rtld.c revision 1.202 1 /* $NetBSD: rtld.c,v 1.202 2020/02/29 04:23:05 kamil Exp $ */
2
3 /*
4 * Copyright 1996 John D. Polstra.
5 * Copyright 1996 Matt Thomas <matt (at) 3am-software.com>
6 * Copyright 2002 Charles M. Hannum <root (at) ihack.net>
7 * All rights reserved.
8 *
9 * Redistribution and use in source and binary forms, with or without
10 * modification, are permitted provided that the following conditions
11 * are met:
12 * 1. Redistributions of source code must retain the above copyright
13 * notice, this list of conditions and the following disclaimer.
14 * 2. Redistributions in binary form must reproduce the above copyright
15 * notice, this list of conditions and the following disclaimer in the
16 * documentation and/or other materials provided with the distribution.
17 * 3. All advertising materials mentioning features or use of this software
18 * must display the following acknowledgement:
19 * This product includes software developed by John Polstra.
20 * 4. The name of the author may not be used to endorse or promote products
21 * derived from this software without specific prior written permission.
22 *
23 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
24 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
25 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
26 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
27 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
28 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
29 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
30 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
31 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
32 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
33 */
34
35 /*
36 * Dynamic linker for ELF.
37 *
38 * John Polstra <jdp (at) polstra.com>.
39 */
40
41 #include <sys/cdefs.h>
42 #ifndef lint
43 __RCSID("$NetBSD: rtld.c,v 1.202 2020/02/29 04:23:05 kamil Exp $");
44 #endif /* not lint */
45
46 #include <sys/param.h>
47 #include <sys/atomic.h>
48 #include <sys/mman.h>
49 #include <err.h>
50 #include <errno.h>
51 #include <fcntl.h>
52 #include <lwp.h>
53 #include <stdarg.h>
54 #include <stdio.h>
55 #include <stdlib.h>
56 #include <string.h>
57 #include <unistd.h>
58 #include <dirent.h>
59
60 #include <ctype.h>
61
62 #include <dlfcn.h>
63 #include "debug.h"
64 #include "rtld.h"
65
66 #if !defined(lint)
67 #include "sysident.h"
68 #endif
69
70 /*
71 * Function declarations.
72 */
73 static void _rtld_init(caddr_t, caddr_t, const char *);
74 static void _rtld_exit(void);
75
76 Elf_Addr _rtld(Elf_Addr *, Elf_Addr);
77
78
79 /*
80 * Data declarations.
81 */
82 static char *error_message; /* Message for dlopen(), or NULL */
83
84 struct r_debug _rtld_debug; /* for GDB; */
85 bool _rtld_trust; /* False for setuid and setgid programs */
86 Obj_Entry *_rtld_objlist; /* Head of linked list of shared objects */
87 Obj_Entry **_rtld_objtail; /* Link field of last object in list */
88 Obj_Entry *_rtld_objmain; /* The main program shared object */
89 Obj_Entry _rtld_objself; /* The dynamic linker shared object */
90 u_int _rtld_objcount; /* Number of objects in _rtld_objlist */
91 u_int _rtld_objloads; /* Number of objects loaded in _rtld_objlist */
92 u_int _rtld_objgen; /* Generation count for _rtld_objlist */
93 const char _rtld_path[] = _PATH_RTLD;
94
95 /* Initialize a fake symbol for resolving undefined weak references. */
96 Elf_Sym _rtld_sym_zero = {
97 .st_info = ELF_ST_INFO(STB_GLOBAL, STT_NOTYPE),
98 .st_shndx = SHN_ABS,
99 };
100 size_t _rtld_pagesz; /* Page size, as provided by kernel */
101
102 Search_Path *_rtld_default_paths;
103 Search_Path *_rtld_paths;
104
105 Library_Xform *_rtld_xforms;
106 static void *auxinfo;
107
108 /*
109 * Global declarations normally provided by crt0.
110 */
111 char *__progname;
112 char **environ;
113
114 static volatile bool _rtld_mutex_may_recurse;
115
116 #if defined(RTLD_DEBUG)
117 #ifndef __sh__
118 extern Elf_Addr _GLOBAL_OFFSET_TABLE_[];
119 #else /* 32-bit SuperH */
120 register Elf_Addr *_GLOBAL_OFFSET_TABLE_ asm("r12");
121 #endif
122 #endif /* RTLD_DEBUG */
123 extern Elf_Dyn _DYNAMIC;
124
125 static void _rtld_call_fini_functions(sigset_t *, int);
126 static void _rtld_call_init_functions(sigset_t *);
127 static void _rtld_initlist_visit(Objlist *, Obj_Entry *, int);
128 static void _rtld_initlist_tsort(Objlist *, int);
129 static Obj_Entry *_rtld_dlcheck(void *);
130 static void _rtld_init_dag(Obj_Entry *);
131 static void _rtld_init_dag1(Obj_Entry *, Obj_Entry *);
132 static void _rtld_objlist_remove(Objlist *, Obj_Entry *);
133 static void _rtld_objlist_clear(Objlist *);
134 static void _rtld_unload_object(sigset_t *, Obj_Entry *, bool);
135 static void _rtld_unref_dag(Obj_Entry *);
136 static Obj_Entry *_rtld_obj_from_addr(const void *);
137 static void _rtld_fill_dl_phdr_info(const Obj_Entry *, struct dl_phdr_info *);
138
139 static inline void
140 _rtld_call_initfini_function(const Obj_Entry *obj, Elf_Addr func, sigset_t *mask)
141 {
142 _rtld_exclusive_exit(mask);
143 _rtld_call_function_void(obj, func);
144 _rtld_exclusive_enter(mask);
145 }
146
147 static void
148 _rtld_call_fini_function(Obj_Entry *obj, sigset_t *mask, u_int cur_objgen)
149 {
150 if (obj->fini_arraysz == 0 && (obj->fini == 0 || obj->fini_called))
151 return;
152
153 if (obj->fini != 0 && !obj->fini_called) {
154 dbg (("calling fini function %s at %p%s", obj->path,
155 (void *)obj->fini,
156 obj->z_initfirst ? " (DF_1_INITFIRST)" : ""));
157 obj->fini_called = 1;
158 _rtld_call_initfini_function(obj, obj->fini, mask);
159 }
160 #ifdef HAVE_INITFINI_ARRAY
161 /*
162 * Now process the fini_array if it exists. Simply go from
163 * start to end. We need to make restartable so just advance
164 * the array pointer and decrement the size each time through
165 * the loop.
166 */
167 while (obj->fini_arraysz > 0 && _rtld_objgen == cur_objgen) {
168 Elf_Addr fini = *obj->fini_array++;
169 obj->fini_arraysz--;
170 dbg (("calling fini array function %s at %p%s", obj->path,
171 (void *)fini,
172 obj->z_initfirst ? " (DF_1_INITFIRST)" : ""));
173 _rtld_call_initfini_function(obj, fini, mask);
174 }
175 #endif /* HAVE_INITFINI_ARRAY */
176 }
177
178 static void
179 _rtld_call_fini_functions(sigset_t *mask, int force)
180 {
181 Objlist_Entry *elm;
182 Objlist finilist;
183 u_int cur_objgen;
184
185 dbg(("_rtld_call_fini_functions(%d)", force));
186
187 restart:
188 cur_objgen = ++_rtld_objgen;
189 SIMPLEQ_INIT(&finilist);
190 _rtld_initlist_tsort(&finilist, 1);
191
192 /* First pass: objects _not_ marked with DF_1_INITFIRST. */
193 SIMPLEQ_FOREACH(elm, &finilist, link) {
194 Obj_Entry * const obj = elm->obj;
195 if (!obj->z_initfirst) {
196 if (obj->refcount > 0 && !force) {
197 continue;
198 }
199 /*
200 * XXX This can race against a concurrent dlclose().
201 * XXX In that case, the object could be unmapped before
202 * XXX the fini() call or the fini_array has completed.
203 */
204 _rtld_call_fini_function(obj, mask, cur_objgen);
205 if (_rtld_objgen != cur_objgen) {
206 dbg(("restarting fini iteration"));
207 _rtld_objlist_clear(&finilist);
208 goto restart;
209 }
210 }
211 }
212
213 /* Second pass: objects marked with DF_1_INITFIRST. */
214 SIMPLEQ_FOREACH(elm, &finilist, link) {
215 Obj_Entry * const obj = elm->obj;
216 if (obj->refcount > 0 && !force) {
217 continue;
218 }
219 /* XXX See above for the race condition here */
220 _rtld_call_fini_function(obj, mask, cur_objgen);
221 if (_rtld_objgen != cur_objgen) {
222 dbg(("restarting fini iteration"));
223 _rtld_objlist_clear(&finilist);
224 goto restart;
225 }
226 }
227
228 _rtld_objlist_clear(&finilist);
229 }
230
231 static void
232 _rtld_call_init_function(Obj_Entry *obj, sigset_t *mask, u_int cur_objgen)
233 {
234 if (obj->init_arraysz == 0 && (obj->init_called || obj->init == 0))
235 return;
236
237 if (!obj->init_called && obj->init != 0) {
238 dbg (("calling init function %s at %p%s",
239 obj->path, (void *)obj->init,
240 obj->z_initfirst ? " (DF_1_INITFIRST)" : ""));
241 obj->init_called = 1;
242 _rtld_call_initfini_function(obj, obj->init, mask);
243 }
244
245 #ifdef HAVE_INITFINI_ARRAY
246 /*
247 * Now process the init_array if it exists. Simply go from
248 * start to end. We need to make restartable so just advance
249 * the array pointer and decrement the size each time through
250 * the loop.
251 */
252 while (obj->init_arraysz > 0 && _rtld_objgen == cur_objgen) {
253 Elf_Addr init = *obj->init_array++;
254 obj->init_arraysz--;
255 dbg (("calling init_array function %s at %p%s",
256 obj->path, (void *)init,
257 obj->z_initfirst ? " (DF_1_INITFIRST)" : ""));
258 _rtld_call_initfini_function(obj, init, mask);
259 }
260 #endif /* HAVE_INITFINI_ARRAY */
261 }
262
263 static bool
264 _rtld_call_ifunc_functions(sigset_t *mask, Obj_Entry *obj, u_int cur_objgen)
265 {
266 if (obj->ifunc_remaining
267 #if defined(IFUNC_NONPLT)
268 || obj->ifunc_remaining_nonplt
269 #endif
270 ) {
271 _rtld_call_ifunc(obj, mask, cur_objgen);
272 if (_rtld_objgen != cur_objgen) {
273 return true;
274 }
275 }
276 return false;
277 }
278
279 static void
280 _rtld_call_init_functions(sigset_t *mask)
281 {
282 Objlist_Entry *elm;
283 Objlist initlist;
284 u_int cur_objgen;
285
286 dbg(("_rtld_call_init_functions()"));
287
288 restart:
289 cur_objgen = ++_rtld_objgen;
290 SIMPLEQ_INIT(&initlist);
291 _rtld_initlist_tsort(&initlist, 0);
292
293 /* First pass: objects with IRELATIVE relocations. */
294 SIMPLEQ_FOREACH(elm, &initlist, link) {
295 if (_rtld_call_ifunc_functions(mask, elm->obj, cur_objgen)) {
296 dbg(("restarting init iteration"));
297 _rtld_objlist_clear(&initlist);
298 goto restart;
299 }
300 }
301 /*
302 * XXX: For historic reasons, init/fini of the main object are called
303 * from crt0. Don't introduce that mistake for ifunc, so look at
304 * the head of _rtld_objlist that _rtld_initlist_tsort skipped.
305 */
306 if (_rtld_call_ifunc_functions(mask, _rtld_objlist, cur_objgen)) {
307 dbg(("restarting init iteration"));
308 _rtld_objlist_clear(&initlist);
309 goto restart;
310 }
311
312 /* Second pass: objects marked with DF_1_INITFIRST. */
313 SIMPLEQ_FOREACH(elm, &initlist, link) {
314 Obj_Entry * const obj = elm->obj;
315 if (obj->z_initfirst) {
316 _rtld_call_init_function(obj, mask, cur_objgen);
317 if (_rtld_objgen != cur_objgen) {
318 dbg(("restarting init iteration"));
319 _rtld_objlist_clear(&initlist);
320 goto restart;
321 }
322 }
323 }
324
325 /* Third pass: all other objects. */
326 SIMPLEQ_FOREACH(elm, &initlist, link) {
327 _rtld_call_init_function(elm->obj, mask, cur_objgen);
328 if (_rtld_objgen != cur_objgen) {
329 dbg(("restarting init iteration"));
330 _rtld_objlist_clear(&initlist);
331 goto restart;
332 }
333 }
334
335 _rtld_objlist_clear(&initlist);
336 }
337
338 /*
339 * Initialize the dynamic linker. The argument is the address at which
340 * the dynamic linker has been mapped into memory. The primary task of
341 * this function is to create an Obj_Entry for the dynamic linker and
342 * to resolve the PLT relocation for platforms that need it (those that
343 * define __HAVE_FUNCTION_DESCRIPTORS
344 */
345 static void
346 _rtld_init(caddr_t mapbase, caddr_t relocbase, const char *execname)
347 {
348 const Elf_Ehdr *ehdr;
349
350 /* Conjure up an Obj_Entry structure for the dynamic linker. */
351 _rtld_objself.path = __UNCONST(_rtld_path);
352 _rtld_objself.pathlen = sizeof(_rtld_path)-1;
353 _rtld_objself.rtld = true;
354 _rtld_objself.mapbase = mapbase;
355 _rtld_objself.relocbase = relocbase;
356 _rtld_objself.dynamic = (Elf_Dyn *) &_DYNAMIC;
357 _rtld_objself.strtab = "_rtld_sym_zero";
358
359 /*
360 * Set value to -relocbase so that
361 *
362 * _rtld_objself.relocbase + _rtld_sym_zero.st_value == 0
363 *
364 * This allows unresolved references to weak symbols to be computed
365 * to a value of 0.
366 */
367 _rtld_sym_zero.st_value = -(uintptr_t)relocbase;
368
369 _rtld_digest_dynamic(_rtld_path, &_rtld_objself);
370 assert(!_rtld_objself.needed);
371 #if !defined(__hppa__)
372 assert(!_rtld_objself.pltrel && !_rtld_objself.pltrela);
373 #else
374 _rtld_relocate_plt_objects(&_rtld_objself);
375 #endif
376 #if !defined(__mips__) && !defined(__hppa__)
377 assert(!_rtld_objself.pltgot);
378 #endif
379 #if !defined(__arm__) && !defined(__mips__) && !defined(__sh__)
380 /* ARM, MIPS and SH{3,5} have a bogus DT_TEXTREL. */
381 assert(!_rtld_objself.textrel);
382 #endif
383
384 _rtld_add_paths(execname, &_rtld_default_paths,
385 RTLD_DEFAULT_LIBRARY_PATH);
386
387 #ifdef RTLD_ARCH_SUBDIR
388 _rtld_add_paths(execname, &_rtld_default_paths,
389 RTLD_DEFAULT_LIBRARY_PATH "/" RTLD_ARCH_SUBDIR);
390 #endif
391
392 /* Make the object list empty. */
393 _rtld_objlist = NULL;
394 _rtld_objtail = &_rtld_objlist;
395 _rtld_objcount = 0;
396
397 _rtld_debug.r_brk = _rtld_debug_state;
398 _rtld_debug.r_state = RT_CONSISTENT;
399
400 ehdr = (Elf_Ehdr *)mapbase;
401 _rtld_objself.phdr = (Elf_Phdr *)((char *)mapbase + ehdr->e_phoff);
402 _rtld_objself.phsize = ehdr->e_phnum * sizeof(_rtld_objself.phdr[0]);
403 }
404
405 /*
406 * Cleanup procedure. It will be called (by the atexit() mechanism) just
407 * before the process exits.
408 */
409 static void
410 _rtld_exit(void)
411 {
412 sigset_t mask;
413
414 dbg(("rtld_exit()"));
415
416 _rtld_exclusive_enter(&mask);
417
418 _rtld_call_fini_functions(&mask, 1);
419
420 _rtld_exclusive_exit(&mask);
421 }
422
423 __dso_public void *
424 _dlauxinfo(void)
425 {
426 return auxinfo;
427 }
428
429 /*
430 * Main entry point for dynamic linking. The argument is the stack
431 * pointer. The stack is expected to be laid out as described in the
432 * SVR4 ABI specification, Intel 386 Processor Supplement. Specifically,
433 * the stack pointer points to a word containing ARGC. Following that
434 * in the stack is a null-terminated sequence of pointers to argument
435 * strings. Then comes a null-terminated sequence of pointers to
436 * environment strings. Finally, there is a sequence of "auxiliary
437 * vector" entries.
438 *
439 * This function returns the entry point for the main program, the dynamic
440 * linker's exit procedure in sp[0], and a pointer to the main object in
441 * sp[1].
442 */
443 Elf_Addr
444 _rtld(Elf_Addr *sp, Elf_Addr relocbase)
445 {
446 const AuxInfo *pAUX_base, *pAUX_entry, *pAUX_execfd, *pAUX_phdr,
447 *pAUX_phent, *pAUX_phnum, *pAUX_euid, *pAUX_egid,
448 *pAUX_ruid, *pAUX_rgid;
449 const AuxInfo *pAUX_pagesz;
450 char **env, **oenvp;
451 const AuxInfo *auxp;
452 Obj_Entry *obj;
453 Elf_Addr *const osp = sp;
454 bool bind_now = 0;
455 const char *ld_bind_now, *ld_preload, *ld_library_path;
456 const char **argv;
457 const char *execname;
458 long argc;
459 const char **real___progname;
460 const Obj_Entry **real___mainprog_obj;
461 char ***real_environ;
462 sigset_t mask;
463 #ifdef DEBUG
464 const char *ld_debug;
465 #endif
466 #ifdef RTLD_DEBUG
467 int i = 0;
468 #endif
469
470 /*
471 * On entry, the dynamic linker itself has not been relocated yet.
472 * Be very careful not to reference any global data until after
473 * _rtld_init has returned. It is OK to reference file-scope statics
474 * and string constants, and to call static and global functions.
475 */
476 /* Find the auxiliary vector on the stack. */
477 /* first Elf_Word reserved to address of exit routine */
478 #if defined(RTLD_DEBUG)
479 debug = 1;
480 dbg(("sp = %p, argc = %ld, argv = %p <%s> relocbase %p", sp,
481 (long)sp[2], &sp[3], (char *) sp[3], (void *)relocbase));
482 #ifndef __x86_64__
483 dbg(("got is at %p, dynamic is at %p", _GLOBAL_OFFSET_TABLE_,
484 &_DYNAMIC));
485 #endif
486 #endif
487
488 sp += 2; /* skip over return argument space */
489 argv = (const char **) &sp[1];
490 argc = *(long *)sp;
491 sp += 2 + argc; /* Skip over argc, arguments, and NULL
492 * terminator */
493 env = (char **) sp;
494 while (*sp++ != 0) { /* Skip over environment, and NULL terminator */
495 #if defined(RTLD_DEBUG)
496 dbg(("env[%d] = %p %s", i++, (void *)sp[-1], (char *)sp[-1]));
497 #endif
498 }
499 auxinfo = (AuxInfo *) sp;
500
501 pAUX_base = pAUX_entry = pAUX_execfd = NULL;
502 pAUX_phdr = pAUX_phent = pAUX_phnum = NULL;
503 pAUX_euid = pAUX_ruid = pAUX_egid = pAUX_rgid = NULL;
504 pAUX_pagesz = NULL;
505
506 execname = NULL;
507
508 /* Digest the auxiliary vector. */
509 for (auxp = auxinfo; auxp->a_type != AT_NULL; ++auxp) {
510 switch (auxp->a_type) {
511 case AT_BASE:
512 pAUX_base = auxp;
513 break;
514 case AT_ENTRY:
515 pAUX_entry = auxp;
516 break;
517 case AT_EXECFD:
518 pAUX_execfd = auxp;
519 break;
520 case AT_PHDR:
521 pAUX_phdr = auxp;
522 break;
523 case AT_PHENT:
524 pAUX_phent = auxp;
525 break;
526 case AT_PHNUM:
527 pAUX_phnum = auxp;
528 break;
529 #ifdef AT_EUID
530 case AT_EUID:
531 pAUX_euid = auxp;
532 break;
533 case AT_RUID:
534 pAUX_ruid = auxp;
535 break;
536 case AT_EGID:
537 pAUX_egid = auxp;
538 break;
539 case AT_RGID:
540 pAUX_rgid = auxp;
541 break;
542 #endif
543 #ifdef AT_SUN_EXECNAME
544 case AT_SUN_EXECNAME:
545 execname = (const char *)(const void *)auxp->a_v;
546 break;
547 #endif
548 case AT_PAGESZ:
549 pAUX_pagesz = auxp;
550 break;
551 }
552 }
553
554 /* Initialize and relocate ourselves. */
555 if (pAUX_base == NULL) {
556 _rtld_error("Bad pAUX_base");
557 _rtld_die();
558 }
559 assert(pAUX_pagesz != NULL);
560 _rtld_pagesz = (int)pAUX_pagesz->a_v;
561 _rtld_init((caddr_t)pAUX_base->a_v, (caddr_t)relocbase, execname);
562
563 __progname = _rtld_objself.path;
564 environ = env;
565
566 _rtld_trust = ((pAUX_euid ? (uid_t)pAUX_euid->a_v : geteuid()) ==
567 (pAUX_ruid ? (uid_t)pAUX_ruid->a_v : getuid())) &&
568 ((pAUX_egid ? (gid_t)pAUX_egid->a_v : getegid()) ==
569 (pAUX_rgid ? (gid_t)pAUX_rgid->a_v : getgid()));
570
571 #ifdef DEBUG
572 ld_debug = NULL;
573 #endif
574 ld_bind_now = NULL;
575 ld_library_path = NULL;
576 ld_preload = NULL;
577 /*
578 * Inline avoid using normal getenv/unsetenv here as the libc
579 * code is quite a bit more complicated.
580 */
581 for (oenvp = env; *env != NULL; ++env) {
582 static const char bind_var[] = "LD_BIND_NOW=";
583 static const char debug_var[] = "LD_DEBUG=";
584 static const char path_var[] = "LD_LIBRARY_PATH=";
585 static const char preload_var[] = "LD_PRELOAD=";
586 #define LEN(x) (sizeof(x) - 1)
587
588 if ((*env)[0] != 'L' || (*env)[1] != 'D') {
589 /*
590 * Special case to skip most entries without
591 * the more expensive calls to strncmp.
592 */
593 *oenvp++ = *env;
594 } else if (strncmp(*env, debug_var, LEN(debug_var)) == 0) {
595 if (_rtld_trust) {
596 #ifdef DEBUG
597 ld_debug = *env + LEN(debug_var);
598 #endif
599 *oenvp++ = *env;
600 }
601 } else if (strncmp(*env, bind_var, LEN(bind_var)) == 0) {
602 if (_rtld_trust) {
603 ld_bind_now = *env + LEN(bind_var);
604 *oenvp++ = *env;
605 }
606 } else if (strncmp(*env, path_var, LEN(path_var)) == 0) {
607 if (_rtld_trust) {
608 ld_library_path = *env + LEN(path_var);
609 *oenvp++ = *env;
610 }
611 } else if (strncmp(*env, preload_var, LEN(preload_var)) == 0) {
612 if (_rtld_trust) {
613 ld_preload = *env + LEN(preload_var);
614 *oenvp++ = *env;
615 }
616 } else {
617 *oenvp++ = *env;
618 }
619 #undef LEN
620 }
621 *oenvp++ = NULL;
622
623 if (ld_bind_now != NULL && *ld_bind_now != '\0')
624 bind_now = true;
625 if (_rtld_trust) {
626 #ifdef DEBUG
627 #ifdef RTLD_DEBUG
628 debug = 0;
629 #endif
630 if (ld_debug != NULL && *ld_debug != '\0')
631 debug = 1;
632 #endif
633 _rtld_add_paths(execname, &_rtld_paths, ld_library_path);
634 } else {
635 execname = NULL;
636 }
637 _rtld_process_hints(execname, &_rtld_paths, &_rtld_xforms,
638 _PATH_LD_HINTS);
639 dbg(("dynamic linker is initialized, mapbase=%p, relocbase=%p",
640 _rtld_objself.mapbase, _rtld_objself.relocbase));
641
642 /*
643 * Load the main program, or process its program header if it is
644 * already loaded.
645 */
646 if (pAUX_execfd != NULL) { /* Load the main program. */
647 int fd = pAUX_execfd->a_v;
648 const char *obj_name = argv[0] ? argv[0] : "main program";
649 dbg(("loading main program"));
650 _rtld_objmain = _rtld_map_object(obj_name, fd, NULL);
651 close(fd);
652 if (_rtld_objmain == NULL)
653 _rtld_die();
654 } else { /* Main program already loaded. */
655 const Elf_Phdr *phdr;
656 int phnum;
657 caddr_t entry;
658
659 dbg(("processing main program's program header"));
660 assert(pAUX_phdr != NULL);
661 phdr = (const Elf_Phdr *) pAUX_phdr->a_v;
662 assert(pAUX_phnum != NULL);
663 phnum = pAUX_phnum->a_v;
664 assert(pAUX_phent != NULL);
665 assert(pAUX_phent->a_v == sizeof(Elf_Phdr));
666 assert(pAUX_entry != NULL);
667 entry = (caddr_t) pAUX_entry->a_v;
668 _rtld_objmain = _rtld_digest_phdr(phdr, phnum, entry);
669 _rtld_objmain->path = xstrdup(argv[0] ? argv[0] :
670 "main program");
671 _rtld_objmain->pathlen = strlen(_rtld_objmain->path);
672 }
673
674 _rtld_objmain->mainprog = true;
675
676 /*
677 * Get the actual dynamic linker pathname from the executable if
678 * possible. (It should always be possible.) That ensures that
679 * gdb will find the right dynamic linker even if a non-standard
680 * one is being used.
681 */
682 if (_rtld_objmain->interp != NULL &&
683 strcmp(_rtld_objmain->interp, _rtld_objself.path) != 0) {
684 _rtld_objself.path = xstrdup(_rtld_objmain->interp);
685 _rtld_objself.pathlen = strlen(_rtld_objself.path);
686 }
687 dbg(("actual dynamic linker is %s", _rtld_objself.path));
688
689 _rtld_digest_dynamic(execname, _rtld_objmain);
690
691 /* Link the main program into the list of objects. */
692 *_rtld_objtail = _rtld_objmain;
693 _rtld_objtail = &_rtld_objmain->next;
694 _rtld_objcount++;
695 _rtld_objloads++;
696
697 _rtld_linkmap_add(_rtld_objmain);
698 _rtld_objself.path = xstrdup(_rtld_objself.path);
699 _rtld_linkmap_add(&_rtld_objself);
700
701 ++_rtld_objmain->refcount;
702 _rtld_objmain->mainref = 1;
703 _rtld_objlist_push_tail(&_rtld_list_main, _rtld_objmain);
704
705 if (ld_preload) {
706 /*
707 * Pre-load user-specified objects after the main program
708 * but before any shared object dependencies.
709 */
710 dbg(("preloading objects"));
711 if (_rtld_preload(ld_preload) == -1)
712 _rtld_die();
713 }
714
715 dbg(("loading needed objects"));
716 if (_rtld_load_needed_objects(_rtld_objmain, _RTLD_MAIN) == -1)
717 _rtld_die();
718
719 dbg(("checking for required versions"));
720 for (obj = _rtld_objlist; obj != NULL; obj = obj->next) {
721 if (_rtld_verify_object_versions(obj) == -1)
722 _rtld_die();
723 }
724
725 #if defined(__HAVE_TLS_VARIANT_I) || defined(__HAVE_TLS_VARIANT_II)
726 dbg(("initializing initial Thread Local Storage offsets"));
727 /*
728 * All initial objects get the TLS space from the static block.
729 */
730 for (obj = _rtld_objlist; obj != NULL; obj = obj->next)
731 _rtld_tls_offset_allocate(obj);
732 #endif
733
734 dbg(("relocating objects"));
735 if (_rtld_relocate_objects(_rtld_objmain, bind_now) == -1)
736 _rtld_die();
737
738 dbg(("doing copy relocations"));
739 if (_rtld_do_copy_relocations(_rtld_objmain) == -1)
740 _rtld_die();
741
742 #if defined(__HAVE_TLS_VARIANT_I) || defined(__HAVE_TLS_VARIANT_II)
743 dbg(("initializing Thread Local Storage for main thread"));
744 /*
745 * Set up TLS area for the main thread.
746 * This has to be done after all relocations are processed,
747 * since .tdata may contain relocations.
748 */
749 _rtld_tls_initial_allocation();
750 #endif
751
752 /*
753 * Set the __progname, environ and, __mainprog_obj before
754 * calling anything that might use them.
755 */
756 real___progname = _rtld_objmain_sym("__progname");
757 if (real___progname) {
758 if (argv[0] != NULL) {
759 if ((*real___progname = strrchr(argv[0], '/')) == NULL)
760 (*real___progname) = argv[0];
761 else
762 (*real___progname)++;
763 } else {
764 (*real___progname) = NULL;
765 }
766 }
767 real_environ = _rtld_objmain_sym("environ");
768 if (real_environ)
769 *real_environ = environ;
770 /*
771 * Set __mainprog_obj for old binaries.
772 */
773 real___mainprog_obj = _rtld_objmain_sym("__mainprog_obj");
774 if (real___mainprog_obj)
775 *real___mainprog_obj = _rtld_objmain;
776
777 _rtld_debug_state(); /* say hello to gdb! */
778
779 _rtld_exclusive_enter(&mask);
780
781 dbg(("calling _init functions"));
782 _rtld_call_init_functions(&mask);
783
784 dbg(("control at program entry point = %p, obj = %p, exit = %p",
785 _rtld_objmain->entry, _rtld_objmain, _rtld_exit));
786
787 _rtld_exclusive_exit(&mask);
788
789 /*
790 * Return with the entry point and the exit procedure in at the top
791 * of stack.
792 */
793
794 ((void **) osp)[0] = _rtld_exit;
795 ((void **) osp)[1] = __UNCONST(_rtld_compat_obj);
796 return (Elf_Addr) _rtld_objmain->entry;
797 }
798
799 void
800 _rtld_die(void)
801 {
802 const char *msg = dlerror();
803
804 if (msg == NULL)
805 msg = "Fatal error";
806 xerrx(1, "%s", msg);
807 }
808
809 static Obj_Entry *
810 _rtld_dlcheck(void *handle)
811 {
812 Obj_Entry *obj;
813
814 for (obj = _rtld_objlist; obj != NULL; obj = obj->next)
815 if (obj == (Obj_Entry *) handle)
816 break;
817
818 if (obj == NULL || obj->dl_refcount == 0) {
819 _rtld_error("Invalid shared object handle %p", handle);
820 return NULL;
821 }
822 return obj;
823 }
824
825 static void
826 _rtld_initlist_visit(Objlist* list, Obj_Entry *obj, int rev)
827 {
828 Needed_Entry* elm;
829
830 /* dbg(("_rtld_initlist_visit(%s)", obj->path)); */
831
832 if (obj->init_done)
833 return;
834 obj->init_done = 1;
835
836 for (elm = obj->needed; elm != NULL; elm = elm->next) {
837 if (elm->obj != NULL) {
838 _rtld_initlist_visit(list, elm->obj, rev);
839 }
840 }
841
842 if (rev) {
843 _rtld_objlist_push_head(list, obj);
844 } else {
845 _rtld_objlist_push_tail(list, obj);
846 }
847 }
848
849 static void
850 _rtld_initlist_tsort(Objlist* list, int rev)
851 {
852 dbg(("_rtld_initlist_tsort"));
853
854 Obj_Entry* obj;
855
856 /*
857 * We don't include objmain here (starting from next)
858 * because csu handles it
859 */
860 for (obj = _rtld_objlist->next; obj; obj = obj->next) {
861 obj->init_done = 0;
862 }
863
864 for (obj = _rtld_objlist->next; obj; obj = obj->next) {
865 _rtld_initlist_visit(list, obj, rev);
866 }
867 }
868
869 static void
870 _rtld_init_dag(Obj_Entry *root)
871 {
872
873 _rtld_init_dag1(root, root);
874 }
875
876 static void
877 _rtld_init_dag1(Obj_Entry *root, Obj_Entry *obj)
878 {
879 const Needed_Entry *needed;
880
881 if (!obj->mainref) {
882 if (_rtld_objlist_find(&obj->dldags, root))
883 return;
884 dbg(("add %p (%s) to %p (%s) DAG", obj, obj->path, root,
885 root->path));
886 _rtld_objlist_push_tail(&obj->dldags, root);
887 _rtld_objlist_push_tail(&root->dagmembers, obj);
888 }
889 for (needed = obj->needed; needed != NULL; needed = needed->next)
890 if (needed->obj != NULL)
891 _rtld_init_dag1(root, needed->obj);
892 }
893
894 /*
895 * Note, this is called only for objects loaded by dlopen().
896 */
897 static void
898 _rtld_unload_object(sigset_t *mask, Obj_Entry *root, bool do_fini_funcs)
899 {
900
901 _rtld_unref_dag(root);
902 if (root->refcount == 0) { /* We are finished with some objects. */
903 Obj_Entry *obj;
904 Obj_Entry **linkp;
905 Objlist_Entry *elm;
906
907 /* Finalize objects that are about to be unmapped. */
908 if (do_fini_funcs)
909 _rtld_call_fini_functions(mask, 0);
910
911 /* Remove the DAG from all objects' DAG lists. */
912 SIMPLEQ_FOREACH(elm, &root->dagmembers, link)
913 _rtld_objlist_remove(&elm->obj->dldags, root);
914
915 /* Remove the DAG from the RTLD_GLOBAL list. */
916 if (root->globalref) {
917 root->globalref = 0;
918 _rtld_objlist_remove(&_rtld_list_global, root);
919 }
920
921 /* Unmap all objects that are no longer referenced. */
922 linkp = &_rtld_objlist->next;
923 while ((obj = *linkp) != NULL) {
924 if (obj->refcount == 0) {
925 dbg(("unloading \"%s\"", obj->path));
926 if (obj->ehdr != MAP_FAILED)
927 munmap(obj->ehdr, _rtld_pagesz);
928 munmap(obj->mapbase, obj->mapsize);
929 _rtld_objlist_remove(&_rtld_list_global, obj);
930 _rtld_linkmap_delete(obj);
931 *linkp = obj->next;
932 _rtld_objcount--;
933 _rtld_obj_free(obj);
934 } else
935 linkp = &obj->next;
936 }
937 _rtld_objtail = linkp;
938 }
939 }
940
941 void
942 _rtld_ref_dag(Obj_Entry *root)
943 {
944 const Needed_Entry *needed;
945
946 assert(root);
947
948 ++root->refcount;
949
950 dbg(("incremented reference on \"%s\" (%d)", root->path,
951 root->refcount));
952 for (needed = root->needed; needed != NULL;
953 needed = needed->next) {
954 if (needed->obj != NULL)
955 _rtld_ref_dag(needed->obj);
956 }
957 }
958
959 static void
960 _rtld_unref_dag(Obj_Entry *root)
961 {
962
963 assert(root);
964 assert(root->refcount != 0);
965
966 --root->refcount;
967 dbg(("decremented reference on \"%s\" (%d)", root->path,
968 root->refcount));
969
970 if (root->refcount == 0) {
971 const Needed_Entry *needed;
972
973 for (needed = root->needed; needed != NULL;
974 needed = needed->next) {
975 if (needed->obj != NULL)
976 _rtld_unref_dag(needed->obj);
977 }
978 }
979 }
980
981 __strong_alias(__dlclose,dlclose)
982 int
983 dlclose(void *handle)
984 {
985 Obj_Entry *root;
986 sigset_t mask;
987
988 dbg(("dlclose of %p", handle));
989
990 _rtld_exclusive_enter(&mask);
991
992 root = _rtld_dlcheck(handle);
993
994 if (root == NULL) {
995 _rtld_exclusive_exit(&mask);
996 return -1;
997 }
998
999 _rtld_debug.r_state = RT_DELETE;
1000 _rtld_debug_state();
1001
1002 --root->dl_refcount;
1003 _rtld_unload_object(&mask, root, true);
1004
1005 _rtld_debug.r_state = RT_CONSISTENT;
1006 _rtld_debug_state();
1007
1008 _rtld_exclusive_exit(&mask);
1009
1010 return 0;
1011 }
1012
1013 __strong_alias(__dlerror,dlerror)
1014 char *
1015 dlerror(void)
1016 {
1017 char *msg = error_message;
1018
1019 error_message = NULL;
1020 return msg;
1021 }
1022
1023 __strong_alias(__dlopen,dlopen)
1024 void *
1025 dlopen(const char *name, int mode)
1026 {
1027 Obj_Entry **old_obj_tail = _rtld_objtail;
1028 Obj_Entry *obj = NULL;
1029 int flags = _RTLD_DLOPEN;
1030 bool nodelete;
1031 bool now;
1032 sigset_t mask;
1033 int result;
1034
1035 dbg(("dlopen of %s %d", name, mode));
1036
1037 _rtld_exclusive_enter(&mask);
1038
1039 flags |= (mode & RTLD_GLOBAL) ? _RTLD_GLOBAL : 0;
1040 flags |= (mode & RTLD_NOLOAD) ? _RTLD_NOLOAD : 0;
1041
1042 nodelete = (mode & RTLD_NODELETE) ? true : false;
1043 now = ((mode & RTLD_MODEMASK) == RTLD_NOW) ? true : false;
1044
1045 _rtld_debug.r_state = RT_ADD;
1046 _rtld_debug_state();
1047
1048 if (name == NULL) {
1049 obj = _rtld_objmain;
1050 obj->refcount++;
1051 } else
1052 obj = _rtld_load_library(name, _rtld_objmain, flags);
1053
1054
1055 if (obj != NULL) {
1056 ++obj->dl_refcount;
1057 if (*old_obj_tail != NULL) { /* We loaded something new. */
1058 assert(*old_obj_tail == obj);
1059
1060 result = _rtld_load_needed_objects(obj, flags);
1061 if (result != -1) {
1062 Objlist_Entry *entry;
1063 _rtld_init_dag(obj);
1064 SIMPLEQ_FOREACH(entry, &obj->dagmembers, link) {
1065 result = _rtld_verify_object_versions(entry->obj);
1066 if (result == -1)
1067 break;
1068 }
1069 }
1070 if (result == -1 || _rtld_relocate_objects(obj,
1071 (now || obj->z_now)) == -1) {
1072 _rtld_unload_object(&mask, obj, false);
1073 obj->dl_refcount--;
1074 obj = NULL;
1075 } else {
1076 _rtld_call_init_functions(&mask);
1077 }
1078 }
1079 if (obj != NULL) {
1080 if ((nodelete || obj->z_nodelete) && !obj->ref_nodel) {
1081 dbg(("dlopen obj %s nodelete", obj->path));
1082 _rtld_ref_dag(obj);
1083 obj->z_nodelete = obj->ref_nodel = true;
1084 }
1085 }
1086 }
1087 _rtld_debug.r_state = RT_CONSISTENT;
1088 _rtld_debug_state();
1089
1090 _rtld_exclusive_exit(&mask);
1091
1092 return obj;
1093 }
1094
1095 /*
1096 * Find a symbol in the main program.
1097 */
1098 void *
1099 _rtld_objmain_sym(const char *name)
1100 {
1101 Elf_Hash hash;
1102 const Elf_Sym *def;
1103 const Obj_Entry *obj;
1104 DoneList donelist;
1105
1106 hash.sysv = _rtld_sysv_hash(name);
1107 hash.gnu = _rtld_gnu_hash(name);
1108 obj = _rtld_objmain;
1109 _rtld_donelist_init(&donelist);
1110
1111 def = _rtld_symlook_list(name, &hash, &_rtld_list_main, &obj, 0,
1112 NULL, &donelist);
1113
1114 if (def != NULL)
1115 return obj->relocbase + def->st_value;
1116 return NULL;
1117 }
1118
1119 #ifdef __powerpc__
1120 static __noinline void *
1121 hackish_return_address(void)
1122 {
1123 #if __GNUC_PREREQ__(6,0)
1124 #pragma GCC diagnostic push
1125 #pragma GCC diagnostic ignored "-Wframe-address"
1126 #endif
1127 return __builtin_return_address(1);
1128 #if __GNUC_PREREQ__(6,0)
1129 #pragma GCC diagnostic pop
1130 #endif
1131 }
1132 #endif
1133
1134 #ifdef __HAVE_FUNCTION_DESCRIPTORS
1135 #define lookup_mutex_enter() _rtld_exclusive_enter(&mask)
1136 #define lookup_mutex_exit() _rtld_exclusive_exit(&mask)
1137 #else
1138 #define lookup_mutex_enter() _rtld_shared_enter()
1139 #define lookup_mutex_exit() _rtld_shared_exit()
1140 #endif
1141
1142 static void *
1143 do_dlsym(void *handle, const char *name, const Ver_Entry *ventry, void *retaddr)
1144 {
1145 const Obj_Entry *obj;
1146 Elf_Hash hash;
1147 const Elf_Sym *def;
1148 const Obj_Entry *defobj;
1149 DoneList donelist;
1150 const u_int flags = SYMLOOK_DLSYM | SYMLOOK_IN_PLT;
1151 #ifdef __HAVE_FUNCTION_DESCRIPTORS
1152 sigset_t mask;
1153 #endif
1154
1155 lookup_mutex_enter();
1156
1157 hash.sysv = _rtld_sysv_hash(name);
1158 hash.gnu = _rtld_gnu_hash(name);
1159 def = NULL;
1160 defobj = NULL;
1161
1162 switch ((intptr_t)handle) {
1163 case (intptr_t)NULL:
1164 case (intptr_t)RTLD_NEXT:
1165 case (intptr_t)RTLD_DEFAULT:
1166 case (intptr_t)RTLD_SELF:
1167 if ((obj = _rtld_obj_from_addr(retaddr)) == NULL) {
1168 _rtld_error("Cannot determine caller's shared object");
1169 lookup_mutex_exit();
1170 return NULL;
1171 }
1172
1173 switch ((intptr_t)handle) {
1174 case (intptr_t)NULL: /* Just the caller's shared object. */
1175 def = _rtld_symlook_obj(name, &hash, obj, flags, ventry);
1176 defobj = obj;
1177 break;
1178
1179 case (intptr_t)RTLD_NEXT: /* Objects after callers */
1180 obj = obj->next;
1181 /*FALLTHROUGH*/
1182
1183 case (intptr_t)RTLD_SELF: /* Caller included */
1184 for (; obj; obj = obj->next) {
1185 if ((def = _rtld_symlook_obj(name, &hash, obj,
1186 flags, ventry)) != NULL) {
1187 defobj = obj;
1188 break;
1189 }
1190 }
1191 /*
1192 * Search the dynamic linker itself, and possibly
1193 * resolve the symbol from there if it is not defined
1194 * already or weak. This is how the application links
1195 * to dynamic linker services such as dlopen.
1196 */
1197 if (!def || ELF_ST_BIND(def->st_info) == STB_WEAK) {
1198 const Elf_Sym *symp = _rtld_symlook_obj(name,
1199 &hash, &_rtld_objself, flags, ventry);
1200 if (symp != NULL) {
1201 def = symp;
1202 defobj = &_rtld_objself;
1203 }
1204 }
1205 break;
1206
1207 case (intptr_t)RTLD_DEFAULT:
1208 def = _rtld_symlook_default(name, &hash, obj, &defobj,
1209 flags, ventry);
1210 break;
1211
1212 default:
1213 abort();
1214 }
1215 break;
1216
1217 default:
1218 if ((obj = _rtld_dlcheck(handle)) == NULL) {
1219 lookup_mutex_exit();
1220 return NULL;
1221 }
1222
1223 _rtld_donelist_init(&donelist);
1224
1225 if (obj->mainprog) {
1226 /* Search main program and all libraries loaded by it */
1227 def = _rtld_symlook_list(name, &hash, &_rtld_list_main,
1228 &defobj, flags, ventry, &donelist);
1229 } else {
1230 Needed_Entry fake;
1231 DoneList depth;
1232
1233 /* Search the object and all the libraries loaded by it. */
1234 fake.next = NULL;
1235 fake.obj = __UNCONST(obj);
1236 fake.name = 0;
1237
1238 _rtld_donelist_init(&depth);
1239 def = _rtld_symlook_needed(name, &hash, &fake, &defobj,
1240 flags, ventry, &donelist, &depth);
1241 }
1242
1243 break;
1244 }
1245
1246 if (def != NULL) {
1247 void *p;
1248
1249 if (ELF_ST_TYPE(def->st_info) == STT_GNU_IFUNC) {
1250 #ifdef __HAVE_FUNCTION_DESCRIPTORS
1251 lookup_mutex_exit();
1252 _rtld_shared_enter();
1253 #endif
1254 p = (void *)_rtld_resolve_ifunc(defobj, def);
1255 _rtld_shared_exit();
1256 return p;
1257 }
1258
1259 #ifdef __HAVE_FUNCTION_DESCRIPTORS
1260 if (ELF_ST_TYPE(def->st_info) == STT_FUNC) {
1261 p = (void *)_rtld_function_descriptor_alloc(defobj,
1262 def, 0);
1263 lookup_mutex_exit();
1264 return p;
1265 }
1266 #endif /* __HAVE_FUNCTION_DESCRIPTORS */
1267 p = defobj->relocbase + def->st_value;
1268 lookup_mutex_exit();
1269 return p;
1270 }
1271
1272 _rtld_error("Undefined symbol \"%s\"", name);
1273 lookup_mutex_exit();
1274 return NULL;
1275 }
1276
1277 __strong_alias(__dlsym,dlsym)
1278 void *
1279 dlsym(void *handle, const char *name)
1280 {
1281 void *retaddr;
1282
1283 dbg(("dlsym of %s in %p", name, handle));
1284
1285 #ifdef __powerpc__
1286 retaddr = hackish_return_address();
1287 #else
1288 retaddr = __builtin_return_address(0);
1289 #endif
1290 return do_dlsym(handle, name, NULL, retaddr);
1291 }
1292
1293 __strong_alias(__dlvsym,dlvsym)
1294 void *
1295 dlvsym(void *handle, const char *name, const char *version)
1296 {
1297 Ver_Entry *ventry = NULL;
1298 Ver_Entry ver_entry;
1299 void *retaddr;
1300
1301 dbg(("dlvsym of %s@%s in %p", name, version ? version : NULL, handle));
1302
1303 if (version != NULL) {
1304 ver_entry.name = version;
1305 ver_entry.file = NULL;
1306 ver_entry.hash = _rtld_sysv_hash(version);
1307 ver_entry.flags = 0;
1308 ventry = &ver_entry;
1309 }
1310 #ifdef __powerpc__
1311 retaddr = hackish_return_address();
1312 #else
1313 retaddr = __builtin_return_address(0);
1314 #endif
1315 return do_dlsym(handle, name, ventry, retaddr);
1316 }
1317
1318 __strong_alias(__dladdr,dladdr)
1319 int
1320 dladdr(const void *addr, Dl_info *info)
1321 {
1322 const Obj_Entry *obj;
1323 const Elf_Sym *def, *best_def;
1324 void *symbol_addr;
1325 unsigned long symoffset;
1326 #ifdef __HAVE_FUNCTION_DESCRIPTORS
1327 sigset_t mask;
1328 #endif
1329
1330 dbg(("dladdr of %p", addr));
1331
1332 lookup_mutex_enter();
1333
1334 #ifdef __HAVE_FUNCTION_DESCRIPTORS
1335 addr = _rtld_function_descriptor_function(addr);
1336 #endif /* __HAVE_FUNCTION_DESCRIPTORS */
1337
1338 obj = _rtld_obj_from_addr(addr);
1339 if (obj == NULL) {
1340 _rtld_error("No shared object contains address");
1341 lookup_mutex_exit();
1342 return 0;
1343 }
1344 info->dli_fname = obj->path;
1345 info->dli_fbase = obj->mapbase;
1346 info->dli_saddr = (void *)0;
1347 info->dli_sname = NULL;
1348
1349 /*
1350 * Walk the symbol list looking for the symbol whose address is
1351 * closest to the address sent in.
1352 */
1353 best_def = NULL;
1354 for (symoffset = 0; symoffset < obj->nchains; symoffset++) {
1355 def = obj->symtab + symoffset;
1356
1357 /*
1358 * For skip the symbol if st_shndx is either SHN_UNDEF or
1359 * SHN_COMMON.
1360 */
1361 if (def->st_shndx == SHN_UNDEF || def->st_shndx == SHN_COMMON)
1362 continue;
1363
1364 /*
1365 * If the symbol is greater than the specified address, or if it
1366 * is further away from addr than the current nearest symbol,
1367 * then reject it.
1368 */
1369 symbol_addr = obj->relocbase + def->st_value;
1370 if (symbol_addr > addr || symbol_addr < info->dli_saddr)
1371 continue;
1372
1373 /* Update our idea of the nearest symbol. */
1374 info->dli_sname = obj->strtab + def->st_name;
1375 info->dli_saddr = symbol_addr;
1376 best_def = def;
1377
1378
1379 /* Exact match? */
1380 if (info->dli_saddr == addr)
1381 break;
1382 }
1383
1384 #ifdef __HAVE_FUNCTION_DESCRIPTORS
1385 if (best_def != NULL && ELF_ST_TYPE(best_def->st_info) == STT_FUNC)
1386 info->dli_saddr = (void *)_rtld_function_descriptor_alloc(obj,
1387 best_def, 0);
1388 #else
1389 __USE(best_def);
1390 #endif /* __HAVE_FUNCTION_DESCRIPTORS */
1391
1392 lookup_mutex_exit();
1393 return 1;
1394 }
1395
1396 __strong_alias(__dlinfo,dlinfo)
1397 int
1398 dlinfo(void *handle, int req, void *v)
1399 {
1400 const Obj_Entry *obj;
1401 void *retaddr;
1402
1403 dbg(("dlinfo for %p %d", handle, req));
1404
1405 _rtld_shared_enter();
1406
1407 if (handle == RTLD_SELF) {
1408 #ifdef __powerpc__
1409 retaddr = hackish_return_address();
1410 #else
1411 retaddr = __builtin_return_address(0);
1412 #endif
1413 if ((obj = _rtld_obj_from_addr(retaddr)) == NULL) {
1414 _rtld_error("Cannot determine caller's shared object");
1415 _rtld_shared_exit();
1416 return -1;
1417 }
1418 } else {
1419 if ((obj = _rtld_dlcheck(handle)) == NULL) {
1420 _rtld_shared_exit();
1421 return -1;
1422 }
1423 }
1424
1425 switch (req) {
1426 case RTLD_DI_LINKMAP:
1427 {
1428 const struct link_map **map = v;
1429
1430 *map = &obj->linkmap;
1431 break;
1432 }
1433
1434 default:
1435 _rtld_error("Invalid request");
1436 _rtld_shared_exit();
1437 return -1;
1438 }
1439
1440 _rtld_shared_exit();
1441 return 0;
1442 }
1443
1444 static void
1445 _rtld_fill_dl_phdr_info(const Obj_Entry *obj, struct dl_phdr_info *phdr_info)
1446 {
1447
1448 phdr_info->dlpi_addr = (Elf_Addr)obj->relocbase;
1449 /* XXX: wrong but not fixing it yet */
1450 phdr_info->dlpi_name = obj->path;
1451 phdr_info->dlpi_phdr = obj->phdr;
1452 phdr_info->dlpi_phnum = obj->phsize / sizeof(obj->phdr[0]);
1453 #if defined(__HAVE_TLS_VARIANT_I) || defined(__HAVE_TLS_VARIANT_II)
1454 phdr_info->dlpi_tls_modid = obj->tlsindex;
1455 phdr_info->dlpi_tls_data = obj->tlsinit;
1456 #else
1457 phdr_info->dlpi_tls_modid = 0;
1458 phdr_info->dlpi_tls_data = 0;
1459 #endif
1460 phdr_info->dlpi_adds = _rtld_objloads;
1461 phdr_info->dlpi_subs = _rtld_objloads - _rtld_objcount;
1462 }
1463
1464 __strong_alias(__dl_iterate_phdr,dl_iterate_phdr);
1465 int
1466 dl_iterate_phdr(int (*callback)(struct dl_phdr_info *, size_t, void *), void *param)
1467 {
1468 struct dl_phdr_info phdr_info;
1469 const Obj_Entry *obj;
1470 int error = 0;
1471
1472 dbg(("dl_iterate_phdr"));
1473
1474 _rtld_shared_enter();
1475
1476 for (obj = _rtld_objlist; obj != NULL; obj = obj->next) {
1477 _rtld_fill_dl_phdr_info(obj, &phdr_info);
1478
1479 /* XXXlocking: exit point */
1480 error = callback(&phdr_info, sizeof(phdr_info), param);
1481 if (error)
1482 break;
1483 }
1484
1485 if (error == 0) {
1486 _rtld_fill_dl_phdr_info(&_rtld_objself, &phdr_info);
1487
1488 /* XXXlocking: exit point */
1489 error = callback(&phdr_info, sizeof(phdr_info), param);
1490 }
1491
1492 _rtld_shared_exit();
1493 return error;
1494 }
1495
1496 void
1497 __dl_cxa_refcount(void *addr, ssize_t delta)
1498 {
1499 sigset_t mask;
1500 Obj_Entry *obj;
1501
1502 if (delta == 0)
1503 return;
1504
1505 dbg(("__dl_cxa_refcount of %p with %zd", addr, delta));
1506
1507 _rtld_exclusive_enter(&mask);
1508 obj = _rtld_obj_from_addr(addr);
1509
1510 if (obj == NULL) {
1511 dbg(("__dl_cxa_refcont: address not found"));
1512 _rtld_error("No shared object contains address");
1513 _rtld_exclusive_exit(&mask);
1514 return;
1515 }
1516 if (delta > 0 && obj->cxa_refcount > SIZE_MAX - delta)
1517 _rtld_error("Reference count overflow");
1518 else if (delta < 0 && obj->cxa_refcount < -1 + (size_t)-(delta + 1))
1519 _rtld_error("Reference count underflow");
1520 else {
1521 if (obj->cxa_refcount == 0)
1522 ++obj->refcount;
1523 obj->cxa_refcount += delta;
1524 dbg(("new reference count: %zu", obj->cxa_refcount));
1525 if (obj->cxa_refcount == 0) {
1526 --obj->refcount;
1527 if (obj->refcount == 0)
1528 _rtld_unload_object(&mask, obj, true);
1529 }
1530 }
1531
1532 _rtld_exclusive_exit(&mask);
1533 }
1534
1535 /*
1536 * Error reporting function. Use it like printf. If formats the message
1537 * into a buffer, and sets things up so that the next call to dlerror()
1538 * will return the message.
1539 */
1540 void
1541 _rtld_error(const char *fmt,...)
1542 {
1543 static char buf[512];
1544 va_list ap;
1545
1546 va_start(ap, fmt);
1547 xvsnprintf(buf, sizeof buf, fmt, ap);
1548 error_message = buf;
1549 va_end(ap);
1550 }
1551
1552 void
1553 _rtld_debug_state(void)
1554 {
1555 #if defined(__hppa__)
1556 __asm volatile("nop" ::: "memory");
1557 #endif
1558
1559 /* Prevent optimizer from removing calls to this function */
1560 __insn_barrier();
1561 }
1562
1563 void
1564 _rtld_linkmap_add(Obj_Entry *obj)
1565 {
1566 struct link_map *l = &obj->linkmap;
1567 struct link_map *prev;
1568
1569 obj->linkmap.l_name = obj->path;
1570 obj->linkmap.l_addr = obj->relocbase;
1571 obj->linkmap.l_ld = obj->dynamic;
1572 #ifdef __mips__
1573 /* XXX This field is not standard and will be removed eventually. */
1574 obj->linkmap.l_offs = obj->relocbase;
1575 #endif
1576
1577 if (_rtld_debug.r_map == NULL) {
1578 _rtld_debug.r_map = l;
1579 return;
1580 }
1581
1582 /*
1583 * Scan to the end of the list, but not past the entry for the
1584 * dynamic linker, which we want to keep at the very end.
1585 */
1586 for (prev = _rtld_debug.r_map;
1587 prev->l_next != NULL && prev->l_next != &_rtld_objself.linkmap;
1588 prev = prev->l_next);
1589
1590 l->l_prev = prev;
1591 l->l_next = prev->l_next;
1592 if (l->l_next != NULL)
1593 l->l_next->l_prev = l;
1594 prev->l_next = l;
1595 }
1596
1597 void
1598 _rtld_linkmap_delete(Obj_Entry *obj)
1599 {
1600 struct link_map *l = &obj->linkmap;
1601
1602 if (l->l_prev == NULL) {
1603 if ((_rtld_debug.r_map = l->l_next) != NULL)
1604 l->l_next->l_prev = NULL;
1605 return;
1606 }
1607 if ((l->l_prev->l_next = l->l_next) != NULL)
1608 l->l_next->l_prev = l->l_prev;
1609 }
1610
1611 static Obj_Entry *
1612 _rtld_obj_from_addr(const void *addr)
1613 {
1614 Obj_Entry *obj;
1615
1616 for (obj = _rtld_objlist; obj != NULL; obj = obj->next) {
1617 if (addr < (void *) obj->mapbase)
1618 continue;
1619 if (addr < (void *) (obj->mapbase + obj->mapsize))
1620 return obj;
1621 }
1622 return NULL;
1623 }
1624
1625 static void
1626 _rtld_objlist_clear(Objlist *list)
1627 {
1628 while (!SIMPLEQ_EMPTY(list)) {
1629 Objlist_Entry* elm = SIMPLEQ_FIRST(list);
1630 SIMPLEQ_REMOVE_HEAD(list, link);
1631 xfree(elm);
1632 }
1633 }
1634
1635 static void
1636 _rtld_objlist_remove(Objlist *list, Obj_Entry *obj)
1637 {
1638 Objlist_Entry *elm;
1639
1640 if ((elm = _rtld_objlist_find(list, obj)) != NULL) {
1641 SIMPLEQ_REMOVE(list, elm, Struct_Objlist_Entry, link);
1642 xfree(elm);
1643 }
1644 }
1645
1646 #define RTLD_EXCLUSIVE_MASK 0x80000000U
1647 static volatile unsigned int _rtld_mutex;
1648 static volatile unsigned int _rtld_waiter_exclusive;
1649 static volatile unsigned int _rtld_waiter_shared;
1650
1651 void
1652 _rtld_shared_enter(void)
1653 {
1654 unsigned int cur;
1655 lwpid_t waiter, self = 0;
1656
1657 membar_enter();
1658
1659 for (;;) {
1660 cur = _rtld_mutex;
1661 /*
1662 * First check if we are currently not exclusively locked.
1663 */
1664 if ((cur & RTLD_EXCLUSIVE_MASK) == 0) {
1665 /* Yes, so increment use counter */
1666 if (atomic_cas_uint(&_rtld_mutex, cur, cur + 1) != cur)
1667 continue;
1668 membar_enter();
1669 return;
1670 }
1671 /*
1672 * Someone has an exclusive lock. Puts us on the waiter list.
1673 */
1674 if (!self)
1675 self = _lwp_self();
1676 if (cur == (self | RTLD_EXCLUSIVE_MASK)) {
1677 if (_rtld_mutex_may_recurse)
1678 return;
1679 _rtld_error("%s: dead lock detected", __func__);
1680 _rtld_die();
1681 }
1682 waiter = atomic_swap_uint(&_rtld_waiter_shared, self);
1683 /*
1684 * Check for race against _rtld_exclusive_exit before sleeping.
1685 */
1686 membar_sync();
1687 if ((_rtld_mutex & RTLD_EXCLUSIVE_MASK) ||
1688 _rtld_waiter_exclusive)
1689 _lwp_park(CLOCK_REALTIME, 0, NULL, 0,
1690 __UNVOLATILE(&_rtld_mutex), NULL);
1691 /* Try to remove us from the waiter list. */
1692 atomic_cas_uint(&_rtld_waiter_shared, self, 0);
1693 if (waiter)
1694 _lwp_unpark(waiter, __UNVOLATILE(&_rtld_mutex));
1695 }
1696 }
1697
1698 void
1699 _rtld_shared_exit(void)
1700 {
1701 lwpid_t waiter;
1702
1703 /*
1704 * Shared lock taken after an exclusive lock.
1705 * Just assume this is a partial recursion.
1706 */
1707 if (_rtld_mutex & RTLD_EXCLUSIVE_MASK)
1708 return;
1709
1710 /*
1711 * Wakeup LWPs waiting for an exclusive lock if this is the last
1712 * LWP on the shared lock.
1713 */
1714 membar_exit();
1715 if (atomic_dec_uint_nv(&_rtld_mutex))
1716 return;
1717 membar_sync();
1718 if ((waiter = _rtld_waiter_exclusive) != 0)
1719 _lwp_unpark(waiter, __UNVOLATILE(&_rtld_mutex));
1720 }
1721
1722 void
1723 _rtld_exclusive_enter(sigset_t *mask)
1724 {
1725 lwpid_t waiter, self = _lwp_self();
1726 unsigned int locked_value = (unsigned int)self | RTLD_EXCLUSIVE_MASK;
1727 unsigned int cur;
1728 sigset_t blockmask;
1729
1730 sigfillset(&blockmask);
1731 sigdelset(&blockmask, SIGTRAP); /* Allow the debugger */
1732 sigprocmask(SIG_BLOCK, &blockmask, mask);
1733
1734 for (;;) {
1735 if (atomic_cas_uint(&_rtld_mutex, 0, locked_value) == 0) {
1736 membar_enter();
1737 break;
1738 }
1739 waiter = atomic_swap_uint(&_rtld_waiter_exclusive, self);
1740 membar_sync();
1741 cur = _rtld_mutex;
1742 if (cur == locked_value) {
1743 _rtld_error("%s: dead lock detected", __func__);
1744 _rtld_die();
1745 }
1746 if (cur)
1747 _lwp_park(CLOCK_REALTIME, 0, NULL, 0,
1748 __UNVOLATILE(&_rtld_mutex), NULL);
1749 atomic_cas_uint(&_rtld_waiter_exclusive, self, 0);
1750 if (waiter)
1751 _lwp_unpark(waiter, __UNVOLATILE(&_rtld_mutex));
1752 }
1753 }
1754
1755 void
1756 _rtld_exclusive_exit(sigset_t *mask)
1757 {
1758 lwpid_t waiter;
1759
1760 membar_exit();
1761 _rtld_mutex = 0;
1762 membar_sync();
1763 if ((waiter = _rtld_waiter_exclusive) != 0)
1764 _lwp_unpark(waiter, __UNVOLATILE(&_rtld_mutex));
1765
1766 if ((waiter = _rtld_waiter_shared) != 0)
1767 _lwp_unpark(waiter, __UNVOLATILE(&_rtld_mutex));
1768
1769 sigprocmask(SIG_SETMASK, mask, NULL);
1770 }
1771
1772 int
1773 _rtld_relro(const Obj_Entry *obj, bool wantmain)
1774 {
1775 #ifdef GNU_RELRO
1776 if (obj->relro_size == 0)
1777 return 0;
1778 if (wantmain != (obj ==_rtld_objmain))
1779 return 0;
1780
1781 dbg(("RELRO %s %p %zx\n", obj->path, obj->relro_page, obj->relro_size));
1782 if (mprotect(obj->relro_page, obj->relro_size, PROT_READ) == -1) {
1783 _rtld_error("%s: Cannot enforce relro " "protection: %s",
1784 obj->path, xstrerror(errno));
1785 return -1;
1786 }
1787 #endif
1788 return 0;
1789 }
1790