1 /* SPDX-License-Identifier: GPL-2.0 */ 2 /* Copyright (c) 2018 Facebook */ 3 4 #ifndef _LINUX_BTF_H 5 #define _LINUX_BTF_H 1 6 7 #include <linux/types.h> 8 #include <linux/bpfptr.h> 9 #include <linux/bsearch.h> 10 #include <linux/btf_ids.h> 11 #include <uapi/linux/btf.h> 12 #include <uapi/linux/bpf.h> 13 14 #define BTF_TYPE_EMIT(type) ((void)(type *)0) 15 #define BTF_TYPE_EMIT_ENUM(enum_val) ((void)enum_val) 16 17 /* These need to be macros, as the expressions are used in assembler input */ 18 #define KF_ACQUIRE (1 << 0) /* kfunc is an acquire function */ 19 #define KF_RELEASE (1 << 1) /* kfunc is a release function */ 20 #define KF_RET_NULL (1 << 2) /* kfunc returns a pointer that may be NULL */ 21 /* Trusted arguments are those which are guaranteed to be valid when passed to 22 * the kfunc. It is used to enforce that pointers obtained from either acquire 23 * kfuncs, or from the main kernel on a tracepoint or struct_ops callback 24 * invocation, remain unmodified when being passed to helpers taking trusted 25 * args. 26 * 27 * Consider, for example, the following new task tracepoint: 28 * 29 * SEC("tp_btf/task_newtask") 30 * int BPF_PROG(new_task_tp, struct task_struct *task, u64 clone_flags) 31 * { 32 * ... 33 * } 34 * 35 * And the following kfunc: 36 * 37 * BTF_ID_FLAGS(func, bpf_task_acquire, KF_ACQUIRE) 38 * 39 * All invocations to the kfunc must pass the unmodified, unwalked task: 40 * 41 * bpf_task_acquire(task); // Allowed 42 * bpf_task_acquire(task->last_wakee); // Rejected, walked task 43 * 44 * Programs may also pass referenced tasks directly to the kfunc: 45 * 46 * struct task_struct *acquired; 47 * 48 * acquired = bpf_task_acquire(task); // Allowed, same as above 49 * bpf_task_acquire(acquired); // Allowed 50 * bpf_task_acquire(task); // Allowed 51 * bpf_task_acquire(acquired->last_wakee); // Rejected, walked task 52 * 53 * Programs may _not_, however, pass a task from an arbitrary fentry/fexit, or 54 * kprobe/kretprobe to the kfunc, as BPF cannot guarantee that all of these 55 * pointers are guaranteed to be safe. For example, the following BPF program 56 * would be rejected: 57 * 58 * SEC("kretprobe/free_task") 59 * int BPF_PROG(free_task_probe, struct task_struct *tsk) 60 * { 61 * struct task_struct *acquired; 62 * 63 * acquired = bpf_task_acquire(acquired); // Rejected, not a trusted pointer 64 * bpf_task_release(acquired); 65 * 66 * return 0; 67 * } 68 */ 69 #define KF_SLEEPABLE (1 << 5) /* kfunc may sleep */ 70 #define KF_DESTRUCTIVE (1 << 6) /* kfunc performs destructive actions */ 71 #define KF_RCU (1 << 7) /* kfunc takes either rcu or trusted pointer arguments */ 72 /* only one of KF_ITER_{NEW,NEXT,DESTROY} could be specified per kfunc */ 73 #define KF_ITER_NEW (1 << 8) /* kfunc implements BPF iter constructor */ 74 #define KF_ITER_NEXT (1 << 9) /* kfunc implements BPF iter next method */ 75 #define KF_ITER_DESTROY (1 << 10) /* kfunc implements BPF iter destructor */ 76 #define KF_RCU_PROTECTED (1 << 11) /* kfunc should be protected by rcu cs when they are invoked */ 77 #define KF_FASTCALL (1 << 12) /* kfunc supports bpf_fastcall protocol */ 78 #define KF_ARENA_RET (1 << 13) /* kfunc returns an arena pointer */ 79 #define KF_ARENA_ARG1 (1 << 14) /* kfunc takes an arena pointer as its first argument */ 80 #define KF_ARENA_ARG2 (1 << 15) /* kfunc takes an arena pointer as its second argument */ 81 #define KF_IMPLICIT_ARGS (1 << 16) /* kfunc has implicit arguments supplied by the verifier */ 82 #define KF_SPINLOCK_SAFE (1 << 17) /* kfunc is allowed inside bpf_spin_lock-ed region */ 83 #define KF_PERFMON (1 << 18) /* kfunc requires CAP_PERFMON */ 84 85 /* 86 * Tag marking a kernel function as a kfunc. This is meant to minimize the 87 * amount of copy-paste that kfunc authors have to include for correctness so 88 * as to avoid issues such as the compiler inlining or eliding either a static 89 * kfunc, or a global kfunc in an LTO build. 90 */ 91 #define __bpf_kfunc __used __retain __noclone noinline 92 93 #define __bpf_kfunc_start_defs() \ 94 __diag_push(); \ 95 __diag_ignore_all("-Wmissing-declarations", \ 96 "Global kfuncs as their definitions will be in BTF");\ 97 __diag_ignore_all("-Wmissing-prototypes", \ 98 "Global kfuncs as their definitions will be in BTF") 99 100 #define __bpf_kfunc_end_defs() __diag_pop() 101 #define __bpf_hook_start() __bpf_kfunc_start_defs() 102 #define __bpf_hook_end() __bpf_kfunc_end_defs() 103 104 /* 105 * Return the name of the passed struct, if exists, or halt the build if for 106 * example the structure gets renamed. In this way, developers have to revisit 107 * the code using that structure name, and update it accordingly. 108 */ 109 #define stringify_struct(x) \ 110 ({ BUILD_BUG_ON(sizeof(struct x) < 0); \ 111 __stringify(x); }) 112 113 struct btf; 114 struct btf_member; 115 struct btf_type; 116 union bpf_attr; 117 struct btf_show; 118 struct btf_id_set; 119 struct bpf_prog; 120 121 typedef int (*btf_kfunc_filter_t)(const struct bpf_prog *prog, u32 kfunc_id); 122 123 struct btf_kfunc_id_set { 124 struct module *owner; 125 struct btf_id_set8 *set; 126 btf_kfunc_filter_t filter; 127 }; 128 129 struct btf_id_dtor_kfunc { 130 u32 btf_id; 131 u32 kfunc_btf_id; 132 }; 133 134 struct btf_struct_meta { 135 u32 btf_id; 136 struct btf_record *record; 137 }; 138 139 struct btf_struct_metas { 140 u32 cnt; 141 struct btf_struct_meta types[]; 142 }; 143 144 extern const struct file_operations btf_fops; 145 146 const char *btf_get_name(const struct btf *btf); 147 void btf_get(struct btf *btf); 148 void btf_put(struct btf *btf); 149 const struct btf_header *btf_header(const struct btf *btf); 150 struct bpf_log_attr; 151 int btf_new_fd(const union bpf_attr *attr, bpfptr_t uattr, struct bpf_log_attr *attr_log); 152 struct btf *btf_get_by_fd(int fd); 153 int btf_get_info_by_fd(const struct btf *btf, 154 const union bpf_attr *attr, 155 union bpf_attr __user *uattr); 156 /* Figure out the size of a type_id. If type_id is a modifier 157 * (e.g. const), it will be resolved to find out the type with size. 158 * 159 * For example: 160 * In describing "const void *", type_id is "const" and "const" 161 * refers to "void *". The return type will be "void *". 162 * 163 * If type_id is a simple "int", then return type will be "int". 164 * 165 * @btf: struct btf object 166 * @type_id: Find out the size of type_id. The type_id of the return 167 * type is set to *type_id. 168 * @ret_size: It can be NULL. If not NULL, the size of the return 169 * type is set to *ret_size. 170 * Return: The btf_type (resolved to another type with size info if needed). 171 * NULL is returned if type_id itself does not have size info 172 * (e.g. void) or it cannot be resolved to another type that 173 * has size info. 174 * *type_id and *ret_size will not be changed in the 175 * NULL return case. 176 */ 177 const struct btf_type *btf_type_id_size(const struct btf *btf, 178 u32 *type_id, 179 u32 *ret_size); 180 181 /* 182 * Options to control show behaviour. 183 * - BTF_SHOW_COMPACT: no formatting around type information 184 * - BTF_SHOW_NONAME: no struct/union member names/types 185 * - BTF_SHOW_PTR_RAW: show raw (unobfuscated) pointer values; 186 * equivalent to %px. 187 * - BTF_SHOW_ZERO: show zero-valued struct/union members; they 188 * are not displayed by default 189 * - BTF_SHOW_UNSAFE: skip use of bpf_probe_read() to safely read 190 * data before displaying it. 191 */ 192 #define BTF_SHOW_COMPACT BTF_F_COMPACT 193 #define BTF_SHOW_NONAME BTF_F_NONAME 194 #define BTF_SHOW_PTR_RAW BTF_F_PTR_RAW 195 #define BTF_SHOW_ZERO BTF_F_ZERO 196 #define BTF_SHOW_UNSAFE (1ULL << 4) 197 198 void btf_type_seq_show(const struct btf *btf, u32 type_id, void *obj, 199 struct seq_file *m); 200 int btf_type_seq_show_flags(const struct btf *btf, u32 type_id, void *obj, 201 struct seq_file *m, u64 flags); 202 203 /* 204 * Copy len bytes of string representation of obj of BTF type_id into buf. 205 * 206 * @btf: struct btf object 207 * @type_id: type id of type obj points to 208 * @obj: pointer to typed data 209 * @buf: buffer to write to 210 * @len: maximum length to write to buf 211 * @flags: show options (see above) 212 * 213 * Return: length that would have been/was copied as per snprintf, or 214 * negative error. 215 */ 216 int btf_type_snprintf_show(const struct btf *btf, u32 type_id, void *obj, 217 char *buf, int len, u64 flags); 218 int btf_type_name_to_buf(const struct btf *btf, u32 type_id, char *buf, int len); 219 220 int btf_get_fd_by_id(u32 id); 221 u32 btf_obj_id(const struct btf *btf); 222 bool btf_is_kernel(const struct btf *btf); 223 bool btf_is_module(const struct btf *btf); 224 bool btf_is_vmlinux(const struct btf *btf); 225 struct module *btf_try_get_module(const struct btf *btf); 226 u32 btf_nr_types(const struct btf *btf); 227 u32 btf_named_start_id(const struct btf *btf, bool own); 228 struct btf *btf_base_btf(const struct btf *btf); 229 bool btf_type_is_i32(const struct btf_type *t); 230 bool btf_type_is_i64(const struct btf_type *t); 231 bool btf_type_is_primitive(const struct btf_type *t); 232 bool btf_member_is_reg_int(const struct btf *btf, const struct btf_type *s, 233 const struct btf_member *m, 234 u32 expected_offset, u32 expected_size); 235 struct btf_record *btf_parse_fields(const struct btf *btf, const struct btf_type *t, 236 u32 field_mask, u32 value_size); 237 int btf_check_and_fixup_fields(const struct btf *btf, struct btf_record *rec); 238 bool btf_type_is_void(const struct btf_type *t); 239 s32 btf_find_by_name_kind(const struct btf *btf, const char *name, u8 kind); 240 s32 bpf_find_btf_id(const char *name, u32 kind, struct btf **btf_p); 241 struct btf *btf_get_module_btf(const struct module *module); 242 __u32 btf_relocate_id(const struct btf *btf, __u32 id); 243 const struct btf_type *btf_type_skip_modifiers(const struct btf *btf, 244 u32 id, u32 *res_id); 245 const struct btf_type *btf_type_resolve_ptr(const struct btf *btf, 246 u32 id, u32 *res_id); 247 const struct btf_type *btf_type_resolve_func_ptr(const struct btf *btf, 248 u32 id, u32 *res_id); 249 const struct btf_type * 250 btf_resolve_size(const struct btf *btf, const struct btf_type *type, 251 u32 *type_size); 252 const char *btf_type_str(const struct btf_type *t); 253 254 #define for_each_member(i, struct_type, member) \ 255 for (i = 0, member = btf_type_member(struct_type); \ 256 i < btf_type_vlen(struct_type); \ 257 i++, member++) 258 259 #define for_each_vsi(i, datasec_type, member) \ 260 for (i = 0, member = btf_type_var_secinfo(datasec_type); \ 261 i < btf_type_vlen(datasec_type); \ 262 i++, member++) 263 264 static inline bool btf_type_is_ptr(const struct btf_type *t) 265 { 266 return BTF_INFO_KIND(t->info) == BTF_KIND_PTR; 267 } 268 269 static inline bool btf_type_is_int(const struct btf_type *t) 270 { 271 return BTF_INFO_KIND(t->info) == BTF_KIND_INT; 272 } 273 274 static inline bool btf_type_is_small_int(const struct btf_type *t) 275 { 276 return btf_type_is_int(t) && t->size <= sizeof(u64); 277 } 278 279 static inline u8 btf_int_encoding(const struct btf_type *t) 280 { 281 return BTF_INT_ENCODING(*(u32 *)(t + 1)); 282 } 283 284 static inline bool btf_type_is_signed_int(const struct btf_type *t) 285 { 286 return btf_type_is_int(t) && (btf_int_encoding(t) & BTF_INT_SIGNED); 287 } 288 289 static inline bool btf_type_is_enum(const struct btf_type *t) 290 { 291 return BTF_INFO_KIND(t->info) == BTF_KIND_ENUM; 292 } 293 294 static inline bool btf_is_any_enum(const struct btf_type *t) 295 { 296 return BTF_INFO_KIND(t->info) == BTF_KIND_ENUM || 297 BTF_INFO_KIND(t->info) == BTF_KIND_ENUM64; 298 } 299 300 static inline bool btf_kind_core_compat(const struct btf_type *t1, 301 const struct btf_type *t2) 302 { 303 return BTF_INFO_KIND(t1->info) == BTF_INFO_KIND(t2->info) || 304 (btf_is_any_enum(t1) && btf_is_any_enum(t2)); 305 } 306 307 static inline bool str_is_empty(const char *s) 308 { 309 return !s || !s[0]; 310 } 311 312 static inline u16 btf_kind(const struct btf_type *t) 313 { 314 return BTF_INFO_KIND(t->info); 315 } 316 317 static inline bool btf_is_enum(const struct btf_type *t) 318 { 319 return btf_kind(t) == BTF_KIND_ENUM; 320 } 321 322 static inline bool btf_is_enum64(const struct btf_type *t) 323 { 324 return btf_kind(t) == BTF_KIND_ENUM64; 325 } 326 327 static inline u64 btf_enum64_value(const struct btf_enum64 *e) 328 { 329 return ((u64)e->val_hi32 << 32) | e->val_lo32; 330 } 331 332 static inline bool btf_is_composite(const struct btf_type *t) 333 { 334 u16 kind = btf_kind(t); 335 336 return kind == BTF_KIND_STRUCT || kind == BTF_KIND_UNION; 337 } 338 339 static inline bool btf_is_array(const struct btf_type *t) 340 { 341 return btf_kind(t) == BTF_KIND_ARRAY; 342 } 343 344 static inline bool btf_is_int(const struct btf_type *t) 345 { 346 return btf_kind(t) == BTF_KIND_INT; 347 } 348 349 static inline bool btf_is_ptr(const struct btf_type *t) 350 { 351 return btf_kind(t) == BTF_KIND_PTR; 352 } 353 354 static inline u8 btf_int_offset(const struct btf_type *t) 355 { 356 return BTF_INT_OFFSET(*(u32 *)(t + 1)); 357 } 358 359 static inline __u8 btf_int_bits(const struct btf_type *t) 360 { 361 return BTF_INT_BITS(*(__u32 *)(t + 1)); 362 } 363 364 static inline bool btf_type_is_scalar(const struct btf_type *t) 365 { 366 return btf_type_is_int(t) || btf_type_is_enum(t); 367 } 368 369 static inline bool btf_type_is_fwd(const struct btf_type *t) 370 { 371 return BTF_INFO_KIND(t->info) == BTF_KIND_FWD; 372 } 373 374 static inline bool btf_type_is_typedef(const struct btf_type *t) 375 { 376 return BTF_INFO_KIND(t->info) == BTF_KIND_TYPEDEF; 377 } 378 379 static inline bool btf_type_is_volatile(const struct btf_type *t) 380 { 381 return BTF_INFO_KIND(t->info) == BTF_KIND_VOLATILE; 382 } 383 384 static inline bool btf_type_is_func(const struct btf_type *t) 385 { 386 return BTF_INFO_KIND(t->info) == BTF_KIND_FUNC; 387 } 388 389 static inline bool btf_type_is_func_proto(const struct btf_type *t) 390 { 391 return BTF_INFO_KIND(t->info) == BTF_KIND_FUNC_PROTO; 392 } 393 394 static inline bool btf_type_is_var(const struct btf_type *t) 395 { 396 return BTF_INFO_KIND(t->info) == BTF_KIND_VAR; 397 } 398 399 static inline bool btf_type_is_type_tag(const struct btf_type *t) 400 { 401 return BTF_INFO_KIND(t->info) == BTF_KIND_TYPE_TAG; 402 } 403 404 /* union is only a special case of struct: 405 * all its offsetof(member) == 0 406 */ 407 static inline bool btf_type_is_struct(const struct btf_type *t) 408 { 409 u8 kind = BTF_INFO_KIND(t->info); 410 411 return kind == BTF_KIND_STRUCT || kind == BTF_KIND_UNION; 412 } 413 414 static inline bool __btf_type_is_struct(const struct btf_type *t) 415 { 416 return BTF_INFO_KIND(t->info) == BTF_KIND_STRUCT; 417 } 418 419 static inline bool btf_type_is_array(const struct btf_type *t) 420 { 421 return BTF_INFO_KIND(t->info) == BTF_KIND_ARRAY; 422 } 423 424 static inline u32 btf_type_vlen(const struct btf_type *t) 425 { 426 return BTF_INFO_VLEN(t->info); 427 } 428 429 static inline u32 btf_vlen(const struct btf_type *t) 430 { 431 return btf_type_vlen(t); 432 } 433 434 static inline u16 btf_func_linkage(const struct btf_type *t) 435 { 436 return BTF_INFO_VLEN(t->info); 437 } 438 439 static inline bool btf_type_kflag(const struct btf_type *t) 440 { 441 return BTF_INFO_KFLAG(t->info); 442 } 443 444 static inline u32 __btf_member_bit_offset(const struct btf_type *struct_type, 445 const struct btf_member *member) 446 { 447 return btf_type_kflag(struct_type) ? BTF_MEMBER_BIT_OFFSET(member->offset) 448 : member->offset; 449 } 450 451 static inline u32 __btf_member_bitfield_size(const struct btf_type *struct_type, 452 const struct btf_member *member) 453 { 454 return btf_type_kflag(struct_type) ? BTF_MEMBER_BITFIELD_SIZE(member->offset) 455 : 0; 456 } 457 458 static inline struct btf_member *btf_members(const struct btf_type *t) 459 { 460 return (struct btf_member *)(t + 1); 461 } 462 463 static inline u32 btf_member_bit_offset(const struct btf_type *t, u32 member_idx) 464 { 465 const struct btf_member *m = btf_members(t) + member_idx; 466 467 return __btf_member_bit_offset(t, m); 468 } 469 470 static inline u32 btf_member_bitfield_size(const struct btf_type *t, u32 member_idx) 471 { 472 const struct btf_member *m = btf_members(t) + member_idx; 473 474 return __btf_member_bitfield_size(t, m); 475 } 476 477 static inline const struct btf_member *btf_type_member(const struct btf_type *t) 478 { 479 return (const struct btf_member *)(t + 1); 480 } 481 482 static inline struct btf_array *btf_array(const struct btf_type *t) 483 { 484 return (struct btf_array *)(t + 1); 485 } 486 487 static inline struct btf_enum *btf_enum(const struct btf_type *t) 488 { 489 return (struct btf_enum *)(t + 1); 490 } 491 492 static inline struct btf_enum64 *btf_enum64(const struct btf_type *t) 493 { 494 return (struct btf_enum64 *)(t + 1); 495 } 496 497 static inline const struct btf_var_secinfo *btf_type_var_secinfo( 498 const struct btf_type *t) 499 { 500 return (const struct btf_var_secinfo *)(t + 1); 501 } 502 503 static inline struct btf_param *btf_params(const struct btf_type *t) 504 { 505 return (struct btf_param *)(t + 1); 506 } 507 508 static inline struct btf_decl_tag *btf_decl_tag(const struct btf_type *t) 509 { 510 return (struct btf_decl_tag *)(t + 1); 511 } 512 513 static inline int btf_id_cmp_func(const void *a, const void *b) 514 { 515 const int *pa = a, *pb = b; 516 517 return *pa - *pb; 518 } 519 520 static inline bool btf_id_set_contains(const struct btf_id_set *set, u32 id) 521 { 522 return bsearch(&id, set->ids, set->cnt, sizeof(u32), btf_id_cmp_func) != NULL; 523 } 524 525 static inline void *btf_id_set8_contains(const struct btf_id_set8 *set, u32 id) 526 { 527 return bsearch(&id, set->pairs, set->cnt, sizeof(set->pairs[0]), btf_id_cmp_func); 528 } 529 530 bool btf_param_match_suffix(const struct btf *btf, 531 const struct btf_param *arg, 532 const char *suffix); 533 int btf_ctx_arg_offset(const struct btf *btf, const struct btf_type *func_proto, 534 u32 arg_no); 535 u32 btf_ctx_arg_idx(struct btf *btf, const struct btf_type *func_proto, int off); 536 537 struct bpf_verifier_log; 538 539 #if defined(CONFIG_BPF_JIT) && defined(CONFIG_BPF_SYSCALL) 540 struct bpf_struct_ops; 541 int __register_bpf_struct_ops(struct bpf_struct_ops *st_ops); 542 const struct bpf_struct_ops_desc *bpf_struct_ops_find_value(struct btf *btf, u32 value_id); 543 const struct bpf_struct_ops_desc *bpf_struct_ops_find(struct btf *btf, u32 type_id); 544 #else 545 static inline const struct bpf_struct_ops_desc *bpf_struct_ops_find(struct btf *btf, u32 type_id) 546 { 547 return NULL; 548 } 549 #endif 550 551 enum btf_field_iter_kind { 552 BTF_FIELD_ITER_IDS, 553 BTF_FIELD_ITER_STRS, 554 }; 555 556 struct btf_field_desc { 557 /* once-per-type offsets */ 558 int t_off_cnt, t_offs[2]; 559 /* member struct size, or zero, if no members */ 560 int m_sz; 561 /* repeated per-member offsets */ 562 int m_off_cnt, m_offs[1]; 563 }; 564 565 struct btf_field_iter { 566 struct btf_field_desc desc; 567 void *p; 568 int m_idx; 569 int off_idx; 570 int vlen; 571 }; 572 573 #ifdef CONFIG_BPF_SYSCALL 574 const struct btf_type *btf_type_by_id(const struct btf *btf, u32 type_id); 575 void btf_set_base_btf(struct btf *btf, const struct btf *base_btf); 576 int btf_relocate(struct btf *btf, const struct btf *base_btf, __u32 **map_ids); 577 int btf_field_iter_init(struct btf_field_iter *it, struct btf_type *t, 578 enum btf_field_iter_kind iter_kind); 579 __u32 *btf_field_iter_next(struct btf_field_iter *it); 580 581 const char *btf_name_by_offset(const struct btf *btf, u32 offset); 582 const char *btf_str_by_offset(const struct btf *btf, u32 offset); 583 struct btf *btf_parse_vmlinux(void); 584 struct btf *bpf_prog_get_target_btf(const struct bpf_prog *prog); 585 u32 *btf_kfunc_flags(const struct btf *btf, u32 kfunc_btf_id, const struct bpf_prog *prog); 586 int btf_kfunc_check_flag(const struct btf *btf, u32 kfunc_btf_id, u32 flag); 587 bool btf_kfunc_is_allowed(const struct btf *btf, u32 kfunc_btf_id, const struct bpf_prog *prog); 588 u32 *btf_kfunc_is_modify_return(const struct btf *btf, u32 kfunc_btf_id, 589 const struct bpf_prog *prog); 590 int register_btf_kfunc_id_set(enum bpf_prog_type prog_type, 591 const struct btf_kfunc_id_set *s); 592 int register_btf_fmodret_id_set(const struct btf_kfunc_id_set *kset); 593 s32 btf_find_dtor_kfunc(struct btf *btf, u32 btf_id); 594 int register_btf_id_dtor_kfuncs(const struct btf_id_dtor_kfunc *dtors, u32 add_cnt, 595 struct module *owner); 596 struct btf_struct_meta *btf_find_struct_meta(const struct btf *btf, u32 btf_id); 597 bool btf_is_projection_of(const char *pname, const char *tname); 598 bool btf_is_prog_ctx_type(struct bpf_verifier_log *log, const struct btf *btf, 599 const struct btf_type *t, enum bpf_prog_type prog_type, 600 int arg); 601 int get_kern_ctx_btf_id(struct bpf_verifier_log *log, enum bpf_prog_type prog_type); 602 bool btf_types_are_same(const struct btf *btf1, u32 id1, 603 const struct btf *btf2, u32 id2); 604 int btf_check_iter_arg(struct btf *btf, const struct btf_type *func, int arg_idx); 605 606 static inline bool btf_type_is_struct_ptr(struct btf *btf, const struct btf_type *t) 607 { 608 if (!btf_type_is_ptr(t)) 609 return false; 610 611 t = btf_type_skip_modifiers(btf, t->type, NULL); 612 613 return btf_type_is_struct(t); 614 } 615 #else 616 static inline const struct btf_type *btf_type_by_id(const struct btf *btf, 617 u32 type_id) 618 { 619 return NULL; 620 } 621 622 static inline void btf_set_base_btf(struct btf *btf, const struct btf *base_btf) 623 { 624 } 625 626 static inline int btf_relocate(void *log, struct btf *btf, const struct btf *base_btf, 627 __u32 **map_ids) 628 { 629 return -EOPNOTSUPP; 630 } 631 632 static inline int btf_field_iter_init(struct btf_field_iter *it, struct btf_type *t, 633 enum btf_field_iter_kind iter_kind) 634 { 635 return -EOPNOTSUPP; 636 } 637 638 static inline __u32 *btf_field_iter_next(struct btf_field_iter *it) 639 { 640 return NULL; 641 } 642 643 static inline const char *btf_name_by_offset(const struct btf *btf, 644 u32 offset) 645 { 646 return NULL; 647 } 648 static inline u32 *btf_kfunc_id_set_contains(const struct btf *btf, 649 u32 kfunc_btf_id, 650 struct bpf_prog *prog) 651 652 { 653 return NULL; 654 } 655 static inline int register_btf_kfunc_id_set(enum bpf_prog_type prog_type, 656 const struct btf_kfunc_id_set *s) 657 { 658 return 0; 659 } 660 static inline s32 btf_find_dtor_kfunc(struct btf *btf, u32 btf_id) 661 { 662 return -ENOENT; 663 } 664 static inline int register_btf_id_dtor_kfuncs(const struct btf_id_dtor_kfunc *dtors, 665 u32 add_cnt, struct module *owner) 666 { 667 return 0; 668 } 669 static inline struct btf_struct_meta *btf_find_struct_meta(const struct btf *btf, u32 btf_id) 670 { 671 return NULL; 672 } 673 static inline bool 674 btf_is_prog_ctx_type(struct bpf_verifier_log *log, const struct btf *btf, 675 const struct btf_type *t, enum bpf_prog_type prog_type, 676 int arg) 677 { 678 return false; 679 } 680 static inline int get_kern_ctx_btf_id(struct bpf_verifier_log *log, 681 enum bpf_prog_type prog_type) { 682 return -EINVAL; 683 } 684 static inline bool btf_types_are_same(const struct btf *btf1, u32 id1, 685 const struct btf *btf2, u32 id2) 686 { 687 return false; 688 } 689 static inline int btf_check_iter_arg(struct btf *btf, const struct btf_type *func, int arg_idx) 690 { 691 return -EOPNOTSUPP; 692 } 693 #endif 694 #endif 695