method.cpp revision 7462:a0dd995271c4
1/*
2 * Copyright (c) 1997, 2014, Oracle and/or its affiliates. All rights reserved.
3 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
4 *
5 * This code is free software; you can redistribute it and/or modify it
6 * under the terms of the GNU General Public License version 2 only, as
7 * published by the Free Software Foundation.
8 *
9 * This code is distributed in the hope that it will be useful, but WITHOUT
10 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
11 * FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public License
12 * version 2 for more details (a copy is included in the LICENSE file that
13 * accompanied this code).
14 *
15 * You should have received a copy of the GNU General Public License version
16 * 2 along with this work; if not, write to the Free Software Foundation,
17 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
18 *
19 * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
20 * or visit www.oracle.com if you need additional information or have any
21 * questions.
22 *
23 */
24
25#include "precompiled.hpp"
26#include "classfile/metadataOnStackMark.hpp"
27#include "classfile/systemDictionary.hpp"
28#include "code/debugInfoRec.hpp"
29#include "gc_interface/collectedHeap.inline.hpp"
30#include "interpreter/bytecodeStream.hpp"
31#include "interpreter/bytecodeTracer.hpp"
32#include "interpreter/bytecodes.hpp"
33#include "interpreter/interpreter.hpp"
34#include "interpreter/oopMapCache.hpp"
35#include "memory/gcLocker.hpp"
36#include "memory/generation.hpp"
37#include "memory/heapInspection.hpp"
38#include "memory/metadataFactory.hpp"
39#include "memory/oopFactory.hpp"
40#include "oops/constMethod.hpp"
41#include "oops/methodData.hpp"
42#include "oops/method.hpp"
43#include "oops/oop.inline.hpp"
44#include "oops/symbol.hpp"
45#include "prims/jvmtiExport.hpp"
46#include "prims/methodHandles.hpp"
47#include "prims/nativeLookup.hpp"
48#include "runtime/arguments.hpp"
49#include "runtime/compilationPolicy.hpp"
50#include "runtime/frame.inline.hpp"
51#include "runtime/handles.inline.hpp"
52#include "runtime/orderAccess.inline.hpp"
53#include "runtime/relocator.hpp"
54#include "runtime/sharedRuntime.hpp"
55#include "runtime/signature.hpp"
56#include "utilities/quickSort.hpp"
57#include "utilities/xmlstream.hpp"
58
59PRAGMA_FORMAT_MUTE_WARNINGS_FOR_GCC
60
61// Implementation of Method
62
63Method* Method::allocate(ClassLoaderData* loader_data,
64                         int byte_code_size,
65                         AccessFlags access_flags,
66                         InlineTableSizes* sizes,
67                         ConstMethod::MethodType method_type,
68                         TRAPS) {
69  assert(!access_flags.is_native() || byte_code_size == 0,
70         "native methods should not contain byte codes");
71  ConstMethod* cm = ConstMethod::allocate(loader_data,
72                                          byte_code_size,
73                                          sizes,
74                                          method_type,
75                                          CHECK_NULL);
76
77  int size = Method::size(access_flags.is_native());
78
79  return new (loader_data, size, false, MetaspaceObj::MethodType, THREAD) Method(cm, access_flags, size);
80}
81
82Method::Method(ConstMethod* xconst, AccessFlags access_flags, int size) {
83  No_Safepoint_Verifier no_safepoint;
84  set_constMethod(xconst);
85  set_access_flags(access_flags);
86  set_method_size(size);
87#ifdef CC_INTERP
88  set_result_index(T_VOID);
89#endif
90  set_intrinsic_id(vmIntrinsics::_none);
91  set_jfr_towrite(false);
92  set_force_inline(false);
93  set_hidden(false);
94  set_dont_inline(false);
95  set_method_data(NULL);
96  clear_method_counters();
97  set_vtable_index(Method::garbage_vtable_index);
98
99  // Fix and bury in Method*
100  set_interpreter_entry(NULL); // sets i2i entry and from_int
101  set_adapter_entry(NULL);
102  clear_code(); // from_c/from_i get set to c2i/i2i
103
104  if (access_flags.is_native()) {
105    clear_native_function();
106    set_signature_handler(NULL);
107  }
108
109  NOT_PRODUCT(set_compiled_invocation_count(0);)
110}
111
112// Release Method*.  The nmethod will be gone when we get here because
113// we've walked the code cache.
114void Method::deallocate_contents(ClassLoaderData* loader_data) {
115  MetadataFactory::free_metadata(loader_data, constMethod());
116  set_constMethod(NULL);
117  MetadataFactory::free_metadata(loader_data, method_data());
118  set_method_data(NULL);
119  MetadataFactory::free_metadata(loader_data, method_counters());
120  clear_method_counters();
121  // The nmethod will be gone when we get here.
122  if (code() != NULL) _code = NULL;
123}
124
125address Method::get_i2c_entry() {
126  assert(_adapter != NULL, "must have");
127  return _adapter->get_i2c_entry();
128}
129
130address Method::get_c2i_entry() {
131  assert(_adapter != NULL, "must have");
132  return _adapter->get_c2i_entry();
133}
134
135address Method::get_c2i_unverified_entry() {
136  assert(_adapter != NULL, "must have");
137  return _adapter->get_c2i_unverified_entry();
138}
139
140char* Method::name_and_sig_as_C_string() const {
141  return name_and_sig_as_C_string(constants()->pool_holder(), name(), signature());
142}
143
144char* Method::name_and_sig_as_C_string(char* buf, int size) const {
145  return name_and_sig_as_C_string(constants()->pool_holder(), name(), signature(), buf, size);
146}
147
148char* Method::name_and_sig_as_C_string(Klass* klass, Symbol* method_name, Symbol* signature) {
149  const char* klass_name = klass->external_name();
150  int klass_name_len  = (int)strlen(klass_name);
151  int method_name_len = method_name->utf8_length();
152  int len             = klass_name_len + 1 + method_name_len + signature->utf8_length();
153  char* dest          = NEW_RESOURCE_ARRAY(char, len + 1);
154  strcpy(dest, klass_name);
155  dest[klass_name_len] = '.';
156  strcpy(&dest[klass_name_len + 1], method_name->as_C_string());
157  strcpy(&dest[klass_name_len + 1 + method_name_len], signature->as_C_string());
158  dest[len] = 0;
159  return dest;
160}
161
162char* Method::name_and_sig_as_C_string(Klass* klass, Symbol* method_name, Symbol* signature, char* buf, int size) {
163  Symbol* klass_name = klass->name();
164  klass_name->as_klass_external_name(buf, size);
165  int len = (int)strlen(buf);
166
167  if (len < size - 1) {
168    buf[len++] = '.';
169
170    method_name->as_C_string(&(buf[len]), size - len);
171    len = (int)strlen(buf);
172
173    signature->as_C_string(&(buf[len]), size - len);
174  }
175
176  return buf;
177}
178
179int Method::fast_exception_handler_bci_for(methodHandle mh, KlassHandle ex_klass, int throw_bci, TRAPS) {
180  // exception table holds quadruple entries of the form (beg_bci, end_bci, handler_bci, klass_index)
181  // access exception table
182  ExceptionTable table(mh());
183  int length = table.length();
184  // iterate through all entries sequentially
185  constantPoolHandle pool(THREAD, mh->constants());
186  for (int i = 0; i < length; i ++) {
187    //reacquire the table in case a GC happened
188    ExceptionTable table(mh());
189    int beg_bci = table.start_pc(i);
190    int end_bci = table.end_pc(i);
191    assert(beg_bci <= end_bci, "inconsistent exception table");
192    if (beg_bci <= throw_bci && throw_bci < end_bci) {
193      // exception handler bci range covers throw_bci => investigate further
194      int handler_bci = table.handler_pc(i);
195      int klass_index = table.catch_type_index(i);
196      if (klass_index == 0) {
197        return handler_bci;
198      } else if (ex_klass.is_null()) {
199        return handler_bci;
200      } else {
201        // we know the exception class => get the constraint class
202        // this may require loading of the constraint class; if verification
203        // fails or some other exception occurs, return handler_bci
204        Klass* k = pool->klass_at(klass_index, CHECK_(handler_bci));
205        KlassHandle klass = KlassHandle(THREAD, k);
206        assert(klass.not_null(), "klass not loaded");
207        if (ex_klass->is_subtype_of(klass())) {
208          return handler_bci;
209        }
210      }
211    }
212  }
213
214  return -1;
215}
216
217void Method::mask_for(int bci, InterpreterOopMap* mask) {
218
219  Thread* myThread    = Thread::current();
220  methodHandle h_this(myThread, this);
221#ifdef ASSERT
222  bool has_capability = myThread->is_VM_thread() ||
223                        myThread->is_ConcurrentGC_thread() ||
224                        myThread->is_GC_task_thread();
225
226  if (!has_capability) {
227    if (!VerifyStack && !VerifyLastFrame) {
228      // verify stack calls this outside VM thread
229      warning("oopmap should only be accessed by the "
230              "VM, GC task or CMS threads (or during debugging)");
231      InterpreterOopMap local_mask;
232      method_holder()->mask_for(h_this, bci, &local_mask);
233      local_mask.print();
234    }
235  }
236#endif
237  method_holder()->mask_for(h_this, bci, mask);
238  return;
239}
240
241
242int Method::bci_from(address bcp) const {
243  if (is_native() && bcp == 0) {
244    return 0;
245  }
246#ifdef ASSERT
247  { ResourceMark rm;
248  assert(is_native() && bcp == code_base() || contains(bcp) || is_error_reported(),
249         err_msg("bcp doesn't belong to this method: bcp: " INTPTR_FORMAT ", method: %s", bcp, name_and_sig_as_C_string()));
250  }
251#endif
252  return bcp - code_base();
253}
254
255
256int Method::validate_bci(int bci) const {
257  return (bci == 0 || bci < code_size()) ? bci : -1;
258}
259
260// Return bci if it appears to be a valid bcp
261// Return -1 otherwise.
262// Used by profiling code, when invalid data is a possibility.
263// The caller is responsible for validating the Method* itself.
264int Method::validate_bci_from_bcp(address bcp) const {
265  // keep bci as -1 if not a valid bci
266  int bci = -1;
267  if (bcp == 0 || bcp == code_base()) {
268    // code_size() may return 0 and we allow 0 here
269    // the method may be native
270    bci = 0;
271  } else if (contains(bcp)) {
272    bci = bcp - code_base();
273  }
274  // Assert that if we have dodged any asserts, bci is negative.
275  assert(bci == -1 || bci == bci_from(bcp_from(bci)), "sane bci if >=0");
276  return bci;
277}
278
279address Method::bcp_from(int bci) const {
280  assert((is_native() && bci == 0)  || (!is_native() && 0 <= bci && bci < code_size()), err_msg("illegal bci: %d", bci));
281  address bcp = code_base() + bci;
282  assert(is_native() && bcp == code_base() || contains(bcp), "bcp doesn't belong to this method");
283  return bcp;
284}
285
286address Method::bcp_from(address bcp) const {
287  if (is_native() && bcp == NULL) {
288    return code_base();
289  } else {
290    return bcp;
291  }
292}
293
294int Method::size(bool is_native) {
295  // If native, then include pointers for native_function and signature_handler
296  int extra_bytes = (is_native) ? 2*sizeof(address*) : 0;
297  int extra_words = align_size_up(extra_bytes, BytesPerWord) / BytesPerWord;
298  return align_object_size(header_size() + extra_words);
299}
300
301
302Symbol* Method::klass_name() const {
303  Klass* k = method_holder();
304  assert(k->is_klass(), "must be klass");
305  InstanceKlass* ik = (InstanceKlass*) k;
306  return ik->name();
307}
308
309
310// Attempt to return method oop to original state.  Clear any pointers
311// (to objects outside the shared spaces).  We won't be able to predict
312// where they should point in a new JVM.  Further initialize some
313// entries now in order allow them to be write protected later.
314
315void Method::remove_unshareable_info() {
316  unlink_method();
317}
318
319
320bool Method::was_executed_more_than(int n) {
321  // Invocation counter is reset when the Method* is compiled.
322  // If the method has compiled code we therefore assume it has
323  // be excuted more than n times.
324  if (is_accessor() || is_empty_method() || (code() != NULL)) {
325    // interpreter doesn't bump invocation counter of trivial methods
326    // compiler does not bump invocation counter of compiled methods
327    return true;
328  }
329  else if ((method_counters() != NULL &&
330            method_counters()->invocation_counter()->carry()) ||
331           (method_data() != NULL &&
332            method_data()->invocation_counter()->carry())) {
333    // The carry bit is set when the counter overflows and causes
334    // a compilation to occur.  We don't know how many times
335    // the counter has been reset, so we simply assume it has
336    // been executed more than n times.
337    return true;
338  } else {
339    return invocation_count() > n;
340  }
341}
342
343void Method::print_invocation_count() {
344  if (is_static()) tty->print("static ");
345  if (is_final()) tty->print("final ");
346  if (is_synchronized()) tty->print("synchronized ");
347  if (is_native()) tty->print("native ");
348  tty->print("%s::", method_holder()->external_name());
349  name()->print_symbol_on(tty);
350  signature()->print_symbol_on(tty);
351
352  if (WizardMode) {
353    // dump the size of the byte codes
354    tty->print(" {%d}", code_size());
355  }
356  tty->cr();
357
358  tty->print_cr ("  interpreter_invocation_count: %8d ", interpreter_invocation_count());
359  tty->print_cr ("  invocation_counter:           %8d ", invocation_count());
360  tty->print_cr ("  backedge_counter:             %8d ", backedge_count());
361#ifndef PRODUCT
362  if (CountCompiledCalls) {
363    tty->print_cr ("  compiled_invocation_count: %8d ", compiled_invocation_count());
364  }
365#endif
366}
367
368// Build a MethodData* object to hold information about this method
369// collected in the interpreter.
370void Method::build_interpreter_method_data(methodHandle method, TRAPS) {
371  // Do not profile the method if metaspace has hit an OOM previously
372  // allocating profiling data. Callers clear pending exception so don't
373  // add one here.
374  if (ClassLoaderDataGraph::has_metaspace_oom()) {
375    return;
376  }
377
378  // Do not profile method if current thread holds the pending list lock,
379  // which avoids deadlock for acquiring the MethodData_lock.
380  if (InstanceRefKlass::owns_pending_list_lock((JavaThread*)THREAD)) {
381    return;
382  }
383
384  // Grab a lock here to prevent multiple
385  // MethodData*s from being created.
386  MutexLocker ml(MethodData_lock, THREAD);
387  if (method->method_data() == NULL) {
388    ClassLoaderData* loader_data = method->method_holder()->class_loader_data();
389    MethodData* method_data = MethodData::allocate(loader_data, method, THREAD);
390    if (HAS_PENDING_EXCEPTION) {
391      CompileBroker::log_metaspace_failure();
392      ClassLoaderDataGraph::set_metaspace_oom(true);
393      return;   // return the exception (which is cleared)
394    }
395
396    method->set_method_data(method_data);
397    if (PrintMethodData && (Verbose || WizardMode)) {
398      ResourceMark rm(THREAD);
399      tty->print("build_interpreter_method_data for ");
400      method->print_name(tty);
401      tty->cr();
402      // At the end of the run, the MDO, full of data, will be dumped.
403    }
404  }
405}
406
407MethodCounters* Method::build_method_counters(Method* m, TRAPS) {
408  // Do not profile the method if metaspace has hit an OOM previously
409  if (ClassLoaderDataGraph::has_metaspace_oom()) {
410    return NULL;
411  }
412
413  methodHandle mh(m);
414  ClassLoaderData* loader_data = mh->method_holder()->class_loader_data();
415  MethodCounters* counters = MethodCounters::allocate(loader_data, THREAD);
416  if (HAS_PENDING_EXCEPTION) {
417    CompileBroker::log_metaspace_failure();
418    ClassLoaderDataGraph::set_metaspace_oom(true);
419    return NULL;   // return the exception (which is cleared)
420  }
421  if (!mh->init_method_counters(counters)) {
422    MetadataFactory::free_metadata(loader_data, counters);
423  }
424  return mh->method_counters();
425}
426
427void Method::cleanup_inline_caches() {
428  // The current system doesn't use inline caches in the interpreter
429  // => nothing to do (keep this method around for future use)
430}
431
432
433int Method::extra_stack_words() {
434  // not an inline function, to avoid a header dependency on Interpreter
435  return extra_stack_entries() * Interpreter::stackElementSize;
436}
437
438
439void Method::compute_size_of_parameters(Thread *thread) {
440  ArgumentSizeComputer asc(signature());
441  set_size_of_parameters(asc.size() + (is_static() ? 0 : 1));
442}
443
444#ifdef CC_INTERP
445void Method::set_result_index(BasicType type)          {
446  _result_index = Interpreter::BasicType_as_index(type);
447}
448#endif
449
450BasicType Method::result_type() const {
451  ResultTypeFinder rtf(signature());
452  return rtf.type();
453}
454
455
456bool Method::is_empty_method() const {
457  return  code_size() == 1
458      && *code_base() == Bytecodes::_return;
459}
460
461
462bool Method::is_vanilla_constructor() const {
463  // Returns true if this method is a vanilla constructor, i.e. an "<init>" "()V" method
464  // which only calls the superclass vanilla constructor and possibly does stores of
465  // zero constants to local fields:
466  //
467  //   aload_0
468  //   invokespecial
469  //   indexbyte1
470  //   indexbyte2
471  //
472  // followed by an (optional) sequence of:
473  //
474  //   aload_0
475  //   aconst_null / iconst_0 / fconst_0 / dconst_0
476  //   putfield
477  //   indexbyte1
478  //   indexbyte2
479  //
480  // followed by:
481  //
482  //   return
483
484  assert(name() == vmSymbols::object_initializer_name(),    "Should only be called for default constructors");
485  assert(signature() == vmSymbols::void_method_signature(), "Should only be called for default constructors");
486  int size = code_size();
487  // Check if size match
488  if (size == 0 || size % 5 != 0) return false;
489  address cb = code_base();
490  int last = size - 1;
491  if (cb[0] != Bytecodes::_aload_0 || cb[1] != Bytecodes::_invokespecial || cb[last] != Bytecodes::_return) {
492    // Does not call superclass default constructor
493    return false;
494  }
495  // Check optional sequence
496  for (int i = 4; i < last; i += 5) {
497    if (cb[i] != Bytecodes::_aload_0) return false;
498    if (!Bytecodes::is_zero_const(Bytecodes::cast(cb[i+1]))) return false;
499    if (cb[i+2] != Bytecodes::_putfield) return false;
500  }
501  return true;
502}
503
504
505bool Method::compute_has_loops_flag() {
506  BytecodeStream bcs(this);
507  Bytecodes::Code bc;
508
509  while ((bc = bcs.next()) >= 0) {
510    switch( bc ) {
511      case Bytecodes::_ifeq:
512      case Bytecodes::_ifnull:
513      case Bytecodes::_iflt:
514      case Bytecodes::_ifle:
515      case Bytecodes::_ifne:
516      case Bytecodes::_ifnonnull:
517      case Bytecodes::_ifgt:
518      case Bytecodes::_ifge:
519      case Bytecodes::_if_icmpeq:
520      case Bytecodes::_if_icmpne:
521      case Bytecodes::_if_icmplt:
522      case Bytecodes::_if_icmpgt:
523      case Bytecodes::_if_icmple:
524      case Bytecodes::_if_icmpge:
525      case Bytecodes::_if_acmpeq:
526      case Bytecodes::_if_acmpne:
527      case Bytecodes::_goto:
528      case Bytecodes::_jsr:
529        if( bcs.dest() < bcs.next_bci() ) _access_flags.set_has_loops();
530        break;
531
532      case Bytecodes::_goto_w:
533      case Bytecodes::_jsr_w:
534        if( bcs.dest_w() < bcs.next_bci() ) _access_flags.set_has_loops();
535        break;
536    }
537  }
538  _access_flags.set_loops_flag_init();
539  return _access_flags.has_loops();
540}
541
542bool Method::is_final_method(AccessFlags class_access_flags) const {
543  // or "does_not_require_vtable_entry"
544  // default method or overpass can occur, is not final (reuses vtable entry)
545  // private methods get vtable entries for backward class compatibility.
546  if (is_overpass() || is_default_method())  return false;
547  return is_final() || class_access_flags.is_final();
548}
549
550bool Method::is_final_method() const {
551  return is_final_method(method_holder()->access_flags());
552}
553
554bool Method::is_default_method() const {
555  if (method_holder() != NULL &&
556      method_holder()->is_interface() &&
557      !is_abstract()) {
558    return true;
559  } else {
560    return false;
561  }
562}
563
564bool Method::can_be_statically_bound(AccessFlags class_access_flags) const {
565  if (is_final_method(class_access_flags))  return true;
566#ifdef ASSERT
567  ResourceMark rm;
568  bool is_nonv = (vtable_index() == nonvirtual_vtable_index);
569  if (class_access_flags.is_interface()) {
570      assert(is_nonv == is_static(), err_msg("is_nonv=%s", name_and_sig_as_C_string()));
571  }
572#endif
573  assert(valid_vtable_index() || valid_itable_index(), "method must be linked before we ask this question");
574  return vtable_index() == nonvirtual_vtable_index;
575}
576
577bool Method::can_be_statically_bound() const {
578  return can_be_statically_bound(method_holder()->access_flags());
579}
580
581bool Method::is_accessor() const {
582  if (code_size() != 5) return false;
583  if (size_of_parameters() != 1) return false;
584  if (java_code_at(0) != Bytecodes::_aload_0 ) return false;
585  if (java_code_at(1) != Bytecodes::_getfield) return false;
586  if (java_code_at(4) != Bytecodes::_areturn &&
587      java_code_at(4) != Bytecodes::_ireturn ) return false;
588  return true;
589}
590
591bool Method::is_constant_getter() const {
592  int last_index = code_size() - 1;
593  // Check if the first 1-3 bytecodes are a constant push
594  // and the last bytecode is a return.
595  return (2 <= code_size() && code_size() <= 4 &&
596          Bytecodes::is_const(java_code_at(0)) &&
597          Bytecodes::length_for(java_code_at(0)) == last_index &&
598          Bytecodes::is_return(java_code_at(last_index)));
599}
600
601bool Method::is_initializer() const {
602  return name() == vmSymbols::object_initializer_name() || is_static_initializer();
603}
604
605bool Method::has_valid_initializer_flags() const {
606  return (is_static() ||
607          method_holder()->major_version() < 51);
608}
609
610bool Method::is_static_initializer() const {
611  // For classfiles version 51 or greater, ensure that the clinit method is
612  // static.  Non-static methods with the name "<clinit>" are not static
613  // initializers. (older classfiles exempted for backward compatibility)
614  return name() == vmSymbols::class_initializer_name() &&
615         has_valid_initializer_flags();
616}
617
618
619objArrayHandle Method::resolved_checked_exceptions_impl(Method* method, TRAPS) {
620  int length = method->checked_exceptions_length();
621  if (length == 0) {  // common case
622    return objArrayHandle(THREAD, Universe::the_empty_class_klass_array());
623  } else {
624    methodHandle h_this(THREAD, method);
625    objArrayOop m_oop = oopFactory::new_objArray(SystemDictionary::Class_klass(), length, CHECK_(objArrayHandle()));
626    objArrayHandle mirrors (THREAD, m_oop);
627    for (int i = 0; i < length; i++) {
628      CheckedExceptionElement* table = h_this->checked_exceptions_start(); // recompute on each iteration, not gc safe
629      Klass* k = h_this->constants()->klass_at(table[i].class_cp_index, CHECK_(objArrayHandle()));
630      assert(k->is_subclass_of(SystemDictionary::Throwable_klass()), "invalid exception class");
631      mirrors->obj_at_put(i, k->java_mirror());
632    }
633    return mirrors;
634  }
635};
636
637
638int Method::line_number_from_bci(int bci) const {
639  if (bci == SynchronizationEntryBCI) bci = 0;
640  assert(bci == 0 || 0 <= bci && bci < code_size(), "illegal bci");
641  int best_bci  =  0;
642  int best_line = -1;
643
644  if (has_linenumber_table()) {
645    // The line numbers are a short array of 2-tuples [start_pc, line_number].
646    // Not necessarily sorted and not necessarily one-to-one.
647    CompressedLineNumberReadStream stream(compressed_linenumber_table());
648    while (stream.read_pair()) {
649      if (stream.bci() == bci) {
650        // perfect match
651        return stream.line();
652      } else {
653        // update best_bci/line
654        if (stream.bci() < bci && stream.bci() >= best_bci) {
655          best_bci  = stream.bci();
656          best_line = stream.line();
657        }
658      }
659    }
660  }
661  return best_line;
662}
663
664
665bool Method::is_klass_loaded_by_klass_index(int klass_index) const {
666  if( constants()->tag_at(klass_index).is_unresolved_klass() ) {
667    Thread *thread = Thread::current();
668    Symbol* klass_name = constants()->klass_name_at(klass_index);
669    Handle loader(thread, method_holder()->class_loader());
670    Handle prot  (thread, method_holder()->protection_domain());
671    return SystemDictionary::find(klass_name, loader, prot, thread) != NULL;
672  } else {
673    return true;
674  }
675}
676
677
678bool Method::is_klass_loaded(int refinfo_index, bool must_be_resolved) const {
679  int klass_index = constants()->klass_ref_index_at(refinfo_index);
680  if (must_be_resolved) {
681    // Make sure klass is resolved in constantpool.
682    if (constants()->tag_at(klass_index).is_unresolved_klass()) return false;
683  }
684  return is_klass_loaded_by_klass_index(klass_index);
685}
686
687
688void Method::set_native_function(address function, bool post_event_flag) {
689  assert(function != NULL, "use clear_native_function to unregister natives");
690  assert(!is_method_handle_intrinsic() || function == SharedRuntime::native_method_throw_unsatisfied_link_error_entry(), "");
691  address* native_function = native_function_addr();
692
693  // We can see racers trying to place the same native function into place. Once
694  // is plenty.
695  address current = *native_function;
696  if (current == function) return;
697  if (post_event_flag && JvmtiExport::should_post_native_method_bind() &&
698      function != NULL) {
699    // native_method_throw_unsatisfied_link_error_entry() should only
700    // be passed when post_event_flag is false.
701    assert(function !=
702      SharedRuntime::native_method_throw_unsatisfied_link_error_entry(),
703      "post_event_flag mis-match");
704
705    // post the bind event, and possible change the bind function
706    JvmtiExport::post_native_method_bind(this, &function);
707  }
708  *native_function = function;
709  // This function can be called more than once. We must make sure that we always
710  // use the latest registered method -> check if a stub already has been generated.
711  // If so, we have to make it not_entrant.
712  nmethod* nm = code(); // Put it into local variable to guard against concurrent updates
713  if (nm != NULL) {
714    nm->make_not_entrant();
715  }
716}
717
718
719bool Method::has_native_function() const {
720  if (is_method_handle_intrinsic())
721    return false;  // special-cased in SharedRuntime::generate_native_wrapper
722  address func = native_function();
723  return (func != NULL && func != SharedRuntime::native_method_throw_unsatisfied_link_error_entry());
724}
725
726
727void Method::clear_native_function() {
728  // Note: is_method_handle_intrinsic() is allowed here.
729  set_native_function(
730    SharedRuntime::native_method_throw_unsatisfied_link_error_entry(),
731    !native_bind_event_is_interesting);
732  clear_code();
733}
734
735address Method::critical_native_function() {
736  methodHandle mh(this);
737  return NativeLookup::lookup_critical_entry(mh);
738}
739
740
741void Method::set_signature_handler(address handler) {
742  address* signature_handler =  signature_handler_addr();
743  *signature_handler = handler;
744}
745
746
747void Method::print_made_not_compilable(int comp_level, bool is_osr, bool report, const char* reason) {
748  if (PrintCompilation && report) {
749    ttyLocker ttyl;
750    tty->print("made not %scompilable on ", is_osr ? "OSR " : "");
751    if (comp_level == CompLevel_all) {
752      tty->print("all levels ");
753    } else {
754      tty->print("levels ");
755      for (int i = (int)CompLevel_none; i <= comp_level; i++) {
756        tty->print("%d ", i);
757      }
758    }
759    this->print_short_name(tty);
760    int size = this->code_size();
761    if (size > 0) {
762      tty->print(" (%d bytes)", size);
763    }
764    if (reason != NULL) {
765      tty->print("   %s", reason);
766    }
767    tty->cr();
768  }
769  if ((TraceDeoptimization || LogCompilation) && (xtty != NULL)) {
770    ttyLocker ttyl;
771    xtty->begin_elem("make_not_compilable thread='" UINTX_FORMAT "' osr='%d' level='%d'",
772                     os::current_thread_id(), is_osr, comp_level);
773    if (reason != NULL) {
774      xtty->print(" reason=\'%s\'", reason);
775    }
776    xtty->method(this);
777    xtty->stamp();
778    xtty->end_elem();
779  }
780}
781
782bool Method::is_always_compilable() const {
783  // Generated adapters must be compiled
784  if (is_method_handle_intrinsic() && is_synthetic()) {
785    assert(!is_not_c1_compilable(), "sanity check");
786    assert(!is_not_c2_compilable(), "sanity check");
787    return true;
788  }
789
790  return false;
791}
792
793bool Method::is_not_compilable(int comp_level) const {
794  if (number_of_breakpoints() > 0)
795    return true;
796  if (is_always_compilable())
797    return false;
798  if (comp_level == CompLevel_any)
799    return is_not_c1_compilable() || is_not_c2_compilable();
800  if (is_c1_compile(comp_level))
801    return is_not_c1_compilable();
802  if (is_c2_compile(comp_level))
803    return is_not_c2_compilable();
804  return false;
805}
806
807// call this when compiler finds that this method is not compilable
808void Method::set_not_compilable(int comp_level, bool report, const char* reason) {
809  if (is_always_compilable()) {
810    // Don't mark a method which should be always compilable
811    return;
812  }
813  print_made_not_compilable(comp_level, /*is_osr*/ false, report, reason);
814  if (comp_level == CompLevel_all) {
815    set_not_c1_compilable();
816    set_not_c2_compilable();
817  } else {
818    if (is_c1_compile(comp_level))
819      set_not_c1_compilable();
820    if (is_c2_compile(comp_level))
821      set_not_c2_compilable();
822  }
823  CompilationPolicy::policy()->disable_compilation(this);
824  assert(!CompilationPolicy::can_be_compiled(this, comp_level), "sanity check");
825}
826
827bool Method::is_not_osr_compilable(int comp_level) const {
828  if (is_not_compilable(comp_level))
829    return true;
830  if (comp_level == CompLevel_any)
831    return is_not_c1_osr_compilable() || is_not_c2_osr_compilable();
832  if (is_c1_compile(comp_level))
833    return is_not_c1_osr_compilable();
834  if (is_c2_compile(comp_level))
835    return is_not_c2_osr_compilable();
836  return false;
837}
838
839void Method::set_not_osr_compilable(int comp_level, bool report, const char* reason) {
840  print_made_not_compilable(comp_level, /*is_osr*/ true, report, reason);
841  if (comp_level == CompLevel_all) {
842    set_not_c1_osr_compilable();
843    set_not_c2_osr_compilable();
844  } else {
845    if (is_c1_compile(comp_level))
846      set_not_c1_osr_compilable();
847    if (is_c2_compile(comp_level))
848      set_not_c2_osr_compilable();
849  }
850  CompilationPolicy::policy()->disable_compilation(this);
851  assert(!CompilationPolicy::can_be_osr_compiled(this, comp_level), "sanity check");
852}
853
854// Revert to using the interpreter and clear out the nmethod
855void Method::clear_code() {
856
857  // this may be NULL if c2i adapters have not been made yet
858  // Only should happen at allocate time.
859  if (_adapter == NULL) {
860    _from_compiled_entry    = NULL;
861  } else {
862    _from_compiled_entry    = _adapter->get_c2i_entry();
863  }
864  OrderAccess::storestore();
865  _from_interpreted_entry = _i2i_entry;
866  OrderAccess::storestore();
867  _code = NULL;
868}
869
870// Called by class data sharing to remove any entry points (which are not shared)
871void Method::unlink_method() {
872  _code = NULL;
873  _i2i_entry = NULL;
874  _from_interpreted_entry = NULL;
875  if (is_native()) {
876    *native_function_addr() = NULL;
877    set_signature_handler(NULL);
878  }
879  NOT_PRODUCT(set_compiled_invocation_count(0);)
880  _adapter = NULL;
881  _from_compiled_entry = NULL;
882
883  // In case of DumpSharedSpaces, _method_data should always be NULL.
884  //
885  // During runtime (!DumpSharedSpaces), when we are cleaning a
886  // shared class that failed to load, this->link_method() may
887  // have already been called (before an exception happened), so
888  // this->_method_data may not be NULL.
889  assert(!DumpSharedSpaces || _method_data == NULL, "unexpected method data?");
890
891  set_method_data(NULL);
892  clear_method_counters();
893}
894
895// Called when the method_holder is getting linked. Setup entrypoints so the method
896// is ready to be called from interpreter, compiler, and vtables.
897void Method::link_method(methodHandle h_method, TRAPS) {
898  // If the code cache is full, we may reenter this function for the
899  // leftover methods that weren't linked.
900  if (_i2i_entry != NULL) return;
901
902  assert(_adapter == NULL, "init'd to NULL" );
903  assert( _code == NULL, "nothing compiled yet" );
904
905  // Setup interpreter entrypoint
906  assert(this == h_method(), "wrong h_method()" );
907  address entry = Interpreter::entry_for_method(h_method);
908  assert(entry != NULL, "interpreter entry must be non-null");
909  // Sets both _i2i_entry and _from_interpreted_entry
910  set_interpreter_entry(entry);
911
912  // Don't overwrite already registered native entries.
913  if (is_native() && !has_native_function()) {
914    set_native_function(
915      SharedRuntime::native_method_throw_unsatisfied_link_error_entry(),
916      !native_bind_event_is_interesting);
917  }
918
919  // Setup compiler entrypoint.  This is made eagerly, so we do not need
920  // special handling of vtables.  An alternative is to make adapters more
921  // lazily by calling make_adapter() from from_compiled_entry() for the
922  // normal calls.  For vtable calls life gets more complicated.  When a
923  // call-site goes mega-morphic we need adapters in all methods which can be
924  // called from the vtable.  We need adapters on such methods that get loaded
925  // later.  Ditto for mega-morphic itable calls.  If this proves to be a
926  // problem we'll make these lazily later.
927  (void) make_adapters(h_method, CHECK);
928
929  // ONLY USE the h_method now as make_adapter may have blocked
930
931}
932
933address Method::make_adapters(methodHandle mh, TRAPS) {
934  // Adapters for compiled code are made eagerly here.  They are fairly
935  // small (generally < 100 bytes) and quick to make (and cached and shared)
936  // so making them eagerly shouldn't be too expensive.
937  AdapterHandlerEntry* adapter = AdapterHandlerLibrary::get_adapter(mh);
938  if (adapter == NULL ) {
939    THROW_MSG_NULL(vmSymbols::java_lang_VirtualMachineError(), "out of space in CodeCache for adapters");
940  }
941
942  mh->set_adapter_entry(adapter);
943  mh->_from_compiled_entry = adapter->get_c2i_entry();
944  return adapter->get_c2i_entry();
945}
946
947void Method::restore_unshareable_info(TRAPS) {
948  // Since restore_unshareable_info can be called more than once for a method, don't
949  // redo any work.   If this field is restored, there is nothing to do.
950  if (_from_compiled_entry == NULL) {
951    // restore method's vtable by calling a virtual function
952    restore_vtable();
953
954    methodHandle mh(THREAD, this);
955    link_method(mh, CHECK);
956  }
957}
958
959
960// The verified_code_entry() must be called when a invoke is resolved
961// on this method.
962
963// It returns the compiled code entry point, after asserting not null.
964// This function is called after potential safepoints so that nmethod
965// or adapter that it points to is still live and valid.
966// This function must not hit a safepoint!
967address Method::verified_code_entry() {
968  debug_only(No_Safepoint_Verifier nsv;)
969  assert(_from_compiled_entry != NULL, "must be set");
970  return _from_compiled_entry;
971}
972
973// Check that if an nmethod ref exists, it has a backlink to this or no backlink at all
974// (could be racing a deopt).
975// Not inline to avoid circular ref.
976bool Method::check_code() const {
977  // cached in a register or local.  There's a race on the value of the field.
978  nmethod *code = (nmethod *)OrderAccess::load_ptr_acquire(&_code);
979  return code == NULL || (code->method() == NULL) || (code->method() == (Method*)this && !code->is_osr_method());
980}
981
982// Install compiled code.  Instantly it can execute.
983void Method::set_code(methodHandle mh, nmethod *code) {
984  assert( code, "use clear_code to remove code" );
985  assert( mh->check_code(), "" );
986
987  guarantee(mh->adapter() != NULL, "Adapter blob must already exist!");
988
989  // These writes must happen in this order, because the interpreter will
990  // directly jump to from_interpreted_entry which jumps to an i2c adapter
991  // which jumps to _from_compiled_entry.
992  mh->_code = code;             // Assign before allowing compiled code to exec
993
994  int comp_level = code->comp_level();
995  // In theory there could be a race here. In practice it is unlikely
996  // and not worth worrying about.
997  if (comp_level > mh->highest_comp_level()) {
998    mh->set_highest_comp_level(comp_level);
999  }
1000
1001  OrderAccess::storestore();
1002#ifdef SHARK
1003  mh->_from_interpreted_entry = code->insts_begin();
1004#else //!SHARK
1005  mh->_from_compiled_entry = code->verified_entry_point();
1006  OrderAccess::storestore();
1007  // Instantly compiled code can execute.
1008  if (!mh->is_method_handle_intrinsic())
1009    mh->_from_interpreted_entry = mh->get_i2c_entry();
1010#endif //!SHARK
1011}
1012
1013
1014bool Method::is_overridden_in(Klass* k) const {
1015  InstanceKlass* ik = InstanceKlass::cast(k);
1016
1017  if (ik->is_interface()) return false;
1018
1019  // If method is an interface, we skip it - except if it
1020  // is a miranda method
1021  if (method_holder()->is_interface()) {
1022    // Check that method is not a miranda method
1023    if (ik->lookup_method(name(), signature()) == NULL) {
1024      // No implementation exist - so miranda method
1025      return false;
1026    }
1027    return true;
1028  }
1029
1030  assert(ik->is_subclass_of(method_holder()), "should be subklass");
1031  assert(ik->vtable() != NULL, "vtable should exist");
1032  if (!has_vtable_index()) {
1033    return false;
1034  } else {
1035    Method* vt_m = ik->method_at_vtable(vtable_index());
1036    return vt_m != this;
1037  }
1038}
1039
1040
1041// give advice about whether this Method* should be cached or not
1042bool Method::should_not_be_cached() const {
1043  if (is_old()) {
1044    // This method has been redefined. It is either EMCP or obsolete
1045    // and we don't want to cache it because that would pin the method
1046    // down and prevent it from being collectible if and when it
1047    // finishes executing.
1048    return true;
1049  }
1050
1051  // caching this method should be just fine
1052  return false;
1053}
1054
1055
1056/**
1057 *  Returns true if this is one of the specially treated methods for
1058 *  security related stack walks (like Reflection.getCallerClass).
1059 */
1060bool Method::is_ignored_by_security_stack_walk() const {
1061  if (intrinsic_id() == vmIntrinsics::_invoke) {
1062    // This is Method.invoke() -- ignore it
1063    return true;
1064  }
1065  if (method_holder()->is_subclass_of(SystemDictionary::reflect_MethodAccessorImpl_klass())) {
1066    // This is an auxilary frame -- ignore it
1067    return true;
1068  }
1069  if (is_method_handle_intrinsic() || is_compiled_lambda_form()) {
1070    // This is an internal adapter frame for method handles -- ignore it
1071    return true;
1072  }
1073  return false;
1074}
1075
1076
1077// Constant pool structure for invoke methods:
1078enum {
1079  _imcp_invoke_name = 1,        // utf8: 'invokeExact', etc.
1080  _imcp_invoke_signature,       // utf8: (variable Symbol*)
1081  _imcp_limit
1082};
1083
1084// Test if this method is an MH adapter frame generated by Java code.
1085// Cf. java/lang/invoke/InvokerBytecodeGenerator
1086bool Method::is_compiled_lambda_form() const {
1087  return intrinsic_id() == vmIntrinsics::_compiledLambdaForm;
1088}
1089
1090// Test if this method is an internal MH primitive method.
1091bool Method::is_method_handle_intrinsic() const {
1092  vmIntrinsics::ID iid = intrinsic_id();
1093  return (MethodHandles::is_signature_polymorphic(iid) &&
1094          MethodHandles::is_signature_polymorphic_intrinsic(iid));
1095}
1096
1097bool Method::has_member_arg() const {
1098  vmIntrinsics::ID iid = intrinsic_id();
1099  return (MethodHandles::is_signature_polymorphic(iid) &&
1100          MethodHandles::has_member_arg(iid));
1101}
1102
1103// Make an instance of a signature-polymorphic internal MH primitive.
1104methodHandle Method::make_method_handle_intrinsic(vmIntrinsics::ID iid,
1105                                                         Symbol* signature,
1106                                                         TRAPS) {
1107  ResourceMark rm;
1108  methodHandle empty;
1109
1110  KlassHandle holder = SystemDictionary::MethodHandle_klass();
1111  Symbol* name = MethodHandles::signature_polymorphic_intrinsic_name(iid);
1112  assert(iid == MethodHandles::signature_polymorphic_name_id(name), "");
1113  if (TraceMethodHandles) {
1114    tty->print_cr("make_method_handle_intrinsic MH.%s%s", name->as_C_string(), signature->as_C_string());
1115  }
1116
1117  // invariant:   cp->symbol_at_put is preceded by a refcount increment (more usually a lookup)
1118  name->increment_refcount();
1119  signature->increment_refcount();
1120
1121  int cp_length = _imcp_limit;
1122  ClassLoaderData* loader_data = holder->class_loader_data();
1123  constantPoolHandle cp;
1124  {
1125    ConstantPool* cp_oop = ConstantPool::allocate(loader_data, cp_length, CHECK_(empty));
1126    cp = constantPoolHandle(THREAD, cp_oop);
1127  }
1128  cp->set_pool_holder(InstanceKlass::cast(holder()));
1129  cp->symbol_at_put(_imcp_invoke_name,       name);
1130  cp->symbol_at_put(_imcp_invoke_signature,  signature);
1131  cp->set_has_preresolution();
1132
1133  // decide on access bits:  public or not?
1134  int flags_bits = (JVM_ACC_NATIVE | JVM_ACC_SYNTHETIC | JVM_ACC_FINAL);
1135  bool must_be_static = MethodHandles::is_signature_polymorphic_static(iid);
1136  if (must_be_static)  flags_bits |= JVM_ACC_STATIC;
1137  assert((flags_bits & JVM_ACC_PUBLIC) == 0, "do not expose these methods");
1138
1139  methodHandle m;
1140  {
1141    InlineTableSizes sizes;
1142    Method* m_oop = Method::allocate(loader_data, 0,
1143                                     accessFlags_from(flags_bits), &sizes,
1144                                     ConstMethod::NORMAL, CHECK_(empty));
1145    m = methodHandle(THREAD, m_oop);
1146  }
1147  m->set_constants(cp());
1148  m->set_name_index(_imcp_invoke_name);
1149  m->set_signature_index(_imcp_invoke_signature);
1150  assert(MethodHandles::is_signature_polymorphic_name(m->name()), "");
1151  assert(m->signature() == signature, "");
1152#ifdef CC_INTERP
1153  ResultTypeFinder rtf(signature);
1154  m->set_result_index(rtf.type());
1155#endif
1156  m->compute_size_of_parameters(THREAD);
1157  m->init_intrinsic_id();
1158  assert(m->is_method_handle_intrinsic(), "");
1159#ifdef ASSERT
1160  if (!MethodHandles::is_signature_polymorphic(m->intrinsic_id()))  m->print();
1161  assert(MethodHandles::is_signature_polymorphic(m->intrinsic_id()), "must be an invoker");
1162  assert(m->intrinsic_id() == iid, "correctly predicted iid");
1163#endif //ASSERT
1164
1165  // Finally, set up its entry points.
1166  assert(m->can_be_statically_bound(), "");
1167  m->set_vtable_index(Method::nonvirtual_vtable_index);
1168  m->link_method(m, CHECK_(empty));
1169
1170  if (TraceMethodHandles && (Verbose || WizardMode))
1171    m->print_on(tty);
1172
1173  return m;
1174}
1175
1176Klass* Method::check_non_bcp_klass(Klass* klass) {
1177  if (klass != NULL && klass->class_loader() != NULL) {
1178    if (klass->oop_is_objArray())
1179      klass = ObjArrayKlass::cast(klass)->bottom_klass();
1180    return klass;
1181  }
1182  return NULL;
1183}
1184
1185
1186methodHandle Method::clone_with_new_data(methodHandle m, u_char* new_code, int new_code_length,
1187                                                u_char* new_compressed_linenumber_table, int new_compressed_linenumber_size, TRAPS) {
1188  // Code below does not work for native methods - they should never get rewritten anyway
1189  assert(!m->is_native(), "cannot rewrite native methods");
1190  // Allocate new Method*
1191  AccessFlags flags = m->access_flags();
1192
1193  ConstMethod* cm = m->constMethod();
1194  int checked_exceptions_len = cm->checked_exceptions_length();
1195  int localvariable_len = cm->localvariable_table_length();
1196  int exception_table_len = cm->exception_table_length();
1197  int method_parameters_len = cm->method_parameters_length();
1198  int method_annotations_len = cm->method_annotations_length();
1199  int parameter_annotations_len = cm->parameter_annotations_length();
1200  int type_annotations_len = cm->type_annotations_length();
1201  int default_annotations_len = cm->default_annotations_length();
1202
1203  InlineTableSizes sizes(
1204      localvariable_len,
1205      new_compressed_linenumber_size,
1206      exception_table_len,
1207      checked_exceptions_len,
1208      method_parameters_len,
1209      cm->generic_signature_index(),
1210      method_annotations_len,
1211      parameter_annotations_len,
1212      type_annotations_len,
1213      default_annotations_len,
1214      0);
1215
1216  ClassLoaderData* loader_data = m->method_holder()->class_loader_data();
1217  Method* newm_oop = Method::allocate(loader_data,
1218                                      new_code_length,
1219                                      flags,
1220                                      &sizes,
1221                                      m->method_type(),
1222                                      CHECK_(methodHandle()));
1223  methodHandle newm (THREAD, newm_oop);
1224  int new_method_size = newm->method_size();
1225
1226  // Create a shallow copy of Method part, but be careful to preserve the new ConstMethod*
1227  ConstMethod* newcm = newm->constMethod();
1228  int new_const_method_size = newm->constMethod()->size();
1229
1230  memcpy(newm(), m(), sizeof(Method));
1231
1232  // Create shallow copy of ConstMethod.
1233  memcpy(newcm, m->constMethod(), sizeof(ConstMethod));
1234
1235  // Reset correct method/const method, method size, and parameter info
1236  newm->set_constMethod(newcm);
1237  newm->constMethod()->set_code_size(new_code_length);
1238  newm->constMethod()->set_constMethod_size(new_const_method_size);
1239  newm->set_method_size(new_method_size);
1240  assert(newm->code_size() == new_code_length, "check");
1241  assert(newm->method_parameters_length() == method_parameters_len, "check");
1242  assert(newm->checked_exceptions_length() == checked_exceptions_len, "check");
1243  assert(newm->exception_table_length() == exception_table_len, "check");
1244  assert(newm->localvariable_table_length() == localvariable_len, "check");
1245  // Copy new byte codes
1246  memcpy(newm->code_base(), new_code, new_code_length);
1247  // Copy line number table
1248  if (new_compressed_linenumber_size > 0) {
1249    memcpy(newm->compressed_linenumber_table(),
1250           new_compressed_linenumber_table,
1251           new_compressed_linenumber_size);
1252  }
1253  // Copy method_parameters
1254  if (method_parameters_len > 0) {
1255    memcpy(newm->method_parameters_start(),
1256           m->method_parameters_start(),
1257           method_parameters_len * sizeof(MethodParametersElement));
1258  }
1259  // Copy checked_exceptions
1260  if (checked_exceptions_len > 0) {
1261    memcpy(newm->checked_exceptions_start(),
1262           m->checked_exceptions_start(),
1263           checked_exceptions_len * sizeof(CheckedExceptionElement));
1264  }
1265  // Copy exception table
1266  if (exception_table_len > 0) {
1267    memcpy(newm->exception_table_start(),
1268           m->exception_table_start(),
1269           exception_table_len * sizeof(ExceptionTableElement));
1270  }
1271  // Copy local variable number table
1272  if (localvariable_len > 0) {
1273    memcpy(newm->localvariable_table_start(),
1274           m->localvariable_table_start(),
1275           localvariable_len * sizeof(LocalVariableTableElement));
1276  }
1277  // Copy stackmap table
1278  if (m->has_stackmap_table()) {
1279    int code_attribute_length = m->stackmap_data()->length();
1280    Array<u1>* stackmap_data =
1281      MetadataFactory::new_array<u1>(loader_data, code_attribute_length, 0, CHECK_NULL);
1282    memcpy((void*)stackmap_data->adr_at(0),
1283           (void*)m->stackmap_data()->adr_at(0), code_attribute_length);
1284    newm->set_stackmap_data(stackmap_data);
1285  }
1286
1287  // copy annotations over to new method
1288  newcm->copy_annotations_from(cm);
1289  return newm;
1290}
1291
1292vmSymbols::SID Method::klass_id_for_intrinsics(Klass* holder) {
1293  // if loader is not the default loader (i.e., != NULL), we can't know the intrinsics
1294  // because we are not loading from core libraries
1295  // exception: the AES intrinsics come from lib/ext/sunjce_provider.jar
1296  // which does not use the class default class loader so we check for its loader here
1297  InstanceKlass* ik = InstanceKlass::cast(holder);
1298  if ((ik->class_loader() != NULL) && !SystemDictionary::is_ext_class_loader(ik->class_loader())) {
1299    return vmSymbols::NO_SID;   // regardless of name, no intrinsics here
1300  }
1301
1302  // see if the klass name is well-known:
1303  Symbol* klass_name = ik->name();
1304  return vmSymbols::find_sid(klass_name);
1305}
1306
1307void Method::init_intrinsic_id() {
1308  assert(_intrinsic_id == vmIntrinsics::_none, "do this just once");
1309  const uintptr_t max_id_uint = right_n_bits((int)(sizeof(_intrinsic_id) * BitsPerByte));
1310  assert((uintptr_t)vmIntrinsics::ID_LIMIT <= max_id_uint, "else fix size");
1311  assert(intrinsic_id_size_in_bytes() == sizeof(_intrinsic_id), "");
1312
1313  // the klass name is well-known:
1314  vmSymbols::SID klass_id = klass_id_for_intrinsics(method_holder());
1315  assert(klass_id != vmSymbols::NO_SID, "caller responsibility");
1316
1317  // ditto for method and signature:
1318  vmSymbols::SID  name_id = vmSymbols::find_sid(name());
1319  if (klass_id != vmSymbols::VM_SYMBOL_ENUM_NAME(java_lang_invoke_MethodHandle)
1320      && name_id == vmSymbols::NO_SID)
1321    return;
1322  vmSymbols::SID   sig_id = vmSymbols::find_sid(signature());
1323  if (klass_id != vmSymbols::VM_SYMBOL_ENUM_NAME(java_lang_invoke_MethodHandle)
1324      && sig_id == vmSymbols::NO_SID)  return;
1325  jshort flags = access_flags().as_short();
1326
1327  vmIntrinsics::ID id = vmIntrinsics::find_id(klass_id, name_id, sig_id, flags);
1328  if (id != vmIntrinsics::_none) {
1329    set_intrinsic_id(id);
1330    if (id == vmIntrinsics::_Class_cast) {
1331      // Even if the intrinsic is rejected, we want to inline this simple method.
1332      set_force_inline(true);
1333    }
1334    return;
1335  }
1336
1337  // A few slightly irregular cases:
1338  switch (klass_id) {
1339  case vmSymbols::VM_SYMBOL_ENUM_NAME(java_lang_StrictMath):
1340    // Second chance: check in regular Math.
1341    switch (name_id) {
1342    case vmSymbols::VM_SYMBOL_ENUM_NAME(min_name):
1343    case vmSymbols::VM_SYMBOL_ENUM_NAME(max_name):
1344    case vmSymbols::VM_SYMBOL_ENUM_NAME(sqrt_name):
1345      // pretend it is the corresponding method in the non-strict class:
1346      klass_id = vmSymbols::VM_SYMBOL_ENUM_NAME(java_lang_Math);
1347      id = vmIntrinsics::find_id(klass_id, name_id, sig_id, flags);
1348      break;
1349    }
1350    break;
1351
1352  // Signature-polymorphic methods: MethodHandle.invoke*, InvokeDynamic.*.
1353  case vmSymbols::VM_SYMBOL_ENUM_NAME(java_lang_invoke_MethodHandle):
1354    if (!is_native())  break;
1355    id = MethodHandles::signature_polymorphic_name_id(method_holder(), name());
1356    if (is_static() != MethodHandles::is_signature_polymorphic_static(id))
1357      id = vmIntrinsics::_none;
1358    break;
1359  }
1360
1361  if (id != vmIntrinsics::_none) {
1362    // Set up its iid.  It is an alias method.
1363    set_intrinsic_id(id);
1364    return;
1365  }
1366}
1367
1368// These two methods are static since a GC may move the Method
1369bool Method::load_signature_classes(methodHandle m, TRAPS) {
1370  if (THREAD->is_Compiler_thread()) {
1371    // There is nothing useful this routine can do from within the Compile thread.
1372    // Hopefully, the signature contains only well-known classes.
1373    // We could scan for this and return true/false, but the caller won't care.
1374    return false;
1375  }
1376  bool sig_is_loaded = true;
1377  Handle class_loader(THREAD, m->method_holder()->class_loader());
1378  Handle protection_domain(THREAD, m->method_holder()->protection_domain());
1379  ResourceMark rm(THREAD);
1380  Symbol*  signature = m->signature();
1381  for(SignatureStream ss(signature); !ss.is_done(); ss.next()) {
1382    if (ss.is_object()) {
1383      Symbol* sym = ss.as_symbol(CHECK_(false));
1384      Symbol*  name  = sym;
1385      Klass* klass = SystemDictionary::resolve_or_null(name, class_loader,
1386                                             protection_domain, THREAD);
1387      // We are loading classes eagerly. If a ClassNotFoundException or
1388      // a LinkageError was generated, be sure to ignore it.
1389      if (HAS_PENDING_EXCEPTION) {
1390        if (PENDING_EXCEPTION->is_a(SystemDictionary::ClassNotFoundException_klass()) ||
1391            PENDING_EXCEPTION->is_a(SystemDictionary::LinkageError_klass())) {
1392          CLEAR_PENDING_EXCEPTION;
1393        } else {
1394          return false;
1395        }
1396      }
1397      if( klass == NULL) { sig_is_loaded = false; }
1398    }
1399  }
1400  return sig_is_loaded;
1401}
1402
1403bool Method::has_unloaded_classes_in_signature(methodHandle m, TRAPS) {
1404  Handle class_loader(THREAD, m->method_holder()->class_loader());
1405  Handle protection_domain(THREAD, m->method_holder()->protection_domain());
1406  ResourceMark rm(THREAD);
1407  Symbol*  signature = m->signature();
1408  for(SignatureStream ss(signature); !ss.is_done(); ss.next()) {
1409    if (ss.type() == T_OBJECT) {
1410      Symbol* name = ss.as_symbol_or_null();
1411      if (name == NULL) return true;
1412      Klass* klass = SystemDictionary::find(name, class_loader, protection_domain, THREAD);
1413      if (klass == NULL) return true;
1414    }
1415  }
1416  return false;
1417}
1418
1419// Exposed so field engineers can debug VM
1420void Method::print_short_name(outputStream* st) {
1421  ResourceMark rm;
1422#ifdef PRODUCT
1423  st->print(" %s::", method_holder()->external_name());
1424#else
1425  st->print(" %s::", method_holder()->internal_name());
1426#endif
1427  name()->print_symbol_on(st);
1428  if (WizardMode) signature()->print_symbol_on(st);
1429  else if (MethodHandles::is_signature_polymorphic(intrinsic_id()))
1430    MethodHandles::print_as_basic_type_signature_on(st, signature(), true);
1431}
1432
1433// Comparer for sorting an object array containing
1434// Method*s.
1435static int method_comparator(Method* a, Method* b) {
1436  return a->name()->fast_compare(b->name());
1437}
1438
1439// This is only done during class loading, so it is OK to assume method_idnum matches the methods() array
1440// default_methods also uses this without the ordering for fast find_method
1441void Method::sort_methods(Array<Method*>* methods, bool idempotent, bool set_idnums) {
1442  int length = methods->length();
1443  if (length > 1) {
1444    {
1445      No_Safepoint_Verifier nsv;
1446      QuickSort::sort<Method*>(methods->data(), length, method_comparator, idempotent);
1447    }
1448    // Reset method ordering
1449    if (set_idnums) {
1450      for (int i = 0; i < length; i++) {
1451        Method* m = methods->at(i);
1452        m->set_method_idnum(i);
1453      }
1454    }
1455  }
1456}
1457
1458//-----------------------------------------------------------------------------------
1459// Non-product code unless JVM/TI needs it
1460
1461#if !defined(PRODUCT) || INCLUDE_JVMTI
1462class SignatureTypePrinter : public SignatureTypeNames {
1463 private:
1464  outputStream* _st;
1465  bool _use_separator;
1466
1467  void type_name(const char* name) {
1468    if (_use_separator) _st->print(", ");
1469    _st->print("%s", name);
1470    _use_separator = true;
1471  }
1472
1473 public:
1474  SignatureTypePrinter(Symbol* signature, outputStream* st) : SignatureTypeNames(signature) {
1475    _st = st;
1476    _use_separator = false;
1477  }
1478
1479  void print_parameters()              { _use_separator = false; iterate_parameters(); }
1480  void print_returntype()              { _use_separator = false; iterate_returntype(); }
1481};
1482
1483
1484void Method::print_name(outputStream* st) {
1485  Thread *thread = Thread::current();
1486  ResourceMark rm(thread);
1487  SignatureTypePrinter sig(signature(), st);
1488  st->print("%s ", is_static() ? "static" : "virtual");
1489  sig.print_returntype();
1490  st->print(" %s.", method_holder()->internal_name());
1491  name()->print_symbol_on(st);
1492  st->print("(");
1493  sig.print_parameters();
1494  st->print(")");
1495}
1496#endif // !PRODUCT || INCLUDE_JVMTI
1497
1498
1499void Method::print_codes_on(outputStream* st) const {
1500  print_codes_on(0, code_size(), st);
1501}
1502
1503void Method::print_codes_on(int from, int to, outputStream* st) const {
1504  Thread *thread = Thread::current();
1505  ResourceMark rm(thread);
1506  methodHandle mh (thread, (Method*)this);
1507  BytecodeStream s(mh);
1508  s.set_interval(from, to);
1509  BytecodeTracer::set_closure(BytecodeTracer::std_closure());
1510  while (s.next() >= 0) BytecodeTracer::trace(mh, s.bcp(), st);
1511}
1512
1513
1514// Simple compression of line number tables. We use a regular compressed stream, except that we compress deltas
1515// between (bci,line) pairs since they are smaller. If (bci delta, line delta) fits in (5-bit unsigned, 3-bit unsigned)
1516// we save it as one byte, otherwise we write a 0xFF escape character and use regular compression. 0x0 is used
1517// as end-of-stream terminator.
1518
1519void CompressedLineNumberWriteStream::write_pair_regular(int bci_delta, int line_delta) {
1520  // bci and line number does not compress into single byte.
1521  // Write out escape character and use regular compression for bci and line number.
1522  write_byte((jubyte)0xFF);
1523  write_signed_int(bci_delta);
1524  write_signed_int(line_delta);
1525}
1526
1527// See comment in method.hpp which explains why this exists.
1528#if defined(_M_AMD64) && _MSC_VER >= 1400
1529#pragma optimize("", off)
1530void CompressedLineNumberWriteStream::write_pair(int bci, int line) {
1531  write_pair_inline(bci, line);
1532}
1533#pragma optimize("", on)
1534#endif
1535
1536CompressedLineNumberReadStream::CompressedLineNumberReadStream(u_char* buffer) : CompressedReadStream(buffer) {
1537  _bci = 0;
1538  _line = 0;
1539};
1540
1541
1542bool CompressedLineNumberReadStream::read_pair() {
1543  jubyte next = read_byte();
1544  // Check for terminator
1545  if (next == 0) return false;
1546  if (next == 0xFF) {
1547    // Escape character, regular compression used
1548    _bci  += read_signed_int();
1549    _line += read_signed_int();
1550  } else {
1551    // Single byte compression used
1552    _bci  += next >> 3;
1553    _line += next & 0x7;
1554  }
1555  return true;
1556}
1557
1558
1559Bytecodes::Code Method::orig_bytecode_at(int bci) const {
1560  BreakpointInfo* bp = method_holder()->breakpoints();
1561  for (; bp != NULL; bp = bp->next()) {
1562    if (bp->match(this, bci)) {
1563      return bp->orig_bytecode();
1564    }
1565  }
1566  {
1567    ResourceMark rm;
1568    fatal(err_msg("no original bytecode found in %s at bci %d", name_and_sig_as_C_string(), bci));
1569  }
1570  return Bytecodes::_shouldnotreachhere;
1571}
1572
1573void Method::set_orig_bytecode_at(int bci, Bytecodes::Code code) {
1574  assert(code != Bytecodes::_breakpoint, "cannot patch breakpoints this way");
1575  BreakpointInfo* bp = method_holder()->breakpoints();
1576  for (; bp != NULL; bp = bp->next()) {
1577    if (bp->match(this, bci)) {
1578      bp->set_orig_bytecode(code);
1579      // and continue, in case there is more than one
1580    }
1581  }
1582}
1583
1584void Method::set_breakpoint(int bci) {
1585  InstanceKlass* ik = method_holder();
1586  BreakpointInfo *bp = new BreakpointInfo(this, bci);
1587  bp->set_next(ik->breakpoints());
1588  ik->set_breakpoints(bp);
1589  // do this last:
1590  bp->set(this);
1591}
1592
1593static void clear_matches(Method* m, int bci) {
1594  InstanceKlass* ik = m->method_holder();
1595  BreakpointInfo* prev_bp = NULL;
1596  BreakpointInfo* next_bp;
1597  for (BreakpointInfo* bp = ik->breakpoints(); bp != NULL; bp = next_bp) {
1598    next_bp = bp->next();
1599    // bci value of -1 is used to delete all breakpoints in method m (ex: clear_all_breakpoint).
1600    if (bci >= 0 ? bp->match(m, bci) : bp->match(m)) {
1601      // do this first:
1602      bp->clear(m);
1603      // unhook it
1604      if (prev_bp != NULL)
1605        prev_bp->set_next(next_bp);
1606      else
1607        ik->set_breakpoints(next_bp);
1608      delete bp;
1609      // When class is redefined JVMTI sets breakpoint in all versions of EMCP methods
1610      // at same location. So we have multiple matching (method_index and bci)
1611      // BreakpointInfo nodes in BreakpointInfo list. We should just delete one
1612      // breakpoint for clear_breakpoint request and keep all other method versions
1613      // BreakpointInfo for future clear_breakpoint request.
1614      // bcivalue of -1 is used to clear all breakpoints (see clear_all_breakpoints)
1615      // which is being called when class is unloaded. We delete all the Breakpoint
1616      // information for all versions of method. We may not correctly restore the original
1617      // bytecode in all method versions, but that is ok. Because the class is being unloaded
1618      // so these methods won't be used anymore.
1619      if (bci >= 0) {
1620        break;
1621      }
1622    } else {
1623      // This one is a keeper.
1624      prev_bp = bp;
1625    }
1626  }
1627}
1628
1629void Method::clear_breakpoint(int bci) {
1630  assert(bci >= 0, "");
1631  clear_matches(this, bci);
1632}
1633
1634void Method::clear_all_breakpoints() {
1635  clear_matches(this, -1);
1636}
1637
1638
1639int Method::invocation_count() {
1640  MethodCounters *mcs = method_counters();
1641  if (TieredCompilation) {
1642    MethodData* const mdo = method_data();
1643    if (((mcs != NULL) ? mcs->invocation_counter()->carry() : false) ||
1644        ((mdo != NULL) ? mdo->invocation_counter()->carry() : false)) {
1645      return InvocationCounter::count_limit;
1646    } else {
1647      return ((mcs != NULL) ? mcs->invocation_counter()->count() : 0) +
1648             ((mdo != NULL) ? mdo->invocation_counter()->count() : 0);
1649    }
1650  } else {
1651    return (mcs == NULL) ? 0 : mcs->invocation_counter()->count();
1652  }
1653}
1654
1655int Method::backedge_count() {
1656  MethodCounters *mcs = method_counters();
1657  if (TieredCompilation) {
1658    MethodData* const mdo = method_data();
1659    if (((mcs != NULL) ? mcs->backedge_counter()->carry() : false) ||
1660        ((mdo != NULL) ? mdo->backedge_counter()->carry() : false)) {
1661      return InvocationCounter::count_limit;
1662    } else {
1663      return ((mcs != NULL) ? mcs->backedge_counter()->count() : 0) +
1664             ((mdo != NULL) ? mdo->backedge_counter()->count() : 0);
1665    }
1666  } else {
1667    return (mcs == NULL) ? 0 : mcs->backedge_counter()->count();
1668  }
1669}
1670
1671int Method::highest_comp_level() const {
1672  const MethodCounters* mcs = method_counters();
1673  if (mcs != NULL) {
1674    return mcs->highest_comp_level();
1675  } else {
1676    return CompLevel_none;
1677  }
1678}
1679
1680int Method::highest_osr_comp_level() const {
1681  const MethodCounters* mcs = method_counters();
1682  if (mcs != NULL) {
1683    return mcs->highest_osr_comp_level();
1684  } else {
1685    return CompLevel_none;
1686  }
1687}
1688
1689void Method::set_highest_comp_level(int level) {
1690  MethodCounters* mcs = method_counters();
1691  if (mcs != NULL) {
1692    mcs->set_highest_comp_level(level);
1693  }
1694}
1695
1696void Method::set_highest_osr_comp_level(int level) {
1697  MethodCounters* mcs = method_counters();
1698  if (mcs != NULL) {
1699    mcs->set_highest_osr_comp_level(level);
1700  }
1701}
1702
1703BreakpointInfo::BreakpointInfo(Method* m, int bci) {
1704  _bci = bci;
1705  _name_index = m->name_index();
1706  _signature_index = m->signature_index();
1707  _orig_bytecode = (Bytecodes::Code) *m->bcp_from(_bci);
1708  if (_orig_bytecode == Bytecodes::_breakpoint)
1709    _orig_bytecode = m->orig_bytecode_at(_bci);
1710  _next = NULL;
1711}
1712
1713void BreakpointInfo::set(Method* method) {
1714#ifdef ASSERT
1715  {
1716    Bytecodes::Code code = (Bytecodes::Code) *method->bcp_from(_bci);
1717    if (code == Bytecodes::_breakpoint)
1718      code = method->orig_bytecode_at(_bci);
1719    assert(orig_bytecode() == code, "original bytecode must be the same");
1720  }
1721#endif
1722  Thread *thread = Thread::current();
1723  *method->bcp_from(_bci) = Bytecodes::_breakpoint;
1724  method->incr_number_of_breakpoints(thread);
1725  SystemDictionary::notice_modification();
1726  {
1727    // Deoptimize all dependents on this method
1728    HandleMark hm(thread);
1729    methodHandle mh(thread, method);
1730    Universe::flush_dependents_on_method(mh);
1731  }
1732}
1733
1734void BreakpointInfo::clear(Method* method) {
1735  *method->bcp_from(_bci) = orig_bytecode();
1736  assert(method->number_of_breakpoints() > 0, "must not go negative");
1737  method->decr_number_of_breakpoints(Thread::current());
1738}
1739
1740// jmethodID handling
1741
1742// This is a block allocating object, sort of like JNIHandleBlock, only a
1743// lot simpler.
1744// It's allocated on the CHeap because once we allocate a jmethodID, we can
1745// never get rid of it.
1746
1747static const int min_block_size = 8;
1748
1749class JNIMethodBlockNode : public CHeapObj<mtClass> {
1750  friend class JNIMethodBlock;
1751  Method**        _methods;
1752  int             _number_of_methods;
1753  int             _top;
1754  JNIMethodBlockNode* _next;
1755
1756 public:
1757
1758  JNIMethodBlockNode(int num_methods = min_block_size);
1759
1760  ~JNIMethodBlockNode() { FREE_C_HEAP_ARRAY(Method*, _methods); }
1761
1762  void ensure_methods(int num_addl_methods) {
1763    if (_top < _number_of_methods) {
1764      num_addl_methods -= _number_of_methods - _top;
1765      if (num_addl_methods <= 0) {
1766        return;
1767      }
1768    }
1769    if (_next == NULL) {
1770      _next = new JNIMethodBlockNode(MAX2(num_addl_methods, min_block_size));
1771    } else {
1772      _next->ensure_methods(num_addl_methods);
1773    }
1774  }
1775};
1776
1777class JNIMethodBlock : public CHeapObj<mtClass> {
1778  JNIMethodBlockNode _head;
1779  JNIMethodBlockNode *_last_free;
1780 public:
1781  static Method* const _free_method;
1782
1783  JNIMethodBlock(int initial_capacity = min_block_size)
1784      : _head(initial_capacity), _last_free(&_head) {}
1785
1786  void ensure_methods(int num_addl_methods) {
1787    _last_free->ensure_methods(num_addl_methods);
1788  }
1789
1790  Method** add_method(Method* m) {
1791    for (JNIMethodBlockNode* b = _last_free; b != NULL; b = b->_next) {
1792      if (b->_top < b->_number_of_methods) {
1793        // top points to the next free entry.
1794        int i = b->_top;
1795        b->_methods[i] = m;
1796        b->_top++;
1797        _last_free = b;
1798        return &(b->_methods[i]);
1799      } else if (b->_top == b->_number_of_methods) {
1800        // if the next free entry ran off the block see if there's a free entry
1801        for (int i = 0; i < b->_number_of_methods; i++) {
1802          if (b->_methods[i] == _free_method) {
1803            b->_methods[i] = m;
1804            _last_free = b;
1805            return &(b->_methods[i]);
1806          }
1807        }
1808        // Only check each block once for frees.  They're very unlikely.
1809        // Increment top past the end of the block.
1810        b->_top++;
1811      }
1812      // need to allocate a next block.
1813      if (b->_next == NULL) {
1814        b->_next = _last_free = new JNIMethodBlockNode();
1815      }
1816    }
1817    guarantee(false, "Should always allocate a free block");
1818    return NULL;
1819  }
1820
1821  bool contains(Method** m) {
1822    if (m == NULL) return false;
1823    for (JNIMethodBlockNode* b = &_head; b != NULL; b = b->_next) {
1824      if (b->_methods <= m && m < b->_methods + b->_number_of_methods) {
1825        // This is a bit of extra checking, for two reasons.  One is
1826        // that contains() deals with pointers that are passed in by
1827        // JNI code, so making sure that the pointer is aligned
1828        // correctly is valuable.  The other is that <= and > are
1829        // technically not defined on pointers, so the if guard can
1830        // pass spuriously; no modern compiler is likely to make that
1831        // a problem, though (and if one did, the guard could also
1832        // fail spuriously, which would be bad).
1833        ptrdiff_t idx = m - b->_methods;
1834        if (b->_methods + idx == m) {
1835          return true;
1836        }
1837      }
1838    }
1839    return false;  // not found
1840  }
1841
1842  // Doesn't really destroy it, just marks it as free so it can be reused.
1843  void destroy_method(Method** m) {
1844#ifdef ASSERT
1845    assert(contains(m), "should be a methodID");
1846#endif // ASSERT
1847    *m = _free_method;
1848  }
1849
1850  // During class unloading the methods are cleared, which is different
1851  // than freed.
1852  void clear_all_methods() {
1853    for (JNIMethodBlockNode* b = &_head; b != NULL; b = b->_next) {
1854      for (int i = 0; i< b->_number_of_methods; i++) {
1855        b->_methods[i] = NULL;
1856      }
1857    }
1858  }
1859#ifndef PRODUCT
1860  int count_methods() {
1861    // count all allocated methods
1862    int count = 0;
1863    for (JNIMethodBlockNode* b = &_head; b != NULL; b = b->_next) {
1864      for (int i = 0; i< b->_number_of_methods; i++) {
1865        if (b->_methods[i] != _free_method) count++;
1866      }
1867    }
1868    return count;
1869  }
1870#endif // PRODUCT
1871};
1872
1873// Something that can't be mistaken for an address or a markOop
1874Method* const JNIMethodBlock::_free_method = (Method*)55;
1875
1876JNIMethodBlockNode::JNIMethodBlockNode(int num_methods) : _next(NULL), _top(0) {
1877  _number_of_methods = MAX2(num_methods, min_block_size);
1878  _methods = NEW_C_HEAP_ARRAY(Method*, _number_of_methods, mtInternal);
1879  for (int i = 0; i < _number_of_methods; i++) {
1880    _methods[i] = JNIMethodBlock::_free_method;
1881  }
1882}
1883
1884void Method::ensure_jmethod_ids(ClassLoaderData* loader_data, int capacity) {
1885  ClassLoaderData* cld = loader_data;
1886  if (!SafepointSynchronize::is_at_safepoint()) {
1887    // Have to add jmethod_ids() to class loader data thread-safely.
1888    // Also have to add the method to the list safely, which the cld lock
1889    // protects as well.
1890    MutexLockerEx ml(cld->metaspace_lock(),  Mutex::_no_safepoint_check_flag);
1891    if (cld->jmethod_ids() == NULL) {
1892      cld->set_jmethod_ids(new JNIMethodBlock(capacity));
1893    } else {
1894      cld->jmethod_ids()->ensure_methods(capacity);
1895    }
1896  } else {
1897    // At safepoint, we are single threaded and can set this.
1898    if (cld->jmethod_ids() == NULL) {
1899      cld->set_jmethod_ids(new JNIMethodBlock(capacity));
1900    } else {
1901      cld->jmethod_ids()->ensure_methods(capacity);
1902    }
1903  }
1904}
1905
1906// Add a method id to the jmethod_ids
1907jmethodID Method::make_jmethod_id(ClassLoaderData* loader_data, Method* m) {
1908  ClassLoaderData* cld = loader_data;
1909
1910  if (!SafepointSynchronize::is_at_safepoint()) {
1911    // Have to add jmethod_ids() to class loader data thread-safely.
1912    // Also have to add the method to the list safely, which the cld lock
1913    // protects as well.
1914    MutexLockerEx ml(cld->metaspace_lock(),  Mutex::_no_safepoint_check_flag);
1915    if (cld->jmethod_ids() == NULL) {
1916      cld->set_jmethod_ids(new JNIMethodBlock());
1917    }
1918    // jmethodID is a pointer to Method*
1919    return (jmethodID)cld->jmethod_ids()->add_method(m);
1920  } else {
1921    // At safepoint, we are single threaded and can set this.
1922    if (cld->jmethod_ids() == NULL) {
1923      cld->set_jmethod_ids(new JNIMethodBlock());
1924    }
1925    // jmethodID is a pointer to Method*
1926    return (jmethodID)cld->jmethod_ids()->add_method(m);
1927  }
1928}
1929
1930// Mark a jmethodID as free.  This is called when there is a data race in
1931// InstanceKlass while creating the jmethodID cache.
1932void Method::destroy_jmethod_id(ClassLoaderData* loader_data, jmethodID m) {
1933  ClassLoaderData* cld = loader_data;
1934  Method** ptr = (Method**)m;
1935  assert(cld->jmethod_ids() != NULL, "should have method handles");
1936  cld->jmethod_ids()->destroy_method(ptr);
1937}
1938
1939void Method::change_method_associated_with_jmethod_id(jmethodID jmid, Method* new_method) {
1940  // Can't assert the method_holder is the same because the new method has the
1941  // scratch method holder.
1942  assert(resolve_jmethod_id(jmid)->method_holder()->class_loader()
1943           == new_method->method_holder()->class_loader(),
1944         "changing to a different class loader");
1945  // Just change the method in place, jmethodID pointer doesn't change.
1946  *((Method**)jmid) = new_method;
1947}
1948
1949bool Method::is_method_id(jmethodID mid) {
1950  Method* m = resolve_jmethod_id(mid);
1951  assert(m != NULL, "should be called with non-null method");
1952  InstanceKlass* ik = m->method_holder();
1953  ClassLoaderData* cld = ik->class_loader_data();
1954  if (cld->jmethod_ids() == NULL) return false;
1955  return (cld->jmethod_ids()->contains((Method**)mid));
1956}
1957
1958Method* Method::checked_resolve_jmethod_id(jmethodID mid) {
1959  if (mid == NULL) return NULL;
1960  Method* o = resolve_jmethod_id(mid);
1961  if (o == NULL || o == JNIMethodBlock::_free_method || !((Metadata*)o)->is_method()) {
1962    return NULL;
1963  }
1964  return o;
1965};
1966
1967void Method::set_on_stack(const bool value) {
1968  // Set both the method itself and its constant pool.  The constant pool
1969  // on stack means some method referring to it is also on the stack.
1970  constants()->set_on_stack(value);
1971
1972  bool succeeded = _access_flags.set_on_stack(value);
1973  if (value && succeeded) {
1974    MetadataOnStackMark::record(this, Thread::current());
1975  }
1976}
1977
1978// Called when the class loader is unloaded to make all methods weak.
1979void Method::clear_jmethod_ids(ClassLoaderData* loader_data) {
1980  loader_data->jmethod_ids()->clear_all_methods();
1981}
1982
1983bool Method::has_method_vptr(const void* ptr) {
1984  Method m;
1985  // This assumes that the vtbl pointer is the first word of a C++ object.
1986  // This assumption is also in universe.cpp patch_klass_vtble
1987  void* vtbl2 = dereference_vptr((const void*)&m);
1988  void* this_vtbl = dereference_vptr(ptr);
1989  return vtbl2 == this_vtbl;
1990}
1991
1992// Check that this pointer is valid by checking that the vtbl pointer matches
1993bool Method::is_valid_method() const {
1994  if (this == NULL) {
1995    return false;
1996  } else if (!is_metaspace_object()) {
1997    return false;
1998  } else {
1999    return has_method_vptr((const void*)this);
2000  }
2001}
2002
2003#ifndef PRODUCT
2004void Method::print_jmethod_ids(ClassLoaderData* loader_data, outputStream* out) {
2005  out->print_cr("jni_method_id count = %d", loader_data->jmethod_ids()->count_methods());
2006}
2007#endif // PRODUCT
2008
2009
2010// Printing
2011
2012#ifndef PRODUCT
2013
2014void Method::print_on(outputStream* st) const {
2015  ResourceMark rm;
2016  assert(is_method(), "must be method");
2017  st->print_cr("%s", internal_name());
2018  // get the effect of PrintOopAddress, always, for methods:
2019  st->print_cr(" - this oop:          "INTPTR_FORMAT, (intptr_t)this);
2020  st->print   (" - method holder:     "); method_holder()->print_value_on(st); st->cr();
2021  st->print   (" - constants:         "INTPTR_FORMAT" ", (address)constants());
2022  constants()->print_value_on(st); st->cr();
2023  st->print   (" - access:            0x%x  ", access_flags().as_int()); access_flags().print_on(st); st->cr();
2024  st->print   (" - name:              ");    name()->print_value_on(st); st->cr();
2025  st->print   (" - signature:         ");    signature()->print_value_on(st); st->cr();
2026  st->print_cr(" - max stack:         %d",   max_stack());
2027  st->print_cr(" - max locals:        %d",   max_locals());
2028  st->print_cr(" - size of params:    %d",   size_of_parameters());
2029  st->print_cr(" - method size:       %d",   method_size());
2030  if (intrinsic_id() != vmIntrinsics::_none)
2031    st->print_cr(" - intrinsic id:      %d %s", intrinsic_id(), vmIntrinsics::name_at(intrinsic_id()));
2032  if (highest_comp_level() != CompLevel_none)
2033    st->print_cr(" - highest level:     %d", highest_comp_level());
2034  st->print_cr(" - vtable index:      %d",   _vtable_index);
2035  st->print_cr(" - i2i entry:         " INTPTR_FORMAT, interpreter_entry());
2036  st->print(   " - adapters:          ");
2037  AdapterHandlerEntry* a = ((Method*)this)->adapter();
2038  if (a == NULL)
2039    st->print_cr(INTPTR_FORMAT, a);
2040  else
2041    a->print_adapter_on(st);
2042  st->print_cr(" - compiled entry     " INTPTR_FORMAT, from_compiled_entry());
2043  st->print_cr(" - code size:         %d",   code_size());
2044  if (code_size() != 0) {
2045    st->print_cr(" - code start:        " INTPTR_FORMAT, code_base());
2046    st->print_cr(" - code end (excl):   " INTPTR_FORMAT, code_base() + code_size());
2047  }
2048  if (method_data() != NULL) {
2049    st->print_cr(" - method data:       " INTPTR_FORMAT, (address)method_data());
2050  }
2051  st->print_cr(" - checked ex length: %d",   checked_exceptions_length());
2052  if (checked_exceptions_length() > 0) {
2053    CheckedExceptionElement* table = checked_exceptions_start();
2054    st->print_cr(" - checked ex start:  " INTPTR_FORMAT, table);
2055    if (Verbose) {
2056      for (int i = 0; i < checked_exceptions_length(); i++) {
2057        st->print_cr("   - throws %s", constants()->printable_name_at(table[i].class_cp_index));
2058      }
2059    }
2060  }
2061  if (has_linenumber_table()) {
2062    u_char* table = compressed_linenumber_table();
2063    st->print_cr(" - linenumber start:  " INTPTR_FORMAT, table);
2064    if (Verbose) {
2065      CompressedLineNumberReadStream stream(table);
2066      while (stream.read_pair()) {
2067        st->print_cr("   - line %d: %d", stream.line(), stream.bci());
2068      }
2069    }
2070  }
2071  st->print_cr(" - localvar length:   %d",   localvariable_table_length());
2072  if (localvariable_table_length() > 0) {
2073    LocalVariableTableElement* table = localvariable_table_start();
2074    st->print_cr(" - localvar start:    " INTPTR_FORMAT, table);
2075    if (Verbose) {
2076      for (int i = 0; i < localvariable_table_length(); i++) {
2077        int bci = table[i].start_bci;
2078        int len = table[i].length;
2079        const char* name = constants()->printable_name_at(table[i].name_cp_index);
2080        const char* desc = constants()->printable_name_at(table[i].descriptor_cp_index);
2081        int slot = table[i].slot;
2082        st->print_cr("   - %s %s bci=%d len=%d slot=%d", desc, name, bci, len, slot);
2083      }
2084    }
2085  }
2086  if (code() != NULL) {
2087    st->print   (" - compiled code: ");
2088    code()->print_value_on(st);
2089  }
2090  if (is_native()) {
2091    st->print_cr(" - native function:   " INTPTR_FORMAT, native_function());
2092    st->print_cr(" - signature handler: " INTPTR_FORMAT, signature_handler());
2093  }
2094}
2095
2096#endif //PRODUCT
2097
2098void Method::print_value_on(outputStream* st) const {
2099  assert(is_method(), "must be method");
2100  st->print("%s", internal_name());
2101  print_address_on(st);
2102  st->print(" ");
2103  name()->print_value_on(st);
2104  st->print(" ");
2105  signature()->print_value_on(st);
2106  st->print(" in ");
2107  method_holder()->print_value_on(st);
2108  if (WizardMode) st->print("#%d", _vtable_index);
2109  if (WizardMode) st->print("[%d,%d]", size_of_parameters(), max_locals());
2110  if (WizardMode && code() != NULL) st->print(" ((nmethod*)%p)", code());
2111}
2112
2113#if INCLUDE_SERVICES
2114// Size Statistics
2115void Method::collect_statistics(KlassSizeStats *sz) const {
2116  int mysize = sz->count(this);
2117  sz->_method_bytes += mysize;
2118  sz->_method_all_bytes += mysize;
2119  sz->_rw_bytes += mysize;
2120
2121  if (constMethod()) {
2122    constMethod()->collect_statistics(sz);
2123  }
2124  if (method_data()) {
2125    method_data()->collect_statistics(sz);
2126  }
2127}
2128#endif // INCLUDE_SERVICES
2129
2130// Verification
2131
2132void Method::verify_on(outputStream* st) {
2133  guarantee(is_method(), "object must be method");
2134  guarantee(constants()->is_constantPool(), "should be constant pool");
2135  guarantee(constMethod()->is_constMethod(), "should be ConstMethod*");
2136  MethodData* md = method_data();
2137  guarantee(md == NULL ||
2138      md->is_methodData(), "should be method data");
2139}
2140