1 /* Copyright (c) 2011-2014 PLUMgrid, http://plumgrid.com 2 * Copyright (c) 2016 Facebook 3 * 4 * This program is free software; you can redistribute it and/or 5 * modify it under the terms of version 2 of the GNU General Public 6 * License as published by the Free Software Foundation. 7 * 8 * This program is distributed in the hope that it will be useful, but 9 * WITHOUT ANY WARRANTY; without even the implied warranty of 10 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU 11 * General Public License for more details. 12 */ 13 #include <linux/bpf.h> 14 #include <linux/btf.h> 15 #include <linux/jhash.h> 16 #include <linux/filter.h> 17 #include <linux/rculist_nulls.h> 18 #include <linux/random.h> 19 #include <uapi/linux/btf.h> 20 #include "percpu_freelist.h" 21 #include "bpf_lru_list.h" 22 #include "map_in_map.h" 23 24 #define HTAB_CREATE_FLAG_MASK \ 25 (BPF_F_NO_PREALLOC | BPF_F_NO_COMMON_LRU | BPF_F_NUMA_NODE | \ 26 BPF_F_ACCESS_MASK | BPF_F_ZERO_SEED) 27 28 struct bucket { 29 struct hlist_nulls_head head; 30 raw_spinlock_t lock; 31 }; 32 33 struct bpf_htab { 34 struct bpf_map map; 35 struct bucket *buckets; 36 void *elems; 37 union { 38 struct pcpu_freelist freelist; 39 struct bpf_lru lru; 40 }; 41 struct htab_elem *__percpu *extra_elems; 42 atomic_t count; /* number of elements in this hashtable */ 43 u32 n_buckets; /* number of hash buckets */ 44 u32 elem_size; /* size of each element in bytes */ 45 u32 hashrnd; 46 }; 47 48 /* each htab element is struct htab_elem + key + value */ 49 struct htab_elem { 50 union { 51 struct hlist_nulls_node hash_node; 52 struct { 53 void *padding; 54 union { 55 struct bpf_htab *htab; 56 struct pcpu_freelist_node fnode; 57 }; 58 }; 59 }; 60 union { 61 struct rcu_head rcu; 62 struct bpf_lru_node lru_node; 63 }; 64 u32 hash; 65 char key[0] __aligned(8); 66 }; 67 68 static bool htab_lru_map_delete_node(void *arg, struct bpf_lru_node *node); 69 70 static bool htab_is_lru(const struct bpf_htab *htab) 71 { 72 return htab->map.map_type == BPF_MAP_TYPE_LRU_HASH || 73 htab->map.map_type == BPF_MAP_TYPE_LRU_PERCPU_HASH; 74 } 75 76 static bool htab_is_percpu(const struct bpf_htab *htab) 77 { 78 return htab->map.map_type == BPF_MAP_TYPE_PERCPU_HASH || 79 htab->map.map_type == BPF_MAP_TYPE_LRU_PERCPU_HASH; 80 } 81 82 static bool htab_is_prealloc(const struct bpf_htab *htab) 83 { 84 return !(htab->map.map_flags & BPF_F_NO_PREALLOC); 85 } 86 87 static inline void htab_elem_set_ptr(struct htab_elem *l, u32 key_size, 88 void __percpu *pptr) 89 { 90 *(void __percpu **)(l->key + key_size) = pptr; 91 } 92 93 static inline void __percpu *htab_elem_get_ptr(struct htab_elem *l, u32 key_size) 94 { 95 return *(void __percpu **)(l->key + key_size); 96 } 97 98 static void *fd_htab_map_get_ptr(const struct bpf_map *map, struct htab_elem *l) 99 { 100 return *(void **)(l->key + roundup(map->key_size, 8)); 101 } 102 103 static struct htab_elem *get_htab_elem(struct bpf_htab *htab, int i) 104 { 105 return (struct htab_elem *) (htab->elems + i * htab->elem_size); 106 } 107 108 static void htab_free_elems(struct bpf_htab *htab) 109 { 110 int i; 111 112 if (!htab_is_percpu(htab)) 113 goto free_elems; 114 115 for (i = 0; i < htab->map.max_entries; i++) { 116 void __percpu *pptr; 117 118 pptr = htab_elem_get_ptr(get_htab_elem(htab, i), 119 htab->map.key_size); 120 free_percpu(pptr); 121 cond_resched(); 122 } 123 free_elems: 124 bpf_map_area_free(htab->elems); 125 } 126 127 static struct htab_elem *prealloc_lru_pop(struct bpf_htab *htab, void *key, 128 u32 hash) 129 { 130 struct bpf_lru_node *node = bpf_lru_pop_free(&htab->lru, hash); 131 struct htab_elem *l; 132 133 if (node) { 134 l = container_of(node, struct htab_elem, lru_node); 135 memcpy(l->key, key, htab->map.key_size); 136 return l; 137 } 138 139 return NULL; 140 } 141 142 static int prealloc_init(struct bpf_htab *htab) 143 { 144 u32 num_entries = htab->map.max_entries; 145 int err = -ENOMEM, i; 146 147 if (!htab_is_percpu(htab) && !htab_is_lru(htab)) 148 num_entries += num_possible_cpus(); 149 150 htab->elems = bpf_map_area_alloc(htab->elem_size * num_entries, 151 htab->map.numa_node); 152 if (!htab->elems) 153 return -ENOMEM; 154 155 if (!htab_is_percpu(htab)) 156 goto skip_percpu_elems; 157 158 for (i = 0; i < num_entries; i++) { 159 u32 size = round_up(htab->map.value_size, 8); 160 void __percpu *pptr; 161 162 pptr = __alloc_percpu_gfp(size, 8, GFP_USER | __GFP_NOWARN); 163 if (!pptr) 164 goto free_elems; 165 htab_elem_set_ptr(get_htab_elem(htab, i), htab->map.key_size, 166 pptr); 167 cond_resched(); 168 } 169 170 skip_percpu_elems: 171 if (htab_is_lru(htab)) 172 err = bpf_lru_init(&htab->lru, 173 htab->map.map_flags & BPF_F_NO_COMMON_LRU, 174 offsetof(struct htab_elem, hash) - 175 offsetof(struct htab_elem, lru_node), 176 htab_lru_map_delete_node, 177 htab); 178 else 179 err = pcpu_freelist_init(&htab->freelist); 180 181 if (err) 182 goto free_elems; 183 184 if (htab_is_lru(htab)) 185 bpf_lru_populate(&htab->lru, htab->elems, 186 offsetof(struct htab_elem, lru_node), 187 htab->elem_size, num_entries); 188 else 189 pcpu_freelist_populate(&htab->freelist, 190 htab->elems + offsetof(struct htab_elem, fnode), 191 htab->elem_size, num_entries); 192 193 return 0; 194 195 free_elems: 196 htab_free_elems(htab); 197 return err; 198 } 199 200 static void prealloc_destroy(struct bpf_htab *htab) 201 { 202 htab_free_elems(htab); 203 204 if (htab_is_lru(htab)) 205 bpf_lru_destroy(&htab->lru); 206 else 207 pcpu_freelist_destroy(&htab->freelist); 208 } 209 210 static int alloc_extra_elems(struct bpf_htab *htab) 211 { 212 struct htab_elem *__percpu *pptr, *l_new; 213 struct pcpu_freelist_node *l; 214 int cpu; 215 216 pptr = __alloc_percpu_gfp(sizeof(struct htab_elem *), 8, 217 GFP_USER | __GFP_NOWARN); 218 if (!pptr) 219 return -ENOMEM; 220 221 for_each_possible_cpu(cpu) { 222 l = pcpu_freelist_pop(&htab->freelist); 223 /* pop will succeed, since prealloc_init() 224 * preallocated extra num_possible_cpus elements 225 */ 226 l_new = container_of(l, struct htab_elem, fnode); 227 *per_cpu_ptr(pptr, cpu) = l_new; 228 } 229 htab->extra_elems = pptr; 230 return 0; 231 } 232 233 /* Called from syscall */ 234 static int htab_map_alloc_check(union bpf_attr *attr) 235 { 236 bool percpu = (attr->map_type == BPF_MAP_TYPE_PERCPU_HASH || 237 attr->map_type == BPF_MAP_TYPE_LRU_PERCPU_HASH); 238 bool lru = (attr->map_type == BPF_MAP_TYPE_LRU_HASH || 239 attr->map_type == BPF_MAP_TYPE_LRU_PERCPU_HASH); 240 /* percpu_lru means each cpu has its own LRU list. 241 * it is different from BPF_MAP_TYPE_PERCPU_HASH where 242 * the map's value itself is percpu. percpu_lru has 243 * nothing to do with the map's value. 244 */ 245 bool percpu_lru = (attr->map_flags & BPF_F_NO_COMMON_LRU); 246 bool prealloc = !(attr->map_flags & BPF_F_NO_PREALLOC); 247 bool zero_seed = (attr->map_flags & BPF_F_ZERO_SEED); 248 int numa_node = bpf_map_attr_numa_node(attr); 249 250 BUILD_BUG_ON(offsetof(struct htab_elem, htab) != 251 offsetof(struct htab_elem, hash_node.pprev)); 252 BUILD_BUG_ON(offsetof(struct htab_elem, fnode.next) != 253 offsetof(struct htab_elem, hash_node.pprev)); 254 255 if (lru && !capable(CAP_SYS_ADMIN)) 256 /* LRU implementation is much complicated than other 257 * maps. Hence, limit to CAP_SYS_ADMIN for now. 258 */ 259 return -EPERM; 260 261 if (zero_seed && !capable(CAP_SYS_ADMIN)) 262 /* Guard against local DoS, and discourage production use. */ 263 return -EPERM; 264 265 if (attr->map_flags & ~HTAB_CREATE_FLAG_MASK || 266 !bpf_map_flags_access_ok(attr->map_flags)) 267 return -EINVAL; 268 269 if (!lru && percpu_lru) 270 return -EINVAL; 271 272 if (lru && !prealloc) 273 return -ENOTSUPP; 274 275 if (numa_node != NUMA_NO_NODE && (percpu || percpu_lru)) 276 return -EINVAL; 277 278 /* check sanity of attributes. 279 * value_size == 0 may be allowed in the future to use map as a set 280 */ 281 if (attr->max_entries == 0 || attr->key_size == 0 || 282 attr->value_size == 0) 283 return -EINVAL; 284 285 if (attr->key_size > MAX_BPF_STACK) 286 /* eBPF programs initialize keys on stack, so they cannot be 287 * larger than max stack size 288 */ 289 return -E2BIG; 290 291 if (attr->value_size >= KMALLOC_MAX_SIZE - 292 MAX_BPF_STACK - sizeof(struct htab_elem)) 293 /* if value_size is bigger, the user space won't be able to 294 * access the elements via bpf syscall. This check also makes 295 * sure that the elem_size doesn't overflow and it's 296 * kmalloc-able later in htab_map_update_elem() 297 */ 298 return -E2BIG; 299 300 return 0; 301 } 302 303 static struct bpf_map *htab_map_alloc(union bpf_attr *attr) 304 { 305 bool percpu = (attr->map_type == BPF_MAP_TYPE_PERCPU_HASH || 306 attr->map_type == BPF_MAP_TYPE_LRU_PERCPU_HASH); 307 bool lru = (attr->map_type == BPF_MAP_TYPE_LRU_HASH || 308 attr->map_type == BPF_MAP_TYPE_LRU_PERCPU_HASH); 309 /* percpu_lru means each cpu has its own LRU list. 310 * it is different from BPF_MAP_TYPE_PERCPU_HASH where 311 * the map's value itself is percpu. percpu_lru has 312 * nothing to do with the map's value. 313 */ 314 bool percpu_lru = (attr->map_flags & BPF_F_NO_COMMON_LRU); 315 bool prealloc = !(attr->map_flags & BPF_F_NO_PREALLOC); 316 struct bpf_htab *htab; 317 int err, i; 318 u64 cost; 319 320 htab = kzalloc(sizeof(*htab), GFP_USER); 321 if (!htab) 322 return ERR_PTR(-ENOMEM); 323 324 bpf_map_init_from_attr(&htab->map, attr); 325 326 if (percpu_lru) { 327 /* ensure each CPU's lru list has >=1 elements. 328 * since we are at it, make each lru list has the same 329 * number of elements. 330 */ 331 htab->map.max_entries = roundup(attr->max_entries, 332 num_possible_cpus()); 333 if (htab->map.max_entries < attr->max_entries) 334 htab->map.max_entries = rounddown(attr->max_entries, 335 num_possible_cpus()); 336 } 337 338 /* hash table size must be power of 2 */ 339 htab->n_buckets = roundup_pow_of_two(htab->map.max_entries); 340 341 htab->elem_size = sizeof(struct htab_elem) + 342 round_up(htab->map.key_size, 8); 343 if (percpu) 344 htab->elem_size += sizeof(void *); 345 else 346 htab->elem_size += round_up(htab->map.value_size, 8); 347 348 err = -E2BIG; 349 /* prevent zero size kmalloc and check for u32 overflow */ 350 if (htab->n_buckets == 0 || 351 htab->n_buckets > U32_MAX / sizeof(struct bucket)) 352 goto free_htab; 353 354 cost = (u64) htab->n_buckets * sizeof(struct bucket) + 355 (u64) htab->elem_size * htab->map.max_entries; 356 357 if (percpu) 358 cost += (u64) round_up(htab->map.value_size, 8) * 359 num_possible_cpus() * htab->map.max_entries; 360 else 361 cost += (u64) htab->elem_size * num_possible_cpus(); 362 363 /* if map size is larger than memlock limit, reject it */ 364 err = bpf_map_charge_init(&htab->map.memory, cost); 365 if (err) 366 goto free_htab; 367 368 err = -ENOMEM; 369 htab->buckets = bpf_map_area_alloc(htab->n_buckets * 370 sizeof(struct bucket), 371 htab->map.numa_node); 372 if (!htab->buckets) 373 goto free_charge; 374 375 if (htab->map.map_flags & BPF_F_ZERO_SEED) 376 htab->hashrnd = 0; 377 else 378 htab->hashrnd = get_random_int(); 379 380 for (i = 0; i < htab->n_buckets; i++) { 381 INIT_HLIST_NULLS_HEAD(&htab->buckets[i].head, i); 382 raw_spin_lock_init(&htab->buckets[i].lock); 383 } 384 385 if (prealloc) { 386 err = prealloc_init(htab); 387 if (err) 388 goto free_buckets; 389 390 if (!percpu && !lru) { 391 /* lru itself can remove the least used element, so 392 * there is no need for an extra elem during map_update. 393 */ 394 err = alloc_extra_elems(htab); 395 if (err) 396 goto free_prealloc; 397 } 398 } 399 400 return &htab->map; 401 402 free_prealloc: 403 prealloc_destroy(htab); 404 free_buckets: 405 bpf_map_area_free(htab->buckets); 406 free_charge: 407 bpf_map_charge_finish(&htab->map.memory); 408 free_htab: 409 kfree(htab); 410 return ERR_PTR(err); 411 } 412 413 static inline u32 htab_map_hash(const void *key, u32 key_len, u32 hashrnd) 414 { 415 return jhash(key, key_len, hashrnd); 416 } 417 418 static inline struct bucket *__select_bucket(struct bpf_htab *htab, u32 hash) 419 { 420 return &htab->buckets[hash & (htab->n_buckets - 1)]; 421 } 422 423 static inline struct hlist_nulls_head *select_bucket(struct bpf_htab *htab, u32 hash) 424 { 425 return &__select_bucket(htab, hash)->head; 426 } 427 428 /* this lookup function can only be called with bucket lock taken */ 429 static struct htab_elem *lookup_elem_raw(struct hlist_nulls_head *head, u32 hash, 430 void *key, u32 key_size) 431 { 432 struct hlist_nulls_node *n; 433 struct htab_elem *l; 434 435 hlist_nulls_for_each_entry_rcu(l, n, head, hash_node) 436 if (l->hash == hash && !memcmp(&l->key, key, key_size)) 437 return l; 438 439 return NULL; 440 } 441 442 /* can be called without bucket lock. it will repeat the loop in 443 * the unlikely event when elements moved from one bucket into another 444 * while link list is being walked 445 */ 446 static struct htab_elem *lookup_nulls_elem_raw(struct hlist_nulls_head *head, 447 u32 hash, void *key, 448 u32 key_size, u32 n_buckets) 449 { 450 struct hlist_nulls_node *n; 451 struct htab_elem *l; 452 453 again: 454 hlist_nulls_for_each_entry_rcu(l, n, head, hash_node) 455 if (l->hash == hash && !memcmp(&l->key, key, key_size)) 456 return l; 457 458 if (unlikely(get_nulls_value(n) != (hash & (n_buckets - 1)))) 459 goto again; 460 461 return NULL; 462 } 463 464 /* Called from syscall or from eBPF program directly, so 465 * arguments have to match bpf_map_lookup_elem() exactly. 466 * The return value is adjusted by BPF instructions 467 * in htab_map_gen_lookup(). 468 */ 469 static void *__htab_map_lookup_elem(struct bpf_map *map, void *key) 470 { 471 struct bpf_htab *htab = container_of(map, struct bpf_htab, map); 472 struct hlist_nulls_head *head; 473 struct htab_elem *l; 474 u32 hash, key_size; 475 476 /* Must be called with rcu_read_lock. */ 477 WARN_ON_ONCE(!rcu_read_lock_held()); 478 479 key_size = map->key_size; 480 481 hash = htab_map_hash(key, key_size, htab->hashrnd); 482 483 head = select_bucket(htab, hash); 484 485 l = lookup_nulls_elem_raw(head, hash, key, key_size, htab->n_buckets); 486 487 return l; 488 } 489 490 static void *htab_map_lookup_elem(struct bpf_map *map, void *key) 491 { 492 struct htab_elem *l = __htab_map_lookup_elem(map, key); 493 494 if (l) 495 return l->key + round_up(map->key_size, 8); 496 497 return NULL; 498 } 499 500 /* inline bpf_map_lookup_elem() call. 501 * Instead of: 502 * bpf_prog 503 * bpf_map_lookup_elem 504 * map->ops->map_lookup_elem 505 * htab_map_lookup_elem 506 * __htab_map_lookup_elem 507 * do: 508 * bpf_prog 509 * __htab_map_lookup_elem 510 */ 511 static u32 htab_map_gen_lookup(struct bpf_map *map, struct bpf_insn *insn_buf) 512 { 513 struct bpf_insn *insn = insn_buf; 514 const int ret = BPF_REG_0; 515 516 BUILD_BUG_ON(!__same_type(&__htab_map_lookup_elem, 517 (void *(*)(struct bpf_map *map, void *key))NULL)); 518 *insn++ = BPF_EMIT_CALL(BPF_CAST_CALL(__htab_map_lookup_elem)); 519 *insn++ = BPF_JMP_IMM(BPF_JEQ, ret, 0, 1); 520 *insn++ = BPF_ALU64_IMM(BPF_ADD, ret, 521 offsetof(struct htab_elem, key) + 522 round_up(map->key_size, 8)); 523 return insn - insn_buf; 524 } 525 526 static __always_inline void *__htab_lru_map_lookup_elem(struct bpf_map *map, 527 void *key, const bool mark) 528 { 529 struct htab_elem *l = __htab_map_lookup_elem(map, key); 530 531 if (l) { 532 if (mark) 533 bpf_lru_node_set_ref(&l->lru_node); 534 return l->key + round_up(map->key_size, 8); 535 } 536 537 return NULL; 538 } 539 540 static void *htab_lru_map_lookup_elem(struct bpf_map *map, void *key) 541 { 542 return __htab_lru_map_lookup_elem(map, key, true); 543 } 544 545 static void *htab_lru_map_lookup_elem_sys(struct bpf_map *map, void *key) 546 { 547 return __htab_lru_map_lookup_elem(map, key, false); 548 } 549 550 static u32 htab_lru_map_gen_lookup(struct bpf_map *map, 551 struct bpf_insn *insn_buf) 552 { 553 struct bpf_insn *insn = insn_buf; 554 const int ret = BPF_REG_0; 555 const int ref_reg = BPF_REG_1; 556 557 BUILD_BUG_ON(!__same_type(&__htab_map_lookup_elem, 558 (void *(*)(struct bpf_map *map, void *key))NULL)); 559 *insn++ = BPF_EMIT_CALL(BPF_CAST_CALL(__htab_map_lookup_elem)); 560 *insn++ = BPF_JMP_IMM(BPF_JEQ, ret, 0, 4); 561 *insn++ = BPF_LDX_MEM(BPF_B, ref_reg, ret, 562 offsetof(struct htab_elem, lru_node) + 563 offsetof(struct bpf_lru_node, ref)); 564 *insn++ = BPF_JMP_IMM(BPF_JNE, ref_reg, 0, 1); 565 *insn++ = BPF_ST_MEM(BPF_B, ret, 566 offsetof(struct htab_elem, lru_node) + 567 offsetof(struct bpf_lru_node, ref), 568 1); 569 *insn++ = BPF_ALU64_IMM(BPF_ADD, ret, 570 offsetof(struct htab_elem, key) + 571 round_up(map->key_size, 8)); 572 return insn - insn_buf; 573 } 574 575 /* It is called from the bpf_lru_list when the LRU needs to delete 576 * older elements from the htab. 577 */ 578 static bool htab_lru_map_delete_node(void *arg, struct bpf_lru_node *node) 579 { 580 struct bpf_htab *htab = (struct bpf_htab *)arg; 581 struct htab_elem *l = NULL, *tgt_l; 582 struct hlist_nulls_head *head; 583 struct hlist_nulls_node *n; 584 unsigned long flags; 585 struct bucket *b; 586 587 tgt_l = container_of(node, struct htab_elem, lru_node); 588 b = __select_bucket(htab, tgt_l->hash); 589 head = &b->head; 590 591 raw_spin_lock_irqsave(&b->lock, flags); 592 593 hlist_nulls_for_each_entry_rcu(l, n, head, hash_node) 594 if (l == tgt_l) { 595 hlist_nulls_del_rcu(&l->hash_node); 596 break; 597 } 598 599 raw_spin_unlock_irqrestore(&b->lock, flags); 600 601 return l == tgt_l; 602 } 603 604 /* Called from syscall */ 605 static int htab_map_get_next_key(struct bpf_map *map, void *key, void *next_key) 606 { 607 struct bpf_htab *htab = container_of(map, struct bpf_htab, map); 608 struct hlist_nulls_head *head; 609 struct htab_elem *l, *next_l; 610 u32 hash, key_size; 611 int i = 0; 612 613 WARN_ON_ONCE(!rcu_read_lock_held()); 614 615 key_size = map->key_size; 616 617 if (!key) 618 goto find_first_elem; 619 620 hash = htab_map_hash(key, key_size, htab->hashrnd); 621 622 head = select_bucket(htab, hash); 623 624 /* lookup the key */ 625 l = lookup_nulls_elem_raw(head, hash, key, key_size, htab->n_buckets); 626 627 if (!l) 628 goto find_first_elem; 629 630 /* key was found, get next key in the same bucket */ 631 next_l = hlist_nulls_entry_safe(rcu_dereference_raw(hlist_nulls_next_rcu(&l->hash_node)), 632 struct htab_elem, hash_node); 633 634 if (next_l) { 635 /* if next elem in this hash list is non-zero, just return it */ 636 memcpy(next_key, next_l->key, key_size); 637 return 0; 638 } 639 640 /* no more elements in this hash list, go to the next bucket */ 641 i = hash & (htab->n_buckets - 1); 642 i++; 643 644 find_first_elem: 645 /* iterate over buckets */ 646 for (; i < htab->n_buckets; i++) { 647 head = select_bucket(htab, i); 648 649 /* pick first element in the bucket */ 650 next_l = hlist_nulls_entry_safe(rcu_dereference_raw(hlist_nulls_first_rcu(head)), 651 struct htab_elem, hash_node); 652 if (next_l) { 653 /* if it's not empty, just return it */ 654 memcpy(next_key, next_l->key, key_size); 655 return 0; 656 } 657 } 658 659 /* iterated over all buckets and all elements */ 660 return -ENOENT; 661 } 662 663 static void htab_elem_free(struct bpf_htab *htab, struct htab_elem *l) 664 { 665 if (htab->map.map_type == BPF_MAP_TYPE_PERCPU_HASH) 666 free_percpu(htab_elem_get_ptr(l, htab->map.key_size)); 667 kfree(l); 668 } 669 670 static void htab_elem_free_rcu(struct rcu_head *head) 671 { 672 struct htab_elem *l = container_of(head, struct htab_elem, rcu); 673 struct bpf_htab *htab = l->htab; 674 675 /* must increment bpf_prog_active to avoid kprobe+bpf triggering while 676 * we're calling kfree, otherwise deadlock is possible if kprobes 677 * are placed somewhere inside of slub 678 */ 679 preempt_disable(); 680 __this_cpu_inc(bpf_prog_active); 681 htab_elem_free(htab, l); 682 __this_cpu_dec(bpf_prog_active); 683 preempt_enable(); 684 } 685 686 static void free_htab_elem(struct bpf_htab *htab, struct htab_elem *l) 687 { 688 struct bpf_map *map = &htab->map; 689 690 if (map->ops->map_fd_put_ptr) { 691 void *ptr = fd_htab_map_get_ptr(map, l); 692 693 map->ops->map_fd_put_ptr(ptr); 694 } 695 696 if (htab_is_prealloc(htab)) { 697 __pcpu_freelist_push(&htab->freelist, &l->fnode); 698 } else { 699 atomic_dec(&htab->count); 700 l->htab = htab; 701 call_rcu(&l->rcu, htab_elem_free_rcu); 702 } 703 } 704 705 static void pcpu_copy_value(struct bpf_htab *htab, void __percpu *pptr, 706 void *value, bool onallcpus) 707 { 708 if (!onallcpus) { 709 /* copy true value_size bytes */ 710 memcpy(this_cpu_ptr(pptr), value, htab->map.value_size); 711 } else { 712 u32 size = round_up(htab->map.value_size, 8); 713 int off = 0, cpu; 714 715 for_each_possible_cpu(cpu) { 716 bpf_long_memcpy(per_cpu_ptr(pptr, cpu), 717 value + off, size); 718 off += size; 719 } 720 } 721 } 722 723 static bool fd_htab_map_needs_adjust(const struct bpf_htab *htab) 724 { 725 return htab->map.map_type == BPF_MAP_TYPE_HASH_OF_MAPS && 726 BITS_PER_LONG == 64; 727 } 728 729 static struct htab_elem *alloc_htab_elem(struct bpf_htab *htab, void *key, 730 void *value, u32 key_size, u32 hash, 731 bool percpu, bool onallcpus, 732 struct htab_elem *old_elem) 733 { 734 u32 size = htab->map.value_size; 735 bool prealloc = htab_is_prealloc(htab); 736 struct htab_elem *l_new, **pl_new; 737 void __percpu *pptr; 738 739 if (prealloc) { 740 if (old_elem) { 741 /* if we're updating the existing element, 742 * use per-cpu extra elems to avoid freelist_pop/push 743 */ 744 pl_new = this_cpu_ptr(htab->extra_elems); 745 l_new = *pl_new; 746 *pl_new = old_elem; 747 } else { 748 struct pcpu_freelist_node *l; 749 750 l = __pcpu_freelist_pop(&htab->freelist); 751 if (!l) 752 return ERR_PTR(-E2BIG); 753 l_new = container_of(l, struct htab_elem, fnode); 754 } 755 } else { 756 if (atomic_inc_return(&htab->count) > htab->map.max_entries) 757 if (!old_elem) { 758 /* when map is full and update() is replacing 759 * old element, it's ok to allocate, since 760 * old element will be freed immediately. 761 * Otherwise return an error 762 */ 763 l_new = ERR_PTR(-E2BIG); 764 goto dec_count; 765 } 766 l_new = kmalloc_node(htab->elem_size, GFP_ATOMIC | __GFP_NOWARN, 767 htab->map.numa_node); 768 if (!l_new) { 769 l_new = ERR_PTR(-ENOMEM); 770 goto dec_count; 771 } 772 check_and_init_map_lock(&htab->map, 773 l_new->key + round_up(key_size, 8)); 774 } 775 776 memcpy(l_new->key, key, key_size); 777 if (percpu) { 778 size = round_up(size, 8); 779 if (prealloc) { 780 pptr = htab_elem_get_ptr(l_new, key_size); 781 } else { 782 /* alloc_percpu zero-fills */ 783 pptr = __alloc_percpu_gfp(size, 8, 784 GFP_ATOMIC | __GFP_NOWARN); 785 if (!pptr) { 786 kfree(l_new); 787 l_new = ERR_PTR(-ENOMEM); 788 goto dec_count; 789 } 790 } 791 792 pcpu_copy_value(htab, pptr, value, onallcpus); 793 794 if (!prealloc) 795 htab_elem_set_ptr(l_new, key_size, pptr); 796 } else if (fd_htab_map_needs_adjust(htab)) { 797 size = round_up(size, 8); 798 memcpy(l_new->key + round_up(key_size, 8), value, size); 799 } else { 800 copy_map_value(&htab->map, 801 l_new->key + round_up(key_size, 8), 802 value); 803 } 804 805 l_new->hash = hash; 806 return l_new; 807 dec_count: 808 atomic_dec(&htab->count); 809 return l_new; 810 } 811 812 static int check_flags(struct bpf_htab *htab, struct htab_elem *l_old, 813 u64 map_flags) 814 { 815 if (l_old && (map_flags & ~BPF_F_LOCK) == BPF_NOEXIST) 816 /* elem already exists */ 817 return -EEXIST; 818 819 if (!l_old && (map_flags & ~BPF_F_LOCK) == BPF_EXIST) 820 /* elem doesn't exist, cannot update it */ 821 return -ENOENT; 822 823 return 0; 824 } 825 826 /* Called from syscall or from eBPF program */ 827 static int htab_map_update_elem(struct bpf_map *map, void *key, void *value, 828 u64 map_flags) 829 { 830 struct bpf_htab *htab = container_of(map, struct bpf_htab, map); 831 struct htab_elem *l_new = NULL, *l_old; 832 struct hlist_nulls_head *head; 833 unsigned long flags; 834 struct bucket *b; 835 u32 key_size, hash; 836 int ret; 837 838 if (unlikely((map_flags & ~BPF_F_LOCK) > BPF_EXIST)) 839 /* unknown flags */ 840 return -EINVAL; 841 842 WARN_ON_ONCE(!rcu_read_lock_held()); 843 844 key_size = map->key_size; 845 846 hash = htab_map_hash(key, key_size, htab->hashrnd); 847 848 b = __select_bucket(htab, hash); 849 head = &b->head; 850 851 if (unlikely(map_flags & BPF_F_LOCK)) { 852 if (unlikely(!map_value_has_spin_lock(map))) 853 return -EINVAL; 854 /* find an element without taking the bucket lock */ 855 l_old = lookup_nulls_elem_raw(head, hash, key, key_size, 856 htab->n_buckets); 857 ret = check_flags(htab, l_old, map_flags); 858 if (ret) 859 return ret; 860 if (l_old) { 861 /* grab the element lock and update value in place */ 862 copy_map_value_locked(map, 863 l_old->key + round_up(key_size, 8), 864 value, false); 865 return 0; 866 } 867 /* fall through, grab the bucket lock and lookup again. 868 * 99.9% chance that the element won't be found, 869 * but second lookup under lock has to be done. 870 */ 871 } 872 873 /* bpf_map_update_elem() can be called in_irq() */ 874 raw_spin_lock_irqsave(&b->lock, flags); 875 876 l_old = lookup_elem_raw(head, hash, key, key_size); 877 878 ret = check_flags(htab, l_old, map_flags); 879 if (ret) 880 goto err; 881 882 if (unlikely(l_old && (map_flags & BPF_F_LOCK))) { 883 /* first lookup without the bucket lock didn't find the element, 884 * but second lookup with the bucket lock found it. 885 * This case is highly unlikely, but has to be dealt with: 886 * grab the element lock in addition to the bucket lock 887 * and update element in place 888 */ 889 copy_map_value_locked(map, 890 l_old->key + round_up(key_size, 8), 891 value, false); 892 ret = 0; 893 goto err; 894 } 895 896 l_new = alloc_htab_elem(htab, key, value, key_size, hash, false, false, 897 l_old); 898 if (IS_ERR(l_new)) { 899 /* all pre-allocated elements are in use or memory exhausted */ 900 ret = PTR_ERR(l_new); 901 goto err; 902 } 903 904 /* add new element to the head of the list, so that 905 * concurrent search will find it before old elem 906 */ 907 hlist_nulls_add_head_rcu(&l_new->hash_node, head); 908 if (l_old) { 909 hlist_nulls_del_rcu(&l_old->hash_node); 910 if (!htab_is_prealloc(htab)) 911 free_htab_elem(htab, l_old); 912 } 913 ret = 0; 914 err: 915 raw_spin_unlock_irqrestore(&b->lock, flags); 916 return ret; 917 } 918 919 static int htab_lru_map_update_elem(struct bpf_map *map, void *key, void *value, 920 u64 map_flags) 921 { 922 struct bpf_htab *htab = container_of(map, struct bpf_htab, map); 923 struct htab_elem *l_new, *l_old = NULL; 924 struct hlist_nulls_head *head; 925 unsigned long flags; 926 struct bucket *b; 927 u32 key_size, hash; 928 int ret; 929 930 if (unlikely(map_flags > BPF_EXIST)) 931 /* unknown flags */ 932 return -EINVAL; 933 934 WARN_ON_ONCE(!rcu_read_lock_held()); 935 936 key_size = map->key_size; 937 938 hash = htab_map_hash(key, key_size, htab->hashrnd); 939 940 b = __select_bucket(htab, hash); 941 head = &b->head; 942 943 /* For LRU, we need to alloc before taking bucket's 944 * spinlock because getting free nodes from LRU may need 945 * to remove older elements from htab and this removal 946 * operation will need a bucket lock. 947 */ 948 l_new = prealloc_lru_pop(htab, key, hash); 949 if (!l_new) 950 return -ENOMEM; 951 memcpy(l_new->key + round_up(map->key_size, 8), value, map->value_size); 952 953 /* bpf_map_update_elem() can be called in_irq() */ 954 raw_spin_lock_irqsave(&b->lock, flags); 955 956 l_old = lookup_elem_raw(head, hash, key, key_size); 957 958 ret = check_flags(htab, l_old, map_flags); 959 if (ret) 960 goto err; 961 962 /* add new element to the head of the list, so that 963 * concurrent search will find it before old elem 964 */ 965 hlist_nulls_add_head_rcu(&l_new->hash_node, head); 966 if (l_old) { 967 bpf_lru_node_set_ref(&l_new->lru_node); 968 hlist_nulls_del_rcu(&l_old->hash_node); 969 } 970 ret = 0; 971 972 err: 973 raw_spin_unlock_irqrestore(&b->lock, flags); 974 975 if (ret) 976 bpf_lru_push_free(&htab->lru, &l_new->lru_node); 977 else if (l_old) 978 bpf_lru_push_free(&htab->lru, &l_old->lru_node); 979 980 return ret; 981 } 982 983 static int __htab_percpu_map_update_elem(struct bpf_map *map, void *key, 984 void *value, u64 map_flags, 985 bool onallcpus) 986 { 987 struct bpf_htab *htab = container_of(map, struct bpf_htab, map); 988 struct htab_elem *l_new = NULL, *l_old; 989 struct hlist_nulls_head *head; 990 unsigned long flags; 991 struct bucket *b; 992 u32 key_size, hash; 993 int ret; 994 995 if (unlikely(map_flags > BPF_EXIST)) 996 /* unknown flags */ 997 return -EINVAL; 998 999 WARN_ON_ONCE(!rcu_read_lock_held()); 1000 1001 key_size = map->key_size; 1002 1003 hash = htab_map_hash(key, key_size, htab->hashrnd); 1004 1005 b = __select_bucket(htab, hash); 1006 head = &b->head; 1007 1008 /* bpf_map_update_elem() can be called in_irq() */ 1009 raw_spin_lock_irqsave(&b->lock, flags); 1010 1011 l_old = lookup_elem_raw(head, hash, key, key_size); 1012 1013 ret = check_flags(htab, l_old, map_flags); 1014 if (ret) 1015 goto err; 1016 1017 if (l_old) { 1018 /* per-cpu hash map can update value in-place */ 1019 pcpu_copy_value(htab, htab_elem_get_ptr(l_old, key_size), 1020 value, onallcpus); 1021 } else { 1022 l_new = alloc_htab_elem(htab, key, value, key_size, 1023 hash, true, onallcpus, NULL); 1024 if (IS_ERR(l_new)) { 1025 ret = PTR_ERR(l_new); 1026 goto err; 1027 } 1028 hlist_nulls_add_head_rcu(&l_new->hash_node, head); 1029 } 1030 ret = 0; 1031 err: 1032 raw_spin_unlock_irqrestore(&b->lock, flags); 1033 return ret; 1034 } 1035 1036 static int __htab_lru_percpu_map_update_elem(struct bpf_map *map, void *key, 1037 void *value, u64 map_flags, 1038 bool onallcpus) 1039 { 1040 struct bpf_htab *htab = container_of(map, struct bpf_htab, map); 1041 struct htab_elem *l_new = NULL, *l_old; 1042 struct hlist_nulls_head *head; 1043 unsigned long flags; 1044 struct bucket *b; 1045 u32 key_size, hash; 1046 int ret; 1047 1048 if (unlikely(map_flags > BPF_EXIST)) 1049 /* unknown flags */ 1050 return -EINVAL; 1051 1052 WARN_ON_ONCE(!rcu_read_lock_held()); 1053 1054 key_size = map->key_size; 1055 1056 hash = htab_map_hash(key, key_size, htab->hashrnd); 1057 1058 b = __select_bucket(htab, hash); 1059 head = &b->head; 1060 1061 /* For LRU, we need to alloc before taking bucket's 1062 * spinlock because LRU's elem alloc may need 1063 * to remove older elem from htab and this removal 1064 * operation will need a bucket lock. 1065 */ 1066 if (map_flags != BPF_EXIST) { 1067 l_new = prealloc_lru_pop(htab, key, hash); 1068 if (!l_new) 1069 return -ENOMEM; 1070 } 1071 1072 /* bpf_map_update_elem() can be called in_irq() */ 1073 raw_spin_lock_irqsave(&b->lock, flags); 1074 1075 l_old = lookup_elem_raw(head, hash, key, key_size); 1076 1077 ret = check_flags(htab, l_old, map_flags); 1078 if (ret) 1079 goto err; 1080 1081 if (l_old) { 1082 bpf_lru_node_set_ref(&l_old->lru_node); 1083 1084 /* per-cpu hash map can update value in-place */ 1085 pcpu_copy_value(htab, htab_elem_get_ptr(l_old, key_size), 1086 value, onallcpus); 1087 } else { 1088 pcpu_copy_value(htab, htab_elem_get_ptr(l_new, key_size), 1089 value, onallcpus); 1090 hlist_nulls_add_head_rcu(&l_new->hash_node, head); 1091 l_new = NULL; 1092 } 1093 ret = 0; 1094 err: 1095 raw_spin_unlock_irqrestore(&b->lock, flags); 1096 if (l_new) 1097 bpf_lru_push_free(&htab->lru, &l_new->lru_node); 1098 return ret; 1099 } 1100 1101 static int htab_percpu_map_update_elem(struct bpf_map *map, void *key, 1102 void *value, u64 map_flags) 1103 { 1104 return __htab_percpu_map_update_elem(map, key, value, map_flags, false); 1105 } 1106 1107 static int htab_lru_percpu_map_update_elem(struct bpf_map *map, void *key, 1108 void *value, u64 map_flags) 1109 { 1110 return __htab_lru_percpu_map_update_elem(map, key, value, map_flags, 1111 false); 1112 } 1113 1114 /* Called from syscall or from eBPF program */ 1115 static int htab_map_delete_elem(struct bpf_map *map, void *key) 1116 { 1117 struct bpf_htab *htab = container_of(map, struct bpf_htab, map); 1118 struct hlist_nulls_head *head; 1119 struct bucket *b; 1120 struct htab_elem *l; 1121 unsigned long flags; 1122 u32 hash, key_size; 1123 int ret = -ENOENT; 1124 1125 WARN_ON_ONCE(!rcu_read_lock_held()); 1126 1127 key_size = map->key_size; 1128 1129 hash = htab_map_hash(key, key_size, htab->hashrnd); 1130 b = __select_bucket(htab, hash); 1131 head = &b->head; 1132 1133 raw_spin_lock_irqsave(&b->lock, flags); 1134 1135 l = lookup_elem_raw(head, hash, key, key_size); 1136 1137 if (l) { 1138 hlist_nulls_del_rcu(&l->hash_node); 1139 free_htab_elem(htab, l); 1140 ret = 0; 1141 } 1142 1143 raw_spin_unlock_irqrestore(&b->lock, flags); 1144 return ret; 1145 } 1146 1147 static int htab_lru_map_delete_elem(struct bpf_map *map, void *key) 1148 { 1149 struct bpf_htab *htab = container_of(map, struct bpf_htab, map); 1150 struct hlist_nulls_head *head; 1151 struct bucket *b; 1152 struct htab_elem *l; 1153 unsigned long flags; 1154 u32 hash, key_size; 1155 int ret = -ENOENT; 1156 1157 WARN_ON_ONCE(!rcu_read_lock_held()); 1158 1159 key_size = map->key_size; 1160 1161 hash = htab_map_hash(key, key_size, htab->hashrnd); 1162 b = __select_bucket(htab, hash); 1163 head = &b->head; 1164 1165 raw_spin_lock_irqsave(&b->lock, flags); 1166 1167 l = lookup_elem_raw(head, hash, key, key_size); 1168 1169 if (l) { 1170 hlist_nulls_del_rcu(&l->hash_node); 1171 ret = 0; 1172 } 1173 1174 raw_spin_unlock_irqrestore(&b->lock, flags); 1175 if (l) 1176 bpf_lru_push_free(&htab->lru, &l->lru_node); 1177 return ret; 1178 } 1179 1180 static void delete_all_elements(struct bpf_htab *htab) 1181 { 1182 int i; 1183 1184 for (i = 0; i < htab->n_buckets; i++) { 1185 struct hlist_nulls_head *head = select_bucket(htab, i); 1186 struct hlist_nulls_node *n; 1187 struct htab_elem *l; 1188 1189 hlist_nulls_for_each_entry_safe(l, n, head, hash_node) { 1190 hlist_nulls_del_rcu(&l->hash_node); 1191 htab_elem_free(htab, l); 1192 } 1193 } 1194 } 1195 1196 /* Called when map->refcnt goes to zero, either from workqueue or from syscall */ 1197 static void htab_map_free(struct bpf_map *map) 1198 { 1199 struct bpf_htab *htab = container_of(map, struct bpf_htab, map); 1200 1201 /* at this point bpf_prog->aux->refcnt == 0 and this map->refcnt == 0, 1202 * so the programs (can be more than one that used this map) were 1203 * disconnected from events. Wait for outstanding critical sections in 1204 * these programs to complete 1205 */ 1206 synchronize_rcu(); 1207 1208 /* some of free_htab_elem() callbacks for elements of this map may 1209 * not have executed. Wait for them. 1210 */ 1211 rcu_barrier(); 1212 if (!htab_is_prealloc(htab)) 1213 delete_all_elements(htab); 1214 else 1215 prealloc_destroy(htab); 1216 1217 free_percpu(htab->extra_elems); 1218 bpf_map_area_free(htab->buckets); 1219 kfree(htab); 1220 } 1221 1222 static void htab_map_seq_show_elem(struct bpf_map *map, void *key, 1223 struct seq_file *m) 1224 { 1225 void *value; 1226 1227 rcu_read_lock(); 1228 1229 value = htab_map_lookup_elem(map, key); 1230 if (!value) { 1231 rcu_read_unlock(); 1232 return; 1233 } 1234 1235 btf_type_seq_show(map->btf, map->btf_key_type_id, key, m); 1236 seq_puts(m, ": "); 1237 btf_type_seq_show(map->btf, map->btf_value_type_id, value, m); 1238 seq_puts(m, "\n"); 1239 1240 rcu_read_unlock(); 1241 } 1242 1243 const struct bpf_map_ops htab_map_ops = { 1244 .map_alloc_check = htab_map_alloc_check, 1245 .map_alloc = htab_map_alloc, 1246 .map_free = htab_map_free, 1247 .map_get_next_key = htab_map_get_next_key, 1248 .map_lookup_elem = htab_map_lookup_elem, 1249 .map_update_elem = htab_map_update_elem, 1250 .map_delete_elem = htab_map_delete_elem, 1251 .map_gen_lookup = htab_map_gen_lookup, 1252 .map_seq_show_elem = htab_map_seq_show_elem, 1253 }; 1254 1255 const struct bpf_map_ops htab_lru_map_ops = { 1256 .map_alloc_check = htab_map_alloc_check, 1257 .map_alloc = htab_map_alloc, 1258 .map_free = htab_map_free, 1259 .map_get_next_key = htab_map_get_next_key, 1260 .map_lookup_elem = htab_lru_map_lookup_elem, 1261 .map_lookup_elem_sys_only = htab_lru_map_lookup_elem_sys, 1262 .map_update_elem = htab_lru_map_update_elem, 1263 .map_delete_elem = htab_lru_map_delete_elem, 1264 .map_gen_lookup = htab_lru_map_gen_lookup, 1265 .map_seq_show_elem = htab_map_seq_show_elem, 1266 }; 1267 1268 /* Called from eBPF program */ 1269 static void *htab_percpu_map_lookup_elem(struct bpf_map *map, void *key) 1270 { 1271 struct htab_elem *l = __htab_map_lookup_elem(map, key); 1272 1273 if (l) 1274 return this_cpu_ptr(htab_elem_get_ptr(l, map->key_size)); 1275 else 1276 return NULL; 1277 } 1278 1279 static void *htab_lru_percpu_map_lookup_elem(struct bpf_map *map, void *key) 1280 { 1281 struct htab_elem *l = __htab_map_lookup_elem(map, key); 1282 1283 if (l) { 1284 bpf_lru_node_set_ref(&l->lru_node); 1285 return this_cpu_ptr(htab_elem_get_ptr(l, map->key_size)); 1286 } 1287 1288 return NULL; 1289 } 1290 1291 int bpf_percpu_hash_copy(struct bpf_map *map, void *key, void *value) 1292 { 1293 struct htab_elem *l; 1294 void __percpu *pptr; 1295 int ret = -ENOENT; 1296 int cpu, off = 0; 1297 u32 size; 1298 1299 /* per_cpu areas are zero-filled and bpf programs can only 1300 * access 'value_size' of them, so copying rounded areas 1301 * will not leak any kernel data 1302 */ 1303 size = round_up(map->value_size, 8); 1304 rcu_read_lock(); 1305 l = __htab_map_lookup_elem(map, key); 1306 if (!l) 1307 goto out; 1308 /* We do not mark LRU map element here in order to not mess up 1309 * eviction heuristics when user space does a map walk. 1310 */ 1311 pptr = htab_elem_get_ptr(l, map->key_size); 1312 for_each_possible_cpu(cpu) { 1313 bpf_long_memcpy(value + off, 1314 per_cpu_ptr(pptr, cpu), size); 1315 off += size; 1316 } 1317 ret = 0; 1318 out: 1319 rcu_read_unlock(); 1320 return ret; 1321 } 1322 1323 int bpf_percpu_hash_update(struct bpf_map *map, void *key, void *value, 1324 u64 map_flags) 1325 { 1326 struct bpf_htab *htab = container_of(map, struct bpf_htab, map); 1327 int ret; 1328 1329 rcu_read_lock(); 1330 if (htab_is_lru(htab)) 1331 ret = __htab_lru_percpu_map_update_elem(map, key, value, 1332 map_flags, true); 1333 else 1334 ret = __htab_percpu_map_update_elem(map, key, value, map_flags, 1335 true); 1336 rcu_read_unlock(); 1337 1338 return ret; 1339 } 1340 1341 static void htab_percpu_map_seq_show_elem(struct bpf_map *map, void *key, 1342 struct seq_file *m) 1343 { 1344 struct htab_elem *l; 1345 void __percpu *pptr; 1346 int cpu; 1347 1348 rcu_read_lock(); 1349 1350 l = __htab_map_lookup_elem(map, key); 1351 if (!l) { 1352 rcu_read_unlock(); 1353 return; 1354 } 1355 1356 btf_type_seq_show(map->btf, map->btf_key_type_id, key, m); 1357 seq_puts(m, ": {\n"); 1358 pptr = htab_elem_get_ptr(l, map->key_size); 1359 for_each_possible_cpu(cpu) { 1360 seq_printf(m, "\tcpu%d: ", cpu); 1361 btf_type_seq_show(map->btf, map->btf_value_type_id, 1362 per_cpu_ptr(pptr, cpu), m); 1363 seq_puts(m, "\n"); 1364 } 1365 seq_puts(m, "}\n"); 1366 1367 rcu_read_unlock(); 1368 } 1369 1370 const struct bpf_map_ops htab_percpu_map_ops = { 1371 .map_alloc_check = htab_map_alloc_check, 1372 .map_alloc = htab_map_alloc, 1373 .map_free = htab_map_free, 1374 .map_get_next_key = htab_map_get_next_key, 1375 .map_lookup_elem = htab_percpu_map_lookup_elem, 1376 .map_update_elem = htab_percpu_map_update_elem, 1377 .map_delete_elem = htab_map_delete_elem, 1378 .map_seq_show_elem = htab_percpu_map_seq_show_elem, 1379 }; 1380 1381 const struct bpf_map_ops htab_lru_percpu_map_ops = { 1382 .map_alloc_check = htab_map_alloc_check, 1383 .map_alloc = htab_map_alloc, 1384 .map_free = htab_map_free, 1385 .map_get_next_key = htab_map_get_next_key, 1386 .map_lookup_elem = htab_lru_percpu_map_lookup_elem, 1387 .map_update_elem = htab_lru_percpu_map_update_elem, 1388 .map_delete_elem = htab_lru_map_delete_elem, 1389 .map_seq_show_elem = htab_percpu_map_seq_show_elem, 1390 }; 1391 1392 static int fd_htab_map_alloc_check(union bpf_attr *attr) 1393 { 1394 if (attr->value_size != sizeof(u32)) 1395 return -EINVAL; 1396 return htab_map_alloc_check(attr); 1397 } 1398 1399 static void fd_htab_map_free(struct bpf_map *map) 1400 { 1401 struct bpf_htab *htab = container_of(map, struct bpf_htab, map); 1402 struct hlist_nulls_node *n; 1403 struct hlist_nulls_head *head; 1404 struct htab_elem *l; 1405 int i; 1406 1407 for (i = 0; i < htab->n_buckets; i++) { 1408 head = select_bucket(htab, i); 1409 1410 hlist_nulls_for_each_entry_safe(l, n, head, hash_node) { 1411 void *ptr = fd_htab_map_get_ptr(map, l); 1412 1413 map->ops->map_fd_put_ptr(ptr); 1414 } 1415 } 1416 1417 htab_map_free(map); 1418 } 1419 1420 /* only called from syscall */ 1421 int bpf_fd_htab_map_lookup_elem(struct bpf_map *map, void *key, u32 *value) 1422 { 1423 void **ptr; 1424 int ret = 0; 1425 1426 if (!map->ops->map_fd_sys_lookup_elem) 1427 return -ENOTSUPP; 1428 1429 rcu_read_lock(); 1430 ptr = htab_map_lookup_elem(map, key); 1431 if (ptr) 1432 *value = map->ops->map_fd_sys_lookup_elem(READ_ONCE(*ptr)); 1433 else 1434 ret = -ENOENT; 1435 rcu_read_unlock(); 1436 1437 return ret; 1438 } 1439 1440 /* only called from syscall */ 1441 int bpf_fd_htab_map_update_elem(struct bpf_map *map, struct file *map_file, 1442 void *key, void *value, u64 map_flags) 1443 { 1444 void *ptr; 1445 int ret; 1446 u32 ufd = *(u32 *)value; 1447 1448 ptr = map->ops->map_fd_get_ptr(map, map_file, ufd); 1449 if (IS_ERR(ptr)) 1450 return PTR_ERR(ptr); 1451 1452 ret = htab_map_update_elem(map, key, &ptr, map_flags); 1453 if (ret) 1454 map->ops->map_fd_put_ptr(ptr); 1455 1456 return ret; 1457 } 1458 1459 static struct bpf_map *htab_of_map_alloc(union bpf_attr *attr) 1460 { 1461 struct bpf_map *map, *inner_map_meta; 1462 1463 inner_map_meta = bpf_map_meta_alloc(attr->inner_map_fd); 1464 if (IS_ERR(inner_map_meta)) 1465 return inner_map_meta; 1466 1467 map = htab_map_alloc(attr); 1468 if (IS_ERR(map)) { 1469 bpf_map_meta_free(inner_map_meta); 1470 return map; 1471 } 1472 1473 map->inner_map_meta = inner_map_meta; 1474 1475 return map; 1476 } 1477 1478 static void *htab_of_map_lookup_elem(struct bpf_map *map, void *key) 1479 { 1480 struct bpf_map **inner_map = htab_map_lookup_elem(map, key); 1481 1482 if (!inner_map) 1483 return NULL; 1484 1485 return READ_ONCE(*inner_map); 1486 } 1487 1488 static u32 htab_of_map_gen_lookup(struct bpf_map *map, 1489 struct bpf_insn *insn_buf) 1490 { 1491 struct bpf_insn *insn = insn_buf; 1492 const int ret = BPF_REG_0; 1493 1494 BUILD_BUG_ON(!__same_type(&__htab_map_lookup_elem, 1495 (void *(*)(struct bpf_map *map, void *key))NULL)); 1496 *insn++ = BPF_EMIT_CALL(BPF_CAST_CALL(__htab_map_lookup_elem)); 1497 *insn++ = BPF_JMP_IMM(BPF_JEQ, ret, 0, 2); 1498 *insn++ = BPF_ALU64_IMM(BPF_ADD, ret, 1499 offsetof(struct htab_elem, key) + 1500 round_up(map->key_size, 8)); 1501 *insn++ = BPF_LDX_MEM(BPF_DW, ret, ret, 0); 1502 1503 return insn - insn_buf; 1504 } 1505 1506 static void htab_of_map_free(struct bpf_map *map) 1507 { 1508 bpf_map_meta_free(map->inner_map_meta); 1509 fd_htab_map_free(map); 1510 } 1511 1512 const struct bpf_map_ops htab_of_maps_map_ops = { 1513 .map_alloc_check = fd_htab_map_alloc_check, 1514 .map_alloc = htab_of_map_alloc, 1515 .map_free = htab_of_map_free, 1516 .map_get_next_key = htab_map_get_next_key, 1517 .map_lookup_elem = htab_of_map_lookup_elem, 1518 .map_delete_elem = htab_map_delete_elem, 1519 .map_fd_get_ptr = bpf_map_fd_get_ptr, 1520 .map_fd_put_ptr = bpf_map_fd_put_ptr, 1521 .map_fd_sys_lookup_elem = bpf_map_fd_sys_lookup_elem, 1522 .map_gen_lookup = htab_of_map_gen_lookup, 1523 .map_check_btf = map_check_no_btf, 1524 }; 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