init.h 10 KB

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  1. #ifndef _LINUX_INIT_H
  2. #define _LINUX_INIT_H
  3. #include <linux/compiler.h>
  4. /* These macros are used to mark some functions or
  5. * initialized data (doesn't apply to uninitialized data)
  6. * as `initialization' functions. The kernel can take this
  7. * as hint that the function is used only during the initialization
  8. * phase and free up used memory resources after
  9. *
  10. * Usage:
  11. * For functions:
  12. *
  13. * You should add __init immediately before the function name, like:
  14. *
  15. * static void __init initme(int x, int y)
  16. * {
  17. * extern int z; z = x * y;
  18. * }
  19. *
  20. * If the function has a prototype somewhere, you can also add
  21. * __init between closing brace of the prototype and semicolon:
  22. *
  23. * extern int initialize_foobar_device(int, int, int) __init;
  24. *
  25. * For initialized data:
  26. * You should insert __initdata between the variable name and equal
  27. * sign followed by value, e.g.:
  28. *
  29. * static int init_variable __initdata = 0;
  30. * static char linux_logo[] __initdata = { 0x32, 0x36, ... };
  31. *
  32. * Don't forget to initialize data not at file scope, i.e. within a function,
  33. * as gcc otherwise puts the data into the bss section and not into the init
  34. * section.
  35. *
  36. * Also note, that this data cannot be "const".
  37. */
  38. /* These are for everybody (although not all archs will actually
  39. discard it in modules) */
  40. #define __init __attribute__ ((__section__ (".init.text")))
  41. #define __initdata __attribute__ ((__section__ (".init.data")))
  42. #define __exitdata __attribute__ ((__section__(".exit.data")))
  43. #define __exit_call __attribute_used__ __attribute__ ((__section__ (".exitcall.exit")))
  44. /* modpost check for section mismatches during the kernel build.
  45. * A section mismatch happens when there are references from a
  46. * code or data section to an init section (both code or data).
  47. * The init sections are (for most archs) discarded by the kernel
  48. * when early init has completed so all such references are potential bugs.
  49. * For exit sections the same issue exists.
  50. * The following markers are used for the cases where the reference to
  51. * the init/exit section (code or data) is valid and will teach modpost
  52. * not to issue a warning.
  53. * The markers follow same syntax rules as __init / __initdata. */
  54. #define __init_refok noinline __attribute__ ((__section__ (".text.init.refok")))
  55. #define __initdata_refok __attribute__ ((__section__ (".data.init.refok")))
  56. #ifdef MODULE
  57. #define __exit __attribute__ ((__section__(".exit.text")))
  58. #else
  59. #define __exit __attribute_used__ __attribute__ ((__section__(".exit.text")))
  60. #endif
  61. /* For assembly routines */
  62. #define __INIT .section ".init.text","ax"
  63. #define __FINIT .previous
  64. #define __INITDATA .section ".init.data","aw"
  65. #ifndef __ASSEMBLY__
  66. /*
  67. * Used for initialization calls..
  68. */
  69. typedef int (*initcall_t)(void);
  70. typedef void (*exitcall_t)(void);
  71. extern initcall_t __con_initcall_start[], __con_initcall_end[];
  72. extern initcall_t __security_initcall_start[], __security_initcall_end[];
  73. /* Defined in init/main.c */
  74. extern char __initdata boot_command_line[];
  75. extern char *saved_command_line;
  76. extern unsigned int reset_devices;
  77. /* used by init/main.c */
  78. void setup_arch(char **);
  79. void prepare_namespace(void);
  80. #endif
  81. #ifndef MODULE
  82. #ifndef __ASSEMBLY__
  83. /* initcalls are now grouped by functionality into separate
  84. * subsections. Ordering inside the subsections is determined
  85. * by link order.
  86. * For backwards compatibility, initcall() puts the call in
  87. * the device init subsection.
  88. *
  89. * The `id' arg to __define_initcall() is needed so that multiple initcalls
  90. * can point at the same handler without causing duplicate-symbol build errors.
  91. */
  92. #define __define_initcall(level,fn,id) \
  93. static initcall_t __initcall_##fn##id __attribute_used__ \
  94. __attribute__((__section__(".initcall" level ".init"))) = fn
  95. /*
  96. * A "pure" initcall has no dependencies on anything else, and purely
  97. * initializes variables that couldn't be statically initialized.
  98. *
  99. * This only exists for built-in code, not for modules.
  100. */
  101. #define pure_initcall(fn) __define_initcall("0",fn,1)
  102. #define core_initcall(fn) __define_initcall("1",fn,1)
  103. #define core_initcall_sync(fn) __define_initcall("1s",fn,1s)
  104. #define postcore_initcall(fn) __define_initcall("2",fn,2)
  105. #define postcore_initcall_sync(fn) __define_initcall("2s",fn,2s)
  106. #define arch_initcall(fn) __define_initcall("3",fn,3)
  107. #define arch_initcall_sync(fn) __define_initcall("3s",fn,3s)
  108. #define subsys_initcall(fn) __define_initcall("4",fn,4)
  109. #define subsys_initcall_sync(fn) __define_initcall("4s",fn,4s)
  110. #define fs_initcall(fn) __define_initcall("5",fn,5)
  111. #define fs_initcall_sync(fn) __define_initcall("5s",fn,5s)
  112. #define rootfs_initcall(fn) __define_initcall("rootfs",fn,rootfs)
  113. #define device_initcall(fn) __define_initcall("6",fn,6)
  114. #define device_initcall_sync(fn) __define_initcall("6s",fn,6s)
  115. #define late_initcall(fn) __define_initcall("7",fn,7)
  116. #define late_initcall_sync(fn) __define_initcall("7s",fn,7s)
  117. #define __initcall(fn) device_initcall(fn)
  118. #define __exitcall(fn) \
  119. static exitcall_t __exitcall_##fn __exit_call = fn
  120. #define console_initcall(fn) \
  121. static initcall_t __initcall_##fn \
  122. __attribute_used__ __attribute__((__section__(".con_initcall.init")))=fn
  123. #define security_initcall(fn) \
  124. static initcall_t __initcall_##fn \
  125. __attribute_used__ __attribute__((__section__(".security_initcall.init"))) = fn
  126. struct obs_kernel_param {
  127. const char *str;
  128. int (*setup_func)(char *);
  129. int early;
  130. };
  131. /*
  132. * Only for really core code. See moduleparam.h for the normal way.
  133. *
  134. * Force the alignment so the compiler doesn't space elements of the
  135. * obs_kernel_param "array" too far apart in .init.setup.
  136. */
  137. #define __setup_param(str, unique_id, fn, early) \
  138. static char __setup_str_##unique_id[] __initdata = str; \
  139. static struct obs_kernel_param __setup_##unique_id \
  140. __attribute_used__ \
  141. __attribute__((__section__(".init.setup"))) \
  142. __attribute__((aligned((sizeof(long))))) \
  143. = { __setup_str_##unique_id, fn, early }
  144. #define __setup_null_param(str, unique_id) \
  145. __setup_param(str, unique_id, NULL, 0)
  146. #define __setup(str, fn) \
  147. __setup_param(str, fn, fn, 0)
  148. #define __obsolete_setup(str) \
  149. __setup_null_param(str, __LINE__)
  150. /* NOTE: fn is as per module_param, not __setup! Emits warning if fn
  151. * returns non-zero. */
  152. #define early_param(str, fn) \
  153. __setup_param(str, fn, fn, 1)
  154. /* Relies on boot_command_line being set */
  155. void __init parse_early_param(void);
  156. #endif /* __ASSEMBLY__ */
  157. /**
  158. * module_init() - driver initialization entry point
  159. * @x: function to be run at kernel boot time or module insertion
  160. *
  161. * module_init() will either be called during do_initcalls() (if
  162. * builtin) or at module insertion time (if a module). There can only
  163. * be one per module.
  164. */
  165. #define module_init(x) __initcall(x);
  166. /**
  167. * module_exit() - driver exit entry point
  168. * @x: function to be run when driver is removed
  169. *
  170. * module_exit() will wrap the driver clean-up code
  171. * with cleanup_module() when used with rmmod when
  172. * the driver is a module. If the driver is statically
  173. * compiled into the kernel, module_exit() has no effect.
  174. * There can only be one per module.
  175. */
  176. #define module_exit(x) __exitcall(x);
  177. #else /* MODULE */
  178. /* Don't use these in modules, but some people do... */
  179. #define core_initcall(fn) module_init(fn)
  180. #define postcore_initcall(fn) module_init(fn)
  181. #define arch_initcall(fn) module_init(fn)
  182. #define subsys_initcall(fn) module_init(fn)
  183. #define fs_initcall(fn) module_init(fn)
  184. #define device_initcall(fn) module_init(fn)
  185. #define late_initcall(fn) module_init(fn)
  186. #define security_initcall(fn) module_init(fn)
  187. /* These macros create a dummy inline: gcc 2.9x does not count alias
  188. as usage, hence the `unused function' warning when __init functions
  189. are declared static. We use the dummy __*_module_inline functions
  190. both to kill the warning and check the type of the init/cleanup
  191. function. */
  192. /* Each module must use one module_init(), or one no_module_init */
  193. #define module_init(initfn) \
  194. static inline initcall_t __inittest(void) \
  195. { return initfn; } \
  196. int init_module(void) __attribute__((alias(#initfn)));
  197. /* This is only required if you want to be unloadable. */
  198. #define module_exit(exitfn) \
  199. static inline exitcall_t __exittest(void) \
  200. { return exitfn; } \
  201. void cleanup_module(void) __attribute__((alias(#exitfn)));
  202. #define __setup_param(str, unique_id, fn) /* nothing */
  203. #define __setup_null_param(str, unique_id) /* nothing */
  204. #define __setup(str, func) /* nothing */
  205. #define __obsolete_setup(str) /* nothing */
  206. #endif
  207. /* Data marked not to be saved by software suspend */
  208. #define __nosavedata __attribute__ ((__section__ (".data.nosave")))
  209. /* This means "can be init if no module support, otherwise module load
  210. may call it." */
  211. #ifdef CONFIG_MODULES
  212. #define __init_or_module
  213. #define __initdata_or_module
  214. #else
  215. #define __init_or_module __init
  216. #define __initdata_or_module __initdata
  217. #endif /*CONFIG_MODULES*/
  218. #ifdef CONFIG_HOTPLUG
  219. #define __devinit
  220. #define __devinitdata
  221. #define __devexit
  222. #define __devexitdata
  223. #else
  224. #define __devinit __init
  225. #define __devinitdata __initdata
  226. #define __devexit __exit
  227. #define __devexitdata __exitdata
  228. #endif
  229. #ifdef CONFIG_HOTPLUG_CPU
  230. #define __cpuinit
  231. #define __cpuinitdata
  232. #define __cpuexit
  233. #define __cpuexitdata
  234. #else
  235. #define __cpuinit __init
  236. #define __cpuinitdata __initdata
  237. #define __cpuexit __exit
  238. #define __cpuexitdata __exitdata
  239. #endif
  240. #if defined(CONFIG_MEMORY_HOTPLUG) || defined(CONFIG_ACPI_HOTPLUG_MEMORY) \
  241. || defined(CONFIG_ACPI_HOTPLUG_MEMORY_MODULE)
  242. #define __meminit
  243. #define __meminitdata
  244. #define __memexit
  245. #define __memexitdata
  246. #else
  247. #define __meminit __init
  248. #define __meminitdata __initdata
  249. #define __memexit __exit
  250. #define __memexitdata __exitdata
  251. #endif
  252. /* Functions marked as __devexit may be discarded at kernel link time, depending
  253. on config options. Newer versions of binutils detect references from
  254. retained sections to discarded sections and flag an error. Pointers to
  255. __devexit functions must use __devexit_p(function_name), the wrapper will
  256. insert either the function_name or NULL, depending on the config options.
  257. */
  258. #if defined(MODULE) || defined(CONFIG_HOTPLUG)
  259. #define __devexit_p(x) x
  260. #else
  261. #define __devexit_p(x) NULL
  262. #endif
  263. #ifdef MODULE
  264. #define __exit_p(x) x
  265. #else
  266. #define __exit_p(x) NULL
  267. #endif
  268. #endif /* _LINUX_INIT_H */