1 // SPDX-License-Identifier: GPL-2.0-or-later 2 /* 3 * net/sched/cls_api.c Packet classifier API. 4 * 5 * Authors: Alexey Kuznetsov, <kuznet@ms2.inr.ac.ru> 6 * 7 * Changes: 8 * 9 * Eduardo J. Blanco <ejbs@netlabs.com.uy> :990222: kmod support 10 */ 11 12 #include <linux/module.h> 13 #include <linux/types.h> 14 #include <linux/kernel.h> 15 #include <linux/string.h> 16 #include <linux/errno.h> 17 #include <linux/err.h> 18 #include <linux/skbuff.h> 19 #include <linux/init.h> 20 #include <linux/kmod.h> 21 #include <linux/slab.h> 22 #include <linux/idr.h> 23 #include <linux/jhash.h> 24 #include <linux/rculist.h> 25 #include <net/net_namespace.h> 26 #include <net/sock.h> 27 #include <net/netlink.h> 28 #include <net/pkt_sched.h> 29 #include <net/pkt_cls.h> 30 #include <net/tc_act/tc_pedit.h> 31 #include <net/tc_act/tc_mirred.h> 32 #include <net/tc_act/tc_vlan.h> 33 #include <net/tc_act/tc_tunnel_key.h> 34 #include <net/tc_act/tc_csum.h> 35 #include <net/tc_act/tc_gact.h> 36 #include <net/tc_act/tc_police.h> 37 #include <net/tc_act/tc_sample.h> 38 #include <net/tc_act/tc_skbedit.h> 39 #include <net/tc_act/tc_ct.h> 40 #include <net/tc_act/tc_mpls.h> 41 #include <net/tc_act/tc_gate.h> 42 #include <net/flow_offload.h> 43 44 extern const struct nla_policy rtm_tca_policy[TCA_MAX + 1]; 45 46 /* The list of all installed classifier types */ 47 static LIST_HEAD(tcf_proto_base); 48 49 /* Protects list of registered TC modules. It is pure SMP lock. */ 50 static DEFINE_RWLOCK(cls_mod_lock); 51 52 static u32 destroy_obj_hashfn(const struct tcf_proto *tp) 53 { 54 return jhash_3words(tp->chain->index, tp->prio, 55 (__force __u32)tp->protocol, 0); 56 } 57 58 static void tcf_proto_signal_destroying(struct tcf_chain *chain, 59 struct tcf_proto *tp) 60 { 61 struct tcf_block *block = chain->block; 62 63 mutex_lock(&block->proto_destroy_lock); 64 hash_add_rcu(block->proto_destroy_ht, &tp->destroy_ht_node, 65 destroy_obj_hashfn(tp)); 66 mutex_unlock(&block->proto_destroy_lock); 67 } 68 69 static bool tcf_proto_cmp(const struct tcf_proto *tp1, 70 const struct tcf_proto *tp2) 71 { 72 return tp1->chain->index == tp2->chain->index && 73 tp1->prio == tp2->prio && 74 tp1->protocol == tp2->protocol; 75 } 76 77 static bool tcf_proto_exists_destroying(struct tcf_chain *chain, 78 struct tcf_proto *tp) 79 { 80 u32 hash = destroy_obj_hashfn(tp); 81 struct tcf_proto *iter; 82 bool found = false; 83 84 rcu_read_lock(); 85 hash_for_each_possible_rcu(chain->block->proto_destroy_ht, iter, 86 destroy_ht_node, hash) { 87 if (tcf_proto_cmp(tp, iter)) { 88 found = true; 89 break; 90 } 91 } 92 rcu_read_unlock(); 93 94 return found; 95 } 96 97 static void 98 tcf_proto_signal_destroyed(struct tcf_chain *chain, struct tcf_proto *tp) 99 { 100 struct tcf_block *block = chain->block; 101 102 mutex_lock(&block->proto_destroy_lock); 103 if (hash_hashed(&tp->destroy_ht_node)) 104 hash_del_rcu(&tp->destroy_ht_node); 105 mutex_unlock(&block->proto_destroy_lock); 106 } 107 108 /* Find classifier type by string name */ 109 110 static const struct tcf_proto_ops *__tcf_proto_lookup_ops(const char *kind) 111 { 112 const struct tcf_proto_ops *t, *res = NULL; 113 114 if (kind) { 115 read_lock(&cls_mod_lock); 116 list_for_each_entry(t, &tcf_proto_base, head) { 117 if (strcmp(kind, t->kind) == 0) { 118 if (try_module_get(t->owner)) 119 res = t; 120 break; 121 } 122 } 123 read_unlock(&cls_mod_lock); 124 } 125 return res; 126 } 127 128 static const struct tcf_proto_ops * 129 tcf_proto_lookup_ops(const char *kind, bool rtnl_held, 130 struct netlink_ext_ack *extack) 131 { 132 const struct tcf_proto_ops *ops; 133 134 ops = __tcf_proto_lookup_ops(kind); 135 if (ops) 136 return ops; 137 #ifdef CONFIG_MODULES 138 if (rtnl_held) 139 rtnl_unlock(); 140 request_module("cls_%s", kind); 141 if (rtnl_held) 142 rtnl_lock(); 143 ops = __tcf_proto_lookup_ops(kind); 144 /* We dropped the RTNL semaphore in order to perform 145 * the module load. So, even if we succeeded in loading 146 * the module we have to replay the request. We indicate 147 * this using -EAGAIN. 148 */ 149 if (ops) { 150 module_put(ops->owner); 151 return ERR_PTR(-EAGAIN); 152 } 153 #endif 154 NL_SET_ERR_MSG(extack, "TC classifier not found"); 155 return ERR_PTR(-ENOENT); 156 } 157 158 /* Register(unregister) new classifier type */ 159 160 int register_tcf_proto_ops(struct tcf_proto_ops *ops) 161 { 162 struct tcf_proto_ops *t; 163 int rc = -EEXIST; 164 165 write_lock(&cls_mod_lock); 166 list_for_each_entry(t, &tcf_proto_base, head) 167 if (!strcmp(ops->kind, t->kind)) 168 goto out; 169 170 list_add_tail(&ops->head, &tcf_proto_base); 171 rc = 0; 172 out: 173 write_unlock(&cls_mod_lock); 174 return rc; 175 } 176 EXPORT_SYMBOL(register_tcf_proto_ops); 177 178 static struct workqueue_struct *tc_filter_wq; 179 180 int unregister_tcf_proto_ops(struct tcf_proto_ops *ops) 181 { 182 struct tcf_proto_ops *t; 183 int rc = -ENOENT; 184 185 /* Wait for outstanding call_rcu()s, if any, from a 186 * tcf_proto_ops's destroy() handler. 187 */ 188 rcu_barrier(); 189 flush_workqueue(tc_filter_wq); 190 191 write_lock(&cls_mod_lock); 192 list_for_each_entry(t, &tcf_proto_base, head) { 193 if (t == ops) { 194 list_del(&t->head); 195 rc = 0; 196 break; 197 } 198 } 199 write_unlock(&cls_mod_lock); 200 return rc; 201 } 202 EXPORT_SYMBOL(unregister_tcf_proto_ops); 203 204 bool tcf_queue_work(struct rcu_work *rwork, work_func_t func) 205 { 206 INIT_RCU_WORK(rwork, func); 207 return queue_rcu_work(tc_filter_wq, rwork); 208 } 209 EXPORT_SYMBOL(tcf_queue_work); 210 211 /* Select new prio value from the range, managed by kernel. */ 212 213 static inline u32 tcf_auto_prio(struct tcf_proto *tp) 214 { 215 u32 first = TC_H_MAKE(0xC0000000U, 0U); 216 217 if (tp) 218 first = tp->prio - 1; 219 220 return TC_H_MAJ(first); 221 } 222 223 static bool tcf_proto_check_kind(struct nlattr *kind, char *name) 224 { 225 if (kind) 226 return nla_strscpy(name, kind, IFNAMSIZ) < 0; 227 memset(name, 0, IFNAMSIZ); 228 return false; 229 } 230 231 static bool tcf_proto_is_unlocked(const char *kind) 232 { 233 const struct tcf_proto_ops *ops; 234 bool ret; 235 236 if (strlen(kind) == 0) 237 return false; 238 239 ops = tcf_proto_lookup_ops(kind, false, NULL); 240 /* On error return false to take rtnl lock. Proto lookup/create 241 * functions will perform lookup again and properly handle errors. 242 */ 243 if (IS_ERR(ops)) 244 return false; 245 246 ret = !!(ops->flags & TCF_PROTO_OPS_DOIT_UNLOCKED); 247 module_put(ops->owner); 248 return ret; 249 } 250 251 static struct tcf_proto *tcf_proto_create(const char *kind, u32 protocol, 252 u32 prio, struct tcf_chain *chain, 253 bool rtnl_held, 254 struct netlink_ext_ack *extack) 255 { 256 struct tcf_proto *tp; 257 int err; 258 259 tp = kzalloc(sizeof(*tp), GFP_KERNEL); 260 if (!tp) 261 return ERR_PTR(-ENOBUFS); 262 263 tp->ops = tcf_proto_lookup_ops(kind, rtnl_held, extack); 264 if (IS_ERR(tp->ops)) { 265 err = PTR_ERR(tp->ops); 266 goto errout; 267 } 268 tp->classify = tp->ops->classify; 269 tp->protocol = protocol; 270 tp->prio = prio; 271 tp->chain = chain; 272 spin_lock_init(&tp->lock); 273 refcount_set(&tp->refcnt, 1); 274 275 err = tp->ops->init(tp); 276 if (err) { 277 module_put(tp->ops->owner); 278 goto errout; 279 } 280 return tp; 281 282 errout: 283 kfree(tp); 284 return ERR_PTR(err); 285 } 286 287 static void tcf_proto_get(struct tcf_proto *tp) 288 { 289 refcount_inc(&tp->refcnt); 290 } 291 292 static void tcf_chain_put(struct tcf_chain *chain); 293 294 static void tcf_proto_destroy(struct tcf_proto *tp, bool rtnl_held, 295 bool sig_destroy, struct netlink_ext_ack *extack) 296 { 297 tp->ops->destroy(tp, rtnl_held, extack); 298 if (sig_destroy) 299 tcf_proto_signal_destroyed(tp->chain, tp); 300 tcf_chain_put(tp->chain); 301 module_put(tp->ops->owner); 302 kfree_rcu(tp, rcu); 303 } 304 305 static void tcf_proto_put(struct tcf_proto *tp, bool rtnl_held, 306 struct netlink_ext_ack *extack) 307 { 308 if (refcount_dec_and_test(&tp->refcnt)) 309 tcf_proto_destroy(tp, rtnl_held, true, extack); 310 } 311 312 static bool tcf_proto_check_delete(struct tcf_proto *tp) 313 { 314 if (tp->ops->delete_empty) 315 return tp->ops->delete_empty(tp); 316 317 tp->deleting = true; 318 return tp->deleting; 319 } 320 321 static void tcf_proto_mark_delete(struct tcf_proto *tp) 322 { 323 spin_lock(&tp->lock); 324 tp->deleting = true; 325 spin_unlock(&tp->lock); 326 } 327 328 static bool tcf_proto_is_deleting(struct tcf_proto *tp) 329 { 330 bool deleting; 331 332 spin_lock(&tp->lock); 333 deleting = tp->deleting; 334 spin_unlock(&tp->lock); 335 336 return deleting; 337 } 338 339 #define ASSERT_BLOCK_LOCKED(block) \ 340 lockdep_assert_held(&(block)->lock) 341 342 struct tcf_filter_chain_list_item { 343 struct list_head list; 344 tcf_chain_head_change_t *chain_head_change; 345 void *chain_head_change_priv; 346 }; 347 348 static struct tcf_chain *tcf_chain_create(struct tcf_block *block, 349 u32 chain_index) 350 { 351 struct tcf_chain *chain; 352 353 ASSERT_BLOCK_LOCKED(block); 354 355 chain = kzalloc(sizeof(*chain), GFP_KERNEL); 356 if (!chain) 357 return NULL; 358 list_add_tail_rcu(&chain->list, &block->chain_list); 359 mutex_init(&chain->filter_chain_lock); 360 chain->block = block; 361 chain->index = chain_index; 362 chain->refcnt = 1; 363 if (!chain->index) 364 block->chain0.chain = chain; 365 return chain; 366 } 367 368 static void tcf_chain_head_change_item(struct tcf_filter_chain_list_item *item, 369 struct tcf_proto *tp_head) 370 { 371 if (item->chain_head_change) 372 item->chain_head_change(tp_head, item->chain_head_change_priv); 373 } 374 375 static void tcf_chain0_head_change(struct tcf_chain *chain, 376 struct tcf_proto *tp_head) 377 { 378 struct tcf_filter_chain_list_item *item; 379 struct tcf_block *block = chain->block; 380 381 if (chain->index) 382 return; 383 384 mutex_lock(&block->lock); 385 list_for_each_entry(item, &block->chain0.filter_chain_list, list) 386 tcf_chain_head_change_item(item, tp_head); 387 mutex_unlock(&block->lock); 388 } 389 390 /* Returns true if block can be safely freed. */ 391 392 static bool tcf_chain_detach(struct tcf_chain *chain) 393 { 394 struct tcf_block *block = chain->block; 395 396 ASSERT_BLOCK_LOCKED(block); 397 398 list_del_rcu(&chain->list); 399 if (!chain->index) 400 block->chain0.chain = NULL; 401 402 if (list_empty(&block->chain_list) && 403 refcount_read(&block->refcnt) == 0) 404 return true; 405 406 return false; 407 } 408 409 static void tcf_block_destroy(struct tcf_block *block) 410 { 411 mutex_destroy(&block->lock); 412 mutex_destroy(&block->proto_destroy_lock); 413 kfree_rcu(block, rcu); 414 } 415 416 static void tcf_chain_destroy(struct tcf_chain *chain, bool free_block) 417 { 418 struct tcf_block *block = chain->block; 419 420 mutex_destroy(&chain->filter_chain_lock); 421 kfree_rcu(chain, rcu); 422 if (free_block) 423 tcf_block_destroy(block); 424 } 425 426 static void tcf_chain_hold(struct tcf_chain *chain) 427 { 428 ASSERT_BLOCK_LOCKED(chain->block); 429 430 ++chain->refcnt; 431 } 432 433 static bool tcf_chain_held_by_acts_only(struct tcf_chain *chain) 434 { 435 ASSERT_BLOCK_LOCKED(chain->block); 436 437 /* In case all the references are action references, this 438 * chain should not be shown to the user. 439 */ 440 return chain->refcnt == chain->action_refcnt; 441 } 442 443 static struct tcf_chain *tcf_chain_lookup(struct tcf_block *block, 444 u32 chain_index) 445 { 446 struct tcf_chain *chain; 447 448 ASSERT_BLOCK_LOCKED(block); 449 450 list_for_each_entry(chain, &block->chain_list, list) { 451 if (chain->index == chain_index) 452 return chain; 453 } 454 return NULL; 455 } 456 457 #if IS_ENABLED(CONFIG_NET_TC_SKB_EXT) 458 static struct tcf_chain *tcf_chain_lookup_rcu(const struct tcf_block *block, 459 u32 chain_index) 460 { 461 struct tcf_chain *chain; 462 463 list_for_each_entry_rcu(chain, &block->chain_list, list) { 464 if (chain->index == chain_index) 465 return chain; 466 } 467 return NULL; 468 } 469 #endif 470 471 static int tc_chain_notify(struct tcf_chain *chain, struct sk_buff *oskb, 472 u32 seq, u16 flags, int event, bool unicast); 473 474 static struct tcf_chain *__tcf_chain_get(struct tcf_block *block, 475 u32 chain_index, bool create, 476 bool by_act) 477 { 478 struct tcf_chain *chain = NULL; 479 bool is_first_reference; 480 481 mutex_lock(&block->lock); 482 chain = tcf_chain_lookup(block, chain_index); 483 if (chain) { 484 tcf_chain_hold(chain); 485 } else { 486 if (!create) 487 goto errout; 488 chain = tcf_chain_create(block, chain_index); 489 if (!chain) 490 goto errout; 491 } 492 493 if (by_act) 494 ++chain->action_refcnt; 495 is_first_reference = chain->refcnt - chain->action_refcnt == 1; 496 mutex_unlock(&block->lock); 497 498 /* Send notification only in case we got the first 499 * non-action reference. Until then, the chain acts only as 500 * a placeholder for actions pointing to it and user ought 501 * not know about them. 502 */ 503 if (is_first_reference && !by_act) 504 tc_chain_notify(chain, NULL, 0, NLM_F_CREATE | NLM_F_EXCL, 505 RTM_NEWCHAIN, false); 506 507 return chain; 508 509 errout: 510 mutex_unlock(&block->lock); 511 return chain; 512 } 513 514 static struct tcf_chain *tcf_chain_get(struct tcf_block *block, u32 chain_index, 515 bool create) 516 { 517 return __tcf_chain_get(block, chain_index, create, false); 518 } 519 520 struct tcf_chain *tcf_chain_get_by_act(struct tcf_block *block, u32 chain_index) 521 { 522 return __tcf_chain_get(block, chain_index, true, true); 523 } 524 EXPORT_SYMBOL(tcf_chain_get_by_act); 525 526 static void tc_chain_tmplt_del(const struct tcf_proto_ops *tmplt_ops, 527 void *tmplt_priv); 528 static int tc_chain_notify_delete(const struct tcf_proto_ops *tmplt_ops, 529 void *tmplt_priv, u32 chain_index, 530 struct tcf_block *block, struct sk_buff *oskb, 531 u32 seq, u16 flags, bool unicast); 532 533 static void __tcf_chain_put(struct tcf_chain *chain, bool by_act, 534 bool explicitly_created) 535 { 536 struct tcf_block *block = chain->block; 537 const struct tcf_proto_ops *tmplt_ops; 538 bool free_block = false; 539 unsigned int refcnt; 540 void *tmplt_priv; 541 542 mutex_lock(&block->lock); 543 if (explicitly_created) { 544 if (!chain->explicitly_created) { 545 mutex_unlock(&block->lock); 546 return; 547 } 548 chain->explicitly_created = false; 549 } 550 551 if (by_act) 552 chain->action_refcnt--; 553 554 /* tc_chain_notify_delete can't be called while holding block lock. 555 * However, when block is unlocked chain can be changed concurrently, so 556 * save these to temporary variables. 557 */ 558 refcnt = --chain->refcnt; 559 tmplt_ops = chain->tmplt_ops; 560 tmplt_priv = chain->tmplt_priv; 561 562 /* The last dropped non-action reference will trigger notification. */ 563 if (refcnt - chain->action_refcnt == 0 && !by_act) { 564 tc_chain_notify_delete(tmplt_ops, tmplt_priv, chain->index, 565 block, NULL, 0, 0, false); 566 /* Last reference to chain, no need to lock. */ 567 chain->flushing = false; 568 } 569 570 if (refcnt == 0) 571 free_block = tcf_chain_detach(chain); 572 mutex_unlock(&block->lock); 573 574 if (refcnt == 0) { 575 tc_chain_tmplt_del(tmplt_ops, tmplt_priv); 576 tcf_chain_destroy(chain, free_block); 577 } 578 } 579 580 static void tcf_chain_put(struct tcf_chain *chain) 581 { 582 __tcf_chain_put(chain, false, false); 583 } 584 585 void tcf_chain_put_by_act(struct tcf_chain *chain) 586 { 587 __tcf_chain_put(chain, true, false); 588 } 589 EXPORT_SYMBOL(tcf_chain_put_by_act); 590 591 static void tcf_chain_put_explicitly_created(struct tcf_chain *chain) 592 { 593 __tcf_chain_put(chain, false, true); 594 } 595 596 static void tcf_chain_flush(struct tcf_chain *chain, bool rtnl_held) 597 { 598 struct tcf_proto *tp, *tp_next; 599 600 mutex_lock(&chain->filter_chain_lock); 601 tp = tcf_chain_dereference(chain->filter_chain, chain); 602 while (tp) { 603 tp_next = rcu_dereference_protected(tp->next, 1); 604 tcf_proto_signal_destroying(chain, tp); 605 tp = tp_next; 606 } 607 tp = tcf_chain_dereference(chain->filter_chain, chain); 608 RCU_INIT_POINTER(chain->filter_chain, NULL); 609 tcf_chain0_head_change(chain, NULL); 610 chain->flushing = true; 611 mutex_unlock(&chain->filter_chain_lock); 612 613 while (tp) { 614 tp_next = rcu_dereference_protected(tp->next, 1); 615 tcf_proto_put(tp, rtnl_held, NULL); 616 tp = tp_next; 617 } 618 } 619 620 static int tcf_block_setup(struct tcf_block *block, 621 struct flow_block_offload *bo); 622 623 static void tcf_block_offload_init(struct flow_block_offload *bo, 624 struct net_device *dev, struct Qdisc *sch, 625 enum flow_block_command command, 626 enum flow_block_binder_type binder_type, 627 struct flow_block *flow_block, 628 bool shared, struct netlink_ext_ack *extack) 629 { 630 bo->net = dev_net(dev); 631 bo->command = command; 632 bo->binder_type = binder_type; 633 bo->block = flow_block; 634 bo->block_shared = shared; 635 bo->extack = extack; 636 bo->sch = sch; 637 INIT_LIST_HEAD(&bo->cb_list); 638 } 639 640 static void tcf_block_unbind(struct tcf_block *block, 641 struct flow_block_offload *bo); 642 643 static void tc_block_indr_cleanup(struct flow_block_cb *block_cb) 644 { 645 struct tcf_block *block = block_cb->indr.data; 646 struct net_device *dev = block_cb->indr.dev; 647 struct Qdisc *sch = block_cb->indr.sch; 648 struct netlink_ext_ack extack = {}; 649 struct flow_block_offload bo = {}; 650 651 tcf_block_offload_init(&bo, dev, sch, FLOW_BLOCK_UNBIND, 652 block_cb->indr.binder_type, 653 &block->flow_block, tcf_block_shared(block), 654 &extack); 655 rtnl_lock(); 656 down_write(&block->cb_lock); 657 list_del(&block_cb->driver_list); 658 list_move(&block_cb->list, &bo.cb_list); 659 tcf_block_unbind(block, &bo); 660 up_write(&block->cb_lock); 661 rtnl_unlock(); 662 } 663 664 static bool tcf_block_offload_in_use(struct tcf_block *block) 665 { 666 return atomic_read(&block->offloadcnt); 667 } 668 669 static int tcf_block_offload_cmd(struct tcf_block *block, 670 struct net_device *dev, struct Qdisc *sch, 671 struct tcf_block_ext_info *ei, 672 enum flow_block_command command, 673 struct netlink_ext_ack *extack) 674 { 675 struct flow_block_offload bo = {}; 676 677 tcf_block_offload_init(&bo, dev, sch, command, ei->binder_type, 678 &block->flow_block, tcf_block_shared(block), 679 extack); 680 681 if (dev->netdev_ops->ndo_setup_tc) { 682 int err; 683 684 err = dev->netdev_ops->ndo_setup_tc(dev, TC_SETUP_BLOCK, &bo); 685 if (err < 0) { 686 if (err != -EOPNOTSUPP) 687 NL_SET_ERR_MSG(extack, "Driver ndo_setup_tc failed"); 688 return err; 689 } 690 691 return tcf_block_setup(block, &bo); 692 } 693 694 flow_indr_dev_setup_offload(dev, sch, TC_SETUP_BLOCK, block, &bo, 695 tc_block_indr_cleanup); 696 tcf_block_setup(block, &bo); 697 698 return -EOPNOTSUPP; 699 } 700 701 static int tcf_block_offload_bind(struct tcf_block *block, struct Qdisc *q, 702 struct tcf_block_ext_info *ei, 703 struct netlink_ext_ack *extack) 704 { 705 struct net_device *dev = q->dev_queue->dev; 706 int err; 707 708 down_write(&block->cb_lock); 709 710 /* If tc offload feature is disabled and the block we try to bind 711 * to already has some offloaded filters, forbid to bind. 712 */ 713 if (dev->netdev_ops->ndo_setup_tc && 714 !tc_can_offload(dev) && 715 tcf_block_offload_in_use(block)) { 716 NL_SET_ERR_MSG(extack, "Bind to offloaded block failed as dev has offload disabled"); 717 err = -EOPNOTSUPP; 718 goto err_unlock; 719 } 720 721 err = tcf_block_offload_cmd(block, dev, q, ei, FLOW_BLOCK_BIND, extack); 722 if (err == -EOPNOTSUPP) 723 goto no_offload_dev_inc; 724 if (err) 725 goto err_unlock; 726 727 up_write(&block->cb_lock); 728 return 0; 729 730 no_offload_dev_inc: 731 if (tcf_block_offload_in_use(block)) 732 goto err_unlock; 733 734 err = 0; 735 block->nooffloaddevcnt++; 736 err_unlock: 737 up_write(&block->cb_lock); 738 return err; 739 } 740 741 static void tcf_block_offload_unbind(struct tcf_block *block, struct Qdisc *q, 742 struct tcf_block_ext_info *ei) 743 { 744 struct net_device *dev = q->dev_queue->dev; 745 int err; 746 747 down_write(&block->cb_lock); 748 err = tcf_block_offload_cmd(block, dev, q, ei, FLOW_BLOCK_UNBIND, NULL); 749 if (err == -EOPNOTSUPP) 750 goto no_offload_dev_dec; 751 up_write(&block->cb_lock); 752 return; 753 754 no_offload_dev_dec: 755 WARN_ON(block->nooffloaddevcnt-- == 0); 756 up_write(&block->cb_lock); 757 } 758 759 static int 760 tcf_chain0_head_change_cb_add(struct tcf_block *block, 761 struct tcf_block_ext_info *ei, 762 struct netlink_ext_ack *extack) 763 { 764 struct tcf_filter_chain_list_item *item; 765 struct tcf_chain *chain0; 766 767 item = kmalloc(sizeof(*item), GFP_KERNEL); 768 if (!item) { 769 NL_SET_ERR_MSG(extack, "Memory allocation for head change callback item failed"); 770 return -ENOMEM; 771 } 772 item->chain_head_change = ei->chain_head_change; 773 item->chain_head_change_priv = ei->chain_head_change_priv; 774 775 mutex_lock(&block->lock); 776 chain0 = block->chain0.chain; 777 if (chain0) 778 tcf_chain_hold(chain0); 779 else 780 list_add(&item->list, &block->chain0.filter_chain_list); 781 mutex_unlock(&block->lock); 782 783 if (chain0) { 784 struct tcf_proto *tp_head; 785 786 mutex_lock(&chain0->filter_chain_lock); 787 788 tp_head = tcf_chain_dereference(chain0->filter_chain, chain0); 789 if (tp_head) 790 tcf_chain_head_change_item(item, tp_head); 791 792 mutex_lock(&block->lock); 793 list_add(&item->list, &block->chain0.filter_chain_list); 794 mutex_unlock(&block->lock); 795 796 mutex_unlock(&chain0->filter_chain_lock); 797 tcf_chain_put(chain0); 798 } 799 800 return 0; 801 } 802 803 static void 804 tcf_chain0_head_change_cb_del(struct tcf_block *block, 805 struct tcf_block_ext_info *ei) 806 { 807 struct tcf_filter_chain_list_item *item; 808 809 mutex_lock(&block->lock); 810 list_for_each_entry(item, &block->chain0.filter_chain_list, list) { 811 if ((!ei->chain_head_change && !ei->chain_head_change_priv) || 812 (item->chain_head_change == ei->chain_head_change && 813 item->chain_head_change_priv == ei->chain_head_change_priv)) { 814 if (block->chain0.chain) 815 tcf_chain_head_change_item(item, NULL); 816 list_del(&item->list); 817 mutex_unlock(&block->lock); 818 819 kfree(item); 820 return; 821 } 822 } 823 mutex_unlock(&block->lock); 824 WARN_ON(1); 825 } 826 827 struct tcf_net { 828 spinlock_t idr_lock; /* Protects idr */ 829 struct idr idr; 830 }; 831 832 static unsigned int tcf_net_id; 833 834 static int tcf_block_insert(struct tcf_block *block, struct net *net, 835 struct netlink_ext_ack *extack) 836 { 837 struct tcf_net *tn = net_generic(net, tcf_net_id); 838 int err; 839 840 idr_preload(GFP_KERNEL); 841 spin_lock(&tn->idr_lock); 842 err = idr_alloc_u32(&tn->idr, block, &block->index, block->index, 843 GFP_NOWAIT); 844 spin_unlock(&tn->idr_lock); 845 idr_preload_end(); 846 847 return err; 848 } 849 850 static void tcf_block_remove(struct tcf_block *block, struct net *net) 851 { 852 struct tcf_net *tn = net_generic(net, tcf_net_id); 853 854 spin_lock(&tn->idr_lock); 855 idr_remove(&tn->idr, block->index); 856 spin_unlock(&tn->idr_lock); 857 } 858 859 static struct tcf_block *tcf_block_create(struct net *net, struct Qdisc *q, 860 u32 block_index, 861 struct netlink_ext_ack *extack) 862 { 863 struct tcf_block *block; 864 865 block = kzalloc(sizeof(*block), GFP_KERNEL); 866 if (!block) { 867 NL_SET_ERR_MSG(extack, "Memory allocation for block failed"); 868 return ERR_PTR(-ENOMEM); 869 } 870 mutex_init(&block->lock); 871 mutex_init(&block->proto_destroy_lock); 872 init_rwsem(&block->cb_lock); 873 flow_block_init(&block->flow_block); 874 INIT_LIST_HEAD(&block->chain_list); 875 INIT_LIST_HEAD(&block->owner_list); 876 INIT_LIST_HEAD(&block->chain0.filter_chain_list); 877 878 refcount_set(&block->refcnt, 1); 879 block->net = net; 880 block->index = block_index; 881 882 /* Don't store q pointer for blocks which are shared */ 883 if (!tcf_block_shared(block)) 884 block->q = q; 885 return block; 886 } 887 888 static struct tcf_block *tcf_block_lookup(struct net *net, u32 block_index) 889 { 890 struct tcf_net *tn = net_generic(net, tcf_net_id); 891 892 return idr_find(&tn->idr, block_index); 893 } 894 895 static struct tcf_block *tcf_block_refcnt_get(struct net *net, u32 block_index) 896 { 897 struct tcf_block *block; 898 899 rcu_read_lock(); 900 block = tcf_block_lookup(net, block_index); 901 if (block && !refcount_inc_not_zero(&block->refcnt)) 902 block = NULL; 903 rcu_read_unlock(); 904 905 return block; 906 } 907 908 static struct tcf_chain * 909 __tcf_get_next_chain(struct tcf_block *block, struct tcf_chain *chain) 910 { 911 mutex_lock(&block->lock); 912 if (chain) 913 chain = list_is_last(&chain->list, &block->chain_list) ? 914 NULL : list_next_entry(chain, list); 915 else 916 chain = list_first_entry_or_null(&block->chain_list, 917 struct tcf_chain, list); 918 919 /* skip all action-only chains */ 920 while (chain && tcf_chain_held_by_acts_only(chain)) 921 chain = list_is_last(&chain->list, &block->chain_list) ? 922 NULL : list_next_entry(chain, list); 923 924 if (chain) 925 tcf_chain_hold(chain); 926 mutex_unlock(&block->lock); 927 928 return chain; 929 } 930 931 /* Function to be used by all clients that want to iterate over all chains on 932 * block. It properly obtains block->lock and takes reference to chain before 933 * returning it. Users of this function must be tolerant to concurrent chain 934 * insertion/deletion or ensure that no concurrent chain modification is 935 * possible. Note that all netlink dump callbacks cannot guarantee to provide 936 * consistent dump because rtnl lock is released each time skb is filled with 937 * data and sent to user-space. 938 */ 939 940 struct tcf_chain * 941 tcf_get_next_chain(struct tcf_block *block, struct tcf_chain *chain) 942 { 943 struct tcf_chain *chain_next = __tcf_get_next_chain(block, chain); 944 945 if (chain) 946 tcf_chain_put(chain); 947 948 return chain_next; 949 } 950 EXPORT_SYMBOL(tcf_get_next_chain); 951 952 static struct tcf_proto * 953 __tcf_get_next_proto(struct tcf_chain *chain, struct tcf_proto *tp) 954 { 955 u32 prio = 0; 956 957 ASSERT_RTNL(); 958 mutex_lock(&chain->filter_chain_lock); 959 960 if (!tp) { 961 tp = tcf_chain_dereference(chain->filter_chain, chain); 962 } else if (tcf_proto_is_deleting(tp)) { 963 /* 'deleting' flag is set and chain->filter_chain_lock was 964 * unlocked, which means next pointer could be invalid. Restart 965 * search. 966 */ 967 prio = tp->prio + 1; 968 tp = tcf_chain_dereference(chain->filter_chain, chain); 969 970 for (; tp; tp = tcf_chain_dereference(tp->next, chain)) 971 if (!tp->deleting && tp->prio >= prio) 972 break; 973 } else { 974 tp = tcf_chain_dereference(tp->next, chain); 975 } 976 977 if (tp) 978 tcf_proto_get(tp); 979 980 mutex_unlock(&chain->filter_chain_lock); 981 982 return tp; 983 } 984 985 /* Function to be used by all clients that want to iterate over all tp's on 986 * chain. Users of this function must be tolerant to concurrent tp 987 * insertion/deletion or ensure that no concurrent chain modification is 988 * possible. Note that all netlink dump callbacks cannot guarantee to provide 989 * consistent dump because rtnl lock is released each time skb is filled with 990 * data and sent to user-space. 991 */ 992 993 struct tcf_proto * 994 tcf_get_next_proto(struct tcf_chain *chain, struct tcf_proto *tp) 995 { 996 struct tcf_proto *tp_next = __tcf_get_next_proto(chain, tp); 997 998 if (tp) 999 tcf_proto_put(tp, true, NULL); 1000 1001 return tp_next; 1002 } 1003 EXPORT_SYMBOL(tcf_get_next_proto); 1004 1005 static void tcf_block_flush_all_chains(struct tcf_block *block, bool rtnl_held) 1006 { 1007 struct tcf_chain *chain; 1008 1009 /* Last reference to block. At this point chains cannot be added or 1010 * removed concurrently. 1011 */ 1012 for (chain = tcf_get_next_chain(block, NULL); 1013 chain; 1014 chain = tcf_get_next_chain(block, chain)) { 1015 tcf_chain_put_explicitly_created(chain); 1016 tcf_chain_flush(chain, rtnl_held); 1017 } 1018 } 1019 1020 /* Lookup Qdisc and increments its reference counter. 1021 * Set parent, if necessary. 1022 */ 1023 1024 static int __tcf_qdisc_find(struct net *net, struct Qdisc **q, 1025 u32 *parent, int ifindex, bool rtnl_held, 1026 struct netlink_ext_ack *extack) 1027 { 1028 const struct Qdisc_class_ops *cops; 1029 struct net_device *dev; 1030 int err = 0; 1031 1032 if (ifindex == TCM_IFINDEX_MAGIC_BLOCK) 1033 return 0; 1034 1035 rcu_read_lock(); 1036 1037 /* Find link */ 1038 dev = dev_get_by_index_rcu(net, ifindex); 1039 if (!dev) { 1040 rcu_read_unlock(); 1041 return -ENODEV; 1042 } 1043 1044 /* Find qdisc */ 1045 if (!*parent) { 1046 *q = dev->qdisc; 1047 *parent = (*q)->handle; 1048 } else { 1049 *q = qdisc_lookup_rcu(dev, TC_H_MAJ(*parent)); 1050 if (!*q) { 1051 NL_SET_ERR_MSG(extack, "Parent Qdisc doesn't exists"); 1052 err = -EINVAL; 1053 goto errout_rcu; 1054 } 1055 } 1056 1057 *q = qdisc_refcount_inc_nz(*q); 1058 if (!*q) { 1059 NL_SET_ERR_MSG(extack, "Parent Qdisc doesn't exists"); 1060 err = -EINVAL; 1061 goto errout_rcu; 1062 } 1063 1064 /* Is it classful? */ 1065 cops = (*q)->ops->cl_ops; 1066 if (!cops) { 1067 NL_SET_ERR_MSG(extack, "Qdisc not classful"); 1068 err = -EINVAL; 1069 goto errout_qdisc; 1070 } 1071 1072 if (!cops->tcf_block) { 1073 NL_SET_ERR_MSG(extack, "Class doesn't support blocks"); 1074 err = -EOPNOTSUPP; 1075 goto errout_qdisc; 1076 } 1077 1078 errout_rcu: 1079 /* At this point we know that qdisc is not noop_qdisc, 1080 * which means that qdisc holds a reference to net_device 1081 * and we hold a reference to qdisc, so it is safe to release 1082 * rcu read lock. 1083 */ 1084 rcu_read_unlock(); 1085 return err; 1086 1087 errout_qdisc: 1088 rcu_read_unlock(); 1089 1090 if (rtnl_held) 1091 qdisc_put(*q); 1092 else 1093 qdisc_put_unlocked(*q); 1094 *q = NULL; 1095 1096 return err; 1097 } 1098 1099 static int __tcf_qdisc_cl_find(struct Qdisc *q, u32 parent, unsigned long *cl, 1100 int ifindex, struct netlink_ext_ack *extack) 1101 { 1102 if (ifindex == TCM_IFINDEX_MAGIC_BLOCK) 1103 return 0; 1104 1105 /* Do we search for filter, attached to class? */ 1106 if (TC_H_MIN(parent)) { 1107 const struct Qdisc_class_ops *cops = q->ops->cl_ops; 1108 1109 *cl = cops->find(q, parent); 1110 if (*cl == 0) { 1111 NL_SET_ERR_MSG(extack, "Specified class doesn't exist"); 1112 return -ENOENT; 1113 } 1114 } 1115 1116 return 0; 1117 } 1118 1119 static struct tcf_block *__tcf_block_find(struct net *net, struct Qdisc *q, 1120 unsigned long cl, int ifindex, 1121 u32 block_index, 1122 struct netlink_ext_ack *extack) 1123 { 1124 struct tcf_block *block; 1125 1126 if (ifindex == TCM_IFINDEX_MAGIC_BLOCK) { 1127 block = tcf_block_refcnt_get(net, block_index); 1128 if (!block) { 1129 NL_SET_ERR_MSG(extack, "Block of given index was not found"); 1130 return ERR_PTR(-EINVAL); 1131 } 1132 } else { 1133 const struct Qdisc_class_ops *cops = q->ops->cl_ops; 1134 1135 block = cops->tcf_block(q, cl, extack); 1136 if (!block) 1137 return ERR_PTR(-EINVAL); 1138 1139 if (tcf_block_shared(block)) { 1140 NL_SET_ERR_MSG(extack, "This filter block is shared. Please use the block index to manipulate the filters"); 1141 return ERR_PTR(-EOPNOTSUPP); 1142 } 1143 1144 /* Always take reference to block in order to support execution 1145 * of rules update path of cls API without rtnl lock. Caller 1146 * must release block when it is finished using it. 'if' block 1147 * of this conditional obtain reference to block by calling 1148 * tcf_block_refcnt_get(). 1149 */ 1150 refcount_inc(&block->refcnt); 1151 } 1152 1153 return block; 1154 } 1155 1156 static void __tcf_block_put(struct tcf_block *block, struct Qdisc *q, 1157 struct tcf_block_ext_info *ei, bool rtnl_held) 1158 { 1159 if (refcount_dec_and_mutex_lock(&block->refcnt, &block->lock)) { 1160 /* Flushing/putting all chains will cause the block to be 1161 * deallocated when last chain is freed. However, if chain_list 1162 * is empty, block has to be manually deallocated. After block 1163 * reference counter reached 0, it is no longer possible to 1164 * increment it or add new chains to block. 1165 */ 1166 bool free_block = list_empty(&block->chain_list); 1167 1168 mutex_unlock(&block->lock); 1169 if (tcf_block_shared(block)) 1170 tcf_block_remove(block, block->net); 1171 1172 if (q) 1173 tcf_block_offload_unbind(block, q, ei); 1174 1175 if (free_block) 1176 tcf_block_destroy(block); 1177 else 1178 tcf_block_flush_all_chains(block, rtnl_held); 1179 } else if (q) { 1180 tcf_block_offload_unbind(block, q, ei); 1181 } 1182 } 1183 1184 static void tcf_block_refcnt_put(struct tcf_block *block, bool rtnl_held) 1185 { 1186 __tcf_block_put(block, NULL, NULL, rtnl_held); 1187 } 1188 1189 /* Find tcf block. 1190 * Set q, parent, cl when appropriate. 1191 */ 1192 1193 static struct tcf_block *tcf_block_find(struct net *net, struct Qdisc **q, 1194 u32 *parent, unsigned long *cl, 1195 int ifindex, u32 block_index, 1196 struct netlink_ext_ack *extack) 1197 { 1198 struct tcf_block *block; 1199 int err = 0; 1200 1201 ASSERT_RTNL(); 1202 1203 err = __tcf_qdisc_find(net, q, parent, ifindex, true, extack); 1204 if (err) 1205 goto errout; 1206 1207 err = __tcf_qdisc_cl_find(*q, *parent, cl, ifindex, extack); 1208 if (err) 1209 goto errout_qdisc; 1210 1211 block = __tcf_block_find(net, *q, *cl, ifindex, block_index, extack); 1212 if (IS_ERR(block)) { 1213 err = PTR_ERR(block); 1214 goto errout_qdisc; 1215 } 1216 1217 return block; 1218 1219 errout_qdisc: 1220 if (*q) 1221 qdisc_put(*q); 1222 errout: 1223 *q = NULL; 1224 return ERR_PTR(err); 1225 } 1226 1227 static void tcf_block_release(struct Qdisc *q, struct tcf_block *block, 1228 bool rtnl_held) 1229 { 1230 if (!IS_ERR_OR_NULL(block)) 1231 tcf_block_refcnt_put(block, rtnl_held); 1232 1233 if (q) { 1234 if (rtnl_held) 1235 qdisc_put(q); 1236 else 1237 qdisc_put_unlocked(q); 1238 } 1239 } 1240 1241 struct tcf_block_owner_item { 1242 struct list_head list; 1243 struct Qdisc *q; 1244 enum flow_block_binder_type binder_type; 1245 }; 1246 1247 static void 1248 tcf_block_owner_netif_keep_dst(struct tcf_block *block, 1249 struct Qdisc *q, 1250 enum flow_block_binder_type binder_type) 1251 { 1252 if (block->keep_dst && 1253 binder_type != FLOW_BLOCK_BINDER_TYPE_CLSACT_INGRESS && 1254 binder_type != FLOW_BLOCK_BINDER_TYPE_CLSACT_EGRESS) 1255 netif_keep_dst(qdisc_dev(q)); 1256 } 1257 1258 void tcf_block_netif_keep_dst(struct tcf_block *block) 1259 { 1260 struct tcf_block_owner_item *item; 1261 1262 block->keep_dst = true; 1263 list_for_each_entry(item, &block->owner_list, list) 1264 tcf_block_owner_netif_keep_dst(block, item->q, 1265 item->binder_type); 1266 } 1267 EXPORT_SYMBOL(tcf_block_netif_keep_dst); 1268 1269 static int tcf_block_owner_add(struct tcf_block *block, 1270 struct Qdisc *q, 1271 enum flow_block_binder_type binder_type) 1272 { 1273 struct tcf_block_owner_item *item; 1274 1275 item = kmalloc(sizeof(*item), GFP_KERNEL); 1276 if (!item) 1277 return -ENOMEM; 1278 item->q = q; 1279 item->binder_type = binder_type; 1280 list_add(&item->list, &block->owner_list); 1281 return 0; 1282 } 1283 1284 static void tcf_block_owner_del(struct tcf_block *block, 1285 struct Qdisc *q, 1286 enum flow_block_binder_type binder_type) 1287 { 1288 struct tcf_block_owner_item *item; 1289 1290 list_for_each_entry(item, &block->owner_list, list) { 1291 if (item->q == q && item->binder_type == binder_type) { 1292 list_del(&item->list); 1293 kfree(item); 1294 return; 1295 } 1296 } 1297 WARN_ON(1); 1298 } 1299 1300 int tcf_block_get_ext(struct tcf_block **p_block, struct Qdisc *q, 1301 struct tcf_block_ext_info *ei, 1302 struct netlink_ext_ack *extack) 1303 { 1304 struct net *net = qdisc_net(q); 1305 struct tcf_block *block = NULL; 1306 int err; 1307 1308 if (ei->block_index) 1309 /* block_index not 0 means the shared block is requested */ 1310 block = tcf_block_refcnt_get(net, ei->block_index); 1311 1312 if (!block) { 1313 block = tcf_block_create(net, q, ei->block_index, extack); 1314 if (IS_ERR(block)) 1315 return PTR_ERR(block); 1316 if (tcf_block_shared(block)) { 1317 err = tcf_block_insert(block, net, extack); 1318 if (err) 1319 goto err_block_insert; 1320 } 1321 } 1322 1323 err = tcf_block_owner_add(block, q, ei->binder_type); 1324 if (err) 1325 goto err_block_owner_add; 1326 1327 tcf_block_owner_netif_keep_dst(block, q, ei->binder_type); 1328 1329 err = tcf_chain0_head_change_cb_add(block, ei, extack); 1330 if (err) 1331 goto err_chain0_head_change_cb_add; 1332 1333 err = tcf_block_offload_bind(block, q, ei, extack); 1334 if (err) 1335 goto err_block_offload_bind; 1336 1337 *p_block = block; 1338 return 0; 1339 1340 err_block_offload_bind: 1341 tcf_chain0_head_change_cb_del(block, ei); 1342 err_chain0_head_change_cb_add: 1343 tcf_block_owner_del(block, q, ei->binder_type); 1344 err_block_owner_add: 1345 err_block_insert: 1346 tcf_block_refcnt_put(block, true); 1347 return err; 1348 } 1349 EXPORT_SYMBOL(tcf_block_get_ext); 1350 1351 static void tcf_chain_head_change_dflt(struct tcf_proto *tp_head, void *priv) 1352 { 1353 struct tcf_proto __rcu **p_filter_chain = priv; 1354 1355 rcu_assign_pointer(*p_filter_chain, tp_head); 1356 } 1357 1358 int tcf_block_get(struct tcf_block **p_block, 1359 struct tcf_proto __rcu **p_filter_chain, struct Qdisc *q, 1360 struct netlink_ext_ack *extack) 1361 { 1362 struct tcf_block_ext_info ei = { 1363 .chain_head_change = tcf_chain_head_change_dflt, 1364 .chain_head_change_priv = p_filter_chain, 1365 }; 1366 1367 WARN_ON(!p_filter_chain); 1368 return tcf_block_get_ext(p_block, q, &ei, extack); 1369 } 1370 EXPORT_SYMBOL(tcf_block_get); 1371 1372 /* XXX: Standalone actions are not allowed to jump to any chain, and bound 1373 * actions should be all removed after flushing. 1374 */ 1375 void tcf_block_put_ext(struct tcf_block *block, struct Qdisc *q, 1376 struct tcf_block_ext_info *ei) 1377 { 1378 if (!block) 1379 return; 1380 tcf_chain0_head_change_cb_del(block, ei); 1381 tcf_block_owner_del(block, q, ei->binder_type); 1382 1383 __tcf_block_put(block, q, ei, true); 1384 } 1385 EXPORT_SYMBOL(tcf_block_put_ext); 1386 1387 void tcf_block_put(struct tcf_block *block) 1388 { 1389 struct tcf_block_ext_info ei = {0, }; 1390 1391 if (!block) 1392 return; 1393 tcf_block_put_ext(block, block->q, &ei); 1394 } 1395 1396 EXPORT_SYMBOL(tcf_block_put); 1397 1398 static int 1399 tcf_block_playback_offloads(struct tcf_block *block, flow_setup_cb_t *cb, 1400 void *cb_priv, bool add, bool offload_in_use, 1401 struct netlink_ext_ack *extack) 1402 { 1403 struct tcf_chain *chain, *chain_prev; 1404 struct tcf_proto *tp, *tp_prev; 1405 int err; 1406 1407 lockdep_assert_held(&block->cb_lock); 1408 1409 for (chain = __tcf_get_next_chain(block, NULL); 1410 chain; 1411 chain_prev = chain, 1412 chain = __tcf_get_next_chain(block, chain), 1413 tcf_chain_put(chain_prev)) { 1414 for (tp = __tcf_get_next_proto(chain, NULL); tp; 1415 tp_prev = tp, 1416 tp = __tcf_get_next_proto(chain, tp), 1417 tcf_proto_put(tp_prev, true, NULL)) { 1418 if (tp->ops->reoffload) { 1419 err = tp->ops->reoffload(tp, add, cb, cb_priv, 1420 extack); 1421 if (err && add) 1422 goto err_playback_remove; 1423 } else if (add && offload_in_use) { 1424 err = -EOPNOTSUPP; 1425 NL_SET_ERR_MSG(extack, "Filter HW offload failed - classifier without re-offloading support"); 1426 goto err_playback_remove; 1427 } 1428 } 1429 } 1430 1431 return 0; 1432 1433 err_playback_remove: 1434 tcf_proto_put(tp, true, NULL); 1435 tcf_chain_put(chain); 1436 tcf_block_playback_offloads(block, cb, cb_priv, false, offload_in_use, 1437 extack); 1438 return err; 1439 } 1440 1441 static int tcf_block_bind(struct tcf_block *block, 1442 struct flow_block_offload *bo) 1443 { 1444 struct flow_block_cb *block_cb, *next; 1445 int err, i = 0; 1446 1447 lockdep_assert_held(&block->cb_lock); 1448 1449 list_for_each_entry(block_cb, &bo->cb_list, list) { 1450 err = tcf_block_playback_offloads(block, block_cb->cb, 1451 block_cb->cb_priv, true, 1452 tcf_block_offload_in_use(block), 1453 bo->extack); 1454 if (err) 1455 goto err_unroll; 1456 if (!bo->unlocked_driver_cb) 1457 block->lockeddevcnt++; 1458 1459 i++; 1460 } 1461 list_splice(&bo->cb_list, &block->flow_block.cb_list); 1462 1463 return 0; 1464 1465 err_unroll: 1466 list_for_each_entry_safe(block_cb, next, &bo->cb_list, list) { 1467 if (i-- > 0) { 1468 list_del(&block_cb->list); 1469 tcf_block_playback_offloads(block, block_cb->cb, 1470 block_cb->cb_priv, false, 1471 tcf_block_offload_in_use(block), 1472 NULL); 1473 if (!bo->unlocked_driver_cb) 1474 block->lockeddevcnt--; 1475 } 1476 flow_block_cb_free(block_cb); 1477 } 1478 1479 return err; 1480 } 1481 1482 static void tcf_block_unbind(struct tcf_block *block, 1483 struct flow_block_offload *bo) 1484 { 1485 struct flow_block_cb *block_cb, *next; 1486 1487 lockdep_assert_held(&block->cb_lock); 1488 1489 list_for_each_entry_safe(block_cb, next, &bo->cb_list, list) { 1490 tcf_block_playback_offloads(block, block_cb->cb, 1491 block_cb->cb_priv, false, 1492 tcf_block_offload_in_use(block), 1493 NULL); 1494 list_del(&block_cb->list); 1495 flow_block_cb_free(block_cb); 1496 if (!bo->unlocked_driver_cb) 1497 block->lockeddevcnt--; 1498 } 1499 } 1500 1501 static int tcf_block_setup(struct tcf_block *block, 1502 struct flow_block_offload *bo) 1503 { 1504 int err; 1505 1506 switch (bo->command) { 1507 case FLOW_BLOCK_BIND: 1508 err = tcf_block_bind(block, bo); 1509 break; 1510 case FLOW_BLOCK_UNBIND: 1511 err = 0; 1512 tcf_block_unbind(block, bo); 1513 break; 1514 default: 1515 WARN_ON_ONCE(1); 1516 err = -EOPNOTSUPP; 1517 } 1518 1519 return err; 1520 } 1521 1522 /* Main classifier routine: scans classifier chain attached 1523 * to this qdisc, (optionally) tests for protocol and asks 1524 * specific classifiers. 1525 */ 1526 static inline int __tcf_classify(struct sk_buff *skb, 1527 const struct tcf_proto *tp, 1528 const struct tcf_proto *orig_tp, 1529 struct tcf_result *res, 1530 bool compat_mode, 1531 u32 *last_executed_chain) 1532 { 1533 #ifdef CONFIG_NET_CLS_ACT 1534 const int max_reclassify_loop = 16; 1535 const struct tcf_proto *first_tp; 1536 int limit = 0; 1537 1538 reclassify: 1539 #endif 1540 for (; tp; tp = rcu_dereference_bh(tp->next)) { 1541 __be16 protocol = skb_protocol(skb, false); 1542 int err; 1543 1544 if (tp->protocol != protocol && 1545 tp->protocol != htons(ETH_P_ALL)) 1546 continue; 1547 1548 err = tp->classify(skb, tp, res); 1549 #ifdef CONFIG_NET_CLS_ACT 1550 if (unlikely(err == TC_ACT_RECLASSIFY && !compat_mode)) { 1551 first_tp = orig_tp; 1552 *last_executed_chain = first_tp->chain->index; 1553 goto reset; 1554 } else if (unlikely(TC_ACT_EXT_CMP(err, TC_ACT_GOTO_CHAIN))) { 1555 first_tp = res->goto_tp; 1556 *last_executed_chain = err & TC_ACT_EXT_VAL_MASK; 1557 goto reset; 1558 } 1559 #endif 1560 if (err >= 0) 1561 return err; 1562 } 1563 1564 return TC_ACT_UNSPEC; /* signal: continue lookup */ 1565 #ifdef CONFIG_NET_CLS_ACT 1566 reset: 1567 if (unlikely(limit++ >= max_reclassify_loop)) { 1568 net_notice_ratelimited("%u: reclassify loop, rule prio %u, protocol %02x\n", 1569 tp->chain->block->index, 1570 tp->prio & 0xffff, 1571 ntohs(tp->protocol)); 1572 return TC_ACT_SHOT; 1573 } 1574 1575 tp = first_tp; 1576 goto reclassify; 1577 #endif 1578 } 1579 1580 int tcf_classify(struct sk_buff *skb, const struct tcf_proto *tp, 1581 struct tcf_result *res, bool compat_mode) 1582 { 1583 u32 last_executed_chain = 0; 1584 1585 return __tcf_classify(skb, tp, tp, res, compat_mode, 1586 &last_executed_chain); 1587 } 1588 EXPORT_SYMBOL(tcf_classify); 1589 1590 int tcf_classify_ingress(struct sk_buff *skb, 1591 const struct tcf_block *ingress_block, 1592 const struct tcf_proto *tp, 1593 struct tcf_result *res, bool compat_mode) 1594 { 1595 #if !IS_ENABLED(CONFIG_NET_TC_SKB_EXT) 1596 u32 last_executed_chain = 0; 1597 1598 return __tcf_classify(skb, tp, tp, res, compat_mode, 1599 &last_executed_chain); 1600 #else 1601 u32 last_executed_chain = tp ? tp->chain->index : 0; 1602 const struct tcf_proto *orig_tp = tp; 1603 struct tc_skb_ext *ext; 1604 int ret; 1605 1606 ext = skb_ext_find(skb, TC_SKB_EXT); 1607 1608 if (ext && ext->chain) { 1609 struct tcf_chain *fchain; 1610 1611 fchain = tcf_chain_lookup_rcu(ingress_block, ext->chain); 1612 if (!fchain) 1613 return TC_ACT_SHOT; 1614 1615 /* Consume, so cloned/redirect skbs won't inherit ext */ 1616 skb_ext_del(skb, TC_SKB_EXT); 1617 1618 tp = rcu_dereference_bh(fchain->filter_chain); 1619 last_executed_chain = fchain->index; 1620 } 1621 1622 ret = __tcf_classify(skb, tp, orig_tp, res, compat_mode, 1623 &last_executed_chain); 1624 1625 /* If we missed on some chain */ 1626 if (ret == TC_ACT_UNSPEC && last_executed_chain) { 1627 ext = tc_skb_ext_alloc(skb); 1628 if (WARN_ON_ONCE(!ext)) 1629 return TC_ACT_SHOT; 1630 ext->chain = last_executed_chain; 1631 ext->mru = qdisc_skb_cb(skb)->mru; 1632 ext->post_ct = qdisc_skb_cb(skb)->post_ct; 1633 } 1634 1635 return ret; 1636 #endif 1637 } 1638 EXPORT_SYMBOL(tcf_classify_ingress); 1639 1640 struct tcf_chain_info { 1641 struct tcf_proto __rcu **pprev; 1642 struct tcf_proto __rcu *next; 1643 }; 1644 1645 static struct tcf_proto *tcf_chain_tp_prev(struct tcf_chain *chain, 1646 struct tcf_chain_info *chain_info) 1647 { 1648 return tcf_chain_dereference(*chain_info->pprev, chain); 1649 } 1650 1651 static int tcf_chain_tp_insert(struct tcf_chain *chain, 1652 struct tcf_chain_info *chain_info, 1653 struct tcf_proto *tp) 1654 { 1655 if (chain->flushing) 1656 return -EAGAIN; 1657 1658 if (*chain_info->pprev == chain->filter_chain) 1659 tcf_chain0_head_change(chain, tp); 1660 tcf_proto_get(tp); 1661 RCU_INIT_POINTER(tp->next, tcf_chain_tp_prev(chain, chain_info)); 1662 rcu_assign_pointer(*chain_info->pprev, tp); 1663 1664 return 0; 1665 } 1666 1667 static void tcf_chain_tp_remove(struct tcf_chain *chain, 1668 struct tcf_chain_info *chain_info, 1669 struct tcf_proto *tp) 1670 { 1671 struct tcf_proto *next = tcf_chain_dereference(chain_info->next, chain); 1672 1673 tcf_proto_mark_delete(tp); 1674 if (tp == chain->filter_chain) 1675 tcf_chain0_head_change(chain, next); 1676 RCU_INIT_POINTER(*chain_info->pprev, next); 1677 } 1678 1679 static struct tcf_proto *tcf_chain_tp_find(struct tcf_chain *chain, 1680 struct tcf_chain_info *chain_info, 1681 u32 protocol, u32 prio, 1682 bool prio_allocate); 1683 1684 /* Try to insert new proto. 1685 * If proto with specified priority already exists, free new proto 1686 * and return existing one. 1687 */ 1688 1689 static struct tcf_proto *tcf_chain_tp_insert_unique(struct tcf_chain *chain, 1690 struct tcf_proto *tp_new, 1691 u32 protocol, u32 prio, 1692 bool rtnl_held) 1693 { 1694 struct tcf_chain_info chain_info; 1695 struct tcf_proto *tp; 1696 int err = 0; 1697 1698 mutex_lock(&chain->filter_chain_lock); 1699 1700 if (tcf_proto_exists_destroying(chain, tp_new)) { 1701 mutex_unlock(&chain->filter_chain_lock); 1702 tcf_proto_destroy(tp_new, rtnl_held, false, NULL); 1703 return ERR_PTR(-EAGAIN); 1704 } 1705 1706 tp = tcf_chain_tp_find(chain, &chain_info, 1707 protocol, prio, false); 1708 if (!tp) 1709 err = tcf_chain_tp_insert(chain, &chain_info, tp_new); 1710 mutex_unlock(&chain->filter_chain_lock); 1711 1712 if (tp) { 1713 tcf_proto_destroy(tp_new, rtnl_held, false, NULL); 1714 tp_new = tp; 1715 } else if (err) { 1716 tcf_proto_destroy(tp_new, rtnl_held, false, NULL); 1717 tp_new = ERR_PTR(err); 1718 } 1719 1720 return tp_new; 1721 } 1722 1723 static void tcf_chain_tp_delete_empty(struct tcf_chain *chain, 1724 struct tcf_proto *tp, bool rtnl_held, 1725 struct netlink_ext_ack *extack) 1726 { 1727 struct tcf_chain_info chain_info; 1728 struct tcf_proto *tp_iter; 1729 struct tcf_proto **pprev; 1730 struct tcf_proto *next; 1731 1732 mutex_lock(&chain->filter_chain_lock); 1733 1734 /* Atomically find and remove tp from chain. */ 1735 for (pprev = &chain->filter_chain; 1736 (tp_iter = tcf_chain_dereference(*pprev, chain)); 1737 pprev = &tp_iter->next) { 1738 if (tp_iter == tp) { 1739 chain_info.pprev = pprev; 1740 chain_info.next = tp_iter->next; 1741 WARN_ON(tp_iter->deleting); 1742 break; 1743 } 1744 } 1745 /* Verify that tp still exists and no new filters were inserted 1746 * concurrently. 1747 * Mark tp for deletion if it is empty. 1748 */ 1749 if (!tp_iter || !tcf_proto_check_delete(tp)) { 1750 mutex_unlock(&chain->filter_chain_lock); 1751 return; 1752 } 1753 1754 tcf_proto_signal_destroying(chain, tp); 1755 next = tcf_chain_dereference(chain_info.next, chain); 1756 if (tp == chain->filter_chain) 1757 tcf_chain0_head_change(chain, next); 1758 RCU_INIT_POINTER(*chain_info.pprev, next); 1759 mutex_unlock(&chain->filter_chain_lock); 1760 1761 tcf_proto_put(tp, rtnl_held, extack); 1762 } 1763 1764 static struct tcf_proto *tcf_chain_tp_find(struct tcf_chain *chain, 1765 struct tcf_chain_info *chain_info, 1766 u32 protocol, u32 prio, 1767 bool prio_allocate) 1768 { 1769 struct tcf_proto **pprev; 1770 struct tcf_proto *tp; 1771 1772 /* Check the chain for existence of proto-tcf with this priority */ 1773 for (pprev = &chain->filter_chain; 1774 (tp = tcf_chain_dereference(*pprev, chain)); 1775 pprev = &tp->next) { 1776 if (tp->prio >= prio) { 1777 if (tp->prio == prio) { 1778 if (prio_allocate || 1779 (tp->protocol != protocol && protocol)) 1780 return ERR_PTR(-EINVAL); 1781 } else { 1782 tp = NULL; 1783 } 1784 break; 1785 } 1786 } 1787 chain_info->pprev = pprev; 1788 if (tp) { 1789 chain_info->next = tp->next; 1790 tcf_proto_get(tp); 1791 } else { 1792 chain_info->next = NULL; 1793 } 1794 return tp; 1795 } 1796 1797 static int tcf_fill_node(struct net *net, struct sk_buff *skb, 1798 struct tcf_proto *tp, struct tcf_block *block, 1799 struct Qdisc *q, u32 parent, void *fh, 1800 u32 portid, u32 seq, u16 flags, int event, 1801 bool terse_dump, bool rtnl_held) 1802 { 1803 struct tcmsg *tcm; 1804 struct nlmsghdr *nlh; 1805 unsigned char *b = skb_tail_pointer(skb); 1806 1807 nlh = nlmsg_put(skb, portid, seq, event, sizeof(*tcm), flags); 1808 if (!nlh) 1809 goto out_nlmsg_trim; 1810 tcm = nlmsg_data(nlh); 1811 tcm->tcm_family = AF_UNSPEC; 1812 tcm->tcm__pad1 = 0; 1813 tcm->tcm__pad2 = 0; 1814 if (q) { 1815 tcm->tcm_ifindex = qdisc_dev(q)->ifindex; 1816 tcm->tcm_parent = parent; 1817 } else { 1818 tcm->tcm_ifindex = TCM_IFINDEX_MAGIC_BLOCK; 1819 tcm->tcm_block_index = block->index; 1820 } 1821 tcm->tcm_info = TC_H_MAKE(tp->prio, tp->protocol); 1822 if (nla_put_string(skb, TCA_KIND, tp->ops->kind)) 1823 goto nla_put_failure; 1824 if (nla_put_u32(skb, TCA_CHAIN, tp->chain->index)) 1825 goto nla_put_failure; 1826 if (!fh) { 1827 tcm->tcm_handle = 0; 1828 } else if (terse_dump) { 1829 if (tp->ops->terse_dump) { 1830 if (tp->ops->terse_dump(net, tp, fh, skb, tcm, 1831 rtnl_held) < 0) 1832 goto nla_put_failure; 1833 } else { 1834 goto cls_op_not_supp; 1835 } 1836 } else { 1837 if (tp->ops->dump && 1838 tp->ops->dump(net, tp, fh, skb, tcm, rtnl_held) < 0) 1839 goto nla_put_failure; 1840 } 1841 nlh->nlmsg_len = skb_tail_pointer(skb) - b; 1842 return skb->len; 1843 1844 out_nlmsg_trim: 1845 nla_put_failure: 1846 cls_op_not_supp: 1847 nlmsg_trim(skb, b); 1848 return -1; 1849 } 1850 1851 static int tfilter_notify(struct net *net, struct sk_buff *oskb, 1852 struct nlmsghdr *n, struct tcf_proto *tp, 1853 struct tcf_block *block, struct Qdisc *q, 1854 u32 parent, void *fh, int event, bool unicast, 1855 bool rtnl_held) 1856 { 1857 struct sk_buff *skb; 1858 u32 portid = oskb ? NETLINK_CB(oskb).portid : 0; 1859 int err = 0; 1860 1861 skb = alloc_skb(NLMSG_GOODSIZE, GFP_KERNEL); 1862 if (!skb) 1863 return -ENOBUFS; 1864 1865 if (tcf_fill_node(net, skb, tp, block, q, parent, fh, portid, 1866 n->nlmsg_seq, n->nlmsg_flags, event, 1867 false, rtnl_held) <= 0) { 1868 kfree_skb(skb); 1869 return -EINVAL; 1870 } 1871 1872 if (unicast) 1873 err = rtnl_unicast(skb, net, portid); 1874 else 1875 err = rtnetlink_send(skb, net, portid, RTNLGRP_TC, 1876 n->nlmsg_flags & NLM_F_ECHO); 1877 return err; 1878 } 1879 1880 static int tfilter_del_notify(struct net *net, struct sk_buff *oskb, 1881 struct nlmsghdr *n, struct tcf_proto *tp, 1882 struct tcf_block *block, struct Qdisc *q, 1883 u32 parent, void *fh, bool unicast, bool *last, 1884 bool rtnl_held, struct netlink_ext_ack *extack) 1885 { 1886 struct sk_buff *skb; 1887 u32 portid = oskb ? NETLINK_CB(oskb).portid : 0; 1888 int err; 1889 1890 skb = alloc_skb(NLMSG_GOODSIZE, GFP_KERNEL); 1891 if (!skb) 1892 return -ENOBUFS; 1893 1894 if (tcf_fill_node(net, skb, tp, block, q, parent, fh, portid, 1895 n->nlmsg_seq, n->nlmsg_flags, RTM_DELTFILTER, 1896 false, rtnl_held) <= 0) { 1897 NL_SET_ERR_MSG(extack, "Failed to build del event notification"); 1898 kfree_skb(skb); 1899 return -EINVAL; 1900 } 1901 1902 err = tp->ops->delete(tp, fh, last, rtnl_held, extack); 1903 if (err) { 1904 kfree_skb(skb); 1905 return err; 1906 } 1907 1908 if (unicast) 1909 err = rtnl_unicast(skb, net, portid); 1910 else 1911 err = rtnetlink_send(skb, net, portid, RTNLGRP_TC, 1912 n->nlmsg_flags & NLM_F_ECHO); 1913 if (err < 0) 1914 NL_SET_ERR_MSG(extack, "Failed to send filter delete notification"); 1915 1916 return err; 1917 } 1918 1919 static void tfilter_notify_chain(struct net *net, struct sk_buff *oskb, 1920 struct tcf_block *block, struct Qdisc *q, 1921 u32 parent, struct nlmsghdr *n, 1922 struct tcf_chain *chain, int event) 1923 { 1924 struct tcf_proto *tp; 1925 1926 for (tp = tcf_get_next_proto(chain, NULL); 1927 tp; tp = tcf_get_next_proto(chain, tp)) 1928 tfilter_notify(net, oskb, n, tp, block, 1929 q, parent, NULL, event, false, true); 1930 } 1931 1932 static void tfilter_put(struct tcf_proto *tp, void *fh) 1933 { 1934 if (tp->ops->put && fh) 1935 tp->ops->put(tp, fh); 1936 } 1937 1938 static int tc_new_tfilter(struct sk_buff *skb, struct nlmsghdr *n, 1939 struct netlink_ext_ack *extack) 1940 { 1941 struct net *net = sock_net(skb->sk); 1942 struct nlattr *tca[TCA_MAX + 1]; 1943 char name[IFNAMSIZ]; 1944 struct tcmsg *t; 1945 u32 protocol; 1946 u32 prio; 1947 bool prio_allocate; 1948 u32 parent; 1949 u32 chain_index; 1950 struct Qdisc *q = NULL; 1951 struct tcf_chain_info chain_info; 1952 struct tcf_chain *chain = NULL; 1953 struct tcf_block *block; 1954 struct tcf_proto *tp; 1955 unsigned long cl; 1956 void *fh; 1957 int err; 1958 int tp_created; 1959 bool rtnl_held = false; 1960 1961 if (!netlink_ns_capable(skb, net->user_ns, CAP_NET_ADMIN)) 1962 return -EPERM; 1963 1964 replay: 1965 tp_created = 0; 1966 1967 err = nlmsg_parse_deprecated(n, sizeof(*t), tca, TCA_MAX, 1968 rtm_tca_policy, extack); 1969 if (err < 0) 1970 return err; 1971 1972 t = nlmsg_data(n); 1973 protocol = TC_H_MIN(t->tcm_info); 1974 prio = TC_H_MAJ(t->tcm_info); 1975 prio_allocate = false; 1976 parent = t->tcm_parent; 1977 tp = NULL; 1978 cl = 0; 1979 block = NULL; 1980 1981 if (prio == 0) { 1982 /* If no priority is provided by the user, 1983 * we allocate one. 1984 */ 1985 if (n->nlmsg_flags & NLM_F_CREATE) { 1986 prio = TC_H_MAKE(0x80000000U, 0U); 1987 prio_allocate = true; 1988 } else { 1989 NL_SET_ERR_MSG(extack, "Invalid filter command with priority of zero"); 1990 return -ENOENT; 1991 } 1992 } 1993 1994 /* Find head of filter chain. */ 1995 1996 err = __tcf_qdisc_find(net, &q, &parent, t->tcm_ifindex, false, extack); 1997 if (err) 1998 return err; 1999 2000 if (tcf_proto_check_kind(tca[TCA_KIND], name)) { 2001 NL_SET_ERR_MSG(extack, "Specified TC filter name too long"); 2002 err = -EINVAL; 2003 goto errout; 2004 } 2005 2006 /* Take rtnl mutex if rtnl_held was set to true on previous iteration, 2007 * block is shared (no qdisc found), qdisc is not unlocked, classifier 2008 * type is not specified, classifier is not unlocked. 2009 */ 2010 if (rtnl_held || 2011 (q && !(q->ops->cl_ops->flags & QDISC_CLASS_OPS_DOIT_UNLOCKED)) || 2012 !tcf_proto_is_unlocked(name)) { 2013 rtnl_held = true; 2014 rtnl_lock(); 2015 } 2016 2017 err = __tcf_qdisc_cl_find(q, parent, &cl, t->tcm_ifindex, extack); 2018 if (err) 2019 goto errout; 2020 2021 block = __tcf_block_find(net, q, cl, t->tcm_ifindex, t->tcm_block_index, 2022 extack); 2023 if (IS_ERR(block)) { 2024 err = PTR_ERR(block); 2025 goto errout; 2026 } 2027 block->classid = parent; 2028 2029 chain_index = tca[TCA_CHAIN] ? nla_get_u32(tca[TCA_CHAIN]) : 0; 2030 if (chain_index > TC_ACT_EXT_VAL_MASK) { 2031 NL_SET_ERR_MSG(extack, "Specified chain index exceeds upper limit"); 2032 err = -EINVAL; 2033 goto errout; 2034 } 2035 chain = tcf_chain_get(block, chain_index, true); 2036 if (!chain) { 2037 NL_SET_ERR_MSG(extack, "Cannot create specified filter chain"); 2038 err = -ENOMEM; 2039 goto errout; 2040 } 2041 2042 mutex_lock(&chain->filter_chain_lock); 2043 tp = tcf_chain_tp_find(chain, &chain_info, protocol, 2044 prio, prio_allocate); 2045 if (IS_ERR(tp)) { 2046 NL_SET_ERR_MSG(extack, "Filter with specified priority/protocol not found"); 2047 err = PTR_ERR(tp); 2048 goto errout_locked; 2049 } 2050 2051 if (tp == NULL) { 2052 struct tcf_proto *tp_new = NULL; 2053 2054 if (chain->flushing) { 2055 err = -EAGAIN; 2056 goto errout_locked; 2057 } 2058 2059 /* Proto-tcf does not exist, create new one */ 2060 2061 if (tca[TCA_KIND] == NULL || !protocol) { 2062 NL_SET_ERR_MSG(extack, "Filter kind and protocol must be specified"); 2063 err = -EINVAL; 2064 goto errout_locked; 2065 } 2066 2067 if (!(n->nlmsg_flags & NLM_F_CREATE)) { 2068 NL_SET_ERR_MSG(extack, "Need both RTM_NEWTFILTER and NLM_F_CREATE to create a new filter"); 2069 err = -ENOENT; 2070 goto errout_locked; 2071 } 2072 2073 if (prio_allocate) 2074 prio = tcf_auto_prio(tcf_chain_tp_prev(chain, 2075 &chain_info)); 2076 2077 mutex_unlock(&chain->filter_chain_lock); 2078 tp_new = tcf_proto_create(name, protocol, prio, chain, 2079 rtnl_held, extack); 2080 if (IS_ERR(tp_new)) { 2081 err = PTR_ERR(tp_new); 2082 goto errout_tp; 2083 } 2084 2085 tp_created = 1; 2086 tp = tcf_chain_tp_insert_unique(chain, tp_new, protocol, prio, 2087 rtnl_held); 2088 if (IS_ERR(tp)) { 2089 err = PTR_ERR(tp); 2090 goto errout_tp; 2091 } 2092 } else { 2093 mutex_unlock(&chain->filter_chain_lock); 2094 } 2095 2096 if (tca[TCA_KIND] && nla_strcmp(tca[TCA_KIND], tp->ops->kind)) { 2097 NL_SET_ERR_MSG(extack, "Specified filter kind does not match existing one"); 2098 err = -EINVAL; 2099 goto errout; 2100 } 2101 2102 fh = tp->ops->get(tp, t->tcm_handle); 2103 2104 if (!fh) { 2105 if (!(n->nlmsg_flags & NLM_F_CREATE)) { 2106 NL_SET_ERR_MSG(extack, "Need both RTM_NEWTFILTER and NLM_F_CREATE to create a new filter"); 2107 err = -ENOENT; 2108 goto errout; 2109 } 2110 } else if (n->nlmsg_flags & NLM_F_EXCL) { 2111 tfilter_put(tp, fh); 2112 NL_SET_ERR_MSG(extack, "Filter already exists"); 2113 err = -EEXIST; 2114 goto errout; 2115 } 2116 2117 if (chain->tmplt_ops && chain->tmplt_ops != tp->ops) { 2118 NL_SET_ERR_MSG(extack, "Chain template is set to a different filter kind"); 2119 err = -EINVAL; 2120 goto errout; 2121 } 2122 2123 err = tp->ops->change(net, skb, tp, cl, t->tcm_handle, tca, &fh, 2124 n->nlmsg_flags & NLM_F_CREATE ? TCA_ACT_NOREPLACE : TCA_ACT_REPLACE, 2125 rtnl_held, extack); 2126 if (err == 0) { 2127 tfilter_notify(net, skb, n, tp, block, q, parent, fh, 2128 RTM_NEWTFILTER, false, rtnl_held); 2129 tfilter_put(tp, fh); 2130 /* q pointer is NULL for shared blocks */ 2131 if (q) 2132 q->flags &= ~TCQ_F_CAN_BYPASS; 2133 } 2134 2135 errout: 2136 if (err && tp_created) 2137 tcf_chain_tp_delete_empty(chain, tp, rtnl_held, NULL); 2138 errout_tp: 2139 if (chain) { 2140 if (tp && !IS_ERR(tp)) 2141 tcf_proto_put(tp, rtnl_held, NULL); 2142 if (!tp_created) 2143 tcf_chain_put(chain); 2144 } 2145 tcf_block_release(q, block, rtnl_held); 2146 2147 if (rtnl_held) 2148 rtnl_unlock(); 2149 2150 if (err == -EAGAIN) { 2151 /* Take rtnl lock in case EAGAIN is caused by concurrent flush 2152 * of target chain. 2153 */ 2154 rtnl_held = true; 2155 /* Replay the request. */ 2156 goto replay; 2157 } 2158 return err; 2159 2160 errout_locked: 2161 mutex_unlock(&chain->filter_chain_lock); 2162 goto errout; 2163 } 2164 2165 static int tc_del_tfilter(struct sk_buff *skb, struct nlmsghdr *n, 2166 struct netlink_ext_ack *extack) 2167 { 2168 struct net *net = sock_net(skb->sk); 2169 struct nlattr *tca[TCA_MAX + 1]; 2170 char name[IFNAMSIZ]; 2171 struct tcmsg *t; 2172 u32 protocol; 2173 u32 prio; 2174 u32 parent; 2175 u32 chain_index; 2176 struct Qdisc *q = NULL; 2177 struct tcf_chain_info chain_info; 2178 struct tcf_chain *chain = NULL; 2179 struct tcf_block *block = NULL; 2180 struct tcf_proto *tp = NULL; 2181 unsigned long cl = 0; 2182 void *fh = NULL; 2183 int err; 2184 bool rtnl_held = false; 2185 2186 if (!netlink_ns_capable(skb, net->user_ns, CAP_NET_ADMIN)) 2187 return -EPERM; 2188 2189 err = nlmsg_parse_deprecated(n, sizeof(*t), tca, TCA_MAX, 2190 rtm_tca_policy, extack); 2191 if (err < 0) 2192 return err; 2193 2194 t = nlmsg_data(n); 2195 protocol = TC_H_MIN(t->tcm_info); 2196 prio = TC_H_MAJ(t->tcm_info); 2197 parent = t->tcm_parent; 2198 2199 if (prio == 0 && (protocol || t->tcm_handle || tca[TCA_KIND])) { 2200 NL_SET_ERR_MSG(extack, "Cannot flush filters with protocol, handle or kind set"); 2201 return -ENOENT; 2202 } 2203 2204 /* Find head of filter chain. */ 2205 2206 err = __tcf_qdisc_find(net, &q, &parent, t->tcm_ifindex, false, extack); 2207 if (err) 2208 return err; 2209 2210 if (tcf_proto_check_kind(tca[TCA_KIND], name)) { 2211 NL_SET_ERR_MSG(extack, "Specified TC filter name too long"); 2212 err = -EINVAL; 2213 goto errout; 2214 } 2215 /* Take rtnl mutex if flushing whole chain, block is shared (no qdisc 2216 * found), qdisc is not unlocked, classifier type is not specified, 2217 * classifier is not unlocked. 2218 */ 2219 if (!prio || 2220 (q && !(q->ops->cl_ops->flags & QDISC_CLASS_OPS_DOIT_UNLOCKED)) || 2221 !tcf_proto_is_unlocked(name)) { 2222 rtnl_held = true; 2223 rtnl_lock(); 2224 } 2225 2226 err = __tcf_qdisc_cl_find(q, parent, &cl, t->tcm_ifindex, extack); 2227 if (err) 2228 goto errout; 2229 2230 block = __tcf_block_find(net, q, cl, t->tcm_ifindex, t->tcm_block_index, 2231 extack); 2232 if (IS_ERR(block)) { 2233 err = PTR_ERR(block); 2234 goto errout; 2235 } 2236 2237 chain_index = tca[TCA_CHAIN] ? nla_get_u32(tca[TCA_CHAIN]) : 0; 2238 if (chain_index > TC_ACT_EXT_VAL_MASK) { 2239 NL_SET_ERR_MSG(extack, "Specified chain index exceeds upper limit"); 2240 err = -EINVAL; 2241 goto errout; 2242 } 2243 chain = tcf_chain_get(block, chain_index, false); 2244 if (!chain) { 2245 /* User requested flush on non-existent chain. Nothing to do, 2246 * so just return success. 2247 */ 2248 if (prio == 0) { 2249 err = 0; 2250 goto errout; 2251 } 2252 NL_SET_ERR_MSG(extack, "Cannot find specified filter chain"); 2253 err = -ENOENT; 2254 goto errout; 2255 } 2256 2257 if (prio == 0) { 2258 tfilter_notify_chain(net, skb, block, q, parent, n, 2259 chain, RTM_DELTFILTER); 2260 tcf_chain_flush(chain, rtnl_held); 2261 err = 0; 2262 goto errout; 2263 } 2264 2265 mutex_lock(&chain->filter_chain_lock); 2266 tp = tcf_chain_tp_find(chain, &chain_info, protocol, 2267 prio, false); 2268 if (!tp || IS_ERR(tp)) { 2269 NL_SET_ERR_MSG(extack, "Filter with specified priority/protocol not found"); 2270 err = tp ? PTR_ERR(tp) : -ENOENT; 2271 goto errout_locked; 2272 } else if (tca[TCA_KIND] && nla_strcmp(tca[TCA_KIND], tp->ops->kind)) { 2273 NL_SET_ERR_MSG(extack, "Specified filter kind does not match existing one"); 2274 err = -EINVAL; 2275 goto errout_locked; 2276 } else if (t->tcm_handle == 0) { 2277 tcf_proto_signal_destroying(chain, tp); 2278 tcf_chain_tp_remove(chain, &chain_info, tp); 2279 mutex_unlock(&chain->filter_chain_lock); 2280 2281 tcf_proto_put(tp, rtnl_held, NULL); 2282 tfilter_notify(net, skb, n, tp, block, q, parent, fh, 2283 RTM_DELTFILTER, false, rtnl_held); 2284 err = 0; 2285 goto errout; 2286 } 2287 mutex_unlock(&chain->filter_chain_lock); 2288 2289 fh = tp->ops->get(tp, t->tcm_handle); 2290 2291 if (!fh) { 2292 NL_SET_ERR_MSG(extack, "Specified filter handle not found"); 2293 err = -ENOENT; 2294 } else { 2295 bool last; 2296 2297 err = tfilter_del_notify(net, skb, n, tp, block, 2298 q, parent, fh, false, &last, 2299 rtnl_held, extack); 2300 2301 if (err) 2302 goto errout; 2303 if (last) 2304 tcf_chain_tp_delete_empty(chain, tp, rtnl_held, extack); 2305 } 2306 2307 errout: 2308 if (chain) { 2309 if (tp && !IS_ERR(tp)) 2310 tcf_proto_put(tp, rtnl_held, NULL); 2311 tcf_chain_put(chain); 2312 } 2313 tcf_block_release(q, block, rtnl_held); 2314 2315 if (rtnl_held) 2316 rtnl_unlock(); 2317 2318 return err; 2319 2320 errout_locked: 2321 mutex_unlock(&chain->filter_chain_lock); 2322 goto errout; 2323 } 2324 2325 static int tc_get_tfilter(struct sk_buff *skb, struct nlmsghdr *n, 2326 struct netlink_ext_ack *extack) 2327 { 2328 struct net *net = sock_net(skb->sk); 2329 struct nlattr *tca[TCA_MAX + 1]; 2330 char name[IFNAMSIZ]; 2331 struct tcmsg *t; 2332 u32 protocol; 2333 u32 prio; 2334 u32 parent; 2335 u32 chain_index; 2336 struct Qdisc *q = NULL; 2337 struct tcf_chain_info chain_info; 2338 struct tcf_chain *chain = NULL; 2339 struct tcf_block *block = NULL; 2340 struct tcf_proto *tp = NULL; 2341 unsigned long cl = 0; 2342 void *fh = NULL; 2343 int err; 2344 bool rtnl_held = false; 2345 2346 err = nlmsg_parse_deprecated(n, sizeof(*t), tca, TCA_MAX, 2347 rtm_tca_policy, extack); 2348 if (err < 0) 2349 return err; 2350 2351 t = nlmsg_data(n); 2352 protocol = TC_H_MIN(t->tcm_info); 2353 prio = TC_H_MAJ(t->tcm_info); 2354 parent = t->tcm_parent; 2355 2356 if (prio == 0) { 2357 NL_SET_ERR_MSG(extack, "Invalid filter command with priority of zero"); 2358 return -ENOENT; 2359 } 2360 2361 /* Find head of filter chain. */ 2362 2363 err = __tcf_qdisc_find(net, &q, &parent, t->tcm_ifindex, false, extack); 2364 if (err) 2365 return err; 2366 2367 if (tcf_proto_check_kind(tca[TCA_KIND], name)) { 2368 NL_SET_ERR_MSG(extack, "Specified TC filter name too long"); 2369 err = -EINVAL; 2370 goto errout; 2371 } 2372 /* Take rtnl mutex if block is shared (no qdisc found), qdisc is not 2373 * unlocked, classifier type is not specified, classifier is not 2374 * unlocked. 2375 */ 2376 if ((q && !(q->ops->cl_ops->flags & QDISC_CLASS_OPS_DOIT_UNLOCKED)) || 2377 !tcf_proto_is_unlocked(name)) { 2378 rtnl_held = true; 2379 rtnl_lock(); 2380 } 2381 2382 err = __tcf_qdisc_cl_find(q, parent, &cl, t->tcm_ifindex, extack); 2383 if (err) 2384 goto errout; 2385 2386 block = __tcf_block_find(net, q, cl, t->tcm_ifindex, t->tcm_block_index, 2387 extack); 2388 if (IS_ERR(block)) { 2389 err = PTR_ERR(block); 2390 goto errout; 2391 } 2392 2393 chain_index = tca[TCA_CHAIN] ? nla_get_u32(tca[TCA_CHAIN]) : 0; 2394 if (chain_index > TC_ACT_EXT_VAL_MASK) { 2395 NL_SET_ERR_MSG(extack, "Specified chain index exceeds upper limit"); 2396 err = -EINVAL; 2397 goto errout; 2398 } 2399 chain = tcf_chain_get(block, chain_index, false); 2400 if (!chain) { 2401 NL_SET_ERR_MSG(extack, "Cannot find specified filter chain"); 2402 err = -EINVAL; 2403 goto errout; 2404 } 2405 2406 mutex_lock(&chain->filter_chain_lock); 2407 tp = tcf_chain_tp_find(chain, &chain_info, protocol, 2408 prio, false); 2409 mutex_unlock(&chain->filter_chain_lock); 2410 if (!tp || IS_ERR(tp)) { 2411 NL_SET_ERR_MSG(extack, "Filter with specified priority/protocol not found"); 2412 err = tp ? PTR_ERR(tp) : -ENOENT; 2413 goto errout; 2414 } else if (tca[TCA_KIND] && nla_strcmp(tca[TCA_KIND], tp->ops->kind)) { 2415 NL_SET_ERR_MSG(extack, "Specified filter kind does not match existing one"); 2416 err = -EINVAL; 2417 goto errout; 2418 } 2419 2420 fh = tp->ops->get(tp, t->tcm_handle); 2421 2422 if (!fh) { 2423 NL_SET_ERR_MSG(extack, "Specified filter handle not found"); 2424 err = -ENOENT; 2425 } else { 2426 err = tfilter_notify(net, skb, n, tp, block, q, parent, 2427 fh, RTM_NEWTFILTER, true, rtnl_held); 2428 if (err < 0) 2429 NL_SET_ERR_MSG(extack, "Failed to send filter notify message"); 2430 } 2431 2432 tfilter_put(tp, fh); 2433 errout: 2434 if (chain) { 2435 if (tp && !IS_ERR(tp)) 2436 tcf_proto_put(tp, rtnl_held, NULL); 2437 tcf_chain_put(chain); 2438 } 2439 tcf_block_release(q, block, rtnl_held); 2440 2441 if (rtnl_held) 2442 rtnl_unlock(); 2443 2444 return err; 2445 } 2446 2447 struct tcf_dump_args { 2448 struct tcf_walker w; 2449 struct sk_buff *skb; 2450 struct netlink_callback *cb; 2451 struct tcf_block *block; 2452 struct Qdisc *q; 2453 u32 parent; 2454 bool terse_dump; 2455 }; 2456 2457 static int tcf_node_dump(struct tcf_proto *tp, void *n, struct tcf_walker *arg) 2458 { 2459 struct tcf_dump_args *a = (void *)arg; 2460 struct net *net = sock_net(a->skb->sk); 2461 2462 return tcf_fill_node(net, a->skb, tp, a->block, a->q, a->parent, 2463 n, NETLINK_CB(a->cb->skb).portid, 2464 a->cb->nlh->nlmsg_seq, NLM_F_MULTI, 2465 RTM_NEWTFILTER, a->terse_dump, true); 2466 } 2467 2468 static bool tcf_chain_dump(struct tcf_chain *chain, struct Qdisc *q, u32 parent, 2469 struct sk_buff *skb, struct netlink_callback *cb, 2470 long index_start, long *p_index, bool terse) 2471 { 2472 struct net *net = sock_net(skb->sk); 2473 struct tcf_block *block = chain->block; 2474 struct tcmsg *tcm = nlmsg_data(cb->nlh); 2475 struct tcf_proto *tp, *tp_prev; 2476 struct tcf_dump_args arg; 2477 2478 for (tp = __tcf_get_next_proto(chain, NULL); 2479 tp; 2480 tp_prev = tp, 2481 tp = __tcf_get_next_proto(chain, tp), 2482 tcf_proto_put(tp_prev, true, NULL), 2483 (*p_index)++) { 2484 if (*p_index < index_start) 2485 continue; 2486 if (TC_H_MAJ(tcm->tcm_info) && 2487 TC_H_MAJ(tcm->tcm_info) != tp->prio) 2488 continue; 2489 if (TC_H_MIN(tcm->tcm_info) && 2490 TC_H_MIN(tcm->tcm_info) != tp->protocol) 2491 continue; 2492 if (*p_index > index_start) 2493 memset(&cb->args[1], 0, 2494 sizeof(cb->args) - sizeof(cb->args[0])); 2495 if (cb->args[1] == 0) { 2496 if (tcf_fill_node(net, skb, tp, block, q, parent, NULL, 2497 NETLINK_CB(cb->skb).portid, 2498 cb->nlh->nlmsg_seq, NLM_F_MULTI, 2499 RTM_NEWTFILTER, false, true) <= 0) 2500 goto errout; 2501 cb->args[1] = 1; 2502 } 2503 if (!tp->ops->walk) 2504 continue; 2505 arg.w.fn = tcf_node_dump; 2506 arg.skb = skb; 2507 arg.cb = cb; 2508 arg.block = block; 2509 arg.q = q; 2510 arg.parent = parent; 2511 arg.w.stop = 0; 2512 arg.w.skip = cb->args[1] - 1; 2513 arg.w.count = 0; 2514 arg.w.cookie = cb->args[2]; 2515 arg.terse_dump = terse; 2516 tp->ops->walk(tp, &arg.w, true); 2517 cb->args[2] = arg.w.cookie; 2518 cb->args[1] = arg.w.count + 1; 2519 if (arg.w.stop) 2520 goto errout; 2521 } 2522 return true; 2523 2524 errout: 2525 tcf_proto_put(tp, true, NULL); 2526 return false; 2527 } 2528 2529 static const struct nla_policy tcf_tfilter_dump_policy[TCA_MAX + 1] = { 2530 [TCA_DUMP_FLAGS] = NLA_POLICY_BITFIELD32(TCA_DUMP_FLAGS_TERSE), 2531 }; 2532 2533 /* called with RTNL */ 2534 static int tc_dump_tfilter(struct sk_buff *skb, struct netlink_callback *cb) 2535 { 2536 struct tcf_chain *chain, *chain_prev; 2537 struct net *net = sock_net(skb->sk); 2538 struct nlattr *tca[TCA_MAX + 1]; 2539 struct Qdisc *q = NULL; 2540 struct tcf_block *block; 2541 struct tcmsg *tcm = nlmsg_data(cb->nlh); 2542 bool terse_dump = false; 2543 long index_start; 2544 long index; 2545 u32 parent; 2546 int err; 2547 2548 if (nlmsg_len(cb->nlh) < sizeof(*tcm)) 2549 return skb->len; 2550 2551 err = nlmsg_parse_deprecated(cb->nlh, sizeof(*tcm), tca, TCA_MAX, 2552 tcf_tfilter_dump_policy, cb->extack); 2553 if (err) 2554 return err; 2555 2556 if (tca[TCA_DUMP_FLAGS]) { 2557 struct nla_bitfield32 flags = 2558 nla_get_bitfield32(tca[TCA_DUMP_FLAGS]); 2559 2560 terse_dump = flags.value & TCA_DUMP_FLAGS_TERSE; 2561 } 2562 2563 if (tcm->tcm_ifindex == TCM_IFINDEX_MAGIC_BLOCK) { 2564 block = tcf_block_refcnt_get(net, tcm->tcm_block_index); 2565 if (!block) 2566 goto out; 2567 /* If we work with block index, q is NULL and parent value 2568 * will never be used in the following code. The check 2569 * in tcf_fill_node prevents it. However, compiler does not 2570 * see that far, so set parent to zero to silence the warning 2571 * about parent being uninitialized. 2572 */ 2573 parent = 0; 2574 } else { 2575 const struct Qdisc_class_ops *cops; 2576 struct net_device *dev; 2577 unsigned long cl = 0; 2578 2579 dev = __dev_get_by_index(net, tcm->tcm_ifindex); 2580 if (!dev) 2581 return skb->len; 2582 2583 parent = tcm->tcm_parent; 2584 if (!parent) 2585 q = dev->qdisc; 2586 else 2587 q = qdisc_lookup(dev, TC_H_MAJ(tcm->tcm_parent)); 2588 if (!q) 2589 goto out; 2590 cops = q->ops->cl_ops; 2591 if (!cops) 2592 goto out; 2593 if (!cops->tcf_block) 2594 goto out; 2595 if (TC_H_MIN(tcm->tcm_parent)) { 2596 cl = cops->find(q, tcm->tcm_parent); 2597 if (cl == 0) 2598 goto out; 2599 } 2600 block = cops->tcf_block(q, cl, NULL); 2601 if (!block) 2602 goto out; 2603 parent = block->classid; 2604 if (tcf_block_shared(block)) 2605 q = NULL; 2606 } 2607 2608 index_start = cb->args[0]; 2609 index = 0; 2610 2611 for (chain = __tcf_get_next_chain(block, NULL); 2612 chain; 2613 chain_prev = chain, 2614 chain = __tcf_get_next_chain(block, chain), 2615 tcf_chain_put(chain_prev)) { 2616 if (tca[TCA_CHAIN] && 2617 nla_get_u32(tca[TCA_CHAIN]) != chain->index) 2618 continue; 2619 if (!tcf_chain_dump(chain, q, parent, skb, cb, 2620 index_start, &index, terse_dump)) { 2621 tcf_chain_put(chain); 2622 err = -EMSGSIZE; 2623 break; 2624 } 2625 } 2626 2627 if (tcm->tcm_ifindex == TCM_IFINDEX_MAGIC_BLOCK) 2628 tcf_block_refcnt_put(block, true); 2629 cb->args[0] = index; 2630 2631 out: 2632 /* If we did no progress, the error (EMSGSIZE) is real */ 2633 if (skb->len == 0 && err) 2634 return err; 2635 return skb->len; 2636 } 2637 2638 static int tc_chain_fill_node(const struct tcf_proto_ops *tmplt_ops, 2639 void *tmplt_priv, u32 chain_index, 2640 struct net *net, struct sk_buff *skb, 2641 struct tcf_block *block, 2642 u32 portid, u32 seq, u16 flags, int event) 2643 { 2644 unsigned char *b = skb_tail_pointer(skb); 2645 const struct tcf_proto_ops *ops; 2646 struct nlmsghdr *nlh; 2647 struct tcmsg *tcm; 2648 void *priv; 2649 2650 ops = tmplt_ops; 2651 priv = tmplt_priv; 2652 2653 nlh = nlmsg_put(skb, portid, seq, event, sizeof(*tcm), flags); 2654 if (!nlh) 2655 goto out_nlmsg_trim; 2656 tcm = nlmsg_data(nlh); 2657 tcm->tcm_family = AF_UNSPEC; 2658 tcm->tcm__pad1 = 0; 2659 tcm->tcm__pad2 = 0; 2660 tcm->tcm_handle = 0; 2661 if (block->q) { 2662 tcm->tcm_ifindex = qdisc_dev(block->q)->ifindex; 2663 tcm->tcm_parent = block->q->handle; 2664 } else { 2665 tcm->tcm_ifindex = TCM_IFINDEX_MAGIC_BLOCK; 2666 tcm->tcm_block_index = block->index; 2667 } 2668 2669 if (nla_put_u32(skb, TCA_CHAIN, chain_index)) 2670 goto nla_put_failure; 2671 2672 if (ops) { 2673 if (nla_put_string(skb, TCA_KIND, ops->kind)) 2674 goto nla_put_failure; 2675 if (ops->tmplt_dump(skb, net, priv) < 0) 2676 goto nla_put_failure; 2677 } 2678 2679 nlh->nlmsg_len = skb_tail_pointer(skb) - b; 2680 return skb->len; 2681 2682 out_nlmsg_trim: 2683 nla_put_failure: 2684 nlmsg_trim(skb, b); 2685 return -EMSGSIZE; 2686 } 2687 2688 static int tc_chain_notify(struct tcf_chain *chain, struct sk_buff *oskb, 2689 u32 seq, u16 flags, int event, bool unicast) 2690 { 2691 u32 portid = oskb ? NETLINK_CB(oskb).portid : 0; 2692 struct tcf_block *block = chain->block; 2693 struct net *net = block->net; 2694 struct sk_buff *skb; 2695 int err = 0; 2696 2697 skb = alloc_skb(NLMSG_GOODSIZE, GFP_KERNEL); 2698 if (!skb) 2699 return -ENOBUFS; 2700 2701 if (tc_chain_fill_node(chain->tmplt_ops, chain->tmplt_priv, 2702 chain->index, net, skb, block, portid, 2703 seq, flags, event) <= 0) { 2704 kfree_skb(skb); 2705 return -EINVAL; 2706 } 2707 2708 if (unicast) 2709 err = rtnl_unicast(skb, net, portid); 2710 else 2711 err = rtnetlink_send(skb, net, portid, RTNLGRP_TC, 2712 flags & NLM_F_ECHO); 2713 2714 return err; 2715 } 2716 2717 static int tc_chain_notify_delete(const struct tcf_proto_ops *tmplt_ops, 2718 void *tmplt_priv, u32 chain_index, 2719 struct tcf_block *block, struct sk_buff *oskb, 2720 u32 seq, u16 flags, bool unicast) 2721 { 2722 u32 portid = oskb ? NETLINK_CB(oskb).portid : 0; 2723 struct net *net = block->net; 2724 struct sk_buff *skb; 2725 2726 skb = alloc_skb(NLMSG_GOODSIZE, GFP_KERNEL); 2727 if (!skb) 2728 return -ENOBUFS; 2729 2730 if (tc_chain_fill_node(tmplt_ops, tmplt_priv, chain_index, net, skb, 2731 block, portid, seq, flags, RTM_DELCHAIN) <= 0) { 2732 kfree_skb(skb); 2733 return -EINVAL; 2734 } 2735 2736 if (unicast) 2737 return rtnl_unicast(skb, net, portid); 2738 2739 return rtnetlink_send(skb, net, portid, RTNLGRP_TC, flags & NLM_F_ECHO); 2740 } 2741 2742 static int tc_chain_tmplt_add(struct tcf_chain *chain, struct net *net, 2743 struct nlattr **tca, 2744 struct netlink_ext_ack *extack) 2745 { 2746 const struct tcf_proto_ops *ops; 2747 char name[IFNAMSIZ]; 2748 void *tmplt_priv; 2749 2750 /* If kind is not set, user did not specify template. */ 2751 if (!tca[TCA_KIND]) 2752 return 0; 2753 2754 if (tcf_proto_check_kind(tca[TCA_KIND], name)) { 2755 NL_SET_ERR_MSG(extack, "Specified TC chain template name too long"); 2756 return -EINVAL; 2757 } 2758 2759 ops = tcf_proto_lookup_ops(name, true, extack); 2760 if (IS_ERR(ops)) 2761 return PTR_ERR(ops); 2762 if (!ops->tmplt_create || !ops->tmplt_destroy || !ops->tmplt_dump) { 2763 NL_SET_ERR_MSG(extack, "Chain templates are not supported with specified classifier"); 2764 return -EOPNOTSUPP; 2765 } 2766 2767 tmplt_priv = ops->tmplt_create(net, chain, tca, extack); 2768 if (IS_ERR(tmplt_priv)) { 2769 module_put(ops->owner); 2770 return PTR_ERR(tmplt_priv); 2771 } 2772 chain->tmplt_ops = ops; 2773 chain->tmplt_priv = tmplt_priv; 2774 return 0; 2775 } 2776 2777 static void tc_chain_tmplt_del(const struct tcf_proto_ops *tmplt_ops, 2778 void *tmplt_priv) 2779 { 2780 /* If template ops are set, no work to do for us. */ 2781 if (!tmplt_ops) 2782 return; 2783 2784 tmplt_ops->tmplt_destroy(tmplt_priv); 2785 module_put(tmplt_ops->owner); 2786 } 2787 2788 /* Add/delete/get a chain */ 2789 2790 static int tc_ctl_chain(struct sk_buff *skb, struct nlmsghdr *n, 2791 struct netlink_ext_ack *extack) 2792 { 2793 struct net *net = sock_net(skb->sk); 2794 struct nlattr *tca[TCA_MAX + 1]; 2795 struct tcmsg *t; 2796 u32 parent; 2797 u32 chain_index; 2798 struct Qdisc *q = NULL; 2799 struct tcf_chain *chain = NULL; 2800 struct tcf_block *block; 2801 unsigned long cl; 2802 int err; 2803 2804 if (n->nlmsg_type != RTM_GETCHAIN && 2805 !netlink_ns_capable(skb, net->user_ns, CAP_NET_ADMIN)) 2806 return -EPERM; 2807 2808 replay: 2809 err = nlmsg_parse_deprecated(n, sizeof(*t), tca, TCA_MAX, 2810 rtm_tca_policy, extack); 2811 if (err < 0) 2812 return err; 2813 2814 t = nlmsg_data(n); 2815 parent = t->tcm_parent; 2816 cl = 0; 2817 2818 block = tcf_block_find(net, &q, &parent, &cl, 2819 t->tcm_ifindex, t->tcm_block_index, extack); 2820 if (IS_ERR(block)) 2821 return PTR_ERR(block); 2822 2823 chain_index = tca[TCA_CHAIN] ? nla_get_u32(tca[TCA_CHAIN]) : 0; 2824 if (chain_index > TC_ACT_EXT_VAL_MASK) { 2825 NL_SET_ERR_MSG(extack, "Specified chain index exceeds upper limit"); 2826 err = -EINVAL; 2827 goto errout_block; 2828 } 2829 2830 mutex_lock(&block->lock); 2831 chain = tcf_chain_lookup(block, chain_index); 2832 if (n->nlmsg_type == RTM_NEWCHAIN) { 2833 if (chain) { 2834 if (tcf_chain_held_by_acts_only(chain)) { 2835 /* The chain exists only because there is 2836 * some action referencing it. 2837 */ 2838 tcf_chain_hold(chain); 2839 } else { 2840 NL_SET_ERR_MSG(extack, "Filter chain already exists"); 2841 err = -EEXIST; 2842 goto errout_block_locked; 2843 } 2844 } else { 2845 if (!(n->nlmsg_flags & NLM_F_CREATE)) { 2846 NL_SET_ERR_MSG(extack, "Need both RTM_NEWCHAIN and NLM_F_CREATE to create a new chain"); 2847 err = -ENOENT; 2848 goto errout_block_locked; 2849 } 2850 chain = tcf_chain_create(block, chain_index); 2851 if (!chain) { 2852 NL_SET_ERR_MSG(extack, "Failed to create filter chain"); 2853 err = -ENOMEM; 2854 goto errout_block_locked; 2855 } 2856 } 2857 } else { 2858 if (!chain || tcf_chain_held_by_acts_only(chain)) { 2859 NL_SET_ERR_MSG(extack, "Cannot find specified filter chain"); 2860 err = -EINVAL; 2861 goto errout_block_locked; 2862 } 2863 tcf_chain_hold(chain); 2864 } 2865 2866 if (n->nlmsg_type == RTM_NEWCHAIN) { 2867 /* Modifying chain requires holding parent block lock. In case 2868 * the chain was successfully added, take a reference to the 2869 * chain. This ensures that an empty chain does not disappear at 2870 * the end of this function. 2871 */ 2872 tcf_chain_hold(chain); 2873 chain->explicitly_created = true; 2874 } 2875 mutex_unlock(&block->lock); 2876 2877 switch (n->nlmsg_type) { 2878 case RTM_NEWCHAIN: 2879 err = tc_chain_tmplt_add(chain, net, tca, extack); 2880 if (err) { 2881 tcf_chain_put_explicitly_created(chain); 2882 goto errout; 2883 } 2884 2885 tc_chain_notify(chain, NULL, 0, NLM_F_CREATE | NLM_F_EXCL, 2886 RTM_NEWCHAIN, false); 2887 break; 2888 case RTM_DELCHAIN: 2889 tfilter_notify_chain(net, skb, block, q, parent, n, 2890 chain, RTM_DELTFILTER); 2891 /* Flush the chain first as the user requested chain removal. */ 2892 tcf_chain_flush(chain, true); 2893 /* In case the chain was successfully deleted, put a reference 2894 * to the chain previously taken during addition. 2895 */ 2896 tcf_chain_put_explicitly_created(chain); 2897 break; 2898 case RTM_GETCHAIN: 2899 err = tc_chain_notify(chain, skb, n->nlmsg_seq, 2900 n->nlmsg_seq, n->nlmsg_type, true); 2901 if (err < 0) 2902 NL_SET_ERR_MSG(extack, "Failed to send chain notify message"); 2903 break; 2904 default: 2905 err = -EOPNOTSUPP; 2906 NL_SET_ERR_MSG(extack, "Unsupported message type"); 2907 goto errout; 2908 } 2909 2910 errout: 2911 tcf_chain_put(chain); 2912 errout_block: 2913 tcf_block_release(q, block, true); 2914 if (err == -EAGAIN) 2915 /* Replay the request. */ 2916 goto replay; 2917 return err; 2918 2919 errout_block_locked: 2920 mutex_unlock(&block->lock); 2921 goto errout_block; 2922 } 2923 2924 /* called with RTNL */ 2925 static int tc_dump_chain(struct sk_buff *skb, struct netlink_callback *cb) 2926 { 2927 struct net *net = sock_net(skb->sk); 2928 struct nlattr *tca[TCA_MAX + 1]; 2929 struct Qdisc *q = NULL; 2930 struct tcf_block *block; 2931 struct tcmsg *tcm = nlmsg_data(cb->nlh); 2932 struct tcf_chain *chain; 2933 long index_start; 2934 long index; 2935 int err; 2936 2937 if (nlmsg_len(cb->nlh) < sizeof(*tcm)) 2938 return skb->len; 2939 2940 err = nlmsg_parse_deprecated(cb->nlh, sizeof(*tcm), tca, TCA_MAX, 2941 rtm_tca_policy, cb->extack); 2942 if (err) 2943 return err; 2944 2945 if (tcm->tcm_ifindex == TCM_IFINDEX_MAGIC_BLOCK) { 2946 block = tcf_block_refcnt_get(net, tcm->tcm_block_index); 2947 if (!block) 2948 goto out; 2949 } else { 2950 const struct Qdisc_class_ops *cops; 2951 struct net_device *dev; 2952 unsigned long cl = 0; 2953 2954 dev = __dev_get_by_index(net, tcm->tcm_ifindex); 2955 if (!dev) 2956 return skb->len; 2957 2958 if (!tcm->tcm_parent) 2959 q = dev->qdisc; 2960 else 2961 q = qdisc_lookup(dev, TC_H_MAJ(tcm->tcm_parent)); 2962 2963 if (!q) 2964 goto out; 2965 cops = q->ops->cl_ops; 2966 if (!cops) 2967 goto out; 2968 if (!cops->tcf_block) 2969 goto out; 2970 if (TC_H_MIN(tcm->tcm_parent)) { 2971 cl = cops->find(q, tcm->tcm_parent); 2972 if (cl == 0) 2973 goto out; 2974 } 2975 block = cops->tcf_block(q, cl, NULL); 2976 if (!block) 2977 goto out; 2978 if (tcf_block_shared(block)) 2979 q = NULL; 2980 } 2981 2982 index_start = cb->args[0]; 2983 index = 0; 2984 2985 mutex_lock(&block->lock); 2986 list_for_each_entry(chain, &block->chain_list, list) { 2987 if ((tca[TCA_CHAIN] && 2988 nla_get_u32(tca[TCA_CHAIN]) != chain->index)) 2989 continue; 2990 if (index < index_start) { 2991 index++; 2992 continue; 2993 } 2994 if (tcf_chain_held_by_acts_only(chain)) 2995 continue; 2996 err = tc_chain_fill_node(chain->tmplt_ops, chain->tmplt_priv, 2997 chain->index, net, skb, block, 2998 NETLINK_CB(cb->skb).portid, 2999 cb->nlh->nlmsg_seq, NLM_F_MULTI, 3000 RTM_NEWCHAIN); 3001 if (err <= 0) 3002 break; 3003 index++; 3004 } 3005 mutex_unlock(&block->lock); 3006 3007 if (tcm->tcm_ifindex == TCM_IFINDEX_MAGIC_BLOCK) 3008 tcf_block_refcnt_put(block, true); 3009 cb->args[0] = index; 3010 3011 out: 3012 /* If we did no progress, the error (EMSGSIZE) is real */ 3013 if (skb->len == 0 && err) 3014 return err; 3015 return skb->len; 3016 } 3017 3018 void tcf_exts_destroy(struct tcf_exts *exts) 3019 { 3020 #ifdef CONFIG_NET_CLS_ACT 3021 if (exts->actions) { 3022 tcf_action_destroy(exts->actions, TCA_ACT_UNBIND); 3023 kfree(exts->actions); 3024 } 3025 exts->nr_actions = 0; 3026 #endif 3027 } 3028 EXPORT_SYMBOL(tcf_exts_destroy); 3029 3030 int tcf_exts_validate(struct net *net, struct tcf_proto *tp, struct nlattr **tb, 3031 struct nlattr *rate_tlv, struct tcf_exts *exts, bool ovr, 3032 bool rtnl_held, struct netlink_ext_ack *extack) 3033 { 3034 #ifdef CONFIG_NET_CLS_ACT 3035 { 3036 int init_res[TCA_ACT_MAX_PRIO] = {}; 3037 struct tc_action *act; 3038 size_t attr_size = 0; 3039 3040 if (exts->police && tb[exts->police]) { 3041 struct tc_action_ops *a_o; 3042 3043 a_o = tc_action_load_ops("police", tb[exts->police], rtnl_held, extack); 3044 if (IS_ERR(a_o)) 3045 return PTR_ERR(a_o); 3046 act = tcf_action_init_1(net, tp, tb[exts->police], 3047 rate_tlv, "police", ovr, 3048 TCA_ACT_BIND, a_o, init_res, 3049 rtnl_held, extack); 3050 module_put(a_o->owner); 3051 if (IS_ERR(act)) 3052 return PTR_ERR(act); 3053 3054 act->type = exts->type = TCA_OLD_COMPAT; 3055 exts->actions[0] = act; 3056 exts->nr_actions = 1; 3057 tcf_idr_insert_many(exts->actions); 3058 } else if (exts->action && tb[exts->action]) { 3059 int err; 3060 3061 err = tcf_action_init(net, tp, tb[exts->action], 3062 rate_tlv, NULL, ovr, TCA_ACT_BIND, 3063 exts->actions, init_res, 3064 &attr_size, rtnl_held, extack); 3065 if (err < 0) 3066 return err; 3067 exts->nr_actions = err; 3068 } 3069 } 3070 #else 3071 if ((exts->action && tb[exts->action]) || 3072 (exts->police && tb[exts->police])) { 3073 NL_SET_ERR_MSG(extack, "Classifier actions are not supported per compile options (CONFIG_NET_CLS_ACT)"); 3074 return -EOPNOTSUPP; 3075 } 3076 #endif 3077 3078 return 0; 3079 } 3080 EXPORT_SYMBOL(tcf_exts_validate); 3081 3082 void tcf_exts_change(struct tcf_exts *dst, struct tcf_exts *src) 3083 { 3084 #ifdef CONFIG_NET_CLS_ACT 3085 struct tcf_exts old = *dst; 3086 3087 *dst = *src; 3088 tcf_exts_destroy(&old); 3089 #endif 3090 } 3091 EXPORT_SYMBOL(tcf_exts_change); 3092 3093 #ifdef CONFIG_NET_CLS_ACT 3094 static struct tc_action *tcf_exts_first_act(struct tcf_exts *exts) 3095 { 3096 if (exts->nr_actions == 0) 3097 return NULL; 3098 else 3099 return exts->actions[0]; 3100 } 3101 #endif 3102 3103 int tcf_exts_dump(struct sk_buff *skb, struct tcf_exts *exts) 3104 { 3105 #ifdef CONFIG_NET_CLS_ACT 3106 struct nlattr *nest; 3107 3108 if (exts->action && tcf_exts_has_actions(exts)) { 3109 /* 3110 * again for backward compatible mode - we want 3111 * to work with both old and new modes of entering 3112 * tc data even if iproute2 was newer - jhs 3113 */ 3114 if (exts->type != TCA_OLD_COMPAT) { 3115 nest = nla_nest_start_noflag(skb, exts->action); 3116 if (nest == NULL) 3117 goto nla_put_failure; 3118 3119 if (tcf_action_dump(skb, exts->actions, 0, 0, false) 3120 < 0) 3121 goto nla_put_failure; 3122 nla_nest_end(skb, nest); 3123 } else if (exts->police) { 3124 struct tc_action *act = tcf_exts_first_act(exts); 3125 nest = nla_nest_start_noflag(skb, exts->police); 3126 if (nest == NULL || !act) 3127 goto nla_put_failure; 3128 if (tcf_action_dump_old(skb, act, 0, 0) < 0) 3129 goto nla_put_failure; 3130 nla_nest_end(skb, nest); 3131 } 3132 } 3133 return 0; 3134 3135 nla_put_failure: 3136 nla_nest_cancel(skb, nest); 3137 return -1; 3138 #else 3139 return 0; 3140 #endif 3141 } 3142 EXPORT_SYMBOL(tcf_exts_dump); 3143 3144 int tcf_exts_terse_dump(struct sk_buff *skb, struct tcf_exts *exts) 3145 { 3146 #ifdef CONFIG_NET_CLS_ACT 3147 struct nlattr *nest; 3148 3149 if (!exts->action || !tcf_exts_has_actions(exts)) 3150 return 0; 3151 3152 nest = nla_nest_start_noflag(skb, exts->action); 3153 if (!nest) 3154 goto nla_put_failure; 3155 3156 if (tcf_action_dump(skb, exts->actions, 0, 0, true) < 0) 3157 goto nla_put_failure; 3158 nla_nest_end(skb, nest); 3159 return 0; 3160 3161 nla_put_failure: 3162 nla_nest_cancel(skb, nest); 3163 return -1; 3164 #else 3165 return 0; 3166 #endif 3167 } 3168 EXPORT_SYMBOL(tcf_exts_terse_dump); 3169 3170 int tcf_exts_dump_stats(struct sk_buff *skb, struct tcf_exts *exts) 3171 { 3172 #ifdef CONFIG_NET_CLS_ACT 3173 struct tc_action *a = tcf_exts_first_act(exts); 3174 if (a != NULL && tcf_action_copy_stats(skb, a, 1) < 0) 3175 return -1; 3176 #endif 3177 return 0; 3178 } 3179 EXPORT_SYMBOL(tcf_exts_dump_stats); 3180 3181 static void tcf_block_offload_inc(struct tcf_block *block, u32 *flags) 3182 { 3183 if (*flags & TCA_CLS_FLAGS_IN_HW) 3184 return; 3185 *flags |= TCA_CLS_FLAGS_IN_HW; 3186 atomic_inc(&block->offloadcnt); 3187 } 3188 3189 static void tcf_block_offload_dec(struct tcf_block *block, u32 *flags) 3190 { 3191 if (!(*flags & TCA_CLS_FLAGS_IN_HW)) 3192 return; 3193 *flags &= ~TCA_CLS_FLAGS_IN_HW; 3194 atomic_dec(&block->offloadcnt); 3195 } 3196 3197 static void tc_cls_offload_cnt_update(struct tcf_block *block, 3198 struct tcf_proto *tp, u32 *cnt, 3199 u32 *flags, u32 diff, bool add) 3200 { 3201 lockdep_assert_held(&block->cb_lock); 3202 3203 spin_lock(&tp->lock); 3204 if (add) { 3205 if (!*cnt) 3206 tcf_block_offload_inc(block, flags); 3207 *cnt += diff; 3208 } else { 3209 *cnt -= diff; 3210 if (!*cnt) 3211 tcf_block_offload_dec(block, flags); 3212 } 3213 spin_unlock(&tp->lock); 3214 } 3215 3216 static void 3217 tc_cls_offload_cnt_reset(struct tcf_block *block, struct tcf_proto *tp, 3218 u32 *cnt, u32 *flags) 3219 { 3220 lockdep_assert_held(&block->cb_lock); 3221 3222 spin_lock(&tp->lock); 3223 tcf_block_offload_dec(block, flags); 3224 *cnt = 0; 3225 spin_unlock(&tp->lock); 3226 } 3227 3228 static int 3229 __tc_setup_cb_call(struct tcf_block *block, enum tc_setup_type type, 3230 void *type_data, bool err_stop) 3231 { 3232 struct flow_block_cb *block_cb; 3233 int ok_count = 0; 3234 int err; 3235 3236 list_for_each_entry(block_cb, &block->flow_block.cb_list, list) { 3237 err = block_cb->cb(type, type_data, block_cb->cb_priv); 3238 if (err) { 3239 if (err_stop) 3240 return err; 3241 } else { 3242 ok_count++; 3243 } 3244 } 3245 return ok_count; 3246 } 3247 3248 int tc_setup_cb_call(struct tcf_block *block, enum tc_setup_type type, 3249 void *type_data, bool err_stop, bool rtnl_held) 3250 { 3251 bool take_rtnl = READ_ONCE(block->lockeddevcnt) && !rtnl_held; 3252 int ok_count; 3253 3254 retry: 3255 if (take_rtnl) 3256 rtnl_lock(); 3257 down_read(&block->cb_lock); 3258 /* Need to obtain rtnl lock if block is bound to devs that require it. 3259 * In block bind code cb_lock is obtained while holding rtnl, so we must 3260 * obtain the locks in same order here. 3261 */ 3262 if (!rtnl_held && !take_rtnl && block->lockeddevcnt) { 3263 up_read(&block->cb_lock); 3264 take_rtnl = true; 3265 goto retry; 3266 } 3267 3268 ok_count = __tc_setup_cb_call(block, type, type_data, err_stop); 3269 3270 up_read(&block->cb_lock); 3271 if (take_rtnl) 3272 rtnl_unlock(); 3273 return ok_count; 3274 } 3275 EXPORT_SYMBOL(tc_setup_cb_call); 3276 3277 /* Non-destructive filter add. If filter that wasn't already in hardware is 3278 * successfully offloaded, increment block offloads counter. On failure, 3279 * previously offloaded filter is considered to be intact and offloads counter 3280 * is not decremented. 3281 */ 3282 3283 int tc_setup_cb_add(struct tcf_block *block, struct tcf_proto *tp, 3284 enum tc_setup_type type, void *type_data, bool err_stop, 3285 u32 *flags, unsigned int *in_hw_count, bool rtnl_held) 3286 { 3287 bool take_rtnl = READ_ONCE(block->lockeddevcnt) && !rtnl_held; 3288 int ok_count; 3289 3290 retry: 3291 if (take_rtnl) 3292 rtnl_lock(); 3293 down_read(&block->cb_lock); 3294 /* Need to obtain rtnl lock if block is bound to devs that require it. 3295 * In block bind code cb_lock is obtained while holding rtnl, so we must 3296 * obtain the locks in same order here. 3297 */ 3298 if (!rtnl_held && !take_rtnl && block->lockeddevcnt) { 3299 up_read(&block->cb_lock); 3300 take_rtnl = true; 3301 goto retry; 3302 } 3303 3304 /* Make sure all netdevs sharing this block are offload-capable. */ 3305 if (block->nooffloaddevcnt && err_stop) { 3306 ok_count = -EOPNOTSUPP; 3307 goto err_unlock; 3308 } 3309 3310 ok_count = __tc_setup_cb_call(block, type, type_data, err_stop); 3311 if (ok_count < 0) 3312 goto err_unlock; 3313 3314 if (tp->ops->hw_add) 3315 tp->ops->hw_add(tp, type_data); 3316 if (ok_count > 0) 3317 tc_cls_offload_cnt_update(block, tp, in_hw_count, flags, 3318 ok_count, true); 3319 err_unlock: 3320 up_read(&block->cb_lock); 3321 if (take_rtnl) 3322 rtnl_unlock(); 3323 return ok_count < 0 ? ok_count : 0; 3324 } 3325 EXPORT_SYMBOL(tc_setup_cb_add); 3326 3327 /* Destructive filter replace. If filter that wasn't already in hardware is 3328 * successfully offloaded, increment block offload counter. On failure, 3329 * previously offloaded filter is considered to be destroyed and offload counter 3330 * is decremented. 3331 */ 3332 3333 int tc_setup_cb_replace(struct tcf_block *block, struct tcf_proto *tp, 3334 enum tc_setup_type type, void *type_data, bool err_stop, 3335 u32 *old_flags, unsigned int *old_in_hw_count, 3336 u32 *new_flags, unsigned int *new_in_hw_count, 3337 bool rtnl_held) 3338 { 3339 bool take_rtnl = READ_ONCE(block->lockeddevcnt) && !rtnl_held; 3340 int ok_count; 3341 3342 retry: 3343 if (take_rtnl) 3344 rtnl_lock(); 3345 down_read(&block->cb_lock); 3346 /* Need to obtain rtnl lock if block is bound to devs that require it. 3347 * In block bind code cb_lock is obtained while holding rtnl, so we must 3348 * obtain the locks in same order here. 3349 */ 3350 if (!rtnl_held && !take_rtnl && block->lockeddevcnt) { 3351 up_read(&block->cb_lock); 3352 take_rtnl = true; 3353 goto retry; 3354 } 3355 3356 /* Make sure all netdevs sharing this block are offload-capable. */ 3357 if (block->nooffloaddevcnt && err_stop) { 3358 ok_count = -EOPNOTSUPP; 3359 goto err_unlock; 3360 } 3361 3362 tc_cls_offload_cnt_reset(block, tp, old_in_hw_count, old_flags); 3363 if (tp->ops->hw_del) 3364 tp->ops->hw_del(tp, type_data); 3365 3366 ok_count = __tc_setup_cb_call(block, type, type_data, err_stop); 3367 if (ok_count < 0) 3368 goto err_unlock; 3369 3370 if (tp->ops->hw_add) 3371 tp->ops->hw_add(tp, type_data); 3372 if (ok_count > 0) 3373 tc_cls_offload_cnt_update(block, tp, new_in_hw_count, 3374 new_flags, ok_count, true); 3375 err_unlock: 3376 up_read(&block->cb_lock); 3377 if (take_rtnl) 3378 rtnl_unlock(); 3379 return ok_count < 0 ? ok_count : 0; 3380 } 3381 EXPORT_SYMBOL(tc_setup_cb_replace); 3382 3383 /* Destroy filter and decrement block offload counter, if filter was previously 3384 * offloaded. 3385 */ 3386 3387 int tc_setup_cb_destroy(struct tcf_block *block, struct tcf_proto *tp, 3388 enum tc_setup_type type, void *type_data, bool err_stop, 3389 u32 *flags, unsigned int *in_hw_count, bool rtnl_held) 3390 { 3391 bool take_rtnl = READ_ONCE(block->lockeddevcnt) && !rtnl_held; 3392 int ok_count; 3393 3394 retry: 3395 if (take_rtnl) 3396 rtnl_lock(); 3397 down_read(&block->cb_lock); 3398 /* Need to obtain rtnl lock if block is bound to devs that require it. 3399 * In block bind code cb_lock is obtained while holding rtnl, so we must 3400 * obtain the locks in same order here. 3401 */ 3402 if (!rtnl_held && !take_rtnl && block->lockeddevcnt) { 3403 up_read(&block->cb_lock); 3404 take_rtnl = true; 3405 goto retry; 3406 } 3407 3408 ok_count = __tc_setup_cb_call(block, type, type_data, err_stop); 3409 3410 tc_cls_offload_cnt_reset(block, tp, in_hw_count, flags); 3411 if (tp->ops->hw_del) 3412 tp->ops->hw_del(tp, type_data); 3413 3414 up_read(&block->cb_lock); 3415 if (take_rtnl) 3416 rtnl_unlock(); 3417 return ok_count < 0 ? ok_count : 0; 3418 } 3419 EXPORT_SYMBOL(tc_setup_cb_destroy); 3420 3421 int tc_setup_cb_reoffload(struct tcf_block *block, struct tcf_proto *tp, 3422 bool add, flow_setup_cb_t *cb, 3423 enum tc_setup_type type, void *type_data, 3424 void *cb_priv, u32 *flags, unsigned int *in_hw_count) 3425 { 3426 int err = cb(type, type_data, cb_priv); 3427 3428 if (err) { 3429 if (add && tc_skip_sw(*flags)) 3430 return err; 3431 } else { 3432 tc_cls_offload_cnt_update(block, tp, in_hw_count, flags, 1, 3433 add); 3434 } 3435 3436 return 0; 3437 } 3438 EXPORT_SYMBOL(tc_setup_cb_reoffload); 3439 3440 static int tcf_act_get_cookie(struct flow_action_entry *entry, 3441 const struct tc_action *act) 3442 { 3443 struct tc_cookie *cookie; 3444 int err = 0; 3445 3446 rcu_read_lock(); 3447 cookie = rcu_dereference(act->act_cookie); 3448 if (cookie) { 3449 entry->cookie = flow_action_cookie_create(cookie->data, 3450 cookie->len, 3451 GFP_ATOMIC); 3452 if (!entry->cookie) 3453 err = -ENOMEM; 3454 } 3455 rcu_read_unlock(); 3456 return err; 3457 } 3458 3459 static void tcf_act_put_cookie(struct flow_action_entry *entry) 3460 { 3461 flow_action_cookie_destroy(entry->cookie); 3462 } 3463 3464 void tc_cleanup_flow_action(struct flow_action *flow_action) 3465 { 3466 struct flow_action_entry *entry; 3467 int i; 3468 3469 flow_action_for_each(i, entry, flow_action) { 3470 tcf_act_put_cookie(entry); 3471 if (entry->destructor) 3472 entry->destructor(entry->destructor_priv); 3473 } 3474 } 3475 EXPORT_SYMBOL(tc_cleanup_flow_action); 3476 3477 static void tcf_mirred_get_dev(struct flow_action_entry *entry, 3478 const struct tc_action *act) 3479 { 3480 #ifdef CONFIG_NET_CLS_ACT 3481 entry->dev = act->ops->get_dev(act, &entry->destructor); 3482 if (!entry->dev) 3483 return; 3484 entry->destructor_priv = entry->dev; 3485 #endif 3486 } 3487 3488 static void tcf_tunnel_encap_put_tunnel(void *priv) 3489 { 3490 struct ip_tunnel_info *tunnel = priv; 3491 3492 kfree(tunnel); 3493 } 3494 3495 static int tcf_tunnel_encap_get_tunnel(struct flow_action_entry *entry, 3496 const struct tc_action *act) 3497 { 3498 entry->tunnel = tcf_tunnel_info_copy(act); 3499 if (!entry->tunnel) 3500 return -ENOMEM; 3501 entry->destructor = tcf_tunnel_encap_put_tunnel; 3502 entry->destructor_priv = entry->tunnel; 3503 return 0; 3504 } 3505 3506 static void tcf_sample_get_group(struct flow_action_entry *entry, 3507 const struct tc_action *act) 3508 { 3509 #ifdef CONFIG_NET_CLS_ACT 3510 entry->sample.psample_group = 3511 act->ops->get_psample_group(act, &entry->destructor); 3512 entry->destructor_priv = entry->sample.psample_group; 3513 #endif 3514 } 3515 3516 static void tcf_gate_entry_destructor(void *priv) 3517 { 3518 struct action_gate_entry *oe = priv; 3519 3520 kfree(oe); 3521 } 3522 3523 static int tcf_gate_get_entries(struct flow_action_entry *entry, 3524 const struct tc_action *act) 3525 { 3526 entry->gate.entries = tcf_gate_get_list(act); 3527 3528 if (!entry->gate.entries) 3529 return -EINVAL; 3530 3531 entry->destructor = tcf_gate_entry_destructor; 3532 entry->destructor_priv = entry->gate.entries; 3533 3534 return 0; 3535 } 3536 3537 static enum flow_action_hw_stats tc_act_hw_stats(u8 hw_stats) 3538 { 3539 if (WARN_ON_ONCE(hw_stats > TCA_ACT_HW_STATS_ANY)) 3540 return FLOW_ACTION_HW_STATS_DONT_CARE; 3541 else if (!hw_stats) 3542 return FLOW_ACTION_HW_STATS_DISABLED; 3543 3544 return hw_stats; 3545 } 3546 3547 int tc_setup_flow_action(struct flow_action *flow_action, 3548 const struct tcf_exts *exts) 3549 { 3550 struct tc_action *act; 3551 int i, j, k, err = 0; 3552 3553 BUILD_BUG_ON(TCA_ACT_HW_STATS_ANY != FLOW_ACTION_HW_STATS_ANY); 3554 BUILD_BUG_ON(TCA_ACT_HW_STATS_IMMEDIATE != FLOW_ACTION_HW_STATS_IMMEDIATE); 3555 BUILD_BUG_ON(TCA_ACT_HW_STATS_DELAYED != FLOW_ACTION_HW_STATS_DELAYED); 3556 3557 if (!exts) 3558 return 0; 3559 3560 j = 0; 3561 tcf_exts_for_each_action(i, act, exts) { 3562 struct flow_action_entry *entry; 3563 3564 entry = &flow_action->entries[j]; 3565 spin_lock_bh(&act->tcfa_lock); 3566 err = tcf_act_get_cookie(entry, act); 3567 if (err) 3568 goto err_out_locked; 3569 3570 entry->hw_stats = tc_act_hw_stats(act->hw_stats); 3571 3572 if (is_tcf_gact_ok(act)) { 3573 entry->id = FLOW_ACTION_ACCEPT; 3574 } else if (is_tcf_gact_shot(act)) { 3575 entry->id = FLOW_ACTION_DROP; 3576 } else if (is_tcf_gact_trap(act)) { 3577 entry->id = FLOW_ACTION_TRAP; 3578 } else if (is_tcf_gact_goto_chain(act)) { 3579 entry->id = FLOW_ACTION_GOTO; 3580 entry->chain_index = tcf_gact_goto_chain_index(act); 3581 } else if (is_tcf_mirred_egress_redirect(act)) { 3582 entry->id = FLOW_ACTION_REDIRECT; 3583 tcf_mirred_get_dev(entry, act); 3584 } else if (is_tcf_mirred_egress_mirror(act)) { 3585 entry->id = FLOW_ACTION_MIRRED; 3586 tcf_mirred_get_dev(entry, act); 3587 } else if (is_tcf_mirred_ingress_redirect(act)) { 3588 entry->id = FLOW_ACTION_REDIRECT_INGRESS; 3589 tcf_mirred_get_dev(entry, act); 3590 } else if (is_tcf_mirred_ingress_mirror(act)) { 3591 entry->id = FLOW_ACTION_MIRRED_INGRESS; 3592 tcf_mirred_get_dev(entry, act); 3593 } else if (is_tcf_vlan(act)) { 3594 switch (tcf_vlan_action(act)) { 3595 case TCA_VLAN_ACT_PUSH: 3596 entry->id = FLOW_ACTION_VLAN_PUSH; 3597 entry->vlan.vid = tcf_vlan_push_vid(act); 3598 entry->vlan.proto = tcf_vlan_push_proto(act); 3599 entry->vlan.prio = tcf_vlan_push_prio(act); 3600 break; 3601 case TCA_VLAN_ACT_POP: 3602 entry->id = FLOW_ACTION_VLAN_POP; 3603 break; 3604 case TCA_VLAN_ACT_MODIFY: 3605 entry->id = FLOW_ACTION_VLAN_MANGLE; 3606 entry->vlan.vid = tcf_vlan_push_vid(act); 3607 entry->vlan.proto = tcf_vlan_push_proto(act); 3608 entry->vlan.prio = tcf_vlan_push_prio(act); 3609 break; 3610 default: 3611 err = -EOPNOTSUPP; 3612 goto err_out_locked; 3613 } 3614 } else if (is_tcf_tunnel_set(act)) { 3615 entry->id = FLOW_ACTION_TUNNEL_ENCAP; 3616 err = tcf_tunnel_encap_get_tunnel(entry, act); 3617 if (err) 3618 goto err_out_locked; 3619 } else if (is_tcf_tunnel_release(act)) { 3620 entry->id = FLOW_ACTION_TUNNEL_DECAP; 3621 } else if (is_tcf_pedit(act)) { 3622 for (k = 0; k < tcf_pedit_nkeys(act); k++) { 3623 switch (tcf_pedit_cmd(act, k)) { 3624 case TCA_PEDIT_KEY_EX_CMD_SET: 3625 entry->id = FLOW_ACTION_MANGLE; 3626 break; 3627 case TCA_PEDIT_KEY_EX_CMD_ADD: 3628 entry->id = FLOW_ACTION_ADD; 3629 break; 3630 default: 3631 err = -EOPNOTSUPP; 3632 goto err_out_locked; 3633 } 3634 entry->mangle.htype = tcf_pedit_htype(act, k); 3635 entry->mangle.mask = tcf_pedit_mask(act, k); 3636 entry->mangle.val = tcf_pedit_val(act, k); 3637 entry->mangle.offset = tcf_pedit_offset(act, k); 3638 entry->hw_stats = tc_act_hw_stats(act->hw_stats); 3639 entry = &flow_action->entries[++j]; 3640 } 3641 } else if (is_tcf_csum(act)) { 3642 entry->id = FLOW_ACTION_CSUM; 3643 entry->csum_flags = tcf_csum_update_flags(act); 3644 } else if (is_tcf_skbedit_mark(act)) { 3645 entry->id = FLOW_ACTION_MARK; 3646 entry->mark = tcf_skbedit_mark(act); 3647 } else if (is_tcf_sample(act)) { 3648 entry->id = FLOW_ACTION_SAMPLE; 3649 entry->sample.trunc_size = tcf_sample_trunc_size(act); 3650 entry->sample.truncate = tcf_sample_truncate(act); 3651 entry->sample.rate = tcf_sample_rate(act); 3652 tcf_sample_get_group(entry, act); 3653 } else if (is_tcf_police(act)) { 3654 entry->id = FLOW_ACTION_POLICE; 3655 entry->police.burst = tcf_police_burst(act); 3656 entry->police.rate_bytes_ps = 3657 tcf_police_rate_bytes_ps(act); 3658 entry->police.burst_pkt = tcf_police_burst_pkt(act); 3659 entry->police.rate_pkt_ps = 3660 tcf_police_rate_pkt_ps(act); 3661 entry->police.mtu = tcf_police_tcfp_mtu(act); 3662 entry->police.index = act->tcfa_index; 3663 } else if (is_tcf_ct(act)) { 3664 entry->id = FLOW_ACTION_CT; 3665 entry->ct.action = tcf_ct_action(act); 3666 entry->ct.zone = tcf_ct_zone(act); 3667 entry->ct.flow_table = tcf_ct_ft(act); 3668 } else if (is_tcf_mpls(act)) { 3669 switch (tcf_mpls_action(act)) { 3670 case TCA_MPLS_ACT_PUSH: 3671 entry->id = FLOW_ACTION_MPLS_PUSH; 3672 entry->mpls_push.proto = tcf_mpls_proto(act); 3673 entry->mpls_push.label = tcf_mpls_label(act); 3674 entry->mpls_push.tc = tcf_mpls_tc(act); 3675 entry->mpls_push.bos = tcf_mpls_bos(act); 3676 entry->mpls_push.ttl = tcf_mpls_ttl(act); 3677 break; 3678 case TCA_MPLS_ACT_POP: 3679 entry->id = FLOW_ACTION_MPLS_POP; 3680 entry->mpls_pop.proto = tcf_mpls_proto(act); 3681 break; 3682 case TCA_MPLS_ACT_MODIFY: 3683 entry->id = FLOW_ACTION_MPLS_MANGLE; 3684 entry->mpls_mangle.label = tcf_mpls_label(act); 3685 entry->mpls_mangle.tc = tcf_mpls_tc(act); 3686 entry->mpls_mangle.bos = tcf_mpls_bos(act); 3687 entry->mpls_mangle.ttl = tcf_mpls_ttl(act); 3688 break; 3689 default: 3690 goto err_out_locked; 3691 } 3692 } else if (is_tcf_skbedit_ptype(act)) { 3693 entry->id = FLOW_ACTION_PTYPE; 3694 entry->ptype = tcf_skbedit_ptype(act); 3695 } else if (is_tcf_skbedit_priority(act)) { 3696 entry->id = FLOW_ACTION_PRIORITY; 3697 entry->priority = tcf_skbedit_priority(act); 3698 } else if (is_tcf_gate(act)) { 3699 entry->id = FLOW_ACTION_GATE; 3700 entry->gate.index = tcf_gate_index(act); 3701 entry->gate.prio = tcf_gate_prio(act); 3702 entry->gate.basetime = tcf_gate_basetime(act); 3703 entry->gate.cycletime = tcf_gate_cycletime(act); 3704 entry->gate.cycletimeext = tcf_gate_cycletimeext(act); 3705 entry->gate.num_entries = tcf_gate_num_entries(act); 3706 err = tcf_gate_get_entries(entry, act); 3707 if (err) 3708 goto err_out_locked; 3709 } else { 3710 err = -EOPNOTSUPP; 3711 goto err_out_locked; 3712 } 3713 spin_unlock_bh(&act->tcfa_lock); 3714 3715 if (!is_tcf_pedit(act)) 3716 j++; 3717 } 3718 3719 err_out: 3720 if (err) 3721 tc_cleanup_flow_action(flow_action); 3722 3723 return err; 3724 err_out_locked: 3725 spin_unlock_bh(&act->tcfa_lock); 3726 goto err_out; 3727 } 3728 EXPORT_SYMBOL(tc_setup_flow_action); 3729 3730 unsigned int tcf_exts_num_actions(struct tcf_exts *exts) 3731 { 3732 unsigned int num_acts = 0; 3733 struct tc_action *act; 3734 int i; 3735 3736 tcf_exts_for_each_action(i, act, exts) { 3737 if (is_tcf_pedit(act)) 3738 num_acts += tcf_pedit_nkeys(act); 3739 else 3740 num_acts++; 3741 } 3742 return num_acts; 3743 } 3744 EXPORT_SYMBOL(tcf_exts_num_actions); 3745 3746 #ifdef CONFIG_NET_CLS_ACT 3747 static int tcf_qevent_parse_block_index(struct nlattr *block_index_attr, 3748 u32 *p_block_index, 3749 struct netlink_ext_ack *extack) 3750 { 3751 *p_block_index = nla_get_u32(block_index_attr); 3752 if (!*p_block_index) { 3753 NL_SET_ERR_MSG(extack, "Block number may not be zero"); 3754 return -EINVAL; 3755 } 3756 3757 return 0; 3758 } 3759 3760 int tcf_qevent_init(struct tcf_qevent *qe, struct Qdisc *sch, 3761 enum flow_block_binder_type binder_type, 3762 struct nlattr *block_index_attr, 3763 struct netlink_ext_ack *extack) 3764 { 3765 u32 block_index; 3766 int err; 3767 3768 if (!block_index_attr) 3769 return 0; 3770 3771 err = tcf_qevent_parse_block_index(block_index_attr, &block_index, extack); 3772 if (err) 3773 return err; 3774 3775 if (!block_index) 3776 return 0; 3777 3778 qe->info.binder_type = binder_type; 3779 qe->info.chain_head_change = tcf_chain_head_change_dflt; 3780 qe->info.chain_head_change_priv = &qe->filter_chain; 3781 qe->info.block_index = block_index; 3782 3783 return tcf_block_get_ext(&qe->block, sch, &qe->info, extack); 3784 } 3785 EXPORT_SYMBOL(tcf_qevent_init); 3786 3787 void tcf_qevent_destroy(struct tcf_qevent *qe, struct Qdisc *sch) 3788 { 3789 if (qe->info.block_index) 3790 tcf_block_put_ext(qe->block, sch, &qe->info); 3791 } 3792 EXPORT_SYMBOL(tcf_qevent_destroy); 3793 3794 int tcf_qevent_validate_change(struct tcf_qevent *qe, struct nlattr *block_index_attr, 3795 struct netlink_ext_ack *extack) 3796 { 3797 u32 block_index; 3798 int err; 3799 3800 if (!block_index_attr) 3801 return 0; 3802 3803 err = tcf_qevent_parse_block_index(block_index_attr, &block_index, extack); 3804 if (err) 3805 return err; 3806 3807 /* Bounce newly-configured block or change in block. */ 3808 if (block_index != qe->info.block_index) { 3809 NL_SET_ERR_MSG(extack, "Change of blocks is not supported"); 3810 return -EINVAL; 3811 } 3812 3813 return 0; 3814 } 3815 EXPORT_SYMBOL(tcf_qevent_validate_change); 3816 3817 struct sk_buff *tcf_qevent_handle(struct tcf_qevent *qe, struct Qdisc *sch, struct sk_buff *skb, 3818 struct sk_buff **to_free, int *ret) 3819 { 3820 struct tcf_result cl_res; 3821 struct tcf_proto *fl; 3822 3823 if (!qe->info.block_index) 3824 return skb; 3825 3826 fl = rcu_dereference_bh(qe->filter_chain); 3827 3828 switch (tcf_classify(skb, fl, &cl_res, false)) { 3829 case TC_ACT_SHOT: 3830 qdisc_qstats_drop(sch); 3831 __qdisc_drop(skb, to_free); 3832 *ret = __NET_XMIT_BYPASS; 3833 return NULL; 3834 case TC_ACT_STOLEN: 3835 case TC_ACT_QUEUED: 3836 case TC_ACT_TRAP: 3837 __qdisc_drop(skb, to_free); 3838 *ret = __NET_XMIT_STOLEN; 3839 return NULL; 3840 case TC_ACT_REDIRECT: 3841 skb_do_redirect(skb); 3842 *ret = __NET_XMIT_STOLEN; 3843 return NULL; 3844 } 3845 3846 return skb; 3847 } 3848 EXPORT_SYMBOL(tcf_qevent_handle); 3849 3850 int tcf_qevent_dump(struct sk_buff *skb, int attr_name, struct tcf_qevent *qe) 3851 { 3852 if (!qe->info.block_index) 3853 return 0; 3854 return nla_put_u32(skb, attr_name, qe->info.block_index); 3855 } 3856 EXPORT_SYMBOL(tcf_qevent_dump); 3857 #endif 3858 3859 static __net_init int tcf_net_init(struct net *net) 3860 { 3861 struct tcf_net *tn = net_generic(net, tcf_net_id); 3862 3863 spin_lock_init(&tn->idr_lock); 3864 idr_init(&tn->idr); 3865 return 0; 3866 } 3867 3868 static void __net_exit tcf_net_exit(struct net *net) 3869 { 3870 struct tcf_net *tn = net_generic(net, tcf_net_id); 3871 3872 idr_destroy(&tn->idr); 3873 } 3874 3875 static struct pernet_operations tcf_net_ops = { 3876 .init = tcf_net_init, 3877 .exit = tcf_net_exit, 3878 .id = &tcf_net_id, 3879 .size = sizeof(struct tcf_net), 3880 }; 3881 3882 static int __init tc_filter_init(void) 3883 { 3884 int err; 3885 3886 tc_filter_wq = alloc_ordered_workqueue("tc_filter_workqueue", 0); 3887 if (!tc_filter_wq) 3888 return -ENOMEM; 3889 3890 err = register_pernet_subsys(&tcf_net_ops); 3891 if (err) 3892 goto err_register_pernet_subsys; 3893 3894 rtnl_register(PF_UNSPEC, RTM_NEWTFILTER, tc_new_tfilter, NULL, 3895 RTNL_FLAG_DOIT_UNLOCKED); 3896 rtnl_register(PF_UNSPEC, RTM_DELTFILTER, tc_del_tfilter, NULL, 3897 RTNL_FLAG_DOIT_UNLOCKED); 3898 rtnl_register(PF_UNSPEC, RTM_GETTFILTER, tc_get_tfilter, 3899 tc_dump_tfilter, RTNL_FLAG_DOIT_UNLOCKED); 3900 rtnl_register(PF_UNSPEC, RTM_NEWCHAIN, tc_ctl_chain, NULL, 0); 3901 rtnl_register(PF_UNSPEC, RTM_DELCHAIN, tc_ctl_chain, NULL, 0); 3902 rtnl_register(PF_UNSPEC, RTM_GETCHAIN, tc_ctl_chain, 3903 tc_dump_chain, 0); 3904 3905 return 0; 3906 3907 err_register_pernet_subsys: 3908 destroy_workqueue(tc_filter_wq); 3909 return err; 3910 } 3911 3912 subsys_initcall(tc_filter_init); 3913