javaCalls.cpp revision 6872:16286b7d7c6e
1275072Semaste/*
2275072Semaste * Copyright (c) 1997, 2014, Oracle and/or its affiliates. All rights reserved.
3353358Sdim * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
4353358Sdim *
5353358Sdim * This code is free software; you can redistribute it and/or modify it
6275072Semaste * under the terms of the GNU General Public License version 2 only, as
7275072Semaste * published by the Free Software Foundation.
8275072Semaste *
9314564Sdim * This code is distributed in the hope that it will be useful, but WITHOUT
10314564Sdim * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
11314564Sdim * FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public License
12275072Semaste * version 2 for more details (a copy is included in the LICENSE file that
13275072Semaste * accompanied this code).
14275072Semaste *
15275072Semaste * You should have received a copy of the GNU General Public License version
16275072Semaste * 2 along with this work; if not, write to the Free Software Foundation,
17314564Sdim * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
18314564Sdim *
19314564Sdim * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
20314564Sdim * or visit www.oracle.com if you need additional information or have any
21314564Sdim * questions.
22314564Sdim *
23314564Sdim */
24314564Sdim
25314564Sdim#include "precompiled.hpp"
26314564Sdim#include "classfile/systemDictionary.hpp"
27314564Sdim#include "classfile/vmSymbols.hpp"
28314564Sdim#include "code/nmethod.hpp"
29314564Sdim#include "compiler/compileBroker.hpp"
30314564Sdim#include "interpreter/interpreter.hpp"
31314564Sdim#include "interpreter/linkResolver.hpp"
32314564Sdim#include "memory/universe.inline.hpp"
33314564Sdim#include "oops/oop.inline.hpp"
34314564Sdim#include "prims/jniCheck.hpp"
35314564Sdim#include "runtime/compilationPolicy.hpp"
36314564Sdim#include "runtime/handles.inline.hpp"
37314564Sdim#include "runtime/interfaceSupport.hpp"
38314564Sdim#include "runtime/javaCalls.hpp"
39314564Sdim#include "runtime/mutexLocker.hpp"
40314564Sdim#include "runtime/os.inline.hpp"
41314564Sdim#include "runtime/signature.hpp"
42314564Sdim#include "runtime/stubRoutines.hpp"
43314564Sdim#include "runtime/thread.inline.hpp"
44314564Sdim
45275072Semaste// -----------------------------------------------------
46275072Semaste// Implementation of JavaCallWrapper
47288943Sdim
48314564SdimJavaCallWrapper::JavaCallWrapper(methodHandle callee_method, Handle receiver, JavaValue* result, TRAPS) {
49288943Sdim  JavaThread* thread = (JavaThread *)THREAD;
50288943Sdim  bool clear_pending_exception = true;
51314564Sdim
52314564Sdim  guarantee(thread->is_Java_thread(), "crucial check - the VM thread cannot and must not escape to Java code");
53314564Sdim  assert(!thread->owns_locks(), "must release all locks when leaving VM");
54314564Sdim  guarantee(!thread->is_Compiler_thread(), "cannot make java calls from the compiler");
55314564Sdim  _result   = result;
56314564Sdim
57314564Sdim  // Allocate handle block for Java code. This must be done before we change thread_state to _thread_in_Java_or_stub,
58314564Sdim  // since it can potentially block.
59314564Sdim  JNIHandleBlock* new_handles = JNIHandleBlock::allocate_block(thread);
60314564Sdim
61314564Sdim  // After this, we are official in JavaCode. This needs to be done before we change any of the thread local
62314564Sdim  // info, since we cannot find oops before the new information is set up completely.
63314564Sdim  ThreadStateTransition::transition(thread, _thread_in_vm, _thread_in_Java);
64314564Sdim
65314564Sdim  // Make sure that we handle asynchronous stops and suspends _before_ we clear all thread state
66314564Sdim  // in JavaCallWrapper::JavaCallWrapper(). This way, we can decide if we need to do any pd actions
67314564Sdim  // to prepare for stop/suspend (flush register windows on sparcs, cache sp, or other state).
68314564Sdim  if (thread->has_special_runtime_exit_condition()) {
69314564Sdim    thread->handle_special_runtime_exit_condition();
70314564Sdim    if (HAS_PENDING_EXCEPTION) {
71314564Sdim      clear_pending_exception = false;
72275072Semaste    }
73275072Semaste  }
74314564Sdim
75314564Sdim
76314564Sdim  // Make sure to set the oop's after the thread transition - since we can block there. No one is GC'ing
77288943Sdim  // the JavaCallWrapper before the entry frame is on the stack.
78314564Sdim  _callee_method = callee_method();
79314564Sdim  _receiver = receiver();
80275072Semaste
81275072Semaste#ifdef CHECK_UNHANDLED_OOPS
82275072Semaste  THREAD->allow_unhandled_oop(&_receiver);
83275072Semaste#endif // CHECK_UNHANDLED_OOPS
84314564Sdim
85314564Sdim  _thread       = (JavaThread *)thread;
86314564Sdim  _handles      = _thread->active_handles();    // save previous handle block & Java frame linkage
87275072Semaste
88275072Semaste  // For the profiler, the last_Java_frame information in thread must always be in
89275072Semaste  // legal state. We have no last Java frame if last_Java_sp == NULL so
90314564Sdim  // the valid transition is to clear _last_Java_sp and then reset the rest of
91314564Sdim  // the (platform specific) state.
92314564Sdim
93275072Semaste  _anchor.copy(_thread->frame_anchor());
94314564Sdim  _thread->frame_anchor()->clear();
95314564Sdim
96314564Sdim  debug_only(_thread->inc_java_call_counter());
97314564Sdim  _thread->set_active_handles(new_handles);     // install new handle block and reset Java frame linkage
98314564Sdim
99314564Sdim  assert (_thread->thread_state() != _thread_in_native, "cannot set native pc to NULL");
100314564Sdim
101314564Sdim  // clear any pending exception in thread (native calls start with no exception pending)
102275072Semaste  if(clear_pending_exception) {
103314564Sdim    _thread->clear_pending_exception();
104314564Sdim  }
105314564Sdim
106314564Sdim  if (_anchor.last_Java_sp() == NULL) {
107314564Sdim    _thread->record_base_of_stack_pointer();
108314564Sdim  }
109275072Semaste}
110314564Sdim
111275072Semaste
112275072SemasteJavaCallWrapper::~JavaCallWrapper() {
113314564Sdim  assert(_thread == JavaThread::current(), "must still be the same thread");
114314564Sdim
115314564Sdim  // restore previous handle block & Java frame linkage
116314564Sdim  JNIHandleBlock *_old_handles = _thread->active_handles();
117314564Sdim  _thread->set_active_handles(_handles);
118314564Sdim
119314564Sdim  _thread->frame_anchor()->zap();
120314564Sdim
121314564Sdim  debug_only(_thread->dec_java_call_counter());
122314564Sdim
123275072Semaste  if (_anchor.last_Java_sp() == NULL) {
124275072Semaste    _thread->set_base_of_stack_pointer(NULL);
125314564Sdim  }
126314564Sdim
127314564Sdim
128314564Sdim  // Old thread-local info. has been restored. We are not back in the VM.
129314564Sdim  ThreadStateTransition::transition_from_java(_thread, _thread_in_vm);
130314564Sdim
131314564Sdim  // State has been restored now make the anchor frame visible for the profiler.
132314564Sdim  // Do this after the transition because this allows us to put an assert
133314564Sdim  // the Java->vm transition which checks to see that stack is not walkable
134314564Sdim  // on sparc/ia64 which will catch violations of the reseting of last_Java_frame
135314564Sdim  // invariants (i.e. _flags always cleared on return to Java)
136314564Sdim
137314564Sdim  _thread->frame_anchor()->copy(&_anchor);
138314564Sdim
139275072Semaste  // Release handles after we are marked as being inside the VM again, since this
140275072Semaste  // operation might block
141314564Sdim  JNIHandleBlock::release_block(_old_handles, _thread);
142314564Sdim}
143314564Sdim
144314564Sdim
145314564Sdimvoid JavaCallWrapper::oops_do(OopClosure* f) {
146314564Sdim  f->do_oop((oop*)&_receiver);
147314564Sdim  handles()->oops_do(f);
148314564Sdim}
149314564Sdim
150314564Sdim
151288943Sdim// Helper methods
152288943Sdimstatic BasicType runtime_type_from(JavaValue* result) {
153314564Sdim  switch (result->get_type()) {
154314564Sdim    case T_BOOLEAN: // fall through
155314564Sdim    case T_CHAR   : // fall through
156314564Sdim    case T_SHORT  : // fall through
157314564Sdim    case T_INT    : // fall through
158314564Sdim#ifndef _LP64
159314564Sdim    case T_OBJECT : // fall through
160353358Sdim    case T_ARRAY  : // fall through
161353358Sdim#endif
162314564Sdim    case T_BYTE   : // fall through
163314564Sdim    case T_VOID   : return T_INT;
164314564Sdim    case T_LONG   : return T_LONG;
165314564Sdim    case T_FLOAT  : return T_FLOAT;
166314564Sdim    case T_DOUBLE : return T_DOUBLE;
167314564Sdim#ifdef _LP64
168314564Sdim    case T_ARRAY  : // fall through
169314564Sdim    case T_OBJECT:  return T_OBJECT;
170314564Sdim#endif
171314564Sdim  }
172314564Sdim  ShouldNotReachHere();
173275072Semaste  return T_ILLEGAL;
174275072Semaste}
175314564Sdim
176275072Semaste// ===== object constructor calls =====
177296417Sdim
178314564Sdimvoid JavaCalls::call_default_constructor(JavaThread* thread, methodHandle method, Handle receiver, TRAPS) {
179314564Sdim  assert(method->name() == vmSymbols::object_initializer_name(),    "Should only be called for default constructor");
180296417Sdim  assert(method->signature() == vmSymbols::void_method_signature(), "Should only be called for default constructor");
181296417Sdim
182314564Sdim  InstanceKlass* ik = method->method_holder();
183314564Sdim  if (ik->is_initialized() && ik->has_vanilla_constructor()) {
184275072Semaste    // safe to skip constructor call
185275072Semaste  } else {
186314564Sdim    static JavaValue result(T_VOID);
187314564Sdim    JavaCallArguments args(receiver);
188275072Semaste    call(&result, method, &args, CHECK);
189288943Sdim  }
190314564Sdim}
191314564Sdim
192288943Sdim// ============ Virtual calls ============
193
194void JavaCalls::call_virtual(JavaValue* result, KlassHandle spec_klass, Symbol* name, Symbol* signature, JavaCallArguments* args, TRAPS) {
195  CallInfo callinfo;
196  Handle receiver = args->receiver();
197  KlassHandle recvrKlass(THREAD, receiver.is_null() ? (Klass*)NULL : receiver->klass());
198  LinkResolver::resolve_virtual_call(
199          callinfo, receiver, recvrKlass, spec_klass, name, signature,
200          KlassHandle(), false, true, CHECK);
201  methodHandle method = callinfo.selected_method();
202  assert(method.not_null(), "should have thrown exception");
203
204  // Invoke the method
205  JavaCalls::call(result, method, args, CHECK);
206}
207
208
209void JavaCalls::call_virtual(JavaValue* result, Handle receiver, KlassHandle spec_klass, Symbol* name, Symbol* signature, TRAPS) {
210  JavaCallArguments args(receiver); // One oop argument
211  call_virtual(result, spec_klass, name, signature, &args, CHECK);
212}
213
214
215void JavaCalls::call_virtual(JavaValue* result, Handle receiver, KlassHandle spec_klass, Symbol* name, Symbol* signature, Handle arg1, TRAPS) {
216  JavaCallArguments args(receiver); // One oop argument
217  args.push_oop(arg1);
218  call_virtual(result, spec_klass, name, signature, &args, CHECK);
219}
220
221
222
223void JavaCalls::call_virtual(JavaValue* result, Handle receiver, KlassHandle spec_klass, Symbol* name, Symbol* signature, Handle arg1, Handle arg2, TRAPS) {
224  JavaCallArguments args(receiver); // One oop argument
225  args.push_oop(arg1);
226  args.push_oop(arg2);
227  call_virtual(result, spec_klass, name, signature, &args, CHECK);
228}
229
230
231// ============ Special calls ============
232
233void JavaCalls::call_special(JavaValue* result, KlassHandle klass, Symbol* name, Symbol* signature, JavaCallArguments* args, TRAPS) {
234  CallInfo callinfo;
235  LinkResolver::resolve_special_call(callinfo, klass, name, signature, KlassHandle(), false, CHECK);
236  methodHandle method = callinfo.selected_method();
237  assert(method.not_null(), "should have thrown exception");
238
239  // Invoke the method
240  JavaCalls::call(result, method, args, CHECK);
241}
242
243
244void JavaCalls::call_special(JavaValue* result, Handle receiver, KlassHandle klass, Symbol* name, Symbol* signature, TRAPS) {
245  JavaCallArguments args(receiver); // One oop argument
246  call_special(result, klass, name, signature, &args, CHECK);
247}
248
249
250void JavaCalls::call_special(JavaValue* result, Handle receiver, KlassHandle klass, Symbol* name, Symbol* signature, Handle arg1, TRAPS) {
251  JavaCallArguments args(receiver); // One oop argument
252  args.push_oop(arg1);
253  call_special(result, klass, name, signature, &args, CHECK);
254}
255
256
257void JavaCalls::call_special(JavaValue* result, Handle receiver, KlassHandle klass, Symbol* name, Symbol* signature, Handle arg1, Handle arg2, TRAPS) {
258  JavaCallArguments args(receiver); // One oop argument
259  args.push_oop(arg1);
260  args.push_oop(arg2);
261  call_special(result, klass, name, signature, &args, CHECK);
262}
263
264
265// ============ Static calls ============
266
267void JavaCalls::call_static(JavaValue* result, KlassHandle klass, Symbol* name, Symbol* signature, JavaCallArguments* args, TRAPS) {
268  CallInfo callinfo;
269  LinkResolver::resolve_static_call(callinfo, klass, name, signature, KlassHandle(), false, true, CHECK);
270  methodHandle method = callinfo.selected_method();
271  assert(method.not_null(), "should have thrown exception");
272
273  // Invoke the method
274  JavaCalls::call(result, method, args, CHECK);
275}
276
277
278void JavaCalls::call_static(JavaValue* result, KlassHandle klass, Symbol* name, Symbol* signature, TRAPS) {
279  JavaCallArguments args; // No argument
280  call_static(result, klass, name, signature, &args, CHECK);
281}
282
283
284void JavaCalls::call_static(JavaValue* result, KlassHandle klass, Symbol* name, Symbol* signature, Handle arg1, TRAPS) {
285  JavaCallArguments args(arg1); // One oop argument
286  call_static(result, klass, name, signature, &args, CHECK);
287}
288
289
290void JavaCalls::call_static(JavaValue* result, KlassHandle klass, Symbol* name, Symbol* signature, Handle arg1, Handle arg2, TRAPS) {
291  JavaCallArguments args; // One oop argument
292  args.push_oop(arg1);
293  args.push_oop(arg2);
294  call_static(result, klass, name, signature, &args, CHECK);
295}
296
297
298// -------------------------------------------------
299// Implementation of JavaCalls (low level)
300
301
302void JavaCalls::call(JavaValue* result, methodHandle method, JavaCallArguments* args, TRAPS) {
303  // Check if we need to wrap a potential OS exception handler around thread
304  // This is used for e.g. Win32 structured exception handlers
305  assert(THREAD->is_Java_thread(), "only JavaThreads can make JavaCalls");
306  // Need to wrap each and every time, since there might be native code down the
307  // stack that has installed its own exception handlers
308  os::os_exception_wrapper(call_helper, result, &method, args, THREAD);
309}
310
311void JavaCalls::call_helper(JavaValue* result, methodHandle* m, JavaCallArguments* args, TRAPS) {
312  // During dumping, Java execution environment is not fully initialized. Also, Java execution
313  // may cause undesirable side-effects in the class metadata.
314  assert(!DumpSharedSpaces, "must not execute Java bytecodes when dumping");
315
316  methodHandle method = *m;
317  JavaThread* thread = (JavaThread*)THREAD;
318  assert(thread->is_Java_thread(), "must be called by a java thread");
319  assert(method.not_null(), "must have a method to call");
320  assert(!SafepointSynchronize::is_at_safepoint(), "call to Java code during VM operation");
321  assert(!thread->handle_area()->no_handle_mark_active(), "cannot call out to Java here");
322
323
324  CHECK_UNHANDLED_OOPS_ONLY(thread->clear_unhandled_oops();)
325
326  // Verify the arguments
327
328  if (CheckJNICalls)  {
329    args->verify(method, result->get_type(), thread);
330  }
331  else debug_only(args->verify(method, result->get_type(), thread));
332
333  // Ignore call if method is empty
334  if (method->is_empty_method()) {
335    assert(result->get_type() == T_VOID, "an empty method must return a void value");
336    return;
337  }
338
339
340#ifdef ASSERT
341  { InstanceKlass* holder = method->method_holder();
342    // A klass might not be initialized since JavaCall's might be used during the executing of
343    // the <clinit>. For example, a Thread.start might start executing on an object that is
344    // not fully initialized! (bad Java programming style)
345    assert(holder->is_linked(), "rewriting must have taken place");
346  }
347#endif
348
349
350  assert(!thread->is_Compiler_thread(), "cannot compile from the compiler");
351  if (CompilationPolicy::must_be_compiled(method)) {
352    CompileBroker::compile_method(method, InvocationEntryBci,
353                                  CompilationPolicy::policy()->initial_compile_level(),
354                                  methodHandle(), 0, "must_be_compiled", CHECK);
355  }
356
357  // Since the call stub sets up like the interpreter we call the from_interpreted_entry
358  // so we can go compiled via a i2c. Otherwise initial entry method will always
359  // run interpreted.
360  address entry_point = method->from_interpreted_entry();
361  if (JvmtiExport::can_post_interpreter_events() && thread->is_interp_only_mode()) {
362    entry_point = method->interpreter_entry();
363  }
364
365  // Figure out if the result value is an oop or not (Note: This is a different value
366  // than result_type. result_type will be T_INT of oops. (it is about size)
367  BasicType result_type = runtime_type_from(result);
368  bool oop_result_flag = (result->get_type() == T_OBJECT || result->get_type() == T_ARRAY);
369
370  // NOTE: if we move the computation of the result_val_address inside
371  // the call to call_stub, the optimizer produces wrong code.
372  intptr_t* result_val_address = (intptr_t*)(result->get_value_addr());
373
374  // Find receiver
375  Handle receiver = (!method->is_static()) ? args->receiver() : Handle();
376
377  // When we reenter Java, we need to reenable the yellow zone which
378  // might already be disabled when we are in VM.
379  if (thread->stack_yellow_zone_disabled()) {
380    thread->reguard_stack();
381  }
382
383  // Check that there are shadow pages available before changing thread state
384  // to Java
385  if (!os::stack_shadow_pages_available(THREAD, method)) {
386    // Throw stack overflow exception with preinitialized exception.
387    Exceptions::throw_stack_overflow_exception(THREAD, __FILE__, __LINE__, method);
388    return;
389  } else {
390    // Touch pages checked if the OS needs them to be touched to be mapped.
391    os::bang_stack_shadow_pages();
392  }
393
394  // do call
395  { JavaCallWrapper link(method, receiver, result, CHECK);
396    { HandleMark hm(thread);  // HandleMark used by HandleMarkCleaner
397
398      StubRoutines::call_stub()(
399        (address)&link,
400        // (intptr_t*)&(result->_value), // see NOTE above (compiler problem)
401        result_val_address,          // see NOTE above (compiler problem)
402        result_type,
403        method(),
404        entry_point,
405        args->parameters(),
406        args->size_of_parameters(),
407        CHECK
408      );
409
410      result = link.result();  // circumvent MS C++ 5.0 compiler bug (result is clobbered across call)
411      // Preserve oop return value across possible gc points
412      if (oop_result_flag) {
413        thread->set_vm_result((oop) result->get_jobject());
414      }
415    }
416  } // Exit JavaCallWrapper (can block - potential return oop must be preserved)
417
418  // Check if a thread stop or suspend should be executed
419  // The following assert was not realistic.  Thread.stop can set that bit at any moment.
420  //assert(!thread->has_special_runtime_exit_condition(), "no async. exceptions should be installed");
421
422  // Restore possible oop return
423  if (oop_result_flag) {
424    result->set_jobject((jobject)thread->vm_result());
425    thread->set_vm_result(NULL);
426  }
427}
428
429
430//--------------------------------------------------------------------------------------
431// Implementation of JavaCallArguments
432
433intptr_t* JavaCallArguments::parameters() {
434  // First convert all handles to oops
435  for(int i = 0; i < _size; i++) {
436    if (_is_oop[i]) {
437      // Handle conversion
438      _value[i] = cast_from_oop<intptr_t>(Handle::raw_resolve((oop *)_value[i]));
439    }
440  }
441  // Return argument vector
442  return _value;
443}
444
445
446class SignatureChekker : public SignatureIterator {
447 private:
448   bool *_is_oop;
449   int   _pos;
450   BasicType _return_type;
451   intptr_t*   _value;
452   Thread* _thread;
453
454 public:
455  bool _is_return;
456
457  SignatureChekker(Symbol* signature, BasicType return_type, bool is_static, bool* is_oop, intptr_t* value, Thread* thread) : SignatureIterator(signature) {
458    _is_oop = is_oop;
459    _is_return = false;
460    _return_type = return_type;
461    _pos = 0;
462    _value = value;
463    _thread = thread;
464
465    if (!is_static) {
466      check_value(true); // Receiver must be an oop
467    }
468  }
469
470  void check_value(bool type) {
471    guarantee(_is_oop[_pos++] == type, "signature does not match pushed arguments");
472  }
473
474  void check_doing_return(bool state) { _is_return = state; }
475
476  void check_return_type(BasicType t) {
477    guarantee(_is_return && t == _return_type, "return type does not match");
478  }
479
480  void check_int(BasicType t) {
481    if (_is_return) {
482      check_return_type(t);
483      return;
484    }
485    check_value(false);
486  }
487
488  void check_double(BasicType t) { check_long(t); }
489
490  void check_long(BasicType t) {
491    if (_is_return) {
492      check_return_type(t);
493      return;
494    }
495
496    check_value(false);
497    check_value(false);
498  }
499
500  void check_obj(BasicType t) {
501    if (_is_return) {
502      check_return_type(t);
503      return;
504    }
505
506    // verify handle and the oop pointed to by handle
507    int p = _pos;
508    bool bad = false;
509    // If argument is oop
510    if (_is_oop[p]) {
511      intptr_t v = _value[p];
512      if (v != 0 ) {
513        size_t t = (size_t)v;
514        bad = (t < (size_t)os::vm_page_size() ) || !Handle::raw_resolve((oop *)v)->is_oop_or_null(true);
515        if (CheckJNICalls && bad) {
516          ReportJNIFatalError((JavaThread*)_thread, "Bad JNI oop argument");
517        }
518      }
519      // for the regular debug case.
520      assert(!bad, "Bad JNI oop argument");
521    }
522
523    check_value(true);
524  }
525
526  void do_bool()                       { check_int(T_BOOLEAN);       }
527  void do_char()                       { check_int(T_CHAR);          }
528  void do_float()                      { check_int(T_FLOAT);         }
529  void do_double()                     { check_double(T_DOUBLE);     }
530  void do_byte()                       { check_int(T_BYTE);          }
531  void do_short()                      { check_int(T_SHORT);         }
532  void do_int()                        { check_int(T_INT);           }
533  void do_long()                       { check_long(T_LONG);         }
534  void do_void()                       { check_return_type(T_VOID);  }
535  void do_object(int begin, int end)   { check_obj(T_OBJECT);        }
536  void do_array(int begin, int end)    { check_obj(T_OBJECT);        }
537};
538
539
540void JavaCallArguments::verify(methodHandle method, BasicType return_type,
541  Thread *thread) {
542  guarantee(method->size_of_parameters() == size_of_parameters(), "wrong no. of arguments pushed");
543
544  // Treat T_OBJECT and T_ARRAY as the same
545  if (return_type == T_ARRAY) return_type = T_OBJECT;
546
547  // Check that oop information is correct
548  Symbol* signature = method->signature();
549
550  SignatureChekker sc(signature, return_type, method->is_static(),_is_oop, _value, thread);
551  sc.iterate_parameters();
552  sc.check_doing_return(true);
553  sc.iterate_returntype();
554}
555