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24 
25 #ifndef SHARE_VM_OOPS_METHODOOP_HPP
26 #define SHARE_VM_OOPS_METHODOOP_HPP
27 
28 #include "classfile/vmSymbols.hpp"
29 #include "code/compressedStream.hpp"
30 #include "compiler/compilerDefinitions.hpp"
31 #include "compiler/oopMap.hpp"
32 #include "interpreter/invocationCounter.hpp"
33 #include "oops/annotations.hpp"
34 #include "oops/constantPool.hpp"
35 #include "oops/methodCounters.hpp"
36 #include "oops/instanceKlass.hpp"
37 #include "oops/oop.hpp"
38 #include "oops/typeArrayOop.hpp"
39 #include "utilities/accessFlags.hpp"
40 #include "utilities/align.hpp"
41 #include "utilities/growableArray.hpp"
42 #include "utilities/macros.hpp"
43 #if INCLUDE_JFR
44 #include "jfr/support/jfrTraceIdExtension.hpp"
45 #endif
46 
47 
48 // A Method represents a Java method.
49 //
50 // Note that most applications load thousands of methods, so keeping the size of this
51 // class small has a big impact on footprint.
52 //
53 // Note that native_function and signature_handler have to be at fixed offsets
54 // (required by the interpreter)
55 //
56 //  Method embedded field layout (after declared fields):
57 //   [EMBEDDED native_function       (present only if native) ]
58 //   [EMBEDDED signature_handler     (present only if native) ]
59 
60 class CheckedExceptionElement;
61 class LocalVariableTableElement;
62 class AdapterHandlerEntry;
63 class MethodData;
64 class MethodCounters;
65 class ConstMethod;
66 class InlineTableSizes;
67 class KlassSizeStats;
68 class CompiledMethod;
69 
70 class Method : public Metadata {
71  friend class VMStructs;
72  friend class JVMCIVMStructs;
73  private:
74   // If you add a new field that points to any metaspace object, you
75   // must add this field to Method::metaspace_pointers_do().
76   ConstMethod*      _constMethod;                // Method read-only data.
77   MethodData*       _method_data;
78   MethodCounters*   _method_counters;
79   AccessFlags       _access_flags;               // Access flags
80   int               _vtable_index;               // vtable index of this method (see VtableIndexFlag)
81                                                  // note: can have vtables with >2**16 elements (because of inheritance)
82   u2                _intrinsic_id;               // vmSymbols::intrinsic_id (0 == _none)
83 
84   // Flags
85   enum Flags {
86     _caller_sensitive      = 1 << 0,
87     _force_inline          = 1 << 1,
88     _dont_inline           = 1 << 2,
89     _hidden                = 1 << 3,
90     _has_injected_profile  = 1 << 4,
91     _running_emcp          = 1 << 5,
92     _intrinsic_candidate   = 1 << 6,
93     _reserved_stack_access = 1 << 7
94   };
95   mutable u2 _flags;
96 
97   JFR_ONLY(DEFINE_TRACE_FLAG;)
98 
99 #ifndef PRODUCT
100   int               _compiled_invocation_count;  // Number of nmethod invocations so far (for perf. debugging)
101 #endif
102   // Entry point for calling both from and to the interpreter.
103   address _i2i_entry;           // All-args-on-stack calling convention
104   // Entry point for calling from compiled code, to compiled code if it exists
105   // or else the interpreter.
106   volatile address _from_compiled_entry;        // Cache of: _code ? _code->entry_point() : _adapter->c2i_entry()
107   // The entry point for calling both from and to compiled code is
108   // "_code->entry_point()".  Because of tiered compilation and de-opt, this
109   // field can come and go.  It can transition from NULL to not-null at any
110   // time (whenever a compile completes).  It can transition from not-null to
111   // NULL only at safepoints (because of a de-opt).
112   CompiledMethod* volatile _code;                       // Points to the corresponding piece of native code
113   volatile address           _from_interpreted_entry; // Cache of _code ? _adapter->i2c_entry() : _i2i_entry
114 
115 #if INCLUDE_AOT && defined(TIERED)
116   CompiledMethod* _aot_code;
117 #endif
118 
119   // Constructor
120   Method(ConstMethod* xconst, AccessFlags access_flags);
121  public:
122 
123   static Method* allocate(ClassLoaderData* loader_data,
124                           int byte_code_size,
125                           AccessFlags access_flags,
126                           InlineTableSizes* sizes,
127                           ConstMethod::MethodType method_type,
128                           TRAPS);
129 
130   // CDS and vtbl checking can create an empty Method to get vtbl pointer.
Method()131   Method(){}
132 
is_method() const133   bool is_method() const volatile { return true; }
134 
135   void restore_unshareable_info(TRAPS);
136 
137   // accessors for instance variables
138 
constMethod() const139   ConstMethod* constMethod() const             { return _constMethod; }
set_constMethod(ConstMethod * xconst)140   void set_constMethod(ConstMethod* xconst)    { _constMethod = xconst; }
141 
142 
143   static address make_adapters(const methodHandle& mh, TRAPS);
144   address from_compiled_entry() const;
145   address from_compiled_entry_no_trampoline() const;
146   address from_interpreted_entry() const;
147 
148   // access flag
access_flags() const149   AccessFlags access_flags() const               { return _access_flags;  }
set_access_flags(AccessFlags flags)150   void set_access_flags(AccessFlags flags)       { _access_flags = flags; }
151 
152   // name
name() const153   Symbol* name() const                           { return constants()->symbol_at(name_index()); }
name_index() const154   int name_index() const                         { return constMethod()->name_index();         }
set_name_index(int index)155   void set_name_index(int index)                 { constMethod()->set_name_index(index);       }
156 
157   // signature
signature() const158   Symbol* signature() const                      { return constants()->symbol_at(signature_index()); }
signature_index() const159   int signature_index() const                    { return constMethod()->signature_index();         }
set_signature_index(int index)160   void set_signature_index(int index)            { constMethod()->set_signature_index(index);       }
161 
162   // generics support
generic_signature() const163   Symbol* generic_signature() const              { int idx = generic_signature_index(); return ((idx != 0) ? constants()->symbol_at(idx) : (Symbol*)NULL); }
generic_signature_index() const164   int generic_signature_index() const            { return constMethod()->generic_signature_index(); }
set_generic_signature_index(int index)165   void set_generic_signature_index(int index)    { constMethod()->set_generic_signature_index(index); }
166 
167   // annotations support
annotations() const168   AnnotationArray* annotations() const           {
169     return constMethod()->method_annotations();
170   }
parameter_annotations() const171   AnnotationArray* parameter_annotations() const {
172     return constMethod()->parameter_annotations();
173   }
annotation_default() const174   AnnotationArray* annotation_default() const    {
175     return constMethod()->default_annotations();
176   }
type_annotations() const177   AnnotationArray* type_annotations() const      {
178     return constMethod()->type_annotations();
179   }
180 
181   // Helper routine: get klass name + "." + method name + signature as
182   // C string, for the purpose of providing more useful NoSuchMethodErrors
183   // and fatal error handling. The string is allocated in resource
184   // area if a buffer is not provided by the caller.
185   char* name_and_sig_as_C_string() const;
186   char* name_and_sig_as_C_string(char* buf, int size) const;
187 
188   // Static routine in the situations we don't have a Method*
189   static char* name_and_sig_as_C_string(Klass* klass, Symbol* method_name, Symbol* signature);
190   static char* name_and_sig_as_C_string(Klass* klass, Symbol* method_name, Symbol* signature, char* buf, int size);
191 
java_code_at(int bci) const192   Bytecodes::Code java_code_at(int bci) const {
193     return Bytecodes::java_code_at(this, bcp_from(bci));
194   }
code_at(int bci) const195   Bytecodes::Code code_at(int bci) const {
196     return Bytecodes::code_at(this, bcp_from(bci));
197   }
198 
199   // JVMTI breakpoints
200 #if !INCLUDE_JVMTI
orig_bytecode_at(int bci) const201   Bytecodes::Code orig_bytecode_at(int bci) const {
202     ShouldNotReachHere();
203     return Bytecodes::_shouldnotreachhere;
204   }
set_orig_bytecode_at(int bci,Bytecodes::Code code)205   void set_orig_bytecode_at(int bci, Bytecodes::Code code) {
206     ShouldNotReachHere();
207   };
number_of_breakpoints() const208   u2   number_of_breakpoints() const {return 0;}
209 #else // !INCLUDE_JVMTI
210   Bytecodes::Code orig_bytecode_at(int bci) const;
211   void set_orig_bytecode_at(int bci, Bytecodes::Code code);
212   void set_breakpoint(int bci);
213   void clear_breakpoint(int bci);
214   void clear_all_breakpoints();
215   // Tracking number of breakpoints, for fullspeed debugging.
216   // Only mutated by VM thread.
number_of_breakpoints() const217   u2   number_of_breakpoints()             const {
218     MethodCounters* mcs = method_counters();
219     if (mcs == NULL) {
220       return 0;
221     } else {
222       return mcs->number_of_breakpoints();
223     }
224   }
incr_number_of_breakpoints(TRAPS)225   void incr_number_of_breakpoints(TRAPS)         {
226     MethodCounters* mcs = get_method_counters(CHECK);
227     if (mcs != NULL) {
228       mcs->incr_number_of_breakpoints();
229     }
230   }
decr_number_of_breakpoints(TRAPS)231   void decr_number_of_breakpoints(TRAPS)         {
232     MethodCounters* mcs = get_method_counters(CHECK);
233     if (mcs != NULL) {
234       mcs->decr_number_of_breakpoints();
235     }
236   }
237   // Initialization only
clear_number_of_breakpoints()238   void clear_number_of_breakpoints()             {
239     MethodCounters* mcs = method_counters();
240     if (mcs != NULL) {
241       mcs->clear_number_of_breakpoints();
242     }
243   }
244 #endif // !INCLUDE_JVMTI
245 
246   // index into InstanceKlass methods() array
247   // note: also used by jfr
method_idnum() const248   u2 method_idnum() const           { return constMethod()->method_idnum(); }
set_method_idnum(u2 idnum)249   void set_method_idnum(u2 idnum)   { constMethod()->set_method_idnum(idnum); }
250 
orig_method_idnum() const251   u2 orig_method_idnum() const           { return constMethod()->orig_method_idnum(); }
set_orig_method_idnum(u2 idnum)252   void set_orig_method_idnum(u2 idnum)   { constMethod()->set_orig_method_idnum(idnum); }
253 
254   // code size
code_size() const255   int code_size() const                  { return constMethod()->code_size(); }
256 
257   // method size in words
method_size() const258   int method_size() const                { return sizeof(Method)/wordSize + ( is_native() ? 2 : 0 ); }
259 
260   // constant pool for Klass* holding this method
constants() const261   ConstantPool* constants() const              { return constMethod()->constants(); }
set_constants(ConstantPool * c)262   void set_constants(ConstantPool* c)          { constMethod()->set_constants(c); }
263 
264   // max stack
265   // return original max stack size for method verification
verifier_max_stack() const266   int  verifier_max_stack() const                { return constMethod()->max_stack(); }
max_stack() const267   int           max_stack() const                { return constMethod()->max_stack() + extra_stack_entries(); }
set_max_stack(int size)268   void      set_max_stack(int size)              {        constMethod()->set_max_stack(size); }
269 
270   // max locals
max_locals() const271   int  max_locals() const                        { return constMethod()->max_locals(); }
set_max_locals(int size)272   void set_max_locals(int size)                  { constMethod()->set_max_locals(size); }
273 
274   int highest_comp_level() const;
275   void set_highest_comp_level(int level);
276   int highest_osr_comp_level() const;
277   void set_highest_osr_comp_level(int level);
278 
279 #if COMPILER2_OR_JVMCI
280   // Count of times method was exited via exception while interpreting
interpreter_throwout_increment(TRAPS)281   void interpreter_throwout_increment(TRAPS) {
282     MethodCounters* mcs = get_method_counters(CHECK);
283     if (mcs != NULL) {
284       mcs->interpreter_throwout_increment();
285     }
286   }
287 #endif
288 
interpreter_throwout_count() const289   int  interpreter_throwout_count() const        {
290     MethodCounters* mcs = method_counters();
291     if (mcs == NULL) {
292       return 0;
293     } else {
294       return mcs->interpreter_throwout_count();
295     }
296   }
297 
298   // size of parameters
size_of_parameters() const299   int  size_of_parameters() const                { return constMethod()->size_of_parameters(); }
set_size_of_parameters(int size)300   void set_size_of_parameters(int size)          { constMethod()->set_size_of_parameters(size); }
301 
has_stackmap_table() const302   bool has_stackmap_table() const {
303     return constMethod()->has_stackmap_table();
304   }
305 
stackmap_data() const306   Array<u1>* stackmap_data() const {
307     return constMethod()->stackmap_data();
308   }
309 
set_stackmap_data(Array<u1> * sd)310   void set_stackmap_data(Array<u1>* sd) {
311     constMethod()->set_stackmap_data(sd);
312   }
313 
314   // exception handler table
has_exception_handler() const315   bool has_exception_handler() const
316                              { return constMethod()->has_exception_handler(); }
exception_table_length() const317   int exception_table_length() const
318                              { return constMethod()->exception_table_length(); }
exception_table_start() const319   ExceptionTableElement* exception_table_start() const
320                              { return constMethod()->exception_table_start(); }
321 
322   // Finds the first entry point bci of an exception handler for an
323   // exception of klass ex_klass thrown at throw_bci. A value of NULL
324   // for ex_klass indicates that the exception klass is not known; in
325   // this case it matches any constraint class. Returns -1 if the
326   // exception cannot be handled in this method. The handler
327   // constraint classes are loaded if necessary. Note that this may
328   // throw an exception if loading of the constraint classes causes
329   // an IllegalAccessError (bugid 4307310) or an OutOfMemoryError.
330   // If an exception is thrown, returns the bci of the
331   // exception handler which caused the exception to be thrown, which
332   // is needed for proper retries. See, for example,
333   // InterpreterRuntime::exception_handler_for_exception.
334   static int fast_exception_handler_bci_for(const methodHandle& mh, Klass* ex_klass, int throw_bci, TRAPS);
335 
336   // method data access
method_data() const337   MethodData* method_data() const              {
338     return _method_data;
339   }
340 
341   void set_method_data(MethodData* data);
342 
method_counters() const343   MethodCounters* method_counters() const {
344     return _method_counters;
345   }
346 
clear_method_counters()347   void clear_method_counters() {
348     _method_counters = NULL;
349   }
350 
351   bool init_method_counters(MethodCounters* counters);
352 
353 #ifdef TIERED
354   // We are reusing interpreter_invocation_count as a holder for the previous event count!
355   // We can do that since interpreter_invocation_count is not used in tiered.
prev_event_count() const356   int prev_event_count() const                   {
357     if (method_counters() == NULL) {
358       return 0;
359     } else {
360       return method_counters()->interpreter_invocation_count();
361     }
362   }
set_prev_event_count(int count)363   void set_prev_event_count(int count) {
364     MethodCounters* mcs = method_counters();
365     if (mcs != NULL) {
366       mcs->set_interpreter_invocation_count(count);
367     }
368   }
prev_time() const369   jlong prev_time() const                        {
370     MethodCounters* mcs = method_counters();
371     return mcs == NULL ? 0 : mcs->prev_time();
372   }
set_prev_time(jlong time)373   void set_prev_time(jlong time) {
374     MethodCounters* mcs = method_counters();
375     if (mcs != NULL) {
376       mcs->set_prev_time(time);
377     }
378   }
rate() const379   float rate() const                             {
380     MethodCounters* mcs = method_counters();
381     return mcs == NULL ? 0 : mcs->rate();
382   }
set_rate(float rate)383   void set_rate(float rate) {
384     MethodCounters* mcs = method_counters();
385     if (mcs != NULL) {
386       mcs->set_rate(rate);
387     }
388   }
389 
390 #if INCLUDE_AOT
set_aot_code(CompiledMethod * aot_code)391   void set_aot_code(CompiledMethod* aot_code) {
392     _aot_code = aot_code;
393   }
394 
aot_code() const395   CompiledMethod* aot_code() const {
396     return _aot_code;
397   }
398 #else
aot_code() const399   CompiledMethod* aot_code() const { return NULL; }
400 #endif // INCLUDE_AOT
401 #endif // TIERED
402 
nmethod_age() const403   int nmethod_age() const {
404     if (method_counters() == NULL) {
405       return INT_MAX;
406     } else {
407       return method_counters()->nmethod_age();
408     }
409   }
410 
411   int invocation_count();
412   int backedge_count();
413 
414   bool was_executed_more_than(int n);
was_never_executed()415   bool was_never_executed()                      { return !was_executed_more_than(0); }
416 
417   static void build_interpreter_method_data(const methodHandle& method, TRAPS);
418 
419   static MethodCounters* build_method_counters(Method* m, TRAPS);
420 
interpreter_invocation_count()421   int interpreter_invocation_count() {
422     if (TieredCompilation) {
423       return invocation_count();
424     } else {
425       MethodCounters* mcs = method_counters();
426       return (mcs == NULL) ? 0 : mcs->interpreter_invocation_count();
427     }
428   }
429 #if COMPILER2_OR_JVMCI
increment_interpreter_invocation_count(TRAPS)430   int increment_interpreter_invocation_count(TRAPS) {
431     if (TieredCompilation) ShouldNotReachHere();
432     MethodCounters* mcs = get_method_counters(CHECK_0);
433     return (mcs == NULL) ? 0 : mcs->increment_interpreter_invocation_count();
434   }
435 #endif
436 
437 #ifndef PRODUCT
compiled_invocation_count() const438   int  compiled_invocation_count() const         { return _compiled_invocation_count;  }
set_compiled_invocation_count(int count)439   void set_compiled_invocation_count(int count)  { _compiled_invocation_count = count; }
440 #else
441   // for PrintMethodData in a product build
compiled_invocation_count() const442   int  compiled_invocation_count() const         { return 0;  }
443 #endif // not PRODUCT
444 
445   // Clear (non-shared space) pointers which could not be relevant
446   // if this (shared) method were mapped into another JVM.
447   void remove_unshareable_info();
448 
449   // nmethod/verified compiler entry
450   address verified_code_entry();
451   bool check_code() const;      // Not inline to avoid circular ref
452   CompiledMethod* volatile code() const;
453   void clear_code(bool acquire_lock = true);    // Clear out any compiled code
454   static void set_code(const methodHandle& mh, CompiledMethod* code);
set_adapter_entry(AdapterHandlerEntry * adapter)455   void set_adapter_entry(AdapterHandlerEntry* adapter) {
456     constMethod()->set_adapter_entry(adapter);
457   }
update_adapter_trampoline(AdapterHandlerEntry * adapter)458   void update_adapter_trampoline(AdapterHandlerEntry* adapter) {
459     constMethod()->update_adapter_trampoline(adapter);
460   }
461 
462   address get_i2c_entry();
463   address get_c2i_entry();
464   address get_c2i_unverified_entry();
adapter() const465   AdapterHandlerEntry* adapter() const {
466     return constMethod()->adapter();
467   }
468   // setup entry points
469   void link_method(const methodHandle& method, TRAPS);
470   // clear entry points. Used by sharing code during dump time
471   void unlink_method() NOT_CDS_RETURN;
472 
473   virtual void metaspace_pointers_do(MetaspaceClosure* iter);
type() const474   virtual MetaspaceObj::Type type() const { return MethodType; }
475 
476   // vtable index
477   enum VtableIndexFlag {
478     // Valid vtable indexes are non-negative (>= 0).
479     // These few negative values are used as sentinels.
480     itable_index_max        = -10, // first itable index, growing downward
481     pending_itable_index    = -9,  // itable index will be assigned
482     invalid_vtable_index    = -4,  // distinct from any valid vtable index
483     garbage_vtable_index    = -3,  // not yet linked; no vtable layout yet
484     nonvirtual_vtable_index = -2   // there is no need for vtable dispatch
485     // 6330203 Note:  Do not use -1, which was overloaded with many meanings.
486   };
DEBUG_ONLY(bool valid_vtable_index ()const{ return _vtable_index >= nonvirtual_vtable_index; })487   DEBUG_ONLY(bool valid_vtable_index() const     { return _vtable_index >= nonvirtual_vtable_index; })
488   bool has_vtable_index() const                  { return _vtable_index >= 0; }
vtable_index() const489   int  vtable_index() const                      { return _vtable_index; }
490   void set_vtable_index(int index);
DEBUG_ONLY(bool valid_itable_index ()const{ return _vtable_index <= pending_itable_index; })491   DEBUG_ONLY(bool valid_itable_index() const     { return _vtable_index <= pending_itable_index; })
492   bool has_itable_index() const                  { return _vtable_index <= itable_index_max; }
itable_index() const493   int  itable_index() const                      { assert(valid_itable_index(), "");
494                                                    return itable_index_max - _vtable_index; }
495   void set_itable_index(int index);
496 
497   // interpreter entry
interpreter_entry() const498   address interpreter_entry() const              { return _i2i_entry; }
499   // Only used when first initialize so we can set _i2i_entry and _from_interpreted_entry
set_interpreter_entry(address entry)500   void set_interpreter_entry(address entry) {
501     assert(!is_shared(), "shared method's interpreter entry should not be changed at run time");
502     if (_i2i_entry != entry) {
503       _i2i_entry = entry;
504     }
505     if (_from_interpreted_entry != entry) {
506       _from_interpreted_entry = entry;
507     }
508   }
509 
510   // native function (used for native methods only)
511   enum {
512     native_bind_event_is_interesting = true
513   };
native_function() const514   address native_function() const                { return *(native_function_addr()); }
515   address critical_native_function();
516 
517   // Must specify a real function (not NULL).
518   // Use clear_native_function() to unregister.
519   void set_native_function(address function, bool post_event_flag);
520   bool has_native_function() const;
521   void clear_native_function();
522 
523   // signature handler (used for native methods only)
signature_handler() const524   address signature_handler() const              { return *(signature_handler_addr()); }
525   void set_signature_handler(address handler);
526 
527   // Interpreter oopmap support
528   void mask_for(int bci, InterpreterOopMap* mask);
529 
530   // operations on invocation counter
531   void print_invocation_count();
532 
533   // byte codes
set_code(address code)534   void    set_code(address code)      { return constMethod()->set_code(code); }
code_base() const535   address code_base() const           { return constMethod()->code_base(); }
contains(address bcp) const536   bool    contains(address bcp) const { return constMethod()->contains(bcp); }
537 
538   // prints byte codes
print_codes() const539   void print_codes() const            { print_codes_on(tty); }
540   void print_codes_on(outputStream* st) const;
541   void print_codes_on(int from, int to, outputStream* st) const;
542 
543   // method parameters
has_method_parameters() const544   bool has_method_parameters() const
545                          { return constMethod()->has_method_parameters(); }
method_parameters_length() const546   int method_parameters_length() const
547                          { return constMethod()->method_parameters_length(); }
method_parameters_start() const548   MethodParametersElement* method_parameters_start() const
549                           { return constMethod()->method_parameters_start(); }
550 
551   // checked exceptions
checked_exceptions_length() const552   int checked_exceptions_length() const
553                          { return constMethod()->checked_exceptions_length(); }
checked_exceptions_start() const554   CheckedExceptionElement* checked_exceptions_start() const
555                           { return constMethod()->checked_exceptions_start(); }
556 
557   // localvariable table
has_localvariable_table() const558   bool has_localvariable_table() const
559                           { return constMethod()->has_localvariable_table(); }
localvariable_table_length() const560   int localvariable_table_length() const
561                         { return constMethod()->localvariable_table_length(); }
localvariable_table_start() const562   LocalVariableTableElement* localvariable_table_start() const
563                          { return constMethod()->localvariable_table_start(); }
564 
has_linenumber_table() const565   bool has_linenumber_table() const
566                               { return constMethod()->has_linenumber_table(); }
compressed_linenumber_table() const567   u_char* compressed_linenumber_table() const
568                        { return constMethod()->compressed_linenumber_table(); }
569 
570   // method holder (the Klass* holding this method)
method_holder() const571   InstanceKlass* method_holder() const         { return constants()->pool_holder(); }
572 
573   void compute_size_of_parameters(Thread *thread); // word size of parameters (receiver if any + arguments)
574   Symbol* klass_name() const;                    // returns the name of the method holder
575   BasicType result_type() const;                 // type of the method result
is_returning_oop() const576   bool is_returning_oop() const                  { BasicType r = result_type(); return (r == T_OBJECT || r == T_ARRAY); }
is_returning_fp() const577   bool is_returning_fp() const                   { BasicType r = result_type(); return (r == T_FLOAT || r == T_DOUBLE); }
578 
579   // Checked exceptions thrown by this method (resolved to mirrors)
resolved_checked_exceptions(TRAPS)580   objArrayHandle resolved_checked_exceptions(TRAPS) { return resolved_checked_exceptions_impl(this, THREAD); }
581 
582   // Access flags
is_public() const583   bool is_public() const                         { return access_flags().is_public();      }
is_private() const584   bool is_private() const                        { return access_flags().is_private();     }
is_protected() const585   bool is_protected() const                      { return access_flags().is_protected();   }
is_package_private() const586   bool is_package_private() const                { return !is_public() && !is_private() && !is_protected(); }
is_static() const587   bool is_static() const                         { return access_flags().is_static();      }
is_final() const588   bool is_final() const                          { return access_flags().is_final();       }
is_synchronized() const589   bool is_synchronized() const                   { return access_flags().is_synchronized();}
is_native() const590   bool is_native() const                         { return access_flags().is_native();      }
is_abstract() const591   bool is_abstract() const                       { return access_flags().is_abstract();    }
is_strict() const592   bool is_strict() const                         { return access_flags().is_strict();      }
is_synthetic() const593   bool is_synthetic() const                      { return access_flags().is_synthetic();   }
594 
595   // returns true if contains only return operation
596   bool is_empty_method() const;
597 
598   // returns true if this is a vanilla constructor
599   bool is_vanilla_constructor() const;
600 
601   // checks method and its method holder
602   bool is_final_method() const;
603   bool is_final_method(AccessFlags class_access_flags) const;
604   // interface method declared with 'default' - excludes private interface methods
605   bool is_default_method() const;
606 
607   // true if method needs no dynamic dispatch (final and/or no vtable entry)
608   bool can_be_statically_bound() const;
609   bool can_be_statically_bound(AccessFlags class_access_flags) const;
610 
611   // returns true if the method has any backward branches.
has_loops()612   bool has_loops() {
613     return access_flags().loops_flag_init() ? access_flags().has_loops() : compute_has_loops_flag();
614   };
615 
616   bool compute_has_loops_flag();
617 
has_jsrs()618   bool has_jsrs() {
619     return access_flags().has_jsrs();
620   };
set_has_jsrs()621   void set_has_jsrs() {
622     _access_flags.set_has_jsrs();
623   }
624 
625   // returns true if the method has any monitors.
has_monitors() const626   bool has_monitors() const                      { return is_synchronized() || access_flags().has_monitor_bytecodes(); }
has_monitor_bytecodes() const627   bool has_monitor_bytecodes() const             { return access_flags().has_monitor_bytecodes(); }
628 
set_has_monitor_bytecodes()629   void set_has_monitor_bytecodes()               { _access_flags.set_has_monitor_bytecodes(); }
630 
631   // monitor matching. This returns a conservative estimate of whether the monitorenter/monitorexit bytecodes
632   // propererly nest in the method. It might return false, even though they actually nest properly, since the info.
633   // has not been computed yet.
guaranteed_monitor_matching() const634   bool guaranteed_monitor_matching() const       { return access_flags().is_monitor_matching(); }
set_guaranteed_monitor_matching()635   void set_guaranteed_monitor_matching()         { _access_flags.set_monitor_matching(); }
636 
637   // returns true if the method is an accessor function (setter/getter).
638   bool is_accessor() const;
639 
640   // returns true if the method is a getter
641   bool is_getter() const;
642 
643   // returns true if the method is a setter
644   bool is_setter() const;
645 
646   // returns true if the method does nothing but return a constant of primitive type
647   bool is_constant_getter() const;
648 
649   // returns true if the method is an initializer (<init> or <clinit>).
650   bool is_initializer() const;
651 
652   // returns true if the method is static OR if the classfile version < 51
653   bool has_valid_initializer_flags() const;
654 
655   // returns true if the method name is <clinit> and the method has
656   // valid static initializer flags.
657   bool is_static_initializer() const;
658 
659   // returns true if the method name is <init>
660   bool is_object_initializer() const;
661 
662   // compiled code support
663   // NOTE: code() is inherently racy as deopt can be clearing code
664   // simultaneously. Use with caution.
665   bool has_compiled_code() const;
666 
667 #ifdef TIERED
has_aot_code() const668   bool has_aot_code() const                      { return aot_code() != NULL; }
669 #endif
670 
671   // sizing
header_size()672   static int header_size()                       {
673     return align_up((int)sizeof(Method), wordSize) / wordSize;
674   }
675   static int size(bool is_native);
size() const676   int size() const                               { return method_size(); }
677 #if INCLUDE_SERVICES
678   void collect_statistics(KlassSizeStats *sz) const;
679 #endif
680   void log_touched(TRAPS);
681   static void print_touched_methods(outputStream* out);
682 
683   // interpreter support
const_offset()684   static ByteSize const_offset()                 { return byte_offset_of(Method, _constMethod       ); }
access_flags_offset()685   static ByteSize access_flags_offset()          { return byte_offset_of(Method, _access_flags      ); }
from_compiled_offset()686   static ByteSize from_compiled_offset()         { return byte_offset_of(Method, _from_compiled_entry); }
code_offset()687   static ByteSize code_offset()                  { return byte_offset_of(Method, _code); }
method_data_offset()688   static ByteSize method_data_offset()           {
689     return byte_offset_of(Method, _method_data);
690   }
method_counters_offset()691   static ByteSize method_counters_offset()       {
692     return byte_offset_of(Method, _method_counters);
693   }
694 #ifndef PRODUCT
compiled_invocation_counter_offset()695   static ByteSize compiled_invocation_counter_offset() { return byte_offset_of(Method, _compiled_invocation_count); }
696 #endif // not PRODUCT
native_function_offset()697   static ByteSize native_function_offset()       { return in_ByteSize(sizeof(Method));                 }
from_interpreted_offset()698   static ByteSize from_interpreted_offset()      { return byte_offset_of(Method, _from_interpreted_entry ); }
interpreter_entry_offset()699   static ByteSize interpreter_entry_offset()     { return byte_offset_of(Method, _i2i_entry ); }
signature_handler_offset()700   static ByteSize signature_handler_offset()     { return in_ByteSize(sizeof(Method) + wordSize);      }
itable_index_offset()701   static ByteSize itable_index_offset()          { return byte_offset_of(Method, _vtable_index ); }
702 
703   // for code generation
method_data_offset_in_bytes()704   static int method_data_offset_in_bytes()       { return offset_of(Method, _method_data); }
intrinsic_id_offset_in_bytes()705   static int intrinsic_id_offset_in_bytes()      { return offset_of(Method, _intrinsic_id); }
intrinsic_id_size_in_bytes()706   static int intrinsic_id_size_in_bytes()        { return sizeof(u2); }
707 
708   // Static methods that are used to implement member methods where an exposed this pointer
709   // is needed due to possible GCs
710   static objArrayHandle resolved_checked_exceptions_impl(Method* method, TRAPS);
711 
712   // Returns the byte code index from the byte code pointer
713   int     bci_from(address bcp) const;
714   address bcp_from(int bci) const;
715   address bcp_from(address bcp) const;
716   int validate_bci_from_bcp(address bcp) const;
717   int validate_bci(int bci) const;
718 
719   // Returns the line number for a bci if debugging information for the method is prowided,
720   // -1 is returned otherwise.
721   int line_number_from_bci(int bci) const;
722 
723   // Reflection support
724   bool is_overridden_in(Klass* k) const;
725 
726   // Stack walking support
727   bool is_ignored_by_security_stack_walk() const;
728 
729   // JSR 292 support
730   bool is_method_handle_intrinsic() const;          // MethodHandles::is_signature_polymorphic_intrinsic(intrinsic_id)
731   bool is_compiled_lambda_form() const;             // intrinsic_id() == vmIntrinsics::_compiledLambdaForm
732   bool has_member_arg() const;                      // intrinsic_id() == vmIntrinsics::_linkToSpecial, etc.
733   static methodHandle make_method_handle_intrinsic(vmIntrinsics::ID iid, // _invokeBasic, _linkToVirtual
734                                                    Symbol* signature, //anything at all
735                                                    TRAPS);
736   static Klass* check_non_bcp_klass(Klass* klass);
737 
738   enum {
739     // How many extra stack entries for invokedynamic
740     extra_stack_entries_for_jsr292 = 1
741   };
742 
743   // this operates only on invoke methods:
744   // presize interpreter frames for extra interpreter stack entries, if needed
745   // Account for the extra appendix argument for invokehandle/invokedynamic
extra_stack_entries()746   static int extra_stack_entries() { return extra_stack_entries_for_jsr292; }
747   static int extra_stack_words();  // = extra_stack_entries() * Interpreter::stackElementSize
748 
749   // RedefineClasses() support:
is_old() const750   bool is_old() const                               { return access_flags().is_old(); }
set_is_old()751   void set_is_old()                                 { _access_flags.set_is_old(); }
is_obsolete() const752   bool is_obsolete() const                          { return access_flags().is_obsolete(); }
set_is_obsolete()753   void set_is_obsolete()                            { _access_flags.set_is_obsolete(); }
is_deleted() const754   bool is_deleted() const                           { return access_flags().is_deleted(); }
set_is_deleted()755   void set_is_deleted()                             { _access_flags.set_is_deleted(); }
756 
is_running_emcp() const757   bool is_running_emcp() const {
758     // EMCP methods are old but not obsolete or deleted. Equivalent
759     // Modulo Constant Pool means the method is equivalent except
760     // the constant pool and instructions that access the constant
761     // pool might be different.
762     // If a breakpoint is set in a redefined method, its EMCP methods that are
763     // still running must have a breakpoint also.
764     return (_flags & _running_emcp) != 0;
765   }
766 
set_running_emcp(bool x)767   void set_running_emcp(bool x) {
768     _flags = x ? (_flags | _running_emcp) : (_flags & ~_running_emcp);
769   }
770 
on_stack() const771   bool on_stack() const                             { return access_flags().on_stack(); }
772   void set_on_stack(const bool value);
773 
774   // see the definition in Method*.cpp for the gory details
775   bool should_not_be_cached() const;
776 
777   // JVMTI Native method prefixing support:
is_prefixed_native() const778   bool is_prefixed_native() const                   { return access_flags().is_prefixed_native(); }
set_is_prefixed_native()779   void set_is_prefixed_native()                     { _access_flags.set_is_prefixed_native(); }
780 
781   // Rewriting support
782   static methodHandle clone_with_new_data(const methodHandle& m, u_char* new_code, int new_code_length,
783                                           u_char* new_compressed_linenumber_table, int new_compressed_linenumber_size, TRAPS);
784 
785   // jmethodID handling
786   // Because the useful life-span of a jmethodID cannot be determined,
787   // once created they are never reclaimed.  The methods to which they refer,
788   // however, can be GC'ed away if the class is unloaded or if the method is
789   // made obsolete or deleted -- in these cases, the jmethodID
790   // refers to NULL (as is the case for any weak reference).
791   static jmethodID make_jmethod_id(ClassLoaderData* loader_data, Method* mh);
792   static void destroy_jmethod_id(ClassLoaderData* loader_data, jmethodID mid);
793 
794   // Ensure there is enough capacity in the internal tracking data
795   // structures to hold the number of jmethodIDs you plan to generate.
796   // This saves substantial time doing allocations.
797   static void ensure_jmethod_ids(ClassLoaderData* loader_data, int capacity);
798 
799   // Use resolve_jmethod_id() in situations where the caller is expected
800   // to provide a valid jmethodID; the only sanity checks are in asserts;
801   // result guaranteed not to be NULL.
resolve_jmethod_id(jmethodID mid)802   inline static Method* resolve_jmethod_id(jmethodID mid) {
803     assert(mid != NULL, "JNI method id should not be null");
804     return *((Method**)mid);
805   }
806 
807   // Use checked_resolve_jmethod_id() in situations where the caller
808   // should provide a valid jmethodID, but might not. NULL is returned
809   // when the jmethodID does not refer to a valid method.
810   static Method* checked_resolve_jmethod_id(jmethodID mid);
811 
812   static void change_method_associated_with_jmethod_id(jmethodID old_jmid_ptr, Method* new_method);
813   static bool is_method_id(jmethodID mid);
814 
815   // Clear methods
816   static void clear_jmethod_ids(ClassLoaderData* loader_data);
817   static void print_jmethod_ids(const ClassLoaderData* loader_data, outputStream* out) PRODUCT_RETURN;
818 
819   // Get this method's jmethodID -- allocate if it doesn't exist
jmethod_id()820   jmethodID jmethod_id()                            { return method_holder()->get_jmethod_id(this); }
821 
822   // Lookup the jmethodID for this method.  Return NULL if not found.
823   // NOTE that this function can be called from a signal handler
824   // (see AsyncGetCallTrace support for Forte Analyzer) and this
825   // needs to be async-safe. No allocation should be done and
826   // so handles are not used to avoid deadlock.
find_jmethod_id_or_null()827   jmethodID find_jmethod_id_or_null()               { return method_holder()->jmethod_id_or_null(this); }
828 
829   // Support for inlining of intrinsic methods
intrinsic_id() const830   vmIntrinsics::ID intrinsic_id() const          { return (vmIntrinsics::ID) _intrinsic_id;           }
set_intrinsic_id(vmIntrinsics::ID id)831   void     set_intrinsic_id(vmIntrinsics::ID id) {                           _intrinsic_id = (u2) id; }
832 
833   // Helper routines for intrinsic_id() and vmIntrinsics::method().
834   void init_intrinsic_id();     // updates from _none if a match
835   static vmSymbols::SID klass_id_for_intrinsics(const Klass* holder);
836 
caller_sensitive()837   bool caller_sensitive() {
838     return (_flags & _caller_sensitive) != 0;
839   }
set_caller_sensitive(bool x)840   void set_caller_sensitive(bool x) {
841     _flags = x ? (_flags | _caller_sensitive) : (_flags & ~_caller_sensitive);
842   }
843 
force_inline()844   bool force_inline() {
845     return (_flags & _force_inline) != 0;
846   }
set_force_inline(bool x)847   void set_force_inline(bool x) {
848     _flags = x ? (_flags | _force_inline) : (_flags & ~_force_inline);
849   }
850 
dont_inline()851   bool dont_inline() {
852     return (_flags & _dont_inline) != 0;
853   }
set_dont_inline(bool x)854   void set_dont_inline(bool x) {
855     _flags = x ? (_flags | _dont_inline) : (_flags & ~_dont_inline);
856   }
857 
is_hidden()858   bool is_hidden() {
859     return (_flags & _hidden) != 0;
860   }
set_hidden(bool x)861   void set_hidden(bool x) {
862     _flags = x ? (_flags | _hidden) : (_flags & ~_hidden);
863   }
864 
intrinsic_candidate()865   bool intrinsic_candidate() {
866     return (_flags & _intrinsic_candidate) != 0;
867   }
set_intrinsic_candidate(bool x)868   void set_intrinsic_candidate(bool x) {
869     _flags = x ? (_flags | _intrinsic_candidate) : (_flags & ~_intrinsic_candidate);
870   }
871 
has_injected_profile()872   bool has_injected_profile() {
873     return (_flags & _has_injected_profile) != 0;
874   }
set_has_injected_profile(bool x)875   void set_has_injected_profile(bool x) {
876     _flags = x ? (_flags | _has_injected_profile) : (_flags & ~_has_injected_profile);
877   }
878 
has_reserved_stack_access()879   bool has_reserved_stack_access() {
880     return (_flags & _reserved_stack_access) != 0;
881   }
882 
set_has_reserved_stack_access(bool x)883   void set_has_reserved_stack_access(bool x) {
884     _flags = x ? (_flags | _reserved_stack_access) : (_flags & ~_reserved_stack_access);
885   }
886 
JFR_ONLY(DEFINE_TRACE_FLAG_ACCESSOR;)887   JFR_ONLY(DEFINE_TRACE_FLAG_ACCESSOR;)
888 
889   ConstMethod::MethodType method_type() const {
890       return _constMethod->method_type();
891   }
is_overpass() const892   bool is_overpass() const { return method_type() == ConstMethod::OVERPASS; }
893 
894   // On-stack replacement support
has_osr_nmethod(int level,bool match_level)895   bool has_osr_nmethod(int level, bool match_level) {
896    return method_holder()->lookup_osr_nmethod(this, InvocationEntryBci, level, match_level) != NULL;
897   }
898 
mark_osr_nmethods()899   int mark_osr_nmethods() {
900     return method_holder()->mark_osr_nmethods(this);
901   }
902 
lookup_osr_nmethod_for(int bci,int level,bool match_level)903   nmethod* lookup_osr_nmethod_for(int bci, int level, bool match_level) {
904     return method_holder()->lookup_osr_nmethod(this, bci, level, match_level);
905   }
906 
907   // Find if klass for method is loaded
908   bool is_klass_loaded_by_klass_index(int klass_index) const;
909   bool is_klass_loaded(int refinfo_index, bool must_be_resolved = false) const;
910 
911   // Indicates whether compilation failed earlier for this method, or
912   // whether it is not compilable for another reason like having a
913   // breakpoint set in it.
914   bool  is_not_compilable(int comp_level = CompLevel_any) const;
915   void set_not_compilable(int comp_level = CompLevel_all, bool report = true, const char* reason = NULL);
set_not_compilable_quietly(int comp_level=CompLevel_all)916   void set_not_compilable_quietly(int comp_level = CompLevel_all) {
917     set_not_compilable(comp_level, false);
918   }
919   bool  is_not_osr_compilable(int comp_level = CompLevel_any) const;
920   void set_not_osr_compilable(int comp_level = CompLevel_all, bool report = true, const char* reason = NULL);
set_not_osr_compilable_quietly(int comp_level=CompLevel_all)921   void set_not_osr_compilable_quietly(int comp_level = CompLevel_all) {
922     set_not_osr_compilable(comp_level, false);
923   }
924   bool is_always_compilable() const;
925 
926  private:
927   void print_made_not_compilable(int comp_level, bool is_osr, bool report, const char* reason);
928 
929  public:
get_method_counters(TRAPS)930   MethodCounters* get_method_counters(TRAPS) {
931     if (_method_counters == NULL) {
932       build_method_counters(this, CHECK_AND_CLEAR_NULL);
933     }
934     return _method_counters;
935   }
936 
is_not_c1_compilable() const937   bool   is_not_c1_compilable() const         { return access_flags().is_not_c1_compilable();  }
set_not_c1_compilable()938   void  set_not_c1_compilable()               {       _access_flags.set_not_c1_compilable();   }
clear_not_c1_compilable()939   void clear_not_c1_compilable()              {       _access_flags.clear_not_c1_compilable(); }
is_not_c2_compilable() const940   bool   is_not_c2_compilable() const         { return access_flags().is_not_c2_compilable();  }
set_not_c2_compilable()941   void  set_not_c2_compilable()               {       _access_flags.set_not_c2_compilable();   }
clear_not_c2_compilable()942   void clear_not_c2_compilable()              {       _access_flags.clear_not_c2_compilable(); }
943 
is_not_c1_osr_compilable() const944   bool    is_not_c1_osr_compilable() const    { return is_not_c1_compilable(); }  // don't waste an accessFlags bit
set_not_c1_osr_compilable()945   void   set_not_c1_osr_compilable()          {       set_not_c1_compilable(); }  // don't waste an accessFlags bit
clear_not_c1_osr_compilable()946   void clear_not_c1_osr_compilable()          {     clear_not_c1_compilable(); }  // don't waste an accessFlags bit
is_not_c2_osr_compilable() const947   bool   is_not_c2_osr_compilable() const     { return access_flags().is_not_c2_osr_compilable();  }
set_not_c2_osr_compilable()948   void  set_not_c2_osr_compilable()           {       _access_flags.set_not_c2_osr_compilable();   }
clear_not_c2_osr_compilable()949   void clear_not_c2_osr_compilable()          {       _access_flags.clear_not_c2_osr_compilable(); }
950 
951   // Background compilation support
queued_for_compilation() const952   bool queued_for_compilation() const  { return access_flags().queued_for_compilation(); }
set_queued_for_compilation()953   void set_queued_for_compilation()    { _access_flags.set_queued_for_compilation();     }
clear_queued_for_compilation()954   void clear_queued_for_compilation()  { _access_flags.clear_queued_for_compilation();   }
955 
956   // Resolve all classes in signature, return 'true' if successful
957   static bool load_signature_classes(const methodHandle& m, TRAPS);
958 
959   // Return if true if not all classes references in signature, including return type, has been loaded
960   static bool has_unloaded_classes_in_signature(const methodHandle& m, TRAPS);
961 
962   // Printing
963   void print_short_name(outputStream* st = tty); // prints as klassname::methodname; Exposed so field engineers can debug VM
964 #if INCLUDE_JVMTI
965   void print_name(outputStream* st = tty); // prints as "virtual void foo(int)"; exposed for TraceRedefineClasses
966 #else
967   void print_name(outputStream* st = tty)        PRODUCT_RETURN; // prints as "virtual void foo(int)"
968 #endif
969 
970   // Helper routine used for method sorting
971   static void sort_methods(Array<Method*>* methods, bool idempotent = false, bool set_idnums = true);
972 
973   // Deallocation function for redefine classes or if an error occurs
974   void deallocate_contents(ClassLoaderData* loader_data);
975 
976   // Printing
977 #ifndef PRODUCT
978   void print_on(outputStream* st) const;
979 #endif
980   void print_value_on(outputStream* st) const;
981   void print_linkage_flags(outputStream* st) PRODUCT_RETURN;
982 
internal_name() const983   const char* internal_name() const { return "{method}"; }
984 
985   // Check for valid method pointer
986   static bool has_method_vptr(const void* ptr);
987   static bool is_valid_method(const Method* m);
988 
989   // Verify
verify()990   void verify() { verify_on(tty); }
991   void verify_on(outputStream* st);
992 
993  private:
994 
995   // Inlined elements
native_function_addr() const996   address* native_function_addr() const          { assert(is_native(), "must be native"); return (address*) (this+1); }
signature_handler_addr() const997   address* signature_handler_addr() const        { return native_function_addr() + 1; }
998 };
999 
1000 
1001 // Utility class for compressing line number tables
1002 
1003 class CompressedLineNumberWriteStream: public CompressedWriteStream {
1004  private:
1005   int _bci;
1006   int _line;
1007  public:
1008   // Constructor
CompressedLineNumberWriteStream(int initial_size)1009   CompressedLineNumberWriteStream(int initial_size) : CompressedWriteStream(initial_size), _bci(0), _line(0) {}
CompressedLineNumberWriteStream(u_char * buffer,int initial_size)1010   CompressedLineNumberWriteStream(u_char* buffer, int initial_size) : CompressedWriteStream(buffer, initial_size), _bci(0), _line(0) {}
1011 
1012   // Write (bci, line number) pair to stream
1013   void write_pair_regular(int bci_delta, int line_delta);
1014 
write_pair_inline(int bci,int line)1015   inline void write_pair_inline(int bci, int line) {
1016     int bci_delta = bci - _bci;
1017     int line_delta = line - _line;
1018     _bci = bci;
1019     _line = line;
1020     // Skip (0,0) deltas - they do not add information and conflict with terminator.
1021     if (bci_delta == 0 && line_delta == 0) return;
1022     // Check if bci is 5-bit and line number 3-bit unsigned.
1023     if (((bci_delta & ~0x1F) == 0) && ((line_delta & ~0x7) == 0)) {
1024       // Compress into single byte.
1025       jubyte value = ((jubyte) bci_delta << 3) | (jubyte) line_delta;
1026       // Check that value doesn't match escape character.
1027       if (value != 0xFF) {
1028         write_byte(value);
1029         return;
1030       }
1031     }
1032     write_pair_regular(bci_delta, line_delta);
1033   }
1034 
1035 // Windows AMD64 + Apr 2005 PSDK with /O2 generates bad code for write_pair.
1036 // Disabling optimization doesn't work for methods in header files
1037 // so we force it to call through the non-optimized version in the .cpp.
1038 // It's gross, but it's the only way we can ensure that all callers are
1039 // fixed.  _MSC_VER is defined by the windows compiler
1040 #if defined(_M_AMD64) && _MSC_VER >= 1400
1041   void write_pair(int bci, int line);
1042 #else
write_pair(int bci,int line)1043   void write_pair(int bci, int line) { write_pair_inline(bci, line); }
1044 #endif
1045 
1046   // Write end-of-stream marker
write_terminator()1047   void write_terminator()                        { write_byte(0); }
1048 };
1049 
1050 
1051 // Utility class for decompressing line number tables
1052 
1053 class CompressedLineNumberReadStream: public CompressedReadStream {
1054  private:
1055   int _bci;
1056   int _line;
1057  public:
1058   // Constructor
1059   CompressedLineNumberReadStream(u_char* buffer);
1060   // Read (bci, line number) pair from stream. Returns false at end-of-stream.
1061   bool read_pair();
1062   // Accessing bci and line number (after calling read_pair)
bci() const1063   int bci() const                               { return _bci; }
line() const1064   int line() const                              { return _line; }
1065 };
1066 
1067 
1068 #if INCLUDE_JVMTI
1069 
1070 /// Fast Breakpoints.
1071 
1072 // If this structure gets more complicated (because bpts get numerous),
1073 // move it into its own header.
1074 
1075 // There is presently no provision for concurrent access
1076 // to breakpoint lists, which is only OK for JVMTI because
1077 // breakpoints are written only at safepoints, and are read
1078 // concurrently only outside of safepoints.
1079 
1080 class BreakpointInfo : public CHeapObj<mtClass> {
1081   friend class VMStructs;
1082  private:
1083   Bytecodes::Code  _orig_bytecode;
1084   int              _bci;
1085   u2               _name_index;       // of method
1086   u2               _signature_index;  // of method
1087   BreakpointInfo*  _next;             // simple storage allocation
1088 
1089  public:
1090   BreakpointInfo(Method* m, int bci);
1091 
1092   // accessors
orig_bytecode()1093   Bytecodes::Code orig_bytecode()                     { return _orig_bytecode; }
set_orig_bytecode(Bytecodes::Code code)1094   void        set_orig_bytecode(Bytecodes::Code code) { _orig_bytecode = code; }
bci()1095   int         bci()                                   { return _bci; }
1096 
next() const1097   BreakpointInfo*          next() const               { return _next; }
set_next(BreakpointInfo * n)1098   void                 set_next(BreakpointInfo* n)    { _next = n; }
1099 
1100   // helps for searchers
match(const Method * m,int bci)1101   bool match(const Method* m, int bci) {
1102     return bci == _bci && match(m);
1103   }
1104 
match(const Method * m)1105   bool match(const Method* m) {
1106     return _name_index == m->name_index() &&
1107       _signature_index == m->signature_index();
1108   }
1109 
1110   void set(Method* method);
1111   void clear(Method* method);
1112 };
1113 
1114 #endif // INCLUDE_JVMTI
1115 
1116 // Utility class for access exception handlers
1117 class ExceptionTable : public StackObj {
1118  private:
1119   ExceptionTableElement* _table;
1120   u2  _length;
1121 
1122  public:
ExceptionTable(const Method * m)1123   ExceptionTable(const Method* m) {
1124     if (m->has_exception_handler()) {
1125       _table = m->exception_table_start();
1126       _length = m->exception_table_length();
1127     } else {
1128       _table = NULL;
1129       _length = 0;
1130     }
1131   }
1132 
length() const1133   int length() const {
1134     return _length;
1135   }
1136 
start_pc(int idx) const1137   u2 start_pc(int idx) const {
1138     assert(idx < _length, "out of bounds");
1139     return _table[idx].start_pc;
1140   }
1141 
set_start_pc(int idx,u2 value)1142   void set_start_pc(int idx, u2 value) {
1143     assert(idx < _length, "out of bounds");
1144     _table[idx].start_pc = value;
1145   }
1146 
end_pc(int idx) const1147   u2 end_pc(int idx) const {
1148     assert(idx < _length, "out of bounds");
1149     return _table[idx].end_pc;
1150   }
1151 
set_end_pc(int idx,u2 value)1152   void set_end_pc(int idx, u2 value) {
1153     assert(idx < _length, "out of bounds");
1154     _table[idx].end_pc = value;
1155   }
1156 
handler_pc(int idx) const1157   u2 handler_pc(int idx) const {
1158     assert(idx < _length, "out of bounds");
1159     return _table[idx].handler_pc;
1160   }
1161 
set_handler_pc(int idx,u2 value)1162   void set_handler_pc(int idx, u2 value) {
1163     assert(idx < _length, "out of bounds");
1164     _table[idx].handler_pc = value;
1165   }
1166 
catch_type_index(int idx) const1167   u2 catch_type_index(int idx) const {
1168     assert(idx < _length, "out of bounds");
1169     return _table[idx].catch_type_index;
1170   }
1171 
set_catch_type_index(int idx,u2 value)1172   void set_catch_type_index(int idx, u2 value) {
1173     assert(idx < _length, "out of bounds");
1174     _table[idx].catch_type_index = value;
1175   }
1176 };
1177 
1178 #endif // SHARE_VM_OOPS_METHODOOP_HPP
1179