src/share/vm/classfile/systemDictionary.cpp

Sat, 01 Sep 2012 13:25:18 -0400

author
coleenp
date
Sat, 01 Sep 2012 13:25:18 -0400
changeset 4037
da91efe96a93
parent 3969
1d7922586cf6
child 4045
fa6e618671d7
permissions
-rw-r--r--

6964458: Reimplement class meta-data storage to use native memory
Summary: Remove PermGen, allocate meta-data in metaspace linked to class loaders, rewrite GC walking, rewrite and rename metadata to be C++ classes
Reviewed-by: jmasa, stefank, never, coleenp, kvn, brutisso, mgerdin, dholmes, jrose, twisti, roland
Contributed-by: jmasa <jon.masamitsu@oracle.com>, stefank <stefan.karlsson@oracle.com>, mgerdin <mikael.gerdin@oracle.com>, never <tom.rodriguez@oracle.com>

     1 /*
     2  * Copyright (c) 1997, 2012, 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  */
    25 #include "precompiled.hpp"
    26 #include "classfile/classLoaderData.inline.hpp"
    27 #include "classfile/dictionary.hpp"
    28 #include "classfile/javaClasses.hpp"
    29 #include "classfile/loaderConstraints.hpp"
    30 #include "classfile/placeholders.hpp"
    31 #include "classfile/resolutionErrors.hpp"
    32 #include "classfile/systemDictionary.hpp"
    33 #include "classfile/vmSymbols.hpp"
    34 #include "compiler/compileBroker.hpp"
    35 #include "interpreter/bytecodeStream.hpp"
    36 #include "interpreter/interpreter.hpp"
    37 #include "memory/gcLocker.hpp"
    38 #include "memory/oopFactory.hpp"
    39 #include "oops/instanceKlass.hpp"
    40 #include "oops/instanceRefKlass.hpp"
    41 #include "oops/klass.inline.hpp"
    42 #include "oops/methodData.hpp"
    43 #include "oops/objArrayKlass.hpp"
    44 #include "oops/oop.inline.hpp"
    45 #include "oops/oop.inline2.hpp"
    46 #include "oops/typeArrayKlass.hpp"
    47 #include "prims/jvmtiEnvBase.hpp"
    48 #include "prims/methodHandles.hpp"
    49 #include "runtime/biasedLocking.hpp"
    50 #include "runtime/fieldType.hpp"
    51 #include "runtime/handles.inline.hpp"
    52 #include "runtime/java.hpp"
    53 #include "runtime/javaCalls.hpp"
    54 #include "runtime/mutexLocker.hpp"
    55 #include "runtime/signature.hpp"
    56 #include "services/classLoadingService.hpp"
    57 #include "services/threadService.hpp"
    60 Dictionary*            SystemDictionary::_dictionary          = NULL;
    61 PlaceholderTable*      SystemDictionary::_placeholders        = NULL;
    62 Dictionary*            SystemDictionary::_shared_dictionary   = NULL;
    63 LoaderConstraintTable* SystemDictionary::_loader_constraints  = NULL;
    64 ResolutionErrorTable*  SystemDictionary::_resolution_errors   = NULL;
    65 SymbolPropertyTable*   SystemDictionary::_invoke_method_table = NULL;
    68 int         SystemDictionary::_number_of_modifications = 0;
    69 int         SystemDictionary::_sdgeneration               = 0;
    70 const int   SystemDictionary::_primelist[_prime_array_size] = {1009,2017,4049,5051,10103,
    71               20201,40423,99991};
    73 oop         SystemDictionary::_system_loader_lock_obj     =  NULL;
    75 Klass*      SystemDictionary::_well_known_klasses[SystemDictionary::WKID_LIMIT]
    76                                                           =  { NULL /*, NULL...*/ };
    78 Klass*      SystemDictionary::_box_klasses[T_VOID+1]      =  { NULL /*, NULL...*/ };
    80 oop         SystemDictionary::_java_system_loader         =  NULL;
    82 bool        SystemDictionary::_has_loadClassInternal      =  false;
    83 bool        SystemDictionary::_has_checkPackageAccess     =  false;
    85 // lazily initialized klass variables
    86 Klass* volatile SystemDictionary::_abstract_ownable_synchronizer_klass = NULL;
    89 // ----------------------------------------------------------------------------
    90 // Java-level SystemLoader
    92 oop SystemDictionary::java_system_loader() {
    93   return _java_system_loader;
    94 }
    96 void SystemDictionary::compute_java_system_loader(TRAPS) {
    97   KlassHandle system_klass(THREAD, WK_KLASS(ClassLoader_klass));
    98   JavaValue result(T_OBJECT);
    99   JavaCalls::call_static(&result,
   100                          KlassHandle(THREAD, WK_KLASS(ClassLoader_klass)),
   101                          vmSymbols::getSystemClassLoader_name(),
   102                          vmSymbols::void_classloader_signature(),
   103                          CHECK);
   105   _java_system_loader = (oop)result.get_jobject();
   106 }
   109 ClassLoaderData* SystemDictionary::register_loader(Handle class_loader) {
   110   if (class_loader() == NULL) return ClassLoaderData::the_null_class_loader_data();
   111   return ClassLoaderDataGraph::find_or_create(class_loader);
   112 }
   114 // ----------------------------------------------------------------------------
   115 // debugging
   117 #ifdef ASSERT
   119 // return true if class_name contains no '.' (internal format is '/')
   120 bool SystemDictionary::is_internal_format(Symbol* class_name) {
   121   if (class_name != NULL) {
   122     ResourceMark rm;
   123     char* name = class_name->as_C_string();
   124     return strchr(name, '.') == NULL;
   125   } else {
   126     return true;
   127   }
   128 }
   130 #endif
   132 // ----------------------------------------------------------------------------
   133 // Parallel class loading check
   135 bool SystemDictionary::is_parallelCapable(Handle class_loader) {
   136   if (UnsyncloadClass || class_loader.is_null()) return true;
   137   if (AlwaysLockClassLoader) return false;
   138   return java_lang_ClassLoader::parallelCapable(class_loader());
   139 }
   140 // ----------------------------------------------------------------------------
   141 // ParallelDefineClass flag does not apply to bootclass loader
   142 bool SystemDictionary::is_parallelDefine(Handle class_loader) {
   143    if (class_loader.is_null()) return false;
   144    if (AllowParallelDefineClass && java_lang_ClassLoader::parallelCapable(class_loader())) {
   145      return true;
   146    }
   147    return false;
   148 }
   149 // ----------------------------------------------------------------------------
   150 // Resolving of classes
   152 // Forwards to resolve_or_null
   154 Klass* SystemDictionary::resolve_or_fail(Symbol* class_name, Handle class_loader, Handle protection_domain, bool throw_error, TRAPS) {
   155   Klass* klass = resolve_or_null(class_name, class_loader, protection_domain, THREAD);
   156   if (HAS_PENDING_EXCEPTION || klass == NULL) {
   157     KlassHandle k_h(THREAD, klass);
   158     // can return a null klass
   159     klass = handle_resolution_exception(class_name, class_loader, protection_domain, throw_error, k_h, THREAD);
   160   }
   161   return klass;
   162 }
   164 Klass* SystemDictionary::handle_resolution_exception(Symbol* class_name, Handle class_loader, Handle protection_domain, bool throw_error, KlassHandle klass_h, TRAPS) {
   165   if (HAS_PENDING_EXCEPTION) {
   166     // If we have a pending exception we forward it to the caller, unless throw_error is true,
   167     // in which case we have to check whether the pending exception is a ClassNotFoundException,
   168     // and if so convert it to a NoClassDefFoundError
   169     // And chain the original ClassNotFoundException
   170     if (throw_error && PENDING_EXCEPTION->is_a(SystemDictionary::ClassNotFoundException_klass())) {
   171       ResourceMark rm(THREAD);
   172       assert(klass_h() == NULL, "Should not have result with exception pending");
   173       Handle e(THREAD, PENDING_EXCEPTION);
   174       CLEAR_PENDING_EXCEPTION;
   175       THROW_MSG_CAUSE_0(vmSymbols::java_lang_NoClassDefFoundError(), class_name->as_C_string(), e);
   176     } else {
   177       return NULL;
   178     }
   179   }
   180   // Class not found, throw appropriate error or exception depending on value of throw_error
   181   if (klass_h() == NULL) {
   182     ResourceMark rm(THREAD);
   183     if (throw_error) {
   184       THROW_MSG_0(vmSymbols::java_lang_NoClassDefFoundError(), class_name->as_C_string());
   185     } else {
   186       THROW_MSG_0(vmSymbols::java_lang_ClassNotFoundException(), class_name->as_C_string());
   187     }
   188   }
   189   return (Klass*)klass_h();
   190 }
   193 Klass* SystemDictionary::resolve_or_fail(Symbol* class_name,
   194                                            bool throw_error, TRAPS)
   195 {
   196   return resolve_or_fail(class_name, Handle(), Handle(), throw_error, THREAD);
   197 }
   200 // Forwards to resolve_instance_class_or_null
   202 Klass* SystemDictionary::resolve_or_null(Symbol* class_name, Handle class_loader, Handle protection_domain, TRAPS) {
   203   assert(!THREAD->is_Compiler_thread(),
   204          err_msg("can not load classes with compiler thread: class=%s, classloader=%s",
   205                  class_name->as_C_string(),
   206                  class_loader.is_null() ? "null" : class_loader->klass()->name()->as_C_string()));
   207   if (FieldType::is_array(class_name)) {
   208     return resolve_array_class_or_null(class_name, class_loader, protection_domain, CHECK_NULL);
   209   } else if (FieldType::is_obj(class_name)) {
   210     ResourceMark rm(THREAD);
   211     // Ignore wrapping L and ;.
   212     TempNewSymbol name = SymbolTable::new_symbol(class_name->as_C_string() + 1,
   213                                    class_name->utf8_length() - 2, CHECK_NULL);
   214     return resolve_instance_class_or_null(name, class_loader, protection_domain, CHECK_NULL);
   215   } else {
   216     return resolve_instance_class_or_null(class_name, class_loader, protection_domain, CHECK_NULL);
   217   }
   218 }
   220 Klass* SystemDictionary::resolve_or_null(Symbol* class_name, TRAPS) {
   221   return resolve_or_null(class_name, Handle(), Handle(), THREAD);
   222 }
   224 // Forwards to resolve_instance_class_or_null
   226 Klass* SystemDictionary::resolve_array_class_or_null(Symbol* class_name,
   227                                                        Handle class_loader,
   228                                                        Handle protection_domain,
   229                                                        TRAPS) {
   230   assert(FieldType::is_array(class_name), "must be array");
   231   Klass* k = NULL;
   232   FieldArrayInfo fd;
   233   // dimension and object_key in FieldArrayInfo are assigned as a side-effect
   234   // of this call
   235   BasicType t = FieldType::get_array_info(class_name, fd, CHECK_NULL);
   236   if (t == T_OBJECT) {
   237     // naked oop "k" is OK here -- we assign back into it
   238     k = SystemDictionary::resolve_instance_class_or_null(fd.object_key(),
   239                                                          class_loader,
   240                                                          protection_domain,
   241                                                          CHECK_NULL);
   242     if (k != NULL) {
   243       k = Klass::cast(k)->array_klass(fd.dimension(), CHECK_NULL);
   244     }
   245   } else {
   246     k = Universe::typeArrayKlassObj(t);
   247     k = typeArrayKlass::cast(k)->array_klass(fd.dimension(), CHECK_NULL);
   248   }
   249   return k;
   250 }
   253 // Must be called for any super-class or super-interface resolution
   254 // during class definition to allow class circularity checking
   255 // super-interface callers:
   256 //    parse_interfaces - for defineClass & jvmtiRedefineClasses
   257 // super-class callers:
   258 //   ClassFileParser - for defineClass & jvmtiRedefineClasses
   259 //   load_shared_class - while loading a class from shared archive
   260 //   resolve_instance_class_or_null:
   261 //     via: handle_parallel_super_load
   262 //      when resolving a class that has an existing placeholder with
   263 //      a saved superclass [i.e. a defineClass is currently in progress]
   264 //      if another thread is trying to resolve the class, it must do
   265 //      super-class checks on its own thread to catch class circularity
   266 // This last call is critical in class circularity checking for cases
   267 // where classloading is delegated to different threads and the
   268 // classloader lock is released.
   269 // Take the case: Base->Super->Base
   270 //   1. If thread T1 tries to do a defineClass of class Base
   271 //    resolve_super_or_fail creates placeholder: T1, Base (super Super)
   272 //   2. resolve_instance_class_or_null does not find SD or placeholder for Super
   273 //    so it tries to load Super
   274 //   3. If we load the class internally, or user classloader uses same thread
   275 //      loadClassFromxxx or defineClass via parseClassFile Super ...
   276 //      3.1 resolve_super_or_fail creates placeholder: T1, Super (super Base)
   277 //      3.3 resolve_instance_class_or_null Base, finds placeholder for Base
   278 //      3.4 calls resolve_super_or_fail Base
   279 //      3.5 finds T1,Base -> throws class circularity
   280 //OR 4. If T2 tries to resolve Super via defineClass Super ...
   281 //      4.1 resolve_super_or_fail creates placeholder: T2, Super (super Base)
   282 //      4.2 resolve_instance_class_or_null Base, finds placeholder for Base (super Super)
   283 //      4.3 calls resolve_super_or_fail Super in parallel on own thread T2
   284 //      4.4 finds T2, Super -> throws class circularity
   285 // Must be called, even if superclass is null, since this is
   286 // where the placeholder entry is created which claims this
   287 // thread is loading this class/classloader.
   288 Klass* SystemDictionary::resolve_super_or_fail(Symbol* child_name,
   289                                                  Symbol* class_name,
   290                                                  Handle class_loader,
   291                                                  Handle protection_domain,
   292                                                  bool is_superclass,
   293                                                  TRAPS) {
   295   // Try to get one of the well-known klasses.
   296   // They are trusted, and do not participate in circularities.
   297   if (LinkWellKnownClasses) {
   298     Klass* k = find_well_known_klass(class_name);
   299     if (k != NULL) {
   300       return k;
   301     }
   302   }
   304   // Double-check, if child class is already loaded, just return super-class,interface
   305   // Don't add a placedholder if already loaded, i.e. already in system dictionary
   306   // Make sure there's a placeholder for the *child* before resolving.
   307   // Used as a claim that this thread is currently loading superclass/classloader
   308   // Used here for ClassCircularity checks and also for heap verification
   309   // (every InstanceKlass in the heap needs to be in the system dictionary
   310   // or have a placeholder).
   311   // Must check ClassCircularity before checking if super class is already loaded
   312   //
   313   // We might not already have a placeholder if this child_name was
   314   // first seen via resolve_from_stream (jni_DefineClass or JVM_DefineClass);
   315   // the name of the class might not be known until the stream is actually
   316   // parsed.
   317   // Bugs 4643874, 4715493
   318   // compute_hash can have a safepoint
   320   ClassLoaderData* loader_data = class_loader_data(class_loader);
   321   unsigned int d_hash = dictionary()->compute_hash(child_name, loader_data);
   322   int d_index = dictionary()->hash_to_index(d_hash);
   323   unsigned int p_hash = placeholders()->compute_hash(child_name, loader_data);
   324   int p_index = placeholders()->hash_to_index(p_hash);
   325   // can't throw error holding a lock
   326   bool child_already_loaded = false;
   327   bool throw_circularity_error = false;
   328   {
   329     MutexLocker mu(SystemDictionary_lock, THREAD);
   330     Klass* childk = find_class(d_index, d_hash, child_name, loader_data);
   331     Klass* quicksuperk;
   332     // to support // loading: if child done loading, just return superclass
   333     // if class_name, & class_loader don't match:
   334     // if initial define, SD update will give LinkageError
   335     // if redefine: compare_class_versions will give HIERARCHY_CHANGED
   336     // so we don't throw an exception here.
   337     // see: nsk redefclass014 & java.lang.instrument Instrument032
   338     if ((childk != NULL ) && (is_superclass) &&
   339        ((quicksuperk = InstanceKlass::cast(childk)->super()) != NULL) &&
   341          ((Klass::cast(quicksuperk)->name() == class_name) &&
   342             (Klass::cast(quicksuperk)->class_loader()  == class_loader()))) {
   343            return quicksuperk;
   344     } else {
   345       PlaceholderEntry* probe = placeholders()->get_entry(p_index, p_hash, child_name, loader_data);
   346       if (probe && probe->check_seen_thread(THREAD, PlaceholderTable::LOAD_SUPER)) {
   347           throw_circularity_error = true;
   348       }
   349     }
   350     if (!throw_circularity_error) {
   351       PlaceholderEntry* newprobe = placeholders()->find_and_add(p_index, p_hash, child_name, loader_data, PlaceholderTable::LOAD_SUPER, class_name, THREAD);
   352     }
   353   }
   354   if (throw_circularity_error) {
   355       ResourceMark rm(THREAD);
   356       THROW_MSG_0(vmSymbols::java_lang_ClassCircularityError(), child_name->as_C_string());
   357   }
   359 // java.lang.Object should have been found above
   360   assert(class_name != NULL, "null super class for resolving");
   361   // Resolve the super class or interface, check results on return
   362   Klass* superk = NULL;
   363   superk = SystemDictionary::resolve_or_null(class_name,
   364                                                  class_loader,
   365                                                  protection_domain,
   366                                                  THREAD);
   368   KlassHandle superk_h(THREAD, superk);
   370   // Note: clean up of placeholders currently in callers of
   371   // resolve_super_or_fail - either at update_dictionary time
   372   // or on error
   373   {
   374   MutexLocker mu(SystemDictionary_lock, THREAD);
   375    PlaceholderEntry* probe = placeholders()->get_entry(p_index, p_hash, child_name, loader_data);
   376    if (probe != NULL) {
   377       probe->remove_seen_thread(THREAD, PlaceholderTable::LOAD_SUPER);
   378    }
   379   }
   380   if (HAS_PENDING_EXCEPTION || superk_h() == NULL) {
   381     // can null superk
   382     superk_h = KlassHandle(THREAD, handle_resolution_exception(class_name, class_loader, protection_domain, true, superk_h, THREAD));
   383   }
   385   return superk_h();
   386 }
   388 void SystemDictionary::validate_protection_domain(instanceKlassHandle klass,
   389                                                   Handle class_loader,
   390                                                   Handle protection_domain,
   391                                                   TRAPS) {
   392   if(!has_checkPackageAccess()) return;
   394   // Now we have to call back to java to check if the initating class has access
   395   JavaValue result(T_VOID);
   396   if (TraceProtectionDomainVerification) {
   397     // Print out trace information
   398     tty->print_cr("Checking package access");
   399     tty->print(" - class loader:      "); class_loader()->print_value_on(tty);      tty->cr();
   400     tty->print(" - protection domain: "); protection_domain()->print_value_on(tty); tty->cr();
   401     tty->print(" - loading:           "); klass()->print_value_on(tty);             tty->cr();
   402   }
   404   KlassHandle system_loader(THREAD, SystemDictionary::ClassLoader_klass());
   405   JavaCalls::call_special(&result,
   406                          class_loader,
   407                          system_loader,
   408                          vmSymbols::checkPackageAccess_name(),
   409                          vmSymbols::class_protectiondomain_signature(),
   410                          Handle(THREAD, klass->java_mirror()),
   411                          protection_domain,
   412                          THREAD);
   414   if (TraceProtectionDomainVerification) {
   415     if (HAS_PENDING_EXCEPTION) {
   416       tty->print_cr(" -> DENIED !!!!!!!!!!!!!!!!!!!!!");
   417     } else {
   418      tty->print_cr(" -> granted");
   419     }
   420     tty->cr();
   421   }
   423   if (HAS_PENDING_EXCEPTION) return;
   425   // If no exception has been thrown, we have validated the protection domain
   426   // Insert the protection domain of the initiating class into the set.
   427   {
   428     // We recalculate the entry here -- we've called out to java since
   429     // the last time it was calculated.
   430     ClassLoaderData* loader_data = class_loader_data(class_loader);
   432     Symbol*  kn = klass->name();
   433     unsigned int d_hash = dictionary()->compute_hash(kn, loader_data);
   434     int d_index = dictionary()->hash_to_index(d_hash);
   436     MutexLocker mu(SystemDictionary_lock, THREAD);
   437     {
   438       // Note that we have an entry, and entries can be deleted only during GC,
   439       // so we cannot allow GC to occur while we're holding this entry.
   441       // We're using a No_Safepoint_Verifier to catch any place where we
   442       // might potentially do a GC at all.
   443       // SystemDictionary::do_unloading() asserts that classes are only
   444       // unloaded at a safepoint.
   445       No_Safepoint_Verifier nosafepoint;
   446       dictionary()->add_protection_domain(d_index, d_hash, klass, loader_data,
   447                                           protection_domain, THREAD);
   448     }
   449   }
   450 }
   452 // We only get here if this thread finds that another thread
   453 // has already claimed the placeholder token for the current operation,
   454 // but that other thread either never owned or gave up the
   455 // object lock
   456 // Waits on SystemDictionary_lock to indicate placeholder table updated
   457 // On return, caller must recheck placeholder table state
   458 //
   459 // We only get here if
   460 //  1) custom classLoader, i.e. not bootstrap classloader
   461 //  2) UnsyncloadClass not set
   462 //  3) custom classLoader has broken the class loader objectLock
   463 //     so another thread got here in parallel
   464 //
   465 // lockObject must be held.
   466 // Complicated dance due to lock ordering:
   467 // Must first release the classloader object lock to
   468 // allow initial definer to complete the class definition
   469 // and to avoid deadlock
   470 // Reclaim classloader lock object with same original recursion count
   471 // Must release SystemDictionary_lock after notify, since
   472 // class loader lock must be claimed before SystemDictionary_lock
   473 // to prevent deadlocks
   474 //
   475 // The notify allows applications that did an untimed wait() on
   476 // the classloader object lock to not hang.
   477 void SystemDictionary::double_lock_wait(Handle lockObject, TRAPS) {
   478   assert_lock_strong(SystemDictionary_lock);
   480   bool calledholdinglock
   481       = ObjectSynchronizer::current_thread_holds_lock((JavaThread*)THREAD, lockObject);
   482   assert(calledholdinglock,"must hold lock for notify");
   483   assert((!(lockObject() == _system_loader_lock_obj) && !is_parallelCapable(lockObject)), "unexpected double_lock_wait");
   484   ObjectSynchronizer::notifyall(lockObject, THREAD);
   485   intptr_t recursions =  ObjectSynchronizer::complete_exit(lockObject, THREAD);
   486   SystemDictionary_lock->wait();
   487   SystemDictionary_lock->unlock();
   488   ObjectSynchronizer::reenter(lockObject, recursions, THREAD);
   489   SystemDictionary_lock->lock();
   490 }
   492 // If the class in is in the placeholder table, class loading is in progress
   493 // For cases where the application changes threads to load classes, it
   494 // is critical to ClassCircularity detection that we try loading
   495 // the superclass on the same thread internally, so we do parallel
   496 // super class loading here.
   497 // This also is critical in cases where the original thread gets stalled
   498 // even in non-circularity situations.
   499 // Note: only one thread can define the class, but multiple can resolve
   500 // Note: must call resolve_super_or_fail even if null super -
   501 // to force placeholder entry creation for this class for circularity detection
   502 // Caller must check for pending exception
   503 // Returns non-null Klass* if other thread has completed load
   504 // and we are done,
   505 // If return null Klass* and no pending exception, the caller must load the class
   506 instanceKlassHandle SystemDictionary::handle_parallel_super_load(
   507     Symbol* name, Symbol* superclassname, Handle class_loader,
   508     Handle protection_domain, Handle lockObject, TRAPS) {
   510   instanceKlassHandle nh = instanceKlassHandle(); // null Handle
   511   ClassLoaderData* loader_data = class_loader_data(class_loader);
   512   unsigned int d_hash = dictionary()->compute_hash(name, loader_data);
   513   int d_index = dictionary()->hash_to_index(d_hash);
   514   unsigned int p_hash = placeholders()->compute_hash(name, loader_data);
   515   int p_index = placeholders()->hash_to_index(p_hash);
   517   // superk is not used, resolve_super called for circularity check only
   518   // This code is reached in two situations. One if this thread
   519   // is loading the same class twice (e.g. ClassCircularity, or
   520   // java.lang.instrument).
   521   // The second is if another thread started the resolve_super first
   522   // and has not yet finished.
   523   // In both cases the original caller will clean up the placeholder
   524   // entry on error.
   525   Klass* superk = SystemDictionary::resolve_super_or_fail(name,
   526                                                           superclassname,
   527                                                           class_loader,
   528                                                           protection_domain,
   529                                                           true,
   530                                                           CHECK_(nh));
   531   // We don't redefine the class, so we just need to clean up if there
   532   // was not an error (don't want to modify any system dictionary
   533   // data structures).
   534   {
   535     MutexLocker mu(SystemDictionary_lock, THREAD);
   536     placeholders()->find_and_remove(p_index, p_hash, name, loader_data, THREAD);
   537     SystemDictionary_lock->notify_all();
   538   }
   540   // parallelCapable class loaders do NOT wait for parallel superclass loads to complete
   541   // Serial class loaders and bootstrap classloader do wait for superclass loads
   542  if (!class_loader.is_null() && is_parallelCapable(class_loader)) {
   543     MutexLocker mu(SystemDictionary_lock, THREAD);
   544     // Check if classloading completed while we were loading superclass or waiting
   545     Klass* check = find_class(d_index, d_hash, name, loader_data);
   546     if (check != NULL) {
   547       // Klass is already loaded, so just return it
   548       return(instanceKlassHandle(THREAD, check));
   549     } else {
   550       return nh;
   551     }
   552   }
   554   // must loop to both handle other placeholder updates
   555   // and spurious notifications
   556   bool super_load_in_progress = true;
   557   PlaceholderEntry* placeholder;
   558   while (super_load_in_progress) {
   559     MutexLocker mu(SystemDictionary_lock, THREAD);
   560     // Check if classloading completed while we were loading superclass or waiting
   561     Klass* check = find_class(d_index, d_hash, name, loader_data);
   562     if (check != NULL) {
   563       // Klass is already loaded, so just return it
   564       return(instanceKlassHandle(THREAD, check));
   565     } else {
   566       placeholder = placeholders()->get_entry(p_index, p_hash, name, loader_data);
   567       if (placeholder && placeholder->super_load_in_progress() ){
   568         // Before UnsyncloadClass:
   569         // We only get here if the application has released the
   570         // classloader lock when another thread was in the middle of loading a
   571         // superclass/superinterface for this class, and now
   572         // this thread is also trying to load this class.
   573         // To minimize surprises, the first thread that started to
   574         // load a class should be the one to complete the loading
   575         // with the classfile it initially expected.
   576         // This logic has the current thread wait once it has done
   577         // all the superclass/superinterface loading it can, until
   578         // the original thread completes the class loading or fails
   579         // If it completes we will use the resulting InstanceKlass
   580         // which we will find below in the systemDictionary.
   581         // We also get here for parallel bootstrap classloader
   582         if (class_loader.is_null()) {
   583           SystemDictionary_lock->wait();
   584         } else {
   585           double_lock_wait(lockObject, THREAD);
   586         }
   587       } else {
   588         // If not in SD and not in PH, other thread's load must have failed
   589         super_load_in_progress = false;
   590       }
   591     }
   592   }
   593   return (nh);
   594 }
   597 Klass* SystemDictionary::resolve_instance_class_or_null(Symbol* name, Handle class_loader, Handle protection_domain, TRAPS) {
   598   assert(name != NULL && !FieldType::is_array(name) &&
   599          !FieldType::is_obj(name), "invalid class name");
   601   // UseNewReflection
   602   // Fix for 4474172; see evaluation for more details
   603   class_loader = Handle(THREAD, java_lang_ClassLoader::non_reflection_class_loader(class_loader()));
   604   ClassLoaderData *loader_data = register_loader(class_loader);
   606   // Do lookup to see if class already exist and the protection domain
   607   // has the right access
   608   unsigned int d_hash = dictionary()->compute_hash(name, loader_data);
   609   int d_index = dictionary()->hash_to_index(d_hash);
   610   Klass* probe = dictionary()->find(d_index, d_hash, name, loader_data,
   611                                       protection_domain, THREAD);
   612   if (probe != NULL) return probe;
   615   // Non-bootstrap class loaders will call out to class loader and
   616   // define via jvm/jni_DefineClass which will acquire the
   617   // class loader object lock to protect against multiple threads
   618   // defining the class in parallel by accident.
   619   // This lock must be acquired here so the waiter will find
   620   // any successful result in the SystemDictionary and not attempt
   621   // the define
   622   // ParallelCapable Classloaders and the bootstrap classloader,
   623   // or all classloaders with UnsyncloadClass do not acquire lock here
   624   bool DoObjectLock = true;
   625   if (is_parallelCapable(class_loader)) {
   626     DoObjectLock = false;
   627   }
   629   unsigned int p_hash = placeholders()->compute_hash(name, loader_data);
   630   int p_index = placeholders()->hash_to_index(p_hash);
   632   // Class is not in SystemDictionary so we have to do loading.
   633   // Make sure we are synchronized on the class loader before we proceed
   634   Handle lockObject = compute_loader_lock_object(class_loader, THREAD);
   635   check_loader_lock_contention(lockObject, THREAD);
   636   ObjectLocker ol(lockObject, THREAD, DoObjectLock);
   638   // Check again (after locking) if class already exist in SystemDictionary
   639   bool class_has_been_loaded   = false;
   640   bool super_load_in_progress  = false;
   641   bool havesupername = false;
   642   instanceKlassHandle k;
   643   PlaceholderEntry* placeholder;
   644   Symbol* superclassname = NULL;
   646   {
   647     MutexLocker mu(SystemDictionary_lock, THREAD);
   648     Klass* check = find_class(d_index, d_hash, name, loader_data);
   649     if (check != NULL) {
   650       // Klass is already loaded, so just return it
   651       class_has_been_loaded = true;
   652       k = instanceKlassHandle(THREAD, check);
   653     } else {
   654       placeholder = placeholders()->get_entry(p_index, p_hash, name, loader_data);
   655       if (placeholder && placeholder->super_load_in_progress()) {
   656          super_load_in_progress = true;
   657          if (placeholder->havesupername() == true) {
   658            superclassname = placeholder->supername();
   659            havesupername = true;
   660          }
   661       }
   662     }
   663   }
   665   // If the class in is in the placeholder table, class loading is in progress
   666   if (super_load_in_progress && havesupername==true) {
   667     k = SystemDictionary::handle_parallel_super_load(name, superclassname,
   668         class_loader, protection_domain, lockObject, THREAD);
   669     if (HAS_PENDING_EXCEPTION) {
   670       return NULL;
   671     }
   672     if (!k.is_null()) {
   673       class_has_been_loaded = true;
   674     }
   675   }
   677   if (!class_has_been_loaded) {
   679     // add placeholder entry to record loading instance class
   680     // Five cases:
   681     // All cases need to prevent modifying bootclasssearchpath
   682     // in parallel with a classload of same classname
   683     // Redefineclasses uses existence of the placeholder for the duration
   684     // of the class load to prevent concurrent redefinition of not completely
   685     // defined classes.
   686     // case 1. traditional classloaders that rely on the classloader object lock
   687     //   - no other need for LOAD_INSTANCE
   688     // case 2. traditional classloaders that break the classloader object lock
   689     //    as a deadlock workaround. Detection of this case requires that
   690     //    this check is done while holding the classloader object lock,
   691     //    and that lock is still held when calling classloader's loadClass.
   692     //    For these classloaders, we ensure that the first requestor
   693     //    completes the load and other requestors wait for completion.
   694     // case 3. UnsyncloadClass - don't use objectLocker
   695     //    With this flag, we allow parallel classloading of a
   696     //    class/classloader pair
   697     // case4. Bootstrap classloader - don't own objectLocker
   698     //    This classloader supports parallelism at the classloader level,
   699     //    but only allows a single load of a class/classloader pair.
   700     //    No performance benefit and no deadlock issues.
   701     // case 5. parallelCapable user level classloaders - without objectLocker
   702     //    Allow parallel classloading of a class/classloader pair
   703     bool throw_circularity_error = false;
   704     {
   705       MutexLocker mu(SystemDictionary_lock, THREAD);
   706       if (class_loader.is_null() || !is_parallelCapable(class_loader)) {
   707         PlaceholderEntry* oldprobe = placeholders()->get_entry(p_index, p_hash, name, loader_data);
   708         if (oldprobe) {
   709           // only need check_seen_thread once, not on each loop
   710           // 6341374 java/lang/Instrument with -Xcomp
   711           if (oldprobe->check_seen_thread(THREAD, PlaceholderTable::LOAD_INSTANCE)) {
   712             throw_circularity_error = true;
   713           } else {
   714             // case 1: traditional: should never see load_in_progress.
   715             while (!class_has_been_loaded && oldprobe && oldprobe->instance_load_in_progress()) {
   717               // case 4: bootstrap classloader: prevent futile classloading,
   718               // wait on first requestor
   719               if (class_loader.is_null()) {
   720                 SystemDictionary_lock->wait();
   721               } else {
   722               // case 2: traditional with broken classloader lock. wait on first
   723               // requestor.
   724                 double_lock_wait(lockObject, THREAD);
   725               }
   726               // Check if classloading completed while we were waiting
   727               Klass* check = find_class(d_index, d_hash, name, loader_data);
   728               if (check != NULL) {
   729                 // Klass is already loaded, so just return it
   730                 k = instanceKlassHandle(THREAD, check);
   731                 class_has_been_loaded = true;
   732               }
   733               // check if other thread failed to load and cleaned up
   734               oldprobe = placeholders()->get_entry(p_index, p_hash, name, loader_data);
   735             }
   736           }
   737         }
   738       }
   739       // All cases: add LOAD_INSTANCE
   740       // case 3: UnsyncloadClass || case 5: parallelCapable: allow competing threads to try
   741       // LOAD_INSTANCE in parallel
   742       // add placeholder entry even if error - callers will remove on error
   743       if (!throw_circularity_error && !class_has_been_loaded) {
   744         PlaceholderEntry* newprobe = placeholders()->find_and_add(p_index, p_hash, name, loader_data, PlaceholderTable::LOAD_INSTANCE, NULL, THREAD);
   745         // For class loaders that do not acquire the classloader object lock,
   746         // if they did not catch another thread holding LOAD_INSTANCE,
   747         // need a check analogous to the acquire ObjectLocker/find_class
   748         // i.e. now that we hold the LOAD_INSTANCE token on loading this class/CL
   749         // one final check if the load has already completed
   750         // class loaders holding the ObjectLock shouldn't find the class here
   751         Klass* check = find_class(d_index, d_hash, name, loader_data);
   752         if (check != NULL) {
   753         // Klass is already loaded, so just return it
   754           k = instanceKlassHandle(THREAD, check);
   755           class_has_been_loaded = true;
   756           newprobe->remove_seen_thread(THREAD, PlaceholderTable::LOAD_INSTANCE);
   757           placeholders()->find_and_remove(p_index, p_hash, name, loader_data, THREAD);
   758           SystemDictionary_lock->notify_all();
   759         }
   760       }
   761     }
   762     // must throw error outside of owning lock
   763     if (throw_circularity_error) {
   764       ResourceMark rm(THREAD);
   765       THROW_MSG_0(vmSymbols::java_lang_ClassCircularityError(), name->as_C_string());
   766     }
   768     if (!class_has_been_loaded) {
   770       // Do actual loading
   771       k = load_instance_class(name, class_loader, THREAD);
   773       // For UnsyncloadClass only
   774       // If they got a linkageError, check if a parallel class load succeeded.
   775       // If it did, then for bytecode resolution the specification requires
   776       // that we return the same result we did for the other thread, i.e. the
   777       // successfully loaded InstanceKlass
   778       // Should not get here for classloaders that support parallelism
   779       // with the new cleaner mechanism, even with AllowParallelDefineClass
   780       // Bootstrap goes through here to allow for an extra guarantee check
   781       if (UnsyncloadClass || (class_loader.is_null())) {
   782         if (k.is_null() && HAS_PENDING_EXCEPTION
   783           && PENDING_EXCEPTION->is_a(SystemDictionary::LinkageError_klass())) {
   784           MutexLocker mu(SystemDictionary_lock, THREAD);
   785           Klass* check = find_class(d_index, d_hash, name, loader_data);
   786           if (check != NULL) {
   787             // Klass is already loaded, so just use it
   788             k = instanceKlassHandle(THREAD, check);
   789             CLEAR_PENDING_EXCEPTION;
   790             guarantee((!class_loader.is_null()), "dup definition for bootstrap loader?");
   791           }
   792         }
   793       }
   795       // clean up placeholder entries for success or error
   796       // This cleans up LOAD_INSTANCE entries
   797       // It also cleans up LOAD_SUPER entries on errors from
   798       // calling load_instance_class
   799       {
   800         MutexLocker mu(SystemDictionary_lock, THREAD);
   801         PlaceholderEntry* probe = placeholders()->get_entry(p_index, p_hash, name, loader_data);
   802         if (probe != NULL) {
   803           probe->remove_seen_thread(THREAD, PlaceholderTable::LOAD_INSTANCE);
   804           placeholders()->find_and_remove(p_index, p_hash, name, loader_data, THREAD);
   805           SystemDictionary_lock->notify_all();
   806         }
   807       }
   809       // If everything was OK (no exceptions, no null return value), and
   810       // class_loader is NOT the defining loader, do a little more bookkeeping.
   811       if (!HAS_PENDING_EXCEPTION && !k.is_null() &&
   812         k->class_loader() != class_loader()) {
   814         check_constraints(d_index, d_hash, k, class_loader, false, THREAD);
   816         // Need to check for a PENDING_EXCEPTION again; check_constraints
   817         // can throw and doesn't use the CHECK macro.
   818         if (!HAS_PENDING_EXCEPTION) {
   819           { // Grabbing the Compile_lock prevents systemDictionary updates
   820             // during compilations.
   821             MutexLocker mu(Compile_lock, THREAD);
   822             update_dictionary(d_index, d_hash, p_index, p_hash,
   823                             k, class_loader, THREAD);
   824           }
   825           if (JvmtiExport::should_post_class_load()) {
   826             Thread *thread = THREAD;
   827             assert(thread->is_Java_thread(), "thread->is_Java_thread()");
   828             JvmtiExport::post_class_load((JavaThread *) thread, k());
   829           }
   830         }
   831       }
   832       if (HAS_PENDING_EXCEPTION || k.is_null()) {
   833         // On error, clean up placeholders
   834         {
   835           MutexLocker mu(SystemDictionary_lock, THREAD);
   836           placeholders()->find_and_remove(p_index, p_hash, name, loader_data, THREAD);
   837           SystemDictionary_lock->notify_all();
   838         }
   839         return NULL;
   840       }
   841     }
   842   }
   844 #ifdef ASSERT
   845   {
   846     ClassLoaderData* loader_data = k->class_loader_data();
   847     MutexLocker mu(SystemDictionary_lock, THREAD);
   848     Klass* kk = find_class(name, loader_data);
   849     assert(kk == k(), "should be present in dictionary");
   850   }
   851 #endif
   853   // return if the protection domain in NULL
   854   if (protection_domain() == NULL) return k();
   856   // Check the protection domain has the right access
   857   {
   858     MutexLocker mu(SystemDictionary_lock, THREAD);
   859     // Note that we have an entry, and entries can be deleted only during GC,
   860     // so we cannot allow GC to occur while we're holding this entry.
   861     // We're using a No_Safepoint_Verifier to catch any place where we
   862     // might potentially do a GC at all.
   863     // SystemDictionary::do_unloading() asserts that classes are only
   864     // unloaded at a safepoint.
   865     No_Safepoint_Verifier nosafepoint;
   866     if (dictionary()->is_valid_protection_domain(d_index, d_hash, name,
   867                                                  loader_data,
   868                                                  protection_domain)) {
   869       return k();
   870     }
   871   }
   873   // Verify protection domain. If it fails an exception is thrown
   874   validate_protection_domain(k, class_loader, protection_domain, CHECK_NULL);
   876   return k();
   877 }
   880 // This routine does not lock the system dictionary.
   881 //
   882 // Since readers don't hold a lock, we must make sure that system
   883 // dictionary entries are only removed at a safepoint (when only one
   884 // thread is running), and are added to in a safe way (all links must
   885 // be updated in an MT-safe manner).
   886 //
   887 // Callers should be aware that an entry could be added just after
   888 // _dictionary->bucket(index) is read here, so the caller will not see
   889 // the new entry.
   891 Klass* SystemDictionary::find(Symbol* class_name,
   892                                 Handle class_loader,
   893                                 Handle protection_domain,
   894                                 TRAPS) {
   896   // UseNewReflection
   897   // The result of this call should be consistent with the result
   898   // of the call to resolve_instance_class_or_null().
   899   // See evaluation 6790209 and 4474172 for more details.
   900   class_loader = Handle(THREAD, java_lang_ClassLoader::non_reflection_class_loader(class_loader()));
   901   ClassLoaderData* loader_data = register_loader(class_loader);
   903   unsigned int d_hash = dictionary()->compute_hash(class_name, loader_data);
   904   int d_index = dictionary()->hash_to_index(d_hash);
   906   {
   907     // Note that we have an entry, and entries can be deleted only during GC,
   908     // so we cannot allow GC to occur while we're holding this entry.
   909     // We're using a No_Safepoint_Verifier to catch any place where we
   910     // might potentially do a GC at all.
   911     // SystemDictionary::do_unloading() asserts that classes are only
   912     // unloaded at a safepoint.
   913     No_Safepoint_Verifier nosafepoint;
   914     return dictionary()->find(d_index, d_hash, class_name, loader_data,
   915                               protection_domain, THREAD);
   916   }
   917 }
   920 // Look for a loaded instance or array klass by name.  Do not do any loading.
   921 // return NULL in case of error.
   922 Klass* SystemDictionary::find_instance_or_array_klass(Symbol* class_name,
   923                                                         Handle class_loader,
   924                                                         Handle protection_domain,
   925                                                         TRAPS) {
   926   Klass* k = NULL;
   927   assert(class_name != NULL, "class name must be non NULL");
   929   // Try to get one of the well-known klasses.
   930   if (LinkWellKnownClasses) {
   931     k = find_well_known_klass(class_name);
   932     if (k != NULL) {
   933       return k;
   934     }
   935   }
   937   if (FieldType::is_array(class_name)) {
   938     // The name refers to an array.  Parse the name.
   939     // dimension and object_key in FieldArrayInfo are assigned as a
   940     // side-effect of this call
   941     FieldArrayInfo fd;
   942     BasicType t = FieldType::get_array_info(class_name, fd, CHECK_(NULL));
   943     if (t != T_OBJECT) {
   944       k = Universe::typeArrayKlassObj(t);
   945     } else {
   946       k = SystemDictionary::find(fd.object_key(), class_loader, protection_domain, THREAD);
   947     }
   948     if (k != NULL) {
   949       k = Klass::cast(k)->array_klass_or_null(fd.dimension());
   950     }
   951   } else {
   952     k = find(class_name, class_loader, protection_domain, THREAD);
   953   }
   954   return k;
   955 }
   957 // Quick range check for names of well-known classes:
   958 static Symbol* wk_klass_name_limits[2] = {NULL, NULL};
   960 #ifndef PRODUCT
   961 static int find_wkk_calls, find_wkk_probes, find_wkk_wins;
   962 // counts for "hello world": 3983, 1616, 1075
   963 //  => 60% hit after limit guard, 25% total win rate
   964 #endif
   966 Klass* SystemDictionary::find_well_known_klass(Symbol* class_name) {
   967   // A bounds-check on class_name will quickly get a negative result.
   968   NOT_PRODUCT(find_wkk_calls++);
   969   if (class_name >= wk_klass_name_limits[0] &&
   970       class_name <= wk_klass_name_limits[1]) {
   971     NOT_PRODUCT(find_wkk_probes++);
   972     vmSymbols::SID sid = vmSymbols::find_sid(class_name);
   973     if (sid != vmSymbols::NO_SID) {
   974       Klass* k = NULL;
   975       switch (sid) {
   976         #define WK_KLASS_CASE(name, symbol, ignore_option) \
   977         case vmSymbols::VM_SYMBOL_ENUM_NAME(symbol): \
   978           k = WK_KLASS(name); break;
   979         WK_KLASSES_DO(WK_KLASS_CASE)
   980         #undef WK_KLASS_CASE
   981       }
   982       NOT_PRODUCT(if (k != NULL)  find_wkk_wins++);
   983       return k;
   984     }
   985   }
   986   return NULL;
   987 }
   989 // Note: this method is much like resolve_from_stream, but
   990 // updates no supplemental data structures.
   991 // TODO consolidate the two methods with a helper routine?
   992 Klass* SystemDictionary::parse_stream(Symbol* class_name,
   993                                         Handle class_loader,
   994                                         Handle protection_domain,
   995                                         ClassFileStream* st,
   996                                         KlassHandle host_klass,
   997                                         GrowableArray<Handle>* cp_patches,
   998                                         TRAPS) {
   999   TempNewSymbol parsed_name = NULL;
  1001   // Parse the stream. Note that we do this even though this klass might
  1002   // already be present in the SystemDictionary, otherwise we would not
  1003   // throw potential ClassFormatErrors.
  1004   //
  1005   // Note: "name" is updated.
  1006   // Further note:  a placeholder will be added for this class when
  1007   //   super classes are loaded (resolve_super_or_fail). We expect this
  1008   //   to be called for all classes but java.lang.Object; and we preload
  1009   //   java.lang.Object through resolve_or_fail, not this path.
  1011   instanceKlassHandle k = ClassFileParser(st).parseClassFile(class_name,
  1012                                                              class_loader,
  1013                                                              protection_domain,
  1014                                                              host_klass,
  1015                                                              cp_patches,
  1016                                                              parsed_name,
  1017                                                              true,
  1018                                                              THREAD);
  1020   // We don't redefine the class, so we just need to clean up whether there
  1021   // was an error or not (don't want to modify any system dictionary
  1022   // data structures).
  1023   // Parsed name could be null if we threw an error before we got far
  1024   // enough along to parse it -- in that case, there is nothing to clean up.
  1025   if (parsed_name != NULL) {
  1026     ClassLoaderData* loader_data = class_loader_data(class_loader);
  1028     unsigned int p_hash = placeholders()->compute_hash(parsed_name,
  1029                                                        loader_data);
  1030     int p_index = placeholders()->hash_to_index(p_hash);
  1032     MutexLocker mu(SystemDictionary_lock, THREAD);
  1033     placeholders()->find_and_remove(p_index, p_hash, parsed_name, loader_data, THREAD);
  1034     SystemDictionary_lock->notify_all();
  1038   if (host_klass.not_null() && k.not_null()) {
  1039     assert(EnableInvokeDynamic, "");
  1040     // If it's anonymous, initialize it now, since nobody else will.
  1041     k->class_loader_data()->record_dependency(host_klass(), CHECK_NULL);
  1042     k->set_host_klass(host_klass());
  1045       MutexLocker mu_r(Compile_lock, THREAD);
  1047       // Add to class hierarchy, initialize vtables, and do possible
  1048       // deoptimizations.
  1049       add_to_hierarchy(k, CHECK_NULL); // No exception, but can block
  1051       // But, do not add to system dictionary.
  1054     // Rewrite and patch constant pool here.
  1055     k->link_class(THREAD);
  1056     if (cp_patches != NULL) {
  1057       k->constants()->patch_resolved_references(cp_patches);
  1059     k->eager_initialize(THREAD);
  1061     // notify jvmti
  1062     if (JvmtiExport::should_post_class_load()) {
  1063         assert(THREAD->is_Java_thread(), "thread->is_Java_thread()");
  1064         JvmtiExport::post_class_load((JavaThread *) THREAD, k());
  1067   assert(host_klass.not_null() || cp_patches == NULL,
  1068          "cp_patches only found with host_klass");
  1070   return k();
  1073 // Add a klass to the system from a stream (called by jni_DefineClass and
  1074 // JVM_DefineClass).
  1075 // Note: class_name can be NULL. In that case we do not know the name of
  1076 // the class until we have parsed the stream.
  1078 Klass* SystemDictionary::resolve_from_stream(Symbol* class_name,
  1079                                                Handle class_loader,
  1080                                                Handle protection_domain,
  1081                                                ClassFileStream* st,
  1082                                                bool verify,
  1083                                                TRAPS) {
  1085   // Classloaders that support parallelism, e.g. bootstrap classloader,
  1086   // or all classloaders with UnsyncloadClass do not acquire lock here
  1087   bool DoObjectLock = true;
  1088   if (is_parallelCapable(class_loader)) {
  1089     DoObjectLock = false;
  1092   ClassLoaderData* loader_data = register_loader(class_loader);
  1094   // Make sure we are synchronized on the class loader before we proceed
  1095   Handle lockObject = compute_loader_lock_object(class_loader, THREAD);
  1096   check_loader_lock_contention(lockObject, THREAD);
  1097   ObjectLocker ol(lockObject, THREAD, DoObjectLock);
  1099   TempNewSymbol parsed_name = NULL;
  1101   // Parse the stream. Note that we do this even though this klass might
  1102   // already be present in the SystemDictionary, otherwise we would not
  1103   // throw potential ClassFormatErrors.
  1104   //
  1105   // Note: "name" is updated.
  1106   // Further note:  a placeholder will be added for this class when
  1107   //   super classes are loaded (resolve_super_or_fail). We expect this
  1108   //   to be called for all classes but java.lang.Object; and we preload
  1109   //   java.lang.Object through resolve_or_fail, not this path.
  1111   instanceKlassHandle k = ClassFileParser(st).parseClassFile(class_name,
  1112                                                              class_loader,
  1113                                                              protection_domain,
  1114                                                              parsed_name,
  1115                                                              verify,
  1116                                                              THREAD);
  1118   const char* pkg = "java/";
  1119   if (!HAS_PENDING_EXCEPTION &&
  1120       !class_loader.is_null() &&
  1121       parsed_name != NULL &&
  1122       !strncmp((const char*)parsed_name->bytes(), pkg, strlen(pkg))) {
  1123     // It is illegal to define classes in the "java." package from
  1124     // JVM_DefineClass or jni_DefineClass unless you're the bootclassloader
  1125     ResourceMark rm(THREAD);
  1126     char* name = parsed_name->as_C_string();
  1127     char* index = strrchr(name, '/');
  1128     *index = '\0'; // chop to just the package name
  1129     while ((index = strchr(name, '/')) != NULL) {
  1130       *index = '.'; // replace '/' with '.' in package name
  1132     const char* fmt = "Prohibited package name: %s";
  1133     size_t len = strlen(fmt) + strlen(name);
  1134     char* message = NEW_RESOURCE_ARRAY(char, len);
  1135     jio_snprintf(message, len, fmt, name);
  1136     Exceptions::_throw_msg(THREAD_AND_LOCATION,
  1137       vmSymbols::java_lang_SecurityException(), message);
  1140   if (!HAS_PENDING_EXCEPTION) {
  1141     assert(parsed_name != NULL, "Sanity");
  1142     assert(class_name == NULL || class_name == parsed_name, "name mismatch");
  1143     // Verification prevents us from creating names with dots in them, this
  1144     // asserts that that's the case.
  1145     assert(is_internal_format(parsed_name),
  1146            "external class name format used internally");
  1148     // Add class just loaded
  1149     // If a class loader supports parallel classloading handle parallel define requests
  1150     // find_or_define_instance_class may return a different InstanceKlass
  1151     if (is_parallelCapable(class_loader)) {
  1152       k = find_or_define_instance_class(class_name, class_loader, k, THREAD);
  1153     } else {
  1154       define_instance_class(k, THREAD);
  1158   // If parsing the class file or define_instance_class failed, we
  1159   // need to remove the placeholder added on our behalf. But we
  1160   // must make sure parsed_name is valid first (it won't be if we had
  1161   // a format error before the class was parsed far enough to
  1162   // find the name).
  1163   if (HAS_PENDING_EXCEPTION && parsed_name != NULL) {
  1164     unsigned int p_hash = placeholders()->compute_hash(parsed_name,
  1165                                                        loader_data);
  1166     int p_index = placeholders()->hash_to_index(p_hash);
  1168     MutexLocker mu(SystemDictionary_lock, THREAD);
  1169     placeholders()->find_and_remove(p_index, p_hash, parsed_name, loader_data, THREAD);
  1170     SystemDictionary_lock->notify_all();
  1172     return NULL;
  1175   // Make sure that we didn't leave a place holder in the
  1176   // SystemDictionary; this is only done on success
  1177   debug_only( {
  1178     if (!HAS_PENDING_EXCEPTION) {
  1179       assert(parsed_name != NULL, "parsed_name is still null?");
  1180       Symbol*  h_name    = k->name();
  1181       ClassLoaderData *defining_loader_data = k->class_loader_data();
  1183       MutexLocker mu(SystemDictionary_lock, THREAD);
  1185       Klass* check = find_class(parsed_name, loader_data);
  1186       assert(check == k(), "should be present in the dictionary");
  1188       Klass* check2 = find_class(h_name, defining_loader_data);
  1189       assert(check == check2, "name inconsistancy in SystemDictionary");
  1191   } );
  1193   return k();
  1197 void SystemDictionary::set_shared_dictionary(HashtableBucket<mtClass>* t, int length,
  1198                                              int number_of_entries) {
  1199   assert(length == _nof_buckets * sizeof(HashtableBucket<mtClass>),
  1200          "bad shared dictionary size.");
  1201   _shared_dictionary = new Dictionary(_nof_buckets, t, number_of_entries);
  1205 // If there is a shared dictionary, then find the entry for the
  1206 // given shared system class, if any.
  1208 Klass* SystemDictionary::find_shared_class(Symbol* class_name) {
  1209   if (shared_dictionary() != NULL) {
  1210     unsigned int d_hash = shared_dictionary()->compute_hash(class_name, NULL);
  1211     int d_index = shared_dictionary()->hash_to_index(d_hash);
  1213     return shared_dictionary()->find_shared_class(d_index, d_hash, class_name);
  1214   } else {
  1215     return NULL;
  1220 // Load a class from the shared spaces (found through the shared system
  1221 // dictionary).  Force the superclass and all interfaces to be loaded.
  1222 // Update the class definition to include sibling classes and no
  1223 // subclasses (yet).  [Classes in the shared space are not part of the
  1224 // object hierarchy until loaded.]
  1226 instanceKlassHandle SystemDictionary::load_shared_class(
  1227                  Symbol* class_name, Handle class_loader, TRAPS) {
  1228   instanceKlassHandle ik (THREAD, find_shared_class(class_name));
  1229   return load_shared_class(ik, class_loader, THREAD);
  1232 // Note well!  Changes to this method may affect oop access order
  1233 // in the shared archive.  Please take care to not make changes that
  1234 // adversely affect cold start time by changing the oop access order
  1235 // that is specified in dump.cpp MarkAndMoveOrderedReadOnly and
  1236 // MarkAndMoveOrderedReadWrite closures.
  1237 instanceKlassHandle SystemDictionary::load_shared_class(
  1238                  instanceKlassHandle ik, Handle class_loader, TRAPS) {
  1239   assert(class_loader.is_null(), "non-null classloader for shared class?");
  1240   if (ik.not_null()) {
  1241     instanceKlassHandle nh = instanceKlassHandle(); // null Handle
  1242     Symbol*  class_name = ik->name();
  1244     // Found the class, now load the superclass and interfaces.  If they
  1245     // are shared, add them to the main system dictionary and reset
  1246     // their hierarchy references (supers, subs, and interfaces).
  1248     if (ik->super() != NULL) {
  1249       Symbol*  cn = ik->super()->name();
  1250       resolve_super_or_fail(class_name, cn,
  1251                             class_loader, Handle(), true, CHECK_(nh));
  1254     Array<Klass*>* interfaces = ik->local_interfaces();
  1255     int num_interfaces = interfaces->length();
  1256     for (int index = 0; index < num_interfaces; index++) {
  1257       Klass* k = interfaces->at(index);
  1259       // Note: can not use InstanceKlass::cast here because
  1260       // interfaces' InstanceKlass's C++ vtbls haven't been
  1261       // reinitialized yet (they will be once the interface classes
  1262       // are loaded)
  1263       Symbol*  name  = k->name();
  1264       resolve_super_or_fail(class_name, name, class_loader, Handle(), false, CHECK_(nh));
  1267     // Adjust methods to recover missing data.  They need addresses for
  1268     // interpreter entry points and their default native method address
  1269     // must be reset.
  1271     // Updating methods must be done under a lock so multiple
  1272     // threads don't update these in parallel
  1273     // Shared classes are all currently loaded by the bootstrap
  1274     // classloader, so this will never cause a deadlock on
  1275     // a custom class loader lock.
  1278       Handle lockObject = compute_loader_lock_object(class_loader, THREAD);
  1279       check_loader_lock_contention(lockObject, THREAD);
  1280       ObjectLocker ol(lockObject, THREAD, true);
  1281       ik->restore_unshareable_info(CHECK_(nh));
  1284     if (TraceClassLoading) {
  1285       ResourceMark rm;
  1286       tty->print("[Loaded %s", ik->external_name());
  1287       tty->print(" from shared objects file");
  1288       tty->print_cr("]");
  1290     // notify a class loaded from shared object
  1291     ClassLoadingService::notify_class_loaded(InstanceKlass::cast(ik()),
  1292                                              true /* shared class */);
  1294   return ik;
  1297 #ifdef KERNEL
  1298 // Some classes on the bootstrap class path haven't been installed on the
  1299 // system yet.  Call the DownloadManager method to make them appear in the
  1300 // bootstrap class path and try again to load the named class.
  1301 // Note that with delegation class loaders all classes in another loader will
  1302 // first try to call this so it'd better be fast!!
  1303 static instanceKlassHandle download_and_retry_class_load(
  1304                                                     Symbol* class_name,
  1305                                                     TRAPS) {
  1307   Klass* dlm = SystemDictionary::DownloadManager_klass();
  1308   instanceKlassHandle nk;
  1310   // If download manager class isn't loaded just return.
  1311   if (dlm == NULL) return nk;
  1313   { HandleMark hm(THREAD);
  1314     ResourceMark rm(THREAD);
  1315     Handle s = java_lang_String::create_from_symbol(class_name, CHECK_(nk));
  1316     Handle class_string = java_lang_String::externalize_classname(s, CHECK_(nk));
  1318     // return value
  1319     JavaValue result(T_OBJECT);
  1321     // Call the DownloadManager.  We assume that it has a lock because
  1322     // multiple classes could be not found and downloaded at the same time.
  1323     // class sun.misc.DownloadManager;
  1324     // public static String getBootClassPathEntryForClass(String className);
  1325     JavaCalls::call_static(&result,
  1326                        KlassHandle(THREAD, dlm),
  1327                        vmSymbols::getBootClassPathEntryForClass_name(),
  1328                        vmSymbols::string_string_signature(),
  1329                        class_string,
  1330                        CHECK_(nk));
  1332     // Get result.string and add to bootclasspath
  1333     assert(result.get_type() == T_OBJECT, "just checking");
  1334     oop obj = (oop) result.get_jobject();
  1335     if (obj == NULL) { return nk; }
  1337     Handle h_obj(THREAD, obj);
  1338     char* new_class_name = java_lang_String::as_platform_dependent_str(h_obj,
  1339                                                                   CHECK_(nk));
  1341     // lock the loader
  1342     // we use this lock because JVMTI does.
  1343     Handle loader_lock(THREAD, SystemDictionary::system_loader_lock());
  1345     ObjectLocker ol(loader_lock, THREAD);
  1346     // add the file to the bootclasspath
  1347     ClassLoader::update_class_path_entry_list(new_class_name, true);
  1348   } // end HandleMark
  1350   if (TraceClassLoading) {
  1351     ClassLoader::print_bootclasspath();
  1353   return ClassLoader::load_classfile(class_name, CHECK_(nk));
  1355 #endif // KERNEL
  1358 instanceKlassHandle SystemDictionary::load_instance_class(Symbol* class_name, Handle class_loader, TRAPS) {
  1359   instanceKlassHandle nh = instanceKlassHandle(); // null Handle
  1360   if (class_loader.is_null()) {
  1362     // Search the shared system dictionary for classes preloaded into the
  1363     // shared spaces.
  1364     instanceKlassHandle k;
  1366       PerfTraceTime vmtimer(ClassLoader::perf_shared_classload_time());
  1367       k = load_shared_class(class_name, class_loader, THREAD);
  1370     if (k.is_null()) {
  1371       // Use VM class loader
  1372       PerfTraceTime vmtimer(ClassLoader::perf_sys_classload_time());
  1373       k = ClassLoader::load_classfile(class_name, CHECK_(nh));
  1376 #ifdef KERNEL
  1377     // If the VM class loader has failed to load the class, call the
  1378     // DownloadManager class to make it magically appear on the classpath
  1379     // and try again.  This is only configured with the Kernel VM.
  1380     if (k.is_null()) {
  1381       k = download_and_retry_class_load(class_name, CHECK_(nh));
  1383 #endif // KERNEL
  1385     // find_or_define_instance_class may return a different InstanceKlass
  1386     if (!k.is_null()) {
  1387       k = find_or_define_instance_class(class_name, class_loader, k, CHECK_(nh));
  1389     return k;
  1390   } else {
  1391     // Use user specified class loader to load class. Call loadClass operation on class_loader.
  1392     ResourceMark rm(THREAD);
  1394     assert(THREAD->is_Java_thread(), "must be a JavaThread");
  1395     JavaThread* jt = (JavaThread*) THREAD;
  1397     PerfClassTraceTime vmtimer(ClassLoader::perf_app_classload_time(),
  1398                                ClassLoader::perf_app_classload_selftime(),
  1399                                ClassLoader::perf_app_classload_count(),
  1400                                jt->get_thread_stat()->perf_recursion_counts_addr(),
  1401                                jt->get_thread_stat()->perf_timers_addr(),
  1402                                PerfClassTraceTime::CLASS_LOAD);
  1404     Handle s = java_lang_String::create_from_symbol(class_name, CHECK_(nh));
  1405     // Translate to external class name format, i.e., convert '/' chars to '.'
  1406     Handle string = java_lang_String::externalize_classname(s, CHECK_(nh));
  1408     JavaValue result(T_OBJECT);
  1410     KlassHandle spec_klass (THREAD, SystemDictionary::ClassLoader_klass());
  1412     // Call public unsynchronized loadClass(String) directly for all class loaders
  1413     // for parallelCapable class loaders. JDK >=7, loadClass(String, boolean) will
  1414     // acquire a class-name based lock rather than the class loader object lock.
  1415     // JDK < 7 already acquire the class loader lock in loadClass(String, boolean),
  1416     // so the call to loadClassInternal() was not required.
  1417     //
  1418     // UnsyncloadClass flag means both call loadClass(String) and do
  1419     // not acquire the class loader lock even for class loaders that are
  1420     // not parallelCapable. This was a risky transitional
  1421     // flag for diagnostic purposes only. It is risky to call
  1422     // custom class loaders without synchronization.
  1423     // WARNING If a custom class loader does NOT synchronizer findClass, or callers of
  1424     // findClass, the UnsyncloadClass flag risks unexpected timing bugs in the field.
  1425     // Do NOT assume this will be supported in future releases.
  1426     //
  1427     // Added MustCallLoadClassInternal in case we discover in the field
  1428     // a customer that counts on this call
  1429     if (MustCallLoadClassInternal && has_loadClassInternal()) {
  1430       JavaCalls::call_special(&result,
  1431                               class_loader,
  1432                               spec_klass,
  1433                               vmSymbols::loadClassInternal_name(),
  1434                               vmSymbols::string_class_signature(),
  1435                               string,
  1436                               CHECK_(nh));
  1437     } else {
  1438       JavaCalls::call_virtual(&result,
  1439                               class_loader,
  1440                               spec_klass,
  1441                               vmSymbols::loadClass_name(),
  1442                               vmSymbols::string_class_signature(),
  1443                               string,
  1444                               CHECK_(nh));
  1447     assert(result.get_type() == T_OBJECT, "just checking");
  1448     oop obj = (oop) result.get_jobject();
  1450     // Primitive classes return null since forName() can not be
  1451     // used to obtain any of the Class objects representing primitives or void
  1452     if ((obj != NULL) && !(java_lang_Class::is_primitive(obj))) {
  1453       instanceKlassHandle k =
  1454                 instanceKlassHandle(THREAD, java_lang_Class::as_Klass(obj));
  1455       // For user defined Java class loaders, check that the name returned is
  1456       // the same as that requested.  This check is done for the bootstrap
  1457       // loader when parsing the class file.
  1458       if (class_name == k->name()) {
  1459         return k;
  1462     // Class is not found or has the wrong name, return NULL
  1463     return nh;
  1467 void SystemDictionary::define_instance_class(instanceKlassHandle k, TRAPS) {
  1469   ClassLoaderData* loader_data = k->class_loader_data();
  1470   Handle class_loader_h(THREAD, loader_data->class_loader());
  1472   for (uintx it = 0; it < GCExpandToAllocateDelayMillis; it++){}
  1474  // for bootstrap and other parallel classloaders don't acquire lock,
  1475  // use placeholder token
  1476  // If a parallelCapable class loader calls define_instance_class instead of
  1477  // find_or_define_instance_class to get here, we have a timing
  1478  // hole with systemDictionary updates and check_constraints
  1479  if (!class_loader_h.is_null() && !is_parallelCapable(class_loader_h)) {
  1480     assert(ObjectSynchronizer::current_thread_holds_lock((JavaThread*)THREAD,
  1481          compute_loader_lock_object(class_loader_h, THREAD)),
  1482          "define called without lock");
  1485   // Check class-loading constraints. Throw exception if violation is detected.
  1486   // Grabs and releases SystemDictionary_lock
  1487   // The check_constraints/find_class call and update_dictionary sequence
  1488   // must be "atomic" for a specific class/classloader pair so we never
  1489   // define two different instanceKlasses for that class/classloader pair.
  1490   // Existing classloaders will call define_instance_class with the
  1491   // classloader lock held
  1492   // Parallel classloaders will call find_or_define_instance_class
  1493   // which will require a token to perform the define class
  1494   Symbol*  name_h = k->name();
  1495   unsigned int d_hash = dictionary()->compute_hash(name_h, loader_data);
  1496   int d_index = dictionary()->hash_to_index(d_hash);
  1497   check_constraints(d_index, d_hash, k, class_loader_h, true, CHECK);
  1499   // Add the new class. We need recompile lock during update of CHA.
  1501     unsigned int p_hash = placeholders()->compute_hash(name_h, loader_data);
  1502     int p_index = placeholders()->hash_to_index(p_hash);
  1504     MutexLocker mu_r(Compile_lock, THREAD);
  1506     // Add to class hierarchy, initialize vtables, and do possible
  1507     // deoptimizations.
  1508     add_to_hierarchy(k, CHECK); // No exception, but can block
  1510     // Add to systemDictionary - so other classes can see it.
  1511     // Grabs and releases SystemDictionary_lock
  1512     update_dictionary(d_index, d_hash, p_index, p_hash,
  1513                       k, class_loader_h, THREAD);
  1515   k->eager_initialize(THREAD);
  1517   // notify jvmti
  1518   if (JvmtiExport::should_post_class_load()) {
  1519       assert(THREAD->is_Java_thread(), "thread->is_Java_thread()");
  1520       JvmtiExport::post_class_load((JavaThread *) THREAD, k());
  1525 // Support parallel classloading
  1526 // All parallel class loaders, including bootstrap classloader
  1527 // lock a placeholder entry for this class/class_loader pair
  1528 // to allow parallel defines of different classes for this class loader
  1529 // With AllowParallelDefine flag==true, in case they do not synchronize around
  1530 // FindLoadedClass/DefineClass, calls, we check for parallel
  1531 // loading for them, wait if a defineClass is in progress
  1532 // and return the initial requestor's results
  1533 // This flag does not apply to the bootstrap classloader.
  1534 // With AllowParallelDefine flag==false, call through to define_instance_class
  1535 // which will throw LinkageError: duplicate class definition.
  1536 // False is the requested default.
  1537 // For better performance, the class loaders should synchronize
  1538 // findClass(), i.e. FindLoadedClass/DefineClassIfAbsent or they
  1539 // potentially waste time reading and parsing the bytestream.
  1540 // Note: VM callers should ensure consistency of k/class_name,class_loader
  1541 instanceKlassHandle SystemDictionary::find_or_define_instance_class(Symbol* class_name, Handle class_loader, instanceKlassHandle k, TRAPS) {
  1543   instanceKlassHandle nh = instanceKlassHandle(); // null Handle
  1544   Symbol*  name_h = k->name(); // passed in class_name may be null
  1545   ClassLoaderData* loader_data = class_loader_data(class_loader);
  1547   unsigned int d_hash = dictionary()->compute_hash(name_h, loader_data);
  1548   int d_index = dictionary()->hash_to_index(d_hash);
  1550 // Hold SD lock around find_class and placeholder creation for DEFINE_CLASS
  1551   unsigned int p_hash = placeholders()->compute_hash(name_h, loader_data);
  1552   int p_index = placeholders()->hash_to_index(p_hash);
  1553   PlaceholderEntry* probe;
  1556     MutexLocker mu(SystemDictionary_lock, THREAD);
  1557     // First check if class already defined
  1558     if (UnsyncloadClass || (is_parallelDefine(class_loader))) {
  1559       Klass* check = find_class(d_index, d_hash, name_h, loader_data);
  1560       if (check != NULL) {
  1561         return(instanceKlassHandle(THREAD, check));
  1565     // Acquire define token for this class/classloader
  1566     probe = placeholders()->find_and_add(p_index, p_hash, name_h, loader_data, PlaceholderTable::DEFINE_CLASS, NULL, THREAD);
  1567     // Wait if another thread defining in parallel
  1568     // All threads wait - even those that will throw duplicate class: otherwise
  1569     // caller is surprised by LinkageError: duplicate, but findLoadedClass fails
  1570     // if other thread has not finished updating dictionary
  1571     while (probe->definer() != NULL) {
  1572       SystemDictionary_lock->wait();
  1574     // Only special cases allow parallel defines and can use other thread's results
  1575     // Other cases fall through, and may run into duplicate defines
  1576     // caught by finding an entry in the SystemDictionary
  1577     if ((UnsyncloadClass || is_parallelDefine(class_loader)) && (probe->InstanceKlass() != NULL)) {
  1578         probe->remove_seen_thread(THREAD, PlaceholderTable::DEFINE_CLASS);
  1579         placeholders()->find_and_remove(p_index, p_hash, name_h, loader_data, THREAD);
  1580         SystemDictionary_lock->notify_all();
  1581 #ifdef ASSERT
  1582         Klass* check = find_class(d_index, d_hash, name_h, loader_data);
  1583         assert(check != NULL, "definer missed recording success");
  1584 #endif
  1585         return(instanceKlassHandle(THREAD, probe->InstanceKlass()));
  1586     } else {
  1587       // This thread will define the class (even if earlier thread tried and had an error)
  1588       probe->set_definer(THREAD);
  1592   define_instance_class(k, THREAD);
  1594   Handle linkage_exception = Handle(); // null handle
  1596   // definer must notify any waiting threads
  1598     MutexLocker mu(SystemDictionary_lock, THREAD);
  1599     PlaceholderEntry* probe = placeholders()->get_entry(p_index, p_hash, name_h, loader_data);
  1600     assert(probe != NULL, "DEFINE_CLASS placeholder lost?");
  1601     if (probe != NULL) {
  1602       if (HAS_PENDING_EXCEPTION) {
  1603         linkage_exception = Handle(THREAD,PENDING_EXCEPTION);
  1604         CLEAR_PENDING_EXCEPTION;
  1605       } else {
  1606         probe->set_instanceKlass(k());
  1608       probe->set_definer(NULL);
  1609       probe->remove_seen_thread(THREAD, PlaceholderTable::DEFINE_CLASS);
  1610       placeholders()->find_and_remove(p_index, p_hash, name_h, loader_data, THREAD);
  1611       SystemDictionary_lock->notify_all();
  1615   // Can't throw exception while holding lock due to rank ordering
  1616   if (linkage_exception() != NULL) {
  1617     THROW_OOP_(linkage_exception(), nh); // throws exception and returns
  1620   return k;
  1622 Handle SystemDictionary::compute_loader_lock_object(Handle class_loader, TRAPS) {
  1623   // If class_loader is NULL we synchronize on _system_loader_lock_obj
  1624   if (class_loader.is_null()) {
  1625     return Handle(THREAD, _system_loader_lock_obj);
  1626   } else {
  1627     return class_loader;
  1631 // This method is added to check how often we have to wait to grab loader
  1632 // lock. The results are being recorded in the performance counters defined in
  1633 // ClassLoader::_sync_systemLoaderLockContentionRate and
  1634 // ClassLoader::_sync_nonSystemLoaderLockConteionRate.
  1635 void SystemDictionary::check_loader_lock_contention(Handle loader_lock, TRAPS) {
  1636   if (!UsePerfData) {
  1637     return;
  1640   assert(!loader_lock.is_null(), "NULL lock object");
  1642   if (ObjectSynchronizer::query_lock_ownership((JavaThread*)THREAD, loader_lock)
  1643       == ObjectSynchronizer::owner_other) {
  1644     // contention will likely happen, so increment the corresponding
  1645     // contention counter.
  1646     if (loader_lock() == _system_loader_lock_obj) {
  1647       ClassLoader::sync_systemLoaderLockContentionRate()->inc();
  1648     } else {
  1649       ClassLoader::sync_nonSystemLoaderLockContentionRate()->inc();
  1654 // ----------------------------------------------------------------------------
  1655 // Lookup
  1657 Klass* SystemDictionary::find_class(int index, unsigned int hash,
  1658                                       Symbol* class_name,
  1659                                       ClassLoaderData* loader_data) {
  1660   assert_locked_or_safepoint(SystemDictionary_lock);
  1661   assert (index == dictionary()->index_for(class_name, loader_data),
  1662           "incorrect index?");
  1664   Klass* k = dictionary()->find_class(index, hash, class_name, loader_data);
  1665   return k;
  1669 // Basic find on classes in the midst of being loaded
  1670 Symbol* SystemDictionary::find_placeholder(Symbol* class_name,
  1671                                            ClassLoaderData* loader_data) {
  1672   assert_locked_or_safepoint(SystemDictionary_lock);
  1673   unsigned int p_hash = placeholders()->compute_hash(class_name, loader_data);
  1674   int p_index = placeholders()->hash_to_index(p_hash);
  1675   return placeholders()->find_entry(p_index, p_hash, class_name, loader_data);
  1679 // Used for assertions and verification only
  1680 Klass* SystemDictionary::find_class(Symbol* class_name, ClassLoaderData* loader_data) {
  1681   #ifndef ASSERT
  1682   guarantee(VerifyBeforeGC   ||
  1683             VerifyDuringGC   ||
  1684             VerifyBeforeExit ||
  1685             VerifyAfterGC, "too expensive");
  1686   #endif
  1687   assert_locked_or_safepoint(SystemDictionary_lock);
  1689   // First look in the loaded class array
  1690   unsigned int d_hash = dictionary()->compute_hash(class_name, loader_data);
  1691   int d_index = dictionary()->hash_to_index(d_hash);
  1692   return find_class(d_index, d_hash, class_name, loader_data);
  1696 // Get the next class in the diictionary.
  1697 Klass* SystemDictionary::try_get_next_class() {
  1698   return dictionary()->try_get_next_class();
  1702 // ----------------------------------------------------------------------------
  1703 // Update hierachy. This is done before the new klass has been added to the SystemDictionary. The Recompile_lock
  1704 // is held, to ensure that the compiler is not using the class hierachy, and that deoptimization will kick in
  1705 // before a new class is used.
  1707 void SystemDictionary::add_to_hierarchy(instanceKlassHandle k, TRAPS) {
  1708   assert(k.not_null(), "just checking");
  1709   assert_locked_or_safepoint(Compile_lock);
  1711   // Link into hierachy. Make sure the vtables are initialized before linking into
  1712   k->append_to_sibling_list();                    // add to superklass/sibling list
  1713   k->process_interfaces(THREAD);                  // handle all "implements" declarations
  1714   k->set_init_state(InstanceKlass::loaded);
  1715   // Now flush all code that depended on old class hierarchy.
  1716   // Note: must be done *after* linking k into the hierarchy (was bug 12/9/97)
  1717   // Also, first reinitialize vtable because it may have gotten out of synch
  1718   // while the new class wasn't connected to the class hierarchy.
  1719   Universe::flush_dependents_on(k);
  1723 // ----------------------------------------------------------------------------
  1724 // GC support
  1726 // Following roots during mark-sweep is separated in two phases.
  1727 //
  1728 // The first phase follows preloaded classes and all other system
  1729 // classes, since these will never get unloaded anyway.
  1730 //
  1731 // The second phase removes (unloads) unreachable classes from the
  1732 // system dictionary and follows the remaining classes' contents.
  1734 void SystemDictionary::always_strong_oops_do(OopClosure* blk) {
  1735   blk->do_oop(&_java_system_loader);
  1736   blk->do_oop(&_system_loader_lock_obj);
  1738   dictionary()->always_strong_oops_do(blk);
  1741 void SystemDictionary::always_strong_classes_do(KlassClosure* closure) {
  1742   // Follow all system classes and temporary placeholders in dictionary
  1743   dictionary()->always_strong_classes_do(closure);
  1745   // Placeholders. These represent classes we're actively loading.
  1746   placeholders()->classes_do(closure);
  1749 // Calculate a "good" systemdictionary size based
  1750 // on predicted or current loaded classes count
  1751 int SystemDictionary::calculate_systemdictionary_size(int classcount) {
  1752   int newsize = _old_default_sdsize;
  1753   if ((classcount > 0)  && !DumpSharedSpaces) {
  1754     int desiredsize = classcount/_average_depth_goal;
  1755     for (newsize = _primelist[_sdgeneration]; _sdgeneration < _prime_array_size -1;
  1756          newsize = _primelist[++_sdgeneration]) {
  1757       if (desiredsize <=  newsize) {
  1758         break;
  1762   return newsize;
  1764 bool SystemDictionary::do_unloading(BoolObjectClosure* is_alive) {
  1765   // First, mark for unload all ClassLoaderData referencing a dead class loader.
  1766   bool has_dead_loaders = ClassLoaderDataGraph::do_unloading(is_alive);
  1767   bool unloading_occurred = false;
  1768   if (has_dead_loaders) {
  1769     unloading_occurred = dictionary()->do_unloading();
  1770     constraints()->purge_loader_constraints();
  1771     resolution_errors()->purge_resolution_errors();
  1773   return unloading_occurred;
  1776 void SystemDictionary::oops_do(OopClosure* f) {
  1777   f->do_oop(&_java_system_loader);
  1778   f->do_oop(&_system_loader_lock_obj);
  1780   // Adjust dictionary
  1781   dictionary()->oops_do(f);
  1783   // Visit extra methods
  1784   invoke_method_table()->oops_do(f);
  1787 // Extended Class redefinition support.
  1788 // If one of these classes is replaced, we need to replace it in these places.
  1789 // KlassClosure::do_klass should take the address of a class but we can
  1790 // change that later.
  1791 void SystemDictionary::preloaded_classes_do(KlassClosure* f) {
  1792   for (int k = (int)FIRST_WKID; k < (int)WKID_LIMIT; k++) {
  1793     f->do_klass(_well_known_klasses[k]);
  1797     for (int i = 0; i < T_VOID+1; i++) {
  1798       if (_box_klasses[i] != NULL) {
  1799         assert(i >= T_BOOLEAN, "checking");
  1800         f->do_klass(_box_klasses[i]);
  1805   FilteredFieldsMap::classes_do(f);
  1808 void SystemDictionary::lazily_loaded_classes_do(KlassClosure* f) {
  1809   f->do_klass(_abstract_ownable_synchronizer_klass);
  1812 // Just the classes from defining class loaders
  1813 // Don't iterate over placeholders
  1814 void SystemDictionary::classes_do(void f(Klass*)) {
  1815   dictionary()->classes_do(f);
  1818 // Added for initialize_itable_for_klass
  1819 //   Just the classes from defining class loaders
  1820 // Don't iterate over placeholders
  1821 void SystemDictionary::classes_do(void f(Klass*, TRAPS), TRAPS) {
  1822   dictionary()->classes_do(f, CHECK);
  1825 //   All classes, and their class loaders
  1826 // Don't iterate over placeholders
  1827 void SystemDictionary::classes_do(void f(Klass*, ClassLoaderData*)) {
  1828   dictionary()->classes_do(f);
  1831 //   All classes, and their class loaders
  1832 //   (added for helpers that use HandleMarks and ResourceMarks)
  1833 // Don't iterate over placeholders
  1834 void SystemDictionary::classes_do(void f(Klass*, ClassLoaderData*, TRAPS), TRAPS) {
  1835   dictionary()->classes_do(f, CHECK);
  1838 void SystemDictionary::placeholders_do(void f(Symbol*)) {
  1839   placeholders()->entries_do(f);
  1842 void SystemDictionary::methods_do(void f(Method*)) {
  1843   dictionary()->methods_do(f);
  1844   invoke_method_table()->methods_do(f);
  1847 // ----------------------------------------------------------------------------
  1848 // Lazily load klasses
  1850 void SystemDictionary::load_abstract_ownable_synchronizer_klass(TRAPS) {
  1851   assert(JDK_Version::is_gte_jdk16x_version(), "Must be JDK 1.6 or later");
  1853   // if multiple threads calling this function, only one thread will load
  1854   // the class.  The other threads will find the loaded version once the
  1855   // class is loaded.
  1856   Klass* aos = _abstract_ownable_synchronizer_klass;
  1857   if (aos == NULL) {
  1858     Klass* k = resolve_or_fail(vmSymbols::java_util_concurrent_locks_AbstractOwnableSynchronizer(), true, CHECK);
  1859     // Force a fence to prevent any read before the write completes
  1860     OrderAccess::fence();
  1861     _abstract_ownable_synchronizer_klass = k;
  1865 // ----------------------------------------------------------------------------
  1866 // Initialization
  1868 void SystemDictionary::initialize(TRAPS) {
  1869   // Allocate arrays
  1870   assert(dictionary() == NULL,
  1871          "SystemDictionary should only be initialized once");
  1872   _sdgeneration        = 0;
  1873   _dictionary          = new Dictionary(calculate_systemdictionary_size(PredictedLoadedClassCount));
  1874   _placeholders        = new PlaceholderTable(_nof_buckets);
  1875   _number_of_modifications = 0;
  1876   _loader_constraints  = new LoaderConstraintTable(_loader_constraint_size);
  1877   _resolution_errors   = new ResolutionErrorTable(_resolution_error_size);
  1878   _invoke_method_table = new SymbolPropertyTable(_invoke_method_size);
  1880   // Allocate private object used as system class loader lock
  1881   _system_loader_lock_obj = oopFactory::new_intArray(0, CHECK);
  1882   // Initialize basic classes
  1883   initialize_preloaded_classes(CHECK);
  1886 // Compact table of directions on the initialization of klasses:
  1887 static const short wk_init_info[] = {
  1888   #define WK_KLASS_INIT_INFO(name, symbol, option) \
  1889     ( ((int)vmSymbols::VM_SYMBOL_ENUM_NAME(symbol) \
  1890           << SystemDictionary::CEIL_LG_OPTION_LIMIT) \
  1891       | (int)SystemDictionary::option ),
  1892   WK_KLASSES_DO(WK_KLASS_INIT_INFO)
  1893   #undef WK_KLASS_INIT_INFO
  1895 };
  1897 bool SystemDictionary::initialize_wk_klass(WKID id, int init_opt, TRAPS) {
  1898   assert(id >= (int)FIRST_WKID && id < (int)WKID_LIMIT, "oob");
  1899   int  info = wk_init_info[id - FIRST_WKID];
  1900   int  sid  = (info >> CEIL_LG_OPTION_LIMIT);
  1901   Symbol* symbol = vmSymbols::symbol_at((vmSymbols::SID)sid);
  1902   Klass**    klassp = &_well_known_klasses[id];
  1903   bool must_load = (init_opt < SystemDictionary::Opt);
  1904   bool try_load  = true;
  1905   if (init_opt == SystemDictionary::Opt_Kernel) {
  1906 #ifndef KERNEL
  1907     try_load = false;
  1908 #endif //KERNEL
  1910   if ((*klassp) == NULL && try_load) {
  1911     if (must_load) {
  1912       (*klassp) = resolve_or_fail(symbol, true, CHECK_0); // load required class
  1913     } else {
  1914       (*klassp) = resolve_or_null(symbol,       CHECK_0); // load optional klass
  1917   return ((*klassp) != NULL);
  1920 void SystemDictionary::initialize_wk_klasses_until(WKID limit_id, WKID &start_id, TRAPS) {
  1921   assert((int)start_id <= (int)limit_id, "IDs are out of order!");
  1922   for (int id = (int)start_id; id < (int)limit_id; id++) {
  1923     assert(id >= (int)FIRST_WKID && id < (int)WKID_LIMIT, "oob");
  1924     int info = wk_init_info[id - FIRST_WKID];
  1925     int sid  = (info >> CEIL_LG_OPTION_LIMIT);
  1926     int opt  = (info & right_n_bits(CEIL_LG_OPTION_LIMIT));
  1928     initialize_wk_klass((WKID)id, opt, CHECK);
  1930     // Update limits, so find_well_known_klass can be very fast:
  1931     Symbol* s = vmSymbols::symbol_at((vmSymbols::SID)sid);
  1932     if (wk_klass_name_limits[1] == NULL) {
  1933       wk_klass_name_limits[0] = wk_klass_name_limits[1] = s;
  1934     } else if (wk_klass_name_limits[1] < s) {
  1935       wk_klass_name_limits[1] = s;
  1936     } else if (wk_klass_name_limits[0] > s) {
  1937       wk_klass_name_limits[0] = s;
  1941   // move the starting value forward to the limit:
  1942   start_id = limit_id;
  1946 void SystemDictionary::initialize_preloaded_classes(TRAPS) {
  1947   assert(WK_KLASS(Object_klass) == NULL, "preloaded classes should only be initialized once");
  1948   // Preload commonly used klasses
  1949   WKID scan = FIRST_WKID;
  1950   // first do Object, then String, Class
  1951   if (UseSharedSpaces) {
  1952     initialize_wk_klasses_through(WK_KLASS_ENUM_NAME(Object_klass), scan, CHECK);
  1953     // Initialize the constant pool for the Object_class
  1954     InstanceKlass* ik = InstanceKlass::cast(Object_klass());
  1955     ik->constants()->restore_unshareable_info(CHECK);
  1956   initialize_wk_klasses_through(WK_KLASS_ENUM_NAME(Class_klass), scan, CHECK);
  1957   } else {
  1958     initialize_wk_klasses_through(WK_KLASS_ENUM_NAME(Class_klass), scan, CHECK);
  1961   // Calculate offsets for String and Class classes since they are loaded and
  1962   // can be used after this point.
  1963   java_lang_String::compute_offsets();
  1964   java_lang_Class::compute_offsets();
  1966   // Fixup mirrors for classes loaded before java.lang.Class.
  1967   // These calls iterate over the objects currently in the perm gen
  1968   // so calling them at this point is matters (not before when there
  1969   // are fewer objects and not later after there are more objects
  1970   // in the perm gen.
  1971   Universe::initialize_basic_type_mirrors(CHECK);
  1972   Universe::fixup_mirrors(CHECK);
  1974   // do a bunch more:
  1975   initialize_wk_klasses_through(WK_KLASS_ENUM_NAME(Reference_klass), scan, CHECK);
  1977   // Preload ref klasses and set reference types
  1978   InstanceKlass::cast(WK_KLASS(Reference_klass))->set_reference_type(REF_OTHER);
  1979   instanceRefKlass::update_nonstatic_oop_maps(WK_KLASS(Reference_klass));
  1981   initialize_wk_klasses_through(WK_KLASS_ENUM_NAME(PhantomReference_klass), scan, CHECK);
  1982   InstanceKlass::cast(WK_KLASS(SoftReference_klass))->set_reference_type(REF_SOFT);
  1983   InstanceKlass::cast(WK_KLASS(WeakReference_klass))->set_reference_type(REF_WEAK);
  1984   InstanceKlass::cast(WK_KLASS(FinalReference_klass))->set_reference_type(REF_FINAL);
  1985   InstanceKlass::cast(WK_KLASS(PhantomReference_klass))->set_reference_type(REF_PHANTOM);
  1987   // JSR 292 classes
  1988   WKID jsr292_group_start = WK_KLASS_ENUM_NAME(MethodHandle_klass);
  1989   WKID jsr292_group_end   = WK_KLASS_ENUM_NAME(VolatileCallSite_klass);
  1990   initialize_wk_klasses_until(jsr292_group_start, scan, CHECK);
  1991   if (EnableInvokeDynamic) {
  1992     initialize_wk_klasses_through(jsr292_group_end, scan, CHECK);
  1993   } else {
  1994     // Skip the JSR 292 classes, if not enabled.
  1995     scan = WKID(jsr292_group_end + 1);
  1998   initialize_wk_klasses_until(WKID_LIMIT, scan, CHECK);
  2000   _box_klasses[T_BOOLEAN] = WK_KLASS(Boolean_klass);
  2001   _box_klasses[T_CHAR]    = WK_KLASS(Character_klass);
  2002   _box_klasses[T_FLOAT]   = WK_KLASS(Float_klass);
  2003   _box_klasses[T_DOUBLE]  = WK_KLASS(Double_klass);
  2004   _box_klasses[T_BYTE]    = WK_KLASS(Byte_klass);
  2005   _box_klasses[T_SHORT]   = WK_KLASS(Short_klass);
  2006   _box_klasses[T_INT]     = WK_KLASS(Integer_klass);
  2007   _box_klasses[T_LONG]    = WK_KLASS(Long_klass);
  2008   //_box_klasses[T_OBJECT]  = WK_KLASS(object_klass);
  2009   //_box_klasses[T_ARRAY]   = WK_KLASS(object_klass);
  2011 #ifdef KERNEL
  2012   if (DownloadManager_klass() == NULL) {
  2013     warning("Cannot find sun/jkernel/DownloadManager");
  2015 #endif // KERNEL
  2017   { // Compute whether we should use loadClass or loadClassInternal when loading classes.
  2018     Method* method = InstanceKlass::cast(ClassLoader_klass())->find_method(vmSymbols::loadClassInternal_name(), vmSymbols::string_class_signature());
  2019     _has_loadClassInternal = (method != NULL);
  2021   { // Compute whether we should use checkPackageAccess or NOT
  2022     Method* method = InstanceKlass::cast(ClassLoader_klass())->find_method(vmSymbols::checkPackageAccess_name(), vmSymbols::class_protectiondomain_signature());
  2023     _has_checkPackageAccess = (method != NULL);
  2027 // Tells if a given klass is a box (wrapper class, such as java.lang.Integer).
  2028 // If so, returns the basic type it holds.  If not, returns T_OBJECT.
  2029 BasicType SystemDictionary::box_klass_type(Klass* k) {
  2030   assert(k != NULL, "");
  2031   for (int i = T_BOOLEAN; i < T_VOID+1; i++) {
  2032     if (_box_klasses[i] == k)
  2033       return (BasicType)i;
  2035   return T_OBJECT;
  2038 // Constraints on class loaders. The details of the algorithm can be
  2039 // found in the OOPSLA'98 paper "Dynamic Class Loading in the Java
  2040 // Virtual Machine" by Sheng Liang and Gilad Bracha.  The basic idea is
  2041 // that the system dictionary needs to maintain a set of contraints that
  2042 // must be satisfied by all classes in the dictionary.
  2043 // if defining is true, then LinkageError if already in systemDictionary
  2044 // if initiating loader, then ok if InstanceKlass matches existing entry
  2046 void SystemDictionary::check_constraints(int d_index, unsigned int d_hash,
  2047                                          instanceKlassHandle k,
  2048                                          Handle class_loader, bool defining,
  2049                                          TRAPS) {
  2050   const char *linkage_error = NULL;
  2052     Symbol*  name  = k->name();
  2053     ClassLoaderData *loader_data = class_loader_data(class_loader);
  2055     MutexLocker mu(SystemDictionary_lock, THREAD);
  2057     Klass* check = find_class(d_index, d_hash, name, loader_data);
  2058     if (check != (Klass*)NULL) {
  2059       // if different InstanceKlass - duplicate class definition,
  2060       // else - ok, class loaded by a different thread in parallel,
  2061       // we should only have found it if it was done loading and ok to use
  2062       // system dictionary only holds instance classes, placeholders
  2063       // also holds array classes
  2065       assert(check->oop_is_instance(), "noninstance in systemdictionary");
  2066       if ((defining == true) || (k() != check)) {
  2067         linkage_error = "loader (instance of  %s): attempted  duplicate class "
  2068           "definition for name: \"%s\"";
  2069       } else {
  2070         return;
  2074 #ifdef ASSERT
  2075     Symbol* ph_check = find_placeholder(name, loader_data);
  2076     assert(ph_check == NULL || ph_check == name, "invalid symbol");
  2077 #endif
  2079     if (linkage_error == NULL) {
  2080       if (constraints()->check_or_update(k, class_loader, name) == false) {
  2081         linkage_error = "loader constraint violation: loader (instance of %s)"
  2082           " previously initiated loading for a different type with name \"%s\"";
  2087   // Throw error now if needed (cannot throw while holding
  2088   // SystemDictionary_lock because of rank ordering)
  2090   if (linkage_error) {
  2091     ResourceMark rm(THREAD);
  2092     const char* class_loader_name = loader_name(class_loader());
  2093     char* type_name = k->name()->as_C_string();
  2094     size_t buflen = strlen(linkage_error) + strlen(class_loader_name) +
  2095       strlen(type_name);
  2096     char* buf = NEW_RESOURCE_ARRAY_IN_THREAD(THREAD, char, buflen);
  2097     jio_snprintf(buf, buflen, linkage_error, class_loader_name, type_name);
  2098     THROW_MSG(vmSymbols::java_lang_LinkageError(), buf);
  2103 // Update system dictionary - done after check_constraint and add_to_hierachy
  2104 // have been called.
  2105 void SystemDictionary::update_dictionary(int d_index, unsigned int d_hash,
  2106                                          int p_index, unsigned int p_hash,
  2107                                          instanceKlassHandle k,
  2108                                          Handle class_loader,
  2109                                          TRAPS) {
  2110   // Compile_lock prevents systemDictionary updates during compilations
  2111   assert_locked_or_safepoint(Compile_lock);
  2112   Symbol*  name  = k->name();
  2113   ClassLoaderData *loader_data = class_loader_data(class_loader);
  2116   MutexLocker mu1(SystemDictionary_lock, THREAD);
  2118   // See whether biased locking is enabled and if so set it for this
  2119   // klass.
  2120   // Note that this must be done past the last potential blocking
  2121   // point / safepoint. We enable biased locking lazily using a
  2122   // VM_Operation to iterate the SystemDictionary and installing the
  2123   // biasable mark word into each InstanceKlass's prototype header.
  2124   // To avoid race conditions where we accidentally miss enabling the
  2125   // optimization for one class in the process of being added to the
  2126   // dictionary, we must not safepoint after the test of
  2127   // BiasedLocking::enabled().
  2128   if (UseBiasedLocking && BiasedLocking::enabled()) {
  2129     // Set biased locking bit for all loaded classes; it will be
  2130     // cleared if revocation occurs too often for this type
  2131     // NOTE that we must only do this when the class is initally
  2132     // defined, not each time it is referenced from a new class loader
  2133     if (k->class_loader() == class_loader()) {
  2134       k->set_prototype_header(markOopDesc::biased_locking_prototype());
  2138   // Assign a classid if one has not already been assigned.  The
  2139   // counter does not need to be atomically incremented since this
  2140   // is only done while holding the SystemDictionary_lock.
  2141   // All loaded classes get a unique ID.
  2142   TRACE_INIT_ID(k);
  2144   // Check for a placeholder. If there, remove it and make a
  2145   // new system dictionary entry.
  2146   placeholders()->find_and_remove(p_index, p_hash, name, loader_data, THREAD);
  2147   Klass* sd_check = find_class(d_index, d_hash, name, loader_data);
  2148   if (sd_check == NULL) {
  2149     dictionary()->add_klass(name, loader_data, k);
  2150     notice_modification();
  2152 #ifdef ASSERT
  2153   sd_check = find_class(d_index, d_hash, name, loader_data);
  2154   assert (sd_check != NULL, "should have entry in system dictionary");
  2155 // Changed to allow PH to remain to complete class circularity checking
  2156 // while only one thread can define a class at one time, multiple
  2157 // classes can resolve the superclass for a class at one time,
  2158 // and the placeholder is used to track that
  2159 //  Symbol* ph_check = find_placeholder(name, class_loader);
  2160 //  assert (ph_check == NULL, "should not have a placeholder entry");
  2161 #endif
  2162     SystemDictionary_lock->notify_all();
  2167 // Try to find a class name using the loader constraints.  The
  2168 // loader constraints might know about a class that isn't fully loaded
  2169 // yet and these will be ignored.
  2170 Klass* SystemDictionary::find_constrained_instance_or_array_klass(
  2171                     Symbol* class_name, Handle class_loader, TRAPS) {
  2173   // First see if it has been loaded directly.
  2174   // Force the protection domain to be null.  (This removes protection checks.)
  2175   Handle no_protection_domain;
  2176   Klass* klass = find_instance_or_array_klass(class_name, class_loader,
  2177                                                 no_protection_domain, CHECK_NULL);
  2178   if (klass != NULL)
  2179     return klass;
  2181   // Now look to see if it has been loaded elsewhere, and is subject to
  2182   // a loader constraint that would require this loader to return the
  2183   // klass that is already loaded.
  2184   if (FieldType::is_array(class_name)) {
  2185     // For array classes, their Klass*s are not kept in the
  2186     // constraint table. The element Klass*s are.
  2187     FieldArrayInfo fd;
  2188     BasicType t = FieldType::get_array_info(class_name, fd, CHECK_(NULL));
  2189     if (t != T_OBJECT) {
  2190       klass = Universe::typeArrayKlassObj(t);
  2191     } else {
  2192       MutexLocker mu(SystemDictionary_lock, THREAD);
  2193       klass = constraints()->find_constrained_klass(fd.object_key(), class_loader);
  2195     // If element class already loaded, allocate array klass
  2196     if (klass != NULL) {
  2197       klass = Klass::cast(klass)->array_klass_or_null(fd.dimension());
  2199   } else {
  2200     MutexLocker mu(SystemDictionary_lock, THREAD);
  2201     // Non-array classes are easy: simply check the constraint table.
  2202     klass = constraints()->find_constrained_klass(class_name, class_loader);
  2205   return klass;
  2209 bool SystemDictionary::add_loader_constraint(Symbol* class_name,
  2210                                              Handle class_loader1,
  2211                                              Handle class_loader2,
  2212                                              Thread* THREAD) {
  2213   ClassLoaderData* loader_data1 = class_loader_data(class_loader1);
  2214   ClassLoaderData* loader_data2 = class_loader_data(class_loader2);
  2216   Symbol* constraint_name = NULL;
  2217   if (!FieldType::is_array(class_name)) {
  2218     constraint_name = class_name;
  2219   } else {
  2220     // For array classes, their Klass*s are not kept in the
  2221     // constraint table. The element classes are.
  2222     FieldArrayInfo fd;
  2223     BasicType t = FieldType::get_array_info(class_name, fd, CHECK_(false));
  2224     // primitive types always pass
  2225     if (t != T_OBJECT) {
  2226       return true;
  2227     } else {
  2228       constraint_name = fd.object_key();
  2231   unsigned int d_hash1 = dictionary()->compute_hash(constraint_name, loader_data1);
  2232   int d_index1 = dictionary()->hash_to_index(d_hash1);
  2234   unsigned int d_hash2 = dictionary()->compute_hash(constraint_name, loader_data2);
  2235   int d_index2 = dictionary()->hash_to_index(d_hash2);
  2237   MutexLocker mu_s(SystemDictionary_lock, THREAD);
  2239   // Better never do a GC while we're holding these oops
  2240   No_Safepoint_Verifier nosafepoint;
  2242   Klass* klass1 = find_class(d_index1, d_hash1, constraint_name, loader_data1);
  2243   Klass* klass2 = find_class(d_index2, d_hash2, constraint_name, loader_data2);
  2244   return constraints()->add_entry(constraint_name, klass1, class_loader1,
  2245                                   klass2, class_loader2);
  2249 // Add entry to resolution error table to record the error when the first
  2250 // attempt to resolve a reference to a class has failed.
  2251 void SystemDictionary::add_resolution_error(constantPoolHandle pool, int which, Symbol* error) {
  2252   unsigned int hash = resolution_errors()->compute_hash(pool, which);
  2253   int index = resolution_errors()->hash_to_index(hash);
  2255     MutexLocker ml(SystemDictionary_lock, Thread::current());
  2256     resolution_errors()->add_entry(index, hash, pool, which, error);
  2260 // Delete a resolution error for RedefineClasses for a constant pool is going away
  2261 void SystemDictionary::delete_resolution_error(ConstantPool* pool) {
  2262   resolution_errors()->delete_entry(pool);
  2265 // Lookup resolution error table. Returns error if found, otherwise NULL.
  2266 Symbol* SystemDictionary::find_resolution_error(constantPoolHandle pool, int which) {
  2267   unsigned int hash = resolution_errors()->compute_hash(pool, which);
  2268   int index = resolution_errors()->hash_to_index(hash);
  2270     MutexLocker ml(SystemDictionary_lock, Thread::current());
  2271     ResolutionErrorEntry* entry = resolution_errors()->find_entry(index, hash, pool, which);
  2272     return (entry != NULL) ? entry->error() : (Symbol*)NULL;
  2277 // Signature constraints ensure that callers and callees agree about
  2278 // the meaning of type names in their signatures.  This routine is the
  2279 // intake for constraints.  It collects them from several places:
  2280 //
  2281 //  * LinkResolver::resolve_method (if check_access is true) requires
  2282 //    that the resolving class (the caller) and the defining class of
  2283 //    the resolved method (the callee) agree on each type in the
  2284 //    method's signature.
  2285 //
  2286 //  * LinkResolver::resolve_interface_method performs exactly the same
  2287 //    checks.
  2288 //
  2289 //  * LinkResolver::resolve_field requires that the constant pool
  2290 //    attempting to link to a field agree with the field's defining
  2291 //    class about the type of the field signature.
  2292 //
  2293 //  * klassVtable::initialize_vtable requires that, when a class
  2294 //    overrides a vtable entry allocated by a superclass, that the
  2295 //    overriding method (i.e., the callee) agree with the superclass
  2296 //    on each type in the method's signature.
  2297 //
  2298 //  * klassItable::initialize_itable requires that, when a class fills
  2299 //    in its itables, for each non-abstract method installed in an
  2300 //    itable, the method (i.e., the callee) agree with the interface
  2301 //    on each type in the method's signature.
  2302 //
  2303 // All those methods have a boolean (check_access, checkconstraints)
  2304 // which turns off the checks.  This is used from specialized contexts
  2305 // such as bootstrapping, dumping, and debugging.
  2306 //
  2307 // No direct constraint is placed between the class and its
  2308 // supertypes.  Constraints are only placed along linked relations
  2309 // between callers and callees.  When a method overrides or implements
  2310 // an abstract method in a supertype (superclass or interface), the
  2311 // constraints are placed as if the supertype were the caller to the
  2312 // overriding method.  (This works well, since callers to the
  2313 // supertype have already established agreement between themselves and
  2314 // the supertype.)  As a result of all this, a class can disagree with
  2315 // its supertype about the meaning of a type name, as long as that
  2316 // class neither calls a relevant method of the supertype, nor is
  2317 // called (perhaps via an override) from the supertype.
  2318 //
  2319 //
  2320 // SystemDictionary::check_signature_loaders(sig, l1, l2)
  2321 //
  2322 // Make sure all class components (including arrays) in the given
  2323 // signature will be resolved to the same class in both loaders.
  2324 // Returns the name of the type that failed a loader constraint check, or
  2325 // NULL if no constraint failed. The returned C string needs cleaning up
  2326 // with a ResourceMark in the caller.  No exception except OOME is thrown.
  2327 // Arrays are not added to the loader constraint table, their elements are.
  2328 char* SystemDictionary::check_signature_loaders(Symbol* signature,
  2329                                                Handle loader1, Handle loader2,
  2330                                                bool is_method, TRAPS)  {
  2331   // Nothing to do if loaders are the same.
  2332   if (loader1() == loader2()) {
  2333     return NULL;
  2336   ResourceMark rm(THREAD);
  2337   SignatureStream sig_strm(signature, is_method);
  2338   while (!sig_strm.is_done()) {
  2339     if (sig_strm.is_object()) {
  2340       Symbol* s = sig_strm.as_symbol(CHECK_NULL);
  2341       Symbol*  sig  = s;
  2342       if (!add_loader_constraint(sig, loader1, loader2, THREAD)) {
  2343         return sig->as_C_string();
  2346     sig_strm.next();
  2348   return NULL;
  2352 methodHandle SystemDictionary::find_method_handle_intrinsic(vmIntrinsics::ID iid,
  2353                                                             Symbol* signature,
  2354                                                             TRAPS) {
  2355   methodHandle empty;
  2356   assert(EnableInvokeDynamic, "");
  2357   assert(MethodHandles::is_signature_polymorphic(iid) &&
  2358          MethodHandles::is_signature_polymorphic_intrinsic(iid) &&
  2359          iid != vmIntrinsics::_invokeGeneric,
  2360          err_msg("must be a known MH intrinsic iid=%d: %s", iid, vmIntrinsics::name_at(iid)));
  2362   unsigned int hash  = invoke_method_table()->compute_hash(signature, iid);
  2363   int          index = invoke_method_table()->hash_to_index(hash);
  2364   SymbolPropertyEntry* spe = invoke_method_table()->find_entry(index, hash, signature, iid);
  2365   methodHandle m;
  2366   if (spe == NULL || spe->method() == NULL) {
  2367     spe = NULL;
  2368     // Must create lots of stuff here, but outside of the SystemDictionary lock.
  2369     m = Method::make_method_handle_intrinsic(iid, signature, CHECK_(empty));
  2370     CompileBroker::compile_method(m, InvocationEntryBci, CompLevel_highest_tier,
  2371                                   methodHandle(), CompileThreshold, "MH", CHECK_(empty));
  2373     // Now grab the lock.  We might have to throw away the new method,
  2374     // if a racing thread has managed to install one at the same time.
  2376       MutexLocker ml(SystemDictionary_lock, THREAD);
  2377       spe = invoke_method_table()->find_entry(index, hash, signature, iid);
  2378       if (spe == NULL)
  2379         spe = invoke_method_table()->add_entry(index, hash, signature, iid);
  2380       if (spe->method() == NULL)
  2381         spe->set_method(m());
  2385   assert(spe != NULL && spe->method() != NULL, "");
  2386   return spe->method();
  2389 // Helper for unpacking the return value from linkMethod and linkCallSite.
  2390 static methodHandle unpack_method_and_appendix(Handle mname,
  2391                                                objArrayHandle appendix_box,
  2392                                                Handle* appendix_result,
  2393                                                TRAPS) {
  2394   methodHandle empty;
  2395   if (mname.not_null()) {
  2396     Metadata* vmtarget = java_lang_invoke_MemberName::vmtarget(mname());
  2397     if (vmtarget != NULL && vmtarget->is_method()) {
  2398       Method* m = (Method*)vmtarget;
  2399       oop appendix = appendix_box->obj_at(0);
  2400       if (TraceMethodHandles) {
  2401     #ifndef PRODUCT
  2402         tty->print("Linked method="INTPTR_FORMAT": ", m);
  2403         m->print();
  2404         if (appendix != NULL) { tty->print("appendix = "); appendix->print(); }
  2405         tty->cr();
  2406     #endif //PRODUCT
  2408       (*appendix_result) = Handle(THREAD, appendix);
  2409       return methodHandle(THREAD, m);
  2412   THROW_MSG_(vmSymbols::java_lang_LinkageError(), "bad value from MethodHandleNatives", empty);
  2413   return empty;
  2416 methodHandle SystemDictionary::find_method_handle_invoker(Symbol* name,
  2417                                                           Symbol* signature,
  2418                                                           KlassHandle accessing_klass,
  2419                                                           Handle* appendix_result,
  2420                                                           TRAPS) {
  2421   methodHandle empty;
  2422   assert(EnableInvokeDynamic, "");
  2423   assert(!THREAD->is_Compiler_thread(), "");
  2424   Handle method_type =
  2425     SystemDictionary::find_method_handle_type(signature, accessing_klass, CHECK_(empty));
  2426   if (false) {  // FIXME: Decide if the Java upcall should resolve signatures.
  2427     method_type = java_lang_String::create_from_symbol(signature, CHECK_(empty));
  2430   KlassHandle  mh_klass = SystemDictionary::MethodHandle_klass();
  2431   int ref_kind = JVM_REF_invokeVirtual;
  2432   Handle name_str = StringTable::intern(name, CHECK_(empty));
  2433   objArrayHandle appendix_box = oopFactory::new_objArray(SystemDictionary::Object_klass(), 1, CHECK_(empty));
  2434   assert(appendix_box->obj_at(0) == NULL, "");
  2436   // call java.lang.invoke.MethodHandleNatives::linkMethod(... String, MethodType) -> MemberName
  2437   JavaCallArguments args;
  2438   args.push_oop(accessing_klass()->java_mirror());
  2439   args.push_int(ref_kind);
  2440   args.push_oop(mh_klass()->java_mirror());
  2441   args.push_oop(name_str());
  2442   args.push_oop(method_type());
  2443   args.push_oop(appendix_box());
  2444   JavaValue result(T_OBJECT);
  2445   JavaCalls::call_static(&result,
  2446                          SystemDictionary::MethodHandleNatives_klass(),
  2447                          vmSymbols::linkMethod_name(),
  2448                          vmSymbols::linkMethod_signature(),
  2449                          &args, CHECK_(empty));
  2450   Handle mname(THREAD, (oop) result.get_jobject());
  2451   return unpack_method_and_appendix(mname, appendix_box, appendix_result, THREAD);
  2455 // Ask Java code to find or construct a java.lang.invoke.MethodType for the given
  2456 // signature, as interpreted relative to the given class loader.
  2457 // Because of class loader constraints, all method handle usage must be
  2458 // consistent with this loader.
  2459 Handle SystemDictionary::find_method_handle_type(Symbol* signature,
  2460                                                  KlassHandle accessing_klass,
  2461                                                  TRAPS) {
  2462   Handle empty;
  2463   vmIntrinsics::ID null_iid = vmIntrinsics::_none;  // distinct from all method handle invoker intrinsics
  2464   unsigned int hash  = invoke_method_table()->compute_hash(signature, null_iid);
  2465   int          index = invoke_method_table()->hash_to_index(hash);
  2466   SymbolPropertyEntry* spe = invoke_method_table()->find_entry(index, hash, signature, null_iid);
  2467   if (spe != NULL && spe->method_type() != NULL) {
  2468     assert(java_lang_invoke_MethodType::is_instance(spe->method_type()), "");
  2469     return Handle(THREAD, spe->method_type());
  2470   } else if (THREAD->is_Compiler_thread()) {
  2471     warning("SystemDictionary::find_method_handle_type called from compiler thread");  // FIXME
  2472     return Handle();  // do not attempt from within compiler, unless it was cached
  2475   Handle class_loader, protection_domain;
  2476   bool is_on_bcp = true;  // keep this true as long as we can materialize from the boot classloader
  2477   int npts = ArgumentCount(signature).size();
  2478   objArrayHandle pts = oopFactory::new_objArray(SystemDictionary::Class_klass(), npts, CHECK_(empty));
  2479   int arg = 0;
  2480   Handle rt;                            // the return type from the signature
  2481   ResourceMark rm(THREAD);
  2482   for (SignatureStream ss(signature); !ss.is_done(); ss.next()) {
  2483     oop mirror = NULL;
  2484     if (is_on_bcp) {
  2485       // Note:  class_loader & protection_domain are both null at this point.
  2486       mirror = ss.as_java_mirror(class_loader, protection_domain,
  2487                                  SignatureStream::ReturnNull, CHECK_(empty));
  2488       if (mirror == NULL) {
  2489         // fall back from BCP to accessing_klass
  2490         if (accessing_klass.not_null()) {
  2491           class_loader      = Handle(THREAD, InstanceKlass::cast(accessing_klass())->class_loader());
  2492           protection_domain = Handle(THREAD, InstanceKlass::cast(accessing_klass())->protection_domain());
  2494         is_on_bcp = false;
  2497     if (!is_on_bcp) {
  2498       // Resolve, throwing a real error if it doesn't work.
  2499       mirror = ss.as_java_mirror(class_loader, protection_domain,
  2500                                  SignatureStream::NCDFError, CHECK_(empty));
  2502     if (ss.at_return_type())
  2503       rt = Handle(THREAD, mirror);
  2504     else
  2505       pts->obj_at_put(arg++, mirror);
  2507     // Check accessibility.
  2508     if (ss.is_object() && accessing_klass.not_null()) {
  2509       Klass* sel_klass = java_lang_Class::as_Klass(mirror);
  2510       mirror = NULL;  // safety
  2511       // Emulate ConstantPool::verify_constant_pool_resolve.
  2512       if (Klass::cast(sel_klass)->oop_is_objArray())
  2513         sel_klass = objArrayKlass::cast(sel_klass)->bottom_klass();
  2514       if (Klass::cast(sel_klass)->oop_is_instance()) {
  2515         KlassHandle sel_kh(THREAD, sel_klass);
  2516         LinkResolver::check_klass_accessability(accessing_klass, sel_kh, CHECK_(empty));
  2520   assert(arg == npts, "");
  2522   // call java.lang.invoke.MethodHandleNatives::findMethodType(Class rt, Class[] pts) -> MethodType
  2523   JavaCallArguments args(Handle(THREAD, rt()));
  2524   args.push_oop(pts());
  2525   JavaValue result(T_OBJECT);
  2526   JavaCalls::call_static(&result,
  2527                          SystemDictionary::MethodHandleNatives_klass(),
  2528                          vmSymbols::findMethodHandleType_name(),
  2529                          vmSymbols::findMethodHandleType_signature(),
  2530                          &args, CHECK_(empty));
  2531   Handle method_type(THREAD, (oop) result.get_jobject());
  2533   if (is_on_bcp) {
  2534     // We can cache this MethodType inside the JVM.
  2535     MutexLocker ml(SystemDictionary_lock, THREAD);
  2536     spe = invoke_method_table()->find_entry(index, hash, signature, null_iid);
  2537     if (spe == NULL)
  2538       spe = invoke_method_table()->add_entry(index, hash, signature, null_iid);
  2539     if (spe->method_type() == NULL) {
  2540       spe->set_method_type(method_type());
  2544   // report back to the caller with the MethodType
  2545   return method_type;
  2548 // Ask Java code to find or construct a method handle constant.
  2549 Handle SystemDictionary::link_method_handle_constant(KlassHandle caller,
  2550                                                      int ref_kind, //e.g., JVM_REF_invokeVirtual
  2551                                                      KlassHandle callee,
  2552                                                      Symbol* name_sym,
  2553                                                      Symbol* signature,
  2554                                                      TRAPS) {
  2555   Handle empty;
  2556   Handle name = java_lang_String::create_from_symbol(name_sym, CHECK_(empty));
  2557   Handle type;
  2558   if (signature->utf8_length() > 0 && signature->byte_at(0) == '(') {
  2559     type = find_method_handle_type(signature, caller, CHECK_(empty));
  2560   } else {
  2561     ResourceMark rm(THREAD);
  2562     SignatureStream ss(signature, false);
  2563     if (!ss.is_done()) {
  2564       oop mirror = ss.as_java_mirror(caller->class_loader(), caller->protection_domain(),
  2565                                      SignatureStream::NCDFError, CHECK_(empty));
  2566       type = Handle(THREAD, mirror);
  2567       ss.next();
  2568       if (!ss.is_done())  type = Handle();  // error!
  2571   if (type.is_null()) {
  2572     THROW_MSG_(vmSymbols::java_lang_LinkageError(), "bad signature", empty);
  2575   // call java.lang.invoke.MethodHandleNatives::linkMethodHandleConstant(Class caller, int refKind, Class callee, String name, Object type) -> MethodHandle
  2576   JavaCallArguments args;
  2577   args.push_oop(caller->java_mirror());  // the referring class
  2578   args.push_int(ref_kind);
  2579   args.push_oop(callee->java_mirror());  // the target class
  2580   args.push_oop(name());
  2581   args.push_oop(type());
  2582   JavaValue result(T_OBJECT);
  2583   JavaCalls::call_static(&result,
  2584                          SystemDictionary::MethodHandleNatives_klass(),
  2585                          vmSymbols::linkMethodHandleConstant_name(),
  2586                          vmSymbols::linkMethodHandleConstant_signature(),
  2587                          &args, CHECK_(empty));
  2588   return Handle(THREAD, (oop) result.get_jobject());
  2591 // Ask Java code to find or construct a java.lang.invoke.CallSite for the given
  2592 // name and signature, as interpreted relative to the given class loader.
  2593 methodHandle SystemDictionary::find_dynamic_call_site_invoker(KlassHandle caller,
  2594                                                               Handle bootstrap_specifier,
  2595                                                               Symbol* name,
  2596                                                               Symbol* type,
  2597                                                               Handle* appendix_result,
  2598                                                               TRAPS) {
  2599   methodHandle empty;
  2600   Handle bsm, info;
  2601   if (java_lang_invoke_MethodHandle::is_instance(bootstrap_specifier())) {
  2602     bsm = bootstrap_specifier;
  2603   } else {
  2604     assert(bootstrap_specifier->is_objArray(), "");
  2605     objArrayHandle args(THREAD, (objArrayOop) bootstrap_specifier());
  2606     int len = args->length();
  2607     assert(len >= 1, "");
  2608     bsm = Handle(THREAD, args->obj_at(0));
  2609     if (len > 1) {
  2610       objArrayOop args1 = oopFactory::new_objArray(SystemDictionary::Object_klass(), len-1, CHECK_(empty));
  2611       for (int i = 1; i < len; i++)
  2612         args1->obj_at_put(i-1, args->obj_at(i));
  2613       info = Handle(THREAD, args1);
  2616   guarantee(java_lang_invoke_MethodHandle::is_instance(bsm()),
  2617             "caller must supply a valid BSM");
  2619   Handle method_name = java_lang_String::create_from_symbol(name, CHECK_(empty));
  2620   Handle method_type = find_method_handle_type(type, caller, CHECK_(empty));
  2622   objArrayHandle appendix_box = oopFactory::new_objArray(SystemDictionary::Object_klass(), 1, CHECK_(empty));
  2623   assert(appendix_box->obj_at(0) == NULL, "");
  2625   // call java.lang.invoke.MethodHandleNatives::linkCallSite(caller, bsm, name, mtype, info, &appendix)
  2626   JavaCallArguments args;
  2627   args.push_oop(caller->java_mirror());
  2628   args.push_oop(bsm());
  2629   args.push_oop(method_name());
  2630   args.push_oop(method_type());
  2631   args.push_oop(info());
  2632   args.push_oop(appendix_box);
  2633   JavaValue result(T_OBJECT);
  2634   JavaCalls::call_static(&result,
  2635                          SystemDictionary::MethodHandleNatives_klass(),
  2636                          vmSymbols::linkCallSite_name(),
  2637                          vmSymbols::linkCallSite_signature(),
  2638                          &args, CHECK_(empty));
  2639   Handle mname(THREAD, (oop) result.get_jobject());
  2640   return unpack_method_and_appendix(mname, appendix_box, appendix_result, THREAD);
  2643 // Since the identity hash code for symbols changes when the symbols are
  2644 // moved from the regular perm gen (hash in the mark word) to the shared
  2645 // spaces (hash is the address), the classes loaded into the dictionary
  2646 // may be in the wrong buckets.
  2648 void SystemDictionary::reorder_dictionary() {
  2649   dictionary()->reorder_dictionary();
  2653 void SystemDictionary::copy_buckets(char** top, char* end) {
  2654   dictionary()->copy_buckets(top, end);
  2658 void SystemDictionary::copy_table(char** top, char* end) {
  2659   dictionary()->copy_table(top, end);
  2663 void SystemDictionary::reverse() {
  2664   dictionary()->reverse();
  2667 int SystemDictionary::number_of_classes() {
  2668   return dictionary()->number_of_entries();
  2672 // ----------------------------------------------------------------------------
  2673 #ifndef PRODUCT
  2675 void SystemDictionary::print() {
  2676   dictionary()->print();
  2678   // Placeholders
  2679   GCMutexLocker mu(SystemDictionary_lock);
  2680   placeholders()->print();
  2682   // loader constraints - print under SD_lock
  2683   constraints()->print();
  2686 #endif
  2688 void SystemDictionary::verify() {
  2689   guarantee(dictionary() != NULL, "Verify of system dictionary failed");
  2690   guarantee(constraints() != NULL,
  2691             "Verify of loader constraints failed");
  2692   guarantee(dictionary()->number_of_entries() >= 0 &&
  2693             placeholders()->number_of_entries() >= 0,
  2694             "Verify of system dictionary failed");
  2696   // Verify dictionary
  2697   dictionary()->verify();
  2699   GCMutexLocker mu(SystemDictionary_lock);
  2700   placeholders()->verify();
  2702   // Verify constraint table
  2703   guarantee(constraints() != NULL, "Verify of loader constraints failed");
  2704   constraints()->verify(dictionary(), placeholders());
  2708 void SystemDictionary::verify_obj_klass_present(Symbol* class_name,
  2709                                                 ClassLoaderData* loader_data) {
  2710   GCMutexLocker mu(SystemDictionary_lock);
  2711   Symbol* name;
  2713   Klass* probe = find_class(class_name, loader_data);
  2714   if (probe == NULL) {
  2715     probe = SystemDictionary::find_shared_class(class_name);
  2716     if (probe == NULL) {
  2717       name = find_placeholder(class_name, loader_data);
  2720   guarantee(probe != NULL || name != NULL,
  2721             "Loaded klasses should be in SystemDictionary");
  2724 #ifndef PRODUCT
  2726 // statistics code
  2727 class ClassStatistics: AllStatic {
  2728  private:
  2729   static int nclasses;        // number of classes
  2730   static int nmethods;        // number of methods
  2731   static int nmethoddata;     // number of methodData
  2732   static int class_size;      // size of class objects in words
  2733   static int method_size;     // size of method objects in words
  2734   static int debug_size;      // size of debug info in methods
  2735   static int methoddata_size; // size of methodData objects in words
  2737   static void do_class(Klass* k) {
  2738     nclasses++;
  2739     class_size += k->size();
  2740     if (k->oop_is_instance()) {
  2741       InstanceKlass* ik = (InstanceKlass*)k;
  2742       class_size += ik->methods()->size();
  2743       class_size += ik->constants()->size();
  2744       class_size += ik->local_interfaces()->size();
  2745       class_size += ik->transitive_interfaces()->size();
  2746       // We do not have to count implementors, since we only store one!
  2747       // SSS: How should these be accounted now that they have moved?
  2748       // class_size += ik->fields()->length();
  2752   static void do_method(Method* m) {
  2753     nmethods++;
  2754     method_size += m->size();
  2755     // class loader uses same objArray for empty vectors, so don't count these
  2756     if (m->has_stackmap_table()) {
  2757       method_size += m->stackmap_data()->size();
  2760     MethodData* mdo = m->method_data();
  2761     if (mdo != NULL) {
  2762       nmethoddata++;
  2763       methoddata_size += mdo->size();
  2767  public:
  2768   static void print() {
  2769     SystemDictionary::classes_do(do_class);
  2770     SystemDictionary::methods_do(do_method);
  2771     tty->print_cr("Class statistics:");
  2772     tty->print_cr("%d classes (%d bytes)", nclasses, class_size * oopSize);
  2773     tty->print_cr("%d methods (%d bytes = %d base + %d debug info)", nmethods,
  2774                   (method_size + debug_size) * oopSize, method_size * oopSize, debug_size * oopSize);
  2775     tty->print_cr("%d methoddata (%d bytes)", nmethoddata, methoddata_size * oopSize);
  2777 };
  2780 int ClassStatistics::nclasses        = 0;
  2781 int ClassStatistics::nmethods        = 0;
  2782 int ClassStatistics::nmethoddata     = 0;
  2783 int ClassStatistics::class_size      = 0;
  2784 int ClassStatistics::method_size     = 0;
  2785 int ClassStatistics::debug_size      = 0;
  2786 int ClassStatistics::methoddata_size = 0;
  2788 void SystemDictionary::print_class_statistics() {
  2789   ResourceMark rm;
  2790   ClassStatistics::print();
  2794 class MethodStatistics: AllStatic {
  2795  public:
  2796   enum {
  2797     max_parameter_size = 10
  2798   };
  2799  private:
  2801   static int _number_of_methods;
  2802   static int _number_of_final_methods;
  2803   static int _number_of_static_methods;
  2804   static int _number_of_native_methods;
  2805   static int _number_of_synchronized_methods;
  2806   static int _number_of_profiled_methods;
  2807   static int _number_of_bytecodes;
  2808   static int _parameter_size_profile[max_parameter_size];
  2809   static int _bytecodes_profile[Bytecodes::number_of_java_codes];
  2811   static void initialize() {
  2812     _number_of_methods        = 0;
  2813     _number_of_final_methods  = 0;
  2814     _number_of_static_methods = 0;
  2815     _number_of_native_methods = 0;
  2816     _number_of_synchronized_methods = 0;
  2817     _number_of_profiled_methods = 0;
  2818     _number_of_bytecodes      = 0;
  2819     for (int i = 0; i < max_parameter_size             ; i++) _parameter_size_profile[i] = 0;
  2820     for (int j = 0; j < Bytecodes::number_of_java_codes; j++) _bytecodes_profile     [j] = 0;
  2821   };
  2823   static void do_method(Method* m) {
  2824     _number_of_methods++;
  2825     // collect flag info
  2826     if (m->is_final()       ) _number_of_final_methods++;
  2827     if (m->is_static()      ) _number_of_static_methods++;
  2828     if (m->is_native()      ) _number_of_native_methods++;
  2829     if (m->is_synchronized()) _number_of_synchronized_methods++;
  2830     if (m->method_data() != NULL) _number_of_profiled_methods++;
  2831     // collect parameter size info (add one for receiver, if any)
  2832     _parameter_size_profile[MIN2(m->size_of_parameters() + (m->is_static() ? 0 : 1), max_parameter_size - 1)]++;
  2833     // collect bytecodes info
  2835       Thread *thread = Thread::current();
  2836       HandleMark hm(thread);
  2837       BytecodeStream s(methodHandle(thread, m));
  2838       Bytecodes::Code c;
  2839       while ((c = s.next()) >= 0) {
  2840         _number_of_bytecodes++;
  2841         _bytecodes_profile[c]++;
  2846  public:
  2847   static void print() {
  2848     initialize();
  2849     SystemDictionary::methods_do(do_method);
  2850     // generate output
  2851     tty->cr();
  2852     tty->print_cr("Method statistics (static):");
  2853     // flag distribution
  2854     tty->cr();
  2855     tty->print_cr("%6d final        methods  %6.1f%%", _number_of_final_methods       , _number_of_final_methods        * 100.0F / _number_of_methods);
  2856     tty->print_cr("%6d static       methods  %6.1f%%", _number_of_static_methods      , _number_of_static_methods       * 100.0F / _number_of_methods);
  2857     tty->print_cr("%6d native       methods  %6.1f%%", _number_of_native_methods      , _number_of_native_methods       * 100.0F / _number_of_methods);
  2858     tty->print_cr("%6d synchronized methods  %6.1f%%", _number_of_synchronized_methods, _number_of_synchronized_methods * 100.0F / _number_of_methods);
  2859     tty->print_cr("%6d profiled     methods  %6.1f%%", _number_of_profiled_methods, _number_of_profiled_methods * 100.0F / _number_of_methods);
  2860     // parameter size profile
  2861     tty->cr();
  2862     { int tot = 0;
  2863       int avg = 0;
  2864       for (int i = 0; i < max_parameter_size; i++) {
  2865         int n = _parameter_size_profile[i];
  2866         tot += n;
  2867         avg += n*i;
  2868         tty->print_cr("parameter size = %1d: %6d methods  %5.1f%%", i, n, n * 100.0F / _number_of_methods);
  2870       assert(tot == _number_of_methods, "should be the same");
  2871       tty->print_cr("                    %6d methods  100.0%%", _number_of_methods);
  2872       tty->print_cr("(average parameter size = %3.1f including receiver, if any)", (float)avg / _number_of_methods);
  2874     // bytecodes profile
  2875     tty->cr();
  2876     { int tot = 0;
  2877       for (int i = 0; i < Bytecodes::number_of_java_codes; i++) {
  2878         if (Bytecodes::is_defined(i)) {
  2879           Bytecodes::Code c = Bytecodes::cast(i);
  2880           int n = _bytecodes_profile[c];
  2881           tot += n;
  2882           tty->print_cr("%9d  %7.3f%%  %s", n, n * 100.0F / _number_of_bytecodes, Bytecodes::name(c));
  2885       assert(tot == _number_of_bytecodes, "should be the same");
  2886       tty->print_cr("%9d  100.000%%", _number_of_bytecodes);
  2888     tty->cr();
  2890 };
  2892 int MethodStatistics::_number_of_methods;
  2893 int MethodStatistics::_number_of_final_methods;
  2894 int MethodStatistics::_number_of_static_methods;
  2895 int MethodStatistics::_number_of_native_methods;
  2896 int MethodStatistics::_number_of_synchronized_methods;
  2897 int MethodStatistics::_number_of_profiled_methods;
  2898 int MethodStatistics::_number_of_bytecodes;
  2899 int MethodStatistics::_parameter_size_profile[MethodStatistics::max_parameter_size];
  2900 int MethodStatistics::_bytecodes_profile[Bytecodes::number_of_java_codes];
  2903 void SystemDictionary::print_method_statistics() {
  2904   MethodStatistics::print();
  2907 #endif // PRODUCT

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