methodHandleWalk.cpp 55.1 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;
  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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// -----------------------------------------------------------------------------
// 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();
      SlotState* arg_state = slot_state(arg_slot);
      if (arg_state == NULL
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          && conv_op > java_lang_invoke_AdapterMethodHandle::OP_RETYPE_RAW) {
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        lose("bad argument index", 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--) {
          SlotState* arg_state = slot_state(slot);
          if (arg_state->_type == 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, "");
        assert(dest == arg_state->_type, "");
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        ArgToken arg = arg_state->_arg;
        ArgToken new_arg = make_conversion(T_OBJECT, dest_klass, Bytecodes::_checkcast, arg, CHECK_(empty));
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        assert(arg.token_type() >= tt_symbolic || 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();
        Bytecodes::Code bc = conversion_code(src, dest);
        ArgToken arg = arg_state->_arg;
        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("bad primitive conversion", 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();
        ArgToken arg = arg_state->_arg;
        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();
        ArgToken arg = arg_state->_arg;
        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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        }
        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();
        if (!slot_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
        SlotState* dest_arg_state = slot_state(dest_arg_slot);
        SlotState temp = (*dest_arg_state);
        (*dest_arg_state) = (*arg_state);
        (*arg_state) = temp;
        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();
        if (!slot_has_argument(dest_arg_slot) || arg_slot == dest_arg_slot) {
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          lose("bad rotate index", CHECK_(empty));
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        }
        SlotState* dest_arg_state = slot_state(dest_arg_slot);
        // Rotate the source argument (plus following N slots) into the
        // position occupied by the dest argument (plus following N slots).
        int rotate_count = type2size[dest_arg_state->_type];
        // (no other rotate counts are currently supported)
        if (arg_slot < dest_arg_slot) {
          for (int i = 0; i < rotate_count; i++) {
            SlotState temp = _outgoing.at(arg_slot);
            _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++) {
            SlotState temp = _outgoing.at(arg_slot + rotate_count - 1);
            _outgoing.remove_at(arg_slot + rotate_count - 1);
            _outgoing.insert_before(dest_arg_slot, temp);
          }
        }
        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++) {
          SlotState* dup = slot_state(arg_slot + 2*i);
          if (dup == NULL)              break;  // safety net
          if (dup->_type != T_VOID)     _outgoing_argc += 1;
          _outgoing.insert_before(i, (*dup));
        }
        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++) {
          SlotState* drop = slot_state(arg_slot);
          if (drop == NULL)             break;  // safety net
          if (drop->_type != T_VOID)    _outgoing_argc -= 1;
          _outgoing.remove_at(arg_slot);
        }
        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--) {
          SlotState* arg_state = slot_state(slot);
          BasicType  arg_type  = arg_state->_type;
          if (arg_type == T_VOID)  continue;
          ArgToken arg = _outgoing.at(slot)._arg;
          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));
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          i++;
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        }
        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));
          }
        }
        int ret_slot = arg_slot + (retain_original_args ? coll_slots : 0);
        change_argument(T_VOID, ret_slot, rtype, ret);
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        break;
      }

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      case java_lang_invoke_AdapterMethodHandle::OP_SPREAD_ARGS: {
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        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.
        assert(arg_state->_type == T_OBJECT, "");
        ArgToken array_arg = arg_state->_arg;
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        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));
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        // 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) {
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          lose("bad spread length", CHECK_(empty));
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        }

        jvalue   length_jvalue;  length_jvalue.i = spread_length;
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        ArgToken length_arg = make_prim_constant(T_INT, &length_jvalue, CHECK_(empty));
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        // Call a built-in method known to the JVM to validate the length.
        ArgToken arglist[3];
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        arglist[0] = array_arg;   // value to check
        arglist[1] = length_arg;  // length to check
        arglist[2] = ArgToken();  // sentinel
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        make_invoke(NULL, vmIntrinsics::_checkSpreadArgument,
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                    Bytecodes::_invokestatic, false, 2, &arglist[0], CHECK_(empty));
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        // Spread out the array elements.
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        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));
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        }
        int ap = arg_slot;
        for (int i = 0; i < spread_length; i++) {
          jvalue   offset_jvalue;  offset_jvalue.i = i;
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          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));
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          change_argument(T_VOID, ap, element_type, element_arg);
          ap += type2size[element_type];
        }
        break;
      }

      default:
519
        lose("bad adapter conversion", CHECK_(empty));
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        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();
529
      ArgToken  arg;
530
      if (arg_type == T_OBJECT) {
531
        arg = make_oop_constant(arg_oop, CHECK_(empty));
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      } else {
        jvalue arg_value;
        BasicType bt = java_lang_boxing_object::get_value(arg_oop, &arg_value);
        if (bt == arg_type) {
536
          arg = make_prim_constant(arg_type, &arg_value, CHECK_(empty));
537
        } else {
538
          lose("bad bound value", CHECK_(empty));
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        }
      }
541
      DEBUG_ONLY(arg_oop = badOop);
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      change_argument(T_VOID, arg_slot, arg_type, arg);
    }

    // this test must come after the body of the loop
    if (!chain().is_last()) {
547
      chain().next(CHECK_(empty));
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    } 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--) {
    SlotState* arg_state = slot_state(i);
    if (arg_state->_type == T_VOID)  continue;
    arglist[ap++] = _outgoing.at(i)._arg;
  }
  assert(ap == _outgoing_argc, "");
563
  arglist[ap] = ArgToken();  // add a sentinel, for the sake of asserts
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  return make_invoke(chain().last_method_oop(),
                     vmIntrinsics::_none,
                     chain().last_invoke_code(), true,
                     ap, arglist, THREAD);
}

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// -----------------------------------------------------------------------------
// MethodHandleWalker::walk_incoming_state
//
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void MethodHandleWalker::walk_incoming_state(TRAPS) {
  Handle mtype(THREAD, chain().method_type_oop());
576
  int nptypes = java_lang_invoke_MethodType::ptype_count(mtype());
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  _outgoing_argc = nptypes;
  int argp = nptypes - 1;
  if (argp >= 0) {
580
    _outgoing.at_grow(argp, make_state(T_VOID, ArgToken(tt_void))); // presize
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  }
  for (int i = 0; i < nptypes; i++) {
    klassOop  arg_type_klass = NULL;
584
    BasicType arg_type = java_lang_Class::as_BasicType(java_lang_invoke_MethodType::ptype(mtype(), i), &arg_type_klass);
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    int index = new_local_index(arg_type);
    ArgToken arg = make_parameter(arg_type, arg_type_klass, index, CHECK);
587
    DEBUG_ONLY(arg_type_klass = (klassOop) NULL);
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    _outgoing.at_put(argp, make_state(arg_type, arg));
    if (type2size[arg_type] == 2) {
      // add the extra slot, so we can model the JVM stack
591
      _outgoing.insert_before(argp+1, make_state(T_VOID, ArgToken(tt_void)));
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    }
    --argp;
  }
  // call make_parameter at the end of the list for the return type
  klassOop  ret_type_klass = NULL;
597
  BasicType ret_type = java_lang_Class::as_BasicType(java_lang_invoke_MethodType::rtype(mtype()), &ret_type_klass);
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  ArgToken  ret = make_parameter(ret_type, ret_type_klass, -1, CHECK);
  // ignore ret; client can catch it if needed
}

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// -----------------------------------------------------------------------------
// MethodHandleWalker::change_argument
//
// This is messy because some kinds of arguments are paired with
// companion slots containing an empty value.
608
void MethodHandleWalker::change_argument(BasicType old_type, int slot, BasicType new_type,
609
                                         const ArgToken& new_arg) {
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  int old_size = type2size[old_type];
  int new_size = type2size[new_type];
  if (old_size == new_size) {
    // simple case first
    _outgoing.at_put(slot, make_state(new_type, new_arg));
  } else if (old_size > new_size) {
616
    for (int i = old_size - 1; i >= new_size; i--) {
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      assert((i != 0) == (_outgoing.at(slot + i)._type == T_VOID), "");
      _outgoing.remove_at(slot + i);
    }
    if (new_size > 0)
      _outgoing.at_put(slot, make_state(new_type, new_arg));
    else
      _outgoing_argc -= 1;      // deleted a real argument
  } else {
    for (int i = old_size; i < new_size; i++) {
626
      _outgoing.insert_before(slot + i, make_state(T_VOID, ArgToken(tt_void)));
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    }
    _outgoing.at_put(slot, make_state(new_type, new_arg));
    if (old_size == 0)
      _outgoing_argc += 1;      // inserted a real argument
  }
}


#ifdef ASSERT
int MethodHandleWalker::argument_count_slow() {
  int args_seen = 0;
  for (int i = _outgoing.length() - 1; i >= 0; i--) {
    if (_outgoing.at(i)._type != T_VOID) {
      ++args_seen;
    }
  }
  return args_seen;
}
#endif


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// -----------------------------------------------------------------------------
// 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
          ArgToken arg = _outgoing.at(slot)._arg;
          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 {
      lose("requested raw conversion not allowed", CHECK);
    }
  }
}


690 691 692
// -----------------------------------------------------------------------------
// MethodHandleCompiler

693
MethodHandleCompiler::MethodHandleCompiler(Handle root, methodHandle callee, int invoke_count, bool is_invokedynamic, TRAPS)
694 695
  : MethodHandleWalker(root, is_invokedynamic, THREAD),
    _callee(callee),
696
    _invoke_count(invoke_count),
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    _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.
  _name_index      = cpool_symbol_put(_callee->name());
  _signature_index = cpool_symbol_put(_callee->signature());

  // Get return type klass.
  Handle first_mtype(THREAD, chain().method_type_oop());
  // _rklass is NULL for primitives.
715
  _rtype = java_lang_Class::as_BasicType(java_lang_invoke_MethodType::rtype(first_mtype()), &_rklass);
716
  if (_rtype == T_ARRAY)  _rtype = T_OBJECT;
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  int params = _callee->size_of_parameters();  // Incoming arguments plus receiver.
  _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) {
729
  assert(_thread == THREAD, "must be same thread");
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  methodHandle nullHandle;
  (void) walk(CHECK_(nullHandle));
  return get_method_oop(CHECK_(nullHandle));
}
734

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void MethodHandleCompiler::emit_bc(Bytecodes::Code op, int index) {
  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:
796
  case Bytecodes::_iand:
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  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:
  case Bytecodes::_ireturn:
  case Bytecodes::_lreturn:
  case Bytecodes::_freturn:
  case Bytecodes::_dreturn:
  case Bytecodes::_areturn:
  case Bytecodes::_return:
818
    assert(Bytecodes::format_bits(op, false) == Bytecodes::_fmt_b, "wrong bytecode format");
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    _bytecode.push(op);
    break;

  // bi
  case Bytecodes::_ldc:
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    assert(Bytecodes::format_bits(op, false) == (Bytecodes::_fmt_b|Bytecodes::_fmt_has_k), "wrong bytecode format");
    assert((char) index == index, "index does not fit in 8-bit");
    _bytecode.push(op);
    _bytecode.push(index);
    break;

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  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:
840
    assert(Bytecodes::format_bits(op, false) == Bytecodes::_fmt_bi, "wrong bytecode format");
841 842 843 844 845
    assert((char) index == index, "index does not fit in 8-bit");
    _bytecode.push(op);
    _bytecode.push(index);
    break;

846 847
  // bkk
  case Bytecodes::_ldc_w:
848 849
  case Bytecodes::_ldc2_w:
  case Bytecodes::_checkcast:
850
    assert(Bytecodes::format_bits(op, false) == Bytecodes::_fmt_bkk, "wrong bytecode format");
851 852 853 854 855 856
    assert((short) index == index, "index does not fit in 16-bit");
    _bytecode.push(op);
    _bytecode.push(index >> 8);
    _bytecode.push(index);
    break;

857
  // bJJ
858 859 860
  case Bytecodes::_invokestatic:
  case Bytecodes::_invokespecial:
  case Bytecodes::_invokevirtual:
861
    assert(Bytecodes::format_bits(op, false) == Bytecodes::_fmt_bJJ, "wrong bytecode format");
862 863 864 865 866 867 868 869
    assert((short) index == index, "index does not fit in 16-bit");
    _bytecode.push(op);
    _bytecode.push(index >> 8);
    _bytecode.push(index);
    break;

  default:
    ShouldNotReachHere();
870
  }
871 872
}

873

874 875 876 877 878 879 880 881 882 883 884 885 886 887 888 889 890 891 892 893 894 895 896 897 898 899
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);
900 901
}

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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();
  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);
}


981 982
MethodHandleWalker::ArgToken
MethodHandleCompiler::make_conversion(BasicType type, klassOop tk, Bytecodes::Code op,
983 984 985 986 987 988 989 990 991 992 993 994 995 996 997 998 999 1000 1001 1002 1003 1004 1005 1006 1007 1008 1009 1010 1011 1012 1013 1014 1015 1016 1017 1018 1019 1020 1021 1022
                                      const ArgToken& src, TRAPS) {

  BasicType srctype = src.basic_type();
  int index = src.index();

  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:
    emit_load(srctype, index);
    stack_pop(srctype);  // pop the src type
    emit_bc(op);
    stack_push(type);    // push the dest value
    if (srctype != type)
      index = new_local_index(type);
    emit_store(type, index);
    break;

  case Bytecodes::_checkcast:
    emit_load(srctype, index);
    emit_bc(op, cpool_klass_put(tk));
    emit_store(srctype, index);
    break;

  default:
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    if (op == Bytecodes::_illegal)
      lose("no such primitive conversion", THREAD);
    else
      lose("bad primitive conversion op", THREAD);
    return make_prim_constant(type, &zero_jvalue, THREAD);
1028 1029 1030
  }

  return make_parameter(type, tk, index, THREAD);
1031 1032
}

1033 1034 1035 1036 1037

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

1038 1039 1040
// Values used by the compiler.
jvalue MethodHandleCompiler::zero_jvalue = { 0 };
jvalue MethodHandleCompiler::one_jvalue  = { 1 };
1041 1042

// Emit bytecodes for the given invoke instruction.
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MethodHandleWalker::ArgToken
MethodHandleCompiler::make_invoke(methodOop m, vmIntrinsics::ID iid,
                                  Bytecodes::Code op, bool tailcall,
                                  int argc, MethodHandleWalker::ArgToken* argv,
                                  TRAPS) {
1048
  ArgToken zero;
1049 1050 1051
  if (m == NULL) {
    // Get the intrinsic methodOop.
    m = vmIntrinsics::method_for(iid);
1052 1053 1054
    if (m == NULL) {
      lose(vmIntrinsics::name_at(iid), CHECK_(zero));
    }
1055 1056
  }

1057 1058 1059
  klassOop klass     = m->method_holder();
  Symbol*  name      = m->name();
  Symbol*  signature = m->signature();
1060 1061

  if (tailcall) {
1062
    // Actually, in order to make these methods more recognizable,
1063 1064 1065
    // let's put them in holder class MethodHandle.  That way stack
    // walkers and compiler heuristics can recognize them.
    _target_klass = SystemDictionary::MethodHandle_klass();
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  }

  // Inline the method.
  InvocationCounter* ic = m->invocation_counter();
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iveresov 已提交
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  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.
1103 1104
  switch (op) {
  case Bytecodes::_invokestatic:
1105 1106 1107 1108
  case Bytecodes::_invokespecial:
  case Bytecodes::_invokevirtual:
    emit_bc(op, methodref_index);
    break;
1109
  case Bytecodes::_invokeinterface:
1110
    Unimplemented();
1111 1112 1113 1114 1115
    break;
  default:
    ShouldNotReachHere();
  }

1116 1117 1118
  // 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();
1119
  if (rbt == T_ARRAY)  rbt = T_OBJECT;
1120 1121 1122 1123 1124 1125 1126 1127 1128 1129 1130 1131 1132 1133
  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.
1134 1135 1136 1137 1138 1139 1140 1141 1142 1143 1144 1145 1146 1147 1148 1149 1150 1151 1152
      } 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.
1153
      } else {
1154
        lose("unknown conversion", CHECK_(zero));
1155 1156 1157 1158 1159 1160 1161 1162 1163 1164
      }
    }
    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:
1165
      if (_rklass.not_null() && _rklass() != SystemDictionary::Object_klass())
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
        emit_bc(Bytecodes::_checkcast, cpool_klass_put(_rklass()));
      emit_bc(Bytecodes::_areturn);
      break;
    default: ShouldNotReachHere();
    }
    ret = ArgToken();  // Dummy return value.
  }
  else {
    stack_push(rbt);  // The return value is already pushed onto the stack.
    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;
1192 1193 1194 1195
}

MethodHandleWalker::ArgToken
MethodHandleCompiler::make_fetch(BasicType type, klassOop tk, Bytecodes::Code op,
1196 1197
                                 const MethodHandleWalker::ArgToken& base,
                                 const MethodHandleWalker::ArgToken& offset,
1198 1199
                                 TRAPS) {
  Unimplemented();
1200
  return ArgToken();
1201 1202 1203
}


1204
int MethodHandleCompiler::cpool_primitive_put(BasicType bt, jvalue* con) {
1205 1206 1207 1208 1209 1210 1211 1212 1213 1214 1215 1216 1217 1218 1219
  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;
  }
1220 1221 1222 1223 1224 1225 1226 1227 1228 1229 1230 1231 1232 1233 1234 1235 1236 1237 1238 1239 1240 1241 1242 1243 1244 1245

//   for (int i = 1, imax = _constants.length(); i < imax; i++) {
//     ConstantValue* con = _constants.at(i);
//     if (con != NULL && con->is_primitive() && con->_type == bt) {
//       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;
1246 1247 1248
  constantPoolOop cpool_oop = oopFactory::new_constantPool(_constants.length(),
                                                           oopDesc::IsSafeConc,
                                                           CHECK_(nullHandle));
1249 1250 1251 1252 1253 1254
  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()) {
1255
    case JVM_CONSTANT_Utf8:        cpool->symbol_at_put(       i, cv->symbol()                         ); break;
1256 1257 1258 1259 1260 1261 1262 1263 1264 1265 1266 1267 1268 1269 1270 1271 1272
    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;
1273 1274
    }
  }
1275 1276 1277 1278 1279 1280 1281 1282 1283

  // 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 {
1284
  methodHandle empty;
1285 1286 1287 1288
  // Create a method that holds the generated bytecode.  invokedynamic
  // has no receiver, normal MH calls do.
  int flags_bits;
  if (for_invokedynamic())
1289
    flags_bits = (/*JVM_MH_INVOKE_BITS |*/ JVM_ACC_PUBLIC | JVM_ACC_FINAL | JVM_ACC_SYNTHETIC | JVM_ACC_STATIC);
1290
  else
1291
    flags_bits = (/*JVM_MH_INVOKE_BITS |*/ JVM_ACC_PUBLIC | JVM_ACC_FINAL | JVM_ACC_SYNTHETIC);
1292

1293 1294 1295 1296 1297 1298 1299 1300
  // 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);
  }
1301

1302
  constantPoolHandle cpool = get_constant_pool(CHECK_(empty));
1303 1304 1305 1306 1307 1308 1309 1310 1311 1312 1313 1314 1315 1316 1317
  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.
1318
  objArrayOop m_array = oopFactory::new_system_objArray(1, CHECK_(empty));
1319 1320
  objArrayHandle methods(THREAD, m_array);
  methods->obj_at_put(0, m());
1321 1322
  Rewriter::rewrite(_target_klass(), cpool, methods, CHECK_(empty));  // Use fake class.

1323 1324 1325 1326 1327
  // 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);

1328 1329 1330 1331 1332 1333 1334 1335
  // 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.
1336 1337 1338 1339 1340 1341
    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);
1342 1343 1344
      }
    }
  }
1345 1346 1347 1348 1349 1350 1351 1352

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

1353
  assert(m->is_method_handle_adapter(), "must be recognized as an adapter");
1354
  return m;
1355 1356 1357 1358 1359 1360 1361 1362 1363 1364 1365 1366
}


#ifndef PRODUCT

// MH printer for debugging.

class MethodHandlePrinter : public MethodHandleWalker {
private:
  outputStream* _out;
  bool          _verbose;
  int           _temp_num;
1367
  int           _param_state;
1368 1369 1370 1371 1372 1373 1374
  stringStream  _strbuf;
  const char* strbuf() {
    const char* s = _strbuf.as_string();
    _strbuf.reset();
    return s;
  }
  ArgToken token(const char* str) {
1375 1376 1377 1378 1379 1380
    jvalue string_con;
    string_con.j = (intptr_t) str;
    return ArgToken(tt_symbolic, T_LONG, string_con);
  }
  const char* string(ArgToken token) {
    return (const char*) (intptr_t) token.get_jlong();
1381 1382
  }
  void start_params() {
1383
    _param_state <<= 1;
1384 1385 1386 1387 1388
    _out->print("(");
  }
  void end_params() {
    if (_verbose)  _out->print("\n");
    _out->print(") => {");
1389
    _param_state >>= 1;
1390 1391 1392 1393 1394 1395 1396 1397 1398 1399 1400 1401 1402 1403 1404 1405 1406 1407 1408
  }
  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();
    if (!_verbose)  return token(value);
    // 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);
    return token(temp);
  }

public:
  MethodHandlePrinter(Handle root, bool verbose, outputStream* out, TRAPS)
1409
    : MethodHandleWalker(root, false, THREAD),
1410 1411
      _out(out),
      _verbose(verbose),
1412
      _param_state(0),
1413 1414 1415 1416 1417 1418 1419
      _temp_num(0)
  {
    start_params();
  }
  virtual ArgToken make_parameter(BasicType type, klassOop tk, int argnum, TRAPS) {
    if (argnum < 0) {
      end_params();
1420
      return token("return");
1421
    }
1422 1423
    if ((_param_state & 1) == 0) {
      _param_state |= 1;
1424 1425 1426 1427 1428 1429 1430 1431 1432 1433 1434 1435 1436 1437 1438 1439 1440 1441 1442 1443 1444 1445 1446 1447 1448 1449 1450 1451 1452
      _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);
    return token(arg);
  }
  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");
  }
1453 1454 1455 1456 1457 1458 1459 1460 1461
  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));
1462 1463 1464 1465 1466 1467 1468
    if (tk != NULL) {
      _strbuf.print(", ");
      put_type_name(type, tk, &_strbuf);
    }
    _strbuf.print(")");
    return maybe_make_temp("convert", type, "v");
  }
1469 1470
  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));
1471 1472 1473 1474 1475 1476 1477 1478 1479 1480
    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) {
1481 1482
    Symbol* name;
    Symbol* sig;
1483 1484 1485 1486 1487 1488 1489 1490 1491
    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++) {
1492
      _strbuf.print("%s%s", (i > 0 ? ", " : ""), string(argv[i]));
1493 1494 1495 1496 1497 1498 1499 1500 1501 1502 1503 1504 1505 1506 1507 1508 1509 1510 1511 1512 1513 1514 1515 1516 1517 1518 1519 1520 1521 1522 1523 1524 1525 1526 1527 1528 1529
    }
    _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) {
    EXCEPTION_MARK;
    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;
1530 1531 1532
      out->print(" *** ");
      if (printer.lose_message() != NULL)  out->print("%s ", printer.lose_message());
      out->print("}");
1533 1534 1535 1536 1537 1538 1539
    }
    out->print("\n");
  }
};

extern "C"
void print_method_handle(oop mh) {
1540
  if (!mh->is_oop()) {
1541
    tty->print_cr("*** not a method handle: "PTR_FORMAT, (intptr_t)mh);
1542
  } else if (java_lang_invoke_MethodHandle::is_instance(mh)) {
1543
    MethodHandlePrinter::print(mh);
1544 1545 1546 1547 1548 1549 1550
  } else {
    tty->print("*** not a method handle: ");
    mh->print();
  }
}

#endif // PRODUCT