source: branches/libc-0.6/src/gcc/libobjc/sendmsg.c

Last change on this file was 1392, checked in by bird, 21 years ago

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Line 
1/* GNU Objective C Runtime message lookup
2 Copyright (C) 1993, 1995, 1996, 1997, 1998,
3 2001, 2002 Free Software Foundation, Inc.
4 Contributed by Kresten Krab Thorup
5
6This file is part of GNU CC.
7
8GNU CC is free software; you can redistribute it and/or modify it under the
9terms of the GNU General Public License as published by the Free Software
10Foundation; either version 2, or (at your option) any later version.
11
12GNU CC is distributed in the hope that it will be useful, but WITHOUT ANY
13WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS
14FOR A PARTICULAR PURPOSE. See the GNU General Public License for more
15details.
16
17You should have received a copy of the GNU General Public License along with
18GNU CC; see the file COPYING. If not, write to the Free Software
19Foundation, 59 Temple Place - Suite 330,
20Boston, MA 02111-1307, USA. */
21
22/* As a special exception, if you link this library with files compiled with
23 GCC to produce an executable, this does not cause the resulting executable
24 to be covered by the GNU General Public License. This exception does not
25 however invalidate any other reasons why the executable file might be
26 covered by the GNU General Public License. */
27
28#include "tconfig.h"
29#include "runtime.h"
30#include "sarray.h"
31#include "encoding.h"
32#include "runtime-info.h"
33
34/* this is how we hack STRUCT_VALUE to be 1 or 0 */
35#define gen_rtx(args...) 1
36#define gen_rtx_MEM(args...) 1
37#define gen_rtx_REG(args...) 1
38#define rtx int
39
40#if ! defined (STRUCT_VALUE) || STRUCT_VALUE == 0
41#define INVISIBLE_STRUCT_RETURN 1
42#else
43#define INVISIBLE_STRUCT_RETURN 0
44#endif
45
46/* The uninstalled dispatch table */
47struct sarray *__objc_uninstalled_dtable = 0; /* !T:MUTEX */
48
49/* Hook for method forwarding. If it is set, is invoked to return a
50 function that performs the real forwarding. Otherwise the libgcc
51 based functions (__builtin_apply and friends) are used. */
52IMP (*__objc_msg_forward) (SEL) = NULL;
53
54/* Send +initialize to class */
55static void __objc_send_initialize (Class);
56
57static void __objc_install_dispatch_table_for_class (Class);
58
59/* Forward declare some functions */
60static void __objc_init_install_dtable (id, SEL);
61
62/* Various forwarding functions that are used based upon the
63 return type for the selector.
64 __objc_block_forward for structures.
65 __objc_double_forward for floats/doubles.
66 __objc_word_forward for pointers or types that fit in registers.
67 */
68static double __objc_double_forward (id, SEL, ...);
69static id __objc_word_forward (id, SEL, ...);
70typedef struct { id many[8]; } __big;
71#if INVISIBLE_STRUCT_RETURN
72static __big
73#else
74static id
75#endif
76__objc_block_forward (id, SEL, ...);
77static Method_t search_for_method_in_hierarchy (Class class, SEL sel);
78Method_t search_for_method_in_list (MethodList_t list, SEL op);
79id nil_method (id, SEL);
80
81/* Given a selector, return the proper forwarding implementation. */
82__inline__
83IMP
84__objc_get_forward_imp (SEL sel)
85{
86 /* If a custom forwarding hook was registered, try getting a forwarding
87 * function from it. */
88 if (__objc_msg_forward)
89 {
90 IMP result;
91 if ((result = __objc_msg_forward (sel)) != NULL)
92 return result;
93 }
94
95 /* In all other cases, use the default forwarding functions built using
96 * __builtin_apply and friends. */
97 {
98 const char *t = sel->sel_types;
99
100 if (t && (*t == '[' || *t == '(' || *t == '{')
101#ifdef OBJC_MAX_STRUCT_BY_VALUE
102 && objc_sizeof_type (t) > OBJC_MAX_STRUCT_BY_VALUE
103#endif
104 )
105 return (IMP)__objc_block_forward;
106 else if (t && (*t == 'f' || *t == 'd'))
107 return (IMP)__objc_double_forward;
108 else
109 return (IMP)__objc_word_forward;
110 }
111}
112
113/* Given a class and selector, return the selector's implementation. */
114__inline__
115IMP
116get_imp (Class class, SEL sel)
117{
118 void *res = sarray_get_safe (class->dtable, (size_t) sel->sel_id);
119 if (res == 0)
120 {
121 /* Not a valid method */
122 if (class->dtable == __objc_uninstalled_dtable)
123 {
124 /* The dispatch table needs to be installed. */
125 objc_mutex_lock (__objc_runtime_mutex);
126 __objc_install_dispatch_table_for_class (class);
127 objc_mutex_unlock (__objc_runtime_mutex);
128 /* Call ourselves with the installed dispatch table
129 and get the real method */
130 res = get_imp (class, sel);
131 }
132 else
133 {
134 /* The dispatch table has been installed so the
135 method just doesn't exist for the class.
136 Return the forwarding implementation. */
137 res = __objc_get_forward_imp (sel);
138 }
139 }
140 return res;
141}
142
143/* Query if an object can respond to a selector, returns YES if the
144object implements the selector otherwise NO. Does not check if the
145method can be forwarded. */
146__inline__
147BOOL
148__objc_responds_to (id object, SEL sel)
149{
150 void *res;
151
152 /* Install dispatch table if need be */
153 if (object->class_pointer->dtable == __objc_uninstalled_dtable)
154 {
155 objc_mutex_lock (__objc_runtime_mutex);
156 __objc_install_dispatch_table_for_class (object->class_pointer);
157 objc_mutex_unlock (__objc_runtime_mutex);
158 }
159
160 /* Get the method from the dispatch table */
161 res = sarray_get_safe (object->class_pointer->dtable, (size_t) sel->sel_id);
162 return (res != 0);
163}
164
165/* This is the lookup function. All entries in the table are either a
166 valid method *or* zero. If zero then either the dispatch table
167 needs to be installed or it doesn't exist and forwarding is attempted. */
168__inline__
169IMP
170objc_msg_lookup (id receiver, SEL op)
171{
172 IMP result;
173 if (receiver)
174 {
175 result = sarray_get_safe (receiver->class_pointer->dtable,
176 (sidx)op->sel_id);
177 if (result == 0)
178 {
179 /* Not a valid method */
180 if (receiver->class_pointer->dtable == __objc_uninstalled_dtable)
181 {
182 /* The dispatch table needs to be installed.
183 This happens on the very first method call to the class. */
184 __objc_init_install_dtable (receiver, op);
185
186 /* Get real method for this in newly installed dtable */
187 result = get_imp (receiver->class_pointer, op);
188 }
189 else
190 {
191 /* The dispatch table has been installed so the
192 method just doesn't exist for the class.
193 Attempt to forward the method. */
194 result = __objc_get_forward_imp (op);
195 }
196 }
197 return result;
198 }
199 else
200 return (IMP)nil_method;
201}
202
203IMP
204objc_msg_lookup_super (Super_t super, SEL sel)
205{
206 if (super->self)
207 return get_imp (super->class, sel);
208 else
209 return (IMP)nil_method;
210}
211
212int method_get_sizeof_arguments (Method *);
213
214retval_t
215objc_msg_sendv (id object, SEL op, arglist_t arg_frame)
216{
217 Method *m = class_get_instance_method (object->class_pointer, op);
218 const char *type;
219 *((id *) method_get_first_argument (m, arg_frame, &type)) = object;
220 *((SEL *) method_get_next_argument (arg_frame, &type)) = op;
221 return __builtin_apply ((apply_t) m->method_imp,
222 arg_frame,
223 method_get_sizeof_arguments (m));
224}
225
226void
227__objc_init_dispatch_tables ()
228{
229 __objc_uninstalled_dtable = sarray_new (200, 0);
230}
231
232/* This function is called by objc_msg_lookup when the
233 dispatch table needs to be installed; thus it is called once
234 for each class, namely when the very first message is sent to it. */
235static void
236__objc_init_install_dtable (id receiver, SEL op __attribute__ ((__unused__)))
237{
238 /* This may happen, if the programmer has taken the address of a
239 method before the dtable was initialized... too bad for him! */
240 if (receiver->class_pointer->dtable != __objc_uninstalled_dtable)
241 return;
242
243 objc_mutex_lock (__objc_runtime_mutex);
244
245 if (CLS_ISCLASS (receiver->class_pointer))
246 {
247 /* receiver is an ordinary object */
248 assert (CLS_ISCLASS (receiver->class_pointer));
249
250 /* install instance methods table */
251 __objc_install_dispatch_table_for_class (receiver->class_pointer);
252
253 /* call +initialize -- this will in turn install the factory
254 dispatch table if not already done :-) */
255 __objc_send_initialize (receiver->class_pointer);
256 }
257 else
258 {
259 /* receiver is a class object */
260 assert (CLS_ISCLASS ((Class)receiver));
261 assert (CLS_ISMETA (receiver->class_pointer));
262
263 /* Install real dtable for factory methods */
264 __objc_install_dispatch_table_for_class (receiver->class_pointer);
265
266 __objc_send_initialize ((Class)receiver);
267 }
268 objc_mutex_unlock (__objc_runtime_mutex);
269}
270
271/* Install dummy table for class which causes the first message to
272 that class (or instances hereof) to be initialized properly */
273void
274__objc_install_premature_dtable (Class class)
275{
276 assert (__objc_uninstalled_dtable);
277 class->dtable = __objc_uninstalled_dtable;
278}
279
280/* Send +initialize to class if not already done */
281static void
282__objc_send_initialize (Class class)
283{
284 /* This *must* be a class object */
285 assert (CLS_ISCLASS (class));
286 assert (! CLS_ISMETA (class));
287
288 if (! CLS_ISINITIALIZED (class))
289 {
290 CLS_SETINITIALIZED (class);
291 CLS_SETINITIALIZED (class->class_pointer);
292
293 /* Create the garbage collector type memory description */
294 __objc_generate_gc_type_description (class);
295
296 if (class->super_class)
297 __objc_send_initialize (class->super_class);
298
299 {
300 SEL op = sel_register_name ("initialize");
301 IMP imp = 0;
302 MethodList_t method_list = class->class_pointer->methods;
303
304 while (method_list) {
305 int i;
306 Method_t method;
307
308 for (i = 0; i < method_list->method_count; i++) {
309 method = &(method_list->method_list[i]);
310 if (method->method_name
311 && method->method_name->sel_id == op->sel_id) {
312 imp = method->method_imp;
313 break;
314 }
315 }
316
317 if (imp)
318 break;
319
320 method_list = method_list->method_next;
321
322 }
323 if (imp)
324 (*imp) ((id) class, op);
325
326 }
327 }
328}
329
330/* Walk on the methods list of class and install the methods in the reverse
331 order of the lists. Since methods added by categories are before the methods
332 of class in the methods list, this allows categories to substitute methods
333 declared in class. However if more than one category replaces the same
334 method nothing is guaranteed about what method will be used.
335 Assumes that __objc_runtime_mutex is locked down. */
336static void
337__objc_install_methods_in_dtable (Class class, MethodList_t method_list)
338{
339 int i;
340
341 if (! method_list)
342 return;
343
344 if (method_list->method_next)
345 __objc_install_methods_in_dtable (class, method_list->method_next);
346
347 for (i = 0; i < method_list->method_count; i++)
348 {
349 Method_t method = &(method_list->method_list[i]);
350 sarray_at_put_safe (class->dtable,
351 (sidx) method->method_name->sel_id,
352 method->method_imp);
353 }
354}
355
356/* Assumes that __objc_runtime_mutex is locked down. */
357static void
358__objc_install_dispatch_table_for_class (Class class)
359{
360 Class super;
361
362 /* If the class has not yet had its class links resolved, we must
363 re-compute all class links */
364 if (! CLS_ISRESOLV (class))
365 __objc_resolve_class_links ();
366
367 super = class->super_class;
368
369 if (super != 0 && (super->dtable == __objc_uninstalled_dtable))
370 __objc_install_dispatch_table_for_class (super);
371
372 /* Allocate dtable if necessary */
373 if (super == 0)
374 {
375 objc_mutex_lock (__objc_runtime_mutex);
376 class->dtable = sarray_new (__objc_selector_max_index, 0);
377 objc_mutex_unlock (__objc_runtime_mutex);
378 }
379 else
380 class->dtable = sarray_lazy_copy (super->dtable);
381
382 __objc_install_methods_in_dtable (class, class->methods);
383}
384
385void
386__objc_update_dispatch_table_for_class (Class class)
387{
388 Class next;
389 struct sarray *arr;
390
391 /* not yet installed -- skip it */
392 if (class->dtable == __objc_uninstalled_dtable)
393 return;
394
395 objc_mutex_lock (__objc_runtime_mutex);
396
397 arr = class->dtable;
398 __objc_install_premature_dtable (class); /* someone might require it... */
399 sarray_free (arr); /* release memory */
400
401 /* could have been lazy... */
402 __objc_install_dispatch_table_for_class (class);
403
404 if (class->subclass_list) /* Traverse subclasses */
405 for (next = class->subclass_list; next; next = next->sibling_class)
406 __objc_update_dispatch_table_for_class (next);
407
408 objc_mutex_unlock (__objc_runtime_mutex);
409}
410
411
412/* This function adds a method list to a class. This function is
413 typically called by another function specific to the run-time. As
414 such this function does not worry about thread safe issues.
415
416 This one is only called for categories. Class objects have their
417 methods installed right away, and their selectors are made into
418 SEL's by the function __objc_register_selectors_from_class. */
419void
420class_add_method_list (Class class, MethodList_t list)
421{
422 int i;
423
424 /* Passing of a linked list is not allowed. Do multiple calls. */
425 assert (! list->method_next);
426
427 /* Check for duplicates. */
428 for (i = 0; i < list->method_count; ++i)
429 {
430 Method_t method = &list->method_list[i];
431
432 if (method->method_name) /* Sometimes these are NULL */
433 {
434 /* This is where selector names are transmogrified to SEL's */
435 method->method_name =
436 sel_register_typed_name ((const char *) method->method_name,
437 method->method_types);
438 }
439 }
440
441 /* Add the methods to the class's method list. */
442 list->method_next = class->methods;
443 class->methods = list;
444
445 /* Update the dispatch table of class */
446 __objc_update_dispatch_table_for_class (class);
447}
448
449Method_t
450class_get_instance_method (Class class, SEL op)
451{
452 return search_for_method_in_hierarchy (class, op);
453}
454
455Method_t
456class_get_class_method (MetaClass class, SEL op)
457{
458 return search_for_method_in_hierarchy (class, op);
459}
460
461
462/* Search for a method starting from the current class up its hierarchy.
463 Return a pointer to the method's method structure if found. NULL
464 otherwise. */
465
466static Method_t
467search_for_method_in_hierarchy (Class cls, SEL sel)
468{
469 Method_t method = NULL;
470 Class class;
471
472 if (! sel_is_mapped (sel))
473 return NULL;
474
475 /* Scan the method list of the class. If the method isn't found in the
476 list then step to its super class. */
477 for (class = cls; ((! method) && class); class = class->super_class)
478 method = search_for_method_in_list (class->methods, sel);
479
480 return method;
481}
482
483
484
485/* Given a linked list of method and a method's name. Search for the named
486 method's method structure. Return a pointer to the method's method
487 structure if found. NULL otherwise. */
488Method_t
489search_for_method_in_list (MethodList_t list, SEL op)
490{
491 MethodList_t method_list = list;
492
493 if (! sel_is_mapped (op))
494 return NULL;
495
496 /* If not found then we'll search the list. */
497 while (method_list)
498 {
499 int i;
500
501 /* Search the method list. */
502 for (i = 0; i < method_list->method_count; ++i)
503 {
504 Method_t method = &method_list->method_list[i];
505
506 if (method->method_name)
507 if (method->method_name->sel_id == op->sel_id)
508 return method;
509 }
510
511 /* The method wasn't found. Follow the link to the next list of
512 methods. */
513 method_list = method_list->method_next;
514 }
515
516 return NULL;
517}
518
519static retval_t __objc_forward (id object, SEL sel, arglist_t args);
520
521/* Forwarding pointers/integers through the normal registers */
522static id
523__objc_word_forward (id rcv, SEL op, ...)
524{
525 void *args, *res;
526
527 args = __builtin_apply_args ();
528 res = __objc_forward (rcv, op, args);
529 if (res)
530 __builtin_return (res);
531 else
532 return res;
533}
534
535/* Specific routine for forwarding floats/double because of
536 architectural differences on some processors. i386s for
537 example which uses a floating point stack versus general
538 registers for floating point numbers. This forward routine
539 makes sure that GCC restores the proper return values */
540static double
541__objc_double_forward (id rcv, SEL op, ...)
542{
543 void *args, *res;
544
545 args = __builtin_apply_args ();
546 res = __objc_forward (rcv, op, args);
547 __builtin_return (res);
548}
549
550#if INVISIBLE_STRUCT_RETURN
551static __big
552#else
553static id
554#endif
555__objc_block_forward (id rcv, SEL op, ...)
556{
557 void *args, *res;
558
559 args = __builtin_apply_args ();
560 res = __objc_forward (rcv, op, args);
561 if (res)
562 __builtin_return (res);
563 else
564#if INVISIBLE_STRUCT_RETURN
565 return (__big) {{0, 0, 0, 0, 0, 0, 0, 0}};
566#else
567 return nil;
568#endif
569}
570
571
572/* This function is installed in the dispatch table for all methods which are
573 not implemented. Thus, it is called when a selector is not recognized. */
574static retval_t
575__objc_forward (id object, SEL sel, arglist_t args)
576{
577 IMP imp;
578 static SEL frwd_sel = 0; /* !T:SAFE2 */
579 SEL err_sel;
580
581 /* first try if the object understands forward:: */
582 if (! frwd_sel)
583 frwd_sel = sel_get_any_uid ("forward::");
584
585 if (__objc_responds_to (object, frwd_sel))
586 {
587 imp = get_imp (object->class_pointer, frwd_sel);
588 return (*imp) (object, frwd_sel, sel, args);
589 }
590
591 /* If the object recognizes the doesNotRecognize: method then we're going
592 to send it. */
593 err_sel = sel_get_any_uid ("doesNotRecognize:");
594 if (__objc_responds_to (object, err_sel))
595 {
596 imp = get_imp (object->class_pointer, err_sel);
597 return (*imp) (object, err_sel, sel);
598 }
599
600 /* The object doesn't recognize the method. Check for responding to
601 error:. If it does then sent it. */
602 {
603 char msg[256 + strlen ((const char *) sel_get_name (sel))
604 + strlen ((const char *) object->class_pointer->name)];
605
606 sprintf (msg, "(%s) %s does not recognize %s",
607 (CLS_ISMETA (object->class_pointer)
608 ? "class"
609 : "instance" ),
610 object->class_pointer->name, sel_get_name (sel));
611
612 err_sel = sel_get_any_uid ("error:");
613 if (__objc_responds_to (object, err_sel))
614 {
615 imp = get_imp (object->class_pointer, err_sel);
616 return (*imp) (object, sel_get_any_uid ("error:"), msg);
617 }
618
619 /* The object doesn't respond to doesNotRecognize: or error:; Therefore,
620 a default action is taken. */
621 objc_error (object, OBJC_ERR_UNIMPLEMENTED, "%s\n", msg);
622
623 return 0;
624 }
625}
626
627void
628__objc_print_dtable_stats ()
629{
630 int total = 0;
631
632 objc_mutex_lock (__objc_runtime_mutex);
633
634#ifdef OBJC_SPARSE2
635 printf ("memory usage: (%s)\n", "2-level sparse arrays");
636#else
637 printf ("memory usage: (%s)\n", "3-level sparse arrays");
638#endif
639
640 printf ("arrays: %d = %ld bytes\n", narrays,
641 (long) narrays * sizeof (struct sarray));
642 total += narrays * sizeof (struct sarray);
643 printf ("buckets: %d = %ld bytes\n", nbuckets,
644 (long) nbuckets * sizeof (struct sbucket));
645 total += nbuckets * sizeof (struct sbucket);
646
647 printf ("idxtables: %d = %ld bytes\n",
648 idxsize, (long) idxsize * sizeof (void *));
649 total += idxsize * sizeof (void *);
650 printf ("-----------------------------------\n");
651 printf ("total: %d bytes\n", total);
652 printf ("===================================\n");
653
654 objc_mutex_unlock (__objc_runtime_mutex);
655}
656
657/* Returns the uninstalled dispatch table indicator.
658 If a class' dispatch table points to __objc_uninstalled_dtable
659 then that means it needs its dispatch table to be installed. */
660__inline__
661struct sarray *
662objc_get_uninstalled_dtable ()
663{
664 return __objc_uninstalled_dtable;
665}
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