1 | /*
|
---|
2 | * Copyright (c) 2008 Jiri Svoboda
|
---|
3 | * All rights reserved.
|
---|
4 | *
|
---|
5 | * Redistribution and use in source and binary forms, with or without
|
---|
6 | * modification, are permitted provided that the following conditions
|
---|
7 | * are met:
|
---|
8 | *
|
---|
9 | * - Redistributions of source code must retain the above copyright
|
---|
10 | * notice, this list of conditions and the following disclaimer.
|
---|
11 | * - Redistributions in binary form must reproduce the above copyright
|
---|
12 | * notice, this list of conditions and the following disclaimer in the
|
---|
13 | * documentation and/or other materials provided with the distribution.
|
---|
14 | * - The name of the author may not be used to endorse or promote products
|
---|
15 | * derived from this software without specific prior written permission.
|
---|
16 | *
|
---|
17 | * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
|
---|
18 | * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
|
---|
19 | * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
|
---|
20 | * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
|
---|
21 | * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
|
---|
22 | * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
|
---|
23 | * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
|
---|
24 | * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
|
---|
25 | * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
|
---|
26 | * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
|
---|
27 | */
|
---|
28 |
|
---|
29 | /** @addtogroup rtld rtld
|
---|
30 | * @brief
|
---|
31 | * @{
|
---|
32 | */
|
---|
33 | /**
|
---|
34 | * @file
|
---|
35 | */
|
---|
36 |
|
---|
37 | #include <stdio.h>
|
---|
38 | #include <stdlib.h>
|
---|
39 |
|
---|
40 | #include <elf/elf.h>
|
---|
41 | #include <rtld/module.h>
|
---|
42 | #include <rtld/rtld.h>
|
---|
43 | #include <rtld/rtld_debug.h>
|
---|
44 | #include <rtld/symbol.h>
|
---|
45 |
|
---|
46 | /*
|
---|
47 | * Hash tables are 32-bit (elf_word) even for 64-bit ELF files.
|
---|
48 | */
|
---|
49 | static elf_word elf_hash(const unsigned char *name)
|
---|
50 | {
|
---|
51 | elf_word h = 0, g;
|
---|
52 |
|
---|
53 | while (*name) {
|
---|
54 | h = (h << 4) + *name++;
|
---|
55 | g = h & 0xf0000000;
|
---|
56 | if (g != 0) h ^= g >> 24;
|
---|
57 | h &= ~g;
|
---|
58 | }
|
---|
59 |
|
---|
60 | return h;
|
---|
61 | }
|
---|
62 |
|
---|
63 | static elf_symbol_t *def_find_in_module(const char *name, module_t *m)
|
---|
64 | {
|
---|
65 | elf_symbol_t *sym_table;
|
---|
66 | elf_symbol_t *s, *sym;
|
---|
67 | elf_word nbucket;
|
---|
68 | /*elf_word nchain;*/
|
---|
69 | elf_word i;
|
---|
70 | char *s_name;
|
---|
71 | elf_word bucket;
|
---|
72 |
|
---|
73 | DPRINTF("def_find_in_module('%s', %s)\n", name, m->dyn.soname);
|
---|
74 |
|
---|
75 | sym_table = m->dyn.sym_tab;
|
---|
76 | nbucket = m->dyn.hash[0];
|
---|
77 | /*nchain = m->dyn.hash[1]; XXX Use to check HT range*/
|
---|
78 |
|
---|
79 | bucket = elf_hash((unsigned char *)name) % nbucket;
|
---|
80 | i = m->dyn.hash[2 + bucket];
|
---|
81 |
|
---|
82 | sym = NULL;
|
---|
83 | while (i != STN_UNDEF) {
|
---|
84 | s = &sym_table[i];
|
---|
85 | s_name = m->dyn.str_tab + s->st_name;
|
---|
86 |
|
---|
87 | if (str_cmp(name, s_name) == 0) {
|
---|
88 | sym = s;
|
---|
89 | break;
|
---|
90 | }
|
---|
91 |
|
---|
92 | i = m->dyn.hash[2 + nbucket + i];
|
---|
93 | }
|
---|
94 |
|
---|
95 | if (!sym)
|
---|
96 | return NULL; /* Not found */
|
---|
97 |
|
---|
98 | if (sym->st_shndx == SHN_UNDEF) {
|
---|
99 | /* Not a definition */
|
---|
100 | return NULL;
|
---|
101 | }
|
---|
102 |
|
---|
103 | return sym; /* Found */
|
---|
104 | }
|
---|
105 |
|
---|
106 | /** Find the definition of a symbol in a module and its deps.
|
---|
107 | *
|
---|
108 | * Search the module dependency graph is breadth-first, beginning
|
---|
109 | * from the module @a start. Thus, @start and all its dependencies
|
---|
110 | * get searched.
|
---|
111 | *
|
---|
112 | * @param name Name of the symbol to search for.
|
---|
113 | * @param start Module in which to start the search..
|
---|
114 | * @param mod (output) Will be filled with a pointer to the module
|
---|
115 | * that contains the symbol.
|
---|
116 | */
|
---|
117 | elf_symbol_t *symbol_bfs_find(const char *name, module_t *start,
|
---|
118 | module_t **mod)
|
---|
119 | {
|
---|
120 | module_t *m, *dm;
|
---|
121 | elf_symbol_t *sym, *s;
|
---|
122 | list_t queue;
|
---|
123 | size_t i;
|
---|
124 |
|
---|
125 | /*
|
---|
126 | * Do a BFS using the queue_link and bfs_tag fields.
|
---|
127 | * Vertices (modules) are tagged the moment they are inserted
|
---|
128 | * into the queue. This prevents from visiting the same vertex
|
---|
129 | * more times in case of circular dependencies.
|
---|
130 | */
|
---|
131 |
|
---|
132 | /* Mark all vertices (modules) as unvisited */
|
---|
133 | modules_untag(start->rtld);
|
---|
134 |
|
---|
135 | /* Insert root (the program) into the queue and tag it */
|
---|
136 | list_initialize(&queue);
|
---|
137 | start->bfs_tag = true;
|
---|
138 | list_append(&start->queue_link, &queue);
|
---|
139 |
|
---|
140 | /* If the symbol is found, it will be stored in 'sym' */
|
---|
141 | sym = NULL;
|
---|
142 |
|
---|
143 | /* While queue is not empty */
|
---|
144 | while (!list_empty(&queue)) {
|
---|
145 | /* Pop first element from the queue */
|
---|
146 | m = list_get_instance(list_first(&queue), module_t, queue_link);
|
---|
147 | list_remove(&m->queue_link);
|
---|
148 |
|
---|
149 | /* If ssf_noroot is specified, do not look in start module */
|
---|
150 | s = def_find_in_module(name, m);
|
---|
151 | if (s != NULL) {
|
---|
152 | /* Symbol found */
|
---|
153 | sym = s;
|
---|
154 | *mod = m;
|
---|
155 | break;
|
---|
156 | }
|
---|
157 |
|
---|
158 | /*
|
---|
159 | * Insert m's untagged dependencies into the queue
|
---|
160 | * and tag them.
|
---|
161 | */
|
---|
162 | for (i = 0; i < m->n_deps; ++i) {
|
---|
163 | dm = m->deps[i];
|
---|
164 |
|
---|
165 | if (dm->bfs_tag == false) {
|
---|
166 | dm->bfs_tag = true;
|
---|
167 | list_append(&dm->queue_link, &queue);
|
---|
168 | }
|
---|
169 | }
|
---|
170 | }
|
---|
171 |
|
---|
172 | /* Empty the queue so that we leave it in a clean state */
|
---|
173 | while (!list_empty(&queue))
|
---|
174 | list_remove(list_first(&queue));
|
---|
175 |
|
---|
176 | if (!sym) {
|
---|
177 | return NULL; /* Not found */
|
---|
178 | }
|
---|
179 |
|
---|
180 | return sym; /* Symbol found */
|
---|
181 | }
|
---|
182 |
|
---|
183 |
|
---|
184 | /** Find the definition of a symbol.
|
---|
185 | *
|
---|
186 | * By definition in System V ABI, if module origin has the flag DT_SYMBOLIC,
|
---|
187 | * origin is searched first. Otherwise, search global modules in the default
|
---|
188 | * order.
|
---|
189 | *
|
---|
190 | * @param name Name of the symbol to search for.
|
---|
191 | * @param origin Module in which the dependency originates.
|
---|
192 | * @param flags @c ssf_none or @c ssf_noexec to not look for the symbol
|
---|
193 | * in the executable program.
|
---|
194 | * @param mod (output) Will be filled with a pointer to the module
|
---|
195 | * that contains the symbol.
|
---|
196 | */
|
---|
197 | elf_symbol_t *symbol_def_find(const char *name, module_t *origin,
|
---|
198 | symbol_search_flags_t flags, module_t **mod)
|
---|
199 | {
|
---|
200 | elf_symbol_t *s;
|
---|
201 |
|
---|
202 | DPRINTF("symbol_def_find('%s', origin='%s'\n",
|
---|
203 | name, origin->dyn.soname);
|
---|
204 | if (origin->dyn.symbolic && (!origin->exec || (flags & ssf_noexec) == 0)) {
|
---|
205 | DPRINTF("symbolic->find '%s' in module '%s'\n", name, origin->dyn.soname);
|
---|
206 | /*
|
---|
207 | * Origin module has a DT_SYMBOLIC flag.
|
---|
208 | * Try this module first
|
---|
209 | */
|
---|
210 | s = def_find_in_module(name, origin);
|
---|
211 | if (s != NULL) {
|
---|
212 | /* Found */
|
---|
213 | *mod = origin;
|
---|
214 | return s;
|
---|
215 | }
|
---|
216 | }
|
---|
217 |
|
---|
218 | /* Not DT_SYMBOLIC or no match. Now try other locations. */
|
---|
219 |
|
---|
220 | list_foreach(origin->rtld->modules, modules_link, module_t, m) {
|
---|
221 | DPRINTF("module '%s' local?\n", m->dyn.soname);
|
---|
222 | if (!m->local && (!m->exec || (flags & ssf_noexec) == 0)) {
|
---|
223 | DPRINTF("!local->find '%s' in module '%s'\n", name, m->dyn.soname);
|
---|
224 | s = def_find_in_module(name, m);
|
---|
225 | if (s != NULL) {
|
---|
226 | /* Found */
|
---|
227 | *mod = m;
|
---|
228 | return s;
|
---|
229 | }
|
---|
230 | }
|
---|
231 | }
|
---|
232 |
|
---|
233 | /* Finally, try origin. */
|
---|
234 |
|
---|
235 | DPRINTF("try finding '%s' in origin '%s'\n", name,
|
---|
236 | origin->dyn.soname);
|
---|
237 |
|
---|
238 | if (!origin->exec || (flags & ssf_noexec) == 0) {
|
---|
239 | s = def_find_in_module(name, origin);
|
---|
240 | if (s != NULL) {
|
---|
241 | /* Found */
|
---|
242 | *mod = origin;
|
---|
243 | return s;
|
---|
244 | }
|
---|
245 | }
|
---|
246 |
|
---|
247 | DPRINTF("'%s' not found\n", name);
|
---|
248 | return NULL;
|
---|
249 | }
|
---|
250 |
|
---|
251 | void *symbol_get_addr(elf_symbol_t *sym, module_t *m)
|
---|
252 | {
|
---|
253 | if (sym->st_shndx == SHN_ABS) {
|
---|
254 | /* Do not add bias to absolute symbols */
|
---|
255 | return (void *) sym->st_value;
|
---|
256 | } else {
|
---|
257 | return (void *) (sym->st_value + m->bias);
|
---|
258 | }
|
---|
259 | }
|
---|
260 |
|
---|
261 | /** @}
|
---|
262 | */
|
---|