methodHandleWalk.cpp 63.5 KB
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/*
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 * Copyright (c) 2008, 2011, 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 "interpreter/rewriter.hpp"
#include "memory/oopFactory.hpp"
#include "prims/methodHandleWalk.hpp"

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/*
 * JSR 292 reference implementation: method handle structure analysis
 */

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#ifdef PRODUCT
#define print_method_handle(mh) {}
#else //PRODUCT
extern "C" void print_method_handle(oop mh);
#endif //PRODUCT
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// -----------------------------------------------------------------------------
// MethodHandleChain

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void MethodHandleChain::set_method_handle(Handle mh, TRAPS) {
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  if (!java_lang_invoke_MethodHandle::is_instance(mh()))  lose("bad method handle", CHECK);
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  // set current method handle and unpack partially
  _method_handle = mh;
  _is_last       = false;
  _is_bound      = false;
  _arg_slot      = -1;
  _arg_type      = T_VOID;
  _conversion    = -1;
  _last_invoke   = Bytecodes::_nop;  //arbitrary non-garbage

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  if (java_lang_invoke_DirectMethodHandle::is_instance(mh())) {
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    set_last_method(mh(), THREAD);
    return;
  }
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  if (java_lang_invoke_AdapterMethodHandle::is_instance(mh())) {
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    _conversion = AdapterMethodHandle_conversion();
    assert(_conversion != -1, "bad conv value");
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    assert(java_lang_invoke_BoundMethodHandle::is_instance(mh()), "also BMH");
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  }
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  if (java_lang_invoke_BoundMethodHandle::is_instance(mh())) {
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    if (!is_adapter())          // keep AMH and BMH separate in this model
      _is_bound = true;
    _arg_slot = BoundMethodHandle_vmargslot();
    oop target = MethodHandle_vmtarget_oop();
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    if (!is_bound() || java_lang_invoke_MethodHandle::is_instance(target)) {
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      _arg_type = compute_bound_arg_type(target, NULL, _arg_slot, CHECK);
    } else if (target != NULL && target->is_method()) {
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      methodOop m = (methodOop) target;
      _arg_type = compute_bound_arg_type(NULL, m, _arg_slot, CHECK);
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      set_last_method(mh(), CHECK);
    } else {
      _is_bound = false;  // lose!
    }
  }
  if (is_bound() && _arg_type == T_VOID) {
    lose("bad vmargslot", CHECK);
  }
  if (!is_bound() && !is_adapter()) {
    lose("unrecognized MH type", CHECK);
  }
}

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void MethodHandleChain::set_last_method(oop target, TRAPS) {
  _is_last = true;
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  KlassHandle receiver_limit; int flags = 0;
  _last_method = MethodHandles::decode_method(target, receiver_limit, flags);
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  if ((flags & MethodHandles::_dmf_has_receiver) == 0)
    _last_invoke = Bytecodes::_invokestatic;
  else if ((flags & MethodHandles::_dmf_does_dispatch) == 0)
    _last_invoke = Bytecodes::_invokespecial;
  else if ((flags & MethodHandles::_dmf_from_interface) != 0)
    _last_invoke = Bytecodes::_invokeinterface;
  else
    _last_invoke = Bytecodes::_invokevirtual;
}

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BasicType MethodHandleChain::compute_bound_arg_type(oop target, methodOop m, int arg_slot, TRAPS) {
  // There is no direct indication of whether the argument is primitive or not.
  // It is implied by the _vmentry code, and by the MethodType of the target.
  BasicType arg_type = T_VOID;
  if (target != NULL) {
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    oop mtype = java_lang_invoke_MethodHandle::type(target);
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    int arg_num = MethodHandles::argument_slot_to_argnum(mtype, arg_slot);
    if (arg_num >= 0) {
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      oop ptype = java_lang_invoke_MethodType::ptype(mtype, arg_num);
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      arg_type = java_lang_Class::as_BasicType(ptype);
    }
  } else if (m != NULL) {
    // figure out the argument type from the slot
    // FIXME: make this explicit in the MH
    int cur_slot = m->size_of_parameters();
    if (arg_slot >= cur_slot)
      return T_VOID;
    if (!m->is_static()) {
      cur_slot -= type2size[T_OBJECT];
      if (cur_slot == arg_slot)
        return T_OBJECT;
    }
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    ResourceMark rm(THREAD);
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    for (SignatureStream ss(m->signature()); !ss.is_done(); ss.next()) {
      BasicType bt = ss.type();
      cur_slot -= type2size[bt];
      if (cur_slot <= arg_slot) {
        if (cur_slot == arg_slot)
          arg_type = bt;
        break;
      }
    }
  }
  if (arg_type == T_ARRAY)
    arg_type = T_OBJECT;
  return arg_type;
}

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void MethodHandleChain::lose(const char* msg, TRAPS) {
  _lose_message = msg;
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#ifdef ASSERT
  if (Verbose) {
    tty->print_cr(INTPTR_FORMAT " lose: %s", _method_handle(), msg);
    print();
  }
#endif
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  if (!THREAD->is_Java_thread() || ((JavaThread*)THREAD)->thread_state() != _thread_in_vm) {
    // throw a preallocated exception
    THROW_OOP(Universe::virtual_machine_error_instance());
  }
  THROW_MSG(vmSymbols::java_lang_InternalError(), msg);
}

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#ifdef ASSERT
static const char* adapter_ops[] = {
  "retype_only"  ,
  "retype_raw"   ,
  "check_cast"   ,
  "prim_to_prim" ,
  "ref_to_prim"  ,
  "prim_to_ref"  ,
  "swap_args"    ,
  "rot_args"     ,
  "dup_args"     ,
  "drop_args"    ,
  "collect_args" ,
  "spread_args"  ,
  "fold_args"
};

static const char* adapter_op_to_string(int op) {
  if (op >= 0 && op < (int)ARRAY_SIZE(adapter_ops))
    return adapter_ops[op];
  return "unknown_op";
}


void MethodHandleChain::print(Handle mh) {
  EXCEPTION_MARK;
  MethodHandleChain mhc(mh, THREAD);
  if (HAS_PENDING_EXCEPTION) {
    oop ex = THREAD->pending_exception();
    CLEAR_PENDING_EXCEPTION;
    ex->print();
    return;
  }
  mhc.print();
}


void MethodHandleChain::print() {
  EXCEPTION_MARK;
  print_impl(THREAD);
  if (HAS_PENDING_EXCEPTION) {
    oop ex = THREAD->pending_exception();
    CLEAR_PENDING_EXCEPTION;
    ex->print();
  }
}

void MethodHandleChain::print_impl(TRAPS) {
  ResourceMark rm;

  MethodHandleChain chain(_root, CHECK);
  for (;;) {
    tty->print(INTPTR_FORMAT ": ", chain.method_handle()());
    if (chain.is_bound()) {
      tty->print("bound: arg_type %s arg_slot %d",
                 type2name(chain.bound_arg_type()),
                 chain.bound_arg_slot());
      oop o = chain.bound_arg_oop();
      if (o != NULL) {
        if (o->is_instance()) {
          tty->print(" instance %s", o->klass()->klass_part()->internal_name());
        } else {
          o->print();
        }
      }
    } else if (chain.is_adapter()) {
      tty->print("adapter: arg_slot %d conversion op %s",
                 chain.adapter_arg_slot(),
                 adapter_op_to_string(chain.adapter_conversion_op()));
      switch (chain.adapter_conversion_op()) {
        case java_lang_invoke_AdapterMethodHandle::OP_RETYPE_ONLY:
        case java_lang_invoke_AdapterMethodHandle::OP_RETYPE_RAW:
        case java_lang_invoke_AdapterMethodHandle::OP_CHECK_CAST:
        case java_lang_invoke_AdapterMethodHandle::OP_PRIM_TO_PRIM:
        case java_lang_invoke_AdapterMethodHandle::OP_REF_TO_PRIM:
        case java_lang_invoke_AdapterMethodHandle::OP_PRIM_TO_REF:
          break;

        case java_lang_invoke_AdapterMethodHandle::OP_SWAP_ARGS:
        case java_lang_invoke_AdapterMethodHandle::OP_ROT_ARGS: {
          int dest_arg_slot = chain.adapter_conversion_vminfo();
          tty->print(" dest_arg_slot %d type %s", dest_arg_slot, type2name(chain.adapter_conversion_src_type()));
          break;
        }

        case java_lang_invoke_AdapterMethodHandle::OP_DUP_ARGS:
        case java_lang_invoke_AdapterMethodHandle::OP_DROP_ARGS: {
          int dup_slots = chain.adapter_conversion_stack_pushes();
          tty->print(" pushes %d", dup_slots);
          break;
        }

        case java_lang_invoke_AdapterMethodHandle::OP_FOLD_ARGS:
        case java_lang_invoke_AdapterMethodHandle::OP_COLLECT_ARGS: {
          int coll_slots = chain.MethodHandle_vmslots();
          tty->print(" coll_slots %d", coll_slots);
          break;
        }

        case java_lang_invoke_AdapterMethodHandle::OP_SPREAD_ARGS: {
          // Check the required length.
          int spread_slots = 1 + chain.adapter_conversion_stack_pushes();
          tty->print(" spread_slots %d", spread_slots);
          break;
        }

        default:
          tty->print_cr("bad adapter conversion");
          break;
      }
    } else {
      // DMH
      tty->print("direct: ");
      chain.last_method_oop()->print_short_name(tty);
    }

    tty->print(" (");
    objArrayOop ptypes = java_lang_invoke_MethodType::ptypes(chain.method_type_oop());
    for (int i = ptypes->length() - 1; i >= 0; i--) {
      BasicType t = java_lang_Class::as_BasicType(ptypes->obj_at(i));
      if (t == T_ARRAY) t = T_OBJECT;
      tty->print("%c", type2char(t));
      if (t == T_LONG || t == T_DOUBLE) tty->print("_");
    }
    tty->print(")");
    BasicType rtype = java_lang_Class::as_BasicType(java_lang_invoke_MethodType::rtype(chain.method_type_oop()));
    if (rtype == T_ARRAY) rtype = T_OBJECT;
    tty->print("%c", type2char(rtype));
    tty->cr();
    if (!chain.is_last()) {
      chain.next(CHECK);
    } else {
      break;
    }
  }
}
#endif


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// -----------------------------------------------------------------------------
// MethodHandleWalker

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Bytecodes::Code MethodHandleWalker::conversion_code(BasicType src, BasicType dest) {
  if (is_subword_type(src)) {
    src = T_INT;          // all subword src types act like int
  }
  if (src == dest) {
    return Bytecodes::_nop;
  }

#define SRC_DEST(s,d) (((int)(s) << 4) + (int)(d))
  switch (SRC_DEST(src, dest)) {
  case SRC_DEST(T_INT, T_LONG):           return Bytecodes::_i2l;
  case SRC_DEST(T_INT, T_FLOAT):          return Bytecodes::_i2f;
  case SRC_DEST(T_INT, T_DOUBLE):         return Bytecodes::_i2d;
  case SRC_DEST(T_INT, T_BYTE):           return Bytecodes::_i2b;
  case SRC_DEST(T_INT, T_CHAR):           return Bytecodes::_i2c;
  case SRC_DEST(T_INT, T_SHORT):          return Bytecodes::_i2s;

  case SRC_DEST(T_LONG, T_INT):           return Bytecodes::_l2i;
  case SRC_DEST(T_LONG, T_FLOAT):         return Bytecodes::_l2f;
  case SRC_DEST(T_LONG, T_DOUBLE):        return Bytecodes::_l2d;

  case SRC_DEST(T_FLOAT, T_INT):          return Bytecodes::_f2i;
  case SRC_DEST(T_FLOAT, T_LONG):         return Bytecodes::_f2l;
  case SRC_DEST(T_FLOAT, T_DOUBLE):       return Bytecodes::_f2d;

  case SRC_DEST(T_DOUBLE, T_INT):         return Bytecodes::_d2i;
  case SRC_DEST(T_DOUBLE, T_LONG):        return Bytecodes::_d2l;
  case SRC_DEST(T_DOUBLE, T_FLOAT):       return Bytecodes::_d2f;
  }
#undef SRC_DEST

  // cannot do it in one step, or at all
  return Bytecodes::_illegal;
}

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// -----------------------------------------------------------------------------
// MethodHandleWalker::walk
//
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MethodHandleWalker::ArgToken
MethodHandleWalker::walk(TRAPS) {
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  ArgToken empty = ArgToken();  // Empty return value.

  walk_incoming_state(CHECK_(empty));
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  for (;;) {
    set_method_handle(chain().method_handle_oop());

    assert(_outgoing_argc == argument_count_slow(), "empty slots under control");

    if (chain().is_adapter()) {
      int conv_op = chain().adapter_conversion_op();
      int arg_slot = chain().adapter_arg_slot();
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      // Check that the arg_slot is valid.  In most cases it must be
      // within range of the current arguments but there are some
      // exceptions.  Those are sanity checked in their implemention
      // below.
      if ((arg_slot < 0 || arg_slot >= _outgoing.length()) &&
          conv_op > java_lang_invoke_AdapterMethodHandle::OP_RETYPE_RAW &&
          conv_op != java_lang_invoke_AdapterMethodHandle::OP_COLLECT_ARGS &&
          conv_op != java_lang_invoke_AdapterMethodHandle::OP_FOLD_ARGS) {
        lose(err_msg("bad argument index %d", arg_slot), CHECK_(empty));
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      }

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      bool retain_original_args = false;  // used by fold/collect logic

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      // perform the adapter action
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      switch (conv_op) {
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      case java_lang_invoke_AdapterMethodHandle::OP_RETYPE_ONLY:
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        // No changes to arguments; pass the bits through.
        break;

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      case java_lang_invoke_AdapterMethodHandle::OP_RETYPE_RAW: {
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        // To keep the verifier happy, emit bitwise ("raw") conversions as needed.
        // See MethodHandles::same_basic_type_for_arguments for allowed conversions.
        Handle incoming_mtype(THREAD, chain().method_type_oop());
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        Handle outgoing_mtype;
        {
          oop outgoing_mh_oop = chain().vmtarget_oop();
          if (!java_lang_invoke_MethodHandle::is_instance(outgoing_mh_oop))
            lose("outgoing target not a MethodHandle", CHECK_(empty));
          outgoing_mtype = Handle(THREAD, java_lang_invoke_MethodHandle::type(outgoing_mh_oop));
        }
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        int nptypes = java_lang_invoke_MethodType::ptype_count(outgoing_mtype());
        if (nptypes != java_lang_invoke_MethodType::ptype_count(incoming_mtype()))
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          lose("incoming and outgoing parameter count do not agree", CHECK_(empty));

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        // Argument types.
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        for (int i = 0, slot = _outgoing.length() - 1; slot >= 0; slot--) {
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          if (arg_type(slot) == T_VOID)  continue;
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          klassOop  src_klass = NULL;
          klassOop  dst_klass = NULL;
          BasicType src = java_lang_Class::as_BasicType(java_lang_invoke_MethodType::ptype(incoming_mtype(), i), &src_klass);
          BasicType dst = java_lang_Class::as_BasicType(java_lang_invoke_MethodType::ptype(outgoing_mtype(), i), &dst_klass);
          retype_raw_argument_type(src, dst, slot, CHECK_(empty));
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          i++;  // We need to skip void slots at the top of the loop.
        }

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        // Return type.
        {
          BasicType src = java_lang_Class::as_BasicType(java_lang_invoke_MethodType::rtype(incoming_mtype()));
          BasicType dst = java_lang_Class::as_BasicType(java_lang_invoke_MethodType::rtype(outgoing_mtype()));
          retype_raw_return_type(src, dst, CHECK_(empty));
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        }
        break;
      }

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      case java_lang_invoke_AdapterMethodHandle::OP_CHECK_CAST: {
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        // checkcast the Nth outgoing argument in place
        klassOop dest_klass = NULL;
        BasicType dest = java_lang_Class::as_BasicType(chain().adapter_arg_oop(), &dest_klass);
        assert(dest == T_OBJECT, "");
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        ArgToken arg = _outgoing.at(arg_slot);
        assert(dest == arg.basic_type(), "");
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        ArgToken new_arg = make_conversion(T_OBJECT, dest_klass, Bytecodes::_checkcast, arg, CHECK_(empty));
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        assert(!arg.has_index() || arg.index() == new_arg.index(), "should be the same index");
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        debug_only(dest_klass = (klassOop)badOop);
        break;
      }

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      case java_lang_invoke_AdapterMethodHandle::OP_PRIM_TO_PRIM: {
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        // i2l, etc., on the Nth outgoing argument in place
        BasicType src = chain().adapter_conversion_src_type(),
                  dest = chain().adapter_conversion_dest_type();
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        ArgToken arg = _outgoing.at(arg_slot);
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        Bytecodes::Code bc = conversion_code(src, dest);
        if (bc == Bytecodes::_nop) {
          break;
        } else if (bc != Bytecodes::_illegal) {
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          arg = make_conversion(dest, NULL, bc, arg, CHECK_(empty));
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        } else if (is_subword_type(dest)) {
          bc = conversion_code(src, T_INT);
          if (bc != Bytecodes::_illegal) {
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            arg = make_conversion(dest, NULL, bc, arg, CHECK_(empty));
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            bc = conversion_code(T_INT, dest);
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            arg = make_conversion(dest, NULL, bc, arg, CHECK_(empty));
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          }
        }
        if (bc == Bytecodes::_illegal) {
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          lose(err_msg("bad primitive conversion for %s -> %s", type2name(src), type2name(dest)), CHECK_(empty));
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        }
        change_argument(src, arg_slot, dest, arg);
        break;
      }

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      case java_lang_invoke_AdapterMethodHandle::OP_REF_TO_PRIM: {
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        // checkcast to wrapper type & call intValue, etc.
        BasicType dest = chain().adapter_conversion_dest_type();
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        ArgToken arg = _outgoing.at(arg_slot);
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        arg = make_conversion(T_OBJECT, SystemDictionary::box_klass(dest),
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                              Bytecodes::_checkcast, arg, CHECK_(empty));
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        vmIntrinsics::ID unboxer = vmIntrinsics::for_unboxing(dest);
        if (unboxer == vmIntrinsics::_none) {
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          lose("no unboxing method", CHECK_(empty));
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        }
        ArgToken arglist[2];
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        arglist[0] = arg;         // outgoing 'this'
        arglist[1] = ArgToken();  // sentinel
        arg = make_invoke(NULL, unboxer, Bytecodes::_invokevirtual, false, 1, &arglist[0], CHECK_(empty));
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        change_argument(T_OBJECT, arg_slot, dest, arg);
        break;
      }

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      case java_lang_invoke_AdapterMethodHandle::OP_PRIM_TO_REF: {
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        // call wrapper type.valueOf
        BasicType src = chain().adapter_conversion_src_type();
        vmIntrinsics::ID boxer = vmIntrinsics::for_boxing(src);
        if (boxer == vmIntrinsics::_none) {
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          lose("no boxing method", CHECK_(empty));
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        }
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        ArgToken arg = _outgoing.at(arg_slot);
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        ArgToken arglist[2];
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        arglist[0] = arg;         // outgoing value
        arglist[1] = ArgToken();  // sentinel
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        arg = make_invoke(NULL, boxer, Bytecodes::_invokestatic, false, 1, &arglist[0], CHECK_(empty));
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        change_argument(src, arg_slot, T_OBJECT, arg);
        break;
      }

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      case java_lang_invoke_AdapterMethodHandle::OP_SWAP_ARGS: {
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        int dest_arg_slot = chain().adapter_conversion_vminfo();
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        if (!has_argument(dest_arg_slot)) {
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          lose("bad swap index", CHECK_(empty));
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        }
        // a simple swap between two arguments
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        if (arg_slot > dest_arg_slot) {
          int tmp = arg_slot;
          arg_slot = dest_arg_slot;
          dest_arg_slot = tmp;
        }
        ArgToken a1 = _outgoing.at(arg_slot);
        ArgToken a2 = _outgoing.at(dest_arg_slot);
        change_argument(a2.basic_type(), dest_arg_slot, a1);
        change_argument(a1.basic_type(), arg_slot, a2);
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        break;
      }

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      case java_lang_invoke_AdapterMethodHandle::OP_ROT_ARGS: {
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        int dest_arg_slot = chain().adapter_conversion_vminfo();
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        if (!has_argument(dest_arg_slot) || arg_slot == dest_arg_slot) {
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          lose("bad rotate index", CHECK_(empty));
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        }
        // Rotate the source argument (plus following N slots) into the
        // position occupied by the dest argument (plus following N slots).
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        int rotate_count = type2size[chain().adapter_conversion_src_type()];
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        // (no other rotate counts are currently supported)
        if (arg_slot < dest_arg_slot) {
          for (int i = 0; i < rotate_count; i++) {
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            ArgToken temp = _outgoing.at(arg_slot);
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            _outgoing.remove_at(arg_slot);
            _outgoing.insert_before(dest_arg_slot + rotate_count - 1, temp);
          }
        } else { // arg_slot > dest_arg_slot
          for (int i = 0; i < rotate_count; i++) {
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            ArgToken temp = _outgoing.at(arg_slot + rotate_count - 1);
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            _outgoing.remove_at(arg_slot + rotate_count - 1);
            _outgoing.insert_before(dest_arg_slot, temp);
          }
        }
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        assert(_outgoing_argc == argument_count_slow(), "empty slots under control");
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        break;
      }

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      case java_lang_invoke_AdapterMethodHandle::OP_DUP_ARGS: {
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        int dup_slots = chain().adapter_conversion_stack_pushes();
        if (dup_slots <= 0) {
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          lose("bad dup count", CHECK_(empty));
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        }
        for (int i = 0; i < dup_slots; i++) {
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          ArgToken dup = _outgoing.at(arg_slot + 2*i);
          if (dup.basic_type() != T_VOID)     _outgoing_argc += 1;
          _outgoing.insert_before(i, dup);
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        }
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        assert(_outgoing_argc == argument_count_slow(), "empty slots under control");
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        break;
      }

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      case java_lang_invoke_AdapterMethodHandle::OP_DROP_ARGS: {
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        int drop_slots = -chain().adapter_conversion_stack_pushes();
        if (drop_slots <= 0) {
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          lose("bad drop count", CHECK_(empty));
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        }
        for (int i = 0; i < drop_slots; i++) {
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          ArgToken drop = _outgoing.at(arg_slot);
          if (drop.basic_type() != T_VOID)    _outgoing_argc -= 1;
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          _outgoing.remove_at(arg_slot);
        }
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        assert(_outgoing_argc == argument_count_slow(), "empty slots under control");
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        break;
      }

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      case java_lang_invoke_AdapterMethodHandle::OP_FOLD_ARGS:
        retain_original_args = true;   // and fall through:
      case java_lang_invoke_AdapterMethodHandle::OP_COLLECT_ARGS: {
        // call argument MH recursively
        //{static int x; if (!x++) print_method_handle(chain().method_handle_oop()); --x;}
        Handle recursive_mh(THREAD, chain().adapter_arg_oop());
        if (!java_lang_invoke_MethodHandle::is_instance(recursive_mh())) {
          lose("recursive target not a MethodHandle", CHECK_(empty));
        }
        Handle recursive_mtype(THREAD, java_lang_invoke_MethodHandle::type(recursive_mh()));
        int argc = java_lang_invoke_MethodType::ptype_count(recursive_mtype());
        int coll_slots = java_lang_invoke_MethodHandle::vmslots(recursive_mh());
        BasicType rtype = java_lang_Class::as_BasicType(java_lang_invoke_MethodType::rtype(recursive_mtype()));
        ArgToken* arglist = NEW_RESOURCE_ARRAY(ArgToken, 1 + argc + 1);  // 1+: mh, +1: sentinel
        arglist[0] = make_oop_constant(recursive_mh(), CHECK_(empty));
        if (arg_slot < 0 || coll_slots < 0 || arg_slot + coll_slots > _outgoing.length()) {
          lose("bad fold/collect arg slot", CHECK_(empty));
        }
        for (int i = 0, slot = arg_slot + coll_slots - 1; slot >= arg_slot; slot--) {
573 574
          ArgToken arg_state = _outgoing.at(slot);
          BasicType  arg_type  = arg_state.basic_type();
575
          if (arg_type == T_VOID)  continue;
576
          ArgToken arg = _outgoing.at(slot);
577 578 579 580
          if (i >= argc) { lose("bad fold/collect arg", CHECK_(empty)); }
          arglist[1+i] = arg;
          if (!retain_original_args)
            change_argument(arg_type, slot, T_VOID, ArgToken(tt_void));
581
          i++;
582 583 584 585 586 587 588 589 590 591 592 593 594 595 596 597 598 599 600
        }
        arglist[1+argc] = ArgToken();  // sentinel
        oop invoker = java_lang_invoke_MethodTypeForm::vmlayout(
                          java_lang_invoke_MethodType::form(recursive_mtype()) );
        if (invoker == NULL || !invoker->is_method()) {
          lose("bad vmlayout slot", CHECK_(empty));
        }
        // FIXME: consider inlining the invokee at the bytecode level
        ArgToken ret = make_invoke(methodOop(invoker), vmIntrinsics::_none,
                                   Bytecodes::_invokevirtual, false, 1+argc, &arglist[0], CHECK_(empty));
        DEBUG_ONLY(invoker = NULL);
        if (rtype == T_OBJECT) {
          klassOop rklass = java_lang_Class::as_klassOop( java_lang_invoke_MethodType::rtype(recursive_mtype()) );
          if (rklass != SystemDictionary::Object_klass() &&
              !Klass::cast(rklass)->is_interface()) {
            // preserve type safety
            ret = make_conversion(T_OBJECT, rklass, Bytecodes::_checkcast, ret, CHECK_(empty));
          }
        }
601 602 603 604
        if (rtype != T_VOID) {
          int ret_slot = arg_slot + (retain_original_args ? coll_slots : 0);
          change_argument(T_VOID, ret_slot, rtype, ret);
        }
605 606 607
        break;
      }

608
      case java_lang_invoke_AdapterMethodHandle::OP_SPREAD_ARGS: {
609 610 611 612 613 614 615 616 617 618 619 620 621 622 623
        klassOop array_klass_oop = NULL;
        BasicType array_type = java_lang_Class::as_BasicType(chain().adapter_arg_oop(),
                                                             &array_klass_oop);
        assert(array_type == T_OBJECT, "");
        assert(Klass::cast(array_klass_oop)->oop_is_array(), "");
        arrayKlassHandle array_klass(THREAD, array_klass_oop);
        debug_only(array_klass_oop = (klassOop)badOop);

        klassOop element_klass_oop = NULL;
        BasicType element_type = java_lang_Class::as_BasicType(array_klass->component_mirror(),
                                                               &element_klass_oop);
        KlassHandle element_klass(THREAD, element_klass_oop);
        debug_only(element_klass_oop = (klassOop)badOop);

        // Fetch the argument, which we will cast to the required array type.
624 625 626
        ArgToken arg = _outgoing.at(arg_slot);
        assert(arg.basic_type() == T_OBJECT, "");
        ArgToken array_arg = arg;
627 628
        array_arg = make_conversion(T_OBJECT, array_klass(), Bytecodes::_checkcast, array_arg, CHECK_(empty));
        change_argument(T_OBJECT, arg_slot, T_VOID, ArgToken(tt_void));
629 630 631 632 633 634 635 636 637

        // Check the required length.
        int spread_slots = 1 + chain().adapter_conversion_stack_pushes();
        int spread_length = spread_slots;
        if (type2size[element_type] == 2) {
          if (spread_slots % 2 != 0)  spread_slots = -1;  // force error
          spread_length = spread_slots / 2;
        }
        if (spread_slots < 0) {
638
          lose("bad spread length", CHECK_(empty));
639 640 641
        }

        jvalue   length_jvalue;  length_jvalue.i = spread_length;
642
        ArgToken length_arg = make_prim_constant(T_INT, &length_jvalue, CHECK_(empty));
643 644
        // Call a built-in method known to the JVM to validate the length.
        ArgToken arglist[3];
645 646 647
        arglist[0] = array_arg;   // value to check
        arglist[1] = length_arg;  // length to check
        arglist[2] = ArgToken();  // sentinel
648
        make_invoke(NULL, vmIntrinsics::_checkSpreadArgument,
649
                    Bytecodes::_invokestatic, false, 2, &arglist[0], CHECK_(empty));
650 651

        // Spread out the array elements.
652 653 654 655 656 657 658 659 660 661 662 663
        Bytecodes::Code aload_op = Bytecodes::_nop;
        switch (element_type) {
        case T_INT:       aload_op = Bytecodes::_iaload; break;
        case T_LONG:      aload_op = Bytecodes::_laload; break;
        case T_FLOAT:     aload_op = Bytecodes::_faload; break;
        case T_DOUBLE:    aload_op = Bytecodes::_daload; break;
        case T_OBJECT:    aload_op = Bytecodes::_aaload; break;
        case T_BOOLEAN:   // fall through:
        case T_BYTE:      aload_op = Bytecodes::_baload; break;
        case T_CHAR:      aload_op = Bytecodes::_caload; break;
        case T_SHORT:     aload_op = Bytecodes::_saload; break;
        default:          lose("primitive array NYI", CHECK_(empty));
664 665 666 667
        }
        int ap = arg_slot;
        for (int i = 0; i < spread_length; i++) {
          jvalue   offset_jvalue;  offset_jvalue.i = i;
668 669
          ArgToken offset_arg = make_prim_constant(T_INT, &offset_jvalue, CHECK_(empty));
          ArgToken element_arg = make_fetch(element_type, element_klass(), aload_op, array_arg, offset_arg, CHECK_(empty));
670 671 672 673 674 675 676
          change_argument(T_VOID, ap, element_type, element_arg);
          ap += type2size[element_type];
        }
        break;
      }

      default:
677
        lose("bad adapter conversion", CHECK_(empty));
678 679 680 681 682 683 684 685 686
        break;
      }
    }

    if (chain().is_bound()) {
      // push a new argument
      BasicType arg_type  = chain().bound_arg_type();
      jint      arg_slot  = chain().bound_arg_slot();
      oop       arg_oop   = chain().bound_arg_oop();
687
      ArgToken  arg;
688
      if (arg_type == T_OBJECT) {
689
        arg = make_oop_constant(arg_oop, CHECK_(empty));
690 691 692
      } else {
        jvalue arg_value;
        BasicType bt = java_lang_boxing_object::get_value(arg_oop, &arg_value);
693
        if (bt == arg_type || (bt == T_INT && is_subword_type(arg_type))) {
694
          arg = make_prim_constant(arg_type, &arg_value, CHECK_(empty));
695
        } else {
696
          lose(err_msg("bad bound value: arg_type %s boxing %s", type2name(arg_type), type2name(bt)), CHECK_(empty));
697 698
        }
      }
699
      DEBUG_ONLY(arg_oop = badOop);
700 701 702 703 704
      change_argument(T_VOID, arg_slot, arg_type, arg);
    }

    // this test must come after the body of the loop
    if (!chain().is_last()) {
705
      chain().next(CHECK_(empty));
706 707 708 709 710 711 712 713 714 715
    } else {
      break;
    }
  }

  // finish the sequence with a tail-call to the ultimate target
  // parameters are passed in logical order (recv 1st), not slot order
  ArgToken* arglist = NEW_RESOURCE_ARRAY(ArgToken, _outgoing.length() + 1);
  int ap = 0;
  for (int i = _outgoing.length() - 1; i >= 0; i--) {
716 717 718
    ArgToken arg_state = _outgoing.at(i);
    if (arg_state.basic_type() == T_VOID)  continue;
    arglist[ap++] = _outgoing.at(i);
719 720
  }
  assert(ap == _outgoing_argc, "");
721
  arglist[ap] = ArgToken();  // add a sentinel, for the sake of asserts
722 723 724 725 726 727
  return make_invoke(chain().last_method_oop(),
                     vmIntrinsics::_none,
                     chain().last_invoke_code(), true,
                     ap, arglist, THREAD);
}

728 729 730 731

// -----------------------------------------------------------------------------
// MethodHandleWalker::walk_incoming_state
//
732 733
void MethodHandleWalker::walk_incoming_state(TRAPS) {
  Handle mtype(THREAD, chain().method_type_oop());
734
  int nptypes = java_lang_invoke_MethodType::ptype_count(mtype());
735 736 737
  _outgoing_argc = nptypes;
  int argp = nptypes - 1;
  if (argp >= 0) {
738
    _outgoing.at_grow(argp, ArgToken(tt_void)); // presize
739 740 741
  }
  for (int i = 0; i < nptypes; i++) {
    klassOop  arg_type_klass = NULL;
742
    BasicType arg_type = java_lang_Class::as_BasicType(java_lang_invoke_MethodType::ptype(mtype(), i), &arg_type_klass);
743 744
    int index = new_local_index(arg_type);
    ArgToken arg = make_parameter(arg_type, arg_type_klass, index, CHECK);
745
    DEBUG_ONLY(arg_type_klass = (klassOop) NULL);
746
    _outgoing.at_put(argp, arg);
747 748
    if (type2size[arg_type] == 2) {
      // add the extra slot, so we can model the JVM stack
749
      _outgoing.insert_before(argp+1, ArgToken(tt_void));
750 751 752 753 754
    }
    --argp;
  }
  // call make_parameter at the end of the list for the return type
  klassOop  ret_type_klass = NULL;
755
  BasicType ret_type = java_lang_Class::as_BasicType(java_lang_invoke_MethodType::rtype(mtype()), &ret_type_klass);
756 757
  ArgToken  ret = make_parameter(ret_type, ret_type_klass, -1, CHECK);
  // ignore ret; client can catch it if needed
758 759 760 761 762 763 764 765 766 767 768 769 770 771 772 773 774 775 776 777 778

  assert(_outgoing_argc == argument_count_slow(), "empty slots under control");

  verify_args_and_signature(CHECK);
}


#ifdef ASSERT
void MethodHandleWalker::verify_args_and_signature(TRAPS) {
  int index = _outgoing.length() - 1;
  objArrayOop ptypes = java_lang_invoke_MethodType::ptypes(chain().method_type_oop());
  for (int i = 0, limit = ptypes->length(); i < limit; i++) {
    BasicType t = java_lang_Class::as_BasicType(ptypes->obj_at(i));
    if (t == T_ARRAY) t = T_OBJECT;
    if (t == T_LONG || t == T_DOUBLE) {
      assert(T_VOID == _outgoing.at(index).basic_type(), "types must match");
      index--;
    }
    assert(t == _outgoing.at(index).basic_type(), "types must match");
    index--;
  }
779
}
780
#endif
781

782 783 784 785 786 787

// -----------------------------------------------------------------------------
// MethodHandleWalker::change_argument
//
// This is messy because some kinds of arguments are paired with
// companion slots containing an empty value.
788 789
void MethodHandleWalker::change_argument(BasicType old_type, int slot, const ArgToken& new_arg) {
  BasicType new_type = new_arg.basic_type();
790 791 792 793
  int old_size = type2size[old_type];
  int new_size = type2size[new_type];
  if (old_size == new_size) {
    // simple case first
794
    _outgoing.at_put(slot, new_arg);
795
  } else if (old_size > new_size) {
796
    for (int i = old_size - 1; i >= new_size; i--) {
797
      assert((i != 0) == (_outgoing.at(slot + i).basic_type() == T_VOID), "");
798 799 800
      _outgoing.remove_at(slot + i);
    }
    if (new_size > 0)
801
      _outgoing.at_put(slot, new_arg);
802 803 804 805
    else
      _outgoing_argc -= 1;      // deleted a real argument
  } else {
    for (int i = old_size; i < new_size; i++) {
806
      _outgoing.insert_before(slot + i, ArgToken(tt_void));
807
    }
808
    _outgoing.at_put(slot, new_arg);
809 810 811
    if (old_size == 0)
      _outgoing_argc += 1;      // inserted a real argument
  }
812
  assert(_outgoing_argc == argument_count_slow(), "empty slots under control");
813 814 815 816 817 818 819
}


#ifdef ASSERT
int MethodHandleWalker::argument_count_slow() {
  int args_seen = 0;
  for (int i = _outgoing.length() - 1; i >= 0; i--) {
820
    if (_outgoing.at(i).basic_type() != T_VOID) {
821
      ++args_seen;
822 823 824 825 826 827 828
      if (_outgoing.at(i).basic_type() == T_LONG ||
          _outgoing.at(i).basic_type() == T_DOUBLE) {
        assert(_outgoing.at(i + 1).basic_type() == T_VOID, "should only follow two word");
      }
    } else {
      assert(_outgoing.at(i - 1).basic_type() == T_LONG ||
             _outgoing.at(i - 1).basic_type() == T_DOUBLE, "should only follow two word");
829 830 831 832 833 834 835
    }
  }
  return args_seen;
}
#endif


836 837 838 839 840 841 842 843 844 845 846 847 848 849 850 851
// -----------------------------------------------------------------------------
// MethodHandleWalker::retype_raw_conversion
//
// Do the raw retype conversions for OP_RETYPE_RAW.
void MethodHandleWalker::retype_raw_conversion(BasicType src, BasicType dst, bool for_return, int slot, TRAPS) {
  if (src != dst) {
    if (MethodHandles::same_basic_type_for_returns(src, dst, /*raw*/ true)) {
      if (MethodHandles::is_float_fixed_reinterpretation_cast(src, dst)) {
        if (for_return)  Untested("MHW return raw conversion");  // still untested
        vmIntrinsics::ID iid = vmIntrinsics::for_raw_conversion(src, dst);
        if (iid == vmIntrinsics::_none) {
          lose("no raw conversion method", CHECK);
        }
        ArgToken arglist[2];
        if (!for_return) {
          // argument type conversion
852
          ArgToken arg = _outgoing.at(slot);
853 854 855 856 857 858 859 860 861 862 863 864 865 866 867 868 869 870 871
          assert(arg.token_type() >= tt_symbolic || src == arg.basic_type(), "sanity");
          arglist[0] = arg;         // outgoing 'this'
          arglist[1] = ArgToken();  // sentinel
          arg = make_invoke(NULL, iid, Bytecodes::_invokestatic, false, 1, &arglist[0], CHECK);
          change_argument(src, slot, dst, arg);
        } else {
          // return type conversion
          klassOop arg_klass = NULL;
          arglist[0] = make_parameter(src, arg_klass, -1, CHECK);  // return value
          arglist[1] = ArgToken();                                 // sentinel
          (void) make_invoke(NULL, iid, Bytecodes::_invokestatic, false, 1, &arglist[0], CHECK);
        }
      } else {
        // Nothing to do.
      }
    } else if (src == T_OBJECT && is_java_primitive(dst)) {
      // ref-to-prim: discard ref, push zero
      lose("requested ref-to-prim conversion not expected", CHECK);
    } else {
872
      lose(err_msg("requested raw conversion not allowed: %s -> %s", type2name(src), type2name(dst)), CHECK);
873 874 875 876 877
    }
  }
}


878 879 880
// -----------------------------------------------------------------------------
// MethodHandleCompiler

881
MethodHandleCompiler::MethodHandleCompiler(Handle root, Symbol* name, Symbol* signature, int invoke_count, bool is_invokedynamic, TRAPS)
882
  : MethodHandleWalker(root, is_invokedynamic, THREAD),
883
    _invoke_count(invoke_count),
884 885 886 887 888 889 890 891 892 893 894 895
    _thread(THREAD),
    _bytecode(THREAD, 50),
    _constants(THREAD, 10),
    _cur_stack(0),
    _max_stack(0),
    _rtype(T_ILLEGAL)
{

  // Element zero is always the null constant.
  (void) _constants.append(NULL);

  // Set name and signature index.
896 897
  _name_index      = cpool_symbol_put(name);
  _signature_index = cpool_symbol_put(signature);
898 899 900 901

  // Get return type klass.
  Handle first_mtype(THREAD, chain().method_type_oop());
  // _rklass is NULL for primitives.
902
  _rtype = java_lang_Class::as_BasicType(java_lang_invoke_MethodType::rtype(first_mtype()), &_rklass);
903
  if (_rtype == T_ARRAY)  _rtype = T_OBJECT;
904

905 906
  ArgumentSizeComputer args(signature);
  int params = args.size() + 1;  // Incoming arguments plus receiver.
907 908 909 910 911 912 913 914 915 916
  _num_params = for_invokedynamic() ? params - 1 : params;  // XXX Check if callee is static?
}


// -----------------------------------------------------------------------------
// MethodHandleCompiler::compile
//
// Compile this MethodHandle into a bytecode adapter and return a
// methodOop.
methodHandle MethodHandleCompiler::compile(TRAPS) {
917
  assert(_thread == THREAD, "must be same thread");
918 919 920 921
  methodHandle nullHandle;
  (void) walk(CHECK_(nullHandle));
  return get_method_oop(CHECK_(nullHandle));
}
922

923

924
void MethodHandleCompiler::emit_bc(Bytecodes::Code op, int index, int args_size) {
925 926 927 928 929 930 931 932 933 934 935 936 937 938 939 940 941 942 943 944 945 946 947 948 949 950 951 952 953 954 955 956 957 958 959 960 961 962 963 964 965 966 967 968 969 970 971 972 973 974 975 976 977 978 979 980 981 982 983
  Bytecodes::check(op);  // Are we legal?

  switch (op) {
  // b
  case Bytecodes::_aconst_null:
  case Bytecodes::_iconst_m1:
  case Bytecodes::_iconst_0:
  case Bytecodes::_iconst_1:
  case Bytecodes::_iconst_2:
  case Bytecodes::_iconst_3:
  case Bytecodes::_iconst_4:
  case Bytecodes::_iconst_5:
  case Bytecodes::_lconst_0:
  case Bytecodes::_lconst_1:
  case Bytecodes::_fconst_0:
  case Bytecodes::_fconst_1:
  case Bytecodes::_fconst_2:
  case Bytecodes::_dconst_0:
  case Bytecodes::_dconst_1:
  case Bytecodes::_iload_0:
  case Bytecodes::_iload_1:
  case Bytecodes::_iload_2:
  case Bytecodes::_iload_3:
  case Bytecodes::_lload_0:
  case Bytecodes::_lload_1:
  case Bytecodes::_lload_2:
  case Bytecodes::_lload_3:
  case Bytecodes::_fload_0:
  case Bytecodes::_fload_1:
  case Bytecodes::_fload_2:
  case Bytecodes::_fload_3:
  case Bytecodes::_dload_0:
  case Bytecodes::_dload_1:
  case Bytecodes::_dload_2:
  case Bytecodes::_dload_3:
  case Bytecodes::_aload_0:
  case Bytecodes::_aload_1:
  case Bytecodes::_aload_2:
  case Bytecodes::_aload_3:
  case Bytecodes::_istore_0:
  case Bytecodes::_istore_1:
  case Bytecodes::_istore_2:
  case Bytecodes::_istore_3:
  case Bytecodes::_lstore_0:
  case Bytecodes::_lstore_1:
  case Bytecodes::_lstore_2:
  case Bytecodes::_lstore_3:
  case Bytecodes::_fstore_0:
  case Bytecodes::_fstore_1:
  case Bytecodes::_fstore_2:
  case Bytecodes::_fstore_3:
  case Bytecodes::_dstore_0:
  case Bytecodes::_dstore_1:
  case Bytecodes::_dstore_2:
  case Bytecodes::_dstore_3:
  case Bytecodes::_astore_0:
  case Bytecodes::_astore_1:
  case Bytecodes::_astore_2:
  case Bytecodes::_astore_3:
984
  case Bytecodes::_iand:
985 986 987 988 989 990 991 992 993 994 995 996 997 998 999
  case Bytecodes::_i2l:
  case Bytecodes::_i2f:
  case Bytecodes::_i2d:
  case Bytecodes::_i2b:
  case Bytecodes::_i2c:
  case Bytecodes::_i2s:
  case Bytecodes::_l2i:
  case Bytecodes::_l2f:
  case Bytecodes::_l2d:
  case Bytecodes::_f2i:
  case Bytecodes::_f2l:
  case Bytecodes::_f2d:
  case Bytecodes::_d2i:
  case Bytecodes::_d2l:
  case Bytecodes::_d2f:
1000 1001 1002 1003 1004 1005 1006 1007
  case Bytecodes::_iaload:
  case Bytecodes::_laload:
  case Bytecodes::_faload:
  case Bytecodes::_daload:
  case Bytecodes::_aaload:
  case Bytecodes::_baload:
  case Bytecodes::_caload:
  case Bytecodes::_saload:
1008 1009 1010 1011 1012 1013
  case Bytecodes::_ireturn:
  case Bytecodes::_lreturn:
  case Bytecodes::_freturn:
  case Bytecodes::_dreturn:
  case Bytecodes::_areturn:
  case Bytecodes::_return:
1014
    assert(Bytecodes::format_bits(op, false) == Bytecodes::_fmt_b, "wrong bytecode format");
1015 1016 1017 1018 1019
    _bytecode.push(op);
    break;

  // bi
  case Bytecodes::_ldc:
1020
    assert(Bytecodes::format_bits(op, false) == (Bytecodes::_fmt_b|Bytecodes::_fmt_has_k), "wrong bytecode format");
1021 1022 1023 1024 1025 1026 1027 1028
    if (index == (index & 0xff)) {
      _bytecode.push(op);
      _bytecode.push(index);
    } else {
      _bytecode.push(Bytecodes::_ldc_w);
      _bytecode.push(index >> 8);
      _bytecode.push(index);
    }
1029 1030
    break;

1031 1032 1033 1034 1035 1036 1037 1038 1039 1040
  case Bytecodes::_iload:
  case Bytecodes::_lload:
  case Bytecodes::_fload:
  case Bytecodes::_dload:
  case Bytecodes::_aload:
  case Bytecodes::_istore:
  case Bytecodes::_lstore:
  case Bytecodes::_fstore:
  case Bytecodes::_dstore:
  case Bytecodes::_astore:
1041
    assert(Bytecodes::format_bits(op, false) == Bytecodes::_fmt_bi, "wrong bytecode format");
1042 1043 1044 1045 1046 1047 1048 1049 1050 1051
    if (index == (index & 0xff)) {
      _bytecode.push(op);
      _bytecode.push(index);
    } else {
      // doesn't fit in a u2
      _bytecode.push(Bytecodes::_wide);
      _bytecode.push(op);
      _bytecode.push(index >> 8);
      _bytecode.push(index);
    }
1052 1053
    break;

1054 1055
  // bkk
  case Bytecodes::_ldc_w:
1056 1057
  case Bytecodes::_ldc2_w:
  case Bytecodes::_checkcast:
1058
    assert(Bytecodes::format_bits(op, false) == Bytecodes::_fmt_bkk, "wrong bytecode format");
1059
    assert((unsigned short) index == index, "index does not fit in 16-bit");
1060 1061 1062 1063 1064
    _bytecode.push(op);
    _bytecode.push(index >> 8);
    _bytecode.push(index);
    break;

1065
  // bJJ
1066 1067 1068
  case Bytecodes::_invokestatic:
  case Bytecodes::_invokespecial:
  case Bytecodes::_invokevirtual:
1069
    assert(Bytecodes::format_bits(op, false) == Bytecodes::_fmt_bJJ, "wrong bytecode format");
1070
    assert((unsigned short) index == index, "index does not fit in 16-bit");
1071 1072 1073 1074 1075
    _bytecode.push(op);
    _bytecode.push(index >> 8);
    _bytecode.push(index);
    break;

1076 1077 1078 1079 1080 1081 1082 1083 1084 1085 1086
  case Bytecodes::_invokeinterface:
    assert(Bytecodes::format_bits(op, false) == Bytecodes::_fmt_bJJ, "wrong bytecode format");
    assert((unsigned short) index == index, "index does not fit in 16-bit");
    assert(args_size > 0, "valid args_size");
    _bytecode.push(op);
    _bytecode.push(index >> 8);
    _bytecode.push(index);
    _bytecode.push(args_size);
    _bytecode.push(0);
    break;

1087 1088
  default:
    ShouldNotReachHere();
1089
  }
1090 1091
}

1092

1093 1094 1095 1096 1097 1098 1099 1100 1101 1102 1103 1104 1105 1106 1107 1108 1109 1110 1111 1112 1113 1114 1115 1116 1117 1118
void MethodHandleCompiler::emit_load(BasicType bt, int index) {
  if (index <= 3) {
    switch (bt) {
    case T_BOOLEAN: case T_BYTE: case T_CHAR: case T_SHORT:
    case T_INT:    emit_bc(Bytecodes::cast(Bytecodes::_iload_0 + index)); break;
    case T_LONG:   emit_bc(Bytecodes::cast(Bytecodes::_lload_0 + index)); break;
    case T_FLOAT:  emit_bc(Bytecodes::cast(Bytecodes::_fload_0 + index)); break;
    case T_DOUBLE: emit_bc(Bytecodes::cast(Bytecodes::_dload_0 + index)); break;
    case T_OBJECT: emit_bc(Bytecodes::cast(Bytecodes::_aload_0 + index)); break;
    default:
      ShouldNotReachHere();
    }
  }
  else {
    switch (bt) {
    case T_BOOLEAN: case T_BYTE: case T_CHAR: case T_SHORT:
    case T_INT:    emit_bc(Bytecodes::_iload, index); break;
    case T_LONG:   emit_bc(Bytecodes::_lload, index); break;
    case T_FLOAT:  emit_bc(Bytecodes::_fload, index); break;
    case T_DOUBLE: emit_bc(Bytecodes::_dload, index); break;
    case T_OBJECT: emit_bc(Bytecodes::_aload, index); break;
    default:
      ShouldNotReachHere();
    }
  }
  stack_push(bt);
1119 1120
}

1121 1122 1123 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 1149 1150 1151
void MethodHandleCompiler::emit_store(BasicType bt, int index) {
  if (index <= 3) {
    switch (bt) {
    case T_BOOLEAN: case T_BYTE: case T_CHAR: case T_SHORT:
    case T_INT:    emit_bc(Bytecodes::cast(Bytecodes::_istore_0 + index)); break;
    case T_LONG:   emit_bc(Bytecodes::cast(Bytecodes::_lstore_0 + index)); break;
    case T_FLOAT:  emit_bc(Bytecodes::cast(Bytecodes::_fstore_0 + index)); break;
    case T_DOUBLE: emit_bc(Bytecodes::cast(Bytecodes::_dstore_0 + index)); break;
    case T_OBJECT: emit_bc(Bytecodes::cast(Bytecodes::_astore_0 + index)); break;
    default:
      ShouldNotReachHere();
    }
  }
  else {
    switch (bt) {
    case T_BOOLEAN: case T_BYTE: case T_CHAR: case T_SHORT:
    case T_INT:    emit_bc(Bytecodes::_istore, index); break;
    case T_LONG:   emit_bc(Bytecodes::_lstore, index); break;
    case T_FLOAT:  emit_bc(Bytecodes::_fstore, index); break;
    case T_DOUBLE: emit_bc(Bytecodes::_dstore, index); break;
    case T_OBJECT: emit_bc(Bytecodes::_astore, index); break;
    default:
      ShouldNotReachHere();
    }
  }
  stack_pop(bt);
}


void MethodHandleCompiler::emit_load_constant(ArgToken arg) {
  BasicType bt = arg.basic_type();
1152
  if (is_subword_type(bt)) bt = T_INT;
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  switch (bt) {
  case T_INT: {
    jint value = arg.get_jint();
    if (-1 <= value && value <= 5)
      emit_bc(Bytecodes::cast(Bytecodes::_iconst_0 + value));
    else
      emit_bc(Bytecodes::_ldc, cpool_int_put(value));
    break;
  }
  case T_LONG: {
    jlong value = arg.get_jlong();
    if (0 <= value && value <= 1)
      emit_bc(Bytecodes::cast(Bytecodes::_lconst_0 + (int) value));
    else
      emit_bc(Bytecodes::_ldc2_w, cpool_long_put(value));
    break;
  }
  case T_FLOAT: {
    jfloat value  = arg.get_jfloat();
    if (value == 0.0 || value == 1.0 || value == 2.0)
      emit_bc(Bytecodes::cast(Bytecodes::_fconst_0 + (int) value));
    else
      emit_bc(Bytecodes::_ldc, cpool_float_put(value));
    break;
  }
  case T_DOUBLE: {
    jdouble value = arg.get_jdouble();
    if (value == 0.0 || value == 1.0)
      emit_bc(Bytecodes::cast(Bytecodes::_dconst_0 + (int) value));
    else
      emit_bc(Bytecodes::_ldc2_w, cpool_double_put(value));
    break;
  }
  case T_OBJECT: {
    Handle value = arg.object();
    if (value.is_null())
      emit_bc(Bytecodes::_aconst_null);
    else
      emit_bc(Bytecodes::_ldc, cpool_object_put(value));
    break;
  }
  default:
    ShouldNotReachHere();
  }
  stack_push(bt);
}


1201 1202
MethodHandleWalker::ArgToken
MethodHandleCompiler::make_conversion(BasicType type, klassOop tk, Bytecodes::Code op,
1203 1204 1205
                                      const ArgToken& src, TRAPS) {

  BasicType srctype = src.basic_type();
1206 1207
  TokenType tt = src.token_type();
  int index = -1;
1208 1209 1210 1211 1212 1213 1214 1215 1216 1217 1218 1219 1220 1221 1222 1223 1224 1225 1226 1227

  switch (op) {
  case Bytecodes::_i2l:
  case Bytecodes::_i2f:
  case Bytecodes::_i2d:
  case Bytecodes::_i2b:
  case Bytecodes::_i2c:
  case Bytecodes::_i2s:

  case Bytecodes::_l2i:
  case Bytecodes::_l2f:
  case Bytecodes::_l2d:

  case Bytecodes::_f2i:
  case Bytecodes::_f2l:
  case Bytecodes::_f2d:

  case Bytecodes::_d2i:
  case Bytecodes::_d2l:
  case Bytecodes::_d2f:
1228 1229 1230 1231 1232
    if (tt == tt_constant) {
      emit_load_constant(src);
    } else {
      emit_load(srctype, src.index());
    }
1233 1234 1235
    stack_pop(srctype);  // pop the src type
    emit_bc(op);
    stack_push(type);    // push the dest value
1236 1237 1238
    if (tt != tt_constant)
      index = src.index();
    if (srctype != type || index == -1)
1239 1240 1241 1242 1243
      index = new_local_index(type);
    emit_store(type, index);
    break;

  case Bytecodes::_checkcast:
1244 1245 1246 1247 1248 1249
    if (tt == tt_constant) {
      emit_load_constant(src);
    } else {
      emit_load(srctype, src.index());
      index = src.index();
    }
1250
    emit_bc(op, cpool_klass_put(tk));
1251 1252
    if (index == -1)
      index = new_local_index(type);
1253 1254 1255
    emit_store(srctype, index);
    break;

1256 1257 1258 1259
  case Bytecodes::_nop:
    // nothing to do
    return src;

1260
  default:
1261
    if (op == Bytecodes::_illegal)
1262
      lose(err_msg("no such primitive conversion: %s -> %s", type2name(src.basic_type()), type2name(type)), THREAD);
1263
    else
1264
      lose(err_msg("bad primitive conversion op: %s", Bytecodes::name(op)), THREAD);
1265
    return make_prim_constant(type, &zero_jvalue, THREAD);
1266 1267 1268
  }

  return make_parameter(type, tk, index, THREAD);
1269 1270
}

1271 1272 1273 1274 1275

// -----------------------------------------------------------------------------
// MethodHandleCompiler
//

1276 1277 1278
// Values used by the compiler.
jvalue MethodHandleCompiler::zero_jvalue = { 0 };
jvalue MethodHandleCompiler::one_jvalue  = { 1 };
1279 1280

// Emit bytecodes for the given invoke instruction.
1281 1282 1283 1284 1285
MethodHandleWalker::ArgToken
MethodHandleCompiler::make_invoke(methodOop m, vmIntrinsics::ID iid,
                                  Bytecodes::Code op, bool tailcall,
                                  int argc, MethodHandleWalker::ArgToken* argv,
                                  TRAPS) {
1286
  ArgToken zero;
1287 1288 1289
  if (m == NULL) {
    // Get the intrinsic methodOop.
    m = vmIntrinsics::method_for(iid);
1290 1291 1292
    if (m == NULL) {
      lose(vmIntrinsics::name_at(iid), CHECK_(zero));
    }
1293 1294
  }

1295 1296 1297
  klassOop klass     = m->method_holder();
  Symbol*  name      = m->name();
  Symbol*  signature = m->signature();
1298

1299 1300 1301 1302 1303
  // Count the number of arguments, not the size
  ArgumentCount asc(signature);
  assert(argc == asc.size() + ((op == Bytecodes::_invokestatic || op == Bytecodes::_invokedynamic) ? 0 : 1),
         "argc mismatch");

1304
  if (tailcall) {
1305
    // Actually, in order to make these methods more recognizable,
1306 1307 1308
    // let's put them in holder class MethodHandle.  That way stack
    // walkers and compiler heuristics can recognize them.
    _target_klass = SystemDictionary::MethodHandle_klass();
1309 1310 1311 1312
  }

  // Inline the method.
  InvocationCounter* ic = m->invocation_counter();
I
iveresov 已提交
1313
  ic->set_carry_flag();
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  for (int i = 0; i < argc; i++) {
    ArgToken arg = argv[i];
    TokenType tt = arg.token_type();
    BasicType bt = arg.basic_type();

    switch (tt) {
    case tt_parameter:
    case tt_temporary:
      emit_load(bt, arg.index());
      break;
    case tt_constant:
      emit_load_constant(arg);
      break;
    case tt_illegal:
      // Sentinel.
      assert(i == (argc - 1), "sentinel must be last entry");
      break;
    case tt_void:
    default:
      ShouldNotReachHere();
    }
  }

  // Populate constant pool.
  int name_index          = cpool_symbol_put(name);
  int signature_index     = cpool_symbol_put(signature);
  int name_and_type_index = cpool_name_and_type_put(name_index, signature_index);
  int klass_index         = cpool_klass_put(klass);
  int methodref_index     = cpool_methodref_put(klass_index, name_and_type_index);

  // Generate invoke.
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  switch (op) {
  case Bytecodes::_invokestatic:
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  case Bytecodes::_invokespecial:
  case Bytecodes::_invokevirtual:
    emit_bc(op, methodref_index);
    break;
1352 1353 1354 1355

  case Bytecodes::_invokeinterface: {
    ArgumentSizeComputer asc(signature);
    emit_bc(op, methodref_index, asc.size() + 1);
1356
    break;
1357 1358
  }

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  default:
    ShouldNotReachHere();
  }

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  // If tailcall, we have walked all the way to a direct method handle.
  // Otherwise, make a recursive call to some helper routine.
  BasicType rbt = m->result_type();
1366
  if (rbt == T_ARRAY)  rbt = T_OBJECT;
1367
  stack_push(rbt);  // The return value is already pushed onto the stack.
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  ArgToken ret;
  if (tailcall) {
    if (rbt != _rtype) {
      if (rbt == T_VOID) {
        // push a zero of the right sort
        if (_rtype == T_OBJECT) {
          zero = make_oop_constant(NULL, CHECK_(zero));
        } else {
          zero = make_prim_constant(_rtype, &zero_jvalue, CHECK_(zero));
        }
        emit_load_constant(zero);
      } else if (_rtype == T_VOID) {
        // We'll emit a _return with something on the stack.
        // It's OK to ignore what's on the stack.
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      } else if (rbt == T_INT && is_subword_type(_rtype)) {
        // Convert value to match return type.
        switch (_rtype) {
        case T_BOOLEAN: {
          // boolean is treated as a one-bit unsigned integer.
          // Cf. API documentation: java/lang/invoke/MethodHandles.html#explicitCastArguments
          ArgToken one = make_prim_constant(T_INT, &one_jvalue, CHECK_(zero));
          emit_load_constant(one);
          emit_bc(Bytecodes::_iand);
          break;
        }
        case T_BYTE:    emit_bc(Bytecodes::_i2b); break;
        case T_CHAR:    emit_bc(Bytecodes::_i2c); break;
        case T_SHORT:   emit_bc(Bytecodes::_i2s); break;
        default: ShouldNotReachHere();
        }
      } else if (is_subword_type(rbt) && (is_subword_type(_rtype) || (_rtype == T_INT))) {
        // The subword type was returned as an int and will be passed
        // on as an int.
1401
      } else {
1402
        lose("unknown conversion", CHECK_(zero));
1403 1404 1405 1406 1407 1408 1409 1410 1411 1412
      }
    }
    switch (_rtype) {
    case T_BOOLEAN: case T_BYTE: case T_CHAR: case T_SHORT:
    case T_INT:    emit_bc(Bytecodes::_ireturn); break;
    case T_LONG:   emit_bc(Bytecodes::_lreturn); break;
    case T_FLOAT:  emit_bc(Bytecodes::_freturn); break;
    case T_DOUBLE: emit_bc(Bytecodes::_dreturn); break;
    case T_VOID:   emit_bc(Bytecodes::_return);  break;
    case T_OBJECT:
1413
      if (_rklass.not_null() && _rklass() != SystemDictionary::Object_klass())
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        emit_bc(Bytecodes::_checkcast, cpool_klass_put(_rklass()));
      emit_bc(Bytecodes::_areturn);
      break;
    default: ShouldNotReachHere();
    }
    ret = ArgToken();  // Dummy return value.
  }
  else {
    int index = new_local_index(rbt);
    switch (rbt) {
    case T_BOOLEAN: case T_BYTE: case T_CHAR:  case T_SHORT:
    case T_INT:     case T_LONG: case T_FLOAT: case T_DOUBLE:
    case T_OBJECT:
      emit_store(rbt, index);
      ret = ArgToken(tt_temporary, rbt, index);
      break;
    case T_VOID:
      ret = ArgToken(tt_void);
      break;
    default:
      ShouldNotReachHere();
    }
  }

  return ret;
1439 1440 1441 1442
}

MethodHandleWalker::ArgToken
MethodHandleCompiler::make_fetch(BasicType type, klassOop tk, Bytecodes::Code op,
1443 1444
                                 const MethodHandleWalker::ArgToken& base,
                                 const MethodHandleWalker::ArgToken& offset,
1445
                                 TRAPS) {
1446 1447 1448 1449 1450 1451 1452 1453 1454 1455 1456 1457 1458 1459 1460 1461 1462 1463 1464 1465 1466 1467 1468 1469 1470 1471
  switch (base.token_type()) {
    case tt_parameter:
    case tt_temporary:
      emit_load(base.basic_type(), base.index());
      break;
    case tt_constant:
      emit_load_constant(base);
      break;
    default:
      ShouldNotReachHere();
  }
  switch (offset.token_type()) {
    case tt_parameter:
    case tt_temporary:
      emit_load(offset.basic_type(), offset.index());
      break;
    case tt_constant:
      emit_load_constant(offset);
      break;
    default:
      ShouldNotReachHere();
  }
  emit_bc(op);
  int index = new_local_index(type);
  emit_store(type, index);
  return ArgToken(tt_temporary, type, index);
1472 1473 1474
}


1475
int MethodHandleCompiler::cpool_primitive_put(BasicType bt, jvalue* con) {
1476 1477 1478 1479 1480 1481 1482 1483 1484 1485 1486 1487 1488 1489 1490
  jvalue con_copy;
  assert(bt < T_OBJECT, "");
  if (type2aelembytes(bt) < jintSize) {
    // widen to int
    con_copy = (*con);
    con = &con_copy;
    switch (bt) {
    case T_BOOLEAN: con->i = (con->z ? 1 : 0); break;
    case T_BYTE:    con->i = con->b;           break;
    case T_CHAR:    con->i = con->c;           break;
    case T_SHORT:   con->i = con->s;           break;
    default: ShouldNotReachHere();
    }
    bt = T_INT;
  }
1491 1492 1493

//   for (int i = 1, imax = _constants.length(); i < imax; i++) {
//     ConstantValue* con = _constants.at(i);
1494
//     if (con != NULL && con->is_primitive() && con.basic_type() == bt) {
1495 1496 1497 1498 1499 1500 1501 1502 1503 1504 1505 1506 1507 1508 1509 1510 1511 1512 1513 1514 1515 1516
//       bool match = false;
//       switch (type2size[bt]) {
//       case 1:  if (pcon->_value.i == con->i)  match = true;  break;
//       case 2:  if (pcon->_value.j == con->j)  match = true;  break;
//       }
//       if (match)
//         return i;
//     }
//   }
  ConstantValue* cv = new ConstantValue(bt, *con);
  int index = _constants.append(cv);

  // long and double entries take 2 slots, we add another empty entry.
  if (type2size[bt] == 2)
    (void) _constants.append(NULL);

  return index;
}


constantPoolHandle MethodHandleCompiler::get_constant_pool(TRAPS) const {
  constantPoolHandle nullHandle;
1517 1518 1519
  constantPoolOop cpool_oop = oopFactory::new_constantPool(_constants.length(),
                                                           oopDesc::IsSafeConc,
                                                           CHECK_(nullHandle));
1520 1521 1522 1523 1524 1525
  constantPoolHandle cpool(THREAD, cpool_oop);

  // Fill the real constant pool skipping the zero element.
  for (int i = 1; i < _constants.length(); i++) {
    ConstantValue* cv = _constants.at(i);
    switch (cv->tag()) {
1526
    case JVM_CONSTANT_Utf8:        cpool->symbol_at_put(       i, cv->symbol()                         ); break;
1527 1528 1529 1530 1531 1532 1533 1534 1535 1536 1537 1538 1539 1540 1541 1542 1543
    case JVM_CONSTANT_Integer:     cpool->int_at_put(          i, cv->get_jint()                       ); break;
    case JVM_CONSTANT_Float:       cpool->float_at_put(        i, cv->get_jfloat()                     ); break;
    case JVM_CONSTANT_Long:        cpool->long_at_put(         i, cv->get_jlong()                      ); break;
    case JVM_CONSTANT_Double:      cpool->double_at_put(       i, cv->get_jdouble()                    ); break;
    case JVM_CONSTANT_Class:       cpool->klass_at_put(        i, cv->klass_oop()                      ); break;
    case JVM_CONSTANT_Methodref:   cpool->method_at_put(       i, cv->first_index(), cv->second_index()); break;
    case JVM_CONSTANT_NameAndType: cpool->name_and_type_at_put(i, cv->first_index(), cv->second_index()); break;
    case JVM_CONSTANT_Object:      cpool->object_at_put(       i, cv->object_oop()                     ); break;
    default: ShouldNotReachHere();
    }

    switch (cv->tag()) {
    case JVM_CONSTANT_Long:
    case JVM_CONSTANT_Double:
      i++;  // Skip empty entry.
      assert(_constants.at(i) == NULL, "empty entry");
      break;
1544 1545
    }
  }
1546 1547 1548 1549 1550 1551 1552 1553 1554

  // Set the constant pool holder to the target method's class.
  cpool->set_pool_holder(_target_klass());

  return cpool;
}


methodHandle MethodHandleCompiler::get_method_oop(TRAPS) const {
1555
  methodHandle empty;
1556 1557 1558 1559
  // Create a method that holds the generated bytecode.  invokedynamic
  // has no receiver, normal MH calls do.
  int flags_bits;
  if (for_invokedynamic())
1560
    flags_bits = (/*JVM_MH_INVOKE_BITS |*/ JVM_ACC_PUBLIC | JVM_ACC_FINAL | JVM_ACC_SYNTHETIC | JVM_ACC_STATIC);
1561
  else
1562
    flags_bits = (/*JVM_MH_INVOKE_BITS |*/ JVM_ACC_PUBLIC | JVM_ACC_FINAL | JVM_ACC_SYNTHETIC);
1563

1564 1565 1566 1567 1568 1569 1570 1571
  // Create a new method
  methodHandle m;
  {
    methodOop m_oop = oopFactory::new_method(bytecode_length(),
                                             accessFlags_from(flags_bits),
                                             0, 0, 0, oopDesc::IsSafeConc, CHECK_(empty));
    m = methodHandle(THREAD, m_oop);
  }
1572

1573
  constantPoolHandle cpool = get_constant_pool(CHECK_(empty));
1574 1575 1576 1577 1578 1579 1580 1581 1582 1583 1584 1585 1586 1587 1588
  m->set_constants(cpool());

  m->set_name_index(_name_index);
  m->set_signature_index(_signature_index);

  m->set_code((address) bytecode());

  m->set_max_stack(_max_stack);
  m->set_max_locals(max_locals());
  m->set_size_of_parameters(_num_params);

  typeArrayHandle exception_handlers(THREAD, Universe::the_empty_int_array());
  m->set_exception_table(exception_handlers());

  // Rewrite the method and set up the constant pool cache.
1589
  objArrayOop m_array = oopFactory::new_system_objArray(1, CHECK_(empty));
1590 1591
  objArrayHandle methods(THREAD, m_array);
  methods->obj_at_put(0, m());
1592 1593
  Rewriter::rewrite(_target_klass(), cpool, methods, CHECK_(empty));  // Use fake class.

1594 1595 1596 1597 1598
  // Set the invocation counter's count to the invoke count of the
  // original call site.
  InvocationCounter* ic = m->invocation_counter();
  ic->set(InvocationCounter::wait_for_compile, _invoke_count);

1599 1600 1601 1602 1603 1604 1605 1606
  // Create a new MDO
  {
    methodDataOop mdo = oopFactory::new_methodData(m, CHECK_(empty));
    assert(m->method_data() == NULL, "there should not be an MDO yet");
    m->set_method_data(mdo);

    // Iterate over all profile data and set the count of the counter
    // data entries to the original call site counter.
1607 1608 1609 1610 1611 1612
    for (ProfileData* profile_data = mdo->first_data();
         mdo->is_valid(profile_data);
         profile_data = mdo->next_data(profile_data)) {
      if (profile_data->is_CounterData()) {
        CounterData* counter_data = profile_data->as_CounterData();
        counter_data->set_count(_invoke_count);
1613 1614 1615
      }
    }
  }
1616 1617 1618 1619 1620 1621 1622 1623

#ifndef PRODUCT
  if (TraceMethodHandles) {
    m->print();
    m->print_codes();
  }
#endif //PRODUCT

1624
  assert(m->is_method_handle_adapter(), "must be recognized as an adapter");
1625
  return m;
1626 1627 1628 1629 1630 1631 1632 1633 1634 1635 1636 1637
}


#ifndef PRODUCT

// MH printer for debugging.

class MethodHandlePrinter : public MethodHandleWalker {
private:
  outputStream* _out;
  bool          _verbose;
  int           _temp_num;
1638
  int           _param_state;
1639 1640 1641 1642 1643 1644
  stringStream  _strbuf;
  const char* strbuf() {
    const char* s = _strbuf.as_string();
    _strbuf.reset();
    return s;
  }
1645 1646
  ArgToken token(const char* str, BasicType type) {
    return ArgToken(str, type);
1647 1648
  }
  const char* string(ArgToken token) {
1649
    return token.str();
1650 1651
  }
  void start_params() {
1652
    _param_state <<= 1;
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    _out->print("(");
  }
  void end_params() {
    if (_verbose)  _out->print("\n");
    _out->print(") => {");
1658
    _param_state >>= 1;
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  }
  void put_type_name(BasicType type, klassOop tk, outputStream* s) {
    const char* kname = NULL;
    if (tk != NULL)
      kname = Klass::cast(tk)->external_name();
    s->print("%s", (kname != NULL) ? kname : type2name(type));
  }
  ArgToken maybe_make_temp(const char* statement_op, BasicType type, const char* temp_name) {
    const char* value = strbuf();
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    if (!_verbose)  return token(value, type);
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    // make an explicit binding for each separate value
    _strbuf.print("%s%d", temp_name, ++_temp_num);
    const char* temp = strbuf();
    _out->print("\n  %s %s %s = %s;", statement_op, type2name(type), temp, value);
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    return token(temp, type);
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  }

public:
  MethodHandlePrinter(Handle root, bool verbose, outputStream* out, TRAPS)
1678
    : MethodHandleWalker(root, false, THREAD),
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      _out(out),
      _verbose(verbose),
1681
      _param_state(0),
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      _temp_num(0)
  {
    start_params();
  }
  virtual ArgToken make_parameter(BasicType type, klassOop tk, int argnum, TRAPS) {
    if (argnum < 0) {
      end_params();
1689
      return token("return", type);
1690
    }
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    if ((_param_state & 1) == 0) {
      _param_state |= 1;
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      _out->print(_verbose ? "\n  " : "");
    } else {
      _out->print(_verbose ? ",\n  " : ", ");
    }
    if (argnum >= _temp_num)
      _temp_num = argnum;
    // generate an argument name
    _strbuf.print("a%d", argnum);
    const char* arg = strbuf();
    put_type_name(type, tk, _out);
    _out->print(" %s", arg);
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    return token(arg, type);
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  }
  virtual ArgToken make_oop_constant(oop con, TRAPS) {
    if (con == NULL)
      _strbuf.print("null");
    else
      con->print_value_on(&_strbuf);
    if (_strbuf.size() == 0) {  // yuck
      _strbuf.print("(a ");
      put_type_name(T_OBJECT, con->klass(), &_strbuf);
      _strbuf.print(")");
    }
    return maybe_make_temp("constant", T_OBJECT, "k");
  }
  virtual ArgToken make_prim_constant(BasicType type, jvalue* con, TRAPS) {
    java_lang_boxing_object::print(type, con, &_strbuf);
    return maybe_make_temp("constant", type, "k");
  }
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  void print_bytecode_name(Bytecodes::Code op) {
    if (Bytecodes::is_defined(op))
      _strbuf.print("%s", Bytecodes::name(op));
    else
      _strbuf.print("bytecode_%d", (int) op);
  }
  virtual ArgToken make_conversion(BasicType type, klassOop tk, Bytecodes::Code op, const ArgToken& src, TRAPS) {
    print_bytecode_name(op);
    _strbuf.print("(%s", string(src));
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    if (tk != NULL) {
      _strbuf.print(", ");
      put_type_name(type, tk, &_strbuf);
    }
    _strbuf.print(")");
    return maybe_make_temp("convert", type, "v");
  }
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  virtual ArgToken make_fetch(BasicType type, klassOop tk, Bytecodes::Code op, const ArgToken& base, const ArgToken& offset, TRAPS) {
    _strbuf.print("%s(%s, %s", Bytecodes::name(op), string(base), string(offset));
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    if (tk != NULL) {
      _strbuf.print(", ");
      put_type_name(type, tk, &_strbuf);
    }
    _strbuf.print(")");
    return maybe_make_temp("fetch", type, "x");
  }
  virtual ArgToken make_invoke(methodOop m, vmIntrinsics::ID iid,
                               Bytecodes::Code op, bool tailcall,
                               int argc, ArgToken* argv, TRAPS) {
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    Symbol* name;
    Symbol* sig;
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    if (m != NULL) {
      name = m->name();
      sig  = m->signature();
    } else {
      name = vmSymbols::symbol_at(vmIntrinsics::name_for(iid));
      sig  = vmSymbols::symbol_at(vmIntrinsics::signature_for(iid));
    }
    _strbuf.print("%s %s%s(", Bytecodes::name(op), name->as_C_string(), sig->as_C_string());
    for (int i = 0; i < argc; i++) {
1761
      _strbuf.print("%s%s", (i > 0 ? ", " : ""), string(argv[i]));
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    }
    _strbuf.print(")");
    if (!tailcall) {
      BasicType rt = char2type(sig->byte_at(sig->utf8_length()-1));
      if (rt == T_ILLEGAL)  rt = T_OBJECT;  // ';' at the end of '(...)L...;'
      return maybe_make_temp("invoke", rt, "x");
    } else {
      const char* ret = strbuf();
      _out->print(_verbose ? "\n  return " : " ");
      _out->print("%s", ret);
      _out->print(_verbose ? "\n}\n" : " }");
    }
    return ArgToken();
  }

  virtual void set_method_handle(oop mh) {
    if (WizardMode && Verbose) {
      tty->print("\n--- next target: ");
      mh->print();
    }
  }

  static void print(Handle root, bool verbose, outputStream* out, TRAPS) {
    ResourceMark rm;
    MethodHandlePrinter printer(root, verbose, out, CHECK);
    printer.walk(CHECK);
    out->print("\n");
  }
  static void print(Handle root, bool verbose = Verbose, outputStream* out = tty) {
1791
    Thread* THREAD = Thread::current();
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    ResourceMark rm;
    MethodHandlePrinter printer(root, verbose, out, THREAD);
    if (!HAS_PENDING_EXCEPTION)
      printer.walk(THREAD);
    if (HAS_PENDING_EXCEPTION) {
      oop ex = PENDING_EXCEPTION;
      CLEAR_PENDING_EXCEPTION;
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      out->print(" *** ");
      if (printer.lose_message() != NULL)  out->print("%s ", printer.lose_message());
      out->print("}");
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    }
    out->print("\n");
  }
};

extern "C"
void print_method_handle(oop mh) {
1809
  if (!mh->is_oop()) {
1810
    tty->print_cr("*** not a method handle: "PTR_FORMAT, (intptr_t)mh);
1811
  } else if (java_lang_invoke_MethodHandle::is_instance(mh)) {
1812
    MethodHandlePrinter::print(mh);
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  } else {
    tty->print("*** not a method handle: ");
    mh->print();
  }
}

#endif // PRODUCT