1450af8d0SKP Singh // SPDX-License-Identifier: GPL-2.0 2450af8d0SKP Singh /* Copyright (c) 2019 Facebook */ 3450af8d0SKP Singh #include <linux/rculist.h> 4450af8d0SKP Singh #include <linux/list.h> 5450af8d0SKP Singh #include <linux/hash.h> 6450af8d0SKP Singh #include <linux/types.h> 7450af8d0SKP Singh #include <linux/spinlock.h> 8450af8d0SKP Singh #include <linux/bpf.h> 9450af8d0SKP Singh #include <linux/btf_ids.h> 10450af8d0SKP Singh #include <linux/bpf_local_storage.h> 11450af8d0SKP Singh #include <net/sock.h> 12450af8d0SKP Singh #include <uapi/linux/sock_diag.h> 13450af8d0SKP Singh #include <uapi/linux/btf.h> 14450af8d0SKP Singh 15450af8d0SKP Singh #define BPF_LOCAL_STORAGE_CREATE_FLAG_MASK (BPF_F_NO_PREALLOC | BPF_F_CLONE) 16450af8d0SKP Singh 17450af8d0SKP Singh static struct bpf_local_storage_map_bucket * 18450af8d0SKP Singh select_bucket(struct bpf_local_storage_map *smap, 19450af8d0SKP Singh struct bpf_local_storage_elem *selem) 20450af8d0SKP Singh { 21450af8d0SKP Singh return &smap->buckets[hash_ptr(selem, smap->bucket_log)]; 22450af8d0SKP Singh } 23450af8d0SKP Singh 24450af8d0SKP Singh static int mem_charge(struct bpf_local_storage_map *smap, void *owner, u32 size) 25450af8d0SKP Singh { 26450af8d0SKP Singh struct bpf_map *map = &smap->map; 27450af8d0SKP Singh 28450af8d0SKP Singh if (!map->ops->map_local_storage_charge) 29450af8d0SKP Singh return 0; 30450af8d0SKP Singh 31450af8d0SKP Singh return map->ops->map_local_storage_charge(smap, owner, size); 32450af8d0SKP Singh } 33450af8d0SKP Singh 34450af8d0SKP Singh static void mem_uncharge(struct bpf_local_storage_map *smap, void *owner, 35450af8d0SKP Singh u32 size) 36450af8d0SKP Singh { 37450af8d0SKP Singh struct bpf_map *map = &smap->map; 38450af8d0SKP Singh 39450af8d0SKP Singh if (map->ops->map_local_storage_uncharge) 40450af8d0SKP Singh map->ops->map_local_storage_uncharge(smap, owner, size); 41450af8d0SKP Singh } 42450af8d0SKP Singh 43450af8d0SKP Singh static struct bpf_local_storage __rcu ** 44450af8d0SKP Singh owner_storage(struct bpf_local_storage_map *smap, void *owner) 45450af8d0SKP Singh { 46450af8d0SKP Singh struct bpf_map *map = &smap->map; 47450af8d0SKP Singh 48450af8d0SKP Singh return map->ops->map_owner_storage_ptr(owner); 49450af8d0SKP Singh } 50450af8d0SKP Singh 51450af8d0SKP Singh static bool selem_linked_to_storage(const struct bpf_local_storage_elem *selem) 52450af8d0SKP Singh { 53450af8d0SKP Singh return !hlist_unhashed(&selem->snode); 54450af8d0SKP Singh } 55450af8d0SKP Singh 56450af8d0SKP Singh static bool selem_linked_to_map(const struct bpf_local_storage_elem *selem) 57450af8d0SKP Singh { 58450af8d0SKP Singh return !hlist_unhashed(&selem->map_node); 59450af8d0SKP Singh } 60450af8d0SKP Singh 61450af8d0SKP Singh struct bpf_local_storage_elem * 62450af8d0SKP Singh bpf_selem_alloc(struct bpf_local_storage_map *smap, void *owner, 63450af8d0SKP Singh void *value, bool charge_mem) 64450af8d0SKP Singh { 65450af8d0SKP Singh struct bpf_local_storage_elem *selem; 66450af8d0SKP Singh 67450af8d0SKP Singh if (charge_mem && mem_charge(smap, owner, smap->elem_size)) 68450af8d0SKP Singh return NULL; 69450af8d0SKP Singh 70*e9aae8beSRoman Gushchin selem = bpf_map_kzalloc(&smap->map, smap->elem_size, 71*e9aae8beSRoman Gushchin GFP_ATOMIC | __GFP_NOWARN); 72450af8d0SKP Singh if (selem) { 73450af8d0SKP Singh if (value) 74450af8d0SKP Singh memcpy(SDATA(selem)->data, value, smap->map.value_size); 75450af8d0SKP Singh return selem; 76450af8d0SKP Singh } 77450af8d0SKP Singh 78450af8d0SKP Singh if (charge_mem) 79450af8d0SKP Singh mem_uncharge(smap, owner, smap->elem_size); 80450af8d0SKP Singh 81450af8d0SKP Singh return NULL; 82450af8d0SKP Singh } 83450af8d0SKP Singh 84450af8d0SKP Singh /* local_storage->lock must be held and selem->local_storage == local_storage. 85450af8d0SKP Singh * The caller must ensure selem->smap is still valid to be 86450af8d0SKP Singh * dereferenced for its smap->elem_size and smap->cache_idx. 87450af8d0SKP Singh */ 88450af8d0SKP Singh bool bpf_selem_unlink_storage_nolock(struct bpf_local_storage *local_storage, 89450af8d0SKP Singh struct bpf_local_storage_elem *selem, 90450af8d0SKP Singh bool uncharge_mem) 91450af8d0SKP Singh { 92450af8d0SKP Singh struct bpf_local_storage_map *smap; 93450af8d0SKP Singh bool free_local_storage; 94450af8d0SKP Singh void *owner; 95450af8d0SKP Singh 96450af8d0SKP Singh smap = rcu_dereference(SDATA(selem)->smap); 97450af8d0SKP Singh owner = local_storage->owner; 98450af8d0SKP Singh 99450af8d0SKP Singh /* All uncharging on the owner must be done first. 100450af8d0SKP Singh * The owner may be freed once the last selem is unlinked 101450af8d0SKP Singh * from local_storage. 102450af8d0SKP Singh */ 103450af8d0SKP Singh if (uncharge_mem) 104450af8d0SKP Singh mem_uncharge(smap, owner, smap->elem_size); 105450af8d0SKP Singh 106450af8d0SKP Singh free_local_storage = hlist_is_singular_node(&selem->snode, 107450af8d0SKP Singh &local_storage->list); 108450af8d0SKP Singh if (free_local_storage) { 109450af8d0SKP Singh mem_uncharge(smap, owner, sizeof(struct bpf_local_storage)); 110450af8d0SKP Singh local_storage->owner = NULL; 111450af8d0SKP Singh 112450af8d0SKP Singh /* After this RCU_INIT, owner may be freed and cannot be used */ 113450af8d0SKP Singh RCU_INIT_POINTER(*owner_storage(smap, owner), NULL); 114450af8d0SKP Singh 115450af8d0SKP Singh /* local_storage is not freed now. local_storage->lock is 116450af8d0SKP Singh * still held and raw_spin_unlock_bh(&local_storage->lock) 117450af8d0SKP Singh * will be done by the caller. 118450af8d0SKP Singh * 119450af8d0SKP Singh * Although the unlock will be done under 120450af8d0SKP Singh * rcu_read_lock(), it is more intutivie to 121450af8d0SKP Singh * read if kfree_rcu(local_storage, rcu) is done 122450af8d0SKP Singh * after the raw_spin_unlock_bh(&local_storage->lock). 123450af8d0SKP Singh * 124450af8d0SKP Singh * Hence, a "bool free_local_storage" is returned 125450af8d0SKP Singh * to the caller which then calls the kfree_rcu() 126450af8d0SKP Singh * after unlock. 127450af8d0SKP Singh */ 128450af8d0SKP Singh } 129450af8d0SKP Singh hlist_del_init_rcu(&selem->snode); 130450af8d0SKP Singh if (rcu_access_pointer(local_storage->cache[smap->cache_idx]) == 131450af8d0SKP Singh SDATA(selem)) 132450af8d0SKP Singh RCU_INIT_POINTER(local_storage->cache[smap->cache_idx], NULL); 133450af8d0SKP Singh 134450af8d0SKP Singh kfree_rcu(selem, rcu); 135450af8d0SKP Singh 136450af8d0SKP Singh return free_local_storage; 137450af8d0SKP Singh } 138450af8d0SKP Singh 139450af8d0SKP Singh static void __bpf_selem_unlink_storage(struct bpf_local_storage_elem *selem) 140450af8d0SKP Singh { 141450af8d0SKP Singh struct bpf_local_storage *local_storage; 142450af8d0SKP Singh bool free_local_storage = false; 143450af8d0SKP Singh 144450af8d0SKP Singh if (unlikely(!selem_linked_to_storage(selem))) 145450af8d0SKP Singh /* selem has already been unlinked from sk */ 146450af8d0SKP Singh return; 147450af8d0SKP Singh 148450af8d0SKP Singh local_storage = rcu_dereference(selem->local_storage); 149450af8d0SKP Singh raw_spin_lock_bh(&local_storage->lock); 150450af8d0SKP Singh if (likely(selem_linked_to_storage(selem))) 151450af8d0SKP Singh free_local_storage = bpf_selem_unlink_storage_nolock( 152450af8d0SKP Singh local_storage, selem, true); 153450af8d0SKP Singh raw_spin_unlock_bh(&local_storage->lock); 154450af8d0SKP Singh 155450af8d0SKP Singh if (free_local_storage) 156450af8d0SKP Singh kfree_rcu(local_storage, rcu); 157450af8d0SKP Singh } 158450af8d0SKP Singh 159450af8d0SKP Singh void bpf_selem_link_storage_nolock(struct bpf_local_storage *local_storage, 160450af8d0SKP Singh struct bpf_local_storage_elem *selem) 161450af8d0SKP Singh { 162450af8d0SKP Singh RCU_INIT_POINTER(selem->local_storage, local_storage); 16370b97111SMartin KaFai Lau hlist_add_head_rcu(&selem->snode, &local_storage->list); 164450af8d0SKP Singh } 165450af8d0SKP Singh 166450af8d0SKP Singh void bpf_selem_unlink_map(struct bpf_local_storage_elem *selem) 167450af8d0SKP Singh { 168450af8d0SKP Singh struct bpf_local_storage_map *smap; 169450af8d0SKP Singh struct bpf_local_storage_map_bucket *b; 170450af8d0SKP Singh 171450af8d0SKP Singh if (unlikely(!selem_linked_to_map(selem))) 172450af8d0SKP Singh /* selem has already be unlinked from smap */ 173450af8d0SKP Singh return; 174450af8d0SKP Singh 175450af8d0SKP Singh smap = rcu_dereference(SDATA(selem)->smap); 176450af8d0SKP Singh b = select_bucket(smap, selem); 177450af8d0SKP Singh raw_spin_lock_bh(&b->lock); 178450af8d0SKP Singh if (likely(selem_linked_to_map(selem))) 179450af8d0SKP Singh hlist_del_init_rcu(&selem->map_node); 180450af8d0SKP Singh raw_spin_unlock_bh(&b->lock); 181450af8d0SKP Singh } 182450af8d0SKP Singh 183450af8d0SKP Singh void bpf_selem_link_map(struct bpf_local_storage_map *smap, 184450af8d0SKP Singh struct bpf_local_storage_elem *selem) 185450af8d0SKP Singh { 186450af8d0SKP Singh struct bpf_local_storage_map_bucket *b = select_bucket(smap, selem); 187450af8d0SKP Singh 188450af8d0SKP Singh raw_spin_lock_bh(&b->lock); 189450af8d0SKP Singh RCU_INIT_POINTER(SDATA(selem)->smap, smap); 190450af8d0SKP Singh hlist_add_head_rcu(&selem->map_node, &b->list); 191450af8d0SKP Singh raw_spin_unlock_bh(&b->lock); 192450af8d0SKP Singh } 193450af8d0SKP Singh 194450af8d0SKP Singh void bpf_selem_unlink(struct bpf_local_storage_elem *selem) 195450af8d0SKP Singh { 196450af8d0SKP Singh /* Always unlink from map before unlinking from local_storage 197450af8d0SKP Singh * because selem will be freed after successfully unlinked from 198450af8d0SKP Singh * the local_storage. 199450af8d0SKP Singh */ 200450af8d0SKP Singh bpf_selem_unlink_map(selem); 201450af8d0SKP Singh __bpf_selem_unlink_storage(selem); 202450af8d0SKP Singh } 203450af8d0SKP Singh 204450af8d0SKP Singh struct bpf_local_storage_data * 205450af8d0SKP Singh bpf_local_storage_lookup(struct bpf_local_storage *local_storage, 206450af8d0SKP Singh struct bpf_local_storage_map *smap, 207450af8d0SKP Singh bool cacheit_lockit) 208450af8d0SKP Singh { 209450af8d0SKP Singh struct bpf_local_storage_data *sdata; 210450af8d0SKP Singh struct bpf_local_storage_elem *selem; 211450af8d0SKP Singh 212450af8d0SKP Singh /* Fast path (cache hit) */ 213450af8d0SKP Singh sdata = rcu_dereference(local_storage->cache[smap->cache_idx]); 214450af8d0SKP Singh if (sdata && rcu_access_pointer(sdata->smap) == smap) 215450af8d0SKP Singh return sdata; 216450af8d0SKP Singh 217450af8d0SKP Singh /* Slow path (cache miss) */ 218450af8d0SKP Singh hlist_for_each_entry_rcu(selem, &local_storage->list, snode) 219450af8d0SKP Singh if (rcu_access_pointer(SDATA(selem)->smap) == smap) 220450af8d0SKP Singh break; 221450af8d0SKP Singh 222450af8d0SKP Singh if (!selem) 223450af8d0SKP Singh return NULL; 224450af8d0SKP Singh 225450af8d0SKP Singh sdata = SDATA(selem); 226450af8d0SKP Singh if (cacheit_lockit) { 227450af8d0SKP Singh /* spinlock is needed to avoid racing with the 228450af8d0SKP Singh * parallel delete. Otherwise, publishing an already 229450af8d0SKP Singh * deleted sdata to the cache will become a use-after-free 230450af8d0SKP Singh * problem in the next bpf_local_storage_lookup(). 231450af8d0SKP Singh */ 232450af8d0SKP Singh raw_spin_lock_bh(&local_storage->lock); 233450af8d0SKP Singh if (selem_linked_to_storage(selem)) 234450af8d0SKP Singh rcu_assign_pointer(local_storage->cache[smap->cache_idx], 235450af8d0SKP Singh sdata); 236450af8d0SKP Singh raw_spin_unlock_bh(&local_storage->lock); 237450af8d0SKP Singh } 238450af8d0SKP Singh 239450af8d0SKP Singh return sdata; 240450af8d0SKP Singh } 241450af8d0SKP Singh 242450af8d0SKP Singh static int check_flags(const struct bpf_local_storage_data *old_sdata, 243450af8d0SKP Singh u64 map_flags) 244450af8d0SKP Singh { 245450af8d0SKP Singh if (old_sdata && (map_flags & ~BPF_F_LOCK) == BPF_NOEXIST) 246450af8d0SKP Singh /* elem already exists */ 247450af8d0SKP Singh return -EEXIST; 248450af8d0SKP Singh 249450af8d0SKP Singh if (!old_sdata && (map_flags & ~BPF_F_LOCK) == BPF_EXIST) 250450af8d0SKP Singh /* elem doesn't exist, cannot update it */ 251450af8d0SKP Singh return -ENOENT; 252450af8d0SKP Singh 253450af8d0SKP Singh return 0; 254450af8d0SKP Singh } 255450af8d0SKP Singh 256450af8d0SKP Singh int bpf_local_storage_alloc(void *owner, 257450af8d0SKP Singh struct bpf_local_storage_map *smap, 258450af8d0SKP Singh struct bpf_local_storage_elem *first_selem) 259450af8d0SKP Singh { 260450af8d0SKP Singh struct bpf_local_storage *prev_storage, *storage; 261450af8d0SKP Singh struct bpf_local_storage **owner_storage_ptr; 262450af8d0SKP Singh int err; 263450af8d0SKP Singh 264450af8d0SKP Singh err = mem_charge(smap, owner, sizeof(*storage)); 265450af8d0SKP Singh if (err) 266450af8d0SKP Singh return err; 267450af8d0SKP Singh 268*e9aae8beSRoman Gushchin storage = bpf_map_kzalloc(&smap->map, sizeof(*storage), 269*e9aae8beSRoman Gushchin GFP_ATOMIC | __GFP_NOWARN); 270450af8d0SKP Singh if (!storage) { 271450af8d0SKP Singh err = -ENOMEM; 272450af8d0SKP Singh goto uncharge; 273450af8d0SKP Singh } 274450af8d0SKP Singh 275450af8d0SKP Singh INIT_HLIST_HEAD(&storage->list); 276450af8d0SKP Singh raw_spin_lock_init(&storage->lock); 277450af8d0SKP Singh storage->owner = owner; 278450af8d0SKP Singh 279450af8d0SKP Singh bpf_selem_link_storage_nolock(storage, first_selem); 280450af8d0SKP Singh bpf_selem_link_map(smap, first_selem); 281450af8d0SKP Singh 282450af8d0SKP Singh owner_storage_ptr = 283450af8d0SKP Singh (struct bpf_local_storage **)owner_storage(smap, owner); 284450af8d0SKP Singh /* Publish storage to the owner. 285450af8d0SKP Singh * Instead of using any lock of the kernel object (i.e. owner), 286450af8d0SKP Singh * cmpxchg will work with any kernel object regardless what 287450af8d0SKP Singh * the running context is, bh, irq...etc. 288450af8d0SKP Singh * 289450af8d0SKP Singh * From now on, the owner->storage pointer (e.g. sk->sk_bpf_storage) 290450af8d0SKP Singh * is protected by the storage->lock. Hence, when freeing 291450af8d0SKP Singh * the owner->storage, the storage->lock must be held before 292450af8d0SKP Singh * setting owner->storage ptr to NULL. 293450af8d0SKP Singh */ 294450af8d0SKP Singh prev_storage = cmpxchg(owner_storage_ptr, NULL, storage); 295450af8d0SKP Singh if (unlikely(prev_storage)) { 296450af8d0SKP Singh bpf_selem_unlink_map(first_selem); 297450af8d0SKP Singh err = -EAGAIN; 298450af8d0SKP Singh goto uncharge; 299450af8d0SKP Singh 300450af8d0SKP Singh /* Note that even first_selem was linked to smap's 301450af8d0SKP Singh * bucket->list, first_selem can be freed immediately 302450af8d0SKP Singh * (instead of kfree_rcu) because 303450af8d0SKP Singh * bpf_local_storage_map_free() does a 304450af8d0SKP Singh * synchronize_rcu() before walking the bucket->list. 305450af8d0SKP Singh * Hence, no one is accessing selem from the 306450af8d0SKP Singh * bucket->list under rcu_read_lock(). 307450af8d0SKP Singh */ 308450af8d0SKP Singh } 309450af8d0SKP Singh 310450af8d0SKP Singh return 0; 311450af8d0SKP Singh 312450af8d0SKP Singh uncharge: 313450af8d0SKP Singh kfree(storage); 314450af8d0SKP Singh mem_uncharge(smap, owner, sizeof(*storage)); 315450af8d0SKP Singh return err; 316450af8d0SKP Singh } 317450af8d0SKP Singh 318450af8d0SKP Singh /* sk cannot be going away because it is linking new elem 319450af8d0SKP Singh * to sk->sk_bpf_storage. (i.e. sk->sk_refcnt cannot be 0). 320450af8d0SKP Singh * Otherwise, it will become a leak (and other memory issues 321450af8d0SKP Singh * during map destruction). 322450af8d0SKP Singh */ 323450af8d0SKP Singh struct bpf_local_storage_data * 324450af8d0SKP Singh bpf_local_storage_update(void *owner, struct bpf_local_storage_map *smap, 325450af8d0SKP Singh void *value, u64 map_flags) 326450af8d0SKP Singh { 327450af8d0SKP Singh struct bpf_local_storage_data *old_sdata = NULL; 328450af8d0SKP Singh struct bpf_local_storage_elem *selem; 329450af8d0SKP Singh struct bpf_local_storage *local_storage; 330450af8d0SKP Singh int err; 331450af8d0SKP Singh 332450af8d0SKP Singh /* BPF_EXIST and BPF_NOEXIST cannot be both set */ 333450af8d0SKP Singh if (unlikely((map_flags & ~BPF_F_LOCK) > BPF_EXIST) || 334450af8d0SKP Singh /* BPF_F_LOCK can only be used in a value with spin_lock */ 335450af8d0SKP Singh unlikely((map_flags & BPF_F_LOCK) && 336450af8d0SKP Singh !map_value_has_spin_lock(&smap->map))) 337450af8d0SKP Singh return ERR_PTR(-EINVAL); 338450af8d0SKP Singh 339450af8d0SKP Singh local_storage = rcu_dereference(*owner_storage(smap, owner)); 340450af8d0SKP Singh if (!local_storage || hlist_empty(&local_storage->list)) { 341450af8d0SKP Singh /* Very first elem for the owner */ 342450af8d0SKP Singh err = check_flags(NULL, map_flags); 343450af8d0SKP Singh if (err) 344450af8d0SKP Singh return ERR_PTR(err); 345450af8d0SKP Singh 346450af8d0SKP Singh selem = bpf_selem_alloc(smap, owner, value, true); 347450af8d0SKP Singh if (!selem) 348450af8d0SKP Singh return ERR_PTR(-ENOMEM); 349450af8d0SKP Singh 350450af8d0SKP Singh err = bpf_local_storage_alloc(owner, smap, selem); 351450af8d0SKP Singh if (err) { 352450af8d0SKP Singh kfree(selem); 353450af8d0SKP Singh mem_uncharge(smap, owner, smap->elem_size); 354450af8d0SKP Singh return ERR_PTR(err); 355450af8d0SKP Singh } 356450af8d0SKP Singh 357450af8d0SKP Singh return SDATA(selem); 358450af8d0SKP Singh } 359450af8d0SKP Singh 360450af8d0SKP Singh if ((map_flags & BPF_F_LOCK) && !(map_flags & BPF_NOEXIST)) { 361450af8d0SKP Singh /* Hoping to find an old_sdata to do inline update 362450af8d0SKP Singh * such that it can avoid taking the local_storage->lock 363450af8d0SKP Singh * and changing the lists. 364450af8d0SKP Singh */ 365450af8d0SKP Singh old_sdata = 366450af8d0SKP Singh bpf_local_storage_lookup(local_storage, smap, false); 367450af8d0SKP Singh err = check_flags(old_sdata, map_flags); 368450af8d0SKP Singh if (err) 369450af8d0SKP Singh return ERR_PTR(err); 370450af8d0SKP Singh if (old_sdata && selem_linked_to_storage(SELEM(old_sdata))) { 371450af8d0SKP Singh copy_map_value_locked(&smap->map, old_sdata->data, 372450af8d0SKP Singh value, false); 373450af8d0SKP Singh return old_sdata; 374450af8d0SKP Singh } 375450af8d0SKP Singh } 376450af8d0SKP Singh 377450af8d0SKP Singh raw_spin_lock_bh(&local_storage->lock); 378450af8d0SKP Singh 379450af8d0SKP Singh /* Recheck local_storage->list under local_storage->lock */ 380450af8d0SKP Singh if (unlikely(hlist_empty(&local_storage->list))) { 381450af8d0SKP Singh /* A parallel del is happening and local_storage is going 382450af8d0SKP Singh * away. It has just been checked before, so very 383450af8d0SKP Singh * unlikely. Return instead of retry to keep things 384450af8d0SKP Singh * simple. 385450af8d0SKP Singh */ 386450af8d0SKP Singh err = -EAGAIN; 387450af8d0SKP Singh goto unlock_err; 388450af8d0SKP Singh } 389450af8d0SKP Singh 390450af8d0SKP Singh old_sdata = bpf_local_storage_lookup(local_storage, smap, false); 391450af8d0SKP Singh err = check_flags(old_sdata, map_flags); 392450af8d0SKP Singh if (err) 393450af8d0SKP Singh goto unlock_err; 394450af8d0SKP Singh 395450af8d0SKP Singh if (old_sdata && (map_flags & BPF_F_LOCK)) { 396450af8d0SKP Singh copy_map_value_locked(&smap->map, old_sdata->data, value, 397450af8d0SKP Singh false); 398450af8d0SKP Singh selem = SELEM(old_sdata); 399450af8d0SKP Singh goto unlock; 400450af8d0SKP Singh } 401450af8d0SKP Singh 402450af8d0SKP Singh /* local_storage->lock is held. Hence, we are sure 403450af8d0SKP Singh * we can unlink and uncharge the old_sdata successfully 404450af8d0SKP Singh * later. Hence, instead of charging the new selem now 405450af8d0SKP Singh * and then uncharge the old selem later (which may cause 406450af8d0SKP Singh * a potential but unnecessary charge failure), avoid taking 407450af8d0SKP Singh * a charge at all here (the "!old_sdata" check) and the 408450af8d0SKP Singh * old_sdata will not be uncharged later during 409450af8d0SKP Singh * bpf_selem_unlink_storage_nolock(). 410450af8d0SKP Singh */ 411450af8d0SKP Singh selem = bpf_selem_alloc(smap, owner, value, !old_sdata); 412450af8d0SKP Singh if (!selem) { 413450af8d0SKP Singh err = -ENOMEM; 414450af8d0SKP Singh goto unlock_err; 415450af8d0SKP Singh } 416450af8d0SKP Singh 417450af8d0SKP Singh /* First, link the new selem to the map */ 418450af8d0SKP Singh bpf_selem_link_map(smap, selem); 419450af8d0SKP Singh 420450af8d0SKP Singh /* Second, link (and publish) the new selem to local_storage */ 421450af8d0SKP Singh bpf_selem_link_storage_nolock(local_storage, selem); 422450af8d0SKP Singh 423450af8d0SKP Singh /* Third, remove old selem, SELEM(old_sdata) */ 424450af8d0SKP Singh if (old_sdata) { 425450af8d0SKP Singh bpf_selem_unlink_map(SELEM(old_sdata)); 426450af8d0SKP Singh bpf_selem_unlink_storage_nolock(local_storage, SELEM(old_sdata), 427450af8d0SKP Singh false); 428450af8d0SKP Singh } 429450af8d0SKP Singh 430450af8d0SKP Singh unlock: 431450af8d0SKP Singh raw_spin_unlock_bh(&local_storage->lock); 432450af8d0SKP Singh return SDATA(selem); 433450af8d0SKP Singh 434450af8d0SKP Singh unlock_err: 435450af8d0SKP Singh raw_spin_unlock_bh(&local_storage->lock); 436450af8d0SKP Singh return ERR_PTR(err); 437450af8d0SKP Singh } 438450af8d0SKP Singh 439450af8d0SKP Singh u16 bpf_local_storage_cache_idx_get(struct bpf_local_storage_cache *cache) 440450af8d0SKP Singh { 441450af8d0SKP Singh u64 min_usage = U64_MAX; 442450af8d0SKP Singh u16 i, res = 0; 443450af8d0SKP Singh 444450af8d0SKP Singh spin_lock(&cache->idx_lock); 445450af8d0SKP Singh 446450af8d0SKP Singh for (i = 0; i < BPF_LOCAL_STORAGE_CACHE_SIZE; i++) { 447450af8d0SKP Singh if (cache->idx_usage_counts[i] < min_usage) { 448450af8d0SKP Singh min_usage = cache->idx_usage_counts[i]; 449450af8d0SKP Singh res = i; 450450af8d0SKP Singh 451450af8d0SKP Singh /* Found a free cache_idx */ 452450af8d0SKP Singh if (!min_usage) 453450af8d0SKP Singh break; 454450af8d0SKP Singh } 455450af8d0SKP Singh } 456450af8d0SKP Singh cache->idx_usage_counts[res]++; 457450af8d0SKP Singh 458450af8d0SKP Singh spin_unlock(&cache->idx_lock); 459450af8d0SKP Singh 460450af8d0SKP Singh return res; 461450af8d0SKP Singh } 462450af8d0SKP Singh 463450af8d0SKP Singh void bpf_local_storage_cache_idx_free(struct bpf_local_storage_cache *cache, 464450af8d0SKP Singh u16 idx) 465450af8d0SKP Singh { 466450af8d0SKP Singh spin_lock(&cache->idx_lock); 467450af8d0SKP Singh cache->idx_usage_counts[idx]--; 468450af8d0SKP Singh spin_unlock(&cache->idx_lock); 469450af8d0SKP Singh } 470450af8d0SKP Singh 471450af8d0SKP Singh void bpf_local_storage_map_free(struct bpf_local_storage_map *smap) 472450af8d0SKP Singh { 473450af8d0SKP Singh struct bpf_local_storage_elem *selem; 474450af8d0SKP Singh struct bpf_local_storage_map_bucket *b; 475450af8d0SKP Singh unsigned int i; 476450af8d0SKP Singh 477450af8d0SKP Singh /* Note that this map might be concurrently cloned from 478450af8d0SKP Singh * bpf_sk_storage_clone. Wait for any existing bpf_sk_storage_clone 479450af8d0SKP Singh * RCU read section to finish before proceeding. New RCU 480450af8d0SKP Singh * read sections should be prevented via bpf_map_inc_not_zero. 481450af8d0SKP Singh */ 482450af8d0SKP Singh synchronize_rcu(); 483450af8d0SKP Singh 484450af8d0SKP Singh /* bpf prog and the userspace can no longer access this map 485450af8d0SKP Singh * now. No new selem (of this map) can be added 486450af8d0SKP Singh * to the owner->storage or to the map bucket's list. 487450af8d0SKP Singh * 488450af8d0SKP Singh * The elem of this map can be cleaned up here 489450af8d0SKP Singh * or when the storage is freed e.g. 490450af8d0SKP Singh * by bpf_sk_storage_free() during __sk_destruct(). 491450af8d0SKP Singh */ 492450af8d0SKP Singh for (i = 0; i < (1U << smap->bucket_log); i++) { 493450af8d0SKP Singh b = &smap->buckets[i]; 494450af8d0SKP Singh 495450af8d0SKP Singh rcu_read_lock(); 496450af8d0SKP Singh /* No one is adding to b->list now */ 497450af8d0SKP Singh while ((selem = hlist_entry_safe( 498450af8d0SKP Singh rcu_dereference_raw(hlist_first_rcu(&b->list)), 499450af8d0SKP Singh struct bpf_local_storage_elem, map_node))) { 500450af8d0SKP Singh bpf_selem_unlink(selem); 501450af8d0SKP Singh cond_resched_rcu(); 502450af8d0SKP Singh } 503450af8d0SKP Singh rcu_read_unlock(); 504450af8d0SKP Singh } 505450af8d0SKP Singh 506450af8d0SKP Singh /* While freeing the storage we may still need to access the map. 507450af8d0SKP Singh * 508450af8d0SKP Singh * e.g. when bpf_sk_storage_free() has unlinked selem from the map 509450af8d0SKP Singh * which then made the above while((selem = ...)) loop 510450af8d0SKP Singh * exit immediately. 511450af8d0SKP Singh * 512450af8d0SKP Singh * However, while freeing the storage one still needs to access the 513450af8d0SKP Singh * smap->elem_size to do the uncharging in 514450af8d0SKP Singh * bpf_selem_unlink_storage_nolock(). 515450af8d0SKP Singh * 516450af8d0SKP Singh * Hence, wait another rcu grace period for the storage to be freed. 517450af8d0SKP Singh */ 518450af8d0SKP Singh synchronize_rcu(); 519450af8d0SKP Singh 520450af8d0SKP Singh kvfree(smap->buckets); 521450af8d0SKP Singh kfree(smap); 522450af8d0SKP Singh } 523450af8d0SKP Singh 524450af8d0SKP Singh int bpf_local_storage_map_alloc_check(union bpf_attr *attr) 525450af8d0SKP Singh { 526450af8d0SKP Singh if (attr->map_flags & ~BPF_LOCAL_STORAGE_CREATE_FLAG_MASK || 527450af8d0SKP Singh !(attr->map_flags & BPF_F_NO_PREALLOC) || 528450af8d0SKP Singh attr->max_entries || 529450af8d0SKP Singh attr->key_size != sizeof(int) || !attr->value_size || 530450af8d0SKP Singh /* Enforce BTF for userspace sk dumping */ 531450af8d0SKP Singh !attr->btf_key_type_id || !attr->btf_value_type_id) 532450af8d0SKP Singh return -EINVAL; 533450af8d0SKP Singh 534450af8d0SKP Singh if (!bpf_capable()) 535450af8d0SKP Singh return -EPERM; 536450af8d0SKP Singh 537450af8d0SKP Singh if (attr->value_size > BPF_LOCAL_STORAGE_MAX_VALUE_SIZE) 538450af8d0SKP Singh return -E2BIG; 539450af8d0SKP Singh 540450af8d0SKP Singh return 0; 541450af8d0SKP Singh } 542450af8d0SKP Singh 543450af8d0SKP Singh struct bpf_local_storage_map *bpf_local_storage_map_alloc(union bpf_attr *attr) 544450af8d0SKP Singh { 545450af8d0SKP Singh struct bpf_local_storage_map *smap; 546450af8d0SKP Singh unsigned int i; 547450af8d0SKP Singh u32 nbuckets; 548450af8d0SKP Singh u64 cost; 549450af8d0SKP Singh int ret; 550450af8d0SKP Singh 551*e9aae8beSRoman Gushchin smap = kzalloc(sizeof(*smap), GFP_USER | __GFP_NOWARN | __GFP_ACCOUNT); 552450af8d0SKP Singh if (!smap) 553450af8d0SKP Singh return ERR_PTR(-ENOMEM); 554450af8d0SKP Singh bpf_map_init_from_attr(&smap->map, attr); 555450af8d0SKP Singh 556450af8d0SKP Singh nbuckets = roundup_pow_of_two(num_possible_cpus()); 557450af8d0SKP Singh /* Use at least 2 buckets, select_bucket() is undefined behavior with 1 bucket */ 558450af8d0SKP Singh nbuckets = max_t(u32, 2, nbuckets); 559450af8d0SKP Singh smap->bucket_log = ilog2(nbuckets); 560450af8d0SKP Singh cost = sizeof(*smap->buckets) * nbuckets + sizeof(*smap); 561450af8d0SKP Singh 562450af8d0SKP Singh ret = bpf_map_charge_init(&smap->map.memory, cost); 563450af8d0SKP Singh if (ret < 0) { 564450af8d0SKP Singh kfree(smap); 565450af8d0SKP Singh return ERR_PTR(ret); 566450af8d0SKP Singh } 567450af8d0SKP Singh 568450af8d0SKP Singh smap->buckets = kvcalloc(sizeof(*smap->buckets), nbuckets, 569*e9aae8beSRoman Gushchin GFP_USER | __GFP_NOWARN | __GFP_ACCOUNT); 570450af8d0SKP Singh if (!smap->buckets) { 571450af8d0SKP Singh bpf_map_charge_finish(&smap->map.memory); 572450af8d0SKP Singh kfree(smap); 573450af8d0SKP Singh return ERR_PTR(-ENOMEM); 574450af8d0SKP Singh } 575450af8d0SKP Singh 576450af8d0SKP Singh for (i = 0; i < nbuckets; i++) { 577450af8d0SKP Singh INIT_HLIST_HEAD(&smap->buckets[i].list); 578450af8d0SKP Singh raw_spin_lock_init(&smap->buckets[i].lock); 579450af8d0SKP Singh } 580450af8d0SKP Singh 581450af8d0SKP Singh smap->elem_size = 582450af8d0SKP Singh sizeof(struct bpf_local_storage_elem) + attr->value_size; 583450af8d0SKP Singh 584450af8d0SKP Singh return smap; 585450af8d0SKP Singh } 586450af8d0SKP Singh 587450af8d0SKP Singh int bpf_local_storage_map_check_btf(const struct bpf_map *map, 588450af8d0SKP Singh const struct btf *btf, 589450af8d0SKP Singh const struct btf_type *key_type, 590450af8d0SKP Singh const struct btf_type *value_type) 591450af8d0SKP Singh { 592450af8d0SKP Singh u32 int_data; 593450af8d0SKP Singh 594450af8d0SKP Singh if (BTF_INFO_KIND(key_type->info) != BTF_KIND_INT) 595450af8d0SKP Singh return -EINVAL; 596450af8d0SKP Singh 597450af8d0SKP Singh int_data = *(u32 *)(key_type + 1); 598450af8d0SKP Singh if (BTF_INT_BITS(int_data) != 32 || BTF_INT_OFFSET(int_data)) 599450af8d0SKP Singh return -EINVAL; 600450af8d0SKP Singh 601450af8d0SKP Singh return 0; 602450af8d0SKP Singh } 603