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[/] [scarts/] [trunk/] [toolchain/] [scarts-gcc/] [gcc-4.1.1/] [libjava/] [link.cc] - Blame information for rev 14

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1 14 jlechner
// link.cc - Code for linking and resolving classes and pool entries.
2
 
3
/* Copyright (C) 1999, 2000, 2001, 2002, 2003, 2004, 2005 Free Software Foundation
4
 
5
   This file is part of libgcj.
6
 
7
This software is copyrighted work licensed under the terms of the
8
Libgcj License.  Please consult the file "LIBGCJ_LICENSE" for
9
details.  */
10
 
11
/* Author: Kresten Krab Thorup <krab@gnu.org>  */
12
 
13
#include <config.h>
14
#include <platform.h>
15
 
16
#include <stdio.h>
17
 
18
#include <java-interp.h>
19
 
20
#include <jvm.h>
21
#include <gcj/cni.h>
22
#include <string.h>
23
#include <limits.h>
24
#include <java-cpool.h>
25
#include <execution.h>
26
#include <java/lang/Class.h>
27
#include <java/lang/String.h>
28
#include <java/lang/StringBuffer.h>
29
#include <java/lang/Thread.h>
30
#include <java/lang/InternalError.h>
31
#include <java/lang/VirtualMachineError.h>
32
#include <java/lang/VerifyError.h>
33
#include <java/lang/NoSuchFieldError.h>
34
#include <java/lang/NoSuchMethodError.h>
35
#include <java/lang/ClassFormatError.h>
36
#include <java/lang/IllegalAccessError.h>
37
#include <java/lang/AbstractMethodError.h>
38
#include <java/lang/NoClassDefFoundError.h>
39
#include <java/lang/IncompatibleClassChangeError.h>
40
#include <java/lang/VerifyError.h>
41
#include <java/lang/VMClassLoader.h>
42
#include <java/lang/reflect/Modifier.h>
43
#include <java/security/CodeSource.h>
44
 
45
using namespace gcj;
46
 
47
typedef unsigned int uaddr __attribute__ ((mode (pointer)));
48
 
49
template<typename T>
50
struct aligner
51
{
52
  char c;
53
  T field;
54
};
55
 
56
#define ALIGNOF(TYPE) (offsetof (aligner<TYPE>, field))
57
 
58
// This returns the alignment of a type as it would appear in a
59
// structure.  This can be different from the alignment of the type
60
// itself.  For instance on x86 double is 8-aligned but struct{double}
61
// is 4-aligned.
62
int
63
_Jv_Linker::get_alignment_from_class (jclass klass)
64
{
65
  if (klass == JvPrimClass (byte))
66
    return ALIGNOF (jbyte);
67
  else if (klass == JvPrimClass (short))
68
    return ALIGNOF (jshort);
69
  else if (klass == JvPrimClass (int))
70
    return ALIGNOF (jint);
71
  else if (klass == JvPrimClass (long))
72
    return ALIGNOF (jlong);
73
  else if (klass == JvPrimClass (boolean))
74
    return ALIGNOF (jboolean);
75
  else if (klass == JvPrimClass (char))
76
    return ALIGNOF (jchar);
77
  else if (klass == JvPrimClass (float))
78
    return ALIGNOF (jfloat);
79
  else if (klass == JvPrimClass (double))
80
    return ALIGNOF (jdouble);
81
  else
82
    return ALIGNOF (jobject);
83
}
84
 
85
void
86
_Jv_Linker::resolve_field (_Jv_Field *field, java::lang::ClassLoader *loader)
87
{
88
  if (! field->isResolved ())
89
    {
90
      _Jv_Utf8Const *sig = (_Jv_Utf8Const *) field->type;
91
      jclass type = _Jv_FindClassFromSignature (sig->chars(), loader);
92
      if (type == NULL)
93
        throw new java::lang::NoClassDefFoundError(field->name->toString());
94
      field->type = type;
95
      field->flags &= ~_Jv_FIELD_UNRESOLVED_FLAG;
96
    }
97
}
98
 
99
// A helper for find_field that knows how to recursively search
100
// superclasses and interfaces.
101
_Jv_Field *
102
_Jv_Linker::find_field_helper (jclass search, _Jv_Utf8Const *name,
103
                               _Jv_Utf8Const *type_name,
104
                               jclass *declarer)
105
{
106
  while (search)
107
    {
108
      // From 5.4.3.2.  First search class itself.
109
      for (int i = 0; i < search->field_count; ++i)
110
        {
111
          _Jv_Field *field = &search->fields[i];
112
          if (! _Jv_equalUtf8Consts (field->name, name))
113
            continue;
114
 
115
          if (! field->isResolved ())
116
            resolve_field (field, search->loader);
117
 
118
          // Note that we compare type names and not types.  This is
119
          // bizarre, but we do it because we want to find a field
120
          // (and terminate the search) if it has the correct
121
          // descriptor -- but then later reject it if the class
122
          // loader check results in different classes.  We can't just
123
          // pass in the descriptor and check that way, because when
124
          // the field is already resolved there is no easy way to
125
          // find its descriptor again.
126
          if (_Jv_equalUtf8Consts (type_name, field->type->name))
127
            {
128
              *declarer = search;
129
              return field;
130
            }
131
        }
132
 
133
      // Next search direct interfaces.
134
      for (int i = 0; i < search->interface_count; ++i)
135
        {
136
          _Jv_Field *result = find_field_helper (search->interfaces[i], name,
137
                                                 type_name, declarer);
138
          if (result)
139
            return result;
140
        }
141
 
142
      // Now search superclass.
143
      search = search->superclass;
144
    }
145
 
146
  return NULL;
147
}
148
 
149
bool
150
_Jv_Linker::has_field_p (jclass search, _Jv_Utf8Const *field_name)
151
{
152
  for (int i = 0; i < search->field_count; ++i)
153
    {
154
      _Jv_Field *field = &search->fields[i];
155
      if (_Jv_equalUtf8Consts (field->name, field_name))
156
        return true;
157
    }
158
  return false;
159
}
160
 
161
// Find a field.
162
// KLASS is the class that is requesting the field.
163
// OWNER is the class in which the field should be found.
164
// FIELD_TYPE_NAME is the type descriptor for the field.
165
// Fill FOUND_CLASS with the address of the class in which the field
166
// is actually declared.
167
// This function does the class loader type checks, and
168
// also access checks.  Returns the field, or throws an
169
// exception on error.
170
_Jv_Field *
171
_Jv_Linker::find_field (jclass klass, jclass owner,
172
                        jclass *found_class,
173
                        _Jv_Utf8Const *field_name,
174
                        _Jv_Utf8Const *field_type_name)
175
{
176
  // FIXME: this allocates a _Jv_Utf8Const each time.  We should make
177
  // it cheaper.
178
  jclass field_type = _Jv_FindClassFromSignature (field_type_name->chars(),
179
                                                  klass->loader);
180
  if (field_type == NULL)
181
    throw new java::lang::NoClassDefFoundError(field_name->toString());
182
 
183
  _Jv_Field *the_field = find_field_helper (owner, field_name,
184
                                            field_type->name, found_class);
185
 
186
  if (the_field == 0)
187
    {
188
      java::lang::StringBuffer *sb = new java::lang::StringBuffer();
189
      sb->append(JvNewStringLatin1("field "));
190
      sb->append(owner->getName());
191
      sb->append(JvNewStringLatin1("."));
192
      sb->append(_Jv_NewStringUTF(field_name->chars()));
193
      sb->append(JvNewStringLatin1(" was not found."));
194
      throw new java::lang::NoSuchFieldError (sb->toString());
195
    }
196
 
197
  if (_Jv_CheckAccess (klass, *found_class, the_field->flags))
198
    {
199
      // Note that the field returned by find_field_helper is always
200
      // resolved.  There's no point checking class loaders here,
201
      // since we already did the work to look up all the types.
202
      // FIXME: being lazy here would be nice.
203
      if (the_field->type != field_type)
204
        throw new java::lang::LinkageError
205
          (JvNewStringLatin1
206
           ("field type mismatch with different loaders"));
207
    }
208
  else
209
    {
210
      java::lang::StringBuffer *sb
211
        = new java::lang::StringBuffer ();
212
      sb->append(klass->getName());
213
      sb->append(JvNewStringLatin1(": "));
214
      sb->append((*found_class)->getName());
215
      sb->append(JvNewStringLatin1("."));
216
      sb->append(_Jv_NewStringUtf8Const (field_name));
217
      throw new java::lang::IllegalAccessError(sb->toString());
218
    }
219
 
220
  return the_field;
221
}
222
 
223
_Jv_word
224
_Jv_Linker::resolve_pool_entry (jclass klass, int index)
225
{
226
  using namespace java::lang::reflect;
227
 
228
  _Jv_Constants *pool = &klass->constants;
229
 
230
  if ((pool->tags[index] & JV_CONSTANT_ResolvedFlag) != 0)
231
    return pool->data[index];
232
 
233
  switch (pool->tags[index])
234
    {
235
    case JV_CONSTANT_Class:
236
      {
237
        _Jv_Utf8Const *name = pool->data[index].utf8;
238
 
239
        jclass found;
240
        if (name->first() == '[')
241
          found = _Jv_FindClassFromSignature (name->chars(),
242
                                              klass->loader);
243
        else
244
          found = _Jv_FindClass (name, klass->loader);
245
 
246
        if (! found)
247
          throw new java::lang::NoClassDefFoundError (name->toString());
248
 
249
        // Check accessibility, but first strip array types as
250
        // _Jv_ClassNameSamePackage can't handle arrays.
251
        jclass check;
252
        for (check = found;
253
             check && check->isArray();
254
             check = check->getComponentType())
255
          ;
256
        if ((found->accflags & Modifier::PUBLIC) == Modifier::PUBLIC
257
            || (_Jv_ClassNameSamePackage (check->name,
258
                                          klass->name)))
259
          {
260
            pool->data[index].clazz = found;
261
            pool->tags[index] |= JV_CONSTANT_ResolvedFlag;
262
          }
263
        else
264
          {
265
            java::lang::StringBuffer *sb = new java::lang::StringBuffer ();
266
            sb->append(klass->getName());
267
            sb->append(JvNewStringLatin1(" can't access class "));
268
            sb->append(found->getName());
269
            throw new java::lang::IllegalAccessError(sb->toString());
270
          }
271
      }
272
      break;
273
 
274
    case JV_CONSTANT_String:
275
      {
276
        jstring str;
277
        str = _Jv_NewStringUtf8Const (pool->data[index].utf8);
278
        pool->data[index].o = str;
279
        pool->tags[index] |= JV_CONSTANT_ResolvedFlag;
280
      }
281
      break;
282
 
283
    case JV_CONSTANT_Fieldref:
284
      {
285
        _Jv_ushort class_index, name_and_type_index;
286
        _Jv_loadIndexes (&pool->data[index],
287
                         class_index,
288
                         name_and_type_index);
289
        jclass owner = (resolve_pool_entry (klass, class_index)).clazz;
290
 
291
        if (owner != klass)
292
          _Jv_InitClass (owner);
293
 
294
        _Jv_ushort name_index, type_index;
295
        _Jv_loadIndexes (&pool->data[name_and_type_index],
296
                         name_index,
297
                         type_index);
298
 
299
        _Jv_Utf8Const *field_name = pool->data[name_index].utf8;
300
        _Jv_Utf8Const *field_type_name = pool->data[type_index].utf8;
301
 
302
        jclass found_class = 0;
303
        _Jv_Field *the_field = find_field (klass, owner,
304
                                           &found_class,
305
                                           field_name,
306
                                           field_type_name);
307
        if (owner != found_class)
308
          _Jv_InitClass (found_class);
309
        pool->data[index].field = the_field;
310
        pool->tags[index] |= JV_CONSTANT_ResolvedFlag;
311
      }
312
      break;
313
 
314
    case JV_CONSTANT_Methodref:
315
    case JV_CONSTANT_InterfaceMethodref:
316
      {
317
        _Jv_ushort class_index, name_and_type_index;
318
        _Jv_loadIndexes (&pool->data[index],
319
                         class_index,
320
                         name_and_type_index);
321
        jclass owner = (resolve_pool_entry (klass, class_index)).clazz;
322
 
323
        if (owner != klass)
324
          _Jv_InitClass (owner);
325
 
326
        _Jv_ushort name_index, type_index;
327
        _Jv_loadIndexes (&pool->data[name_and_type_index],
328
                         name_index,
329
                         type_index);
330
 
331
        _Jv_Utf8Const *method_name = pool->data[name_index].utf8;
332
        _Jv_Utf8Const *method_signature = pool->data[type_index].utf8;
333
 
334
        _Jv_Method *the_method = 0;
335
        jclass found_class = 0;
336
 
337
        // We're going to cache a pointer to the _Jv_Method object
338
        // when we find it.  So, to ensure this doesn't get moved from
339
        // beneath us, we first put all the needed Miranda methods
340
        // into the target class.
341
        wait_for_state (klass, JV_STATE_LOADED);
342
 
343
        // First search the class itself.
344
        the_method = search_method_in_class (owner, klass,
345
                                             method_name, method_signature);
346
 
347
        if (the_method != 0)
348
          {
349
            found_class = owner;
350
            goto end_of_method_search;
351
          }
352
 
353
        // If we are resolving an interface method, search the
354
        // interface's superinterfaces (A superinterface is not an
355
        // interface's superclass - a superinterface is implemented by
356
        // the interface).
357
        if (pool->tags[index] == JV_CONSTANT_InterfaceMethodref)
358
          {
359
            _Jv_ifaces ifaces;
360
            ifaces.count = 0;
361
            ifaces.len = 4;
362
            ifaces.list = (jclass *) _Jv_Malloc (ifaces.len
363
                                                 * sizeof (jclass *));
364
 
365
            get_interfaces (owner, &ifaces);
366
 
367
            for (int i = 0; i < ifaces.count; i++)
368
              {
369
                jclass cls = ifaces.list[i];
370
                the_method = search_method_in_class (cls, klass, method_name,
371
                                                     method_signature);
372
                if (the_method != 0)
373
                  {
374
                    found_class = cls;
375
                    break;
376
                  }
377
              }
378
 
379
            _Jv_Free (ifaces.list);
380
 
381
            if (the_method != 0)
382
              goto end_of_method_search;
383
          }
384
 
385
        // Finally, search superclasses. 
386
        for (jclass cls = owner->getSuperclass (); cls != 0;
387
             cls = cls->getSuperclass ())
388
          {
389
            the_method = search_method_in_class (cls, klass, method_name,
390
                                                 method_signature);
391
            if (the_method != 0)
392
              {
393
                found_class = cls;
394
                break;
395
              }
396
          }
397
 
398
      end_of_method_search:
399
 
400
        // FIXME: if (cls->loader != klass->loader), then we
401
        // must actually check that the types of arguments
402
        // correspond.  That is, for each argument type, and
403
        // the return type, doing _Jv_FindClassFromSignature
404
        // with either loader should produce the same result,
405
        // i.e., exactly the same jclass object. JVMS 5.4.3.3    
406
 
407
        if (the_method == 0)
408
          {
409
            java::lang::StringBuffer *sb = new java::lang::StringBuffer();
410
            sb->append(JvNewStringLatin1("method "));
411
            sb->append(owner->getName());
412
            sb->append(JvNewStringLatin1("."));
413
            sb->append(_Jv_NewStringUTF(method_name->chars()));
414
            sb->append(JvNewStringLatin1(" with signature "));
415
            sb->append(_Jv_NewStringUTF(method_signature->chars()));
416
            sb->append(JvNewStringLatin1(" was not found."));
417
            throw new java::lang::NoSuchMethodError (sb->toString());
418
          }
419
 
420
        int vtable_index = -1;
421
        if (pool->tags[index] != JV_CONSTANT_InterfaceMethodref)
422
          vtable_index = (jshort)the_method->index;
423
 
424
        pool->data[index].rmethod
425
          = klass->engine->resolve_method(the_method,
426
                                          found_class,
427
                                          ((the_method->accflags
428
                                            & Modifier::STATIC) != 0),
429
                                          vtable_index);
430
        pool->tags[index] |= JV_CONSTANT_ResolvedFlag;
431
      }
432
      break;
433
    }
434
  return pool->data[index];
435
}
436
 
437
// This function is used to lazily locate superclasses and
438
// superinterfaces.  This must be called with the class lock held.
439
void
440
_Jv_Linker::resolve_class_ref (jclass klass, jclass *classref)
441
{
442
  jclass ret = *classref;
443
 
444
  // If superclass looks like a constant pool entry, resolve it now.
445
  if (ret && (uaddr) ret < (uaddr) klass->constants.size)
446
    {
447
      if (klass->state < JV_STATE_LINKED)
448
        {
449
          _Jv_Utf8Const *name = klass->constants.data[(uaddr) *classref].utf8;
450
          ret = _Jv_FindClass (name, klass->loader);
451
          if (! ret)
452
            {
453
              throw new java::lang::NoClassDefFoundError (name->toString());
454
            }
455
        }
456
      else
457
        ret = klass->constants.data[(uaddr) classref].clazz;
458
      *classref = ret;
459
    }
460
}
461
 
462
// Find a method declared in the cls that is referenced from klass and
463
// perform access checks.
464
_Jv_Method *
465
_Jv_Linker::search_method_in_class (jclass cls, jclass klass,
466
                                    _Jv_Utf8Const *method_name,
467
                                    _Jv_Utf8Const *method_signature)
468
{
469
  using namespace java::lang::reflect;
470
 
471
  for (int i = 0;  i < cls->method_count;  i++)
472
    {
473
      _Jv_Method *method = &cls->methods[i];
474
      if (   (!_Jv_equalUtf8Consts (method->name,
475
                                    method_name))
476
          || (!_Jv_equalUtf8Consts (method->signature,
477
                                    method_signature)))
478
        continue;
479
 
480
      if (_Jv_CheckAccess (klass, cls, method->accflags))
481
        return method;
482
      else
483
        {
484
          java::lang::StringBuffer *sb = new java::lang::StringBuffer();
485
          sb->append(klass->getName());
486
          sb->append(JvNewStringLatin1(": "));
487
          sb->append(cls->getName());
488
          sb->append(JvNewStringLatin1("."));
489
          sb->append(_Jv_NewStringUTF(method_name->chars()));
490
          sb->append(_Jv_NewStringUTF(method_signature->chars()));
491
          throw new java::lang::IllegalAccessError (sb->toString());
492
        }
493
    }
494
  return 0;
495
}
496
 
497
 
498
#define INITIAL_IOFFSETS_LEN 4
499
#define INITIAL_IFACES_LEN 4
500
 
501
static _Jv_IDispatchTable null_idt = { {SHRT_MAX, 0, NULL} };
502
 
503
// Generate tables for constant-time assignment testing and interface
504
// method lookup. This implements the technique described by Per Bothner
505
// <per@bothner.com> on the java-discuss mailing list on 1999-09-02:
506
// http://gcc.gnu.org/ml/java/1999-q3/msg00377.html
507
void
508
_Jv_Linker::prepare_constant_time_tables (jclass klass)
509
{
510
  if (klass->isPrimitive () || klass->isInterface ())
511
    return;
512
 
513
  // Short-circuit in case we've been called already.
514
  if ((klass->idt != NULL) || klass->depth != 0)
515
    return;
516
 
517
  // Calculate the class depth and ancestor table. The depth of a class 
518
  // is how many "extends" it is removed from Object. Thus the depth of 
519
  // java.lang.Object is 0, but the depth of java.io.FilterOutputStream 
520
  // is 2. Depth is defined for all regular and array classes, but not 
521
  // interfaces or primitive types.
522
 
523
  jclass klass0 = klass;
524
  jboolean has_interfaces = 0;
525
  while (klass0 != &java::lang::Object::class$)
526
    {
527
      has_interfaces += klass0->interface_count;
528
      klass0 = klass0->superclass;
529
      klass->depth++;
530
    }
531
 
532
  // We do class member testing in constant time by using a small table 
533
  // of all the ancestor classes within each class. The first element is 
534
  // a pointer to the current class, and the rest are pointers to the 
535
  // classes ancestors, ordered from the current class down by decreasing 
536
  // depth. We do not include java.lang.Object in the table of ancestors, 
537
  // since it is redundant.
538
 
539
  // FIXME: _Jv_AllocBytes
540
  klass->ancestors = (jclass *) _Jv_Malloc (klass->depth
541
                                                * sizeof (jclass));
542
  klass0 = klass;
543
  for (int index = 0; index < klass->depth; index++)
544
    {
545
      klass->ancestors[index] = klass0;
546
      klass0 = klass0->superclass;
547
    }
548
 
549
  if ((klass->accflags & java::lang::reflect::Modifier::ABSTRACT) != 0)
550
    return;
551
 
552
  // Optimization: If class implements no interfaces, use a common
553
  // predefined interface table.
554
  if (!has_interfaces)
555
    {
556
      klass->idt = &null_idt;
557
      return;
558
    }
559
 
560
  // FIXME: _Jv_AllocBytes
561
  klass->idt =
562
    (_Jv_IDispatchTable *) _Jv_Malloc (sizeof (_Jv_IDispatchTable));
563
 
564
  _Jv_ifaces ifaces;
565
  ifaces.count = 0;
566
  ifaces.len = INITIAL_IFACES_LEN;
567
  ifaces.list = (jclass *) _Jv_Malloc (ifaces.len * sizeof (jclass *));
568
 
569
  int itable_size = get_interfaces (klass, &ifaces);
570
 
571
  if (ifaces.count > 0)
572
    {
573
      klass->idt->cls.itable =
574
        // FIXME: _Jv_AllocBytes
575
        (void **) _Jv_Malloc (itable_size * sizeof (void *));
576
      klass->idt->cls.itable_length = itable_size;
577
 
578
      jshort *itable_offsets =
579
        (jshort *) _Jv_Malloc (ifaces.count * sizeof (jshort));
580
 
581
      generate_itable (klass, &ifaces, itable_offsets);
582
 
583
      jshort cls_iindex = find_iindex (ifaces.list, itable_offsets,
584
                                       ifaces.count);
585
 
586
      for (int i = 0; i < ifaces.count; i++)
587
        {
588
          ifaces.list[i]->idt->iface.ioffsets[cls_iindex] =
589
            itable_offsets[i];
590
        }
591
 
592
      klass->idt->cls.iindex = cls_iindex;
593
 
594
      _Jv_Free (ifaces.list);
595
      _Jv_Free (itable_offsets);
596
    }
597
  else
598
    {
599
      klass->idt->cls.iindex = SHRT_MAX;
600
    }
601
}
602
 
603
// Return index of item in list, or -1 if item is not present.
604
inline jshort
605
_Jv_Linker::indexof (void *item, void **list, jshort list_len)
606
{
607
  for (int i=0; i < list_len; i++)
608
    {
609
      if (list[i] == item)
610
        return i;
611
    }
612
  return -1;
613
}
614
 
615
// Find all unique interfaces directly or indirectly implemented by klass.
616
// Returns the size of the interface dispatch table (itable) for klass, which 
617
// is the number of unique interfaces plus the total number of methods that 
618
// those interfaces declare. May extend ifaces if required.
619
jshort
620
_Jv_Linker::get_interfaces (jclass klass, _Jv_ifaces *ifaces)
621
{
622
  jshort result = 0;
623
 
624
  for (int i = 0; i < klass->interface_count; i++)
625
    {
626
      jclass iface = klass->interfaces[i];
627
 
628
      /* Make sure interface is linked.  */
629
      wait_for_state(iface, JV_STATE_LINKED);
630
 
631
      if (indexof (iface, (void **) ifaces->list, ifaces->count) == -1)
632
        {
633
          if (ifaces->count + 1 >= ifaces->len)
634
            {
635
              /* Resize ifaces list */
636
              ifaces->len = ifaces->len * 2;
637
              ifaces->list
638
                = (jclass *) _Jv_Realloc (ifaces->list,
639
                                          ifaces->len * sizeof(jclass));
640
            }
641
          ifaces->list[ifaces->count] = iface;
642
          ifaces->count++;
643
 
644
          result += get_interfaces (klass->interfaces[i], ifaces);
645
        }
646
    }
647
 
648
  if (klass->isInterface())
649
    result += klass->method_count + 1;
650
  else if (klass->superclass)
651
    result += get_interfaces (klass->superclass, ifaces);
652
  return result;
653
}
654
 
655
// Fill out itable in klass, resolving method declarations in each ifaces.
656
// itable_offsets is filled out with the position of each iface in itable,
657
// such that itable[itable_offsets[n]] == ifaces.list[n].
658
void
659
_Jv_Linker::generate_itable (jclass klass, _Jv_ifaces *ifaces,
660
                               jshort *itable_offsets)
661
{
662
  void **itable = klass->idt->cls.itable;
663
  jshort itable_pos = 0;
664
 
665
  for (int i = 0; i < ifaces->count; i++)
666
    {
667
      jclass iface = ifaces->list[i];
668
      itable_offsets[i] = itable_pos;
669
      itable_pos = append_partial_itable (klass, iface, itable, itable_pos);
670
 
671
      /* Create interface dispatch table for iface */
672
      if (iface->idt == NULL)
673
        {
674
          // FIXME: _Jv_AllocBytes
675
          iface->idt
676
            = (_Jv_IDispatchTable *) _Jv_Malloc (sizeof (_Jv_IDispatchTable));
677
 
678
          // The first element of ioffsets is its length (itself included).
679
          // FIXME: _Jv_AllocBytes
680
          jshort *ioffsets = (jshort *) _Jv_Malloc (INITIAL_IOFFSETS_LEN
681
                                                    * sizeof (jshort));
682
          ioffsets[0] = INITIAL_IOFFSETS_LEN;
683
          for (int i = 1; i < INITIAL_IOFFSETS_LEN; i++)
684
            ioffsets[i] = -1;
685
 
686
          iface->idt->iface.ioffsets = ioffsets;
687
        }
688
    }
689
}
690
 
691
// Format method name for use in error messages.
692
jstring
693
_Jv_GetMethodString (jclass klass, _Jv_Method *meth,
694
                     jclass derived)
695
{
696
  using namespace java::lang;
697
  StringBuffer *buf = new StringBuffer (klass->name->toString());
698
  buf->append (jchar ('.'));
699
  buf->append (meth->name->toString());
700
  buf->append ((jchar) ' ');
701
  buf->append (meth->signature->toString());
702
  if (derived)
703
    {
704
      buf->append(JvNewStringLatin1(" in "));
705
      buf->append(derived->name->toString());
706
    }
707
  return buf->toString();
708
}
709
 
710
void
711
_Jv_ThrowNoSuchMethodError ()
712
{
713
  throw new java::lang::NoSuchMethodError;
714
}
715
 
716
// Throw a NoSuchFieldError.  Called by compiler-generated code when
717
// an otable entry is zero.  OTABLE_INDEX is the index in the caller's
718
// otable that refers to the missing field.  This index may be used to
719
// print diagnostic information about the field.
720
void
721
_Jv_ThrowNoSuchFieldError (int /* otable_index */)
722
{
723
  throw new java::lang::NoSuchFieldError;
724
}
725
 
726
 
727
// This is put in empty vtable slots.
728
void
729
_Jv_ThrowAbstractMethodError ()
730
{
731
  throw new java::lang::AbstractMethodError();
732
}
733
 
734
// Each superinterface of a class (i.e. each interface that the class
735
// directly or indirectly implements) has a corresponding "Partial
736
// Interface Dispatch Table" whose size is (number of methods + 1) words.
737
// The first word is a pointer to the interface (i.e. the java.lang.Class
738
// instance for that interface).  The remaining words are pointers to the
739
// actual methods that implement the methods declared in the interface,
740
// in order of declaration.
741
//
742
// Append partial interface dispatch table for "iface" to "itable", at
743
// position itable_pos.
744
// Returns the offset at which the next partial ITable should be appended.
745
jshort
746
_Jv_Linker::append_partial_itable (jclass klass, jclass iface,
747
                                     void **itable, jshort pos)
748
{
749
  using namespace java::lang::reflect;
750
 
751
  itable[pos++] = (void *) iface;
752
  _Jv_Method *meth;
753
 
754
  for (int j=0; j < iface->method_count; j++)
755
    {
756
      meth = NULL;
757
      for (jclass cl = klass; cl; cl = cl->getSuperclass())
758
        {
759
          meth = _Jv_GetMethodLocal (cl, iface->methods[j].name,
760
                                     iface->methods[j].signature);
761
 
762
          if (meth)
763
            break;
764
        }
765
 
766
      if (meth && (meth->name->first() == '<'))
767
        {
768
          // leave a placeholder in the itable for hidden init methods.
769
          itable[pos] = NULL;
770
        }
771
      else if (meth)
772
        {
773
          if ((meth->accflags & Modifier::STATIC) != 0)
774
            throw new java::lang::IncompatibleClassChangeError
775
              (_Jv_GetMethodString (klass, meth));
776
          if ((meth->accflags & Modifier::PUBLIC) == 0)
777
            throw new java::lang::IllegalAccessError
778
              (_Jv_GetMethodString (klass, meth));
779
 
780
          if ((meth->accflags & Modifier::ABSTRACT) != 0)
781
            itable[pos] = (void *) &_Jv_ThrowAbstractMethodError;
782
          else
783
            itable[pos] = meth->ncode;
784
        }
785
      else
786
        {
787
          // The method doesn't exist in klass. Binary compatibility rules
788
          // permit this, so we delay the error until runtime using a pointer
789
          // to a method which throws an exception.
790
          itable[pos] = (void *) _Jv_ThrowNoSuchMethodError;
791
        }
792
      pos++;
793
    }
794
 
795
  return pos;
796
}
797
 
798
static _Jv_Mutex_t iindex_mutex;
799
static bool iindex_mutex_initialized = false;
800
 
801
// We need to find the correct offset in the Class Interface Dispatch 
802
// Table for a given interface. Once we have that, invoking an interface 
803
// method just requires combining the Method's index in the interface 
804
// (known at compile time) to get the correct method.  Doing a type test 
805
// (cast or instanceof) is the same problem: Once we have a possible Partial 
806
// Interface Dispatch Table, we just compare the first element to see if it 
807
// matches the desired interface. So how can we find the correct offset?  
808
// Our solution is to keep a vector of candiate offsets in each interface 
809
// (idt->iface.ioffsets), and in each class we have an index 
810
// (idt->cls.iindex) used to select the correct offset from ioffsets.
811
//
812
// Calculate and return iindex for a new class. 
813
// ifaces is a vector of num interfaces that the class implements.
814
// offsets[j] is the offset in the interface dispatch table for the
815
// interface corresponding to ifaces[j].
816
// May extend the interface ioffsets if required.
817
jshort
818
_Jv_Linker::find_iindex (jclass *ifaces, jshort *offsets, jshort num)
819
{
820
  int i;
821
  int j;
822
 
823
  // Acquire a global lock to prevent itable corruption in case of multiple 
824
  // classes that implement an intersecting set of interfaces being linked
825
  // simultaneously. We can assume that the mutex will be initialized
826
  // single-threaded.
827
  if (! iindex_mutex_initialized)
828
    {
829
      _Jv_MutexInit (&iindex_mutex);
830
      iindex_mutex_initialized = true;
831
    }
832
 
833
  _Jv_MutexLock (&iindex_mutex);
834
 
835
  for (i=1;; i++)  /* each potential position in ioffsets */
836
    {
837
      for (j=0;; j++)  /* each iface */
838
        {
839
          if (j >= num)
840
            goto found;
841
          if (i >= ifaces[j]->idt->iface.ioffsets[0])
842
            continue;
843
          int ioffset = ifaces[j]->idt->iface.ioffsets[i];
844
          /* We can potentially share this position with another class. */
845
          if (ioffset >= 0 && ioffset != offsets[j])
846
            break; /* Nope. Try next i. */
847
        }
848
    }
849
  found:
850
  for (j = 0; j < num; j++)
851
    {
852
      int len = ifaces[j]->idt->iface.ioffsets[0];
853
      if (i >= len)
854
        {
855
          // Resize ioffsets.
856
          int newlen = 2 * len;
857
          if (i >= newlen)
858
            newlen = i + 3;
859
          jshort *old_ioffsets = ifaces[j]->idt->iface.ioffsets;
860
          // FIXME: _Jv_AllocBytes
861
          jshort *new_ioffsets = (jshort *) _Jv_Malloc (newlen
862
                                                        * sizeof(jshort));
863
          memcpy (&new_ioffsets[1], &old_ioffsets[1],
864
                  (len - 1) * sizeof (jshort));
865
          new_ioffsets[0] = newlen;
866
 
867
          while (len < newlen)
868
            new_ioffsets[len++] = -1;
869
 
870
          ifaces[j]->idt->iface.ioffsets = new_ioffsets;
871
        }
872
      ifaces[j]->idt->iface.ioffsets[i] = offsets[j];
873
    }
874
 
875
  _Jv_MutexUnlock (&iindex_mutex);
876
 
877
  return i;
878
}
879
 
880
 
881
// Functions for indirect dispatch (symbolic virtual binding) support.
882
 
883
// There are three tables, atable otable and itable.  atable is an
884
// array of addresses, and otable is an array of offsets, and these
885
// are used for static and virtual members respectively.  itable is an
886
// array of pairs {address, index} where each address is a pointer to
887
// an interface.
888
 
889
// {a,o,i}table_syms is an array of _Jv_MethodSymbols.  Each such
890
// symbol is a tuple of {classname, member name, signature}.
891
 
892
// Set this to true to enable debugging of indirect dispatch tables/linking.
893
static bool debug_link = false;
894
 
895
// link_symbol_table() scans these two arrays and fills in the
896
// corresponding atable and otable with the addresses of static
897
// members and the offsets of virtual members.
898
 
899
// The offset (in bytes) for each resolved method or field is placed
900
// at the corresponding position in the virtual method offset table
901
// (klass->otable). 
902
 
903
// The same otable and atable may be shared by many classes.
904
 
905
// This must be called while holding the class lock.
906
 
907
void
908
_Jv_Linker::link_symbol_table (jclass klass)
909
{
910
  int index = 0;
911
  _Jv_MethodSymbol sym;
912
  if (klass->otable == NULL
913
      || klass->otable->state != 0)
914
    goto atable;
915
 
916
  klass->otable->state = 1;
917
 
918
  if (debug_link)
919
    fprintf (stderr, "Fixing up otable in %s:\n", klass->name->chars());
920
  for (index = 0;
921
       (sym = klass->otable_syms[index]).class_name != NULL;
922
       ++index)
923
    {
924
      jclass target_class = _Jv_FindClass (sym.class_name, klass->loader);
925
      _Jv_Method *meth = NULL;
926
 
927
      _Jv_Utf8Const *signature = sym.signature;
928
 
929
      if (target_class == NULL)
930
        throw new java::lang::NoClassDefFoundError
931
          (_Jv_NewStringUTF (sym.class_name->chars()));
932
 
933
      // We're looking for a field or a method, and we can tell
934
      // which is needed by looking at the signature.
935
      if (signature->first() == '(' && signature->len() >= 2)
936
        {
937
          // Looks like someone is trying to invoke an interface method
938
          if (target_class->isInterface())
939
            {
940
              using namespace java::lang;
941
              StringBuffer *sb = new StringBuffer();
942
              sb->append(JvNewStringLatin1("found interface "));
943
              sb->append(target_class->getName());
944
              sb->append(JvNewStringLatin1(" when searching for a class"));
945
              throw new VerifyError(sb->toString());
946
            }
947
 
948
          // If the target class does not have a vtable_method_count yet, 
949
          // then we can't tell the offsets for its methods, so we must lay 
950
          // it out now.
951
          wait_for_state(target_class, JV_STATE_PREPARED);
952
 
953
          meth = _Jv_LookupDeclaredMethod(target_class, sym.name,
954
                                          sym.signature);
955
 
956
          // Every class has a throwNoSuchMethodErrorIndex method that
957
          // it inherits from java.lang.Object.  Find its vtable
958
          // offset.
959
          static int throwNoSuchMethodErrorIndex;
960
          if (throwNoSuchMethodErrorIndex == 0)
961
            {
962
              Utf8Const* name
963
                = _Jv_makeUtf8Const ("throwNoSuchMethodError",
964
                                     strlen ("throwNoSuchMethodError"));
965
              _Jv_Method* meth
966
                = _Jv_LookupDeclaredMethod (&java::lang::Object::class$,
967
                                            name, gcj::void_signature);
968
              throwNoSuchMethodErrorIndex
969
                = _Jv_VTable::idx_to_offset (meth->index);
970
            }
971
 
972
          // If we don't find a nonstatic method, insert the
973
          // vtable index of Object.throwNoSuchMethodError().
974
          // This defers the missing method error until an attempt
975
          // is made to execute it.       
976
          {
977
            int offset;
978
 
979
            if (meth != NULL)
980
              offset = _Jv_VTable::idx_to_offset (meth->index);
981
            else
982
              offset = throwNoSuchMethodErrorIndex;
983
 
984
            if (offset == -1)
985
              JvFail ("Bad method index");
986
            JvAssert (meth->index < target_class->vtable_method_count);
987
 
988
            klass->otable->offsets[index] = offset;
989
          }
990
 
991
          if (debug_link)
992
            fprintf (stderr, "  offsets[%d] = %d (class %s@%p : %s(%s))\n",
993
                     (int)index,
994
                     (int)klass->otable->offsets[index],
995
                     (const char*)target_class->name->chars(),
996
                     target_class,
997
                     (const char*)sym.name->chars(),
998
                     (const char*)signature->chars());
999
          continue;
1000
        }
1001
 
1002
      // Try fields.
1003
      {
1004
        wait_for_state(target_class, JV_STATE_PREPARED);
1005
        jclass found_class;
1006
        _Jv_Field *the_field = NULL;
1007
        try
1008
          {
1009
            the_field = find_field (klass, target_class, &found_class,
1010
                                    sym.name, sym.signature);
1011
            if ((the_field->flags & java::lang::reflect::Modifier::STATIC))
1012
              throw new java::lang::IncompatibleClassChangeError;
1013
            else
1014
              klass->otable->offsets[index] = the_field->u.boffset;
1015
          }
1016
        catch (java::lang::NoSuchFieldError *err)
1017
          {
1018
            klass->otable->offsets[index] = 0;
1019
          }
1020
      }
1021
    }
1022
 
1023
 atable:
1024
  if (klass->atable == NULL || klass->atable->state != 0)
1025
    goto itable;
1026
 
1027
  klass->atable->state = 1;
1028
 
1029
  for (index = 0;
1030
       (sym = klass->atable_syms[index]).class_name != NULL;
1031
       ++index)
1032
    {
1033
      jclass target_class = _Jv_FindClass (sym.class_name, klass->loader);
1034
      _Jv_Method *meth = NULL;
1035
      _Jv_Utf8Const *signature = sym.signature;
1036
 
1037
      // ??? Setting this pointer to null will at least get us a
1038
      // NullPointerException
1039
      klass->atable->addresses[index] = NULL;
1040
 
1041
      if (target_class == NULL)
1042
        throw new java::lang::NoClassDefFoundError
1043
          (_Jv_NewStringUTF (sym.class_name->chars()));
1044
 
1045
      // We're looking for a static field or a static method, and we
1046
      // can tell which is needed by looking at the signature.
1047
      if (signature->first() == '(' && signature->len() >= 2)
1048
        {
1049
          // If the target class does not have a vtable_method_count yet, 
1050
          // then we can't tell the offsets for its methods, so we must lay 
1051
          // it out now.
1052
          wait_for_state (target_class, JV_STATE_PREPARED);
1053
 
1054
          // Interface methods cannot have bodies.
1055
          if (target_class->isInterface())
1056
            {
1057
              using namespace java::lang;
1058
              StringBuffer *sb = new StringBuffer();
1059
              sb->append(JvNewStringLatin1("class "));
1060
              sb->append(target_class->getName());
1061
              sb->append(JvNewStringLatin1(" is an interface: "
1062
                                           "class expected"));
1063
              throw new VerifyError(sb->toString());
1064
            }
1065
 
1066
          meth = _Jv_LookupDeclaredMethod(target_class, sym.name,
1067
                                          sym.signature);
1068
 
1069
          if (meth != NULL)
1070
            {
1071
              if (meth->ncode) // Maybe abstract?
1072
                {
1073
                  klass->atable->addresses[index] = meth->ncode;
1074
                  if (debug_link)
1075
                    fprintf (stderr, "  addresses[%d] = %p (class %s@%p : %s(%s))\n",
1076
                             index,
1077
                             &klass->atable->addresses[index],
1078
                             (const char*)target_class->name->chars(),
1079
                             klass,
1080
                             (const char*)sym.name->chars(),
1081
                             (const char*)signature->chars());
1082
                }
1083
            }
1084
          else
1085
            klass->atable->addresses[index]
1086
              = (void *)_Jv_ThrowNoSuchMethodError;
1087
 
1088
          continue;
1089
        }
1090
 
1091
      // Try fields.
1092
      {
1093
        wait_for_state(target_class, JV_STATE_PREPARED);
1094
        jclass found_class;
1095
        _Jv_Field *the_field = find_field (klass, target_class, &found_class,
1096
                                           sym.name, sym.signature);
1097
        if ((the_field->flags & java::lang::reflect::Modifier::STATIC))
1098
          klass->atable->addresses[index] = the_field->u.addr;
1099
        else
1100
          throw new java::lang::IncompatibleClassChangeError;
1101
      }
1102
    }
1103
 
1104
 itable:
1105
  if (klass->itable == NULL
1106
      || klass->itable->state != 0)
1107
    return;
1108
 
1109
  klass->itable->state = 1;
1110
 
1111
  for (index = 0;
1112
       (sym = klass->itable_syms[index]).class_name != NULL;
1113
       ++index)
1114
    {
1115
      jclass target_class = _Jv_FindClass (sym.class_name, klass->loader);
1116
      _Jv_Utf8Const *signature = sym.signature;
1117
 
1118
      jclass cls;
1119
      int i;
1120
 
1121
      wait_for_state(target_class, JV_STATE_LOADED);
1122
      bool found = _Jv_getInterfaceMethod (target_class, cls, i,
1123
                                           sym.name, sym.signature);
1124
 
1125
      if (found)
1126
        {
1127
          klass->itable->addresses[index * 2] = cls;
1128
          klass->itable->addresses[index * 2 + 1] = (void *)(unsigned long) i;
1129
          if (debug_link)
1130
            {
1131
              fprintf (stderr, "  interfaces[%d] = %p (interface %s@%p : %s(%s))\n",
1132
                       index,
1133
                       klass->itable->addresses[index * 2],
1134
                       (const char*)cls->name->chars(),
1135
                       cls,
1136
                       (const char*)sym.name->chars(),
1137
                       (const char*)signature->chars());
1138
              fprintf (stderr, "            [%d] = offset %d\n",
1139
                       index + 1,
1140
                       (int)(unsigned long)klass->itable->addresses[index * 2 + 1]);
1141
            }
1142
 
1143
        }
1144
      else
1145
        throw new java::lang::IncompatibleClassChangeError;
1146
    }
1147
 
1148
}
1149
 
1150
// For each catch_record in the list of caught classes, fill in the
1151
// address field.
1152
void
1153
_Jv_Linker::link_exception_table (jclass self)
1154
{
1155
  struct _Jv_CatchClass *catch_record = self->catch_classes;
1156
  if (!catch_record || catch_record->classname)
1157
    return;
1158
  catch_record++;
1159
  while (catch_record->classname)
1160
    {
1161
      try
1162
        {
1163
          jclass target_class
1164
            = _Jv_FindClass (catch_record->classname,
1165
                             self->getClassLoaderInternal ());
1166
          *catch_record->address = target_class;
1167
        }
1168
      catch (::java::lang::Throwable *t)
1169
        {
1170
          // FIXME: We need to do something better here.
1171
          *catch_record->address = 0;
1172
        }
1173
      catch_record++;
1174
    }
1175
  self->catch_classes->classname = (_Jv_Utf8Const *)-1;
1176
}
1177
 
1178
// Set itable method indexes for members of interface IFACE.
1179
void
1180
_Jv_Linker::layout_interface_methods (jclass iface)
1181
{
1182
  if (! iface->isInterface())
1183
    return;
1184
 
1185
  // itable indexes start at 1. 
1186
  // FIXME: Static initalizers currently get a NULL placeholder entry in the
1187
  // itable so they are also assigned an index here.
1188
  for (int i = 0; i < iface->method_count; i++)
1189
    iface->methods[i].index = i + 1;
1190
}
1191
 
1192
// Prepare virtual method declarations in KLASS, and any superclasses
1193
// as required, by determining their vtable index, setting
1194
// method->index, and finally setting the class's vtable_method_count.
1195
// Must be called with the lock for KLASS held.
1196
void
1197
_Jv_Linker::layout_vtable_methods (jclass klass)
1198
{
1199
  if (klass->vtable != NULL || klass->isInterface()
1200
      || klass->vtable_method_count != -1)
1201
    return;
1202
 
1203
  jclass superclass = klass->getSuperclass();
1204
 
1205
  if (superclass != NULL && superclass->vtable_method_count == -1)
1206
    {
1207
      JvSynchronize sync (superclass);
1208
      layout_vtable_methods (superclass);
1209
    }
1210
 
1211
  int index = (superclass == NULL ? 0 : superclass->vtable_method_count);
1212
 
1213
  for (int i = 0; i < klass->method_count; ++i)
1214
    {
1215
      _Jv_Method *meth = &klass->methods[i];
1216
      _Jv_Method *super_meth = NULL;
1217
 
1218
      if (! _Jv_isVirtualMethod (meth))
1219
        continue;
1220
 
1221
      if (superclass != NULL)
1222
        {
1223
          jclass declarer;
1224
          super_meth = _Jv_LookupDeclaredMethod (superclass, meth->name,
1225
                                                 meth->signature, &declarer);
1226
          // See if this method actually overrides the other method
1227
          // we've found.
1228
          if (super_meth)
1229
            {
1230
              if (! _Jv_isVirtualMethod (super_meth)
1231
                  || ! _Jv_CheckAccess (klass, declarer,
1232
                                        super_meth->accflags))
1233
                super_meth = NULL;
1234
              else if ((super_meth->accflags
1235
                        & java::lang::reflect::Modifier::FINAL) != 0)
1236
                {
1237
                  using namespace java::lang;
1238
                  StringBuffer *sb = new StringBuffer();
1239
                  sb->append(JvNewStringLatin1("method "));
1240
                  sb->append(_Jv_GetMethodString(klass, meth));
1241
                  sb->append(JvNewStringLatin1(" overrides final method "));
1242
                  sb->append(_Jv_GetMethodString(declarer, super_meth));
1243
                  throw new VerifyError(sb->toString());
1244
                }
1245
            }
1246
        }
1247
 
1248
      if (super_meth)
1249
        meth->index = super_meth->index;
1250
      else
1251
        meth->index = index++;
1252
    }
1253
 
1254
  klass->vtable_method_count = index;
1255
}
1256
 
1257
// Set entries in VTABLE for virtual methods declared in KLASS.
1258
void
1259
_Jv_Linker::set_vtable_entries (jclass klass, _Jv_VTable *vtable)
1260
{
1261
  for (int i = klass->method_count - 1; i >= 0; i--)
1262
    {
1263
      using namespace java::lang::reflect;
1264
 
1265
      _Jv_Method *meth = &klass->methods[i];
1266
      if (meth->index == (_Jv_ushort) -1)
1267
        continue;
1268
      if ((meth->accflags & Modifier::ABSTRACT))
1269
        // FIXME: it might be nice to have a libffi trampoline here,
1270
        // so we could pass in the method name and other information.
1271
        vtable->set_method(meth->index,
1272
                           (void *) &_Jv_ThrowAbstractMethodError);
1273
      else
1274
        vtable->set_method(meth->index, meth->ncode);
1275
    }
1276
}
1277
 
1278
// Allocate and lay out the virtual method table for KLASS.  This will
1279
// also cause vtables to be generated for any non-abstract
1280
// superclasses, and virtual method layout to occur for any abstract
1281
// superclasses.  Must be called with monitor lock for KLASS held.
1282
void
1283
_Jv_Linker::make_vtable (jclass klass)
1284
{
1285
  using namespace java::lang::reflect;
1286
 
1287
  // If the vtable exists, or for interface classes, do nothing.  All
1288
  // other classes, including abstract classes, need a vtable.
1289
  if (klass->vtable != NULL || klass->isInterface())
1290
    return;
1291
 
1292
  // Ensure all the `ncode' entries are set.
1293
  klass->engine->create_ncode(klass);
1294
 
1295
  // Class must be laid out before we can create a vtable. 
1296
  if (klass->vtable_method_count == -1)
1297
    layout_vtable_methods (klass);
1298
 
1299
  // Allocate the new vtable.
1300
  _Jv_VTable *vtable = _Jv_VTable::new_vtable (klass->vtable_method_count);
1301
  klass->vtable = vtable;
1302
 
1303
  // Copy the vtable of the closest superclass.
1304
  jclass superclass = klass->superclass;
1305
  {
1306
    JvSynchronize sync (superclass);
1307
    make_vtable (superclass);
1308
  }
1309
  for (int i = 0; i < superclass->vtable_method_count; ++i)
1310
    vtable->set_method (i, superclass->vtable->get_method (i));
1311
 
1312
  // Set the class pointer and GC descriptor.
1313
  vtable->clas = klass;
1314
  vtable->gc_descr = _Jv_BuildGCDescr (klass);
1315
 
1316
  // For each virtual declared in klass, set new vtable entry or
1317
  // override an old one.
1318
  set_vtable_entries (klass, vtable);
1319
 
1320
  // Note that we don't check for abstract methods here.  We used to,
1321
  // but there is a JVMS clarification that indicates that a check
1322
  // here would be too eager.  And, a simple test case confirms this.
1323
}
1324
 
1325
// Lay out the class, allocating space for static fields and computing
1326
// offsets of instance fields.  The class lock must be held by the
1327
// caller.
1328
void
1329
_Jv_Linker::ensure_fields_laid_out (jclass klass)
1330
{
1331
  if (klass->size_in_bytes != -1)
1332
    return;
1333
 
1334
  // Compute the alignment for this type by searching through the
1335
  // superclasses and finding the maximum required alignment.  We
1336
  // could consider caching this in the Class.
1337
  int max_align = __alignof__ (java::lang::Object);
1338
  jclass super = klass->getSuperclass();
1339
  while (super != NULL)
1340
    {
1341
      // Ensure that our super has its super installed before
1342
      // recursing.
1343
      wait_for_state(super, JV_STATE_LOADING);
1344
      ensure_fields_laid_out(super);
1345
      int num = JvNumInstanceFields (super);
1346
      _Jv_Field *field = JvGetFirstInstanceField (super);
1347
      while (num > 0)
1348
        {
1349
          int field_align = get_alignment_from_class (field->type);
1350
          if (field_align > max_align)
1351
            max_align = field_align;
1352
          ++field;
1353
          --num;
1354
        }
1355
      super = super->getSuperclass();
1356
    }
1357
 
1358
  int instance_size;
1359
  int static_size = 0;
1360
 
1361
  // Although java.lang.Object is never interpreted, an interface can
1362
  // have a null superclass.  Note that we have to lay out an
1363
  // interface because it might have static fields.
1364
  if (klass->superclass)
1365
    instance_size = klass->superclass->size();
1366
  else
1367
    instance_size = java::lang::Object::class$.size();
1368
 
1369
  for (int i = 0; i < klass->field_count; i++)
1370
    {
1371
      int field_size;
1372
      int field_align;
1373
 
1374
      _Jv_Field *field = &klass->fields[i];
1375
 
1376
      if (! field->isRef ())
1377
        {
1378
          // It is safe to resolve the field here, since it's a
1379
          // primitive class, which does not cause loading to happen.
1380
          resolve_field (field, klass->loader);
1381
 
1382
          field_size = field->type->size ();
1383
          field_align = get_alignment_from_class (field->type);
1384
        }
1385
      else
1386
        {
1387
          field_size = sizeof (jobject);
1388
          field_align = __alignof__ (jobject);
1389
        }
1390
 
1391
      field->bsize = field_size;
1392
 
1393
      if ((field->flags & java::lang::reflect::Modifier::STATIC))
1394
        {
1395
          if (field->u.addr == NULL)
1396
            {
1397
              // This computes an offset into a region we'll allocate
1398
              // shortly, and then add this offset to the start
1399
              // address.
1400
              static_size       = ROUND (static_size, field_align);
1401
              field->u.boffset   = static_size;
1402
              static_size       += field_size;
1403
            }
1404
        }
1405
      else
1406
        {
1407
          instance_size      = ROUND (instance_size, field_align);
1408
          field->u.boffset   = instance_size;
1409
          instance_size     += field_size;
1410
          if (field_align > max_align)
1411
            max_align = field_align;
1412
        }
1413
    }
1414
 
1415
  if (static_size != 0)
1416
    klass->engine->allocate_static_fields (klass, static_size);
1417
 
1418
  // Set the instance size for the class.  Note that first we round it
1419
  // to the alignment required for this object; this keeps us in sync
1420
  // with our current ABI.
1421
  instance_size = ROUND (instance_size, max_align);
1422
  klass->size_in_bytes = instance_size;
1423
}
1424
 
1425
// This takes the class to state JV_STATE_LINKED.  The class lock must
1426
// be held when calling this.
1427
void
1428
_Jv_Linker::ensure_class_linked (jclass klass)
1429
{
1430
  if (klass->state >= JV_STATE_LINKED)
1431
    return;
1432
 
1433
  int state = klass->state;
1434
  try
1435
    {
1436
      // Short-circuit, so that mutually dependent classes are ok.
1437
      klass->state = JV_STATE_LINKED;
1438
 
1439
      _Jv_Constants *pool = &klass->constants;
1440
 
1441
      // Compiled classes require that their class constants be
1442
      // resolved here.  However, interpreted classes need their
1443
      // constants to be resolved lazily.  If we resolve an
1444
      // interpreted class' constants eagerly, we can end up with
1445
      // spurious IllegalAccessErrors when the constant pool contains
1446
      // a reference to a class we can't access.  This can validly
1447
      // occur in an obscure case involving the InnerClasses
1448
      // attribute.
1449
      if (! _Jv_IsInterpretedClass (klass))
1450
        {
1451
          // Resolve class constants first, since other constant pool
1452
          // entries may rely on these.
1453
          for (int index = 1; index < pool->size; ++index)
1454
            {
1455
              if (pool->tags[index] == JV_CONSTANT_Class)
1456
                resolve_pool_entry (klass, index);
1457
            }
1458
        }
1459
 
1460
#if 0  // Should be redundant now
1461
      // If superclass looks like a constant pool entry,
1462
      // resolve it now.
1463
      if ((uaddr) klass->superclass < (uaddr) pool->size)
1464
        klass->superclass = pool->data[(uaddr) klass->superclass].clazz;
1465
 
1466
      // Likewise for interfaces.
1467
      for (int i = 0; i < klass->interface_count; i++)
1468
        {
1469
          if ((uaddr) klass->interfaces[i] < (uaddr) pool->size)
1470
            klass->interfaces[i]
1471
              = pool->data[(uaddr) klass->interfaces[i]].clazz;
1472
        }
1473
#endif
1474
 
1475
      // Resolve the remaining constant pool entries.
1476
      for (int index = 1; index < pool->size; ++index)
1477
        {
1478
          if (pool->tags[index] == JV_CONSTANT_String)
1479
            {
1480
              jstring str;
1481
 
1482
              str = _Jv_NewStringUtf8Const (pool->data[index].utf8);
1483
              pool->data[index].o = str;
1484
              pool->tags[index] |= JV_CONSTANT_ResolvedFlag;
1485
            }
1486
        }
1487
 
1488
      if (klass->engine->need_resolve_string_fields())
1489
        {
1490
          jfieldID f = JvGetFirstStaticField (klass);
1491
          for (int n = JvNumStaticFields (klass); n > 0; --n)
1492
            {
1493
              int mod = f->getModifiers ();
1494
              // If we have a static String field with a non-null initial
1495
              // value, we know it points to a Utf8Const.
1496
              resolve_field(f, klass->loader);
1497
              if (f->getClass () == &java::lang::String::class$
1498
                  && (mod & java::lang::reflect::Modifier::STATIC) != 0)
1499
                {
1500
                  jstring *strp = (jstring *) f->u.addr;
1501
                  if (*strp)
1502
                    *strp = _Jv_NewStringUtf8Const ((_Jv_Utf8Const *) *strp);
1503
                }
1504
              f = f->getNextField ();
1505
            }
1506
        }
1507
 
1508
      klass->notifyAll ();
1509
 
1510
      _Jv_PushClass (klass);
1511
    }
1512
  catch (java::lang::Throwable *t)
1513
    {
1514
      klass->state = state;
1515
      throw t;
1516
    }
1517
}
1518
 
1519
// This ensures that symbolic superclass and superinterface references
1520
// are resolved for the indicated class.  This must be called with the
1521
// class lock held.
1522
void
1523
_Jv_Linker::ensure_supers_installed (jclass klass)
1524
{
1525
  resolve_class_ref (klass, &klass->superclass);
1526
  // An interface won't have a superclass.
1527
  if (klass->superclass)
1528
    wait_for_state (klass->superclass, JV_STATE_LOADING);
1529
 
1530
  for (int i = 0; i < klass->interface_count; ++i)
1531
    {
1532
      resolve_class_ref (klass, &klass->interfaces[i]);
1533
      wait_for_state (klass->interfaces[i], JV_STATE_LOADING);
1534
    }
1535
}
1536
 
1537
// This adds missing `Miranda methods' to a class.
1538
void
1539
_Jv_Linker::add_miranda_methods (jclass base, jclass iface_class)
1540
{
1541
  // Note that at this point, all our supers, and the supers of all
1542
  // our superclasses and superinterfaces, will have been installed.
1543
 
1544
  for (int i = 0; i < iface_class->interface_count; ++i)
1545
    {
1546
      jclass interface = iface_class->interfaces[i];
1547
 
1548
      for (int j = 0; j < interface->method_count; ++j)
1549
        {
1550
          _Jv_Method *meth = &interface->methods[j];
1551
          // Don't bother with <clinit>.
1552
          if (meth->name->first() == '<')
1553
            continue;
1554
          _Jv_Method *new_meth = _Jv_LookupDeclaredMethod (base, meth->name,
1555
                                                           meth->signature);
1556
          if (! new_meth)
1557
            {
1558
              // We assume that such methods are very unlikely, so we
1559
              // just reallocate the method array each time one is
1560
              // found.  This greatly simplifies the searching --
1561
              // otherwise we have to make sure that each such method
1562
              // found is really unique among all superinterfaces.
1563
              int new_count = base->method_count + 1;
1564
              _Jv_Method *new_m
1565
                = (_Jv_Method *) _Jv_AllocBytes (sizeof (_Jv_Method)
1566
                                                 * new_count);
1567
              memcpy (new_m, base->methods,
1568
                      sizeof (_Jv_Method) * base->method_count);
1569
 
1570
              // Add new method.
1571
              new_m[base->method_count] = *meth;
1572
              new_m[base->method_count].index = (_Jv_ushort) -1;
1573
              new_m[base->method_count].accflags
1574
                |= java::lang::reflect::Modifier::INVISIBLE;
1575
 
1576
              base->methods = new_m;
1577
              base->method_count = new_count;
1578
            }
1579
        }
1580
 
1581
      wait_for_state (interface, JV_STATE_LOADED);
1582
      add_miranda_methods (base, interface);
1583
    }
1584
}
1585
 
1586
// This ensures that the class' method table is "complete".  This must
1587
// be called with the class lock held.
1588
void
1589
_Jv_Linker::ensure_method_table_complete (jclass klass)
1590
{
1591
  if (klass->vtable != NULL)
1592
    return;
1593
 
1594
  // We need our superclass to have its own Miranda methods installed.
1595
  if (! klass->isInterface())
1596
    wait_for_state (klass->getSuperclass (), JV_STATE_LOADED);
1597
 
1598
  // A class might have so-called "Miranda methods".  This is a method
1599
  // that is declared in an interface and not re-declared in an
1600
  // abstract class.  Some compilers don't emit declarations for such
1601
  // methods in the class; this will give us problems since we expect
1602
  // a declaration for any method requiring a vtable entry.  We handle
1603
  // this here by searching for such methods and constructing new
1604
  // internal declarations for them.  Note that we do this
1605
  // unconditionally, and not just for abstract classes, to correctly
1606
  // account for cases where a class is modified to be concrete and
1607
  // still incorrectly inherits an abstract method.
1608
  int pre_count = klass->method_count;
1609
  add_miranda_methods (klass, klass);
1610
 
1611
  // Let the execution engine know that we've added methods.
1612
  if (klass->method_count != pre_count)
1613
    klass->engine->post_miranda_hook(klass);
1614
}
1615
 
1616
// Verify a class.  Must be called with class lock held.
1617
void
1618
_Jv_Linker::verify_class (jclass klass)
1619
{
1620
  klass->engine->verify(klass);
1621
}
1622
 
1623
// Check the assertions contained in the type assertion table for KLASS.
1624
// This is the equivilent of bytecode verification for native, BC-ABI code.
1625
void
1626
_Jv_Linker::verify_type_assertions (jclass klass)
1627
{
1628
  if (debug_link)
1629
    fprintf (stderr, "Evaluating type assertions for %s:\n",
1630
             klass->name->chars());
1631
 
1632
  if (klass->assertion_table == NULL)
1633
    return;
1634
 
1635
  for (int i = 0;; i++)
1636
    {
1637
      int assertion_code = klass->assertion_table[i].assertion_code;
1638
      _Jv_Utf8Const *op1 = klass->assertion_table[i].op1;
1639
      _Jv_Utf8Const *op2 = klass->assertion_table[i].op2;
1640
 
1641
      if (assertion_code == JV_ASSERT_END_OF_TABLE)
1642
        return;
1643
      else if (assertion_code == JV_ASSERT_TYPES_COMPATIBLE)
1644
        {
1645
          if (debug_link)
1646
            {
1647
              fprintf (stderr, "  code=%i, operand A=%s B=%s\n",
1648
                       assertion_code, op1->chars(), op2->chars());
1649
            }
1650
 
1651
          // The operands are class signatures. op1 is the source, 
1652
          // op2 is the target.
1653
          jclass cl1 = _Jv_FindClassFromSignature (op1->chars(),
1654
            klass->getClassLoaderInternal());
1655
          jclass cl2 = _Jv_FindClassFromSignature (op2->chars(),
1656
            klass->getClassLoaderInternal());
1657
 
1658
          // If the class doesn't exist, ignore the assertion. An exception
1659
          // will be thrown later if an attempt is made to actually 
1660
          // instantiate the class.
1661
          if (cl1 == NULL || cl2 == NULL)
1662
            continue;
1663
 
1664
          if (! _Jv_IsAssignableFromSlow (cl1, cl2))
1665
            {
1666
              jstring s = JvNewStringUTF ("Incompatible types: In class ");
1667
              s = s->concat (klass->getName());
1668
              s = s->concat (JvNewStringUTF (": "));
1669
              s = s->concat (cl1->getName());
1670
              s = s->concat (JvNewStringUTF (" is not assignable to "));
1671
              s = s->concat (cl2->getName());
1672
              throw new java::lang::VerifyError (s);
1673
            }
1674
        }
1675
      else if (assertion_code == JV_ASSERT_IS_INSTANTIABLE)
1676
        {
1677
          // TODO: Implement this.
1678
        }
1679
      // Unknown assertion codes are ignored, for forwards-compatibility.
1680
    }
1681
}
1682
 
1683
void
1684
_Jv_Linker::print_class_loaded (jclass klass)
1685
{
1686
  char *codesource = NULL;
1687
  if (klass->protectionDomain != NULL)
1688
    {
1689
      java::security::CodeSource *cs
1690
        = klass->protectionDomain->getCodeSource();
1691
      if (cs != NULL)
1692
        {
1693
          jstring css = cs->toString();
1694
          int len = JvGetStringUTFLength(css);
1695
          codesource = (char *) _Jv_AllocBytes(len + 1);
1696
          JvGetStringUTFRegion(css, 0, css->length(), codesource);
1697
          codesource[len] = '\0';
1698
        }
1699
    }
1700
  if (codesource == NULL)
1701
    codesource = "<no code source>";
1702
 
1703
  char *abi;
1704
  if (_Jv_IsInterpretedClass (klass))
1705
    abi = "bytecode";
1706
  else if (_Jv_IsBinaryCompatibilityABI (klass))
1707
    abi = "BC-compiled";
1708
  else
1709
    abi = "pre-compiled";
1710
 
1711
  fprintf (stderr, "[Loaded (%s) %s from %s]\n", abi, klass->name->chars(),
1712
           codesource);
1713
}
1714
 
1715
// FIXME: mention invariants and stuff.
1716
void
1717
_Jv_Linker::wait_for_state (jclass klass, int state)
1718
{
1719
  if (klass->state >= state)
1720
    return;
1721
 
1722
  JvSynchronize sync (klass);
1723
 
1724
  // This is similar to the strategy for class initialization.  If we
1725
  // already hold the lock, just leave.
1726
  java::lang::Thread *self = java::lang::Thread::currentThread();
1727
  while (klass->state <= state
1728
         && klass->thread
1729
         && klass->thread != self)
1730
    klass->wait ();
1731
 
1732
  java::lang::Thread *save = klass->thread;
1733
  klass->thread = self;
1734
 
1735
  // Print some debugging info if requested.  Interpreted classes are
1736
  // handled in defineclass, so we only need to handle the two
1737
  // pre-compiled cases here.
1738
  if (gcj::verbose_class_flag
1739
      && (klass->state == JV_STATE_COMPILED
1740
          || klass->state == JV_STATE_PRELOADING)
1741
      && ! _Jv_IsInterpretedClass (klass))
1742
    print_class_loaded (klass);
1743
 
1744
  try
1745
    {
1746
      if (state >= JV_STATE_LOADING && klass->state < JV_STATE_LOADING)
1747
        {
1748
          ensure_supers_installed (klass);
1749
          klass->set_state(JV_STATE_LOADING);
1750
        }
1751
 
1752
      if (state >= JV_STATE_LOADED && klass->state < JV_STATE_LOADED)
1753
        {
1754
          ensure_method_table_complete (klass);
1755
          klass->set_state(JV_STATE_LOADED);
1756
        }
1757
 
1758
      if (state >= JV_STATE_PREPARED && klass->state < JV_STATE_PREPARED)
1759
        {
1760
          ensure_fields_laid_out (klass);
1761
          make_vtable (klass);
1762
          layout_interface_methods (klass);
1763
          prepare_constant_time_tables (klass);
1764
          klass->set_state(JV_STATE_PREPARED);
1765
        }
1766
 
1767
      if (state >= JV_STATE_LINKED && klass->state < JV_STATE_LINKED)
1768
        {
1769
          if (gcj::verifyClasses)
1770
            verify_class (klass);
1771
 
1772
          ensure_class_linked (klass);
1773
          link_exception_table (klass);
1774
          link_symbol_table (klass);
1775
          klass->set_state(JV_STATE_LINKED);
1776
        }
1777
    }
1778
  catch (java::lang::Throwable *exc)
1779
    {
1780
      klass->thread = save;
1781
      klass->set_state(JV_STATE_ERROR);
1782
      throw exc;
1783
    }
1784
 
1785
  klass->thread = save;
1786
 
1787
  if (klass->state == JV_STATE_ERROR)
1788
    throw new java::lang::LinkageError;
1789
}

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