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1#ifndef _LINUX_MODULE_H 2#define _LINUX_MODULE_H 3/* 4 * Dynamic loading of modules into the kernel. 5 * 6 * Rewritten by Richard Henderson <rth@tamu.edu> Dec 1996 7 * Rewritten again by Rusty Russell, 2002 8 */ 9#include <linux/list.h> 10#include <linux/stat.h> 11#include <linux/compiler.h> 12#include <linux/cache.h> 13#include <linux/kmod.h> 14#include <linux/elf.h> 15#include <linux/stringify.h> 16#include <linux/kobject.h> 17#include <linux/moduleparam.h> 18#include <linux/tracepoint.h> 19#include <linux/export.h> 20 21#include <linux/percpu.h> 22#include <asm/module.h> 23 24/* In stripped ARM and x86-64 modules, ~ is surprisingly rare. */ 25#define MODULE_SIG_STRING "~Module signature appended~\n" 26 27/* Not Yet Implemented */ 28#define MODULE_SUPPORTED_DEVICE(name) 29 30#define MODULE_NAME_LEN MAX_PARAM_PREFIX_LEN 31 32struct modversion_info 33{ 34 unsigned long crc; 35 char name[MODULE_NAME_LEN]; 36}; 37 38struct module; 39 40struct module_kobject { 41 struct kobject kobj; 42 struct module *mod; 43 struct kobject *drivers_dir; 44 struct module_param_attrs *mp; 45 struct completion *kobj_completion; 46}; 47 48struct module_attribute { 49 struct attribute attr; 50 ssize_t (*show)(struct module_attribute *, struct module_kobject *, 51 char *); 52 ssize_t (*store)(struct module_attribute *, struct module_kobject *, 53 const char *, size_t count); 54 void (*setup)(struct module *, const char *); 55 int (*test)(struct module *); 56 void (*free)(struct module *); 57}; 58 59struct module_version_attribute { 60 struct module_attribute mattr; 61 const char *module_name; 62 const char *version; 63} __attribute__ ((__aligned__(sizeof(void *)))); 64 65extern ssize_t __modver_version_show(struct module_attribute *, 66 struct module_kobject *, char *); 67 68extern struct module_attribute module_uevent; 69 70/* These are either module local, or the kernel's dummy ones. */ 71extern int init_module(void); 72extern void cleanup_module(void); 73 74/* Archs provide a method of finding the correct exception table. */ 75struct exception_table_entry; 76 77const struct exception_table_entry * 78search_extable(const struct exception_table_entry *first, 79 const struct exception_table_entry *last, 80 unsigned long value); 81void sort_extable(struct exception_table_entry *start, 82 struct exception_table_entry *finish); 83void sort_main_extable(void); 84void trim_init_extable(struct module *m); 85 86#ifdef MODULE 87#define MODULE_GENERIC_TABLE(gtype,name) \ 88extern const struct gtype##_id __mod_##gtype##_table \ 89 __attribute__ ((unused, alias(__stringify(name)))) 90 91#else /* !MODULE */ 92#define MODULE_GENERIC_TABLE(gtype,name) 93#endif 94 95/* Generic info of form tag = "info" */ 96#define MODULE_INFO(tag, info) __MODULE_INFO(tag, tag, info) 97 98/* For userspace: you can also call me... */ 99#define MODULE_ALIAS(_alias) MODULE_INFO(alias, _alias) 100 101/* Soft module dependencies. See man modprobe.d for details. 102 * Example: MODULE_SOFTDEP("pre: module-foo module-bar post: module-baz") 103 */ 104#define MODULE_SOFTDEP(_softdep) MODULE_INFO(softdep, _softdep) 105 106/* 107 * The following license idents are currently accepted as indicating free 108 * software modules 109 * 110 * "GPL" [GNU Public License v2 or later] 111 * "GPL v2" [GNU Public License v2] 112 * "GPL and additional rights" [GNU Public License v2 rights and more] 113 * "Dual BSD/GPL" [GNU Public License v2 114 * or BSD license choice] 115 * "Dual MIT/GPL" [GNU Public License v2 116 * or MIT license choice] 117 * "Dual MPL/GPL" [GNU Public License v2 118 * or Mozilla license choice] 119 * 120 * The following other idents are available 121 * 122 * "Proprietary" [Non free products] 123 * 124 * There are dual licensed components, but when running with Linux it is the 125 * GPL that is relevant so this is a non issue. Similarly LGPL linked with GPL 126 * is a GPL combined work. 127 * 128 * This exists for several reasons 129 * 1. So modinfo can show license info for users wanting to vet their setup 130 * is free 131 * 2. So the community can ignore bug reports including proprietary modules 132 * 3. So vendors can do likewise based on their own policies 133 */ 134#define MODULE_LICENSE(_license) MODULE_INFO(license, _license) 135 136/* 137 * Author(s), use "Name <email>" or just "Name", for multiple 138 * authors use multiple MODULE_AUTHOR() statements/lines. 139 */ 140#define MODULE_AUTHOR(_author) MODULE_INFO(author, _author) 141 142/* What your module does. */ 143#define MODULE_DESCRIPTION(_description) MODULE_INFO(description, _description) 144 145#define MODULE_DEVICE_TABLE(type,name) \ 146 MODULE_GENERIC_TABLE(type##_device,name) 147 148/* Version of form [<epoch>:]<version>[-<extra-version>]. 149 Or for CVS/RCS ID version, everything but the number is stripped. 150 <epoch>: A (small) unsigned integer which allows you to start versions 151 anew. If not mentioned, it's zero. eg. "2:1.0" is after 152 "1:2.0". 153 <version>: The <version> may contain only alphanumerics and the 154 character `.'. Ordered by numeric sort for numeric parts, 155 ascii sort for ascii parts (as per RPM or DEB algorithm). 156 <extraversion>: Like <version>, but inserted for local 157 customizations, eg "rh3" or "rusty1". 158 159 Using this automatically adds a checksum of the .c files and the 160 local headers in "srcversion". 161*/ 162 163#if defined(MODULE) || !defined(CONFIG_SYSFS) 164#define MODULE_VERSION(_version) MODULE_INFO(version, _version) 165#else 166#define MODULE_VERSION(_version) \ 167 static struct module_version_attribute ___modver_attr = { \ 168 .mattr = { \ 169 .attr = { \ 170 .name = "version", \ 171 .mode = S_IRUGO, \ 172 }, \ 173 .show = __modver_version_show, \ 174 }, \ 175 .module_name = KBUILD_MODNAME, \ 176 .version = _version, \ 177 }; \ 178 static const struct module_version_attribute \ 179 __used __attribute__ ((__section__ ("__modver"))) \ 180 * __moduleparam_const __modver_attr = &___modver_attr 181#endif 182 183/* Optional firmware file (or files) needed by the module 184 * format is simply firmware file name. Multiple firmware 185 * files require multiple MODULE_FIRMWARE() specifiers */ 186#define MODULE_FIRMWARE(_firmware) MODULE_INFO(firmware, _firmware) 187 188/* Given an address, look for it in the exception tables */ 189const struct exception_table_entry *search_exception_tables(unsigned long add); 190 191struct notifier_block; 192 193#ifdef CONFIG_MODULES 194 195extern int modules_disabled; /* for sysctl */ 196/* Get/put a kernel symbol (calls must be symmetric) */ 197void *__symbol_get(const char *symbol); 198void *__symbol_get_gpl(const char *symbol); 199#define symbol_get(x) ((typeof(&x))(__symbol_get(VMLINUX_SYMBOL_STR(x)))) 200 201/* modules using other modules: kdb wants to see this. */ 202struct module_use { 203 struct list_head source_list; 204 struct list_head target_list; 205 struct module *source, *target; 206}; 207 208enum module_state { 209 MODULE_STATE_LIVE, /* Normal state. */ 210 MODULE_STATE_COMING, /* Full formed, running module_init. */ 211 MODULE_STATE_GOING, /* Going away. */ 212 MODULE_STATE_UNFORMED, /* Still setting it up. */ 213}; 214 215/** 216 * struct module_ref - per cpu module reference counts 217 * @incs: number of module get on this cpu 218 * @decs: number of module put on this cpu 219 * 220 * We force an alignment on 8 or 16 bytes, so that alloc_percpu() 221 * put @incs/@decs in same cache line, with no extra memory cost, 222 * since alloc_percpu() is fine grained. 223 */ 224struct module_ref { 225 unsigned long incs; 226 unsigned long decs; 227} __attribute((aligned(2 * sizeof(unsigned long)))); 228 229struct module 230{ 231 enum module_state state; 232 233 /* Member of list of modules */ 234 struct list_head list; 235 236 /* Unique handle for this module */ 237 char name[MODULE_NAME_LEN]; 238 239 /* Sysfs stuff. */ 240 struct module_kobject mkobj; 241 struct module_attribute *modinfo_attrs; 242 const char *version; 243 const char *srcversion; 244 struct kobject *holders_dir; 245 246 /* Exported symbols */ 247 const struct kernel_symbol *syms; 248 const unsigned long *crcs; 249 unsigned int num_syms; 250 251 /* Kernel parameters. */ 252 struct kernel_param *kp; 253 unsigned int num_kp; 254 255 /* GPL-only exported symbols. */ 256 unsigned int num_gpl_syms; 257 const struct kernel_symbol *gpl_syms; 258 const unsigned long *gpl_crcs; 259 260#ifdef CONFIG_UNUSED_SYMBOLS 261 /* unused exported symbols. */ 262 const struct kernel_symbol *unused_syms; 263 const unsigned long *unused_crcs; 264 unsigned int num_unused_syms; 265 266 /* GPL-only, unused exported symbols. */ 267 unsigned int num_unused_gpl_syms; 268 const struct kernel_symbol *unused_gpl_syms; 269 const unsigned long *unused_gpl_crcs; 270#endif 271 272#ifdef CONFIG_MODULE_SIG 273 /* Signature was verified. */ 274 bool sig_ok; 275#endif 276 277 /* symbols that will be GPL-only in the near future. */ 278 const struct kernel_symbol *gpl_future_syms; 279 const unsigned long *gpl_future_crcs; 280 unsigned int num_gpl_future_syms; 281 282 /* Exception table */ 283 unsigned int num_exentries; 284 struct exception_table_entry *extable; 285 286 /* Startup function. */ 287 int (*init)(void); 288 289 /* If this is non-NULL, vfree after init() returns */ 290 void *module_init; 291 292 /* Here is the actual code + data, vfree'd on unload. */ 293 void *module_core; 294 295 /* Here are the sizes of the init and core sections */ 296 unsigned int init_size, core_size; 297 298 /* The size of the executable code in each section. */ 299 unsigned int init_text_size, core_text_size; 300 301 /* Size of RO sections of the module (text+rodata) */ 302 unsigned int init_ro_size, core_ro_size; 303 304 /* Arch-specific module values */ 305 struct mod_arch_specific arch; 306 307 unsigned int taints; /* same bits as kernel:tainted */ 308 309#ifdef CONFIG_GENERIC_BUG 310 /* Support for BUG */ 311 unsigned num_bugs; 312 struct list_head bug_list; 313 struct bug_entry *bug_table; 314#endif 315 316#ifdef CONFIG_KALLSYMS 317 /* 318 * We keep the symbol and string tables for kallsyms. 319 * The core_* fields below are temporary, loader-only (they 320 * could really be discarded after module init). 321 */ 322 Elf_Sym *symtab, *core_symtab; 323 unsigned int num_symtab, core_num_syms; 324 char *strtab, *core_strtab; 325 326 /* Section attributes */ 327 struct module_sect_attrs *sect_attrs; 328 329 /* Notes attributes */ 330 struct module_notes_attrs *notes_attrs; 331#endif 332 333 /* The command line arguments (may be mangled). People like 334 keeping pointers to this stuff */ 335 char *args; 336 337#ifdef CONFIG_SMP 338 /* Per-cpu data. */ 339 void __percpu *percpu; 340 unsigned int percpu_size; 341#endif 342 343#ifdef CONFIG_TRACEPOINTS 344 unsigned int num_tracepoints; 345 struct tracepoint * const *tracepoints_ptrs; 346#endif 347#ifdef HAVE_JUMP_LABEL 348 struct jump_entry *jump_entries; 349 unsigned int num_jump_entries; 350#endif 351#ifdef CONFIG_TRACING 352 unsigned int num_trace_bprintk_fmt; 353 const char **trace_bprintk_fmt_start; 354#endif 355#ifdef CONFIG_EVENT_TRACING 356 struct ftrace_event_call **trace_events; 357 unsigned int num_trace_events; 358#endif 359#ifdef CONFIG_FTRACE_MCOUNT_RECORD 360 unsigned int num_ftrace_callsites; 361 unsigned long *ftrace_callsites; 362#endif 363 364#ifdef CONFIG_MODULE_UNLOAD 365 /* What modules depend on me? */ 366 struct list_head source_list; 367 /* What modules do I depend on? */ 368 struct list_head target_list; 369 370 /* Who is waiting for us to be unloaded */ 371 struct task_struct *waiter; 372 373 /* Destruction function. */ 374 void (*exit)(void); 375 376 struct module_ref __percpu *refptr; 377#endif 378 379#ifdef CONFIG_CONSTRUCTORS 380 /* Constructor functions. */ 381 ctor_fn_t *ctors; 382 unsigned int num_ctors; 383#endif 384}; 385#ifndef MODULE_ARCH_INIT 386#define MODULE_ARCH_INIT {} 387#endif 388 389extern struct mutex module_mutex; 390 391/* FIXME: It'd be nice to isolate modules during init, too, so they 392 aren't used before they (may) fail. But presently too much code 393 (IDE & SCSI) require entry into the module during init.*/ 394static inline int module_is_live(struct module *mod) 395{ 396 return mod->state != MODULE_STATE_GOING; 397} 398 399struct module *__module_text_address(unsigned long addr); 400struct module *__module_address(unsigned long addr); 401bool is_module_address(unsigned long addr); 402bool is_module_percpu_address(unsigned long addr); 403bool is_module_text_address(unsigned long addr); 404 405static inline int within_module_core(unsigned long addr, const struct module *mod) 406{ 407 return (unsigned long)mod->module_core <= addr && 408 addr < (unsigned long)mod->module_core + mod->core_size; 409} 410 411static inline int within_module_init(unsigned long addr, const struct module *mod) 412{ 413 return (unsigned long)mod->module_init <= addr && 414 addr < (unsigned long)mod->module_init + mod->init_size; 415} 416 417/* Search for module by name: must hold module_mutex. */ 418struct module *find_module(const char *name); 419 420struct symsearch { 421 const struct kernel_symbol *start, *stop; 422 const unsigned long *crcs; 423 enum { 424 NOT_GPL_ONLY, 425 GPL_ONLY, 426 WILL_BE_GPL_ONLY, 427 } licence; 428 bool unused; 429}; 430 431/* Search for an exported symbol by name. */ 432const struct kernel_symbol *find_symbol(const char *name, 433 struct module **owner, 434 const unsigned long **crc, 435 bool gplok, 436 bool warn); 437 438/* Walk the exported symbol table */ 439bool each_symbol_section(bool (*fn)(const struct symsearch *arr, 440 struct module *owner, 441 void *data), void *data); 442 443/* Returns 0 and fills in value, defined and namebuf, or -ERANGE if 444 symnum out of range. */ 445int module_get_kallsym(unsigned int symnum, unsigned long *value, char *type, 446 char *name, char *module_name, int *exported); 447 448/* Look for this name: can be of form module:name. */ 449unsigned long module_kallsyms_lookup_name(const char *name); 450 451int module_kallsyms_on_each_symbol(int (*fn)(void *, const char *, 452 struct module *, unsigned long), 453 void *data); 454 455extern void __module_put_and_exit(struct module *mod, long code) 456 __attribute__((noreturn)); 457#define module_put_and_exit(code) __module_put_and_exit(THIS_MODULE, code); 458 459#ifdef CONFIG_MODULE_UNLOAD 460unsigned long module_refcount(struct module *mod); 461void __symbol_put(const char *symbol); 462#define symbol_put(x) __symbol_put(VMLINUX_SYMBOL_STR(x)) 463void symbol_put_addr(void *addr); 464 465/* Sometimes we know we already have a refcount, and it's easier not 466 to handle the error case (which only happens with rmmod --wait). */ 467extern void __module_get(struct module *module); 468 469/* This is the Right Way to get a module: if it fails, it's being removed, 470 * so pretend it's not there. */ 471extern bool try_module_get(struct module *module); 472 473extern void module_put(struct module *module); 474 475#else /*!CONFIG_MODULE_UNLOAD*/ 476static inline int try_module_get(struct module *module) 477{ 478 return !module || module_is_live(module); 479} 480static inline void module_put(struct module *module) 481{ 482} 483static inline void __module_get(struct module *module) 484{ 485} 486#define symbol_put(x) do { } while(0) 487#define symbol_put_addr(p) do { } while(0) 488 489#endif /* CONFIG_MODULE_UNLOAD */ 490int ref_module(struct module *a, struct module *b); 491 492/* This is a #define so the string doesn't get put in every .o file */ 493#define module_name(mod) \ 494({ \ 495 struct module *__mod = (mod); \ 496 __mod ? __mod->name : "kernel"; \ 497}) 498 499/* For kallsyms to ask for address resolution. namebuf should be at 500 * least KSYM_NAME_LEN long: a pointer to namebuf is returned if 501 * found, otherwise NULL. */ 502const char *module_address_lookup(unsigned long addr, 503 unsigned long *symbolsize, 504 unsigned long *offset, 505 char **modname, 506 char *namebuf); 507int lookup_module_symbol_name(unsigned long addr, char *symname); 508int lookup_module_symbol_attrs(unsigned long addr, unsigned long *size, unsigned long *offset, char *modname, char *name); 509 510/* For extable.c to search modules' exception tables. */ 511const struct exception_table_entry *search_module_extables(unsigned long addr); 512 513int register_module_notifier(struct notifier_block * nb); 514int unregister_module_notifier(struct notifier_block * nb); 515 516extern void print_modules(void); 517 518#else /* !CONFIG_MODULES... */ 519 520/* Given an address, look for it in the exception tables. */ 521static inline const struct exception_table_entry * 522search_module_extables(unsigned long addr) 523{ 524 return NULL; 525} 526 527static inline struct module *__module_address(unsigned long addr) 528{ 529 return NULL; 530} 531 532static inline struct module *__module_text_address(unsigned long addr) 533{ 534 return NULL; 535} 536 537static inline bool is_module_address(unsigned long addr) 538{ 539 return false; 540} 541 542static inline bool is_module_percpu_address(unsigned long addr) 543{ 544 return false; 545} 546 547static inline bool is_module_text_address(unsigned long addr) 548{ 549 return false; 550} 551 552/* Get/put a kernel symbol (calls should be symmetric) */ 553#define symbol_get(x) ({ extern typeof(x) x __attribute__((weak)); &(x); }) 554#define symbol_put(x) do { } while(0) 555#define symbol_put_addr(x) do { } while(0) 556 557static inline void __module_get(struct module *module) 558{ 559} 560 561static inline int try_module_get(struct module *module) 562{ 563 return 1; 564} 565 566static inline void module_put(struct module *module) 567{ 568} 569 570#define module_name(mod) "kernel" 571 572/* For kallsyms to ask for address resolution. NULL means not found. */ 573static inline const char *module_address_lookup(unsigned long addr, 574 unsigned long *symbolsize, 575 unsigned long *offset, 576 char **modname, 577 char *namebuf) 578{ 579 return NULL; 580} 581 582static inline int lookup_module_symbol_name(unsigned long addr, char *symname) 583{ 584 return -ERANGE; 585} 586 587static inline int lookup_module_symbol_attrs(unsigned long addr, unsigned long *size, unsigned long *offset, char *modname, char *name) 588{ 589 return -ERANGE; 590} 591 592static inline int module_get_kallsym(unsigned int symnum, unsigned long *value, 593 char *type, char *name, 594 char *module_name, int *exported) 595{ 596 return -ERANGE; 597} 598 599static inline unsigned long module_kallsyms_lookup_name(const char *name) 600{ 601 return 0; 602} 603 604static inline int module_kallsyms_on_each_symbol(int (*fn)(void *, const char *, 605 struct module *, 606 unsigned long), 607 void *data) 608{ 609 return 0; 610} 611 612static inline int register_module_notifier(struct notifier_block * nb) 613{ 614 /* no events will happen anyway, so this can always succeed */ 615 return 0; 616} 617 618static inline int unregister_module_notifier(struct notifier_block * nb) 619{ 620 return 0; 621} 622 623#define module_put_and_exit(code) do_exit(code) 624 625static inline void print_modules(void) 626{ 627} 628#endif /* CONFIG_MODULES */ 629 630#ifdef CONFIG_SYSFS 631extern struct kset *module_kset; 632extern struct kobj_type module_ktype; 633extern int module_sysfs_initialized; 634#endif /* CONFIG_SYSFS */ 635 636#define symbol_request(x) try_then_request_module(symbol_get(x), "symbol:" #x) 637 638/* BELOW HERE ALL THESE ARE OBSOLETE AND WILL VANISH */ 639 640#define __MODULE_STRING(x) __stringify(x) 641 642#ifdef CONFIG_DEBUG_SET_MODULE_RONX 643extern void set_all_modules_text_rw(void); 644extern void set_all_modules_text_ro(void); 645#else 646static inline void set_all_modules_text_rw(void) { } 647static inline void set_all_modules_text_ro(void) { } 648#endif 649 650#ifdef CONFIG_GENERIC_BUG 651void module_bug_finalize(const Elf_Ehdr *, const Elf_Shdr *, 652 struct module *); 653void module_bug_cleanup(struct module *); 654 655#else /* !CONFIG_GENERIC_BUG */ 656 657static inline void module_bug_finalize(const Elf_Ehdr *hdr, 658 const Elf_Shdr *sechdrs, 659 struct module *mod) 660{ 661} 662static inline void module_bug_cleanup(struct module *mod) {} 663#endif /* CONFIG_GENERIC_BUG */ 664 665#endif /* _LINUX_MODULE_H */