src/share/vm/code/nmethod.hpp

Fri, 08 Jan 2010 13:47:01 -0800

author
jrose
date
Fri, 08 Jan 2010 13:47:01 -0800
changeset 1590
4e6abf09f540
parent 1576
b1f619d38249
child 1635
ba263cfb7611
permissions
-rw-r--r--

6912062: disassembler plugin needs to produce symbolic information in product mode
Summary: More informative disassembly in product mode. Also, a more consistent CompileCommand syntax.
Reviewed-by: never

     1 /*
     2  * Copyright 1997-2009 Sun Microsystems, Inc.  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 Sun Microsystems, Inc., 4150 Network Circle, Santa Clara,
    20  * CA 95054 USA or visit www.sun.com if you need additional information or
    21  * have any questions.
    22  *
    23  */
    25 // This class is used internally by nmethods, to cache
    26 // exception/pc/handler information.
    28 class ExceptionCache : public CHeapObj {
    29   friend class VMStructs;
    30  private:
    31   static address _unwind_handler;
    32   enum { cache_size = 16 };
    33   klassOop _exception_type;
    34   address  _pc[cache_size];
    35   address  _handler[cache_size];
    36   int      _count;
    37   ExceptionCache* _next;
    39   address pc_at(int index)                     { assert(index >= 0 && index < count(),""); return _pc[index]; }
    40   void    set_pc_at(int index, address a)      { assert(index >= 0 && index < cache_size,""); _pc[index] = a; }
    41   address handler_at(int index)                { assert(index >= 0 && index < count(),""); return _handler[index]; }
    42   void    set_handler_at(int index, address a) { assert(index >= 0 && index < cache_size,""); _handler[index] = a; }
    43   int     count()                              { return _count; }
    44   void    increment_count()                    { _count++; }
    46  public:
    48   ExceptionCache(Handle exception, address pc, address handler);
    50   klassOop  exception_type()                { return _exception_type; }
    51   klassOop* exception_type_addr()           { return &_exception_type; }
    52   ExceptionCache* next()                    { return _next; }
    53   void      set_next(ExceptionCache *ec)    { _next = ec; }
    55   address match(Handle exception, address pc);
    56   bool    match_exception_with_space(Handle exception) ;
    57   address test_address(address addr);
    58   bool    add_address_and_handler(address addr, address handler) ;
    60   static address unwind_handler() { return _unwind_handler; }
    61 };
    64 // cache pc descs found in earlier inquiries
    65 class PcDescCache VALUE_OBJ_CLASS_SPEC {
    66   friend class VMStructs;
    67  private:
    68   enum { cache_size = 4 };
    69   PcDesc* _last_pc_desc;         // most recent pc_desc found
    70   PcDesc* _pc_descs[cache_size]; // last cache_size pc_descs found
    71  public:
    72   PcDescCache() { debug_only(_last_pc_desc = NULL); }
    73   void    reset_to(PcDesc* initial_pc_desc);
    74   PcDesc* find_pc_desc(int pc_offset, bool approximate);
    75   void    add_pc_desc(PcDesc* pc_desc);
    76   PcDesc* last_pc_desc() { return _last_pc_desc; }
    77 };
    80 // nmethods (native methods) are the compiled code versions of Java methods.
    82 struct nmFlags {
    83   friend class VMStructs;
    84   unsigned int version:8;                    // version number (0 = first version)
    85   unsigned int level:4;                      // optimization level
    86   unsigned int age:4;                        // age (in # of sweep steps)
    88   unsigned int state:2;                      // {alive, zombie, unloaded)
    90   unsigned int isUncommonRecompiled:1;       // recompiled because of uncommon trap?
    91   unsigned int isToBeRecompiled:1;           // to be recompiled as soon as it matures
    92   unsigned int hasFlushedDependencies:1;     // Used for maintenance of dependencies
    93   unsigned int markedForReclamation:1;       // Used by NMethodSweeper
    95   unsigned int has_unsafe_access:1;          // May fault due to unsafe access.
    96   unsigned int has_method_handle_invokes:1;  // Has this method MethodHandle invokes?
    98   void clear();
    99 };
   102 // A nmethod contains:
   103 //  - header                 (the nmethod structure)
   104 //  [Relocation]
   105 //  - relocation information
   106 //  - constant part          (doubles, longs and floats used in nmethod)
   107 //  [Code]
   108 //  - code body
   109 //  - exception handler
   110 //  - stub code
   111 //  [Debugging information]
   112 //  - oop array
   113 //  - data array
   114 //  - pcs
   115 //  [Exception handler table]
   116 //  - handler entry point array
   117 //  [Implicit Null Pointer exception table]
   118 //  - implicit null table array
   120 class Dependencies;
   121 class ExceptionHandlerTable;
   122 class ImplicitExceptionTable;
   123 class AbstractCompiler;
   124 class xmlStream;
   126 class nmethod : public CodeBlob {
   127   friend class VMStructs;
   128   friend class NMethodSweeper;
   129   friend class CodeCache;  // non-perm oops
   130  private:
   131   // Shared fields for all nmethod's
   132   static int _zombie_instruction_size;
   134   methodOop _method;
   135   int       _entry_bci;        // != InvocationEntryBci if this nmethod is an on-stack replacement method
   137   // To support simple linked-list chaining of nmethods:
   138   nmethod*  _osr_link;         // from instanceKlass::osr_nmethods_head
   139   nmethod*  _scavenge_root_link; // from CodeCache::scavenge_root_nmethods
   141   static nmethod* volatile _oops_do_mark_nmethods;
   142   nmethod*        volatile _oops_do_mark_link;
   144   AbstractCompiler* _compiler; // The compiler which compiled this nmethod
   146   // Offsets for different nmethod parts
   147   int _exception_offset;
   148   // All deoptee's will resume execution at this location described by this offset
   149   int _deoptimize_offset;
   150 #ifdef HAVE_DTRACE_H
   151   int _trap_offset;
   152 #endif // def HAVE_DTRACE_H
   153   int _stub_offset;
   154   int _consts_offset;
   155   int _scopes_data_offset;
   156   int _scopes_pcs_offset;
   157   int _dependencies_offset;
   158   int _handler_table_offset;
   159   int _nul_chk_table_offset;
   160   int _nmethod_end_offset;
   162   // location in frame (offset for sp) that deopt can store the original
   163   // pc during a deopt.
   164   int _orig_pc_offset;
   166   int _compile_id;                     // which compilation made this nmethod
   167   int _comp_level;                     // compilation level
   169   // offsets for entry points
   170   address _entry_point;                // entry point with class check
   171   address _verified_entry_point;       // entry point without class check
   172   address _osr_entry_point;            // entry point for on stack replacement
   174   nmFlags flags;           // various flags to keep track of nmethod state
   175   bool _markedForDeoptimization;       // Used for stack deoptimization
   176   enum { alive        = 0,
   177          not_entrant  = 1, // uncommon trap has happened but activations may still exist
   178          zombie       = 2,
   179          unloaded     = 3 };
   181   // used by jvmti to track if an unload event has been posted for this nmethod.
   182   bool _unload_reported;
   184   jbyte _scavenge_root_state;
   186   NOT_PRODUCT(bool _has_debug_info; )
   188   // Nmethod Flushing lock (if non-zero, then the nmethod is not removed)
   189   jint  _lock_count;
   191   // not_entrant method removal. Each mark_sweep pass will update
   192   // this mark to current sweep invocation count if it is seen on the
   193   // stack.  An not_entrant method can be removed when there is no
   194   // more activations, i.e., when the _stack_traversal_mark is less than
   195   // current sweep traversal index.
   196   long _stack_traversal_mark;
   198   ExceptionCache *_exception_cache;
   199   PcDescCache     _pc_desc_cache;
   201   // These are only used for compiled synchronized native methods to
   202   // locate the owner and stack slot for the BasicLock so that we can
   203   // properly revoke the bias of the owner if necessary. They are
   204   // needed because there is no debug information for compiled native
   205   // wrappers and the oop maps are insufficient to allow
   206   // frame::retrieve_receiver() to work. Currently they are expected
   207   // to be byte offsets from the Java stack pointer for maximum code
   208   // sharing between platforms. Note that currently biased locking
   209   // will never cause Class instances to be biased but this code
   210   // handles the static synchronized case as well.
   211   ByteSize _compiled_synchronized_native_basic_lock_owner_sp_offset;
   212   ByteSize _compiled_synchronized_native_basic_lock_sp_offset;
   214   friend class nmethodLocker;
   216   // For native wrappers
   217   nmethod(methodOop method,
   218           int nmethod_size,
   219           CodeOffsets* offsets,
   220           CodeBuffer *code_buffer,
   221           int frame_size,
   222           ByteSize basic_lock_owner_sp_offset, /* synchronized natives only */
   223           ByteSize basic_lock_sp_offset,       /* synchronized natives only */
   224           OopMapSet* oop_maps);
   226 #ifdef HAVE_DTRACE_H
   227   // For native wrappers
   228   nmethod(methodOop method,
   229           int nmethod_size,
   230           CodeOffsets* offsets,
   231           CodeBuffer *code_buffer,
   232           int frame_size);
   233 #endif // def HAVE_DTRACE_H
   235   // Creation support
   236   nmethod(methodOop method,
   237           int nmethod_size,
   238           int compile_id,
   239           int entry_bci,
   240           CodeOffsets* offsets,
   241           int orig_pc_offset,
   242           DebugInformationRecorder *recorder,
   243           Dependencies* dependencies,
   244           CodeBuffer *code_buffer,
   245           int frame_size,
   246           OopMapSet* oop_maps,
   247           ExceptionHandlerTable* handler_table,
   248           ImplicitExceptionTable* nul_chk_table,
   249           AbstractCompiler* compiler,
   250           int comp_level);
   252   // helper methods
   253   void* operator new(size_t size, int nmethod_size);
   255   const char* reloc_string_for(u_char* begin, u_char* end);
   256   // Returns true if this thread changed the state of the nmethod or
   257   // false if another thread performed the transition.
   258   bool make_not_entrant_or_zombie(unsigned int state);
   259   void inc_decompile_count();
   261   // used to check that writes to nmFlags are done consistently.
   262   static void check_safepoint() PRODUCT_RETURN;
   264   // Used to manipulate the exception cache
   265   void add_exception_cache_entry(ExceptionCache* new_entry);
   266   ExceptionCache* exception_cache_entry_for_exception(Handle exception);
   268   // Inform external interfaces that a compiled method has been unloaded
   269   inline void post_compiled_method_unload();
   271  public:
   272   // create nmethod with entry_bci
   273   static nmethod* new_nmethod(methodHandle method,
   274                               int compile_id,
   275                               int entry_bci,
   276                               CodeOffsets* offsets,
   277                               int orig_pc_offset,
   278                               DebugInformationRecorder* recorder,
   279                               Dependencies* dependencies,
   280                               CodeBuffer *code_buffer,
   281                               int frame_size,
   282                               OopMapSet* oop_maps,
   283                               ExceptionHandlerTable* handler_table,
   284                               ImplicitExceptionTable* nul_chk_table,
   285                               AbstractCompiler* compiler,
   286                               int comp_level);
   288   static nmethod* new_native_nmethod(methodHandle method,
   289                                      CodeBuffer *code_buffer,
   290                                      int vep_offset,
   291                                      int frame_complete,
   292                                      int frame_size,
   293                                      ByteSize receiver_sp_offset,
   294                                      ByteSize basic_lock_sp_offset,
   295                                      OopMapSet* oop_maps);
   297 #ifdef HAVE_DTRACE_H
   298   // The method we generate for a dtrace probe has to look
   299   // like an nmethod as far as the rest of the system is concerned
   300   // which is somewhat unfortunate.
   301   static nmethod* new_dtrace_nmethod(methodHandle method,
   302                                      CodeBuffer *code_buffer,
   303                                      int vep_offset,
   304                                      int trap_offset,
   305                                      int frame_complete,
   306                                      int frame_size);
   308   int trap_offset() const      { return _trap_offset; }
   309   address trap_address() const { return code_begin() + _trap_offset; }
   311 #endif // def HAVE_DTRACE_H
   313   // accessors
   314   methodOop method() const                        { return _method; }
   315   AbstractCompiler* compiler() const              { return _compiler; }
   317 #ifndef PRODUCT
   318   bool has_debug_info() const                     { return _has_debug_info; }
   319   void set_has_debug_info(bool f)                 { _has_debug_info = false; }
   320 #endif // NOT PRODUCT
   322   // type info
   323   bool is_nmethod() const                         { return true; }
   324   bool is_java_method() const                     { return !method()->is_native(); }
   325   bool is_native_method() const                   { return method()->is_native(); }
   326   bool is_osr_method() const                      { return _entry_bci != InvocationEntryBci; }
   328   bool is_compiled_by_c1() const;
   329   bool is_compiled_by_c2() const;
   331   // boundaries for different parts
   332   address code_begin         () const             { return _entry_point; }
   333   address code_end           () const             { return           header_begin() + _stub_offset          ; }
   334   address exception_begin    () const             { return           header_begin() + _exception_offset     ; }
   335   address deopt_handler_begin() const             { return           header_begin() + _deoptimize_offset    ; }
   336   address stub_begin         () const             { return           header_begin() + _stub_offset          ; }
   337   address stub_end           () const             { return           header_begin() + _consts_offset        ; }
   338   address consts_begin       () const             { return           header_begin() + _consts_offset        ; }
   339   address consts_end         () const             { return           header_begin() + _scopes_data_offset   ; }
   340   address scopes_data_begin  () const             { return           header_begin() + _scopes_data_offset   ; }
   341   address scopes_data_end    () const             { return           header_begin() + _scopes_pcs_offset    ; }
   342   PcDesc* scopes_pcs_begin   () const             { return (PcDesc*)(header_begin() + _scopes_pcs_offset   ); }
   343   PcDesc* scopes_pcs_end     () const             { return (PcDesc*)(header_begin() + _dependencies_offset); }
   344   address dependencies_begin () const             { return           header_begin() + _dependencies_offset ; }
   345   address dependencies_end   () const             { return           header_begin() + _handler_table_offset ; }
   346   address handler_table_begin() const             { return           header_begin() + _handler_table_offset ; }
   347   address handler_table_end  () const             { return           header_begin() + _nul_chk_table_offset   ; }
   348   address nul_chk_table_begin() const             { return           header_begin() + _nul_chk_table_offset ; }
   349   address nul_chk_table_end  () const             { return           header_begin() + _nmethod_end_offset   ; }
   351   int code_size         () const                  { return      code_end         () -      code_begin         (); }
   352   int stub_size         () const                  { return      stub_end         () -      stub_begin         (); }
   353   int consts_size       () const                  { return      consts_end       () -      consts_begin       (); }
   354   int scopes_data_size  () const                  { return      scopes_data_end  () -      scopes_data_begin  (); }
   355   int scopes_pcs_size   () const                  { return (intptr_t)scopes_pcs_end   () - (intptr_t)scopes_pcs_begin   (); }
   356   int dependencies_size () const                  { return      dependencies_end () -      dependencies_begin (); }
   357   int handler_table_size() const                  { return      handler_table_end() -      handler_table_begin(); }
   358   int nul_chk_table_size() const                  { return      nul_chk_table_end() -      nul_chk_table_begin(); }
   360   int total_size        () const;
   362   bool code_contains         (address addr) const { return code_begin         () <= addr && addr < code_end         (); }
   363   bool stub_contains         (address addr) const { return stub_begin         () <= addr && addr < stub_end         (); }
   364   bool consts_contains       (address addr) const { return consts_begin       () <= addr && addr < consts_end       (); }
   365   bool scopes_data_contains  (address addr) const { return scopes_data_begin  () <= addr && addr < scopes_data_end  (); }
   366   bool scopes_pcs_contains   (PcDesc* addr) const { return scopes_pcs_begin   () <= addr && addr < scopes_pcs_end   (); }
   367   bool handler_table_contains(address addr) const { return handler_table_begin() <= addr && addr < handler_table_end(); }
   368   bool nul_chk_table_contains(address addr) const { return nul_chk_table_begin() <= addr && addr < nul_chk_table_end(); }
   370   // entry points
   371   address entry_point() const                     { return _entry_point;             } // normal entry point
   372   address verified_entry_point() const            { return _verified_entry_point;    } // if klass is correct
   374   // flag accessing and manipulation
   375   bool  is_in_use() const                         { return flags.state == alive; }
   376   bool  is_alive() const                          { return flags.state == alive || flags.state == not_entrant; }
   377   bool  is_not_entrant() const                    { return flags.state == not_entrant; }
   378   bool  is_zombie() const                         { return flags.state == zombie; }
   379   bool  is_unloaded() const                       { return flags.state == unloaded;   }
   381   // Make the nmethod non entrant. The nmethod will continue to be
   382   // alive.  It is used when an uncommon trap happens.  Returns true
   383   // if this thread changed the state of the nmethod or false if
   384   // another thread performed the transition.
   385   bool  make_not_entrant()                        { return make_not_entrant_or_zombie(not_entrant); }
   386   bool  make_zombie()                             { return make_not_entrant_or_zombie(zombie); }
   388   // used by jvmti to track if the unload event has been reported
   389   bool  unload_reported()                         { return _unload_reported; }
   390   void  set_unload_reported()                     { _unload_reported = true; }
   392   bool  is_marked_for_deoptimization() const      { return _markedForDeoptimization; }
   393   void  mark_for_deoptimization()                 { _markedForDeoptimization = true; }
   395   void  make_unloaded(BoolObjectClosure* is_alive, oop cause);
   397   bool has_dependencies()                         { return dependencies_size() != 0; }
   398   void flush_dependencies(BoolObjectClosure* is_alive);
   399   bool  has_flushed_dependencies()                { return flags.hasFlushedDependencies; }
   400   void  set_has_flushed_dependencies()            {
   401     check_safepoint();
   402     assert(!has_flushed_dependencies(), "should only happen once");
   403     flags.hasFlushedDependencies = 1;
   404   }
   406   bool  is_marked_for_reclamation() const         { return flags.markedForReclamation; }
   407   void  mark_for_reclamation()                    { check_safepoint(); flags.markedForReclamation = 1; }
   408   void  unmark_for_reclamation()                  { check_safepoint(); flags.markedForReclamation = 0; }
   410   bool  has_unsafe_access() const                 { return flags.has_unsafe_access; }
   411   void  set_has_unsafe_access(bool z)             { flags.has_unsafe_access = z; }
   413   bool  has_method_handle_invokes() const         { return flags.has_method_handle_invokes; }
   414   void  set_has_method_handle_invokes(bool z)     { flags.has_method_handle_invokes = z; }
   416   int   level() const                             { return flags.level; }
   417   void  set_level(int newLevel)                   { check_safepoint(); flags.level = newLevel; }
   419   int   comp_level() const                        { return _comp_level; }
   421   int   version() const                           { return flags.version; }
   422   void  set_version(int v);
   424   // Non-perm oop support
   425   bool  on_scavenge_root_list() const                  { return (_scavenge_root_state & 1) != 0; }
   426  protected:
   427   enum { npl_on_list = 0x01, npl_marked = 0x10 };
   428   void  set_on_scavenge_root_list()                    { _scavenge_root_state = npl_on_list; }
   429   void  clear_on_scavenge_root_list()                  { _scavenge_root_state = 0; }
   430   // assertion-checking and pruning logic uses the bits of _scavenge_root_state
   431 #ifndef PRODUCT
   432   void  set_scavenge_root_marked()                     { _scavenge_root_state |= npl_marked; }
   433   void  clear_scavenge_root_marked()                   { _scavenge_root_state &= ~npl_marked; }
   434   bool  scavenge_root_not_marked()                     { return (_scavenge_root_state &~ npl_on_list) == 0; }
   435   // N.B. there is no positive marked query, and we only use the not_marked query for asserts.
   436 #endif //PRODUCT
   437   nmethod* scavenge_root_link() const                  { return _scavenge_root_link; }
   438   void     set_scavenge_root_link(nmethod *n)          { _scavenge_root_link = n; }
   440  public:
   442   // Sweeper support
   443   long  stack_traversal_mark()                    { return _stack_traversal_mark; }
   444   void  set_stack_traversal_mark(long l)          { _stack_traversal_mark = l; }
   446   // Exception cache support
   447   ExceptionCache* exception_cache() const         { return _exception_cache; }
   448   void set_exception_cache(ExceptionCache *ec)    { _exception_cache = ec; }
   449   address handler_for_exception_and_pc(Handle exception, address pc);
   450   void add_handler_for_exception_and_pc(Handle exception, address pc, address handler);
   451   void remove_from_exception_cache(ExceptionCache* ec);
   453   // implicit exceptions support
   454   address continuation_for_implicit_exception(address pc);
   456   // On-stack replacement support
   457   int   osr_entry_bci() const                     { assert(_entry_bci != InvocationEntryBci, "wrong kind of nmethod"); return _entry_bci; }
   458   address  osr_entry() const                      { assert(_entry_bci != InvocationEntryBci, "wrong kind of nmethod"); return _osr_entry_point; }
   459   void  invalidate_osr_method();
   460   nmethod* osr_link() const                       { return _osr_link; }
   461   void     set_osr_link(nmethod *n)               { _osr_link = n; }
   463   // tells whether frames described by this nmethod can be deoptimized
   464   // note: native wrappers cannot be deoptimized.
   465   bool can_be_deoptimized() const { return is_java_method(); }
   467   // Inline cache support
   468   void clear_inline_caches();
   469   void cleanup_inline_caches();
   470   bool inlinecache_check_contains(address addr) const {
   471     return (addr >= instructions_begin() && addr < verified_entry_point());
   472   }
   474   // unlink and deallocate this nmethod
   475   // Only NMethodSweeper class is expected to use this. NMethodSweeper is not
   476   // expected to use any other private methods/data in this class.
   478  protected:
   479   void flush();
   481  public:
   482   // If returning true, it is unsafe to remove this nmethod even though it is a zombie
   483   // nmethod, since the VM might have a reference to it. Should only be called from a  safepoint.
   484   bool is_locked_by_vm() const                    { return _lock_count >0; }
   486   // See comment at definition of _last_seen_on_stack
   487   void mark_as_seen_on_stack();
   488   bool can_not_entrant_be_converted();
   490   // Evolution support. We make old (discarded) compiled methods point to new methodOops.
   491   void set_method(methodOop method) { _method = method; }
   493   // GC support
   494   void do_unloading(BoolObjectClosure* is_alive, OopClosure* keep_alive,
   495                     bool unloading_occurred);
   496   bool can_unload(BoolObjectClosure* is_alive, OopClosure* keep_alive,
   497                   oop* root, bool unloading_occurred);
   499   void preserve_callee_argument_oops(frame fr, const RegisterMap *reg_map,
   500                                      OopClosure* f);
   501   virtual void oops_do(OopClosure* f) { oops_do(f, false); }
   502   void         oops_do(OopClosure* f, bool do_strong_roots_only);
   503   bool detect_scavenge_root_oops();
   504   void verify_scavenge_root_oops() PRODUCT_RETURN;
   506   bool test_set_oops_do_mark();
   507   static void oops_do_marking_prologue();
   508   static void oops_do_marking_epilogue();
   509   static bool oops_do_marking_is_active() { return _oops_do_mark_nmethods != NULL; }
   510   DEBUG_ONLY(bool test_oops_do_mark() { return _oops_do_mark_link != NULL; })
   512   // ScopeDesc for an instruction
   513   ScopeDesc* scope_desc_at(address pc);
   515  private:
   516   ScopeDesc* scope_desc_in(address begin, address end);
   518   address* orig_pc_addr(const frame* fr ) { return (address*) ((address)fr->unextended_sp() + _orig_pc_offset); }
   520   PcDesc* find_pc_desc_internal(address pc, bool approximate);
   522   PcDesc* find_pc_desc(address pc, bool approximate) {
   523     PcDesc* desc = _pc_desc_cache.last_pc_desc();
   524     if (desc != NULL && desc->pc_offset() == pc - instructions_begin()) {
   525       return desc;
   526     }
   527     return find_pc_desc_internal(pc, approximate);
   528   }
   530  public:
   531   // ScopeDesc retrieval operation
   532   PcDesc* pc_desc_at(address pc)   { return find_pc_desc(pc, false); }
   533   // pc_desc_near returns the first PcDesc at or after the givne pc.
   534   PcDesc* pc_desc_near(address pc) { return find_pc_desc(pc, true); }
   536  public:
   537   // copying of debugging information
   538   void copy_scopes_pcs(PcDesc* pcs, int count);
   539   void copy_scopes_data(address buffer, int size);
   541   // deopt
   542   // return true is the pc is one would expect if the frame is being deopted.
   543   bool is_deopt_pc(address pc);
   544   // Accessor/mutator for the original pc of a frame before a frame was deopted.
   545   address get_original_pc(const frame* fr) { return *orig_pc_addr(fr); }
   546   void    set_original_pc(const frame* fr, address pc) { *orig_pc_addr(fr) = pc; }
   548   // MethodHandle
   549   bool is_method_handle_return(address return_pc);
   551   // jvmti support:
   552   void post_compiled_method_load_event();
   554   // verify operations
   555   void verify();
   556   void verify_scopes();
   557   void verify_interrupt_point(address interrupt_point);
   559   // printing support
   560   void print()                          const;
   561   void print_code();
   562   void print_relocations()                        PRODUCT_RETURN;
   563   void print_pcs()                                PRODUCT_RETURN;
   564   void print_scopes()                             PRODUCT_RETURN;
   565   void print_dependencies()                       PRODUCT_RETURN;
   566   void print_value_on(outputStream* st) const     PRODUCT_RETURN;
   567   void print_calls(outputStream* st)              PRODUCT_RETURN;
   568   void print_handler_table()                      PRODUCT_RETURN;
   569   void print_nul_chk_table()                      PRODUCT_RETURN;
   570   void print_nmethod(bool print_code);
   572   void print_on(outputStream* st, const char* title) const;
   574   // Logging
   575   void log_identity(xmlStream* log) const;
   576   void log_new_nmethod() const;
   577   void log_state_change() const;
   579   // Prints block-level comments, including nmethod specific block labels:
   580   virtual void print_block_comment(outputStream* stream, address block_begin) {
   581     print_nmethod_labels(stream, block_begin);
   582     CodeBlob::print_block_comment(stream, block_begin);
   583   }
   584   void print_nmethod_labels(outputStream* stream, address block_begin);
   586   // Prints a comment for one native instruction (reloc info, pc desc)
   587   void print_code_comment_on(outputStream* st, int column, address begin, address end);
   588   static void print_statistics()                  PRODUCT_RETURN;
   590   // Compiler task identification.  Note that all OSR methods
   591   // are numbered in an independent sequence if CICountOSR is true,
   592   // and native method wrappers are also numbered independently if
   593   // CICountNative is true.
   594   int  compile_id() const                         { return _compile_id; }
   595   const char* compile_kind() const;
   597   // For debugging
   598   // CompiledIC*    IC_at(char* p) const;
   599   // PrimitiveIC*   primitiveIC_at(char* p) const;
   600   oop embeddedOop_at(address p);
   602   // tells if any of this method's dependencies have been invalidated
   603   // (this is expensive!)
   604   bool check_all_dependencies();
   606   // tells if this compiled method is dependent on the given changes,
   607   // and the changes have invalidated it
   608   bool check_dependency_on(DepChange& changes);
   610   // Evolution support. Tells if this compiled method is dependent on any of
   611   // methods m() of class dependee, such that if m() in dependee is replaced,
   612   // this compiled method will have to be deoptimized.
   613   bool is_evol_dependent_on(klassOop dependee);
   615   // Fast breakpoint support. Tells if this compiled method is
   616   // dependent on the given method. Returns true if this nmethod
   617   // corresponds to the given method as well.
   618   bool is_dependent_on_method(methodOop dependee);
   620   // is it ok to patch at address?
   621   bool is_patchable_at(address instr_address);
   623   // UseBiasedLocking support
   624   ByteSize compiled_synchronized_native_basic_lock_owner_sp_offset() {
   625     return _compiled_synchronized_native_basic_lock_owner_sp_offset;
   626   }
   627   ByteSize compiled_synchronized_native_basic_lock_sp_offset() {
   628     return _compiled_synchronized_native_basic_lock_sp_offset;
   629   }
   631   // support for code generation
   632   static int verified_entry_point_offset()        { return offset_of(nmethod, _verified_entry_point); }
   633   static int osr_entry_point_offset()             { return offset_of(nmethod, _osr_entry_point); }
   634   static int entry_bci_offset()                   { return offset_of(nmethod, _entry_bci); }
   636 };
   638 // Locks an nmethod so its code will not get removed, even if it is a zombie/not_entrant method
   639 class nmethodLocker : public StackObj {
   640   nmethod* _nm;
   642   static void lock_nmethod(nmethod* nm);   // note: nm can be NULL
   643   static void unlock_nmethod(nmethod* nm); // (ditto)
   645  public:
   646   nmethodLocker(address pc); // derive nm from pc
   647   nmethodLocker(nmethod *nm) { _nm = nm; lock_nmethod(_nm); }
   648   nmethodLocker() { _nm = NULL; }
   649   ~nmethodLocker() { unlock_nmethod(_nm); }
   651   nmethod* code() { return _nm; }
   652   void set_code(nmethod* new_nm) {
   653     unlock_nmethod(_nm);   // note:  This works even if _nm==new_nm.
   654     _nm = new_nm;
   655     lock_nmethod(_nm);
   656   }
   657 };

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