universe.cpp revision 8413:92457dfb91bd
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#include "precompiled.hpp"
26#include "classfile/classLoader.hpp"
27#include "classfile/classLoaderData.hpp"
28#include "classfile/javaClasses.hpp"
29#include "classfile/stringTable.hpp"
30#include "classfile/systemDictionary.hpp"
31#include "classfile/vmSymbols.hpp"
32#include "code/codeCache.hpp"
33#include "code/dependencies.hpp"
34#include "gc/shared/cardTableModRefBS.hpp"
35#include "gc/shared/collectedHeap.inline.hpp"
36#include "gc/shared/gcLocker.inline.hpp"
37#include "gc/shared/genCollectedHeap.hpp"
38#include "gc/shared/genRemSet.hpp"
39#include "gc/shared/generation.hpp"
40#include "gc/shared/space.hpp"
41#include "interpreter/interpreter.hpp"
42#include "memory/filemap.hpp"
43#include "memory/metadataFactory.hpp"
44#include "memory/metaspaceShared.hpp"
45#include "memory/oopFactory.hpp"
46#include "memory/universe.hpp"
47#include "memory/universe.inline.hpp"
48#include "oops/constantPool.hpp"
49#include "oops/instanceClassLoaderKlass.hpp"
50#include "oops/instanceKlass.hpp"
51#include "oops/instanceMirrorKlass.hpp"
52#include "oops/instanceRefKlass.hpp"
53#include "oops/objArrayOop.inline.hpp"
54#include "oops/oop.inline.hpp"
55#include "oops/typeArrayKlass.hpp"
56#include "prims/jvmtiRedefineClassesTrace.hpp"
57#include "runtime/arguments.hpp"
58#include "runtime/atomic.inline.hpp"
59#include "runtime/deoptimization.hpp"
60#include "runtime/fprofiler.hpp"
61#include "runtime/handles.inline.hpp"
62#include "runtime/init.hpp"
63#include "runtime/java.hpp"
64#include "runtime/javaCalls.hpp"
65#include "runtime/sharedRuntime.hpp"
66#include "runtime/synchronizer.hpp"
67#include "runtime/thread.inline.hpp"
68#include "runtime/timer.hpp"
69#include "runtime/vm_operations.hpp"
70#include "services/memoryService.hpp"
71#include "utilities/copy.hpp"
72#include "utilities/events.hpp"
73#include "utilities/hashtable.inline.hpp"
74#include "utilities/macros.hpp"
75#include "utilities/preserveException.hpp"
76#if INCLUDE_ALL_GCS
77#include "gc/cms/cmsCollectorPolicy.hpp"
78#include "gc/g1/g1CollectedHeap.inline.hpp"
79#include "gc/g1/g1CollectorPolicy_ext.hpp"
80#include "gc/parallel/parallelScavengeHeap.hpp"
81#include "gc/shared/adaptiveSizePolicy.hpp"
82#endif // INCLUDE_ALL_GCS
83#if INCLUDE_CDS
84#include "classfile/sharedClassUtil.hpp"
85#endif
86
87// Known objects
88Klass* Universe::_boolArrayKlassObj                 = NULL;
89Klass* Universe::_byteArrayKlassObj                 = NULL;
90Klass* Universe::_charArrayKlassObj                 = NULL;
91Klass* Universe::_intArrayKlassObj                  = NULL;
92Klass* Universe::_shortArrayKlassObj                = NULL;
93Klass* Universe::_longArrayKlassObj                 = NULL;
94Klass* Universe::_singleArrayKlassObj               = NULL;
95Klass* Universe::_doubleArrayKlassObj               = NULL;
96Klass* Universe::_typeArrayKlassObjs[T_VOID+1]      = { NULL /*, NULL...*/ };
97Klass* Universe::_objectArrayKlassObj               = NULL;
98oop Universe::_int_mirror                             = NULL;
99oop Universe::_float_mirror                           = NULL;
100oop Universe::_double_mirror                          = NULL;
101oop Universe::_byte_mirror                            = NULL;
102oop Universe::_bool_mirror                            = NULL;
103oop Universe::_char_mirror                            = NULL;
104oop Universe::_long_mirror                            = NULL;
105oop Universe::_short_mirror                           = NULL;
106oop Universe::_void_mirror                            = NULL;
107oop Universe::_mirrors[T_VOID+1]                      = { NULL /*, NULL...*/ };
108oop Universe::_main_thread_group                      = NULL;
109oop Universe::_system_thread_group                    = NULL;
110objArrayOop Universe::_the_empty_class_klass_array    = NULL;
111Array<Klass*>* Universe::_the_array_interfaces_array = NULL;
112oop Universe::_the_null_string                        = NULL;
113oop Universe::_the_min_jint_string                   = NULL;
114LatestMethodCache* Universe::_finalizer_register_cache = NULL;
115LatestMethodCache* Universe::_loader_addClass_cache    = NULL;
116LatestMethodCache* Universe::_pd_implies_cache         = NULL;
117LatestMethodCache* Universe::_throw_illegal_access_error_cache = NULL;
118oop Universe::_out_of_memory_error_java_heap          = NULL;
119oop Universe::_out_of_memory_error_metaspace          = NULL;
120oop Universe::_out_of_memory_error_class_metaspace    = NULL;
121oop Universe::_out_of_memory_error_array_size         = NULL;
122oop Universe::_out_of_memory_error_gc_overhead_limit  = NULL;
123oop Universe::_out_of_memory_error_realloc_objects    = NULL;
124objArrayOop Universe::_preallocated_out_of_memory_error_array = NULL;
125volatile jint Universe::_preallocated_out_of_memory_error_avail_count = 0;
126bool Universe::_verify_in_progress                    = false;
127oop Universe::_null_ptr_exception_instance            = NULL;
128oop Universe::_arithmetic_exception_instance          = NULL;
129oop Universe::_virtual_machine_error_instance         = NULL;
130oop Universe::_vm_exception                           = NULL;
131oop Universe::_allocation_context_notification_obj    = NULL;
132
133Array<int>* Universe::_the_empty_int_array            = NULL;
134Array<u2>* Universe::_the_empty_short_array           = NULL;
135Array<Klass*>* Universe::_the_empty_klass_array     = NULL;
136Array<Method*>* Universe::_the_empty_method_array   = NULL;
137
138// These variables are guarded by FullGCALot_lock.
139debug_only(objArrayOop Universe::_fullgc_alot_dummy_array = NULL;)
140debug_only(int Universe::_fullgc_alot_dummy_next      = 0;)
141
142// Heap
143int             Universe::_verify_count = 0;
144
145int             Universe::_base_vtable_size = 0;
146bool            Universe::_bootstrapping = false;
147bool            Universe::_fully_initialized = false;
148
149size_t          Universe::_heap_capacity_at_last_gc;
150size_t          Universe::_heap_used_at_last_gc = 0;
151
152CollectedHeap*  Universe::_collectedHeap = NULL;
153
154NarrowPtrStruct Universe::_narrow_oop = { NULL, 0, true };
155NarrowPtrStruct Universe::_narrow_klass = { NULL, 0, true };
156address Universe::_narrow_ptrs_base;
157
158void Universe::basic_type_classes_do(void f(Klass*)) {
159  f(boolArrayKlassObj());
160  f(byteArrayKlassObj());
161  f(charArrayKlassObj());
162  f(intArrayKlassObj());
163  f(shortArrayKlassObj());
164  f(longArrayKlassObj());
165  f(singleArrayKlassObj());
166  f(doubleArrayKlassObj());
167}
168
169void Universe::oops_do(OopClosure* f, bool do_all) {
170
171  f->do_oop((oop*) &_int_mirror);
172  f->do_oop((oop*) &_float_mirror);
173  f->do_oop((oop*) &_double_mirror);
174  f->do_oop((oop*) &_byte_mirror);
175  f->do_oop((oop*) &_bool_mirror);
176  f->do_oop((oop*) &_char_mirror);
177  f->do_oop((oop*) &_long_mirror);
178  f->do_oop((oop*) &_short_mirror);
179  f->do_oop((oop*) &_void_mirror);
180
181  for (int i = T_BOOLEAN; i < T_VOID+1; i++) {
182    f->do_oop((oop*) &_mirrors[i]);
183  }
184  assert(_mirrors[0] == NULL && _mirrors[T_BOOLEAN - 1] == NULL, "checking");
185
186  f->do_oop((oop*)&_the_empty_class_klass_array);
187  f->do_oop((oop*)&_the_null_string);
188  f->do_oop((oop*)&_the_min_jint_string);
189  f->do_oop((oop*)&_out_of_memory_error_java_heap);
190  f->do_oop((oop*)&_out_of_memory_error_metaspace);
191  f->do_oop((oop*)&_out_of_memory_error_class_metaspace);
192  f->do_oop((oop*)&_out_of_memory_error_array_size);
193  f->do_oop((oop*)&_out_of_memory_error_gc_overhead_limit);
194  f->do_oop((oop*)&_out_of_memory_error_realloc_objects);
195    f->do_oop((oop*)&_preallocated_out_of_memory_error_array);
196  f->do_oop((oop*)&_null_ptr_exception_instance);
197  f->do_oop((oop*)&_arithmetic_exception_instance);
198  f->do_oop((oop*)&_virtual_machine_error_instance);
199  f->do_oop((oop*)&_main_thread_group);
200  f->do_oop((oop*)&_system_thread_group);
201  f->do_oop((oop*)&_vm_exception);
202  f->do_oop((oop*)&_allocation_context_notification_obj);
203  debug_only(f->do_oop((oop*)&_fullgc_alot_dummy_array);)
204}
205
206// Serialize metadata in and out of CDS archive, not oops.
207void Universe::serialize(SerializeClosure* f, bool do_all) {
208
209  f->do_ptr((void**)&_boolArrayKlassObj);
210  f->do_ptr((void**)&_byteArrayKlassObj);
211  f->do_ptr((void**)&_charArrayKlassObj);
212  f->do_ptr((void**)&_intArrayKlassObj);
213  f->do_ptr((void**)&_shortArrayKlassObj);
214  f->do_ptr((void**)&_longArrayKlassObj);
215  f->do_ptr((void**)&_singleArrayKlassObj);
216  f->do_ptr((void**)&_doubleArrayKlassObj);
217  f->do_ptr((void**)&_objectArrayKlassObj);
218
219  {
220    for (int i = 0; i < T_VOID+1; i++) {
221      if (_typeArrayKlassObjs[i] != NULL) {
222        assert(i >= T_BOOLEAN, "checking");
223        f->do_ptr((void**)&_typeArrayKlassObjs[i]);
224      } else if (do_all) {
225        f->do_ptr((void**)&_typeArrayKlassObjs[i]);
226      }
227    }
228  }
229
230  f->do_ptr((void**)&_the_array_interfaces_array);
231  f->do_ptr((void**)&_the_empty_int_array);
232  f->do_ptr((void**)&_the_empty_short_array);
233  f->do_ptr((void**)&_the_empty_method_array);
234  f->do_ptr((void**)&_the_empty_klass_array);
235  _finalizer_register_cache->serialize(f);
236  _loader_addClass_cache->serialize(f);
237  _pd_implies_cache->serialize(f);
238  _throw_illegal_access_error_cache->serialize(f);
239}
240
241void Universe::check_alignment(uintx size, uintx alignment, const char* name) {
242  if (size < alignment || size % alignment != 0) {
243    vm_exit_during_initialization(
244      err_msg("Size of %s (" UINTX_FORMAT " bytes) must be aligned to " UINTX_FORMAT " bytes", name, size, alignment));
245  }
246}
247
248void initialize_basic_type_klass(Klass* k, TRAPS) {
249  Klass* ok = SystemDictionary::Object_klass();
250  if (UseSharedSpaces) {
251    ClassLoaderData* loader_data = ClassLoaderData::the_null_class_loader_data();
252    assert(k->super() == ok, "u3");
253    k->restore_unshareable_info(loader_data, Handle(), CHECK);
254  } else {
255    k->initialize_supers(ok, CHECK);
256  }
257  k->append_to_sibling_list();
258}
259
260void Universe::genesis(TRAPS) {
261  ResourceMark rm;
262
263  { FlagSetting fs(_bootstrapping, true);
264
265    { MutexLocker mc(Compile_lock);
266
267      // determine base vtable size; without that we cannot create the array klasses
268      compute_base_vtable_size();
269
270      if (!UseSharedSpaces) {
271        _boolArrayKlassObj      = TypeArrayKlass::create_klass(T_BOOLEAN, sizeof(jboolean), CHECK);
272        _charArrayKlassObj      = TypeArrayKlass::create_klass(T_CHAR,    sizeof(jchar),    CHECK);
273        _singleArrayKlassObj    = TypeArrayKlass::create_klass(T_FLOAT,   sizeof(jfloat),   CHECK);
274        _doubleArrayKlassObj    = TypeArrayKlass::create_klass(T_DOUBLE,  sizeof(jdouble),  CHECK);
275        _byteArrayKlassObj      = TypeArrayKlass::create_klass(T_BYTE,    sizeof(jbyte),    CHECK);
276        _shortArrayKlassObj     = TypeArrayKlass::create_klass(T_SHORT,   sizeof(jshort),   CHECK);
277        _intArrayKlassObj       = TypeArrayKlass::create_klass(T_INT,     sizeof(jint),     CHECK);
278        _longArrayKlassObj      = TypeArrayKlass::create_klass(T_LONG,    sizeof(jlong),    CHECK);
279
280        _typeArrayKlassObjs[T_BOOLEAN] = _boolArrayKlassObj;
281        _typeArrayKlassObjs[T_CHAR]    = _charArrayKlassObj;
282        _typeArrayKlassObjs[T_FLOAT]   = _singleArrayKlassObj;
283        _typeArrayKlassObjs[T_DOUBLE]  = _doubleArrayKlassObj;
284        _typeArrayKlassObjs[T_BYTE]    = _byteArrayKlassObj;
285        _typeArrayKlassObjs[T_SHORT]   = _shortArrayKlassObj;
286        _typeArrayKlassObjs[T_INT]     = _intArrayKlassObj;
287        _typeArrayKlassObjs[T_LONG]    = _longArrayKlassObj;
288
289        ClassLoaderData* null_cld = ClassLoaderData::the_null_class_loader_data();
290
291        _the_array_interfaces_array = MetadataFactory::new_array<Klass*>(null_cld, 2, NULL, CHECK);
292        _the_empty_int_array        = MetadataFactory::new_array<int>(null_cld, 0, CHECK);
293        _the_empty_short_array      = MetadataFactory::new_array<u2>(null_cld, 0, CHECK);
294        _the_empty_method_array     = MetadataFactory::new_array<Method*>(null_cld, 0, CHECK);
295        _the_empty_klass_array      = MetadataFactory::new_array<Klass*>(null_cld, 0, CHECK);
296      }
297    }
298
299    vmSymbols::initialize(CHECK);
300
301    SystemDictionary::initialize(CHECK);
302
303    Klass* ok = SystemDictionary::Object_klass();
304
305    _the_null_string            = StringTable::intern("null", CHECK);
306    _the_min_jint_string       = StringTable::intern("-2147483648", CHECK);
307
308    if (UseSharedSpaces) {
309      // Verify shared interfaces array.
310      assert(_the_array_interfaces_array->at(0) ==
311             SystemDictionary::Cloneable_klass(), "u3");
312      assert(_the_array_interfaces_array->at(1) ==
313             SystemDictionary::Serializable_klass(), "u3");
314    } else {
315      // Set up shared interfaces array.  (Do this before supers are set up.)
316      _the_array_interfaces_array->at_put(0, SystemDictionary::Cloneable_klass());
317      _the_array_interfaces_array->at_put(1, SystemDictionary::Serializable_klass());
318    }
319
320    initialize_basic_type_klass(boolArrayKlassObj(), CHECK);
321    initialize_basic_type_klass(charArrayKlassObj(), CHECK);
322    initialize_basic_type_klass(singleArrayKlassObj(), CHECK);
323    initialize_basic_type_klass(doubleArrayKlassObj(), CHECK);
324    initialize_basic_type_klass(byteArrayKlassObj(), CHECK);
325    initialize_basic_type_klass(shortArrayKlassObj(), CHECK);
326    initialize_basic_type_klass(intArrayKlassObj(), CHECK);
327    initialize_basic_type_klass(longArrayKlassObj(), CHECK);
328  } // end of core bootstrapping
329
330  // Maybe this could be lifted up now that object array can be initialized
331  // during the bootstrapping.
332
333  // OLD
334  // Initialize _objectArrayKlass after core bootstraping to make
335  // sure the super class is set up properly for _objectArrayKlass.
336  // ---
337  // NEW
338  // Since some of the old system object arrays have been converted to
339  // ordinary object arrays, _objectArrayKlass will be loaded when
340  // SystemDictionary::initialize(CHECK); is run. See the extra check
341  // for Object_klass_loaded in objArrayKlassKlass::allocate_objArray_klass_impl.
342  _objectArrayKlassObj = InstanceKlass::
343    cast(SystemDictionary::Object_klass())->array_klass(1, CHECK);
344  // OLD
345  // Add the class to the class hierarchy manually to make sure that
346  // its vtable is initialized after core bootstrapping is completed.
347  // ---
348  // New
349  // Have already been initialized.
350  _objectArrayKlassObj->append_to_sibling_list();
351
352  // Compute is_jdk version flags.
353  // Only 1.3 or later has the java.lang.Shutdown class.
354  // Only 1.4 or later has the java.lang.CharSequence interface.
355  // Only 1.5 or later has the java.lang.management.MemoryUsage class.
356  if (JDK_Version::is_partially_initialized()) {
357    uint8_t jdk_version;
358    Klass* k = SystemDictionary::resolve_or_null(
359        vmSymbols::java_lang_management_MemoryUsage(), THREAD);
360    CLEAR_PENDING_EXCEPTION; // ignore exceptions
361    if (k == NULL) {
362      k = SystemDictionary::resolve_or_null(
363          vmSymbols::java_lang_CharSequence(), THREAD);
364      CLEAR_PENDING_EXCEPTION; // ignore exceptions
365      if (k == NULL) {
366        k = SystemDictionary::resolve_or_null(
367            vmSymbols::java_lang_Shutdown(), THREAD);
368        CLEAR_PENDING_EXCEPTION; // ignore exceptions
369        if (k == NULL) {
370          jdk_version = 2;
371        } else {
372          jdk_version = 3;
373        }
374      } else {
375        jdk_version = 4;
376      }
377    } else {
378      jdk_version = 5;
379    }
380    JDK_Version::fully_initialize(jdk_version);
381  }
382
383  #ifdef ASSERT
384  if (FullGCALot) {
385    // Allocate an array of dummy objects.
386    // We'd like these to be at the bottom of the old generation,
387    // so that when we free one and then collect,
388    // (almost) the whole heap moves
389    // and we find out if we actually update all the oops correctly.
390    // But we can't allocate directly in the old generation,
391    // so we allocate wherever, and hope that the first collection
392    // moves these objects to the bottom of the old generation.
393    // We can allocate directly in the permanent generation, so we do.
394    int size;
395    if (UseConcMarkSweepGC) {
396      warning("Using +FullGCALot with concurrent mark sweep gc "
397              "will not force all objects to relocate");
398      size = FullGCALotDummies;
399    } else {
400      size = FullGCALotDummies * 2;
401    }
402    objArrayOop    naked_array = oopFactory::new_objArray(SystemDictionary::Object_klass(), size, CHECK);
403    objArrayHandle dummy_array(THREAD, naked_array);
404    int i = 0;
405    while (i < size) {
406        // Allocate dummy in old generation
407      oop dummy = InstanceKlass::cast(SystemDictionary::Object_klass())->allocate_instance(CHECK);
408      dummy_array->obj_at_put(i++, dummy);
409    }
410    {
411      // Only modify the global variable inside the mutex.
412      // If we had a race to here, the other dummy_array instances
413      // and their elements just get dropped on the floor, which is fine.
414      MutexLocker ml(FullGCALot_lock);
415      if (_fullgc_alot_dummy_array == NULL) {
416        _fullgc_alot_dummy_array = dummy_array();
417      }
418    }
419    assert(i == _fullgc_alot_dummy_array->length(), "just checking");
420  }
421  #endif
422
423  // Initialize dependency array for null class loader
424  ClassLoaderData::the_null_class_loader_data()->init_dependencies(CHECK);
425
426}
427
428// CDS support for patching vtables in metadata in the shared archive.
429// All types inherited from Metadata have vtables, but not types inherited
430// from MetaspaceObj, because the latter does not have virtual functions.
431// If the metadata type has a vtable, it cannot be shared in the read-only
432// section of the CDS archive, because the vtable pointer is patched.
433static inline void add_vtable(void** list, int* n, void* o, int count) {
434  guarantee((*n) < count, "vtable list too small");
435  void* vtable = dereference_vptr(o);
436  assert(*(void**)(vtable) != NULL, "invalid vtable");
437  list[(*n)++] = vtable;
438}
439
440void Universe::init_self_patching_vtbl_list(void** list, int count) {
441  int n = 0;
442  { InstanceKlass o;          add_vtable(list, &n, &o, count); }
443  { InstanceClassLoaderKlass o; add_vtable(list, &n, &o, count); }
444  { InstanceMirrorKlass o;    add_vtable(list, &n, &o, count); }
445  { InstanceRefKlass o;       add_vtable(list, &n, &o, count); }
446  { TypeArrayKlass o;         add_vtable(list, &n, &o, count); }
447  { ObjArrayKlass o;          add_vtable(list, &n, &o, count); }
448  { Method o;                 add_vtable(list, &n, &o, count); }
449  { ConstantPool o;           add_vtable(list, &n, &o, count); }
450}
451
452void Universe::initialize_basic_type_mirrors(TRAPS) {
453    assert(_int_mirror==NULL, "basic type mirrors already initialized");
454    _int_mirror     =
455      java_lang_Class::create_basic_type_mirror("int",    T_INT, CHECK);
456    _float_mirror   =
457      java_lang_Class::create_basic_type_mirror("float",  T_FLOAT,   CHECK);
458    _double_mirror  =
459      java_lang_Class::create_basic_type_mirror("double", T_DOUBLE,  CHECK);
460    _byte_mirror    =
461      java_lang_Class::create_basic_type_mirror("byte",   T_BYTE, CHECK);
462    _bool_mirror    =
463      java_lang_Class::create_basic_type_mirror("boolean",T_BOOLEAN, CHECK);
464    _char_mirror    =
465      java_lang_Class::create_basic_type_mirror("char",   T_CHAR, CHECK);
466    _long_mirror    =
467      java_lang_Class::create_basic_type_mirror("long",   T_LONG, CHECK);
468    _short_mirror   =
469      java_lang_Class::create_basic_type_mirror("short",  T_SHORT,   CHECK);
470    _void_mirror    =
471      java_lang_Class::create_basic_type_mirror("void",   T_VOID, CHECK);
472
473    _mirrors[T_INT]     = _int_mirror;
474    _mirrors[T_FLOAT]   = _float_mirror;
475    _mirrors[T_DOUBLE]  = _double_mirror;
476    _mirrors[T_BYTE]    = _byte_mirror;
477    _mirrors[T_BOOLEAN] = _bool_mirror;
478    _mirrors[T_CHAR]    = _char_mirror;
479    _mirrors[T_LONG]    = _long_mirror;
480    _mirrors[T_SHORT]   = _short_mirror;
481    _mirrors[T_VOID]    = _void_mirror;
482  //_mirrors[T_OBJECT]  = InstanceKlass::cast(_object_klass)->java_mirror();
483  //_mirrors[T_ARRAY]   = InstanceKlass::cast(_object_klass)->java_mirror();
484}
485
486void Universe::fixup_mirrors(TRAPS) {
487  // Bootstrap problem: all classes gets a mirror (java.lang.Class instance) assigned eagerly,
488  // but we cannot do that for classes created before java.lang.Class is loaded. Here we simply
489  // walk over permanent objects created so far (mostly classes) and fixup their mirrors. Note
490  // that the number of objects allocated at this point is very small.
491  assert(SystemDictionary::Class_klass_loaded(), "java.lang.Class should be loaded");
492  HandleMark hm(THREAD);
493  // Cache the start of the static fields
494  InstanceMirrorKlass::init_offset_of_static_fields();
495
496  GrowableArray <Klass*>* list = java_lang_Class::fixup_mirror_list();
497  int list_length = list->length();
498  for (int i = 0; i < list_length; i++) {
499    Klass* k = list->at(i);
500    assert(k->is_klass(), "List should only hold classes");
501    EXCEPTION_MARK;
502    KlassHandle kh(THREAD, k);
503    java_lang_Class::fixup_mirror(kh, CATCH);
504}
505  delete java_lang_Class::fixup_mirror_list();
506  java_lang_Class::set_fixup_mirror_list(NULL);
507}
508
509static bool has_run_finalizers_on_exit = false;
510
511void Universe::run_finalizers_on_exit() {
512  if (has_run_finalizers_on_exit) return;
513  has_run_finalizers_on_exit = true;
514
515  // Called on VM exit. This ought to be run in a separate thread.
516  if (TraceReferenceGC) tty->print_cr("Callback to run finalizers on exit");
517  {
518    PRESERVE_EXCEPTION_MARK;
519    KlassHandle finalizer_klass(THREAD, SystemDictionary::Finalizer_klass());
520    JavaValue result(T_VOID);
521    JavaCalls::call_static(
522      &result,
523      finalizer_klass,
524      vmSymbols::run_finalizers_on_exit_name(),
525      vmSymbols::void_method_signature(),
526      THREAD
527    );
528    // Ignore any pending exceptions
529    CLEAR_PENDING_EXCEPTION;
530  }
531}
532
533
534// initialize_vtable could cause gc if
535// 1) we specified true to initialize_vtable and
536// 2) this ran after gc was enabled
537// In case those ever change we use handles for oops
538void Universe::reinitialize_vtable_of(KlassHandle k_h, TRAPS) {
539  // init vtable of k and all subclasses
540  Klass* ko = k_h();
541  klassVtable* vt = ko->vtable();
542  if (vt) vt->initialize_vtable(false, CHECK);
543  if (ko->oop_is_instance()) {
544    InstanceKlass* ik = (InstanceKlass*)ko;
545    for (KlassHandle s_h(THREAD, ik->subklass());
546         s_h() != NULL;
547         s_h = KlassHandle(THREAD, s_h()->next_sibling())) {
548      reinitialize_vtable_of(s_h, CHECK);
549    }
550  }
551}
552
553
554void initialize_itable_for_klass(Klass* k, TRAPS) {
555  InstanceKlass::cast(k)->itable()->initialize_itable(false, CHECK);
556}
557
558
559void Universe::reinitialize_itables(TRAPS) {
560  SystemDictionary::classes_do(initialize_itable_for_klass, CHECK);
561
562}
563
564
565bool Universe::on_page_boundary(void* addr) {
566  return ((uintptr_t) addr) % os::vm_page_size() == 0;
567}
568
569
570bool Universe::should_fill_in_stack_trace(Handle throwable) {
571  // never attempt to fill in the stack trace of preallocated errors that do not have
572  // backtrace. These errors are kept alive forever and may be "re-used" when all
573  // preallocated errors with backtrace have been consumed. Also need to avoid
574  // a potential loop which could happen if an out of memory occurs when attempting
575  // to allocate the backtrace.
576  return ((throwable() != Universe::_out_of_memory_error_java_heap) &&
577          (throwable() != Universe::_out_of_memory_error_metaspace)  &&
578          (throwable() != Universe::_out_of_memory_error_class_metaspace)  &&
579          (throwable() != Universe::_out_of_memory_error_array_size) &&
580          (throwable() != Universe::_out_of_memory_error_gc_overhead_limit) &&
581          (throwable() != Universe::_out_of_memory_error_realloc_objects));
582}
583
584
585oop Universe::gen_out_of_memory_error(oop default_err) {
586  // generate an out of memory error:
587  // - if there is a preallocated error with backtrace available then return it wth
588  //   a filled in stack trace.
589  // - if there are no preallocated errors with backtrace available then return
590  //   an error without backtrace.
591  int next;
592  if (_preallocated_out_of_memory_error_avail_count > 0) {
593    next = (int)Atomic::add(-1, &_preallocated_out_of_memory_error_avail_count);
594    assert(next < (int)PreallocatedOutOfMemoryErrorCount, "avail count is corrupt");
595  } else {
596    next = -1;
597  }
598  if (next < 0) {
599    // all preallocated errors have been used.
600    // return default
601    return default_err;
602  } else {
603    // get the error object at the slot and set set it to NULL so that the
604    // array isn't keeping it alive anymore.
605    oop exc = preallocated_out_of_memory_errors()->obj_at(next);
606    assert(exc != NULL, "slot has been used already");
607    preallocated_out_of_memory_errors()->obj_at_put(next, NULL);
608
609    // use the message from the default error
610    oop msg = java_lang_Throwable::message(default_err);
611    assert(msg != NULL, "no message");
612    java_lang_Throwable::set_message(exc, msg);
613
614    // populate the stack trace and return it.
615    java_lang_Throwable::fill_in_stack_trace_of_preallocated_backtrace(exc);
616    return exc;
617  }
618}
619
620intptr_t Universe::_non_oop_bits = 0;
621
622void* Universe::non_oop_word() {
623  // Neither the high bits nor the low bits of this value is allowed
624  // to look like (respectively) the high or low bits of a real oop.
625  //
626  // High and low are CPU-specific notions, but low always includes
627  // the low-order bit.  Since oops are always aligned at least mod 4,
628  // setting the low-order bit will ensure that the low half of the
629  // word will never look like that of a real oop.
630  //
631  // Using the OS-supplied non-memory-address word (usually 0 or -1)
632  // will take care of the high bits, however many there are.
633
634  if (_non_oop_bits == 0) {
635    _non_oop_bits = (intptr_t)os::non_memory_address_word() | 1;
636  }
637
638  return (void*)_non_oop_bits;
639}
640
641jint universe_init() {
642  assert(!Universe::_fully_initialized, "called after initialize_vtables");
643  guarantee(1 << LogHeapWordSize == sizeof(HeapWord),
644         "LogHeapWordSize is incorrect.");
645  guarantee(sizeof(oop) >= sizeof(HeapWord), "HeapWord larger than oop?");
646  guarantee(sizeof(oop) % sizeof(HeapWord) == 0,
647            "oop size is not not a multiple of HeapWord size");
648  TraceTime timer("Genesis", TraceStartupTime);
649  JavaClasses::compute_hard_coded_offsets();
650
651  jint status = Universe::initialize_heap();
652  if (status != JNI_OK) {
653    return status;
654  }
655
656  Metaspace::global_initialize();
657
658  // Create memory for metadata.  Must be after initializing heap for
659  // DumpSharedSpaces.
660  ClassLoaderData::init_null_class_loader_data();
661
662  // We have a heap so create the Method* caches before
663  // Metaspace::initialize_shared_spaces() tries to populate them.
664  Universe::_finalizer_register_cache = new LatestMethodCache();
665  Universe::_loader_addClass_cache    = new LatestMethodCache();
666  Universe::_pd_implies_cache         = new LatestMethodCache();
667  Universe::_throw_illegal_access_error_cache = new LatestMethodCache();
668
669  if (UseSharedSpaces) {
670    // Read the data structures supporting the shared spaces (shared
671    // system dictionary, symbol table, etc.).  After that, access to
672    // the file (other than the mapped regions) is no longer needed, and
673    // the file is closed. Closing the file does not affect the
674    // currently mapped regions.
675    MetaspaceShared::initialize_shared_spaces();
676    StringTable::create_table();
677  } else {
678    SymbolTable::create_table();
679    StringTable::create_table();
680    ClassLoader::create_package_info_table();
681
682    if (DumpSharedSpaces) {
683      MetaspaceShared::prepare_for_dumping();
684    }
685  }
686
687  return JNI_OK;
688}
689
690template <class Heap, class Policy>
691jint Universe::create_heap() {
692  assert(_collectedHeap == NULL, "Heap already created");
693  Policy* policy = new Policy();
694  policy->initialize_all();
695  _collectedHeap = new Heap(policy);
696  return _collectedHeap->initialize();
697}
698
699// Choose the heap base address and oop encoding mode
700// when compressed oops are used:
701// Unscaled  - Use 32-bits oops without encoding when
702//     NarrowOopHeapBaseMin + heap_size < 4Gb
703// ZeroBased - Use zero based compressed oops with encoding when
704//     NarrowOopHeapBaseMin + heap_size < 32Gb
705// HeapBased - Use compressed oops with heap base + encoding.
706
707jint Universe::initialize_heap() {
708  jint status = JNI_ERR;
709
710#if !INCLUDE_ALL_GCS
711  if (UseParallelGC) {
712    fatal("UseParallelGC not supported in this VM.");
713  } else if (UseG1GC) {
714    fatal("UseG1GC not supported in this VM.");
715  } else if (UseConcMarkSweepGC) {
716    fatal("UseConcMarkSweepGC not supported in this VM.");
717#else
718  if (UseParallelGC) {
719    status = Universe::create_heap<ParallelScavengeHeap, GenerationSizer>();
720  } else if (UseG1GC) {
721    status = Universe::create_heap<G1CollectedHeap, G1CollectorPolicyExt>();
722  } else if (UseConcMarkSweepGC) {
723    status = Universe::create_heap<GenCollectedHeap, ConcurrentMarkSweepPolicy>();
724#endif
725  } else if (UseSerialGC) {
726    status = Universe::create_heap<GenCollectedHeap, MarkSweepPolicy>();
727  } else {
728    ShouldNotReachHere();
729  }
730
731  if (status != JNI_OK) {
732    return status;
733  }
734
735  ThreadLocalAllocBuffer::set_max_size(Universe::heap()->max_tlab_size());
736
737#ifdef _LP64
738  if (UseCompressedOops) {
739    // Subtract a page because something can get allocated at heap base.
740    // This also makes implicit null checking work, because the
741    // memory+1 page below heap_base needs to cause a signal.
742    // See needs_explicit_null_check.
743    // Only set the heap base for compressed oops because it indicates
744    // compressed oops for pstack code.
745    if ((uint64_t)Universe::heap()->reserved_region().end() > UnscaledOopHeapMax) {
746      // Didn't reserve heap below 4Gb.  Must shift.
747      Universe::set_narrow_oop_shift(LogMinObjAlignmentInBytes);
748    }
749    if ((uint64_t)Universe::heap()->reserved_region().end() <= OopEncodingHeapMax) {
750      // Did reserve heap below 32Gb. Can use base == 0;
751      Universe::set_narrow_oop_base(0);
752    }
753
754    Universe::set_narrow_ptrs_base(Universe::narrow_oop_base());
755
756    if (PrintCompressedOopsMode || (PrintMiscellaneous && Verbose)) {
757      Universe::print_compressed_oops_mode();
758    }
759
760    // Tell tests in which mode we run.
761    Arguments::PropertyList_add(new SystemProperty("java.vm.compressedOopsMode",
762                                                   narrow_oop_mode_to_string(narrow_oop_mode()),
763                                                   false));
764  }
765  // Universe::narrow_oop_base() is one page below the heap.
766  assert((intptr_t)Universe::narrow_oop_base() <= (intptr_t)(Universe::heap()->base() -
767         os::vm_page_size()) ||
768         Universe::narrow_oop_base() == NULL, "invalid value");
769  assert(Universe::narrow_oop_shift() == LogMinObjAlignmentInBytes ||
770         Universe::narrow_oop_shift() == 0, "invalid value");
771#endif
772
773  // We will never reach the CATCH below since Exceptions::_throw will cause
774  // the VM to exit if an exception is thrown during initialization
775
776  if (UseTLAB) {
777    assert(Universe::heap()->supports_tlab_allocation(),
778           "Should support thread-local allocation buffers");
779    ThreadLocalAllocBuffer::startup_initialization();
780  }
781  return JNI_OK;
782}
783
784void Universe::print_compressed_oops_mode() {
785  tty->cr();
786  tty->print("heap address: " PTR_FORMAT ", size: " SIZE_FORMAT " MB",
787              p2i(Universe::heap()->base()), Universe::heap()->reserved_region().byte_size()/M);
788
789  tty->print(", Compressed Oops mode: %s", narrow_oop_mode_to_string(narrow_oop_mode()));
790
791  if (Universe::narrow_oop_base() != 0) {
792    tty->print(": " PTR_FORMAT, p2i(Universe::narrow_oop_base()));
793  }
794
795  if (Universe::narrow_oop_shift() != 0) {
796    tty->print(", Oop shift amount: %d", Universe::narrow_oop_shift());
797  }
798
799  if (!Universe::narrow_oop_use_implicit_null_checks()) {
800    tty->print(", no protected page in front of the heap");
801  }
802
803  tty->cr();
804  tty->cr();
805}
806
807ReservedSpace Universe::reserve_heap(size_t heap_size, size_t alignment) {
808
809  assert(alignment <= Arguments::conservative_max_heap_alignment(),
810      err_msg("actual alignment "SIZE_FORMAT" must be within maximum heap alignment "SIZE_FORMAT,
811          alignment, Arguments::conservative_max_heap_alignment()));
812
813  size_t total_reserved = align_size_up(heap_size, alignment);
814  assert(!UseCompressedOops || (total_reserved <= (OopEncodingHeapMax - os::vm_page_size())),
815      "heap size is too big for compressed oops");
816
817  bool use_large_pages = UseLargePages && is_size_aligned(alignment, os::large_page_size());
818  assert(!UseLargePages
819      || UseParallelGC
820      || use_large_pages, "Wrong alignment to use large pages");
821
822  // Now create the space.
823  ReservedHeapSpace total_rs(total_reserved, alignment, use_large_pages);
824
825  if (total_rs.is_reserved()) {
826    assert((total_reserved == total_rs.size()) && ((uintptr_t)total_rs.base() % alignment == 0),
827           "must be exactly of required size and alignment");
828    // We are good.
829
830    if (UseCompressedOops) {
831      // Universe::initialize_heap() will reset this to NULL if unscaled
832      // or zero-based narrow oops are actually used.
833      // Else heap start and base MUST differ, so that NULL can be encoded nonambigous.
834      Universe::set_narrow_oop_base((address)total_rs.compressed_oop_base());
835    }
836
837    return total_rs;
838  }
839
840  vm_exit_during_initialization(
841    err_msg("Could not reserve enough space for " SIZE_FORMAT "KB object heap",
842            total_reserved/K));
843
844  // satisfy compiler
845  ShouldNotReachHere();
846  return ReservedHeapSpace(0, 0, false);
847}
848
849
850// It's the caller's responsibility to ensure glitch-freedom
851// (if required).
852void Universe::update_heap_info_at_gc() {
853  _heap_capacity_at_last_gc = heap()->capacity();
854  _heap_used_at_last_gc     = heap()->used();
855}
856
857
858const char* Universe::narrow_oop_mode_to_string(Universe::NARROW_OOP_MODE mode) {
859  switch (mode) {
860    case UnscaledNarrowOop:
861      return "32-bit";
862    case ZeroBasedNarrowOop:
863      return "Zero based";
864    case DisjointBaseNarrowOop:
865      return "Non-zero disjoint base";
866    case HeapBasedNarrowOop:
867      return "Non-zero based";
868  }
869
870  ShouldNotReachHere();
871  return "";
872}
873
874
875Universe::NARROW_OOP_MODE Universe::narrow_oop_mode() {
876  if (narrow_oop_base_disjoint()) {
877    return DisjointBaseNarrowOop;
878  }
879
880  if (narrow_oop_base() != 0) {
881    return HeapBasedNarrowOop;
882  }
883
884  if (narrow_oop_shift() != 0) {
885    return ZeroBasedNarrowOop;
886  }
887
888  return UnscaledNarrowOop;
889}
890
891
892void universe2_init() {
893  EXCEPTION_MARK;
894  Universe::genesis(CATCH);
895}
896
897
898bool universe_post_init() {
899  assert(!is_init_completed(), "Error: initialization not yet completed!");
900  Universe::_fully_initialized = true;
901  EXCEPTION_MARK;
902  { ResourceMark rm;
903    Interpreter::initialize();      // needed for interpreter entry points
904    if (!UseSharedSpaces) {
905      HandleMark hm(THREAD);
906      KlassHandle ok_h(THREAD, SystemDictionary::Object_klass());
907      Universe::reinitialize_vtable_of(ok_h, CHECK_false);
908      Universe::reinitialize_itables(CHECK_false);
909    }
910  }
911
912  HandleMark hm(THREAD);
913  Klass* k;
914  instanceKlassHandle k_h;
915    // Setup preallocated empty java.lang.Class array
916    Universe::_the_empty_class_klass_array = oopFactory::new_objArray(SystemDictionary::Class_klass(), 0, CHECK_false);
917
918    // Setup preallocated OutOfMemoryError errors
919    k = SystemDictionary::resolve_or_fail(vmSymbols::java_lang_OutOfMemoryError(), true, CHECK_false);
920    k_h = instanceKlassHandle(THREAD, k);
921    Universe::_out_of_memory_error_java_heap = k_h->allocate_instance(CHECK_false);
922    Universe::_out_of_memory_error_metaspace = k_h->allocate_instance(CHECK_false);
923    Universe::_out_of_memory_error_class_metaspace = k_h->allocate_instance(CHECK_false);
924    Universe::_out_of_memory_error_array_size = k_h->allocate_instance(CHECK_false);
925    Universe::_out_of_memory_error_gc_overhead_limit =
926      k_h->allocate_instance(CHECK_false);
927    Universe::_out_of_memory_error_realloc_objects = k_h->allocate_instance(CHECK_false);
928
929    // Setup preallocated NullPointerException
930    // (this is currently used for a cheap & dirty solution in compiler exception handling)
931    k = SystemDictionary::resolve_or_fail(vmSymbols::java_lang_NullPointerException(), true, CHECK_false);
932    Universe::_null_ptr_exception_instance = InstanceKlass::cast(k)->allocate_instance(CHECK_false);
933    // Setup preallocated ArithmeticException
934    // (this is currently used for a cheap & dirty solution in compiler exception handling)
935    k = SystemDictionary::resolve_or_fail(vmSymbols::java_lang_ArithmeticException(), true, CHECK_false);
936    Universe::_arithmetic_exception_instance = InstanceKlass::cast(k)->allocate_instance(CHECK_false);
937    // Virtual Machine Error for when we get into a situation we can't resolve
938    k = SystemDictionary::resolve_or_fail(
939      vmSymbols::java_lang_VirtualMachineError(), true, CHECK_false);
940    bool linked = InstanceKlass::cast(k)->link_class_or_fail(CHECK_false);
941    if (!linked) {
942      tty->print_cr("Unable to link/verify VirtualMachineError class");
943      return false; // initialization failed
944    }
945    Universe::_virtual_machine_error_instance =
946      InstanceKlass::cast(k)->allocate_instance(CHECK_false);
947
948    Universe::_vm_exception = InstanceKlass::cast(k)->allocate_instance(CHECK_false);
949
950  if (!DumpSharedSpaces) {
951    // These are the only Java fields that are currently set during shared space dumping.
952    // We prefer to not handle this generally, so we always reinitialize these detail messages.
953    Handle msg = java_lang_String::create_from_str("Java heap space", CHECK_false);
954    java_lang_Throwable::set_message(Universe::_out_of_memory_error_java_heap, msg());
955
956    msg = java_lang_String::create_from_str("Metaspace", CHECK_false);
957    java_lang_Throwable::set_message(Universe::_out_of_memory_error_metaspace, msg());
958    msg = java_lang_String::create_from_str("Compressed class space", CHECK_false);
959    java_lang_Throwable::set_message(Universe::_out_of_memory_error_class_metaspace, msg());
960
961    msg = java_lang_String::create_from_str("Requested array size exceeds VM limit", CHECK_false);
962    java_lang_Throwable::set_message(Universe::_out_of_memory_error_array_size, msg());
963
964    msg = java_lang_String::create_from_str("GC overhead limit exceeded", CHECK_false);
965    java_lang_Throwable::set_message(Universe::_out_of_memory_error_gc_overhead_limit, msg());
966
967    msg = java_lang_String::create_from_str("Java heap space: failed reallocation of scalar replaced objects", CHECK_false);
968    java_lang_Throwable::set_message(Universe::_out_of_memory_error_realloc_objects, msg());
969
970    msg = java_lang_String::create_from_str("/ by zero", CHECK_false);
971    java_lang_Throwable::set_message(Universe::_arithmetic_exception_instance, msg());
972
973    // Setup the array of errors that have preallocated backtrace
974    k = Universe::_out_of_memory_error_java_heap->klass();
975    assert(k->name() == vmSymbols::java_lang_OutOfMemoryError(), "should be out of memory error");
976    k_h = instanceKlassHandle(THREAD, k);
977
978    int len = (StackTraceInThrowable) ? (int)PreallocatedOutOfMemoryErrorCount : 0;
979    Universe::_preallocated_out_of_memory_error_array = oopFactory::new_objArray(k_h(), len, CHECK_false);
980    for (int i=0; i<len; i++) {
981      oop err = k_h->allocate_instance(CHECK_false);
982      Handle err_h = Handle(THREAD, err);
983      java_lang_Throwable::allocate_backtrace(err_h, CHECK_false);
984      Universe::preallocated_out_of_memory_errors()->obj_at_put(i, err_h());
985    }
986    Universe::_preallocated_out_of_memory_error_avail_count = (jint)len;
987  }
988
989
990  // Setup static method for registering finalizers
991  // The finalizer klass must be linked before looking up the method, in
992  // case it needs to get rewritten.
993  InstanceKlass::cast(SystemDictionary::Finalizer_klass())->link_class(CHECK_false);
994  Method* m = InstanceKlass::cast(SystemDictionary::Finalizer_klass())->find_method(
995                                  vmSymbols::register_method_name(),
996                                  vmSymbols::register_method_signature());
997  if (m == NULL || !m->is_static()) {
998    tty->print_cr("Unable to link/verify Finalizer.register method");
999    return false; // initialization failed (cannot throw exception yet)
1000  }
1001  Universe::_finalizer_register_cache->init(
1002    SystemDictionary::Finalizer_klass(), m);
1003
1004  InstanceKlass::cast(SystemDictionary::misc_Unsafe_klass())->link_class(CHECK_false);
1005  m = InstanceKlass::cast(SystemDictionary::misc_Unsafe_klass())->find_method(
1006                                  vmSymbols::throwIllegalAccessError_name(),
1007                                  vmSymbols::void_method_signature());
1008  if (m != NULL && !m->is_static()) {
1009    // Note null is okay; this method is used in itables, and if it is null,
1010    // then AbstractMethodError is thrown instead.
1011    tty->print_cr("Unable to link/verify Unsafe.throwIllegalAccessError method");
1012    return false; // initialization failed (cannot throw exception yet)
1013  }
1014  Universe::_throw_illegal_access_error_cache->init(
1015    SystemDictionary::misc_Unsafe_klass(), m);
1016
1017  // Setup method for registering loaded classes in class loader vector
1018  InstanceKlass::cast(SystemDictionary::ClassLoader_klass())->link_class(CHECK_false);
1019  m = InstanceKlass::cast(SystemDictionary::ClassLoader_klass())->find_method(vmSymbols::addClass_name(), vmSymbols::class_void_signature());
1020  if (m == NULL || m->is_static()) {
1021    tty->print_cr("Unable to link/verify ClassLoader.addClass method");
1022    return false; // initialization failed (cannot throw exception yet)
1023  }
1024  Universe::_loader_addClass_cache->init(
1025    SystemDictionary::ClassLoader_klass(), m);
1026
1027  // Setup method for checking protection domain
1028  InstanceKlass::cast(SystemDictionary::ProtectionDomain_klass())->link_class(CHECK_false);
1029  m = InstanceKlass::cast(SystemDictionary::ProtectionDomain_klass())->
1030            find_method(vmSymbols::impliesCreateAccessControlContext_name(),
1031                        vmSymbols::void_boolean_signature());
1032  // Allow NULL which should only happen with bootstrapping.
1033  if (m != NULL) {
1034    if (m->is_static()) {
1035      // NoSuchMethodException doesn't actually work because it tries to run the
1036      // <init> function before java_lang_Class is linked. Print error and exit.
1037      tty->print_cr("ProtectionDomain.impliesCreateAccessControlContext() has the wrong linkage");
1038      return false; // initialization failed
1039    }
1040    Universe::_pd_implies_cache->init(
1041      SystemDictionary::ProtectionDomain_klass(), m);
1042  }
1043
1044  // This needs to be done before the first scavenge/gc, since
1045  // it's an input to soft ref clearing policy.
1046  {
1047    MutexLocker x(Heap_lock);
1048    Universe::update_heap_info_at_gc();
1049  }
1050
1051  // ("weak") refs processing infrastructure initialization
1052  Universe::heap()->post_initialize();
1053
1054  // Initialize performance counters for metaspaces
1055  MetaspaceCounters::initialize_performance_counters();
1056  CompressedClassSpaceCounters::initialize_performance_counters();
1057
1058  MemoryService::add_metaspace_memory_pools();
1059
1060  MemoryService::set_universe_heap(Universe::heap());
1061#if INCLUDE_CDS
1062  SharedClassUtil::initialize(CHECK_false);
1063#endif
1064  return true;
1065}
1066
1067
1068void Universe::compute_base_vtable_size() {
1069  _base_vtable_size = ClassLoader::compute_Object_vtable();
1070}
1071
1072
1073void Universe::print() {
1074  print_on(gclog_or_tty);
1075}
1076
1077void Universe::print_on(outputStream* st, bool extended) {
1078  st->print_cr("Heap");
1079  if (!extended) {
1080    heap()->print_on(st);
1081  } else {
1082    heap()->print_extended_on(st);
1083  }
1084}
1085
1086void Universe::print_heap_at_SIGBREAK() {
1087  if (PrintHeapAtSIGBREAK) {
1088    MutexLocker hl(Heap_lock);
1089    print_on(tty);
1090    tty->cr();
1091    tty->flush();
1092  }
1093}
1094
1095void Universe::print_heap_before_gc(outputStream* st, bool ignore_extended) {
1096  st->print_cr("{Heap before GC invocations=%u (full %u):",
1097               heap()->total_collections(),
1098               heap()->total_full_collections());
1099  if (!PrintHeapAtGCExtended || ignore_extended) {
1100    heap()->print_on(st);
1101  } else {
1102    heap()->print_extended_on(st);
1103  }
1104}
1105
1106void Universe::print_heap_after_gc(outputStream* st, bool ignore_extended) {
1107  st->print_cr("Heap after GC invocations=%u (full %u):",
1108               heap()->total_collections(),
1109               heap()->total_full_collections());
1110  if (!PrintHeapAtGCExtended || ignore_extended) {
1111    heap()->print_on(st);
1112  } else {
1113    heap()->print_extended_on(st);
1114  }
1115  st->print_cr("}");
1116}
1117
1118void Universe::verify(VerifyOption option, const char* prefix, bool silent) {
1119  // The use of _verify_in_progress is a temporary work around for
1120  // 6320749.  Don't bother with a creating a class to set and clear
1121  // it since it is only used in this method and the control flow is
1122  // straight forward.
1123  _verify_in_progress = true;
1124
1125  COMPILER2_PRESENT(
1126    assert(!DerivedPointerTable::is_active(),
1127         "DPT should not be active during verification "
1128         "(of thread stacks below)");
1129  )
1130
1131  ResourceMark rm;
1132  HandleMark hm;  // Handles created during verification can be zapped
1133  _verify_count++;
1134
1135  if (!silent) gclog_or_tty->print("%s", prefix);
1136  if (!silent) gclog_or_tty->print("[Verifying ");
1137  if (!silent) gclog_or_tty->print("threads ");
1138  Threads::verify();
1139  if (!silent) gclog_or_tty->print("heap ");
1140  heap()->verify(silent, option);
1141  if (!silent) gclog_or_tty->print("syms ");
1142  SymbolTable::verify();
1143  if (!silent) gclog_or_tty->print("strs ");
1144  StringTable::verify();
1145  {
1146    MutexLockerEx mu(CodeCache_lock, Mutex::_no_safepoint_check_flag);
1147    if (!silent) gclog_or_tty->print("zone ");
1148    CodeCache::verify();
1149  }
1150  if (!silent) gclog_or_tty->print("dict ");
1151  SystemDictionary::verify();
1152#ifndef PRODUCT
1153  if (!silent) gclog_or_tty->print("cldg ");
1154  ClassLoaderDataGraph::verify();
1155#endif
1156  if (!silent) gclog_or_tty->print("metaspace chunks ");
1157  MetaspaceAux::verify_free_chunks();
1158  if (!silent) gclog_or_tty->print("hand ");
1159  JNIHandles::verify();
1160  if (!silent) gclog_or_tty->print("C-heap ");
1161  os::check_heap();
1162  if (!silent) gclog_or_tty->print("code cache ");
1163  CodeCache::verify_oops();
1164  if (!silent) gclog_or_tty->print_cr("]");
1165
1166  _verify_in_progress = false;
1167}
1168
1169// Oop verification (see MacroAssembler::verify_oop)
1170
1171static uintptr_t _verify_oop_data[2]   = {0, (uintptr_t)-1};
1172static uintptr_t _verify_klass_data[2] = {0, (uintptr_t)-1};
1173
1174
1175#ifndef PRODUCT
1176
1177static void calculate_verify_data(uintptr_t verify_data[2],
1178                                  HeapWord* low_boundary,
1179                                  HeapWord* high_boundary) {
1180  assert(low_boundary < high_boundary, "bad interval");
1181
1182  // decide which low-order bits we require to be clear:
1183  size_t alignSize = MinObjAlignmentInBytes;
1184  size_t min_object_size = CollectedHeap::min_fill_size();
1185
1186  // make an inclusive limit:
1187  uintptr_t max = (uintptr_t)high_boundary - min_object_size*wordSize;
1188  uintptr_t min = (uintptr_t)low_boundary;
1189  assert(min < max, "bad interval");
1190  uintptr_t diff = max ^ min;
1191
1192  // throw away enough low-order bits to make the diff vanish
1193  uintptr_t mask = (uintptr_t)(-1);
1194  while ((mask & diff) != 0)
1195    mask <<= 1;
1196  uintptr_t bits = (min & mask);
1197  assert(bits == (max & mask), "correct mask");
1198  // check an intermediate value between min and max, just to make sure:
1199  assert(bits == ((min + (max-min)/2) & mask), "correct mask");
1200
1201  // require address alignment, too:
1202  mask |= (alignSize - 1);
1203
1204  if (!(verify_data[0] == 0 && verify_data[1] == (uintptr_t)-1)) {
1205    assert(verify_data[0] == mask && verify_data[1] == bits, "mask stability");
1206  }
1207  verify_data[0] = mask;
1208  verify_data[1] = bits;
1209}
1210
1211// Oop verification (see MacroAssembler::verify_oop)
1212
1213uintptr_t Universe::verify_oop_mask() {
1214  MemRegion m = heap()->reserved_region();
1215  calculate_verify_data(_verify_oop_data,
1216                        m.start(),
1217                        m.end());
1218  return _verify_oop_data[0];
1219}
1220
1221
1222
1223uintptr_t Universe::verify_oop_bits() {
1224  verify_oop_mask();
1225  return _verify_oop_data[1];
1226}
1227
1228uintptr_t Universe::verify_mark_mask() {
1229  return markOopDesc::lock_mask_in_place;
1230}
1231
1232uintptr_t Universe::verify_mark_bits() {
1233  intptr_t mask = verify_mark_mask();
1234  intptr_t bits = (intptr_t)markOopDesc::prototype();
1235  assert((bits & ~mask) == 0, "no stray header bits");
1236  return bits;
1237}
1238#endif // PRODUCT
1239
1240
1241void Universe::compute_verify_oop_data() {
1242  verify_oop_mask();
1243  verify_oop_bits();
1244  verify_mark_mask();
1245  verify_mark_bits();
1246}
1247
1248
1249void LatestMethodCache::init(Klass* k, Method* m) {
1250  if (!UseSharedSpaces) {
1251    _klass = k;
1252  }
1253#ifndef PRODUCT
1254  else {
1255    // sharing initilization should have already set up _klass
1256    assert(_klass != NULL, "just checking");
1257  }
1258#endif
1259
1260  _method_idnum = m->method_idnum();
1261  assert(_method_idnum >= 0, "sanity check");
1262}
1263
1264
1265Method* LatestMethodCache::get_method() {
1266  if (klass() == NULL) return NULL;
1267  InstanceKlass* ik = InstanceKlass::cast(klass());
1268  Method* m = ik->method_with_idnum(method_idnum());
1269  assert(m != NULL, "sanity check");
1270  return m;
1271}
1272
1273
1274#ifdef ASSERT
1275// Release dummy object(s) at bottom of heap
1276bool Universe::release_fullgc_alot_dummy() {
1277  MutexLocker ml(FullGCALot_lock);
1278  if (_fullgc_alot_dummy_array != NULL) {
1279    if (_fullgc_alot_dummy_next >= _fullgc_alot_dummy_array->length()) {
1280      // No more dummies to release, release entire array instead
1281      _fullgc_alot_dummy_array = NULL;
1282      return false;
1283    }
1284    if (!UseConcMarkSweepGC) {
1285      // Release dummy at bottom of old generation
1286      _fullgc_alot_dummy_array->obj_at_put(_fullgc_alot_dummy_next++, NULL);
1287    }
1288    // Release dummy at bottom of permanent generation
1289    _fullgc_alot_dummy_array->obj_at_put(_fullgc_alot_dummy_next++, NULL);
1290  }
1291  return true;
1292}
1293
1294#endif // ASSERT
1295