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[/] [openrisc/] [trunk/] [gnu-dev/] [or1k-gcc/] [libjava/] [include/] [execution.h] - Blame information for rev 818

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1 757 jeremybenn
// execution.h - Execution engines. -*- c++ -*-
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/* Copyright (C) 2004, 2006, 2007  Free Software Foundation
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   This file is part of libgcj.
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This software is copyrighted work licensed under the terms of the
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Libgcj License.  Please consult the file "LIBGCJ_LICENSE" for
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details.  */
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#ifndef __JAVA_EXECUTION_H__
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#define __JAVA_EXECUTION_H__
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// This represents one execution engine.  Note that we use function
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// pointers and not virtual methods to avoid calls to
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// __cxa_call_unexpected and the like.
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struct _Jv_ExecutionEngine
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{
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 public:
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  void (*unregister) (jclass);
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  // FIXME: probably should handle this elsewhere, see how
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  // interpreter does it.
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  bool (*need_resolve_string_fields) ();
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  void (*verify) (jclass);
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  void (*allocate_static_fields) (jclass, int, int);
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  void (*allocate_field_initializers) (jclass);
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  void (*create_ncode) (jclass);
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  _Jv_ResolvedMethod *(*resolve_method) (_Jv_Method *, jclass,
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                                         jboolean);
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  void (*post_miranda_hook) (jclass);
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  _Jv_ClosureList **(*get_closure_list) (jclass);
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};
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// This handles gcj-compiled code except that compiled with
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// -findirect-classes.
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struct _Jv_CompiledEngine : public _Jv_ExecutionEngine
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{
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 public:
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  static void do_unregister (jclass)
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  {
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  }
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  static bool do_need_resolve_string_fields ()
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  {
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    return true;
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  }
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  static void do_verify (jclass klass)
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  {
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    _Jv_Linker::verify_type_assertions (klass);
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  }
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  static _Jv_ResolvedMethod *do_resolve_method (_Jv_Method *, jclass,
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                                                jboolean)
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  {
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    return NULL;
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  }
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  static void do_allocate_static_fields (jclass,
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                                         int,
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                                         int)
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  {
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  }
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  static void do_allocate_field_initializers (jclass)
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  {
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  }
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  static void do_create_ncode (jclass)
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  {
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    // Not needed.
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  }
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  static void do_post_miranda_hook (jclass)
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  {
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    // Not needed.
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  }
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  static _Jv_ClosureList **do_get_closure_list (jclass)
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  {
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    return NULL;
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  }
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  _Jv_CompiledEngine ()
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  {
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    unregister = do_unregister;
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    need_resolve_string_fields = do_need_resolve_string_fields;
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    verify = do_verify;
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    allocate_static_fields = do_allocate_static_fields;
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    allocate_field_initializers = do_allocate_field_initializers;
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    create_ncode = do_create_ncode;
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    resolve_method = do_resolve_method;
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    post_miranda_hook = do_post_miranda_hook;
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    get_closure_list = do_get_closure_list;
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  }
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  // These operators make it so we don't have to link in libstdc++.
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  void *operator new (size_t bytes)
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  {
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    return _Jv_Malloc(bytes);
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  }
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  void operator delete (void *mem)
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  {
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    _Jv_Free(mem);
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  }
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};
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class _Jv_IndirectCompiledClass
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{
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public:
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  void **field_initializers;
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  _Jv_ClosureList **closures;
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};
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// This handles gcj-compiled code compiled with -findirect-classes.
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struct _Jv_IndirectCompiledEngine : public _Jv_CompiledEngine
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{
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  _Jv_IndirectCompiledEngine () : _Jv_CompiledEngine ()
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  {
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    allocate_static_fields = do_allocate_static_fields;
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    allocate_field_initializers = do_allocate_field_initializers;
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    get_closure_list = do_get_closure_list;
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  }
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  static _Jv_IndirectCompiledClass *get_aux_info (jclass klass)
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  {
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    _Jv_IndirectCompiledClass *aux =
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      (_Jv_IndirectCompiledClass*)klass->aux_info;
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    if (!aux)
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      {
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        aux = (_Jv_IndirectCompiledClass*)
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          _Jv_AllocRawObj (sizeof (_Jv_IndirectCompiledClass));
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        klass->aux_info = aux;
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      }
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    return aux;
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  }
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  static void do_allocate_field_initializers (jclass klass)
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  {
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    _Jv_IndirectCompiledClass *aux = get_aux_info (klass);
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    if (!aux)
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      {
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        aux = (_Jv_IndirectCompiledClass*)
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          _Jv_AllocRawObj (sizeof (_Jv_IndirectCompiledClass));
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        klass->aux_info = aux;
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      }
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    aux->field_initializers = (void **)_Jv_Malloc (klass->field_count
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                                                   * sizeof (void*));
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    for (int i = 0; i < klass->field_count; i++)
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      {
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        _Jv_Field *field = &klass->fields[i];
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        if (field->flags & java::lang::reflect::Modifier::STATIC)
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          {
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            aux->field_initializers[i] = field->u.addr;
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            field->u.addr = NULL;
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          }
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      }
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  }
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  static void do_allocate_static_fields (jclass klass,
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                                         int pointer_size,
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                                         int other_size)
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  {
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    // Splitting the allocations here lets us scan reference fields
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    // and avoid scanning non-reference fields.
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    char *reference_fields = (char *) _Jv_AllocRawObj (pointer_size);
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    char *non_reference_fields = (char *) _Jv_AllocBytes (other_size);
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    _Jv_IndirectCompiledClass *aux
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      =  (_Jv_IndirectCompiledClass*)klass->aux_info;
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    for (int i = 0; i < klass->field_count; i++)
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      {
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        _Jv_Field *field = &klass->fields[i];
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        if ((field->flags & java::lang::reflect::Modifier::STATIC) == 0)
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          continue;
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        char *base = field->isRef() ? reference_fields : non_reference_fields;
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        field->u.addr  = base + field->u.boffset;
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        if (aux->field_initializers[i])
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          {
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            int field_size;
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            if (! field->isRef ())
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              field_size = field->type->size ();
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            else
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              field_size = sizeof (jobject);
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            memcpy (field->u.addr, aux->field_initializers[i], field_size);
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          }
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      }
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    _Jv_Free (aux->field_initializers);
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  }
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#ifdef INTERPRETER
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  static _Jv_ClosureList **do_get_closure_list (jclass klass)
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  {
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    _Jv_IndirectCompiledClass *aux = get_aux_info (klass);
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    if (!aux->closures)
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      aux->closures = _Jv_ClosureListFinalizer ();
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    return aux->closures;
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  }
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#endif
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};
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#ifdef INTERPRETER
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// This handles interpreted code.
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class _Jv_InterpreterEngine : public _Jv_ExecutionEngine
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{
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 public:
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  static void do_verify (jclass);
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  static void do_allocate_static_fields (jclass, int, int);
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  static void do_create_ncode (jclass);
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  static _Jv_ResolvedMethod *do_resolve_method (_Jv_Method *, jclass,
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                                                jboolean);
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  static bool do_need_resolve_string_fields ()
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  {
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    return false;
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  }
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  static void do_unregister(jclass klass)
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  {
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    _Jv_UnregisterClass(klass);
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  }
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  static void do_allocate_field_initializers (jclass)
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  {
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  }
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  static void do_post_miranda_hook (jclass);
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  static _Jv_ClosureList **do_get_closure_list (jclass klass);
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  _Jv_InterpreterEngine ()
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  {
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    unregister = do_unregister;
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    need_resolve_string_fields = do_need_resolve_string_fields;
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    verify = do_verify;
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    allocate_static_fields = do_allocate_static_fields;
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    allocate_field_initializers = do_allocate_field_initializers;
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    create_ncode = do_create_ncode;
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    resolve_method = do_resolve_method;
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    post_miranda_hook = do_post_miranda_hook;
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    get_closure_list = do_get_closure_list;
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  }
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  // These operators make it so we don't have to link in libstdc++.
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  void *operator new (size_t bytes)
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  {
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    return _Jv_Malloc(bytes);
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  }
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  void operator delete (void *mem)
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  {
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    _Jv_Free(mem);
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  }
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};
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extern _Jv_InterpreterEngine _Jv_soleInterpreterEngine;
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#endif // INTERPRETER
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extern _Jv_CompiledEngine _Jv_soleCompiledEngine;
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extern _Jv_IndirectCompiledEngine _Jv_soleIndirectCompiledEngine;
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#endif // __JAVA_EXECUTION_H__

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