crt0-common.c revision 1.23 1 1.23 christos /* $NetBSD: crt0-common.c,v 1.23 2018/12/28 20:12:35 christos Exp $ */
2 1.1 joerg
3 1.1 joerg /*
4 1.1 joerg * Copyright (c) 1998 Christos Zoulas
5 1.1 joerg * Copyright (c) 1995 Christopher G. Demetriou
6 1.1 joerg * All rights reserved.
7 1.1 joerg *
8 1.1 joerg * Redistribution and use in source and binary forms, with or without
9 1.1 joerg * modification, are permitted provided that the following conditions
10 1.1 joerg * are met:
11 1.1 joerg * 1. Redistributions of source code must retain the above copyright
12 1.1 joerg * notice, this list of conditions and the following disclaimer.
13 1.1 joerg * 2. Redistributions in binary form must reproduce the above copyright
14 1.1 joerg * notice, this list of conditions and the following disclaimer in the
15 1.1 joerg * documentation and/or other materials provided with the distribution.
16 1.1 joerg * 3. All advertising materials mentioning features or use of this software
17 1.1 joerg * must display the following acknowledgement:
18 1.1 joerg * This product includes software developed for the
19 1.1 joerg * NetBSD Project. See http://www.NetBSD.org/ for
20 1.1 joerg * information about NetBSD.
21 1.1 joerg * 4. The name of the author may not be used to endorse or promote products
22 1.1 joerg * derived from this software without specific prior written permission.
23 1.1 joerg *
24 1.1 joerg * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
25 1.1 joerg * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
26 1.1 joerg * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
27 1.1 joerg * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
28 1.1 joerg * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
29 1.1 joerg * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
30 1.1 joerg * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
31 1.1 joerg * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
32 1.1 joerg * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
33 1.1 joerg * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
34 1.1 joerg *
35 1.1 joerg * <<Id: LICENSE,v 1.2 2000/06/14 15:57:33 cgd Exp>>
36 1.1 joerg */
37 1.1 joerg
38 1.1 joerg #include <sys/cdefs.h>
39 1.23 christos __RCSID("$NetBSD: crt0-common.c,v 1.23 2018/12/28 20:12:35 christos Exp $");
40 1.1 joerg
41 1.1 joerg #include <sys/types.h>
42 1.6 joerg #include <sys/exec.h>
43 1.20 joerg #include <sys/exec_elf.h>
44 1.1 joerg #include <sys/syscall.h>
45 1.1 joerg #include <machine/profile.h>
46 1.1 joerg #include <stdlib.h>
47 1.1 joerg #include <unistd.h>
48 1.1 joerg
49 1.1 joerg extern int main(int, char **, char **);
50 1.1 joerg
51 1.20 joerg typedef void (*fptr_t)(void);
52 1.23 christos #ifndef HAVE_INITFINI_ARRAY
53 1.1 joerg extern void _init(void);
54 1.1 joerg extern void _fini(void);
55 1.22 christos #endif
56 1.5 joerg extern void _libc_init(void);
57 1.1 joerg
58 1.1 joerg /*
59 1.1 joerg * Arrange for _DYNAMIC to be weak and undefined (and therefore to show up
60 1.1 joerg * as being at address zero, unless something else defines it). That way,
61 1.1 joerg * if we happen to be compiling without -static but with without any
62 1.1 joerg * shared libs present, things will still work.
63 1.1 joerg */
64 1.3 joerg
65 1.4 joerg __weakref_visible int rtld_DYNAMIC __weak_reference(_DYNAMIC);
66 1.1 joerg
67 1.1 joerg #ifdef MCRT0
68 1.1 joerg extern void monstartup(u_long, u_long);
69 1.1 joerg extern void _mcleanup(void);
70 1.1 joerg extern unsigned char __etext, __eprol;
71 1.1 joerg #endif /* MCRT0 */
72 1.1 joerg
73 1.1 joerg char **environ;
74 1.1 joerg struct ps_strings *__ps_strings = 0;
75 1.1 joerg
76 1.1 joerg static char empty_string[] = "";
77 1.1 joerg char *__progname = empty_string;
78 1.1 joerg
79 1.20 joerg __dead __dso_hidden void ___start(void (*)(void), struct ps_strings *);
80 1.1 joerg
81 1.1 joerg #define write(fd, s, n) __syscall(SYS_write, (fd), (s), (n))
82 1.1 joerg
83 1.1 joerg #define _FATAL(str) \
84 1.1 joerg do { \
85 1.1 joerg write(2, str, sizeof(str)-1); \
86 1.1 joerg _exit(1); \
87 1.1 joerg } while (0)
88 1.1 joerg
89 1.9 matt /*
90 1.9 matt * If we are using INIT_ARRAY/FINI_ARRAY and we are linked statically,
91 1.9 matt * we have to process these instead of relying on RTLD to do it for us.
92 1.9 matt *
93 1.9 matt * Since we don't need .init or .fini sections, just code them in C
94 1.9 matt * to make life easier.
95 1.9 matt */
96 1.14 joerg extern const fptr_t __preinit_array_start[] __dso_hidden;
97 1.14 joerg extern const fptr_t __preinit_array_end[] __dso_hidden __weak;
98 1.14 joerg extern const fptr_t __init_array_start[] __dso_hidden;
99 1.14 joerg extern const fptr_t __init_array_end[] __dso_hidden __weak;
100 1.14 joerg extern const fptr_t __fini_array_start[] __dso_hidden;
101 1.14 joerg extern const fptr_t __fini_array_end[] __dso_hidden __weak;
102 1.9 matt
103 1.9 matt static inline void
104 1.13 matt _preinit(void)
105 1.13 matt {
106 1.14 joerg for (const fptr_t *f = __preinit_array_start; f < __preinit_array_end; f++) {
107 1.13 matt (*f)();
108 1.13 matt }
109 1.13 matt }
110 1.13 matt
111 1.13 matt static inline void
112 1.23 christos _initarray(void)
113 1.9 matt {
114 1.14 joerg for (const fptr_t *f = __init_array_start; f < __init_array_end; f++) {
115 1.9 matt (*f)();
116 1.9 matt }
117 1.9 matt }
118 1.9 matt
119 1.9 matt static void
120 1.23 christos _finiarray(void)
121 1.9 matt {
122 1.14 joerg for (const fptr_t *f = __fini_array_start; f < __fini_array_end; f++) {
123 1.9 matt (*f)();
124 1.9 matt }
125 1.9 matt }
126 1.9 matt
127 1.15 joerg #if defined(__x86_64__) || defined(__powerpc__) || defined(__sparc__)
128 1.15 joerg #define HAS_IPLTA
129 1.15 joerg static void fix_iplta(void) __noinline;
130 1.15 joerg #elif defined(__i386__) || defined(__arm__)
131 1.15 joerg #define HAS_IPLT
132 1.15 joerg static void fix_iplt(void) __noinline;
133 1.15 joerg #endif
134 1.15 joerg
135 1.15 joerg
136 1.15 joerg #ifdef HAS_IPLTA
137 1.15 joerg #include <stdio.h>
138 1.15 joerg extern const Elf_Rela __rela_iplt_start[] __dso_hidden __weak;
139 1.15 joerg extern const Elf_Rela __rela_iplt_end[] __dso_hidden __weak;
140 1.16 joerg #ifdef __sparc__
141 1.16 joerg #define IFUNC_RELOCATION R_TYPE(JMP_IREL)
142 1.16 joerg #include <machine/elf_support.h>
143 1.16 joerg #define write_plt(where, value) sparc_write_branch((void *)where, (void *)value)
144 1.16 joerg #else
145 1.16 joerg #define IFUNC_RELOCATION R_TYPE(IRELATIVE)
146 1.16 joerg #define write_plt(where, value) *where = value
147 1.16 joerg #endif
148 1.15 joerg
149 1.15 joerg static void
150 1.15 joerg fix_iplta(void)
151 1.15 joerg {
152 1.15 joerg const Elf_Rela *rela, *relalim;
153 1.15 joerg uintptr_t relocbase = 0;
154 1.15 joerg Elf_Addr *where, target;
155 1.15 joerg
156 1.15 joerg rela = __rela_iplt_start;
157 1.15 joerg relalim = __rela_iplt_end;
158 1.15 joerg for (; rela < relalim; ++rela) {
159 1.16 joerg if (ELF_R_TYPE(rela->r_info) != IFUNC_RELOCATION)
160 1.15 joerg abort();
161 1.15 joerg where = (Elf_Addr *)(relocbase + rela->r_offset);
162 1.15 joerg target = (Elf_Addr)(relocbase + rela->r_addend);
163 1.15 joerg target = ((Elf_Addr(*)(void))target)();
164 1.16 joerg write_plt(where, target);
165 1.15 joerg }
166 1.15 joerg }
167 1.15 joerg #endif
168 1.15 joerg #ifdef HAS_IPLT
169 1.15 joerg extern const Elf_Rel __rel_iplt_start[] __dso_hidden __weak;
170 1.15 joerg extern const Elf_Rel __rel_iplt_end[] __dso_hidden __weak;
171 1.16 joerg #define IFUNC_RELOCATION R_TYPE(IRELATIVE)
172 1.15 joerg
173 1.15 joerg static void
174 1.15 joerg fix_iplt(void)
175 1.15 joerg {
176 1.15 joerg const Elf_Rel *rel, *rellim;
177 1.15 joerg uintptr_t relocbase = 0;
178 1.15 joerg Elf_Addr *where, target;
179 1.15 joerg
180 1.15 joerg rel = __rel_iplt_start;
181 1.15 joerg rellim = __rel_iplt_end;
182 1.15 joerg for (; rel < rellim; ++rel) {
183 1.16 joerg if (ELF_R_TYPE(rel->r_info) != IFUNC_RELOCATION)
184 1.15 joerg abort();
185 1.15 joerg where = (Elf_Addr *)(relocbase + rel->r_offset);
186 1.15 joerg target = ((Elf_Addr(*)(void))*where)();
187 1.15 joerg *where = target;
188 1.15 joerg }
189 1.15 joerg }
190 1.15 joerg #endif
191 1.15 joerg
192 1.18 joerg #if defined(__x86_64__) || defined(__i386__)
193 1.18 joerg # define HAS_RELOCATE_SELF
194 1.18 joerg # if defined(__x86_64__)
195 1.18 joerg # define RELA
196 1.18 joerg # define REL_TAG DT_RELA
197 1.18 joerg # define RELSZ_TAG DT_RELASZ
198 1.18 joerg # define REL_TYPE Elf_Rela
199 1.18 joerg # else
200 1.18 joerg # define REL_TAG DT_REL
201 1.18 joerg # define RELSZ_TAG DT_RELSZ
202 1.18 joerg # define REL_TYPE Elf_Rel
203 1.18 joerg # endif
204 1.18 joerg
205 1.18 joerg #include <elf.h>
206 1.18 joerg
207 1.18 joerg static void relocate_self(struct ps_strings *) __noinline;
208 1.18 joerg
209 1.18 joerg static void
210 1.18 joerg relocate_self(struct ps_strings *ps_strings)
211 1.18 joerg {
212 1.18 joerg AuxInfo *aux = (AuxInfo *)(ps_strings->ps_argvstr + ps_strings->ps_nargvstr +
213 1.18 joerg ps_strings->ps_nenvstr + 2);
214 1.19 kre uintptr_t relocbase = (uintptr_t)~0U;
215 1.19 kre const Elf_Phdr *phdr = NULL;
216 1.19 kre Elf_Half phnum = (Elf_Half)~0;
217 1.18 joerg
218 1.18 joerg for (; aux->a_type != AT_NULL; ++aux) {
219 1.18 joerg switch (aux->a_type) {
220 1.18 joerg case AT_BASE:
221 1.18 joerg if (aux->a_v)
222 1.18 joerg return;
223 1.18 joerg break;
224 1.18 joerg case AT_PHDR:
225 1.18 joerg phdr = (void *)aux->a_v;
226 1.18 joerg break;
227 1.18 joerg case AT_PHNUM:
228 1.18 joerg phnum = (Elf_Half)aux->a_v;
229 1.18 joerg break;
230 1.18 joerg }
231 1.18 joerg }
232 1.19 kre
233 1.19 kre if (phdr == NULL || phnum == (Elf_Half)~0)
234 1.19 kre return;
235 1.19 kre
236 1.19 kre const Elf_Phdr *phlimit = phdr + phnum, *dynphdr = NULL;
237 1.18 joerg
238 1.18 joerg for (; phdr < phlimit; ++phdr) {
239 1.18 joerg if (phdr->p_type == PT_DYNAMIC)
240 1.18 joerg dynphdr = phdr;
241 1.18 joerg if (phdr->p_type == PT_PHDR)
242 1.18 joerg relocbase = (uintptr_t)phdr - phdr->p_vaddr;
243 1.18 joerg }
244 1.19 kre if (dynphdr == NULL || relocbase == (uintptr_t)~0U)
245 1.19 kre return;
246 1.19 kre
247 1.18 joerg Elf_Dyn *dynp = (Elf_Dyn *)((uint8_t *)dynphdr->p_vaddr + relocbase);
248 1.18 joerg
249 1.18 joerg const REL_TYPE *relocs = 0, *relocslim;
250 1.18 joerg Elf_Addr relocssz = 0;
251 1.18 joerg
252 1.18 joerg for (; dynp->d_tag != DT_NULL; dynp++) {
253 1.18 joerg switch (dynp->d_tag) {
254 1.18 joerg case REL_TAG:
255 1.18 joerg relocs =
256 1.18 joerg (const REL_TYPE *)(relocbase + dynp->d_un.d_ptr);
257 1.18 joerg break;
258 1.18 joerg case RELSZ_TAG:
259 1.18 joerg relocssz = dynp->d_un.d_val;
260 1.18 joerg break;
261 1.18 joerg }
262 1.18 joerg }
263 1.18 joerg relocslim = (const REL_TYPE *)((const uint8_t *)relocs + relocssz);
264 1.18 joerg for (; relocs < relocslim; ++relocs) {
265 1.18 joerg Elf_Addr *where;
266 1.18 joerg
267 1.18 joerg where = (Elf_Addr *)(relocbase + relocs->r_offset);
268 1.18 joerg
269 1.18 joerg switch (ELF_R_TYPE(relocs->r_info)) {
270 1.18 joerg case R_TYPE(RELATIVE): /* word64 B + A */
271 1.18 joerg #ifdef RELA
272 1.18 joerg *where = (Elf_Addr)(relocbase + relocs->r_addend);
273 1.18 joerg #else
274 1.18 joerg *where += (Elf_Addr)relocbase;
275 1.18 joerg #endif
276 1.18 joerg break;
277 1.18 joerg #ifdef IFUNC_RELOCATION
278 1.18 joerg case IFUNC_RELOCATION:
279 1.18 joerg break;
280 1.18 joerg #endif
281 1.18 joerg default:
282 1.18 joerg abort();
283 1.18 joerg }
284 1.18 joerg }
285 1.18 joerg }
286 1.18 joerg #endif
287 1.18 joerg
288 1.1 joerg void
289 1.6 joerg ___start(void (*cleanup)(void), /* from shared loader */
290 1.1 joerg struct ps_strings *ps_strings)
291 1.1 joerg {
292 1.18 joerg #if defined(HAS_RELOCATE_SELF)
293 1.18 joerg relocate_self(ps_strings);
294 1.18 joerg #endif
295 1.1 joerg
296 1.6 joerg if (ps_strings == NULL)
297 1.6 joerg _FATAL("ps_strings missing\n");
298 1.6 joerg __ps_strings = ps_strings;
299 1.6 joerg
300 1.6 joerg environ = ps_strings->ps_envstr;
301 1.6 joerg
302 1.6 joerg if (ps_strings->ps_argvstr[0] != NULL) {
303 1.1 joerg char *c;
304 1.6 joerg __progname = ps_strings->ps_argvstr[0];
305 1.6 joerg for (c = ps_strings->ps_argvstr[0]; *c; ++c) {
306 1.1 joerg if (*c == '/')
307 1.1 joerg __progname = c + 1;
308 1.1 joerg }
309 1.1 joerg } else {
310 1.1 joerg __progname = empty_string;
311 1.1 joerg }
312 1.1 joerg
313 1.20 joerg if (cleanup != NULL)
314 1.1 joerg atexit(cleanup);
315 1.1 joerg
316 1.5 joerg _libc_init();
317 1.5 joerg
318 1.15 joerg if (&rtld_DYNAMIC == NULL) {
319 1.15 joerg #ifdef HAS_IPLTA
320 1.15 joerg fix_iplta();
321 1.15 joerg #endif
322 1.15 joerg #ifdef HAS_IPLT
323 1.15 joerg fix_iplt();
324 1.15 joerg #endif
325 1.15 joerg }
326 1.15 joerg
327 1.13 matt _preinit();
328 1.13 matt
329 1.1 joerg #ifdef MCRT0
330 1.1 joerg atexit(_mcleanup);
331 1.1 joerg monstartup((u_long)&__eprol, (u_long)&__etext);
332 1.1 joerg #endif
333 1.1 joerg
334 1.23 christos atexit(_finiarray);
335 1.23 christos _initarray();
336 1.23 christos
337 1.23 christos #ifndef HAVE_INITFINI_ARRAY
338 1.1 joerg atexit(_fini);
339 1.1 joerg _init();
340 1.23 christos #endif
341 1.1 joerg
342 1.6 joerg exit(main(ps_strings->ps_nargvstr, ps_strings->ps_argvstr, environ));
343 1.1 joerg }
344