specifier_index >= 0) {
    guarantee_property(parsed_bootstrap_methods_attribute,
                       "Missing BootstrapMethods attribute in class file %s", CHECK);
  }
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3034 3035
}

3036 3037 3038 3039 3040 3041 3042 3043 3044 3045 3046
void ClassFileParser::apply_parsed_class_attributes(instanceKlassHandle k) {
  if (_synthetic_flag)
    k->set_is_synthetic();
  if (_sourcefile != NULL) {
    _sourcefile->increment_refcount();
    k->set_source_file_name(_sourcefile);
  }
  if (_generic_signature != NULL) {
    _generic_signature->increment_refcount();
    k->set_generic_signature(_generic_signature);
  }
K
Merge  
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3047 3048 3049
  if (_sde_buffer != NULL) {
    k->set_source_debug_extension(_sde_buffer, _sde_length);
  }
3050 3051 3052 3053
  k->set_inner_classes(_inner_classes);
  if (_annotations != NULL) {
    k->annotations()->set_class_annotations(_annotations);
  }
3054
}
D
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3055

3056 3057
AnnotationArray* ClassFileParser::assemble_annotations(ClassLoaderData* loader_data,
                                                       u1* runtime_visible_annotations,
3058 3059 3060
                                                       int runtime_visible_annotations_length,
                                                       u1* runtime_invisible_annotations,
                                                       int runtime_invisible_annotations_length, TRAPS) {
3061
  AnnotationArray* annotations = NULL;
D
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3062 3063
  if (runtime_visible_annotations != NULL ||
      runtime_invisible_annotations != NULL) {
3064 3065 3066 3067
    annotations = MetadataFactory::new_array<u1>(loader_data,
                                          runtime_visible_annotations_length +
                                          runtime_invisible_annotations_length,
                                          CHECK_(annotations));
D
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3068
    if (runtime_visible_annotations != NULL) {
3069 3070 3071
      for (int i = 0; i < runtime_visible_annotations_length; i++) {
        annotations->at_put(i, runtime_visible_annotations[i]);
      }
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3072 3073
    }
    if (runtime_invisible_annotations != NULL) {
3074 3075 3076 3077
      for (int i = 0; i < runtime_invisible_annotations_length; i++) {
        int append = runtime_visible_annotations_length+i;
        annotations->at_put(append, runtime_invisible_annotations[i]);
      }
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    }
  }
  return annotations;
}


3084 3085 3086 3087 3088 3089 3090 3091 3092 3093 3094 3095 3096 3097 3098 3099 3100 3101 3102 3103 3104 3105 3106 3107 3108 3109 3110 3111
#ifndef PRODUCT
static void parseAndPrintGenericSignatures(
    instanceKlassHandle this_klass, TRAPS) {
  assert(ParseAllGenericSignatures == true, "Shouldn't call otherwise");
  ResourceMark rm;

  if (this_klass->generic_signature() != NULL) {
    using namespace generic;
    ClassDescriptor* spec = ClassDescriptor::parse_generic_signature(this_klass(), CHECK);

    tty->print_cr("Parsing %s", this_klass->generic_signature()->as_C_string());
    spec->print_on(tty);

    for (int i = 0; i < this_klass->methods()->length(); ++i) {
      Method* m = this_klass->methods()->at(i);
      MethodDescriptor* method_spec = MethodDescriptor::parse_generic_signature(m, spec);
      Symbol* sig = m->generic_signature();
      if (sig == NULL) {
        sig = m->signature();
      }
      tty->print_cr("Parsing %s", sig->as_C_string());
      method_spec->print_on(tty);
    }
  }
}
#endif // ndef PRODUCT


3112
instanceKlassHandle ClassFileParser::parseClassFile(Symbol* name,
3113
                                                    ClassLoaderData* loader_data,
D
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3114
                                                    Handle protection_domain,
3115
                                                    KlassHandle host_klass,
3116
                                                    GrowableArray<Handle>* cp_patches,
3117
                                                    TempNewSymbol& parsed_name,
3118
                                                    bool verify,
D
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3119
                                                    TRAPS) {
3120

3121 3122 3123 3124 3125
  // When a retransformable agent is attached, JVMTI caches the
  // class bytes that existed before the first retransformation.
  // If RedefineClasses() was used before the retransformable
  // agent attached, then the cached class bytes may not be the
  // original class bytes.
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  unsigned char *cached_class_file_bytes = NULL;
  jint cached_class_file_length;
3128
  Handle class_loader(THREAD, loader_data->class_loader());
3129 3130
  bool has_default_methods = false;
  ResourceMark rm(THREAD);
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3131 3132 3133

  ClassFileStream* cfs = stream();
  // Timing
3134 3135 3136 3137 3138 3139 3140 3141 3142
  assert(THREAD->is_Java_thread(), "must be a JavaThread");
  JavaThread* jt = (JavaThread*) THREAD;

  PerfClassTraceTime ctimer(ClassLoader::perf_class_parse_time(),
                            ClassLoader::perf_class_parse_selftime(),
                            NULL,
                            jt->get_thread_stat()->perf_recursion_counts_addr(),
                            jt->get_thread_stat()->perf_timers_addr(),
                            PerfClassTraceTime::PARSE_CLASS);
D
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3143

3144
  init_parsed_class_attributes();
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3145 3146

  if (JvmtiExport::should_post_class_file_load_hook()) {
3147 3148 3149 3150 3151 3152 3153 3154 3155 3156 3157 3158 3159 3160 3161 3162 3163
    // Get the cached class file bytes (if any) from the class that
    // is being redefined or retransformed. We use jvmti_thread_state()
    // instead of JvmtiThreadState::state_for(jt) so we don't allocate
    // a JvmtiThreadState any earlier than necessary. This will help
    // avoid the bug described by 7126851.
    JvmtiThreadState *state = jt->jvmti_thread_state();
    if (state != NULL) {
      KlassHandle *h_class_being_redefined =
                     state->get_class_being_redefined();
      if (h_class_being_redefined != NULL) {
        instanceKlassHandle ikh_class_being_redefined =
          instanceKlassHandle(THREAD, (*h_class_being_redefined)());
        cached_class_file_bytes =
          ikh_class_being_redefined->get_cached_class_file_bytes();
        cached_class_file_length =
          ikh_class_being_redefined->get_cached_class_file_len();
      }
3164 3165
    }

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3166 3167 3168
    unsigned char* ptr = cfs->buffer();
    unsigned char* end_ptr = cfs->buffer() + cfs->length();

3169
    JvmtiExport::post_class_file_load_hook(name, class_loader(), protection_domain,
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3170 3171 3172 3173 3174 3175 3176 3177 3178 3179 3180 3181 3182
                                           &ptr, &end_ptr,
                                           &cached_class_file_bytes,
                                           &cached_class_file_length);

    if (ptr != cfs->buffer()) {
      // JVMTI agent has modified class file data.
      // Set new class file stream using JVMTI agent modified
      // class file data.
      cfs = new ClassFileStream(ptr, end_ptr - ptr, cfs->source());
      set_stream(cfs);
    }
  }

3183
  _host_klass = host_klass;
3184
  _cp_patches = cp_patches;
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3185 3186 3187 3188

  instanceKlassHandle nullHandle;

  // Figure out whether we can skip format checking (matching classic VM behavior)
3189
  _need_verify = Verifier::should_verify_for(class_loader(), verify);
D
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3190 3191 3192 3193 3194

  // Set the verify flag in stream
  cfs->set_verify(_need_verify);

  // Save the class file name for easier error message printing.
3195
  _class_name = (name != NULL) ? name : vmSymbols::unknown_class_name();
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3196 3197 3198 3199 3200 3201 3202 3203 3204 3205 3206 3207 3208 3209

  cfs->guarantee_more(8, CHECK_(nullHandle));  // magic, major, minor
  // Magic value
  u4 magic = cfs->get_u4_fast();
  guarantee_property(magic == JAVA_CLASSFILE_MAGIC,
                     "Incompatible magic value %u in class file %s",
                     magic, CHECK_(nullHandle));

  // Version numbers
  u2 minor_version = cfs->get_u2_fast();
  u2 major_version = cfs->get_u2_fast();

  // Check version numbers - we check this even with verifier off
  if (!is_supported_version(major_version, minor_version)) {
3210
    if (name == NULL) {
D
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3211 3212
      Exceptions::fthrow(
        THREAD_AND_LOCATION,
3213
        vmSymbols::java_lang_UnsupportedClassVersionError(),
D
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3214 3215 3216 3217 3218 3219 3220
        "Unsupported major.minor version %u.%u",
        major_version,
        minor_version);
    } else {
      ResourceMark rm(THREAD);
      Exceptions::fthrow(
        THREAD_AND_LOCATION,
3221
        vmSymbols::java_lang_UnsupportedClassVersionError(),
D
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3222 3223 3224 3225 3226 3227 3228 3229 3230 3231 3232 3233 3234 3235 3236 3237 3238
        "%s : Unsupported major.minor version %u.%u",
        name->as_C_string(),
        major_version,
        minor_version);
    }
    return nullHandle;
  }

  _major_version = major_version;
  _minor_version = minor_version;


  // Check if verification needs to be relaxed for this class file
  // Do not restrict it to jdk1.0 or jdk1.1 to maintain backward compatibility (4982376)
  _relax_verify = Verifier::relax_verify_for(class_loader());

  // Constant pool
3239
  constantPoolHandle cp = parse_constant_pool(loader_data, CHECK_(nullHandle));
3240 3241
  ConstantPoolCleaner error_handler(cp); // set constant pool to be cleaned up.

D
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3242 3243 3244 3245 3246 3247 3248 3249 3250 3251 3252 3253 3254 3255 3256 3257 3258 3259 3260 3261 3262 3263 3264 3265
  int cp_size = cp->length();

  cfs->guarantee_more(8, CHECK_(nullHandle));  // flags, this_class, super_class, infs_len

  // Access flags
  AccessFlags access_flags;
  jint flags = cfs->get_u2_fast() & JVM_RECOGNIZED_CLASS_MODIFIERS;

  if ((flags & JVM_ACC_INTERFACE) && _major_version < JAVA_6_VERSION) {
    // Set abstract bit for old class files for backward compatibility
    flags |= JVM_ACC_ABSTRACT;
  }
  verify_legal_class_modifiers(flags, CHECK_(nullHandle));
  access_flags.set_flags(flags);

  // This class and superclass
  instanceKlassHandle super_klass;
  u2 this_class_index = cfs->get_u2_fast();
  check_property(
    valid_cp_range(this_class_index, cp_size) &&
      cp->tag_at(this_class_index).is_unresolved_klass(),
    "Invalid this class index %u in constant pool in class file %s",
    this_class_index, CHECK_(nullHandle));

3266 3267
  Symbol*  class_name  = cp->unresolved_klass_at(this_class_index);
  assert(class_name != NULL, "class_name can't be null");
D
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3268 3269 3270 3271

  // It's important to set parsed_name *before* resolving the super class.
  // (it's used for cleanup by the caller if parsing fails)
  parsed_name = class_name;
3272 3273 3274
  // parsed_name is returned and can be used if there's an error, so add to
  // its reference count.  Caller will decrement the refcount.
  parsed_name->increment_refcount();
D
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3275 3276 3277 3278 3279 3280 3281 3282 3283 3284 3285 3286 3287

  // Update _class_name which could be null previously to be class_name
  _class_name = class_name;

  // Don't need to check whether this class name is legal or not.
  // It has been checked when constant pool is parsed.
  // However, make sure it is not an array type.
  if (_need_verify) {
    guarantee_property(class_name->byte_at(0) != JVM_SIGNATURE_ARRAY,
                       "Bad class name in class file %s",
                       CHECK_(nullHandle));
  }

3288
  Klass* preserve_this_klass;   // for storing result across HandleMark
D
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3289 3290 3291 3292 3293

  // release all handles when parsing is done
  { HandleMark hm(THREAD);

    // Checks if name in class file matches requested name
3294
    if (name != NULL && class_name != name) {
D
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3295 3296 3297
      ResourceMark rm(THREAD);
      Exceptions::fthrow(
        THREAD_AND_LOCATION,
3298
        vmSymbols::java_lang_NoClassDefFoundError(),
D
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3299 3300 3301 3302 3303 3304 3305 3306
        "%s (wrong name: %s)",
        name->as_C_string(),
        class_name->as_C_string()
      );
      return nullHandle;
    }

    if (TraceClassLoadingPreorder) {
3307
      tty->print("[Loading %s", name->as_klass_external_name());
D
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3308 3309 3310 3311 3312 3313
      if (cfs->source() != NULL) tty->print(" from %s", cfs->source());
      tty->print_cr("]");
    }

    u2 super_class_index = cfs->get_u2_fast();
    if (super_class_index == 0) {
3314
      check_property(class_name == vmSymbols::java_lang_Object(),
D
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3315 3316 3317 3318 3319
                     "Invalid superclass index %u in class file %s",
                     super_class_index,
                     CHECK_(nullHandle));
    } else {
      check_property(valid_cp_range(super_class_index, cp_size) &&
3320
                     is_klass_reference(cp, super_class_index),
D
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3321 3322 3323 3324 3325
                     "Invalid superclass index %u in class file %s",
                     super_class_index,
                     CHECK_(nullHandle));
      // The class name should be legal because it is checked when parsing constant pool.
      // However, make sure it is not an array type.
3326 3327 3328 3329 3330 3331 3332 3333
      bool is_array = false;
      if (cp->tag_at(super_class_index).is_klass()) {
        super_klass = instanceKlassHandle(THREAD, cp->resolved_klass_at(super_class_index));
        if (_need_verify)
          is_array = super_klass->oop_is_array();
      } else if (_need_verify) {
        is_array = (cp->unresolved_klass_at(super_class_index)->byte_at(0) == JVM_SIGNATURE_ARRAY);
      }
D
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3334
      if (_need_verify) {
3335
        guarantee_property(!is_array,
D
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3336 3337 3338 3339 3340 3341
                          "Bad superclass name in class file %s", CHECK_(nullHandle));
      }
    }

    // Interfaces
    u2 itfs_len = cfs->get_u2_fast();
3342
    Array<Klass*>* local_interfaces;
D
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3343
    if (itfs_len == 0) {
3344
      local_interfaces = Universe::the_empty_klass_array();
D
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3345
    } else {
3346 3347 3348
      local_interfaces = parse_interfaces(
          cp, itfs_len, loader_data, protection_domain, _class_name,
          &has_default_methods, CHECK_(nullHandle));
D
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3349 3350
    }

3351
    u2 java_fields_count = 0;
D
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3352
    // Fields (offsets are filled in later)
3353
    FieldAllocationCount fac;
3354
    Array<AnnotationArray*>* fields_annotations = NULL;
3355
    Array<AnnotationArray*>* fields_type_annotations = NULL;
3356
    Array<u2>* fields = parse_fields(loader_data, class_name, cp, access_flags.is_interface(), &fac, &fields_annotations,
3357
                                          &fields_type_annotations,
3358 3359
                                          &java_fields_count,
                                          CHECK_(nullHandle));
D
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3360 3361 3362 3363
    // Methods
    bool has_final_method = false;
    AccessFlags promoted_flags;
    promoted_flags.set_flags(0);
3364

3365 3366 3367
    Array<AnnotationArray*>* methods_annotations = NULL;
    Array<AnnotationArray*>* methods_parameter_annotations = NULL;
    Array<AnnotationArray*>* methods_default_annotations = NULL;
3368
    Array<AnnotationArray*>* methods_type_annotations = NULL;
3369
    Array<Method*>* methods = parse_methods(loader_data,
3370 3371 3372 3373 3374 3375
                                            cp, access_flags.is_interface(),
                                            &promoted_flags,
                                            &has_final_method,
                                            &methods_annotations,
                                            &methods_parameter_annotations,
                                            &methods_default_annotations,
3376
                                            &methods_type_annotations,
3377
                                            &has_default_methods,
3378
                                            CHECK_(nullHandle));
D
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3379

3380 3381
    // Additional attributes
    ClassAnnotationCollector parsed_annotations;
3382
    parse_classfile_attributes(loader_data, cp, &parsed_annotations, CHECK_(nullHandle));
3383 3384 3385 3386

    // Make sure this is the end of class file stream
    guarantee_property(cfs->at_eos(), "Extra bytes at the end of class file %s", CHECK_(nullHandle));

D
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3387
    // We check super class after class file is parsed and format is checked
3388
    if (super_class_index > 0 && super_klass.is_null()) {
3389
      Symbol*  sk  = cp->klass_name_at(super_class_index);
D
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3390 3391 3392
      if (access_flags.is_interface()) {
        // Before attempting to resolve the superclass, check for class format
        // errors not checked yet.
3393
        guarantee_property(sk == vmSymbols::java_lang_Object(),
D
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3394 3395 3396
                           "Interfaces must have java.lang.Object as superclass in class file %s",
                           CHECK_(nullHandle));
      }
3397 3398 3399 3400 3401
      Klass* k = SystemDictionary::resolve_super_or_fail(class_name, sk,
                                                         class_loader,
                                                         protection_domain,
                                                         true,
                                                         CHECK_(nullHandle));
3402

D
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3403 3404
      KlassHandle kh (THREAD, k);
      super_klass = instanceKlassHandle(THREAD, kh());
3405 3406
    }
    if (super_klass.not_null()) {
3407 3408 3409 3410 3411

      if (super_klass->has_default_methods()) {
        has_default_methods = true;
      }

D
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3412 3413 3414 3415
      if (super_klass->is_interface()) {
        ResourceMark rm(THREAD);
        Exceptions::fthrow(
          THREAD_AND_LOCATION,
3416
          vmSymbols::java_lang_IncompatibleClassChangeError(),
D
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3417 3418 3419 3420 3421 3422 3423 3424 3425 3426 3427 3428 3429
          "class %s has interface %s as super class",
          class_name->as_klass_external_name(),
          super_klass->external_name()
        );
        return nullHandle;
      }
      // Make sure super class is not final
      if (super_klass->is_final()) {
        THROW_MSG_(vmSymbols::java_lang_VerifyError(), "Cannot inherit from final class", nullHandle);
      }
    }

    // Compute the transitive list of all unique interfaces implemented by this class
3430
    Array<Klass*>* transitive_interfaces = compute_transitive_interfaces(loader_data, super_klass, local_interfaces, CHECK_(nullHandle));
D
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3431 3432

    // sort methods
3433 3434
    Array<int>* method_ordering = sort_methods(loader_data,
                                               methods,
3435 3436 3437
                                               methods_annotations,
                                               methods_parameter_annotations,
                                               methods_default_annotations,
3438
                                               methods_type_annotations,
3439
                                               CHECK_(nullHandle));
D
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3440 3441 3442 3443 3444 3445 3446 3447 3448

    // promote flags from parse_methods() to the klass' flags
    access_flags.add_promoted_flags(promoted_flags.as_int());

    // Size of Java vtable (in words)
    int vtable_size = 0;
    int itable_size = 0;
    int num_miranda_methods = 0;

3449 3450 3451 3452 3453
    GrowableArray<Method*> all_mirandas(20);

    klassVtable::compute_vtable_size_and_num_mirandas(
        &vtable_size, &num_miranda_methods, &all_mirandas, super_klass(), methods,
        access_flags, class_loader, class_name, local_interfaces,
3454
                                                      CHECK_(nullHandle));
D
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3455 3456 3457 3458

    // Size of Java itable (in words)
    itable_size = access_flags.is_interface() ? 0 : klassItable::compute_itable_size(transitive_interfaces);

3459 3460 3461 3462
    // get the padding width from the option
    // TODO: Ask VM about specific CPU we are running on
    int pad_size = ContendedPaddingWidth;

D
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3463 3464 3465 3466 3467 3468 3469 3470 3471 3472
    // Field size and offset computation
    int nonstatic_field_size = super_klass() == NULL ? 0 : super_klass->nonstatic_field_size();
#ifndef PRODUCT
    int orig_nonstatic_field_size = 0;
#endif
    int next_static_oop_offset;
    int next_static_double_offset;
    int next_static_word_offset;
    int next_static_short_offset;
    int next_static_byte_offset;
3473
    int next_static_padded_offset;
D
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3474 3475 3476 3477 3478 3479 3480 3481 3482
    int next_nonstatic_oop_offset;
    int next_nonstatic_double_offset;
    int next_nonstatic_word_offset;
    int next_nonstatic_short_offset;
    int next_nonstatic_byte_offset;
    int next_nonstatic_type_offset;
    int first_nonstatic_oop_offset;
    int first_nonstatic_field_offset;
    int next_nonstatic_field_offset;
3483 3484 3485 3486 3487 3488 3489 3490 3491 3492 3493 3494 3495 3496 3497 3498 3499 3500 3501
    int next_nonstatic_padded_offset;

    // Count the contended fields by type.
    int static_contended_count = 0;
    int nonstatic_contended_count = 0;
    FieldAllocationCount fac_contended;
    for (AllFieldStream fs(fields, cp); !fs.done(); fs.next()) {
      FieldAllocationType atype = (FieldAllocationType) fs.allocation_type();
      if (fs.is_contended()) {
        fac_contended.count[atype]++;
        if (fs.access_flags().is_static()) {
          static_contended_count++;
        } else {
          nonstatic_contended_count++;
        }
      }
    }
    int contended_count = static_contended_count + nonstatic_contended_count;

D
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3502 3503

    // Calculate the starting byte offsets
3504
    next_static_oop_offset      = InstanceMirrorKlass::offset_of_static_fields();
3505 3506 3507 3508 3509 3510

    // class is contended, pad before all the fields
    if (parsed_annotations.is_contended()) {
      next_static_oop_offset += pad_size;
    }

D
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3511
    next_static_double_offset   = next_static_oop_offset +
3512
                                  ((fac.count[STATIC_OOP] - fac_contended.count[STATIC_OOP]) * heapOopSize);
3513
    if ( fac.count[STATIC_DOUBLE] &&
D
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3514 3515 3516 3517 3518 3519
         (Universe::field_type_should_be_aligned(T_DOUBLE) ||
          Universe::field_type_should_be_aligned(T_LONG)) ) {
      next_static_double_offset = align_size_up(next_static_double_offset, BytesPerLong);
    }

    next_static_word_offset     = next_static_double_offset +
3520
                                  ((fac.count[STATIC_DOUBLE] - fac_contended.count[STATIC_DOUBLE]) * BytesPerLong);
D
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3521
    next_static_short_offset    = next_static_word_offset +
3522
                                  ((fac.count[STATIC_WORD]   - fac_contended.count[STATIC_WORD]) * BytesPerInt);
D
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3523
    next_static_byte_offset     = next_static_short_offset +
3524 3525 3526
                                  ((fac.count[STATIC_SHORT]  - fac_contended.count[STATIC_SHORT]) * BytesPerShort);
    next_static_padded_offset   = next_static_byte_offset +
                                  ((fac.count[STATIC_BYTE]   - fac_contended.count[STATIC_BYTE]) * 1);
D
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3528 3529
    first_nonstatic_field_offset = instanceOopDesc::base_offset_in_bytes() +
                                   nonstatic_field_size * heapOopSize;
3530 3531 3532 3533 3534 3535

    // class is contended, pad before all the fields
    if (parsed_annotations.is_contended()) {
      first_nonstatic_field_offset += pad_size;
    }

3536 3537
    next_nonstatic_field_offset = first_nonstatic_field_offset;

3538 3539 3540 3541 3542
    unsigned int nonstatic_double_count = fac.count[NONSTATIC_DOUBLE] - fac_contended.count[NONSTATIC_DOUBLE];
    unsigned int nonstatic_word_count   = fac.count[NONSTATIC_WORD]   - fac_contended.count[NONSTATIC_WORD];
    unsigned int nonstatic_short_count  = fac.count[NONSTATIC_SHORT]  - fac_contended.count[NONSTATIC_SHORT];
    unsigned int nonstatic_byte_count   = fac.count[NONSTATIC_BYTE]   - fac_contended.count[NONSTATIC_BYTE];
    unsigned int nonstatic_oop_count    = fac.count[NONSTATIC_OOP]    - fac_contended.count[NONSTATIC_OOP];
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3543

3544 3545 3546 3547 3548 3549 3550 3551
    bool super_has_nonstatic_fields =
            (super_klass() != NULL && super_klass->has_nonstatic_fields());
    bool has_nonstatic_fields  =  super_has_nonstatic_fields ||
            ((nonstatic_double_count + nonstatic_word_count +
              nonstatic_short_count + nonstatic_byte_count +
              nonstatic_oop_count) != 0);


3552 3553 3554 3555
    // Prepare list of oops for oop map generation.
    int* nonstatic_oop_offsets;
    unsigned int* nonstatic_oop_counts;
    unsigned int nonstatic_oop_map_count = 0;
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3556 3557

    nonstatic_oop_offsets = NEW_RESOURCE_ARRAY_IN_THREAD(
3558
              THREAD, int, nonstatic_oop_count + 1);
3559
    nonstatic_oop_counts  = NEW_RESOURCE_ARRAY_IN_THREAD(
3560
              THREAD, unsigned int, nonstatic_oop_count + 1);
D
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3561

3562
    first_nonstatic_oop_offset = 0; // will be set for first oop field
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3563 3564 3565 3566

#ifndef PRODUCT
    if( PrintCompactFieldsSavings ) {
      next_nonstatic_double_offset = next_nonstatic_field_offset +
3567
                                     (nonstatic_oop_count * heapOopSize);
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3568 3569 3570 3571 3572 3573 3574 3575 3576 3577
      if ( nonstatic_double_count > 0 ) {
        next_nonstatic_double_offset = align_size_up(next_nonstatic_double_offset, BytesPerLong);
      }
      next_nonstatic_word_offset  = next_nonstatic_double_offset +
                                    (nonstatic_double_count * BytesPerLong);
      next_nonstatic_short_offset = next_nonstatic_word_offset +
                                    (nonstatic_word_count * BytesPerInt);
      next_nonstatic_byte_offset  = next_nonstatic_short_offset +
                                    (nonstatic_short_count * BytesPerShort);
      next_nonstatic_type_offset  = align_size_up((next_nonstatic_byte_offset +
3578
                                    nonstatic_byte_count ), heapOopSize );
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3579
      orig_nonstatic_field_size   = nonstatic_field_size +
3580
      ((next_nonstatic_type_offset - first_nonstatic_field_offset)/heapOopSize);
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3581 3582 3583 3584
    }
#endif
    bool compact_fields   = CompactFields;
    int  allocation_style = FieldsAllocationStyle;
3585 3586
    if( allocation_style < 0 || allocation_style > 2 ) { // Out of range?
      assert(false, "0 <= FieldsAllocationStyle <= 2");
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3587 3588 3589 3590 3591 3592 3593
      allocation_style = 1; // Optimistic
    }

    // The next classes have predefined hard-coded fields offsets
    // (see in JavaClasses::compute_hard_coded_offsets()).
    // Use default fields allocation order for them.
    if( (allocation_style != 0 || compact_fields ) && class_loader.is_null() &&
3594 3595 3596 3597 3598 3599 3600 3601 3602 3603 3604 3605 3606 3607 3608 3609
        (class_name == vmSymbols::java_lang_AssertionStatusDirectives() ||
         class_name == vmSymbols::java_lang_Class() ||
         class_name == vmSymbols::java_lang_ClassLoader() ||
         class_name == vmSymbols::java_lang_ref_Reference() ||
         class_name == vmSymbols::java_lang_ref_SoftReference() ||
         class_name == vmSymbols::java_lang_StackTraceElement() ||
         class_name == vmSymbols::java_lang_String() ||
         class_name == vmSymbols::java_lang_Throwable() ||
         class_name == vmSymbols::java_lang_Boolean() ||
         class_name == vmSymbols::java_lang_Character() ||
         class_name == vmSymbols::java_lang_Float() ||
         class_name == vmSymbols::java_lang_Double() ||
         class_name == vmSymbols::java_lang_Byte() ||
         class_name == vmSymbols::java_lang_Short() ||
         class_name == vmSymbols::java_lang_Integer() ||
         class_name == vmSymbols::java_lang_Long())) {
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3610 3611 3612 3613 3614
      allocation_style = 0;     // Allocate oops first
      compact_fields   = false; // Don't compact fields
    }

    if( allocation_style == 0 ) {
3615
      // Fields order: oops, longs/doubles, ints, shorts/chars, bytes, padded fields
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3616 3617
      next_nonstatic_oop_offset    = next_nonstatic_field_offset;
      next_nonstatic_double_offset = next_nonstatic_oop_offset +
3618
                                      (nonstatic_oop_count * heapOopSize);
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3619
    } else if( allocation_style == 1 ) {
3620
      // Fields order: longs/doubles, ints, shorts/chars, bytes, oops, padded fields
D
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3621
      next_nonstatic_double_offset = next_nonstatic_field_offset;
3622 3623 3624 3625
    } else if( allocation_style == 2 ) {
      // Fields allocation: oops fields in super and sub classes are together.
      if( nonstatic_field_size > 0 && super_klass() != NULL &&
          super_klass->nonstatic_oop_map_size() > 0 ) {
3626
        int map_count = super_klass->nonstatic_oop_map_count();
3627
        OopMapBlock* first_map = super_klass->start_of_nonstatic_oop_maps();
3628
        OopMapBlock* last_map = first_map + map_count - 1;
3629 3630 3631 3632 3633 3634 3635 3636 3637 3638 3639 3640
        int next_offset = last_map->offset() + (last_map->count() * heapOopSize);
        if (next_offset == next_nonstatic_field_offset) {
          allocation_style = 0;   // allocate oops first
          next_nonstatic_oop_offset    = next_nonstatic_field_offset;
          next_nonstatic_double_offset = next_nonstatic_oop_offset +
                                         (nonstatic_oop_count * heapOopSize);
        }
      }
      if( allocation_style == 2 ) {
        allocation_style = 1;     // allocate oops last
        next_nonstatic_double_offset = next_nonstatic_field_offset;
      }
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3641 3642 3643 3644 3645 3646 3647 3648 3649 3650 3651 3652 3653
    } else {
      ShouldNotReachHere();
    }

    int nonstatic_oop_space_count   = 0;
    int nonstatic_word_space_count  = 0;
    int nonstatic_short_space_count = 0;
    int nonstatic_byte_space_count  = 0;
    int nonstatic_oop_space_offset;
    int nonstatic_word_space_offset;
    int nonstatic_short_space_offset;
    int nonstatic_byte_space_offset;

3654 3655
    if( nonstatic_double_count > 0 ) {
      int offset = next_nonstatic_double_offset;
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3656 3657 3658 3659 3660 3661 3662 3663 3664 3665 3666 3667 3668 3669 3670 3671 3672 3673 3674 3675 3676 3677 3678 3679 3680 3681 3682
      next_nonstatic_double_offset = align_size_up(offset, BytesPerLong);
      if( compact_fields && offset != next_nonstatic_double_offset ) {
        // Allocate available fields into the gap before double field.
        int length = next_nonstatic_double_offset - offset;
        assert(length == BytesPerInt, "");
        nonstatic_word_space_offset = offset;
        if( nonstatic_word_count > 0 ) {
          nonstatic_word_count      -= 1;
          nonstatic_word_space_count = 1; // Only one will fit
          length -= BytesPerInt;
          offset += BytesPerInt;
        }
        nonstatic_short_space_offset = offset;
        while( length >= BytesPerShort && nonstatic_short_count > 0 ) {
          nonstatic_short_count       -= 1;
          nonstatic_short_space_count += 1;
          length -= BytesPerShort;
          offset += BytesPerShort;
        }
        nonstatic_byte_space_offset = offset;
        while( length > 0 && nonstatic_byte_count > 0 ) {
          nonstatic_byte_count       -= 1;
          nonstatic_byte_space_count += 1;
          length -= 1;
        }
        // Allocate oop field in the gap if there are no other fields for that.
        nonstatic_oop_space_offset = offset;
3683
        if( length >= heapOopSize && nonstatic_oop_count > 0 &&
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3684 3685 3686
            allocation_style != 0 ) { // when oop fields not first
          nonstatic_oop_count      -= 1;
          nonstatic_oop_space_count = 1; // Only one will fit
3687 3688
          length -= heapOopSize;
          offset += heapOopSize;
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3689 3690 3691 3692 3693 3694 3695 3696 3697 3698
        }
      }
    }

    next_nonstatic_word_offset  = next_nonstatic_double_offset +
                                  (nonstatic_double_count * BytesPerLong);
    next_nonstatic_short_offset = next_nonstatic_word_offset +
                                  (nonstatic_word_count * BytesPerInt);
    next_nonstatic_byte_offset  = next_nonstatic_short_offset +
                                  (nonstatic_short_count * BytesPerShort);
3699 3700
    next_nonstatic_padded_offset = next_nonstatic_byte_offset +
                                  nonstatic_byte_count;
D
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3701

3702 3703 3704
    // let oops jump before padding with this allocation style
    if( allocation_style == 1 ) {
      next_nonstatic_oop_offset = next_nonstatic_padded_offset;
D
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3705
      if( nonstatic_oop_count > 0 ) {
3706
        next_nonstatic_oop_offset = align_size_up(next_nonstatic_oop_offset, heapOopSize);
D
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3707
      }
3708
      next_nonstatic_padded_offset = next_nonstatic_oop_offset + (nonstatic_oop_count * heapOopSize);
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3709 3710 3711 3712 3713
    }

    // Iterate over fields again and compute correct offsets.
    // The field allocation type was temporarily stored in the offset slot.
    // oop fields are located before non-oop fields (static and non-static).
3714
    for (AllFieldStream fs(fields, cp); !fs.done(); fs.next()) {
3715 3716 3717 3718 3719 3720 3721

      // skip already laid out fields
      if (fs.is_offset_set()) continue;

      // contended fields are handled below
      if (fs.is_contended()) continue;

D
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3722
      int real_offset;
3723 3724 3725
      FieldAllocationType atype = (FieldAllocationType) fs.allocation_type();

      // pack the rest of the fields
D
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3726 3727 3728
      switch (atype) {
        case STATIC_OOP:
          real_offset = next_static_oop_offset;
3729
          next_static_oop_offset += heapOopSize;
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3730 3731 3732 3733 3734 3735 3736 3737 3738 3739 3740 3741 3742 3743 3744 3745 3746 3747 3748 3749
          break;
        case STATIC_BYTE:
          real_offset = next_static_byte_offset;
          next_static_byte_offset += 1;
          break;
        case STATIC_SHORT:
          real_offset = next_static_short_offset;
          next_static_short_offset += BytesPerShort;
          break;
        case STATIC_WORD:
          real_offset = next_static_word_offset;
          next_static_word_offset += BytesPerInt;
          break;
        case STATIC_DOUBLE:
          real_offset = next_static_double_offset;
          next_static_double_offset += BytesPerLong;
          break;
        case NONSTATIC_OOP:
          if( nonstatic_oop_space_count > 0 ) {
            real_offset = nonstatic_oop_space_offset;
3750
            nonstatic_oop_space_offset += heapOopSize;
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3751 3752 3753
            nonstatic_oop_space_count  -= 1;
          } else {
            real_offset = next_nonstatic_oop_offset;
3754
            next_nonstatic_oop_offset += heapOopSize;
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3755 3756 3757 3758
          }
          // Update oop maps
          if( nonstatic_oop_map_count > 0 &&
              nonstatic_oop_offsets[nonstatic_oop_map_count - 1] ==
3759 3760 3761
              real_offset -
              int(nonstatic_oop_counts[nonstatic_oop_map_count - 1]) *
              heapOopSize ) {
D
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3762
            // Extend current oop map
3763
            nonstatic_oop_counts[nonstatic_oop_map_count - 1] += 1;
D
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3764 3765
          } else {
            // Create new oop map
3766
            nonstatic_oop_offsets[nonstatic_oop_map_count] = real_offset;
3767
            nonstatic_oop_counts [nonstatic_oop_map_count] = 1;
D
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3768 3769 3770 3771 3772 3773 3774 3775 3776 3777 3778 3779 3780 3781 3782 3783 3784 3785 3786 3787 3788 3789 3790 3791 3792 3793 3794 3795 3796 3797 3798 3799 3800 3801 3802 3803 3804 3805 3806 3807 3808 3809 3810
            nonstatic_oop_map_count += 1;
            if( first_nonstatic_oop_offset == 0 ) { // Undefined
              first_nonstatic_oop_offset = real_offset;
            }
          }
          break;
        case NONSTATIC_BYTE:
          if( nonstatic_byte_space_count > 0 ) {
            real_offset = nonstatic_byte_space_offset;
            nonstatic_byte_space_offset += 1;
            nonstatic_byte_space_count  -= 1;
          } else {
            real_offset = next_nonstatic_byte_offset;
            next_nonstatic_byte_offset += 1;
          }
          break;
        case NONSTATIC_SHORT:
          if( nonstatic_short_space_count > 0 ) {
            real_offset = nonstatic_short_space_offset;
            nonstatic_short_space_offset += BytesPerShort;
            nonstatic_short_space_count  -= 1;
          } else {
            real_offset = next_nonstatic_short_offset;
            next_nonstatic_short_offset += BytesPerShort;
          }
          break;
        case NONSTATIC_WORD:
          if( nonstatic_word_space_count > 0 ) {
            real_offset = nonstatic_word_space_offset;
            nonstatic_word_space_offset += BytesPerInt;
            nonstatic_word_space_count  -= 1;
          } else {
            real_offset = next_nonstatic_word_offset;
            next_nonstatic_word_offset += BytesPerInt;
          }
          break;
        case NONSTATIC_DOUBLE:
          real_offset = next_nonstatic_double_offset;
          next_nonstatic_double_offset += BytesPerLong;
          break;
        default:
          ShouldNotReachHere();
      }
3811
      fs.set_offset(real_offset);
D
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3812 3813
    }

3814 3815 3816 3817 3818 3819 3820 3821 3822 3823 3824 3825 3826 3827 3828 3829 3830 3831 3832 3833 3834 3835 3836 3837 3838 3839 3840 3841 3842 3843 3844 3845 3846 3847 3848 3849 3850 3851 3852 3853 3854 3855 3856 3857 3858 3859 3860 3861 3862 3863 3864 3865 3866 3867 3868 3869 3870 3871 3872 3873 3874 3875 3876 3877 3878 3879 3880 3881 3882 3883 3884 3885 3886 3887 3888 3889 3890 3891 3892 3893 3894 3895 3896 3897 3898 3899 3900 3901 3902 3903 3904 3905 3906 3907 3908 3909 3910 3911 3912 3913 3914 3915 3916 3917 3918 3919 3920 3921 3922 3923 3924 3925 3926 3927 3928 3929 3930 3931 3932 3933 3934 3935 3936 3937 3938 3939 3940 3941 3942 3943 3944 3945 3946 3947 3948 3949 3950 3951 3952 3953 3954 3955 3956 3957 3958 3959 3960 3961 3962 3963 3964 3965 3966 3967 3968 3969 3970 3971 3972 3973 3974 3975 3976 3977 3978 3979 3980 3981 3982 3983 3984 3985 3986 3987 3988 3989 3990 3991 3992 3993 3994 3995 3996 3997 3998 3999 4000 4001 4002 4003 4004 4005

    // Handle the contended cases.
    //
    // Each contended field should not intersect the cache line with another contended field.
    // In the absence of alignment information, we end up with pessimistically separating
    // the fields with full-width padding.
    //
    // Additionally, this should not break alignment for the fields, so we round the alignment up
    // for each field.
    if (contended_count > 0) {

      // if there is at least one contended field, we need to have pre-padding for them
      if (nonstatic_contended_count > 0) {
        next_nonstatic_padded_offset += pad_size;
      }

      // collect all contended groups
      BitMap bm(cp->size());
      for (AllFieldStream fs(fields, cp); !fs.done(); fs.next()) {
        // skip already laid out fields
        if (fs.is_offset_set()) continue;

        if (fs.is_contended()) {
          bm.set_bit(fs.contended_group());
        }
      }

      int current_group = -1;
      while ((current_group = (int)bm.get_next_one_offset(current_group + 1)) != (int)bm.size()) {

        for (AllFieldStream fs(fields, cp); !fs.done(); fs.next()) {

          // skip already laid out fields
          if (fs.is_offset_set()) continue;

          // skip non-contended fields and fields from different group
          if (!fs.is_contended() || (fs.contended_group() != current_group)) continue;

          // handle statics below
          if (fs.access_flags().is_static()) continue;

          int real_offset;
          FieldAllocationType atype = (FieldAllocationType) fs.allocation_type();

          switch (atype) {
            case NONSTATIC_BYTE:
              next_nonstatic_padded_offset = align_size_up(next_nonstatic_padded_offset, 1);
              real_offset = next_nonstatic_padded_offset;
              next_nonstatic_padded_offset += 1;
              break;

            case NONSTATIC_SHORT:
              next_nonstatic_padded_offset = align_size_up(next_nonstatic_padded_offset, BytesPerShort);
              real_offset = next_nonstatic_padded_offset;
              next_nonstatic_padded_offset += BytesPerShort;
              break;

            case NONSTATIC_WORD:
              next_nonstatic_padded_offset = align_size_up(next_nonstatic_padded_offset, BytesPerInt);
              real_offset = next_nonstatic_padded_offset;
              next_nonstatic_padded_offset += BytesPerInt;
              break;

            case NONSTATIC_DOUBLE:
              next_nonstatic_padded_offset = align_size_up(next_nonstatic_padded_offset, BytesPerLong);
              real_offset = next_nonstatic_padded_offset;
              next_nonstatic_padded_offset += BytesPerLong;
              break;

            case NONSTATIC_OOP:
              next_nonstatic_padded_offset = align_size_up(next_nonstatic_padded_offset, heapOopSize);
              real_offset = next_nonstatic_padded_offset;
              next_nonstatic_padded_offset += heapOopSize;

              // Create new oop map
              nonstatic_oop_offsets[nonstatic_oop_map_count] = real_offset;
              nonstatic_oop_counts [nonstatic_oop_map_count] = 1;
              nonstatic_oop_map_count += 1;
              if( first_nonstatic_oop_offset == 0 ) { // Undefined
                first_nonstatic_oop_offset = real_offset;
              }
              break;

            default:
              ShouldNotReachHere();
          }

          if (fs.contended_group() == 0) {
            // Contended group defines the equivalence class over the fields:
            // the fields within the same contended group are not inter-padded.
            // The only exception is default group, which does not incur the
            // equivalence, and so requires intra-padding.
            next_nonstatic_padded_offset += pad_size;
          }

          fs.set_offset(real_offset);
        } // for

        // Start laying out the next group.
        // Note that this will effectively pad the last group in the back;
        // this is expected to alleviate memory contention effects for
        // subclass fields and/or adjacent object.
        // If this was the default group, the padding is already in place.
        if (current_group != 0) {
          next_nonstatic_padded_offset += pad_size;
        }
      }

      // handle static fields

      // if there is at least one contended field, we need to have pre-padding for them
      if (static_contended_count > 0) {
        next_static_padded_offset += pad_size;
      }

      current_group = -1;
      while ((current_group = (int)bm.get_next_one_offset(current_group + 1)) != (int)bm.size()) {

        for (AllFieldStream fs(fields, cp); !fs.done(); fs.next()) {

          // skip already laid out fields
          if (fs.is_offset_set()) continue;

          // skip non-contended fields and fields from different group
          if (!fs.is_contended() || (fs.contended_group() != current_group)) continue;

          // non-statics already handled above
          if (!fs.access_flags().is_static()) continue;

          int real_offset;
          FieldAllocationType atype = (FieldAllocationType) fs.allocation_type();

          switch (atype) {

            case STATIC_BYTE:
              next_static_padded_offset = align_size_up(next_static_padded_offset, 1);
              real_offset = next_static_padded_offset;
              next_static_padded_offset += 1;
              break;

            case STATIC_SHORT:
              next_static_padded_offset = align_size_up(next_static_padded_offset, BytesPerShort);
              real_offset = next_static_padded_offset;
              next_static_padded_offset += BytesPerShort;
              break;

            case STATIC_WORD:
              next_static_padded_offset = align_size_up(next_static_padded_offset, BytesPerInt);
              real_offset = next_static_padded_offset;
              next_static_padded_offset += BytesPerInt;
              break;

            case STATIC_DOUBLE:
              next_static_padded_offset = align_size_up(next_static_padded_offset, BytesPerLong);
              real_offset = next_static_padded_offset;
              next_static_padded_offset += BytesPerLong;
              break;

            case STATIC_OOP:
              next_static_padded_offset = align_size_up(next_static_padded_offset, heapOopSize);
              real_offset = next_static_padded_offset;
              next_static_padded_offset += heapOopSize;
              break;

            default:
              ShouldNotReachHere();
          }

          if (fs.contended_group() == 0) {
            // Contended group defines the equivalence class over the fields:
            // the fields within the same contended group are not inter-padded.
            // The only exception is default group, which does not incur the
            // equivalence, and so requires intra-padding.
            next_static_padded_offset += pad_size;
          }

          fs.set_offset(real_offset);
        } // for

        // Start laying out the next group.
        // Note that this will effectively pad the last group in the back;
        // this is expected to alleviate memory contention effects for
        // subclass fields and/or adjacent object.
        // If this was the default group, the padding is already in place.
        if (current_group != 0) {
          next_static_padded_offset += pad_size;
        }

      }

    } // handle contended

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4006 4007 4008
    // Size of instances
    int instance_size;

4009 4010 4011 4012 4013 4014 4015 4016 4017 4018 4019 4020 4021 4022 4023 4024 4025 4026
    int notaligned_offset = next_nonstatic_padded_offset;

    // Entire class is contended, pad in the back.
    // This helps to alleviate memory contention effects for subclass fields
    // and/or adjacent object.
    if (parsed_annotations.is_contended()) {
      notaligned_offset += pad_size;
      next_static_padded_offset += pad_size;
    }

    int next_static_type_offset     = align_size_up(next_static_padded_offset, wordSize);
    int static_field_size           = (next_static_type_offset -
                                  InstanceMirrorKlass::offset_of_static_fields()) / wordSize;

    next_nonstatic_type_offset = align_size_up(notaligned_offset, heapOopSize );
    nonstatic_field_size = nonstatic_field_size + ((next_nonstatic_type_offset
                                   - first_nonstatic_field_offset)/heapOopSize);

4027
    next_nonstatic_type_offset = align_size_up(notaligned_offset, wordSize );
D
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4028 4029
    instance_size = align_object_size(next_nonstatic_type_offset / wordSize);

4030 4031 4032
    assert(instance_size == align_object_size(align_size_up(
                (instanceOopDesc::base_offset_in_bytes() + nonstatic_field_size*heapOopSize + ((parsed_annotations.is_contended()) ? pad_size : 0)),
            wordSize) / wordSize), "consistent layout helper value");
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4033

4034
    // Number of non-static oop map blocks allocated at end of klass.
4035 4036 4037
    const unsigned int total_oop_map_count =
      compute_oop_map_count(super_klass, nonstatic_oop_map_count,
                            first_nonstatic_oop_offset);
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4038 4039 4040 4041 4042 4043 4044 4045 4046

    // Compute reference type
    ReferenceType rt;
    if (super_klass() == NULL) {
      rt = REF_NONE;
    } else {
      rt = super_klass->reference_type();
    }

4047 4048 4049 4050 4051
    // We can now create the basic Klass* for this klass
    int total_oop_map_size2 =
      InstanceKlass::nonstatic_oop_map_size(total_oop_map_count);

    Klass* ik = InstanceKlass::allocate_instance_klass(loader_data,
4052 4053 4054 4055 4056 4057 4058 4059 4060 4061
                                                       vtable_size,
                                                       itable_size,
                                                       static_field_size,
                                                       total_oop_map_size2,
                                                       rt,
                                                       access_flags,
                                                       name,
                                                       super_klass(),
                                                       host_klass,
                                                       CHECK_(nullHandle));
4062 4063 4064 4065 4066

    // Add all classes to our internal class loader list here,
    // including classes in the bootstrap (NULL) class loader.
    loader_data->add_class(ik);

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4067 4068
    instanceKlassHandle this_klass (THREAD, ik);

4069 4070 4071
    assert(this_klass->static_field_size() == static_field_size, "sanity");
    assert(this_klass->nonstatic_oop_map_count() == total_oop_map_count,
           "sanity");
D
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4072 4073

    // Fill in information already parsed
4074
    this_klass->set_should_verify_class(verify);
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4075 4076 4077 4078 4079 4080
    jint lh = Klass::instance_layout_helper(instance_size, false);
    this_klass->set_layout_helper(lh);
    assert(this_klass->oop_is_instance(), "layout is correct");
    assert(this_klass->size_helper() == instance_size, "correct size_helper");
    // Not yet: supers are done below to support the new subtype-checking fields
    //this_klass->set_super(super_klass());
4081
    this_klass->set_class_loader_data(loader_data);
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4082
    this_klass->set_nonstatic_field_size(nonstatic_field_size);
4083
    this_klass->set_has_nonstatic_fields(has_nonstatic_fields);
4084
    this_klass->set_static_oop_field_count(fac.count[STATIC_OOP]);
D
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4085
    cp->set_pool_holder(this_klass());
4086
    error_handler.set_in_error(false);   // turn off error handler for cp
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4087
    this_klass->set_constants(cp());
4088 4089 4090
    this_klass->set_local_interfaces(local_interfaces);
    this_klass->set_fields(fields, java_fields_count);
    this_klass->set_methods(methods);
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4091 4092 4093
    if (has_final_method) {
      this_klass->set_has_final_method();
    }
4094 4095 4096
    this_klass->set_method_ordering(method_ordering);
    // The InstanceKlass::_methods_jmethod_ids cache and the
    // InstanceKlass::_methods_cached_itable_indices cache are
4097 4098
    // both managed on the assumption that the initial cache
    // size is equal to the number of methods in the class. If
4099
    // that changes, then InstanceKlass::idnum_can_increment()
4100
    // has to be changed accordingly.
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4101 4102
    this_klass->set_initial_method_idnum(methods->length());
    this_klass->set_name(cp->klass_name_at(this_class_index));
T
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4103
    if (is_anonymous())  // I am well known to myself
4104
      cp->klass_at_put(this_class_index, this_klass()); // eagerly resolve
4105

4106
    // Allocate an annotation type if needed.
4107 4108 4109
    if (fields_annotations != NULL ||
        methods_annotations != NULL ||
        methods_parameter_annotations != NULL ||
4110 4111 4112
        methods_default_annotations != NULL ||
        fields_type_annotations != NULL ||
        methods_type_annotations != NULL) {
4113 4114 4115 4116 4117 4118 4119 4120 4121
      Annotations* anno = Annotations::allocate(loader_data,
                            fields_annotations, methods_annotations,
                            methods_parameter_annotations,
                            methods_default_annotations, CHECK_(nullHandle));
      this_klass->set_annotations(anno);
    } else {
      this_klass->set_annotations(NULL);
    }

4122 4123 4124 4125 4126 4127 4128 4129 4130 4131
    if (fields_type_annotations != NULL ||
        methods_type_annotations != NULL) {
      assert(this_klass->annotations() != NULL, "annotations should have been allocated");
      Annotations* anno = Annotations::allocate(loader_data,
                                                fields_type_annotations,
                                                methods_type_annotations,
                                                NULL,
                                                NULL, CHECK_(nullHandle));
      this_klass->annotations()->set_type_annotations(anno);
    }
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4132 4133 4134

    this_klass->set_minor_version(minor_version);
    this_klass->set_major_version(major_version);
4135
    this_klass->set_has_default_methods(has_default_methods);
D
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4136

4137
    // Set up Method*::intrinsic_id as soon as we know the names of methods.
4138 4139 4140
    // (We used to do this lazily, but now we query it in Rewriter,
    // which is eagerly done for every method, so we might as well do it now,
    // when everything is fresh in memory.)
4141
    if (Method::klass_id_for_intrinsics(this_klass()) != vmSymbols::NO_SID) {
4142
      for (int j = 0; j < methods->length(); j++) {
4143
        methods->at(j)->init_intrinsic_id();
4144 4145 4146
      }
    }

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4147
    if (cached_class_file_bytes != NULL) {
4148
      // JVMTI: we have an InstanceKlass now, tell it about the cached bytes
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4149 4150 4151 4152
      this_klass->set_cached_class_file(cached_class_file_bytes,
                                        cached_class_file_length);
    }

4153
    // Fill in field values obtained by parse_classfile_attributes
4154
    if (parsed_annotations.has_any_annotations())
4155
      parsed_annotations.apply_to(this_klass);
4156

4157 4158 4159 4160 4161
    // Create annotations
    if (_annotations != NULL && this_klass->annotations() == NULL) {
      Annotations* anno = Annotations::allocate(loader_data, CHECK_NULL);
      this_klass->set_annotations(anno);
    }
4162
    apply_parsed_class_attributes(this_klass);
D
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4163

4164 4165 4166 4167 4168 4169 4170 4171 4172 4173 4174 4175 4176
    // Create type annotations
    if (_type_annotations != NULL) {
      if (this_klass->annotations() == NULL) {
        Annotations* anno = Annotations::allocate(loader_data, CHECK_NULL);
        this_klass->set_annotations(anno);
      }
      if (this_klass->annotations()->type_annotations() == NULL) {
        Annotations* anno = Annotations::allocate(loader_data, CHECK_NULL);
        this_klass->annotations()->set_type_annotations(anno);
      }
      this_klass->annotations()->type_annotations()->set_class_annotations(_type_annotations);
    }

4177 4178 4179 4180 4181 4182 4183 4184 4185
    // Miranda methods
    if ((num_miranda_methods > 0) ||
        // if this class introduced new miranda methods or
        (super_klass.not_null() && (super_klass->has_miranda_methods()))
        // super class exists and this class inherited miranda methods
        ) {
      this_klass->set_has_miranda_methods(); // then set a flag
    }

4186
    this_klass->set_transitive_interfaces(transitive_interfaces);
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4187 4188 4189 4190 4191 4192 4193

    // Fill in information needed to compute superclasses.
    this_klass->initialize_supers(super_klass(), CHECK_(nullHandle));

    // Initialize itable offset tables
    klassItable::setup_itable_offset_table(this_klass);

4194
    // Compute transitive closure of interfaces this class implements
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4195
    // Do final class setup
4196
    fill_oop_maps(this_klass, nonstatic_oop_map_count, nonstatic_oop_offsets, nonstatic_oop_counts);
D
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4197

4198
    // Fill in has_finalizer, has_vanilla_constructor, and layout_helper
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4199 4200 4201 4202 4203 4204 4205 4206 4207 4208 4209 4210 4211 4212 4213 4214 4215
    set_precomputed_flags(this_klass);

    // reinitialize modifiers, using the InnerClasses attribute
    int computed_modifiers = this_klass->compute_modifier_flags(CHECK_(nullHandle));
    this_klass->set_modifier_flags(computed_modifiers);

    // check if this class can access its super class
    check_super_class_access(this_klass, CHECK_(nullHandle));

    // check if this class can access its superinterfaces
    check_super_interface_access(this_klass, CHECK_(nullHandle));

    // check if this class overrides any final method
    check_final_method_override(this_klass, CHECK_(nullHandle));

    // check that if this class is an interface then it doesn't have static methods
    if (this_klass->is_interface()) {
4216 4217 4218 4219
      /* An interface in a JAVA 8 classfile can be static */
      if (_major_version < JAVA_8_VERSION) {
        check_illegal_static_method(this_klass, CHECK_(nullHandle));
      }
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4220 4221
    }

4222 4223 4224 4225 4226 4227 4228 4229 4230 4231 4232 4233 4234 4235 4236

#ifdef ASSERT
    if (ParseAllGenericSignatures) {
      parseAndPrintGenericSignatures(this_klass, CHECK_(nullHandle));
    }
#endif

    // Generate any default methods - default methods are interface methods
    // that have a default implementation.  This is new with Lambda project.
    if (has_default_methods && !access_flags.is_interface() &&
        local_interfaces->length() > 0) {
      DefaultMethods::generate_default_methods(
          this_klass(), &all_mirandas, CHECK_(nullHandle));
    }

4237 4238 4239
    // Allocate mirror and initialize static fields
    java_lang_Class::create_mirror(this_klass, CHECK_(nullHandle));

4240 4241 4242 4243 4244 4245 4246 4247 4248 4249 4250 4251
    // Allocate a simple java object for locking during class initialization.
    // This needs to be a java object because it can be held across a java call.
    typeArrayOop r = oopFactory::new_typeArray(T_INT, 0, CHECK_NULL);
    this_klass->set_init_lock(r);

    // TODO: Move these oops to the mirror
    this_klass->set_protection_domain(protection_domain());

    // Update the loader_data graph.
    record_defined_class_dependencies(this_klass, CHECK_NULL);

    ClassLoadingService::notify_class_loaded(InstanceKlass::cast(this_klass()),
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4252 4253 4254
                                             false /* not shared class */);

    if (TraceClassLoading) {
4255
      ResourceMark rm;
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4256 4257 4258 4259 4260 4261
      // print in a single call to reduce interleaving of output
      if (cfs->source() != NULL) {
        tty->print("[Loaded %s from %s]\n", this_klass->external_name(),
                   cfs->source());
      } else if (class_loader.is_null()) {
        if (THREAD->is_Java_thread()) {
4262
          Klass* caller = ((JavaThread*)THREAD)->security_get_caller_class(1);
D
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4263 4264
          tty->print("[Loaded %s by instance of %s]\n",
                     this_klass->external_name(),
4265
                     InstanceKlass::cast(caller)->external_name());
D
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4266 4267 4268 4269 4270
        } else {
          tty->print("[Loaded %s]\n", this_klass->external_name());
        }
      } else {
        tty->print("[Loaded %s from %s]\n", this_klass->external_name(),
4271
                   InstanceKlass::cast(class_loader->klass())->external_name());
D
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4272 4273 4274 4275
      }
    }

    if (TraceClassResolution) {
4276
      ResourceMark rm;
D
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4277
      // print out the superclass.
H
hseigel 已提交
4278
      const char * from = this_klass()->external_name();
D
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4279
      if (this_klass->java_super() != NULL) {
4280
        tty->print("RESOLVE %s %s (super)\n", from, InstanceKlass::cast(this_klass->java_super())->external_name());
D
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4281 4282
      }
      // print out each of the interface classes referred to by this class.
4283 4284
      Array<Klass*>* local_interfaces = this_klass->local_interfaces();
      if (local_interfaces != NULL) {
D
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4285 4286
        int length = local_interfaces->length();
        for (int i = 0; i < length; i++) {
4287 4288
          Klass* k = local_interfaces->at(i);
          InstanceKlass* to_class = InstanceKlass::cast(k);
D
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4289
          const char * to = to_class->external_name();
4290
          tty->print("RESOLVE %s %s (interface)\n", from, to);
D
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4291 4292 4293 4294 4295 4296
        }
      }
    }

#ifndef PRODUCT
    if( PrintCompactFieldsSavings ) {
4297
      ResourceMark rm;
D
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4298
      if( nonstatic_field_size < orig_nonstatic_field_size ) {
4299 4300 4301 4302
        tty->print("[Saved %d of %d bytes in %s]\n",
                 (orig_nonstatic_field_size - nonstatic_field_size)*heapOopSize,
                 orig_nonstatic_field_size*heapOopSize,
                 this_klass->external_name());
D
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4303
      } else if( nonstatic_field_size > orig_nonstatic_field_size ) {
4304 4305 4306 4307
        tty->print("[Wasted %d over %d bytes in %s]\n",
                 (nonstatic_field_size - orig_nonstatic_field_size)*heapOopSize,
                 orig_nonstatic_field_size*heapOopSize,
                 this_klass->external_name());
D
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4308 4309 4310 4311
      }
    }
#endif

4312 4313 4314 4315 4316 4317 4318 4319 4320 4321 4322 4323
#ifndef PRODUCT
    if (PrintFieldLayout) {
      print_field_layout(name,
            fields,
            cp,
            instance_size,
            first_nonstatic_field_offset,
            next_nonstatic_field_offset,
            next_static_type_offset);
    }
#endif

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4324 4325 4326 4327
    // preserve result across HandleMark
    preserve_this_klass = this_klass();
  }

4328 4329
  // Create new handle outside HandleMark (might be needed for
  // Extended Class Redefinition)
D
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4330
  instanceKlassHandle this_klass (THREAD, preserve_this_klass);
4331
  debug_only(this_klass->verify();)
D
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4332 4333 4334 4335

  return this_klass;
}

4336 4337 4338 4339 4340 4341 4342 4343 4344 4345 4346 4347 4348 4349 4350 4351 4352 4353 4354 4355 4356 4357 4358 4359 4360 4361 4362 4363 4364 4365 4366 4367
void ClassFileParser::print_field_layout(Symbol* name,
                                         Array<u2>* fields,
                                         constantPoolHandle cp,
                                         int instance_size,
                                         int instance_fields_start,
                                         int instance_fields_end,
                                         int static_fields_end) {
  tty->print("%s: field layout\n", name->as_klass_external_name());
  tty->print("  @%3d %s\n", instance_fields_start, "--- instance fields start ---");
  for (AllFieldStream fs(fields, cp); !fs.done(); fs.next()) {
    if (!fs.access_flags().is_static()) {
      tty->print("  @%3d \"%s\" %s\n",
          fs.offset(),
          fs.name()->as_klass_external_name(),
          fs.signature()->as_klass_external_name());
    }
  }
  tty->print("  @%3d %s\n", instance_fields_end, "--- instance fields end ---");
  tty->print("  @%3d %s\n", instance_size * wordSize, "--- instance ends ---");
  tty->print("  @%3d %s\n", InstanceMirrorKlass::offset_of_static_fields(), "--- static fields start ---");
  for (AllFieldStream fs(fields, cp); !fs.done(); fs.next()) {
    if (fs.access_flags().is_static()) {
      tty->print("  @%3d \"%s\" %s\n",
          fs.offset(),
          fs.name()->as_klass_external_name(),
          fs.signature()->as_klass_external_name());
    }
  }
  tty->print("  @%3d %s\n", static_fields_end, "--- static fields end ---");
  tty->print("\n");
}

4368 4369 4370 4371 4372 4373
unsigned int
ClassFileParser::compute_oop_map_count(instanceKlassHandle super,
                                       unsigned int nonstatic_oop_map_count,
                                       int first_nonstatic_oop_offset) {
  unsigned int map_count =
    super.is_null() ? 0 : super->nonstatic_oop_map_count();
D
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4374 4375
  if (nonstatic_oop_map_count > 0) {
    // We have oops to add to map
4376 4377
    if (map_count == 0) {
      map_count = nonstatic_oop_map_count;
D
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4378
    } else {
4379 4380 4381 4382
      // Check whether we should add a new map block or whether the last one can
      // be extended
      OopMapBlock* const first_map = super->start_of_nonstatic_oop_maps();
      OopMapBlock* const last_map = first_map + map_count - 1;
D
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4383

4384
      int next_offset = last_map->offset() + last_map->count() * heapOopSize;
D
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4385 4386 4387 4388 4389 4390
      if (next_offset == first_nonstatic_oop_offset) {
        // There is no gap bettwen superklass's last oop field and first
        // local oop field, merge maps.
        nonstatic_oop_map_count -= 1;
      } else {
        // Superklass didn't end with a oop field, add extra maps
4391
        assert(next_offset < first_nonstatic_oop_offset, "just checking");
D
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4392
      }
4393
      map_count += nonstatic_oop_map_count;
D
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4394 4395
    }
  }
4396
  return map_count;
D
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4397 4398 4399 4400
}


void ClassFileParser::fill_oop_maps(instanceKlassHandle k,
4401 4402 4403
                                    unsigned int nonstatic_oop_map_count,
                                    int* nonstatic_oop_offsets,
                                    unsigned int* nonstatic_oop_counts) {
D
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4404
  OopMapBlock* this_oop_map = k->start_of_nonstatic_oop_maps();
4405
  const InstanceKlass* const super = k->superklass();
4406
  const unsigned int super_count = super ? super->nonstatic_oop_map_count() : 0;
4407
  if (super_count > 0) {
D
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4408
    // Copy maps from superklass
4409
    OopMapBlock* super_oop_map = super->start_of_nonstatic_oop_maps();
4410
    for (unsigned int i = 0; i < super_count; ++i) {
D
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4411 4412 4413
      *this_oop_map++ = *super_oop_map++;
    }
  }
4414

D
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4415
  if (nonstatic_oop_map_count > 0) {
4416 4417 4418
    if (super_count + nonstatic_oop_map_count > k->nonstatic_oop_map_count()) {
      // The counts differ because there is no gap between superklass's last oop
      // field and the first local oop field.  Extend the last oop map copied
D
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4419 4420 4421 4422
      // from the superklass instead of creating new one.
      nonstatic_oop_map_count--;
      nonstatic_oop_offsets++;
      this_oop_map--;
4423
      this_oop_map->set_count(this_oop_map->count() + *nonstatic_oop_counts++);
D
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4424 4425
      this_oop_map++;
    }
4426

D
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4427 4428 4429
    // Add new map blocks, fill them
    while (nonstatic_oop_map_count-- > 0) {
      this_oop_map->set_offset(*nonstatic_oop_offsets++);
4430
      this_oop_map->set_count(*nonstatic_oop_counts++);
D
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4431 4432
      this_oop_map++;
    }
4433 4434
    assert(k->start_of_nonstatic_oop_maps() + k->nonstatic_oop_map_count() ==
           this_oop_map, "sanity");
D
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4435 4436 4437 4438 4439
  }
}


void ClassFileParser::set_precomputed_flags(instanceKlassHandle k) {
4440
  Klass* super = k->super();
D
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4441 4442 4443 4444 4445

  // Check if this klass has an empty finalize method (i.e. one with return bytecode only),
  // in which case we don't have to register objects as finalizable
  if (!_has_empty_finalizer) {
    if (_has_finalizer ||
4446
        (super != NULL && super->has_finalizer())) {
D
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4447 4448 4449 4450 4451 4452
      k->set_has_finalizer();
    }
  }

#ifdef ASSERT
  bool f = false;
4453
  Method* m = k->lookup_method(vmSymbols::finalize_method_name(),
D
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4454 4455 4456 4457 4458 4459 4460 4461
                                 vmSymbols::void_method_signature());
  if (m != NULL && !m->is_empty_method()) {
    f = true;
  }
  assert(f == k->has_finalizer(), "inconsistent has_finalizer");
#endif

  // Check if this klass supports the java.lang.Cloneable interface
4462 4463
  if (SystemDictionary::Cloneable_klass_loaded()) {
    if (k->is_subtype_of(SystemDictionary::Cloneable_klass())) {
D
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4464 4465 4466 4467 4468 4469 4470 4471 4472
      k->set_is_cloneable();
    }
  }

  // Check if this klass has a vanilla default constructor
  if (super == NULL) {
    // java.lang.Object has empty default constructor
    k->set_has_vanilla_constructor();
  } else {
H
hseigel 已提交
4473
    if (super->has_vanilla_constructor() &&
D
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4474 4475 4476 4477 4478
        _has_vanilla_constructor) {
      k->set_has_vanilla_constructor();
    }
#ifdef ASSERT
    bool v = false;
H
hseigel 已提交
4479
    if (super->has_vanilla_constructor()) {
4480
      Method* constructor = k->find_method(vmSymbols::object_initializer_name(
D
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4481 4482 4483 4484 4485 4486 4487 4488 4489 4490
), vmSymbols::void_method_signature());
      if (constructor != NULL && constructor->is_vanilla_constructor()) {
        v = true;
      }
    }
    assert(v == k->has_vanilla_constructor(), "inconsistent has_vanilla_constructor");
#endif
  }

  // If it cannot be fast-path allocated, set a bit in the layout helper.
4491
  // See documentation of InstanceKlass::can_be_fastpath_allocated().
D
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4492 4493 4494
  assert(k->size_helper() > 0, "layout_helper is initialized");
  if ((!RegisterFinalizersAtInit && k->has_finalizer())
      || k->is_abstract() || k->is_interface()
4495
      || (k->name() == vmSymbols::java_lang_Class() && k->class_loader() == NULL)
D
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4496 4497 4498 4499 4500 4501 4502
      || k->size_helper() >= FastAllocateSizeLimit) {
    // Forbid fast-path allocation.
    jint lh = Klass::instance_layout_helper(k->size_helper(), true);
    k->set_layout_helper(lh);
  }
}

4503 4504 4505 4506 4507 4508 4509 4510 4511 4512 4513 4514 4515 4516 4517 4518 4519 4520 4521 4522 4523 4524 4525
// Attach super classes and interface classes to class loader data
void ClassFileParser::record_defined_class_dependencies(instanceKlassHandle defined_klass, TRAPS) {
  ClassLoaderData * defining_loader_data = defined_klass->class_loader_data();
  if (defining_loader_data->is_the_null_class_loader_data()) {
      // Dependencies to null class loader data are implicit.
      return;
  } else {
    // add super class dependency
    Klass* super = defined_klass->super();
    if (super != NULL) {
      defining_loader_data->record_dependency(super, CHECK);
    }

    // add super interface dependencies
    Array<Klass*>* local_interfaces = defined_klass->local_interfaces();
    if (local_interfaces != NULL) {
      int length = local_interfaces->length();
      for (int i = 0; i < length; i++) {
        defining_loader_data->record_dependency(local_interfaces->at(i), CHECK);
      }
    }
  }
}
D
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4526 4527 4528

// utility method for appending and array with check for duplicates

4529
void append_interfaces(GrowableArray<Klass*>* result, Array<Klass*>* ifs) {
D
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4530 4531
  // iterate over new interfaces
  for (int i = 0; i < ifs->length(); i++) {
4532 4533
    Klass* e = ifs->at(i);
    assert(e->is_klass() && InstanceKlass::cast(e)->is_interface(), "just checking");
D
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4534
    // add new interface
4535
    result->append_if_missing(e);
D
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4536 4537 4538
  }
}

4539 4540

Array<Klass*>* ClassFileParser::compute_transitive_interfaces(ClassLoaderData* loader_data, instanceKlassHandle super, Array<Klass*>* local_ifs, TRAPS) {
D
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4541 4542 4543 4544 4545 4546 4547 4548 4549 4550 4551
  // Compute maximum size for transitive interfaces
  int max_transitive_size = 0;
  int super_size = 0;
  // Add superclass transitive interfaces size
  if (super.not_null()) {
    super_size = super->transitive_interfaces()->length();
    max_transitive_size += super_size;
  }
  // Add local interfaces' super interfaces
  int local_size = local_ifs->length();
  for (int i = 0; i < local_size; i++) {
4552 4553
    Klass* l = local_ifs->at(i);
    max_transitive_size += InstanceKlass::cast(l)->transitive_interfaces()->length();
D
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4554 4555 4556 4557 4558 4559
  }
  // Finally add local interfaces
  max_transitive_size += local_size;
  // Construct array
  if (max_transitive_size == 0) {
    // no interfaces, use canonicalized array
4560
    return Universe::the_empty_klass_array();
D
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4561 4562
  } else if (max_transitive_size == super_size) {
    // no new local interfaces added, share superklass' transitive interface array
4563
    return super->transitive_interfaces();
D
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4564 4565
  } else if (max_transitive_size == local_size) {
    // only local interfaces added, share local interface array
4566
    return local_ifs;
D
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4567
  } else {
4568 4569 4570
    ResourceMark rm;
    GrowableArray<Klass*>* result = new GrowableArray<Klass*>(max_transitive_size);

D
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4571 4572
    // Copy down from superclass
    if (super.not_null()) {
4573
      append_interfaces(result, super->transitive_interfaces());
D
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4574
    }
4575

D
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4576 4577
    // Copy down from local interfaces' superinterfaces
    for (int i = 0; i < local_ifs->length(); i++) {
4578 4579
      Klass* l = local_ifs->at(i);
      append_interfaces(result, InstanceKlass::cast(l)->transitive_interfaces());
D
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4580 4581
    }
    // Finally add local interfaces
4582 4583 4584 4585 4586 4587 4588 4589
    append_interfaces(result, local_ifs);

    // length will be less than the max_transitive_size if duplicates were removed
    int length = result->length();
    assert(length <= max_transitive_size, "just checking");
    Array<Klass*>* new_result = MetadataFactory::new_array<Klass*>(loader_data, length, CHECK_NULL);
    for (int i = 0; i < length; i++) {
      Klass* e = result->at(i);
D
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4590
        assert(e != NULL, "just checking");
4591
      new_result->at_put(i, e);
D
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4592
    }
4593
    return new_result;
D
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4594 4595 4596 4597 4598
  }
}


void ClassFileParser::check_super_class_access(instanceKlassHandle this_klass, TRAPS) {
4599
  Klass* super = this_klass->super();
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4600
  if ((super != NULL) &&
4601
      (!Reflection::verify_class_access(this_klass(), super, false))) {
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    ResourceMark rm(THREAD);
    Exceptions::fthrow(
      THREAD_AND_LOCATION,
4605
      vmSymbols::java_lang_IllegalAccessError(),
D
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      "class %s cannot access its superclass %s",
      this_klass->external_name(),
4608
      InstanceKlass::cast(super)->external_name()
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4609 4610 4611 4612 4613 4614 4615
    );
    return;
  }
}


void ClassFileParser::check_super_interface_access(instanceKlassHandle this_klass, TRAPS) {
4616
  Array<Klass*>* local_interfaces = this_klass->local_interfaces();
D
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  int lng = local_interfaces->length();
  for (int i = lng - 1; i >= 0; i--) {
4619
    Klass* k = local_interfaces->at(i);
H
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4620
    assert (k != NULL && k->is_interface(), "invalid interface");
4621
    if (!Reflection::verify_class_access(this_klass(), k, false)) {
D
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4622 4623 4624
      ResourceMark rm(THREAD);
      Exceptions::fthrow(
        THREAD_AND_LOCATION,
4625
        vmSymbols::java_lang_IllegalAccessError(),
D
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4626 4627
        "class %s cannot access its superinterface %s",
        this_klass->external_name(),
4628
        InstanceKlass::cast(k)->external_name()
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      );
      return;
    }
  }
}


void ClassFileParser::check_final_method_override(instanceKlassHandle this_klass, TRAPS) {
4637
  Array<Method*>* methods = this_klass->methods();
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  int num_methods = methods->length();

  // go thru each method and check if it overrides a final method
  for (int index = 0; index < num_methods; index++) {
4642
    Method* m = methods->at(index);
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4643 4644 4645 4646 4647 4648

    // skip private, static and <init> methods
    if ((!m->is_private()) &&
        (!m->is_static()) &&
        (m->name() != vmSymbols::object_initializer_name())) {

4649 4650
      Symbol* name = m->name();
      Symbol* signature = m->signature();
4651 4652
      Klass* k = this_klass->super();
      Method* super_m = NULL;
D
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4653 4654
      while (k != NULL) {
        // skip supers that don't have final methods.
4655
        if (k->has_final_method()) {
D
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4656
          // lookup a matching method in the super class hierarchy
4657
          super_m = InstanceKlass::cast(k)->lookup_method(name, signature);
D
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4658 4659 4660 4661 4662 4663
          if (super_m == NULL) {
            break; // didn't find any match; get out
          }

          if (super_m->is_final() &&
              // matching method in super is final
4664
              (Reflection::verify_field_access(this_klass(),
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4665 4666 4667 4668 4669 4670 4671 4672
                                               super_m->method_holder(),
                                               super_m->method_holder(),
                                               super_m->access_flags(), false))
            // this class can access super final method and therefore override
            ) {
            ResourceMark rm(THREAD);
            Exceptions::fthrow(
              THREAD_AND_LOCATION,
4673
              vmSymbols::java_lang_VerifyError(),
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4674 4675 4676 4677 4678 4679 4680 4681 4682
              "class %s overrides final method %s.%s",
              this_klass->external_name(),
              name->as_C_string(),
              signature->as_C_string()
            );
            return;
          }

          // continue to look from super_m's holder's super.
4683
          k = super_m->method_holder()->super();
D
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4684 4685 4686
          continue;
        }

4687
        k = k->super();
D
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4688 4689 4690 4691 4692 4693 4694 4695 4696
      }
    }
  }
}


// assumes that this_klass is an interface
void ClassFileParser::check_illegal_static_method(instanceKlassHandle this_klass, TRAPS) {
  assert(this_klass->is_interface(), "not an interface");
4697
  Array<Method*>* methods = this_klass->methods();
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  int num_methods = methods->length();

  for (int index = 0; index < num_methods; index++) {
4701
    Method* m = methods->at(index);
D
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4702 4703 4704 4705 4706
    // if m is static and not the init method, throw a verify error
    if ((m->is_static()) && (m->name() != vmSymbols::class_initializer_name())) {
      ResourceMark rm(THREAD);
      Exceptions::fthrow(
        THREAD_AND_LOCATION,
4707
        vmSymbols::java_lang_VerifyError(),
D
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4708 4709 4710 4711 4712 4713 4714 4715 4716 4717 4718 4719 4720 4721 4722 4723 4724 4725 4726 4727 4728 4729 4730 4731 4732 4733 4734 4735 4736
        "Illegal static method %s in interface %s",
        m->name()->as_C_string(),
        this_klass->external_name()
      );
      return;
    }
  }
}

// utility methods for format checking

void ClassFileParser::verify_legal_class_modifiers(jint flags, TRAPS) {
  if (!_need_verify) { return; }

  const bool is_interface  = (flags & JVM_ACC_INTERFACE)  != 0;
  const bool is_abstract   = (flags & JVM_ACC_ABSTRACT)   != 0;
  const bool is_final      = (flags & JVM_ACC_FINAL)      != 0;
  const bool is_super      = (flags & JVM_ACC_SUPER)      != 0;
  const bool is_enum       = (flags & JVM_ACC_ENUM)       != 0;
  const bool is_annotation = (flags & JVM_ACC_ANNOTATION) != 0;
  const bool major_gte_15  = _major_version >= JAVA_1_5_VERSION;

  if ((is_abstract && is_final) ||
      (is_interface && !is_abstract) ||
      (is_interface && major_gte_15 && (is_super || is_enum)) ||
      (!is_interface && major_gte_15 && is_annotation)) {
    ResourceMark rm(THREAD);
    Exceptions::fthrow(
      THREAD_AND_LOCATION,
4737
      vmSymbols::java_lang_ClassFormatError(),
D
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4738 4739 4740 4741 4742 4743 4744 4745 4746 4747 4748 4749 4750 4751 4752 4753 4754 4755
      "Illegal class modifiers in class %s: 0x%X",
      _class_name->as_C_string(), flags
    );
    return;
  }
}

bool ClassFileParser::has_illegal_visibility(jint flags) {
  const bool is_public    = (flags & JVM_ACC_PUBLIC)    != 0;
  const bool is_protected = (flags & JVM_ACC_PROTECTED) != 0;
  const bool is_private   = (flags & JVM_ACC_PRIVATE)   != 0;

  return ((is_public && is_protected) ||
          (is_public && is_private) ||
          (is_protected && is_private));
}

bool ClassFileParser::is_supported_version(u2 major, u2 minor) {
4756 4757 4758
  u2 max_version =
    JDK_Version::is_gte_jdk17x_version() ? JAVA_MAX_SUPPORTED_VERSION :
    (JDK_Version::is_gte_jdk16x_version() ? JAVA_6_VERSION : JAVA_1_5_VERSION);
D
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4759
  return (major >= JAVA_MIN_SUPPORTED_VERSION) &&
4760 4761
         (major <= max_version) &&
         ((major != max_version) ||
D
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4762 4763 4764 4765 4766 4767 4768 4769 4770 4771 4772 4773 4774 4775 4776 4777 4778 4779 4780 4781 4782 4783 4784 4785 4786 4787 4788 4789 4790 4791 4792 4793 4794 4795 4796
          (minor <= JAVA_MAX_SUPPORTED_MINOR_VERSION));
}

void ClassFileParser::verify_legal_field_modifiers(
    jint flags, bool is_interface, TRAPS) {
  if (!_need_verify) { return; }

  const bool is_public    = (flags & JVM_ACC_PUBLIC)    != 0;
  const bool is_protected = (flags & JVM_ACC_PROTECTED) != 0;
  const bool is_private   = (flags & JVM_ACC_PRIVATE)   != 0;
  const bool is_static    = (flags & JVM_ACC_STATIC)    != 0;
  const bool is_final     = (flags & JVM_ACC_FINAL)     != 0;
  const bool is_volatile  = (flags & JVM_ACC_VOLATILE)  != 0;
  const bool is_transient = (flags & JVM_ACC_TRANSIENT) != 0;
  const bool is_enum      = (flags & JVM_ACC_ENUM)      != 0;
  const bool major_gte_15 = _major_version >= JAVA_1_5_VERSION;

  bool is_illegal = false;

  if (is_interface) {
    if (!is_public || !is_static || !is_final || is_private ||
        is_protected || is_volatile || is_transient ||
        (major_gte_15 && is_enum)) {
      is_illegal = true;
    }
  } else { // not interface
    if (has_illegal_visibility(flags) || (is_final && is_volatile)) {
      is_illegal = true;
    }
  }

  if (is_illegal) {
    ResourceMark rm(THREAD);
    Exceptions::fthrow(
      THREAD_AND_LOCATION,
4797
      vmSymbols::java_lang_ClassFormatError(),
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4798 4799 4800 4801 4802 4803 4804
      "Illegal field modifiers in class %s: 0x%X",
      _class_name->as_C_string(), flags);
    return;
  }
}

void ClassFileParser::verify_legal_method_modifiers(
4805
    jint flags, bool is_interface, Symbol* name, TRAPS) {
D
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4806 4807 4808 4809 4810 4811 4812 4813 4814 4815 4816
  if (!_need_verify) { return; }

  const bool is_public       = (flags & JVM_ACC_PUBLIC)       != 0;
  const bool is_private      = (flags & JVM_ACC_PRIVATE)      != 0;
  const bool is_static       = (flags & JVM_ACC_STATIC)       != 0;
  const bool is_final        = (flags & JVM_ACC_FINAL)        != 0;
  const bool is_native       = (flags & JVM_ACC_NATIVE)       != 0;
  const bool is_abstract     = (flags & JVM_ACC_ABSTRACT)     != 0;
  const bool is_bridge       = (flags & JVM_ACC_BRIDGE)       != 0;
  const bool is_strict       = (flags & JVM_ACC_STRICT)       != 0;
  const bool is_synchronized = (flags & JVM_ACC_SYNCHRONIZED) != 0;
4817
  const bool is_protected    = (flags & JVM_ACC_PROTECTED)    != 0;
D
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4818
  const bool major_gte_15    = _major_version >= JAVA_1_5_VERSION;
4819
  const bool major_gte_8     = _major_version >= JAVA_8_VERSION;
D
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4820 4821 4822 4823 4824
  const bool is_initializer  = (name == vmSymbols::object_initializer_name());

  bool is_illegal = false;

  if (is_interface) {
4825 4826 4827 4828 4829 4830 4831 4832 4833 4834 4835 4836 4837 4838 4839 4840 4841 4842 4843 4844 4845 4846 4847 4848 4849 4850 4851
    if (major_gte_8) {
      // Class file version is JAVA_8_VERSION or later Methods of
      // interfaces may set any of the flags except ACC_PROTECTED,
      // ACC_FINAL, ACC_NATIVE, and ACC_SYNCHRONIZED; they must
      // have exactly one of the ACC_PUBLIC or ACC_PRIVATE flags set.
      if ((is_public == is_private) || /* Only one of private and public should be true - XNOR */
          (is_native || is_protected || is_final || is_synchronized) ||
          // If a specific method of a class or interface has its
          // ACC_ABSTRACT flag set, it must not have any of its
          // ACC_FINAL, ACC_NATIVE, ACC_PRIVATE, ACC_STATIC,
          // ACC_STRICT, or ACC_SYNCHRONIZED flags set.  No need to
          // check for ACC_FINAL, ACC_NATIVE or ACC_SYNCHRONIZED as
          // those flags are illegal irrespective of ACC_ABSTRACT being set or not.
          (is_abstract && (is_private || is_static || is_strict))) {
        is_illegal = true;
      }
    } else if (major_gte_15) {
      // Class file version in the interval [JAVA_1_5_VERSION, JAVA_8_VERSION)
      if (!is_public || is_static || is_final || is_synchronized ||
          is_native || !is_abstract || is_strict) {
        is_illegal = true;
      }
    } else {
      // Class file version is pre-JAVA_1_5_VERSION
      if (!is_public || is_static || is_final || is_native || !is_abstract) {
        is_illegal = true;
      }
D
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4852 4853 4854 4855 4856 4857 4858 4859 4860 4861 4862 4863 4864 4865 4866 4867 4868 4869 4870 4871 4872 4873 4874 4875
    }
  } else { // not interface
    if (is_initializer) {
      if (is_static || is_final || is_synchronized || is_native ||
          is_abstract || (major_gte_15 && is_bridge)) {
        is_illegal = true;
      }
    } else { // not initializer
      if (is_abstract) {
        if ((is_final || is_native || is_private || is_static ||
            (major_gte_15 && (is_synchronized || is_strict)))) {
          is_illegal = true;
        }
      }
      if (has_illegal_visibility(flags)) {
        is_illegal = true;
      }
    }
  }

  if (is_illegal) {
    ResourceMark rm(THREAD);
    Exceptions::fthrow(
      THREAD_AND_LOCATION,
4876
      vmSymbols::java_lang_ClassFormatError(),
D
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4877 4878 4879 4880 4881 4882 4883 4884 4885 4886 4887 4888 4889 4890 4891 4892 4893 4894 4895 4896 4897 4898 4899 4900 4901 4902 4903 4904 4905 4906 4907 4908 4909 4910 4911 4912 4913 4914 4915 4916 4917 4918 4919 4920 4921 4922 4923 4924 4925 4926 4927 4928 4929 4930 4931 4932 4933 4934 4935 4936 4937 4938 4939 4940 4941 4942 4943 4944 4945 4946
      "Method %s in class %s has illegal modifiers: 0x%X",
      name->as_C_string(), _class_name->as_C_string(), flags);
    return;
  }
}

void ClassFileParser::verify_legal_utf8(const unsigned char* buffer, int length, TRAPS) {
  assert(_need_verify, "only called when _need_verify is true");
  int i = 0;
  int count = length >> 2;
  for (int k=0; k<count; k++) {
    unsigned char b0 = buffer[i];
    unsigned char b1 = buffer[i+1];
    unsigned char b2 = buffer[i+2];
    unsigned char b3 = buffer[i+3];
    // For an unsigned char v,
    // (v | v - 1) is < 128 (highest bit 0) for 0 < v < 128;
    // (v | v - 1) is >= 128 (highest bit 1) for v == 0 or v >= 128.
    unsigned char res = b0 | b0 - 1 |
                        b1 | b1 - 1 |
                        b2 | b2 - 1 |
                        b3 | b3 - 1;
    if (res >= 128) break;
    i += 4;
  }
  for(; i < length; i++) {
    unsigned short c;
    // no embedded zeros
    guarantee_property((buffer[i] != 0), "Illegal UTF8 string in constant pool in class file %s", CHECK);
    if(buffer[i] < 128) {
      continue;
    }
    if ((i + 5) < length) { // see if it's legal supplementary character
      if (UTF8::is_supplementary_character(&buffer[i])) {
        c = UTF8::get_supplementary_character(&buffer[i]);
        i += 5;
        continue;
      }
    }
    switch (buffer[i] >> 4) {
      default: break;
      case 0x8: case 0x9: case 0xA: case 0xB: case 0xF:
        classfile_parse_error("Illegal UTF8 string in constant pool in class file %s", CHECK);
      case 0xC: case 0xD:  // 110xxxxx  10xxxxxx
        c = (buffer[i] & 0x1F) << 6;
        i++;
        if ((i < length) && ((buffer[i] & 0xC0) == 0x80)) {
          c += buffer[i] & 0x3F;
          if (_major_version <= 47 || c == 0 || c >= 0x80) {
            // for classes with major > 47, c must a null or a character in its shortest form
            break;
          }
        }
        classfile_parse_error("Illegal UTF8 string in constant pool in class file %s", CHECK);
      case 0xE:  // 1110xxxx 10xxxxxx 10xxxxxx
        c = (buffer[i] & 0xF) << 12;
        i += 2;
        if ((i < length) && ((buffer[i-1] & 0xC0) == 0x80) && ((buffer[i] & 0xC0) == 0x80)) {
          c += ((buffer[i-1] & 0x3F) << 6) + (buffer[i] & 0x3F);
          if (_major_version <= 47 || c >= 0x800) {
            // for classes with major > 47, c must be in its shortest form
            break;
          }
        }
        classfile_parse_error("Illegal UTF8 string in constant pool in class file %s", CHECK);
    }  // end of switch
  } // end of for
}

// Checks if name is a legal class name.
4947
void ClassFileParser::verify_legal_class_name(Symbol* name, TRAPS) {
D
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4948 4949 4950 4951 4952 4953 4954 4955 4956 4957 4958 4959 4960 4961 4962 4963 4964 4965 4966 4967 4968 4969 4970 4971 4972 4973 4974 4975 4976
  if (!_need_verify || _relax_verify) { return; }

  char buf[fixed_buffer_size];
  char* bytes = name->as_utf8_flexible_buffer(THREAD, buf, fixed_buffer_size);
  unsigned int length = name->utf8_length();
  bool legal = false;

  if (length > 0) {
    char* p;
    if (bytes[0] == JVM_SIGNATURE_ARRAY) {
      p = skip_over_field_signature(bytes, false, length, CHECK);
      legal = (p != NULL) && ((p - bytes) == (int)length);
    } else if (_major_version < JAVA_1_5_VERSION) {
      if (bytes[0] != '<') {
        p = skip_over_field_name(bytes, true, length);
        legal = (p != NULL) && ((p - bytes) == (int)length);
      }
    } else {
      // 4900761: relax the constraints based on JSR202 spec
      // Class names may be drawn from the entire Unicode character set.
      // Identifiers between '/' must be unqualified names.
      // The utf8 string has been verified when parsing cpool entries.
      legal = verify_unqualified_name(bytes, length, LegalClass);
    }
  }
  if (!legal) {
    ResourceMark rm(THREAD);
    Exceptions::fthrow(
      THREAD_AND_LOCATION,
4977
      vmSymbols::java_lang_ClassFormatError(),
D
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4978 4979 4980 4981 4982 4983 4984 4985
      "Illegal class name \"%s\" in class file %s", bytes,
      _class_name->as_C_string()
    );
    return;
  }
}

// Checks if name is a legal field name.
4986
void ClassFileParser::verify_legal_field_name(Symbol* name, TRAPS) {
D
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4987 4988 4989 4990 4991 4992 4993 4994 4995 4996 4997 4998 4999 5000 5001 5002 5003 5004 5005 5006 5007 5008 5009
  if (!_need_verify || _relax_verify) { return; }

  char buf[fixed_buffer_size];
  char* bytes = name->as_utf8_flexible_buffer(THREAD, buf, fixed_buffer_size);
  unsigned int length = name->utf8_length();
  bool legal = false;

  if (length > 0) {
    if (_major_version < JAVA_1_5_VERSION) {
      if (bytes[0] != '<') {
        char* p = skip_over_field_name(bytes, false, length);
        legal = (p != NULL) && ((p - bytes) == (int)length);
      }
    } else {
      // 4881221: relax the constraints based on JSR202 spec
      legal = verify_unqualified_name(bytes, length, LegalField);
    }
  }

  if (!legal) {
    ResourceMark rm(THREAD);
    Exceptions::fthrow(
      THREAD_AND_LOCATION,
5010
      vmSymbols::java_lang_ClassFormatError(),
D
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5011 5012 5013 5014 5015 5016 5017 5018
      "Illegal field name \"%s\" in class %s", bytes,
      _class_name->as_C_string()
    );
    return;
  }
}

// Checks if name is a legal method name.
5019
void ClassFileParser::verify_legal_method_name(Symbol* name, TRAPS) {
D
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5020 5021
  if (!_need_verify || _relax_verify) { return; }

5022
  assert(name != NULL, "method name is null");
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  char buf[fixed_buffer_size];
  char* bytes = name->as_utf8_flexible_buffer(THREAD, buf, fixed_buffer_size);
  unsigned int length = name->utf8_length();
  bool legal = false;

  if (length > 0) {
    if (bytes[0] == '<') {
      if (name == vmSymbols::object_initializer_name() || name == vmSymbols::class_initializer_name()) {
        legal = true;
      }
    } else if (_major_version < JAVA_1_5_VERSION) {
      char* p;
      p = skip_over_field_name(bytes, false, length);
      legal = (p != NULL) && ((p - bytes) == (int)length);
    } else {
      // 4881221: relax the constraints based on JSR202 spec
      legal = verify_unqualified_name(bytes, length, LegalMethod);
    }
  }

  if (!legal) {
    ResourceMark rm(THREAD);
    Exceptions::fthrow(
      THREAD_AND_LOCATION,
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      vmSymbols::java_lang_ClassFormatError(),
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      "Illegal method name \"%s\" in class %s", bytes,
      _class_name->as_C_string()
    );
    return;
  }
}


// Checks if signature is a legal field signature.
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void ClassFileParser::verify_legal_field_signature(Symbol* name, Symbol* signature, TRAPS) {
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  if (!_need_verify) { return; }

  char buf[fixed_buffer_size];
  char* bytes = signature->as_utf8_flexible_buffer(THREAD, buf, fixed_buffer_size);
  unsigned int length = signature->utf8_length();
  char* p = skip_over_field_signature(bytes, false, length, CHECK);

  if (p == NULL || (p - bytes) != (int)length) {
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    throwIllegalSignature("Field", name, signature, CHECK);
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  }
}

// Checks if signature is a legal method signature.
// Returns number of parameters
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int ClassFileParser::verify_legal_method_signature(Symbol* name, Symbol* signature, TRAPS) {
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  if (!_need_verify) {
    // make sure caller's args_size will be less than 0 even for non-static
    // method so it will be recomputed in compute_size_of_parameters().
    return -2;
  }

  unsigned int args_size = 0;
  char buf[fixed_buffer_size];
  char* p = signature->as_utf8_flexible_buffer(THREAD, buf, fixed_buffer_size);
  unsigned int length = signature->utf8_length();
  char* nextp;

  // The first character must be a '('
  if ((length > 0) && (*p++ == JVM_SIGNATURE_FUNC)) {
    length--;
    // Skip over legal field signatures
    nextp = skip_over_field_signature(p, false, length, CHECK_0);
    while ((length > 0) && (nextp != NULL)) {
      args_size++;
      if (p[0] == 'J' || p[0] == 'D') {
        args_size++;
      }
      length -= nextp - p;
      p = nextp;
      nextp = skip_over_field_signature(p, false, length, CHECK_0);
    }
    // The first non-signature thing better be a ')'
    if ((length > 0) && (*p++ == JVM_SIGNATURE_ENDFUNC)) {
      length--;
      if (name->utf8_length() > 0 && name->byte_at(0) == '<') {
        // All internal methods must return void
        if ((length == 1) && (p[0] == JVM_SIGNATURE_VOID)) {
          return args_size;
        }
      } else {
        // Now we better just have a return value
        nextp = skip_over_field_signature(p, true, length, CHECK_0);
        if (nextp && ((int)length == (nextp - p))) {
          return args_size;
        }
      }
    }
  }
  // Report error
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  throwIllegalSignature("Method", name, signature, CHECK_0);
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  return 0;
}


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// Unqualified names may not contain the characters '.', ';', '[', or '/'.
// Method names also may not contain the characters '<' or '>', unless <init>
// or <clinit>.  Note that method names may not be <init> or <clinit> in this
// method.  Because these names have been checked as special cases before
// calling this method in verify_legal_method_name.
bool ClassFileParser::verify_unqualified_name(
    char* name, unsigned int length, int type) {
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  jchar ch;

  for (char* p = name; p != name + length; ) {
    ch = *p;
    if (ch < 128) {
      p++;
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      if (ch == '.' || ch == ';' || ch == '[' ) {
        return false;   // do not permit '.', ';', or '['
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      }
      if (type != LegalClass && ch == '/') {
        return false;   // do not permit '/' unless it's class name
      }
      if (type == LegalMethod && (ch == '<' || ch == '>')) {
        return false;   // do not permit '<' or '>' in method names
      }
    } else {
      char* tmp_p = UTF8::next(p, &ch);
      p = tmp_p;
    }
  }
  return true;
}


// Take pointer to a string. Skip over the longest part of the string that could
// be taken as a fieldname. Allow '/' if slash_ok is true.
// Return a pointer to just past the fieldname.
// Return NULL if no fieldname at all was found, or in the case of slash_ok
// being true, we saw consecutive slashes (meaning we were looking for a
// qualified path but found something that was badly-formed).
char* ClassFileParser::skip_over_field_name(char* name, bool slash_ok, unsigned int length) {
  char* p;
  jchar ch;
  jboolean last_is_slash = false;
  jboolean not_first_ch = false;

  for (p = name; p != name + length; not_first_ch = true) {
    char* old_p = p;
    ch = *p;
    if (ch < 128) {
      p++;
      // quick check for ascii
      if ((ch >= 'a' && ch <= 'z') ||
          (ch >= 'A' && ch <= 'Z') ||
          (ch == '_' || ch == '$') ||
          (not_first_ch && ch >= '0' && ch <= '9')) {
        last_is_slash = false;
        continue;
      }
      if (slash_ok && ch == '/') {
        if (last_is_slash) {
          return NULL;  // Don't permit consecutive slashes
        }
        last_is_slash = true;
        continue;
      }
    } else {
      jint unicode_ch;
      char* tmp_p = UTF8::next_character(p, &unicode_ch);
      p = tmp_p;
      last_is_slash = false;
      // Check if ch is Java identifier start or is Java identifier part
      // 4672820: call java.lang.Character methods directly without generating separate tables.
      EXCEPTION_MARK;
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      instanceKlassHandle klass (THREAD, SystemDictionary::Character_klass());
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      // return value
      JavaValue result(T_BOOLEAN);
      // Set up the arguments to isJavaIdentifierStart and isJavaIdentifierPart
      JavaCallArguments args;
      args.push_int(unicode_ch);

      // public static boolean isJavaIdentifierStart(char ch);
      JavaCalls::call_static(&result,
                             klass,
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                             vmSymbols::isJavaIdentifierStart_name(),
                             vmSymbols::int_bool_signature(),
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                             &args,
                             THREAD);

      if (HAS_PENDING_EXCEPTION) {
        CLEAR_PENDING_EXCEPTION;
        return 0;
      }
      if (result.get_jboolean()) {
        continue;
      }

      if (not_first_ch) {
        // public static boolean isJavaIdentifierPart(char ch);
        JavaCalls::call_static(&result,
                               klass,
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                               vmSymbols::isJavaIdentifierPart_name(),
                               vmSymbols::int_bool_signature(),
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                               &args,
                               THREAD);

        if (HAS_PENDING_EXCEPTION) {
          CLEAR_PENDING_EXCEPTION;
          return 0;
        }

        if (result.get_jboolean()) {
          continue;
        }
      }
    }
    return (not_first_ch) ? old_p : NULL;
  }
  return (not_first_ch) ? p : NULL;
}


// Take pointer to a string. Skip over the longest part of the string that could
// be taken as a field signature. Allow "void" if void_ok.
// Return a pointer to just past the signature.
// Return NULL if no legal signature is found.
char* ClassFileParser::skip_over_field_signature(char* signature,
                                                 bool void_ok,
                                                 unsigned int length,
                                                 TRAPS) {
  unsigned int array_dim = 0;
  while (length > 0) {
    switch (signature[0]) {
      case JVM_SIGNATURE_VOID: if (!void_ok) { return NULL; }
      case JVM_SIGNATURE_BOOLEAN:
      case JVM_SIGNATURE_BYTE:
      case JVM_SIGNATURE_CHAR:
      case JVM_SIGNATURE_SHORT:
      case JVM_SIGNATURE_INT:
      case JVM_SIGNATURE_FLOAT:
      case JVM_SIGNATURE_LONG:
      case JVM_SIGNATURE_DOUBLE:
        return signature + 1;
      case JVM_SIGNATURE_CLASS: {
        if (_major_version < JAVA_1_5_VERSION) {
          // Skip over the class name if one is there
          char* p = skip_over_field_name(signature + 1, true, --length);

          // The next character better be a semicolon
          if (p && (p - signature) > 1 && p[0] == ';') {
            return p + 1;
          }
        } else {
          // 4900761: For class version > 48, any unicode is allowed in class name.
          length--;
          signature++;
          while (length > 0 && signature[0] != ';') {
            if (signature[0] == '.') {
              classfile_parse_error("Class name contains illegal character '.' in descriptor in class file %s", CHECK_0);
            }
            length--;
            signature++;
          }
          if (signature[0] == ';') { return signature + 1; }
        }

        return NULL;
      }
      case JVM_SIGNATURE_ARRAY:
        array_dim++;
        if (array_dim > 255) {
          // 4277370: array descriptor is valid only if it represents 255 or fewer dimensions.
          classfile_parse_error("Array type descriptor has more than 255 dimensions in class file %s", CHECK_0);
        }
        // The rest of what's there better be a legal signature
        signature++;
        length--;
        void_ok = false;
        break;

      default:
        return NULL;
    }
  }
  return NULL;
}