Object.h (throwNoSuchMethodError): New method.
[gcc.git] / libjava / link.cc
1 // 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 }