2 * fs/proc/vmcore.c Interface for accessing the crash
3 * dump from the system's previous life.
4 * Heavily borrowed from fs/proc/kcore.c
6 * Copyright (C) IBM Corporation, 2004. All rights reserved
11 #include <linux/kcore.h>
12 #include <linux/user.h>
13 #include <linux/elf.h>
14 #include <linux/elfcore.h>
15 #include <linux/export.h>
16 #include <linux/slab.h>
17 #include <linux/highmem.h>
18 #include <linux/printk.h>
19 #include <linux/bootmem.h>
20 #include <linux/init.h>
21 #include <linux/crash_dump.h>
22 #include <linux/list.h>
23 #include <linux/vmalloc.h>
24 #include <asm/uaccess.h>
28 /* List representing chunks of contiguous memory areas and their offsets in
31 static LIST_HEAD(vmcore_list);
33 /* Stores the pointer to the buffer containing kernel elf core headers. */
34 static char *elfcorebuf;
35 static size_t elfcorebuf_sz;
36 static size_t elfcorebuf_sz_orig;
38 static char *elfnotes_buf;
39 static size_t elfnotes_sz;
41 /* Total size of vmcore file. */
42 static u64 vmcore_size;
44 static struct proc_dir_entry *proc_vmcore = NULL;
47 * Returns > 0 for RAM pages, 0 for non-RAM pages, < 0 on error
48 * The called function has to take care of module refcounting.
50 static int (*oldmem_pfn_is_ram)(unsigned long pfn);
52 int register_oldmem_pfn_is_ram(int (*fn)(unsigned long pfn))
54 if (oldmem_pfn_is_ram)
56 oldmem_pfn_is_ram = fn;
59 EXPORT_SYMBOL_GPL(register_oldmem_pfn_is_ram);
61 void unregister_oldmem_pfn_is_ram(void)
63 oldmem_pfn_is_ram = NULL;
66 EXPORT_SYMBOL_GPL(unregister_oldmem_pfn_is_ram);
68 static int pfn_is_ram(unsigned long pfn)
70 int (*fn)(unsigned long pfn);
71 /* pfn is ram unless fn() checks pagetype */
75 * Ask hypervisor if the pfn is really ram.
76 * A ballooned page contains no data and reading from such a page
77 * will cause high load in the hypervisor.
79 fn = oldmem_pfn_is_ram;
86 /* Reads a page from the oldmem device from given offset. */
87 static ssize_t read_from_oldmem(char *buf, size_t count,
88 u64 *ppos, int userbuf)
90 unsigned long pfn, offset;
92 ssize_t read = 0, tmp;
97 offset = (unsigned long)(*ppos % PAGE_SIZE);
98 pfn = (unsigned long)(*ppos / PAGE_SIZE);
101 if (count > (PAGE_SIZE - offset))
102 nr_bytes = PAGE_SIZE - offset;
106 /* If pfn is not ram, return zeros for sparse dump files */
107 if (pfn_is_ram(pfn) == 0)
108 memset(buf, 0, nr_bytes);
110 tmp = copy_oldmem_page(pfn, buf, nr_bytes,
126 /* Read from the ELF header and then the crash dump. On error, negative value is
127 * returned otherwise number of bytes read are returned.
129 static ssize_t read_vmcore(struct file *file, char __user *buffer,
130 size_t buflen, loff_t *fpos)
132 ssize_t acc = 0, tmp;
135 struct vmcore *m = NULL;
137 if (buflen == 0 || *fpos >= vmcore_size)
140 /* trim buflen to not go beyond EOF */
141 if (buflen > vmcore_size - *fpos)
142 buflen = vmcore_size - *fpos;
144 /* Read ELF core header */
145 if (*fpos < elfcorebuf_sz) {
146 tsz = min(elfcorebuf_sz - (size_t)*fpos, buflen);
147 if (copy_to_user(buffer, elfcorebuf + *fpos, tsz))
154 /* leave now if filled buffer already */
159 /* Read Elf note segment */
160 if (*fpos < elfcorebuf_sz + elfnotes_sz) {
163 tsz = min(elfcorebuf_sz + elfnotes_sz - (size_t)*fpos, buflen);
164 kaddr = elfnotes_buf + *fpos - elfcorebuf_sz;
165 if (copy_to_user(buffer, kaddr, tsz))
172 /* leave now if filled buffer already */
177 list_for_each_entry(m, &vmcore_list, list) {
178 if (*fpos < m->offset + m->size) {
179 tsz = min_t(size_t, m->offset + m->size - *fpos, buflen);
180 start = m->paddr + *fpos - m->offset;
181 tmp = read_from_oldmem(buffer, tsz, &start, 1);
189 /* leave now if filled buffer already */
199 * alloc_elfnotes_buf - allocate buffer for ELF note segment in
202 * @notes_sz: size of buffer
204 * If CONFIG_MMU is defined, use vmalloc_user() to allow users to mmap
205 * the buffer to user-space by means of remap_vmalloc_range().
207 * If CONFIG_MMU is not defined, use vzalloc() since mmap_vmcore() is
208 * disabled and there's no need to allow users to mmap the buffer.
210 static inline char *alloc_elfnotes_buf(size_t notes_sz)
213 return vmalloc_user(notes_sz);
215 return vzalloc(notes_sz);
220 * Disable mmap_vmcore() if CONFIG_MMU is not defined. MMU is
221 * essential for mmap_vmcore() in order to map physically
222 * non-contiguous objects (ELF header, ELF note segment and memory
223 * regions in the 1st kernel pointed to by PT_LOAD entries) into
224 * virtually contiguous user-space in ELF layout.
226 #if defined(CONFIG_MMU) && !defined(CONFIG_S390)
227 static int mmap_vmcore(struct file *file, struct vm_area_struct *vma)
229 size_t size = vma->vm_end - vma->vm_start;
230 u64 start, end, len, tsz;
233 start = (u64)vma->vm_pgoff << PAGE_SHIFT;
236 if (size > vmcore_size || end > vmcore_size)
239 if (vma->vm_flags & (VM_WRITE | VM_EXEC))
242 vma->vm_flags &= ~(VM_MAYWRITE | VM_MAYEXEC);
243 vma->vm_flags |= VM_MIXEDMAP;
247 if (start < elfcorebuf_sz) {
250 tsz = min(elfcorebuf_sz - (size_t)start, size);
251 pfn = __pa(elfcorebuf + start) >> PAGE_SHIFT;
252 if (remap_pfn_range(vma, vma->vm_start, pfn, tsz,
263 if (start < elfcorebuf_sz + elfnotes_sz) {
266 tsz = min(elfcorebuf_sz + elfnotes_sz - (size_t)start, size);
267 kaddr = elfnotes_buf + start - elfcorebuf_sz;
268 if (remap_vmalloc_range_partial(vma, vma->vm_start + len,
279 list_for_each_entry(m, &vmcore_list, list) {
280 if (start < m->offset + m->size) {
283 tsz = min_t(size_t, m->offset + m->size - start, size);
284 paddr = m->paddr + start - m->offset;
285 if (remap_pfn_range(vma, vma->vm_start + len,
286 paddr >> PAGE_SHIFT, tsz,
300 do_munmap(vma->vm_mm, vma->vm_start, len);
304 static int mmap_vmcore(struct file *file, struct vm_area_struct *vma)
310 static const struct file_operations proc_vmcore_operations = {
312 .llseek = default_llseek,
316 static struct vmcore* __init get_new_element(void)
318 return kzalloc(sizeof(struct vmcore), GFP_KERNEL);
321 static u64 __init get_vmcore_size(size_t elfsz, size_t elfnotesegsz,
322 struct list_head *vc_list)
327 size = elfsz + elfnotesegsz;
328 list_for_each_entry(m, vc_list, list) {
335 * update_note_header_size_elf64 - update p_memsz member of each PT_NOTE entry
337 * @ehdr_ptr: ELF header
339 * This function updates p_memsz member of each PT_NOTE entry in the
340 * program header table pointed to by @ehdr_ptr to real size of ELF
343 static int __init update_note_header_size_elf64(const Elf64_Ehdr *ehdr_ptr)
346 Elf64_Phdr *phdr_ptr;
347 Elf64_Nhdr *nhdr_ptr;
349 phdr_ptr = (Elf64_Phdr *)(ehdr_ptr + 1);
350 for (i = 0; i < ehdr_ptr->e_phnum; i++, phdr_ptr++) {
352 u64 offset, max_sz, sz, real_sz = 0;
353 if (phdr_ptr->p_type != PT_NOTE)
355 max_sz = phdr_ptr->p_memsz;
356 offset = phdr_ptr->p_offset;
357 notes_section = kmalloc(max_sz, GFP_KERNEL);
360 rc = read_from_oldmem(notes_section, max_sz, &offset, 0);
362 kfree(notes_section);
365 nhdr_ptr = notes_section;
366 while (real_sz < max_sz) {
367 if (nhdr_ptr->n_namesz == 0)
369 sz = sizeof(Elf64_Nhdr) +
370 ((nhdr_ptr->n_namesz + 3) & ~3) +
371 ((nhdr_ptr->n_descsz + 3) & ~3);
373 nhdr_ptr = (Elf64_Nhdr*)((char*)nhdr_ptr + sz);
375 kfree(notes_section);
376 phdr_ptr->p_memsz = real_sz;
383 * get_note_number_and_size_elf64 - get the number of PT_NOTE program
384 * headers and sum of real size of their ELF note segment headers and
387 * @ehdr_ptr: ELF header
388 * @nr_ptnote: buffer for the number of PT_NOTE program headers
389 * @sz_ptnote: buffer for size of unique PT_NOTE program header
391 * This function is used to merge multiple PT_NOTE program headers
392 * into a unique single one. The resulting unique entry will have
393 * @sz_ptnote in its phdr->p_mem.
395 * It is assumed that program headers with PT_NOTE type pointed to by
396 * @ehdr_ptr has already been updated by update_note_header_size_elf64
397 * and each of PT_NOTE program headers has actual ELF note segment
398 * size in its p_memsz member.
400 static int __init get_note_number_and_size_elf64(const Elf64_Ehdr *ehdr_ptr,
401 int *nr_ptnote, u64 *sz_ptnote)
404 Elf64_Phdr *phdr_ptr;
406 *nr_ptnote = *sz_ptnote = 0;
408 phdr_ptr = (Elf64_Phdr *)(ehdr_ptr + 1);
409 for (i = 0; i < ehdr_ptr->e_phnum; i++, phdr_ptr++) {
410 if (phdr_ptr->p_type != PT_NOTE)
413 *sz_ptnote += phdr_ptr->p_memsz;
420 * copy_notes_elf64 - copy ELF note segments in a given buffer
422 * @ehdr_ptr: ELF header
423 * @notes_buf: buffer into which ELF note segments are copied
425 * This function is used to copy ELF note segment in the 1st kernel
426 * into the buffer @notes_buf in the 2nd kernel. It is assumed that
427 * size of the buffer @notes_buf is equal to or larger than sum of the
428 * real ELF note segment headers and data.
430 * It is assumed that program headers with PT_NOTE type pointed to by
431 * @ehdr_ptr has already been updated by update_note_header_size_elf64
432 * and each of PT_NOTE program headers has actual ELF note segment
433 * size in its p_memsz member.
435 static int __init copy_notes_elf64(const Elf64_Ehdr *ehdr_ptr, char *notes_buf)
438 Elf64_Phdr *phdr_ptr;
440 phdr_ptr = (Elf64_Phdr*)(ehdr_ptr + 1);
442 for (i = 0; i < ehdr_ptr->e_phnum; i++, phdr_ptr++) {
444 if (phdr_ptr->p_type != PT_NOTE)
446 offset = phdr_ptr->p_offset;
447 rc = read_from_oldmem(notes_buf, phdr_ptr->p_memsz, &offset, 0);
450 notes_buf += phdr_ptr->p_memsz;
456 /* Merges all the PT_NOTE headers into one. */
457 static int __init merge_note_headers_elf64(char *elfptr, size_t *elfsz,
458 char **notes_buf, size_t *notes_sz)
460 int i, nr_ptnote=0, rc=0;
462 Elf64_Ehdr *ehdr_ptr;
464 u64 phdr_sz = 0, note_off;
466 ehdr_ptr = (Elf64_Ehdr *)elfptr;
468 rc = update_note_header_size_elf64(ehdr_ptr);
472 rc = get_note_number_and_size_elf64(ehdr_ptr, &nr_ptnote, &phdr_sz);
476 *notes_sz = roundup(phdr_sz, PAGE_SIZE);
477 *notes_buf = alloc_elfnotes_buf(*notes_sz);
481 rc = copy_notes_elf64(ehdr_ptr, *notes_buf);
485 /* Prepare merged PT_NOTE program header. */
486 phdr.p_type = PT_NOTE;
488 note_off = sizeof(Elf64_Ehdr) +
489 (ehdr_ptr->e_phnum - nr_ptnote +1) * sizeof(Elf64_Phdr);
490 phdr.p_offset = roundup(note_off, PAGE_SIZE);
491 phdr.p_vaddr = phdr.p_paddr = 0;
492 phdr.p_filesz = phdr.p_memsz = phdr_sz;
495 /* Add merged PT_NOTE program header*/
496 tmp = elfptr + sizeof(Elf64_Ehdr);
497 memcpy(tmp, &phdr, sizeof(phdr));
500 /* Remove unwanted PT_NOTE program headers. */
501 i = (nr_ptnote - 1) * sizeof(Elf64_Phdr);
503 memmove(tmp, tmp+i, ((*elfsz)-sizeof(Elf64_Ehdr)-sizeof(Elf64_Phdr)));
504 memset(elfptr + *elfsz, 0, i);
505 *elfsz = roundup(*elfsz, PAGE_SIZE);
507 /* Modify e_phnum to reflect merged headers. */
508 ehdr_ptr->e_phnum = ehdr_ptr->e_phnum - nr_ptnote + 1;
514 * update_note_header_size_elf32 - update p_memsz member of each PT_NOTE entry
516 * @ehdr_ptr: ELF header
518 * This function updates p_memsz member of each PT_NOTE entry in the
519 * program header table pointed to by @ehdr_ptr to real size of ELF
522 static int __init update_note_header_size_elf32(const Elf32_Ehdr *ehdr_ptr)
525 Elf32_Phdr *phdr_ptr;
526 Elf32_Nhdr *nhdr_ptr;
528 phdr_ptr = (Elf32_Phdr *)(ehdr_ptr + 1);
529 for (i = 0; i < ehdr_ptr->e_phnum; i++, phdr_ptr++) {
531 u64 offset, max_sz, sz, real_sz = 0;
532 if (phdr_ptr->p_type != PT_NOTE)
534 max_sz = phdr_ptr->p_memsz;
535 offset = phdr_ptr->p_offset;
536 notes_section = kmalloc(max_sz, GFP_KERNEL);
539 rc = read_from_oldmem(notes_section, max_sz, &offset, 0);
541 kfree(notes_section);
544 nhdr_ptr = notes_section;
545 while (real_sz < max_sz) {
546 if (nhdr_ptr->n_namesz == 0)
548 sz = sizeof(Elf32_Nhdr) +
549 ((nhdr_ptr->n_namesz + 3) & ~3) +
550 ((nhdr_ptr->n_descsz + 3) & ~3);
552 nhdr_ptr = (Elf32_Nhdr*)((char*)nhdr_ptr + sz);
554 kfree(notes_section);
555 phdr_ptr->p_memsz = real_sz;
562 * get_note_number_and_size_elf32 - get the number of PT_NOTE program
563 * headers and sum of real size of their ELF note segment headers and
566 * @ehdr_ptr: ELF header
567 * @nr_ptnote: buffer for the number of PT_NOTE program headers
568 * @sz_ptnote: buffer for size of unique PT_NOTE program header
570 * This function is used to merge multiple PT_NOTE program headers
571 * into a unique single one. The resulting unique entry will have
572 * @sz_ptnote in its phdr->p_mem.
574 * It is assumed that program headers with PT_NOTE type pointed to by
575 * @ehdr_ptr has already been updated by update_note_header_size_elf32
576 * and each of PT_NOTE program headers has actual ELF note segment
577 * size in its p_memsz member.
579 static int __init get_note_number_and_size_elf32(const Elf32_Ehdr *ehdr_ptr,
580 int *nr_ptnote, u64 *sz_ptnote)
583 Elf32_Phdr *phdr_ptr;
585 *nr_ptnote = *sz_ptnote = 0;
587 phdr_ptr = (Elf32_Phdr *)(ehdr_ptr + 1);
588 for (i = 0; i < ehdr_ptr->e_phnum; i++, phdr_ptr++) {
589 if (phdr_ptr->p_type != PT_NOTE)
592 *sz_ptnote += phdr_ptr->p_memsz;
599 * copy_notes_elf32 - copy ELF note segments in a given buffer
601 * @ehdr_ptr: ELF header
602 * @notes_buf: buffer into which ELF note segments are copied
604 * This function is used to copy ELF note segment in the 1st kernel
605 * into the buffer @notes_buf in the 2nd kernel. It is assumed that
606 * size of the buffer @notes_buf is equal to or larger than sum of the
607 * real ELF note segment headers and data.
609 * It is assumed that program headers with PT_NOTE type pointed to by
610 * @ehdr_ptr has already been updated by update_note_header_size_elf32
611 * and each of PT_NOTE program headers has actual ELF note segment
612 * size in its p_memsz member.
614 static int __init copy_notes_elf32(const Elf32_Ehdr *ehdr_ptr, char *notes_buf)
617 Elf32_Phdr *phdr_ptr;
619 phdr_ptr = (Elf32_Phdr*)(ehdr_ptr + 1);
621 for (i = 0; i < ehdr_ptr->e_phnum; i++, phdr_ptr++) {
623 if (phdr_ptr->p_type != PT_NOTE)
625 offset = phdr_ptr->p_offset;
626 rc = read_from_oldmem(notes_buf, phdr_ptr->p_memsz, &offset, 0);
629 notes_buf += phdr_ptr->p_memsz;
635 /* Merges all the PT_NOTE headers into one. */
636 static int __init merge_note_headers_elf32(char *elfptr, size_t *elfsz,
637 char **notes_buf, size_t *notes_sz)
639 int i, nr_ptnote=0, rc=0;
641 Elf32_Ehdr *ehdr_ptr;
643 u64 phdr_sz = 0, note_off;
645 ehdr_ptr = (Elf32_Ehdr *)elfptr;
647 rc = update_note_header_size_elf32(ehdr_ptr);
651 rc = get_note_number_and_size_elf32(ehdr_ptr, &nr_ptnote, &phdr_sz);
655 *notes_sz = roundup(phdr_sz, PAGE_SIZE);
656 *notes_buf = alloc_elfnotes_buf(*notes_sz);
660 rc = copy_notes_elf32(ehdr_ptr, *notes_buf);
664 /* Prepare merged PT_NOTE program header. */
665 phdr.p_type = PT_NOTE;
667 note_off = sizeof(Elf32_Ehdr) +
668 (ehdr_ptr->e_phnum - nr_ptnote +1) * sizeof(Elf32_Phdr);
669 phdr.p_offset = roundup(note_off, PAGE_SIZE);
670 phdr.p_vaddr = phdr.p_paddr = 0;
671 phdr.p_filesz = phdr.p_memsz = phdr_sz;
674 /* Add merged PT_NOTE program header*/
675 tmp = elfptr + sizeof(Elf32_Ehdr);
676 memcpy(tmp, &phdr, sizeof(phdr));
679 /* Remove unwanted PT_NOTE program headers. */
680 i = (nr_ptnote - 1) * sizeof(Elf32_Phdr);
682 memmove(tmp, tmp+i, ((*elfsz)-sizeof(Elf32_Ehdr)-sizeof(Elf32_Phdr)));
683 memset(elfptr + *elfsz, 0, i);
684 *elfsz = roundup(*elfsz, PAGE_SIZE);
686 /* Modify e_phnum to reflect merged headers. */
687 ehdr_ptr->e_phnum = ehdr_ptr->e_phnum - nr_ptnote + 1;
692 /* Add memory chunks represented by program headers to vmcore list. Also update
693 * the new offset fields of exported program headers. */
694 static int __init process_ptload_program_headers_elf64(char *elfptr,
697 struct list_head *vc_list)
700 Elf64_Ehdr *ehdr_ptr;
701 Elf64_Phdr *phdr_ptr;
705 ehdr_ptr = (Elf64_Ehdr *)elfptr;
706 phdr_ptr = (Elf64_Phdr*)(elfptr + sizeof(Elf64_Ehdr)); /* PT_NOTE hdr */
708 /* Skip Elf header, program headers and Elf note segment. */
709 vmcore_off = elfsz + elfnotes_sz;
711 for (i = 0; i < ehdr_ptr->e_phnum; i++, phdr_ptr++) {
712 u64 paddr, start, end, size;
714 if (phdr_ptr->p_type != PT_LOAD)
717 paddr = phdr_ptr->p_offset;
718 start = rounddown(paddr, PAGE_SIZE);
719 end = roundup(paddr + phdr_ptr->p_memsz, PAGE_SIZE);
722 /* Add this contiguous chunk of memory to vmcore list.*/
723 new = get_new_element();
728 list_add_tail(&new->list, vc_list);
730 /* Update the program header offset. */
731 phdr_ptr->p_offset = vmcore_off + (paddr - start);
732 vmcore_off = vmcore_off + size;
737 static int __init process_ptload_program_headers_elf32(char *elfptr,
740 struct list_head *vc_list)
743 Elf32_Ehdr *ehdr_ptr;
744 Elf32_Phdr *phdr_ptr;
748 ehdr_ptr = (Elf32_Ehdr *)elfptr;
749 phdr_ptr = (Elf32_Phdr*)(elfptr + sizeof(Elf32_Ehdr)); /* PT_NOTE hdr */
751 /* Skip Elf header, program headers and Elf note segment. */
752 vmcore_off = elfsz + elfnotes_sz;
754 for (i = 0; i < ehdr_ptr->e_phnum; i++, phdr_ptr++) {
755 u64 paddr, start, end, size;
757 if (phdr_ptr->p_type != PT_LOAD)
760 paddr = phdr_ptr->p_offset;
761 start = rounddown(paddr, PAGE_SIZE);
762 end = roundup(paddr + phdr_ptr->p_memsz, PAGE_SIZE);
765 /* Add this contiguous chunk of memory to vmcore list.*/
766 new = get_new_element();
771 list_add_tail(&new->list, vc_list);
773 /* Update the program header offset */
774 phdr_ptr->p_offset = vmcore_off + (paddr - start);
775 vmcore_off = vmcore_off + size;
780 /* Sets offset fields of vmcore elements. */
781 static void __init set_vmcore_list_offsets(size_t elfsz, size_t elfnotes_sz,
782 struct list_head *vc_list)
787 /* Skip Elf header, program headers and Elf note segment. */
788 vmcore_off = elfsz + elfnotes_sz;
790 list_for_each_entry(m, vc_list, list) {
791 m->offset = vmcore_off;
792 vmcore_off += m->size;
796 static void free_elfcorebuf(void)
798 free_pages((unsigned long)elfcorebuf, get_order(elfcorebuf_sz_orig));
804 static int __init parse_crash_elf64_headers(void)
810 addr = elfcorehdr_addr;
812 /* Read Elf header */
813 rc = read_from_oldmem((char*)&ehdr, sizeof(Elf64_Ehdr), &addr, 0);
817 /* Do some basic Verification. */
818 if (memcmp(ehdr.e_ident, ELFMAG, SELFMAG) != 0 ||
819 (ehdr.e_type != ET_CORE) ||
820 !vmcore_elf64_check_arch(&ehdr) ||
821 ehdr.e_ident[EI_CLASS] != ELFCLASS64 ||
822 ehdr.e_ident[EI_VERSION] != EV_CURRENT ||
823 ehdr.e_version != EV_CURRENT ||
824 ehdr.e_ehsize != sizeof(Elf64_Ehdr) ||
825 ehdr.e_phentsize != sizeof(Elf64_Phdr) ||
827 pr_warn("Warning: Core image elf header is not sane\n");
831 /* Read in all elf headers. */
832 elfcorebuf_sz_orig = sizeof(Elf64_Ehdr) +
833 ehdr.e_phnum * sizeof(Elf64_Phdr);
834 elfcorebuf_sz = elfcorebuf_sz_orig;
835 elfcorebuf = (void *)__get_free_pages(GFP_KERNEL | __GFP_ZERO,
836 get_order(elfcorebuf_sz_orig));
839 addr = elfcorehdr_addr;
840 rc = read_from_oldmem(elfcorebuf, elfcorebuf_sz_orig, &addr, 0);
844 /* Merge all PT_NOTE headers into one. */
845 rc = merge_note_headers_elf64(elfcorebuf, &elfcorebuf_sz,
846 &elfnotes_buf, &elfnotes_sz);
849 rc = process_ptload_program_headers_elf64(elfcorebuf, elfcorebuf_sz,
850 elfnotes_sz, &vmcore_list);
853 set_vmcore_list_offsets(elfcorebuf_sz, elfnotes_sz, &vmcore_list);
860 static int __init parse_crash_elf32_headers(void)
866 addr = elfcorehdr_addr;
868 /* Read Elf header */
869 rc = read_from_oldmem((char*)&ehdr, sizeof(Elf32_Ehdr), &addr, 0);
873 /* Do some basic Verification. */
874 if (memcmp(ehdr.e_ident, ELFMAG, SELFMAG) != 0 ||
875 (ehdr.e_type != ET_CORE) ||
876 !elf_check_arch(&ehdr) ||
877 ehdr.e_ident[EI_CLASS] != ELFCLASS32||
878 ehdr.e_ident[EI_VERSION] != EV_CURRENT ||
879 ehdr.e_version != EV_CURRENT ||
880 ehdr.e_ehsize != sizeof(Elf32_Ehdr) ||
881 ehdr.e_phentsize != sizeof(Elf32_Phdr) ||
883 pr_warn("Warning: Core image elf header is not sane\n");
887 /* Read in all elf headers. */
888 elfcorebuf_sz_orig = sizeof(Elf32_Ehdr) + ehdr.e_phnum * sizeof(Elf32_Phdr);
889 elfcorebuf_sz = elfcorebuf_sz_orig;
890 elfcorebuf = (void *)__get_free_pages(GFP_KERNEL | __GFP_ZERO,
891 get_order(elfcorebuf_sz_orig));
894 addr = elfcorehdr_addr;
895 rc = read_from_oldmem(elfcorebuf, elfcorebuf_sz_orig, &addr, 0);
899 /* Merge all PT_NOTE headers into one. */
900 rc = merge_note_headers_elf32(elfcorebuf, &elfcorebuf_sz,
901 &elfnotes_buf, &elfnotes_sz);
904 rc = process_ptload_program_headers_elf32(elfcorebuf, elfcorebuf_sz,
905 elfnotes_sz, &vmcore_list);
908 set_vmcore_list_offsets(elfcorebuf_sz, elfnotes_sz, &vmcore_list);
915 static int __init parse_crash_elf_headers(void)
917 unsigned char e_ident[EI_NIDENT];
921 addr = elfcorehdr_addr;
922 rc = read_from_oldmem(e_ident, EI_NIDENT, &addr, 0);
925 if (memcmp(e_ident, ELFMAG, SELFMAG) != 0) {
926 pr_warn("Warning: Core image elf header not found\n");
930 if (e_ident[EI_CLASS] == ELFCLASS64) {
931 rc = parse_crash_elf64_headers();
934 } else if (e_ident[EI_CLASS] == ELFCLASS32) {
935 rc = parse_crash_elf32_headers();
939 pr_warn("Warning: Core image elf header is not sane\n");
943 /* Determine vmcore size. */
944 vmcore_size = get_vmcore_size(elfcorebuf_sz, elfnotes_sz,
950 /* Init function for vmcore module. */
951 static int __init vmcore_init(void)
955 /* If elfcorehdr= has been passed in cmdline, then capture the dump.*/
956 if (!(is_vmcore_usable()))
958 rc = parse_crash_elf_headers();
960 pr_warn("Kdump: vmcore not initialized\n");
964 proc_vmcore = proc_create("vmcore", S_IRUSR, NULL, &proc_vmcore_operations);
966 proc_vmcore->size = vmcore_size;
969 module_init(vmcore_init)
971 /* Cleanup function for vmcore module. */
972 void vmcore_cleanup(void)
974 struct list_head *pos, *next;
977 proc_remove(proc_vmcore);
981 /* clear the vmcore list. */
982 list_for_each_safe(pos, next, &vmcore_list) {
985 m = list_entry(pos, struct vmcore, list);
991 EXPORT_SYMBOL_GPL(vmcore_cleanup);