1 /*
   2  * Copyright (c) 1997, 2015, Oracle and/or its affiliates. All rights reserved.
   3  * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
   4  *
   5  * This code is free software; you can redistribute it and/or modify it
   6  * under the terms of the GNU General Public License version 2 only, as
   7  * published by the Free Software Foundation.
   8  *
   9  * This code is distributed in the hope that it will be useful, but WITHOUT
  10  * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
  11  * FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public License
  12  * version 2 for more details (a copy is included in the LICENSE file that
  13  * accompanied this code).
  14  *
  15  * You should have received a copy of the GNU General Public License version
  16  * 2 along with this work; if not, write to the Free Software Foundation,
  17  * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
  18  *
  19  * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
  20  * or visit www.oracle.com if you need additional information or have any
  21  * questions.
  22  *
  23  */
  24 
  25 #ifndef SHARE_VM_OOPS_INSTANCEKLASS_HPP
  26 #define SHARE_VM_OOPS_INSTANCEKLASS_HPP
  27 
  28 #include "classfile/classLoaderData.hpp"
  29 #include "memory/referenceType.hpp"
  30 #include "oops/annotations.hpp"
  31 #include "oops/constMethod.hpp"
  32 #include "oops/fieldInfo.hpp"
  33 #include "oops/instanceOop.hpp"
  34 #include "oops/klassVtable.hpp"
  35 #include "runtime/atomic.hpp"
  36 #include "runtime/handles.hpp"
  37 #include "runtime/os.hpp"
  38 #include "utilities/accessFlags.hpp"
  39 #include "utilities/bitMap.inline.hpp"
  40 #include "utilities/macros.hpp"
  41 #include "trace/traceMacros.hpp"
  42 
  43 // An InstanceKlass is the VM level representation of a Java class.
  44 // It contains all information needed for at class at execution runtime.
  45 
  46 //  InstanceKlass layout:
  47 //    [C++ vtbl pointer           ] Klass
  48 //    [subtype cache              ] Klass
  49 //    [instance size              ] Klass
  50 //    [java mirror                ] Klass
  51 //    [super                      ] Klass
  52 //    [access_flags               ] Klass
  53 //    [name                       ] Klass
  54 //    [first subklass             ] Klass
  55 //    [next sibling               ] Klass
  56 //    [array klasses              ]
  57 //    [methods                    ]
  58 //    [local interfaces           ]
  59 //    [transitive interfaces      ]
  60 //    [fields                     ]
  61 //    [constants                  ]
  62 //    [class loader               ]
  63 //    [source file name           ]
  64 //    [inner classes              ]
  65 //    [static field size          ]
  66 //    [nonstatic field size       ]
  67 //    [static oop fields size     ]
  68 //    [nonstatic oop maps size    ]
  69 //    [has finalize method        ]
  70 //    [deoptimization mark bit    ]
  71 //    [initialization state       ]
  72 //    [initializing thread        ]
  73 //    [Java vtable length         ]
  74 //    [oop map cache (stack maps) ]
  75 //    [EMBEDDED Java vtable             ] size in words = vtable_len
  76 //    [EMBEDDED nonstatic oop-map blocks] size in words = nonstatic_oop_map_size
  77 //      The embedded nonstatic oop-map blocks are short pairs (offset, length)
  78 //      indicating where oops are located in instances of this klass.
  79 //    [EMBEDDED implementor of the interface] only exist for interface
  80 //    [EMBEDDED host klass        ] only exist for an anonymous class (JSR 292 enabled)
  81 
  82 
  83 // forward declaration for class -- see below for definition
  84 class SuperTypeClosure;
  85 class JNIid;
  86 class jniIdMapBase;
  87 class BreakpointInfo;
  88 class fieldDescriptor;
  89 class DepChange;
  90 class nmethodBucket;
  91 class PreviousVersionNode;
  92 class JvmtiCachedClassFieldMap;
  93 class MemberNameTable;
  94 
  95 // This is used in iterators below.
  96 class FieldClosure: public StackObj {
  97 public:
  98   virtual void do_field(fieldDescriptor* fd) = 0;
  99 };
 100 
 101 #ifndef PRODUCT
 102 // Print fields.
 103 // If "obj" argument to constructor is NULL, prints static fields, otherwise prints non-static fields.
 104 class FieldPrinter: public FieldClosure {
 105    oop _obj;
 106    outputStream* _st;
 107  public:
 108    FieldPrinter(outputStream* st, oop obj = NULL) : _obj(obj), _st(st) {}
 109    void do_field(fieldDescriptor* fd);
 110 };
 111 #endif  // !PRODUCT
 112 
 113 // ValueObjs embedded in klass. Describes where oops are located in instances of
 114 // this klass.
 115 class OopMapBlock VALUE_OBJ_CLASS_SPEC {
 116  public:
 117   // Byte offset of the first oop mapped by this block.
 118   int offset() const          { return _offset; }
 119   void set_offset(int offset) { _offset = offset; }
 120 
 121   // Number of oops in this block.
 122   uint count() const         { return _count; }
 123   void set_count(uint count) { _count = count; }
 124 
 125   // sizeof(OopMapBlock) in HeapWords.
 126   static const int size_in_words() {
 127     return align_size_up(int(sizeof(OopMapBlock)), HeapWordSize) >>
 128       LogHeapWordSize;
 129   }
 130 
 131  private:
 132   int  _offset;
 133   uint _count;
 134 };
 135 
 136 struct JvmtiCachedClassFileData;
 137 
 138 class InstanceKlass: public Klass {
 139   friend class VMStructs;
 140   friend class ClassFileParser;
 141   friend class CompileReplay;
 142 
 143  protected:
 144   // Constructor
 145   InstanceKlass(int vtable_len,
 146                 int itable_len,
 147                 int static_field_size,
 148                 int nonstatic_oop_map_size,
 149                 ReferenceType rt,
 150                 AccessFlags access_flags,
 151                 bool is_anonymous);
 152  public:
 153   static InstanceKlass* allocate_instance_klass(
 154                                           ClassLoaderData* loader_data,
 155                                           int vtable_len,
 156                                           int itable_len,
 157                                           int static_field_size,
 158                                           int nonstatic_oop_map_size,
 159                                           ReferenceType rt,
 160                                           AccessFlags access_flags,
 161                                           Symbol* name,
 162                                           Klass* super_klass,
 163                                           bool is_anonymous,
 164                                           TRAPS);
 165 
 166   InstanceKlass() { assert(DumpSharedSpaces || UseSharedSpaces, "only for CDS"); }
 167 
 168   // See "The Java Virtual Machine Specification" section 2.16.2-5 for a detailed description
 169   // of the class loading & initialization procedure, and the use of the states.
 170   enum ClassState {
 171     allocated,                          // allocated (but not yet linked)
 172     loaded,                             // loaded and inserted in class hierarchy (but not linked yet)
 173     linked,                             // successfully linked/verified (but not initialized yet)
 174     being_initialized,                  // currently running class initializer
 175     fully_initialized,                  // initialized (successfull final state)
 176     initialization_error                // error happened during initialization
 177   };
 178 
 179   static int number_of_instance_classes() { return _total_instanceKlass_count; }
 180 
 181  private:
 182   static volatile int _total_instanceKlass_count;
 183 
 184  protected:
 185   // Annotations for this class
 186   Annotations*    _annotations;
 187   // Array classes holding elements of this class.
 188   Klass*          _array_klasses;
 189   // Constant pool for this class.
 190   ConstantPool* _constants;
 191   // The InnerClasses attribute and EnclosingMethod attribute. The
 192   // _inner_classes is an array of shorts. If the class has InnerClasses
 193   // attribute, then the _inner_classes array begins with 4-tuples of shorts
 194   // [inner_class_info_index, outer_class_info_index,
 195   // inner_name_index, inner_class_access_flags] for the InnerClasses
 196   // attribute. If the EnclosingMethod attribute exists, it occupies the
 197   // last two shorts [class_index, method_index] of the array. If only
 198   // the InnerClasses attribute exists, the _inner_classes array length is
 199   // number_of_inner_classes * 4. If the class has both InnerClasses
 200   // and EnclosingMethod attributes the _inner_classes array length is
 201   // number_of_inner_classes * 4 + enclosing_method_attribute_size.
 202   Array<jushort>* _inner_classes;
 203 
 204   // the source debug extension for this klass, NULL if not specified.
 205   // Specified as UTF-8 string without terminating zero byte in the classfile,
 206   // it is stored in the instanceklass as a NULL-terminated UTF-8 string
 207   char*           _source_debug_extension;
 208   // Array name derived from this class which needs unreferencing
 209   // if this class is unloaded.
 210   Symbol*         _array_name;
 211 
 212   // Number of heapOopSize words used by non-static fields in this klass
 213   // (including inherited fields but after header_size()).
 214   int             _nonstatic_field_size;
 215   int             _static_field_size;    // number words used by static fields (oop and non-oop) in this klass
 216   // Constant pool index to the utf8 entry of the Generic signature,
 217   // or 0 if none.
 218   u2              _generic_signature_index;
 219   // Constant pool index to the utf8 entry for the name of source file
 220   // containing this klass, 0 if not specified.
 221   u2              _source_file_name_index;
 222   u2              _static_oop_field_count;// number of static oop fields in this klass
 223   u2              _java_fields_count;    // The number of declared Java fields
 224   int             _nonstatic_oop_map_size;// size in words of nonstatic oop map blocks
 225 
 226   // _is_marked_dependent can be set concurrently, thus cannot be part of the
 227   // _misc_flags.
 228   bool            _is_marked_dependent;  // used for marking during flushing and deoptimization
 229   bool            _has_unloaded_dependent;
 230 
 231   enum {
 232     _misc_rewritten                = 1 << 0, // methods rewritten.
 233     _misc_has_nonstatic_fields     = 1 << 1, // for sizing with UseCompressedOops
 234     _misc_should_verify_class      = 1 << 2, // allow caching of preverification
 235     _misc_is_anonymous             = 1 << 3, // has embedded _host_klass field
 236     _misc_is_contended             = 1 << 4, // marked with contended annotation
 237     _misc_has_default_methods      = 1 << 5, // class/superclass/implemented interfaces has default methods
 238     _misc_declares_default_methods = 1 << 6  // directly declares default methods (any access)
 239   };
 240   u2              _misc_flags;
 241   u2              _minor_version;        // minor version number of class file
 242   u2              _major_version;        // major version number of class file
 243   Thread*         _init_thread;          // Pointer to current thread doing initialization (to handle recusive initialization)
 244   int             _vtable_len;           // length of Java vtable (in words)
 245   int             _itable_len;           // length of Java itable (in words)
 246   OopMapCache*    volatile _oop_map_cache;   // OopMapCache for all methods in the klass (allocated lazily)
 247   MemberNameTable* _member_names;        // Member names
 248   JNIid*          _jni_ids;              // First JNI identifier for static fields in this class
 249   jmethodID*      _methods_jmethod_ids;  // jmethodIDs corresponding to method_idnum, or NULL if none
 250   nmethodBucket*  _dependencies;         // list of dependent nmethods
 251   nmethod*        _osr_nmethods_head;    // Head of list of on-stack replacement nmethods for this class
 252   BreakpointInfo* _breakpoints;          // bpt lists, managed by Method*
 253   // Array of interesting part(s) of the previous version(s) of this
 254   // InstanceKlass. See PreviousVersionWalker below.
 255   GrowableArray<PreviousVersionNode *>* _previous_versions;
 256   // JVMTI fields can be moved to their own structure - see 6315920
 257   // JVMTI: cached class file, before retransformable agent modified it in CFLH
 258   JvmtiCachedClassFileData* _cached_class_file;
 259 
 260   volatile u2     _idnum_allocated_count;         // JNI/JVMTI: increments with the addition of methods, old ids don't change
 261 
 262   // Class states are defined as ClassState (see above).
 263   // Place the _init_state here to utilize the unused 2-byte after
 264   // _idnum_allocated_count.
 265   u1              _init_state;                    // state of class
 266   u1              _reference_type;                // reference type
 267 
 268   JvmtiCachedClassFieldMap* _jvmti_cached_class_field_map;  // JVMTI: used during heap iteration
 269 
 270   NOT_PRODUCT(int _verify_count;)  // to avoid redundant verifies
 271 
 272   // Method array.
 273   Array<Method*>* _methods;
 274   // Default Method Array, concrete methods inherited from interfaces
 275   Array<Method*>* _default_methods;
 276   // Interface (Klass*s) this class declares locally to implement.
 277   Array<Klass*>* _local_interfaces;
 278   // Interface (Klass*s) this class implements transitively.
 279   Array<Klass*>* _transitive_interfaces;
 280   // Int array containing the original order of method in the class file (for JVMTI).
 281   Array<int>*     _method_ordering;
 282   // Int array containing the vtable_indices for default_methods
 283   // offset matches _default_methods offset
 284   Array<int>*     _default_vtable_indices;
 285 
 286   // Instance and static variable information, starts with 6-tuples of shorts
 287   // [access, name index, sig index, initval index, low_offset, high_offset]
 288   // for all fields, followed by the generic signature data at the end of
 289   // the array. Only fields with generic signature attributes have the generic
 290   // signature data set in the array. The fields array looks like following:
 291   //
 292   // f1: [access, name index, sig index, initial value index, low_offset, high_offset]
 293   // f2: [access, name index, sig index, initial value index, low_offset, high_offset]
 294   //      ...
 295   // fn: [access, name index, sig index, initial value index, low_offset, high_offset]
 296   //     [generic signature index]
 297   //     [generic signature index]
 298   //     ...
 299   Array<u2>*      _fields;
 300 
 301   // embedded Java vtable follows here
 302   // embedded Java itables follows here
 303   // embedded static fields follows here
 304   // embedded nonstatic oop-map blocks follows here
 305   // embedded implementor of this interface follows here
 306   //   The embedded implementor only exists if the current klass is an
 307   //   iterface. The possible values of the implementor fall into following
 308   //   three cases:
 309   //     NULL: no implementor.
 310   //     A Klass* that's not itself: one implementor.
 311   //     Itself: more than one implementors.
 312   // embedded host klass follows here
 313   //   The embedded host klass only exists in an anonymous class for
 314   //   dynamic language support (JSR 292 enabled). The host class grants
 315   //   its access privileges to this class also. The host class is either
 316   //   named, or a previously loaded anonymous class. A non-anonymous class
 317   //   or an anonymous class loaded through normal classloading does not
 318   //   have this embedded field.
 319   //
 320 
 321   friend class SystemDictionary;
 322 
 323  public:
 324   bool has_nonstatic_fields() const        {
 325     return (_misc_flags & _misc_has_nonstatic_fields) != 0;
 326   }
 327   void set_has_nonstatic_fields(bool b)    {
 328     if (b) {
 329       _misc_flags |= _misc_has_nonstatic_fields;
 330     } else {
 331       _misc_flags &= ~_misc_has_nonstatic_fields;
 332     }
 333   }
 334 
 335   // field sizes
 336   int nonstatic_field_size() const         { return _nonstatic_field_size; }
 337   void set_nonstatic_field_size(int size)  { _nonstatic_field_size = size; }
 338 
 339   int static_field_size() const            { return _static_field_size; }
 340   void set_static_field_size(int size)     { _static_field_size = size; }
 341 
 342   int static_oop_field_count() const       { return (int)_static_oop_field_count; }
 343   void set_static_oop_field_count(u2 size) { _static_oop_field_count = size; }
 344 
 345   // Java vtable
 346   int  vtable_length() const               { return _vtable_len; }
 347   void set_vtable_length(int len)          { _vtable_len = len; }
 348 
 349   // Java itable
 350   int  itable_length() const               { return _itable_len; }
 351   void set_itable_length(int len)          { _itable_len = len; }
 352 
 353   // array klasses
 354   Klass* array_klasses() const             { return _array_klasses; }
 355   void set_array_klasses(Klass* k)         { _array_klasses = k; }
 356 
 357   // methods
 358   Array<Method*>* methods() const          { return _methods; }
 359   void set_methods(Array<Method*>* a)      { _methods = a; }
 360   Method* method_with_idnum(int idnum);
 361   Method* method_with_orig_idnum(int idnum);
 362   Method* method_with_orig_idnum(int idnum, int version);
 363 
 364   // method ordering
 365   Array<int>* method_ordering() const     { return _method_ordering; }
 366   void set_method_ordering(Array<int>* m) { _method_ordering = m; }
 367   void copy_method_ordering(intArray* m, TRAPS);
 368 
 369   // default_methods
 370   Array<Method*>* default_methods() const  { return _default_methods; }
 371   void set_default_methods(Array<Method*>* a) { _default_methods = a; }
 372 
 373   // default method vtable_indices
 374   Array<int>* default_vtable_indices() const { return _default_vtable_indices; }
 375   void set_default_vtable_indices(Array<int>* v) { _default_vtable_indices = v; }
 376   Array<int>* create_new_default_vtable_indices(int len, TRAPS);
 377 
 378   // interfaces
 379   Array<Klass*>* local_interfaces() const          { return _local_interfaces; }
 380   void set_local_interfaces(Array<Klass*>* a)      {
 381     guarantee(_local_interfaces == NULL || a == NULL, "Just checking");
 382     _local_interfaces = a; }
 383 
 384   Array<Klass*>* transitive_interfaces() const     { return _transitive_interfaces; }
 385   void set_transitive_interfaces(Array<Klass*>* a) {
 386     guarantee(_transitive_interfaces == NULL || a == NULL, "Just checking");
 387     _transitive_interfaces = a;
 388   }
 389 
 390  private:
 391   friend class fieldDescriptor;
 392   FieldInfo* field(int index) const { return FieldInfo::from_field_array(_fields, index); }
 393 
 394  public:
 395   int     field_offset      (int index) const { return field(index)->offset(); }
 396   int     field_access_flags(int index) const { return field(index)->access_flags(); }
 397   Symbol* field_name        (int index) const { return field(index)->name(constants()); }
 398   Symbol* field_signature   (int index) const { return field(index)->signature(constants()); }
 399 
 400   // Number of Java declared fields
 401   int java_fields_count() const           { return (int)_java_fields_count; }
 402 
 403   Array<u2>* fields() const            { return _fields; }
 404   void set_fields(Array<u2>* f, u2 java_fields_count) {
 405     guarantee(_fields == NULL || f == NULL, "Just checking");
 406     _fields = f;
 407     _java_fields_count = java_fields_count;
 408   }
 409 
 410   // inner classes
 411   Array<u2>* inner_classes() const       { return _inner_classes; }
 412   void set_inner_classes(Array<u2>* f)   { _inner_classes = f; }
 413 
 414   enum InnerClassAttributeOffset {
 415     // From http://mirror.eng/products/jdk/1.1/docs/guide/innerclasses/spec/innerclasses.doc10.html#18814
 416     inner_class_inner_class_info_offset = 0,
 417     inner_class_outer_class_info_offset = 1,
 418     inner_class_inner_name_offset = 2,
 419     inner_class_access_flags_offset = 3,
 420     inner_class_next_offset = 4
 421   };
 422 
 423   enum EnclosingMethodAttributeOffset {
 424     enclosing_method_class_index_offset = 0,
 425     enclosing_method_method_index_offset = 1,
 426     enclosing_method_attribute_size = 2
 427   };
 428 
 429   // method override check
 430   bool is_override(methodHandle super_method, Handle targetclassloader, Symbol* targetclassname, TRAPS);
 431 
 432   // package
 433   bool is_same_class_package(Klass* class2);
 434   bool is_same_class_package(oop classloader2, Symbol* classname2);
 435   static bool is_same_class_package(oop class_loader1, Symbol* class_name1, oop class_loader2, Symbol* class_name2);
 436 
 437   // find an enclosing class (defined where original code was, in jvm.cpp!)
 438   Klass* compute_enclosing_class(bool* inner_is_member, TRAPS) {
 439     instanceKlassHandle self(THREAD, this);
 440     return compute_enclosing_class_impl(self, inner_is_member, THREAD);
 441   }
 442   static Klass* compute_enclosing_class_impl(instanceKlassHandle self,
 443                                                bool* inner_is_member, TRAPS);
 444 
 445   // tell if two classes have the same enclosing class (at package level)
 446   bool is_same_package_member(Klass* class2, TRAPS) {
 447     instanceKlassHandle self(THREAD, this);
 448     return is_same_package_member_impl(self, class2, THREAD);
 449   }
 450   static bool is_same_package_member_impl(instanceKlassHandle self,
 451                                           Klass* class2, TRAPS);
 452 
 453   // initialization state
 454   bool is_loaded() const                   { return _init_state >= loaded; }
 455   bool is_linked() const                   { return _init_state >= linked; }
 456   bool is_initialized() const              { return _init_state == fully_initialized; }
 457   bool is_not_initialized() const          { return _init_state <  being_initialized; }
 458   bool is_being_initialized() const        { return _init_state == being_initialized; }
 459   bool is_in_error_state() const           { return _init_state == initialization_error; }
 460   bool is_reentrant_initialization(Thread *thread)  { return thread == _init_thread; }
 461   ClassState  init_state()                 { return (ClassState)_init_state; }
 462   bool is_rewritten() const                { return (_misc_flags & _misc_rewritten) != 0; }
 463 
 464   // defineClass specified verification
 465   bool should_verify_class() const         {
 466     return (_misc_flags & _misc_should_verify_class) != 0;
 467   }
 468   void set_should_verify_class(bool value) {
 469     if (value) {
 470       _misc_flags |= _misc_should_verify_class;
 471     } else {
 472       _misc_flags &= ~_misc_should_verify_class;
 473     }
 474   }
 475 
 476   // marking
 477   bool is_marked_dependent() const         { return _is_marked_dependent; }
 478   void set_is_marked_dependent(bool value) { _is_marked_dependent = value; }
 479 
 480   bool has_unloaded_dependent() const         { return _has_unloaded_dependent; }
 481   void set_has_unloaded_dependent(bool value) { _has_unloaded_dependent = value; }
 482 
 483   // initialization (virtuals from Klass)
 484   bool should_be_initialized() const;  // means that initialize should be called
 485   void initialize(TRAPS);
 486   void link_class(TRAPS);
 487   bool link_class_or_fail(TRAPS); // returns false on failure
 488   void unlink_class();
 489   void rewrite_class(TRAPS);
 490   void link_methods(TRAPS);
 491   Method* class_initializer();
 492 
 493   // set the class to initialized if no static initializer is present
 494   void eager_initialize(Thread *thread);
 495 
 496   // reference type
 497   ReferenceType reference_type() const     { return (ReferenceType)_reference_type; }
 498   void set_reference_type(ReferenceType t) {
 499     assert(t == (u1)t, "overflow");
 500     _reference_type = (u1)t;
 501   }
 502 
 503   static ByteSize reference_type_offset() { return in_ByteSize(offset_of(InstanceKlass, _reference_type)); }
 504 
 505   // find local field, returns true if found
 506   bool find_local_field(Symbol* name, Symbol* sig, fieldDescriptor* fd) const;
 507   // find field in direct superinterfaces, returns the interface in which the field is defined
 508   Klass* find_interface_field(Symbol* name, Symbol* sig, fieldDescriptor* fd) const;
 509   // find field according to JVM spec 5.4.3.2, returns the klass in which the field is defined
 510   Klass* find_field(Symbol* name, Symbol* sig, fieldDescriptor* fd) const;
 511   // find instance or static fields according to JVM spec 5.4.3.2, returns the klass in which the field is defined
 512   Klass* find_field(Symbol* name, Symbol* sig, bool is_static, fieldDescriptor* fd) const;
 513 
 514   // find a non-static or static field given its offset within the class.
 515   bool contains_field_offset(int offset) {
 516     return instanceOopDesc::contains_field_offset(offset, nonstatic_field_size());
 517   }
 518 
 519   bool find_local_field_from_offset(int offset, bool is_static, fieldDescriptor* fd) const;
 520   bool find_field_from_offset(int offset, bool is_static, fieldDescriptor* fd) const;
 521 
 522   // find a local method (returns NULL if not found)
 523   Method* find_method(Symbol* name, Symbol* signature) const;
 524   static Method* find_method(Array<Method*>* methods, Symbol* name, Symbol* signature);
 525 
 526   // find a local method, but skip static methods
 527   Method* find_instance_method(Symbol* name, Symbol* signature);
 528   static Method* find_instance_method(Array<Method*>* methods, Symbol* name, Symbol* signature);
 529 
 530   // true if method matches signature and conforms to skipping_X conditions.
 531   static bool method_matches(Method* m, Symbol* signature, bool skipping_overpass, bool skipping_static);
 532 
 533   // find a local method index in default_methods (returns -1 if not found)
 534   static int find_method_index(Array<Method*>* methods, Symbol* name, Symbol* signature, bool skipping_overpass, bool skipping_static);
 535 
 536   // lookup operation (returns NULL if not found)
 537   Method* uncached_lookup_method(Symbol* name, Symbol* signature, MethodLookupMode mode) const;
 538 
 539   // lookup a method in all the interfaces that this class implements
 540   // (returns NULL if not found)
 541   Method* lookup_method_in_all_interfaces(Symbol* name, Symbol* signature, MethodLookupMode mode) const;
 542 
 543   // lookup a method in local defaults then in all interfaces
 544   // (returns NULL if not found)
 545   Method* lookup_method_in_ordered_interfaces(Symbol* name, Symbol* signature) const;
 546 
 547   // Find method indices by name.  If a method with the specified name is
 548   // found the index to the first method is returned, and 'end' is filled in
 549   // with the index of first non-name-matching method.  If no method is found
 550   // -1 is returned.
 551   int find_method_by_name(Symbol* name, int* end);
 552   static int find_method_by_name(Array<Method*>* methods, Symbol* name, int* end);
 553 
 554   // constant pool
 555   ConstantPool* constants() const        { return _constants; }
 556   void set_constants(ConstantPool* c)    { _constants = c; }
 557 
 558   // protection domain
 559   oop protection_domain() const;
 560 
 561   // signers
 562   objArrayOop signers() const;
 563 
 564   // host class
 565   Klass* host_klass() const              {
 566     Klass** hk = (Klass**)adr_host_klass();
 567     if (hk == NULL) {
 568       return NULL;
 569     } else {
 570       assert(*hk != NULL, "host klass should always be set if the address is not null");
 571       return *hk;
 572     }
 573   }
 574   void set_host_klass(Klass* host)            {
 575     assert(is_anonymous(), "not anonymous");
 576     Klass** addr = (Klass**)adr_host_klass();
 577     assert(addr != NULL, "no reversed space");
 578     if (addr != NULL) {
 579       *addr = host;
 580     }
 581   }
 582   bool is_anonymous() const                {
 583     return (_misc_flags & _misc_is_anonymous) != 0;
 584   }
 585   void set_is_anonymous(bool value)        {
 586     if (value) {
 587       _misc_flags |= _misc_is_anonymous;
 588     } else {
 589       _misc_flags &= ~_misc_is_anonymous;
 590     }
 591   }
 592 
 593   // Oop that keeps the metadata for this class from being unloaded
 594   // in places where the metadata is stored in other places, like nmethods
 595   oop klass_holder() const {
 596     return is_anonymous() ? java_mirror() : class_loader();
 597   }
 598 
 599   bool is_contended() const                {
 600     return (_misc_flags & _misc_is_contended) != 0;
 601   }
 602   void set_is_contended(bool value)        {
 603     if (value) {
 604       _misc_flags |= _misc_is_contended;
 605     } else {
 606       _misc_flags &= ~_misc_is_contended;
 607     }
 608   }
 609 
 610   // source file name
 611   Symbol* source_file_name() const               {
 612     return (_source_file_name_index == 0) ?
 613       (Symbol*)NULL : _constants->symbol_at(_source_file_name_index);
 614   }
 615   u2 source_file_name_index() const              {
 616     return _source_file_name_index;
 617   }
 618   void set_source_file_name_index(u2 sourcefile_index) {
 619     _source_file_name_index = sourcefile_index;
 620   }
 621 
 622   // minor and major version numbers of class file
 623   u2 minor_version() const                 { return _minor_version; }
 624   void set_minor_version(u2 minor_version) { _minor_version = minor_version; }
 625   u2 major_version() const                 { return _major_version; }
 626   void set_major_version(u2 major_version) { _major_version = major_version; }
 627 
 628   // source debug extension
 629   char* source_debug_extension() const     { return _source_debug_extension; }
 630   void set_source_debug_extension(char* array, int length);
 631 
 632   // symbol unloading support (refcount already added)
 633   Symbol* array_name()                     { return _array_name; }
 634   void set_array_name(Symbol* name)        { assert(_array_name == NULL  || name == NULL, "name already created"); _array_name = name; }
 635 
 636   // nonstatic oop-map blocks
 637   static int nonstatic_oop_map_size(unsigned int oop_map_count) {
 638     return oop_map_count * OopMapBlock::size_in_words();
 639   }
 640   unsigned int nonstatic_oop_map_count() const {
 641     return _nonstatic_oop_map_size / OopMapBlock::size_in_words();
 642   }
 643   int nonstatic_oop_map_size() const { return _nonstatic_oop_map_size; }
 644   void set_nonstatic_oop_map_size(int words) {
 645     _nonstatic_oop_map_size = words;
 646   }
 647 
 648   // RedefineClasses() support for previous versions:
 649   void add_previous_version(instanceKlassHandle ikh, BitMap *emcp_methods,
 650          int emcp_method_count);
 651   // If the _previous_versions array is non-NULL, then this klass
 652   // has been redefined at least once even if we aren't currently
 653   // tracking a previous version.
 654   bool has_been_redefined() const { return _previous_versions != NULL; }
 655   bool has_previous_version() const;
 656   void init_previous_versions() {
 657     _previous_versions = NULL;
 658   }
 659   GrowableArray<PreviousVersionNode *>* previous_versions() const {
 660     return _previous_versions;
 661   }
 662 
 663   InstanceKlass* get_klass_version(int version);
 664   static void purge_previous_versions(InstanceKlass* ik);
 665 
 666   // JVMTI: Support for caching a class file before it is modified by an agent that can do retransformation
 667   void set_cached_class_file(JvmtiCachedClassFileData *data) {
 668     _cached_class_file = data;
 669   }
 670   JvmtiCachedClassFileData * get_cached_class_file() { return _cached_class_file; }
 671   jint get_cached_class_file_len();
 672   unsigned char * get_cached_class_file_bytes();
 673 
 674   // JVMTI: Support for caching of field indices, types, and offsets
 675   void set_jvmti_cached_class_field_map(JvmtiCachedClassFieldMap* descriptor) {
 676     _jvmti_cached_class_field_map = descriptor;
 677   }
 678   JvmtiCachedClassFieldMap* jvmti_cached_class_field_map() const {
 679     return _jvmti_cached_class_field_map;
 680   }
 681 
 682   bool has_default_methods() const {
 683     return (_misc_flags & _misc_has_default_methods) != 0;
 684   }
 685   void set_has_default_methods(bool b) {
 686     if (b) {
 687       _misc_flags |= _misc_has_default_methods;
 688     } else {
 689       _misc_flags &= ~_misc_has_default_methods;
 690     }
 691   }
 692 
 693   bool declares_default_methods() const {
 694     return (_misc_flags & _misc_declares_default_methods) != 0;
 695   }
 696   void set_declares_default_methods(bool b) {
 697     if (b) {
 698       _misc_flags |= _misc_declares_default_methods;
 699     } else {
 700       _misc_flags &= ~_misc_declares_default_methods;
 701     }
 702   }
 703 
 704   // for adding methods, ConstMethod::UNSET_IDNUM means no more ids available
 705   inline u2 next_method_idnum();
 706   void set_initial_method_idnum(u2 value)             { _idnum_allocated_count = value; }
 707 
 708   // generics support
 709   Symbol* generic_signature() const                   {
 710     return (_generic_signature_index == 0) ?
 711       (Symbol*)NULL : _constants->symbol_at(_generic_signature_index);
 712   }
 713   u2 generic_signature_index() const                  {
 714     return _generic_signature_index;
 715   }
 716   void set_generic_signature_index(u2 sig_index)      {
 717     _generic_signature_index = sig_index;
 718   }
 719 
 720   u2 enclosing_method_data(int offset);
 721   u2 enclosing_method_class_index() {
 722     return enclosing_method_data(enclosing_method_class_index_offset);
 723   }
 724   u2 enclosing_method_method_index() {
 725     return enclosing_method_data(enclosing_method_method_index_offset);
 726   }
 727   void set_enclosing_method_indices(u2 class_index,
 728                                     u2 method_index);
 729 
 730   // jmethodID support
 731   static jmethodID get_jmethod_id(instanceKlassHandle ik_h,
 732                      methodHandle method_h);
 733   static jmethodID get_jmethod_id_fetch_or_update(instanceKlassHandle ik_h,
 734                      size_t idnum, jmethodID new_id, jmethodID* new_jmeths,
 735                      jmethodID* to_dealloc_id_p,
 736                      jmethodID** to_dealloc_jmeths_p);
 737   static void get_jmethod_id_length_value(jmethodID* cache, size_t idnum,
 738                 size_t *length_p, jmethodID* id_p);
 739   jmethodID jmethod_id_or_null(Method* method);
 740 
 741   // annotations support
 742   Annotations* annotations() const          { return _annotations; }
 743   void set_annotations(Annotations* anno)   { _annotations = anno; }
 744 
 745   AnnotationArray* class_annotations() const {
 746     return (_annotations != NULL) ? _annotations->class_annotations() : NULL;
 747   }
 748   Array<AnnotationArray*>* fields_annotations() const {
 749     return (_annotations != NULL) ? _annotations->fields_annotations() : NULL;
 750   }
 751   AnnotationArray* class_type_annotations() const {
 752     return (_annotations != NULL) ? _annotations->class_type_annotations() : NULL;
 753   }
 754   Array<AnnotationArray*>* fields_type_annotations() const {
 755     return (_annotations != NULL) ? _annotations->fields_type_annotations() : NULL;
 756   }
 757   // allocation
 758   instanceOop allocate_instance(TRAPS);
 759 
 760   // additional member function to return a handle
 761   instanceHandle allocate_instance_handle(TRAPS)      { return instanceHandle(THREAD, allocate_instance(THREAD)); }
 762 
 763   objArrayOop allocate_objArray(int n, int length, TRAPS);
 764   // Helper function
 765   static instanceOop register_finalizer(instanceOop i, TRAPS);
 766 
 767   // Check whether reflection/jni/jvm code is allowed to instantiate this class;
 768   // if not, throw either an Error or an Exception.
 769   virtual void check_valid_for_instantiation(bool throwError, TRAPS);
 770 
 771   // initialization
 772   void call_class_initializer(TRAPS);
 773   void set_initialization_state_and_notify(ClassState state, TRAPS);
 774 
 775   // OopMapCache support
 776   OopMapCache* oop_map_cache()               { return _oop_map_cache; }
 777   void set_oop_map_cache(OopMapCache *cache) { _oop_map_cache = cache; }
 778   void mask_for(methodHandle method, int bci, InterpreterOopMap* entry);
 779 
 780   // JNI identifier support (for static fields - for jni performance)
 781   JNIid* jni_ids()                               { return _jni_ids; }
 782   void set_jni_ids(JNIid* ids)                   { _jni_ids = ids; }
 783   JNIid* jni_id_for(int offset);
 784 
 785   // maintenance of deoptimization dependencies
 786   int mark_dependent_nmethods(DepChange& changes);
 787   void add_dependent_nmethod(nmethod* nm);
 788   void remove_dependent_nmethod(nmethod* nm);
 789 
 790   // On-stack replacement support
 791   nmethod* osr_nmethods_head() const         { return _osr_nmethods_head; };
 792   void set_osr_nmethods_head(nmethod* h)     { _osr_nmethods_head = h; };
 793   void add_osr_nmethod(nmethod* n);
 794   void remove_osr_nmethod(nmethod* n);
 795   int mark_osr_nmethods(const Method* m);
 796   nmethod* lookup_osr_nmethod(const Method* m, int bci, int level, bool match_level) const;
 797 
 798   // Breakpoint support (see methods on Method* for details)
 799   BreakpointInfo* breakpoints() const       { return _breakpoints; };
 800   void set_breakpoints(BreakpointInfo* bps) { _breakpoints = bps; };
 801 
 802   // support for stub routines
 803   static ByteSize init_state_offset()  { return in_ByteSize(offset_of(InstanceKlass, _init_state)); }
 804   TRACE_DEFINE_OFFSET;
 805   static ByteSize init_thread_offset() { return in_ByteSize(offset_of(InstanceKlass, _init_thread)); }
 806 
 807   // subclass/subinterface checks
 808   bool implements_interface(Klass* k) const;
 809   bool is_same_or_direct_interface(Klass* k) const;
 810 
 811 #ifdef ASSERT
 812   // check whether this class or one of its superclasses was redefined
 813   bool has_redefined_this_or_super() const;
 814 #endif
 815 
 816   // Access to the implementor of an interface.
 817   Klass* implementor() const
 818   {
 819     Klass** k = adr_implementor();
 820     if (k == NULL) {
 821       return NULL;
 822     } else {
 823       return *k;
 824     }
 825   }
 826 
 827   void set_implementor(Klass* k) {
 828     assert(is_interface(), "not interface");
 829     Klass** addr = adr_implementor();
 830     assert(addr != NULL, "null addr");
 831     if (addr != NULL) {
 832       *addr = k;
 833     }
 834   }
 835 
 836   int  nof_implementors() const       {
 837     Klass* k = implementor();
 838     if (k == NULL) {
 839       return 0;
 840     } else if (k != this) {
 841       return 1;
 842     } else {
 843       return 2;
 844     }
 845   }
 846 
 847   void add_implementor(Klass* k);  // k is a new class that implements this interface
 848   void init_implementor();           // initialize
 849 
 850   // link this class into the implementors list of every interface it implements
 851   void process_interfaces(Thread *thread);
 852 
 853   // virtual operations from Klass
 854   bool is_leaf_class() const               { return _subklass == NULL; }
 855   GrowableArray<Klass*>* compute_secondary_supers(int num_extra_slots);
 856   bool compute_is_subtype_of(Klass* k);
 857   bool can_be_primary_super_slow() const;
 858   int oop_size(oop obj)  const             { return size_helper(); }
 859   bool oop_is_instance_slow() const        { return true; }
 860 
 861   // Iterators
 862   void do_local_static_fields(FieldClosure* cl);
 863   void do_nonstatic_fields(FieldClosure* cl); // including inherited fields
 864   void do_local_static_fields(void f(fieldDescriptor*, Handle, TRAPS), Handle, TRAPS);
 865 
 866   void methods_do(void f(Method* method));
 867   void array_klasses_do(void f(Klass* k));
 868   void array_klasses_do(void f(Klass* k, TRAPS), TRAPS);
 869   bool super_types_do(SuperTypeClosure* blk);
 870 
 871   // Casting from Klass*
 872   static InstanceKlass* cast(Klass* k) {
 873     assert(k == NULL || k->is_klass(), "must be");
 874     assert(k == NULL || k->oop_is_instance(), "cast to InstanceKlass");
 875     return (InstanceKlass*) k;
 876   }
 877 
 878   InstanceKlass* java_super() const {
 879     return (super() == NULL) ? NULL : cast(super());
 880   }
 881 
 882   // Sizing (in words)
 883   static int header_size()            { return align_object_offset(sizeof(InstanceKlass)/HeapWordSize); }
 884 
 885   static int size(int vtable_length, int itable_length,
 886                   int nonstatic_oop_map_size,
 887                   bool is_interface, bool is_anonymous) {
 888     return align_object_size(header_size() +
 889            align_object_offset(vtable_length) +
 890            align_object_offset(itable_length) +
 891            ((is_interface || is_anonymous) ?
 892              align_object_offset(nonstatic_oop_map_size) :
 893              nonstatic_oop_map_size) +
 894            (is_interface ? (int)sizeof(Klass*)/HeapWordSize : 0) +
 895            (is_anonymous ? (int)sizeof(Klass*)/HeapWordSize : 0));
 896   }
 897   int size() const                    { return size(vtable_length(),
 898                                                itable_length(),
 899                                                nonstatic_oop_map_size(),
 900                                                is_interface(),
 901                                                is_anonymous());
 902   }
 903 #if INCLUDE_SERVICES
 904   virtual void collect_statistics(KlassSizeStats *sz) const;
 905 #endif
 906 
 907   static int vtable_start_offset()    { return header_size(); }
 908   static int vtable_length_offset()   { return offset_of(InstanceKlass, _vtable_len) / HeapWordSize; }
 909 
 910   intptr_t* start_of_vtable() const        { return ((intptr_t*)this) + vtable_start_offset(); }
 911   intptr_t* start_of_itable() const        { return start_of_vtable() + align_object_offset(vtable_length()); }
 912   int  itable_offset_in_words() const { return start_of_itable() - (intptr_t*)this; }
 913 
 914   intptr_t* end_of_itable() const          { return start_of_itable() + itable_length(); }
 915 
 916   address static_field_addr(int offset);
 917 
 918   OopMapBlock* start_of_nonstatic_oop_maps() const {
 919     return (OopMapBlock*)(start_of_itable() + align_object_offset(itable_length()));
 920   }
 921 
 922   Klass** end_of_nonstatic_oop_maps() const {
 923     return (Klass**)(start_of_nonstatic_oop_maps() +
 924                      nonstatic_oop_map_count());
 925   }
 926 
 927   Klass** adr_implementor() const {
 928     if (is_interface()) {
 929       return (Klass**)end_of_nonstatic_oop_maps();
 930     } else {
 931       return NULL;
 932     }
 933   };
 934 
 935   Klass** adr_host_klass() const {
 936     if (is_anonymous()) {
 937       Klass** adr_impl = adr_implementor();
 938       if (adr_impl != NULL) {
 939         return adr_impl + 1;
 940       } else {
 941         return end_of_nonstatic_oop_maps();
 942       }
 943     } else {
 944       return NULL;
 945     }
 946   }
 947 
 948   // Use this to return the size of an instance in heap words:
 949   int size_helper() const {
 950     return layout_helper_to_size_helper(layout_helper());
 951   }
 952 
 953   // This bit is initialized in classFileParser.cpp.
 954   // It is false under any of the following conditions:
 955   //  - the class is abstract (including any interface)
 956   //  - the class has a finalizer (if !RegisterFinalizersAtInit)
 957   //  - the class size is larger than FastAllocateSizeLimit
 958   //  - the class is java/lang/Class, which cannot be allocated directly
 959   bool can_be_fastpath_allocated() const {
 960     return !layout_helper_needs_slow_path(layout_helper());
 961   }
 962 
 963   // Java vtable/itable
 964   klassVtable* vtable() const;        // return new klassVtable wrapper
 965   inline Method* method_at_vtable(int index);
 966   klassItable* itable() const;        // return new klassItable wrapper
 967   Method* method_at_itable(Klass* holder, int index, TRAPS);
 968 
 969 #if INCLUDE_JVMTI
 970   void adjust_default_methods(InstanceKlass* holder, bool* trace_name_printed);
 971 #endif // INCLUDE_JVMTI
 972 
 973   // Garbage collection
 974   void oop_follow_contents(oop obj);
 975   int  oop_adjust_pointers(oop obj);
 976 
 977   void clean_implementors_list(BoolObjectClosure* is_alive);
 978   void clean_method_data(BoolObjectClosure* is_alive);
 979   void clean_dependent_nmethods();
 980 
 981   // Explicit metaspace deallocation of fields
 982   // For RedefineClasses and class file parsing errors, we need to deallocate
 983   // instanceKlasses and the metadata they point to.
 984   void deallocate_contents(ClassLoaderData* loader_data);
 985   static void deallocate_methods(ClassLoaderData* loader_data,
 986                                  Array<Method*>* methods);
 987   void static deallocate_interfaces(ClassLoaderData* loader_data,
 988                                     Klass* super_klass,
 989                                     Array<Klass*>* local_interfaces,
 990                                     Array<Klass*>* transitive_interfaces);
 991 
 992   // The constant pool is on stack if any of the methods are executing or
 993   // referenced by handles.
 994   bool on_stack() const { return _constants->on_stack(); }
 995 
 996   // callbacks for actions during class unloading
 997   static void notify_unload_class(InstanceKlass* ik);
 998   static void release_C_heap_structures(InstanceKlass* ik);
 999 
1000   // Parallel Scavenge and Parallel Old
1001   PARALLEL_GC_DECLS
1002 
1003   // Naming
1004   const char* signature_name() const;
1005 
1006   // Iterators
1007   int oop_oop_iterate(oop obj, ExtendedOopClosure* blk) {
1008     return oop_oop_iterate_v(obj, blk);
1009   }
1010 
1011   int oop_oop_iterate_m(oop obj, ExtendedOopClosure* blk, MemRegion mr) {
1012     return oop_oop_iterate_v_m(obj, blk, mr);
1013   }
1014 
1015 #define InstanceKlass_OOP_OOP_ITERATE_DECL(OopClosureType, nv_suffix)      \
1016   int  oop_oop_iterate##nv_suffix(oop obj, OopClosureType* blk);           \
1017   int  oop_oop_iterate##nv_suffix##_m(oop obj, OopClosureType* blk,        \
1018                                       MemRegion mr);
1019 
1020   ALL_OOP_OOP_ITERATE_CLOSURES_1(InstanceKlass_OOP_OOP_ITERATE_DECL)
1021   ALL_OOP_OOP_ITERATE_CLOSURES_2(InstanceKlass_OOP_OOP_ITERATE_DECL)
1022 
1023 #if INCLUDE_ALL_GCS
1024 #define InstanceKlass_OOP_OOP_ITERATE_BACKWARDS_DECL(OopClosureType, nv_suffix) \
1025   int  oop_oop_iterate_backwards##nv_suffix(oop obj, OopClosureType* blk);
1026 
1027   ALL_OOP_OOP_ITERATE_CLOSURES_1(InstanceKlass_OOP_OOP_ITERATE_BACKWARDS_DECL)
1028   ALL_OOP_OOP_ITERATE_CLOSURES_2(InstanceKlass_OOP_OOP_ITERATE_BACKWARDS_DECL)
1029 #endif // INCLUDE_ALL_GCS
1030 
1031   u2 idnum_allocated_count() const      { return _idnum_allocated_count; }
1032 
1033 public:
1034   void set_in_error_state() {
1035     assert(DumpSharedSpaces, "only call this when dumping archive");
1036     _init_state = initialization_error;
1037   }
1038   bool check_sharing_error_state();
1039 
1040 private:
1041   // initialization state
1042 #ifdef ASSERT
1043   void set_init_state(ClassState state);
1044 #else
1045   void set_init_state(ClassState state) { _init_state = (u1)state; }
1046 #endif
1047   void set_rewritten()                  { _misc_flags |= _misc_rewritten; }
1048   void set_init_thread(Thread *thread)  { _init_thread = thread; }
1049 
1050   // The RedefineClasses() API can cause new method idnums to be needed
1051   // which will cause the caches to grow. Safety requires different
1052   // cache management logic if the caches can grow instead of just
1053   // going from NULL to non-NULL.
1054   bool idnum_can_increment() const      { return has_been_redefined(); }
1055   jmethodID* methods_jmethod_ids_acquire() const
1056          { return (jmethodID*)OrderAccess::load_ptr_acquire(&_methods_jmethod_ids); }
1057   void release_set_methods_jmethod_ids(jmethodID* jmeths)
1058          { OrderAccess::release_store_ptr(&_methods_jmethod_ids, jmeths); }
1059 
1060   // Lock during initialization
1061 public:
1062   // Lock for (1) initialization; (2) access to the ConstantPool of this class.
1063   // Must be one per class and it has to be a VM internal object so java code
1064   // cannot lock it (like the mirror).
1065   // It has to be an object not a Mutex because it's held through java calls.
1066   oop init_lock() const;
1067 private:
1068   void fence_and_clear_init_lock();
1069 
1070   // Static methods that are used to implement member methods where an exposed this pointer
1071   // is needed due to possible GCs
1072   static bool link_class_impl                           (instanceKlassHandle this_oop, bool throw_verifyerror, TRAPS);
1073   static bool verify_code                               (instanceKlassHandle this_oop, bool throw_verifyerror, TRAPS);
1074   static void initialize_impl                           (instanceKlassHandle this_oop, TRAPS);
1075   static void initialize_super_interfaces               (instanceKlassHandle this_oop, TRAPS);
1076   static void eager_initialize_impl                     (instanceKlassHandle this_oop);
1077   static void set_initialization_state_and_notify_impl  (instanceKlassHandle this_oop, ClassState state, TRAPS);
1078   static void call_class_initializer_impl               (instanceKlassHandle this_oop, TRAPS);
1079   static Klass* array_klass_impl                      (instanceKlassHandle this_oop, bool or_null, int n, TRAPS);
1080   static void do_local_static_fields_impl               (instanceKlassHandle this_oop, void f(fieldDescriptor* fd, Handle, TRAPS), Handle, TRAPS);
1081   /* jni_id_for_impl for jfieldID only */
1082   static JNIid* jni_id_for_impl                         (instanceKlassHandle this_oop, int offset);
1083 
1084   // Returns the array class for the n'th dimension
1085   Klass* array_klass_impl(bool or_null, int n, TRAPS);
1086 
1087   // Returns the array class with this class as element type
1088   Klass* array_klass_impl(bool or_null, TRAPS);
1089 
1090   // find a local method (returns NULL if not found)
1091   Method* find_method_impl(Symbol* name, Symbol* signature, bool skipping_overpass) const;
1092   static Method* find_method_impl(Array<Method*>* methods, Symbol* name, Symbol* signature, bool skipping_overpass, bool skipping_static);
1093 
1094   // Free CHeap allocated fields.
1095   void release_C_heap_structures();
1096 public:
1097   // CDS support - remove and restore oops from metadata. Oops are not shared.
1098   virtual void remove_unshareable_info();
1099   virtual void restore_unshareable_info(ClassLoaderData* loader_data, Handle protection_domain, TRAPS);
1100 
1101   // jvm support
1102   jint compute_modifier_flags(TRAPS) const;
1103 
1104   // JSR-292 support
1105   MemberNameTable* member_names() { return _member_names; }
1106   void set_member_names(MemberNameTable* member_names) { _member_names = member_names; }
1107   bool add_member_name(Handle member_name);
1108 
1109 public:
1110   // JVMTI support
1111   jint jvmti_class_status() const;
1112 
1113  public:
1114   // Printing
1115 #ifndef PRODUCT
1116   void print_on(outputStream* st) const;
1117 #endif
1118   void print_value_on(outputStream* st) const;
1119 
1120   void oop_print_value_on(oop obj, outputStream* st);
1121 
1122 #ifndef PRODUCT
1123   void oop_print_on      (oop obj, outputStream* st);
1124 
1125   void print_dependent_nmethods(bool verbose = false);
1126   bool is_dependent_nmethod(nmethod* nm);
1127 #endif
1128 
1129   const char* internal_name() const;
1130 
1131   // Verification
1132   void verify_on(outputStream* st);
1133 
1134   void oop_verify_on(oop obj, outputStream* st);
1135 };
1136 
1137 inline Method* InstanceKlass::method_at_vtable(int index)  {
1138 #ifndef PRODUCT
1139   assert(index >= 0, "valid vtable index");
1140   if (DebugVtables) {
1141     verify_vtable_index(index);
1142   }
1143 #endif
1144   vtableEntry* ve = (vtableEntry*)start_of_vtable();
1145   return ve[index].method();
1146 }
1147 
1148 // for adding methods
1149 // UNSET_IDNUM return means no more ids available
1150 inline u2 InstanceKlass::next_method_idnum() {
1151   if (_idnum_allocated_count == ConstMethod::MAX_IDNUM) {
1152     return ConstMethod::UNSET_IDNUM; // no more ids available
1153   } else {
1154     return _idnum_allocated_count++;
1155   }
1156 }
1157 
1158 
1159 /* JNIid class for jfieldIDs only */
1160 class JNIid: public CHeapObj<mtClass> {
1161   friend class VMStructs;
1162  private:
1163   Klass*             _holder;
1164   JNIid*             _next;
1165   int                _offset;
1166 #ifdef ASSERT
1167   bool               _is_static_field_id;
1168 #endif
1169 
1170  public:
1171   // Accessors
1172   Klass* holder() const           { return _holder; }
1173   int offset() const              { return _offset; }
1174   JNIid* next()                   { return _next; }
1175   // Constructor
1176   JNIid(Klass* holder, int offset, JNIid* next);
1177   // Identifier lookup
1178   JNIid* find(int offset);
1179 
1180   bool find_local_field(fieldDescriptor* fd) {
1181     return InstanceKlass::cast(holder())->find_local_field_from_offset(offset(), true, fd);
1182   }
1183 
1184   static void deallocate(JNIid* id);
1185   // Debugging
1186 #ifdef ASSERT
1187   bool is_static_field_id() const { return _is_static_field_id; }
1188   void set_is_static_field_id()   { _is_static_field_id = true; }
1189 #endif
1190   void verify(Klass* holder);
1191 };
1192 
1193 
1194 // If breakpoints are more numerous than just JVMTI breakpoints,
1195 // consider compressing this data structure.
1196 // It is currently a simple linked list defined in method.hpp.
1197 
1198 class BreakpointInfo;
1199 
1200 
1201 // A collection point for interesting information about the previous
1202 // version(s) of an InstanceKlass.  A GrowableArray of PreviousVersionNodes
1203 // is attached to the InstanceKlass as needed. See PreviousVersionWalker below.
1204 class PreviousVersionNode : public CHeapObj<mtClass> {
1205  private:
1206   ConstantPool*    _prev_constant_pool;
1207 
1208   // If the previous version of the InstanceKlass doesn't have any
1209   // EMCP methods, then _prev_EMCP_methods will be NULL. If all the
1210   // EMCP methods have been collected, then _prev_EMCP_methods can
1211   // have a length of zero.
1212   GrowableArray<Method*>* _prev_EMCP_methods;
1213 
1214 public:
1215   PreviousVersionNode(ConstantPool* prev_constant_pool,
1216                       GrowableArray<Method*>* prev_EMCP_methods);
1217   ~PreviousVersionNode();
1218   ConstantPool* prev_constant_pool() const {
1219     return _prev_constant_pool;
1220   }
1221   GrowableArray<Method*>* prev_EMCP_methods() const {
1222     return _prev_EMCP_methods;
1223   }
1224 };
1225 
1226 
1227 // Helper object for walking previous versions.
1228 class PreviousVersionWalker : public StackObj {
1229  private:
1230   Thread*                               _thread;
1231   GrowableArray<PreviousVersionNode *>* _previous_versions;
1232   int                                   _current_index;
1233 
1234   // A pointer to the current node object so we can handle the deletes.
1235   PreviousVersionNode*                  _current_p;
1236 
1237   // The constant pool handle keeps all the methods in this class from being
1238   // deallocated from the metaspace during class unloading.
1239   constantPoolHandle                    _current_constant_pool_handle;
1240 
1241  public:
1242   PreviousVersionWalker(Thread* thread, InstanceKlass *ik);
1243 
1244   // Return the interesting information for the next previous version
1245   // of the klass. Returns NULL if there are no more previous versions.
1246   PreviousVersionNode* next_previous_version();
1247 };
1248 
1249 
1250 //
1251 // nmethodBucket is used to record dependent nmethods for
1252 // deoptimization.  nmethod dependencies are actually <klass, method>
1253 // pairs but we really only care about the klass part for purposes of
1254 // finding nmethods which might need to be deoptimized.  Instead of
1255 // recording the method, a count of how many times a particular nmethod
1256 // was recorded is kept.  This ensures that any recording errors are
1257 // noticed since an nmethod should be removed as many times are it's
1258 // added.
1259 //
1260 class nmethodBucket: public CHeapObj<mtClass> {
1261   friend class VMStructs;
1262  private:
1263   nmethod*       _nmethod;
1264   int            _count;
1265   nmethodBucket* _next;
1266 
1267  public:
1268   nmethodBucket(nmethod* nmethod, nmethodBucket* next) {
1269     _nmethod = nmethod;
1270     _next = next;
1271     _count = 1;
1272   }
1273   int count()                             { return _count; }
1274   int increment()                         { _count += 1; return _count; }
1275   int decrement();
1276   nmethodBucket* next()                   { return _next; }
1277   void set_next(nmethodBucket* b)         { _next = b; }
1278   nmethod* get_nmethod()                  { return _nmethod; }
1279 };
1280 
1281 // An iterator that's used to access the inner classes indices in the
1282 // InstanceKlass::_inner_classes array.
1283 class InnerClassesIterator : public StackObj {
1284  private:
1285   Array<jushort>* _inner_classes;
1286   int _length;
1287   int _idx;
1288  public:
1289 
1290   InnerClassesIterator(instanceKlassHandle k) {
1291     _inner_classes = k->inner_classes();
1292     if (k->inner_classes() != NULL) {
1293       _length = _inner_classes->length();
1294       // The inner class array's length should be the multiple of
1295       // inner_class_next_offset if it only contains the InnerClasses
1296       // attribute data, or it should be
1297       // n*inner_class_next_offset+enclosing_method_attribute_size
1298       // if it also contains the EnclosingMethod data.
1299       assert((_length % InstanceKlass::inner_class_next_offset == 0 ||
1300               _length % InstanceKlass::inner_class_next_offset == InstanceKlass::enclosing_method_attribute_size),
1301              "just checking");
1302       // Remove the enclosing_method portion if exists.
1303       if (_length % InstanceKlass::inner_class_next_offset == InstanceKlass::enclosing_method_attribute_size) {
1304         _length -= InstanceKlass::enclosing_method_attribute_size;
1305       }
1306     } else {
1307       _length = 0;
1308     }
1309     _idx = 0;
1310   }
1311 
1312   int length() const {
1313     return _length;
1314   }
1315 
1316   void next() {
1317     _idx += InstanceKlass::inner_class_next_offset;
1318   }
1319 
1320   bool done() const {
1321     return (_idx >= _length);
1322   }
1323 
1324   u2 inner_class_info_index() const {
1325     return _inner_classes->at(
1326                _idx + InstanceKlass::inner_class_inner_class_info_offset);
1327   }
1328 
1329   void set_inner_class_info_index(u2 index) {
1330     _inner_classes->at_put(
1331                _idx + InstanceKlass::inner_class_inner_class_info_offset, index);
1332   }
1333 
1334   u2 outer_class_info_index() const {
1335     return _inner_classes->at(
1336                _idx + InstanceKlass::inner_class_outer_class_info_offset);
1337   }
1338 
1339   void set_outer_class_info_index(u2 index) {
1340     _inner_classes->at_put(
1341                _idx + InstanceKlass::inner_class_outer_class_info_offset, index);
1342   }
1343 
1344   u2 inner_name_index() const {
1345     return _inner_classes->at(
1346                _idx + InstanceKlass::inner_class_inner_name_offset);
1347   }
1348 
1349   void set_inner_name_index(u2 index) {
1350     _inner_classes->at_put(
1351                _idx + InstanceKlass::inner_class_inner_name_offset, index);
1352   }
1353 
1354   u2 inner_access_flags() const {
1355     return _inner_classes->at(
1356                _idx + InstanceKlass::inner_class_access_flags_offset);
1357   }
1358 };
1359 
1360 #endif // SHARE_VM_OOPS_INSTANCEKLASS_HPP