1 #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt 2 3 #include <linux/workqueue.h> 4 #include <linux/rtnetlink.h> 5 #include <linux/cache.h> 6 #include <linux/slab.h> 7 #include <linux/list.h> 8 #include <linux/delay.h> 9 #include <linux/sched.h> 10 #include <linux/idr.h> 11 #include <linux/rculist.h> 12 #include <linux/nsproxy.h> 13 #include <linux/proc_fs.h> 14 #include <linux/file.h> 15 #include <linux/export.h> 16 #include <net/net_namespace.h> 17 #include <net/netns/generic.h> 18 19 /* 20 * Our network namespace constructor/destructor lists 21 */ 22 23 static LIST_HEAD(pernet_list); 24 static struct list_head *first_device = &pernet_list; 25 static DEFINE_MUTEX(net_mutex); 26 27 LIST_HEAD(net_namespace_list); 28 EXPORT_SYMBOL_GPL(net_namespace_list); 29 30 struct net init_net; 31 EXPORT_SYMBOL(init_net); 32 33 #define INITIAL_NET_GEN_PTRS 13 /* +1 for len +2 for rcu_head */ 34 35 static unsigned int max_gen_ptrs = INITIAL_NET_GEN_PTRS; 36 37 static struct net_generic *net_alloc_generic(void) 38 { 39 struct net_generic *ng; 40 size_t generic_size = offsetof(struct net_generic, ptr[max_gen_ptrs]); 41 42 ng = kzalloc(generic_size, GFP_KERNEL); 43 if (ng) 44 ng->len = max_gen_ptrs; 45 46 return ng; 47 } 48 49 static int net_assign_generic(struct net *net, int id, void *data) 50 { 51 struct net_generic *ng, *old_ng; 52 53 BUG_ON(!mutex_is_locked(&net_mutex)); 54 BUG_ON(id == 0); 55 56 old_ng = rcu_dereference_protected(net->gen, 57 lockdep_is_held(&net_mutex)); 58 ng = old_ng; 59 if (old_ng->len >= id) 60 goto assign; 61 62 ng = net_alloc_generic(); 63 if (ng == NULL) 64 return -ENOMEM; 65 66 /* 67 * Some synchronisation notes: 68 * 69 * The net_generic explores the net->gen array inside rcu 70 * read section. Besides once set the net->gen->ptr[x] 71 * pointer never changes (see rules in netns/generic.h). 72 * 73 * That said, we simply duplicate this array and schedule 74 * the old copy for kfree after a grace period. 75 */ 76 77 memcpy(&ng->ptr, &old_ng->ptr, old_ng->len * sizeof(void*)); 78 79 rcu_assign_pointer(net->gen, ng); 80 kfree_rcu(old_ng, rcu); 81 assign: 82 ng->ptr[id - 1] = data; 83 return 0; 84 } 85 86 static int ops_init(const struct pernet_operations *ops, struct net *net) 87 { 88 int err = -ENOMEM; 89 void *data = NULL; 90 91 if (ops->id && ops->size) { 92 data = kzalloc(ops->size, GFP_KERNEL); 93 if (!data) 94 goto out; 95 96 err = net_assign_generic(net, *ops->id, data); 97 if (err) 98 goto cleanup; 99 } 100 err = 0; 101 if (ops->init) 102 err = ops->init(net); 103 if (!err) 104 return 0; 105 106 cleanup: 107 kfree(data); 108 109 out: 110 return err; 111 } 112 113 static void ops_free(const struct pernet_operations *ops, struct net *net) 114 { 115 if (ops->id && ops->size) { 116 int id = *ops->id; 117 kfree(net_generic(net, id)); 118 } 119 } 120 121 static void ops_exit_list(const struct pernet_operations *ops, 122 struct list_head *net_exit_list) 123 { 124 struct net *net; 125 if (ops->exit) { 126 list_for_each_entry(net, net_exit_list, exit_list) 127 ops->exit(net); 128 } 129 if (ops->exit_batch) 130 ops->exit_batch(net_exit_list); 131 } 132 133 static void ops_free_list(const struct pernet_operations *ops, 134 struct list_head *net_exit_list) 135 { 136 struct net *net; 137 if (ops->size && ops->id) { 138 list_for_each_entry(net, net_exit_list, exit_list) 139 ops_free(ops, net); 140 } 141 } 142 143 /* 144 * setup_net runs the initializers for the network namespace object. 145 */ 146 static __net_init int setup_net(struct net *net) 147 { 148 /* Must be called with net_mutex held */ 149 const struct pernet_operations *ops, *saved_ops; 150 int error = 0; 151 LIST_HEAD(net_exit_list); 152 153 atomic_set(&net->count, 1); 154 atomic_set(&net->passive, 1); 155 net->dev_base_seq = 1; 156 157 #ifdef NETNS_REFCNT_DEBUG 158 atomic_set(&net->use_count, 0); 159 #endif 160 161 list_for_each_entry(ops, &pernet_list, list) { 162 error = ops_init(ops, net); 163 if (error < 0) 164 goto out_undo; 165 } 166 out: 167 return error; 168 169 out_undo: 170 /* Walk through the list backwards calling the exit functions 171 * for the pernet modules whose init functions did not fail. 172 */ 173 list_add(&net->exit_list, &net_exit_list); 174 saved_ops = ops; 175 list_for_each_entry_continue_reverse(ops, &pernet_list, list) 176 ops_exit_list(ops, &net_exit_list); 177 178 ops = saved_ops; 179 list_for_each_entry_continue_reverse(ops, &pernet_list, list) 180 ops_free_list(ops, &net_exit_list); 181 182 rcu_barrier(); 183 goto out; 184 } 185 186 187 #ifdef CONFIG_NET_NS 188 static struct kmem_cache *net_cachep; 189 static struct workqueue_struct *netns_wq; 190 191 static struct net *net_alloc(void) 192 { 193 struct net *net = NULL; 194 struct net_generic *ng; 195 196 ng = net_alloc_generic(); 197 if (!ng) 198 goto out; 199 200 net = kmem_cache_zalloc(net_cachep, GFP_KERNEL); 201 if (!net) 202 goto out_free; 203 204 rcu_assign_pointer(net->gen, ng); 205 out: 206 return net; 207 208 out_free: 209 kfree(ng); 210 goto out; 211 } 212 213 static void net_free(struct net *net) 214 { 215 #ifdef NETNS_REFCNT_DEBUG 216 if (unlikely(atomic_read(&net->use_count) != 0)) { 217 pr_emerg("network namespace not free! Usage: %d\n", 218 atomic_read(&net->use_count)); 219 return; 220 } 221 #endif 222 kfree(net->gen); 223 kmem_cache_free(net_cachep, net); 224 } 225 226 void net_drop_ns(void *p) 227 { 228 struct net *ns = p; 229 if (ns && atomic_dec_and_test(&ns->passive)) 230 net_free(ns); 231 } 232 233 struct net *copy_net_ns(unsigned long flags, struct net *old_net) 234 { 235 struct net *net; 236 int rv; 237 238 if (!(flags & CLONE_NEWNET)) 239 return get_net(old_net); 240 241 net = net_alloc(); 242 if (!net) 243 return ERR_PTR(-ENOMEM); 244 mutex_lock(&net_mutex); 245 rv = setup_net(net); 246 if (rv == 0) { 247 rtnl_lock(); 248 list_add_tail_rcu(&net->list, &net_namespace_list); 249 rtnl_unlock(); 250 } 251 mutex_unlock(&net_mutex); 252 if (rv < 0) { 253 net_drop_ns(net); 254 return ERR_PTR(rv); 255 } 256 return net; 257 } 258 259 static DEFINE_SPINLOCK(cleanup_list_lock); 260 static LIST_HEAD(cleanup_list); /* Must hold cleanup_list_lock to touch */ 261 262 static void cleanup_net(struct work_struct *work) 263 { 264 const struct pernet_operations *ops; 265 struct net *net, *tmp; 266 LIST_HEAD(net_kill_list); 267 LIST_HEAD(net_exit_list); 268 269 /* Atomically snapshot the list of namespaces to cleanup */ 270 spin_lock_irq(&cleanup_list_lock); 271 list_replace_init(&cleanup_list, &net_kill_list); 272 spin_unlock_irq(&cleanup_list_lock); 273 274 mutex_lock(&net_mutex); 275 276 /* Don't let anyone else find us. */ 277 rtnl_lock(); 278 list_for_each_entry(net, &net_kill_list, cleanup_list) { 279 list_del_rcu(&net->list); 280 list_add_tail(&net->exit_list, &net_exit_list); 281 } 282 rtnl_unlock(); 283 284 /* 285 * Another CPU might be rcu-iterating the list, wait for it. 286 * This needs to be before calling the exit() notifiers, so 287 * the rcu_barrier() below isn't sufficient alone. 288 */ 289 synchronize_rcu(); 290 291 /* Run all of the network namespace exit methods */ 292 list_for_each_entry_reverse(ops, &pernet_list, list) 293 ops_exit_list(ops, &net_exit_list); 294 295 /* Free the net generic variables */ 296 list_for_each_entry_reverse(ops, &pernet_list, list) 297 ops_free_list(ops, &net_exit_list); 298 299 mutex_unlock(&net_mutex); 300 301 /* Ensure there are no outstanding rcu callbacks using this 302 * network namespace. 303 */ 304 rcu_barrier(); 305 306 /* Finally it is safe to free my network namespace structure */ 307 list_for_each_entry_safe(net, tmp, &net_exit_list, exit_list) { 308 list_del_init(&net->exit_list); 309 net_drop_ns(net); 310 } 311 } 312 static DECLARE_WORK(net_cleanup_work, cleanup_net); 313 314 void __put_net(struct net *net) 315 { 316 /* Cleanup the network namespace in process context */ 317 unsigned long flags; 318 319 spin_lock_irqsave(&cleanup_list_lock, flags); 320 list_add(&net->cleanup_list, &cleanup_list); 321 spin_unlock_irqrestore(&cleanup_list_lock, flags); 322 323 queue_work(netns_wq, &net_cleanup_work); 324 } 325 EXPORT_SYMBOL_GPL(__put_net); 326 327 struct net *get_net_ns_by_fd(int fd) 328 { 329 struct proc_inode *ei; 330 struct file *file; 331 struct net *net; 332 333 file = proc_ns_fget(fd); 334 if (IS_ERR(file)) 335 return ERR_CAST(file); 336 337 ei = PROC_I(file->f_dentry->d_inode); 338 if (ei->ns_ops == &netns_operations) 339 net = get_net(ei->ns); 340 else 341 net = ERR_PTR(-EINVAL); 342 343 fput(file); 344 return net; 345 } 346 347 #else 348 struct net *copy_net_ns(unsigned long flags, struct net *old_net) 349 { 350 if (flags & CLONE_NEWNET) 351 return ERR_PTR(-EINVAL); 352 return old_net; 353 } 354 355 struct net *get_net_ns_by_fd(int fd) 356 { 357 return ERR_PTR(-EINVAL); 358 } 359 #endif 360 361 struct net *get_net_ns_by_pid(pid_t pid) 362 { 363 struct task_struct *tsk; 364 struct net *net; 365 366 /* Lookup the network namespace */ 367 net = ERR_PTR(-ESRCH); 368 rcu_read_lock(); 369 tsk = find_task_by_vpid(pid); 370 if (tsk) { 371 struct nsproxy *nsproxy; 372 nsproxy = task_nsproxy(tsk); 373 if (nsproxy) 374 net = get_net(nsproxy->net_ns); 375 } 376 rcu_read_unlock(); 377 return net; 378 } 379 EXPORT_SYMBOL_GPL(get_net_ns_by_pid); 380 381 static int __init net_ns_init(void) 382 { 383 struct net_generic *ng; 384 385 #ifdef CONFIG_NET_NS 386 net_cachep = kmem_cache_create("net_namespace", sizeof(struct net), 387 SMP_CACHE_BYTES, 388 SLAB_PANIC, NULL); 389 390 /* Create workqueue for cleanup */ 391 netns_wq = create_singlethread_workqueue("netns"); 392 if (!netns_wq) 393 panic("Could not create netns workq"); 394 #endif 395 396 ng = net_alloc_generic(); 397 if (!ng) 398 panic("Could not allocate generic netns"); 399 400 rcu_assign_pointer(init_net.gen, ng); 401 402 mutex_lock(&net_mutex); 403 if (setup_net(&init_net)) 404 panic("Could not setup the initial network namespace"); 405 406 rtnl_lock(); 407 list_add_tail_rcu(&init_net.list, &net_namespace_list); 408 rtnl_unlock(); 409 410 mutex_unlock(&net_mutex); 411 412 return 0; 413 } 414 415 pure_initcall(net_ns_init); 416 417 #ifdef CONFIG_NET_NS 418 static int __register_pernet_operations(struct list_head *list, 419 struct pernet_operations *ops) 420 { 421 struct net *net; 422 int error; 423 LIST_HEAD(net_exit_list); 424 425 list_add_tail(&ops->list, list); 426 if (ops->init || (ops->id && ops->size)) { 427 for_each_net(net) { 428 error = ops_init(ops, net); 429 if (error) 430 goto out_undo; 431 list_add_tail(&net->exit_list, &net_exit_list); 432 } 433 } 434 return 0; 435 436 out_undo: 437 /* If I have an error cleanup all namespaces I initialized */ 438 list_del(&ops->list); 439 ops_exit_list(ops, &net_exit_list); 440 ops_free_list(ops, &net_exit_list); 441 return error; 442 } 443 444 static void __unregister_pernet_operations(struct pernet_operations *ops) 445 { 446 struct net *net; 447 LIST_HEAD(net_exit_list); 448 449 list_del(&ops->list); 450 for_each_net(net) 451 list_add_tail(&net->exit_list, &net_exit_list); 452 ops_exit_list(ops, &net_exit_list); 453 ops_free_list(ops, &net_exit_list); 454 } 455 456 #else 457 458 static int __register_pernet_operations(struct list_head *list, 459 struct pernet_operations *ops) 460 { 461 return ops_init(ops, &init_net); 462 } 463 464 static void __unregister_pernet_operations(struct pernet_operations *ops) 465 { 466 LIST_HEAD(net_exit_list); 467 list_add(&init_net.exit_list, &net_exit_list); 468 ops_exit_list(ops, &net_exit_list); 469 ops_free_list(ops, &net_exit_list); 470 } 471 472 #endif /* CONFIG_NET_NS */ 473 474 static DEFINE_IDA(net_generic_ids); 475 476 static int register_pernet_operations(struct list_head *list, 477 struct pernet_operations *ops) 478 { 479 int error; 480 481 if (ops->id) { 482 again: 483 error = ida_get_new_above(&net_generic_ids, 1, ops->id); 484 if (error < 0) { 485 if (error == -EAGAIN) { 486 ida_pre_get(&net_generic_ids, GFP_KERNEL); 487 goto again; 488 } 489 return error; 490 } 491 max_gen_ptrs = max_t(unsigned int, max_gen_ptrs, *ops->id); 492 } 493 error = __register_pernet_operations(list, ops); 494 if (error) { 495 rcu_barrier(); 496 if (ops->id) 497 ida_remove(&net_generic_ids, *ops->id); 498 } 499 500 return error; 501 } 502 503 static void unregister_pernet_operations(struct pernet_operations *ops) 504 { 505 506 __unregister_pernet_operations(ops); 507 rcu_barrier(); 508 if (ops->id) 509 ida_remove(&net_generic_ids, *ops->id); 510 } 511 512 /** 513 * register_pernet_subsys - register a network namespace subsystem 514 * @ops: pernet operations structure for the subsystem 515 * 516 * Register a subsystem which has init and exit functions 517 * that are called when network namespaces are created and 518 * destroyed respectively. 519 * 520 * When registered all network namespace init functions are 521 * called for every existing network namespace. Allowing kernel 522 * modules to have a race free view of the set of network namespaces. 523 * 524 * When a new network namespace is created all of the init 525 * methods are called in the order in which they were registered. 526 * 527 * When a network namespace is destroyed all of the exit methods 528 * are called in the reverse of the order with which they were 529 * registered. 530 */ 531 int register_pernet_subsys(struct pernet_operations *ops) 532 { 533 int error; 534 mutex_lock(&net_mutex); 535 error = register_pernet_operations(first_device, ops); 536 mutex_unlock(&net_mutex); 537 return error; 538 } 539 EXPORT_SYMBOL_GPL(register_pernet_subsys); 540 541 /** 542 * unregister_pernet_subsys - unregister a network namespace subsystem 543 * @ops: pernet operations structure to manipulate 544 * 545 * Remove the pernet operations structure from the list to be 546 * used when network namespaces are created or destroyed. In 547 * addition run the exit method for all existing network 548 * namespaces. 549 */ 550 void unregister_pernet_subsys(struct pernet_operations *ops) 551 { 552 mutex_lock(&net_mutex); 553 unregister_pernet_operations(ops); 554 mutex_unlock(&net_mutex); 555 } 556 EXPORT_SYMBOL_GPL(unregister_pernet_subsys); 557 558 /** 559 * register_pernet_device - register a network namespace device 560 * @ops: pernet operations structure for the subsystem 561 * 562 * Register a device which has init and exit functions 563 * that are called when network namespaces are created and 564 * destroyed respectively. 565 * 566 * When registered all network namespace init functions are 567 * called for every existing network namespace. Allowing kernel 568 * modules to have a race free view of the set of network namespaces. 569 * 570 * When a new network namespace is created all of the init 571 * methods are called in the order in which they were registered. 572 * 573 * When a network namespace is destroyed all of the exit methods 574 * are called in the reverse of the order with which they were 575 * registered. 576 */ 577 int register_pernet_device(struct pernet_operations *ops) 578 { 579 int error; 580 mutex_lock(&net_mutex); 581 error = register_pernet_operations(&pernet_list, ops); 582 if (!error && (first_device == &pernet_list)) 583 first_device = &ops->list; 584 mutex_unlock(&net_mutex); 585 return error; 586 } 587 EXPORT_SYMBOL_GPL(register_pernet_device); 588 589 /** 590 * unregister_pernet_device - unregister a network namespace netdevice 591 * @ops: pernet operations structure to manipulate 592 * 593 * Remove the pernet operations structure from the list to be 594 * used when network namespaces are created or destroyed. In 595 * addition run the exit method for all existing network 596 * namespaces. 597 */ 598 void unregister_pernet_device(struct pernet_operations *ops) 599 { 600 mutex_lock(&net_mutex); 601 if (&ops->list == first_device) 602 first_device = first_device->next; 603 unregister_pernet_operations(ops); 604 mutex_unlock(&net_mutex); 605 } 606 EXPORT_SYMBOL_GPL(unregister_pernet_device); 607 608 #ifdef CONFIG_NET_NS 609 static void *netns_get(struct task_struct *task) 610 { 611 struct net *net = NULL; 612 struct nsproxy *nsproxy; 613 614 rcu_read_lock(); 615 nsproxy = task_nsproxy(task); 616 if (nsproxy) 617 net = get_net(nsproxy->net_ns); 618 rcu_read_unlock(); 619 620 return net; 621 } 622 623 static void netns_put(void *ns) 624 { 625 put_net(ns); 626 } 627 628 static int netns_install(struct nsproxy *nsproxy, void *ns) 629 { 630 put_net(nsproxy->net_ns); 631 nsproxy->net_ns = get_net(ns); 632 return 0; 633 } 634 635 const struct proc_ns_operations netns_operations = { 636 .name = "net", 637 .type = CLONE_NEWNET, 638 .get = netns_get, 639 .put = netns_put, 640 .install = netns_install, 641 }; 642 #endif 643