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1 /* Load a shared object at runtime, relocate it, and run its initializer.
2 Copyright (C) 1996-2001, 2002, 2003, 2004 Free Software Foundation, Inc.
3 This file is part of the GNU C Library.
4
5 The GNU C Library is free software; you can redistribute it and/or
6 modify it under the terms of the GNU Lesser General Public
7 License as published by the Free Software Foundation; either
8 version 2.1 of the License, or (at your option) any later version.
9
10 The GNU C Library is distributed in the hope that it will be useful,
11 but WITHOUT ANY WARRANTY; without even the implied warranty of
12 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
13 Lesser General Public License for more details.
14
15 You should have received a copy of the GNU Lesser General Public
16 License along with the GNU C Library; if not, write to the Free
17 Software Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA
18 02111-1307 USA. */
19
20 #include <assert.h>
21 #include <dlfcn.h>
22 #include <errno.h>
23 #include <libintl.h>
24 #include <stdio.h>
25 #include <stdlib.h>
26 #include <string.h>
27 #include <unistd.h>
28 #include <sys/mman.h> /* Check whether MAP_COPY is defined. */
29 #include <sys/param.h>
30 #include <bits/libc-lock.h>
31 #include <ldsodefs.h>
32 #include <bp-sym.h>
33 #include <caller.h>
34
35 #include <dl-dst.h>
36
37
38 #ifndef SHARED
39 /* Giving this initialized value preallocates some surplus bytes in the
40 static TLS area, see __libc_setup_tls (libc-tls.c). */
41 size_t _dl_tls_static_size = 2048;
42 #endif
43
44 extern ElfW(Addr) _dl_sysdep_start (void **start_argptr,
45 void (*dl_main) (const ElfW(Phdr) *phdr,
46 ElfW(Word) phnum,
47 ElfW(Addr) *user_entry));
48 weak_extern (BP_SYM (_dl_sysdep_start))
49
50 extern int __libc_multiple_libcs; /* Defined in init-first.c. */
51
52 extern int __libc_argc attribute_hidden;
53 extern char **__libc_argv attribute_hidden;
54
55 extern char **__environ;
56
57 /* Undefine the following for debugging. */
58 /* #define SCOPE_DEBUG 1 */
59 #ifdef SCOPE_DEBUG
60 static void show_scope (struct link_map *new);
61 #endif
62
63 /* We must be carefull not to leave us in an inconsistent state. Thus we
64 catch any error and re-raise it after cleaning up. */
65
66 struct dl_open_args
67 {
68 const char *file;
69 int mode;
70 /* This is the caller of the dlopen() function. */
71 const void *caller_dlopen;
72 /* This is the caller if _dl_open(). */
73 const void *caller_dl_open;
74 struct link_map *map;
75 };
76
77
78 static int
79 add_to_global (struct link_map *new)
80 {
81 struct link_map **new_global;
82 unsigned int to_add = 0;
83 unsigned int cnt;
84
85 /* Count the objects we have to put in the global scope. */
86 for (cnt = 0; cnt < new->l_searchlist.r_nlist; ++cnt)
87 if (new->l_searchlist.r_list[cnt]->l_global == 0)
88 ++to_add;
89
90 /* The symbols of the new objects and its dependencies are to be
91 introduced into the global scope that will be used to resolve
92 references from other dynamically-loaded objects.
93
94 The global scope is the searchlist in the main link map. We
95 extend this list if necessary. There is one problem though:
96 since this structure was allocated very early (before the libc
97 is loaded) the memory it uses is allocated by the malloc()-stub
98 in the ld.so. When we come here these functions are not used
99 anymore. Instead the malloc() implementation of the libc is
100 used. But this means the block from the main map cannot be used
101 in an realloc() call. Therefore we allocate a completely new
102 array the first time we have to add something to the locale scope. */
103
104 if (GL(dl_global_scope_alloc) == 0)
105 {
106 /* This is the first dynamic object given global scope. */
107 GL(dl_global_scope_alloc) = GL(dl_main_searchlist)->r_nlist + to_add + 8;
108 new_global = (struct link_map **)
109 malloc (GL(dl_global_scope_alloc) * sizeof (struct link_map *));
110 if (new_global == NULL)
111 {
112 GL(dl_global_scope_alloc) = 0;
113 nomem:
114 GLRO(dl_signal_error) (ENOMEM, new->l_libname->name, NULL,
115 N_("cannot extend global scope"));
116 return 1;
117 }
118
119 /* Copy over the old entries. */
120 memcpy (new_global, GL(dl_main_searchlist)->r_list,
121 (GL(dl_main_searchlist)->r_nlist * sizeof (struct link_map *)));
122
123 GL(dl_main_searchlist)->r_list = new_global;
124 }
125 else if (GL(dl_main_searchlist)->r_nlist + to_add
126 > GL(dl_global_scope_alloc))
127 {
128 /* We have to extend the existing array of link maps in the
129 main map. */
130 new_global = (struct link_map **)
131 realloc (GL(dl_main_searchlist)->r_list,
132 ((GL(dl_global_scope_alloc) + to_add + 8)
133 * sizeof (struct link_map *)));
134 if (new_global == NULL)
135 goto nomem;
136
137 GL(dl_global_scope_alloc) += to_add + 8;
138 GL(dl_main_searchlist)->r_list = new_global;
139 }
140
141 /* Now add the new entries. */
142 for (cnt = 0; cnt < new->l_searchlist.r_nlist; ++cnt)
143 {
144 struct link_map *map = new->l_searchlist.r_list[cnt];
145
146 if (map->l_global == 0)
147 {
148 map->l_global = 1;
149 GL(dl_main_searchlist)->r_list[GL(dl_main_searchlist)->r_nlist]
150 = map;
151 ++GL(dl_main_searchlist)->r_nlist;
152 }
153 }
154
155 return 0;
156 }
157
158
159 static void
160 dl_open_worker (void *a)
161 {
162 struct dl_open_args *args = a;
163 const char *file = args->file;
164 int mode = args->mode;
165 struct link_map *new, *l;
166 const char *dst;
167 int lazy;
168 unsigned int i;
169 #ifdef USE_TLS
170 bool any_tls;
171 #endif
172
173 /* Check whether _dl_open() has been called from a valid DSO. */
174 if (__check_caller (args->caller_dl_open, allow_libc|allow_libdl) != 0)
175 GLRO(dl_signal_error) (0, "dlopen", NULL, N_("invalid caller"));
176
177 /* Maybe we have to expand a DST. */
178 dst = strchr (file, '$');
179 if (__builtin_expect (dst != NULL, 0))
180 {
181 const void *caller_dlopen = args->caller_dlopen;
182 size_t len = strlen (file);
183 size_t required;
184 struct link_map *call_map;
185 char *new_file;
186
187 /* DSTs must not appear in SUID/SGID programs. */
188 if (__libc_enable_secure)
189 /* This is an error. */
190 GLRO(dl_signal_error) (0, "dlopen", NULL,
191 N_("DST not allowed in SUID/SGID programs"));
192
193 /* We have to find out from which object the caller is calling. */
194 call_map = NULL;
195 for (l = GL(dl_loaded); l; l = l->l_next)
196 if (caller_dlopen >= (const void *) l->l_map_start
197 && caller_dlopen < (const void *) l->l_map_end)
198 {
199 /* There must be exactly one DSO for the range of the virtual
200 memory. Otherwise something is really broken. */
201 call_map = l;
202 break;
203 }
204
205 if (call_map == NULL)
206 /* In this case we assume this is the main application. */
207 call_map = GL(dl_loaded);
208
209 /* Determine how much space we need. We have to allocate the
210 memory locally. */
211 required = DL_DST_REQUIRED (call_map, file, len, _dl_dst_count (dst, 0));
212
213 /* Get space for the new file name. */
214 new_file = (char *) alloca (required + 1);
215
216 /* Generate the new file name. */
217 _dl_dst_substitute (call_map, file, new_file, 0);
218
219 /* If the substitution failed don't try to load. */
220 if (*new_file == '\0')
221 GLRO(dl_signal_error) (0, "dlopen", NULL,
222 N_("empty dynamic string token substitution"));
223
224 /* Now we have a new file name. */
225 file = new_file;
226 }
227
228 /* Load the named object. */
229 args->map = new = GLRO(dl_map_object) (NULL, file, 0, lt_loaded, 0, mode);
230
231 /* If the pointer returned is NULL this means the RTLD_NOLOAD flag is
232 set and the object is not already loaded. */
233 if (new == NULL)
234 {
235 assert (mode & RTLD_NOLOAD);
236 return;
237 }
238
239 if (__builtin_expect (mode & __RTLD_SPROF, 0))
240 /* This happens only if we load a DSO for 'sprof'. */
241 return;
242
243 /* It was already open. */
244 if (__builtin_expect (new->l_searchlist.r_list != NULL, 0))
245 {
246 /* Let the user know about the opencount. */
247 if (__builtin_expect (GLRO(dl_debug_mask) & DL_DEBUG_FILES, 0))
248 GLRO(dl_debug_printf) ("opening file=%s; opencount == %u\n\n",
249 new->l_name, new->l_opencount);
250
251 /* If the user requested the object to be in the global namespace
252 but it is not so far, add it now. */
253 if ((mode & RTLD_GLOBAL) && new->l_global == 0)
254 (void) add_to_global (new);
255
256 /* Increment just the reference counter of the object. */
257 ++new->l_opencount;
258
259 return;
260 }
261
262 /* Load that object's dependencies. */
263 GLRO(dl_map_object_deps) (new, NULL, 0, 0, mode & __RTLD_DLOPEN);
264
265 /* So far, so good. Now check the versions. */
266 for (i = 0; i < new->l_searchlist.r_nlist; ++i)
267 if (new->l_searchlist.r_list[i]->l_versions == NULL)
268 (void) GLRO(dl_check_map_versions) (new->l_searchlist.r_list[i], 0, 0);
269
270 #ifdef SCOPE_DEBUG
271 show_scope (new);
272 #endif
273
274 /* Only do lazy relocation if `LD_BIND_NOW' is not set. */
275 lazy = (mode & RTLD_BINDING_MASK) == RTLD_LAZY && GLRO(dl_lazy);
276
277 /* Relocate the objects loaded. We do this in reverse order so that copy
278 relocs of earlier objects overwrite the data written by later objects. */
279
280 l = new;
281 while (l->l_next)
282 l = l->l_next;
283 while (1)
284 {
285 if (! l->l_relocated)
286 {
287 #ifdef SHARED
288 if (GLRO(dl_profile) != NULL)
289 {
290 /* If this here is the shared object which we want to profile
291 make sure the profile is started. We can find out whether
292 this is necessary or not by observing the `_dl_profile_map'
293 variable. If was NULL but is not NULL afterwars we must
294 start the profiling. */
295 struct link_map *old_profile_map = GL(dl_profile_map);
296
297 GLRO(dl_relocate_object) (l, l->l_scope, 1, 1);
298
299 if (old_profile_map == NULL && GL(dl_profile_map) != NULL)
300 /* We must prepare the profiling. */
301 GLRO(dl_start_profile) ();
302 }
303 else
304 #endif
305 GLRO(dl_relocate_object) (l, l->l_scope, lazy, 0);
306 }
307
308 if (l == new)
309 break;
310 l = l->l_prev;
311 }
312
313 #ifdef USE_TLS
314 /* Do static TLS initialization now if it has been delayed because
315 the TLS template might not be fully relocated at _dl_allocate_static_tls
316 time. */
317 for (l = new; l; l = l->l_next)
318 if (l->l_need_tls_init)
319 {
320 l->l_need_tls_init = 0;
321 GL(dl_init_static_tls) (l);
322 }
323
324 /* We normally don't bump the TLS generation counter. There must be
325 actually a need to do this. */
326 any_tls = false;
327 #endif
328
329 /* Increment the open count for all dependencies. If the file is
330 not loaded as a dependency here add the search list of the newly
331 loaded object to the scope. */
332 for (i = 0; i < new->l_searchlist.r_nlist; ++i)
333 if (++new->l_searchlist.r_list[i]->l_opencount > 1
334 && new->l_searchlist.r_list[i]->l_type == lt_loaded)
335 {
336 struct link_map *imap = new->l_searchlist.r_list[i];
337 struct r_scope_elem **runp = imap->l_scope;
338 size_t cnt = 0;
339
340 while (*runp != NULL)
341 {
342 /* This can happen if imap was just loaded, but during
343 relocation had l_opencount bumped because of relocation
344 dependency. Avoid duplicates in l_scope. */
345 if (__builtin_expect (*runp == &new->l_searchlist, 0))
346 break;
347
348 ++cnt;
349 ++runp;
350 }
351
352 if (*runp != NULL)
353 /* Avoid duplicates. */
354 continue;
355
356 if (__builtin_expect (cnt + 1 >= imap->l_scope_max, 0))
357 {
358 /* The 'r_scope' array is too small. Allocate a new one
359 dynamically. */
360 struct r_scope_elem **newp;
361 size_t new_size = imap->l_scope_max * 2;
362
363 if (imap->l_scope == imap->l_scope_mem)
364 {
365 newp = (struct r_scope_elem **)
366 malloc (new_size * sizeof (struct r_scope_elem *));
367 if (newp == NULL)
368 GLRO(dl_signal_error) (ENOMEM, "dlopen", NULL,
369 N_("cannot create scope list"));
370 imap->l_scope = memcpy (newp, imap->l_scope,
371 cnt * sizeof (imap->l_scope[0]));
372 }
373 else
374 {
375 newp = (struct r_scope_elem **)
376 realloc (imap->l_scope,
377 new_size * sizeof (struct r_scope_elem *));
378 if (newp == NULL)
379 GLRO(dl_signal_error) (ENOMEM, "dlopen", NULL,
380 N_("cannot create scope list"));
381 imap->l_scope = newp;
382 }
383
384 imap->l_scope_max = new_size;
385 }
386
387 imap->l_scope[cnt++] = &new->l_searchlist;
388 imap->l_scope[cnt] = NULL;
389 }
390 #if USE_TLS
391 else if (new->l_searchlist.r_list[i]->l_opencount == 1
392 /* Only if the module defines thread local data. */
393 && __builtin_expect (new->l_searchlist.r_list[i]->l_tls_blocksize
394 > 0, 0))
395 {
396 /* Now that we know the object is loaded successfully add
397 modules containing TLS data to the dtv info table. We
398 might have to increase its size. */
399 struct dtv_slotinfo_list *listp;
400 struct dtv_slotinfo_list *prevp;
401 size_t idx = new->l_searchlist.r_list[i]->l_tls_modid;
402
403 assert (new->l_searchlist.r_list[i]->l_type == lt_loaded);
404
405 /* Find the place in the dtv slotinfo list. */
406 listp = GL(dl_tls_dtv_slotinfo_list);
407 prevp = NULL; /* Needed to shut up gcc. */
408 do
409 {
410 /* Does it fit in the array of this list element? */
411 if (idx < listp->len)
412 break;
413 idx -= listp->len;
414 prevp = listp;
415 listp = listp->next;
416 }
417 while (listp != NULL);
418
419 if (listp == NULL)
420 {
421 /* When we come here it means we have to add a new element
422 to the slotinfo list. And the new module must be in
423 the first slot. */
424 assert (idx == 0);
425
426 listp = prevp->next = (struct dtv_slotinfo_list *)
427 malloc (sizeof (struct dtv_slotinfo_list)
428 + TLS_SLOTINFO_SURPLUS * sizeof (struct dtv_slotinfo));
429 if (listp == NULL)
430 {
431 /* We ran out of memory. We will simply fail this
432 call but don't undo anything we did so far. The
433 application will crash or be terminated anyway very
434 soon. */
435
436 /* We have to do this since some entries in the dtv
437 slotinfo array might already point to this
438 generation. */
439 ++GL(dl_tls_generation);
440
441 GLRO(dl_signal_error) (ENOMEM, "dlopen", NULL, N_("\
442 cannot create TLS data structures"));
443 }
444
445 listp->len = TLS_SLOTINFO_SURPLUS;
446 listp->next = NULL;
447 memset (listp->slotinfo, '\0',
448 TLS_SLOTINFO_SURPLUS * sizeof (struct dtv_slotinfo));
449 }
450
451 /* Add the information into the slotinfo data structure. */
452 listp->slotinfo[idx].map = new->l_searchlist.r_list[i];
453 listp->slotinfo[idx].gen = GL(dl_tls_generation) + 1;
454
455 /* We have to bump the generation counter. */
456 any_tls = true;
457 }
458
459 /* Bump the generation number if necessary. */
460 if (any_tls)
461 if (__builtin_expect (++GL(dl_tls_generation) == 0, 0))
462 __libc_fatal (_("TLS generation counter wrapped! Please send report with the 'glibcbug' script."));
463 #endif
464
465 /* Run the initializer functions of new objects. */
466 GLRO(dl_init) (new, __libc_argc, __libc_argv, __environ);
467
468 /* Now we can make the new map available in the global scope. */
469 if (mode & RTLD_GLOBAL)
470 /* Move the object in the global namespace. */
471 if (add_to_global (new) != 0)
472 /* It failed. */
473 return;
474
475 /* Mark the object as not deletable if the RTLD_NODELETE flags was
476 passed. */
477 if (__builtin_expect (mode & RTLD_NODELETE, 0))
478 new->l_flags_1 |= DF_1_NODELETE;
479
480 #ifndef SHARED
481 /* We must be the static _dl_open in libc.a. A static program that
482 has loaded a dynamic object now has competition. */
483 __libc_multiple_libcs = 1;
484 #endif
485
486 /* Let the user know about the opencount. */
487 if (__builtin_expect (GLRO(dl_debug_mask) & DL_DEBUG_FILES, 0))
488 GLRO(dl_debug_printf) ("opening file=%s; opencount == %u\n\n",
489 new->l_name, new->l_opencount);
490 }
491
492
493 void *
494 internal_function
495 _dl_open (const char *file, int mode, const void *caller_dlopen)
496 {
497 struct dl_open_args args;
498 const char *objname;
499 const char *errstring;
500 int errcode;
501
502 if ((mode & RTLD_BINDING_MASK) == 0)
503 /* One of the flags must be set. */
504 GLRO(dl_signal_error) (EINVAL, file, NULL,
505 N_("invalid mode for dlopen()"));
506
507 /* Make sure we are alone. */
508 __rtld_lock_lock_recursive (GL(dl_load_lock));
509
510 args.file = file;
511 args.mode = mode;
512 args.caller_dlopen = caller_dlopen;
513 args.caller_dl_open = RETURN_ADDRESS (0);
514 args.map = NULL;
515 errcode = GLRO(dl_catch_error) (&objname, &errstring, dl_open_worker, &args);
516
517 #ifndef MAP_COPY
518 /* We must munmap() the cache file. */
519 GLRO(dl_unload_cache) ();
520 #endif
521
522 /* Release the lock. */
523 __rtld_lock_unlock_recursive (GL(dl_load_lock));
524
525 if (__builtin_expect (errstring != NULL, 0))
526 {
527 /* Some error occurred during loading. */
528 char *local_errstring;
529 size_t len_errstring;
530
531 /* Remove the object from memory. It may be in an inconsistent
532 state if relocation failed, for example. */
533 if (args.map)
534 {
535 unsigned int i;
536
537 /* Increment open counters for all objects since this
538 sometimes has not happened yet. */
539 if (args.map->l_searchlist.r_list[0]->l_opencount == 0)
540 for (i = 0; i < args.map->l_searchlist.r_nlist; ++i)
541 ++args.map->l_searchlist.r_list[i]->l_opencount;
542
543 #ifdef USE_TLS
544 /* Maybe some of the modules which were loaded uses TLS.
545 Since it will be removed in the following _dl_close call
546 we have to mark the dtv array as having gaps to fill
547 the holes. This is a pessimistic assumption which won't
548 hurt if not true. */
549 GL(dl_tls_dtv_gaps) = true;
550 #endif
551
552 _dl_close (args.map);
553 }
554
555 /* Make a local copy of the error string so that we can release the
556 memory allocated for it. */
557 len_errstring = strlen (errstring) + 1;
558 if (objname == errstring + len_errstring)
559 {
560 size_t total_len = len_errstring + strlen (objname) + 1;
561 local_errstring = alloca (total_len);
562 memcpy (local_errstring, errstring, total_len);
563 objname = local_errstring + len_errstring;
564 }
565 else
566 {
567 local_errstring = alloca (len_errstring);
568 memcpy (local_errstring, errstring, len_errstring);
569 }
570
571 if (errstring != _dl_out_of_memory)
572 free ((char *) errstring);
573
574 /* Reraise the error. */
575 GLRO(dl_signal_error) (errcode, objname, NULL, local_errstring);
576 }
577
578 #ifndef SHARED
579 DL_STATIC_INIT (args.map);
580 #endif
581
582 return args.map;
583 }
584 libc_hidden_def (_dl_open)
585
586
587 #ifdef SCOPE_DEBUG
588 #include <unistd.h>
589
590 static void
591 show_scope (struct link_map *new)
592 {
593 int scope_cnt;
594
595 for (scope_cnt = 0; new->l_scope[scope_cnt] != NULL; ++scope_cnt)
596 {
597 char numbuf[2];
598 unsigned int cnt;
599
600 numbuf[0] = '0' + scope_cnt;
601 numbuf[1] = '\0';
602 _dl_printf ("scope %s:", numbuf);
603
604 for (cnt = 0; cnt < new->l_scope[scope_cnt]->r_nlist; ++cnt)
605 if (*new->l_scope[scope_cnt]->r_list[cnt]->l_name)
606 _dl_printf (" %s", new->l_scope[scope_cnt]->r_list[cnt]->l_name);
607 else
608 _dl_printf (" <main>");
609
610 _dl_printf ("\n");
611 }
612 }
613 #endif