1/*
2 * Copyright (c) 1997, 2017, 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/systemDictionary.hpp"
27#include "classfile/vmSymbols.hpp"
28#include "gc/shared/gcLocker.hpp"
29#include "logging/log.hpp"
30#include "logging/logStream.hpp"
31#include "memory/metaspaceShared.hpp"
32#include "memory/resourceArea.hpp"
33#include "memory/universe.inline.hpp"
34#include "oops/instanceKlass.hpp"
35#include "oops/klassVtable.hpp"
36#include "oops/method.hpp"
37#include "oops/objArrayOop.hpp"
38#include "oops/oop.inline.hpp"
39#include "prims/jvm.h"
40#include "runtime/arguments.hpp"
41#include "runtime/handles.inline.hpp"
42#include "utilities/copy.hpp"
43
44inline InstanceKlass* klassVtable::ik() const {
45  return InstanceKlass::cast(_klass);
46}
47
48bool klassVtable::is_preinitialized_vtable() {
49  return _klass->is_shared() && !MetaspaceShared::remapped_readwrite();
50}
51
52
53// this function computes the vtable size (including the size needed for miranda
54// methods) and the number of miranda methods in this class.
55// Note on Miranda methods: Let's say there is a class C that implements
56// interface I, and none of C's superclasses implements I.
57// Let's say there is an abstract method m in I that neither C
58// nor any of its super classes implement (i.e there is no method of any access,
59// with the same name and signature as m), then m is a Miranda method which is
60// entered as a public abstract method in C's vtable.  From then on it should
61// treated as any other public method in C for method over-ride purposes.
62void klassVtable::compute_vtable_size_and_num_mirandas(
63    int* vtable_length_ret, int* num_new_mirandas,
64    GrowableArray<Method*>* all_mirandas, const Klass* super,
65    Array<Method*>* methods, AccessFlags class_flags, u2 major_version,
66    Handle classloader, Symbol* classname, Array<Klass*>* local_interfaces,
67    TRAPS) {
68  NoSafepointVerifier nsv;
69
70  // set up default result values
71  int vtable_length = 0;
72
73  // start off with super's vtable length
74  vtable_length = super == NULL ? 0 : super->vtable_length();
75
76  // go thru each method in the methods table to see if it needs a new entry
77  int len = methods->length();
78  for (int i = 0; i < len; i++) {
79    assert(methods->at(i)->is_method(), "must be a Method*");
80    methodHandle mh(THREAD, methods->at(i));
81
82    if (needs_new_vtable_entry(mh, super, classloader, classname, class_flags, major_version, THREAD)) {
83      vtable_length += vtableEntry::size(); // we need a new entry
84    }
85  }
86
87  GrowableArray<Method*> new_mirandas(20);
88  // compute the number of mirandas methods that must be added to the end
89  get_mirandas(&new_mirandas, all_mirandas, super, methods, NULL, local_interfaces);
90  *num_new_mirandas = new_mirandas.length();
91
92  // Interfaces do not need interface methods in their vtables
93  // This includes miranda methods and during later processing, default methods
94  if (!class_flags.is_interface()) {
95    vtable_length += *num_new_mirandas * vtableEntry::size();
96  }
97
98  if (Universe::is_bootstrapping() && vtable_length == 0) {
99    // array classes don't have their superclass set correctly during
100    // bootstrapping
101    vtable_length = Universe::base_vtable_size();
102  }
103
104  if (super == NULL && vtable_length != Universe::base_vtable_size()) {
105    if (Universe::is_bootstrapping()) {
106      // Someone is attempting to override java.lang.Object incorrectly on the
107      // bootclasspath.  The JVM cannot recover from this error including throwing
108      // an exception
109      vm_exit_during_initialization("Incompatible definition of java.lang.Object");
110    } else {
111      // Someone is attempting to redefine java.lang.Object incorrectly.  The
112      // only way this should happen is from
113      // SystemDictionary::resolve_from_stream(), which will detect this later
114      // and throw a security exception.  So don't assert here to let
115      // the exception occur.
116      vtable_length = Universe::base_vtable_size();
117    }
118  }
119  assert(vtable_length % vtableEntry::size() == 0, "bad vtable length");
120  assert(vtable_length >= Universe::base_vtable_size(), "vtable too small");
121
122  *vtable_length_ret = vtable_length;
123}
124
125int klassVtable::index_of(Method* m, int len) const {
126  assert(m->has_vtable_index(), "do not ask this of non-vtable methods");
127  return m->vtable_index();
128}
129
130// Copy super class's vtable to the first part (prefix) of this class's vtable,
131// and return the number of entries copied.  Expects that 'super' is the Java
132// super class (arrays can have "array" super classes that must be skipped).
133int klassVtable::initialize_from_super(Klass* super) {
134  if (super == NULL) {
135    return 0;
136  } else if (is_preinitialized_vtable()) {
137    // A shared class' vtable is preinitialized at dump time. No need to copy
138    // methods from super class for shared class, as that was already done
139    // during archiving time. However, if Jvmti has redefined a class,
140    // copy super class's vtable in case the super class has changed.
141    return super->vtable().length();
142  } else {
143    // copy methods from superKlass
144    klassVtable superVtable = super->vtable();
145    assert(superVtable.length() <= _length, "vtable too short");
146#ifdef ASSERT
147    superVtable.verify(tty, true);
148#endif
149    superVtable.copy_vtable_to(table());
150    if (log_develop_is_enabled(Trace, vtables)) {
151      ResourceMark rm;
152      log_develop_trace(vtables)("copy vtable from %s to %s size %d",
153                                 super->internal_name(), klass()->internal_name(),
154                                 _length);
155    }
156    return superVtable.length();
157  }
158}
159
160//
161// Revised lookup semantics   introduced 1.3 (Kestrel beta)
162void klassVtable::initialize_vtable(bool checkconstraints, TRAPS) {
163
164  // Note:  Arrays can have intermediate array supers.  Use java_super to skip them.
165  Klass* super = _klass->java_super();
166  int nofNewEntries = 0;
167
168  bool is_shared = _klass->is_shared();
169
170  if (!_klass->is_array_klass()) {
171    ResourceMark rm(THREAD);
172    log_develop_debug(vtables)("Initializing: %s", _klass->name()->as_C_string());
173  }
174
175#ifdef ASSERT
176  oop* end_of_obj = (oop*)_klass + _klass->size();
177  oop* end_of_vtable = (oop*)&table()[_length];
178  assert(end_of_vtable <= end_of_obj, "vtable extends beyond end");
179#endif
180
181  if (Universe::is_bootstrapping()) {
182    assert(!is_shared, "sanity");
183    // just clear everything
184    for (int i = 0; i < _length; i++) table()[i].clear();
185    return;
186  }
187
188  int super_vtable_len = initialize_from_super(super);
189  if (_klass->is_array_klass()) {
190    assert(super_vtable_len == _length, "arrays shouldn't introduce new methods");
191  } else {
192    assert(_klass->is_instance_klass(), "must be InstanceKlass");
193
194    Array<Method*>* methods = ik()->methods();
195    int len = methods->length();
196    int initialized = super_vtable_len;
197
198    // Check each of this class's methods against super;
199    // if override, replace in copy of super vtable, otherwise append to end
200    for (int i = 0; i < len; i++) {
201      // update_inherited_vtable can stop for gc - ensure using handles
202      HandleMark hm(THREAD);
203      assert(methods->at(i)->is_method(), "must be a Method*");
204      methodHandle mh(THREAD, methods->at(i));
205
206      bool needs_new_entry = update_inherited_vtable(ik(), mh, super_vtable_len, -1, checkconstraints, CHECK);
207
208      if (needs_new_entry) {
209        put_method_at(mh(), initialized);
210        mh()->set_vtable_index(initialized); // set primary vtable index
211        initialized++;
212      }
213    }
214
215    // update vtable with default_methods
216    Array<Method*>* default_methods = ik()->default_methods();
217    if (default_methods != NULL) {
218      len = default_methods->length();
219      if (len > 0) {
220        Array<int>* def_vtable_indices = NULL;
221        if ((def_vtable_indices = ik()->default_vtable_indices()) == NULL) {
222          assert(!is_shared, "shared class def_vtable_indices does not exist");
223          def_vtable_indices = ik()->create_new_default_vtable_indices(len, CHECK);
224        } else {
225          assert(def_vtable_indices->length() == len, "reinit vtable len?");
226        }
227        for (int i = 0; i < len; i++) {
228          HandleMark hm(THREAD);
229          assert(default_methods->at(i)->is_method(), "must be a Method*");
230          methodHandle mh(THREAD, default_methods->at(i));
231          assert(!mh->is_private(), "private interface method in the default method list");
232          bool needs_new_entry = update_inherited_vtable(ik(), mh, super_vtable_len, i, checkconstraints, CHECK);
233
234          // needs new entry
235          if (needs_new_entry) {
236            put_method_at(mh(), initialized);
237            if (is_preinitialized_vtable()) {
238              // At runtime initialize_vtable is rerun for a shared class
239              // (loaded by the non-boot loader) as part of link_class_impl().
240              // The dumptime vtable index should be the same as the runtime index.
241              assert(def_vtable_indices->at(i) == initialized,
242                     "dump time vtable index is different from runtime index");
243            } else {
244              def_vtable_indices->at_put(i, initialized); //set vtable index
245            }
246            initialized++;
247          }
248        }
249      }
250    }
251
252    // add miranda methods; it will also return the updated initialized
253    // Interfaces do not need interface methods in their vtables
254    // This includes miranda methods and during later processing, default methods
255    if (!ik()->is_interface()) {
256      initialized = fill_in_mirandas(initialized);
257    }
258
259    // In class hierarchies where the accessibility is not increasing (i.e., going from private ->
260    // package_private -> public/protected), the vtable might actually be smaller than our initial
261    // calculation, for classfile versions for which we do not do transitive override
262    // calculations.
263    if (ik()->major_version() >= VTABLE_TRANSITIVE_OVERRIDE_VERSION) {
264      assert(initialized == _length, "vtable initialization failed");
265    } else {
266      assert(initialized <= _length, "vtable initialization failed");
267      for(;initialized < _length; initialized++) {
268        table()[initialized].clear();
269      }
270    }
271    NOT_PRODUCT(verify(tty, true));
272  }
273}
274
275// Called for cases where a method does not override its superclass' vtable entry
276// For bytecodes not produced by javac together it is possible that a method does not override
277// the superclass's method, but might indirectly override a super-super class's vtable entry
278// If none found, return a null superk, else return the superk of the method this does override
279// For public and protected methods: if they override a superclass, they will
280// also be overridden themselves appropriately.
281// Private methods do not override and are not overridden.
282// Package Private methods are trickier:
283// e.g. P1.A, pub m
284// P2.B extends A, package private m
285// P1.C extends B, public m
286// P1.C.m needs to override P1.A.m and can not override P2.B.m
287// Therefore: all package private methods need their own vtable entries for
288// them to be the root of an inheritance overriding decision
289// Package private methods may also override other vtable entries
290InstanceKlass* klassVtable::find_transitive_override(InstanceKlass* initialsuper, const methodHandle& target_method,
291                            int vtable_index, Handle target_loader, Symbol* target_classname, Thread * THREAD) {
292  InstanceKlass* superk = initialsuper;
293  while (superk != NULL && superk->super() != NULL) {
294    InstanceKlass* supersuperklass = InstanceKlass::cast(superk->super());
295    klassVtable ssVtable = supersuperklass->vtable();
296    if (vtable_index < ssVtable.length()) {
297      Method* super_method = ssVtable.method_at(vtable_index);
298#ifndef PRODUCT
299      Symbol* name= target_method()->name();
300      Symbol* signature = target_method()->signature();
301      assert(super_method->name() == name && super_method->signature() == signature, "vtable entry name/sig mismatch");
302#endif
303      if (supersuperklass->is_override(super_method, target_loader, target_classname, THREAD)) {
304        if (log_develop_is_enabled(Trace, vtables)) {
305          ResourceMark rm(THREAD);
306          LogTarget(Trace, vtables) lt;
307          LogStream ls(lt);
308          char* sig = target_method()->name_and_sig_as_C_string();
309          ls.print("transitive overriding superclass %s with %s index %d, original flags: ",
310                       supersuperklass->internal_name(),
311                       sig, vtable_index);
312          super_method->print_linkage_flags(&ls);
313          ls.print("overriders flags: ");
314          target_method->print_linkage_flags(&ls);
315          ls.cr();
316        }
317
318        break; // return found superk
319      }
320    } else  {
321      // super class has no vtable entry here, stop transitive search
322      superk = (InstanceKlass*)NULL;
323      break;
324    }
325    // if no override found yet, continue to search up
326    superk = superk->super() == NULL ? NULL : InstanceKlass::cast(superk->super());
327  }
328
329  return superk;
330}
331
332static void log_vtables(int i, bool overrides, const methodHandle& target_method,
333                        Klass* target_klass, Method* super_method,
334                        Thread* thread) {
335#ifndef PRODUCT
336  if (log_develop_is_enabled(Trace, vtables)) {
337    ResourceMark rm(thread);
338    LogTarget(Trace, vtables) lt;
339    LogStream ls(lt);
340    char* sig = target_method()->name_and_sig_as_C_string();
341    if (overrides) {
342      ls.print("overriding with %s index %d, original flags: ",
343                   sig, i);
344    } else {
345      ls.print("NOT overriding with %s index %d, original flags: ",
346                   sig, i);
347    }
348    super_method->print_linkage_flags(&ls);
349    ls.print("overriders flags: ");
350    target_method->print_linkage_flags(&ls);
351    ls.cr();
352  }
353#endif
354}
355
356// Update child's copy of super vtable for overrides
357// OR return true if a new vtable entry is required.
358// Only called for InstanceKlass's, i.e. not for arrays
359// If that changed, could not use _klass as handle for klass
360bool klassVtable::update_inherited_vtable(InstanceKlass* klass, const methodHandle& target_method,
361                                          int super_vtable_len, int default_index,
362                                          bool checkconstraints, TRAPS) {
363  ResourceMark rm;
364  bool allocate_new = true;
365  assert(klass->is_instance_klass(), "must be InstanceKlass");
366
367  Array<int>* def_vtable_indices = NULL;
368  bool is_default = false;
369
370  // default methods are non-private concrete methods in superinterfaces which are added
371  // to the vtable with their real method_holder.
372  // Since vtable and itable indices share the same storage, don't touch
373  // the default method's real vtable/itable index.
374  // default_vtable_indices stores the vtable value relative to this inheritor
375  if (default_index >= 0 ) {
376    is_default = true;
377    def_vtable_indices = klass->default_vtable_indices();
378    assert(!target_method()->is_private(), "private interface method flagged as default");
379    assert(def_vtable_indices != NULL, "def vtable alloc?");
380    assert(default_index <= def_vtable_indices->length(), "def vtable len?");
381  } else {
382    assert(klass == target_method()->method_holder(), "caller resp.");
383    // Initialize the method's vtable index to "nonvirtual".
384    // If we allocate a vtable entry, we will update it to a non-negative number.
385    target_method()->set_vtable_index(Method::nonvirtual_vtable_index);
386  }
387
388  // Static and <init> methods are never in
389  if (target_method()->is_static() || target_method()->name() ==  vmSymbols::object_initializer_name()) {
390    return false;
391  }
392
393  if (target_method->is_final_method(klass->access_flags())) {
394    // a final method never needs a new entry; final methods can be statically
395    // resolved and they have to be present in the vtable only if they override
396    // a super's method, in which case they re-use its entry
397    allocate_new = false;
398  } else if (klass->is_interface()) {
399    allocate_new = false;  // see note below in needs_new_vtable_entry
400    // An interface never allocates new vtable slots, only inherits old ones.
401    // This method will either be assigned its own itable index later,
402    // or be assigned an inherited vtable index in the loop below.
403    // default methods inherited by classes store their vtable indices
404    // in the inheritor's default_vtable_indices.
405    // default methods inherited by interfaces may already have a
406    // valid itable index, if so, don't change it.
407    // Overpass methods in an interface will be assigned an itable index later
408    // by an inheriting class.
409    // Private interface methods have no itable index and are always invoked nonvirtually,
410    // so they retain their nonvirtual_vtable_index value, and therefore can_be_statically_bound()
411    // will return true.
412    if ((!is_default || !target_method()->has_itable_index()) && !target_method()->is_private()) {
413      target_method()->set_vtable_index(Method::pending_itable_index);
414    }
415  }
416
417  // we need a new entry if there is no superclass
418  Klass* super = klass->super();
419  if (super == NULL) {
420    return allocate_new;
421  }
422
423  // private methods in classes always have a new entry in the vtable
424  // specification interpretation since classic has
425  // private methods not overriding
426  // JDK8 adds private methods in interfaces which require invokespecial
427  if (target_method()->is_private()) {
428    return allocate_new;
429  }
430
431  // search through the vtable and update overridden entries
432  // Since check_signature_loaders acquires SystemDictionary_lock
433  // which can block for gc, once we are in this loop, use handles
434  // For classfiles built with >= jdk7, we now look for transitive overrides
435
436  Symbol* name = target_method()->name();
437  Symbol* signature = target_method()->signature();
438
439  Klass* target_klass = target_method()->method_holder();
440  if (target_klass == NULL) {
441    target_klass = _klass;
442  }
443
444  Handle target_loader(THREAD, target_klass->class_loader());
445
446  Symbol* target_classname = target_klass->name();
447  for(int i = 0; i < super_vtable_len; i++) {
448    Method* super_method;
449    if (is_preinitialized_vtable()) {
450      // If this is a shared class, the vtable is already in the final state (fully
451      // initialized). Need to look at the super's vtable.
452      klassVtable superVtable = super->vtable();
453      super_method = superVtable.method_at(i);
454    } else {
455      super_method = method_at(i);
456    }
457    // Check if method name matches
458    if (super_method->name() == name && super_method->signature() == signature) {
459
460      // get super_klass for method_holder for the found method
461      InstanceKlass* super_klass =  super_method->method_holder();
462
463      // Whether the method is being overridden
464      bool overrides = false;
465
466      // private methods are also never overridden
467      if (!super_method->is_private() &&
468          (is_default
469          || ((super_klass->is_override(super_method, target_loader, target_classname, THREAD))
470          || ((klass->major_version() >= VTABLE_TRANSITIVE_OVERRIDE_VERSION)
471          && ((super_klass = find_transitive_override(super_klass,
472                             target_method, i, target_loader,
473                             target_classname, THREAD))
474                             != (InstanceKlass*)NULL)))))
475        {
476        // Package private methods always need a new entry to root their own
477        // overriding. They may also override other methods.
478        if (!target_method()->is_package_private()) {
479          allocate_new = false;
480        }
481
482        if (checkconstraints) {
483        // Override vtable entry if passes loader constraint check
484        // if loader constraint checking requested
485        // No need to visit his super, since he and his super
486        // have already made any needed loader constraints.
487        // Since loader constraints are transitive, it is enough
488        // to link to the first super, and we get all the others.
489          Handle super_loader(THREAD, super_klass->class_loader());
490
491          if (target_loader() != super_loader()) {
492            ResourceMark rm(THREAD);
493            Symbol* failed_type_symbol =
494              SystemDictionary::check_signature_loaders(signature, target_loader,
495                                                        super_loader, true,
496                                                        CHECK_(false));
497            if (failed_type_symbol != NULL) {
498              const char* msg = "loader constraint violation: when resolving "
499                "overridden method \"%s\" the class loader (instance"
500                " of %s) of the current class, %s, and its superclass loader "
501                "(instance of %s), have different Class objects for the type "
502                "%s used in the signature";
503              char* sig = target_method()->name_and_sig_as_C_string();
504              const char* loader1 = SystemDictionary::loader_name(target_loader());
505              char* current = target_klass->name()->as_C_string();
506              const char* loader2 = SystemDictionary::loader_name(super_loader());
507              char* failed_type_name = failed_type_symbol->as_C_string();
508              size_t buflen = strlen(msg) + strlen(sig) + strlen(loader1) +
509                strlen(current) + strlen(loader2) + strlen(failed_type_name);
510              char* buf = NEW_RESOURCE_ARRAY_IN_THREAD(THREAD, char, buflen);
511              jio_snprintf(buf, buflen, msg, sig, loader1, current, loader2,
512                           failed_type_name);
513              THROW_MSG_(vmSymbols::java_lang_LinkageError(), buf, false);
514            }
515          }
516        }
517
518        put_method_at(target_method(), i);
519        overrides = true;
520        if (!is_default) {
521          target_method()->set_vtable_index(i);
522        } else {
523          if (def_vtable_indices != NULL) {
524            if (is_preinitialized_vtable()) {
525              // At runtime initialize_vtable is rerun as part of link_class_impl()
526              // for a shared class loaded by the non-boot loader.
527              // The dumptime vtable index should be the same as the runtime index.
528              assert(def_vtable_indices->at(default_index) == i,
529                     "dump time vtable index is different from runtime index");
530            } else {
531              def_vtable_indices->at_put(default_index, i);
532            }
533          }
534          assert(super_method->is_default_method() || super_method->is_overpass()
535                 || super_method->is_abstract(), "default override error");
536        }
537      } else {
538        overrides = false;
539      }
540      log_vtables(i, overrides, target_method, target_klass, super_method, THREAD);
541    }
542  }
543  return allocate_new;
544}
545
546void klassVtable::put_method_at(Method* m, int index) {
547  if (is_preinitialized_vtable()) {
548    // At runtime initialize_vtable is rerun as part of link_class_impl()
549    // for shared class loaded by the non-boot loader to obtain the loader
550    // constraints based on the runtime classloaders' context. The dumptime
551    // method at the vtable index should be the same as the runtime method.
552    assert(table()[index].method() == m,
553           "archived method is different from the runtime method");
554  } else {
555    if (log_develop_is_enabled(Trace, vtables)) {
556      ResourceMark rm;
557      LogTarget(Trace, vtables) lt;
558      LogStream ls(lt);
559      const char* sig = (m != NULL) ? m->name_and_sig_as_C_string() : "<NULL>";
560      ls.print("adding %s at index %d, flags: ", sig, index);
561      if (m != NULL) {
562        m->print_linkage_flags(&ls);
563      }
564      ls.cr();
565    }
566    table()[index].set(m);
567  }
568}
569
570// Find out if a method "m" with superclass "super", loader "classloader" and
571// name "classname" needs a new vtable entry.  Let P be a class package defined
572// by "classloader" and "classname".
573// NOTE: The logic used here is very similar to the one used for computing
574// the vtables indices for a method. We cannot directly use that function because,
575// we allocate the InstanceKlass at load time, and that requires that the
576// superclass has been loaded.
577// However, the vtable entries are filled in at link time, and therefore
578// the superclass' vtable may not yet have been filled in.
579bool klassVtable::needs_new_vtable_entry(const methodHandle& target_method,
580                                         const Klass* super,
581                                         Handle classloader,
582                                         Symbol* classname,
583                                         AccessFlags class_flags,
584                                         u2 major_version,
585                                         TRAPS) {
586  if (class_flags.is_interface()) {
587    // Interfaces do not use vtables, except for java.lang.Object methods,
588    // so there is no point to assigning
589    // a vtable index to any of their local methods.  If we refrain from doing this,
590    // we can use Method::_vtable_index to hold the itable index
591    return false;
592  }
593
594  if (target_method->is_final_method(class_flags) ||
595      // a final method never needs a new entry; final methods can be statically
596      // resolved and they have to be present in the vtable only if they override
597      // a super's method, in which case they re-use its entry
598      (target_method()->is_static()) ||
599      // static methods don't need to be in vtable
600      (target_method()->name() ==  vmSymbols::object_initializer_name())
601      // <init> is never called dynamically-bound
602      ) {
603    return false;
604  }
605
606  // Concrete interface methods do not need new entries, they override
607  // abstract method entries using default inheritance rules
608  if (target_method()->method_holder() != NULL &&
609      target_method()->method_holder()->is_interface()  &&
610      !target_method()->is_abstract()) {
611    assert(target_method()->is_default_method() || target_method()->is_private(),
612           "unexpected interface method type");
613    return false;
614  }
615
616  // we need a new entry if there is no superclass
617  if (super == NULL) {
618    return true;
619  }
620
621  // private methods in classes always have a new entry in the vtable.
622  // Specification interpretation since classic has private methods not overriding.
623  if (target_method()->is_private()) {
624    return true;
625  }
626
627  // Package private methods always need a new entry to root their own
628  // overriding. This allows transitive overriding to work.
629  if (target_method()->is_package_private()) {
630    return true;
631  }
632
633  // search through the super class hierarchy to see if we need
634  // a new entry
635  ResourceMark rm;
636  Symbol* name = target_method()->name();
637  Symbol* signature = target_method()->signature();
638  const Klass* k = super;
639  Method* super_method = NULL;
640  InstanceKlass *holder = NULL;
641  Method* recheck_method =  NULL;
642  while (k != NULL) {
643    // lookup through the hierarchy for a method with matching name and sign.
644    super_method = InstanceKlass::cast(k)->lookup_method(name, signature);
645    if (super_method == NULL) {
646      break; // we still have to search for a matching miranda method
647    }
648    // get the class holding the matching method
649    // make sure you use that class for is_override
650    InstanceKlass* superk = super_method->method_holder();
651    // we want only instance method matches
652    // pretend private methods are not in the super vtable
653    // since we do override around them: e.g. a.m pub/b.m private/c.m pub,
654    // ignore private, c.m pub does override a.m pub
655    // For classes that were not javac'd together, we also do transitive overriding around
656    // methods that have less accessibility
657    if ((!super_method->is_static()) &&
658       (!super_method->is_private())) {
659      if (superk->is_override(super_method, classloader, classname, THREAD)) {
660        return false;
661      // else keep looking for transitive overrides
662      }
663    }
664
665    // Start with lookup result and continue to search up, for versions supporting transitive override
666    if (major_version >= VTABLE_TRANSITIVE_OVERRIDE_VERSION) {
667      k = superk->super(); // haven't found an override match yet; continue to look
668    } else {
669      break;
670    }
671  }
672
673  // if the target method is public or protected it may have a matching
674  // miranda method in the super, whose entry it should re-use.
675  // Actually, to handle cases that javac would not generate, we need
676  // this check for all access permissions.
677  const InstanceKlass *sk = InstanceKlass::cast(super);
678  if (sk->has_miranda_methods()) {
679    if (sk->lookup_method_in_all_interfaces(name, signature, Klass::find_defaults) != NULL) {
680      return false;  // found a matching miranda; we do not need a new entry
681    }
682  }
683  return true; // found no match; we need a new entry
684}
685
686// Support for miranda methods
687
688// get the vtable index of a miranda method with matching "name" and "signature"
689int klassVtable::index_of_miranda(Symbol* name, Symbol* signature) {
690  // search from the bottom, might be faster
691  for (int i = (length() - 1); i >= 0; i--) {
692    Method* m = table()[i].method();
693    if (is_miranda_entry_at(i) &&
694        m->name() == name && m->signature() == signature) {
695      return i;
696    }
697  }
698  return Method::invalid_vtable_index;
699}
700
701// check if an entry at an index is miranda
702// requires that method m at entry be declared ("held") by an interface.
703bool klassVtable::is_miranda_entry_at(int i) {
704  Method* m = method_at(i);
705  Klass* method_holder = m->method_holder();
706  InstanceKlass *mhk = InstanceKlass::cast(method_holder);
707
708  // miranda methods are public abstract instance interface methods in a class's vtable
709  if (mhk->is_interface()) {
710    assert(m->is_public(), "should be public");
711    assert(ik()->implements_interface(method_holder) , "this class should implement the interface");
712    if (is_miranda(m, ik()->methods(), ik()->default_methods(), ik()->super())) {
713      return true;
714    }
715  }
716  return false;
717}
718
719// Check if a method is a miranda method, given a class's methods array,
720// its default_method table and its super class.
721// "Miranda" means an abstract non-private method that would not be
722// overridden for the local class.
723// A "miranda" method should only include non-private interface
724// instance methods, i.e. not private methods, not static methods,
725// not default methods (concrete interface methods), not overpass methods.
726// If a given class already has a local (including overpass) method, a
727// default method, or any of its superclasses has the same which would have
728// overridden an abstract method, then this is not a miranda method.
729//
730// Miranda methods are checked multiple times.
731// Pass 1: during class load/class file parsing: before vtable size calculation:
732// include superinterface abstract and default methods (non-private instance).
733// We include potential default methods to give them space in the vtable.
734// During the first run, the current instanceKlass has not yet been
735// created, the superclasses and superinterfaces do have instanceKlasses
736// but may not have vtables, the default_methods list is empty, no overpasses.
737// This is seen by default method creation.
738//
739// Pass 2: recalculated during vtable initialization: only include abstract methods.
740// The goal of pass 2 is to walk through the superinterfaces to see if any of
741// the superinterface methods (which were all abstract pre-default methods)
742// need to be added to the vtable.
743// With the addition of default methods, we have three new challenges:
744// overpasses, static interface methods and private interface methods.
745// Static and private interface methods do not get added to the vtable and
746// are not seen by the method resolution process, so we skip those.
747// Overpass methods are already in the vtable, so vtable lookup will
748// find them and we don't need to add a miranda method to the end of
749// the vtable. So we look for overpass methods and if they are found we
750// return false. Note that we inherit our superclasses vtable, so
751// the superclass' search also needs to use find_overpass so that if
752// one is found we return false.
753// False means - we don't need a miranda method added to the vtable.
754//
755// During the second run, default_methods is set up, so concrete methods from
756// superinterfaces with matching names/signatures to default_methods are already
757// in the default_methods list and do not need to be appended to the vtable
758// as mirandas. Abstract methods may already have been handled via
759// overpasses - either local or superclass overpasses, which may be
760// in the vtable already.
761//
762// Pass 3: They are also checked by link resolution and selection,
763// for invocation on a method (not interface method) reference that
764// resolves to a method with an interface as its method_holder.
765// Used as part of walking from the bottom of the vtable to find
766// the vtable index for the miranda method.
767//
768// Part of the Miranda Rights in the US mean that if you do not have
769// an attorney one will be appointed for you.
770bool klassVtable::is_miranda(Method* m, Array<Method*>* class_methods,
771                             Array<Method*>* default_methods, const Klass* super) {
772  if (m->is_static() || m->is_private() || m->is_overpass()) {
773    return false;
774  }
775  Symbol* name = m->name();
776  Symbol* signature = m->signature();
777
778  // First look in local methods to see if already covered
779  if (InstanceKlass::find_local_method(class_methods, name, signature,
780              Klass::find_overpass, Klass::skip_static, Klass::skip_private) != NULL)
781  {
782    return false;
783  }
784
785  // Check local default methods
786  if ((default_methods != NULL) &&
787    (InstanceKlass::find_method(default_methods, name, signature) != NULL))
788   {
789     return false;
790   }
791
792  // Iterate on all superclasses, which should be InstanceKlasses.
793  // Note that we explicitly look for overpasses at each level.
794  // Overpasses may or may not exist for supers for pass 1,
795  // they should have been created for pass 2 and later.
796
797  for (const Klass* cursuper = super; cursuper != NULL; cursuper = cursuper->super())
798  {
799     if (InstanceKlass::cast(cursuper)->find_local_method(name, signature,
800           Klass::find_overpass, Klass::skip_static, Klass::skip_private) != NULL) {
801       return false;
802     }
803  }
804
805  return true;
806}
807
808// Scans current_interface_methods for miranda methods that do not
809// already appear in new_mirandas, or default methods,  and are also not defined-and-non-private
810// in super (superclass).  These mirandas are added to all_mirandas if it is
811// not null; in addition, those that are not duplicates of miranda methods
812// inherited by super from its interfaces are added to new_mirandas.
813// Thus, new_mirandas will be the set of mirandas that this class introduces,
814// all_mirandas will be the set of all mirandas applicable to this class
815// including all defined in superclasses.
816void klassVtable::add_new_mirandas_to_lists(
817    GrowableArray<Method*>* new_mirandas, GrowableArray<Method*>* all_mirandas,
818    Array<Method*>* current_interface_methods, Array<Method*>* class_methods,
819    Array<Method*>* default_methods, const Klass* super) {
820
821  // iterate thru the current interface's method to see if it a miranda
822  int num_methods = current_interface_methods->length();
823  for (int i = 0; i < num_methods; i++) {
824    Method* im = current_interface_methods->at(i);
825    bool is_duplicate = false;
826    int num_of_current_mirandas = new_mirandas->length();
827    // check for duplicate mirandas in different interfaces we implement
828    for (int j = 0; j < num_of_current_mirandas; j++) {
829      Method* miranda = new_mirandas->at(j);
830      if ((im->name() == miranda->name()) &&
831          (im->signature() == miranda->signature())) {
832        is_duplicate = true;
833        break;
834      }
835    }
836
837    if (!is_duplicate) { // we don't want duplicate miranda entries in the vtable
838      if (is_miranda(im, class_methods, default_methods, super)) { // is it a miranda at all?
839        const InstanceKlass *sk = InstanceKlass::cast(super);
840        // check if it is a duplicate of a super's miranda
841        if (sk->lookup_method_in_all_interfaces(im->name(), im->signature(), Klass::find_defaults) == NULL) {
842          new_mirandas->append(im);
843        }
844        if (all_mirandas != NULL) {
845          all_mirandas->append(im);
846        }
847      }
848    }
849  }
850}
851
852void klassVtable::get_mirandas(GrowableArray<Method*>* new_mirandas,
853                               GrowableArray<Method*>* all_mirandas,
854                               const Klass* super,
855                               Array<Method*>* class_methods,
856                               Array<Method*>* default_methods,
857                               Array<Klass*>* local_interfaces) {
858  assert((new_mirandas->length() == 0) , "current mirandas must be 0");
859
860  // iterate thru the local interfaces looking for a miranda
861  int num_local_ifs = local_interfaces->length();
862  for (int i = 0; i < num_local_ifs; i++) {
863    InstanceKlass *ik = InstanceKlass::cast(local_interfaces->at(i));
864    add_new_mirandas_to_lists(new_mirandas, all_mirandas,
865                              ik->methods(), class_methods,
866                              default_methods, super);
867    // iterate thru each local's super interfaces
868    Array<Klass*>* super_ifs = ik->transitive_interfaces();
869    int num_super_ifs = super_ifs->length();
870    for (int j = 0; j < num_super_ifs; j++) {
871      InstanceKlass *sik = InstanceKlass::cast(super_ifs->at(j));
872      add_new_mirandas_to_lists(new_mirandas, all_mirandas,
873                                sik->methods(), class_methods,
874                                default_methods, super);
875    }
876  }
877}
878
879// Discover miranda methods ("miranda" = "interface abstract, no binding"),
880// and append them into the vtable starting at index initialized,
881// return the new value of initialized.
882// Miranda methods use vtable entries, but do not get assigned a vtable_index
883// The vtable_index is discovered by searching from the end of the vtable
884int klassVtable::fill_in_mirandas(int initialized) {
885  GrowableArray<Method*> mirandas(20);
886  get_mirandas(&mirandas, NULL, ik()->super(), ik()->methods(),
887               ik()->default_methods(), ik()->local_interfaces());
888  for (int i = 0; i < mirandas.length(); i++) {
889    if (log_develop_is_enabled(Trace, vtables)) {
890      Method* meth = mirandas.at(i);
891      ResourceMark rm(Thread::current());
892      LogTarget(Trace, vtables) lt;
893      LogStream ls(lt);
894      if (meth != NULL) {
895        char* sig = meth->name_and_sig_as_C_string();
896        ls.print("fill in mirandas with %s index %d, flags: ",
897                     sig, initialized);
898        meth->print_linkage_flags(&ls);
899        ls.cr();
900      }
901    }
902    put_method_at(mirandas.at(i), initialized);
903    ++initialized;
904  }
905  return initialized;
906}
907
908// Copy this class's vtable to the vtable beginning at start.
909// Used to copy superclass vtable to prefix of subclass's vtable.
910void klassVtable::copy_vtable_to(vtableEntry* start) {
911  Copy::disjoint_words((HeapWord*)table(), (HeapWord*)start, _length * vtableEntry::size());
912}
913
914#if INCLUDE_JVMTI
915bool klassVtable::adjust_default_method(int vtable_index, Method* old_method, Method* new_method) {
916  // If old_method is default, find this vtable index in default_vtable_indices
917  // and replace that method in the _default_methods list
918  bool updated = false;
919
920  Array<Method*>* default_methods = ik()->default_methods();
921  if (default_methods != NULL) {
922    int len = default_methods->length();
923    for (int idx = 0; idx < len; idx++) {
924      if (vtable_index == ik()->default_vtable_indices()->at(idx)) {
925        if (default_methods->at(idx) == old_method) {
926          default_methods->at_put(idx, new_method);
927          updated = true;
928        }
929        break;
930      }
931    }
932  }
933  return updated;
934}
935
936// search the vtable for uses of either obsolete or EMCP methods
937void klassVtable::adjust_method_entries(InstanceKlass* holder, bool * trace_name_printed) {
938  int prn_enabled = 0;
939  for (int index = 0; index < length(); index++) {
940    Method* old_method = unchecked_method_at(index);
941    if (old_method == NULL || old_method->method_holder() != holder || !old_method->is_old()) {
942      continue; // skip uninteresting entries
943    }
944    assert(!old_method->is_deleted(), "vtable methods may not be deleted");
945
946    Method* new_method = holder->method_with_idnum(old_method->orig_method_idnum());
947
948    assert(new_method != NULL, "method_with_idnum() should not be NULL");
949    assert(old_method != new_method, "sanity check");
950
951    put_method_at(new_method, index);
952    // For default methods, need to update the _default_methods array
953    // which can only have one method entry for a given signature
954    bool updated_default = false;
955    if (old_method->is_default_method()) {
956      updated_default = adjust_default_method(index, old_method, new_method);
957    }
958
959    if (log_is_enabled(Info, redefine, class, update)) {
960      ResourceMark rm;
961      if (!(*trace_name_printed)) {
962        log_info(redefine, class, update)
963          ("adjust: klassname=%s for methods from name=%s",
964           _klass->external_name(), old_method->method_holder()->external_name());
965        *trace_name_printed = true;
966      }
967      log_debug(redefine, class, update, vtables)
968        ("vtable method update: %s(%s), updated default = %s",
969         new_method->name()->as_C_string(), new_method->signature()->as_C_string(), updated_default ? "true" : "false");
970    }
971  }
972}
973
974// a vtable should never contain old or obsolete methods
975bool klassVtable::check_no_old_or_obsolete_entries() {
976  for (int i = 0; i < length(); i++) {
977    Method* m = unchecked_method_at(i);
978    if (m != NULL &&
979        (NOT_PRODUCT(!m->is_valid() ||) m->is_old() || m->is_obsolete())) {
980      return false;
981    }
982  }
983  return true;
984}
985
986void klassVtable::dump_vtable() {
987  tty->print_cr("vtable dump --");
988  for (int i = 0; i < length(); i++) {
989    Method* m = unchecked_method_at(i);
990    if (m != NULL) {
991      tty->print("      (%5d)  ", i);
992      m->access_flags().print_on(tty);
993      if (m->is_default_method()) {
994        tty->print("default ");
995      }
996      if (m->is_overpass()) {
997        tty->print("overpass");
998      }
999      tty->print(" --  ");
1000      m->print_name(tty);
1001      tty->cr();
1002    }
1003  }
1004}
1005#endif // INCLUDE_JVMTI
1006
1007// CDS/RedefineClasses support - clear vtables so they can be reinitialized
1008void klassVtable::clear_vtable() {
1009  for (int i = 0; i < _length; i++) table()[i].clear();
1010}
1011
1012bool klassVtable::is_initialized() {
1013  return _length == 0 || table()[0].method() != NULL;
1014}
1015
1016//-----------------------------------------------------------------------------------------
1017// Itable code
1018
1019// Initialize a itableMethodEntry
1020void itableMethodEntry::initialize(Method* m) {
1021  if (m == NULL) return;
1022
1023#ifdef ASSERT
1024  if (MetaspaceShared::is_in_shared_space((void*)&_method) &&
1025     !MetaspaceShared::remapped_readwrite()) {
1026    // At runtime initialize_itable is rerun as part of link_class_impl()
1027    // for a shared class loaded by the non-boot loader.
1028    // The dumptime itable method entry should be the same as the runtime entry.
1029    assert(_method == m, "sanity");
1030  }
1031#endif
1032  _method = m;
1033}
1034
1035klassItable::klassItable(InstanceKlass* klass) {
1036  _klass = klass;
1037
1038  if (klass->itable_length() > 0) {
1039    itableOffsetEntry* offset_entry = (itableOffsetEntry*)klass->start_of_itable();
1040    if (offset_entry  != NULL && offset_entry->interface_klass() != NULL) { // Check that itable is initialized
1041      // First offset entry points to the first method_entry
1042      intptr_t* method_entry  = (intptr_t *)(((address)klass) + offset_entry->offset());
1043      intptr_t* end         = klass->end_of_itable();
1044
1045      _table_offset      = (intptr_t*)offset_entry - (intptr_t*)klass;
1046      _size_offset_table = (method_entry - ((intptr_t*)offset_entry)) / itableOffsetEntry::size();
1047      _size_method_table = (end - method_entry)                  / itableMethodEntry::size();
1048      assert(_table_offset >= 0 && _size_offset_table >= 0 && _size_method_table >= 0, "wrong computation");
1049      return;
1050    }
1051  }
1052
1053  // The length of the itable was either zero, or it has not yet been initialized.
1054  _table_offset      = 0;
1055  _size_offset_table = 0;
1056  _size_method_table = 0;
1057}
1058
1059static int initialize_count = 0;
1060
1061// Initialization
1062void klassItable::initialize_itable(bool checkconstraints, TRAPS) {
1063  if (_klass->is_interface()) {
1064    // This needs to go after vtable indices are assigned but
1065    // before implementors need to know the number of itable indices.
1066    assign_itable_indices_for_interface(_klass);
1067  }
1068
1069  // Cannot be setup doing bootstrapping, interfaces don't have
1070  // itables, and klass with only ones entry have empty itables
1071  if (Universe::is_bootstrapping() ||
1072      _klass->is_interface() ||
1073      _klass->itable_length() == itableOffsetEntry::size()) return;
1074
1075  // There's alway an extra itable entry so we can null-terminate it.
1076  guarantee(size_offset_table() >= 1, "too small");
1077  int num_interfaces = size_offset_table() - 1;
1078  if (num_interfaces > 0) {
1079    log_develop_debug(itables)("%3d: Initializing itables for %s", ++initialize_count,
1080                       _klass->name()->as_C_string());
1081
1082
1083    // Iterate through all interfaces
1084    int i;
1085    for(i = 0; i < num_interfaces; i++) {
1086      itableOffsetEntry* ioe = offset_entry(i);
1087      HandleMark hm(THREAD);
1088      Klass* interf = ioe->interface_klass();
1089      assert(interf != NULL && ioe->offset() != 0, "bad offset entry in itable");
1090      initialize_itable_for_interface(ioe->offset(), interf, checkconstraints, CHECK);
1091    }
1092
1093  }
1094  // Check that the last entry is empty
1095  itableOffsetEntry* ioe = offset_entry(size_offset_table() - 1);
1096  guarantee(ioe->interface_klass() == NULL && ioe->offset() == 0, "terminator entry missing");
1097}
1098
1099
1100inline bool interface_method_needs_itable_index(Method* m) {
1101  if (m->is_static())           return false;   // e.g., Stream.empty
1102  if (m->is_initializer())      return false;   // <init> or <clinit>
1103  if (m->is_private())          return false;   // requires invokeSpecial
1104  // If an interface redeclares a method from java.lang.Object,
1105  // it should already have a vtable index, don't touch it.
1106  // e.g., CharSequence.toString (from initialize_vtable)
1107  // if (m->has_vtable_index())  return false; // NO!
1108  return true;
1109}
1110
1111int klassItable::assign_itable_indices_for_interface(Klass* klass) {
1112  // an interface does not have an itable, but its methods need to be numbered
1113  log_develop_debug(itables)("%3d: Initializing itable indices for interface %s",
1114                             ++initialize_count, klass->name()->as_C_string());
1115  Array<Method*>* methods = InstanceKlass::cast(klass)->methods();
1116  int nof_methods = methods->length();
1117  int ime_num = 0;
1118  for (int i = 0; i < nof_methods; i++) {
1119    Method* m = methods->at(i);
1120    if (interface_method_needs_itable_index(m)) {
1121      assert(!m->is_final_method(), "no final interface methods");
1122      // If m is already assigned a vtable index, do not disturb it.
1123      if (log_develop_is_enabled(Trace, itables)) {
1124        ResourceMark rm;
1125        LogTarget(Trace, itables) lt;
1126        LogStream ls(lt);
1127        assert(m != NULL, "methods can never be null");
1128        const char* sig = m->name_and_sig_as_C_string();
1129        if (m->has_vtable_index()) {
1130          ls.print("vtable index %d for method: %s, flags: ", m->vtable_index(), sig);
1131        } else {
1132          ls.print("itable index %d for method: %s, flags: ", ime_num, sig);
1133        }
1134        m->print_linkage_flags(&ls);
1135        ls.cr();
1136      }
1137      if (!m->has_vtable_index()) {
1138        // A shared method could have an initialized itable_index that
1139        // is < 0.
1140        assert(m->vtable_index() == Method::pending_itable_index ||
1141               m->is_shared(),
1142               "set by initialize_vtable");
1143        m->set_itable_index(ime_num);
1144        // Progress to next itable entry
1145        ime_num++;
1146      }
1147    }
1148  }
1149  assert(ime_num == method_count_for_interface(klass), "proper sizing");
1150  return ime_num;
1151}
1152
1153int klassItable::method_count_for_interface(Klass* interf) {
1154  assert(interf->is_instance_klass(), "must be");
1155  assert(interf->is_interface(), "must be");
1156  Array<Method*>* methods = InstanceKlass::cast(interf)->methods();
1157  int nof_methods = methods->length();
1158  int length = 0;
1159  while (nof_methods > 0) {
1160    Method* m = methods->at(nof_methods-1);
1161    if (m->has_itable_index()) {
1162      length = m->itable_index() + 1;
1163      break;
1164    }
1165    nof_methods -= 1;
1166  }
1167#ifdef ASSERT
1168  int nof_methods_copy = nof_methods;
1169  while (nof_methods_copy > 0) {
1170    Method* mm = methods->at(--nof_methods_copy);
1171    assert(!mm->has_itable_index() || mm->itable_index() < length, "");
1172  }
1173#endif //ASSERT
1174  // return the rightmost itable index, plus one; or 0 if no methods have
1175  // itable indices
1176  return length;
1177}
1178
1179
1180void klassItable::initialize_itable_for_interface(int method_table_offset, Klass* interf, bool checkconstraints, TRAPS) {
1181  Array<Method*>* methods = InstanceKlass::cast(interf)->methods();
1182  int nof_methods = methods->length();
1183  HandleMark hm;
1184  assert(nof_methods > 0, "at least one method must exist for interface to be in vtable");
1185  Handle interface_loader (THREAD, InstanceKlass::cast(interf)->class_loader());
1186
1187  int ime_count = method_count_for_interface(interf);
1188  for (int i = 0; i < nof_methods; i++) {
1189    Method* m = methods->at(i);
1190    methodHandle target;
1191    if (m->has_itable_index()) {
1192      // This search must match the runtime resolution, i.e. selection search for invokeinterface
1193      // to correctly enforce loader constraints for interface method inheritance
1194      target = LinkResolver::lookup_instance_method_in_klasses(_klass, m->name(), m->signature(), CHECK);
1195    }
1196    if (target == NULL || !target->is_public() || target->is_abstract()) {
1197      // Entry does not resolve. Leave it empty for AbstractMethodError.
1198        if (!(target == NULL) && !target->is_public()) {
1199          // Stuff an IllegalAccessError throwing method in there instead.
1200          itableOffsetEntry::method_entry(_klass, method_table_offset)[m->itable_index()].
1201              initialize(Universe::throw_illegal_access_error());
1202        }
1203    } else {
1204      // Entry did resolve, check loader constraints before initializing
1205      // if checkconstraints requested
1206      if (checkconstraints) {
1207        Handle method_holder_loader (THREAD, target->method_holder()->class_loader());
1208        if (method_holder_loader() != interface_loader()) {
1209          ResourceMark rm(THREAD);
1210          Symbol* failed_type_symbol =
1211            SystemDictionary::check_signature_loaders(m->signature(),
1212                                                      method_holder_loader,
1213                                                      interface_loader,
1214                                                      true, CHECK);
1215          if (failed_type_symbol != NULL) {
1216            const char* msg = "loader constraint violation in interface "
1217              "itable initialization: when resolving method \"%s\" the class"
1218              " loader (instance of %s) of the current class, %s, "
1219              "and the class loader (instance of %s) for interface "
1220              "%s have different Class objects for the type %s "
1221              "used in the signature";
1222            char* sig = target()->name_and_sig_as_C_string();
1223            const char* loader1 = SystemDictionary::loader_name(method_holder_loader());
1224            char* current = _klass->name()->as_C_string();
1225            const char* loader2 = SystemDictionary::loader_name(interface_loader());
1226            char* iface = InstanceKlass::cast(interf)->name()->as_C_string();
1227            char* failed_type_name = failed_type_symbol->as_C_string();
1228            size_t buflen = strlen(msg) + strlen(sig) + strlen(loader1) +
1229              strlen(current) + strlen(loader2) + strlen(iface) +
1230              strlen(failed_type_name);
1231            char* buf = NEW_RESOURCE_ARRAY_IN_THREAD(THREAD, char, buflen);
1232            jio_snprintf(buf, buflen, msg, sig, loader1, current, loader2,
1233                         iface, failed_type_name);
1234            THROW_MSG(vmSymbols::java_lang_LinkageError(), buf);
1235          }
1236        }
1237      }
1238
1239      // ime may have moved during GC so recalculate address
1240      int ime_num = m->itable_index();
1241      assert(ime_num < ime_count, "oob");
1242      itableOffsetEntry::method_entry(_klass, method_table_offset)[ime_num].initialize(target());
1243      if (log_develop_is_enabled(Trace, itables)) {
1244        ResourceMark rm(THREAD);
1245        if (target() != NULL) {
1246          LogTarget(Trace, itables) lt;
1247          LogStream ls(lt);
1248          char* sig = target()->name_and_sig_as_C_string();
1249          ls.print("interface: %s, ime_num: %d, target: %s, method_holder: %s ",
1250                       interf->internal_name(), ime_num, sig,
1251                       target()->method_holder()->internal_name());
1252          ls.print("target_method flags: ");
1253          target()->print_linkage_flags(&ls);
1254          ls.cr();
1255        }
1256      }
1257    }
1258  }
1259}
1260
1261#if INCLUDE_JVMTI
1262// search the itable for uses of either obsolete or EMCP methods
1263void klassItable::adjust_method_entries(InstanceKlass* holder, bool * trace_name_printed) {
1264
1265  itableMethodEntry* ime = method_entry(0);
1266  for (int i = 0; i < _size_method_table; i++, ime++) {
1267    Method* old_method = ime->method();
1268    if (old_method == NULL || old_method->method_holder() != holder || !old_method->is_old()) {
1269      continue; // skip uninteresting entries
1270    }
1271    assert(!old_method->is_deleted(), "itable methods may not be deleted");
1272
1273    Method* new_method = holder->method_with_idnum(old_method->orig_method_idnum());
1274
1275    assert(new_method != NULL, "method_with_idnum() should not be NULL");
1276    assert(old_method != new_method, "sanity check");
1277
1278    ime->initialize(new_method);
1279
1280    if (log_is_enabled(Info, redefine, class, update)) {
1281      ResourceMark rm;
1282      if (!(*trace_name_printed)) {
1283        log_info(redefine, class, update)("adjust: name=%s", old_method->method_holder()->external_name());
1284        *trace_name_printed = true;
1285      }
1286      log_trace(redefine, class, update, itables)
1287        ("itable method update: %s(%s)", new_method->name()->as_C_string(), new_method->signature()->as_C_string());
1288    }
1289  }
1290}
1291
1292// an itable should never contain old or obsolete methods
1293bool klassItable::check_no_old_or_obsolete_entries() {
1294  itableMethodEntry* ime = method_entry(0);
1295  for (int i = 0; i < _size_method_table; i++) {
1296    Method* m = ime->method();
1297    if (m != NULL &&
1298        (NOT_PRODUCT(!m->is_valid() ||) m->is_old() || m->is_obsolete())) {
1299      return false;
1300    }
1301    ime++;
1302  }
1303  return true;
1304}
1305
1306void klassItable::dump_itable() {
1307  itableMethodEntry* ime = method_entry(0);
1308  tty->print_cr("itable dump --");
1309  for (int i = 0; i < _size_method_table; i++) {
1310    Method* m = ime->method();
1311    if (m != NULL) {
1312      tty->print("      (%5d)  ", i);
1313      m->access_flags().print_on(tty);
1314      if (m->is_default_method()) {
1315        tty->print("default ");
1316      }
1317      tty->print(" --  ");
1318      m->print_name(tty);
1319      tty->cr();
1320    }
1321    ime++;
1322  }
1323}
1324#endif // INCLUDE_JVMTI
1325
1326// Setup
1327class InterfaceVisiterClosure : public StackObj {
1328 public:
1329  virtual void doit(Klass* intf, int method_count) = 0;
1330};
1331
1332// Visit all interfaces with at least one itable method
1333void visit_all_interfaces(Array<Klass*>* transitive_intf, InterfaceVisiterClosure *blk) {
1334  // Handle array argument
1335  for(int i = 0; i < transitive_intf->length(); i++) {
1336    Klass* intf = transitive_intf->at(i);
1337    assert(intf->is_interface(), "sanity check");
1338
1339    // Find no. of itable methods
1340    int method_count = 0;
1341    // method_count = klassItable::method_count_for_interface(intf);
1342    Array<Method*>* methods = InstanceKlass::cast(intf)->methods();
1343    if (methods->length() > 0) {
1344      for (int i = methods->length(); --i >= 0; ) {
1345        if (interface_method_needs_itable_index(methods->at(i))) {
1346          method_count++;
1347        }
1348      }
1349    }
1350
1351    // Only count interfaces with at least one method
1352    if (method_count > 0) {
1353      blk->doit(intf, method_count);
1354    }
1355  }
1356}
1357
1358class CountInterfacesClosure : public InterfaceVisiterClosure {
1359 private:
1360  int _nof_methods;
1361  int _nof_interfaces;
1362 public:
1363   CountInterfacesClosure() { _nof_methods = 0; _nof_interfaces = 0; }
1364
1365   int nof_methods() const    { return _nof_methods; }
1366   int nof_interfaces() const { return _nof_interfaces; }
1367
1368   void doit(Klass* intf, int method_count) { _nof_methods += method_count; _nof_interfaces++; }
1369};
1370
1371class SetupItableClosure : public InterfaceVisiterClosure  {
1372 private:
1373  itableOffsetEntry* _offset_entry;
1374  itableMethodEntry* _method_entry;
1375  address            _klass_begin;
1376 public:
1377  SetupItableClosure(address klass_begin, itableOffsetEntry* offset_entry, itableMethodEntry* method_entry) {
1378    _klass_begin  = klass_begin;
1379    _offset_entry = offset_entry;
1380    _method_entry = method_entry;
1381  }
1382
1383  itableMethodEntry* method_entry() const { return _method_entry; }
1384
1385  void doit(Klass* intf, int method_count) {
1386    int offset = ((address)_method_entry) - _klass_begin;
1387    _offset_entry->initialize(intf, offset);
1388    _offset_entry++;
1389    _method_entry += method_count;
1390  }
1391};
1392
1393int klassItable::compute_itable_size(Array<Klass*>* transitive_interfaces) {
1394  // Count no of interfaces and total number of interface methods
1395  CountInterfacesClosure cic;
1396  visit_all_interfaces(transitive_interfaces, &cic);
1397
1398  // There's alway an extra itable entry so we can null-terminate it.
1399  int itable_size = calc_itable_size(cic.nof_interfaces() + 1, cic.nof_methods());
1400
1401  // Statistics
1402  update_stats(itable_size * wordSize);
1403
1404  return itable_size;
1405}
1406
1407
1408// Fill out offset table and interface klasses into the itable space
1409void klassItable::setup_itable_offset_table(InstanceKlass* klass) {
1410  if (klass->itable_length() == 0) return;
1411  assert(!klass->is_interface(), "Should have zero length itable");
1412
1413  // Count no of interfaces and total number of interface methods
1414  CountInterfacesClosure cic;
1415  visit_all_interfaces(klass->transitive_interfaces(), &cic);
1416  int nof_methods    = cic.nof_methods();
1417  int nof_interfaces = cic.nof_interfaces();
1418
1419  // Add one extra entry so we can null-terminate the table
1420  nof_interfaces++;
1421
1422  assert(compute_itable_size(klass->transitive_interfaces()) ==
1423         calc_itable_size(nof_interfaces, nof_methods),
1424         "mismatch calculation of itable size");
1425
1426  // Fill-out offset table
1427  itableOffsetEntry* ioe = (itableOffsetEntry*)klass->start_of_itable();
1428  itableMethodEntry* ime = (itableMethodEntry*)(ioe + nof_interfaces);
1429  intptr_t* end               = klass->end_of_itable();
1430  assert((oop*)(ime + nof_methods) <= (oop*)klass->start_of_nonstatic_oop_maps(), "wrong offset calculation (1)");
1431  assert((oop*)(end) == (oop*)(ime + nof_methods),                      "wrong offset calculation (2)");
1432
1433  // Visit all interfaces and initialize itable offset table
1434  SetupItableClosure sic((address)klass, ioe, ime);
1435  visit_all_interfaces(klass->transitive_interfaces(), &sic);
1436
1437#ifdef ASSERT
1438  ime  = sic.method_entry();
1439  oop* v = (oop*) klass->end_of_itable();
1440  assert( (oop*)(ime) == v, "wrong offset calculation (2)");
1441#endif
1442}
1443
1444
1445// inverse to itable_index
1446Method* klassItable::method_for_itable_index(Klass* intf, int itable_index) {
1447  assert(InstanceKlass::cast(intf)->is_interface(), "sanity check");
1448  assert(intf->verify_itable_index(itable_index), "");
1449  Array<Method*>* methods = InstanceKlass::cast(intf)->methods();
1450
1451  if (itable_index < 0 || itable_index >= method_count_for_interface(intf))
1452    return NULL;                // help caller defend against bad indices
1453
1454  int index = itable_index;
1455  Method* m = methods->at(index);
1456  int index2 = -1;
1457  while (!m->has_itable_index() ||
1458         (index2 = m->itable_index()) != itable_index) {
1459    assert(index2 < itable_index, "monotonic");
1460    if (++index == methods->length())
1461      return NULL;
1462    m = methods->at(index);
1463  }
1464  assert(m->itable_index() == itable_index, "correct inverse");
1465
1466  return m;
1467}
1468
1469void klassVtable::verify(outputStream* st, bool forced) {
1470  // make sure table is initialized
1471  if (!Universe::is_fully_initialized()) return;
1472#ifndef PRODUCT
1473  // avoid redundant verifies
1474  if (!forced && _verify_count == Universe::verify_count()) return;
1475  _verify_count = Universe::verify_count();
1476#endif
1477  oop* end_of_obj = (oop*)_klass + _klass->size();
1478  oop* end_of_vtable = (oop *)&table()[_length];
1479  if (end_of_vtable > end_of_obj) {
1480    fatal("klass %s: klass object too short (vtable extends beyond end)",
1481          _klass->internal_name());
1482  }
1483
1484  for (int i = 0; i < _length; i++) table()[i].verify(this, st);
1485  // verify consistency with superKlass vtable
1486  Klass* super = _klass->super();
1487  if (super != NULL) {
1488    InstanceKlass* sk = InstanceKlass::cast(super);
1489    klassVtable vt = sk->vtable();
1490    for (int i = 0; i < vt.length(); i++) {
1491      verify_against(st, &vt, i);
1492    }
1493  }
1494}
1495
1496void klassVtable::verify_against(outputStream* st, klassVtable* vt, int index) {
1497  vtableEntry* vte = &vt->table()[index];
1498  if (vte->method()->name()      != table()[index].method()->name() ||
1499      vte->method()->signature() != table()[index].method()->signature()) {
1500    fatal("mismatched name/signature of vtable entries");
1501  }
1502}
1503
1504#ifndef PRODUCT
1505void klassVtable::print() {
1506  ResourceMark rm;
1507  tty->print("klassVtable for klass %s (length %d):\n", _klass->internal_name(), length());
1508  for (int i = 0; i < length(); i++) {
1509    table()[i].print();
1510    tty->cr();
1511  }
1512}
1513#endif
1514
1515void vtableEntry::verify(klassVtable* vt, outputStream* st) {
1516  NOT_PRODUCT(FlagSetting fs(IgnoreLockingAssertions, true));
1517  Klass* vtklass = vt->klass();
1518  if (vtklass->is_instance_klass() &&
1519     (InstanceKlass::cast(vtklass)->major_version() >= klassVtable::VTABLE_TRANSITIVE_OVERRIDE_VERSION)) {
1520    assert(method() != NULL, "must have set method");
1521  }
1522  if (method() != NULL) {
1523    method()->verify();
1524    // we sub_type, because it could be a miranda method
1525    if (!vtklass->is_subtype_of(method()->method_holder())) {
1526#ifndef PRODUCT
1527      print();
1528#endif
1529      fatal("vtableEntry " PTR_FORMAT ": method is from subclass", p2i(this));
1530    }
1531 }
1532}
1533
1534#ifndef PRODUCT
1535
1536void vtableEntry::print() {
1537  ResourceMark rm;
1538  tty->print("vtableEntry %s: ", method()->name()->as_C_string());
1539  if (Verbose) {
1540    tty->print("m " PTR_FORMAT " ", p2i(method()));
1541  }
1542}
1543
1544class VtableStats : AllStatic {
1545 public:
1546  static int no_klasses;                // # classes with vtables
1547  static int no_array_klasses;          // # array classes
1548  static int no_instance_klasses;       // # instanceKlasses
1549  static int sum_of_vtable_len;         // total # of vtable entries
1550  static int sum_of_array_vtable_len;   // total # of vtable entries in array klasses only
1551  static int fixed;                     // total fixed overhead in bytes
1552  static int filler;                    // overhead caused by filler bytes
1553  static int entries;                   // total bytes consumed by vtable entries
1554  static int array_entries;             // total bytes consumed by array vtable entries
1555
1556  static void do_class(Klass* k) {
1557    Klass* kl = k;
1558    klassVtable vt = kl->vtable();
1559    no_klasses++;
1560    if (kl->is_instance_klass()) {
1561      no_instance_klasses++;
1562      kl->array_klasses_do(do_class);
1563    }
1564    if (kl->is_array_klass()) {
1565      no_array_klasses++;
1566      sum_of_array_vtable_len += vt.length();
1567    }
1568    sum_of_vtable_len += vt.length();
1569  }
1570
1571  static void compute() {
1572    ClassLoaderDataGraph::classes_do(do_class);
1573    fixed  = no_klasses * oopSize;      // vtable length
1574    // filler size is a conservative approximation
1575    filler = oopSize * (no_klasses - no_instance_klasses) * (sizeof(InstanceKlass) - sizeof(ArrayKlass) - 1);
1576    entries = sizeof(vtableEntry) * sum_of_vtable_len;
1577    array_entries = sizeof(vtableEntry) * sum_of_array_vtable_len;
1578  }
1579};
1580
1581int VtableStats::no_klasses = 0;
1582int VtableStats::no_array_klasses = 0;
1583int VtableStats::no_instance_klasses = 0;
1584int VtableStats::sum_of_vtable_len = 0;
1585int VtableStats::sum_of_array_vtable_len = 0;
1586int VtableStats::fixed = 0;
1587int VtableStats::filler = 0;
1588int VtableStats::entries = 0;
1589int VtableStats::array_entries = 0;
1590
1591void klassVtable::print_statistics() {
1592  ResourceMark rm;
1593  HandleMark hm;
1594  VtableStats::compute();
1595  tty->print_cr("vtable statistics:");
1596  tty->print_cr("%6d classes (%d instance, %d array)", VtableStats::no_klasses, VtableStats::no_instance_klasses, VtableStats::no_array_klasses);
1597  int total = VtableStats::fixed + VtableStats::filler + VtableStats::entries;
1598  tty->print_cr("%6d bytes fixed overhead (refs + vtable object header)", VtableStats::fixed);
1599  tty->print_cr("%6d bytes filler overhead", VtableStats::filler);
1600  tty->print_cr("%6d bytes for vtable entries (%d for arrays)", VtableStats::entries, VtableStats::array_entries);
1601  tty->print_cr("%6d bytes total", total);
1602}
1603
1604int  klassItable::_total_classes;   // Total no. of classes with itables
1605long klassItable::_total_size;      // Total no. of bytes used for itables
1606
1607void klassItable::print_statistics() {
1608 tty->print_cr("itable statistics:");
1609 tty->print_cr("%6d classes with itables", _total_classes);
1610 tty->print_cr("%6lu K uses for itables (average by class: %ld bytes)", _total_size / K, _total_size / _total_classes);
1611}
1612
1613#endif // PRODUCT
1614