kexec.h 9.7 KB

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  1. #ifndef LINUX_KEXEC_H
  2. #define LINUX_KEXEC_H
  3. #define IND_DESTINATION_BIT 0
  4. #define IND_INDIRECTION_BIT 1
  5. #define IND_DONE_BIT 2
  6. #define IND_SOURCE_BIT 3
  7. #define IND_DESTINATION (1 << IND_DESTINATION_BIT)
  8. #define IND_INDIRECTION (1 << IND_INDIRECTION_BIT)
  9. #define IND_DONE (1 << IND_DONE_BIT)
  10. #define IND_SOURCE (1 << IND_SOURCE_BIT)
  11. #define IND_FLAGS (IND_DESTINATION | IND_INDIRECTION | IND_DONE | IND_SOURCE)
  12. #if !defined(__ASSEMBLY__)
  13. #include <uapi/linux/kexec.h>
  14. #ifdef CONFIG_KEXEC
  15. #include <linux/list.h>
  16. #include <linux/linkage.h>
  17. #include <linux/compat.h>
  18. #include <linux/ioport.h>
  19. #include <linux/elfcore.h>
  20. #include <linux/elf.h>
  21. #include <linux/module.h>
  22. #include <asm/kexec.h>
  23. /* Verify architecture specific macros are defined */
  24. #ifndef KEXEC_SOURCE_MEMORY_LIMIT
  25. #error KEXEC_SOURCE_MEMORY_LIMIT not defined
  26. #endif
  27. #ifndef KEXEC_DESTINATION_MEMORY_LIMIT
  28. #error KEXEC_DESTINATION_MEMORY_LIMIT not defined
  29. #endif
  30. #ifndef KEXEC_CONTROL_MEMORY_LIMIT
  31. #error KEXEC_CONTROL_MEMORY_LIMIT not defined
  32. #endif
  33. #ifndef KEXEC_CONTROL_PAGE_SIZE
  34. #error KEXEC_CONTROL_PAGE_SIZE not defined
  35. #endif
  36. #ifndef KEXEC_ARCH
  37. #error KEXEC_ARCH not defined
  38. #endif
  39. #ifndef KEXEC_CRASH_CONTROL_MEMORY_LIMIT
  40. #define KEXEC_CRASH_CONTROL_MEMORY_LIMIT KEXEC_CONTROL_MEMORY_LIMIT
  41. #endif
  42. #ifndef KEXEC_CRASH_MEM_ALIGN
  43. #define KEXEC_CRASH_MEM_ALIGN PAGE_SIZE
  44. #endif
  45. #define KEXEC_NOTE_HEAD_BYTES ALIGN(sizeof(struct elf_note), 4)
  46. #define KEXEC_CORE_NOTE_NAME "CORE"
  47. #define KEXEC_CORE_NOTE_NAME_BYTES ALIGN(sizeof(KEXEC_CORE_NOTE_NAME), 4)
  48. #define KEXEC_CORE_NOTE_DESC_BYTES ALIGN(sizeof(struct elf_prstatus), 4)
  49. /*
  50. * The per-cpu notes area is a list of notes terminated by a "NULL"
  51. * note header. For kdump, the code in vmcore.c runs in the context
  52. * of the second kernel to combine them into one note.
  53. */
  54. #ifndef KEXEC_NOTE_BYTES
  55. #define KEXEC_NOTE_BYTES ( (KEXEC_NOTE_HEAD_BYTES * 2) + \
  56. KEXEC_CORE_NOTE_NAME_BYTES + \
  57. KEXEC_CORE_NOTE_DESC_BYTES )
  58. #endif
  59. /*
  60. * This structure is used to hold the arguments that are used when loading
  61. * kernel binaries.
  62. */
  63. typedef unsigned long kimage_entry_t;
  64. struct kexec_segment {
  65. /*
  66. * This pointer can point to user memory if kexec_load() system
  67. * call is used or will point to kernel memory if
  68. * kexec_file_load() system call is used.
  69. *
  70. * Use ->buf when expecting to deal with user memory and use ->kbuf
  71. * when expecting to deal with kernel memory.
  72. */
  73. union {
  74. void __user *buf;
  75. void *kbuf;
  76. };
  77. size_t bufsz;
  78. unsigned long mem;
  79. size_t memsz;
  80. };
  81. #ifdef CONFIG_COMPAT
  82. struct compat_kexec_segment {
  83. compat_uptr_t buf;
  84. compat_size_t bufsz;
  85. compat_ulong_t mem; /* User space sees this as a (void *) ... */
  86. compat_size_t memsz;
  87. };
  88. #endif
  89. struct kexec_sha_region {
  90. unsigned long start;
  91. unsigned long len;
  92. };
  93. struct purgatory_info {
  94. /* Pointer to elf header of read only purgatory */
  95. Elf_Ehdr *ehdr;
  96. /* Pointer to purgatory sechdrs which are modifiable */
  97. Elf_Shdr *sechdrs;
  98. /*
  99. * Temporary buffer location where purgatory is loaded and relocated
  100. * This memory can be freed post image load
  101. */
  102. void *purgatory_buf;
  103. /* Address where purgatory is finally loaded and is executed from */
  104. unsigned long purgatory_load_addr;
  105. };
  106. struct kimage {
  107. kimage_entry_t head;
  108. kimage_entry_t *entry;
  109. kimage_entry_t *last_entry;
  110. unsigned long start;
  111. struct page *control_code_page;
  112. struct page *swap_page;
  113. unsigned long nr_segments;
  114. struct kexec_segment segment[KEXEC_SEGMENT_MAX];
  115. struct list_head control_pages;
  116. struct list_head dest_pages;
  117. struct list_head unusable_pages;
  118. /* Address of next control page to allocate for crash kernels. */
  119. unsigned long control_page;
  120. /* Flags to indicate special processing */
  121. unsigned int type : 1;
  122. #define KEXEC_TYPE_DEFAULT 0
  123. #define KEXEC_TYPE_CRASH 1
  124. unsigned int preserve_context : 1;
  125. /* If set, we are using file mode kexec syscall */
  126. unsigned int file_mode:1;
  127. #ifdef ARCH_HAS_KIMAGE_ARCH
  128. struct kimage_arch arch;
  129. #endif
  130. /* Additional fields for file based kexec syscall */
  131. void *kernel_buf;
  132. unsigned long kernel_buf_len;
  133. void *initrd_buf;
  134. unsigned long initrd_buf_len;
  135. char *cmdline_buf;
  136. unsigned long cmdline_buf_len;
  137. /* File operations provided by image loader */
  138. struct kexec_file_ops *fops;
  139. /* Image loader handling the kernel can store a pointer here */
  140. void *image_loader_data;
  141. /* Information for loading purgatory */
  142. struct purgatory_info purgatory_info;
  143. };
  144. /*
  145. * Keeps track of buffer parameters as provided by caller for requesting
  146. * memory placement of buffer.
  147. */
  148. struct kexec_buf {
  149. struct kimage *image;
  150. char *buffer;
  151. unsigned long bufsz;
  152. unsigned long mem;
  153. unsigned long memsz;
  154. unsigned long buf_align;
  155. unsigned long buf_min;
  156. unsigned long buf_max;
  157. bool top_down; /* allocate from top of memory hole */
  158. };
  159. typedef int (kexec_probe_t)(const char *kernel_buf, unsigned long kernel_size);
  160. typedef void *(kexec_load_t)(struct kimage *image, char *kernel_buf,
  161. unsigned long kernel_len, char *initrd,
  162. unsigned long initrd_len, char *cmdline,
  163. unsigned long cmdline_len);
  164. typedef int (kexec_cleanup_t)(void *loader_data);
  165. typedef int (kexec_verify_sig_t)(const char *kernel_buf,
  166. unsigned long kernel_len);
  167. struct kexec_file_ops {
  168. kexec_probe_t *probe;
  169. kexec_load_t *load;
  170. kexec_cleanup_t *cleanup;
  171. kexec_verify_sig_t *verify_sig;
  172. };
  173. /* kexec interface functions */
  174. extern void machine_kexec(struct kimage *image);
  175. extern int machine_kexec_prepare(struct kimage *image);
  176. extern void machine_kexec_cleanup(struct kimage *image);
  177. extern asmlinkage long sys_kexec_load(unsigned long entry,
  178. unsigned long nr_segments,
  179. struct kexec_segment __user *segments,
  180. unsigned long flags);
  181. extern int kernel_kexec(void);
  182. extern int kexec_add_buffer(struct kimage *image, char *buffer,
  183. unsigned long bufsz, unsigned long memsz,
  184. unsigned long buf_align, unsigned long buf_min,
  185. unsigned long buf_max, bool top_down,
  186. unsigned long *load_addr);
  187. extern struct page *kimage_alloc_control_pages(struct kimage *image,
  188. unsigned int order);
  189. extern int kexec_load_purgatory(struct kimage *image, unsigned long min,
  190. unsigned long max, int top_down,
  191. unsigned long *load_addr);
  192. extern int kexec_purgatory_get_set_symbol(struct kimage *image,
  193. const char *name, void *buf,
  194. unsigned int size, bool get_value);
  195. extern void *kexec_purgatory_get_symbol_addr(struct kimage *image,
  196. const char *name);
  197. extern void crash_kexec(struct pt_regs *);
  198. int kexec_should_crash(struct task_struct *);
  199. void crash_save_cpu(struct pt_regs *regs, int cpu);
  200. void crash_save_vmcoreinfo(void);
  201. void crash_map_reserved_pages(void);
  202. void crash_unmap_reserved_pages(void);
  203. void arch_crash_save_vmcoreinfo(void);
  204. __printf(1, 2)
  205. void vmcoreinfo_append_str(const char *fmt, ...);
  206. unsigned long paddr_vmcoreinfo_note(void);
  207. #define VMCOREINFO_OSRELEASE(value) \
  208. vmcoreinfo_append_str("OSRELEASE=%s\n", value)
  209. #define VMCOREINFO_PAGESIZE(value) \
  210. vmcoreinfo_append_str("PAGESIZE=%ld\n", value)
  211. #define VMCOREINFO_SYMBOL(name) \
  212. vmcoreinfo_append_str("SYMBOL(%s)=%lx\n", #name, (unsigned long)&name)
  213. #define VMCOREINFO_SIZE(name) \
  214. vmcoreinfo_append_str("SIZE(%s)=%lu\n", #name, \
  215. (unsigned long)sizeof(name))
  216. #define VMCOREINFO_STRUCT_SIZE(name) \
  217. vmcoreinfo_append_str("SIZE(%s)=%lu\n", #name, \
  218. (unsigned long)sizeof(struct name))
  219. #define VMCOREINFO_OFFSET(name, field) \
  220. vmcoreinfo_append_str("OFFSET(%s.%s)=%lu\n", #name, #field, \
  221. (unsigned long)offsetof(struct name, field))
  222. #define VMCOREINFO_LENGTH(name, value) \
  223. vmcoreinfo_append_str("LENGTH(%s)=%lu\n", #name, (unsigned long)value)
  224. #define VMCOREINFO_NUMBER(name) \
  225. vmcoreinfo_append_str("NUMBER(%s)=%ld\n", #name, (long)name)
  226. #define VMCOREINFO_CONFIG(name) \
  227. vmcoreinfo_append_str("CONFIG_%s=y\n", #name)
  228. extern struct kimage *kexec_image;
  229. extern struct kimage *kexec_crash_image;
  230. extern int kexec_load_disabled;
  231. #ifndef kexec_flush_icache_page
  232. #define kexec_flush_icache_page(page)
  233. #endif
  234. /* List of defined/legal kexec flags */
  235. #ifndef CONFIG_KEXEC_JUMP
  236. #define KEXEC_FLAGS KEXEC_ON_CRASH
  237. #else
  238. #define KEXEC_FLAGS (KEXEC_ON_CRASH | KEXEC_PRESERVE_CONTEXT)
  239. #endif
  240. /* List of defined/legal kexec file flags */
  241. #define KEXEC_FILE_FLAGS (KEXEC_FILE_UNLOAD | KEXEC_FILE_ON_CRASH | \
  242. KEXEC_FILE_NO_INITRAMFS)
  243. #define VMCOREINFO_BYTES (4096)
  244. #define VMCOREINFO_NOTE_NAME "VMCOREINFO"
  245. #define VMCOREINFO_NOTE_NAME_BYTES ALIGN(sizeof(VMCOREINFO_NOTE_NAME), 4)
  246. #define VMCOREINFO_NOTE_SIZE (KEXEC_NOTE_HEAD_BYTES*2 + VMCOREINFO_BYTES \
  247. + VMCOREINFO_NOTE_NAME_BYTES)
  248. /* Location of a reserved region to hold the crash kernel.
  249. */
  250. extern struct resource crashk_res;
  251. extern struct resource crashk_low_res;
  252. typedef u32 note_buf_t[KEXEC_NOTE_BYTES/4];
  253. extern note_buf_t __percpu *crash_notes;
  254. extern u32 vmcoreinfo_note[VMCOREINFO_NOTE_SIZE/4];
  255. extern size_t vmcoreinfo_size;
  256. extern size_t vmcoreinfo_max_size;
  257. /* flag to track if kexec reboot is in progress */
  258. extern bool kexec_in_progress;
  259. int __init parse_crashkernel(char *cmdline, unsigned long long system_ram,
  260. unsigned long long *crash_size, unsigned long long *crash_base);
  261. int parse_crashkernel_high(char *cmdline, unsigned long long system_ram,
  262. unsigned long long *crash_size, unsigned long long *crash_base);
  263. int parse_crashkernel_low(char *cmdline, unsigned long long system_ram,
  264. unsigned long long *crash_size, unsigned long long *crash_base);
  265. int crash_shrink_memory(unsigned long new_size);
  266. size_t crash_get_memory_size(void);
  267. void crash_free_reserved_phys_range(unsigned long begin, unsigned long end);
  268. #else /* !CONFIG_KEXEC */
  269. struct pt_regs;
  270. struct task_struct;
  271. static inline void crash_kexec(struct pt_regs *regs) { }
  272. static inline int kexec_should_crash(struct task_struct *p) { return 0; }
  273. #endif /* CONFIG_KEXEC */
  274. #endif /* !defined(__ASSEBMLY__) */
  275. #endif /* LINUX_KEXEC_H */