signature.hpp revision 9248:6ab7e19c9220
1/*
2 * Copyright (c) 1997, 2015, Oracle and/or its affiliates. All rights reserved.
3 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
4 *
5 * This code is free software; you can redistribute it and/or modify it
6 * under the terms of the GNU General Public License version 2 only, as
7 * published by the Free Software Foundation.
8 *
9 * This code is distributed in the hope that it will be useful, but WITHOUT
10 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
11 * FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public License
12 * version 2 for more details (a copy is included in the LICENSE file that
13 * accompanied this code).
14 *
15 * You should have received a copy of the GNU General Public License version
16 * 2 along with this work; if not, write to the Free Software Foundation,
17 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
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19 * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
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23 */
24
25#ifndef SHARE_VM_RUNTIME_SIGNATURE_HPP
26#define SHARE_VM_RUNTIME_SIGNATURE_HPP
27
28#include "memory/allocation.hpp"
29#include "oops/method.hpp"
30#include "utilities/top.hpp"
31
32// SignatureIterators iterate over a Java signature (or parts of it).
33// (Syntax according to: "The Java Virtual Machine Specification" by
34// Tim Lindholm & Frank Yellin; section 4.3 Descriptors; p. 89ff.)
35//
36// Example: Iterating over ([Lfoo;D)I using
37//                         0123456789
38//
39// iterate_parameters() calls: do_array(2, 7); do_double();
40// iterate_returntype() calls:                              do_int();
41// iterate()            calls: do_array(2, 7); do_double(); do_int();
42//
43// is_return_type()        is: false         ; false      ; true
44//
45// NOTE: The new optimizer has an alternate, for-loop based signature
46// iterator implemented in opto/type.cpp, TypeTuple::make().
47
48class SignatureIterator: public ResourceObj {
49 protected:
50  Symbol*      _signature;             // the signature to iterate over
51  int          _index;                 // the current character index (only valid during iteration)
52  int          _parameter_index;       // the current parameter index (0 outside iteration phase)
53  BasicType    _return_type;
54
55  void expect(char c);
56  void skip_optional_size();
57  int  parse_type();                   // returns the parameter size in words (0 for void)
58  void check_signature_end();
59
60 public:
61  // Definitions used in generating and iterating the
62  // bit field form of the signature generated by the
63  // Fingerprinter.
64  enum {
65    static_feature_size    = 1,
66    is_static_bit          = 1,
67
68    result_feature_size    = 4,
69    result_feature_mask    = 0xF,
70    parameter_feature_size = 4,
71    parameter_feature_mask = 0xF,
72
73      bool_parm            = 1,
74      byte_parm            = 2,
75      char_parm            = 3,
76      short_parm           = 4,
77      int_parm             = 5,
78      long_parm            = 6,
79      float_parm           = 7,
80      double_parm          = 8,
81      obj_parm             = 9,
82      done_parm            = 10,  // marker for end of parameters
83
84    // max parameters is wordsize minus
85    //    The sign bit, termination field, the result and static bit fields
86    max_size_of_parameters = (BitsPerLong-1 -
87                              result_feature_size - parameter_feature_size -
88                              static_feature_size) / parameter_feature_size
89  };
90
91  // Constructors
92  SignatureIterator(Symbol* signature);
93
94  // Iteration
95  void dispatch_field();               // dispatches once for field signatures
96  void iterate_parameters();           // iterates over parameters only
97  void iterate_parameters( uint64_t fingerprint );
98  void iterate_returntype();           // iterates over returntype only
99  void iterate();                      // iterates over whole signature
100  // Returns the word index of the current parameter;
101  int  parameter_index() const         { return _parameter_index; }
102  bool is_return_type() const          { return parameter_index() < 0; }
103  BasicType get_ret_type() const       { return _return_type; }
104
105  // Basic types
106  virtual void do_bool  ()             = 0;
107  virtual void do_char  ()             = 0;
108  virtual void do_float ()             = 0;
109  virtual void do_double()             = 0;
110  virtual void do_byte  ()             = 0;
111  virtual void do_short ()             = 0;
112  virtual void do_int   ()             = 0;
113  virtual void do_long  ()             = 0;
114  virtual void do_void  ()             = 0;
115
116  // Object types (begin indexes the first character of the entry, end indexes the first character after the entry)
117  virtual void do_object(int begin, int end) = 0;
118  virtual void do_array (int begin, int end) = 0;
119
120  static bool is_static(uint64_t fingerprint) {
121    assert(fingerprint != (uint64_t)CONST64(-1), "invalid fingerprint");
122    return fingerprint & is_static_bit;
123  }
124  static BasicType return_type(uint64_t fingerprint) {
125    assert(fingerprint != (uint64_t)CONST64(-1), "invalid fingerprint");
126    return (BasicType) ((fingerprint >> static_feature_size) & result_feature_mask);
127  }
128};
129
130
131// Specialized SignatureIterators: Used to compute signature specific values.
132
133class SignatureTypeNames : public SignatureIterator {
134 protected:
135  virtual void type_name(const char* name)   = 0;
136
137  void do_bool()                       { type_name("jboolean"); }
138  void do_char()                       { type_name("jchar"   ); }
139  void do_float()                      { type_name("jfloat"  ); }
140  void do_double()                     { type_name("jdouble" ); }
141  void do_byte()                       { type_name("jbyte"   ); }
142  void do_short()                      { type_name("jshort"  ); }
143  void do_int()                        { type_name("jint"    ); }
144  void do_long()                       { type_name("jlong"   ); }
145  void do_void()                       { type_name("void"    ); }
146  void do_object(int begin, int end)   { type_name("jobject" ); }
147  void do_array (int begin, int end)   { type_name("jobject" ); }
148
149 public:
150  SignatureTypeNames(Symbol* signature) : SignatureIterator(signature) {}
151};
152
153
154class SignatureInfo: public SignatureIterator {
155 protected:
156  bool      _has_iterated;             // need this because iterate cannot be called in constructor (set is virtual!)
157  bool      _has_iterated_return;
158  int       _size;
159
160  void lazy_iterate_parameters()       { if (!_has_iterated) { iterate_parameters(); _has_iterated = true; } }
161  void lazy_iterate_return()           { if (!_has_iterated_return) { iterate_returntype(); _has_iterated_return = true; } }
162
163  virtual void set(int size, BasicType type) = 0;
164
165  void do_bool  ()                     { set(T_BOOLEAN_size, T_BOOLEAN); }
166  void do_char  ()                     { set(T_CHAR_size   , T_CHAR   ); }
167  void do_float ()                     { set(T_FLOAT_size  , T_FLOAT  ); }
168  void do_double()                     { set(T_DOUBLE_size , T_DOUBLE ); }
169  void do_byte  ()                     { set(T_BYTE_size   , T_BYTE   ); }
170  void do_short ()                     { set(T_SHORT_size  , T_SHORT  ); }
171  void do_int   ()                     { set(T_INT_size    , T_INT    ); }
172  void do_long  ()                     { set(T_LONG_size   , T_LONG   ); }
173  void do_void  ()                     { set(T_VOID_size   , T_VOID   ); }
174  void do_object(int begin, int end)   { set(T_OBJECT_size , T_OBJECT ); }
175  void do_array (int begin, int end)   { set(T_ARRAY_size  , T_ARRAY  ); }
176
177 public:
178  SignatureInfo(Symbol* signature) : SignatureIterator(signature) {
179    _has_iterated = _has_iterated_return = false;
180    _size         = 0;
181    _return_type  = T_ILLEGAL;
182  }
183
184};
185
186
187// Specialized SignatureIterator: Used to compute the argument size.
188
189class ArgumentSizeComputer: public SignatureInfo {
190 private:
191  void set(int size, BasicType type)   { _size += size; }
192 public:
193  ArgumentSizeComputer(Symbol* signature) : SignatureInfo(signature) {}
194
195  int       size()                     { lazy_iterate_parameters(); return _size; }
196};
197
198
199class ArgumentCount: public SignatureInfo {
200 private:
201  void set(int size, BasicType type)   { _size ++; }
202 public:
203  ArgumentCount(Symbol* signature) : SignatureInfo(signature) {}
204
205  int       size()                     { lazy_iterate_parameters(); return _size; }
206};
207
208
209// Specialized SignatureIterator: Used to compute the result type.
210
211class ResultTypeFinder: public SignatureInfo {
212 private:
213  void set(int size, BasicType type)   { _return_type = type; }
214 public:
215  BasicType type()                     { lazy_iterate_return(); return _return_type; }
216
217  ResultTypeFinder(Symbol* signature) : SignatureInfo(signature) {}
218};
219
220
221// Fingerprinter computes a unique ID for a given method. The ID
222// is a bitvector characterizing the methods signature (incl. the receiver).
223class Fingerprinter: public SignatureIterator {
224 private:
225  uint64_t _fingerprint;
226  int _shift_count;
227  methodHandle mh;
228
229 public:
230
231  void do_bool()    { _fingerprint |= (((uint64_t)bool_parm) << _shift_count); _shift_count += parameter_feature_size; }
232  void do_char()    { _fingerprint |= (((uint64_t)char_parm) << _shift_count); _shift_count += parameter_feature_size; }
233  void do_byte()    { _fingerprint |= (((uint64_t)byte_parm) << _shift_count); _shift_count += parameter_feature_size; }
234  void do_short()   { _fingerprint |= (((uint64_t)short_parm) << _shift_count); _shift_count += parameter_feature_size; }
235  void do_int()     { _fingerprint |= (((uint64_t)int_parm) << _shift_count); _shift_count += parameter_feature_size; }
236  void do_long()    { _fingerprint |= (((uint64_t)long_parm) << _shift_count); _shift_count += parameter_feature_size; }
237  void do_float()   { _fingerprint |= (((uint64_t)float_parm) << _shift_count); _shift_count += parameter_feature_size; }
238  void do_double()  { _fingerprint |= (((uint64_t)double_parm) << _shift_count); _shift_count += parameter_feature_size; }
239
240  void do_object(int begin, int end)  { _fingerprint |= (((uint64_t)obj_parm) << _shift_count); _shift_count += parameter_feature_size; }
241  void do_array (int begin, int end)  { _fingerprint |= (((uint64_t)obj_parm) << _shift_count); _shift_count += parameter_feature_size; }
242
243  void do_void()    { ShouldNotReachHere(); }
244
245  Fingerprinter(const methodHandle& method) : SignatureIterator(method->signature()) {
246    mh = method;
247    _fingerprint = 0;
248  }
249
250  uint64_t fingerprint() {
251    // See if we fingerprinted this method already
252    if (mh->constMethod()->fingerprint() != CONST64(0)) {
253      return mh->constMethod()->fingerprint();
254    }
255
256    if (mh->size_of_parameters() > max_size_of_parameters ) {
257      _fingerprint = (uint64_t)CONST64(-1);
258      mh->constMethod()->set_fingerprint(_fingerprint);
259      return _fingerprint;
260    }
261
262    assert( (int)mh->result_type() <= (int)result_feature_mask, "bad result type");
263    _fingerprint = mh->result_type();
264    _fingerprint <<= static_feature_size;
265    if (mh->is_static())  _fingerprint |= 1;
266    _shift_count = result_feature_size + static_feature_size;
267    iterate_parameters();
268    _fingerprint |= ((uint64_t)done_parm) << _shift_count;// mark end of sig
269    mh->constMethod()->set_fingerprint(_fingerprint);
270    return _fingerprint;
271  }
272};
273
274
275// Specialized SignatureIterator: Used for native call purposes
276
277class NativeSignatureIterator: public SignatureIterator {
278 private:
279  methodHandle _method;
280// We need separate JNI and Java offset values because in 64 bit mode,
281// the argument offsets are not in sync with the Java stack.
282// For example a long takes up 1 "C" stack entry but 2 Java stack entries.
283  int          _offset;                // The java stack offset
284  int          _prepended;             // number of prepended JNI parameters (1 JNIEnv, plus 1 mirror if static)
285  int          _jni_offset;            // the current parameter offset, starting with 0
286
287  void do_bool  ()                     { pass_int();    _jni_offset++; _offset++;       }
288  void do_char  ()                     { pass_int();    _jni_offset++; _offset++;       }
289  void do_float ()                     { pass_float();  _jni_offset++; _offset++;       }
290#ifdef _LP64
291  void do_double()                     { pass_double(); _jni_offset++; _offset += 2;    }
292#else
293  void do_double()                     { pass_double(); _jni_offset += 2; _offset += 2; }
294#endif
295  void do_byte  ()                     { pass_int();    _jni_offset++; _offset++;       }
296  void do_short ()                     { pass_int();    _jni_offset++; _offset++;       }
297  void do_int   ()                     { pass_int();    _jni_offset++; _offset++;       }
298#ifdef _LP64
299  void do_long  ()                     { pass_long();   _jni_offset++; _offset += 2;    }
300#else
301  void do_long  ()                     { pass_long();   _jni_offset += 2; _offset += 2; }
302#endif
303  void do_void  ()                     { ShouldNotReachHere();                               }
304  void do_object(int begin, int end)   { pass_object(); _jni_offset++; _offset++;        }
305  void do_array (int begin, int end)   { pass_object(); _jni_offset++; _offset++;        }
306
307 public:
308  methodHandle method() const          { return _method; }
309  int          offset() const          { return _offset; }
310  int      jni_offset() const          { return _jni_offset + _prepended; }
311//  int     java_offset() const          { return method()->size_of_parameters() - _offset - 1; }
312  bool      is_static() const          { return method()->is_static(); }
313  virtual void pass_int()              = 0;
314  virtual void pass_long()             = 0;
315  virtual void pass_object()           = 0;
316  virtual void pass_float()            = 0;
317#ifdef _LP64
318  virtual void pass_double()           = 0;
319#else
320  virtual void pass_double()           { pass_long(); }  // may be same as long
321#endif
322
323  NativeSignatureIterator(const methodHandle& method) : SignatureIterator(method->signature()) {
324    _method = method;
325    _offset = 0;
326    _jni_offset = 0;
327
328    const int JNIEnv_words = 1;
329    const int mirror_words = 1;
330    _prepended = !is_static() ? JNIEnv_words : JNIEnv_words + mirror_words;
331  }
332
333  // iterate() calles the 2 virtual methods according to the following invocation syntax:
334  //
335  // {pass_int | pass_long | pass_object}
336  //
337  // Arguments are handled from left to right (receiver first, if any).
338  // The offset() values refer to the Java stack offsets but are 0 based and increasing.
339  // The java_offset() values count down to 0, and refer to the Java TOS.
340  // The jni_offset() values increase from 1 or 2, and refer to C arguments.
341
342  void iterate() { iterate(Fingerprinter(method()).fingerprint());
343  }
344
345
346  // Optimized path if we have the bitvector form of signature
347  void iterate( uint64_t fingerprint ) {
348
349    if (!is_static()) {
350      // handle receiver (not handled by iterate because not in signature)
351      pass_object(); _jni_offset++; _offset++;
352    }
353
354    SignatureIterator::iterate_parameters( fingerprint );
355  }
356};
357
358
359// Handy stream for iterating over signature
360
361class SignatureStream : public StackObj {
362 private:
363  Symbol*      _signature;
364  int          _begin;
365  int          _end;
366  BasicType    _type;
367  bool         _at_return_type;
368  GrowableArray<Symbol*>* _names;  // symbols created while parsing signature
369
370 public:
371  bool at_return_type() const                    { return _at_return_type; }
372  bool is_done() const;
373  void next_non_primitive(int t);
374  void next() {
375    Symbol* sig = _signature;
376    int len = sig->utf8_length();
377    if (_end >= len) {
378      _end = len + 1;
379      return;
380    }
381
382    _begin = _end;
383    int t = sig->byte_at(_begin);
384    switch (t) {
385      case 'B': _type = T_BYTE;    break;
386      case 'C': _type = T_CHAR;    break;
387      case 'D': _type = T_DOUBLE;  break;
388      case 'F': _type = T_FLOAT;   break;
389      case 'I': _type = T_INT;     break;
390      case 'J': _type = T_LONG;    break;
391      case 'S': _type = T_SHORT;   break;
392      case 'Z': _type = T_BOOLEAN; break;
393      case 'V': _type = T_VOID;    break;
394      default : next_non_primitive(t);
395                return;
396    }
397    _end++;
398  }
399
400  SignatureStream(Symbol* signature, bool is_method = true);
401  ~SignatureStream();
402
403  bool is_object() const;                        // True if this argument is an object
404  bool is_array() const;                         // True if this argument is an array
405  BasicType type() const                         { return _type; }
406  Symbol* as_symbol(TRAPS);
407  enum FailureMode { ReturnNull, CNFException, NCDFError };
408  Klass* as_klass(Handle class_loader, Handle protection_domain, FailureMode failure_mode, TRAPS);
409  oop as_java_mirror(Handle class_loader, Handle protection_domain, FailureMode failure_mode, TRAPS);
410  const jbyte* raw_bytes()  { return _signature->bytes() + _begin; }
411  int          raw_length() { return _end - _begin; }
412
413  // return same as_symbol except allocation of new symbols is avoided.
414  Symbol* as_symbol_or_null();
415
416  // count the number of references in the signature
417  int reference_parameter_count();
418};
419
420class SignatureVerifier : public StackObj {
421  public:
422    // Returns true if the symbol is valid method or type signature
423    static bool is_valid_signature(Symbol* sig);
424
425    static bool is_valid_method_signature(Symbol* sig);
426    static bool is_valid_type_signature(Symbol* sig);
427  private:
428
429    static ssize_t is_valid_type(const char*, ssize_t);
430    static bool invalid_name_char(char);
431};
432
433#endif // SHARE_VM_RUNTIME_SIGNATURE_HPP
434