src/share/vm/code/codeCache.cpp

Thu, 22 May 2014 15:52:41 -0400

author
drchase
date
Thu, 22 May 2014 15:52:41 -0400
changeset 6680
78bbf4d43a14
parent 5792
510fbd28919c
child 6876
710a3c8b516e
child 6991
882004b9e7e1
permissions
-rw-r--r--

8037816: Fix for 8036122 breaks build with Xcode5/clang
8043029: Change 8037816 breaks HS build with older GCC versions which don't support diagnostic pragmas
8043164: Format warning in traceStream.hpp
Summary: Backport of main fix + two corrections, enables clang compilation, turns on format attributes, corrects/mutes warnings
Reviewed-by: kvn, coleenp, iveresov, twisti

     1 /*
     2  * Copyright (c) 1997, 2014, Oracle and/or its affiliates. All rights reserved.
     3  * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
     4  *
     5  * This code is free software; you can redistribute it and/or modify it
     6  * under the terms of the GNU General Public License version 2 only, as
     7  * published by the Free Software Foundation.
     8  *
     9  * This code is distributed in the hope that it will be useful, but WITHOUT
    10  * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
    11  * FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public License
    12  * version 2 for more details (a copy is included in the LICENSE file that
    13  * accompanied this code).
    14  *
    15  * You should have received a copy of the GNU General Public License version
    16  * 2 along with this work; if not, write to the Free Software Foundation,
    17  * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
    18  *
    19  * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
    20  * or visit www.oracle.com if you need additional information or have any
    21  * questions.
    22  *
    23  */
    25 #include "precompiled.hpp"
    26 #include "code/codeBlob.hpp"
    27 #include "code/codeCache.hpp"
    28 #include "code/compiledIC.hpp"
    29 #include "code/dependencies.hpp"
    30 #include "code/icBuffer.hpp"
    31 #include "code/nmethod.hpp"
    32 #include "code/pcDesc.hpp"
    33 #include "compiler/compileBroker.hpp"
    34 #include "gc_implementation/shared/markSweep.hpp"
    35 #include "memory/allocation.inline.hpp"
    36 #include "memory/gcLocker.hpp"
    37 #include "memory/iterator.hpp"
    38 #include "memory/resourceArea.hpp"
    39 #include "oops/method.hpp"
    40 #include "oops/objArrayOop.hpp"
    41 #include "oops/oop.inline.hpp"
    42 #include "runtime/handles.inline.hpp"
    43 #include "runtime/arguments.hpp"
    44 #include "runtime/icache.hpp"
    45 #include "runtime/java.hpp"
    46 #include "runtime/mutexLocker.hpp"
    47 #include "services/memoryService.hpp"
    48 #include "trace/tracing.hpp"
    49 #include "utilities/xmlstream.hpp"
    51 // Helper class for printing in CodeCache
    53 class CodeBlob_sizes {
    54  private:
    55   int count;
    56   int total_size;
    57   int header_size;
    58   int code_size;
    59   int stub_size;
    60   int relocation_size;
    61   int scopes_oop_size;
    62   int scopes_metadata_size;
    63   int scopes_data_size;
    64   int scopes_pcs_size;
    66  public:
    67   CodeBlob_sizes() {
    68     count            = 0;
    69     total_size       = 0;
    70     header_size      = 0;
    71     code_size        = 0;
    72     stub_size        = 0;
    73     relocation_size  = 0;
    74     scopes_oop_size  = 0;
    75     scopes_metadata_size  = 0;
    76     scopes_data_size = 0;
    77     scopes_pcs_size  = 0;
    78   }
    80   int total()                                    { return total_size; }
    81   bool is_empty()                                { return count == 0; }
    83   void print(const char* title) {
    84     tty->print_cr(" #%d %s = %dK (hdr %d%%,  loc %d%%, code %d%%, stub %d%%, [oops %d%%, metadata %d%%, data %d%%, pcs %d%%])",
    85                   count,
    86                   title,
    87                   (int)(total() / K),
    88                   header_size             * 100 / total_size,
    89                   relocation_size         * 100 / total_size,
    90                   code_size               * 100 / total_size,
    91                   stub_size               * 100 / total_size,
    92                   scopes_oop_size         * 100 / total_size,
    93                   scopes_metadata_size    * 100 / total_size,
    94                   scopes_data_size        * 100 / total_size,
    95                   scopes_pcs_size         * 100 / total_size);
    96   }
    98   void add(CodeBlob* cb) {
    99     count++;
   100     total_size       += cb->size();
   101     header_size      += cb->header_size();
   102     relocation_size  += cb->relocation_size();
   103     if (cb->is_nmethod()) {
   104       nmethod* nm = cb->as_nmethod_or_null();
   105       code_size        += nm->insts_size();
   106       stub_size        += nm->stub_size();
   108       scopes_oop_size  += nm->oops_size();
   109       scopes_metadata_size  += nm->metadata_size();
   110       scopes_data_size += nm->scopes_data_size();
   111       scopes_pcs_size  += nm->scopes_pcs_size();
   112     } else {
   113       code_size        += cb->code_size();
   114     }
   115   }
   116 };
   118 // CodeCache implementation
   120 CodeHeap * CodeCache::_heap = new CodeHeap();
   121 int CodeCache::_number_of_blobs = 0;
   122 int CodeCache::_number_of_adapters = 0;
   123 int CodeCache::_number_of_nmethods = 0;
   124 int CodeCache::_number_of_nmethods_with_dependencies = 0;
   125 bool CodeCache::_needs_cache_clean = false;
   126 nmethod* CodeCache::_scavenge_root_nmethods = NULL;
   128 int CodeCache::_codemem_full_count = 0;
   130 CodeBlob* CodeCache::first() {
   131   assert_locked_or_safepoint(CodeCache_lock);
   132   return (CodeBlob*)_heap->first();
   133 }
   136 CodeBlob* CodeCache::next(CodeBlob* cb) {
   137   assert_locked_or_safepoint(CodeCache_lock);
   138   return (CodeBlob*)_heap->next(cb);
   139 }
   142 CodeBlob* CodeCache::alive(CodeBlob *cb) {
   143   assert_locked_or_safepoint(CodeCache_lock);
   144   while (cb != NULL && !cb->is_alive()) cb = next(cb);
   145   return cb;
   146 }
   149 nmethod* CodeCache::alive_nmethod(CodeBlob* cb) {
   150   assert_locked_or_safepoint(CodeCache_lock);
   151   while (cb != NULL && (!cb->is_alive() || !cb->is_nmethod())) cb = next(cb);
   152   return (nmethod*)cb;
   153 }
   155 nmethod* CodeCache::first_nmethod() {
   156   assert_locked_or_safepoint(CodeCache_lock);
   157   CodeBlob* cb = first();
   158   while (cb != NULL && !cb->is_nmethod()) {
   159     cb = next(cb);
   160   }
   161   return (nmethod*)cb;
   162 }
   164 nmethod* CodeCache::next_nmethod (CodeBlob* cb) {
   165   assert_locked_or_safepoint(CodeCache_lock);
   166   cb = next(cb);
   167   while (cb != NULL && !cb->is_nmethod()) {
   168     cb = next(cb);
   169   }
   170   return (nmethod*)cb;
   171 }
   173 static size_t maxCodeCacheUsed = 0;
   175 CodeBlob* CodeCache::allocate(int size, bool is_critical) {
   176   // Do not seize the CodeCache lock here--if the caller has not
   177   // already done so, we are going to lose bigtime, since the code
   178   // cache will contain a garbage CodeBlob until the caller can
   179   // run the constructor for the CodeBlob subclass he is busy
   180   // instantiating.
   181   guarantee(size >= 0, "allocation request must be reasonable");
   182   assert_locked_or_safepoint(CodeCache_lock);
   183   CodeBlob* cb = NULL;
   184   _number_of_blobs++;
   185   while (true) {
   186     cb = (CodeBlob*)_heap->allocate(size, is_critical);
   187     if (cb != NULL) break;
   188     if (!_heap->expand_by(CodeCacheExpansionSize)) {
   189       // Expansion failed
   190       return NULL;
   191     }
   192     if (PrintCodeCacheExtension) {
   193       ResourceMark rm;
   194       tty->print_cr("code cache extended to [" INTPTR_FORMAT ", " INTPTR_FORMAT "] (" SSIZE_FORMAT " bytes)",
   195                     (intptr_t)_heap->low_boundary(), (intptr_t)_heap->high(),
   196                     (address)_heap->high() - (address)_heap->low_boundary());
   197     }
   198   }
   199   maxCodeCacheUsed = MAX2(maxCodeCacheUsed, ((address)_heap->high_boundary() -
   200                           (address)_heap->low_boundary()) - unallocated_capacity());
   201   verify_if_often();
   202   print_trace("allocation", cb, size);
   203   return cb;
   204 }
   206 void CodeCache::free(CodeBlob* cb) {
   207   assert_locked_or_safepoint(CodeCache_lock);
   208   verify_if_often();
   210   print_trace("free", cb);
   211   if (cb->is_nmethod()) {
   212     _number_of_nmethods--;
   213     if (((nmethod *)cb)->has_dependencies()) {
   214       _number_of_nmethods_with_dependencies--;
   215     }
   216   }
   217   if (cb->is_adapter_blob()) {
   218     _number_of_adapters--;
   219   }
   220   _number_of_blobs--;
   222   _heap->deallocate(cb);
   224   verify_if_often();
   225   assert(_number_of_blobs >= 0, "sanity check");
   226 }
   229 void CodeCache::commit(CodeBlob* cb) {
   230   // this is called by nmethod::nmethod, which must already own CodeCache_lock
   231   assert_locked_or_safepoint(CodeCache_lock);
   232   if (cb->is_nmethod()) {
   233     _number_of_nmethods++;
   234     if (((nmethod *)cb)->has_dependencies()) {
   235       _number_of_nmethods_with_dependencies++;
   236     }
   237   }
   238   if (cb->is_adapter_blob()) {
   239     _number_of_adapters++;
   240   }
   242   // flush the hardware I-cache
   243   ICache::invalidate_range(cb->content_begin(), cb->content_size());
   244 }
   247 void CodeCache::flush() {
   248   assert_locked_or_safepoint(CodeCache_lock);
   249   Unimplemented();
   250 }
   253 // Iteration over CodeBlobs
   255 #define FOR_ALL_BLOBS(var)       for (CodeBlob *var =       first() ; var != NULL; var =       next(var) )
   256 #define FOR_ALL_ALIVE_BLOBS(var) for (CodeBlob *var = alive(first()); var != NULL; var = alive(next(var)))
   257 #define FOR_ALL_ALIVE_NMETHODS(var) for (nmethod *var = alive_nmethod(first()); var != NULL; var = alive_nmethod(next(var)))
   260 bool CodeCache::contains(void *p) {
   261   // It should be ok to call contains without holding a lock
   262   return _heap->contains(p);
   263 }
   266 // This method is safe to call without holding the CodeCache_lock, as long as a dead codeblob is not
   267 // looked up (i.e., one that has been marked for deletion). It only dependes on the _segmap to contain
   268 // valid indices, which it will always do, as long as the CodeBlob is not in the process of being recycled.
   269 CodeBlob* CodeCache::find_blob(void* start) {
   270   CodeBlob* result = find_blob_unsafe(start);
   271   if (result == NULL) return NULL;
   272   // We could potientially look up non_entrant methods
   273   guarantee(!result->is_zombie() || result->is_locked_by_vm() || is_error_reported(), "unsafe access to zombie method");
   274   return result;
   275 }
   277 nmethod* CodeCache::find_nmethod(void* start) {
   278   CodeBlob *cb = find_blob(start);
   279   assert(cb == NULL || cb->is_nmethod(), "did not find an nmethod");
   280   return (nmethod*)cb;
   281 }
   284 void CodeCache::blobs_do(void f(CodeBlob* nm)) {
   285   assert_locked_or_safepoint(CodeCache_lock);
   286   FOR_ALL_BLOBS(p) {
   287     f(p);
   288   }
   289 }
   292 void CodeCache::nmethods_do(void f(nmethod* nm)) {
   293   assert_locked_or_safepoint(CodeCache_lock);
   294   FOR_ALL_BLOBS(nm) {
   295     if (nm->is_nmethod()) f((nmethod*)nm);
   296   }
   297 }
   299 void CodeCache::alive_nmethods_do(void f(nmethod* nm)) {
   300   assert_locked_or_safepoint(CodeCache_lock);
   301   FOR_ALL_ALIVE_NMETHODS(nm) {
   302     f(nm);
   303   }
   304 }
   306 int CodeCache::alignment_unit() {
   307   return (int)_heap->alignment_unit();
   308 }
   311 int CodeCache::alignment_offset() {
   312   return (int)_heap->alignment_offset();
   313 }
   316 // Mark nmethods for unloading if they contain otherwise unreachable
   317 // oops.
   318 void CodeCache::do_unloading(BoolObjectClosure* is_alive, bool unloading_occurred) {
   319   assert_locked_or_safepoint(CodeCache_lock);
   320   FOR_ALL_ALIVE_NMETHODS(nm) {
   321     nm->do_unloading(is_alive, unloading_occurred);
   322   }
   323 }
   325 void CodeCache::blobs_do(CodeBlobClosure* f) {
   326   assert_locked_or_safepoint(CodeCache_lock);
   327   FOR_ALL_ALIVE_BLOBS(cb) {
   328     f->do_code_blob(cb);
   330 #ifdef ASSERT
   331     if (cb->is_nmethod())
   332       ((nmethod*)cb)->verify_scavenge_root_oops();
   333 #endif //ASSERT
   334   }
   335 }
   337 // Walk the list of methods which might contain non-perm oops.
   338 void CodeCache::scavenge_root_nmethods_do(CodeBlobClosure* f) {
   339   assert_locked_or_safepoint(CodeCache_lock);
   340   debug_only(mark_scavenge_root_nmethods());
   342   for (nmethod* cur = scavenge_root_nmethods(); cur != NULL; cur = cur->scavenge_root_link()) {
   343     debug_only(cur->clear_scavenge_root_marked());
   344     assert(cur->scavenge_root_not_marked(), "");
   345     assert(cur->on_scavenge_root_list(), "else shouldn't be on this list");
   347     bool is_live = (!cur->is_zombie() && !cur->is_unloaded());
   348 #ifndef PRODUCT
   349     if (TraceScavenge) {
   350       cur->print_on(tty, is_live ? "scavenge root" : "dead scavenge root"); tty->cr();
   351     }
   352 #endif //PRODUCT
   353     if (is_live) {
   354       // Perform cur->oops_do(f), maybe just once per nmethod.
   355       f->do_code_blob(cur);
   356     }
   357   }
   359   // Check for stray marks.
   360   debug_only(verify_perm_nmethods(NULL));
   361 }
   363 void CodeCache::add_scavenge_root_nmethod(nmethod* nm) {
   364   assert_locked_or_safepoint(CodeCache_lock);
   365   nm->set_on_scavenge_root_list();
   366   nm->set_scavenge_root_link(_scavenge_root_nmethods);
   367   set_scavenge_root_nmethods(nm);
   368   print_trace("add_scavenge_root", nm);
   369 }
   371 void CodeCache::drop_scavenge_root_nmethod(nmethod* nm) {
   372   assert_locked_or_safepoint(CodeCache_lock);
   373   print_trace("drop_scavenge_root", nm);
   374   nmethod* last = NULL;
   375   nmethod* cur = scavenge_root_nmethods();
   376   while (cur != NULL) {
   377     nmethod* next = cur->scavenge_root_link();
   378     if (cur == nm) {
   379       if (last != NULL)
   380             last->set_scavenge_root_link(next);
   381       else  set_scavenge_root_nmethods(next);
   382       nm->set_scavenge_root_link(NULL);
   383       nm->clear_on_scavenge_root_list();
   384       return;
   385     }
   386     last = cur;
   387     cur = next;
   388   }
   389   assert(false, "should have been on list");
   390 }
   392 void CodeCache::prune_scavenge_root_nmethods() {
   393   assert_locked_or_safepoint(CodeCache_lock);
   394   debug_only(mark_scavenge_root_nmethods());
   396   nmethod* last = NULL;
   397   nmethod* cur = scavenge_root_nmethods();
   398   while (cur != NULL) {
   399     nmethod* next = cur->scavenge_root_link();
   400     debug_only(cur->clear_scavenge_root_marked());
   401     assert(cur->scavenge_root_not_marked(), "");
   402     assert(cur->on_scavenge_root_list(), "else shouldn't be on this list");
   404     if (!cur->is_zombie() && !cur->is_unloaded()
   405         && cur->detect_scavenge_root_oops()) {
   406       // Keep it.  Advance 'last' to prevent deletion.
   407       last = cur;
   408     } else {
   409       // Prune it from the list, so we don't have to look at it any more.
   410       print_trace("prune_scavenge_root", cur);
   411       cur->set_scavenge_root_link(NULL);
   412       cur->clear_on_scavenge_root_list();
   413       if (last != NULL)
   414             last->set_scavenge_root_link(next);
   415       else  set_scavenge_root_nmethods(next);
   416     }
   417     cur = next;
   418   }
   420   // Check for stray marks.
   421   debug_only(verify_perm_nmethods(NULL));
   422 }
   424 #ifndef PRODUCT
   425 void CodeCache::asserted_non_scavengable_nmethods_do(CodeBlobClosure* f) {
   426   // While we are here, verify the integrity of the list.
   427   mark_scavenge_root_nmethods();
   428   for (nmethod* cur = scavenge_root_nmethods(); cur != NULL; cur = cur->scavenge_root_link()) {
   429     assert(cur->on_scavenge_root_list(), "else shouldn't be on this list");
   430     cur->clear_scavenge_root_marked();
   431   }
   432   verify_perm_nmethods(f);
   433 }
   435 // Temporarily mark nmethods that are claimed to be on the non-perm list.
   436 void CodeCache::mark_scavenge_root_nmethods() {
   437   FOR_ALL_ALIVE_BLOBS(cb) {
   438     if (cb->is_nmethod()) {
   439       nmethod *nm = (nmethod*)cb;
   440       assert(nm->scavenge_root_not_marked(), "clean state");
   441       if (nm->on_scavenge_root_list())
   442         nm->set_scavenge_root_marked();
   443     }
   444   }
   445 }
   447 // If the closure is given, run it on the unlisted nmethods.
   448 // Also make sure that the effects of mark_scavenge_root_nmethods is gone.
   449 void CodeCache::verify_perm_nmethods(CodeBlobClosure* f_or_null) {
   450   FOR_ALL_ALIVE_BLOBS(cb) {
   451     bool call_f = (f_or_null != NULL);
   452     if (cb->is_nmethod()) {
   453       nmethod *nm = (nmethod*)cb;
   454       assert(nm->scavenge_root_not_marked(), "must be already processed");
   455       if (nm->on_scavenge_root_list())
   456         call_f = false;  // don't show this one to the client
   457       nm->verify_scavenge_root_oops();
   458     } else {
   459       call_f = false;   // not an nmethod
   460     }
   461     if (call_f)  f_or_null->do_code_blob(cb);
   462   }
   463 }
   464 #endif //PRODUCT
   467 void CodeCache::gc_prologue() {
   468   assert(!nmethod::oops_do_marking_is_active(), "oops_do_marking_epilogue must be called");
   469 }
   471 void CodeCache::gc_epilogue() {
   472   assert_locked_or_safepoint(CodeCache_lock);
   473   FOR_ALL_ALIVE_BLOBS(cb) {
   474     if (cb->is_nmethod()) {
   475       nmethod *nm = (nmethod*)cb;
   476       assert(!nm->is_unloaded(), "Tautology");
   477       if (needs_cache_clean()) {
   478         nm->cleanup_inline_caches();
   479       }
   480       DEBUG_ONLY(nm->verify());
   481       nm->fix_oop_relocations();
   482     }
   483   }
   484   set_needs_cache_clean(false);
   485   prune_scavenge_root_nmethods();
   486   assert(!nmethod::oops_do_marking_is_active(), "oops_do_marking_prologue must be called");
   488 #ifdef ASSERT
   489   // make sure that we aren't leaking icholders
   490   int count = 0;
   491   FOR_ALL_BLOBS(cb) {
   492     if (cb->is_nmethod()) {
   493       RelocIterator iter((nmethod*)cb);
   494       while(iter.next()) {
   495         if (iter.type() == relocInfo::virtual_call_type) {
   496           if (CompiledIC::is_icholder_call_site(iter.virtual_call_reloc())) {
   497             CompiledIC *ic = CompiledIC_at(iter.reloc());
   498             if (TraceCompiledIC) {
   499               tty->print("noticed icholder " INTPTR_FORMAT " ", p2i(ic->cached_icholder()));
   500               ic->print();
   501             }
   502             assert(ic->cached_icholder() != NULL, "must be non-NULL");
   503             count++;
   504           }
   505         }
   506       }
   507     }
   508   }
   510   assert(count + InlineCacheBuffer::pending_icholder_count() + CompiledICHolder::live_not_claimed_count() ==
   511          CompiledICHolder::live_count(), "must agree");
   512 #endif
   513 }
   516 void CodeCache::verify_oops() {
   517   MutexLockerEx mu(CodeCache_lock, Mutex::_no_safepoint_check_flag);
   518   VerifyOopClosure voc;
   519   FOR_ALL_ALIVE_BLOBS(cb) {
   520     if (cb->is_nmethod()) {
   521       nmethod *nm = (nmethod*)cb;
   522       nm->oops_do(&voc);
   523       nm->verify_oop_relocations();
   524     }
   525   }
   526 }
   529 address CodeCache::first_address() {
   530   assert_locked_or_safepoint(CodeCache_lock);
   531   return (address)_heap->low_boundary();
   532 }
   535 address CodeCache::last_address() {
   536   assert_locked_or_safepoint(CodeCache_lock);
   537   return (address)_heap->high();
   538 }
   540 /**
   541  * Returns the reverse free ratio. E.g., if 25% (1/4) of the code cache
   542  * is free, reverse_free_ratio() returns 4.
   543  */
   544 double CodeCache::reverse_free_ratio() {
   545   double unallocated_capacity = (double)(CodeCache::unallocated_capacity() - CodeCacheMinimumFreeSpace);
   546   double max_capacity = (double)CodeCache::max_capacity();
   547   return max_capacity / unallocated_capacity;
   548 }
   550 void icache_init();
   552 void CodeCache::initialize() {
   553   assert(CodeCacheSegmentSize >= (uintx)CodeEntryAlignment, "CodeCacheSegmentSize must be large enough to align entry points");
   554 #ifdef COMPILER2
   555   assert(CodeCacheSegmentSize >= (uintx)OptoLoopAlignment,  "CodeCacheSegmentSize must be large enough to align inner loops");
   556 #endif
   557   assert(CodeCacheSegmentSize >= sizeof(jdouble),    "CodeCacheSegmentSize must be large enough to align constants");
   558   // This was originally just a check of the alignment, causing failure, instead, round
   559   // the code cache to the page size.  In particular, Solaris is moving to a larger
   560   // default page size.
   561   CodeCacheExpansionSize = round_to(CodeCacheExpansionSize, os::vm_page_size());
   562   InitialCodeCacheSize = round_to(InitialCodeCacheSize, os::vm_page_size());
   563   ReservedCodeCacheSize = round_to(ReservedCodeCacheSize, os::vm_page_size());
   564   if (!_heap->reserve(ReservedCodeCacheSize, InitialCodeCacheSize, CodeCacheSegmentSize)) {
   565     vm_exit_during_initialization("Could not reserve enough space for code cache");
   566   }
   568   MemoryService::add_code_heap_memory_pool(_heap);
   570   // Initialize ICache flush mechanism
   571   // This service is needed for os::register_code_area
   572   icache_init();
   574   // Give OS a chance to register generated code area.
   575   // This is used on Windows 64 bit platforms to register
   576   // Structured Exception Handlers for our generated code.
   577   os::register_code_area(_heap->low_boundary(), _heap->high_boundary());
   578 }
   581 void codeCache_init() {
   582   CodeCache::initialize();
   583 }
   585 //------------------------------------------------------------------------------------------------
   587 int CodeCache::number_of_nmethods_with_dependencies() {
   588   return _number_of_nmethods_with_dependencies;
   589 }
   591 void CodeCache::clear_inline_caches() {
   592   assert_locked_or_safepoint(CodeCache_lock);
   593   FOR_ALL_ALIVE_NMETHODS(nm) {
   594     nm->clear_inline_caches();
   595   }
   596 }
   598 #ifndef PRODUCT
   599 // used to keep track of how much time is spent in mark_for_deoptimization
   600 static elapsedTimer dependentCheckTime;
   601 static int dependentCheckCount = 0;
   602 #endif // PRODUCT
   605 int CodeCache::mark_for_deoptimization(DepChange& changes) {
   606   MutexLockerEx mu(CodeCache_lock, Mutex::_no_safepoint_check_flag);
   608 #ifndef PRODUCT
   609   dependentCheckTime.start();
   610   dependentCheckCount++;
   611 #endif // PRODUCT
   613   int number_of_marked_CodeBlobs = 0;
   615   // search the hierarchy looking for nmethods which are affected by the loading of this class
   617   // then search the interfaces this class implements looking for nmethods
   618   // which might be dependent of the fact that an interface only had one
   619   // implementor.
   621   { No_Safepoint_Verifier nsv;
   622     for (DepChange::ContextStream str(changes, nsv); str.next(); ) {
   623       Klass* d = str.klass();
   624       number_of_marked_CodeBlobs += InstanceKlass::cast(d)->mark_dependent_nmethods(changes);
   625     }
   626   }
   628   if (VerifyDependencies) {
   629     // Turn off dependency tracing while actually testing deps.
   630     NOT_PRODUCT( FlagSetting fs(TraceDependencies, false) );
   631     FOR_ALL_ALIVE_NMETHODS(nm) {
   632       if (!nm->is_marked_for_deoptimization() &&
   633           nm->check_all_dependencies()) {
   634         ResourceMark rm;
   635         tty->print_cr("Should have been marked for deoptimization:");
   636         changes.print();
   637         nm->print();
   638         nm->print_dependencies();
   639       }
   640     }
   641   }
   643 #ifndef PRODUCT
   644   dependentCheckTime.stop();
   645 #endif // PRODUCT
   647   return number_of_marked_CodeBlobs;
   648 }
   651 #ifdef HOTSWAP
   652 int CodeCache::mark_for_evol_deoptimization(instanceKlassHandle dependee) {
   653   MutexLockerEx mu(CodeCache_lock, Mutex::_no_safepoint_check_flag);
   654   int number_of_marked_CodeBlobs = 0;
   656   // Deoptimize all methods of the evolving class itself
   657   Array<Method*>* old_methods = dependee->methods();
   658   for (int i = 0; i < old_methods->length(); i++) {
   659     ResourceMark rm;
   660     Method* old_method = old_methods->at(i);
   661     nmethod *nm = old_method->code();
   662     if (nm != NULL) {
   663       nm->mark_for_deoptimization();
   664       number_of_marked_CodeBlobs++;
   665     }
   666   }
   668   FOR_ALL_ALIVE_NMETHODS(nm) {
   669     if (nm->is_marked_for_deoptimization()) {
   670       // ...Already marked in the previous pass; don't count it again.
   671     } else if (nm->is_evol_dependent_on(dependee())) {
   672       ResourceMark rm;
   673       nm->mark_for_deoptimization();
   674       number_of_marked_CodeBlobs++;
   675     } else  {
   676       // flush caches in case they refer to a redefined Method*
   677       nm->clear_inline_caches();
   678     }
   679   }
   681   return number_of_marked_CodeBlobs;
   682 }
   683 #endif // HOTSWAP
   686 // Deoptimize all methods
   687 void CodeCache::mark_all_nmethods_for_deoptimization() {
   688   MutexLockerEx mu(CodeCache_lock, Mutex::_no_safepoint_check_flag);
   689   FOR_ALL_ALIVE_NMETHODS(nm) {
   690     nm->mark_for_deoptimization();
   691   }
   692 }
   695 int CodeCache::mark_for_deoptimization(Method* dependee) {
   696   MutexLockerEx mu(CodeCache_lock, Mutex::_no_safepoint_check_flag);
   697   int number_of_marked_CodeBlobs = 0;
   699   FOR_ALL_ALIVE_NMETHODS(nm) {
   700     if (nm->is_dependent_on_method(dependee)) {
   701       ResourceMark rm;
   702       nm->mark_for_deoptimization();
   703       number_of_marked_CodeBlobs++;
   704     }
   705   }
   707   return number_of_marked_CodeBlobs;
   708 }
   710 void CodeCache::make_marked_nmethods_zombies() {
   711   assert(SafepointSynchronize::is_at_safepoint(), "must be at a safepoint");
   712   FOR_ALL_ALIVE_NMETHODS(nm) {
   713     if (nm->is_marked_for_deoptimization()) {
   715       // If the nmethod has already been made non-entrant and it can be converted
   716       // then zombie it now. Otherwise make it non-entrant and it will eventually
   717       // be zombied when it is no longer seen on the stack. Note that the nmethod
   718       // might be "entrant" and not on the stack and so could be zombied immediately
   719       // but we can't tell because we don't track it on stack until it becomes
   720       // non-entrant.
   722       if (nm->is_not_entrant() && nm->can_not_entrant_be_converted()) {
   723         nm->make_zombie();
   724       } else {
   725         nm->make_not_entrant();
   726       }
   727     }
   728   }
   729 }
   731 void CodeCache::make_marked_nmethods_not_entrant() {
   732   assert_locked_or_safepoint(CodeCache_lock);
   733   FOR_ALL_ALIVE_NMETHODS(nm) {
   734     if (nm->is_marked_for_deoptimization()) {
   735       nm->make_not_entrant();
   736     }
   737   }
   738 }
   740 void CodeCache::verify() {
   741   _heap->verify();
   742   FOR_ALL_ALIVE_BLOBS(p) {
   743     p->verify();
   744   }
   745 }
   747 void CodeCache::report_codemem_full() {
   748   _codemem_full_count++;
   749   EventCodeCacheFull event;
   750   if (event.should_commit()) {
   751     event.set_startAddress((u8)low_bound());
   752     event.set_commitedTopAddress((u8)high());
   753     event.set_reservedTopAddress((u8)high_bound());
   754     event.set_entryCount(nof_blobs());
   755     event.set_methodCount(nof_nmethods());
   756     event.set_adaptorCount(nof_adapters());
   757     event.set_unallocatedCapacity(unallocated_capacity()/K);
   758     event.set_fullCount(_codemem_full_count);
   759     event.commit();
   760   }
   761 }
   763 //------------------------------------------------------------------------------------------------
   764 // Non-product version
   766 #ifndef PRODUCT
   768 void CodeCache::verify_if_often() {
   769   if (VerifyCodeCacheOften) {
   770     _heap->verify();
   771   }
   772 }
   774 void CodeCache::print_trace(const char* event, CodeBlob* cb, int size) {
   775   if (PrintCodeCache2) {  // Need to add a new flag
   776     ResourceMark rm;
   777     if (size == 0)  size = cb->size();
   778     tty->print_cr("CodeCache %s:  addr: " INTPTR_FORMAT ", size: 0x%x", event, p2i(cb), size);
   779   }
   780 }
   782 void CodeCache::print_internals() {
   783   int nmethodCount = 0;
   784   int runtimeStubCount = 0;
   785   int adapterCount = 0;
   786   int deoptimizationStubCount = 0;
   787   int uncommonTrapStubCount = 0;
   788   int bufferBlobCount = 0;
   789   int total = 0;
   790   int nmethodAlive = 0;
   791   int nmethodNotEntrant = 0;
   792   int nmethodZombie = 0;
   793   int nmethodUnloaded = 0;
   794   int nmethodJava = 0;
   795   int nmethodNative = 0;
   796   int maxCodeSize = 0;
   797   ResourceMark rm;
   799   CodeBlob *cb;
   800   for (cb = first(); cb != NULL; cb = next(cb)) {
   801     total++;
   802     if (cb->is_nmethod()) {
   803       nmethod* nm = (nmethod*)cb;
   805       if (Verbose && nm->method() != NULL) {
   806         ResourceMark rm;
   807         char *method_name = nm->method()->name_and_sig_as_C_string();
   808         tty->print("%s", method_name);
   809         if(nm->is_alive()) { tty->print_cr(" alive"); }
   810         if(nm->is_not_entrant()) { tty->print_cr(" not-entrant"); }
   811         if(nm->is_zombie()) { tty->print_cr(" zombie"); }
   812       }
   814       nmethodCount++;
   816       if(nm->is_alive()) { nmethodAlive++; }
   817       if(nm->is_not_entrant()) { nmethodNotEntrant++; }
   818       if(nm->is_zombie()) { nmethodZombie++; }
   819       if(nm->is_unloaded()) { nmethodUnloaded++; }
   820       if(nm->is_native_method()) { nmethodNative++; }
   822       if(nm->method() != NULL && nm->is_java_method()) {
   823         nmethodJava++;
   824         if (nm->insts_size() > maxCodeSize) {
   825           maxCodeSize = nm->insts_size();
   826         }
   827       }
   828     } else if (cb->is_runtime_stub()) {
   829       runtimeStubCount++;
   830     } else if (cb->is_deoptimization_stub()) {
   831       deoptimizationStubCount++;
   832     } else if (cb->is_uncommon_trap_stub()) {
   833       uncommonTrapStubCount++;
   834     } else if (cb->is_adapter_blob()) {
   835       adapterCount++;
   836     } else if (cb->is_buffer_blob()) {
   837       bufferBlobCount++;
   838     }
   839   }
   841   int bucketSize = 512;
   842   int bucketLimit = maxCodeSize / bucketSize + 1;
   843   int *buckets = NEW_C_HEAP_ARRAY(int, bucketLimit, mtCode);
   844   memset(buckets,0,sizeof(int) * bucketLimit);
   846   for (cb = first(); cb != NULL; cb = next(cb)) {
   847     if (cb->is_nmethod()) {
   848       nmethod* nm = (nmethod*)cb;
   849       if(nm->is_java_method()) {
   850         buckets[nm->insts_size() / bucketSize]++;
   851       }
   852     }
   853   }
   854   tty->print_cr("Code Cache Entries (total of %d)",total);
   855   tty->print_cr("-------------------------------------------------");
   856   tty->print_cr("nmethods: %d",nmethodCount);
   857   tty->print_cr("\talive: %d",nmethodAlive);
   858   tty->print_cr("\tnot_entrant: %d",nmethodNotEntrant);
   859   tty->print_cr("\tzombie: %d",nmethodZombie);
   860   tty->print_cr("\tunloaded: %d",nmethodUnloaded);
   861   tty->print_cr("\tjava: %d",nmethodJava);
   862   tty->print_cr("\tnative: %d",nmethodNative);
   863   tty->print_cr("runtime_stubs: %d",runtimeStubCount);
   864   tty->print_cr("adapters: %d",adapterCount);
   865   tty->print_cr("buffer blobs: %d",bufferBlobCount);
   866   tty->print_cr("deoptimization_stubs: %d",deoptimizationStubCount);
   867   tty->print_cr("uncommon_traps: %d",uncommonTrapStubCount);
   868   tty->print_cr("\nnmethod size distribution (non-zombie java)");
   869   tty->print_cr("-------------------------------------------------");
   871   for(int i=0; i<bucketLimit; i++) {
   872     if(buckets[i] != 0) {
   873       tty->print("%d - %d bytes",i*bucketSize,(i+1)*bucketSize);
   874       tty->fill_to(40);
   875       tty->print_cr("%d",buckets[i]);
   876     }
   877   }
   879   FREE_C_HEAP_ARRAY(int, buckets, mtCode);
   880 }
   882 #endif // !PRODUCT
   884 void CodeCache::print() {
   885   print_summary(tty);
   887 #ifndef PRODUCT
   888   if (!Verbose) return;
   890   CodeBlob_sizes live;
   891   CodeBlob_sizes dead;
   893   FOR_ALL_BLOBS(p) {
   894     if (!p->is_alive()) {
   895       dead.add(p);
   896     } else {
   897       live.add(p);
   898     }
   899   }
   901   tty->print_cr("CodeCache:");
   903   tty->print_cr("nmethod dependency checking time %f, per dependent %f", dependentCheckTime.seconds(),
   904                 dependentCheckTime.seconds() / dependentCheckCount);
   906   if (!live.is_empty()) {
   907     live.print("live");
   908   }
   909   if (!dead.is_empty()) {
   910     dead.print("dead");
   911   }
   914   if (WizardMode) {
   915      // print the oop_map usage
   916     int code_size = 0;
   917     int number_of_blobs = 0;
   918     int number_of_oop_maps = 0;
   919     int map_size = 0;
   920     FOR_ALL_BLOBS(p) {
   921       if (p->is_alive()) {
   922         number_of_blobs++;
   923         code_size += p->code_size();
   924         OopMapSet* set = p->oop_maps();
   925         if (set != NULL) {
   926           number_of_oop_maps += set->size();
   927           map_size           += set->heap_size();
   928         }
   929       }
   930     }
   931     tty->print_cr("OopMaps");
   932     tty->print_cr("  #blobs    = %d", number_of_blobs);
   933     tty->print_cr("  code size = %d", code_size);
   934     tty->print_cr("  #oop_maps = %d", number_of_oop_maps);
   935     tty->print_cr("  map size  = %d", map_size);
   936   }
   938 #endif // !PRODUCT
   939 }
   941 void CodeCache::print_summary(outputStream* st, bool detailed) {
   942   size_t total = (_heap->high_boundary() - _heap->low_boundary());
   943   st->print_cr("CodeCache: size=" SIZE_FORMAT "Kb used=" SIZE_FORMAT
   944                "Kb max_used=" SIZE_FORMAT "Kb free=" SIZE_FORMAT "Kb",
   945                total/K, (total - unallocated_capacity())/K,
   946                maxCodeCacheUsed/K, unallocated_capacity()/K);
   948   if (detailed) {
   949     st->print_cr(" bounds [" INTPTR_FORMAT ", " INTPTR_FORMAT ", " INTPTR_FORMAT "]",
   950                  p2i(_heap->low_boundary()),
   951                  p2i(_heap->high()),
   952                  p2i(_heap->high_boundary()));
   953     st->print_cr(" total_blobs=" UINT32_FORMAT " nmethods=" UINT32_FORMAT
   954                  " adapters=" UINT32_FORMAT,
   955                  nof_blobs(), nof_nmethods(), nof_adapters());
   956     st->print_cr(" compilation: %s", CompileBroker::should_compile_new_jobs() ?
   957                  "enabled" : Arguments::mode() == Arguments::_int ?
   958                  "disabled (interpreter mode)" :
   959                  "disabled (not enough contiguous free space left)");
   960   }
   961 }
   963 void CodeCache::log_state(outputStream* st) {
   964   st->print(" total_blobs='" UINT32_FORMAT "' nmethods='" UINT32_FORMAT "'"
   965             " adapters='" UINT32_FORMAT "' free_code_cache='" SIZE_FORMAT "'",
   966             nof_blobs(), nof_nmethods(), nof_adapters(),
   967             unallocated_capacity());
   968 }

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