methodHandles.cpp 54.7 KB
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/*
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 * Copyright (c) 2008, 2012, 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/symbolTable.hpp"
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#include "compiler/compileBroker.hpp"
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#include "interpreter/interpreter.hpp"
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#include "interpreter/oopMapCache.hpp"
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#include "memory/allocation.inline.hpp"
#include "memory/oopFactory.hpp"
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#include "prims/jvmtiRedefineClassesTrace.hpp"
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#include "prims/methodHandles.hpp"
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#include "runtime/compilationPolicy.hpp"
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#include "runtime/javaCalls.hpp"
#include "runtime/reflection.hpp"
#include "runtime/signature.hpp"
#include "runtime/stubRoutines.hpp"

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/*
 * JSR 292 reference implementation: method handles
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 * The JDK 7 reference implementation represented method handle
 * combinations as chains.  Each link in the chain had a "vmentry"
 * field which pointed at a bit of assembly code which performed
 * one transformation before dispatching to the next link in the chain.
 *
 * The current reference implementation pushes almost all code generation
 * responsibility to (trusted) Java code.  A method handle contains a
 * pointer to its "LambdaForm", which embodies all details of the method
 * handle's behavior.  The LambdaForm is a normal Java object, managed
 * by a runtime coded in Java.
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 */

bool MethodHandles::_enabled = false; // set true after successful native linkage
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MethodHandlesAdapterBlob* MethodHandles::_adapter_code = NULL;
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//------------------------------------------------------------------------------
// MethodHandles::generate_adapters
//
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void MethodHandles::generate_adapters() {
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  if (!EnableInvokeDynamic || SystemDictionary::MethodHandle_klass() == NULL)  return;
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  assert(_adapter_code == NULL, "generate only once");

  ResourceMark rm;
  TraceTime timer("MethodHandles adapters generation", TraceStartupTime);
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  _adapter_code = MethodHandlesAdapterBlob::create(adapter_code_size);
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  if (_adapter_code == NULL)
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    vm_exit_out_of_memory(adapter_code_size, "CodeCache: no room for MethodHandles adapters");
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  {
    CodeBuffer code(_adapter_code);
    MethodHandlesAdapterGenerator g(&code);
    g.generate();
    code.log_section_sizes("MethodHandlesAdapterBlob");
  }
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}

//------------------------------------------------------------------------------
// MethodHandlesAdapterGenerator::generate
//
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void MethodHandlesAdapterGenerator::generate() {
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  // Generate generic method handle adapters.
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  // Generate interpreter entries
  for (Interpreter::MethodKind mk = Interpreter::method_handle_invoke_FIRST;
       mk <= Interpreter::method_handle_invoke_LAST;
       mk = Interpreter::MethodKind(1 + (int)mk)) {
    vmIntrinsics::ID iid = Interpreter::method_handle_intrinsic(mk);
    StubCodeMark mark(this, "MethodHandle::interpreter_entry", vmIntrinsics::name_at(iid));
    address entry = MethodHandles::generate_method_handle_interpreter_entry(_masm, iid);
    if (entry != NULL) {
      Interpreter::set_entry_for_kind(mk, entry);
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    }
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    // If the entry is not set, it will throw AbstractMethodError.
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  }
}

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void MethodHandles::set_enabled(bool z) {
  if (_enabled != z) {
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    guarantee(z && EnableInvokeDynamic, "can only enable once, and only if -XX:+EnableInvokeDynamic");
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    _enabled = z;
  }
}

// MemberName support

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// import java_lang_invoke_MemberName.*
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enum {
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  IS_METHOD            = java_lang_invoke_MemberName::MN_IS_METHOD,
  IS_CONSTRUCTOR       = java_lang_invoke_MemberName::MN_IS_CONSTRUCTOR,
  IS_FIELD             = java_lang_invoke_MemberName::MN_IS_FIELD,
  IS_TYPE              = java_lang_invoke_MemberName::MN_IS_TYPE,
  CALLER_SENSITIVE     = java_lang_invoke_MemberName::MN_CALLER_SENSITIVE,
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  REFERENCE_KIND_SHIFT = java_lang_invoke_MemberName::MN_REFERENCE_KIND_SHIFT,
  REFERENCE_KIND_MASK  = java_lang_invoke_MemberName::MN_REFERENCE_KIND_MASK,
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  SEARCH_SUPERCLASSES  = java_lang_invoke_MemberName::MN_SEARCH_SUPERCLASSES,
  SEARCH_INTERFACES    = java_lang_invoke_MemberName::MN_SEARCH_INTERFACES,
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  ALL_KINDS      = IS_METHOD | IS_CONSTRUCTOR | IS_FIELD | IS_TYPE
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};

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Handle MethodHandles::new_MemberName(TRAPS) {
  Handle empty;
  instanceKlassHandle k(THREAD, SystemDictionary::MemberName_klass());
  if (!k->is_initialized())  k->initialize(CHECK_(empty));
  return Handle(THREAD, k->allocate_instance(THREAD));
}

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oop MethodHandles::init_MemberName(Handle mname, Handle target) {
  Thread* thread = Thread::current();
  oop target_oop = target();
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  Klass* target_klass = target_oop->klass();
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  if (target_klass == SystemDictionary::reflect_Field_klass()) {
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    oop clazz = java_lang_reflect_Field::clazz(target_oop); // fd.field_holder()
    int slot  = java_lang_reflect_Field::slot(target_oop);  // fd.index()
    int mods  = java_lang_reflect_Field::modifiers(target_oop);
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    oop type  = java_lang_reflect_Field::type(target_oop);
    oop name  = java_lang_reflect_Field::name(target_oop);
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    KlassHandle k(thread, java_lang_Class::as_Klass(clazz));
    intptr_t offset = InstanceKlass::cast(k())->field_offset(slot);
    return init_field_MemberName(mname, k, accessFlags_from(mods), type, name, offset);
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  } else if (target_klass == SystemDictionary::reflect_Method_klass()) {
    oop clazz  = java_lang_reflect_Method::clazz(target_oop);
    int slot   = java_lang_reflect_Method::slot(target_oop);
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    KlassHandle k(thread, java_lang_Class::as_Klass(clazz));
    if (!k.is_null() && k->oop_is_instance()) {
      Method* m = InstanceKlass::cast(k())->method_with_idnum(slot);
      return init_method_MemberName(mname, m, true, k);
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    }
  } else if (target_klass == SystemDictionary::reflect_Constructor_klass()) {
    oop clazz  = java_lang_reflect_Constructor::clazz(target_oop);
    int slot   = java_lang_reflect_Constructor::slot(target_oop);
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    KlassHandle k(thread, java_lang_Class::as_Klass(clazz));
    if (!k.is_null() && k->oop_is_instance()) {
      Method* m = InstanceKlass::cast(k())->method_with_idnum(slot);
      return init_method_MemberName(mname, m, false, k);
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    }
  } else if (target_klass == SystemDictionary::MemberName_klass()) {
    // Note: This only works if the MemberName has already been resolved.
    oop clazz        = java_lang_invoke_MemberName::clazz(target_oop);
    int flags        = java_lang_invoke_MemberName::flags(target_oop);
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    Metadata* vmtarget=java_lang_invoke_MemberName::vmtarget(target_oop);
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    intptr_t vmindex = java_lang_invoke_MemberName::vmindex(target_oop);
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    KlassHandle k(thread, java_lang_Class::as_Klass(clazz));
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    int ref_kind     = (flags >> REFERENCE_KIND_SHIFT) & REFERENCE_KIND_MASK;
    if (vmtarget == NULL)  return NULL;  // not resolved
    if ((flags & IS_FIELD) != 0) {
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      assert(vmtarget->is_klass(), "field vmtarget is Klass*");
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      int basic_mods = (ref_kind_is_static(ref_kind) ? JVM_ACC_STATIC : 0);
      // FIXME:  how does k (receiver_limit) contribute?
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      KlassHandle k_vmtarget(thread, (Klass*)vmtarget);
      return init_field_MemberName(mname, k_vmtarget, accessFlags_from(basic_mods), NULL, NULL, vmindex);
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    } else if ((flags & (IS_METHOD | IS_CONSTRUCTOR)) != 0) {
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      assert(vmtarget->is_method(), "method or constructor vmtarget is Method*");
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      return init_method_MemberName(mname, (Method*)vmtarget, ref_kind_does_dispatch(ref_kind), k);
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    } else {
      return NULL;
    }
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  }
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  return NULL;
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}

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oop MethodHandles::init_method_MemberName(Handle mname, Method* m, bool do_dispatch,
                                          KlassHandle receiver_limit_h) {
  Klass* receiver_limit = receiver_limit_h();
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  AccessFlags mods = m->access_flags();
  int flags = (jushort)( mods.as_short() & JVM_RECOGNIZED_METHOD_MODIFIERS );
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  int vmindex = Method::nonvirtual_vtable_index; // implies never any dispatch
  Klass* mklass = m->method_holder();
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  if (receiver_limit == NULL)
    receiver_limit = mklass;
  if (m->is_initializer()) {
    flags |= IS_CONSTRUCTOR | (JVM_REF_invokeSpecial << REFERENCE_KIND_SHIFT);
  } else if (mods.is_static()) {
    flags |= IS_METHOD | (JVM_REF_invokeStatic << REFERENCE_KIND_SHIFT);
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     // Get vindex from itable if method holder is an interface.
     if (m->method_holder()->is_interface()) {
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       vmindex = klassItable::compute_itable_index(m);
     }
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  } else if (receiver_limit != mklass &&
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             !receiver_limit->is_subtype_of(mklass)) {
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    return NULL;  // bad receiver limit
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  } else if (receiver_limit->is_interface() &&
             mklass->is_interface()) {
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    flags |= IS_METHOD | (JVM_REF_invokeInterface << REFERENCE_KIND_SHIFT);
    receiver_limit = mklass;  // ignore passed-in limit; interfaces are interconvertible
    vmindex = klassItable::compute_itable_index(m);
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  } else if (mklass != receiver_limit && mklass->is_interface()) {
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    flags |= IS_METHOD | (JVM_REF_invokeVirtual << REFERENCE_KIND_SHIFT);
    // it is a miranda method, so m->vtable_index is not what we want
    ResourceMark rm;
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    klassVtable* vt = InstanceKlass::cast(receiver_limit)->vtable();
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    vmindex = vt->index_of_miranda(m->name(), m->signature());
  } else if (!do_dispatch || m->can_be_statically_bound()) {
    flags |= IS_METHOD | (JVM_REF_invokeSpecial << REFERENCE_KIND_SHIFT);
  } else {
    flags |= IS_METHOD | (JVM_REF_invokeVirtual << REFERENCE_KIND_SHIFT);
    vmindex = m->vtable_index();
  }

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  // @CallerSensitive annotation detected
  if (m->caller_sensitive()) {
    flags |= CALLER_SENSITIVE;
  }

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  oop mname_oop = mname();
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  java_lang_invoke_MemberName::set_flags(   mname_oop, flags);
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  java_lang_invoke_MemberName::set_vmtarget(mname_oop, m);
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  java_lang_invoke_MemberName::set_vmindex( mname_oop, vmindex);   // vtable/itable index
  java_lang_invoke_MemberName::set_clazz(   mname_oop, receiver_limit->java_mirror());
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  // Note:  name and type can be lazily computed by resolve_MemberName,
  // if Java code needs them as resolved String and MethodType objects.
  // The clazz must be eagerly stored, because it provides a GC
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  // root to help keep alive the Method*.
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  // If relevant, the vtable or itable value is stored as vmindex.
  // This is done eagerly, since it is readily available without
  // constructing any new objects.
  // TO DO: maybe intern mname_oop
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  m->method_holder()->add_member_name(mname);
  return mname();
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}

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Handle MethodHandles::init_method_MemberName(Handle mname, CallInfo& info, TRAPS) {
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  Handle empty;
  if (info.resolved_appendix().not_null()) {
    // The resolved MemberName must not be accompanied by an appendix argument,
    // since there is no way to bind this value into the MemberName.
    // Caller is responsible to prevent this from happening.
    THROW_MSG_(vmSymbols::java_lang_InternalError(), "appendix", empty);
  }
  methodHandle m = info.resolved_method();
  KlassHandle defc = info.resolved_klass();
  int vmindex = -1;
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  if (defc->is_interface() && m->method_holder()->is_interface()) {
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    // LinkResolver does not report itable indexes!  (fix this?)
    vmindex = klassItable::compute_itable_index(m());
  } else if (m->can_be_statically_bound()) {
    // LinkResolver reports vtable index even for final methods!
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    vmindex = Method::nonvirtual_vtable_index;
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  } else {
    vmindex = info.vtable_index();
  }
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  oop res = init_method_MemberName(mname, m(), (vmindex >= 0), defc());
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  assert(res == NULL || (java_lang_invoke_MemberName::vmindex(res) == vmindex), "");
  return Handle(THREAD, res);
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}

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oop MethodHandles::init_field_MemberName(Handle mname, KlassHandle field_holder,
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                                         AccessFlags mods, oop type, oop name,
                                         intptr_t offset, bool is_setter) {
  int flags = (jushort)( mods.as_short() & JVM_RECOGNIZED_FIELD_MODIFIERS );
  flags |= IS_FIELD | ((mods.is_static() ? JVM_REF_getStatic : JVM_REF_getField) << REFERENCE_KIND_SHIFT);
  if (is_setter)  flags += ((JVM_REF_putField - JVM_REF_getField) << REFERENCE_KIND_SHIFT);
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  Metadata* vmtarget = field_holder();
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  int vmindex  = offset;  // determines the field uniquely when combined with static bit
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  oop mname_oop = mname();
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  java_lang_invoke_MemberName::set_flags(mname_oop,    flags);
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  java_lang_invoke_MemberName::set_vmtarget(mname_oop, vmtarget);
  java_lang_invoke_MemberName::set_vmindex(mname_oop,  vmindex);
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  java_lang_invoke_MemberName::set_clazz(mname_oop,    field_holder->java_mirror());
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  if (name != NULL)
    java_lang_invoke_MemberName::set_name(mname_oop,   name);
  if (type != NULL)
    java_lang_invoke_MemberName::set_type(mname_oop,   type);
  // Note:  name and type can be lazily computed by resolve_MemberName,
  // if Java code needs them as resolved String and Class objects.
  // Note that the incoming type oop might be pre-resolved (non-null).
  // The base clazz and field offset (vmindex) must be eagerly stored,
  // because they unambiguously identify the field.
  // Although the fieldDescriptor::_index would also identify the field,
  // we do not use it, because it is harder to decode.
  // TO DO: maybe intern mname_oop
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  InstanceKlass::cast(field_holder())->add_member_name(mname);
  return mname();
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}

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Handle MethodHandles::init_field_MemberName(Handle mname, FieldAccessInfo& info, TRAPS) {
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  return Handle();
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#if 0 // FIXME
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  KlassHandle field_holder = info.klass();
  intptr_t    field_offset = info.field_offset();
  return init_field_MemberName(mname_oop, field_holder(),
                               info.access_flags(),
                               type, name,
                               field_offset, false /*is_setter*/);
#endif
}


// JVM 2.9 Special Methods:
// A method is signature polymorphic if and only if all of the following conditions hold :
// * It is declared in the java.lang.invoke.MethodHandle class.
// * It has a single formal parameter of type Object[].
// * It has a return type of Object.
// * It has the ACC_VARARGS and ACC_NATIVE flags set.
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bool MethodHandles::is_method_handle_invoke_name(Klass* klass, Symbol* name) {
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  if (klass == NULL)
    return false;
  // The following test will fail spuriously during bootstrap of MethodHandle itself:
  //    if (klass != SystemDictionary::MethodHandle_klass())
  // Test the name instead:
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  if (klass->name() != vmSymbols::java_lang_invoke_MethodHandle())
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    return false;
  Symbol* poly_sig = vmSymbols::object_array_object_signature();
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  Method* m = InstanceKlass::cast(klass)->find_method(name, poly_sig);
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  if (m == NULL)  return false;
  int required = JVM_ACC_NATIVE | JVM_ACC_VARARGS;
  int flags = m->access_flags().as_int();
  return (flags & required) == required;
}


Symbol* MethodHandles::signature_polymorphic_intrinsic_name(vmIntrinsics::ID iid) {
  assert(is_signature_polymorphic_intrinsic(iid), err_msg("iid=%d", iid));
  switch (iid) {
  case vmIntrinsics::_invokeBasic:      return vmSymbols::invokeBasic_name();
  case vmIntrinsics::_linkToVirtual:    return vmSymbols::linkToVirtual_name();
  case vmIntrinsics::_linkToStatic:     return vmSymbols::linkToStatic_name();
  case vmIntrinsics::_linkToSpecial:    return vmSymbols::linkToSpecial_name();
  case vmIntrinsics::_linkToInterface:  return vmSymbols::linkToInterface_name();
  }
  assert(false, "");
  return 0;
}

int MethodHandles::signature_polymorphic_intrinsic_ref_kind(vmIntrinsics::ID iid) {
  switch (iid) {
  case vmIntrinsics::_invokeBasic:      return 0;
  case vmIntrinsics::_linkToVirtual:    return JVM_REF_invokeVirtual;
  case vmIntrinsics::_linkToStatic:     return JVM_REF_invokeStatic;
  case vmIntrinsics::_linkToSpecial:    return JVM_REF_invokeSpecial;
  case vmIntrinsics::_linkToInterface:  return JVM_REF_invokeInterface;
  }
  assert(false, err_msg("iid=%d", iid));
  return 0;
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}

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vmIntrinsics::ID MethodHandles::signature_polymorphic_name_id(Symbol* name) {
  vmSymbols::SID name_id = vmSymbols::find_sid(name);
  switch (name_id) {
  // The ID _invokeGeneric stands for all non-static signature-polymorphic methods, except built-ins.
  case vmSymbols::VM_SYMBOL_ENUM_NAME(invoke_name):           return vmIntrinsics::_invokeGeneric;
  // The only built-in non-static signature-polymorphic method is MethodHandle.invokeBasic:
  case vmSymbols::VM_SYMBOL_ENUM_NAME(invokeBasic_name):      return vmIntrinsics::_invokeBasic;
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  // There is one static signature-polymorphic method for each JVM invocation mode.
  case vmSymbols::VM_SYMBOL_ENUM_NAME(linkToVirtual_name):    return vmIntrinsics::_linkToVirtual;
  case vmSymbols::VM_SYMBOL_ENUM_NAME(linkToStatic_name):     return vmIntrinsics::_linkToStatic;
  case vmSymbols::VM_SYMBOL_ENUM_NAME(linkToSpecial_name):    return vmIntrinsics::_linkToSpecial;
  case vmSymbols::VM_SYMBOL_ENUM_NAME(linkToInterface_name):  return vmIntrinsics::_linkToInterface;
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  }
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  // Cover the case of invokeExact and any future variants of invokeFoo.
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  Klass* mh_klass = SystemDictionary::well_known_klass(
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                              SystemDictionary::WK_KLASS_ENUM_NAME(MethodHandle_klass) );
  if (mh_klass != NULL && is_method_handle_invoke_name(mh_klass, name))
    return vmIntrinsics::_invokeGeneric;

  // Note: The pseudo-intrinsic _compiledLambdaForm is never linked against.
  // Instead it is used to mark lambda forms bound to invokehandle or invokedynamic.
  return vmIntrinsics::_none;
}

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vmIntrinsics::ID MethodHandles::signature_polymorphic_name_id(Klass* klass, Symbol* name) {
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  if (klass != NULL &&
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      klass->name() == vmSymbols::java_lang_invoke_MethodHandle()) {
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    vmIntrinsics::ID iid = signature_polymorphic_name_id(name);
    if (iid != vmIntrinsics::_none)
      return iid;
    if (is_method_handle_invoke_name(klass, name))
      return vmIntrinsics::_invokeGeneric;
  }
  return vmIntrinsics::_none;
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}

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// convert the external string or reflective type to an internal signature
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Symbol* MethodHandles::lookup_signature(oop type_str, bool intern_if_not_found, TRAPS) {
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  if (java_lang_invoke_MethodType::is_instance(type_str)) {
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    return java_lang_invoke_MethodType::as_signature(type_str, intern_if_not_found, CHECK_NULL);
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  } else if (java_lang_Class::is_instance(type_str)) {
    return java_lang_Class::as_signature(type_str, false, CHECK_NULL);
  } else if (java_lang_String::is_instance(type_str)) {
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    if (intern_if_not_found) {
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      return java_lang_String::as_symbol(type_str, CHECK_NULL);
    } else {
      return java_lang_String::as_symbol_or_null(type_str);
    }
  } else {
    THROW_MSG_(vmSymbols::java_lang_InternalError(), "unrecognized type", NULL);
  }
}

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static const char OBJ_SIG[] = "Ljava/lang/Object;";
enum { OBJ_SIG_LEN = 18 };

bool MethodHandles::is_basic_type_signature(Symbol* sig) {
  assert(vmSymbols::object_signature()->utf8_length() == (int)OBJ_SIG_LEN, "");
  assert(vmSymbols::object_signature()->equals(OBJ_SIG), "");
  const int len = sig->utf8_length();
  for (int i = 0; i < len; i++) {
    switch (sig->byte_at(i)) {
    case 'L':
      // only java/lang/Object is valid here
      if (sig->index_of_at(i, OBJ_SIG, OBJ_SIG_LEN) != i)
        return false;
      i += OBJ_SIG_LEN-1;  //-1 because of i++ in loop
      continue;
    case '(': case ')': case 'V':
    case 'I': case 'J': case 'F': case 'D':
      continue;
    //case '[':
    //case 'Z': case 'B': case 'C': case 'S':
    default:
      return false;
    }
  }
  return true;
}

Symbol* MethodHandles::lookup_basic_type_signature(Symbol* sig, bool keep_last_arg, TRAPS) {
  Symbol* bsig = NULL;
  if (sig == NULL) {
    return sig;
  } else if (is_basic_type_signature(sig)) {
    sig->increment_refcount();
    return sig;  // that was easy
  } else if (sig->byte_at(0) != '(') {
    BasicType bt = char2type(sig->byte_at(0));
    if (is_subword_type(bt)) {
      bsig = vmSymbols::int_signature();
    } else {
      assert(bt == T_OBJECT || bt == T_ARRAY, "is_basic_type_signature was false");
      bsig = vmSymbols::object_signature();
    }
  } else {
    ResourceMark rm;
    stringStream buffer(128);
    buffer.put('(');
    int arg_pos = 0, keep_arg_pos = -1;
    if (keep_last_arg)
      keep_arg_pos = ArgumentCount(sig).size() - 1;
    for (SignatureStream ss(sig); !ss.is_done(); ss.next()) {
      BasicType bt = ss.type();
      size_t this_arg_pos = buffer.size();
      if (ss.at_return_type()) {
        buffer.put(')');
      }
      if (arg_pos == keep_arg_pos) {
        buffer.write((char*) ss.raw_bytes(),
                     (int)   ss.raw_length());
      } else if (bt == T_OBJECT || bt == T_ARRAY) {
        buffer.write(OBJ_SIG, OBJ_SIG_LEN);
      } else {
        if (is_subword_type(bt))
          bt = T_INT;
        buffer.put(type2char(bt));
      }
      arg_pos++;
    }
    const char* sigstr =       buffer.base();
    int         siglen = (int) buffer.size();
    bsig = SymbolTable::new_symbol(sigstr, siglen, THREAD);
  }
  assert(is_basic_type_signature(bsig) ||
         // detune assert in case the injected argument is not a basic type:
         keep_last_arg, "");
  return bsig;
}

void MethodHandles::print_as_basic_type_signature_on(outputStream* st,
                                                     Symbol* sig,
                                                     bool keep_arrays,
                                                     bool keep_basic_names) {
  st = st ? st : tty;
  int len  = sig->utf8_length();
  int array = 0;
  bool prev_type = false;
  for (int i = 0; i < len; i++) {
    char ch = sig->byte_at(i);
    switch (ch) {
    case '(': case ')':
      prev_type = false;
      st->put(ch);
      continue;
    case '[':
      if (!keep_basic_names && keep_arrays)
        st->put(ch);
      array++;
      continue;
    case 'L':
      {
        if (prev_type)  st->put(',');
        int start = i+1, slash = start;
        while (++i < len && (ch = sig->byte_at(i)) != ';') {
          if (ch == '/' || ch == '.' || ch == '$')  slash = i+1;
        }
        if (slash < i)  start = slash;
        if (!keep_basic_names) {
          st->put('L');
        } else {
          for (int j = start; j < i; j++)
            st->put(sig->byte_at(j));
          prev_type = true;
        }
        break;
      }
    default:
      {
        if (array && char2type(ch) != T_ILLEGAL && !keep_arrays) {
          ch = '[';
          array = 0;
        }
        if (prev_type)  st->put(',');
        const char* n = NULL;
        if (keep_basic_names)
          n = type2name(char2type(ch));
        if (n == NULL) {
          // unknown letter, or we don't want to know its name
          st->put(ch);
        } else {
          st->print(n);
          prev_type = true;
        }
        break;
      }
    }
    // Switch break goes here to take care of array suffix:
    if (prev_type) {
      while (array > 0) {
        st->print("[]");
        --array;
      }
    }
    array = 0;
  }
}



static oop object_java_mirror() {
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  return SystemDictionary::Object_klass()->java_mirror();
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}

static oop field_name_or_null(Symbol* s) {
  if (s == NULL)  return NULL;
  return StringTable::lookup(s);
}

static oop field_signature_type_or_null(Symbol* s) {
  if (s == NULL)  return NULL;
  BasicType bt = FieldType::basic_type(s);
  if (is_java_primitive(bt)) {
    assert(s->utf8_length() == 1, "");
    return java_lang_Class::primitive_mirror(bt);
  }
  // Here are some more short cuts for common types.
  // They are optional, since reference types can be resolved lazily.
  if (bt == T_OBJECT) {
    if (s == vmSymbols::object_signature()) {
      return object_java_mirror();
    } else if (s == vmSymbols::class_signature()) {
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      return SystemDictionary::Class_klass()->java_mirror();
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    } else if (s == vmSymbols::string_signature()) {
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      return SystemDictionary::String_klass()->java_mirror();
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    }
  }
  return NULL;
}

590

591 592
// An unresolved member name is a mere symbolic reference.
// Resolving it plants a vmtarget/vmindex in it,
593
// which refers directly to JVM internals.
594 595
Handle MethodHandles::resolve_MemberName(Handle mname, TRAPS) {
  Handle empty;
596
  assert(java_lang_invoke_MemberName::is_instance(mname()), "");
597 598 599 600

  if (java_lang_invoke_MemberName::vmtarget(mname()) != NULL) {
    // Already resolved.
    DEBUG_ONLY(int vmindex = java_lang_invoke_MemberName::vmindex(mname()));
601
    assert(vmindex >= Method::nonvirtual_vtable_index, "");
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    return mname;
  }

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  Handle defc_oop(THREAD, java_lang_invoke_MemberName::clazz(mname()));
  Handle name_str(THREAD, java_lang_invoke_MemberName::name( mname()));
  Handle type_str(THREAD, java_lang_invoke_MemberName::type( mname()));
  int    flags    =       java_lang_invoke_MemberName::flags(mname());
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  int    ref_kind =       (flags >> REFERENCE_KIND_SHIFT) & REFERENCE_KIND_MASK;
  if (!ref_kind_is_valid(ref_kind)) {
    THROW_MSG_(vmSymbols::java_lang_InternalError(), "obsolete MemberName format", empty);
  }

  DEBUG_ONLY(int old_vmindex);
  assert((old_vmindex = java_lang_invoke_MemberName::vmindex(mname())) == 0, "clean input");
616

617
  if (defc_oop.is_null() || name_str.is_null() || type_str.is_null()) {
618
    THROW_MSG_(vmSymbols::java_lang_IllegalArgumentException(), "nothing to resolve", empty);
619
  }
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  instanceKlassHandle defc;
  {
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    Klass* defc_klass = java_lang_Class::as_Klass(defc_oop());
    if (defc_klass == NULL)  return empty;  // a primitive; no resolution possible
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    if (!defc_klass->oop_is_instance()) {
      if (!defc_klass->oop_is_array())  return empty;
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      defc_klass = SystemDictionary::Object_klass();
628
    }
629
    defc = instanceKlassHandle(THREAD, defc_klass);
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  }
  if (defc.is_null()) {
632
    THROW_MSG_(vmSymbols::java_lang_InternalError(), "primitive class", empty);
633
  }
634
  defc->link_class(CHECK_(empty));  // possible safepoint
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  // convert the external string name to an internal symbol
637
  TempNewSymbol name = java_lang_String::as_symbol_or_null(name_str());
638
  if (name == NULL)  return empty;  // no such name
639
  if (name == vmSymbols::class_initializer_name())
640
    return empty; // illegal name
641

642
  vmIntrinsics::ID mh_invoke_id = vmIntrinsics::_none;
643
  if ((flags & ALL_KINDS) == IS_METHOD &&
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      (defc() == SystemDictionary::MethodHandle_klass()) &&
      (ref_kind == JVM_REF_invokeVirtual ||
       ref_kind == JVM_REF_invokeSpecial ||
       // static invocation mode is required for _linkToVirtual, etc.:
       ref_kind == JVM_REF_invokeStatic)) {
    vmIntrinsics::ID iid = signature_polymorphic_name_id(name);
    if (iid != vmIntrinsics::_none &&
        ((ref_kind == JVM_REF_invokeStatic) == is_signature_polymorphic_static(iid))) {
      // Virtual methods invoke and invokeExact, plus internal invokers like _invokeBasic.
      // For a static reference it could an internal linkage routine like _linkToVirtual, etc.
      mh_invoke_id = iid;
    }
656
  }
657

658
  // convert the external string or reflective type to an internal signature
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  TempNewSymbol type = lookup_signature(type_str(), (mh_invoke_id != vmIntrinsics::_none), CHECK_(empty));
  if (type == NULL)  return empty;  // no such signature exists in the VM
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  // Time to do the lookup.
  switch (flags & ALL_KINDS) {
  case IS_METHOD:
    {
      CallInfo result;
667
      bool do_dispatch = true;  // default, neutral setting
668
      {
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        assert(!HAS_PENDING_EXCEPTION, "");
        if (ref_kind == JVM_REF_invokeStatic) {
          //do_dispatch = false;  // no need, since statics are never dispatched
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          LinkResolver::resolve_static_call(result,
                        defc, name, type, KlassHandle(), false, false, THREAD);
674
        } else if (ref_kind == JVM_REF_invokeInterface) {
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          LinkResolver::resolve_interface_call(result, Handle(), defc,
                        defc, name, type, KlassHandle(), false, false, THREAD);
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        } else if (mh_invoke_id != vmIntrinsics::_none) {
          assert(!is_signature_polymorphic_static(mh_invoke_id), "");
          LinkResolver::resolve_handle_call(result,
                        defc, name, type, KlassHandle(), THREAD);
        } else if (ref_kind == JVM_REF_invokeSpecial) {
          do_dispatch = false;  // force non-virtual linkage
          LinkResolver::resolve_special_call(result,
                        defc, name, type, KlassHandle(), false, THREAD);
        } else if (ref_kind == JVM_REF_invokeVirtual) {
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          LinkResolver::resolve_virtual_call(result, Handle(), defc,
                        defc, name, type, KlassHandle(), false, false, THREAD);
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        } else {
          assert(false, err_msg("ref_kind=%d", ref_kind));
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        }
        if (HAS_PENDING_EXCEPTION) {
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          return empty;
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        }
      }
695
      return init_method_MemberName(mname, result, THREAD);
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    }
  case IS_CONSTRUCTOR:
    {
      CallInfo result;
      {
701
        assert(!HAS_PENDING_EXCEPTION, "");
702
        if (name == vmSymbols::object_initializer_name()) {
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          LinkResolver::resolve_special_call(result,
                        defc, name, type, KlassHandle(), false, THREAD);
        } else {
          break;                // will throw after end of switch
        }
        if (HAS_PENDING_EXCEPTION) {
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          return empty;
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        }
      }
      assert(result.is_statically_bound(), "");
713
      return init_method_MemberName(mname, result, THREAD);
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    }
  case IS_FIELD:
    {
      // This is taken from LinkResolver::resolve_field, sans access checks.
      fieldDescriptor fd; // find_field initializes fd if found
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      KlassHandle sel_klass(THREAD, InstanceKlass::cast(defc())->find_field(name, type, &fd));
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      // check if field exists; i.e., if a klass containing the field def has been selected
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      if (sel_klass.is_null())  return empty;  // should not happen
      oop type = field_signature_type_or_null(fd.signature());
      oop name = field_name_or_null(fd.name());
      bool is_setter = (ref_kind_is_valid(ref_kind) && ref_kind_is_setter(ref_kind));
      mname = Handle(THREAD,
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                     init_field_MemberName(mname, sel_klass,
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                                           fd.access_flags(), type, name, fd.offset(), is_setter));
      return mname;
729
    }
730
  default:
731
    THROW_MSG_(vmSymbols::java_lang_InternalError(), "unrecognized MemberName format", empty);
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  }

734
  return empty;
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}

// Conversely, a member name which is only initialized from JVM internals
// may have null defc, name, and type fields.
// Resolving it plants a vmtarget/vmindex in it,
// which refers directly to JVM internals.
void MethodHandles::expand_MemberName(Handle mname, int suppress, TRAPS) {
742
  assert(java_lang_invoke_MemberName::is_instance(mname()), "");
743
  Metadata* vmtarget = java_lang_invoke_MemberName::vmtarget(mname());
744
  int vmindex  = java_lang_invoke_MemberName::vmindex(mname());
745
  if (vmtarget == NULL) {
746 747 748
    THROW_MSG(vmSymbols::java_lang_IllegalArgumentException(), "nothing to expand");
  }

749 750 751 752
  bool have_defc = (java_lang_invoke_MemberName::clazz(mname()) != NULL);
  bool have_name = (java_lang_invoke_MemberName::name(mname()) != NULL);
  bool have_type = (java_lang_invoke_MemberName::type(mname()) != NULL);
  int flags      = java_lang_invoke_MemberName::flags(mname());
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  if (suppress != 0) {
    if (suppress & _suppress_defc)  have_defc = true;
    if (suppress & _suppress_name)  have_name = true;
    if (suppress & _suppress_type)  have_type = true;
  }

  if (have_defc && have_name && have_type)  return;  // nothing needed

  switch (flags & ALL_KINDS) {
  case IS_METHOD:
  case IS_CONSTRUCTOR:
    {
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      assert(vmtarget->is_method(), "method or constructor vmtarget is Method*");
      methodHandle m(THREAD, (Method*)vmtarget);
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      DEBUG_ONLY(vmtarget = NULL);  // safety
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      if (m.is_null())  break;
      if (!have_defc) {
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        InstanceKlass* defc = m->method_holder();
        java_lang_invoke_MemberName::set_clazz(mname(), defc->java_mirror());
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      }
      if (!have_name) {
        //not java_lang_String::create_from_symbol; let's intern member names
        Handle name = StringTable::intern(m->name(), CHECK);
777
        java_lang_invoke_MemberName::set_name(mname(), name());
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      }
      if (!have_type) {
        Handle type = java_lang_String::create_from_symbol(m->signature(), CHECK);
781
        java_lang_invoke_MemberName::set_type(mname(), type());
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      }
      return;
    }
  case IS_FIELD:
    {
      // This is taken from LinkResolver::resolve_field, sans access checks.
788
      assert(vmtarget->is_klass(), "field vmtarget is Klass*");
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      if (!((Klass*) vmtarget)->oop_is_instance())  break;
790
      instanceKlassHandle defc(THREAD, (Klass*) vmtarget);
791
      DEBUG_ONLY(vmtarget = NULL);  // safety
792 793 794 795 796
      bool is_static = ((flags & JVM_ACC_STATIC) != 0);
      fieldDescriptor fd; // find_field initializes fd if found
      if (!defc->find_field_from_offset(vmindex, is_static, &fd))
        break;                  // cannot expand
      if (!have_defc) {
797
        java_lang_invoke_MemberName::set_clazz(mname(), defc->java_mirror());
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      }
      if (!have_name) {
        //not java_lang_String::create_from_symbol; let's intern member names
        Handle name = StringTable::intern(fd.name(), CHECK);
802
        java_lang_invoke_MemberName::set_name(mname(), name());
803 804
      }
      if (!have_type) {
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        // If it is a primitive field type, don't mess with short strings like "I".
        Handle type = field_signature_type_or_null(fd.signature());
        if (type.is_null()) {
          java_lang_String::create_from_symbol(fd.signature(), CHECK);
        }
810
        java_lang_invoke_MemberName::set_type(mname(), type());
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      }
      return;
    }
  }
  THROW_MSG(vmSymbols::java_lang_InternalError(), "unrecognized MemberName format");
}

818
int MethodHandles::find_MemberNames(KlassHandle k,
819
                                    Symbol* name, Symbol* sig,
820 821
                                    int mflags, KlassHandle caller,
                                    int skip, objArrayHandle results) {
822 823
  // %%% take caller into account!

824 825 826
  Thread* thread = Thread::current();

  if (k.is_null() || !k->oop_is_instance())  return -1;
827 828 829 830 831 832 833 834 835 836 837 838 839 840 841 842 843 844 845 846 847 848 849 850 851 852 853

  int rfill = 0, rlimit = results->length(), rskip = skip;
  // overflow measurement:
  int overflow = 0, overflow_limit = MAX2(1000, rlimit);

  int match_flags = mflags;
  bool search_superc = ((match_flags & SEARCH_SUPERCLASSES) != 0);
  bool search_intfc  = ((match_flags & SEARCH_INTERFACES)   != 0);
  bool local_only = !(search_superc | search_intfc);
  bool classes_only = false;

  if (name != NULL) {
    if (name->utf8_length() == 0)  return 0; // a match is not possible
  }
  if (sig != NULL) {
    if (sig->utf8_length() == 0)  return 0; // a match is not possible
    if (sig->byte_at(0) == '(')
      match_flags &= ~(IS_FIELD | IS_TYPE);
    else
      match_flags &= ~(IS_CONSTRUCTOR | IS_METHOD);
  }

  if ((match_flags & IS_TYPE) != 0) {
    // NYI, and Core Reflection works quite well for this query
  }

  if ((match_flags & IS_FIELD) != 0) {
854
    for (FieldStream st(k(), local_only, !search_intfc); !st.eos(); st.next()) {
855 856 857 858 859 860 861 862
      if (name != NULL && st.name() != name)
          continue;
      if (sig != NULL && st.signature() != sig)
        continue;
      // passed the filters
      if (rskip > 0) {
        --rskip;
      } else if (rfill < rlimit) {
863 864
        Handle result(thread, results->obj_at(rfill++));
        if (!java_lang_invoke_MemberName::is_instance(result()))
865
          return -99;  // caller bug!
866 867
        oop type = field_signature_type_or_null(st.signature());
        oop name = field_name_or_null(st.name());
868
        oop saved = MethodHandles::init_field_MemberName(result, st.klass(),
869 870
                                                         st.access_flags(), type, name,
                                                         st.offset());
871
        if (saved != result())
872
          results->obj_at_put(rfill-1, saved);  // show saved instance to user
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      } else if (++overflow >= overflow_limit) {
        match_flags = 0; break; // got tired of looking at overflow
      }
    }
  }

  if ((match_flags & (IS_METHOD | IS_CONSTRUCTOR)) != 0) {
    // watch out for these guys:
881 882
    Symbol* init_name   = vmSymbols::object_initializer_name();
    Symbol* clinit_name = vmSymbols::class_initializer_name();
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    if (name == clinit_name)  clinit_name = NULL; // hack for exposing <clinit>
    bool negate_name_test = false;
    // fix name so that it captures the intention of IS_CONSTRUCTOR
    if (!(match_flags & IS_METHOD)) {
      // constructors only
      if (name == NULL) {
        name = init_name;
      } else if (name != init_name) {
        return 0;               // no constructors of this method name
      }
    } else if (!(match_flags & IS_CONSTRUCTOR)) {
      // methods only
      if (name == NULL) {
        name = init_name;
        negate_name_test = true; // if we see the name, we *omit* the entry
      } else if (name == init_name) {
        return 0;               // no methods of this constructor name
      }
    } else {
      // caller will accept either sort; no need to adjust name
    }
904
    for (MethodStream st(k(), local_only, !search_intfc); !st.eos(); st.next()) {
905
      Method* m = st.method();
906
      Symbol* m_name = m->name();
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      if (m_name == clinit_name)
        continue;
      if (name != NULL && ((m_name != name) ^ negate_name_test))
          continue;
      if (sig != NULL && m->signature() != sig)
        continue;
      // passed the filters
      if (rskip > 0) {
        --rskip;
      } else if (rfill < rlimit) {
917 918
        Handle result(thread, results->obj_at(rfill++));
        if (!java_lang_invoke_MemberName::is_instance(result()))
919
          return -99;  // caller bug!
920
        oop saved = MethodHandles::init_method_MemberName(result, m, true, NULL);
921
        if (saved != result())
922
          results->obj_at_put(rfill-1, saved);  // show saved instance to user
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      } else if (++overflow >= overflow_limit) {
        match_flags = 0; break; // got tired of looking at overflow
      }
    }
  }

  // return number of elements we at leasted wanted to initialize
  return rfill + overflow;
}
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//------------------------------------------------------------------------------
// MemberNameTable
//

MemberNameTable::MemberNameTable() : GrowableArray<jweak>(10, true) {
  assert_locked_or_safepoint(MemberNameTable_lock);
}

MemberNameTable::~MemberNameTable() {
  assert_locked_or_safepoint(MemberNameTable_lock);
  int len = this->length();

  for (int idx = 0; idx < len; idx++) {
    jweak ref = this->at(idx);
    JNIHandles::destroy_weak_global(ref);
  }
}

// Return entry index if found, return -1 otherwise.
int MemberNameTable::find_member_name(oop mem_name) {
  assert_locked_or_safepoint(MemberNameTable_lock);
  int len = this->length();

  for (int idx = 0; idx < len; idx++) {
    jweak ref = this->at(idx);
    oop entry = JNIHandles::resolve(ref);
    if (entry == mem_name) {
      return idx;
    }
  }
  return -1;
}

void MemberNameTable::add_member_name(jweak mem_name_wref) {
  assert_locked_or_safepoint(MemberNameTable_lock);
  oop mem_name = JNIHandles::resolve(mem_name_wref);

  // Each member name may appear just once: add only if not found
  if (find_member_name(mem_name) == -1) {
    this->append(mem_name_wref);
  }
}

#if INCLUDE_JVMTI
oop MemberNameTable::find_member_name_by_method(Method* old_method) {
  assert_locked_or_safepoint(MemberNameTable_lock);
  oop found = NULL;
  int len = this->length();

  for (int idx = 0; idx < len; idx++) {
    oop mem_name = JNIHandles::resolve(this->at(idx));
    if (mem_name == NULL) {
      continue;
    }
    Method* method = (Method*)java_lang_invoke_MemberName::vmtarget(mem_name);
    if (method == old_method) {
      found = mem_name;
      break;
    }
  }
  return found;
}

// It is called at safepoint only
void MemberNameTable::adjust_method_entries(Method** old_methods, Method** new_methods,
                                            int methods_length, bool *trace_name_printed) {
  assert(SafepointSynchronize::is_at_safepoint(), "only called at safepoint");
  // search the MemberNameTable for uses of either obsolete or EMCP methods
  for (int j = 0; j < methods_length; j++) {
    Method* old_method = old_methods[j];
    Method* new_method = new_methods[j];
    oop mem_name = find_member_name_by_method(old_method);
    if (mem_name != NULL) {
      java_lang_invoke_MemberName::adjust_vmtarget(mem_name, new_method);

      if (RC_TRACE_IN_RANGE(0x00100000, 0x00400000)) {
        if (!(*trace_name_printed)) {
          // RC_TRACE_MESG macro has an embedded ResourceMark
          RC_TRACE_MESG(("adjust: name=%s",
                         old_method->method_holder()->external_name()));
          *trace_name_printed = true;
        }
        // RC_TRACE macro has an embedded ResourceMark
        RC_TRACE(0x00400000, ("MemberName method update: %s(%s)",
                              new_method->name()->as_C_string(),
                              new_method->signature()->as_C_string()));
      }
    }
  }
}
#endif // INCLUDE_JVMTI

1025 1026 1027 1028 1029 1030 1031 1032
//
// Here are the native methods in java.lang.invoke.MethodHandleNatives
// They are the private interface between this JVM and the HotSpot-specific
// Java code that implements JSR 292 method handles.
//
// Note:  We use a JVM_ENTRY macro to define each of these, for this is the way
// that intrinsic (non-JNI) native methods are defined in HotSpot.
//
1033

1034 1035 1036 1037 1038 1039 1040 1041
JVM_ENTRY(jint, MHN_getConstant(JNIEnv *env, jobject igcls, jint which)) {
  switch (which) {
  case MethodHandles::GC_COUNT_GWT:
#ifdef COMPILER2
    return true;
#else
    return false;
#endif
1042
  }
1043
  return 0;
1044
}
1045
JVM_END
1046

1047 1048 1049 1050 1051 1052 1053
#ifndef PRODUCT
#define EACH_NAMED_CON(template, requirement) \
    template(MethodHandles,GC_COUNT_GWT) \
    template(java_lang_invoke_MemberName,MN_IS_METHOD) \
    template(java_lang_invoke_MemberName,MN_IS_CONSTRUCTOR) \
    template(java_lang_invoke_MemberName,MN_IS_FIELD) \
    template(java_lang_invoke_MemberName,MN_IS_TYPE) \
1054
    template(java_lang_invoke_MemberName,MN_CALLER_SENSITIVE) \
1055 1056 1057 1058 1059 1060
    template(java_lang_invoke_MemberName,MN_SEARCH_SUPERCLASSES) \
    template(java_lang_invoke_MemberName,MN_SEARCH_INTERFACES) \
    template(java_lang_invoke_MemberName,MN_REFERENCE_KIND_SHIFT) \
    template(java_lang_invoke_MemberName,MN_REFERENCE_KIND_MASK) \
    template(MethodHandles,GC_LAMBDA_SUPPORT) \
    /*end*/
1061

1062 1063 1064 1065 1066 1067 1068 1069 1070 1071 1072 1073 1074 1075 1076 1077 1078 1079 1080 1081 1082 1083 1084 1085
#define IGNORE_REQ(req_expr) /* req_expr */
#define ONE_PLUS(scope,value) 1+
static const int con_value_count = EACH_NAMED_CON(ONE_PLUS, IGNORE_REQ) 0;
#define VALUE_COMMA(scope,value) scope::value,
static const int con_values[con_value_count+1] = { EACH_NAMED_CON(VALUE_COMMA, IGNORE_REQ) 0 };
#define STRING_NULL(scope,value) #value "\0"
static const char con_names[] = { EACH_NAMED_CON(STRING_NULL, IGNORE_REQ) };

static bool advertise_con_value(int which) {
  if (which < 0)  return false;
  bool ok = true;
  int count = 0;
#define INC_COUNT(scope,value) \
  ++count;
#define CHECK_REQ(req_expr) \
  if (which < count)  return ok; \
  ok = (req_expr);
  EACH_NAMED_CON(INC_COUNT, CHECK_REQ);
#undef INC_COUNT
#undef CHECK_REQ
  assert(count == con_value_count, "");
  if (which < count)  return ok;
  return false;
}
1086

1087 1088 1089 1090 1091
#undef ONE_PLUS
#undef VALUE_COMMA
#undef STRING_NULL
#undef EACH_NAMED_CON
#endif // PRODUCT
1092

1093 1094 1095 1096 1097 1098 1099 1100 1101 1102 1103 1104
JVM_ENTRY(jint, MHN_getNamedCon(JNIEnv *env, jobject igcls, jint which, jobjectArray box_jh)) {
#ifndef PRODUCT
  if (advertise_con_value(which)) {
    assert(which >= 0 && which < con_value_count, "");
    int con = con_values[which];
    objArrayHandle box(THREAD, (objArrayOop) JNIHandles::resolve(box_jh));
    if (box.not_null() && box->klass() == Universe::objectArrayKlassObj() && box->length() > 0) {
      const char* str = &con_names[0];
      for (int i = 0; i < which; i++)
        str += strlen(str) + 1;   // skip name and null
      oop name = java_lang_String::create_oop_from_str(str, CHECK_0);  // possible safepoint
      box->obj_at_put(0, name);
1105
    }
1106
    return con;
1107
  }
1108 1109
#endif
  return 0;
1110
}
1111
JVM_END
1112 1113

// void init(MemberName self, AccessibleObject ref)
1114
JVM_ENTRY(void, MHN_init_Mem(JNIEnv *env, jobject igcls, jobject mname_jh, jobject target_jh)) {
1115 1116
  if (mname_jh == NULL) { THROW_MSG(vmSymbols::java_lang_InternalError(), "mname is null"); }
  if (target_jh == NULL) { THROW_MSG(vmSymbols::java_lang_InternalError(), "target is null"); }
1117
  Handle mname(THREAD, JNIHandles::resolve_non_null(mname_jh));
1118 1119
  Handle target(THREAD, JNIHandles::resolve_non_null(target_jh));
  MethodHandles::init_MemberName(mname, target);
1120 1121 1122 1123
}
JVM_END

// void expand(MemberName self)
1124
JVM_ENTRY(void, MHN_expand_Mem(JNIEnv *env, jobject igcls, jobject mname_jh)) {
1125
  if (mname_jh == NULL) { THROW_MSG(vmSymbols::java_lang_InternalError(), "mname is null"); }
1126 1127 1128 1129 1130 1131
  Handle mname(THREAD, JNIHandles::resolve_non_null(mname_jh));
  MethodHandles::expand_MemberName(mname, 0, CHECK);
}
JVM_END

// void resolve(MemberName self, Class<?> caller)
1132 1133
JVM_ENTRY(jobject, MHN_resolve_Mem(JNIEnv *env, jobject igcls, jobject mname_jh, jclass caller_jh)) {
  if (mname_jh == NULL) { THROW_MSG_NULL(vmSymbols::java_lang_InternalError(), "mname is null"); }
1134
  Handle mname(THREAD, JNIHandles::resolve_non_null(mname_jh));
1135 1136 1137

  // The trusted Java code that calls this method should already have performed
  // access checks on behalf of the given caller.  But, we can verify this.
1138 1139
  if (VerifyMethodHandles && caller_jh != NULL &&
      java_lang_invoke_MemberName::clazz(mname()) != NULL) {
1140
    Klass* reference_klass = java_lang_Class::as_Klass(java_lang_invoke_MemberName::clazz(mname()));
1141 1142
    if (reference_klass != NULL) {
      // Emulate LinkResolver::check_klass_accessability.
1143
      Klass* caller = java_lang_Class::as_Klass(JNIHandles::resolve_non_null(caller_jh));
1144 1145 1146
      if (!Reflection::verify_class_access(caller,
                                           reference_klass,
                                           true)) {
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1147
        THROW_MSG_NULL(vmSymbols::java_lang_InternalError(), reference_klass->external_name());
1148 1149 1150 1151
      }
    }
  }

1152 1153 1154 1155 1156 1157 1158 1159 1160 1161 1162 1163 1164 1165 1166 1167 1168 1169 1170 1171 1172 1173 1174 1175 1176 1177 1178 1179 1180 1181 1182 1183 1184 1185 1186 1187 1188 1189 1190 1191 1192 1193 1194 1195 1196 1197 1198 1199 1200 1201 1202 1203 1204 1205 1206 1207 1208 1209 1210 1211 1212 1213
  Handle resolved = MethodHandles::resolve_MemberName(mname, CHECK_NULL);
  if (resolved.is_null()) {
    int flags = java_lang_invoke_MemberName::flags(mname());
    int ref_kind = (flags >> REFERENCE_KIND_SHIFT) & REFERENCE_KIND_MASK;
    if (!MethodHandles::ref_kind_is_valid(ref_kind)) {
      THROW_MSG_NULL(vmSymbols::java_lang_InternalError(), "obsolete MemberName format");
    }
    if ((flags & ALL_KINDS) == IS_FIELD) {
      THROW_MSG_NULL(vmSymbols::java_lang_NoSuchMethodError(), "field resolution failed");
    } else if ((flags & ALL_KINDS) == IS_METHOD ||
               (flags & ALL_KINDS) == IS_CONSTRUCTOR) {
      THROW_MSG_NULL(vmSymbols::java_lang_NoSuchFieldError(), "method resolution failed");
    } else {
      THROW_MSG_NULL(vmSymbols::java_lang_LinkageError(), "resolution failed");
    }
  }

  return JNIHandles::make_local(THREAD, resolved());
}
JVM_END

static jlong find_member_field_offset(oop mname, bool must_be_static, TRAPS) {
  if (mname == NULL ||
      java_lang_invoke_MemberName::vmtarget(mname) == NULL) {
    THROW_MSG_0(vmSymbols::java_lang_InternalError(), "mname not resolved");
  } else {
    int flags = java_lang_invoke_MemberName::flags(mname);
    if ((flags & IS_FIELD) != 0 &&
        (must_be_static
         ? (flags & JVM_ACC_STATIC) != 0
         : (flags & JVM_ACC_STATIC) == 0)) {
      int vmindex = java_lang_invoke_MemberName::vmindex(mname);
      return (jlong) vmindex;
    }
  }
  const char* msg = (must_be_static ? "static field required" : "non-static field required");
  THROW_MSG_0(vmSymbols::java_lang_InternalError(), msg);
  return 0;
}

JVM_ENTRY(jlong, MHN_objectFieldOffset(JNIEnv *env, jobject igcls, jobject mname_jh)) {
  return find_member_field_offset(JNIHandles::resolve(mname_jh), false, THREAD);
}
JVM_END

JVM_ENTRY(jlong, MHN_staticFieldOffset(JNIEnv *env, jobject igcls, jobject mname_jh)) {
  return find_member_field_offset(JNIHandles::resolve(mname_jh), true, THREAD);
}
JVM_END

JVM_ENTRY(jobject, MHN_staticFieldBase(JNIEnv *env, jobject igcls, jobject mname_jh)) {
  // use the other function to perform sanity checks:
  jlong ignore = find_member_field_offset(JNIHandles::resolve(mname_jh), true, CHECK_NULL);
  oop clazz = java_lang_invoke_MemberName::clazz(JNIHandles::resolve_non_null(mname_jh));
  return JNIHandles::make_local(THREAD, clazz);
}
JVM_END

JVM_ENTRY(jobject, MHN_getMemberVMInfo(JNIEnv *env, jobject igcls, jobject mname_jh)) {
  if (mname_jh == NULL)  return NULL;
  Handle mname(THREAD, JNIHandles::resolve_non_null(mname_jh));
  intptr_t vmindex  = java_lang_invoke_MemberName::vmindex(mname());
1214
  Metadata* vmtarget = java_lang_invoke_MemberName::vmtarget(mname());
1215 1216 1217 1218 1219
  objArrayHandle result = oopFactory::new_objArray(SystemDictionary::Object_klass(), 2, CHECK_NULL);
  jvalue vmindex_value; vmindex_value.j = (long)vmindex;
  oop x = java_lang_boxing_object::create(T_LONG, &vmindex_value, CHECK_NULL);
  result->obj_at_put(0, x);
  x = NULL;
1220 1221
  if (vmtarget == NULL) {
    x = NULL;
1222
  } else if (vmtarget->is_klass()) {
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1223
    x = ((Klass*) vmtarget)->java_mirror();
1224
  } else if (vmtarget->is_method()) {
1225
    Handle mname2 = MethodHandles::new_MemberName(CHECK_NULL);
1226
    x = MethodHandles::init_method_MemberName(mname2, (Method*)vmtarget, false, NULL);
1227 1228 1229
  }
  result->obj_at_put(1, x);
  return JNIHandles::make_local(env, result());
1230 1231 1232
}
JVM_END

1233 1234


1235 1236
//  static native int getMembers(Class<?> defc, String matchName, String matchSig,
//          int matchFlags, Class<?> caller, int skip, MemberName[] results);
1237
JVM_ENTRY(jint, MHN_getMembers(JNIEnv *env, jobject igcls,
1238 1239 1240
                               jclass clazz_jh, jstring name_jh, jstring sig_jh,
                               int mflags, jclass caller_jh, jint skip, jobjectArray results_jh)) {
  if (clazz_jh == NULL || results_jh == NULL)  return -1;
1241
  KlassHandle k(THREAD, java_lang_Class::as_Klass(JNIHandles::resolve_non_null(clazz_jh)));
1242

1243 1244
  objArrayHandle results(THREAD, (objArrayOop) JNIHandles::resolve(results_jh));
  if (results.is_null() || !results->is_objArray())  return -1;
1245

1246 1247
  TempNewSymbol name = NULL;
  TempNewSymbol sig = NULL;
1248 1249 1250 1251 1252 1253 1254 1255 1256
  if (name_jh != NULL) {
    name = java_lang_String::as_symbol_or_null(JNIHandles::resolve_non_null(name_jh));
    if (name == NULL)  return 0; // a match is not possible
  }
  if (sig_jh != NULL) {
    sig = java_lang_String::as_symbol_or_null(JNIHandles::resolve_non_null(sig_jh));
    if (sig == NULL)  return 0; // a match is not possible
  }

1257
  KlassHandle caller;
1258 1259 1260
  if (caller_jh != NULL) {
    oop caller_oop = JNIHandles::resolve_non_null(caller_jh);
    if (!java_lang_Class::is_instance(caller_oop))  return -1;
1261
    caller = KlassHandle(THREAD, java_lang_Class::as_Klass(caller_oop));
1262 1263
  }

1264
  if (name != NULL && sig != NULL && results.not_null()) {
1265 1266 1267 1268
    // try a direct resolve
    // %%% TO DO
  }

1269 1270
  int res = MethodHandles::find_MemberNames(k, name, sig, mflags,
                                            caller, skip, results);
1271 1272 1273 1274 1275
  // TO DO: expand at least some of the MemberNames, to avoid massive callbacks
  return res;
}
JVM_END

1276
JVM_ENTRY(void, MHN_setCallSiteTargetNormal(JNIEnv* env, jobject igcls, jobject call_site_jh, jobject target_jh)) {
1277 1278
  Handle call_site(THREAD, JNIHandles::resolve_non_null(call_site_jh));
  Handle target   (THREAD, JNIHandles::resolve(target_jh));
1279 1280 1281 1282
  {
    // Walk all nmethods depending on this call site.
    MutexLocker mu(Compile_lock, thread);
    Universe::flush_dependents_on(call_site, target);
1283
    java_lang_invoke_CallSite::set_target(call_site(), target());
1284 1285 1286 1287 1288
  }
}
JVM_END

JVM_ENTRY(void, MHN_setCallSiteTargetVolatile(JNIEnv* env, jobject igcls, jobject call_site_jh, jobject target_jh)) {
1289 1290
  Handle call_site(THREAD, JNIHandles::resolve_non_null(call_site_jh));
  Handle target   (THREAD, JNIHandles::resolve(target_jh));
1291 1292 1293 1294
  {
    // Walk all nmethods depending on this call site.
    MutexLocker mu(Compile_lock, thread);
    Universe::flush_dependents_on(call_site, target);
1295
    java_lang_invoke_CallSite::set_target_volatile(call_site(), target());
1296 1297 1298 1299
  }
}
JVM_END

1300 1301
/// JVM_RegisterMethodHandleMethods

1302 1303
#undef CS  // Solaris builds complain

1304
#define LANG "Ljava/lang/"
1305
#define JLINV "Ljava/lang/invoke/"
1306 1307 1308 1309

#define OBJ   LANG"Object;"
#define CLS   LANG"Class;"
#define STRG  LANG"String;"
1310
#define CS    JLINV"CallSite;"
1311 1312 1313
#define MT    JLINV"MethodType;"
#define MH    JLINV"MethodHandle;"
#define MEM   JLINV"MemberName;"
1314 1315 1316 1317

#define CC (char*)  /*cast a literal from (const char*)*/
#define FN_PTR(f) CAST_FROM_FN_PTR(void*, &f)

1318
// These are the native methods on java.lang.invoke.MethodHandleNatives.
1319
static JNINativeMethod required_methods_JDK8[] = {
1320 1321
  {CC"init",                      CC"("MEM""OBJ")V",                     FN_PTR(MHN_init_Mem)},
  {CC"expand",                    CC"("MEM")V",                          FN_PTR(MHN_expand_Mem)},
1322
  {CC"resolve",                   CC"("MEM""CLS")"MEM,                   FN_PTR(MHN_resolve_Mem)},
1323
  {CC"getConstant",               CC"(I)I",                              FN_PTR(MHN_getConstant)},
1324
  //  static native int getNamedCon(int which, Object[] name)
1325
  {CC"getNamedCon",               CC"(I["OBJ")I",                        FN_PTR(MHN_getNamedCon)},
1326 1327
  //  static native int getMembers(Class<?> defc, String matchName, String matchSig,
  //          int matchFlags, Class<?> caller, int skip, MemberName[] results);
1328 1329
  {CC"getMembers",                CC"("CLS""STRG""STRG"I"CLS"I["MEM")I", FN_PTR(MHN_getMembers)},
  {CC"objectFieldOffset",         CC"("MEM")J",                          FN_PTR(MHN_objectFieldOffset)},
1330
  {CC"setCallSiteTargetNormal",   CC"("CS""MH")V",                       FN_PTR(MHN_setCallSiteTargetNormal)},
1331 1332 1333 1334
  {CC"setCallSiteTargetVolatile", CC"("CS""MH")V",                       FN_PTR(MHN_setCallSiteTargetVolatile)},
  {CC"staticFieldOffset",         CC"("MEM")J",                          FN_PTR(MHN_staticFieldOffset)},
  {CC"staticFieldBase",           CC"("MEM")"OBJ,                        FN_PTR(MHN_staticFieldBase)},
  {CC"getMemberVMInfo",           CC"("MEM")"OBJ,                        FN_PTR(MHN_getMemberVMInfo)}
1335 1336 1337 1338 1339
};

// This one function is exported, used by NativeLookup.

JVM_ENTRY(void, JVM_RegisterMethodHandleMethods(JNIEnv *env, jclass MHN_class)) {
1340 1341
  if (!EnableInvokeDynamic) {
    warning("JSR 292 is disabled in this JVM.  Use -XX:+UnlockDiagnosticVMOptions -XX:+EnableInvokeDynamic to enable.");
1342 1343 1344
    return;  // bind nothing
  }

1345
  assert(!MethodHandles::enabled(), "must not be enabled");
1346 1347
  bool enable_MH = true;

1348 1349 1350 1351
  jclass MH_class = NULL;
  if (SystemDictionary::MethodHandle_klass() == NULL) {
    enable_MH = false;
  } else {
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1352
    oop mirror = SystemDictionary::MethodHandle_klass()->java_mirror();
1353 1354 1355 1356 1357 1358
    MH_class = (jclass) JNIHandles::make_local(env, mirror);
  }

  int status;

  if (enable_MH) {
1359
    ThreadToNativeFromVM ttnfv(thread);
1360 1361 1362

    status = env->RegisterNatives(MHN_class, required_methods_JDK8, sizeof(required_methods_JDK8)/sizeof(JNINativeMethod));
    if (status != JNI_OK || env->ExceptionOccurred()) {
1363 1364
      warning("JSR 292 method handle code is mismatched to this JVM.  Disabling support.");
      enable_MH = false;
1365 1366 1367
      env->ExceptionClear();
    }
  }
1368

1369 1370
  if (TraceInvokeDynamic) {
    tty->print_cr("MethodHandle support loaded (using LambdaForms)");
1371 1372 1373
  }

  if (enable_MH) {
1374
    MethodHandles::generate_adapters();
1375 1376
    MethodHandles::set_enabled(true);
  }
1377 1378
}
JVM_END