blob: 9f91c9979883e719d2bf0a04180a288c634a3fcb [file] [log] [blame]
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00001/* vi: set sw=4 ts=4: */
2/*
3 * Mini insmod implementation for busybox
4 *
5 * This version of insmod supports ARM, CRIS, H8/300, x86, ia64, x86_64,
6 * m68k, MIPS, PowerPC, S390, SH3/4/5, Sparc, v850e, and x86_64.
7 *
8 * Copyright (C) 1999-2004 by Erik Andersen <andersen@codepoet.org>
9 * and Ron Alder <alder@lineo.com>
10 *
11 * Rodney Radford <rradford@mindspring.com> 17-Aug-2004.
12 * Added x86_64 support.
13 *
14 * Miles Bader <miles@gnu.org> added NEC V850E support.
15 *
16 * Modified by Bryan Rittmeyer <bryan@ixiacom.com> to support SH4
17 * and (theoretically) SH3. I have only tested SH4 in little endian mode.
18 *
19 * Modified by Alcove, Julien Gaulmin <julien.gaulmin@alcove.fr> and
20 * Nicolas Ferre <nicolas.ferre@alcove.fr> to support ARM7TDMI. Only
21 * very minor changes required to also work with StrongArm and presumably
22 * all ARM based systems.
23 *
24 * Yoshinori Sato <ysato@users.sourceforge.jp> 19-May-2004.
25 * added Renesas H8/300 support.
26 *
27 * Paul Mundt <lethal@linux-sh.org> 08-Aug-2003.
28 * Integrated support for sh64 (SH-5), from preliminary modutils
29 * patches from Benedict Gaster <benedict.gaster@superh.com>.
30 * Currently limited to support for 32bit ABI.
31 *
32 * Magnus Damm <damm@opensource.se> 22-May-2002.
33 * The plt and got code are now using the same structs.
34 * Added generic linked list code to fully support PowerPC.
35 * Replaced the mess in arch_apply_relocation() with architecture blocks.
36 * The arch_create_got() function got cleaned up with architecture blocks.
37 * These blocks should be easy maintain and sync with obj_xxx.c in modutils.
38 *
39 * Magnus Damm <damm@opensource.se> added PowerPC support 20-Feb-2001.
40 * PowerPC specific code stolen from modutils-2.3.16,
41 * written by Paul Mackerras, Copyright 1996, 1997 Linux International.
42 * I've only tested the code on mpc8xx platforms in big-endian mode.
43 * Did some cleanup and added USE_xxx_ENTRIES...
44 *
45 * Quinn Jensen <jensenq@lineo.com> added MIPS support 23-Feb-2001.
46 * based on modutils-2.4.2
47 * MIPS specific support for Elf loading and relocation.
48 * Copyright 1996, 1997 Linux International.
49 * Contributed by Ralf Baechle <ralf@gnu.ai.mit.edu>
50 *
51 * Based almost entirely on the Linux modutils-2.3.11 implementation.
52 * Copyright 1996, 1997 Linux International.
53 * New implementation contributed by Richard Henderson <rth@tamu.edu>
54 * Based on original work by Bjorn Ekwall <bj0rn@blox.se>
55 * Restructured (and partly rewritten) by:
56 * Björn Ekwall <bj0rn@blox.se> February 1999
57 *
58 * Licensed under GPLv2 or later, see file LICENSE in this tarball for details.
59 */
60
61#include "libbb.h"
62#include "modutils.h"
63#include <libgen.h>
64#include <sys/utsname.h>
65
66#if ENABLE_FEATURE_INSMOD_LOADINKMEM
67#define LOADBITS 0
68#else
69#define LOADBITS 1
70#endif
71
72/* Alpha */
73#if defined(__alpha__)
74#define MATCH_MACHINE(x) (x == EM_ALPHA)
75#define SHT_RELM SHT_RELA
76#define Elf64_RelM Elf64_Rela
77#define ELFCLASSM ELFCLASS64
78#endif
79
80/* ARM support */
81#if defined(__arm__)
82#define MATCH_MACHINE(x) (x == EM_ARM)
83#define SHT_RELM SHT_REL
84#define Elf32_RelM Elf32_Rel
85#define ELFCLASSM ELFCLASS32
86#define USE_PLT_ENTRIES
87#define PLT_ENTRY_SIZE 8
88#define USE_GOT_ENTRIES
89#define GOT_ENTRY_SIZE 8
90#define USE_SINGLE
91#endif
92
93/* blackfin */
94#if defined(BFIN)
95#define MATCH_MACHINE(x) (x == EM_BLACKFIN)
96#define SHT_RELM SHT_RELA
97#define Elf32_RelM Elf32_Rela
98#define ELFCLASSM ELFCLASS32
99#endif
100
101/* CRIS */
102#if defined(__cris__)
103#define MATCH_MACHINE(x) (x == EM_CRIS)
104#define SHT_RELM SHT_RELA
105#define Elf32_RelM Elf32_Rela
106#define ELFCLASSM ELFCLASS32
107#ifndef EM_CRIS
108#define EM_CRIS 76
109#define R_CRIS_NONE 0
110#define R_CRIS_32 3
111#endif
112#endif
113
114/* H8/300 */
115#if defined(__H8300H__) || defined(__H8300S__)
116#define MATCH_MACHINE(x) (x == EM_H8_300)
117#define SHT_RELM SHT_RELA
118#define Elf32_RelM Elf32_Rela
119#define ELFCLASSM ELFCLASS32
120#define USE_SINGLE
121#define SYMBOL_PREFIX "_"
122#endif
123
124/* PA-RISC / HP-PA */
125#if defined(__hppa__)
126#define MATCH_MACHINE(x) (x == EM_PARISC)
127#define SHT_RELM SHT_RELA
128#if defined(__LP64__)
129#define Elf64_RelM Elf64_Rela
130#define ELFCLASSM ELFCLASS64
131#else
132#define Elf32_RelM Elf32_Rela
133#define ELFCLASSM ELFCLASS32
134#endif
135#endif
136
137/* x86 */
138#if defined(__i386__)
139#ifndef EM_486
140#define MATCH_MACHINE(x) (x == EM_386)
141#else
142#define MATCH_MACHINE(x) (x == EM_386 || x == EM_486)
143#endif
144#define SHT_RELM SHT_REL
145#define Elf32_RelM Elf32_Rel
146#define ELFCLASSM ELFCLASS32
147#define USE_GOT_ENTRIES
148#define GOT_ENTRY_SIZE 4
149#define USE_SINGLE
150#endif
151
152/* IA64, aka Itanium */
153#if defined(__ia64__)
154#define MATCH_MACHINE(x) (x == EM_IA_64)
155#define SHT_RELM SHT_RELA
156#define Elf64_RelM Elf64_Rela
157#define ELFCLASSM ELFCLASS64
158#endif
159
160/* m68k */
161#if defined(__mc68000__)
162#define MATCH_MACHINE(x) (x == EM_68K)
163#define SHT_RELM SHT_RELA
164#define Elf32_RelM Elf32_Rela
165#define ELFCLASSM ELFCLASS32
166#define USE_GOT_ENTRIES
167#define GOT_ENTRY_SIZE 4
168#define USE_SINGLE
169#endif
170
171/* Microblaze */
172#if defined(__microblaze__)
173#define USE_SINGLE
174#include <linux/elf-em.h>
175#define MATCH_MACHINE(x) (x == EM_XILINX_MICROBLAZE)
176#define SHT_RELM SHT_RELA
177#define Elf32_RelM Elf32_Rela
178#define ELFCLASSM ELFCLASS32
179#endif
180
181/* MIPS */
182#if defined(__mips__)
183#define MATCH_MACHINE(x) (x == EM_MIPS || x == EM_MIPS_RS3_LE)
184#define SHT_RELM SHT_REL
185#define Elf32_RelM Elf32_Rel
186#define ELFCLASSM ELFCLASS32
187/* Account for ELF spec changes. */
188#ifndef EM_MIPS_RS3_LE
189#ifdef EM_MIPS_RS4_BE
190#define EM_MIPS_RS3_LE EM_MIPS_RS4_BE
191#else
192#define EM_MIPS_RS3_LE 10
193#endif
194#endif /* !EM_MIPS_RS3_LE */
195#define ARCHDATAM "__dbe_table"
196#endif
197
198/* Nios II */
199#if defined(__nios2__)
200#define MATCH_MACHINE(x) (x == EM_ALTERA_NIOS2)
201#define SHT_RELM SHT_RELA
202#define Elf32_RelM Elf32_Rela
203#define ELFCLASSM ELFCLASS32
204#endif
205
206/* PowerPC */
207#if defined(__powerpc64__)
208#define MATCH_MACHINE(x) (x == EM_PPC64)
209#define SHT_RELM SHT_RELA
210#define Elf64_RelM Elf64_Rela
211#define ELFCLASSM ELFCLASS64
212#elif defined(__powerpc__)
213#define MATCH_MACHINE(x) (x == EM_PPC)
214#define SHT_RELM SHT_RELA
215#define Elf32_RelM Elf32_Rela
216#define ELFCLASSM ELFCLASS32
217#define USE_PLT_ENTRIES
218#define PLT_ENTRY_SIZE 16
219#define USE_PLT_LIST
220#define LIST_ARCHTYPE ElfW(Addr)
221#define USE_LIST
222#define ARCHDATAM "__ftr_fixup"
223#endif
224
225/* S390 */
226#if defined(__s390__)
227#define MATCH_MACHINE(x) (x == EM_S390)
228#define SHT_RELM SHT_RELA
229#define Elf32_RelM Elf32_Rela
230#define ELFCLASSM ELFCLASS32
231#define USE_PLT_ENTRIES
232#define PLT_ENTRY_SIZE 8
233#define USE_GOT_ENTRIES
234#define GOT_ENTRY_SIZE 8
235#define USE_SINGLE
236#endif
237
238/* SuperH */
239#if defined(__sh__)
240#define MATCH_MACHINE(x) (x == EM_SH)
241#define SHT_RELM SHT_RELA
242#define Elf32_RelM Elf32_Rela
243#define ELFCLASSM ELFCLASS32
244#define USE_GOT_ENTRIES
245#define GOT_ENTRY_SIZE 4
246#define USE_SINGLE
247/* the SH changes have only been tested in =little endian= mode */
248/* I'm not sure about big endian, so let's warn: */
249#if defined(__sh__) && BB_BIG_ENDIAN
250# error insmod.c may require changes for use on big endian SH
251#endif
252/* it may or may not work on the SH1/SH2... Error on those also */
253#if ((!(defined(__SH3__) || defined(__SH4__) || defined(__SH5__)))) && (defined(__sh__))
254#error insmod.c may require changes for SH1 or SH2 use
255#endif
256#endif
257
258/* Sparc */
259#if defined(__sparc__)
260#define MATCH_MACHINE(x) (x == EM_SPARC)
261#define SHT_RELM SHT_RELA
262#define Elf32_RelM Elf32_Rela
263#define ELFCLASSM ELFCLASS32
264#endif
265
266/* v850e */
267#if defined(__v850e__)
268#define MATCH_MACHINE(x) ((x) == EM_V850 || (x) == EM_CYGNUS_V850)
269#define SHT_RELM SHT_RELA
270#define Elf32_RelM Elf32_Rela
271#define ELFCLASSM ELFCLASS32
272#define USE_PLT_ENTRIES
273#define PLT_ENTRY_SIZE 8
274#define USE_SINGLE
275#ifndef EM_CYGNUS_V850 /* grumble */
276#define EM_CYGNUS_V850 0x9080
277#endif
278#define SYMBOL_PREFIX "_"
279#endif
280
281/* X86_64 */
282#if defined(__x86_64__)
283#define MATCH_MACHINE(x) (x == EM_X86_64)
284#define SHT_RELM SHT_RELA
285#define USE_GOT_ENTRIES
286#define GOT_ENTRY_SIZE 8
287#define USE_SINGLE
288#define Elf64_RelM Elf64_Rela
289#define ELFCLASSM ELFCLASS64
290#endif
291
292#ifndef SHT_RELM
293#error Sorry, but insmod.c does not yet support this architecture...
294#endif
295
296
297//----------------------------------------------------------------------------
298//--------modutils module.h, lines 45-242
299//----------------------------------------------------------------------------
300
301/* Definitions for the Linux module syscall interface.
302 Copyright 1996, 1997 Linux International.
303
304 Contributed by Richard Henderson <rth@tamu.edu>
305
306 This file is part of the Linux modutils.
307
308 This program is free software; you can redistribute it and/or modify it
309 under the terms of the GNU General Public License as published by the
310 Free Software Foundation; either version 2 of the License, or (at your
311 option) any later version.
312
313 This program is distributed in the hope that it will be useful, but
314 WITHOUT ANY WARRANTY; without even the implied warranty of
315 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
316 General Public License for more details.
317
318 You should have received a copy of the GNU General Public License
319 along with this program; if not, write to the Free Software Foundation,
320 Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. */
321
322
323#ifndef MODUTILS_MODULE_H
324
325/*======================================================================*/
326/* For sizeof() which are related to the module platform and not to the
327 environment isnmod is running in, use sizeof_xx instead of sizeof(xx). */
328
329#define tgt_sizeof_char sizeof(char)
330#define tgt_sizeof_short sizeof(short)
331#define tgt_sizeof_int sizeof(int)
332#define tgt_sizeof_long sizeof(long)
333#define tgt_sizeof_char_p sizeof(char *)
334#define tgt_sizeof_void_p sizeof(void *)
335#define tgt_long long
336
337#if defined(__sparc__) && !defined(__sparc_v9__) && defined(ARCH_sparc64)
338#undef tgt_sizeof_long
339#undef tgt_sizeof_char_p
340#undef tgt_sizeof_void_p
341#undef tgt_long
342enum {
343 tgt_sizeof_long = 8,
344 tgt_sizeof_char_p = 8,
345 tgt_sizeof_void_p = 8
346};
347#define tgt_long long long
348#endif
349
350/*======================================================================*/
351/* The structures used in Linux 2.1. */
352
353/* Note: new_module_symbol does not use tgt_long intentionally */
354struct new_module_symbol {
355 unsigned long value;
356 unsigned long name;
357};
358
359struct new_module_persist;
360
361struct new_module_ref {
362 unsigned tgt_long dep; /* kernel addresses */
363 unsigned tgt_long ref;
364 unsigned tgt_long next_ref;
365};
366
367struct new_module {
368 unsigned tgt_long size_of_struct; /* == sizeof(module) */
369 unsigned tgt_long next;
370 unsigned tgt_long name;
371 unsigned tgt_long size;
372
373 tgt_long usecount;
374 unsigned tgt_long flags; /* AUTOCLEAN et al */
375
376 unsigned nsyms;
377 unsigned ndeps;
378
379 unsigned tgt_long syms;
380 unsigned tgt_long deps;
381 unsigned tgt_long refs;
382 unsigned tgt_long init;
383 unsigned tgt_long cleanup;
384 unsigned tgt_long ex_table_start;
385 unsigned tgt_long ex_table_end;
386#ifdef __alpha__
387 unsigned tgt_long gp;
388#endif
389 /* Everything after here is extension. */
390 unsigned tgt_long persist_start;
391 unsigned tgt_long persist_end;
392 unsigned tgt_long can_unload;
393 unsigned tgt_long runsize;
394 const char *kallsyms_start; /* All symbols for kernel debugging */
395 const char *kallsyms_end;
396 const char *archdata_start; /* arch specific data for module */
397 const char *archdata_end;
398 const char *kernel_data; /* Reserved for kernel internal use */
399};
400
401#ifdef ARCHDATAM
402#define ARCHDATA_SEC_NAME ARCHDATAM
403#else
404#define ARCHDATA_SEC_NAME "__archdata"
405#endif
406#define KALLSYMS_SEC_NAME "__kallsyms"
407
408
409struct new_module_info {
410 unsigned long addr;
411 unsigned long size;
412 unsigned long flags;
413 long usecount;
414};
415
416/* Bits of module.flags. */
417enum {
418 NEW_MOD_RUNNING = 1,
419 NEW_MOD_DELETED = 2,
420 NEW_MOD_AUTOCLEAN = 4,
421 NEW_MOD_VISITED = 8,
422 NEW_MOD_USED_ONCE = 16
423};
424
425int init_module(const char *name, const struct new_module *);
426int query_module(const char *name, int which, void *buf,
427 size_t bufsize, size_t *ret);
428
429/* Values for query_module's which. */
430enum {
431 QM_MODULES = 1,
432 QM_DEPS = 2,
433 QM_REFS = 3,
434 QM_SYMBOLS = 4,
435 QM_INFO = 5
436};
437
438/*======================================================================*/
439/* The system calls unchanged between 2.0 and 2.1. */
440
441unsigned long create_module(const char *, size_t);
442int delete_module(const char *module, unsigned int flags);
443
444
445#endif /* module.h */
446
447//----------------------------------------------------------------------------
448//--------end of modutils module.h
449//----------------------------------------------------------------------------
450
451
452
453//----------------------------------------------------------------------------
454//--------modutils obj.h, lines 253-462
455//----------------------------------------------------------------------------
456
457/* Elf object file loading and relocation routines.
458 Copyright 1996, 1997 Linux International.
459
460 Contributed by Richard Henderson <rth@tamu.edu>
461
462 This file is part of the Linux modutils.
463
464 This program is free software; you can redistribute it and/or modify it
465 under the terms of the GNU General Public License as published by the
466 Free Software Foundation; either version 2 of the License, or (at your
467 option) any later version.
468
469 This program is distributed in the hope that it will be useful, but
470 WITHOUT ANY WARRANTY; without even the implied warranty of
471 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
472 General Public License for more details.
473
474 You should have received a copy of the GNU General Public License
475 along with this program; if not, write to the Free Software Foundation,
476 Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. */
477
478
479#ifndef MODUTILS_OBJ_H
480
481/* The relocatable object is manipulated using elfin types. */
482
483#include <elf.h>
484#include <endian.h>
485
486#ifndef ElfW
487# if ELFCLASSM == ELFCLASS32
488# define ElfW(x) Elf32_ ## x
489# define ELFW(x) ELF32_ ## x
490# else
491# define ElfW(x) Elf64_ ## x
492# define ELFW(x) ELF64_ ## x
493# endif
494#endif
495
496/* For some reason this is missing from some ancient C libraries.... */
497#ifndef ELF32_ST_INFO
498# define ELF32_ST_INFO(bind, type) (((bind) << 4) + ((type) & 0xf))
499#endif
500
501#ifndef ELF64_ST_INFO
502# define ELF64_ST_INFO(bind, type) (((bind) << 4) + ((type) & 0xf))
503#endif
504
505#define ELF_ST_BIND(info) ELFW(ST_BIND)(info)
506#define ELF_ST_TYPE(info) ELFW(ST_TYPE)(info)
507#define ELF_ST_INFO(bind, type) ELFW(ST_INFO)(bind, type)
508#define ELF_R_TYPE(val) ELFW(R_TYPE)(val)
509#define ELF_R_SYM(val) ELFW(R_SYM)(val)
510
511struct obj_string_patch;
512struct obj_symbol_patch;
513
Denys Vlasenkod5f1b1b2009-06-05 12:06:05 +0200514struct obj_section {
Denis Vlasenkoba1315d2008-09-13 14:59:38 +0000515 ElfW(Shdr) header;
516 const char *name;
517 char *contents;
518 struct obj_section *load_next;
519 int idx;
520};
521
Denys Vlasenkod5f1b1b2009-06-05 12:06:05 +0200522struct obj_symbol {
Denis Vlasenkoba1315d2008-09-13 14:59:38 +0000523 struct obj_symbol *next; /* hash table link */
524 const char *name;
525 unsigned long value;
526 unsigned long size;
527 int secidx; /* the defining section index/module */
528 int info;
529 int ksymidx; /* for export to the kernel symtab */
530 int referenced; /* actually used in the link */
531};
532
533/* Hardcode the hash table size. We shouldn't be needing so many
534 symbols that we begin to degrade performance, and we get a big win
535 by giving the compiler a constant divisor. */
536
537#define HASH_BUCKETS 521
538
539struct obj_file {
540 ElfW(Ehdr) header;
541 ElfW(Addr) baseaddr;
542 struct obj_section **sections;
543 struct obj_section *load_order;
544 struct obj_section **load_order_search_start;
545 struct obj_string_patch *string_patches;
546 struct obj_symbol_patch *symbol_patches;
Denys Vlasenkod5f1b1b2009-06-05 12:06:05 +0200547 int (*symbol_cmp)(const char *, const char *); /* cant be FAST_FUNC */
548 unsigned long (*symbol_hash)(const char *) FAST_FUNC;
Denis Vlasenkoba1315d2008-09-13 14:59:38 +0000549 unsigned long local_symtab_size;
550 struct obj_symbol **local_symtab;
551 struct obj_symbol *symtab[HASH_BUCKETS];
552};
553
554enum obj_reloc {
555 obj_reloc_ok,
556 obj_reloc_overflow,
557 obj_reloc_dangerous,
558 obj_reloc_unhandled
559};
560
561struct obj_string_patch {
562 struct obj_string_patch *next;
563 int reloc_secidx;
564 ElfW(Addr) reloc_offset;
565 ElfW(Addr) string_offset;
566};
567
568struct obj_symbol_patch {
569 struct obj_symbol_patch *next;
570 int reloc_secidx;
571 ElfW(Addr) reloc_offset;
572 struct obj_symbol *sym;
573};
574
575
576/* Generic object manipulation routines. */
577
Denys Vlasenkod5f1b1b2009-06-05 12:06:05 +0200578static unsigned long FAST_FUNC obj_elf_hash(const char *);
Denis Vlasenkoba1315d2008-09-13 14:59:38 +0000579
580static unsigned long obj_elf_hash_n(const char *, unsigned long len);
581
582static struct obj_symbol *obj_find_symbol(struct obj_file *f,
Denys Vlasenkod5f1b1b2009-06-05 12:06:05 +0200583 const char *name);
Denis Vlasenkoba1315d2008-09-13 14:59:38 +0000584
585static ElfW(Addr) obj_symbol_final_value(struct obj_file *f,
Denys Vlasenkod5f1b1b2009-06-05 12:06:05 +0200586 struct obj_symbol *sym);
Denis Vlasenkoba1315d2008-09-13 14:59:38 +0000587
588#if ENABLE_FEATURE_INSMOD_VERSION_CHECKING
589static void obj_set_symbol_compare(struct obj_file *f,
Denys Vlasenkod5f1b1b2009-06-05 12:06:05 +0200590 int (*cmp)(const char *, const char *),
591 unsigned long (*hash)(const char *) FAST_FUNC);
Denis Vlasenkoba1315d2008-09-13 14:59:38 +0000592#endif
593
594static struct obj_section *obj_find_section(struct obj_file *f,
Denys Vlasenkod5f1b1b2009-06-05 12:06:05 +0200595 const char *name);
Denis Vlasenkoba1315d2008-09-13 14:59:38 +0000596
597static void obj_insert_section_load_order(struct obj_file *f,
Denys Vlasenkod5f1b1b2009-06-05 12:06:05 +0200598 struct obj_section *sec);
Denis Vlasenkoba1315d2008-09-13 14:59:38 +0000599
600static struct obj_section *obj_create_alloced_section(struct obj_file *f,
Denys Vlasenkod5f1b1b2009-06-05 12:06:05 +0200601 const char *name,
602 unsigned long align,
603 unsigned long size);
Denis Vlasenkoba1315d2008-09-13 14:59:38 +0000604
605static struct obj_section *obj_create_alloced_section_first(struct obj_file *f,
Denys Vlasenkod5f1b1b2009-06-05 12:06:05 +0200606 const char *name,
607 unsigned long align,
608 unsigned long size);
Denis Vlasenkoba1315d2008-09-13 14:59:38 +0000609
610static void *obj_extend_section(struct obj_section *sec, unsigned long more);
611
612static void obj_string_patch(struct obj_file *f, int secidx, ElfW(Addr) offset,
Denys Vlasenkod5f1b1b2009-06-05 12:06:05 +0200613 const char *string);
Denis Vlasenkoba1315d2008-09-13 14:59:38 +0000614
615static void obj_symbol_patch(struct obj_file *f, int secidx, ElfW(Addr) offset,
Denys Vlasenkod5f1b1b2009-06-05 12:06:05 +0200616 struct obj_symbol *sym);
Denis Vlasenkoba1315d2008-09-13 14:59:38 +0000617
618static void obj_check_undefineds(struct obj_file *f);
619
620static void obj_allocate_commons(struct obj_file *f);
621
622static unsigned long obj_load_size(struct obj_file *f);
623
624static int obj_relocate(struct obj_file *f, ElfW(Addr) base);
625
Denis Vlasenkof4393042009-04-05 23:25:09 +0000626#if !LOADBITS
627#define obj_load(image, image_size, loadprogbits) \
628 obj_load(image, image_size)
629#endif
630static struct obj_file *obj_load(char *image, size_t image_size, int loadprogbits);
Denis Vlasenkoba1315d2008-09-13 14:59:38 +0000631
632static int obj_create_image(struct obj_file *f, char *image);
633
634/* Architecture specific manipulation routines. */
635
636static struct obj_file *arch_new_file(void);
637
638static struct obj_section *arch_new_section(void);
639
640static struct obj_symbol *arch_new_symbol(void);
641
642static enum obj_reloc arch_apply_relocation(struct obj_file *f,
Denys Vlasenkod5f1b1b2009-06-05 12:06:05 +0200643 struct obj_section *targsec,
644 /*struct obj_section *symsec,*/
645 struct obj_symbol *sym,
646 ElfW(RelM) *rel, ElfW(Addr) value);
Denis Vlasenkoba1315d2008-09-13 14:59:38 +0000647
648static void arch_create_got(struct obj_file *f);
649#if ENABLE_FEATURE_CHECK_TAINTED_MODULE
650static int obj_gpl_license(struct obj_file *f, const char **license);
Denis Vlasenkoe35af562009-01-31 14:22:24 +0000651#endif
Denis Vlasenkoba1315d2008-09-13 14:59:38 +0000652#endif /* obj.h */
653//----------------------------------------------------------------------------
654//--------end of modutils obj.h
655//----------------------------------------------------------------------------
656
657
658/* SPFX is always a string, so it can be concatenated to string constants. */
659#ifdef SYMBOL_PREFIX
660#define SPFX SYMBOL_PREFIX
661#else
662#define SPFX ""
663#endif
664
665enum { STRVERSIONLEN = 64 };
666
667/*======================================================================*/
668
669#define flag_force_load (option_mask32 & INSMOD_OPT_FORCE)
670#define flag_autoclean (option_mask32 & INSMOD_OPT_KERNELD)
671#define flag_verbose (option_mask32 & INSMOD_OPT_VERBOSE)
672#define flag_quiet (option_mask32 & INSMOD_OPT_SILENT)
673#define flag_noexport (option_mask32 & INSMOD_OPT_NO_EXPORT)
674#define flag_print_load_map (option_mask32 & INSMOD_OPT_PRINT_MAP)
675
676/*======================================================================*/
677
678#if defined(USE_LIST)
679
Denys Vlasenkod5f1b1b2009-06-05 12:06:05 +0200680struct arch_list_entry {
Denis Vlasenkoba1315d2008-09-13 14:59:38 +0000681 struct arch_list_entry *next;
682 LIST_ARCHTYPE addend;
683 int offset;
684 int inited : 1;
685};
686
687#endif
688
689#if defined(USE_SINGLE)
690
Denys Vlasenkod5f1b1b2009-06-05 12:06:05 +0200691struct arch_single_entry {
Denis Vlasenkoba1315d2008-09-13 14:59:38 +0000692 int offset;
693 int inited : 1;
694 int allocated : 1;
695};
696
697#endif
698
699#if defined(__mips__)
Denys Vlasenkod5f1b1b2009-06-05 12:06:05 +0200700struct mips_hi16 {
Denis Vlasenkoba1315d2008-09-13 14:59:38 +0000701 struct mips_hi16 *next;
702 ElfW(Addr) *addr;
703 ElfW(Addr) value;
704};
705#endif
706
707struct arch_file {
708 struct obj_file root;
709#if defined(USE_PLT_ENTRIES)
710 struct obj_section *plt;
711#endif
712#if defined(USE_GOT_ENTRIES)
713 struct obj_section *got;
714#endif
715#if defined(__mips__)
716 struct mips_hi16 *mips_hi16_list;
717#endif
718};
719
720struct arch_symbol {
721 struct obj_symbol root;
722#if defined(USE_PLT_ENTRIES)
723#if defined(USE_PLT_LIST)
724 struct arch_list_entry *pltent;
725#else
726 struct arch_single_entry pltent;
727#endif
728#endif
729#if defined(USE_GOT_ENTRIES)
730 struct arch_single_entry gotent;
731#endif
732};
733
734
735struct external_module {
736 const char *name;
737 ElfW(Addr) addr;
738 int used;
739 size_t nsyms;
740 struct new_module_symbol *syms;
741};
742
743static struct new_module_symbol *ksyms;
744static size_t nksyms;
745
746static struct external_module *ext_modules;
747static int n_ext_modules;
748static int n_ext_modules_used;
749
750/*======================================================================*/
751
752
753static struct obj_file *arch_new_file(void)
754{
755 struct arch_file *f;
756 f = xzalloc(sizeof(*f));
757 return &f->root; /* it's a first member */
758}
759
760static struct obj_section *arch_new_section(void)
761{
762 return xzalloc(sizeof(struct obj_section));
763}
764
765static struct obj_symbol *arch_new_symbol(void)
766{
767 struct arch_symbol *sym;
768 sym = xzalloc(sizeof(*sym));
769 return &sym->root;
770}
771
772static enum obj_reloc
773arch_apply_relocation(struct obj_file *f,
Denys Vlasenkod5f1b1b2009-06-05 12:06:05 +0200774 struct obj_section *targsec,
775 /*struct obj_section *symsec,*/
776 struct obj_symbol *sym,
777 ElfW(RelM) *rel, ElfW(Addr) v)
Denis Vlasenkoba1315d2008-09-13 14:59:38 +0000778{
779#if defined(__arm__) || defined(__i386__) || defined(__mc68000__) \
780 || defined(__sh__) || defined(__s390__) || defined(__x86_64__) \
781 || defined(__powerpc__) || defined(__mips__)
782 struct arch_file *ifile = (struct arch_file *) f;
783#endif
784 enum obj_reloc ret = obj_reloc_ok;
785 ElfW(Addr) *loc = (ElfW(Addr) *) (targsec->contents + rel->r_offset);
786#if defined(__arm__) || defined(__H8300H__) || defined(__H8300S__) \
787 || defined(__i386__) || defined(__mc68000__) || defined(__microblaze__) \
788 || defined(__mips__) || defined(__nios2__) || defined(__powerpc__) \
789 || defined(__s390__) || defined(__sh__) || defined(__x86_64__)
790 ElfW(Addr) dot = targsec->header.sh_addr + rel->r_offset;
791#endif
792#if defined(USE_GOT_ENTRIES) || defined(USE_PLT_ENTRIES)
793 struct arch_symbol *isym = (struct arch_symbol *) sym;
794#endif
795#if defined(__arm__) || defined(__i386__) || defined(__mc68000__) \
796 || defined(__sh__) || defined(__s390__)
797#if defined(USE_GOT_ENTRIES)
798 ElfW(Addr) got = ifile->got ? ifile->got->header.sh_addr : 0;
799#endif
800#endif
801#if defined(USE_PLT_ENTRIES)
802 ElfW(Addr) plt = ifile->plt ? ifile->plt->header.sh_addr : 0;
803 unsigned long *ip;
804# if defined(USE_PLT_LIST)
805 struct arch_list_entry *pe;
806# else
807 struct arch_single_entry *pe;
808# endif
809#endif
810
811 switch (ELF_R_TYPE(rel->r_info)) {
812
813#if defined(__arm__)
814
815 case R_ARM_NONE:
816 break;
817
818 case R_ARM_ABS32:
819 *loc += v;
820 break;
821
822 case R_ARM_GOT32:
823 goto bb_use_got;
824
825 case R_ARM_GOTPC:
826 /* relative reloc, always to _GLOBAL_OFFSET_TABLE_
827 * (which is .got) similar to branch,
828 * but is full 32 bits relative */
829
830 *loc += got - dot;
831 break;
832
833 case R_ARM_PC24:
834 case R_ARM_PLT32:
835 goto bb_use_plt;
836
837 case R_ARM_GOTOFF: /* address relative to the got */
838 *loc += v - got;
839 break;
840
841#elif defined(__cris__)
842
843 case R_CRIS_NONE:
844 break;
845
846 case R_CRIS_32:
847 /* CRIS keeps the relocation value in the r_addend field and
848 * should not use whats in *loc at all
849 */
850 *loc = v;
851 break;
852
853#elif defined(__H8300H__) || defined(__H8300S__)
854
855 case R_H8_DIR24R8:
856 loc = (ElfW(Addr) *)((ElfW(Addr))loc - 1);
857 *loc = (*loc & 0xff000000) | ((*loc & 0xffffff) + v);
858 break;
859 case R_H8_DIR24A8:
860 *loc += v;
861 break;
862 case R_H8_DIR32:
863 case R_H8_DIR32A16:
864 *loc += v;
865 break;
866 case R_H8_PCREL16:
867 v -= dot + 2;
868 if ((ElfW(Sword))v > 0x7fff ||
869 (ElfW(Sword))v < -(ElfW(Sword))0x8000)
870 ret = obj_reloc_overflow;
871 else
872 *(unsigned short *)loc = v;
873 break;
874 case R_H8_PCREL8:
875 v -= dot + 1;
876 if ((ElfW(Sword))v > 0x7f ||
877 (ElfW(Sword))v < -(ElfW(Sword))0x80)
878 ret = obj_reloc_overflow;
879 else
880 *(unsigned char *)loc = v;
881 break;
882
883#elif defined(__i386__)
884
885 case R_386_NONE:
886 break;
887
888 case R_386_32:
889 *loc += v;
890 break;
891
892 case R_386_PLT32:
893 case R_386_PC32:
894 case R_386_GOTOFF:
895 *loc += v - dot;
896 break;
897
898 case R_386_GLOB_DAT:
899 case R_386_JMP_SLOT:
900 *loc = v;
901 break;
902
903 case R_386_RELATIVE:
904 *loc += f->baseaddr;
905 break;
906
907 case R_386_GOTPC:
908 *loc += got - dot;
909 break;
910
911 case R_386_GOT32:
912 goto bb_use_got;
913 break;
914
915#elif defined(__microblaze__)
916 case R_MICROBLAZE_NONE:
917 case R_MICROBLAZE_64_NONE:
918 case R_MICROBLAZE_32_SYM_OP_SYM:
919 case R_MICROBLAZE_32_PCREL:
920 break;
921
922 case R_MICROBLAZE_64_PCREL: {
923 /* dot is the address of the current instruction.
924 * v is the target symbol address.
925 * So we need to extract the offset in the code,
926 * adding v, then subtrating the current address
927 * of this instruction.
928 * Ex: "IMM 0xFFFE bralid 0x0000" = "bralid 0xFFFE0000"
929 */
930
931 /* Get split offset stored in code */
932 unsigned int temp = (loc[0] & 0xFFFF) << 16 |
933 (loc[1] & 0xFFFF);
934
935 /* Adjust relative offset. -4 adjustment required
936 * because dot points to the IMM insn, but branch
937 * is computed relative to the branch instruction itself.
938 */
939 temp += v - dot - 4;
940
941 /* Store back into code */
942 loc[0] = (loc[0] & 0xFFFF0000) | temp >> 16;
943 loc[1] = (loc[1] & 0xFFFF0000) | (temp & 0xFFFF);
944
945 break;
946 }
947
948 case R_MICROBLAZE_32:
949 *loc += v;
950 break;
951
952 case R_MICROBLAZE_64: {
953 /* Get split pointer stored in code */
954 unsigned int temp1 = (loc[0] & 0xFFFF) << 16 |
955 (loc[1] & 0xFFFF);
956
957 /* Add reloc offset */
958 temp1+=v;
959
960 /* Store back into code */
961 loc[0] = (loc[0] & 0xFFFF0000) | temp1 >> 16;
962 loc[1] = (loc[1] & 0xFFFF0000) | (temp1 & 0xFFFF);
963
964 break;
965 }
966
967 case R_MICROBLAZE_32_PCREL_LO:
968 case R_MICROBLAZE_32_LO:
969 case R_MICROBLAZE_SRO32:
970 case R_MICROBLAZE_SRW32:
971 ret = obj_reloc_unhandled;
972 break;
973
974#elif defined(__mc68000__)
975
976 case R_68K_NONE:
977 break;
978
979 case R_68K_32:
980 *loc += v;
981 break;
982
983 case R_68K_8:
984 if (v > 0xff) {
985 ret = obj_reloc_overflow;
986 }
987 *(char *)loc = v;
988 break;
989
990 case R_68K_16:
991 if (v > 0xffff) {
992 ret = obj_reloc_overflow;
993 }
994 *(short *)loc = v;
995 break;
996
997 case R_68K_PC8:
998 v -= dot;
Denis Vlasenko1ad4db12008-11-12 00:09:58 +0000999 if ((ElfW(Sword))v > 0x7f
1000 || (ElfW(Sword))v < -(ElfW(Sword))0x80
1001 ) {
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00001002 ret = obj_reloc_overflow;
1003 }
1004 *(char *)loc = v;
1005 break;
1006
1007 case R_68K_PC16:
1008 v -= dot;
Denis Vlasenko1ad4db12008-11-12 00:09:58 +00001009 if ((ElfW(Sword))v > 0x7fff
1010 || (ElfW(Sword))v < -(ElfW(Sword))0x8000
1011 ) {
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00001012 ret = obj_reloc_overflow;
1013 }
1014 *(short *)loc = v;
1015 break;
1016
1017 case R_68K_PC32:
1018 *(int *)loc = v - dot;
1019 break;
1020
1021 case R_68K_GLOB_DAT:
1022 case R_68K_JMP_SLOT:
1023 *loc = v;
1024 break;
1025
1026 case R_68K_RELATIVE:
1027 *(int *)loc += f->baseaddr;
1028 break;
1029
1030 case R_68K_GOT32:
1031 goto bb_use_got;
1032
1033# ifdef R_68K_GOTOFF
1034 case R_68K_GOTOFF:
1035 *loc += v - got;
1036 break;
1037# endif
1038
1039#elif defined(__mips__)
1040
1041 case R_MIPS_NONE:
1042 break;
1043
1044 case R_MIPS_32:
1045 *loc += v;
1046 break;
1047
1048 case R_MIPS_26:
1049 if (v % 4)
1050 ret = obj_reloc_dangerous;
1051 if ((v & 0xf0000000) != ((dot + 4) & 0xf0000000))
1052 ret = obj_reloc_overflow;
1053 *loc =
1054 (*loc & ~0x03ffffff) | ((*loc + (v >> 2)) &
1055 0x03ffffff);
1056 break;
1057
1058 case R_MIPS_HI16:
1059 {
1060 struct mips_hi16 *n;
1061
1062 /* We cannot relocate this one now because we don't know the value
1063 of the carry we need to add. Save the information, and let LO16
1064 do the actual relocation. */
1065 n = xmalloc(sizeof *n);
1066 n->addr = loc;
1067 n->value = v;
1068 n->next = ifile->mips_hi16_list;
1069 ifile->mips_hi16_list = n;
1070 break;
1071 }
1072
1073 case R_MIPS_LO16:
1074 {
1075 unsigned long insnlo = *loc;
1076 ElfW(Addr) val, vallo;
1077
1078 /* Sign extend the addend we extract from the lo insn. */
1079 vallo = ((insnlo & 0xffff) ^ 0x8000) - 0x8000;
1080
1081 if (ifile->mips_hi16_list != NULL) {
1082 struct mips_hi16 *l;
1083
1084 l = ifile->mips_hi16_list;
1085 while (l != NULL) {
1086 struct mips_hi16 *next;
1087 unsigned long insn;
1088
1089 /* Do the HI16 relocation. Note that we actually don't
1090 need to know anything about the LO16 itself, except where
1091 to find the low 16 bits of the addend needed by the LO16. */
1092 insn = *l->addr;
1093 val =
1094 ((insn & 0xffff) << 16) +
1095 vallo;
1096 val += v;
1097
1098 /* Account for the sign extension that will happen in the
1099 low bits. */
1100 val =
1101 ((val >> 16) +
1102 ((val & 0x8000) !=
1103 0)) & 0xffff;
1104
1105 insn = (insn & ~0xffff) | val;
1106 *l->addr = insn;
1107
1108 next = l->next;
1109 free(l);
1110 l = next;
1111 }
1112
1113 ifile->mips_hi16_list = NULL;
1114 }
1115
1116 /* Ok, we're done with the HI16 relocs. Now deal with the LO16. */
1117 val = v + vallo;
1118 insnlo = (insnlo & ~0xffff) | (val & 0xffff);
1119 *loc = insnlo;
1120 break;
1121 }
1122
1123#elif defined(__nios2__)
1124
1125 case R_NIOS2_NONE:
1126 break;
1127
1128 case R_NIOS2_BFD_RELOC_32:
1129 *loc += v;
1130 break;
1131
1132 case R_NIOS2_BFD_RELOC_16:
1133 if (v > 0xffff) {
1134 ret = obj_reloc_overflow;
1135 }
1136 *(short *)loc = v;
1137 break;
1138
1139 case R_NIOS2_BFD_RELOC_8:
1140 if (v > 0xff) {
1141 ret = obj_reloc_overflow;
1142 }
1143 *(char *)loc = v;
1144 break;
1145
1146 case R_NIOS2_S16:
1147 {
1148 Elf32_Addr word;
1149
Denis Vlasenko1ad4db12008-11-12 00:09:58 +00001150 if ((Elf32_Sword)v > 0x7fff
1151 || (Elf32_Sword)v < -(Elf32_Sword)0x8000
1152 ) {
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00001153 ret = obj_reloc_overflow;
1154 }
1155
1156 word = *loc;
1157 *loc = ((((word >> 22) << 16) | (v & 0xffff)) << 6) |
1158 (word & 0x3f);
1159 }
1160 break;
1161
1162 case R_NIOS2_U16:
1163 {
1164 Elf32_Addr word;
1165
1166 if (v > 0xffff) {
1167 ret = obj_reloc_overflow;
1168 }
1169
1170 word = *loc;
1171 *loc = ((((word >> 22) << 16) | (v & 0xffff)) << 6) |
1172 (word & 0x3f);
1173 }
1174 break;
1175
1176 case R_NIOS2_PCREL16:
1177 {
1178 Elf32_Addr word;
1179
1180 v -= dot + 4;
Denis Vlasenko1ad4db12008-11-12 00:09:58 +00001181 if ((Elf32_Sword)v > 0x7fff
1182 || (Elf32_Sword)v < -(Elf32_Sword)0x8000
1183 ) {
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00001184 ret = obj_reloc_overflow;
1185 }
1186
1187 word = *loc;
1188 *loc = ((((word >> 22) << 16) | (v & 0xffff)) << 6) | (word & 0x3f);
1189 }
1190 break;
1191
1192 case R_NIOS2_GPREL:
1193 {
1194 Elf32_Addr word, gp;
1195 /* get _gp */
1196 gp = obj_symbol_final_value(f, obj_find_symbol(f, SPFX "_gp"));
Denis Vlasenko1ad4db12008-11-12 00:09:58 +00001197 v -= gp;
1198 if ((Elf32_Sword)v > 0x7fff
1199 || (Elf32_Sword)v < -(Elf32_Sword)0x8000
1200 ) {
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00001201 ret = obj_reloc_overflow;
1202 }
1203
1204 word = *loc;
1205 *loc = ((((word >> 22) << 16) | (v & 0xffff)) << 6) | (word & 0x3f);
1206 }
1207 break;
1208
1209 case R_NIOS2_CALL26:
1210 if (v & 3)
1211 ret = obj_reloc_dangerous;
1212 if ((v >> 28) != (dot >> 28))
1213 ret = obj_reloc_overflow;
1214 *loc = (*loc & 0x3f) | ((v >> 2) << 6);
1215 break;
1216
1217 case R_NIOS2_IMM5:
1218 {
1219 Elf32_Addr word;
1220
1221 if (v > 0x1f) {
1222 ret = obj_reloc_overflow;
1223 }
1224
1225 word = *loc & ~0x7c0;
1226 *loc = word | ((v & 0x1f) << 6);
1227 }
1228 break;
1229
1230 case R_NIOS2_IMM6:
1231 {
1232 Elf32_Addr word;
1233
1234 if (v > 0x3f) {
1235 ret = obj_reloc_overflow;
1236 }
1237
1238 word = *loc & ~0xfc0;
1239 *loc = word | ((v & 0x3f) << 6);
1240 }
1241 break;
1242
1243 case R_NIOS2_IMM8:
1244 {
1245 Elf32_Addr word;
1246
1247 if (v > 0xff) {
1248 ret = obj_reloc_overflow;
1249 }
1250
1251 word = *loc & ~0x3fc0;
1252 *loc = word | ((v & 0xff) << 6);
1253 }
1254 break;
1255
1256 case R_NIOS2_HI16:
1257 {
1258 Elf32_Addr word;
1259
1260 word = *loc;
1261 *loc = ((((word >> 22) << 16) | ((v >>16) & 0xffff)) << 6) |
1262 (word & 0x3f);
1263 }
1264 break;
1265
1266 case R_NIOS2_LO16:
1267 {
1268 Elf32_Addr word;
1269
1270 word = *loc;
1271 *loc = ((((word >> 22) << 16) | (v & 0xffff)) << 6) |
1272 (word & 0x3f);
1273 }
1274 break;
1275
1276 case R_NIOS2_HIADJ16:
1277 {
1278 Elf32_Addr word1, word2;
1279
1280 word1 = *loc;
1281 word2 = ((v >> 16) + ((v >> 15) & 1)) & 0xffff;
1282 *loc = ((((word1 >> 22) << 16) | word2) << 6) |
1283 (word1 & 0x3f);
1284 }
1285 break;
1286
1287#elif defined(__powerpc64__)
1288 /* PPC64 needs a 2.6 kernel, 2.4 module relocation irrelevant */
1289
1290#elif defined(__powerpc__)
1291
1292 case R_PPC_ADDR16_HA:
1293 *(unsigned short *)loc = (v + 0x8000) >> 16;
1294 break;
1295
1296 case R_PPC_ADDR16_HI:
1297 *(unsigned short *)loc = v >> 16;
1298 break;
1299
1300 case R_PPC_ADDR16_LO:
1301 *(unsigned short *)loc = v;
1302 break;
1303
1304 case R_PPC_REL24:
1305 goto bb_use_plt;
1306
1307 case R_PPC_REL32:
1308 *loc = v - dot;
1309 break;
1310
1311 case R_PPC_ADDR32:
1312 *loc = v;
1313 break;
1314
1315#elif defined(__s390__)
1316
1317 case R_390_32:
1318 *(unsigned int *) loc += v;
1319 break;
1320 case R_390_16:
1321 *(unsigned short *) loc += v;
1322 break;
1323 case R_390_8:
1324 *(unsigned char *) loc += v;
1325 break;
1326
1327 case R_390_PC32:
1328 *(unsigned int *) loc += v - dot;
1329 break;
1330 case R_390_PC16DBL:
1331 *(unsigned short *) loc += (v - dot) >> 1;
1332 break;
1333 case R_390_PC16:
1334 *(unsigned short *) loc += v - dot;
1335 break;
1336
1337 case R_390_PLT32:
1338 case R_390_PLT16DBL:
1339 /* find the plt entry and initialize it. */
1340 pe = (struct arch_single_entry *) &isym->pltent;
1341 if (pe->inited == 0) {
1342 ip = (unsigned long *)(ifile->plt->contents + pe->offset);
1343 ip[0] = 0x0d105810; /* basr 1,0; lg 1,10(1); br 1 */
1344 ip[1] = 0x100607f1;
1345 if (ELF_R_TYPE(rel->r_info) == R_390_PLT16DBL)
1346 ip[2] = v - 2;
1347 else
1348 ip[2] = v;
1349 pe->inited = 1;
1350 }
1351
1352 /* Insert relative distance to target. */
1353 v = plt + pe->offset - dot;
1354 if (ELF_R_TYPE(rel->r_info) == R_390_PLT32)
1355 *(unsigned int *) loc = (unsigned int) v;
1356 else if (ELF_R_TYPE(rel->r_info) == R_390_PLT16DBL)
1357 *(unsigned short *) loc = (unsigned short) ((v + 2) >> 1);
1358 break;
1359
1360 case R_390_GLOB_DAT:
1361 case R_390_JMP_SLOT:
1362 *loc = v;
1363 break;
1364
1365 case R_390_RELATIVE:
1366 *loc += f->baseaddr;
1367 break;
1368
1369 case R_390_GOTPC:
1370 *(unsigned long *) loc += got - dot;
1371 break;
1372
1373 case R_390_GOT12:
1374 case R_390_GOT16:
1375 case R_390_GOT32:
1376 if (!isym->gotent.inited)
1377 {
1378 isym->gotent.inited = 1;
1379 *(ElfW(Addr) *)(ifile->got->contents + isym->gotent.offset) = v;
1380 }
1381 if (ELF_R_TYPE(rel->r_info) == R_390_GOT12)
1382 *(unsigned short *) loc |= (*(unsigned short *) loc + isym->gotent.offset) & 0xfff;
1383 else if (ELF_R_TYPE(rel->r_info) == R_390_GOT16)
1384 *(unsigned short *) loc += isym->gotent.offset;
1385 else if (ELF_R_TYPE(rel->r_info) == R_390_GOT32)
1386 *(unsigned int *) loc += isym->gotent.offset;
1387 break;
1388
1389# ifndef R_390_GOTOFF32
1390# define R_390_GOTOFF32 R_390_GOTOFF
1391# endif
1392 case R_390_GOTOFF32:
1393 *loc += v - got;
1394 break;
1395
1396#elif defined(__sh__)
1397
1398 case R_SH_NONE:
1399 break;
1400
1401 case R_SH_DIR32:
1402 *loc += v;
1403 break;
1404
1405 case R_SH_REL32:
1406 *loc += v - dot;
1407 break;
1408
1409 case R_SH_PLT32:
1410 *loc = v - dot;
1411 break;
1412
1413 case R_SH_GLOB_DAT:
1414 case R_SH_JMP_SLOT:
1415 *loc = v;
1416 break;
1417
1418 case R_SH_RELATIVE:
1419 *loc = f->baseaddr + rel->r_addend;
1420 break;
1421
1422 case R_SH_GOTPC:
1423 *loc = got - dot + rel->r_addend;
1424 break;
1425
1426 case R_SH_GOT32:
1427 goto bb_use_got;
1428
1429 case R_SH_GOTOFF:
1430 *loc = v - got;
1431 break;
1432
1433# if defined(__SH5__)
1434 case R_SH_IMM_MEDLOW16:
1435 case R_SH_IMM_LOW16:
1436 {
1437 ElfW(Addr) word;
1438
1439 if (ELF_R_TYPE(rel->r_info) == R_SH_IMM_MEDLOW16)
1440 v >>= 16;
1441
1442 /*
1443 * movi and shori have the format:
1444 *
1445 * | op | imm | reg | reserved |
1446 * 31..26 25..10 9.. 4 3 .. 0
1447 *
1448 * so we simply mask and or in imm.
1449 */
1450 word = *loc & ~0x3fffc00;
1451 word |= (v & 0xffff) << 10;
1452
1453 *loc = word;
1454
1455 break;
1456 }
1457
1458 case R_SH_IMM_MEDLOW16_PCREL:
1459 case R_SH_IMM_LOW16_PCREL:
1460 {
1461 ElfW(Addr) word;
1462
1463 word = *loc & ~0x3fffc00;
1464
1465 v -= dot;
1466
1467 if (ELF_R_TYPE(rel->r_info) == R_SH_IMM_MEDLOW16_PCREL)
1468 v >>= 16;
1469
1470 word |= (v & 0xffff) << 10;
1471
1472 *loc = word;
1473
1474 break;
1475 }
1476# endif /* __SH5__ */
1477
1478#elif defined(__v850e__)
1479
1480 case R_V850_NONE:
1481 break;
1482
1483 case R_V850_32:
1484 /* We write two shorts instead of a long because even
1485 32-bit insns only need half-word alignment, but
1486 32-bit data needs to be long-word aligned. */
1487 v += ((unsigned short *)loc)[0];
1488 v += ((unsigned short *)loc)[1] << 16;
1489 ((unsigned short *)loc)[0] = v & 0xffff;
1490 ((unsigned short *)loc)[1] = (v >> 16) & 0xffff;
1491 break;
1492
1493 case R_V850_22_PCREL:
1494 goto bb_use_plt;
1495
1496#elif defined(__x86_64__)
1497
1498 case R_X86_64_NONE:
1499 break;
1500
1501 case R_X86_64_64:
1502 *loc += v;
1503 break;
1504
1505 case R_X86_64_32:
1506 *(unsigned int *) loc += v;
1507 if (v > 0xffffffff)
1508 {
1509 ret = obj_reloc_overflow; /* Kernel module compiled without -mcmodel=kernel. */
1510 /* error("Possibly is module compiled without -mcmodel=kernel!"); */
1511 }
1512 break;
1513
1514 case R_X86_64_32S:
1515 *(signed int *) loc += v;
1516 break;
1517
1518 case R_X86_64_16:
1519 *(unsigned short *) loc += v;
1520 break;
1521
1522 case R_X86_64_8:
1523 *(unsigned char *) loc += v;
1524 break;
1525
1526 case R_X86_64_PC32:
1527 *(unsigned int *) loc += v - dot;
1528 break;
1529
1530 case R_X86_64_PC16:
1531 *(unsigned short *) loc += v - dot;
1532 break;
1533
1534 case R_X86_64_PC8:
1535 *(unsigned char *) loc += v - dot;
1536 break;
1537
1538 case R_X86_64_GLOB_DAT:
1539 case R_X86_64_JUMP_SLOT:
1540 *loc = v;
1541 break;
1542
1543 case R_X86_64_RELATIVE:
1544 *loc += f->baseaddr;
1545 break;
1546
1547 case R_X86_64_GOT32:
1548 case R_X86_64_GOTPCREL:
1549 goto bb_use_got;
1550# if 0
1551 if (!isym->gotent.reloc_done)
1552 {
1553 isym->gotent.reloc_done = 1;
1554 *(Elf64_Addr *)(ifile->got->contents + isym->gotent.offset) = v;
1555 }
1556 /* XXX are these really correct? */
1557 if (ELF64_R_TYPE(rel->r_info) == R_X86_64_GOTPCREL)
1558 *(unsigned int *) loc += v + isym->gotent.offset;
1559 else
1560 *loc += isym->gotent.offset;
1561 break;
1562# endif
1563
1564#else
1565# warning "no idea how to handle relocations on your arch"
1566#endif
1567
1568 default:
1569 printf("Warning: unhandled reloc %d\n",(int)ELF_R_TYPE(rel->r_info));
1570 ret = obj_reloc_unhandled;
1571 break;
1572
1573#if defined(USE_PLT_ENTRIES)
1574
1575bb_use_plt:
1576
1577 /* find the plt entry and initialize it if necessary */
1578
1579#if defined(USE_PLT_LIST)
1580 for (pe = isym->pltent; pe != NULL && pe->addend != rel->r_addend;)
1581 pe = pe->next;
1582#else
1583 pe = &isym->pltent;
1584#endif
1585
1586 if (! pe->inited) {
1587 ip = (unsigned long *) (ifile->plt->contents + pe->offset);
1588
1589 /* generate some machine code */
1590
1591#if defined(__arm__)
1592 ip[0] = 0xe51ff004; /* ldr pc,[pc,#-4] */
1593 ip[1] = v; /* sym@ */
1594#endif
1595#if defined(__powerpc__)
1596 ip[0] = 0x3d600000 + ((v + 0x8000) >> 16); /* lis r11,sym@ha */
1597 ip[1] = 0x396b0000 + (v & 0xffff); /* addi r11,r11,sym@l */
1598 ip[2] = 0x7d6903a6; /* mtctr r11 */
1599 ip[3] = 0x4e800420; /* bctr */
1600#endif
1601#if defined(__v850e__)
1602 /* We have to trash a register, so we assume that any control
1603 transfer more than 21-bits away must be a function call
1604 (so we can use a call-clobbered register). */
1605 ip[0] = 0x0621 + ((v & 0xffff) << 16); /* mov sym, r1 ... */
1606 ip[1] = ((v >> 16) & 0xffff) + 0x610000; /* ...; jmp r1 */
1607#endif
1608 pe->inited = 1;
1609 }
1610
1611 /* relative distance to target */
1612 v -= dot;
1613 /* if the target is too far away.... */
1614#if defined(__arm__) || defined(__powerpc__)
1615 if ((int)v < -0x02000000 || (int)v >= 0x02000000)
1616#elif defined(__v850e__)
1617 if ((ElfW(Sword))v > 0x1fffff || (ElfW(Sword))v < (ElfW(Sword))-0x200000)
1618#endif
1619 /* go via the plt */
1620 v = plt + pe->offset - dot;
1621
1622#if defined(__v850e__)
1623 if (v & 1)
1624#else
1625 if (v & 3)
1626#endif
1627 ret = obj_reloc_dangerous;
1628
1629 /* merge the offset into the instruction. */
1630#if defined(__arm__)
1631 /* Convert to words. */
1632 v >>= 2;
1633
1634 *loc = (*loc & ~0x00ffffff) | ((v + *loc) & 0x00ffffff);
1635#endif
1636#if defined(__powerpc__)
1637 *loc = (*loc & ~0x03fffffc) | (v & 0x03fffffc);
1638#endif
1639#if defined(__v850e__)
1640 /* We write two shorts instead of a long because even 32-bit insns
1641 only need half-word alignment, but the 32-bit data write needs
1642 to be long-word aligned. */
1643 ((unsigned short *)loc)[0] =
1644 (*(unsigned short *)loc & 0xffc0) /* opcode + reg */
1645 | ((v >> 16) & 0x3f); /* offs high part */
1646 ((unsigned short *)loc)[1] =
1647 (v & 0xffff); /* offs low part */
1648#endif
1649 break;
1650#endif /* USE_PLT_ENTRIES */
1651
1652#if defined(USE_GOT_ENTRIES)
1653bb_use_got:
1654
1655 /* needs an entry in the .got: set it, once */
1656 if (!isym->gotent.inited) {
1657 isym->gotent.inited = 1;
1658 *(ElfW(Addr) *) (ifile->got->contents + isym->gotent.offset) = v;
1659 }
1660 /* make the reloc with_respect_to_.got */
1661#if defined(__sh__)
1662 *loc += isym->gotent.offset + rel->r_addend;
1663#elif defined(__i386__) || defined(__arm__) || defined(__mc68000__)
1664 *loc += isym->gotent.offset;
1665#endif
1666 break;
1667
1668#endif /* USE_GOT_ENTRIES */
1669 }
1670
1671 return ret;
1672}
1673
1674
1675#if defined(USE_LIST)
1676
1677static int arch_list_add(ElfW(RelM) *rel, struct arch_list_entry **list,
1678 int offset, int size)
1679{
1680 struct arch_list_entry *pe;
1681
1682 for (pe = *list; pe != NULL; pe = pe->next) {
1683 if (pe->addend == rel->r_addend) {
1684 break;
1685 }
1686 }
1687
1688 if (pe == NULL) {
Denis Vlasenkoe35af562009-01-31 14:22:24 +00001689 pe = xzalloc(sizeof(struct arch_list_entry));
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00001690 pe->next = *list;
1691 pe->addend = rel->r_addend;
1692 pe->offset = offset;
Denis Vlasenkoe35af562009-01-31 14:22:24 +00001693 /*pe->inited = 0;*/
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00001694 *list = pe;
1695 return size;
1696 }
1697 return 0;
1698}
1699
1700#endif
1701
1702#if defined(USE_SINGLE)
1703
1704static int arch_single_init(/*ElfW(RelM) *rel,*/ struct arch_single_entry *single,
Denys Vlasenkod5f1b1b2009-06-05 12:06:05 +02001705 int offset, int size)
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00001706{
1707 if (single->allocated == 0) {
1708 single->allocated = 1;
1709 single->offset = offset;
1710 single->inited = 0;
1711 return size;
1712 }
1713 return 0;
1714}
1715
1716#endif
1717
1718#if defined(USE_GOT_ENTRIES) || defined(USE_PLT_ENTRIES)
1719
1720static struct obj_section *arch_xsect_init(struct obj_file *f, const char *name,
Denys Vlasenkod5f1b1b2009-06-05 12:06:05 +02001721 int offset, int size)
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00001722{
1723 struct obj_section *myrelsec = obj_find_section(f, name);
1724
1725 if (offset == 0) {
1726 offset += size;
1727 }
1728
1729 if (myrelsec) {
1730 obj_extend_section(myrelsec, offset);
1731 } else {
1732 myrelsec = obj_create_alloced_section(f, name,
1733 size, offset);
1734 }
1735
1736 return myrelsec;
1737}
1738
1739#endif
1740
1741static void arch_create_got(struct obj_file *f)
1742{
1743#if defined(USE_GOT_ENTRIES) || defined(USE_PLT_ENTRIES)
1744 struct arch_file *ifile = (struct arch_file *) f;
1745 int i;
1746#if defined(USE_GOT_ENTRIES)
1747 int got_offset = 0, got_needed = 0, got_allocate;
1748#endif
1749#if defined(USE_PLT_ENTRIES)
1750 int plt_offset = 0, plt_needed = 0, plt_allocate;
1751#endif
1752 struct obj_section *relsec, *symsec, *strsec;
1753 ElfW(RelM) *rel, *relend;
1754 ElfW(Sym) *symtab, *extsym;
1755 const char *strtab, *name;
1756 struct arch_symbol *intsym;
1757
1758 for (i = 0; i < f->header.e_shnum; ++i) {
1759 relsec = f->sections[i];
1760 if (relsec->header.sh_type != SHT_RELM)
1761 continue;
1762
1763 symsec = f->sections[relsec->header.sh_link];
1764 strsec = f->sections[symsec->header.sh_link];
1765
1766 rel = (ElfW(RelM) *) relsec->contents;
1767 relend = rel + (relsec->header.sh_size / sizeof(ElfW(RelM)));
1768 symtab = (ElfW(Sym) *) symsec->contents;
1769 strtab = (const char *) strsec->contents;
1770
1771 for (; rel < relend; ++rel) {
1772 extsym = &symtab[ELF_R_SYM(rel->r_info)];
1773
1774#if defined(USE_GOT_ENTRIES)
1775 got_allocate = 0;
1776#endif
1777#if defined(USE_PLT_ENTRIES)
1778 plt_allocate = 0;
1779#endif
1780
1781 switch (ELF_R_TYPE(rel->r_info)) {
1782#if defined(__arm__)
1783 case R_ARM_PC24:
1784 case R_ARM_PLT32:
1785 plt_allocate = 1;
1786 break;
1787
1788 case R_ARM_GOTOFF:
1789 case R_ARM_GOTPC:
1790 got_needed = 1;
1791 continue;
1792
1793 case R_ARM_GOT32:
1794 got_allocate = 1;
1795 break;
1796
1797#elif defined(__i386__)
1798 case R_386_GOTPC:
1799 case R_386_GOTOFF:
1800 got_needed = 1;
1801 continue;
1802
1803 case R_386_GOT32:
1804 got_allocate = 1;
1805 break;
1806
1807#elif defined(__powerpc__)
1808 case R_PPC_REL24:
1809 plt_allocate = 1;
1810 break;
1811
1812#elif defined(__mc68000__)
1813 case R_68K_GOT32:
1814 got_allocate = 1;
1815 break;
1816
1817#ifdef R_68K_GOTOFF
1818 case R_68K_GOTOFF:
1819 got_needed = 1;
1820 continue;
1821#endif
1822
1823#elif defined(__sh__)
1824 case R_SH_GOT32:
1825 got_allocate = 1;
1826 break;
1827
1828 case R_SH_GOTPC:
1829 case R_SH_GOTOFF:
1830 got_needed = 1;
1831 continue;
1832
1833#elif defined(__v850e__)
1834 case R_V850_22_PCREL:
1835 plt_needed = 1;
1836 break;
1837
1838#endif
1839 default:
1840 continue;
1841 }
1842
1843 if (extsym->st_name != 0) {
1844 name = strtab + extsym->st_name;
1845 } else {
1846 name = f->sections[extsym->st_shndx]->name;
1847 }
1848 intsym = (struct arch_symbol *) obj_find_symbol(f, name);
1849#if defined(USE_GOT_ENTRIES)
1850 if (got_allocate) {
1851 got_offset += arch_single_init(
1852 /*rel,*/ &intsym->gotent,
1853 got_offset, GOT_ENTRY_SIZE);
1854
1855 got_needed = 1;
1856 }
1857#endif
1858#if defined(USE_PLT_ENTRIES)
1859 if (plt_allocate) {
1860#if defined(USE_PLT_LIST)
1861 plt_offset += arch_list_add(
1862 rel, &intsym->pltent,
1863 plt_offset, PLT_ENTRY_SIZE);
1864#else
1865 plt_offset += arch_single_init(
1866 /*rel,*/ &intsym->pltent,
1867 plt_offset, PLT_ENTRY_SIZE);
1868#endif
1869 plt_needed = 1;
1870 }
1871#endif
1872 }
1873 }
1874
1875#if defined(USE_GOT_ENTRIES)
1876 if (got_needed) {
1877 ifile->got = arch_xsect_init(f, ".got", got_offset,
1878 GOT_ENTRY_SIZE);
1879 }
1880#endif
1881
1882#if defined(USE_PLT_ENTRIES)
1883 if (plt_needed) {
1884 ifile->plt = arch_xsect_init(f, ".plt", plt_offset,
1885 PLT_ENTRY_SIZE);
1886 }
1887#endif
1888
1889#endif /* defined(USE_GOT_ENTRIES) || defined(USE_PLT_ENTRIES) */
1890}
1891
1892/*======================================================================*/
1893
1894/* Standard ELF hash function. */
1895static unsigned long obj_elf_hash_n(const char *name, unsigned long n)
1896{
1897 unsigned long h = 0;
1898 unsigned long g;
1899 unsigned char ch;
1900
1901 while (n > 0) {
1902 ch = *name++;
1903 h = (h << 4) + ch;
1904 g = (h & 0xf0000000);
1905 if (g != 0) {
1906 h ^= g >> 24;
1907 h &= ~g;
1908 }
1909 n--;
1910 }
1911 return h;
1912}
1913
Denys Vlasenkod5f1b1b2009-06-05 12:06:05 +02001914static unsigned long FAST_FUNC obj_elf_hash(const char *name)
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00001915{
1916 return obj_elf_hash_n(name, strlen(name));
1917}
1918
1919#if ENABLE_FEATURE_INSMOD_VERSION_CHECKING
1920/* String comparison for non-co-versioned kernel and module. */
1921
1922static int ncv_strcmp(const char *a, const char *b)
1923{
1924 size_t alen = strlen(a), blen = strlen(b);
1925
1926 if (blen == alen + 10 && b[alen] == '_' && b[alen + 1] == 'R')
1927 return strncmp(a, b, alen);
1928 else if (alen == blen + 10 && a[blen] == '_' && a[blen + 1] == 'R')
1929 return strncmp(a, b, blen);
1930 else
1931 return strcmp(a, b);
1932}
1933
1934/* String hashing for non-co-versioned kernel and module. Here
1935 we are simply forced to drop the crc from the hash. */
1936
Denys Vlasenkod5f1b1b2009-06-05 12:06:05 +02001937static unsigned long FAST_FUNC ncv_symbol_hash(const char *str)
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00001938{
1939 size_t len = strlen(str);
1940 if (len > 10 && str[len - 10] == '_' && str[len - 9] == 'R')
1941 len -= 10;
1942 return obj_elf_hash_n(str, len);
1943}
1944
1945static void
1946obj_set_symbol_compare(struct obj_file *f,
Denys Vlasenkod5f1b1b2009-06-05 12:06:05 +02001947 int (*cmp) (const char *, const char *),
1948 unsigned long (*hash) (const char *) FAST_FUNC)
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00001949{
1950 if (cmp)
1951 f->symbol_cmp = cmp;
1952 if (hash) {
1953 struct obj_symbol *tmptab[HASH_BUCKETS], *sym, *next;
1954 int i;
1955
1956 f->symbol_hash = hash;
1957
1958 memcpy(tmptab, f->symtab, sizeof(tmptab));
1959 memset(f->symtab, 0, sizeof(f->symtab));
1960
Denys Vlasenkod5f1b1b2009-06-05 12:06:05 +02001961 for (i = 0; i < HASH_BUCKETS; ++i) {
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00001962 for (sym = tmptab[i]; sym; sym = next) {
1963 unsigned long h = hash(sym->name) % HASH_BUCKETS;
1964 next = sym->next;
1965 sym->next = f->symtab[h];
1966 f->symtab[h] = sym;
1967 }
Denys Vlasenkod5f1b1b2009-06-05 12:06:05 +02001968 }
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00001969 }
1970}
1971
1972#endif /* FEATURE_INSMOD_VERSION_CHECKING */
1973
1974static struct obj_symbol *
1975obj_add_symbol(struct obj_file *f, const char *name,
Denys Vlasenkod5f1b1b2009-06-05 12:06:05 +02001976 unsigned long symidx, int info,
1977 int secidx, ElfW(Addr) value,
1978 unsigned long size)
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00001979{
1980 struct obj_symbol *sym;
1981 unsigned long hash = f->symbol_hash(name) % HASH_BUCKETS;
1982 int n_type = ELF_ST_TYPE(info);
1983 int n_binding = ELF_ST_BIND(info);
1984
1985 for (sym = f->symtab[hash]; sym; sym = sym->next) {
1986 if (f->symbol_cmp(sym->name, name) == 0) {
1987 int o_secidx = sym->secidx;
1988 int o_info = sym->info;
1989 int o_type = ELF_ST_TYPE(o_info);
1990 int o_binding = ELF_ST_BIND(o_info);
1991
1992 /* A redefinition! Is it legal? */
1993
1994 if (secidx == SHN_UNDEF)
1995 return sym;
1996 else if (o_secidx == SHN_UNDEF)
1997 goto found;
1998 else if (n_binding == STB_GLOBAL && o_binding == STB_LOCAL) {
1999 /* Cope with local and global symbols of the same name
2000 in the same object file, as might have been created
2001 by ld -r. The only reason locals are now seen at this
2002 level at all is so that we can do semi-sensible things
2003 with parameters. */
2004
2005 struct obj_symbol *nsym, **p;
2006
2007 nsym = arch_new_symbol();
2008 nsym->next = sym->next;
2009 nsym->ksymidx = -1;
2010
2011 /* Excise the old (local) symbol from the hash chain. */
2012 for (p = &f->symtab[hash]; *p != sym; p = &(*p)->next)
2013 continue;
2014 *p = sym = nsym;
2015 goto found;
2016 } else if (n_binding == STB_LOCAL) {
2017 /* Another symbol of the same name has already been defined.
2018 Just add this to the local table. */
2019 sym = arch_new_symbol();
2020 sym->next = NULL;
2021 sym->ksymidx = -1;
2022 f->local_symtab[symidx] = sym;
2023 goto found;
2024 } else if (n_binding == STB_WEAK)
2025 return sym;
2026 else if (o_binding == STB_WEAK)
2027 goto found;
2028 /* Don't unify COMMON symbols with object types the programmer
2029 doesn't expect. */
2030 else if (secidx == SHN_COMMON
2031 && (o_type == STT_NOTYPE || o_type == STT_OBJECT))
2032 return sym;
2033 else if (o_secidx == SHN_COMMON
2034 && (n_type == STT_NOTYPE || n_type == STT_OBJECT))
2035 goto found;
2036 else {
2037 /* Don't report an error if the symbol is coming from
2038 the kernel or some external module. */
2039 if (secidx <= SHN_HIRESERVE)
2040 bb_error_msg("%s multiply defined", name);
2041 return sym;
2042 }
2043 }
2044 }
2045
2046 /* Completely new symbol. */
2047 sym = arch_new_symbol();
2048 sym->next = f->symtab[hash];
2049 f->symtab[hash] = sym;
2050 sym->ksymidx = -1;
2051 if (ELF_ST_BIND(info) == STB_LOCAL && symidx != (unsigned long)(-1)) {
2052 if (symidx >= f->local_symtab_size)
2053 bb_error_msg("local symbol %s with index %ld exceeds local_symtab_size %ld",
2054 name, (long) symidx, (long) f->local_symtab_size);
2055 else
2056 f->local_symtab[symidx] = sym;
2057 }
2058
2059found:
2060 sym->name = name;
2061 sym->value = value;
2062 sym->size = size;
2063 sym->secidx = secidx;
2064 sym->info = info;
2065
2066 return sym;
2067}
2068
2069static struct obj_symbol *
2070obj_find_symbol(struct obj_file *f, const char *name)
2071{
2072 struct obj_symbol *sym;
2073 unsigned long hash = f->symbol_hash(name) % HASH_BUCKETS;
2074
2075 for (sym = f->symtab[hash]; sym; sym = sym->next)
2076 if (f->symbol_cmp(sym->name, name) == 0)
2077 return sym;
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00002078 return NULL;
2079}
2080
2081static ElfW(Addr) obj_symbol_final_value(struct obj_file * f, struct obj_symbol * sym)
2082{
2083 if (sym) {
2084 if (sym->secidx >= SHN_LORESERVE)
2085 return sym->value;
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00002086 return sym->value + f->sections[sym->secidx]->header.sh_addr;
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00002087 }
Denis Vlasenko1ad4db12008-11-12 00:09:58 +00002088 /* As a special case, a NULL sym has value zero. */
2089 return 0;
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00002090}
2091
2092static struct obj_section *obj_find_section(struct obj_file *f, const char *name)
2093{
2094 int i, n = f->header.e_shnum;
2095
2096 for (i = 0; i < n; ++i)
2097 if (strcmp(f->sections[i]->name, name) == 0)
2098 return f->sections[i];
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00002099 return NULL;
2100}
2101
2102static int obj_load_order_prio(struct obj_section *a)
2103{
2104 unsigned long af, ac;
2105
2106 af = a->header.sh_flags;
2107
2108 ac = 0;
Denis Vlasenko1ad4db12008-11-12 00:09:58 +00002109 if (a->name[0] != '.' || strlen(a->name) != 10
2110 || strcmp(a->name + 5, ".init") != 0
2111 ) {
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00002112 ac |= 32;
Denis Vlasenko1ad4db12008-11-12 00:09:58 +00002113 }
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00002114 if (af & SHF_ALLOC)
2115 ac |= 16;
2116 if (!(af & SHF_WRITE))
2117 ac |= 8;
2118 if (af & SHF_EXECINSTR)
2119 ac |= 4;
2120 if (a->header.sh_type != SHT_NOBITS)
2121 ac |= 2;
2122
2123 return ac;
2124}
2125
2126static void
2127obj_insert_section_load_order(struct obj_file *f, struct obj_section *sec)
2128{
2129 struct obj_section **p;
2130 int prio = obj_load_order_prio(sec);
2131 for (p = f->load_order_search_start; *p; p = &(*p)->load_next)
2132 if (obj_load_order_prio(*p) < prio)
2133 break;
2134 sec->load_next = *p;
2135 *p = sec;
2136}
2137
Denis Vlasenko49325962009-01-31 23:33:54 +00002138static struct obj_section *helper_create_alloced_section(struct obj_file *f,
Denys Vlasenkod5f1b1b2009-06-05 12:06:05 +02002139 const char *name,
2140 unsigned long align,
2141 unsigned long size)
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00002142{
2143 int newidx = f->header.e_shnum++;
2144 struct obj_section *sec;
2145
2146 f->sections = xrealloc_vector(f->sections, 2, newidx);
2147 f->sections[newidx] = sec = arch_new_section();
2148
2149 sec->header.sh_type = SHT_PROGBITS;
2150 sec->header.sh_flags = SHF_WRITE | SHF_ALLOC;
2151 sec->header.sh_size = size;
2152 sec->header.sh_addralign = align;
2153 sec->name = name;
2154 sec->idx = newidx;
2155 if (size)
Denis Vlasenko3bc3f082008-11-22 20:18:37 +00002156 sec->contents = xzalloc(size);
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00002157
Denis Vlasenko49325962009-01-31 23:33:54 +00002158 return sec;
2159}
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00002160
Denis Vlasenko49325962009-01-31 23:33:54 +00002161static struct obj_section *obj_create_alloced_section(struct obj_file *f,
Denys Vlasenkod5f1b1b2009-06-05 12:06:05 +02002162 const char *name,
2163 unsigned long align,
2164 unsigned long size)
Denis Vlasenko49325962009-01-31 23:33:54 +00002165{
2166 struct obj_section *sec;
2167
2168 sec = helper_create_alloced_section(f, name, align, size);
2169 obj_insert_section_load_order(f, sec);
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00002170 return sec;
2171}
2172
2173static struct obj_section *obj_create_alloced_section_first(struct obj_file *f,
Denys Vlasenkod5f1b1b2009-06-05 12:06:05 +02002174 const char *name,
2175 unsigned long align,
2176 unsigned long size)
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00002177{
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00002178 struct obj_section *sec;
2179
Denis Vlasenko49325962009-01-31 23:33:54 +00002180 sec = helper_create_alloced_section(f, name, align, size);
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00002181 sec->load_next = f->load_order;
2182 f->load_order = sec;
2183 if (f->load_order_search_start == &f->load_order)
2184 f->load_order_search_start = &sec->load_next;
2185
2186 return sec;
2187}
2188
2189static void *obj_extend_section(struct obj_section *sec, unsigned long more)
2190{
2191 unsigned long oldsize = sec->header.sh_size;
2192 if (more) {
2193 sec->header.sh_size += more;
2194 sec->contents = xrealloc(sec->contents, sec->header.sh_size);
2195 }
2196 return sec->contents + oldsize;
2197}
2198
2199
2200/* Conditionally add the symbols from the given symbol set to the
2201 new module. */
2202
Denis Vlasenko49325962009-01-31 23:33:54 +00002203static int add_symbols_from(struct obj_file *f,
Denys Vlasenkod5f1b1b2009-06-05 12:06:05 +02002204 int idx,
2205 struct new_module_symbol *syms,
2206 size_t nsyms)
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00002207{
2208 struct new_module_symbol *s;
2209 size_t i;
2210 int used = 0;
2211#ifdef SYMBOL_PREFIX
Denis Vlasenko49325962009-01-31 23:33:54 +00002212 char *name_buf = NULL;
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00002213 size_t name_alloced_size = 0;
2214#endif
2215#if ENABLE_FEATURE_CHECK_TAINTED_MODULE
2216 int gpl;
2217
2218 gpl = obj_gpl_license(f, NULL) == 0;
2219#endif
2220 for (i = 0, s = syms; i < nsyms; ++i, ++s) {
2221 /* Only add symbols that are already marked external.
2222 If we override locals we may cause problems for
2223 argument initialization. We will also create a false
2224 dependency on the module. */
2225 struct obj_symbol *sym;
2226 char *name;
2227
2228 /* GPL licensed modules can use symbols exported with
2229 * EXPORT_SYMBOL_GPL, so ignore any GPLONLY_ prefix on the
2230 * exported names. Non-GPL modules never see any GPLONLY_
2231 * symbols so they cannot fudge it by adding the prefix on
2232 * their references.
2233 */
2234 if (strncmp((char *)s->name, "GPLONLY_", 8) == 0) {
2235#if ENABLE_FEATURE_CHECK_TAINTED_MODULE
2236 if (gpl)
2237 s->name += 8;
2238 else
2239#endif
2240 continue;
2241 }
2242 name = (char *)s->name;
2243
2244#ifdef SYMBOL_PREFIX
2245 /* Prepend SYMBOL_PREFIX to the symbol's name (the
2246 kernel exports `C names', but module object files
2247 reference `linker names'). */
2248 size_t extra = sizeof SYMBOL_PREFIX;
2249 size_t name_size = strlen(name) + extra;
2250 if (name_size > name_alloced_size) {
2251 name_alloced_size = name_size * 2;
2252 name_buf = alloca(name_alloced_size);
2253 }
2254 strcpy(name_buf, SYMBOL_PREFIX);
2255 strcpy(name_buf + extra - 1, name);
2256 name = name_buf;
Denis Vlasenkoe35af562009-01-31 14:22:24 +00002257#endif
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00002258
2259 sym = obj_find_symbol(f, name);
2260 if (sym && !(ELF_ST_BIND(sym->info) == STB_LOCAL)) {
2261#ifdef SYMBOL_PREFIX
2262 /* Put NAME_BUF into more permanent storage. */
2263 name = xmalloc(name_size);
2264 strcpy(name, name_buf);
2265#endif
2266 sym = obj_add_symbol(f, name, -1,
2267 ELF_ST_INFO(STB_GLOBAL,
2268 STT_NOTYPE),
2269 idx, s->value, 0);
2270 /* Did our symbol just get installed? If so, mark the
2271 module as "used". */
2272 if (sym->secidx == idx)
2273 used = 1;
2274 }
2275 }
2276
2277 return used;
2278}
2279
2280static void add_kernel_symbols(struct obj_file *f)
2281{
2282 struct external_module *m;
2283 int i, nused = 0;
2284
2285 /* Add module symbols first. */
2286
2287 for (i = 0, m = ext_modules; i < n_ext_modules; ++i, ++m) {
2288 if (m->nsyms
2289 && add_symbols_from(f, SHN_HIRESERVE + 2 + i, m->syms, m->nsyms)
2290 ) {
2291 m->used = 1;
2292 ++nused;
2293 }
2294 }
2295
2296 n_ext_modules_used = nused;
2297
2298 /* And finally the symbols from the kernel proper. */
2299
2300 if (nksyms)
2301 add_symbols_from(f, SHN_HIRESERVE + 1, ksyms, nksyms);
2302}
2303
2304static char *get_modinfo_value(struct obj_file *f, const char *key)
2305{
2306 struct obj_section *sec;
2307 char *p, *v, *n, *ep;
2308 size_t klen = strlen(key);
2309
2310 sec = obj_find_section(f, ".modinfo");
2311 if (sec == NULL)
2312 return NULL;
2313 p = sec->contents;
2314 ep = p + sec->header.sh_size;
2315 while (p < ep) {
2316 v = strchr(p, '=');
2317 n = strchr(p, '\0');
2318 if (v) {
2319 if (p + klen == v && strncmp(p, key, klen) == 0)
2320 return v + 1;
2321 } else {
2322 if (p + klen == n && strcmp(p, key) == 0)
2323 return n;
2324 }
2325 p = n + 1;
2326 }
2327
2328 return NULL;
2329}
2330
2331
2332/*======================================================================*/
2333/* Functions relating to module loading after 2.1.18. */
2334
2335/* From Linux-2.6 sources */
2336/* You can use " around spaces, but can't escape ". */
2337/* Hyphens and underscores equivalent in parameter names. */
2338static char *next_arg(char *args, char **param, char **val)
2339{
2340 unsigned int i, equals = 0;
2341 int in_quote = 0, quoted = 0;
2342 char *next;
2343
2344 if (*args == '"') {
2345 args++;
2346 in_quote = 1;
2347 quoted = 1;
2348 }
2349
2350 for (i = 0; args[i]; i++) {
2351 if (args[i] == ' ' && !in_quote)
2352 break;
2353 if (equals == 0) {
2354 if (args[i] == '=')
2355 equals = i;
2356 }
2357 if (args[i] == '"')
2358 in_quote = !in_quote;
2359 }
2360
2361 *param = args;
2362 if (!equals)
2363 *val = NULL;
2364 else {
2365 args[equals] = '\0';
2366 *val = args + equals + 1;
2367
2368 /* Don't include quotes in value. */
2369 if (**val == '"') {
2370 (*val)++;
2371 if (args[i-1] == '"')
2372 args[i-1] = '\0';
2373 }
2374 if (quoted && args[i-1] == '"')
2375 args[i-1] = '\0';
2376 }
2377
2378 if (args[i]) {
2379 args[i] = '\0';
2380 next = args + i + 1;
2381 } else
2382 next = args + i;
2383
2384 /* Chew up trailing spaces. */
2385 return skip_whitespace(next);
2386}
2387
2388static void
2389new_process_module_arguments(struct obj_file *f, const char *options)
2390{
2391 char *xoptions, *pos;
2392 char *param, *val;
2393
2394 xoptions = pos = xstrdup(skip_whitespace(options));
2395 while (*pos) {
2396 unsigned long charssize = 0;
2397 char *tmp, *contents, *loc, *pinfo, *p;
2398 struct obj_symbol *sym;
2399 int min, max, n, len;
2400
2401 pos = next_arg(pos, &param, &val);
2402
2403 tmp = xasprintf("parm_%s", param);
2404 pinfo = get_modinfo_value(f, tmp);
2405 free(tmp);
2406 if (pinfo == NULL)
2407 bb_error_msg_and_die("invalid parameter %s", param);
2408
2409#ifdef SYMBOL_PREFIX
2410 tmp = xasprintf(SYMBOL_PREFIX "%s", param);
2411 sym = obj_find_symbol(f, tmp);
2412 free(tmp);
2413#else
2414 sym = obj_find_symbol(f, param);
2415#endif
2416
2417 /* Also check that the parameter was not resolved from the kernel. */
2418 if (sym == NULL || sym->secidx > SHN_HIRESERVE)
2419 bb_error_msg_and_die("symbol for parameter %s not found", param);
2420
2421 /* Number of parameters */
2422 if (isdigit(*pinfo)) {
2423 min = strtoul(pinfo, &pinfo, 10);
2424 if (*pinfo == '-')
2425 max = strtoul(pinfo + 1, &pinfo, 10);
2426 else
2427 max = min;
2428 } else
2429 min = max = 1;
2430
2431 contents = f->sections[sym->secidx]->contents;
2432 loc = contents + sym->value;
2433
2434 if (*pinfo == 'c') {
2435 if (!isdigit(*(pinfo + 1))) {
2436 bb_error_msg_and_die("parameter type 'c' for %s must be followed by"
2437 " the maximum size", param);
2438 }
2439 charssize = strtoul(pinfo + 1, (char **) NULL, 10);
2440 }
2441
2442 if (val == NULL) {
2443 if (*pinfo != 'b')
2444 bb_error_msg_and_die("argument expected for parameter %s", param);
2445 val = (char *) "1";
2446 }
2447
2448 /* Parse parameter values */
2449 n = 0;
2450 p = val;
2451 while (*p != 0) {
2452 if (++n > max)
2453 bb_error_msg_and_die("too many values for %s (max %d)", param, max);
2454
2455 switch (*pinfo) {
2456 case 's':
2457 len = strcspn(p, ",");
2458 p[len] = 0;
2459 obj_string_patch(f, sym->secidx,
2460 loc - contents, p);
2461 loc += tgt_sizeof_char_p;
2462 p += len;
2463 break;
2464 case 'c':
2465 len = strcspn(p, ",");
2466 p[len] = 0;
2467 if (len >= charssize)
2468 bb_error_msg_and_die("string too long for %s (max %ld)", param,
2469 charssize - 1);
2470 strcpy((char *) loc, p);
2471 loc += charssize;
2472 p += len;
2473 break;
2474 case 'b':
2475 *loc++ = strtoul(p, &p, 0);
2476 break;
2477 case 'h':
2478 *(short *) loc = strtoul(p, &p, 0);
2479 loc += tgt_sizeof_short;
2480 break;
2481 case 'i':
2482 *(int *) loc = strtoul(p, &p, 0);
2483 loc += tgt_sizeof_int;
2484 break;
2485 case 'l':
2486 *(long *) loc = strtoul(p, &p, 0);
2487 loc += tgt_sizeof_long;
2488 break;
2489 default:
2490 bb_error_msg_and_die("unknown parameter type '%c' for %s",
2491 *pinfo, param);
2492 }
2493
2494 p = skip_whitespace(p);
2495 if (*p != ',')
2496 break;
2497 p = skip_whitespace(p + 1);
2498 }
2499
2500 if (n < min)
2501 bb_error_msg_and_die("parameter %s requires at least %d arguments", param, min);
2502 if (*p != '\0')
2503 bb_error_msg_and_die("invalid argument syntax for %s", param);
2504 }
2505
2506 free(xoptions);
2507}
2508
2509#if ENABLE_FEATURE_INSMOD_VERSION_CHECKING
2510static int new_is_module_checksummed(struct obj_file *f)
2511{
2512 const char *p = get_modinfo_value(f, "using_checksums");
2513 if (p)
2514 return xatoi(p);
2515 return 0;
2516}
2517
2518/* Get the module's kernel version in the canonical integer form. */
2519
2520static int
2521new_get_module_version(struct obj_file *f, char str[STRVERSIONLEN])
2522{
2523 char *p, *q;
2524 int a, b, c;
2525
2526 p = get_modinfo_value(f, "kernel_version");
2527 if (p == NULL)
2528 return -1;
2529 safe_strncpy(str, p, STRVERSIONLEN);
2530
2531 a = strtoul(p, &p, 10);
2532 if (*p != '.')
2533 return -1;
2534 b = strtoul(p + 1, &p, 10);
2535 if (*p != '.')
2536 return -1;
2537 c = strtoul(p + 1, &q, 10);
2538 if (p + 1 == q)
2539 return -1;
2540
2541 return a << 16 | b << 8 | c;
2542}
2543
2544#endif /* FEATURE_INSMOD_VERSION_CHECKING */
2545
2546
2547/* Fetch the loaded modules, and all currently exported symbols. */
2548
2549static void new_get_kernel_symbols(void)
2550{
2551 char *module_names, *mn;
2552 struct external_module *modules, *m;
2553 struct new_module_symbol *syms, *s;
2554 size_t ret, bufsize, nmod, nsyms, i, j;
2555
2556 /* Collect the loaded modules. */
2557
2558 bufsize = 256;
2559 module_names = xmalloc(bufsize);
2560
2561 retry_modules_load:
2562 if (query_module(NULL, QM_MODULES, module_names, bufsize, &ret)) {
2563 if (errno == ENOSPC && bufsize < ret) {
2564 bufsize = ret;
2565 module_names = xrealloc(module_names, bufsize);
2566 goto retry_modules_load;
2567 }
2568 bb_perror_msg_and_die("QM_MODULES");
2569 }
2570
2571 n_ext_modules = nmod = ret;
2572
2573 /* Collect the modules' symbols. */
2574
2575 if (nmod) {
Denis Vlasenko3bc3f082008-11-22 20:18:37 +00002576 ext_modules = modules = xzalloc(nmod * sizeof(*modules));
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00002577 for (i = 0, mn = module_names, m = modules;
2578 i < nmod; ++i, ++m, mn += strlen(mn) + 1) {
2579 struct new_module_info info;
2580
2581 if (query_module(mn, QM_INFO, &info, sizeof(info), &ret)) {
2582 if (errno == ENOENT) {
2583 /* The module was removed out from underneath us. */
2584 continue;
2585 }
2586 bb_perror_msg_and_die("query_module: QM_INFO: %s", mn);
2587 }
2588
2589 bufsize = 1024;
2590 syms = xmalloc(bufsize);
2591 retry_mod_sym_load:
2592 if (query_module(mn, QM_SYMBOLS, syms, bufsize, &ret)) {
2593 switch (errno) {
2594 case ENOSPC:
2595 bufsize = ret;
2596 syms = xrealloc(syms, bufsize);
2597 goto retry_mod_sym_load;
2598 case ENOENT:
2599 /* The module was removed out from underneath us. */
2600 continue;
2601 default:
2602 bb_perror_msg_and_die("query_module: QM_SYMBOLS: %s", mn);
2603 }
2604 }
2605 nsyms = ret;
2606
2607 m->name = mn;
2608 m->addr = info.addr;
2609 m->nsyms = nsyms;
2610 m->syms = syms;
2611
2612 for (j = 0, s = syms; j < nsyms; ++j, ++s) {
2613 s->name += (unsigned long) syms;
2614 }
2615 }
2616 }
2617
2618 /* Collect the kernel's symbols. */
2619
Denis Vlasenkoe35af562009-01-31 14:22:24 +00002620 bufsize = 16 * 1024;
2621 syms = xmalloc(bufsize);
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00002622 retry_kern_sym_load:
2623 if (query_module(NULL, QM_SYMBOLS, syms, bufsize, &ret)) {
2624 if (errno == ENOSPC && bufsize < ret) {
2625 bufsize = ret;
2626 syms = xrealloc(syms, bufsize);
2627 goto retry_kern_sym_load;
2628 }
2629 bb_perror_msg_and_die("kernel: QM_SYMBOLS");
2630 }
2631 nksyms = nsyms = ret;
2632 ksyms = syms;
2633
2634 for (j = 0, s = syms; j < nsyms; ++j, ++s) {
2635 s->name += (unsigned long) syms;
2636 }
2637}
2638
2639
2640/* Return the kernel symbol checksum version, or zero if not used. */
2641
2642static int new_is_kernel_checksummed(void)
2643{
2644 struct new_module_symbol *s;
2645 size_t i;
2646
2647 /* Using_Versions is not the first symbol, but it should be in there. */
2648
2649 for (i = 0, s = ksyms; i < nksyms; ++i, ++s)
2650 if (strcmp((char *) s->name, "Using_Versions") == 0)
2651 return s->value;
2652
2653 return 0;
2654}
2655
2656
Denis Vlasenko3bc3f082008-11-22 20:18:37 +00002657static void new_create_this_module(struct obj_file *f, const char *m_name)
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00002658{
2659 struct obj_section *sec;
2660
2661 sec = obj_create_alloced_section_first(f, ".this", tgt_sizeof_long,
2662 sizeof(struct new_module));
Denis Vlasenko3bc3f082008-11-22 20:18:37 +00002663 /* done by obj_create_alloced_section_first: */
2664 /*memset(sec->contents, 0, sizeof(struct new_module));*/
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00002665
2666 obj_add_symbol(f, SPFX "__this_module", -1,
2667 ELF_ST_INFO(STB_LOCAL, STT_OBJECT), sec->idx, 0,
2668 sizeof(struct new_module));
2669
2670 obj_string_patch(f, sec->idx, offsetof(struct new_module, name),
2671 m_name);
2672}
2673
2674#if ENABLE_FEATURE_INSMOD_KSYMOOPS_SYMBOLS
2675/* add an entry to the __ksymtab section, creating it if necessary */
2676static void new_add_ksymtab(struct obj_file *f, struct obj_symbol *sym)
2677{
2678 struct obj_section *sec;
2679 ElfW(Addr) ofs;
2680
2681 /* ensure __ksymtab is allocated, EXPORT_NOSYMBOLS creates a non-alloc section.
2682 * If __ksymtab is defined but not marked alloc, x out the first character
2683 * (no obj_delete routine) and create a new __ksymtab with the correct
2684 * characteristics.
2685 */
2686 sec = obj_find_section(f, "__ksymtab");
2687 if (sec && !(sec->header.sh_flags & SHF_ALLOC)) {
2688 *((char *)(sec->name)) = 'x'; /* override const */
2689 sec = NULL;
2690 }
2691 if (!sec)
2692 sec = obj_create_alloced_section(f, "__ksymtab",
2693 tgt_sizeof_void_p, 0);
2694 if (!sec)
2695 return;
2696 sec->header.sh_flags |= SHF_ALLOC;
2697 /* Empty section might be byte-aligned */
2698 sec->header.sh_addralign = tgt_sizeof_void_p;
2699 ofs = sec->header.sh_size;
2700 obj_symbol_patch(f, sec->idx, ofs, sym);
2701 obj_string_patch(f, sec->idx, ofs + tgt_sizeof_void_p, sym->name);
2702 obj_extend_section(sec, 2 * tgt_sizeof_char_p);
2703}
2704#endif /* FEATURE_INSMOD_KSYMOOPS_SYMBOLS */
2705
2706static int new_create_module_ksymtab(struct obj_file *f)
2707{
2708 struct obj_section *sec;
2709 int i;
2710
2711 /* We must always add the module references. */
2712
2713 if (n_ext_modules_used) {
2714 struct new_module_ref *dep;
2715 struct obj_symbol *tm;
2716
2717 sec = obj_create_alloced_section(f, ".kmodtab", tgt_sizeof_void_p,
2718 (sizeof(struct new_module_ref)
2719 * n_ext_modules_used));
2720 if (!sec)
2721 return 0;
2722
2723 tm = obj_find_symbol(f, SPFX "__this_module");
2724 dep = (struct new_module_ref *) sec->contents;
2725 for (i = 0; i < n_ext_modules; ++i)
2726 if (ext_modules[i].used) {
2727 dep->dep = ext_modules[i].addr;
2728 obj_symbol_patch(f, sec->idx,
2729 (char *) &dep->ref - sec->contents, tm);
2730 dep->next_ref = 0;
2731 ++dep;
2732 }
2733 }
2734
2735 if (!flag_noexport && !obj_find_section(f, "__ksymtab")) {
2736 size_t nsyms;
2737 int *loaded;
2738
2739 sec = obj_create_alloced_section(f, "__ksymtab", tgt_sizeof_void_p, 0);
2740
2741 /* We don't want to export symbols residing in sections that
2742 aren't loaded. There are a number of these created so that
2743 we make sure certain module options don't appear twice. */
Denis Vlasenko1ad4db12008-11-12 00:09:58 +00002744 i = f->header.e_shnum;
2745 loaded = alloca(sizeof(int) * i);
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00002746 while (--i >= 0)
2747 loaded[i] = (f->sections[i]->header.sh_flags & SHF_ALLOC) != 0;
2748
2749 for (nsyms = i = 0; i < HASH_BUCKETS; ++i) {
2750 struct obj_symbol *sym;
Denis Vlasenko1ad4db12008-11-12 00:09:58 +00002751 for (sym = f->symtab[i]; sym; sym = sym->next) {
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00002752 if (ELF_ST_BIND(sym->info) != STB_LOCAL
Denis Vlasenko3bc3f082008-11-22 20:18:37 +00002753 && sym->secidx <= SHN_HIRESERVE
2754 && (sym->secidx >= SHN_LORESERVE || loaded[sym->secidx])
Denis Vlasenko1ad4db12008-11-12 00:09:58 +00002755 ) {
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00002756 ElfW(Addr) ofs = nsyms * 2 * tgt_sizeof_void_p;
2757
2758 obj_symbol_patch(f, sec->idx, ofs, sym);
2759 obj_string_patch(f, sec->idx, ofs + tgt_sizeof_void_p,
2760 sym->name);
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00002761 nsyms++;
2762 }
Denis Vlasenko1ad4db12008-11-12 00:09:58 +00002763 }
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00002764 }
2765
2766 obj_extend_section(sec, nsyms * 2 * tgt_sizeof_char_p);
2767 }
2768
2769 return 1;
2770}
2771
2772
2773static int
2774new_init_module(const char *m_name, struct obj_file *f, unsigned long m_size)
2775{
2776 struct new_module *module;
2777 struct obj_section *sec;
2778 void *image;
2779 int ret;
2780 tgt_long m_addr;
2781
2782 sec = obj_find_section(f, ".this");
2783 if (!sec || !sec->contents) {
2784 bb_perror_msg_and_die("corrupt module %s?", m_name);
2785 }
2786 module = (struct new_module *) sec->contents;
2787 m_addr = sec->header.sh_addr;
2788
2789 module->size_of_struct = sizeof(*module);
2790 module->size = m_size;
2791 module->flags = flag_autoclean ? NEW_MOD_AUTOCLEAN : 0;
2792
2793 sec = obj_find_section(f, "__ksymtab");
2794 if (sec && sec->header.sh_size) {
2795 module->syms = sec->header.sh_addr;
2796 module->nsyms = sec->header.sh_size / (2 * tgt_sizeof_char_p);
2797 }
2798
2799 if (n_ext_modules_used) {
2800 sec = obj_find_section(f, ".kmodtab");
2801 module->deps = sec->header.sh_addr;
2802 module->ndeps = n_ext_modules_used;
2803 }
2804
Denis Vlasenkoe35af562009-01-31 14:22:24 +00002805 module->init = obj_symbol_final_value(f, obj_find_symbol(f, SPFX "init_module"));
2806 module->cleanup = obj_symbol_final_value(f, obj_find_symbol(f, SPFX "cleanup_module"));
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00002807
2808 sec = obj_find_section(f, "__ex_table");
2809 if (sec) {
2810 module->ex_table_start = sec->header.sh_addr;
2811 module->ex_table_end = sec->header.sh_addr + sec->header.sh_size;
2812 }
2813
2814 sec = obj_find_section(f, ".text.init");
2815 if (sec) {
2816 module->runsize = sec->header.sh_addr - m_addr;
2817 }
2818 sec = obj_find_section(f, ".data.init");
2819 if (sec) {
Denis Vlasenko1ad4db12008-11-12 00:09:58 +00002820 if (!module->runsize
2821 || module->runsize > sec->header.sh_addr - m_addr
2822 ) {
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00002823 module->runsize = sec->header.sh_addr - m_addr;
Denis Vlasenko1ad4db12008-11-12 00:09:58 +00002824 }
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00002825 }
2826 sec = obj_find_section(f, ARCHDATA_SEC_NAME);
2827 if (sec && sec->header.sh_size) {
2828 module->archdata_start = (void*)sec->header.sh_addr;
2829 module->archdata_end = module->archdata_start + sec->header.sh_size;
2830 }
2831 sec = obj_find_section(f, KALLSYMS_SEC_NAME);
2832 if (sec && sec->header.sh_size) {
2833 module->kallsyms_start = (void*)sec->header.sh_addr;
2834 module->kallsyms_end = module->kallsyms_start + sec->header.sh_size;
2835 }
2836
2837 /* Whew! All of the initialization is complete. Collect the final
2838 module image and give it to the kernel. */
2839
2840 image = xmalloc(m_size);
2841 obj_create_image(f, image);
2842
2843 ret = init_module(m_name, (struct new_module *) image);
2844 if (ret)
2845 bb_perror_msg("init_module: %s", m_name);
2846
2847 free(image);
2848
2849 return ret == 0;
2850}
2851
2852
2853/*======================================================================*/
2854
2855static void
2856obj_string_patch(struct obj_file *f, int secidx, ElfW(Addr) offset,
2857 const char *string)
2858{
2859 struct obj_string_patch *p;
2860 struct obj_section *strsec;
2861 size_t len = strlen(string) + 1;
2862 char *loc;
2863
Denis Vlasenkoe35af562009-01-31 14:22:24 +00002864 p = xzalloc(sizeof(*p));
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00002865 p->next = f->string_patches;
2866 p->reloc_secidx = secidx;
2867 p->reloc_offset = offset;
2868 f->string_patches = p;
2869
2870 strsec = obj_find_section(f, ".kstrtab");
2871 if (strsec == NULL) {
2872 strsec = obj_create_alloced_section(f, ".kstrtab", 1, len);
Denis Vlasenkoe35af562009-01-31 14:22:24 +00002873 /*p->string_offset = 0;*/
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00002874 loc = strsec->contents;
2875 } else {
2876 p->string_offset = strsec->header.sh_size;
2877 loc = obj_extend_section(strsec, len);
2878 }
2879 memcpy(loc, string, len);
2880}
2881
2882static void
2883obj_symbol_patch(struct obj_file *f, int secidx, ElfW(Addr) offset,
Denys Vlasenkod5f1b1b2009-06-05 12:06:05 +02002884 struct obj_symbol *sym)
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00002885{
2886 struct obj_symbol_patch *p;
2887
2888 p = xmalloc(sizeof(*p));
2889 p->next = f->symbol_patches;
2890 p->reloc_secidx = secidx;
2891 p->reloc_offset = offset;
2892 p->sym = sym;
2893 f->symbol_patches = p;
2894}
2895
2896static void obj_check_undefineds(struct obj_file *f)
2897{
2898 unsigned i;
2899
2900 for (i = 0; i < HASH_BUCKETS; ++i) {
2901 struct obj_symbol *sym;
Denis Vlasenko49325962009-01-31 23:33:54 +00002902 for (sym = f->symtab[i]; sym; sym = sym->next) {
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00002903 if (sym->secidx == SHN_UNDEF) {
2904 if (ELF_ST_BIND(sym->info) == STB_WEAK) {
2905 sym->secidx = SHN_ABS;
2906 sym->value = 0;
2907 } else {
2908 if (!flag_quiet)
2909 bb_error_msg_and_die("unresolved symbol %s", sym->name);
2910 }
2911 }
Denis Vlasenko49325962009-01-31 23:33:54 +00002912 }
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00002913 }
2914}
2915
2916static void obj_allocate_commons(struct obj_file *f)
2917{
2918 struct common_entry {
2919 struct common_entry *next;
2920 struct obj_symbol *sym;
2921 } *common_head = NULL;
2922
2923 unsigned long i;
2924
2925 for (i = 0; i < HASH_BUCKETS; ++i) {
2926 struct obj_symbol *sym;
Denis Vlasenkoe35af562009-01-31 14:22:24 +00002927 for (sym = f->symtab[i]; sym; sym = sym->next) {
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00002928 if (sym->secidx == SHN_COMMON) {
2929 /* Collect all COMMON symbols and sort them by size so as to
2930 minimize space wasted by alignment requirements. */
Denis Vlasenkoe35af562009-01-31 14:22:24 +00002931 struct common_entry **p, *n;
2932 for (p = &common_head; *p; p = &(*p)->next)
2933 if (sym->size <= (*p)->sym->size)
2934 break;
2935 n = alloca(sizeof(*n));
2936 n->next = *p;
2937 n->sym = sym;
2938 *p = n;
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00002939 }
Denis Vlasenkoe35af562009-01-31 14:22:24 +00002940 }
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00002941 }
2942
2943 for (i = 1; i < f->local_symtab_size; ++i) {
2944 struct obj_symbol *sym = f->local_symtab[i];
2945 if (sym && sym->secidx == SHN_COMMON) {
2946 struct common_entry **p, *n;
Denis Vlasenkoe35af562009-01-31 14:22:24 +00002947 for (p = &common_head; *p; p = &(*p)->next) {
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00002948 if (sym == (*p)->sym)
2949 break;
Denis Vlasenkoe35af562009-01-31 14:22:24 +00002950 if (sym->size < (*p)->sym->size) {
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00002951 n = alloca(sizeof(*n));
2952 n->next = *p;
2953 n->sym = sym;
2954 *p = n;
2955 break;
2956 }
Denis Vlasenkoe35af562009-01-31 14:22:24 +00002957 }
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00002958 }
2959 }
2960
2961 if (common_head) {
2962 /* Find the bss section. */
2963 for (i = 0; i < f->header.e_shnum; ++i)
2964 if (f->sections[i]->header.sh_type == SHT_NOBITS)
2965 break;
2966
2967 /* If for some reason there hadn't been one, create one. */
2968 if (i == f->header.e_shnum) {
2969 struct obj_section *sec;
2970
Denis Vlasenko3bc3f082008-11-22 20:18:37 +00002971 f->header.e_shnum++;
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00002972 f->sections = xrealloc_vector(f->sections, 2, i);
2973 f->sections[i] = sec = arch_new_section();
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00002974
2975 sec->header.sh_type = SHT_PROGBITS;
2976 sec->header.sh_flags = SHF_WRITE | SHF_ALLOC;
2977 sec->name = ".bss";
2978 sec->idx = i;
2979 }
2980
2981 /* Allocate the COMMONS. */
2982 {
2983 ElfW(Addr) bss_size = f->sections[i]->header.sh_size;
2984 ElfW(Addr) max_align = f->sections[i]->header.sh_addralign;
2985 struct common_entry *c;
2986
2987 for (c = common_head; c; c = c->next) {
2988 ElfW(Addr) align = c->sym->value;
2989
2990 if (align > max_align)
2991 max_align = align;
2992 if (bss_size & (align - 1))
2993 bss_size = (bss_size | (align - 1)) + 1;
2994
2995 c->sym->secidx = i;
2996 c->sym->value = bss_size;
2997
2998 bss_size += c->sym->size;
2999 }
3000
3001 f->sections[i]->header.sh_size = bss_size;
3002 f->sections[i]->header.sh_addralign = max_align;
3003 }
3004 }
3005
3006 /* For the sake of patch relocation and parameter initialization,
3007 allocate zeroed data for NOBITS sections now. Note that after
3008 this we cannot assume NOBITS are really empty. */
3009 for (i = 0; i < f->header.e_shnum; ++i) {
3010 struct obj_section *s = f->sections[i];
3011 if (s->header.sh_type == SHT_NOBITS) {
Denis Vlasenko3bc3f082008-11-22 20:18:37 +00003012 s->contents = NULL;
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003013 if (s->header.sh_size != 0)
Denis Vlasenko3bc3f082008-11-22 20:18:37 +00003014 s->contents = xzalloc(s->header.sh_size);
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003015 s->header.sh_type = SHT_PROGBITS;
3016 }
3017 }
3018}
3019
3020static unsigned long obj_load_size(struct obj_file *f)
3021{
3022 unsigned long dot = 0;
3023 struct obj_section *sec;
3024
3025 /* Finalize the positions of the sections relative to one another. */
3026
3027 for (sec = f->load_order; sec; sec = sec->load_next) {
3028 ElfW(Addr) align;
3029
3030 align = sec->header.sh_addralign;
3031 if (align && (dot & (align - 1)))
3032 dot = (dot | (align - 1)) + 1;
3033
3034 sec->header.sh_addr = dot;
3035 dot += sec->header.sh_size;
3036 }
3037
3038 return dot;
3039}
3040
3041static int obj_relocate(struct obj_file *f, ElfW(Addr) base)
3042{
3043 int i, n = f->header.e_shnum;
3044 int ret = 1;
3045
3046 /* Finalize the addresses of the sections. */
3047
3048 f->baseaddr = base;
3049 for (i = 0; i < n; ++i)
3050 f->sections[i]->header.sh_addr += base;
3051
3052 /* And iterate over all of the relocations. */
3053
3054 for (i = 0; i < n; ++i) {
3055 struct obj_section *relsec, *symsec, *targsec, *strsec;
3056 ElfW(RelM) * rel, *relend;
3057 ElfW(Sym) * symtab;
3058 const char *strtab;
3059
3060 relsec = f->sections[i];
3061 if (relsec->header.sh_type != SHT_RELM)
3062 continue;
3063
3064 symsec = f->sections[relsec->header.sh_link];
3065 targsec = f->sections[relsec->header.sh_info];
3066 strsec = f->sections[symsec->header.sh_link];
3067
3068 rel = (ElfW(RelM) *) relsec->contents;
3069 relend = rel + (relsec->header.sh_size / sizeof(ElfW(RelM)));
3070 symtab = (ElfW(Sym) *) symsec->contents;
3071 strtab = (const char *) strsec->contents;
3072
3073 for (; rel < relend; ++rel) {
3074 ElfW(Addr) value = 0;
3075 struct obj_symbol *intsym = NULL;
3076 unsigned long symndx;
Denis Vlasenko49325962009-01-31 23:33:54 +00003077 ElfW(Sym) *extsym = NULL;
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003078 const char *errmsg;
3079
3080 /* Attempt to find a value to use for this relocation. */
3081
3082 symndx = ELF_R_SYM(rel->r_info);
3083 if (symndx) {
3084 /* Note we've already checked for undefined symbols. */
3085
3086 extsym = &symtab[symndx];
3087 if (ELF_ST_BIND(extsym->st_info) == STB_LOCAL) {
3088 /* Local symbols we look up in the local table to be sure
3089 we get the one that is really intended. */
3090 intsym = f->local_symtab[symndx];
3091 } else {
3092 /* Others we look up in the hash table. */
3093 const char *name;
3094 if (extsym->st_name)
3095 name = strtab + extsym->st_name;
3096 else
3097 name = f->sections[extsym->st_shndx]->name;
3098 intsym = obj_find_symbol(f, name);
3099 }
3100
3101 value = obj_symbol_final_value(f, intsym);
3102 intsym->referenced = 1;
3103 }
3104#if SHT_RELM == SHT_RELA
3105#if defined(__alpha__) && defined(AXP_BROKEN_GAS)
3106 /* Work around a nasty GAS bug, that is fixed as of 2.7.0.9. */
Denis Vlasenko1ad4db12008-11-12 00:09:58 +00003107 if (!extsym || !extsym->st_name
3108 || ELF_ST_BIND(extsym->st_info) != STB_LOCAL)
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003109#endif
3110 value += rel->r_addend;
3111#endif
3112
3113 /* Do it! */
3114 switch (arch_apply_relocation
3115 (f, targsec, /*symsec,*/ intsym, rel, value)
3116 ) {
3117 case obj_reloc_ok:
3118 break;
3119
3120 case obj_reloc_overflow:
3121 errmsg = "Relocation overflow";
3122 goto bad_reloc;
3123 case obj_reloc_dangerous:
3124 errmsg = "Dangerous relocation";
3125 goto bad_reloc;
3126 case obj_reloc_unhandled:
3127 errmsg = "Unhandled relocation";
3128bad_reloc:
3129 if (extsym) {
3130 bb_error_msg("%s of type %ld for %s", errmsg,
3131 (long) ELF_R_TYPE(rel->r_info),
3132 strtab + extsym->st_name);
3133 } else {
3134 bb_error_msg("%s of type %ld", errmsg,
3135 (long) ELF_R_TYPE(rel->r_info));
3136 }
3137 ret = 0;
3138 break;
3139 }
3140 }
3141 }
3142
3143 /* Finally, take care of the patches. */
3144
3145 if (f->string_patches) {
3146 struct obj_string_patch *p;
3147 struct obj_section *strsec;
3148 ElfW(Addr) strsec_base;
3149 strsec = obj_find_section(f, ".kstrtab");
3150 strsec_base = strsec->header.sh_addr;
3151
3152 for (p = f->string_patches; p; p = p->next) {
3153 struct obj_section *targsec = f->sections[p->reloc_secidx];
3154 *(ElfW(Addr) *) (targsec->contents + p->reloc_offset)
3155 = strsec_base + p->string_offset;
3156 }
3157 }
3158
3159 if (f->symbol_patches) {
3160 struct obj_symbol_patch *p;
3161
3162 for (p = f->symbol_patches; p; p = p->next) {
3163 struct obj_section *targsec = f->sections[p->reloc_secidx];
3164 *(ElfW(Addr) *) (targsec->contents + p->reloc_offset)
3165 = obj_symbol_final_value(f, p->sym);
3166 }
3167 }
3168
3169 return ret;
3170}
3171
3172static int obj_create_image(struct obj_file *f, char *image)
3173{
3174 struct obj_section *sec;
3175 ElfW(Addr) base = f->baseaddr;
3176
3177 for (sec = f->load_order; sec; sec = sec->load_next) {
3178 char *secimg;
3179
3180 if (sec->contents == 0 || sec->header.sh_size == 0)
3181 continue;
3182
3183 secimg = image + (sec->header.sh_addr - base);
3184
3185 /* Note that we allocated data for NOBITS sections earlier. */
3186 memcpy(secimg, sec->contents, sec->header.sh_size);
3187 }
3188
3189 return 1;
3190}
3191
3192/*======================================================================*/
3193
Denis Vlasenkof4393042009-04-05 23:25:09 +00003194static struct obj_file *obj_load(char *image, size_t image_size, int loadprogbits)
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003195{
Denis Vlasenkoe1de3af2009-03-29 16:38:59 +00003196#if BB_LITTLE_ENDIAN
3197# define ELFMAG_U32 ((uint32_t)(ELFMAG0 + 0x100 * (ELFMAG1 + (0x100 * (ELFMAG2 + 0x100 * ELFMAG3)))))
3198#else
3199# define ELFMAG_U32 ((uint32_t)((((ELFMAG0 * 0x100) + ELFMAG1) * 0x100 + ELFMAG2) * 0x100 + ELFMAG3))
3200#endif
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003201 struct obj_file *f;
3202 ElfW(Shdr) * section_headers;
3203 size_t shnum, i;
3204 char *shstrtab;
3205
3206 /* Read the file header. */
3207
3208 f = arch_new_file();
3209 f->symbol_cmp = strcmp;
3210 f->symbol_hash = obj_elf_hash;
3211 f->load_order_search_start = &f->load_order;
3212
Denis Vlasenkof4393042009-04-05 23:25:09 +00003213 if (image_size < sizeof(f->header))
3214 bb_error_msg_and_die("error while loading ELF header");
3215 memcpy(&f->header, image, sizeof(f->header));
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003216
Denis Vlasenkoe1de3af2009-03-29 16:38:59 +00003217 if (*(uint32_t*)(&f->header.e_ident) != ELFMAG_U32) {
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003218 bb_error_msg_and_die("not an ELF file");
3219 }
3220 if (f->header.e_ident[EI_CLASS] != ELFCLASSM
Denis Vlasenko1ad4db12008-11-12 00:09:58 +00003221 || f->header.e_ident[EI_DATA] != (BB_BIG_ENDIAN ? ELFDATA2MSB : ELFDATA2LSB)
3222 || f->header.e_ident[EI_VERSION] != EV_CURRENT
3223 || !MATCH_MACHINE(f->header.e_machine)
3224 ) {
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003225 bb_error_msg_and_die("ELF file not for this architecture");
3226 }
3227 if (f->header.e_type != ET_REL) {
3228 bb_error_msg_and_die("ELF file not a relocatable object");
3229 }
3230
3231 /* Read the section headers. */
3232
3233 if (f->header.e_shentsize != sizeof(ElfW(Shdr))) {
3234 bb_error_msg_and_die("section header size mismatch: %lu != %lu",
3235 (unsigned long) f->header.e_shentsize,
3236 (unsigned long) sizeof(ElfW(Shdr)));
3237 }
3238
3239 shnum = f->header.e_shnum;
Denis Vlasenko1ad4db12008-11-12 00:09:58 +00003240 /* Growth of ->sections vector will be done by
3241 * xrealloc_vector(..., 2, ...), therefore we must allocate
3242 * at least 2^2 = 4 extra elements here. */
3243 f->sections = xzalloc(sizeof(f->sections[0]) * (shnum + 4));
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003244
3245 section_headers = alloca(sizeof(ElfW(Shdr)) * shnum);
Denis Vlasenkof4393042009-04-05 23:25:09 +00003246 if (image_size < f->header.e_shoff + sizeof(ElfW(Shdr)) * shnum)
3247 bb_error_msg_and_die("error while loading section headers");
3248 memcpy(section_headers, image + f->header.e_shoff, sizeof(ElfW(Shdr)) * shnum);
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003249
3250 /* Read the section data. */
3251
3252 for (i = 0; i < shnum; ++i) {
3253 struct obj_section *sec;
3254
3255 f->sections[i] = sec = arch_new_section();
3256
3257 sec->header = section_headers[i];
3258 sec->idx = i;
3259
3260 if (sec->header.sh_size) {
3261 switch (sec->header.sh_type) {
3262 case SHT_NULL:
3263 case SHT_NOTE:
3264 case SHT_NOBITS:
3265 /* ignore */
3266 break;
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003267 case SHT_PROGBITS:
3268#if LOADBITS
3269 if (!loadprogbits) {
3270 sec->contents = NULL;
3271 break;
3272 }
3273#endif
3274 case SHT_SYMTAB:
3275 case SHT_STRTAB:
3276 case SHT_RELM:
Denis Vlasenko3bc3f082008-11-22 20:18:37 +00003277 sec->contents = NULL;
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003278 if (sec->header.sh_size > 0) {
3279 sec->contents = xmalloc(sec->header.sh_size);
Denis Vlasenkof4393042009-04-05 23:25:09 +00003280 if (image_size < (sec->header.sh_offset + sec->header.sh_size))
3281 bb_error_msg_and_die("error while loading section data");
3282 memcpy(sec->contents, image + sec->header.sh_offset, sec->header.sh_size);
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003283 }
3284 break;
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003285#if SHT_RELM == SHT_REL
3286 case SHT_RELA:
3287 bb_error_msg_and_die("RELA relocations not supported on this architecture");
3288#else
3289 case SHT_REL:
3290 bb_error_msg_and_die("REL relocations not supported on this architecture");
3291#endif
3292 default:
3293 if (sec->header.sh_type >= SHT_LOPROC) {
3294 /* Assume processor specific section types are debug
3295 info and can safely be ignored. If this is ever not
3296 the case (Hello MIPS?), don't put ifdefs here but
3297 create an arch_load_proc_section(). */
3298 break;
3299 }
3300
3301 bb_error_msg_and_die("can't handle sections of type %ld",
3302 (long) sec->header.sh_type);
3303 }
3304 }
3305 }
3306
3307 /* Do what sort of interpretation as needed by each section. */
3308
3309 shstrtab = f->sections[f->header.e_shstrndx]->contents;
3310
3311 for (i = 0; i < shnum; ++i) {
3312 struct obj_section *sec = f->sections[i];
3313 sec->name = shstrtab + sec->header.sh_name;
3314 }
3315
3316 for (i = 0; i < shnum; ++i) {
3317 struct obj_section *sec = f->sections[i];
3318
3319 /* .modinfo should be contents only but gcc has no attribute for that.
3320 * The kernel may have marked .modinfo as ALLOC, ignore this bit.
3321 */
3322 if (strcmp(sec->name, ".modinfo") == 0)
3323 sec->header.sh_flags &= ~SHF_ALLOC;
3324
3325 if (sec->header.sh_flags & SHF_ALLOC)
3326 obj_insert_section_load_order(f, sec);
3327
3328 switch (sec->header.sh_type) {
3329 case SHT_SYMTAB:
3330 {
3331 unsigned long nsym, j;
3332 char *strtab;
3333 ElfW(Sym) * sym;
3334
3335 if (sec->header.sh_entsize != sizeof(ElfW(Sym))) {
3336 bb_error_msg_and_die("symbol size mismatch: %lu != %lu",
3337 (unsigned long) sec->header.sh_entsize,
3338 (unsigned long) sizeof(ElfW(Sym)));
3339 }
3340
3341 nsym = sec->header.sh_size / sizeof(ElfW(Sym));
3342 strtab = f->sections[sec->header.sh_link]->contents;
3343 sym = (ElfW(Sym) *) sec->contents;
3344
3345 /* Allocate space for a table of local symbols. */
3346 j = f->local_symtab_size = sec->header.sh_info;
3347 f->local_symtab = xzalloc(j * sizeof(struct obj_symbol *));
3348
3349 /* Insert all symbols into the hash table. */
3350 for (j = 1, ++sym; j < nsym; ++j, ++sym) {
3351 ElfW(Addr) val = sym->st_value;
3352 const char *name;
3353 if (sym->st_name)
3354 name = strtab + sym->st_name;
3355 else if (sym->st_shndx < shnum)
3356 name = f->sections[sym->st_shndx]->name;
3357 else
3358 continue;
3359#if defined(__SH5__)
3360 /*
3361 * For sh64 it is possible that the target of a branch
3362 * requires a mode switch (32 to 16 and back again).
3363 *
3364 * This is implied by the lsb being set in the target
3365 * address for SHmedia mode and clear for SHcompact.
3366 */
3367 val |= sym->st_other & 4;
3368#endif
3369 obj_add_symbol(f, name, j, sym->st_info, sym->st_shndx,
3370 val, sym->st_size);
3371 }
3372 }
3373 break;
3374
3375 case SHT_RELM:
3376 if (sec->header.sh_entsize != sizeof(ElfW(RelM))) {
3377 bb_error_msg_and_die("relocation entry size mismatch: %lu != %lu",
3378 (unsigned long) sec->header.sh_entsize,
3379 (unsigned long) sizeof(ElfW(RelM)));
3380 }
3381 break;
3382 /* XXX Relocation code from modutils-2.3.19 is not here.
3383 * Why? That's about 20 lines of code from obj/obj_load.c,
3384 * which gets done in a second pass through the sections.
3385 * This BusyBox insmod does similar work in obj_relocate(). */
3386 }
3387 }
3388
3389 return f;
3390}
3391
3392#if ENABLE_FEATURE_INSMOD_LOADINKMEM
3393/*
3394 * load the unloaded sections directly into the memory allocated by
3395 * kernel for the module
3396 */
3397
Denis Vlasenkof4393042009-04-05 23:25:09 +00003398static int obj_load_progbits(char *image, size_t image_size, struct obj_file *f, char *imagebase)
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003399{
3400 ElfW(Addr) base = f->baseaddr;
3401 struct obj_section* sec;
3402
3403 for (sec = f->load_order; sec; sec = sec->load_next) {
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003404 /* section already loaded? */
3405 if (sec->contents != NULL)
3406 continue;
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003407 if (sec->header.sh_size == 0)
3408 continue;
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003409 sec->contents = imagebase + (sec->header.sh_addr - base);
Denis Vlasenkof4393042009-04-05 23:25:09 +00003410 if (image_size < (sec->header.sh_offset + sec->header.sh_size)) {
3411 bb_error_msg("error reading ELF section data");
3412 return 0; /* need to delete half-loaded module! */
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003413 }
Denis Vlasenkof4393042009-04-05 23:25:09 +00003414 memcpy(sec->contents, image + sec->header.sh_offset, sec->header.sh_size);
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003415 }
3416 return 1;
3417}
3418#endif
3419
3420static void hide_special_symbols(struct obj_file *f)
3421{
3422 static const char *const specials[] = {
3423 SPFX "cleanup_module",
3424 SPFX "init_module",
3425 SPFX "kernel_version",
3426 NULL
3427 };
3428
3429 struct obj_symbol *sym;
3430 const char *const *p;
3431
3432 for (p = specials; *p; ++p) {
3433 sym = obj_find_symbol(f, *p);
3434 if (sym != NULL)
3435 sym->info = ELF_ST_INFO(STB_LOCAL, ELF_ST_TYPE(sym->info));
3436 }
3437}
3438
3439
3440#if ENABLE_FEATURE_CHECK_TAINTED_MODULE
3441static int obj_gpl_license(struct obj_file *f, const char **license)
3442{
3443 struct obj_section *sec;
3444 /* This list must match *exactly* the list of allowable licenses in
3445 * linux/include/linux/module.h. Checking for leading "GPL" will not
3446 * work, somebody will use "GPL sucks, this is proprietary".
3447 */
3448 static const char *const gpl_licenses[] = {
3449 "GPL",
3450 "GPL v2",
3451 "GPL and additional rights",
3452 "Dual BSD/GPL",
3453 "Dual MPL/GPL"
3454 };
3455
3456 sec = obj_find_section(f, ".modinfo");
3457 if (sec) {
3458 const char *value, *ptr, *endptr;
3459 ptr = sec->contents;
3460 endptr = ptr + sec->header.sh_size;
3461 while (ptr < endptr) {
3462 value = strchr(ptr, '=');
3463 if (value && strncmp(ptr, "license", value-ptr) == 0) {
3464 unsigned i;
3465 if (license)
3466 *license = value+1;
3467 for (i = 0; i < ARRAY_SIZE(gpl_licenses); ++i) {
3468 if (strcmp(value+1, gpl_licenses[i]) == 0)
3469 return 0;
3470 }
3471 return 2;
3472 }
3473 ptr = strchr(ptr, '\0');
3474 if (ptr)
3475 ptr++;
3476 else
3477 ptr = endptr;
3478 }
3479 }
3480 return 1;
3481}
3482
3483#define TAINT_FILENAME "/proc/sys/kernel/tainted"
3484#define TAINT_PROPRIETORY_MODULE (1 << 0)
3485#define TAINT_FORCED_MODULE (1 << 1)
3486#define TAINT_UNSAFE_SMP (1 << 2)
3487#define TAINT_URL "http://www.tux.org/lkml/#export-tainted"
3488
3489static void set_tainted(int fd, const char *m_name,
Denys Vlasenkod5f1b1b2009-06-05 12:06:05 +02003490 int kernel_has_tainted, int taint,
3491 const char *text1, const char *text2)
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003492{
3493 static smallint printed_info;
3494
3495 char buf[80];
3496 int oldval;
3497
3498 if (fd < 0 && !kernel_has_tainted)
3499 return; /* New modutils on old kernel */
3500 printf("Warning: loading %s will taint the kernel: %s%s\n",
3501 m_name, text1, text2);
3502 if (!printed_info) {
3503 printf(" See %s for information about tainted modules\n", TAINT_URL);
3504 printed_info = 1;
3505 }
3506 if (fd >= 0) {
3507 read(fd, buf, sizeof(buf)-1);
3508 buf[sizeof(buf)-1] = '\0';
3509 oldval = strtoul(buf, NULL, 10);
3510 sprintf(buf, "%d\n", oldval | taint);
Denis Vlasenko73c571a2009-03-09 00:12:37 +00003511 xwrite_str(fd, buf);
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003512 }
3513}
3514
3515/* Check if loading this module will taint the kernel. */
3516static void check_tainted_module(struct obj_file *f, const char *m_name)
3517{
3518 static const char tainted_file[] ALIGN1 = TAINT_FILENAME;
3519
3520 int fd, kernel_has_tainted;
3521 const char *ptr;
3522
3523 kernel_has_tainted = 1;
3524 fd = open(tainted_file, O_RDWR);
3525 if (fd < 0) {
3526 if (errno == ENOENT)
3527 kernel_has_tainted = 0;
3528 else if (errno == EACCES)
3529 kernel_has_tainted = 1;
3530 else {
3531 perror(tainted_file);
3532 kernel_has_tainted = 0;
3533 }
3534 }
3535
3536 switch (obj_gpl_license(f, &ptr)) {
3537 case 0:
3538 break;
3539 case 1:
3540 set_tainted(fd, m_name, kernel_has_tainted, TAINT_PROPRIETORY_MODULE, "no license", "");
3541 break;
Denis Vlasenkoe35af562009-01-31 14:22:24 +00003542 default: /* case 2: */
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003543 /* The module has a non-GPL license so we pretend that the
3544 * kernel always has a taint flag to get a warning even on
3545 * kernels without the proc flag.
3546 */
3547 set_tainted(fd, m_name, 1, TAINT_PROPRIETORY_MODULE, "non-GPL license - ", ptr);
3548 break;
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003549 }
3550
3551 if (flag_force_load)
3552 set_tainted(fd, m_name, 1, TAINT_FORCED_MODULE, "forced load", "");
3553
3554 if (fd >= 0)
3555 close(fd);
3556}
Denis Vlasenkoe35af562009-01-31 14:22:24 +00003557#else /* !FEATURE_CHECK_TAINTED_MODULE */
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003558#define check_tainted_module(x, y) do { } while (0);
Denis Vlasenkoe35af562009-01-31 14:22:24 +00003559#endif
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003560
3561#if ENABLE_FEATURE_INSMOD_KSYMOOPS_SYMBOLS
3562/* add module source, timestamp, kernel version and a symbol for the
3563 * start of some sections. this info is used by ksymoops to do better
3564 * debugging.
3565 */
3566#if !ENABLE_FEATURE_INSMOD_VERSION_CHECKING
3567#define get_module_version(f, str) get_module_version(str)
3568#endif
3569static int
3570get_module_version(struct obj_file *f, char str[STRVERSIONLEN])
3571{
3572#if ENABLE_FEATURE_INSMOD_VERSION_CHECKING
3573 return new_get_module_version(f, str);
Denis Vlasenkoe35af562009-01-31 14:22:24 +00003574#else
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003575 strncpy(str, "???", sizeof(str));
3576 return -1;
Denis Vlasenkoe35af562009-01-31 14:22:24 +00003577#endif
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003578}
3579
3580/* add module source, timestamp, kernel version and a symbol for the
3581 * start of some sections. this info is used by ksymoops to do better
3582 * debugging.
3583 */
3584static void
3585add_ksymoops_symbols(struct obj_file *f, const char *filename,
Denys Vlasenkod5f1b1b2009-06-05 12:06:05 +02003586 const char *m_name)
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003587{
3588 static const char symprefix[] ALIGN1 = "__insmod_";
3589 static const char section_names[][8] = {
3590 ".text",
3591 ".rodata",
3592 ".data",
3593 ".bss",
3594 ".sbss"
3595 };
3596
3597 struct obj_section *sec;
3598 struct obj_symbol *sym;
3599 char *name, *absolute_filename;
3600 char str[STRVERSIONLEN];
3601 unsigned i;
Denis Vlasenkoe35af562009-01-31 14:22:24 +00003602 int lm_name, lfilename, use_ksymtab, version;
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003603 struct stat statbuf;
3604
3605 /* WARNING: was using realpath, but replaced by readlink to stop using
3606 * lots of stack. But here it seems to be able to cause problems? */
3607 absolute_filename = xmalloc_readlink(filename);
3608 if (!absolute_filename)
3609 absolute_filename = xstrdup(filename);
3610
3611 lm_name = strlen(m_name);
3612 lfilename = strlen(absolute_filename);
3613
3614 /* add to ksymtab if it already exists or there is no ksymtab and other symbols
3615 * are not to be exported. otherwise leave ksymtab alone for now, the
3616 * "export all symbols" compatibility code will export these symbols later.
3617 */
3618 use_ksymtab = obj_find_section(f, "__ksymtab") || flag_noexport;
3619
3620 sec = obj_find_section(f, ".this");
3621 if (sec) {
3622 /* tag the module header with the object name, last modified
3623 * timestamp and module version. worst case for module version
3624 * is 0xffffff, decimal 16777215. putting all three fields in
3625 * one symbol is less readable but saves kernel space.
3626 */
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003627 if (stat(absolute_filename, &statbuf) != 0)
3628 statbuf.st_mtime = 0;
3629 version = get_module_version(f, str); /* -1 if not found */
Denis Vlasenkoe35af562009-01-31 14:22:24 +00003630 name = xasprintf("%s%s_O%s_M%0*lX_V%d",
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003631 symprefix, m_name, absolute_filename,
Denis Vlasenko49325962009-01-31 23:33:54 +00003632 (int)(2 * sizeof(statbuf.st_mtime)),
3633 (long)statbuf.st_mtime,
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003634 version);
3635 sym = obj_add_symbol(f, name, -1,
3636 ELF_ST_INFO(STB_GLOBAL, STT_NOTYPE),
3637 sec->idx, sec->header.sh_addr, 0);
3638 if (use_ksymtab)
3639 new_add_ksymtab(f, sym);
3640 }
3641 free(absolute_filename);
3642#ifdef _NOT_SUPPORTED_
3643 /* record where the persistent data is going, same address as previous symbol */
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003644 if (f->persist) {
Denis Vlasenkoe35af562009-01-31 14:22:24 +00003645 name = xasprintf("%s%s_P%s",
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003646 symprefix, m_name, f->persist);
3647 sym = obj_add_symbol(f, name, -1, ELF_ST_INFO(STB_GLOBAL, STT_NOTYPE),
3648 sec->idx, sec->header.sh_addr, 0);
3649 if (use_ksymtab)
3650 new_add_ksymtab(f, sym);
3651 }
Denis Vlasenkoe35af562009-01-31 14:22:24 +00003652#endif
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003653 /* tag the desired sections if size is non-zero */
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003654 for (i = 0; i < ARRAY_SIZE(section_names); ++i) {
3655 sec = obj_find_section(f, section_names[i]);
3656 if (sec && sec->header.sh_size) {
Denis Vlasenkoe35af562009-01-31 14:22:24 +00003657 name = xasprintf("%s%s_S%s_L%ld",
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003658 symprefix, m_name, sec->name,
3659 (long)sec->header.sh_size);
3660 sym = obj_add_symbol(f, name, -1, ELF_ST_INFO(STB_GLOBAL, STT_NOTYPE),
3661 sec->idx, sec->header.sh_addr, 0);
3662 if (use_ksymtab)
3663 new_add_ksymtab(f, sym);
3664 }
3665 }
3666}
3667#endif /* FEATURE_INSMOD_KSYMOOPS_SYMBOLS */
3668
3669#if ENABLE_FEATURE_INSMOD_LOAD_MAP
3670static void print_load_map(struct obj_file *f)
3671{
3672 struct obj_section *sec;
3673#if ENABLE_FEATURE_INSMOD_LOAD_MAP_FULL
3674 struct obj_symbol **all, **p;
Denis Vlasenko49325962009-01-31 23:33:54 +00003675 int i, nsyms;
3676 char *loaded; /* array of booleans */
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003677 struct obj_symbol *sym;
3678#endif
3679 /* Report on the section layout. */
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003680 printf("Sections: Size %-*s Align\n",
3681 (int) (2 * sizeof(void *)), "Address");
3682
3683 for (sec = f->load_order; sec; sec = sec->load_next) {
3684 int a;
3685 unsigned long tmp;
3686
3687 for (a = -1, tmp = sec->header.sh_addralign; tmp; ++a)
3688 tmp >>= 1;
3689 if (a == -1)
3690 a = 0;
3691
3692 printf("%-15s %08lx %0*lx 2**%d\n",
3693 sec->name,
3694 (long)sec->header.sh_size,
3695 (int) (2 * sizeof(void *)),
3696 (long)sec->header.sh_addr,
3697 a);
3698 }
3699#if ENABLE_FEATURE_INSMOD_LOAD_MAP_FULL
3700 /* Quick reference which section indices are loaded. */
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003701 i = f->header.e_shnum;
Denis Vlasenko49325962009-01-31 23:33:54 +00003702 loaded = alloca(i * sizeof(loaded[0]));
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003703 while (--i >= 0)
3704 loaded[i] = ((f->sections[i]->header.sh_flags & SHF_ALLOC) != 0);
3705
3706 /* Collect the symbols we'll be listing. */
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003707 for (nsyms = i = 0; i < HASH_BUCKETS; ++i)
3708 for (sym = f->symtab[i]; sym; sym = sym->next)
3709 if (sym->secidx <= SHN_HIRESERVE
Denis Vlasenko1ad4db12008-11-12 00:09:58 +00003710 && (sym->secidx >= SHN_LORESERVE || loaded[sym->secidx])
3711 ) {
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003712 ++nsyms;
Denis Vlasenko1ad4db12008-11-12 00:09:58 +00003713 }
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003714
Denis Vlasenko49325962009-01-31 23:33:54 +00003715 all = alloca(nsyms * sizeof(all[0]));
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003716
3717 for (i = 0, p = all; i < HASH_BUCKETS; ++i)
3718 for (sym = f->symtab[i]; sym; sym = sym->next)
3719 if (sym->secidx <= SHN_HIRESERVE
Denis Vlasenko1ad4db12008-11-12 00:09:58 +00003720 && (sym->secidx >= SHN_LORESERVE || loaded[sym->secidx])
3721 ) {
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003722 *p++ = sym;
Denis Vlasenko1ad4db12008-11-12 00:09:58 +00003723 }
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003724
3725 /* And list them. */
3726 printf("\nSymbols:\n");
3727 for (p = all; p < all + nsyms; ++p) {
3728 char type = '?';
3729 unsigned long value;
3730
3731 sym = *p;
3732 if (sym->secidx == SHN_ABS) {
3733 type = 'A';
3734 value = sym->value;
3735 } else if (sym->secidx == SHN_UNDEF) {
3736 type = 'U';
3737 value = 0;
3738 } else {
3739 sec = f->sections[sym->secidx];
3740
3741 if (sec->header.sh_type == SHT_NOBITS)
3742 type = 'B';
3743 else if (sec->header.sh_flags & SHF_ALLOC) {
3744 if (sec->header.sh_flags & SHF_EXECINSTR)
3745 type = 'T';
3746 else if (sec->header.sh_flags & SHF_WRITE)
3747 type = 'D';
3748 else
3749 type = 'R';
3750 }
3751 value = sym->value + sec->header.sh_addr;
3752 }
3753
3754 if (ELF_ST_BIND(sym->info) == STB_LOCAL)
Denis Vlasenko49325962009-01-31 23:33:54 +00003755 type |= 0x20; /* tolower. safe for '?' too */
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003756
3757 printf("%0*lx %c %s\n", (int) (2 * sizeof(void *)), value,
3758 type, sym->name);
3759 }
3760#endif
3761}
3762#else /* !FEATURE_INSMOD_LOAD_MAP */
3763static void print_load_map(struct obj_file *f UNUSED_PARAM)
3764{
3765}
3766#endif
3767
Denis Vlasenko36309cf2008-11-22 18:29:01 +00003768int FAST_FUNC bb_init_module_24(const char *m_filename, const char *options)
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003769{
3770 int k_crcs;
3771 unsigned long m_size;
3772 ElfW(Addr) m_addr;
3773 struct obj_file *f;
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003774 int exit_status = EXIT_FAILURE;
Denis Vlasenkof4393042009-04-05 23:25:09 +00003775 char *m_name;
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003776#if ENABLE_FEATURE_INSMOD_VERSION_CHECKING
Denis Vlasenko51056b32009-04-12 14:21:29 +00003777 int m_has_modinfo;
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003778#endif
Denis Vlasenkof4393042009-04-05 23:25:09 +00003779 char *image;
3780 size_t image_size = 64 * 1024 * 1024;
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003781
Denis Vlasenkof4393042009-04-05 23:25:09 +00003782 /* Load module into memory and unzip if compressed */
3783 image = xmalloc_open_zipped_read_close(m_filename, &image_size);
3784 if (!image)
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003785 return EXIT_FAILURE;
3786
3787 m_name = xstrdup(bb_basename(m_filename));
Denis Vlasenkof4393042009-04-05 23:25:09 +00003788 /* "module.o[.gz]" -> "module" */
3789 *strchrnul(m_name, '.') = '\0';
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003790
Denis Vlasenkof4393042009-04-05 23:25:09 +00003791 f = obj_load(image, image_size, LOADBITS);
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003792
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003793#if ENABLE_FEATURE_INSMOD_VERSION_CHECKING
3794 /* Version correspondence? */
Denis Vlasenko51056b32009-04-12 14:21:29 +00003795 m_has_modinfo = (get_modinfo_value(f, "kernel_version") != NULL);
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003796 if (!flag_quiet) {
Denis Vlasenko51056b32009-04-12 14:21:29 +00003797 char m_strversion[STRVERSIONLEN];
3798 struct utsname uts;
3799
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003800 if (m_has_modinfo) {
Denis Vlasenko51056b32009-04-12 14:21:29 +00003801 int m_version = new_get_module_version(f, m_strversion);
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003802 if (m_version == -1) {
Denis Vlasenko1f632292009-04-13 02:25:40 +00003803 bb_error_msg_and_die("can't find the kernel version "
Denis Vlasenko51056b32009-04-12 14:21:29 +00003804 "the module was compiled for");
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003805 }
3806 }
3807
Denis Vlasenko51056b32009-04-12 14:21:29 +00003808 uname(&uts);
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003809 if (strncmp(uts.release, m_strversion, STRVERSIONLEN) != 0) {
3810 bb_error_msg("%skernel-module version mismatch\n"
3811 "\t%s was compiled for kernel version %s\n"
3812 "\twhile this kernel is version %s",
3813 flag_force_load ? "warning: " : "",
3814 m_name, m_strversion, uts.release);
3815 if (!flag_force_load)
3816 goto out;
3817 }
3818 }
Denis Vlasenkoe35af562009-01-31 14:22:24 +00003819#endif
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003820
3821 if (query_module(NULL, 0, NULL, 0, NULL))
Denis Vlasenkof4393042009-04-05 23:25:09 +00003822 bb_error_msg_and_die("old (unsupported) kernel");
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003823 new_get_kernel_symbols();
3824 k_crcs = new_is_kernel_checksummed();
3825
3826#if ENABLE_FEATURE_INSMOD_VERSION_CHECKING
Denis Vlasenko51056b32009-04-12 14:21:29 +00003827 {
3828 int m_crcs = 0;
3829 if (m_has_modinfo)
3830 m_crcs = new_is_module_checksummed(f);
3831 if (m_crcs != k_crcs)
3832 obj_set_symbol_compare(f, ncv_strcmp, ncv_symbol_hash);
3833 }
Denis Vlasenkoe35af562009-01-31 14:22:24 +00003834#endif
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003835
3836 /* Let the module know about the kernel symbols. */
3837 add_kernel_symbols(f);
3838
3839 /* Allocate common symbols, symbol tables, and string tables. */
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003840 new_create_this_module(f, m_name);
3841 obj_check_undefineds(f);
3842 obj_allocate_commons(f);
3843 check_tainted_module(f, m_name);
3844
Denis Vlasenko49325962009-01-31 23:33:54 +00003845 /* Done with the module name, on to the optional var=value arguments */
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003846 new_process_module_arguments(f, options);
3847
3848 arch_create_got(f);
3849 hide_special_symbols(f);
3850
3851#if ENABLE_FEATURE_INSMOD_KSYMOOPS_SYMBOLS
3852 add_ksymoops_symbols(f, m_filename, m_name);
Denis Vlasenkoe35af562009-01-31 14:22:24 +00003853#endif
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003854
3855 new_create_module_ksymtab(f);
3856
3857 /* Find current size of the module */
3858 m_size = obj_load_size(f);
3859
3860 m_addr = create_module(m_name, m_size);
3861 if (m_addr == (ElfW(Addr))(-1)) switch (errno) {
Denis Vlasenko36309cf2008-11-22 18:29:01 +00003862 case EEXIST:
3863 bb_error_msg_and_die("a module named %s already exists", m_name);
3864 case ENOMEM:
3865 bb_error_msg_and_die("can't allocate kernel memory for module; needed %lu bytes",
3866 m_size);
3867 default:
3868 bb_perror_msg_and_die("create_module: %s", m_name);
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003869 }
3870
3871#if !LOADBITS
3872 /*
3873 * the PROGBITS section was not loaded by the obj_load
3874 * now we can load them directly into the kernel memory
3875 */
Denis Vlasenkof4393042009-04-05 23:25:09 +00003876 if (!obj_load_progbits(image, image_size, f, (char*)m_addr)) {
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003877 delete_module(m_name, 0);
3878 goto out;
3879 }
3880#endif
3881
3882 if (!obj_relocate(f, m_addr)) {
3883 delete_module(m_name, 0);
3884 goto out;
3885 }
3886
3887 if (!new_init_module(m_name, f, m_size)) {
3888 delete_module(m_name, 0);
3889 goto out;
3890 }
3891
3892 if (flag_print_load_map)
3893 print_load_map(f);
3894
3895 exit_status = EXIT_SUCCESS;
3896
3897 out:
Denis Vlasenkof4393042009-04-05 23:25:09 +00003898 free(image);
Denis Vlasenkoba1315d2008-09-13 14:59:38 +00003899 free(m_name);
3900
3901 return exit_status;
3902}