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09c434b8 1// SPDX-License-Identifier: GPL-2.0-only
1da177e4
LT
2/*
3 * linux/fs/binfmt_elf.c
4 *
5 * These are the functions used to load ELF format executables as used
6 * on SVr4 machines. Information on the format may be found in the book
7 * "UNIX SYSTEM V RELEASE 4 Programmers Guide: Ansi C and Programming Support
8 * Tools".
9 *
10 * Copyright 1993, 1994: Eric Youngdale (ericy@cais.com).
11 */
12
13#include <linux/module.h>
14#include <linux/kernel.h>
15#include <linux/fs.h>
ce81bb25 16#include <linux/log2.h>
1da177e4
LT
17#include <linux/mm.h>
18#include <linux/mman.h>
1da177e4
LT
19#include <linux/errno.h>
20#include <linux/signal.h>
21#include <linux/binfmts.h>
22#include <linux/string.h>
23#include <linux/file.h>
1da177e4 24#include <linux/slab.h>
1da177e4
LT
25#include <linux/personality.h>
26#include <linux/elfcore.h>
27#include <linux/init.h>
28#include <linux/highuid.h>
1da177e4
LT
29#include <linux/compiler.h>
30#include <linux/highmem.h>
03911132 31#include <linux/hugetlb.h>
1da177e4 32#include <linux/pagemap.h>
2aa362c4 33#include <linux/vmalloc.h>
1da177e4 34#include <linux/security.h>
1da177e4 35#include <linux/random.h>
f4e5cc2c 36#include <linux/elf.h>
d1fd836d 37#include <linux/elf-randomize.h>
7e80d0d0 38#include <linux/utsname.h>
088e7af7 39#include <linux/coredump.h>
6fac4829 40#include <linux/sched.h>
f7ccbae4 41#include <linux/sched/coredump.h>
68db0cf1 42#include <linux/sched/task_stack.h>
32ef5517 43#include <linux/sched/cputime.h>
00e19cee
DM
44#include <linux/sizes.h>
45#include <linux/types.h>
5b825c3a 46#include <linux/cred.h>
5037835c 47#include <linux/dax.h>
7c0f6ba6 48#include <linux/uaccess.h>
1da177e4
LT
49#include <asm/param.h>
50#include <asm/page.h>
51
00e19cee
DM
52#ifndef ELF_COMPAT
53#define ELF_COMPAT 0
54#endif
55
2aa362c4
DV
56#ifndef user_long_t
57#define user_long_t long
58#endif
49ae4d4b
DV
59#ifndef user_siginfo_t
60#define user_siginfo_t siginfo_t
61#endif
62
4755200b
NP
63/* That's for binfmt_elf_fdpic to deal with */
64#ifndef elf_check_fdpic
65#define elf_check_fdpic(ex) false
66#endif
67
71613c3b 68static int load_elf_binary(struct linux_binprm *bprm);
1da177e4 69
69369a70
JT
70#ifdef CONFIG_USELIB
71static int load_elf_library(struct file *);
72#else
73#define load_elf_library NULL
74#endif
75
1da177e4
LT
76/*
77 * If we don't support core dumping, then supply a NULL so we
78 * don't even try.
79 */
698ba7b5 80#ifdef CONFIG_ELF_CORE
f6151dfe 81static int elf_core_dump(struct coredump_params *cprm);
1da177e4
LT
82#else
83#define elf_core_dump NULL
84#endif
85
86#if ELF_EXEC_PAGESIZE > PAGE_SIZE
f4e5cc2c 87#define ELF_MIN_ALIGN ELF_EXEC_PAGESIZE
1da177e4 88#else
f4e5cc2c 89#define ELF_MIN_ALIGN PAGE_SIZE
1da177e4
LT
90#endif
91
92#ifndef ELF_CORE_EFLAGS
93#define ELF_CORE_EFLAGS 0
94#endif
95
96#define ELF_PAGESTART(_v) ((_v) & ~(unsigned long)(ELF_MIN_ALIGN-1))
97#define ELF_PAGEOFFSET(_v) ((_v) & (ELF_MIN_ALIGN-1))
98#define ELF_PAGEALIGN(_v) (((_v) + ELF_MIN_ALIGN - 1) & ~(ELF_MIN_ALIGN - 1))
99
100static struct linux_binfmt elf_format = {
f670d0ec
MP
101 .module = THIS_MODULE,
102 .load_binary = load_elf_binary,
103 .load_shlib = load_elf_library,
104 .core_dump = elf_core_dump,
105 .min_coredump = ELF_EXEC_PAGESIZE,
1da177e4
LT
106};
107
18676ffc 108#define BAD_ADDR(x) (unlikely((unsigned long)(x) >= TASK_SIZE))
1da177e4 109
16e72e9b 110static int set_brk(unsigned long start, unsigned long end, int prot)
1da177e4
LT
111{
112 start = ELF_PAGEALIGN(start);
113 end = ELF_PAGEALIGN(end);
114 if (end > start) {
16e72e9b
DV
115 /*
116 * Map the last of the bss segment.
117 * If the header is requesting these pages to be
118 * executable, honour that (ppc32 needs this).
119 */
120 int error = vm_brk_flags(start, end - start,
121 prot & PROT_EXEC ? VM_EXEC : 0);
5d22fc25
LT
122 if (error)
123 return error;
1da177e4
LT
124 }
125 current->mm->start_brk = current->mm->brk = end;
126 return 0;
127}
128
1da177e4
LT
129/* We need to explicitly zero any fractional pages
130 after the data section (i.e. bss). This would
131 contain the junk from the file that should not
f4e5cc2c
JJ
132 be in memory
133 */
1da177e4
LT
134static int padzero(unsigned long elf_bss)
135{
136 unsigned long nbyte;
137
138 nbyte = ELF_PAGEOFFSET(elf_bss);
139 if (nbyte) {
140 nbyte = ELF_MIN_ALIGN - nbyte;
141 if (clear_user((void __user *) elf_bss, nbyte))
142 return -EFAULT;
143 }
144 return 0;
145}
146
09c6dd3c 147/* Let's use some macros to make this stack manipulation a little clearer */
1da177e4
LT
148#ifdef CONFIG_STACK_GROWSUP
149#define STACK_ADD(sp, items) ((elf_addr_t __user *)(sp) + (items))
150#define STACK_ROUND(sp, items) \
151 ((15 + (unsigned long) ((sp) + (items))) &~ 15UL)
f4e5cc2c
JJ
152#define STACK_ALLOC(sp, len) ({ \
153 elf_addr_t __user *old_sp = (elf_addr_t __user *)sp; sp += len; \
154 old_sp; })
1da177e4
LT
155#else
156#define STACK_ADD(sp, items) ((elf_addr_t __user *)(sp) - (items))
157#define STACK_ROUND(sp, items) \
158 (((unsigned long) (sp - items)) &~ 15UL)
159#define STACK_ALLOC(sp, len) ({ sp -= len ; sp; })
160#endif
161
483fad1c
NL
162#ifndef ELF_BASE_PLATFORM
163/*
164 * AT_BASE_PLATFORM indicates the "real" hardware/microarchitecture.
165 * If the arch defines ELF_BASE_PLATFORM (in asm/elf.h), the value
166 * will be copied to the user stack in the same manner as AT_PLATFORM.
167 */
168#define ELF_BASE_PLATFORM NULL
169#endif
170
1da177e4 171static int
a62c5b1b 172create_elf_tables(struct linux_binprm *bprm, const struct elfhdr *exec,
f3e59b85
AK
173 unsigned long interp_load_addr,
174 unsigned long e_entry, unsigned long phdr_addr)
1da177e4 175{
03c6d723 176 struct mm_struct *mm = current->mm;
1da177e4
LT
177 unsigned long p = bprm->p;
178 int argc = bprm->argc;
179 int envc = bprm->envc;
1da177e4
LT
180 elf_addr_t __user *sp;
181 elf_addr_t __user *u_platform;
483fad1c 182 elf_addr_t __user *u_base_platform;
f06295b4 183 elf_addr_t __user *u_rand_bytes;
1da177e4 184 const char *k_platform = ELF_PLATFORM;
483fad1c 185 const char *k_base_platform = ELF_BASE_PLATFORM;
f06295b4 186 unsigned char k_rand_bytes[16];
1da177e4
LT
187 int items;
188 elf_addr_t *elf_info;
2347961b 189 elf_addr_t flags = 0;
1f83d806 190 int ei_index;
86a264ab 191 const struct cred *cred = current_cred();
b6a2fea3 192 struct vm_area_struct *vma;
1da177e4 193
d68c9d6a
FBH
194 /*
195 * In some cases (e.g. Hyper-Threading), we want to avoid L1
196 * evictions by the processes running on the same package. One
197 * thing we can do is to shuffle the initial stack for them.
198 */
199
200 p = arch_align_stack(p);
201
1da177e4
LT
202 /*
203 * If this architecture has a platform capability string, copy it
204 * to userspace. In some cases (Sparc), this info is impossible
205 * for userspace to get any other way, in others (i386) it is
206 * merely difficult.
207 */
1da177e4
LT
208 u_platform = NULL;
209 if (k_platform) {
210 size_t len = strlen(k_platform) + 1;
211
1da177e4 212 u_platform = (elf_addr_t __user *)STACK_ALLOC(p, len);
646e84de 213 if (copy_to_user(u_platform, k_platform, len))
1da177e4
LT
214 return -EFAULT;
215 }
216
483fad1c
NL
217 /*
218 * If this architecture has a "base" platform capability
219 * string, copy it to userspace.
220 */
221 u_base_platform = NULL;
222 if (k_base_platform) {
223 size_t len = strlen(k_base_platform) + 1;
224
225 u_base_platform = (elf_addr_t __user *)STACK_ALLOC(p, len);
646e84de 226 if (copy_to_user(u_base_platform, k_base_platform, len))
483fad1c
NL
227 return -EFAULT;
228 }
229
f06295b4
KC
230 /*
231 * Generate 16 random bytes for userspace PRNG seeding.
232 */
233 get_random_bytes(k_rand_bytes, sizeof(k_rand_bytes));
234 u_rand_bytes = (elf_addr_t __user *)
235 STACK_ALLOC(p, sizeof(k_rand_bytes));
646e84de 236 if (copy_to_user(u_rand_bytes, k_rand_bytes, sizeof(k_rand_bytes)))
f06295b4
KC
237 return -EFAULT;
238
1da177e4 239 /* Create the ELF interpreter info */
03c6d723 240 elf_info = (elf_addr_t *)mm->saved_auxv;
4f9a58d7 241 /* update AT_VECTOR_SIZE_BASE if the number of NEW_AUX_ENT() changes */
1da177e4 242#define NEW_AUX_ENT(id, val) \
f4e5cc2c 243 do { \
1f83d806
AD
244 *elf_info++ = id; \
245 *elf_info++ = val; \
f4e5cc2c 246 } while (0)
1da177e4
LT
247
248#ifdef ARCH_DLINFO
249 /*
250 * ARCH_DLINFO must come first so PPC can do its special alignment of
251 * AUXV.
4f9a58d7
OH
252 * update AT_VECTOR_SIZE_ARCH if the number of NEW_AUX_ENT() in
253 * ARCH_DLINFO changes
1da177e4
LT
254 */
255 ARCH_DLINFO;
256#endif
257 NEW_AUX_ENT(AT_HWCAP, ELF_HWCAP);
258 NEW_AUX_ENT(AT_PAGESZ, ELF_EXEC_PAGESIZE);
259 NEW_AUX_ENT(AT_CLKTCK, CLOCKS_PER_SEC);
f3e59b85 260 NEW_AUX_ENT(AT_PHDR, phdr_addr);
f4e5cc2c 261 NEW_AUX_ENT(AT_PHENT, sizeof(struct elf_phdr));
1da177e4
LT
262 NEW_AUX_ENT(AT_PHNUM, exec->e_phnum);
263 NEW_AUX_ENT(AT_BASE, interp_load_addr);
2347961b
LV
264 if (bprm->interp_flags & BINPRM_FLAGS_PRESERVE_ARGV0)
265 flags |= AT_FLAGS_PRESERVE_ARGV0;
266 NEW_AUX_ENT(AT_FLAGS, flags);
a62c5b1b 267 NEW_AUX_ENT(AT_ENTRY, e_entry);
ebc887b2
EB
268 NEW_AUX_ENT(AT_UID, from_kuid_munged(cred->user_ns, cred->uid));
269 NEW_AUX_ENT(AT_EUID, from_kuid_munged(cred->user_ns, cred->euid));
270 NEW_AUX_ENT(AT_GID, from_kgid_munged(cred->user_ns, cred->gid));
271 NEW_AUX_ENT(AT_EGID, from_kgid_munged(cred->user_ns, cred->egid));
c425e189 272 NEW_AUX_ENT(AT_SECURE, bprm->secureexec);
f06295b4 273 NEW_AUX_ENT(AT_RANDOM, (elf_addr_t)(unsigned long)u_rand_bytes);
2171364d
MN
274#ifdef ELF_HWCAP2
275 NEW_AUX_ENT(AT_HWCAP2, ELF_HWCAP2);
276#endif
65191087 277 NEW_AUX_ENT(AT_EXECFN, bprm->exec);
1da177e4 278 if (k_platform) {
f4e5cc2c 279 NEW_AUX_ENT(AT_PLATFORM,
785d5570 280 (elf_addr_t)(unsigned long)u_platform);
1da177e4 281 }
483fad1c
NL
282 if (k_base_platform) {
283 NEW_AUX_ENT(AT_BASE_PLATFORM,
284 (elf_addr_t)(unsigned long)u_base_platform);
285 }
b8a61c9e
EB
286 if (bprm->have_execfd) {
287 NEW_AUX_ENT(AT_EXECFD, bprm->execfd);
1da177e4
LT
288 }
289#undef NEW_AUX_ENT
290 /* AT_NULL is zero; clear the rest too */
03c6d723
AD
291 memset(elf_info, 0, (char *)mm->saved_auxv +
292 sizeof(mm->saved_auxv) - (char *)elf_info);
1da177e4
LT
293
294 /* And advance past the AT_NULL entry. */
1f83d806 295 elf_info += 2;
1da177e4 296
03c6d723 297 ei_index = elf_info - (elf_addr_t *)mm->saved_auxv;
1da177e4
LT
298 sp = STACK_ADD(p, ei_index);
299
d20894a2 300 items = (argc + 1) + (envc + 1) + 1;
1da177e4
LT
301 bprm->p = STACK_ROUND(sp, items);
302
303 /* Point sp at the lowest address on the stack */
304#ifdef CONFIG_STACK_GROWSUP
305 sp = (elf_addr_t __user *)bprm->p - items - ei_index;
f4e5cc2c 306 bprm->exec = (unsigned long)sp; /* XXX: PARISC HACK */
1da177e4
LT
307#else
308 sp = (elf_addr_t __user *)bprm->p;
309#endif
310
b6a2fea3
OW
311
312 /*
313 * Grow the stack manually; some architectures have a limit on how
314 * far ahead a user-space access may be in order to grow the stack.
315 */
b2767d97
JH
316 if (mmap_read_lock_killable(mm))
317 return -EINTR;
03c6d723 318 vma = find_extend_vma(mm, bprm->p);
b2767d97 319 mmap_read_unlock(mm);
b6a2fea3
OW
320 if (!vma)
321 return -EFAULT;
322
1da177e4 323 /* Now, let's put argc (and argv, envp if appropriate) on the stack */
646e84de 324 if (put_user(argc, sp++))
1da177e4 325 return -EFAULT;
1da177e4 326
67c6777a 327 /* Populate list of argv pointers back to argv strings. */
03c6d723 328 p = mm->arg_end = mm->arg_start;
1da177e4
LT
329 while (argc-- > 0) {
330 size_t len;
646e84de 331 if (put_user((elf_addr_t)p, sp++))
841d5fb7 332 return -EFAULT;
b6a2fea3
OW
333 len = strnlen_user((void __user *)p, MAX_ARG_STRLEN);
334 if (!len || len > MAX_ARG_STRLEN)
23c4971e 335 return -EINVAL;
1da177e4
LT
336 p += len;
337 }
646e84de 338 if (put_user(0, sp++))
1da177e4 339 return -EFAULT;
03c6d723 340 mm->arg_end = p;
67c6777a
KC
341
342 /* Populate list of envp pointers back to envp strings. */
03c6d723 343 mm->env_end = mm->env_start = p;
1da177e4
LT
344 while (envc-- > 0) {
345 size_t len;
646e84de 346 if (put_user((elf_addr_t)p, sp++))
841d5fb7 347 return -EFAULT;
b6a2fea3
OW
348 len = strnlen_user((void __user *)p, MAX_ARG_STRLEN);
349 if (!len || len > MAX_ARG_STRLEN)
23c4971e 350 return -EINVAL;
1da177e4
LT
351 p += len;
352 }
646e84de 353 if (put_user(0, sp++))
1da177e4 354 return -EFAULT;
03c6d723 355 mm->env_end = p;
1da177e4
LT
356
357 /* Put the elf_info on the stack in the right place. */
03c6d723 358 if (copy_to_user(sp, mm->saved_auxv, ei_index * sizeof(elf_addr_t)))
1da177e4
LT
359 return -EFAULT;
360 return 0;
361}
362
1da177e4 363static unsigned long elf_map(struct file *filep, unsigned long addr,
49ac9819 364 const struct elf_phdr *eppnt, int prot, int type,
cc503c1b 365 unsigned long total_size)
1da177e4
LT
366{
367 unsigned long map_addr;
cc503c1b
JK
368 unsigned long size = eppnt->p_filesz + ELF_PAGEOFFSET(eppnt->p_vaddr);
369 unsigned long off = eppnt->p_offset - ELF_PAGEOFFSET(eppnt->p_vaddr);
370 addr = ELF_PAGESTART(addr);
371 size = ELF_PAGEALIGN(size);
1da177e4 372
dda6ebde
DG
373 /* mmap() will return -EINVAL if given a zero size, but a
374 * segment with zero filesize is perfectly valid */
cc503c1b
JK
375 if (!size)
376 return addr;
377
cc503c1b
JK
378 /*
379 * total_size is the size of the ELF (interpreter) image.
380 * The _first_ mmap needs to know the full size, otherwise
381 * randomization might put this image into an overlapping
382 * position with the ELF binary image. (since size < total_size)
383 * So we first map the 'big' image - and unmap the remainder at
384 * the end. (which unmap is needed for ELF images with holes.)
385 */
386 if (total_size) {
387 total_size = ELF_PAGEALIGN(total_size);
5a5e4c2e 388 map_addr = vm_mmap(filep, addr, total_size, prot, type, off);
cc503c1b 389 if (!BAD_ADDR(map_addr))
5a5e4c2e 390 vm_munmap(map_addr+size, total_size-size);
cc503c1b 391 } else
5a5e4c2e 392 map_addr = vm_mmap(filep, addr, size, prot, type, off);
cc503c1b 393
d23a61ee
TH
394 if ((type & MAP_FIXED_NOREPLACE) &&
395 PTR_ERR((void *)map_addr) == -EEXIST)
396 pr_info("%d (%s): Uhuuh, elf segment at %px requested but the memory is mapped already\n",
397 task_pid_nr(current), current->comm, (void *)addr);
4ed28639 398
1da177e4
LT
399 return(map_addr);
400}
401
49ac9819 402static unsigned long total_mapping_size(const struct elf_phdr *cmds, int nr)
cc503c1b
JK
403{
404 int i, first_idx = -1, last_idx = -1;
405
406 for (i = 0; i < nr; i++) {
407 if (cmds[i].p_type == PT_LOAD) {
408 last_idx = i;
409 if (first_idx == -1)
410 first_idx = i;
411 }
412 }
413 if (first_idx == -1)
414 return 0;
415
416 return cmds[last_idx].p_vaddr + cmds[last_idx].p_memsz -
417 ELF_PAGESTART(cmds[first_idx].p_vaddr);
418}
419
658c0335
AD
420static int elf_read(struct file *file, void *buf, size_t len, loff_t pos)
421{
422 ssize_t rv;
423
424 rv = kernel_read(file, buf, len, &pos);
425 if (unlikely(rv != len)) {
426 return (rv < 0) ? rv : -EIO;
427 }
428 return 0;
429}
430
ce81bb25
CK
431static unsigned long maximum_alignment(struct elf_phdr *cmds, int nr)
432{
433 unsigned long alignment = 0;
434 int i;
435
436 for (i = 0; i < nr; i++) {
437 if (cmds[i].p_type == PT_LOAD) {
438 unsigned long p_align = cmds[i].p_align;
439
440 /* skip non-power of two alignments as invalid */
441 if (!is_power_of_2(p_align))
442 continue;
443 alignment = max(alignment, p_align);
444 }
445 }
446
447 /* ensure we align to at least one page */
448 return ELF_PAGEALIGN(alignment);
449}
450
6a8d3894
PB
451/**
452 * load_elf_phdrs() - load ELF program headers
453 * @elf_ex: ELF header of the binary whose program headers should be loaded
454 * @elf_file: the opened ELF binary file
455 *
456 * Loads ELF program headers from the binary file elf_file, which has the ELF
457 * header pointed to by elf_ex, into a newly allocated array. The caller is
458 * responsible for freeing the allocated data. Returns an ERR_PTR upon failure.
459 */
49ac9819 460static struct elf_phdr *load_elf_phdrs(const struct elfhdr *elf_ex,
6a8d3894
PB
461 struct file *elf_file)
462{
463 struct elf_phdr *elf_phdata = NULL;
faf1c315 464 int retval, err = -1;
faf1c315 465 unsigned int size;
6a8d3894
PB
466
467 /*
468 * If the size of this structure has changed, then punt, since
469 * we will be doing the wrong thing.
470 */
471 if (elf_ex->e_phentsize != sizeof(struct elf_phdr))
472 goto out;
473
474 /* Sanity check the number of program headers... */
6a8d3894
PB
475 /* ...and their total size. */
476 size = sizeof(struct elf_phdr) * elf_ex->e_phnum;
faf1c315 477 if (size == 0 || size > 65536 || size > ELF_MIN_ALIGN)
6a8d3894
PB
478 goto out;
479
480 elf_phdata = kmalloc(size, GFP_KERNEL);
481 if (!elf_phdata)
482 goto out;
483
484 /* Read in the program headers */
658c0335
AD
485 retval = elf_read(elf_file, elf_phdata, size, elf_ex->e_phoff);
486 if (retval < 0) {
487 err = retval;
6a8d3894
PB
488 goto out;
489 }
490
491 /* Success! */
492 err = 0;
493out:
494 if (err) {
495 kfree(elf_phdata);
496 elf_phdata = NULL;
497 }
498 return elf_phdata;
499}
cc503c1b 500
774c105e
PB
501#ifndef CONFIG_ARCH_BINFMT_ELF_STATE
502
503/**
504 * struct arch_elf_state - arch-specific ELF loading state
505 *
506 * This structure is used to preserve architecture specific data during
507 * the loading of an ELF file, throughout the checking of architecture
508 * specific ELF headers & through to the point where the ELF load is
509 * known to be proceeding (ie. SET_PERSONALITY).
510 *
511 * This implementation is a dummy for architectures which require no
512 * specific state.
513 */
514struct arch_elf_state {
515};
516
517#define INIT_ARCH_ELF_STATE {}
518
519/**
520 * arch_elf_pt_proc() - check a PT_LOPROC..PT_HIPROC ELF program header
521 * @ehdr: The main ELF header
522 * @phdr: The program header to check
523 * @elf: The open ELF file
524 * @is_interp: True if the phdr is from the interpreter of the ELF being
525 * loaded, else false.
526 * @state: Architecture-specific state preserved throughout the process
527 * of loading the ELF.
528 *
529 * Inspects the program header phdr to validate its correctness and/or
530 * suitability for the system. Called once per ELF program header in the
531 * range PT_LOPROC to PT_HIPROC, for both the ELF being loaded and its
532 * interpreter.
533 *
534 * Return: Zero to proceed with the ELF load, non-zero to fail the ELF load
535 * with that return code.
536 */
537static inline int arch_elf_pt_proc(struct elfhdr *ehdr,
538 struct elf_phdr *phdr,
539 struct file *elf, bool is_interp,
540 struct arch_elf_state *state)
541{
542 /* Dummy implementation, always proceed */
543 return 0;
544}
545
546/**
54d15714 547 * arch_check_elf() - check an ELF executable
774c105e
PB
548 * @ehdr: The main ELF header
549 * @has_interp: True if the ELF has an interpreter, else false.
eb4bc076 550 * @interp_ehdr: The interpreter's ELF header
774c105e
PB
551 * @state: Architecture-specific state preserved throughout the process
552 * of loading the ELF.
553 *
554 * Provides a final opportunity for architecture code to reject the loading
555 * of the ELF & cause an exec syscall to return an error. This is called after
556 * all program headers to be checked by arch_elf_pt_proc have been.
557 *
558 * Return: Zero to proceed with the ELF load, non-zero to fail the ELF load
559 * with that return code.
560 */
561static inline int arch_check_elf(struct elfhdr *ehdr, bool has_interp,
eb4bc076 562 struct elfhdr *interp_ehdr,
774c105e
PB
563 struct arch_elf_state *state)
564{
565 /* Dummy implementation, always proceed */
566 return 0;
567}
568
569#endif /* !CONFIG_ARCH_BINFMT_ELF_STATE */
cc503c1b 570
fe0f6766
DM
571static inline int make_prot(u32 p_flags, struct arch_elf_state *arch_state,
572 bool has_interp, bool is_interp)
d8e7cb39
AD
573{
574 int prot = 0;
575
576 if (p_flags & PF_R)
577 prot |= PROT_READ;
578 if (p_flags & PF_W)
579 prot |= PROT_WRITE;
580 if (p_flags & PF_X)
581 prot |= PROT_EXEC;
fe0f6766
DM
582
583 return arch_elf_adjust_prot(prot, arch_state, has_interp, is_interp);
d8e7cb39
AD
584}
585
1da177e4
LT
586/* This is much more generalized than the library routine read function,
587 so we keep this separate. Technically the library read function
588 is only provided so that we can read a.out libraries that have
589 an ELF header */
590
f4e5cc2c 591static unsigned long load_elf_interp(struct elfhdr *interp_elf_ex,
81696d5d 592 struct file *interpreter,
fe0f6766
DM
593 unsigned long no_base, struct elf_phdr *interp_elf_phdata,
594 struct arch_elf_state *arch_state)
1da177e4 595{
1da177e4
LT
596 struct elf_phdr *eppnt;
597 unsigned long load_addr = 0;
598 int load_addr_set = 0;
599 unsigned long last_bss = 0, elf_bss = 0;
16e72e9b 600 int bss_prot = 0;
1da177e4 601 unsigned long error = ~0UL;
cc503c1b 602 unsigned long total_size;
6a8d3894 603 int i;
1da177e4
LT
604
605 /* First of all, some simple consistency checks */
606 if (interp_elf_ex->e_type != ET_EXEC &&
607 interp_elf_ex->e_type != ET_DYN)
608 goto out;
4755200b
NP
609 if (!elf_check_arch(interp_elf_ex) ||
610 elf_check_fdpic(interp_elf_ex))
1da177e4 611 goto out;
72c2d531 612 if (!interpreter->f_op->mmap)
1da177e4
LT
613 goto out;
614
a9d9ef13
PB
615 total_size = total_mapping_size(interp_elf_phdata,
616 interp_elf_ex->e_phnum);
cc503c1b
JK
617 if (!total_size) {
618 error = -EINVAL;
a9d9ef13 619 goto out;
cc503c1b
JK
620 }
621
a9d9ef13 622 eppnt = interp_elf_phdata;
f4e5cc2c
JJ
623 for (i = 0; i < interp_elf_ex->e_phnum; i++, eppnt++) {
624 if (eppnt->p_type == PT_LOAD) {
4589ff7c 625 int elf_type = MAP_PRIVATE;
fe0f6766
DM
626 int elf_prot = make_prot(eppnt->p_flags, arch_state,
627 true, true);
f4e5cc2c
JJ
628 unsigned long vaddr = 0;
629 unsigned long k, map_addr;
630
f4e5cc2c
JJ
631 vaddr = eppnt->p_vaddr;
632 if (interp_elf_ex->e_type == ET_EXEC || load_addr_set)
9b2f72cc 633 elf_type |= MAP_FIXED;
cc503c1b
JK
634 else if (no_base && interp_elf_ex->e_type == ET_DYN)
635 load_addr = -vaddr;
f4e5cc2c
JJ
636
637 map_addr = elf_map(interpreter, load_addr + vaddr,
bb1ad820 638 eppnt, elf_prot, elf_type, total_size);
cc503c1b 639 total_size = 0;
f4e5cc2c
JJ
640 error = map_addr;
641 if (BAD_ADDR(map_addr))
a9d9ef13 642 goto out;
f4e5cc2c
JJ
643
644 if (!load_addr_set &&
645 interp_elf_ex->e_type == ET_DYN) {
646 load_addr = map_addr - ELF_PAGESTART(vaddr);
647 load_addr_set = 1;
648 }
649
650 /*
651 * Check to see if the section's size will overflow the
652 * allowed task size. Note that p_filesz must always be
653 * <= p_memsize so it's only necessary to check p_memsz.
654 */
655 k = load_addr + eppnt->p_vaddr;
ce51059b 656 if (BAD_ADDR(k) ||
f4e5cc2c
JJ
657 eppnt->p_filesz > eppnt->p_memsz ||
658 eppnt->p_memsz > TASK_SIZE ||
659 TASK_SIZE - eppnt->p_memsz < k) {
660 error = -ENOMEM;
a9d9ef13 661 goto out;
f4e5cc2c
JJ
662 }
663
664 /*
665 * Find the end of the file mapping for this phdr, and
666 * keep track of the largest address we see for this.
667 */
668 k = load_addr + eppnt->p_vaddr + eppnt->p_filesz;
669 if (k > elf_bss)
670 elf_bss = k;
671
672 /*
673 * Do the same thing for the memory mapping - between
674 * elf_bss and last_bss is the bss section.
675 */
0036d1f7 676 k = load_addr + eppnt->p_vaddr + eppnt->p_memsz;
16e72e9b 677 if (k > last_bss) {
f4e5cc2c 678 last_bss = k;
16e72e9b
DV
679 bss_prot = elf_prot;
680 }
f4e5cc2c 681 }
1da177e4
LT
682 }
683
0036d1f7
KC
684 /*
685 * Now fill out the bss section: first pad the last page from
686 * the file up to the page boundary, and zero it from elf_bss
687 * up to the end of the page.
688 */
689 if (padzero(elf_bss)) {
690 error = -EFAULT;
691 goto out;
692 }
693 /*
694 * Next, align both the file and mem bss up to the page size,
695 * since this is where elf_bss was just zeroed up to, and where
16e72e9b 696 * last_bss will end after the vm_brk_flags() below.
0036d1f7
KC
697 */
698 elf_bss = ELF_PAGEALIGN(elf_bss);
699 last_bss = ELF_PAGEALIGN(last_bss);
700 /* Finally, if there is still more bss to allocate, do it. */
752015d1 701 if (last_bss > elf_bss) {
16e72e9b
DV
702 error = vm_brk_flags(elf_bss, last_bss - elf_bss,
703 bss_prot & PROT_EXEC ? VM_EXEC : 0);
5d22fc25 704 if (error)
a9d9ef13 705 goto out;
1da177e4
LT
706 }
707
cc503c1b 708 error = load_addr;
1da177e4
LT
709out:
710 return error;
711}
712
1da177e4
LT
713/*
714 * These are the functions used to load ELF style executables and shared
715 * libraries. There is no binary dependent code anywhere else.
716 */
717
00e19cee
DM
718static int parse_elf_property(const char *data, size_t *off, size_t datasz,
719 struct arch_elf_state *arch,
720 bool have_prev_type, u32 *prev_type)
721{
722 size_t o, step;
723 const struct gnu_property *pr;
724 int ret;
725
726 if (*off == datasz)
727 return -ENOENT;
728
729 if (WARN_ON_ONCE(*off > datasz || *off % ELF_GNU_PROPERTY_ALIGN))
730 return -EIO;
731 o = *off;
732 datasz -= *off;
733
734 if (datasz < sizeof(*pr))
735 return -ENOEXEC;
736 pr = (const struct gnu_property *)(data + o);
737 o += sizeof(*pr);
738 datasz -= sizeof(*pr);
739
740 if (pr->pr_datasz > datasz)
741 return -ENOEXEC;
742
743 WARN_ON_ONCE(o % ELF_GNU_PROPERTY_ALIGN);
744 step = round_up(pr->pr_datasz, ELF_GNU_PROPERTY_ALIGN);
745 if (step > datasz)
746 return -ENOEXEC;
747
748 /* Properties are supposed to be unique and sorted on pr_type: */
749 if (have_prev_type && pr->pr_type <= *prev_type)
750 return -ENOEXEC;
751 *prev_type = pr->pr_type;
752
753 ret = arch_parse_elf_property(pr->pr_type, data + o,
754 pr->pr_datasz, ELF_COMPAT, arch);
755 if (ret)
756 return ret;
757
758 *off = o + step;
759 return 0;
760}
761
762#define NOTE_DATA_SZ SZ_1K
763#define GNU_PROPERTY_TYPE_0_NAME "GNU"
764#define NOTE_NAME_SZ (sizeof(GNU_PROPERTY_TYPE_0_NAME))
765
766static int parse_elf_properties(struct file *f, const struct elf_phdr *phdr,
767 struct arch_elf_state *arch)
768{
769 union {
770 struct elf_note nhdr;
771 char data[NOTE_DATA_SZ];
772 } note;
773 loff_t pos;
774 ssize_t n;
775 size_t off, datasz;
776 int ret;
777 bool have_prev_type;
778 u32 prev_type;
779
780 if (!IS_ENABLED(CONFIG_ARCH_USE_GNU_PROPERTY) || !phdr)
781 return 0;
782
783 /* load_elf_binary() shouldn't call us unless this is true... */
784 if (WARN_ON_ONCE(phdr->p_type != PT_GNU_PROPERTY))
785 return -ENOEXEC;
786
787 /* If the properties are crazy large, that's too bad (for now): */
788 if (phdr->p_filesz > sizeof(note))
789 return -ENOEXEC;
790
791 pos = phdr->p_offset;
792 n = kernel_read(f, &note, phdr->p_filesz, &pos);
793
794 BUILD_BUG_ON(sizeof(note) < sizeof(note.nhdr) + NOTE_NAME_SZ);
795 if (n < 0 || n < sizeof(note.nhdr) + NOTE_NAME_SZ)
796 return -EIO;
797
798 if (note.nhdr.n_type != NT_GNU_PROPERTY_TYPE_0 ||
799 note.nhdr.n_namesz != NOTE_NAME_SZ ||
800 strncmp(note.data + sizeof(note.nhdr),
801 GNU_PROPERTY_TYPE_0_NAME, n - sizeof(note.nhdr)))
802 return -ENOEXEC;
803
804 off = round_up(sizeof(note.nhdr) + NOTE_NAME_SZ,
805 ELF_GNU_PROPERTY_ALIGN);
806 if (off > n)
807 return -ENOEXEC;
808
809 if (note.nhdr.n_descsz > n - off)
810 return -ENOEXEC;
811 datasz = off + note.nhdr.n_descsz;
812
813 have_prev_type = false;
814 do {
815 ret = parse_elf_property(note.data, &off, datasz, arch,
816 have_prev_type, &prev_type);
817 have_prev_type = true;
818 } while (!ret);
819
820 return ret == -ENOENT ? 0 : ret;
821}
822
71613c3b 823static int load_elf_binary(struct linux_binprm *bprm)
1da177e4
LT
824{
825 struct file *interpreter = NULL; /* to shut gcc up */
f3e59b85 826 unsigned long load_addr, load_bias = 0, phdr_addr = 0;
1da177e4 827 int load_addr_set = 0;
1da177e4 828 unsigned long error;
a9d9ef13 829 struct elf_phdr *elf_ppnt, *elf_phdata, *interp_elf_phdata = NULL;
00e19cee 830 struct elf_phdr *elf_property_phdata = NULL;
1da177e4 831 unsigned long elf_bss, elf_brk;
16e72e9b 832 int bss_prot = 0;
1da177e4 833 int retval, i;
cc503c1b 834 unsigned long elf_entry;
a62c5b1b 835 unsigned long e_entry;
cc503c1b 836 unsigned long interp_load_addr = 0;
1da177e4 837 unsigned long start_code, end_code, start_data, end_data;
1a530a6f 838 unsigned long reloc_func_desc __maybe_unused = 0;
8de61e69 839 int executable_stack = EXSTACK_DEFAULT;
a62c5b1b 840 struct elfhdr *elf_ex = (struct elfhdr *)bprm->buf;
0693ffeb 841 struct elfhdr *interp_elf_ex = NULL;
774c105e 842 struct arch_elf_state arch_state = INIT_ARCH_ELF_STATE;
03c6d723 843 struct mm_struct *mm;
249b08e4 844 struct pt_regs *regs;
1da177e4 845
1da177e4
LT
846 retval = -ENOEXEC;
847 /* First of all, some simple consistency checks */
a62c5b1b 848 if (memcmp(elf_ex->e_ident, ELFMAG, SELFMAG) != 0)
1da177e4
LT
849 goto out;
850
a62c5b1b 851 if (elf_ex->e_type != ET_EXEC && elf_ex->e_type != ET_DYN)
1da177e4 852 goto out;
a62c5b1b 853 if (!elf_check_arch(elf_ex))
1da177e4 854 goto out;
a62c5b1b 855 if (elf_check_fdpic(elf_ex))
4755200b 856 goto out;
72c2d531 857 if (!bprm->file->f_op->mmap)
1da177e4
LT
858 goto out;
859
a62c5b1b 860 elf_phdata = load_elf_phdrs(elf_ex, bprm->file);
1da177e4
LT
861 if (!elf_phdata)
862 goto out;
863
1da177e4 864 elf_ppnt = elf_phdata;
a62c5b1b 865 for (i = 0; i < elf_ex->e_phnum; i++, elf_ppnt++) {
be0deb58 866 char *elf_interpreter;
1da177e4 867
00e19cee
DM
868 if (elf_ppnt->p_type == PT_GNU_PROPERTY) {
869 elf_property_phdata = elf_ppnt;
870 continue;
871 }
872
be0deb58
AD
873 if (elf_ppnt->p_type != PT_INTERP)
874 continue;
1fb84496 875
be0deb58
AD
876 /*
877 * This is the program interpreter used for shared libraries -
878 * for now assume that this is an a.out format binary.
879 */
880 retval = -ENOEXEC;
881 if (elf_ppnt->p_filesz > PATH_MAX || elf_ppnt->p_filesz < 2)
882 goto out_free_ph;
1da177e4 883
be0deb58
AD
884 retval = -ENOMEM;
885 elf_interpreter = kmalloc(elf_ppnt->p_filesz, GFP_KERNEL);
886 if (!elf_interpreter)
887 goto out_free_ph;
cc338010 888
658c0335
AD
889 retval = elf_read(bprm->file, elf_interpreter, elf_ppnt->p_filesz,
890 elf_ppnt->p_offset);
891 if (retval < 0)
be0deb58 892 goto out_free_interp;
be0deb58
AD
893 /* make sure path is NULL terminated */
894 retval = -ENOEXEC;
895 if (elf_interpreter[elf_ppnt->p_filesz - 1] != '\0')
896 goto out_free_interp;
897
898 interpreter = open_exec(elf_interpreter);
899 kfree(elf_interpreter);
900 retval = PTR_ERR(interpreter);
901 if (IS_ERR(interpreter))
cc338010 902 goto out_free_ph;
be0deb58
AD
903
904 /*
905 * If the binary is not readable then enforce mm->dumpable = 0
906 * regardless of the interpreter's permissions.
907 */
908 would_dump(bprm, interpreter);
909
0693ffeb
AD
910 interp_elf_ex = kmalloc(sizeof(*interp_elf_ex), GFP_KERNEL);
911 if (!interp_elf_ex) {
912 retval = -ENOMEM;
913 goto out_free_ph;
914 }
915
be0deb58 916 /* Get the exec headers */
c69bcc93
AD
917 retval = elf_read(interpreter, interp_elf_ex,
918 sizeof(*interp_elf_ex), 0);
658c0335 919 if (retval < 0)
be0deb58 920 goto out_free_dentry;
be0deb58
AD
921
922 break;
923
924out_free_interp:
925 kfree(elf_interpreter);
926 goto out_free_ph;
1da177e4
LT
927 }
928
929 elf_ppnt = elf_phdata;
a62c5b1b 930 for (i = 0; i < elf_ex->e_phnum; i++, elf_ppnt++)
774c105e
PB
931 switch (elf_ppnt->p_type) {
932 case PT_GNU_STACK:
1da177e4
LT
933 if (elf_ppnt->p_flags & PF_X)
934 executable_stack = EXSTACK_ENABLE_X;
935 else
936 executable_stack = EXSTACK_DISABLE_X;
937 break;
774c105e
PB
938
939 case PT_LOPROC ... PT_HIPROC:
a62c5b1b 940 retval = arch_elf_pt_proc(elf_ex, elf_ppnt,
774c105e
PB
941 bprm->file, false,
942 &arch_state);
943 if (retval)
944 goto out_free_dentry;
945 break;
1da177e4 946 }
1da177e4
LT
947
948 /* Some simple consistency checks for the interpreter */
cc338010 949 if (interpreter) {
1da177e4 950 retval = -ELIBBAD;
d20894a2 951 /* Not an ELF interpreter */
c69bcc93 952 if (memcmp(interp_elf_ex->e_ident, ELFMAG, SELFMAG) != 0)
1da177e4 953 goto out_free_dentry;
1da177e4 954 /* Verify the interpreter has a valid arch */
c69bcc93
AD
955 if (!elf_check_arch(interp_elf_ex) ||
956 elf_check_fdpic(interp_elf_ex))
1da177e4 957 goto out_free_dentry;
a9d9ef13
PB
958
959 /* Load the interpreter program headers */
c69bcc93 960 interp_elf_phdata = load_elf_phdrs(interp_elf_ex,
a9d9ef13
PB
961 interpreter);
962 if (!interp_elf_phdata)
963 goto out_free_dentry;
774c105e
PB
964
965 /* Pass PT_LOPROC..PT_HIPROC headers to arch code */
00e19cee 966 elf_property_phdata = NULL;
774c105e 967 elf_ppnt = interp_elf_phdata;
c69bcc93 968 for (i = 0; i < interp_elf_ex->e_phnum; i++, elf_ppnt++)
774c105e 969 switch (elf_ppnt->p_type) {
00e19cee
DM
970 case PT_GNU_PROPERTY:
971 elf_property_phdata = elf_ppnt;
972 break;
973
774c105e 974 case PT_LOPROC ... PT_HIPROC:
c69bcc93 975 retval = arch_elf_pt_proc(interp_elf_ex,
774c105e
PB
976 elf_ppnt, interpreter,
977 true, &arch_state);
978 if (retval)
979 goto out_free_dentry;
980 break;
981 }
1da177e4
LT
982 }
983
00e19cee
DM
984 retval = parse_elf_properties(interpreter ?: bprm->file,
985 elf_property_phdata, &arch_state);
986 if (retval)
987 goto out_free_dentry;
988
774c105e
PB
989 /*
990 * Allow arch code to reject the ELF at this point, whilst it's
991 * still possible to return an error to the code that invoked
992 * the exec syscall.
993 */
a62c5b1b 994 retval = arch_check_elf(elf_ex,
c69bcc93 995 !!interpreter, interp_elf_ex,
eb4bc076 996 &arch_state);
774c105e
PB
997 if (retval)
998 goto out_free_dentry;
999
1da177e4 1000 /* Flush all traces of the currently running executable */
2388777a 1001 retval = begin_new_exec(bprm);
1da177e4
LT
1002 if (retval)
1003 goto out_free_dentry;
1004
1da177e4
LT
1005 /* Do this immediately, since STACK_TOP as used in setup_arg_pages
1006 may depend on the personality. */
a62c5b1b
AD
1007 SET_PERSONALITY2(*elf_ex, &arch_state);
1008 if (elf_read_implies_exec(*elf_ex, executable_stack))
1da177e4
LT
1009 current->personality |= READ_IMPLIES_EXEC;
1010
f4e5cc2c 1011 if (!(current->personality & ADDR_NO_RANDOMIZE) && randomize_va_space)
1da177e4 1012 current->flags |= PF_RANDOMIZE;
221af7f8
LT
1013
1014 setup_new_exec(bprm);
1da177e4
LT
1015
1016 /* Do this so that we can load the interpreter, if need be. We will
1017 change some of these later */
1da177e4
LT
1018 retval = setup_arg_pages(bprm, randomize_stack_top(STACK_TOP),
1019 executable_stack);
19d860a1 1020 if (retval < 0)
1da177e4 1021 goto out_free_dentry;
1da177e4 1022
85264316
AD
1023 elf_bss = 0;
1024 elf_brk = 0;
1025
1026 start_code = ~0UL;
1027 end_code = 0;
1028 start_data = 0;
1029 end_data = 0;
1030
af901ca1 1031 /* Now we do a little grungy work by mmapping the ELF image into
cc503c1b 1032 the correct location in memory. */
f4e5cc2c 1033 for(i = 0, elf_ppnt = elf_phdata;
a62c5b1b 1034 i < elf_ex->e_phnum; i++, elf_ppnt++) {
b212921b 1035 int elf_prot, elf_flags;
1da177e4 1036 unsigned long k, vaddr;
a87938b2 1037 unsigned long total_size = 0;
ce81bb25 1038 unsigned long alignment;
1da177e4
LT
1039
1040 if (elf_ppnt->p_type != PT_LOAD)
1041 continue;
1042
1043 if (unlikely (elf_brk > elf_bss)) {
1044 unsigned long nbyte;
1045
1046 /* There was a PT_LOAD segment with p_memsz > p_filesz
1047 before this one. Map anonymous pages, if needed,
1048 and clear the area. */
f670d0ec 1049 retval = set_brk(elf_bss + load_bias,
16e72e9b
DV
1050 elf_brk + load_bias,
1051 bss_prot);
19d860a1 1052 if (retval)
1da177e4 1053 goto out_free_dentry;
1da177e4
LT
1054 nbyte = ELF_PAGEOFFSET(elf_bss);
1055 if (nbyte) {
1056 nbyte = ELF_MIN_ALIGN - nbyte;
1057 if (nbyte > elf_brk - elf_bss)
1058 nbyte = elf_brk - elf_bss;
1059 if (clear_user((void __user *)elf_bss +
1060 load_bias, nbyte)) {
1061 /*
1062 * This bss-zeroing can fail if the ELF
f4e5cc2c 1063 * file specifies odd protections. So
1da177e4
LT
1064 * we don't check the return value
1065 */
1066 }
1067 }
1068 }
1069
fe0f6766
DM
1070 elf_prot = make_prot(elf_ppnt->p_flags, &arch_state,
1071 !!interpreter, false);
1da177e4 1072
4589ff7c 1073 elf_flags = MAP_PRIVATE;
1da177e4
LT
1074
1075 vaddr = elf_ppnt->p_vaddr;
eab09532
KC
1076 /*
1077 * If we are loading ET_EXEC or we have already performed
1078 * the ET_DYN load_addr calculations, proceed normally.
1079 */
a62c5b1b 1080 if (elf_ex->e_type == ET_EXEC || load_addr_set) {
b212921b 1081 elf_flags |= MAP_FIXED;
a62c5b1b 1082 } else if (elf_ex->e_type == ET_DYN) {
eab09532
KC
1083 /*
1084 * This logic is run once for the first LOAD Program
1085 * Header for ET_DYN binaries to calculate the
1086 * randomization (load_bias) for all the LOAD
1087 * Program Headers, and to calculate the entire
1088 * size of the ELF mapping (total_size). (Note that
1089 * load_addr_set is set to true later once the
1090 * initial mapping is performed.)
1091 *
1092 * There are effectively two types of ET_DYN
1093 * binaries: programs (i.e. PIE: ET_DYN with INTERP)
1094 * and loaders (ET_DYN without INTERP, since they
1095 * _are_ the ELF interpreter). The loaders must
1096 * be loaded away from programs since the program
1097 * may otherwise collide with the loader (especially
1098 * for ET_EXEC which does not have a randomized
1099 * position). For example to handle invocations of
1100 * "./ld.so someprog" to test out a new version of
1101 * the loader, the subsequent program that the
1102 * loader loads must avoid the loader itself, so
1103 * they cannot share the same load range. Sufficient
1104 * room for the brk must be allocated with the
1105 * loader as well, since brk must be available with
1106 * the loader.
1107 *
1108 * Therefore, programs are loaded offset from
1109 * ELF_ET_DYN_BASE and loaders are loaded into the
1110 * independently randomized mmap region (0 load_bias
1111 * without MAP_FIXED).
1112 */
cc338010 1113 if (interpreter) {
eab09532
KC
1114 load_bias = ELF_ET_DYN_BASE;
1115 if (current->flags & PF_RANDOMIZE)
1116 load_bias += arch_mmap_rnd();
ce81bb25
CK
1117 alignment = maximum_alignment(elf_phdata, elf_ex->e_phnum);
1118 if (alignment)
1119 load_bias &= ~(alignment - 1);
b212921b 1120 elf_flags |= MAP_FIXED;
eab09532
KC
1121 } else
1122 load_bias = 0;
1123
1124 /*
1125 * Since load_bias is used for all subsequent loading
1126 * calculations, we must lower it by the first vaddr
1127 * so that the remaining calculations based on the
1128 * ELF vaddrs will be correctly offset. The result
1129 * is then page aligned.
1130 */
1131 load_bias = ELF_PAGESTART(load_bias - vaddr);
1132
a87938b2 1133 total_size = total_mapping_size(elf_phdata,
a62c5b1b 1134 elf_ex->e_phnum);
a87938b2 1135 if (!total_size) {
2b1d3ae9 1136 retval = -EINVAL;
a87938b2
MD
1137 goto out_free_dentry;
1138 }
1da177e4
LT
1139 }
1140
f4e5cc2c 1141 error = elf_map(bprm->file, load_bias + vaddr, elf_ppnt,
a87938b2 1142 elf_prot, elf_flags, total_size);
1da177e4 1143 if (BAD_ADDR(error)) {
b140f251
AK
1144 retval = IS_ERR((void *)error) ?
1145 PTR_ERR((void*)error) : -EINVAL;
1da177e4
LT
1146 goto out_free_dentry;
1147 }
1148
1149 if (!load_addr_set) {
1150 load_addr_set = 1;
1151 load_addr = (elf_ppnt->p_vaddr - elf_ppnt->p_offset);
a62c5b1b 1152 if (elf_ex->e_type == ET_DYN) {
1da177e4
LT
1153 load_bias += error -
1154 ELF_PAGESTART(load_bias + vaddr);
1155 load_addr += load_bias;
1156 reloc_func_desc = load_bias;
1157 }
1158 }
f3e59b85
AK
1159
1160 /*
1161 * Figure out which segment in the file contains the Program
1162 * Header table, and map to the associated memory address.
1163 */
1164 if (elf_ppnt->p_offset <= elf_ex->e_phoff &&
1165 elf_ex->e_phoff < elf_ppnt->p_offset + elf_ppnt->p_filesz) {
1166 phdr_addr = elf_ex->e_phoff - elf_ppnt->p_offset +
1167 elf_ppnt->p_vaddr;
1168 }
1169
1da177e4 1170 k = elf_ppnt->p_vaddr;
f67ef446 1171 if ((elf_ppnt->p_flags & PF_X) && k < start_code)
f4e5cc2c
JJ
1172 start_code = k;
1173 if (start_data < k)
1174 start_data = k;
1da177e4
LT
1175
1176 /*
1177 * Check to see if the section's size will overflow the
1178 * allowed task size. Note that p_filesz must always be
1179 * <= p_memsz so it is only necessary to check p_memsz.
1180 */
ce51059b 1181 if (BAD_ADDR(k) || elf_ppnt->p_filesz > elf_ppnt->p_memsz ||
1da177e4
LT
1182 elf_ppnt->p_memsz > TASK_SIZE ||
1183 TASK_SIZE - elf_ppnt->p_memsz < k) {
f4e5cc2c 1184 /* set_brk can never work. Avoid overflows. */
b140f251 1185 retval = -EINVAL;
1da177e4
LT
1186 goto out_free_dentry;
1187 }
1188
1189 k = elf_ppnt->p_vaddr + elf_ppnt->p_filesz;
1190
1191 if (k > elf_bss)
1192 elf_bss = k;
1193 if ((elf_ppnt->p_flags & PF_X) && end_code < k)
1194 end_code = k;
1195 if (end_data < k)
1196 end_data = k;
1197 k = elf_ppnt->p_vaddr + elf_ppnt->p_memsz;
16e72e9b
DV
1198 if (k > elf_brk) {
1199 bss_prot = elf_prot;
1da177e4 1200 elf_brk = k;
16e72e9b 1201 }
1da177e4
LT
1202 }
1203
a62c5b1b 1204 e_entry = elf_ex->e_entry + load_bias;
f3e59b85 1205 phdr_addr += load_bias;
1da177e4
LT
1206 elf_bss += load_bias;
1207 elf_brk += load_bias;
1208 start_code += load_bias;
1209 end_code += load_bias;
1210 start_data += load_bias;
1211 end_data += load_bias;
1212
1213 /* Calling set_brk effectively mmaps the pages that we need
1214 * for the bss and break sections. We must do this before
1215 * mapping in the interpreter, to make sure it doesn't wind
1216 * up getting placed where the bss needs to go.
1217 */
16e72e9b 1218 retval = set_brk(elf_bss, elf_brk, bss_prot);
19d860a1 1219 if (retval)
1da177e4 1220 goto out_free_dentry;
6de50517 1221 if (likely(elf_bss != elf_brk) && unlikely(padzero(elf_bss))) {
1da177e4
LT
1222 retval = -EFAULT; /* Nobody gets to see this, but.. */
1223 goto out_free_dentry;
1224 }
1225
cc338010 1226 if (interpreter) {
c69bcc93 1227 elf_entry = load_elf_interp(interp_elf_ex,
d20894a2 1228 interpreter,
fe0f6766
DM
1229 load_bias, interp_elf_phdata,
1230 &arch_state);
d20894a2
AK
1231 if (!IS_ERR((void *)elf_entry)) {
1232 /*
1233 * load_elf_interp() returns relocation
1234 * adjustment
1235 */
1236 interp_load_addr = elf_entry;
c69bcc93 1237 elf_entry += interp_elf_ex->e_entry;
cc503c1b 1238 }
1da177e4 1239 if (BAD_ADDR(elf_entry)) {
ce51059b
CE
1240 retval = IS_ERR((void *)elf_entry) ?
1241 (int)elf_entry : -EINVAL;
1da177e4
LT
1242 goto out_free_dentry;
1243 }
1244 reloc_func_desc = interp_load_addr;
1245
1246 allow_write_access(interpreter);
1247 fput(interpreter);
0693ffeb
AD
1248
1249 kfree(interp_elf_ex);
aa0d1564 1250 kfree(interp_elf_phdata);
1da177e4 1251 } else {
a62c5b1b 1252 elf_entry = e_entry;
5342fba5 1253 if (BAD_ADDR(elf_entry)) {
ce51059b 1254 retval = -EINVAL;
5342fba5
SS
1255 goto out_free_dentry;
1256 }
1da177e4
LT
1257 }
1258
1259 kfree(elf_phdata);
1260
1da177e4
LT
1261 set_binfmt(&elf_format);
1262
547ee84c 1263#ifdef ARCH_HAS_SETUP_ADDITIONAL_PAGES
9a29a671 1264 retval = ARCH_SETUP_ADDITIONAL_PAGES(bprm, elf_ex, !!interpreter);
19d860a1 1265 if (retval < 0)
18c8baff 1266 goto out;
547ee84c
BH
1267#endif /* ARCH_HAS_SETUP_ADDITIONAL_PAGES */
1268
f3e59b85
AK
1269 retval = create_elf_tables(bprm, elf_ex, interp_load_addr,
1270 e_entry, phdr_addr);
19d860a1 1271 if (retval < 0)
b6a2fea3 1272 goto out;
03c6d723
AD
1273
1274 mm = current->mm;
1275 mm->end_code = end_code;
1276 mm->start_code = start_code;
1277 mm->start_data = start_data;
1278 mm->end_data = end_data;
1279 mm->start_stack = bprm->p;
1da177e4 1280
4471a675 1281 if ((current->flags & PF_RANDOMIZE) && (randomize_va_space > 1)) {
bbdc6076
KC
1282 /*
1283 * For architectures with ELF randomization, when executing
1284 * a loader directly (i.e. no interpreter listed in ELF
1285 * headers), move the brk area out of the mmap region
1286 * (since it grows up, and may collide early with the stack
1287 * growing down), and into the unused ELF_ET_DYN_BASE region.
1288 */
7be3cb01 1289 if (IS_ENABLED(CONFIG_ARCH_HAS_ELF_RANDOMIZE) &&
03c6d723
AD
1290 elf_ex->e_type == ET_DYN && !interpreter) {
1291 mm->brk = mm->start_brk = ELF_ET_DYN_BASE;
1292 }
bbdc6076 1293
03c6d723 1294 mm->brk = mm->start_brk = arch_randomize_brk(mm);
204db6ed 1295#ifdef compat_brk_randomized
4471a675
JK
1296 current->brk_randomized = 1;
1297#endif
1298 }
c1d171a0 1299
1da177e4
LT
1300 if (current->personality & MMAP_PAGE_ZERO) {
1301 /* Why this, you ask??? Well SVr4 maps page 0 as read-only,
1302 and some applications "depend" upon this behavior.
1303 Since we do not have the power to recompile these, we
f4e5cc2c 1304 emulate the SVr4 behavior. Sigh. */
6be5ceb0 1305 error = vm_mmap(NULL, 0, PAGE_SIZE, PROT_READ | PROT_EXEC,
1da177e4 1306 MAP_FIXED | MAP_PRIVATE, 0);
1da177e4
LT
1307 }
1308
249b08e4 1309 regs = current_pt_regs();
1da177e4
LT
1310#ifdef ELF_PLAT_INIT
1311 /*
1312 * The ABI may specify that certain registers be set up in special
1313 * ways (on i386 %edx is the address of a DT_FINI function, for
1314 * example. In addition, it may also specify (eg, PowerPC64 ELF)
1315 * that the e_entry field is the address of the function descriptor
1316 * for the startup routine, rather than the address of the startup
1317 * routine itself. This macro performs whatever initialization to
1318 * the regs structure is required as well as any relocations to the
1319 * function descriptor entries when executing dynamically links apps.
1320 */
1321 ELF_PLAT_INIT(regs, reloc_func_desc);
1322#endif
1323
b8383831 1324 finalize_exec(bprm);
bc3d7bf6 1325 START_THREAD(elf_ex, regs, elf_entry, bprm->p);
1da177e4
LT
1326 retval = 0;
1327out:
1da177e4
LT
1328 return retval;
1329
1330 /* error cleanup */
1331out_free_dentry:
0693ffeb 1332 kfree(interp_elf_ex);
a9d9ef13 1333 kfree(interp_elf_phdata);
1da177e4
LT
1334 allow_write_access(interpreter);
1335 if (interpreter)
1336 fput(interpreter);
1da177e4
LT
1337out_free_ph:
1338 kfree(elf_phdata);
1339 goto out;
1340}
1341
69369a70 1342#ifdef CONFIG_USELIB
1da177e4
LT
1343/* This is really simpleminded and specialized - we are loading an
1344 a.out library that is given an ELF header. */
1da177e4
LT
1345static int load_elf_library(struct file *file)
1346{
1347 struct elf_phdr *elf_phdata;
1348 struct elf_phdr *eppnt;
1349 unsigned long elf_bss, bss, len;
1350 int retval, error, i, j;
1351 struct elfhdr elf_ex;
1352
1353 error = -ENOEXEC;
658c0335
AD
1354 retval = elf_read(file, &elf_ex, sizeof(elf_ex), 0);
1355 if (retval < 0)
1da177e4
LT
1356 goto out;
1357
1358 if (memcmp(elf_ex.e_ident, ELFMAG, SELFMAG) != 0)
1359 goto out;
1360
1361 /* First of all, some simple consistency checks */
1362 if (elf_ex.e_type != ET_EXEC || elf_ex.e_phnum > 2 ||
72c2d531 1363 !elf_check_arch(&elf_ex) || !file->f_op->mmap)
1da177e4 1364 goto out;
4755200b
NP
1365 if (elf_check_fdpic(&elf_ex))
1366 goto out;
1da177e4
LT
1367
1368 /* Now read in all of the header information */
1369
1370 j = sizeof(struct elf_phdr) * elf_ex.e_phnum;
1371 /* j < ELF_MIN_ALIGN because elf_ex.e_phnum <= 2 */
1372
1373 error = -ENOMEM;
1374 elf_phdata = kmalloc(j, GFP_KERNEL);
1375 if (!elf_phdata)
1376 goto out;
1377
1378 eppnt = elf_phdata;
1379 error = -ENOEXEC;
658c0335
AD
1380 retval = elf_read(file, eppnt, j, elf_ex.e_phoff);
1381 if (retval < 0)
1da177e4
LT
1382 goto out_free_ph;
1383
1384 for (j = 0, i = 0; i<elf_ex.e_phnum; i++)
1385 if ((eppnt + i)->p_type == PT_LOAD)
1386 j++;
1387 if (j != 1)
1388 goto out_free_ph;
1389
1390 while (eppnt->p_type != PT_LOAD)
1391 eppnt++;
1392
1393 /* Now use mmap to map the library into memory. */
6be5ceb0 1394 error = vm_mmap(file,
1da177e4
LT
1395 ELF_PAGESTART(eppnt->p_vaddr),
1396 (eppnt->p_filesz +
1397 ELF_PAGEOFFSET(eppnt->p_vaddr)),
1398 PROT_READ | PROT_WRITE | PROT_EXEC,
42be8b42 1399 MAP_FIXED_NOREPLACE | MAP_PRIVATE,
1da177e4
LT
1400 (eppnt->p_offset -
1401 ELF_PAGEOFFSET(eppnt->p_vaddr)));
1da177e4
LT
1402 if (error != ELF_PAGESTART(eppnt->p_vaddr))
1403 goto out_free_ph;
1404
1405 elf_bss = eppnt->p_vaddr + eppnt->p_filesz;
1406 if (padzero(elf_bss)) {
1407 error = -EFAULT;
1408 goto out_free_ph;
1409 }
1410
24962af7
OS
1411 len = ELF_PAGEALIGN(eppnt->p_filesz + eppnt->p_vaddr);
1412 bss = ELF_PAGEALIGN(eppnt->p_memsz + eppnt->p_vaddr);
ecc2bc8a
MH
1413 if (bss > len) {
1414 error = vm_brk(len, bss - len);
5d22fc25 1415 if (error)
ecc2bc8a
MH
1416 goto out_free_ph;
1417 }
1da177e4
LT
1418 error = 0;
1419
1420out_free_ph:
1421 kfree(elf_phdata);
1422out:
1423 return error;
1424}
69369a70 1425#endif /* #ifdef CONFIG_USELIB */
1da177e4 1426
698ba7b5 1427#ifdef CONFIG_ELF_CORE
1da177e4
LT
1428/*
1429 * ELF core dumper
1430 *
1431 * Modelled on fs/exec.c:aout_core_dump()
1432 * Jeremy Fitzhardinge <jeremy@sw.oz.au>
1433 */
1da177e4 1434
1da177e4
LT
1435/* An ELF note in memory */
1436struct memelfnote
1437{
1438 const char *name;
1439 int type;
1440 unsigned int datasz;
1441 void *data;
1442};
1443
1444static int notesize(struct memelfnote *en)
1445{
1446 int sz;
1447
1448 sz = sizeof(struct elf_note);
1449 sz += roundup(strlen(en->name) + 1, 4);
1450 sz += roundup(en->datasz, 4);
1451
1452 return sz;
1453}
1454
ecc8c772 1455static int writenote(struct memelfnote *men, struct coredump_params *cprm)
d025c9db
AK
1456{
1457 struct elf_note en;
1da177e4
LT
1458 en.n_namesz = strlen(men->name) + 1;
1459 en.n_descsz = men->datasz;
1460 en.n_type = men->type;
1461
ecc8c772 1462 return dump_emit(cprm, &en, sizeof(en)) &&
22a8cb82
AV
1463 dump_emit(cprm, men->name, en.n_namesz) && dump_align(cprm, 4) &&
1464 dump_emit(cprm, men->data, men->datasz) && dump_align(cprm, 4);
1da177e4 1465}
1da177e4 1466
3aba481f 1467static void fill_elf_header(struct elfhdr *elf, int segs,
d3330cf0 1468 u16 machine, u32 flags)
1da177e4 1469{
6970c8ef
CG
1470 memset(elf, 0, sizeof(*elf));
1471
1da177e4
LT
1472 memcpy(elf->e_ident, ELFMAG, SELFMAG);
1473 elf->e_ident[EI_CLASS] = ELF_CLASS;
1474 elf->e_ident[EI_DATA] = ELF_DATA;
1475 elf->e_ident[EI_VERSION] = EV_CURRENT;
1476 elf->e_ident[EI_OSABI] = ELF_OSABI;
1da177e4
LT
1477
1478 elf->e_type = ET_CORE;
3aba481f 1479 elf->e_machine = machine;
1da177e4 1480 elf->e_version = EV_CURRENT;
1da177e4 1481 elf->e_phoff = sizeof(struct elfhdr);
3aba481f 1482 elf->e_flags = flags;
1da177e4
LT
1483 elf->e_ehsize = sizeof(struct elfhdr);
1484 elf->e_phentsize = sizeof(struct elf_phdr);
1485 elf->e_phnum = segs;
1da177e4
LT
1486}
1487
8d6b5eee 1488static void fill_elf_note_phdr(struct elf_phdr *phdr, int sz, loff_t offset)
1da177e4
LT
1489{
1490 phdr->p_type = PT_NOTE;
1491 phdr->p_offset = offset;
1492 phdr->p_vaddr = 0;
1493 phdr->p_paddr = 0;
1494 phdr->p_filesz = sz;
1495 phdr->p_memsz = 0;
1496 phdr->p_flags = 0;
1497 phdr->p_align = 0;
1da177e4
LT
1498}
1499
1500static void fill_note(struct memelfnote *note, const char *name, int type,
1501 unsigned int sz, void *data)
1502{
1503 note->name = name;
1504 note->type = type;
1505 note->datasz = sz;
1506 note->data = data;
1da177e4
LT
1507}
1508
1509/*
f4e5cc2c
JJ
1510 * fill up all the fields in prstatus from the given task struct, except
1511 * registers which need to be filled up separately.
1da177e4 1512 */
f2485a2d 1513static void fill_prstatus(struct elf_prstatus_common *prstatus,
f4e5cc2c 1514 struct task_struct *p, long signr)
1da177e4
LT
1515{
1516 prstatus->pr_info.si_signo = prstatus->pr_cursig = signr;
1517 prstatus->pr_sigpend = p->pending.signal.sig[0];
1518 prstatus->pr_sighold = p->blocked.sig[0];
3b34fc58
ON
1519 rcu_read_lock();
1520 prstatus->pr_ppid = task_pid_vnr(rcu_dereference(p->real_parent));
1521 rcu_read_unlock();
b488893a 1522 prstatus->pr_pid = task_pid_vnr(p);
b488893a
PE
1523 prstatus->pr_pgrp = task_pgrp_vnr(p);
1524 prstatus->pr_sid = task_session_vnr(p);
1da177e4 1525 if (thread_group_leader(p)) {
cd19c364 1526 struct task_cputime cputime;
f06febc9 1527
1da177e4 1528 /*
f06febc9
FM
1529 * This is the record for the group leader. It shows the
1530 * group-wide total, not its individual thread total.
1da177e4 1531 */
cd19c364 1532 thread_group_cputime(p, &cputime);
e2bb80d5
AB
1533 prstatus->pr_utime = ns_to_kernel_old_timeval(cputime.utime);
1534 prstatus->pr_stime = ns_to_kernel_old_timeval(cputime.stime);
1da177e4 1535 } else {
cd19c364 1536 u64 utime, stime;
6fac4829 1537
cd19c364 1538 task_cputime(p, &utime, &stime);
e2bb80d5
AB
1539 prstatus->pr_utime = ns_to_kernel_old_timeval(utime);
1540 prstatus->pr_stime = ns_to_kernel_old_timeval(stime);
1da177e4 1541 }
5613fda9 1542
e2bb80d5
AB
1543 prstatus->pr_cutime = ns_to_kernel_old_timeval(p->signal->cutime);
1544 prstatus->pr_cstime = ns_to_kernel_old_timeval(p->signal->cstime);
1da177e4
LT
1545}
1546
1547static int fill_psinfo(struct elf_prpsinfo *psinfo, struct task_struct *p,
1548 struct mm_struct *mm)
1549{
c69e8d9c 1550 const struct cred *cred;
a84a5059 1551 unsigned int i, len;
2f064a59
PZ
1552 unsigned int state;
1553
1da177e4
LT
1554 /* first copy the parameters from user space */
1555 memset(psinfo, 0, sizeof(struct elf_prpsinfo));
1556
1557 len = mm->arg_end - mm->arg_start;
1558 if (len >= ELF_PRARGSZ)
1559 len = ELF_PRARGSZ-1;
1560 if (copy_from_user(&psinfo->pr_psargs,
1561 (const char __user *)mm->arg_start, len))
1562 return -EFAULT;
1563 for(i = 0; i < len; i++)
1564 if (psinfo->pr_psargs[i] == 0)
1565 psinfo->pr_psargs[i] = ' ';
1566 psinfo->pr_psargs[len] = 0;
1567
3b34fc58
ON
1568 rcu_read_lock();
1569 psinfo->pr_ppid = task_pid_vnr(rcu_dereference(p->real_parent));
1570 rcu_read_unlock();
b488893a 1571 psinfo->pr_pid = task_pid_vnr(p);
b488893a
PE
1572 psinfo->pr_pgrp = task_pgrp_vnr(p);
1573 psinfo->pr_sid = task_session_vnr(p);
1da177e4 1574
2f064a59
PZ
1575 state = READ_ONCE(p->__state);
1576 i = state ? ffz(~state) + 1 : 0;
1da177e4 1577 psinfo->pr_state = i;
55148548 1578 psinfo->pr_sname = (i > 5) ? '.' : "RSDTZW"[i];
1da177e4
LT
1579 psinfo->pr_zomb = psinfo->pr_sname == 'Z';
1580 psinfo->pr_nice = task_nice(p);
1581 psinfo->pr_flag = p->flags;
c69e8d9c
DH
1582 rcu_read_lock();
1583 cred = __task_cred(p);
ebc887b2
EB
1584 SET_UID(psinfo->pr_uid, from_kuid_munged(cred->user_ns, cred->uid));
1585 SET_GID(psinfo->pr_gid, from_kgid_munged(cred->user_ns, cred->gid));
c69e8d9c 1586 rcu_read_unlock();
1da177e4 1587 strncpy(psinfo->pr_fname, p->comm, sizeof(psinfo->pr_fname));
2f064a59 1588
1da177e4
LT
1589 return 0;
1590}
1591
3aba481f
RM
1592static void fill_auxv_note(struct memelfnote *note, struct mm_struct *mm)
1593{
1594 elf_addr_t *auxv = (elf_addr_t *) mm->saved_auxv;
1595 int i = 0;
1596 do
1597 i += 2;
1598 while (auxv[i - 2] != AT_NULL);
1599 fill_note(note, "CORE", NT_AUXV, i * sizeof(elf_addr_t), auxv);
1600}
1601
49ae4d4b 1602static void fill_siginfo_note(struct memelfnote *note, user_siginfo_t *csigdata,
ae7795bc 1603 const kernel_siginfo_t *siginfo)
49ae4d4b 1604{
fa4751f4 1605 copy_siginfo_to_external(csigdata, siginfo);
49ae4d4b
DV
1606 fill_note(note, "CORE", NT_SIGINFO, sizeof(*csigdata), csigdata);
1607}
1608
2aa362c4
DV
1609#define MAX_FILE_NOTE_SIZE (4*1024*1024)
1610/*
1611 * Format of NT_FILE note:
1612 *
1613 * long count -- how many files are mapped
1614 * long page_size -- units for file_ofs
1615 * array of [COUNT] elements of
1616 * long start
1617 * long end
1618 * long file_ofs
1619 * followed by COUNT filenames in ASCII: "FILE1" NUL "FILE2" NUL...
1620 */
8032409c 1621static int fill_files_note(struct memelfnote *note, struct coredump_params *cprm)
2aa362c4 1622{
2aa362c4
DV
1623 unsigned count, size, names_ofs, remaining, n;
1624 user_long_t *data;
1625 user_long_t *start_end_ofs;
1626 char *name_base, *name_curpos;
8032409c 1627 int i;
2aa362c4
DV
1628
1629 /* *Estimated* file count and total data size needed */
8032409c 1630 count = cprm->vma_count;
60c9d92f
AD
1631 if (count > UINT_MAX / 64)
1632 return -EINVAL;
2aa362c4
DV
1633 size = count * 64;
1634
1635 names_ofs = (2 + 3 * count) * sizeof(data[0]);
1636 alloc:
1637 if (size >= MAX_FILE_NOTE_SIZE) /* paranoia check */
72023656 1638 return -EINVAL;
2aa362c4 1639 size = round_up(size, PAGE_SIZE);
1fbede6e
AD
1640 /*
1641 * "size" can be 0 here legitimately.
1642 * Let it ENOMEM and omit NT_FILE section which will be empty anyway.
1643 */
86a2bb5a
AD
1644 data = kvmalloc(size, GFP_KERNEL);
1645 if (ZERO_OR_NULL_PTR(data))
72023656 1646 return -ENOMEM;
2aa362c4
DV
1647
1648 start_end_ofs = data + 2;
1649 name_base = name_curpos = ((char *)data) + names_ofs;
1650 remaining = size - names_ofs;
1651 count = 0;
8032409c
EB
1652 for (i = 0; i < cprm->vma_count; i++) {
1653 struct core_vma_metadata *m = &cprm->vma_meta[i];
2aa362c4
DV
1654 struct file *file;
1655 const char *filename;
1656
8032409c 1657 file = m->file;
2aa362c4
DV
1658 if (!file)
1659 continue;
9bf39ab2 1660 filename = file_path(file, name_curpos, remaining);
2aa362c4
DV
1661 if (IS_ERR(filename)) {
1662 if (PTR_ERR(filename) == -ENAMETOOLONG) {
86a2bb5a 1663 kvfree(data);
2aa362c4
DV
1664 size = size * 5 / 4;
1665 goto alloc;
1666 }
1667 continue;
1668 }
1669
9bf39ab2 1670 /* file_path() fills at the end, move name down */
2aa362c4
DV
1671 /* n = strlen(filename) + 1: */
1672 n = (name_curpos + remaining) - filename;
1673 remaining = filename - name_curpos;
1674 memmove(name_curpos, filename, n);
1675 name_curpos += n;
1676
8032409c
EB
1677 *start_end_ofs++ = m->start;
1678 *start_end_ofs++ = m->end;
1679 *start_end_ofs++ = m->pgoff;
2aa362c4
DV
1680 count++;
1681 }
1682
1683 /* Now we know exact count of files, can store it */
1684 data[0] = count;
1685 data[1] = PAGE_SIZE;
1686 /*
03c6d723 1687 * Count usually is less than mm->map_count,
2aa362c4
DV
1688 * we need to move filenames down.
1689 */
8032409c 1690 n = cprm->vma_count - count;
2aa362c4
DV
1691 if (n != 0) {
1692 unsigned shift_bytes = n * 3 * sizeof(data[0]);
1693 memmove(name_base - shift_bytes, name_base,
1694 name_curpos - name_base);
1695 name_curpos -= shift_bytes;
1696 }
1697
1698 size = name_curpos - (char *)data;
1699 fill_note(note, "CORE", NT_FILE, size, data);
72023656 1700 return 0;
2aa362c4
DV
1701}
1702
4206d3aa
RM
1703#ifdef CORE_DUMP_USE_REGSET
1704#include <linux/regset.h>
1705
1706struct elf_thread_core_info {
1707 struct elf_thread_core_info *next;
1708 struct task_struct *task;
1709 struct elf_prstatus prstatus;
5e01fdff 1710 struct memelfnote notes[];
4206d3aa
RM
1711};
1712
1713struct elf_note_info {
1714 struct elf_thread_core_info *thread;
1715 struct memelfnote psinfo;
49ae4d4b 1716 struct memelfnote signote;
4206d3aa 1717 struct memelfnote auxv;
2aa362c4 1718 struct memelfnote files;
49ae4d4b 1719 user_siginfo_t csigdata;
4206d3aa
RM
1720 size_t size;
1721 int thread_notes;
1722};
1723
d31472b6
RM
1724/*
1725 * When a regset has a writeback hook, we call it on each thread before
1726 * dumping user memory. On register window machines, this makes sure the
1727 * user memory backing the register data is up to date before we read it.
1728 */
1729static void do_thread_regset_writeback(struct task_struct *task,
1730 const struct user_regset *regset)
1731{
1732 if (regset->writeback)
1733 regset->writeback(task, regset, 1);
1734}
1735
0953f65d 1736#ifndef PRSTATUS_SIZE
8a00dd00 1737#define PRSTATUS_SIZE sizeof(struct elf_prstatus)
0953f65d
L
1738#endif
1739
1740#ifndef SET_PR_FPVALID
8a00dd00 1741#define SET_PR_FPVALID(S) ((S)->pr_fpvalid = 1)
0953f65d
L
1742#endif
1743
4206d3aa
RM
1744static int fill_thread_core_info(struct elf_thread_core_info *t,
1745 const struct user_regset_view *view,
1746 long signr, size_t *total)
1747{
1748 unsigned int i;
1749
1750 /*
1751 * NT_PRSTATUS is the one special case, because the regset data
1752 * goes into the pr_reg field inside the note contents, rather
1753 * than being the whole note contents. We fill the reset in here.
1754 * We assume that regset 0 is NT_PRSTATUS.
1755 */
f2485a2d 1756 fill_prstatus(&t->prstatus.common, t->task, signr);
8a00dd00 1757 regset_get(t->task, &view->regsets[0],
b4e9c954 1758 sizeof(t->prstatus.pr_reg), &t->prstatus.pr_reg);
4206d3aa
RM
1759
1760 fill_note(&t->notes[0], "CORE", NT_PRSTATUS,
8a00dd00 1761 PRSTATUS_SIZE, &t->prstatus);
4206d3aa
RM
1762 *total += notesize(&t->notes[0]);
1763
d31472b6
RM
1764 do_thread_regset_writeback(t->task, &view->regsets[0]);
1765
4206d3aa
RM
1766 /*
1767 * Each other regset might generate a note too. For each regset
1768 * that has no core_note_type or is inactive, we leave t->notes[i]
1769 * all zero and we'll know to skip writing it later.
1770 */
1771 for (i = 1; i < view->n; ++i) {
1772 const struct user_regset *regset = &view->regsets[i];
b4e9c954
AV
1773 int note_type = regset->core_note_type;
1774 bool is_fpreg = note_type == NT_PRFPREG;
1775 void *data;
1776 int ret;
1777
d31472b6 1778 do_thread_regset_writeback(t->task, regset);
b4e9c954
AV
1779 if (!note_type) // not for coredumps
1780 continue;
1781 if (regset->active && regset->active(t->task, regset) <= 0)
1782 continue;
1783
1784 ret = regset_get_alloc(t->task, regset, ~0U, &data);
1785 if (ret < 0)
1786 continue;
1787
1788 if (is_fpreg)
8a00dd00 1789 SET_PR_FPVALID(&t->prstatus);
b4e9c954
AV
1790
1791 fill_note(&t->notes[i], is_fpreg ? "CORE" : "LINUX",
1792 note_type, ret, data);
1793
1794 *total += notesize(&t->notes[i]);
4206d3aa
RM
1795 }
1796
1797 return 1;
1798}
1799
1800static int fill_note_info(struct elfhdr *elf, int phdrs,
1801 struct elf_note_info *info,
a0b24d2b 1802 struct coredump_params *cprm)
4206d3aa
RM
1803{
1804 struct task_struct *dump_task = current;
1805 const struct user_regset_view *view = task_user_regset_view(dump_task);
1806 struct elf_thread_core_info *t;
1807 struct elf_prpsinfo *psinfo;
83914441 1808 struct core_thread *ct;
4206d3aa
RM
1809 unsigned int i;
1810
1811 info->size = 0;
1812 info->thread = NULL;
1813
1814 psinfo = kmalloc(sizeof(*psinfo), GFP_KERNEL);
6899e92d
AC
1815 if (psinfo == NULL) {
1816 info->psinfo.data = NULL; /* So we don't free this wrongly */
4206d3aa 1817 return 0;
6899e92d 1818 }
4206d3aa 1819
e2dbe125
AW
1820 fill_note(&info->psinfo, "CORE", NT_PRPSINFO, sizeof(*psinfo), psinfo);
1821
4206d3aa
RM
1822 /*
1823 * Figure out how many notes we're going to need for each thread.
1824 */
1825 info->thread_notes = 0;
1826 for (i = 0; i < view->n; ++i)
1827 if (view->regsets[i].core_note_type != 0)
1828 ++info->thread_notes;
1829
1830 /*
1831 * Sanity check. We rely on regset 0 being in NT_PRSTATUS,
1832 * since it is our one special case.
1833 */
1834 if (unlikely(info->thread_notes == 0) ||
1835 unlikely(view->regsets[0].core_note_type != NT_PRSTATUS)) {
1836 WARN_ON(1);
1837 return 0;
1838 }
1839
1840 /*
1841 * Initialize the ELF file header.
1842 */
1843 fill_elf_header(elf, phdrs,
d3330cf0 1844 view->e_machine, view->e_flags);
4206d3aa
RM
1845
1846 /*
1847 * Allocate a structure for each thread.
1848 */
83914441
ON
1849 for (ct = &dump_task->mm->core_state->dumper; ct; ct = ct->next) {
1850 t = kzalloc(offsetof(struct elf_thread_core_info,
1851 notes[info->thread_notes]),
1852 GFP_KERNEL);
1853 if (unlikely(!t))
1854 return 0;
1855
1856 t->task = ct->task;
1857 if (ct->task == dump_task || !info->thread) {
1858 t->next = info->thread;
1859 info->thread = t;
1860 } else {
1861 /*
1862 * Make sure to keep the original task at
1863 * the head of the list.
1864 */
1865 t->next = info->thread->next;
1866 info->thread->next = t;
4206d3aa 1867 }
83914441 1868 }
4206d3aa
RM
1869
1870 /*
1871 * Now fill in each thread's information.
1872 */
1873 for (t = info->thread; t != NULL; t = t->next)
a0b24d2b 1874 if (!fill_thread_core_info(t, view, cprm->siginfo->si_signo, &info->size))
4206d3aa
RM
1875 return 0;
1876
1877 /*
1878 * Fill in the two process-wide notes.
1879 */
1880 fill_psinfo(psinfo, dump_task->group_leader, dump_task->mm);
1881 info->size += notesize(&info->psinfo);
1882
a0b24d2b 1883 fill_siginfo_note(&info->signote, &info->csigdata, cprm->siginfo);
49ae4d4b
DV
1884 info->size += notesize(&info->signote);
1885
4206d3aa
RM
1886 fill_auxv_note(&info->auxv, current->mm);
1887 info->size += notesize(&info->auxv);
1888
8032409c 1889 if (fill_files_note(&info->files, cprm) == 0)
72023656 1890 info->size += notesize(&info->files);
2aa362c4 1891
4206d3aa
RM
1892 return 1;
1893}
1894
1895static size_t get_note_info_size(struct elf_note_info *info)
1896{
1897 return info->size;
1898}
1899
1900/*
1901 * Write all the notes for each thread. When writing the first thread, the
1902 * process-wide notes are interleaved after the first thread-specific note.
1903 */
1904static int write_note_info(struct elf_note_info *info,
ecc8c772 1905 struct coredump_params *cprm)
4206d3aa 1906{
b219e25f 1907 bool first = true;
4206d3aa
RM
1908 struct elf_thread_core_info *t = info->thread;
1909
1910 do {
1911 int i;
1912
ecc8c772 1913 if (!writenote(&t->notes[0], cprm))
4206d3aa
RM
1914 return 0;
1915
ecc8c772 1916 if (first && !writenote(&info->psinfo, cprm))
4206d3aa 1917 return 0;
ecc8c772 1918 if (first && !writenote(&info->signote, cprm))
49ae4d4b 1919 return 0;
ecc8c772 1920 if (first && !writenote(&info->auxv, cprm))
4206d3aa 1921 return 0;
72023656 1922 if (first && info->files.data &&
ecc8c772 1923 !writenote(&info->files, cprm))
2aa362c4 1924 return 0;
4206d3aa
RM
1925
1926 for (i = 1; i < info->thread_notes; ++i)
1927 if (t->notes[i].data &&
ecc8c772 1928 !writenote(&t->notes[i], cprm))
4206d3aa
RM
1929 return 0;
1930
b219e25f 1931 first = false;
4206d3aa
RM
1932 t = t->next;
1933 } while (t);
1934
1935 return 1;
1936}
1937
1938static void free_note_info(struct elf_note_info *info)
1939{
1940 struct elf_thread_core_info *threads = info->thread;
1941 while (threads) {
1942 unsigned int i;
1943 struct elf_thread_core_info *t = threads;
1944 threads = t->next;
1945 WARN_ON(t->notes[0].data && t->notes[0].data != &t->prstatus);
1946 for (i = 1; i < info->thread_notes; ++i)
1947 kfree(t->notes[i].data);
1948 kfree(t);
1949 }
1950 kfree(info->psinfo.data);
86a2bb5a 1951 kvfree(info->files.data);
4206d3aa
RM
1952}
1953
1954#else
1955
1da177e4
LT
1956/* Here is the structure in which status of each thread is captured. */
1957struct elf_thread_status
1958{
1959 struct list_head list;
1960 struct elf_prstatus prstatus; /* NT_PRSTATUS */
1961 elf_fpregset_t fpu; /* NT_PRFPREG */
1962 struct task_struct *thread;
1da177e4
LT
1963 struct memelfnote notes[3];
1964 int num_notes;
1965};
1966
1967/*
1968 * In order to add the specific thread information for the elf file format,
f4e5cc2c
JJ
1969 * we need to keep a linked list of every threads pr_status and then create
1970 * a single section for them in the final core file.
1da177e4
LT
1971 */
1972static int elf_dump_thread_status(long signr, struct elf_thread_status *t)
1973{
1974 int sz = 0;
1975 struct task_struct *p = t->thread;
1976 t->num_notes = 0;
1977
f2485a2d 1978 fill_prstatus(&t->prstatus.common, p, signr);
1da177e4
LT
1979 elf_core_copy_task_regs(p, &t->prstatus.pr_reg);
1980
f4e5cc2c
JJ
1981 fill_note(&t->notes[0], "CORE", NT_PRSTATUS, sizeof(t->prstatus),
1982 &(t->prstatus));
1da177e4
LT
1983 t->num_notes++;
1984 sz += notesize(&t->notes[0]);
1985
f4e5cc2c
JJ
1986 if ((t->prstatus.pr_fpvalid = elf_core_copy_task_fpregs(p, NULL,
1987 &t->fpu))) {
1988 fill_note(&t->notes[1], "CORE", NT_PRFPREG, sizeof(t->fpu),
1989 &(t->fpu));
1da177e4
LT
1990 t->num_notes++;
1991 sz += notesize(&t->notes[1]);
1992 }
1da177e4
LT
1993 return sz;
1994}
1995
3aba481f
RM
1996struct elf_note_info {
1997 struct memelfnote *notes;
72023656 1998 struct memelfnote *notes_files;
3aba481f
RM
1999 struct elf_prstatus *prstatus; /* NT_PRSTATUS */
2000 struct elf_prpsinfo *psinfo; /* NT_PRPSINFO */
2001 struct list_head thread_list;
2002 elf_fpregset_t *fpu;
49ae4d4b 2003 user_siginfo_t csigdata;
3aba481f
RM
2004 int thread_status_size;
2005 int numnote;
2006};
2007
0cf062d0 2008static int elf_note_info_init(struct elf_note_info *info)
3aba481f 2009{
0cf062d0 2010 memset(info, 0, sizeof(*info));
3aba481f
RM
2011 INIT_LIST_HEAD(&info->thread_list);
2012
49ae4d4b 2013 /* Allocate space for ELF notes */
6da2ec56 2014 info->notes = kmalloc_array(8, sizeof(struct memelfnote), GFP_KERNEL);
3aba481f
RM
2015 if (!info->notes)
2016 return 0;
2017 info->psinfo = kmalloc(sizeof(*info->psinfo), GFP_KERNEL);
2018 if (!info->psinfo)
f34f9d18 2019 return 0;
3aba481f
RM
2020 info->prstatus = kmalloc(sizeof(*info->prstatus), GFP_KERNEL);
2021 if (!info->prstatus)
f34f9d18 2022 return 0;
3aba481f
RM
2023 info->fpu = kmalloc(sizeof(*info->fpu), GFP_KERNEL);
2024 if (!info->fpu)
f34f9d18 2025 return 0;
0cf062d0 2026 return 1;
0cf062d0
AW
2027}
2028
2029static int fill_note_info(struct elfhdr *elf, int phdrs,
2030 struct elf_note_info *info,
a0b24d2b 2031 struct coredump_params *cprm)
0cf062d0 2032{
afabada9
AV
2033 struct core_thread *ct;
2034 struct elf_thread_status *ets;
0cf062d0
AW
2035
2036 if (!elf_note_info_init(info))
2037 return 0;
3aba481f 2038
afabada9
AV
2039 for (ct = current->mm->core_state->dumper.next;
2040 ct; ct = ct->next) {
2041 ets = kzalloc(sizeof(*ets), GFP_KERNEL);
2042 if (!ets)
2043 return 0;
83914441 2044
afabada9
AV
2045 ets->thread = ct->task;
2046 list_add(&ets->list, &info->thread_list);
2047 }
83914441 2048
93f044e2 2049 list_for_each_entry(ets, &info->thread_list, list) {
afabada9 2050 int sz;
3aba481f 2051
a0b24d2b 2052 sz = elf_dump_thread_status(cprm->siginfo->si_signo, ets);
afabada9 2053 info->thread_status_size += sz;
3aba481f
RM
2054 }
2055 /* now collect the dump for the current */
2056 memset(info->prstatus, 0, sizeof(*info->prstatus));
a0b24d2b
EB
2057 fill_prstatus(&info->prstatus->common, current, cprm->siginfo->si_signo);
2058 elf_core_copy_regs(&info->prstatus->pr_reg, cprm->regs);
3aba481f
RM
2059
2060 /* Set up header */
d3330cf0 2061 fill_elf_header(elf, phdrs, ELF_ARCH, ELF_CORE_EFLAGS);
3aba481f
RM
2062
2063 /*
2064 * Set up the notes in similar form to SVR4 core dumps made
2065 * with info from their /proc.
2066 */
2067
2068 fill_note(info->notes + 0, "CORE", NT_PRSTATUS,
2069 sizeof(*info->prstatus), info->prstatus);
2070 fill_psinfo(info->psinfo, current->group_leader, current->mm);
2071 fill_note(info->notes + 1, "CORE", NT_PRPSINFO,
2072 sizeof(*info->psinfo), info->psinfo);
2073
a0b24d2b 2074 fill_siginfo_note(info->notes + 2, &info->csigdata, cprm->siginfo);
2aa362c4 2075 fill_auxv_note(info->notes + 3, current->mm);
72023656 2076 info->numnote = 4;
3aba481f 2077
8032409c 2078 if (fill_files_note(info->notes + info->numnote, cprm) == 0) {
72023656
DA
2079 info->notes_files = info->notes + info->numnote;
2080 info->numnote++;
2081 }
3aba481f
RM
2082
2083 /* Try to dump the FPU. */
a0b24d2b
EB
2084 info->prstatus->pr_fpvalid =
2085 elf_core_copy_task_fpregs(current, cprm->regs, info->fpu);
3aba481f
RM
2086 if (info->prstatus->pr_fpvalid)
2087 fill_note(info->notes + info->numnote++,
2088 "CORE", NT_PRFPREG, sizeof(*info->fpu), info->fpu);
3aba481f 2089 return 1;
3aba481f
RM
2090}
2091
2092static size_t get_note_info_size(struct elf_note_info *info)
2093{
2094 int sz = 0;
2095 int i;
2096
2097 for (i = 0; i < info->numnote; i++)
2098 sz += notesize(info->notes + i);
2099
2100 sz += info->thread_status_size;
2101
2102 return sz;
2103}
2104
2105static int write_note_info(struct elf_note_info *info,
ecc8c772 2106 struct coredump_params *cprm)
3aba481f 2107{
93f044e2 2108 struct elf_thread_status *ets;
3aba481f 2109 int i;
3aba481f
RM
2110
2111 for (i = 0; i < info->numnote; i++)
ecc8c772 2112 if (!writenote(info->notes + i, cprm))
3aba481f
RM
2113 return 0;
2114
2115 /* write out the thread status notes section */
93f044e2
AD
2116 list_for_each_entry(ets, &info->thread_list, list) {
2117 for (i = 0; i < ets->num_notes; i++)
2118 if (!writenote(&ets->notes[i], cprm))
3aba481f
RM
2119 return 0;
2120 }
2121
2122 return 1;
2123}
2124
2125static void free_note_info(struct elf_note_info *info)
2126{
2127 while (!list_empty(&info->thread_list)) {
2128 struct list_head *tmp = info->thread_list.next;
2129 list_del(tmp);
2130 kfree(list_entry(tmp, struct elf_thread_status, list));
2131 }
2132
72023656
DA
2133 /* Free data possibly allocated by fill_files_note(): */
2134 if (info->notes_files)
86a2bb5a 2135 kvfree(info->notes_files->data);
2aa362c4 2136
3aba481f
RM
2137 kfree(info->prstatus);
2138 kfree(info->psinfo);
2139 kfree(info->notes);
2140 kfree(info->fpu);
3aba481f
RM
2141}
2142
4206d3aa
RM
2143#endif
2144
8d9032bb
DH
2145static void fill_extnum_info(struct elfhdr *elf, struct elf_shdr *shdr4extnum,
2146 elf_addr_t e_shoff, int segs)
2147{
2148 elf->e_shoff = e_shoff;
2149 elf->e_shentsize = sizeof(*shdr4extnum);
2150 elf->e_shnum = 1;
2151 elf->e_shstrndx = SHN_UNDEF;
2152
2153 memset(shdr4extnum, 0, sizeof(*shdr4extnum));
2154
2155 shdr4extnum->sh_type = SHT_NULL;
2156 shdr4extnum->sh_size = elf->e_shnum;
2157 shdr4extnum->sh_link = elf->e_shstrndx;
2158 shdr4extnum->sh_info = segs;
2159}
2160
1da177e4
LT
2161/*
2162 * Actual dumper
2163 *
2164 * This is a two-pass process; first we find the offsets of the bits,
2165 * and then they are actually written out. If we run out of core limit
2166 * we just truncate.
2167 */
f6151dfe 2168static int elf_core_dump(struct coredump_params *cprm)
1da177e4 2169{
1da177e4 2170 int has_dumped = 0;
b2708174 2171 int segs, i;
225a3f53 2172 struct elfhdr elf;
cdc3d562 2173 loff_t offset = 0, dataoff;
72023656 2174 struct elf_note_info info = { };
93eb211e 2175 struct elf_phdr *phdr4note = NULL;
8d9032bb
DH
2176 struct elf_shdr *shdr4extnum = NULL;
2177 Elf_Half e_phnum;
2178 elf_addr_t e_shoff;
1da177e4 2179
341c87bf
KH
2180 /*
2181 * The number of segs are recored into ELF header as 16bit value.
2182 * Please check DEFAULT_MAX_MAP_COUNT definition when you modify here.
2183 */
b2708174 2184 segs = cprm->vma_count + elf_core_extra_phdrs();
f47aef55 2185
8d9032bb
DH
2186 /* for notes section */
2187 segs++;
2188
2189 /* If segs > PN_XNUM(0xffff), then e_phnum overflows. To avoid
2190 * this, kernel supports extended numbering. Have a look at
2191 * include/linux/elf.h for further information. */
2192 e_phnum = segs > PN_XNUM ? PN_XNUM : segs;
2193
1da177e4 2194 /*
3aba481f
RM
2195 * Collect all the non-memory information about the process for the
2196 * notes. This also sets up the file header.
1da177e4 2197 */
a0b24d2b 2198 if (!fill_note_info(&elf, e_phnum, &info, cprm))
d2530b43 2199 goto end_coredump;
1da177e4 2200
3aba481f 2201 has_dumped = 1;
079148b9 2202
225a3f53 2203 offset += sizeof(elf); /* Elf header */
8d9032bb 2204 offset += segs * sizeof(struct elf_phdr); /* Program headers */
1da177e4
LT
2205
2206 /* Write notes phdr entry */
2207 {
3aba481f 2208 size_t sz = get_note_info_size(&info);
1da177e4 2209
c39ab6de 2210 /* For cell spufs */
e5501492 2211 sz += elf_coredump_extra_notes_size();
bf1ab978 2212
93eb211e
DH
2213 phdr4note = kmalloc(sizeof(*phdr4note), GFP_KERNEL);
2214 if (!phdr4note)
088e7af7 2215 goto end_coredump;
93eb211e
DH
2216
2217 fill_elf_note_phdr(phdr4note, sz, offset);
2218 offset += sz;
1da177e4
LT
2219 }
2220
1da177e4
LT
2221 dataoff = offset = roundup(offset, ELF_EXEC_PAGESIZE);
2222
b2708174 2223 offset += cprm->vma_data_size;
8d9032bb
DH
2224 offset += elf_core_extra_data_size();
2225 e_shoff = offset;
2226
2227 if (e_phnum == PN_XNUM) {
2228 shdr4extnum = kmalloc(sizeof(*shdr4extnum), GFP_KERNEL);
2229 if (!shdr4extnum)
2230 goto end_coredump;
225a3f53 2231 fill_extnum_info(&elf, shdr4extnum, e_shoff, segs);
8d9032bb
DH
2232 }
2233
2234 offset = dataoff;
2235
225a3f53 2236 if (!dump_emit(cprm, &elf, sizeof(elf)))
93eb211e
DH
2237 goto end_coredump;
2238
ecc8c772 2239 if (!dump_emit(cprm, phdr4note, sizeof(*phdr4note)))
93eb211e
DH
2240 goto end_coredump;
2241
1da177e4 2242 /* Write program headers for segments dump */
b2708174
EB
2243 for (i = 0; i < cprm->vma_count; i++) {
2244 struct core_vma_metadata *meta = cprm->vma_meta + i;
1da177e4 2245 struct elf_phdr phdr;
1da177e4
LT
2246
2247 phdr.p_type = PT_LOAD;
2248 phdr.p_offset = offset;
a07279c9 2249 phdr.p_vaddr = meta->start;
1da177e4 2250 phdr.p_paddr = 0;
a07279c9
JH
2251 phdr.p_filesz = meta->dump_size;
2252 phdr.p_memsz = meta->end - meta->start;
1da177e4 2253 offset += phdr.p_filesz;
a07279c9
JH
2254 phdr.p_flags = 0;
2255 if (meta->flags & VM_READ)
2256 phdr.p_flags |= PF_R;
2257 if (meta->flags & VM_WRITE)
f4e5cc2c 2258 phdr.p_flags |= PF_W;
a07279c9 2259 if (meta->flags & VM_EXEC)
f4e5cc2c 2260 phdr.p_flags |= PF_X;
1da177e4
LT
2261 phdr.p_align = ELF_EXEC_PAGESIZE;
2262
ecc8c772 2263 if (!dump_emit(cprm, &phdr, sizeof(phdr)))
088e7af7 2264 goto end_coredump;
1da177e4
LT
2265 }
2266
506f21c5 2267 if (!elf_core_write_extra_phdrs(cprm, offset))
1fcccbac 2268 goto end_coredump;
1da177e4
LT
2269
2270 /* write out the notes section */
ecc8c772 2271 if (!write_note_info(&info, cprm))
3aba481f 2272 goto end_coredump;
1da177e4 2273
c39ab6de 2274 /* For cell spufs */
cdc3d562 2275 if (elf_coredump_extra_notes_write(cprm))
e5501492 2276 goto end_coredump;
bf1ab978 2277
d025c9db 2278 /* Align to page */
d0f1088b 2279 dump_skip_to(cprm, dataoff);
1da177e4 2280
b2708174
EB
2281 for (i = 0; i < cprm->vma_count; i++) {
2282 struct core_vma_metadata *meta = cprm->vma_meta + i;
a07279c9
JH
2283
2284 if (!dump_user_range(cprm, meta->start, meta->dump_size))
afc63a97 2285 goto end_coredump;
1da177e4
LT
2286 }
2287
aa3e7eaf 2288 if (!elf_core_write_extra_data(cprm))
1fcccbac 2289 goto end_coredump;
1da177e4 2290
8d9032bb 2291 if (e_phnum == PN_XNUM) {
13046ece 2292 if (!dump_emit(cprm, shdr4extnum, sizeof(*shdr4extnum)))
8d9032bb
DH
2293 goto end_coredump;
2294 }
2295
1da177e4 2296end_coredump:
3aba481f 2297 free_note_info(&info);
8d9032bb 2298 kfree(shdr4extnum);
93eb211e 2299 kfree(phdr4note);
1da177e4 2300 return has_dumped;
1da177e4
LT
2301}
2302
698ba7b5 2303#endif /* CONFIG_ELF_CORE */
1da177e4
LT
2304
2305static int __init init_elf_binfmt(void)
2306{
8fc3dc5a
AV
2307 register_binfmt(&elf_format);
2308 return 0;
1da177e4
LT
2309}
2310
2311static void __exit exit_elf_binfmt(void)
2312{
2313 /* Remove the COFF and ELF loaders. */
2314 unregister_binfmt(&elf_format);
2315}
2316
2317core_initcall(init_elf_binfmt);
2318module_exit(exit_elf_binfmt);
2319MODULE_LICENSE("GPL");