fs//binfmt_elf.c: move variables initialization closer to their usage
[linux-block.git] / fs / binfmt_elf.c
CommitLineData
1da177e4
LT
1/*
2 * linux/fs/binfmt_elf.c
3 *
4 * These are the functions used to load ELF format executables as used
5 * on SVr4 machines. Information on the format may be found in the book
6 * "UNIX SYSTEM V RELEASE 4 Programmers Guide: Ansi C and Programming Support
7 * Tools".
8 *
9 * Copyright 1993, 1994: Eric Youngdale (ericy@cais.com).
10 */
11
12#include <linux/module.h>
13#include <linux/kernel.h>
14#include <linux/fs.h>
1da177e4
LT
15#include <linux/mm.h>
16#include <linux/mman.h>
1da177e4
LT
17#include <linux/errno.h>
18#include <linux/signal.h>
19#include <linux/binfmts.h>
20#include <linux/string.h>
21#include <linux/file.h>
1da177e4 22#include <linux/slab.h>
1da177e4
LT
23#include <linux/personality.h>
24#include <linux/elfcore.h>
25#include <linux/init.h>
26#include <linux/highuid.h>
1da177e4
LT
27#include <linux/compiler.h>
28#include <linux/highmem.h>
29#include <linux/pagemap.h>
2aa362c4 30#include <linux/vmalloc.h>
1da177e4 31#include <linux/security.h>
1da177e4 32#include <linux/random.h>
f4e5cc2c 33#include <linux/elf.h>
d1fd836d 34#include <linux/elf-randomize.h>
7e80d0d0 35#include <linux/utsname.h>
088e7af7 36#include <linux/coredump.h>
6fac4829 37#include <linux/sched.h>
f7ccbae4 38#include <linux/sched/coredump.h>
68db0cf1 39#include <linux/sched/task_stack.h>
32ef5517 40#include <linux/sched/cputime.h>
5b825c3a 41#include <linux/cred.h>
5037835c 42#include <linux/dax.h>
7c0f6ba6 43#include <linux/uaccess.h>
1da177e4
LT
44#include <asm/param.h>
45#include <asm/page.h>
46
2aa362c4
DV
47#ifndef user_long_t
48#define user_long_t long
49#endif
49ae4d4b
DV
50#ifndef user_siginfo_t
51#define user_siginfo_t siginfo_t
52#endif
53
4755200b
NP
54/* That's for binfmt_elf_fdpic to deal with */
55#ifndef elf_check_fdpic
56#define elf_check_fdpic(ex) false
57#endif
58
71613c3b 59static int load_elf_binary(struct linux_binprm *bprm);
1da177e4 60
69369a70
JT
61#ifdef CONFIG_USELIB
62static int load_elf_library(struct file *);
63#else
64#define load_elf_library NULL
65#endif
66
1da177e4
LT
67/*
68 * If we don't support core dumping, then supply a NULL so we
69 * don't even try.
70 */
698ba7b5 71#ifdef CONFIG_ELF_CORE
f6151dfe 72static int elf_core_dump(struct coredump_params *cprm);
1da177e4
LT
73#else
74#define elf_core_dump NULL
75#endif
76
77#if ELF_EXEC_PAGESIZE > PAGE_SIZE
f4e5cc2c 78#define ELF_MIN_ALIGN ELF_EXEC_PAGESIZE
1da177e4 79#else
f4e5cc2c 80#define ELF_MIN_ALIGN PAGE_SIZE
1da177e4
LT
81#endif
82
83#ifndef ELF_CORE_EFLAGS
84#define ELF_CORE_EFLAGS 0
85#endif
86
87#define ELF_PAGESTART(_v) ((_v) & ~(unsigned long)(ELF_MIN_ALIGN-1))
88#define ELF_PAGEOFFSET(_v) ((_v) & (ELF_MIN_ALIGN-1))
89#define ELF_PAGEALIGN(_v) (((_v) + ELF_MIN_ALIGN - 1) & ~(ELF_MIN_ALIGN - 1))
90
91static struct linux_binfmt elf_format = {
f670d0ec
MP
92 .module = THIS_MODULE,
93 .load_binary = load_elf_binary,
94 .load_shlib = load_elf_library,
95 .core_dump = elf_core_dump,
96 .min_coredump = ELF_EXEC_PAGESIZE,
1da177e4
LT
97};
98
d4e3cc38 99#define BAD_ADDR(x) ((unsigned long)(x) >= TASK_SIZE)
1da177e4 100
16e72e9b 101static int set_brk(unsigned long start, unsigned long end, int prot)
1da177e4
LT
102{
103 start = ELF_PAGEALIGN(start);
104 end = ELF_PAGEALIGN(end);
105 if (end > start) {
16e72e9b
DV
106 /*
107 * Map the last of the bss segment.
108 * If the header is requesting these pages to be
109 * executable, honour that (ppc32 needs this).
110 */
111 int error = vm_brk_flags(start, end - start,
112 prot & PROT_EXEC ? VM_EXEC : 0);
5d22fc25
LT
113 if (error)
114 return error;
1da177e4
LT
115 }
116 current->mm->start_brk = current->mm->brk = end;
117 return 0;
118}
119
1da177e4
LT
120/* We need to explicitly zero any fractional pages
121 after the data section (i.e. bss). This would
122 contain the junk from the file that should not
f4e5cc2c
JJ
123 be in memory
124 */
1da177e4
LT
125static int padzero(unsigned long elf_bss)
126{
127 unsigned long nbyte;
128
129 nbyte = ELF_PAGEOFFSET(elf_bss);
130 if (nbyte) {
131 nbyte = ELF_MIN_ALIGN - nbyte;
132 if (clear_user((void __user *) elf_bss, nbyte))
133 return -EFAULT;
134 }
135 return 0;
136}
137
09c6dd3c 138/* Let's use some macros to make this stack manipulation a little clearer */
1da177e4
LT
139#ifdef CONFIG_STACK_GROWSUP
140#define STACK_ADD(sp, items) ((elf_addr_t __user *)(sp) + (items))
141#define STACK_ROUND(sp, items) \
142 ((15 + (unsigned long) ((sp) + (items))) &~ 15UL)
f4e5cc2c
JJ
143#define STACK_ALLOC(sp, len) ({ \
144 elf_addr_t __user *old_sp = (elf_addr_t __user *)sp; sp += len; \
145 old_sp; })
1da177e4
LT
146#else
147#define STACK_ADD(sp, items) ((elf_addr_t __user *)(sp) - (items))
148#define STACK_ROUND(sp, items) \
149 (((unsigned long) (sp - items)) &~ 15UL)
150#define STACK_ALLOC(sp, len) ({ sp -= len ; sp; })
151#endif
152
483fad1c
NL
153#ifndef ELF_BASE_PLATFORM
154/*
155 * AT_BASE_PLATFORM indicates the "real" hardware/microarchitecture.
156 * If the arch defines ELF_BASE_PLATFORM (in asm/elf.h), the value
157 * will be copied to the user stack in the same manner as AT_PLATFORM.
158 */
159#define ELF_BASE_PLATFORM NULL
160#endif
161
1da177e4 162static int
f4e5cc2c 163create_elf_tables(struct linux_binprm *bprm, struct elfhdr *exec,
d20894a2 164 unsigned long load_addr, unsigned long interp_load_addr)
1da177e4
LT
165{
166 unsigned long p = bprm->p;
167 int argc = bprm->argc;
168 int envc = bprm->envc;
1da177e4
LT
169 elf_addr_t __user *sp;
170 elf_addr_t __user *u_platform;
483fad1c 171 elf_addr_t __user *u_base_platform;
f06295b4 172 elf_addr_t __user *u_rand_bytes;
1da177e4 173 const char *k_platform = ELF_PLATFORM;
483fad1c 174 const char *k_base_platform = ELF_BASE_PLATFORM;
f06295b4 175 unsigned char k_rand_bytes[16];
1da177e4
LT
176 int items;
177 elf_addr_t *elf_info;
178 int ei_index = 0;
86a264ab 179 const struct cred *cred = current_cred();
b6a2fea3 180 struct vm_area_struct *vma;
1da177e4 181
d68c9d6a
FBH
182 /*
183 * In some cases (e.g. Hyper-Threading), we want to avoid L1
184 * evictions by the processes running on the same package. One
185 * thing we can do is to shuffle the initial stack for them.
186 */
187
188 p = arch_align_stack(p);
189
1da177e4
LT
190 /*
191 * If this architecture has a platform capability string, copy it
192 * to userspace. In some cases (Sparc), this info is impossible
193 * for userspace to get any other way, in others (i386) it is
194 * merely difficult.
195 */
1da177e4
LT
196 u_platform = NULL;
197 if (k_platform) {
198 size_t len = strlen(k_platform) + 1;
199
1da177e4
LT
200 u_platform = (elf_addr_t __user *)STACK_ALLOC(p, len);
201 if (__copy_to_user(u_platform, k_platform, len))
202 return -EFAULT;
203 }
204
483fad1c
NL
205 /*
206 * If this architecture has a "base" platform capability
207 * string, copy it to userspace.
208 */
209 u_base_platform = NULL;
210 if (k_base_platform) {
211 size_t len = strlen(k_base_platform) + 1;
212
213 u_base_platform = (elf_addr_t __user *)STACK_ALLOC(p, len);
214 if (__copy_to_user(u_base_platform, k_base_platform, len))
215 return -EFAULT;
216 }
217
f06295b4
KC
218 /*
219 * Generate 16 random bytes for userspace PRNG seeding.
220 */
221 get_random_bytes(k_rand_bytes, sizeof(k_rand_bytes));
222 u_rand_bytes = (elf_addr_t __user *)
223 STACK_ALLOC(p, sizeof(k_rand_bytes));
224 if (__copy_to_user(u_rand_bytes, k_rand_bytes, sizeof(k_rand_bytes)))
225 return -EFAULT;
226
1da177e4 227 /* Create the ELF interpreter info */
785d5570 228 elf_info = (elf_addr_t *)current->mm->saved_auxv;
4f9a58d7 229 /* update AT_VECTOR_SIZE_BASE if the number of NEW_AUX_ENT() changes */
1da177e4 230#define NEW_AUX_ENT(id, val) \
f4e5cc2c 231 do { \
785d5570
JJ
232 elf_info[ei_index++] = id; \
233 elf_info[ei_index++] = val; \
f4e5cc2c 234 } while (0)
1da177e4
LT
235
236#ifdef ARCH_DLINFO
237 /*
238 * ARCH_DLINFO must come first so PPC can do its special alignment of
239 * AUXV.
4f9a58d7
OH
240 * update AT_VECTOR_SIZE_ARCH if the number of NEW_AUX_ENT() in
241 * ARCH_DLINFO changes
1da177e4
LT
242 */
243 ARCH_DLINFO;
244#endif
245 NEW_AUX_ENT(AT_HWCAP, ELF_HWCAP);
246 NEW_AUX_ENT(AT_PAGESZ, ELF_EXEC_PAGESIZE);
247 NEW_AUX_ENT(AT_CLKTCK, CLOCKS_PER_SEC);
248 NEW_AUX_ENT(AT_PHDR, load_addr + exec->e_phoff);
f4e5cc2c 249 NEW_AUX_ENT(AT_PHENT, sizeof(struct elf_phdr));
1da177e4
LT
250 NEW_AUX_ENT(AT_PHNUM, exec->e_phnum);
251 NEW_AUX_ENT(AT_BASE, interp_load_addr);
252 NEW_AUX_ENT(AT_FLAGS, 0);
253 NEW_AUX_ENT(AT_ENTRY, exec->e_entry);
ebc887b2
EB
254 NEW_AUX_ENT(AT_UID, from_kuid_munged(cred->user_ns, cred->uid));
255 NEW_AUX_ENT(AT_EUID, from_kuid_munged(cred->user_ns, cred->euid));
256 NEW_AUX_ENT(AT_GID, from_kgid_munged(cred->user_ns, cred->gid));
257 NEW_AUX_ENT(AT_EGID, from_kgid_munged(cred->user_ns, cred->egid));
c425e189 258 NEW_AUX_ENT(AT_SECURE, bprm->secureexec);
f06295b4 259 NEW_AUX_ENT(AT_RANDOM, (elf_addr_t)(unsigned long)u_rand_bytes);
2171364d
MN
260#ifdef ELF_HWCAP2
261 NEW_AUX_ENT(AT_HWCAP2, ELF_HWCAP2);
262#endif
65191087 263 NEW_AUX_ENT(AT_EXECFN, bprm->exec);
1da177e4 264 if (k_platform) {
f4e5cc2c 265 NEW_AUX_ENT(AT_PLATFORM,
785d5570 266 (elf_addr_t)(unsigned long)u_platform);
1da177e4 267 }
483fad1c
NL
268 if (k_base_platform) {
269 NEW_AUX_ENT(AT_BASE_PLATFORM,
270 (elf_addr_t)(unsigned long)u_base_platform);
271 }
1da177e4 272 if (bprm->interp_flags & BINPRM_FLAGS_EXECFD) {
785d5570 273 NEW_AUX_ENT(AT_EXECFD, bprm->interp_data);
1da177e4
LT
274 }
275#undef NEW_AUX_ENT
276 /* AT_NULL is zero; clear the rest too */
277 memset(&elf_info[ei_index], 0,
278 sizeof current->mm->saved_auxv - ei_index * sizeof elf_info[0]);
279
280 /* And advance past the AT_NULL entry. */
281 ei_index += 2;
282
283 sp = STACK_ADD(p, ei_index);
284
d20894a2 285 items = (argc + 1) + (envc + 1) + 1;
1da177e4
LT
286 bprm->p = STACK_ROUND(sp, items);
287
288 /* Point sp at the lowest address on the stack */
289#ifdef CONFIG_STACK_GROWSUP
290 sp = (elf_addr_t __user *)bprm->p - items - ei_index;
f4e5cc2c 291 bprm->exec = (unsigned long)sp; /* XXX: PARISC HACK */
1da177e4
LT
292#else
293 sp = (elf_addr_t __user *)bprm->p;
294#endif
295
b6a2fea3
OW
296
297 /*
298 * Grow the stack manually; some architectures have a limit on how
299 * far ahead a user-space access may be in order to grow the stack.
300 */
301 vma = find_extend_vma(current->mm, bprm->p);
302 if (!vma)
303 return -EFAULT;
304
1da177e4
LT
305 /* Now, let's put argc (and argv, envp if appropriate) on the stack */
306 if (__put_user(argc, sp++))
307 return -EFAULT;
1da177e4 308
67c6777a 309 /* Populate list of argv pointers back to argv strings. */
a84a5059 310 p = current->mm->arg_end = current->mm->arg_start;
1da177e4
LT
311 while (argc-- > 0) {
312 size_t len;
67c6777a 313 if (__put_user((elf_addr_t)p, sp++))
841d5fb7 314 return -EFAULT;
b6a2fea3
OW
315 len = strnlen_user((void __user *)p, MAX_ARG_STRLEN);
316 if (!len || len > MAX_ARG_STRLEN)
23c4971e 317 return -EINVAL;
1da177e4
LT
318 p += len;
319 }
67c6777a 320 if (__put_user(0, sp++))
1da177e4 321 return -EFAULT;
67c6777a
KC
322 current->mm->arg_end = p;
323
324 /* Populate list of envp pointers back to envp strings. */
325 current->mm->env_end = current->mm->env_start = p;
1da177e4
LT
326 while (envc-- > 0) {
327 size_t len;
67c6777a 328 if (__put_user((elf_addr_t)p, sp++))
841d5fb7 329 return -EFAULT;
b6a2fea3
OW
330 len = strnlen_user((void __user *)p, MAX_ARG_STRLEN);
331 if (!len || len > MAX_ARG_STRLEN)
23c4971e 332 return -EINVAL;
1da177e4
LT
333 p += len;
334 }
67c6777a 335 if (__put_user(0, sp++))
1da177e4
LT
336 return -EFAULT;
337 current->mm->env_end = p;
338
339 /* Put the elf_info on the stack in the right place. */
1da177e4
LT
340 if (copy_to_user(sp, elf_info, ei_index * sizeof(elf_addr_t)))
341 return -EFAULT;
342 return 0;
343}
344
c07380be
JH
345#ifndef elf_map
346
1da177e4 347static unsigned long elf_map(struct file *filep, unsigned long addr,
49ac9819 348 const struct elf_phdr *eppnt, int prot, int type,
cc503c1b 349 unsigned long total_size)
1da177e4
LT
350{
351 unsigned long map_addr;
cc503c1b
JK
352 unsigned long size = eppnt->p_filesz + ELF_PAGEOFFSET(eppnt->p_vaddr);
353 unsigned long off = eppnt->p_offset - ELF_PAGEOFFSET(eppnt->p_vaddr);
354 addr = ELF_PAGESTART(addr);
355 size = ELF_PAGEALIGN(size);
1da177e4 356
dda6ebde
DG
357 /* mmap() will return -EINVAL if given a zero size, but a
358 * segment with zero filesize is perfectly valid */
cc503c1b
JK
359 if (!size)
360 return addr;
361
cc503c1b
JK
362 /*
363 * total_size is the size of the ELF (interpreter) image.
364 * The _first_ mmap needs to know the full size, otherwise
365 * randomization might put this image into an overlapping
366 * position with the ELF binary image. (since size < total_size)
367 * So we first map the 'big' image - and unmap the remainder at
368 * the end. (which unmap is needed for ELF images with holes.)
369 */
370 if (total_size) {
371 total_size = ELF_PAGEALIGN(total_size);
5a5e4c2e 372 map_addr = vm_mmap(filep, addr, total_size, prot, type, off);
cc503c1b 373 if (!BAD_ADDR(map_addr))
5a5e4c2e 374 vm_munmap(map_addr+size, total_size-size);
cc503c1b 375 } else
5a5e4c2e 376 map_addr = vm_mmap(filep, addr, size, prot, type, off);
cc503c1b 377
d23a61ee
TH
378 if ((type & MAP_FIXED_NOREPLACE) &&
379 PTR_ERR((void *)map_addr) == -EEXIST)
380 pr_info("%d (%s): Uhuuh, elf segment at %px requested but the memory is mapped already\n",
381 task_pid_nr(current), current->comm, (void *)addr);
4ed28639 382
1da177e4
LT
383 return(map_addr);
384}
385
c07380be
JH
386#endif /* !elf_map */
387
49ac9819 388static unsigned long total_mapping_size(const struct elf_phdr *cmds, int nr)
cc503c1b
JK
389{
390 int i, first_idx = -1, last_idx = -1;
391
392 for (i = 0; i < nr; i++) {
393 if (cmds[i].p_type == PT_LOAD) {
394 last_idx = i;
395 if (first_idx == -1)
396 first_idx = i;
397 }
398 }
399 if (first_idx == -1)
400 return 0;
401
402 return cmds[last_idx].p_vaddr + cmds[last_idx].p_memsz -
403 ELF_PAGESTART(cmds[first_idx].p_vaddr);
404}
405
6a8d3894
PB
406/**
407 * load_elf_phdrs() - load ELF program headers
408 * @elf_ex: ELF header of the binary whose program headers should be loaded
409 * @elf_file: the opened ELF binary file
410 *
411 * Loads ELF program headers from the binary file elf_file, which has the ELF
412 * header pointed to by elf_ex, into a newly allocated array. The caller is
413 * responsible for freeing the allocated data. Returns an ERR_PTR upon failure.
414 */
49ac9819 415static struct elf_phdr *load_elf_phdrs(const struct elfhdr *elf_ex,
6a8d3894
PB
416 struct file *elf_file)
417{
418 struct elf_phdr *elf_phdata = NULL;
faf1c315 419 int retval, err = -1;
bdd1d2d3 420 loff_t pos = elf_ex->e_phoff;
faf1c315 421 unsigned int size;
6a8d3894
PB
422
423 /*
424 * If the size of this structure has changed, then punt, since
425 * we will be doing the wrong thing.
426 */
427 if (elf_ex->e_phentsize != sizeof(struct elf_phdr))
428 goto out;
429
430 /* Sanity check the number of program headers... */
6a8d3894
PB
431 /* ...and their total size. */
432 size = sizeof(struct elf_phdr) * elf_ex->e_phnum;
faf1c315 433 if (size == 0 || size > 65536 || size > ELF_MIN_ALIGN)
6a8d3894
PB
434 goto out;
435
436 elf_phdata = kmalloc(size, GFP_KERNEL);
437 if (!elf_phdata)
438 goto out;
439
440 /* Read in the program headers */
bdd1d2d3 441 retval = kernel_read(elf_file, elf_phdata, size, &pos);
6a8d3894
PB
442 if (retval != size) {
443 err = (retval < 0) ? retval : -EIO;
444 goto out;
445 }
446
447 /* Success! */
448 err = 0;
449out:
450 if (err) {
451 kfree(elf_phdata);
452 elf_phdata = NULL;
453 }
454 return elf_phdata;
455}
cc503c1b 456
774c105e
PB
457#ifndef CONFIG_ARCH_BINFMT_ELF_STATE
458
459/**
460 * struct arch_elf_state - arch-specific ELF loading state
461 *
462 * This structure is used to preserve architecture specific data during
463 * the loading of an ELF file, throughout the checking of architecture
464 * specific ELF headers & through to the point where the ELF load is
465 * known to be proceeding (ie. SET_PERSONALITY).
466 *
467 * This implementation is a dummy for architectures which require no
468 * specific state.
469 */
470struct arch_elf_state {
471};
472
473#define INIT_ARCH_ELF_STATE {}
474
475/**
476 * arch_elf_pt_proc() - check a PT_LOPROC..PT_HIPROC ELF program header
477 * @ehdr: The main ELF header
478 * @phdr: The program header to check
479 * @elf: The open ELF file
480 * @is_interp: True if the phdr is from the interpreter of the ELF being
481 * loaded, else false.
482 * @state: Architecture-specific state preserved throughout the process
483 * of loading the ELF.
484 *
485 * Inspects the program header phdr to validate its correctness and/or
486 * suitability for the system. Called once per ELF program header in the
487 * range PT_LOPROC to PT_HIPROC, for both the ELF being loaded and its
488 * interpreter.
489 *
490 * Return: Zero to proceed with the ELF load, non-zero to fail the ELF load
491 * with that return code.
492 */
493static inline int arch_elf_pt_proc(struct elfhdr *ehdr,
494 struct elf_phdr *phdr,
495 struct file *elf, bool is_interp,
496 struct arch_elf_state *state)
497{
498 /* Dummy implementation, always proceed */
499 return 0;
500}
501
502/**
54d15714 503 * arch_check_elf() - check an ELF executable
774c105e
PB
504 * @ehdr: The main ELF header
505 * @has_interp: True if the ELF has an interpreter, else false.
eb4bc076 506 * @interp_ehdr: The interpreter's ELF header
774c105e
PB
507 * @state: Architecture-specific state preserved throughout the process
508 * of loading the ELF.
509 *
510 * Provides a final opportunity for architecture code to reject the loading
511 * of the ELF & cause an exec syscall to return an error. This is called after
512 * all program headers to be checked by arch_elf_pt_proc have been.
513 *
514 * Return: Zero to proceed with the ELF load, non-zero to fail the ELF load
515 * with that return code.
516 */
517static inline int arch_check_elf(struct elfhdr *ehdr, bool has_interp,
eb4bc076 518 struct elfhdr *interp_ehdr,
774c105e
PB
519 struct arch_elf_state *state)
520{
521 /* Dummy implementation, always proceed */
522 return 0;
523}
524
525#endif /* !CONFIG_ARCH_BINFMT_ELF_STATE */
cc503c1b 526
1da177e4
LT
527/* This is much more generalized than the library routine read function,
528 so we keep this separate. Technically the library read function
529 is only provided so that we can read a.out libraries that have
530 an ELF header */
531
f4e5cc2c 532static unsigned long load_elf_interp(struct elfhdr *interp_elf_ex,
cc503c1b 533 struct file *interpreter, unsigned long *interp_map_addr,
a9d9ef13 534 unsigned long no_base, struct elf_phdr *interp_elf_phdata)
1da177e4 535{
1da177e4
LT
536 struct elf_phdr *eppnt;
537 unsigned long load_addr = 0;
538 int load_addr_set = 0;
539 unsigned long last_bss = 0, elf_bss = 0;
16e72e9b 540 int bss_prot = 0;
1da177e4 541 unsigned long error = ~0UL;
cc503c1b 542 unsigned long total_size;
6a8d3894 543 int i;
1da177e4
LT
544
545 /* First of all, some simple consistency checks */
546 if (interp_elf_ex->e_type != ET_EXEC &&
547 interp_elf_ex->e_type != ET_DYN)
548 goto out;
4755200b
NP
549 if (!elf_check_arch(interp_elf_ex) ||
550 elf_check_fdpic(interp_elf_ex))
1da177e4 551 goto out;
72c2d531 552 if (!interpreter->f_op->mmap)
1da177e4
LT
553 goto out;
554
a9d9ef13
PB
555 total_size = total_mapping_size(interp_elf_phdata,
556 interp_elf_ex->e_phnum);
cc503c1b
JK
557 if (!total_size) {
558 error = -EINVAL;
a9d9ef13 559 goto out;
cc503c1b
JK
560 }
561
a9d9ef13 562 eppnt = interp_elf_phdata;
f4e5cc2c
JJ
563 for (i = 0; i < interp_elf_ex->e_phnum; i++, eppnt++) {
564 if (eppnt->p_type == PT_LOAD) {
565 int elf_type = MAP_PRIVATE | MAP_DENYWRITE;
566 int elf_prot = 0;
567 unsigned long vaddr = 0;
568 unsigned long k, map_addr;
569
570 if (eppnt->p_flags & PF_R)
571 elf_prot = PROT_READ;
572 if (eppnt->p_flags & PF_W)
573 elf_prot |= PROT_WRITE;
574 if (eppnt->p_flags & PF_X)
575 elf_prot |= PROT_EXEC;
576 vaddr = eppnt->p_vaddr;
577 if (interp_elf_ex->e_type == ET_EXEC || load_addr_set)
4ed28639 578 elf_type |= MAP_FIXED_NOREPLACE;
cc503c1b
JK
579 else if (no_base && interp_elf_ex->e_type == ET_DYN)
580 load_addr = -vaddr;
f4e5cc2c
JJ
581
582 map_addr = elf_map(interpreter, load_addr + vaddr,
bb1ad820 583 eppnt, elf_prot, elf_type, total_size);
cc503c1b
JK
584 total_size = 0;
585 if (!*interp_map_addr)
586 *interp_map_addr = map_addr;
f4e5cc2c
JJ
587 error = map_addr;
588 if (BAD_ADDR(map_addr))
a9d9ef13 589 goto out;
f4e5cc2c
JJ
590
591 if (!load_addr_set &&
592 interp_elf_ex->e_type == ET_DYN) {
593 load_addr = map_addr - ELF_PAGESTART(vaddr);
594 load_addr_set = 1;
595 }
596
597 /*
598 * Check to see if the section's size will overflow the
599 * allowed task size. Note that p_filesz must always be
600 * <= p_memsize so it's only necessary to check p_memsz.
601 */
602 k = load_addr + eppnt->p_vaddr;
ce51059b 603 if (BAD_ADDR(k) ||
f4e5cc2c
JJ
604 eppnt->p_filesz > eppnt->p_memsz ||
605 eppnt->p_memsz > TASK_SIZE ||
606 TASK_SIZE - eppnt->p_memsz < k) {
607 error = -ENOMEM;
a9d9ef13 608 goto out;
f4e5cc2c
JJ
609 }
610
611 /*
612 * Find the end of the file mapping for this phdr, and
613 * keep track of the largest address we see for this.
614 */
615 k = load_addr + eppnt->p_vaddr + eppnt->p_filesz;
616 if (k > elf_bss)
617 elf_bss = k;
618
619 /*
620 * Do the same thing for the memory mapping - between
621 * elf_bss and last_bss is the bss section.
622 */
0036d1f7 623 k = load_addr + eppnt->p_vaddr + eppnt->p_memsz;
16e72e9b 624 if (k > last_bss) {
f4e5cc2c 625 last_bss = k;
16e72e9b
DV
626 bss_prot = elf_prot;
627 }
f4e5cc2c 628 }
1da177e4
LT
629 }
630
0036d1f7
KC
631 /*
632 * Now fill out the bss section: first pad the last page from
633 * the file up to the page boundary, and zero it from elf_bss
634 * up to the end of the page.
635 */
636 if (padzero(elf_bss)) {
637 error = -EFAULT;
638 goto out;
639 }
640 /*
641 * Next, align both the file and mem bss up to the page size,
642 * since this is where elf_bss was just zeroed up to, and where
16e72e9b 643 * last_bss will end after the vm_brk_flags() below.
0036d1f7
KC
644 */
645 elf_bss = ELF_PAGEALIGN(elf_bss);
646 last_bss = ELF_PAGEALIGN(last_bss);
647 /* Finally, if there is still more bss to allocate, do it. */
752015d1 648 if (last_bss > elf_bss) {
16e72e9b
DV
649 error = vm_brk_flags(elf_bss, last_bss - elf_bss,
650 bss_prot & PROT_EXEC ? VM_EXEC : 0);
5d22fc25 651 if (error)
a9d9ef13 652 goto out;
1da177e4
LT
653 }
654
cc503c1b 655 error = load_addr;
1da177e4
LT
656out:
657 return error;
658}
659
1da177e4
LT
660/*
661 * These are the functions used to load ELF style executables and shared
662 * libraries. There is no binary dependent code anywhere else.
663 */
664
913bd906 665#ifndef STACK_RND_MASK
d1cabd63 666#define STACK_RND_MASK (0x7ff >> (PAGE_SHIFT - 12)) /* 8MB of VA */
913bd906 667#endif
1da177e4
LT
668
669static unsigned long randomize_stack_top(unsigned long stack_top)
670{
4e7c22d4 671 unsigned long random_variable = 0;
1da177e4 672
01578e36 673 if (current->flags & PF_RANDOMIZE) {
5ef11c35 674 random_variable = get_random_long();
4e7c22d4 675 random_variable &= STACK_RND_MASK;
913bd906
AK
676 random_variable <<= PAGE_SHIFT;
677 }
1da177e4 678#ifdef CONFIG_STACK_GROWSUP
913bd906 679 return PAGE_ALIGN(stack_top) + random_variable;
1da177e4 680#else
913bd906 681 return PAGE_ALIGN(stack_top) - random_variable;
1da177e4
LT
682#endif
683}
684
71613c3b 685static int load_elf_binary(struct linux_binprm *bprm)
1da177e4
LT
686{
687 struct file *interpreter = NULL; /* to shut gcc up */
688 unsigned long load_addr = 0, load_bias = 0;
689 int load_addr_set = 0;
1da177e4 690 unsigned long error;
a9d9ef13 691 struct elf_phdr *elf_ppnt, *elf_phdata, *interp_elf_phdata = NULL;
1da177e4 692 unsigned long elf_bss, elf_brk;
16e72e9b 693 int bss_prot = 0;
1da177e4 694 int retval, i;
cc503c1b
JK
695 unsigned long elf_entry;
696 unsigned long interp_load_addr = 0;
1da177e4 697 unsigned long start_code, end_code, start_data, end_data;
1a530a6f 698 unsigned long reloc_func_desc __maybe_unused = 0;
8de61e69 699 int executable_stack = EXSTACK_DEFAULT;
71613c3b 700 struct pt_regs *regs = current_pt_regs();
1da177e4
LT
701 struct {
702 struct elfhdr elf_ex;
703 struct elfhdr interp_elf_ex;
1da177e4 704 } *loc;
774c105e 705 struct arch_elf_state arch_state = INIT_ARCH_ELF_STATE;
1da177e4
LT
706
707 loc = kmalloc(sizeof(*loc), GFP_KERNEL);
708 if (!loc) {
709 retval = -ENOMEM;
710 goto out_ret;
711 }
712
713 /* Get the exec-header */
f4e5cc2c 714 loc->elf_ex = *((struct elfhdr *)bprm->buf);
1da177e4
LT
715
716 retval = -ENOEXEC;
717 /* First of all, some simple consistency checks */
718 if (memcmp(loc->elf_ex.e_ident, ELFMAG, SELFMAG) != 0)
719 goto out;
720
721 if (loc->elf_ex.e_type != ET_EXEC && loc->elf_ex.e_type != ET_DYN)
722 goto out;
723 if (!elf_check_arch(&loc->elf_ex))
724 goto out;
4755200b
NP
725 if (elf_check_fdpic(&loc->elf_ex))
726 goto out;
72c2d531 727 if (!bprm->file->f_op->mmap)
1da177e4
LT
728 goto out;
729
6a8d3894 730 elf_phdata = load_elf_phdrs(&loc->elf_ex, bprm->file);
1da177e4
LT
731 if (!elf_phdata)
732 goto out;
733
1da177e4 734 elf_ppnt = elf_phdata;
be0deb58
AD
735 for (i = 0; i < loc->elf_ex.e_phnum; i++, elf_ppnt++) {
736 char *elf_interpreter;
737 loff_t pos;
1da177e4 738
be0deb58
AD
739 if (elf_ppnt->p_type != PT_INTERP)
740 continue;
1fb84496 741
be0deb58
AD
742 /*
743 * This is the program interpreter used for shared libraries -
744 * for now assume that this is an a.out format binary.
745 */
746 retval = -ENOEXEC;
747 if (elf_ppnt->p_filesz > PATH_MAX || elf_ppnt->p_filesz < 2)
748 goto out_free_ph;
1da177e4 749
be0deb58
AD
750 retval = -ENOMEM;
751 elf_interpreter = kmalloc(elf_ppnt->p_filesz, GFP_KERNEL);
752 if (!elf_interpreter)
753 goto out_free_ph;
cc338010 754
be0deb58
AD
755 pos = elf_ppnt->p_offset;
756 retval = kernel_read(bprm->file, elf_interpreter,
757 elf_ppnt->p_filesz, &pos);
758 if (retval != elf_ppnt->p_filesz) {
759 if (retval >= 0)
760 retval = -EIO;
761 goto out_free_interp;
762 }
763 /* make sure path is NULL terminated */
764 retval = -ENOEXEC;
765 if (elf_interpreter[elf_ppnt->p_filesz - 1] != '\0')
766 goto out_free_interp;
767
768 interpreter = open_exec(elf_interpreter);
769 kfree(elf_interpreter);
770 retval = PTR_ERR(interpreter);
771 if (IS_ERR(interpreter))
cc338010 772 goto out_free_ph;
be0deb58
AD
773
774 /*
775 * If the binary is not readable then enforce mm->dumpable = 0
776 * regardless of the interpreter's permissions.
777 */
778 would_dump(bprm, interpreter);
779
780 /* Get the exec headers */
781 pos = 0;
782 retval = kernel_read(interpreter, &loc->interp_elf_ex,
783 sizeof(loc->interp_elf_ex), &pos);
784 if (retval != sizeof(loc->interp_elf_ex)) {
785 if (retval >= 0)
786 retval = -EIO;
787 goto out_free_dentry;
1da177e4 788 }
be0deb58
AD
789
790 break;
791
792out_free_interp:
793 kfree(elf_interpreter);
794 goto out_free_ph;
1da177e4
LT
795 }
796
797 elf_ppnt = elf_phdata;
798 for (i = 0; i < loc->elf_ex.e_phnum; i++, elf_ppnt++)
774c105e
PB
799 switch (elf_ppnt->p_type) {
800 case PT_GNU_STACK:
1da177e4
LT
801 if (elf_ppnt->p_flags & PF_X)
802 executable_stack = EXSTACK_ENABLE_X;
803 else
804 executable_stack = EXSTACK_DISABLE_X;
805 break;
774c105e
PB
806
807 case PT_LOPROC ... PT_HIPROC:
808 retval = arch_elf_pt_proc(&loc->elf_ex, elf_ppnt,
809 bprm->file, false,
810 &arch_state);
811 if (retval)
812 goto out_free_dentry;
813 break;
1da177e4 814 }
1da177e4
LT
815
816 /* Some simple consistency checks for the interpreter */
cc338010 817 if (interpreter) {
1da177e4 818 retval = -ELIBBAD;
d20894a2
AK
819 /* Not an ELF interpreter */
820 if (memcmp(loc->interp_elf_ex.e_ident, ELFMAG, SELFMAG) != 0)
1da177e4 821 goto out_free_dentry;
1da177e4 822 /* Verify the interpreter has a valid arch */
4755200b
NP
823 if (!elf_check_arch(&loc->interp_elf_ex) ||
824 elf_check_fdpic(&loc->interp_elf_ex))
1da177e4 825 goto out_free_dentry;
a9d9ef13
PB
826
827 /* Load the interpreter program headers */
828 interp_elf_phdata = load_elf_phdrs(&loc->interp_elf_ex,
829 interpreter);
830 if (!interp_elf_phdata)
831 goto out_free_dentry;
774c105e
PB
832
833 /* Pass PT_LOPROC..PT_HIPROC headers to arch code */
834 elf_ppnt = interp_elf_phdata;
835 for (i = 0; i < loc->interp_elf_ex.e_phnum; i++, elf_ppnt++)
836 switch (elf_ppnt->p_type) {
837 case PT_LOPROC ... PT_HIPROC:
838 retval = arch_elf_pt_proc(&loc->interp_elf_ex,
839 elf_ppnt, interpreter,
840 true, &arch_state);
841 if (retval)
842 goto out_free_dentry;
843 break;
844 }
1da177e4
LT
845 }
846
774c105e
PB
847 /*
848 * Allow arch code to reject the ELF at this point, whilst it's
849 * still possible to return an error to the code that invoked
850 * the exec syscall.
851 */
eb4bc076
MR
852 retval = arch_check_elf(&loc->elf_ex,
853 !!interpreter, &loc->interp_elf_ex,
854 &arch_state);
774c105e
PB
855 if (retval)
856 goto out_free_dentry;
857
1da177e4
LT
858 /* Flush all traces of the currently running executable */
859 retval = flush_old_exec(bprm);
860 if (retval)
861 goto out_free_dentry;
862
1da177e4
LT
863 /* Do this immediately, since STACK_TOP as used in setup_arg_pages
864 may depend on the personality. */
774c105e 865 SET_PERSONALITY2(loc->elf_ex, &arch_state);
1da177e4
LT
866 if (elf_read_implies_exec(loc->elf_ex, executable_stack))
867 current->personality |= READ_IMPLIES_EXEC;
868
f4e5cc2c 869 if (!(current->personality & ADDR_NO_RANDOMIZE) && randomize_va_space)
1da177e4 870 current->flags |= PF_RANDOMIZE;
221af7f8
LT
871
872 setup_new_exec(bprm);
9f834ec1 873 install_exec_creds(bprm);
1da177e4
LT
874
875 /* Do this so that we can load the interpreter, if need be. We will
876 change some of these later */
1da177e4
LT
877 retval = setup_arg_pages(bprm, randomize_stack_top(STACK_TOP),
878 executable_stack);
19d860a1 879 if (retval < 0)
1da177e4 880 goto out_free_dentry;
1da177e4 881
85264316
AD
882 elf_bss = 0;
883 elf_brk = 0;
884
885 start_code = ~0UL;
886 end_code = 0;
887 start_data = 0;
888 end_data = 0;
889
af901ca1 890 /* Now we do a little grungy work by mmapping the ELF image into
cc503c1b 891 the correct location in memory. */
f4e5cc2c
JJ
892 for(i = 0, elf_ppnt = elf_phdata;
893 i < loc->elf_ex.e_phnum; i++, elf_ppnt++) {
ad55eac7 894 int elf_prot = 0, elf_flags, elf_fixed = MAP_FIXED_NOREPLACE;
1da177e4 895 unsigned long k, vaddr;
a87938b2 896 unsigned long total_size = 0;
1da177e4
LT
897
898 if (elf_ppnt->p_type != PT_LOAD)
899 continue;
900
901 if (unlikely (elf_brk > elf_bss)) {
902 unsigned long nbyte;
903
904 /* There was a PT_LOAD segment with p_memsz > p_filesz
905 before this one. Map anonymous pages, if needed,
906 and clear the area. */
f670d0ec 907 retval = set_brk(elf_bss + load_bias,
16e72e9b
DV
908 elf_brk + load_bias,
909 bss_prot);
19d860a1 910 if (retval)
1da177e4 911 goto out_free_dentry;
1da177e4
LT
912 nbyte = ELF_PAGEOFFSET(elf_bss);
913 if (nbyte) {
914 nbyte = ELF_MIN_ALIGN - nbyte;
915 if (nbyte > elf_brk - elf_bss)
916 nbyte = elf_brk - elf_bss;
917 if (clear_user((void __user *)elf_bss +
918 load_bias, nbyte)) {
919 /*
920 * This bss-zeroing can fail if the ELF
f4e5cc2c 921 * file specifies odd protections. So
1da177e4
LT
922 * we don't check the return value
923 */
924 }
925 }
ad55eac7
MH
926
927 /*
928 * Some binaries have overlapping elf segments and then
929 * we have to forcefully map over an existing mapping
930 * e.g. over this newly established brk mapping.
931 */
932 elf_fixed = MAP_FIXED;
1da177e4
LT
933 }
934
f4e5cc2c
JJ
935 if (elf_ppnt->p_flags & PF_R)
936 elf_prot |= PROT_READ;
937 if (elf_ppnt->p_flags & PF_W)
938 elf_prot |= PROT_WRITE;
939 if (elf_ppnt->p_flags & PF_X)
940 elf_prot |= PROT_EXEC;
1da177e4 941
f4e5cc2c 942 elf_flags = MAP_PRIVATE | MAP_DENYWRITE | MAP_EXECUTABLE;
1da177e4
LT
943
944 vaddr = elf_ppnt->p_vaddr;
eab09532
KC
945 /*
946 * If we are loading ET_EXEC or we have already performed
947 * the ET_DYN load_addr calculations, proceed normally.
948 */
1da177e4 949 if (loc->elf_ex.e_type == ET_EXEC || load_addr_set) {
ad55eac7 950 elf_flags |= elf_fixed;
1da177e4 951 } else if (loc->elf_ex.e_type == ET_DYN) {
eab09532
KC
952 /*
953 * This logic is run once for the first LOAD Program
954 * Header for ET_DYN binaries to calculate the
955 * randomization (load_bias) for all the LOAD
956 * Program Headers, and to calculate the entire
957 * size of the ELF mapping (total_size). (Note that
958 * load_addr_set is set to true later once the
959 * initial mapping is performed.)
960 *
961 * There are effectively two types of ET_DYN
962 * binaries: programs (i.e. PIE: ET_DYN with INTERP)
963 * and loaders (ET_DYN without INTERP, since they
964 * _are_ the ELF interpreter). The loaders must
965 * be loaded away from programs since the program
966 * may otherwise collide with the loader (especially
967 * for ET_EXEC which does not have a randomized
968 * position). For example to handle invocations of
969 * "./ld.so someprog" to test out a new version of
970 * the loader, the subsequent program that the
971 * loader loads must avoid the loader itself, so
972 * they cannot share the same load range. Sufficient
973 * room for the brk must be allocated with the
974 * loader as well, since brk must be available with
975 * the loader.
976 *
977 * Therefore, programs are loaded offset from
978 * ELF_ET_DYN_BASE and loaders are loaded into the
979 * independently randomized mmap region (0 load_bias
980 * without MAP_FIXED).
981 */
cc338010 982 if (interpreter) {
eab09532
KC
983 load_bias = ELF_ET_DYN_BASE;
984 if (current->flags & PF_RANDOMIZE)
985 load_bias += arch_mmap_rnd();
ad55eac7 986 elf_flags |= elf_fixed;
eab09532
KC
987 } else
988 load_bias = 0;
989
990 /*
991 * Since load_bias is used for all subsequent loading
992 * calculations, we must lower it by the first vaddr
993 * so that the remaining calculations based on the
994 * ELF vaddrs will be correctly offset. The result
995 * is then page aligned.
996 */
997 load_bias = ELF_PAGESTART(load_bias - vaddr);
998
a87938b2
MD
999 total_size = total_mapping_size(elf_phdata,
1000 loc->elf_ex.e_phnum);
1001 if (!total_size) {
2b1d3ae9 1002 retval = -EINVAL;
a87938b2
MD
1003 goto out_free_dentry;
1004 }
1da177e4
LT
1005 }
1006
f4e5cc2c 1007 error = elf_map(bprm->file, load_bias + vaddr, elf_ppnt,
a87938b2 1008 elf_prot, elf_flags, total_size);
1da177e4 1009 if (BAD_ADDR(error)) {
b140f251
AK
1010 retval = IS_ERR((void *)error) ?
1011 PTR_ERR((void*)error) : -EINVAL;
1da177e4
LT
1012 goto out_free_dentry;
1013 }
1014
1015 if (!load_addr_set) {
1016 load_addr_set = 1;
1017 load_addr = (elf_ppnt->p_vaddr - elf_ppnt->p_offset);
1018 if (loc->elf_ex.e_type == ET_DYN) {
1019 load_bias += error -
1020 ELF_PAGESTART(load_bias + vaddr);
1021 load_addr += load_bias;
1022 reloc_func_desc = load_bias;
1023 }
1024 }
1025 k = elf_ppnt->p_vaddr;
f4e5cc2c
JJ
1026 if (k < start_code)
1027 start_code = k;
1028 if (start_data < k)
1029 start_data = k;
1da177e4
LT
1030
1031 /*
1032 * Check to see if the section's size will overflow the
1033 * allowed task size. Note that p_filesz must always be
1034 * <= p_memsz so it is only necessary to check p_memsz.
1035 */
ce51059b 1036 if (BAD_ADDR(k) || elf_ppnt->p_filesz > elf_ppnt->p_memsz ||
1da177e4
LT
1037 elf_ppnt->p_memsz > TASK_SIZE ||
1038 TASK_SIZE - elf_ppnt->p_memsz < k) {
f4e5cc2c 1039 /* set_brk can never work. Avoid overflows. */
b140f251 1040 retval = -EINVAL;
1da177e4
LT
1041 goto out_free_dentry;
1042 }
1043
1044 k = elf_ppnt->p_vaddr + elf_ppnt->p_filesz;
1045
1046 if (k > elf_bss)
1047 elf_bss = k;
1048 if ((elf_ppnt->p_flags & PF_X) && end_code < k)
1049 end_code = k;
1050 if (end_data < k)
1051 end_data = k;
1052 k = elf_ppnt->p_vaddr + elf_ppnt->p_memsz;
16e72e9b
DV
1053 if (k > elf_brk) {
1054 bss_prot = elf_prot;
1da177e4 1055 elf_brk = k;
16e72e9b 1056 }
1da177e4
LT
1057 }
1058
1059 loc->elf_ex.e_entry += load_bias;
1060 elf_bss += load_bias;
1061 elf_brk += load_bias;
1062 start_code += load_bias;
1063 end_code += load_bias;
1064 start_data += load_bias;
1065 end_data += load_bias;
1066
1067 /* Calling set_brk effectively mmaps the pages that we need
1068 * for the bss and break sections. We must do this before
1069 * mapping in the interpreter, to make sure it doesn't wind
1070 * up getting placed where the bss needs to go.
1071 */
16e72e9b 1072 retval = set_brk(elf_bss, elf_brk, bss_prot);
19d860a1 1073 if (retval)
1da177e4 1074 goto out_free_dentry;
6de50517 1075 if (likely(elf_bss != elf_brk) && unlikely(padzero(elf_bss))) {
1da177e4
LT
1076 retval = -EFAULT; /* Nobody gets to see this, but.. */
1077 goto out_free_dentry;
1078 }
1079
cc338010 1080 if (interpreter) {
6eec482f 1081 unsigned long interp_map_addr = 0;
d20894a2
AK
1082
1083 elf_entry = load_elf_interp(&loc->interp_elf_ex,
1084 interpreter,
1085 &interp_map_addr,
a9d9ef13 1086 load_bias, interp_elf_phdata);
d20894a2
AK
1087 if (!IS_ERR((void *)elf_entry)) {
1088 /*
1089 * load_elf_interp() returns relocation
1090 * adjustment
1091 */
1092 interp_load_addr = elf_entry;
1093 elf_entry += loc->interp_elf_ex.e_entry;
cc503c1b 1094 }
1da177e4 1095 if (BAD_ADDR(elf_entry)) {
ce51059b
CE
1096 retval = IS_ERR((void *)elf_entry) ?
1097 (int)elf_entry : -EINVAL;
1da177e4
LT
1098 goto out_free_dentry;
1099 }
1100 reloc_func_desc = interp_load_addr;
1101
1102 allow_write_access(interpreter);
1103 fput(interpreter);
1da177e4
LT
1104 } else {
1105 elf_entry = loc->elf_ex.e_entry;
5342fba5 1106 if (BAD_ADDR(elf_entry)) {
ce51059b 1107 retval = -EINVAL;
5342fba5
SS
1108 goto out_free_dentry;
1109 }
1da177e4
LT
1110 }
1111
774c105e 1112 kfree(interp_elf_phdata);
1da177e4
LT
1113 kfree(elf_phdata);
1114
1da177e4
LT
1115 set_binfmt(&elf_format);
1116
547ee84c 1117#ifdef ARCH_HAS_SETUP_ADDITIONAL_PAGES
cc338010 1118 retval = arch_setup_additional_pages(bprm, !!interpreter);
19d860a1 1119 if (retval < 0)
18c8baff 1120 goto out;
547ee84c
BH
1121#endif /* ARCH_HAS_SETUP_ADDITIONAL_PAGES */
1122
b6a2fea3 1123 retval = create_elf_tables(bprm, &loc->elf_ex,
f4e5cc2c 1124 load_addr, interp_load_addr);
19d860a1 1125 if (retval < 0)
b6a2fea3 1126 goto out;
1da177e4 1127 /* N.B. passed_fileno might not be initialized? */
1da177e4
LT
1128 current->mm->end_code = end_code;
1129 current->mm->start_code = start_code;
1130 current->mm->start_data = start_data;
1131 current->mm->end_data = end_data;
1132 current->mm->start_stack = bprm->p;
1133
4471a675 1134 if ((current->flags & PF_RANDOMIZE) && (randomize_va_space > 1)) {
c1d171a0
JK
1135 current->mm->brk = current->mm->start_brk =
1136 arch_randomize_brk(current->mm);
204db6ed 1137#ifdef compat_brk_randomized
4471a675
JK
1138 current->brk_randomized = 1;
1139#endif
1140 }
c1d171a0 1141
1da177e4
LT
1142 if (current->personality & MMAP_PAGE_ZERO) {
1143 /* Why this, you ask??? Well SVr4 maps page 0 as read-only,
1144 and some applications "depend" upon this behavior.
1145 Since we do not have the power to recompile these, we
f4e5cc2c 1146 emulate the SVr4 behavior. Sigh. */
6be5ceb0 1147 error = vm_mmap(NULL, 0, PAGE_SIZE, PROT_READ | PROT_EXEC,
1da177e4 1148 MAP_FIXED | MAP_PRIVATE, 0);
1da177e4
LT
1149 }
1150
1151#ifdef ELF_PLAT_INIT
1152 /*
1153 * The ABI may specify that certain registers be set up in special
1154 * ways (on i386 %edx is the address of a DT_FINI function, for
1155 * example. In addition, it may also specify (eg, PowerPC64 ELF)
1156 * that the e_entry field is the address of the function descriptor
1157 * for the startup routine, rather than the address of the startup
1158 * routine itself. This macro performs whatever initialization to
1159 * the regs structure is required as well as any relocations to the
1160 * function descriptor entries when executing dynamically links apps.
1161 */
1162 ELF_PLAT_INIT(regs, reloc_func_desc);
1163#endif
1164
b8383831 1165 finalize_exec(bprm);
1da177e4 1166 start_thread(regs, elf_entry, bprm->p);
1da177e4
LT
1167 retval = 0;
1168out:
1169 kfree(loc);
1170out_ret:
1171 return retval;
1172
1173 /* error cleanup */
1174out_free_dentry:
a9d9ef13 1175 kfree(interp_elf_phdata);
1da177e4
LT
1176 allow_write_access(interpreter);
1177 if (interpreter)
1178 fput(interpreter);
1da177e4
LT
1179out_free_ph:
1180 kfree(elf_phdata);
1181 goto out;
1182}
1183
69369a70 1184#ifdef CONFIG_USELIB
1da177e4
LT
1185/* This is really simpleminded and specialized - we are loading an
1186 a.out library that is given an ELF header. */
1da177e4
LT
1187static int load_elf_library(struct file *file)
1188{
1189 struct elf_phdr *elf_phdata;
1190 struct elf_phdr *eppnt;
1191 unsigned long elf_bss, bss, len;
1192 int retval, error, i, j;
1193 struct elfhdr elf_ex;
bdd1d2d3 1194 loff_t pos = 0;
1da177e4
LT
1195
1196 error = -ENOEXEC;
bdd1d2d3 1197 retval = kernel_read(file, &elf_ex, sizeof(elf_ex), &pos);
1da177e4
LT
1198 if (retval != sizeof(elf_ex))
1199 goto out;
1200
1201 if (memcmp(elf_ex.e_ident, ELFMAG, SELFMAG) != 0)
1202 goto out;
1203
1204 /* First of all, some simple consistency checks */
1205 if (elf_ex.e_type != ET_EXEC || elf_ex.e_phnum > 2 ||
72c2d531 1206 !elf_check_arch(&elf_ex) || !file->f_op->mmap)
1da177e4 1207 goto out;
4755200b
NP
1208 if (elf_check_fdpic(&elf_ex))
1209 goto out;
1da177e4
LT
1210
1211 /* Now read in all of the header information */
1212
1213 j = sizeof(struct elf_phdr) * elf_ex.e_phnum;
1214 /* j < ELF_MIN_ALIGN because elf_ex.e_phnum <= 2 */
1215
1216 error = -ENOMEM;
1217 elf_phdata = kmalloc(j, GFP_KERNEL);
1218 if (!elf_phdata)
1219 goto out;
1220
1221 eppnt = elf_phdata;
1222 error = -ENOEXEC;
bdd1d2d3
CH
1223 pos = elf_ex.e_phoff;
1224 retval = kernel_read(file, eppnt, j, &pos);
1da177e4
LT
1225 if (retval != j)
1226 goto out_free_ph;
1227
1228 for (j = 0, i = 0; i<elf_ex.e_phnum; i++)
1229 if ((eppnt + i)->p_type == PT_LOAD)
1230 j++;
1231 if (j != 1)
1232 goto out_free_ph;
1233
1234 while (eppnt->p_type != PT_LOAD)
1235 eppnt++;
1236
1237 /* Now use mmap to map the library into memory. */
6be5ceb0 1238 error = vm_mmap(file,
1da177e4
LT
1239 ELF_PAGESTART(eppnt->p_vaddr),
1240 (eppnt->p_filesz +
1241 ELF_PAGEOFFSET(eppnt->p_vaddr)),
1242 PROT_READ | PROT_WRITE | PROT_EXEC,
4ed28639 1243 MAP_FIXED_NOREPLACE | MAP_PRIVATE | MAP_DENYWRITE,
1da177e4
LT
1244 (eppnt->p_offset -
1245 ELF_PAGEOFFSET(eppnt->p_vaddr)));
1da177e4
LT
1246 if (error != ELF_PAGESTART(eppnt->p_vaddr))
1247 goto out_free_ph;
1248
1249 elf_bss = eppnt->p_vaddr + eppnt->p_filesz;
1250 if (padzero(elf_bss)) {
1251 error = -EFAULT;
1252 goto out_free_ph;
1253 }
1254
24962af7
OS
1255 len = ELF_PAGEALIGN(eppnt->p_filesz + eppnt->p_vaddr);
1256 bss = ELF_PAGEALIGN(eppnt->p_memsz + eppnt->p_vaddr);
ecc2bc8a
MH
1257 if (bss > len) {
1258 error = vm_brk(len, bss - len);
5d22fc25 1259 if (error)
ecc2bc8a
MH
1260 goto out_free_ph;
1261 }
1da177e4
LT
1262 error = 0;
1263
1264out_free_ph:
1265 kfree(elf_phdata);
1266out:
1267 return error;
1268}
69369a70 1269#endif /* #ifdef CONFIG_USELIB */
1da177e4 1270
698ba7b5 1271#ifdef CONFIG_ELF_CORE
1da177e4
LT
1272/*
1273 * ELF core dumper
1274 *
1275 * Modelled on fs/exec.c:aout_core_dump()
1276 * Jeremy Fitzhardinge <jeremy@sw.oz.au>
1277 */
1da177e4 1278
909af768
JB
1279/*
1280 * The purpose of always_dump_vma() is to make sure that special kernel mappings
1281 * that are useful for post-mortem analysis are included in every core dump.
1282 * In that way we ensure that the core dump is fully interpretable later
1283 * without matching up the same kernel and hardware config to see what PC values
1284 * meant. These special mappings include - vDSO, vsyscall, and other
1285 * architecture specific mappings
1286 */
1287static bool always_dump_vma(struct vm_area_struct *vma)
1288{
1289 /* Any vsyscall mappings? */
1290 if (vma == get_gate_vma(vma->vm_mm))
1291 return true;
78d683e8
AL
1292
1293 /*
1294 * Assume that all vmas with a .name op should always be dumped.
1295 * If this changes, a new vm_ops field can easily be added.
1296 */
1297 if (vma->vm_ops && vma->vm_ops->name && vma->vm_ops->name(vma))
1298 return true;
1299
909af768
JB
1300 /*
1301 * arch_vma_name() returns non-NULL for special architecture mappings,
1302 * such as vDSO sections.
1303 */
1304 if (arch_vma_name(vma))
1305 return true;
1306
1307 return false;
1308}
1309
1da177e4 1310/*
82df3973 1311 * Decide what to dump of a segment, part, all or none.
1da177e4 1312 */
82df3973
RM
1313static unsigned long vma_dump_size(struct vm_area_struct *vma,
1314 unsigned long mm_flags)
1da177e4 1315{
e575f111
KM
1316#define FILTER(type) (mm_flags & (1UL << MMF_DUMP_##type))
1317
909af768
JB
1318 /* always dump the vdso and vsyscall sections */
1319 if (always_dump_vma(vma))
82df3973 1320 goto whole;
e5b97dde 1321
0103bd16 1322 if (vma->vm_flags & VM_DONTDUMP)
accb61fe
JB
1323 return 0;
1324
5037835c
RZ
1325 /* support for DAX */
1326 if (vma_is_dax(vma)) {
1327 if ((vma->vm_flags & VM_SHARED) && FILTER(DAX_SHARED))
1328 goto whole;
1329 if (!(vma->vm_flags & VM_SHARED) && FILTER(DAX_PRIVATE))
1330 goto whole;
1331 return 0;
1332 }
1333
e575f111
KM
1334 /* Hugetlb memory check */
1335 if (vma->vm_flags & VM_HUGETLB) {
1336 if ((vma->vm_flags & VM_SHARED) && FILTER(HUGETLB_SHARED))
1337 goto whole;
1338 if (!(vma->vm_flags & VM_SHARED) && FILTER(HUGETLB_PRIVATE))
1339 goto whole;
23d9e482 1340 return 0;
e575f111
KM
1341 }
1342
1da177e4 1343 /* Do not dump I/O mapped devices or special mappings */
314e51b9 1344 if (vma->vm_flags & VM_IO)
1da177e4
LT
1345 return 0;
1346
a1b59e80
KH
1347 /* By default, dump shared memory if mapped from an anonymous file. */
1348 if (vma->vm_flags & VM_SHARED) {
496ad9aa 1349 if (file_inode(vma->vm_file)->i_nlink == 0 ?
82df3973
RM
1350 FILTER(ANON_SHARED) : FILTER(MAPPED_SHARED))
1351 goto whole;
1352 return 0;
a1b59e80 1353 }
1da177e4 1354
82df3973
RM
1355 /* Dump segments that have been written to. */
1356 if (vma->anon_vma && FILTER(ANON_PRIVATE))
1357 goto whole;
1358 if (vma->vm_file == NULL)
1359 return 0;
1da177e4 1360
82df3973
RM
1361 if (FILTER(MAPPED_PRIVATE))
1362 goto whole;
1363
1364 /*
1365 * If this looks like the beginning of a DSO or executable mapping,
1366 * check for an ELF header. If we find one, dump the first page to
1367 * aid in determining what was mapped here.
1368 */
92dc07b1
RM
1369 if (FILTER(ELF_HEADERS) &&
1370 vma->vm_pgoff == 0 && (vma->vm_flags & VM_READ)) {
82df3973
RM
1371 u32 __user *header = (u32 __user *) vma->vm_start;
1372 u32 word;
92dc07b1 1373 mm_segment_t fs = get_fs();
82df3973
RM
1374 /*
1375 * Doing it this way gets the constant folded by GCC.
1376 */
1377 union {
1378 u32 cmp;
1379 char elfmag[SELFMAG];
1380 } magic;
1381 BUILD_BUG_ON(SELFMAG != sizeof word);
1382 magic.elfmag[EI_MAG0] = ELFMAG0;
1383 magic.elfmag[EI_MAG1] = ELFMAG1;
1384 magic.elfmag[EI_MAG2] = ELFMAG2;
1385 magic.elfmag[EI_MAG3] = ELFMAG3;
92dc07b1
RM
1386 /*
1387 * Switch to the user "segment" for get_user(),
1388 * then put back what elf_core_dump() had in place.
1389 */
1390 set_fs(USER_DS);
1391 if (unlikely(get_user(word, header)))
1392 word = 0;
1393 set_fs(fs);
1394 if (word == magic.cmp)
82df3973
RM
1395 return PAGE_SIZE;
1396 }
1397
1398#undef FILTER
1399
1400 return 0;
1401
1402whole:
1403 return vma->vm_end - vma->vm_start;
1da177e4
LT
1404}
1405
1da177e4
LT
1406/* An ELF note in memory */
1407struct memelfnote
1408{
1409 const char *name;
1410 int type;
1411 unsigned int datasz;
1412 void *data;
1413};
1414
1415static int notesize(struct memelfnote *en)
1416{
1417 int sz;
1418
1419 sz = sizeof(struct elf_note);
1420 sz += roundup(strlen(en->name) + 1, 4);
1421 sz += roundup(en->datasz, 4);
1422
1423 return sz;
1424}
1425
ecc8c772 1426static int writenote(struct memelfnote *men, struct coredump_params *cprm)
d025c9db
AK
1427{
1428 struct elf_note en;
1da177e4
LT
1429 en.n_namesz = strlen(men->name) + 1;
1430 en.n_descsz = men->datasz;
1431 en.n_type = men->type;
1432
ecc8c772 1433 return dump_emit(cprm, &en, sizeof(en)) &&
22a8cb82
AV
1434 dump_emit(cprm, men->name, en.n_namesz) && dump_align(cprm, 4) &&
1435 dump_emit(cprm, men->data, men->datasz) && dump_align(cprm, 4);
1da177e4 1436}
1da177e4 1437
3aba481f 1438static void fill_elf_header(struct elfhdr *elf, int segs,
d3330cf0 1439 u16 machine, u32 flags)
1da177e4 1440{
6970c8ef
CG
1441 memset(elf, 0, sizeof(*elf));
1442
1da177e4
LT
1443 memcpy(elf->e_ident, ELFMAG, SELFMAG);
1444 elf->e_ident[EI_CLASS] = ELF_CLASS;
1445 elf->e_ident[EI_DATA] = ELF_DATA;
1446 elf->e_ident[EI_VERSION] = EV_CURRENT;
1447 elf->e_ident[EI_OSABI] = ELF_OSABI;
1da177e4
LT
1448
1449 elf->e_type = ET_CORE;
3aba481f 1450 elf->e_machine = machine;
1da177e4 1451 elf->e_version = EV_CURRENT;
1da177e4 1452 elf->e_phoff = sizeof(struct elfhdr);
3aba481f 1453 elf->e_flags = flags;
1da177e4
LT
1454 elf->e_ehsize = sizeof(struct elfhdr);
1455 elf->e_phentsize = sizeof(struct elf_phdr);
1456 elf->e_phnum = segs;
1da177e4
LT
1457}
1458
8d6b5eee 1459static void fill_elf_note_phdr(struct elf_phdr *phdr, int sz, loff_t offset)
1da177e4
LT
1460{
1461 phdr->p_type = PT_NOTE;
1462 phdr->p_offset = offset;
1463 phdr->p_vaddr = 0;
1464 phdr->p_paddr = 0;
1465 phdr->p_filesz = sz;
1466 phdr->p_memsz = 0;
1467 phdr->p_flags = 0;
1468 phdr->p_align = 0;
1da177e4
LT
1469}
1470
1471static void fill_note(struct memelfnote *note, const char *name, int type,
1472 unsigned int sz, void *data)
1473{
1474 note->name = name;
1475 note->type = type;
1476 note->datasz = sz;
1477 note->data = data;
1da177e4
LT
1478}
1479
1480/*
f4e5cc2c
JJ
1481 * fill up all the fields in prstatus from the given task struct, except
1482 * registers which need to be filled up separately.
1da177e4
LT
1483 */
1484static void fill_prstatus(struct elf_prstatus *prstatus,
f4e5cc2c 1485 struct task_struct *p, long signr)
1da177e4
LT
1486{
1487 prstatus->pr_info.si_signo = prstatus->pr_cursig = signr;
1488 prstatus->pr_sigpend = p->pending.signal.sig[0];
1489 prstatus->pr_sighold = p->blocked.sig[0];
3b34fc58
ON
1490 rcu_read_lock();
1491 prstatus->pr_ppid = task_pid_vnr(rcu_dereference(p->real_parent));
1492 rcu_read_unlock();
b488893a 1493 prstatus->pr_pid = task_pid_vnr(p);
b488893a
PE
1494 prstatus->pr_pgrp = task_pgrp_vnr(p);
1495 prstatus->pr_sid = task_session_vnr(p);
1da177e4 1496 if (thread_group_leader(p)) {
cd19c364 1497 struct task_cputime cputime;
f06febc9 1498
1da177e4 1499 /*
f06febc9
FM
1500 * This is the record for the group leader. It shows the
1501 * group-wide total, not its individual thread total.
1da177e4 1502 */
cd19c364
FW
1503 thread_group_cputime(p, &cputime);
1504 prstatus->pr_utime = ns_to_timeval(cputime.utime);
1505 prstatus->pr_stime = ns_to_timeval(cputime.stime);
1da177e4 1506 } else {
cd19c364 1507 u64 utime, stime;
6fac4829 1508
cd19c364
FW
1509 task_cputime(p, &utime, &stime);
1510 prstatus->pr_utime = ns_to_timeval(utime);
1511 prstatus->pr_stime = ns_to_timeval(stime);
1da177e4 1512 }
5613fda9 1513
cd19c364
FW
1514 prstatus->pr_cutime = ns_to_timeval(p->signal->cutime);
1515 prstatus->pr_cstime = ns_to_timeval(p->signal->cstime);
1da177e4
LT
1516}
1517
1518static int fill_psinfo(struct elf_prpsinfo *psinfo, struct task_struct *p,
1519 struct mm_struct *mm)
1520{
c69e8d9c 1521 const struct cred *cred;
a84a5059 1522 unsigned int i, len;
1da177e4
LT
1523
1524 /* first copy the parameters from user space */
1525 memset(psinfo, 0, sizeof(struct elf_prpsinfo));
1526
1527 len = mm->arg_end - mm->arg_start;
1528 if (len >= ELF_PRARGSZ)
1529 len = ELF_PRARGSZ-1;
1530 if (copy_from_user(&psinfo->pr_psargs,
1531 (const char __user *)mm->arg_start, len))
1532 return -EFAULT;
1533 for(i = 0; i < len; i++)
1534 if (psinfo->pr_psargs[i] == 0)
1535 psinfo->pr_psargs[i] = ' ';
1536 psinfo->pr_psargs[len] = 0;
1537
3b34fc58
ON
1538 rcu_read_lock();
1539 psinfo->pr_ppid = task_pid_vnr(rcu_dereference(p->real_parent));
1540 rcu_read_unlock();
b488893a 1541 psinfo->pr_pid = task_pid_vnr(p);
b488893a
PE
1542 psinfo->pr_pgrp = task_pgrp_vnr(p);
1543 psinfo->pr_sid = task_session_vnr(p);
1da177e4
LT
1544
1545 i = p->state ? ffz(~p->state) + 1 : 0;
1546 psinfo->pr_state = i;
55148548 1547 psinfo->pr_sname = (i > 5) ? '.' : "RSDTZW"[i];
1da177e4
LT
1548 psinfo->pr_zomb = psinfo->pr_sname == 'Z';
1549 psinfo->pr_nice = task_nice(p);
1550 psinfo->pr_flag = p->flags;
c69e8d9c
DH
1551 rcu_read_lock();
1552 cred = __task_cred(p);
ebc887b2
EB
1553 SET_UID(psinfo->pr_uid, from_kuid_munged(cred->user_ns, cred->uid));
1554 SET_GID(psinfo->pr_gid, from_kgid_munged(cred->user_ns, cred->gid));
c69e8d9c 1555 rcu_read_unlock();
1da177e4
LT
1556 strncpy(psinfo->pr_fname, p->comm, sizeof(psinfo->pr_fname));
1557
1558 return 0;
1559}
1560
3aba481f
RM
1561static void fill_auxv_note(struct memelfnote *note, struct mm_struct *mm)
1562{
1563 elf_addr_t *auxv = (elf_addr_t *) mm->saved_auxv;
1564 int i = 0;
1565 do
1566 i += 2;
1567 while (auxv[i - 2] != AT_NULL);
1568 fill_note(note, "CORE", NT_AUXV, i * sizeof(elf_addr_t), auxv);
1569}
1570
49ae4d4b 1571static void fill_siginfo_note(struct memelfnote *note, user_siginfo_t *csigdata,
ae7795bc 1572 const kernel_siginfo_t *siginfo)
49ae4d4b
DV
1573{
1574 mm_segment_t old_fs = get_fs();
1575 set_fs(KERNEL_DS);
1576 copy_siginfo_to_user((user_siginfo_t __user *) csigdata, siginfo);
1577 set_fs(old_fs);
1578 fill_note(note, "CORE", NT_SIGINFO, sizeof(*csigdata), csigdata);
1579}
1580
2aa362c4
DV
1581#define MAX_FILE_NOTE_SIZE (4*1024*1024)
1582/*
1583 * Format of NT_FILE note:
1584 *
1585 * long count -- how many files are mapped
1586 * long page_size -- units for file_ofs
1587 * array of [COUNT] elements of
1588 * long start
1589 * long end
1590 * long file_ofs
1591 * followed by COUNT filenames in ASCII: "FILE1" NUL "FILE2" NUL...
1592 */
72023656 1593static int fill_files_note(struct memelfnote *note)
2aa362c4
DV
1594{
1595 struct vm_area_struct *vma;
1596 unsigned count, size, names_ofs, remaining, n;
1597 user_long_t *data;
1598 user_long_t *start_end_ofs;
1599 char *name_base, *name_curpos;
1600
1601 /* *Estimated* file count and total data size needed */
1602 count = current->mm->map_count;
60c9d92f
AD
1603 if (count > UINT_MAX / 64)
1604 return -EINVAL;
2aa362c4
DV
1605 size = count * 64;
1606
1607 names_ofs = (2 + 3 * count) * sizeof(data[0]);
1608 alloc:
1609 if (size >= MAX_FILE_NOTE_SIZE) /* paranoia check */
72023656 1610 return -EINVAL;
2aa362c4 1611 size = round_up(size, PAGE_SIZE);
86a2bb5a
AD
1612 data = kvmalloc(size, GFP_KERNEL);
1613 if (ZERO_OR_NULL_PTR(data))
72023656 1614 return -ENOMEM;
2aa362c4
DV
1615
1616 start_end_ofs = data + 2;
1617 name_base = name_curpos = ((char *)data) + names_ofs;
1618 remaining = size - names_ofs;
1619 count = 0;
1620 for (vma = current->mm->mmap; vma != NULL; vma = vma->vm_next) {
1621 struct file *file;
1622 const char *filename;
1623
1624 file = vma->vm_file;
1625 if (!file)
1626 continue;
9bf39ab2 1627 filename = file_path(file, name_curpos, remaining);
2aa362c4
DV
1628 if (IS_ERR(filename)) {
1629 if (PTR_ERR(filename) == -ENAMETOOLONG) {
86a2bb5a 1630 kvfree(data);
2aa362c4
DV
1631 size = size * 5 / 4;
1632 goto alloc;
1633 }
1634 continue;
1635 }
1636
9bf39ab2 1637 /* file_path() fills at the end, move name down */
2aa362c4
DV
1638 /* n = strlen(filename) + 1: */
1639 n = (name_curpos + remaining) - filename;
1640 remaining = filename - name_curpos;
1641 memmove(name_curpos, filename, n);
1642 name_curpos += n;
1643
1644 *start_end_ofs++ = vma->vm_start;
1645 *start_end_ofs++ = vma->vm_end;
1646 *start_end_ofs++ = vma->vm_pgoff;
1647 count++;
1648 }
1649
1650 /* Now we know exact count of files, can store it */
1651 data[0] = count;
1652 data[1] = PAGE_SIZE;
1653 /*
1654 * Count usually is less than current->mm->map_count,
1655 * we need to move filenames down.
1656 */
1657 n = current->mm->map_count - count;
1658 if (n != 0) {
1659 unsigned shift_bytes = n * 3 * sizeof(data[0]);
1660 memmove(name_base - shift_bytes, name_base,
1661 name_curpos - name_base);
1662 name_curpos -= shift_bytes;
1663 }
1664
1665 size = name_curpos - (char *)data;
1666 fill_note(note, "CORE", NT_FILE, size, data);
72023656 1667 return 0;
2aa362c4
DV
1668}
1669
4206d3aa
RM
1670#ifdef CORE_DUMP_USE_REGSET
1671#include <linux/regset.h>
1672
1673struct elf_thread_core_info {
1674 struct elf_thread_core_info *next;
1675 struct task_struct *task;
1676 struct elf_prstatus prstatus;
1677 struct memelfnote notes[0];
1678};
1679
1680struct elf_note_info {
1681 struct elf_thread_core_info *thread;
1682 struct memelfnote psinfo;
49ae4d4b 1683 struct memelfnote signote;
4206d3aa 1684 struct memelfnote auxv;
2aa362c4 1685 struct memelfnote files;
49ae4d4b 1686 user_siginfo_t csigdata;
4206d3aa
RM
1687 size_t size;
1688 int thread_notes;
1689};
1690
d31472b6
RM
1691/*
1692 * When a regset has a writeback hook, we call it on each thread before
1693 * dumping user memory. On register window machines, this makes sure the
1694 * user memory backing the register data is up to date before we read it.
1695 */
1696static void do_thread_regset_writeback(struct task_struct *task,
1697 const struct user_regset *regset)
1698{
1699 if (regset->writeback)
1700 regset->writeback(task, regset, 1);
1701}
1702
0953f65d 1703#ifndef PRSTATUS_SIZE
90954e7b 1704#define PRSTATUS_SIZE(S, R) sizeof(S)
0953f65d
L
1705#endif
1706
1707#ifndef SET_PR_FPVALID
90954e7b 1708#define SET_PR_FPVALID(S, V, R) ((S)->pr_fpvalid = (V))
0953f65d
L
1709#endif
1710
4206d3aa
RM
1711static int fill_thread_core_info(struct elf_thread_core_info *t,
1712 const struct user_regset_view *view,
1713 long signr, size_t *total)
1714{
1715 unsigned int i;
27e64b4b 1716 unsigned int regset0_size = regset_size(t->task, &view->regsets[0]);
4206d3aa
RM
1717
1718 /*
1719 * NT_PRSTATUS is the one special case, because the regset data
1720 * goes into the pr_reg field inside the note contents, rather
1721 * than being the whole note contents. We fill the reset in here.
1722 * We assume that regset 0 is NT_PRSTATUS.
1723 */
1724 fill_prstatus(&t->prstatus, t->task, signr);
27e64b4b 1725 (void) view->regsets[0].get(t->task, &view->regsets[0], 0, regset0_size,
90954e7b 1726 &t->prstatus.pr_reg, NULL);
4206d3aa
RM
1727
1728 fill_note(&t->notes[0], "CORE", NT_PRSTATUS,
27e64b4b 1729 PRSTATUS_SIZE(t->prstatus, regset0_size), &t->prstatus);
4206d3aa
RM
1730 *total += notesize(&t->notes[0]);
1731
d31472b6
RM
1732 do_thread_regset_writeback(t->task, &view->regsets[0]);
1733
4206d3aa
RM
1734 /*
1735 * Each other regset might generate a note too. For each regset
1736 * that has no core_note_type or is inactive, we leave t->notes[i]
1737 * all zero and we'll know to skip writing it later.
1738 */
1739 for (i = 1; i < view->n; ++i) {
1740 const struct user_regset *regset = &view->regsets[i];
d31472b6 1741 do_thread_regset_writeback(t->task, regset);
c8e25258 1742 if (regset->core_note_type && regset->get &&
2f819db5 1743 (!regset->active || regset->active(t->task, regset) > 0)) {
4206d3aa 1744 int ret;
27e64b4b 1745 size_t size = regset_size(t->task, regset);
4206d3aa
RM
1746 void *data = kmalloc(size, GFP_KERNEL);
1747 if (unlikely(!data))
1748 return 0;
1749 ret = regset->get(t->task, regset,
1750 0, size, data, NULL);
1751 if (unlikely(ret))
1752 kfree(data);
1753 else {
1754 if (regset->core_note_type != NT_PRFPREG)
1755 fill_note(&t->notes[i], "LINUX",
1756 regset->core_note_type,
1757 size, data);
1758 else {
90954e7b 1759 SET_PR_FPVALID(&t->prstatus,
27e64b4b 1760 1, regset0_size);
4206d3aa
RM
1761 fill_note(&t->notes[i], "CORE",
1762 NT_PRFPREG, size, data);
1763 }
1764 *total += notesize(&t->notes[i]);
1765 }
1766 }
1767 }
1768
1769 return 1;
1770}
1771
1772static int fill_note_info(struct elfhdr *elf, int phdrs,
1773 struct elf_note_info *info,
ae7795bc 1774 const kernel_siginfo_t *siginfo, struct pt_regs *regs)
4206d3aa
RM
1775{
1776 struct task_struct *dump_task = current;
1777 const struct user_regset_view *view = task_user_regset_view(dump_task);
1778 struct elf_thread_core_info *t;
1779 struct elf_prpsinfo *psinfo;
83914441 1780 struct core_thread *ct;
4206d3aa
RM
1781 unsigned int i;
1782
1783 info->size = 0;
1784 info->thread = NULL;
1785
1786 psinfo = kmalloc(sizeof(*psinfo), GFP_KERNEL);
6899e92d
AC
1787 if (psinfo == NULL) {
1788 info->psinfo.data = NULL; /* So we don't free this wrongly */
4206d3aa 1789 return 0;
6899e92d 1790 }
4206d3aa 1791
e2dbe125
AW
1792 fill_note(&info->psinfo, "CORE", NT_PRPSINFO, sizeof(*psinfo), psinfo);
1793
4206d3aa
RM
1794 /*
1795 * Figure out how many notes we're going to need for each thread.
1796 */
1797 info->thread_notes = 0;
1798 for (i = 0; i < view->n; ++i)
1799 if (view->regsets[i].core_note_type != 0)
1800 ++info->thread_notes;
1801
1802 /*
1803 * Sanity check. We rely on regset 0 being in NT_PRSTATUS,
1804 * since it is our one special case.
1805 */
1806 if (unlikely(info->thread_notes == 0) ||
1807 unlikely(view->regsets[0].core_note_type != NT_PRSTATUS)) {
1808 WARN_ON(1);
1809 return 0;
1810 }
1811
1812 /*
1813 * Initialize the ELF file header.
1814 */
1815 fill_elf_header(elf, phdrs,
d3330cf0 1816 view->e_machine, view->e_flags);
4206d3aa
RM
1817
1818 /*
1819 * Allocate a structure for each thread.
1820 */
83914441
ON
1821 for (ct = &dump_task->mm->core_state->dumper; ct; ct = ct->next) {
1822 t = kzalloc(offsetof(struct elf_thread_core_info,
1823 notes[info->thread_notes]),
1824 GFP_KERNEL);
1825 if (unlikely(!t))
1826 return 0;
1827
1828 t->task = ct->task;
1829 if (ct->task == dump_task || !info->thread) {
1830 t->next = info->thread;
1831 info->thread = t;
1832 } else {
1833 /*
1834 * Make sure to keep the original task at
1835 * the head of the list.
1836 */
1837 t->next = info->thread->next;
1838 info->thread->next = t;
4206d3aa 1839 }
83914441 1840 }
4206d3aa
RM
1841
1842 /*
1843 * Now fill in each thread's information.
1844 */
1845 for (t = info->thread; t != NULL; t = t->next)
5ab1c309 1846 if (!fill_thread_core_info(t, view, siginfo->si_signo, &info->size))
4206d3aa
RM
1847 return 0;
1848
1849 /*
1850 * Fill in the two process-wide notes.
1851 */
1852 fill_psinfo(psinfo, dump_task->group_leader, dump_task->mm);
1853 info->size += notesize(&info->psinfo);
1854
49ae4d4b
DV
1855 fill_siginfo_note(&info->signote, &info->csigdata, siginfo);
1856 info->size += notesize(&info->signote);
1857
4206d3aa
RM
1858 fill_auxv_note(&info->auxv, current->mm);
1859 info->size += notesize(&info->auxv);
1860
72023656
DA
1861 if (fill_files_note(&info->files) == 0)
1862 info->size += notesize(&info->files);
2aa362c4 1863
4206d3aa
RM
1864 return 1;
1865}
1866
1867static size_t get_note_info_size(struct elf_note_info *info)
1868{
1869 return info->size;
1870}
1871
1872/*
1873 * Write all the notes for each thread. When writing the first thread, the
1874 * process-wide notes are interleaved after the first thread-specific note.
1875 */
1876static int write_note_info(struct elf_note_info *info,
ecc8c772 1877 struct coredump_params *cprm)
4206d3aa 1878{
b219e25f 1879 bool first = true;
4206d3aa
RM
1880 struct elf_thread_core_info *t = info->thread;
1881
1882 do {
1883 int i;
1884
ecc8c772 1885 if (!writenote(&t->notes[0], cprm))
4206d3aa
RM
1886 return 0;
1887
ecc8c772 1888 if (first && !writenote(&info->psinfo, cprm))
4206d3aa 1889 return 0;
ecc8c772 1890 if (first && !writenote(&info->signote, cprm))
49ae4d4b 1891 return 0;
ecc8c772 1892 if (first && !writenote(&info->auxv, cprm))
4206d3aa 1893 return 0;
72023656 1894 if (first && info->files.data &&
ecc8c772 1895 !writenote(&info->files, cprm))
2aa362c4 1896 return 0;
4206d3aa
RM
1897
1898 for (i = 1; i < info->thread_notes; ++i)
1899 if (t->notes[i].data &&
ecc8c772 1900 !writenote(&t->notes[i], cprm))
4206d3aa
RM
1901 return 0;
1902
b219e25f 1903 first = false;
4206d3aa
RM
1904 t = t->next;
1905 } while (t);
1906
1907 return 1;
1908}
1909
1910static void free_note_info(struct elf_note_info *info)
1911{
1912 struct elf_thread_core_info *threads = info->thread;
1913 while (threads) {
1914 unsigned int i;
1915 struct elf_thread_core_info *t = threads;
1916 threads = t->next;
1917 WARN_ON(t->notes[0].data && t->notes[0].data != &t->prstatus);
1918 for (i = 1; i < info->thread_notes; ++i)
1919 kfree(t->notes[i].data);
1920 kfree(t);
1921 }
1922 kfree(info->psinfo.data);
86a2bb5a 1923 kvfree(info->files.data);
4206d3aa
RM
1924}
1925
1926#else
1927
1da177e4
LT
1928/* Here is the structure in which status of each thread is captured. */
1929struct elf_thread_status
1930{
1931 struct list_head list;
1932 struct elf_prstatus prstatus; /* NT_PRSTATUS */
1933 elf_fpregset_t fpu; /* NT_PRFPREG */
1934 struct task_struct *thread;
1935#ifdef ELF_CORE_COPY_XFPREGS
5b20cd80 1936 elf_fpxregset_t xfpu; /* ELF_CORE_XFPREG_TYPE */
1da177e4
LT
1937#endif
1938 struct memelfnote notes[3];
1939 int num_notes;
1940};
1941
1942/*
1943 * In order to add the specific thread information for the elf file format,
f4e5cc2c
JJ
1944 * we need to keep a linked list of every threads pr_status and then create
1945 * a single section for them in the final core file.
1da177e4
LT
1946 */
1947static int elf_dump_thread_status(long signr, struct elf_thread_status *t)
1948{
1949 int sz = 0;
1950 struct task_struct *p = t->thread;
1951 t->num_notes = 0;
1952
1953 fill_prstatus(&t->prstatus, p, signr);
1954 elf_core_copy_task_regs(p, &t->prstatus.pr_reg);
1955
f4e5cc2c
JJ
1956 fill_note(&t->notes[0], "CORE", NT_PRSTATUS, sizeof(t->prstatus),
1957 &(t->prstatus));
1da177e4
LT
1958 t->num_notes++;
1959 sz += notesize(&t->notes[0]);
1960
f4e5cc2c
JJ
1961 if ((t->prstatus.pr_fpvalid = elf_core_copy_task_fpregs(p, NULL,
1962 &t->fpu))) {
1963 fill_note(&t->notes[1], "CORE", NT_PRFPREG, sizeof(t->fpu),
1964 &(t->fpu));
1da177e4
LT
1965 t->num_notes++;
1966 sz += notesize(&t->notes[1]);
1967 }
1968
1969#ifdef ELF_CORE_COPY_XFPREGS
1970 if (elf_core_copy_task_xfpregs(p, &t->xfpu)) {
5b20cd80
MN
1971 fill_note(&t->notes[2], "LINUX", ELF_CORE_XFPREG_TYPE,
1972 sizeof(t->xfpu), &t->xfpu);
1da177e4
LT
1973 t->num_notes++;
1974 sz += notesize(&t->notes[2]);
1975 }
1976#endif
1977 return sz;
1978}
1979
3aba481f
RM
1980struct elf_note_info {
1981 struct memelfnote *notes;
72023656 1982 struct memelfnote *notes_files;
3aba481f
RM
1983 struct elf_prstatus *prstatus; /* NT_PRSTATUS */
1984 struct elf_prpsinfo *psinfo; /* NT_PRPSINFO */
1985 struct list_head thread_list;
1986 elf_fpregset_t *fpu;
1987#ifdef ELF_CORE_COPY_XFPREGS
1988 elf_fpxregset_t *xfpu;
1989#endif
49ae4d4b 1990 user_siginfo_t csigdata;
3aba481f
RM
1991 int thread_status_size;
1992 int numnote;
1993};
1994
0cf062d0 1995static int elf_note_info_init(struct elf_note_info *info)
3aba481f 1996{
0cf062d0 1997 memset(info, 0, sizeof(*info));
3aba481f
RM
1998 INIT_LIST_HEAD(&info->thread_list);
1999
49ae4d4b 2000 /* Allocate space for ELF notes */
6da2ec56 2001 info->notes = kmalloc_array(8, sizeof(struct memelfnote), GFP_KERNEL);
3aba481f
RM
2002 if (!info->notes)
2003 return 0;
2004 info->psinfo = kmalloc(sizeof(*info->psinfo), GFP_KERNEL);
2005 if (!info->psinfo)
f34f9d18 2006 return 0;
3aba481f
RM
2007 info->prstatus = kmalloc(sizeof(*info->prstatus), GFP_KERNEL);
2008 if (!info->prstatus)
f34f9d18 2009 return 0;
3aba481f
RM
2010 info->fpu = kmalloc(sizeof(*info->fpu), GFP_KERNEL);
2011 if (!info->fpu)
f34f9d18 2012 return 0;
3aba481f
RM
2013#ifdef ELF_CORE_COPY_XFPREGS
2014 info->xfpu = kmalloc(sizeof(*info->xfpu), GFP_KERNEL);
2015 if (!info->xfpu)
f34f9d18 2016 return 0;
3aba481f 2017#endif
0cf062d0 2018 return 1;
0cf062d0
AW
2019}
2020
2021static int fill_note_info(struct elfhdr *elf, int phdrs,
2022 struct elf_note_info *info,
ae7795bc 2023 const kernel_siginfo_t *siginfo, struct pt_regs *regs)
0cf062d0 2024{
afabada9
AV
2025 struct core_thread *ct;
2026 struct elf_thread_status *ets;
0cf062d0
AW
2027
2028 if (!elf_note_info_init(info))
2029 return 0;
3aba481f 2030
afabada9
AV
2031 for (ct = current->mm->core_state->dumper.next;
2032 ct; ct = ct->next) {
2033 ets = kzalloc(sizeof(*ets), GFP_KERNEL);
2034 if (!ets)
2035 return 0;
83914441 2036
afabada9
AV
2037 ets->thread = ct->task;
2038 list_add(&ets->list, &info->thread_list);
2039 }
83914441 2040
93f044e2 2041 list_for_each_entry(ets, &info->thread_list, list) {
afabada9 2042 int sz;
3aba481f 2043
afabada9
AV
2044 sz = elf_dump_thread_status(siginfo->si_signo, ets);
2045 info->thread_status_size += sz;
3aba481f
RM
2046 }
2047 /* now collect the dump for the current */
2048 memset(info->prstatus, 0, sizeof(*info->prstatus));
5ab1c309 2049 fill_prstatus(info->prstatus, current, siginfo->si_signo);
3aba481f
RM
2050 elf_core_copy_regs(&info->prstatus->pr_reg, regs);
2051
2052 /* Set up header */
d3330cf0 2053 fill_elf_header(elf, phdrs, ELF_ARCH, ELF_CORE_EFLAGS);
3aba481f
RM
2054
2055 /*
2056 * Set up the notes in similar form to SVR4 core dumps made
2057 * with info from their /proc.
2058 */
2059
2060 fill_note(info->notes + 0, "CORE", NT_PRSTATUS,
2061 sizeof(*info->prstatus), info->prstatus);
2062 fill_psinfo(info->psinfo, current->group_leader, current->mm);
2063 fill_note(info->notes + 1, "CORE", NT_PRPSINFO,
2064 sizeof(*info->psinfo), info->psinfo);
2065
2aa362c4
DV
2066 fill_siginfo_note(info->notes + 2, &info->csigdata, siginfo);
2067 fill_auxv_note(info->notes + 3, current->mm);
72023656 2068 info->numnote = 4;
3aba481f 2069
72023656
DA
2070 if (fill_files_note(info->notes + info->numnote) == 0) {
2071 info->notes_files = info->notes + info->numnote;
2072 info->numnote++;
2073 }
3aba481f
RM
2074
2075 /* Try to dump the FPU. */
2076 info->prstatus->pr_fpvalid = elf_core_copy_task_fpregs(current, regs,
2077 info->fpu);
2078 if (info->prstatus->pr_fpvalid)
2079 fill_note(info->notes + info->numnote++,
2080 "CORE", NT_PRFPREG, sizeof(*info->fpu), info->fpu);
2081#ifdef ELF_CORE_COPY_XFPREGS
2082 if (elf_core_copy_task_xfpregs(current, info->xfpu))
2083 fill_note(info->notes + info->numnote++,
2084 "LINUX", ELF_CORE_XFPREG_TYPE,
2085 sizeof(*info->xfpu), info->xfpu);
2086#endif
2087
2088 return 1;
3aba481f
RM
2089}
2090
2091static size_t get_note_info_size(struct elf_note_info *info)
2092{
2093 int sz = 0;
2094 int i;
2095
2096 for (i = 0; i < info->numnote; i++)
2097 sz += notesize(info->notes + i);
2098
2099 sz += info->thread_status_size;
2100
2101 return sz;
2102}
2103
2104static int write_note_info(struct elf_note_info *info,
ecc8c772 2105 struct coredump_params *cprm)
3aba481f 2106{
93f044e2 2107 struct elf_thread_status *ets;
3aba481f 2108 int i;
3aba481f
RM
2109
2110 for (i = 0; i < info->numnote; i++)
ecc8c772 2111 if (!writenote(info->notes + i, cprm))
3aba481f
RM
2112 return 0;
2113
2114 /* write out the thread status notes section */
93f044e2
AD
2115 list_for_each_entry(ets, &info->thread_list, list) {
2116 for (i = 0; i < ets->num_notes; i++)
2117 if (!writenote(&ets->notes[i], cprm))
3aba481f
RM
2118 return 0;
2119 }
2120
2121 return 1;
2122}
2123
2124static void free_note_info(struct elf_note_info *info)
2125{
2126 while (!list_empty(&info->thread_list)) {
2127 struct list_head *tmp = info->thread_list.next;
2128 list_del(tmp);
2129 kfree(list_entry(tmp, struct elf_thread_status, list));
2130 }
2131
72023656
DA
2132 /* Free data possibly allocated by fill_files_note(): */
2133 if (info->notes_files)
86a2bb5a 2134 kvfree(info->notes_files->data);
2aa362c4 2135
3aba481f
RM
2136 kfree(info->prstatus);
2137 kfree(info->psinfo);
2138 kfree(info->notes);
2139 kfree(info->fpu);
2140#ifdef ELF_CORE_COPY_XFPREGS
2141 kfree(info->xfpu);
2142#endif
2143}
2144
4206d3aa
RM
2145#endif
2146
f47aef55
RM
2147static struct vm_area_struct *first_vma(struct task_struct *tsk,
2148 struct vm_area_struct *gate_vma)
2149{
2150 struct vm_area_struct *ret = tsk->mm->mmap;
2151
2152 if (ret)
2153 return ret;
2154 return gate_vma;
2155}
2156/*
2157 * Helper function for iterating across a vma list. It ensures that the caller
2158 * will visit `gate_vma' prior to terminating the search.
2159 */
2160static struct vm_area_struct *next_vma(struct vm_area_struct *this_vma,
2161 struct vm_area_struct *gate_vma)
2162{
2163 struct vm_area_struct *ret;
2164
2165 ret = this_vma->vm_next;
2166 if (ret)
2167 return ret;
2168 if (this_vma == gate_vma)
2169 return NULL;
2170 return gate_vma;
2171}
2172
8d9032bb
DH
2173static void fill_extnum_info(struct elfhdr *elf, struct elf_shdr *shdr4extnum,
2174 elf_addr_t e_shoff, int segs)
2175{
2176 elf->e_shoff = e_shoff;
2177 elf->e_shentsize = sizeof(*shdr4extnum);
2178 elf->e_shnum = 1;
2179 elf->e_shstrndx = SHN_UNDEF;
2180
2181 memset(shdr4extnum, 0, sizeof(*shdr4extnum));
2182
2183 shdr4extnum->sh_type = SHT_NULL;
2184 shdr4extnum->sh_size = elf->e_shnum;
2185 shdr4extnum->sh_link = elf->e_shstrndx;
2186 shdr4extnum->sh_info = segs;
2187}
2188
1da177e4
LT
2189/*
2190 * Actual dumper
2191 *
2192 * This is a two-pass process; first we find the offsets of the bits,
2193 * and then they are actually written out. If we run out of core limit
2194 * we just truncate.
2195 */
f6151dfe 2196static int elf_core_dump(struct coredump_params *cprm)
1da177e4 2197{
1da177e4
LT
2198 int has_dumped = 0;
2199 mm_segment_t fs;
52f5592e
JL
2200 int segs, i;
2201 size_t vma_data_size = 0;
f47aef55 2202 struct vm_area_struct *vma, *gate_vma;
1da177e4 2203 struct elfhdr *elf = NULL;
cdc3d562 2204 loff_t offset = 0, dataoff;
72023656 2205 struct elf_note_info info = { };
93eb211e 2206 struct elf_phdr *phdr4note = NULL;
8d9032bb
DH
2207 struct elf_shdr *shdr4extnum = NULL;
2208 Elf_Half e_phnum;
2209 elf_addr_t e_shoff;
52f5592e 2210 elf_addr_t *vma_filesz = NULL;
1da177e4
LT
2211
2212 /*
2213 * We no longer stop all VM operations.
2214 *
f4e5cc2c
JJ
2215 * This is because those proceses that could possibly change map_count
2216 * or the mmap / vma pages are now blocked in do_exit on current
2217 * finishing this core dump.
1da177e4
LT
2218 *
2219 * Only ptrace can touch these memory addresses, but it doesn't change
f4e5cc2c 2220 * the map_count or the pages allocated. So no possibility of crashing
1da177e4
LT
2221 * exists while dumping the mm->vm_next areas to the core file.
2222 */
2223
2224 /* alloc memory for large data structures: too large to be on stack */
2225 elf = kmalloc(sizeof(*elf), GFP_KERNEL);
2226 if (!elf)
5f719558 2227 goto out;
341c87bf
KH
2228 /*
2229 * The number of segs are recored into ELF header as 16bit value.
2230 * Please check DEFAULT_MAX_MAP_COUNT definition when you modify here.
2231 */
1da177e4 2232 segs = current->mm->map_count;
1fcccbac 2233 segs += elf_core_extra_phdrs();
1da177e4 2234
31db58b3 2235 gate_vma = get_gate_vma(current->mm);
f47aef55
RM
2236 if (gate_vma != NULL)
2237 segs++;
2238
8d9032bb
DH
2239 /* for notes section */
2240 segs++;
2241
2242 /* If segs > PN_XNUM(0xffff), then e_phnum overflows. To avoid
2243 * this, kernel supports extended numbering. Have a look at
2244 * include/linux/elf.h for further information. */
2245 e_phnum = segs > PN_XNUM ? PN_XNUM : segs;
2246
1da177e4 2247 /*
3aba481f
RM
2248 * Collect all the non-memory information about the process for the
2249 * notes. This also sets up the file header.
1da177e4 2250 */
5ab1c309 2251 if (!fill_note_info(elf, e_phnum, &info, cprm->siginfo, cprm->regs))
3aba481f 2252 goto cleanup;
1da177e4 2253
3aba481f 2254 has_dumped = 1;
079148b9 2255
1da177e4
LT
2256 fs = get_fs();
2257 set_fs(KERNEL_DS);
2258
1da177e4 2259 offset += sizeof(*elf); /* Elf header */
8d9032bb 2260 offset += segs * sizeof(struct elf_phdr); /* Program headers */
1da177e4
LT
2261
2262 /* Write notes phdr entry */
2263 {
3aba481f 2264 size_t sz = get_note_info_size(&info);
1da177e4 2265
e5501492 2266 sz += elf_coredump_extra_notes_size();
bf1ab978 2267
93eb211e
DH
2268 phdr4note = kmalloc(sizeof(*phdr4note), GFP_KERNEL);
2269 if (!phdr4note)
088e7af7 2270 goto end_coredump;
93eb211e
DH
2271
2272 fill_elf_note_phdr(phdr4note, sz, offset);
2273 offset += sz;
1da177e4
LT
2274 }
2275
1da177e4
LT
2276 dataoff = offset = roundup(offset, ELF_EXEC_PAGESIZE);
2277
30f74aa0
JB
2278 if (segs - 1 > ULONG_MAX / sizeof(*vma_filesz))
2279 goto end_coredump;
86a2bb5a
AD
2280 vma_filesz = kvmalloc(array_size(sizeof(*vma_filesz), (segs - 1)),
2281 GFP_KERNEL);
2282 if (ZERO_OR_NULL_PTR(vma_filesz))
52f5592e
JL
2283 goto end_coredump;
2284
2285 for (i = 0, vma = first_vma(current, gate_vma); vma != NULL;
2286 vma = next_vma(vma, gate_vma)) {
2287 unsigned long dump_size;
2288
2289 dump_size = vma_dump_size(vma, cprm->mm_flags);
2290 vma_filesz[i++] = dump_size;
2291 vma_data_size += dump_size;
2292 }
2293
2294 offset += vma_data_size;
8d9032bb
DH
2295 offset += elf_core_extra_data_size();
2296 e_shoff = offset;
2297
2298 if (e_phnum == PN_XNUM) {
2299 shdr4extnum = kmalloc(sizeof(*shdr4extnum), GFP_KERNEL);
2300 if (!shdr4extnum)
2301 goto end_coredump;
2302 fill_extnum_info(elf, shdr4extnum, e_shoff, segs);
2303 }
2304
2305 offset = dataoff;
2306
ecc8c772 2307 if (!dump_emit(cprm, elf, sizeof(*elf)))
93eb211e
DH
2308 goto end_coredump;
2309
ecc8c772 2310 if (!dump_emit(cprm, phdr4note, sizeof(*phdr4note)))
93eb211e
DH
2311 goto end_coredump;
2312
1da177e4 2313 /* Write program headers for segments dump */
52f5592e 2314 for (i = 0, vma = first_vma(current, gate_vma); vma != NULL;
f47aef55 2315 vma = next_vma(vma, gate_vma)) {
1da177e4 2316 struct elf_phdr phdr;
1da177e4
LT
2317
2318 phdr.p_type = PT_LOAD;
2319 phdr.p_offset = offset;
2320 phdr.p_vaddr = vma->vm_start;
2321 phdr.p_paddr = 0;
52f5592e 2322 phdr.p_filesz = vma_filesz[i++];
82df3973 2323 phdr.p_memsz = vma->vm_end - vma->vm_start;
1da177e4
LT
2324 offset += phdr.p_filesz;
2325 phdr.p_flags = vma->vm_flags & VM_READ ? PF_R : 0;
f4e5cc2c
JJ
2326 if (vma->vm_flags & VM_WRITE)
2327 phdr.p_flags |= PF_W;
2328 if (vma->vm_flags & VM_EXEC)
2329 phdr.p_flags |= PF_X;
1da177e4
LT
2330 phdr.p_align = ELF_EXEC_PAGESIZE;
2331
ecc8c772 2332 if (!dump_emit(cprm, &phdr, sizeof(phdr)))
088e7af7 2333 goto end_coredump;
1da177e4
LT
2334 }
2335
506f21c5 2336 if (!elf_core_write_extra_phdrs(cprm, offset))
1fcccbac 2337 goto end_coredump;
1da177e4
LT
2338
2339 /* write out the notes section */
ecc8c772 2340 if (!write_note_info(&info, cprm))
3aba481f 2341 goto end_coredump;
1da177e4 2342
cdc3d562 2343 if (elf_coredump_extra_notes_write(cprm))
e5501492 2344 goto end_coredump;
bf1ab978 2345
d025c9db 2346 /* Align to page */
1607f09c 2347 if (!dump_skip(cprm, dataoff - cprm->pos))
f3e8fccd 2348 goto end_coredump;
1da177e4 2349
52f5592e 2350 for (i = 0, vma = first_vma(current, gate_vma); vma != NULL;
f47aef55 2351 vma = next_vma(vma, gate_vma)) {
1da177e4 2352 unsigned long addr;
82df3973 2353 unsigned long end;
1da177e4 2354
52f5592e 2355 end = vma->vm_start + vma_filesz[i++];
1da177e4 2356
82df3973 2357 for (addr = vma->vm_start; addr < end; addr += PAGE_SIZE) {
f4e5cc2c 2358 struct page *page;
f3e8fccd
HD
2359 int stop;
2360
2361 page = get_dump_page(addr);
2362 if (page) {
2363 void *kaddr = kmap(page);
13046ece 2364 stop = !dump_emit(cprm, kaddr, PAGE_SIZE);
f3e8fccd 2365 kunmap(page);
09cbfeaf 2366 put_page(page);
f3e8fccd 2367 } else
9b56d543 2368 stop = !dump_skip(cprm, PAGE_SIZE);
f3e8fccd
HD
2369 if (stop)
2370 goto end_coredump;
1da177e4
LT
2371 }
2372 }
4d22c75d 2373 dump_truncate(cprm);
1da177e4 2374
aa3e7eaf 2375 if (!elf_core_write_extra_data(cprm))
1fcccbac 2376 goto end_coredump;
1da177e4 2377
8d9032bb 2378 if (e_phnum == PN_XNUM) {
13046ece 2379 if (!dump_emit(cprm, shdr4extnum, sizeof(*shdr4extnum)))
8d9032bb
DH
2380 goto end_coredump;
2381 }
2382
1da177e4
LT
2383end_coredump:
2384 set_fs(fs);
2385
2386cleanup:
3aba481f 2387 free_note_info(&info);
8d9032bb 2388 kfree(shdr4extnum);
86a2bb5a 2389 kvfree(vma_filesz);
93eb211e 2390 kfree(phdr4note);
5f719558
WC
2391 kfree(elf);
2392out:
1da177e4 2393 return has_dumped;
1da177e4
LT
2394}
2395
698ba7b5 2396#endif /* CONFIG_ELF_CORE */
1da177e4
LT
2397
2398static int __init init_elf_binfmt(void)
2399{
8fc3dc5a
AV
2400 register_binfmt(&elf_format);
2401 return 0;
1da177e4
LT
2402}
2403
2404static void __exit exit_elf_binfmt(void)
2405{
2406 /* Remove the COFF and ELF loaders. */
2407 unregister_binfmt(&elf_format);
2408}
2409
2410core_initcall(init_elf_binfmt);
2411module_exit(exit_elf_binfmt);
2412MODULE_LICENSE("GPL");