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24 
25 #ifndef SHARE_CLASSFILE_VERIFIER_HPP
26 #define SHARE_CLASSFILE_VERIFIER_HPP
27 
28 #include "classfile/verificationType.hpp"
29 #include "oops/klass.hpp"
30 #include "oops/method.hpp"
31 #include "runtime/handles.hpp"
32 #include "utilities/exceptions.hpp"
33 #include "utilities/growableArray.hpp"
34 #include "utilities/resourceHash.hpp"
35 
36 // The verifier class
37 class Verifier : AllStatic {
38  public:
39   enum {
40     STACKMAP_ATTRIBUTE_MAJOR_VERSION    = 50,
41     INVOKEDYNAMIC_MAJOR_VERSION         = 51,
42     NO_RELAX_ACCESS_CTRL_CHECK_VERSION  = 52,
43     DYNAMICCONSTANT_MAJOR_VERSION       = 55
44   };
45 
46   // Verify the bytecodes for a class.
47   static bool verify(InstanceKlass* klass, bool should_verify_class, TRAPS);
48 
49   static void log_end_verification(outputStream* st, const char* klassName, Symbol* exception_name, TRAPS);
50 
51   // Return false if the class is loaded by the bootstrap loader,
52   // or if defineClass was called requesting skipping verification
53   // -Xverify:all overrides this value
54   static bool should_verify_for(oop class_loader, bool should_verify_class);
55 
56   // Relax certain access checks to enable some broken 1.1 apps to run on 1.2.
57   static bool relax_access_for(oop class_loader);
58 
59   // Print output for class+resolve
60   static void trace_class_resolution(Klass* resolve_class, InstanceKlass* verify_class);
61 
62  private:
63   static bool is_eligible_for_verification(InstanceKlass* klass, bool should_verify_class);
64   static Symbol* inference_verify(
65     InstanceKlass* klass, char* msg, size_t msg_len, TRAPS);
66 };
67 
68 class RawBytecodeStream;
69 class StackMapFrame;
70 class StackMapTable;
71 
72 // Summary of verifier's memory usage:
73 // StackMapTable is stack allocated.
74 // StackMapFrame are resource allocated. There is only one ResourceMark
75 // for each class verification, which is created at the top level.
76 // There is one mutable StackMapFrame (current_frame) which is updated
77 // by abstract bytecode interpretation. frame_in_exception_handler() returns
78 // a frame that has a mutable one-item stack (ready for pushing the
79 // catch type exception object). All the other StackMapFrame's
80 // are immutable (including their locals and stack arrays) after
81 // their constructions.
82 // locals/stack arrays in StackMapFrame are resource allocated.
83 // locals/stack arrays can be shared between StackMapFrame's, except
84 // the mutable StackMapFrame (current_frame).
85 
86 // These macros are used similarly to CHECK macros but also check
87 // the status of the verifier and return if that has an error.
88 #define CHECK_VERIFY(verifier) \
89   CHECK); if ((verifier)->has_error()) return; ((void)0
90 #define CHECK_VERIFY_(verifier, result) \
91   CHECK_(result)); if ((verifier)->has_error()) return (result); ((void)0
92 
93 class TypeOrigin {
94  private:
95   typedef enum {
96     CF_LOCALS,  // Comes from the current frame locals
97     CF_STACK,   // Comes from the current frame expression stack
98     SM_LOCALS,  // Comes from stackmap locals
99     SM_STACK,   // Comes from stackmap expression stack
100     CONST_POOL, // Comes from the constant pool
101     SIG,        // Comes from method signature
102     IMPLICIT,   // Comes implicitly from code or context
103     BAD_INDEX,  // No type, but the index is bad
104     FRAME_ONLY, // No type, context just contains the frame
105     NONE
106   } Origin;
107 
108   Origin _origin;
109   u2 _index;              // local, stack, or constant pool index
110   StackMapFrame* _frame;  // source frame if CF or SM
111   VerificationType _type; // The actual type
112 
TypeOrigin(Origin origin,u2 index,StackMapFrame * frame,VerificationType type)113   TypeOrigin(
114       Origin origin, u2 index, StackMapFrame* frame, VerificationType type)
115       : _origin(origin), _index(index), _frame(frame), _type(type) {}
116 
117  public:
TypeOrigin()118   TypeOrigin() : _origin(NONE), _index(0), _frame(NULL) {}
119 
120   static TypeOrigin null();
121   static TypeOrigin local(u2 index, StackMapFrame* frame);
122   static TypeOrigin stack(u2 index, StackMapFrame* frame);
123   static TypeOrigin sm_local(u2 index, StackMapFrame* frame);
124   static TypeOrigin sm_stack(u2 index, StackMapFrame* frame);
125   static TypeOrigin cp(u2 index, VerificationType vt);
126   static TypeOrigin signature(VerificationType vt);
127   static TypeOrigin bad_index(u2 index);
128   static TypeOrigin implicit(VerificationType t);
129   static TypeOrigin frame(StackMapFrame* frame);
130 
131   void reset_frame();
132   void details(outputStream* ss) const;
133   void print_frame(outputStream* ss) const;
frame() const134   const StackMapFrame* frame() const { return _frame; }
is_valid() const135   bool is_valid() const { return _origin != NONE; }
index() const136   u2 index() const { return _index; }
137 
138 #ifdef ASSERT
139   void print_on(outputStream* str) const;
140 #endif
141 };
142 
143 class ErrorContext {
144  private:
145   typedef enum {
146     INVALID_BYTECODE,     // There was a problem with the bytecode
147     WRONG_TYPE,           // Type value was not as expected
148     FLAGS_MISMATCH,       // Frame flags are not assignable
149     BAD_CP_INDEX,         // Invalid constant pool index
150     BAD_LOCAL_INDEX,      // Invalid local index
151     LOCALS_SIZE_MISMATCH, // Frames have differing local counts
152     STACK_SIZE_MISMATCH,  // Frames have different stack sizes
153     STACK_OVERFLOW,       // Attempt to push onto a full expression stack
154     STACK_UNDERFLOW,      // Attempt to pop and empty expression stack
155     MISSING_STACKMAP,     // No stackmap for this location and there should be
156     BAD_STACKMAP,         // Format error in stackmap
157     NO_FAULT,             // No error
158     UNKNOWN
159   } FaultType;
160 
161   int _bci;
162   FaultType _fault;
163   TypeOrigin _type;
164   TypeOrigin _expected;
165 
ErrorContext(int bci,FaultType fault)166   ErrorContext(int bci, FaultType fault) :
167       _bci(bci), _fault(fault)  {}
ErrorContext(int bci,FaultType fault,TypeOrigin type)168   ErrorContext(int bci, FaultType fault, TypeOrigin type) :
169       _bci(bci), _fault(fault), _type(type)  {}
ErrorContext(int bci,FaultType fault,TypeOrigin type,TypeOrigin exp)170   ErrorContext(int bci, FaultType fault, TypeOrigin type, TypeOrigin exp) :
171       _bci(bci), _fault(fault), _type(type), _expected(exp)  {}
172 
173  public:
ErrorContext()174   ErrorContext() : _bci(-1), _fault(NO_FAULT) {}
175 
bad_code(u2 bci)176   static ErrorContext bad_code(u2 bci) {
177     return ErrorContext(bci, INVALID_BYTECODE);
178   }
bad_type(u2 bci,TypeOrigin type)179   static ErrorContext bad_type(u2 bci, TypeOrigin type) {
180     return ErrorContext(bci, WRONG_TYPE, type);
181   }
bad_type(u2 bci,TypeOrigin type,TypeOrigin exp)182   static ErrorContext bad_type(u2 bci, TypeOrigin type, TypeOrigin exp) {
183     return ErrorContext(bci, WRONG_TYPE, type, exp);
184   }
bad_flags(u2 bci,StackMapFrame * frame)185   static ErrorContext bad_flags(u2 bci, StackMapFrame* frame) {
186     return ErrorContext(bci, FLAGS_MISMATCH, TypeOrigin::frame(frame));
187   }
bad_flags(u2 bci,StackMapFrame * cur,StackMapFrame * sm)188   static ErrorContext bad_flags(u2 bci, StackMapFrame* cur, StackMapFrame* sm) {
189     return ErrorContext(bci, FLAGS_MISMATCH,
190                         TypeOrigin::frame(cur), TypeOrigin::frame(sm));
191   }
bad_cp_index(u2 bci,u2 index)192   static ErrorContext bad_cp_index(u2 bci, u2 index) {
193     return ErrorContext(bci, BAD_CP_INDEX, TypeOrigin::bad_index(index));
194   }
bad_local_index(u2 bci,u2 index)195   static ErrorContext bad_local_index(u2 bci, u2 index) {
196     return ErrorContext(bci, BAD_LOCAL_INDEX, TypeOrigin::bad_index(index));
197   }
locals_size_mismatch(u2 bci,StackMapFrame * frame0,StackMapFrame * frame1)198   static ErrorContext locals_size_mismatch(
199       u2 bci, StackMapFrame* frame0, StackMapFrame* frame1) {
200     return ErrorContext(bci, LOCALS_SIZE_MISMATCH,
201         TypeOrigin::frame(frame0), TypeOrigin::frame(frame1));
202   }
stack_size_mismatch(u2 bci,StackMapFrame * frame0,StackMapFrame * frame1)203   static ErrorContext stack_size_mismatch(
204       u2 bci, StackMapFrame* frame0, StackMapFrame* frame1) {
205     return ErrorContext(bci, STACK_SIZE_MISMATCH,
206         TypeOrigin::frame(frame0), TypeOrigin::frame(frame1));
207   }
stack_overflow(u2 bci,StackMapFrame * frame)208   static ErrorContext stack_overflow(u2 bci, StackMapFrame* frame) {
209     return ErrorContext(bci, STACK_OVERFLOW, TypeOrigin::frame(frame));
210   }
stack_underflow(u2 bci,StackMapFrame * frame)211   static ErrorContext stack_underflow(u2 bci, StackMapFrame* frame) {
212     return ErrorContext(bci, STACK_UNDERFLOW, TypeOrigin::frame(frame));
213   }
missing_stackmap(u2 bci)214   static ErrorContext missing_stackmap(u2 bci) {
215     return ErrorContext(bci, MISSING_STACKMAP);
216   }
bad_stackmap(int index,StackMapFrame * frame)217   static ErrorContext bad_stackmap(int index, StackMapFrame* frame) {
218     return ErrorContext(0, BAD_STACKMAP, TypeOrigin::frame(frame));
219   }
220 
is_valid() const221   bool is_valid() const { return _fault != NO_FAULT; }
bci() const222   int bci() const { return _bci; }
223 
reset_frames()224   void reset_frames() {
225     _type.reset_frame();
226     _expected.reset_frame();
227   }
228 
229   void details(outputStream* ss, const Method* method) const;
230 
231 #ifdef ASSERT
print_on(outputStream * str) const232   void print_on(outputStream* str) const {
233     str->print("error_context(%d, %d,", _bci, _fault);
234     _type.print_on(str);
235     str->print(",");
236     _expected.print_on(str);
237     str->print(")");
238   }
239 #endif
240 
241  private:
242   void location_details(outputStream* ss, const Method* method) const;
243   void reason_details(outputStream* ss) const;
244   void frame_details(outputStream* ss) const;
245   void bytecode_details(outputStream* ss, const Method* method) const;
246   void handler_details(outputStream* ss, const Method* method) const;
247   void stackmap_details(outputStream* ss, const Method* method) const;
248 };
249 
250 class sig_as_verification_types : public ResourceObj {
251  private:
252   int _num_args;  // Number of arguments, not including return type.
253   GrowableArray<VerificationType>* _sig_verif_types;
254 
255  public:
256 
sig_as_verification_types(GrowableArray<VerificationType> * sig_verif_types)257   sig_as_verification_types(GrowableArray<VerificationType>* sig_verif_types) :
258     _num_args(0), _sig_verif_types(sig_verif_types) {
259   }
260 
num_args() const261   int num_args() const { return _num_args; }
set_num_args(int num_args)262   void set_num_args(int num_args) { _num_args = num_args; }
263 
sig_verif_types()264   GrowableArray<VerificationType>* sig_verif_types() { return _sig_verif_types; }
set_sig_verif_types(GrowableArray<VerificationType> * sig_verif_types)265   void set_sig_verif_types(GrowableArray<VerificationType>* sig_verif_types) {
266     _sig_verif_types = sig_verif_types;
267   }
268 
269 };
270 
271 // This hashtable is indexed by the Utf8 constant pool indexes pointed to
272 // by constant pool (Interface)Method_refs' NameAndType signature entries.
273 typedef ResourceHashtable<int, sig_as_verification_types*,
274                           primitive_hash<int>, primitive_equals<int>, 1007>
275                           method_signatures_table_type;
276 
277 // A new instance of this class is created for each class being verified
278 class ClassVerifier : public StackObj {
279  private:
280   Thread* _thread;
281 
282   Symbol* _previous_symbol;          // cache of the previously looked up symbol
283   GrowableArray<Symbol*>* _symbols;  // keep a list of symbols created
284 
285   Symbol* _exception_type;
286   char* _message;
287 
288   method_signatures_table_type* _method_signatures_table;
289 
290   ErrorContext _error_context;  // contains information about an error
291 
292   void verify_method(const methodHandle& method, TRAPS);
293   char* generate_code_data(const methodHandle& m, u4 code_length, TRAPS);
294   void verify_exception_handler_table(u4 code_length, char* code_data,
295                                       int& min, int& max, TRAPS);
296   void verify_local_variable_table(u4 code_length, char* code_data, TRAPS);
297 
cp_ref_index_to_type(int index,const constantPoolHandle & cp,TRAPS)298   VerificationType cp_ref_index_to_type(
299       int index, const constantPoolHandle& cp, TRAPS) {
300     return cp_index_to_type(cp->klass_ref_index_at(index), cp, THREAD);
301   }
302 
303   bool is_protected_access(
304     InstanceKlass* this_class, Klass* target_class,
305     Symbol* field_name, Symbol* field_sig, bool is_method);
306 
307   void verify_cp_index(u2 bci, const constantPoolHandle& cp, int index, TRAPS);
308   void verify_cp_type(u2 bci, int index, const constantPoolHandle& cp,
309       unsigned int types, TRAPS);
310   void verify_cp_class_type(u2 bci, int index, const constantPoolHandle& cp, TRAPS);
311 
312   u2 verify_stackmap_table(
313     u2 stackmap_index, u2 bci, StackMapFrame* current_frame,
314     StackMapTable* stackmap_table, bool no_control_flow, TRAPS);
315 
316   void verify_exception_handler_targets(
317     u2 bci, bool this_uninit, StackMapFrame* current_frame,
318     StackMapTable* stackmap_table, TRAPS);
319 
320   void verify_ldc(
321     int opcode, u2 index, StackMapFrame *current_frame,
322     const constantPoolHandle& cp, u2 bci, TRAPS);
323 
324   void verify_switch(
325     RawBytecodeStream* bcs, u4 code_length, char* code_data,
326     StackMapFrame* current_frame, StackMapTable* stackmap_table, TRAPS);
327 
328   void verify_field_instructions(
329     RawBytecodeStream* bcs, StackMapFrame* current_frame,
330     const constantPoolHandle& cp, bool allow_arrays, TRAPS);
331 
332   void verify_invoke_init(
333     RawBytecodeStream* bcs, u2 ref_index, VerificationType ref_class_type,
334     StackMapFrame* current_frame, u4 code_length, bool in_try_block,
335     bool* this_uninit, const constantPoolHandle& cp, StackMapTable* stackmap_table,
336     TRAPS);
337 
338   // Used by ends_in_athrow() to push all handlers that contain bci onto the
339   // handler_stack, if the handler has not already been pushed on the stack.
340   void push_handlers(ExceptionTable* exhandlers,
341                      GrowableArray<u4>* handler_list,
342                      GrowableArray<u4>* handler_stack,
343                      u4 bci);
344 
345   // Returns true if all paths starting with start_bc_offset end in athrow
346   // bytecode or loop.
347   bool ends_in_athrow(u4 start_bc_offset);
348 
349   void verify_invoke_instructions(
350     RawBytecodeStream* bcs, u4 code_length, StackMapFrame* current_frame,
351     bool in_try_block, bool* this_uninit, VerificationType return_type,
352     const constantPoolHandle& cp, StackMapTable* stackmap_table, TRAPS);
353 
354   VerificationType get_newarray_type(u2 index, u2 bci, TRAPS);
355   void verify_anewarray(u2 bci, u2 index, const constantPoolHandle& cp,
356       StackMapFrame* current_frame, TRAPS);
357   void verify_return_value(
358       VerificationType return_type, VerificationType type, u2 offset,
359       StackMapFrame* current_frame, TRAPS);
360 
361   void verify_iload (u2 index, StackMapFrame* current_frame, TRAPS);
362   void verify_lload (u2 index, StackMapFrame* current_frame, TRAPS);
363   void verify_fload (u2 index, StackMapFrame* current_frame, TRAPS);
364   void verify_dload (u2 index, StackMapFrame* current_frame, TRAPS);
365   void verify_aload (u2 index, StackMapFrame* current_frame, TRAPS);
366   void verify_istore(u2 index, StackMapFrame* current_frame, TRAPS);
367   void verify_lstore(u2 index, StackMapFrame* current_frame, TRAPS);
368   void verify_fstore(u2 index, StackMapFrame* current_frame, TRAPS);
369   void verify_dstore(u2 index, StackMapFrame* current_frame, TRAPS);
370   void verify_astore(u2 index, StackMapFrame* current_frame, TRAPS);
371   void verify_iinc  (u2 index, StackMapFrame* current_frame, TRAPS);
372 
373   bool name_in_supers(Symbol* ref_name, InstanceKlass* current);
374 
375   VerificationType object_type() const;
376 
377   InstanceKlass*      _klass;  // the class being verified
378   methodHandle        _method; // current method being verified
379   VerificationType    _this_type; // the verification type of the current class
380 
381   // Some recursive calls from the verifier to the name resolver
382   // can cause the current class to be re-verified and rewritten.
383   // If this happens, the original verification should not continue,
384   // because constant pool indexes will have changed.
385   // The rewriter is preceded by the verifier.  If the verifier throws
386   // an error, rewriting is prevented.  Also, rewriting always precedes
387   // bytecode execution or compilation.  Thus, is_rewritten implies
388   // that a class has been verified and prepared for execution.
was_recursively_verified()389   bool was_recursively_verified() { return _klass->is_rewritten(); }
390 
391   bool is_same_or_direct_interface(InstanceKlass* klass,
392     VerificationType klass_type, VerificationType ref_class_type);
393 
394  public:
395   enum {
396     BYTECODE_OFFSET = 1,
397     NEW_OFFSET = 2
398   };
399 
400   // constructor
401   ClassVerifier(InstanceKlass* klass, TRAPS);
402 
403   // destructor
404   ~ClassVerifier();
405 
thread()406   Thread* thread()             { return _thread; }
method()407   const methodHandle& method() { return _method; }
current_class() const408   InstanceKlass* current_class() const { return _klass; }
current_type() const409   VerificationType current_type() const { return _this_type; }
410 
411   // Verifies the class.  If a verify or class file format error occurs,
412   // the '_exception_name' symbols will set to the exception name and
413   // the message_buffer will be filled in with the exception message.
414   void verify_class(TRAPS);
415 
416   // Translates method signature entries into verificationTypes and saves them
417   // in the growable array.
418   void translate_signature(Symbol* const method_sig, sig_as_verification_types* sig_verif_types, TRAPS);
419 
420   // Initializes a sig_as_verification_types entry and puts it in the hash table.
421   void create_method_sig_entry(sig_as_verification_types* sig_verif_types, int sig_index, TRAPS);
422 
423   // Return status modes
result() const424   Symbol* result() const { return _exception_type; }
has_error() const425   bool has_error() const { return result() != NULL; }
exception_message()426   char* exception_message() {
427     stringStream ss;
428     ss.print("%s", _message);
429     _error_context.details(&ss, _method());
430     return ss.as_string();
431   }
432 
433   // Called when verify or class format errors are encountered.
434   // May throw an exception based upon the mode.
435   void verify_error(ErrorContext ctx, const char* fmt, ...) ATTRIBUTE_PRINTF(3, 4);
436   void class_format_error(const char* fmt, ...) ATTRIBUTE_PRINTF(2, 3);
437 
438   Klass* load_class(Symbol* name, TRAPS);
439 
method_signatures_table() const440   method_signatures_table_type* method_signatures_table() const {
441     return _method_signatures_table;
442   }
443 
set_method_signatures_table(method_signatures_table_type * method_signatures_table)444   void set_method_signatures_table(method_signatures_table_type* method_signatures_table) {
445     _method_signatures_table = method_signatures_table;
446   }
447 
448   int change_sig_to_verificationType(
449     SignatureStream* sig_type, VerificationType* inference_type);
450 
cp_index_to_type(int index,const constantPoolHandle & cp,TRAPS)451   VerificationType cp_index_to_type(int index, const constantPoolHandle& cp, TRAPS) {
452     return VerificationType::reference_type(cp->klass_name_at(index));
453   }
454 
455   // Keep a list of temporary symbols created during verification because
456   // their reference counts need to be decremented when the verifier object
457   // goes out of scope.  Since these symbols escape the scope in which they're
458   // created, we can't use a TempNewSymbol.
459   Symbol* create_temporary_symbol(const Symbol* s, int begin, int end);
460   Symbol* create_temporary_symbol(const char *s, int length);
create_temporary_symbol(Symbol * s)461   Symbol* create_temporary_symbol(Symbol* s) {
462     if (s == _previous_symbol) {
463       return s;
464     }
465     if (!s->is_permanent()) {
466       s->increment_refcount();
467       if (_symbols == NULL) {
468         _symbols = new GrowableArray<Symbol*>(50, 0, NULL);
469       }
470       _symbols->push(s);
471     }
472     _previous_symbol = s;
473     return s;
474   }
475 
476   TypeOrigin ref_ctx(const char* str);
477 
478 };
479 
change_sig_to_verificationType(SignatureStream * sig_type,VerificationType * inference_type)480 inline int ClassVerifier::change_sig_to_verificationType(
481     SignatureStream* sig_type, VerificationType* inference_type) {
482   BasicType bt = sig_type->type();
483   switch (bt) {
484     case T_OBJECT:
485     case T_ARRAY:
486       {
487         Symbol* name = sig_type->as_symbol();
488         // Create another symbol to save as signature stream unreferences this symbol.
489         Symbol* name_copy = create_temporary_symbol(name);
490         assert(name_copy == name, "symbols don't match");
491         *inference_type =
492           VerificationType::reference_type(name_copy);
493         return 1;
494       }
495     case T_LONG:
496       *inference_type = VerificationType::long_type();
497       *++inference_type = VerificationType::long2_type();
498       return 2;
499     case T_DOUBLE:
500       *inference_type = VerificationType::double_type();
501       *++inference_type = VerificationType::double2_type();
502       return 2;
503     case T_INT:
504     case T_BOOLEAN:
505     case T_BYTE:
506     case T_CHAR:
507     case T_SHORT:
508       *inference_type = VerificationType::integer_type();
509       return 1;
510     case T_FLOAT:
511       *inference_type = VerificationType::float_type();
512       return 1;
513     default:
514       ShouldNotReachHere();
515       return 1;
516   }
517 }
518 
519 #endif // SHARE_CLASSFILE_VERIFIER_HPP
520