1 /* SPDX-License-Identifier: GPL-2.0 */ 2 #ifndef __NET_PKT_CLS_H 3 #define __NET_PKT_CLS_H 4 5 #include <linux/pkt_cls.h> 6 #include <linux/workqueue.h> 7 #include <net/sch_generic.h> 8 #include <net/act_api.h> 9 #include <net/net_namespace.h> 10 11 /* TC action not accessible from user space */ 12 #define TC_ACT_CONSUMED (TC_ACT_VALUE_MAX + 1) 13 14 /* Basic packet classifier frontend definitions. */ 15 16 struct tcf_walker { 17 int stop; 18 int skip; 19 int count; 20 bool nonempty; 21 unsigned long cookie; 22 int (*fn)(struct tcf_proto *, void *node, struct tcf_walker *); 23 }; 24 25 int register_tcf_proto_ops(struct tcf_proto_ops *ops); 26 int unregister_tcf_proto_ops(struct tcf_proto_ops *ops); 27 28 struct tcf_block_ext_info { 29 enum flow_block_binder_type binder_type; 30 tcf_chain_head_change_t *chain_head_change; 31 void *chain_head_change_priv; 32 u32 block_index; 33 }; 34 35 struct tcf_qevent { 36 struct tcf_block *block; 37 struct tcf_block_ext_info info; 38 struct tcf_proto __rcu *filter_chain; 39 }; 40 41 struct tcf_block_cb; 42 bool tcf_queue_work(struct rcu_work *rwork, work_func_t func); 43 44 #ifdef CONFIG_NET_CLS 45 struct tcf_chain *tcf_chain_get_by_act(struct tcf_block *block, 46 u32 chain_index); 47 void tcf_chain_put_by_act(struct tcf_chain *chain); 48 struct tcf_chain *tcf_get_next_chain(struct tcf_block *block, 49 struct tcf_chain *chain); 50 struct tcf_proto *tcf_get_next_proto(struct tcf_chain *chain, 51 struct tcf_proto *tp); 52 void tcf_block_netif_keep_dst(struct tcf_block *block); 53 int tcf_block_get(struct tcf_block **p_block, 54 struct tcf_proto __rcu **p_filter_chain, struct Qdisc *q, 55 struct netlink_ext_ack *extack); 56 int tcf_block_get_ext(struct tcf_block **p_block, struct Qdisc *q, 57 struct tcf_block_ext_info *ei, 58 struct netlink_ext_ack *extack); 59 void tcf_block_put(struct tcf_block *block); 60 void tcf_block_put_ext(struct tcf_block *block, struct Qdisc *q, 61 struct tcf_block_ext_info *ei); 62 63 static inline bool tcf_block_shared(struct tcf_block *block) 64 { 65 return block->index; 66 } 67 68 static inline bool tcf_block_non_null_shared(struct tcf_block *block) 69 { 70 return block && block->index; 71 } 72 73 static inline struct Qdisc *tcf_block_q(struct tcf_block *block) 74 { 75 WARN_ON(tcf_block_shared(block)); 76 return block->q; 77 } 78 79 int tcf_classify(struct sk_buff *skb, 80 const struct tcf_block *block, 81 const struct tcf_proto *tp, struct tcf_result *res, 82 bool compat_mode); 83 84 #else 85 static inline bool tcf_block_shared(struct tcf_block *block) 86 { 87 return false; 88 } 89 90 static inline bool tcf_block_non_null_shared(struct tcf_block *block) 91 { 92 return false; 93 } 94 95 static inline 96 int tcf_block_get(struct tcf_block **p_block, 97 struct tcf_proto __rcu **p_filter_chain, struct Qdisc *q, 98 struct netlink_ext_ack *extack) 99 { 100 return 0; 101 } 102 103 static inline 104 int tcf_block_get_ext(struct tcf_block **p_block, struct Qdisc *q, 105 struct tcf_block_ext_info *ei, 106 struct netlink_ext_ack *extack) 107 { 108 return 0; 109 } 110 111 static inline void tcf_block_put(struct tcf_block *block) 112 { 113 } 114 115 static inline 116 void tcf_block_put_ext(struct tcf_block *block, struct Qdisc *q, 117 struct tcf_block_ext_info *ei) 118 { 119 } 120 121 static inline struct Qdisc *tcf_block_q(struct tcf_block *block) 122 { 123 return NULL; 124 } 125 126 static inline 127 int tc_setup_cb_block_register(struct tcf_block *block, flow_setup_cb_t *cb, 128 void *cb_priv) 129 { 130 return 0; 131 } 132 133 static inline 134 void tc_setup_cb_block_unregister(struct tcf_block *block, flow_setup_cb_t *cb, 135 void *cb_priv) 136 { 137 } 138 139 static inline int tcf_classify(struct sk_buff *skb, 140 const struct tcf_block *block, 141 const struct tcf_proto *tp, 142 struct tcf_result *res, bool compat_mode) 143 { 144 return TC_ACT_UNSPEC; 145 } 146 147 #endif 148 149 static inline unsigned long 150 __cls_set_class(unsigned long *clp, unsigned long cl) 151 { 152 return xchg(clp, cl); 153 } 154 155 static inline void 156 __tcf_bind_filter(struct Qdisc *q, struct tcf_result *r, unsigned long base) 157 { 158 unsigned long cl; 159 160 cl = q->ops->cl_ops->bind_tcf(q, base, r->classid); 161 cl = __cls_set_class(&r->class, cl); 162 if (cl) 163 q->ops->cl_ops->unbind_tcf(q, cl); 164 } 165 166 static inline void 167 tcf_bind_filter(struct tcf_proto *tp, struct tcf_result *r, unsigned long base) 168 { 169 struct Qdisc *q = tp->chain->block->q; 170 171 /* Check q as it is not set for shared blocks. In that case, 172 * setting class is not supported. 173 */ 174 if (!q) 175 return; 176 sch_tree_lock(q); 177 __tcf_bind_filter(q, r, base); 178 sch_tree_unlock(q); 179 } 180 181 static inline void 182 __tcf_unbind_filter(struct Qdisc *q, struct tcf_result *r) 183 { 184 unsigned long cl; 185 186 if ((cl = __cls_set_class(&r->class, 0)) != 0) 187 q->ops->cl_ops->unbind_tcf(q, cl); 188 } 189 190 static inline void 191 tcf_unbind_filter(struct tcf_proto *tp, struct tcf_result *r) 192 { 193 struct Qdisc *q = tp->chain->block->q; 194 195 if (!q) 196 return; 197 __tcf_unbind_filter(q, r); 198 } 199 200 struct tcf_exts { 201 #ifdef CONFIG_NET_CLS_ACT 202 __u32 type; /* for backward compat(TCA_OLD_COMPAT) */ 203 int nr_actions; 204 struct tc_action **actions; 205 struct net *net; 206 netns_tracker ns_tracker; 207 #endif 208 /* Map to export classifier specific extension TLV types to the 209 * generic extensions API. Unsupported extensions must be set to 0. 210 */ 211 int action; 212 int police; 213 }; 214 215 static inline int tcf_exts_init(struct tcf_exts *exts, struct net *net, 216 int action, int police) 217 { 218 #ifdef CONFIG_NET_CLS_ACT 219 exts->type = 0; 220 exts->nr_actions = 0; 221 exts->net = net; 222 netns_tracker_alloc(net, &exts->ns_tracker, GFP_KERNEL); 223 exts->actions = kcalloc(TCA_ACT_MAX_PRIO, sizeof(struct tc_action *), 224 GFP_KERNEL); 225 if (!exts->actions) 226 return -ENOMEM; 227 #endif 228 exts->action = action; 229 exts->police = police; 230 return 0; 231 } 232 233 /* Return false if the netns is being destroyed in cleanup_net(). Callers 234 * need to do cleanup synchronously in this case, otherwise may race with 235 * tc_action_net_exit(). Return true for other cases. 236 */ 237 static inline bool tcf_exts_get_net(struct tcf_exts *exts) 238 { 239 #ifdef CONFIG_NET_CLS_ACT 240 exts->net = maybe_get_net(exts->net); 241 if (exts->net) 242 netns_tracker_alloc(exts->net, &exts->ns_tracker, GFP_KERNEL); 243 return exts->net != NULL; 244 #else 245 return true; 246 #endif 247 } 248 249 static inline void tcf_exts_put_net(struct tcf_exts *exts) 250 { 251 #ifdef CONFIG_NET_CLS_ACT 252 if (exts->net) 253 put_net_track(exts->net, &exts->ns_tracker); 254 #endif 255 } 256 257 #ifdef CONFIG_NET_CLS_ACT 258 #define tcf_exts_for_each_action(i, a, exts) \ 259 for (i = 0; i < TCA_ACT_MAX_PRIO && ((a) = (exts)->actions[i]); i++) 260 #else 261 #define tcf_exts_for_each_action(i, a, exts) \ 262 for (; 0; (void)(i), (void)(a), (void)(exts)) 263 #endif 264 265 static inline void 266 tcf_exts_stats_update(const struct tcf_exts *exts, 267 u64 bytes, u64 packets, u64 drops, u64 lastuse, 268 u8 used_hw_stats, bool used_hw_stats_valid) 269 { 270 #ifdef CONFIG_NET_CLS_ACT 271 int i; 272 273 preempt_disable(); 274 275 for (i = 0; i < exts->nr_actions; i++) { 276 struct tc_action *a = exts->actions[i]; 277 278 tcf_action_stats_update(a, bytes, packets, drops, 279 lastuse, true); 280 a->used_hw_stats = used_hw_stats; 281 a->used_hw_stats_valid = used_hw_stats_valid; 282 } 283 284 preempt_enable(); 285 #endif 286 } 287 288 /** 289 * tcf_exts_has_actions - check if at least one action is present 290 * @exts: tc filter extensions handle 291 * 292 * Returns true if at least one action is present. 293 */ 294 static inline bool tcf_exts_has_actions(struct tcf_exts *exts) 295 { 296 #ifdef CONFIG_NET_CLS_ACT 297 return exts->nr_actions; 298 #else 299 return false; 300 #endif 301 } 302 303 /** 304 * tcf_exts_exec - execute tc filter extensions 305 * @skb: socket buffer 306 * @exts: tc filter extensions handle 307 * @res: desired result 308 * 309 * Executes all configured extensions. Returns TC_ACT_OK on a normal execution, 310 * a negative number if the filter must be considered unmatched or 311 * a positive action code (TC_ACT_*) which must be returned to the 312 * underlying layer. 313 */ 314 static inline int 315 tcf_exts_exec(struct sk_buff *skb, struct tcf_exts *exts, 316 struct tcf_result *res) 317 { 318 #ifdef CONFIG_NET_CLS_ACT 319 return tcf_action_exec(skb, exts->actions, exts->nr_actions, res); 320 #endif 321 return TC_ACT_OK; 322 } 323 324 int tcf_exts_validate(struct net *net, struct tcf_proto *tp, 325 struct nlattr **tb, struct nlattr *rate_tlv, 326 struct tcf_exts *exts, u32 flags, 327 struct netlink_ext_ack *extack); 328 void tcf_exts_destroy(struct tcf_exts *exts); 329 void tcf_exts_change(struct tcf_exts *dst, struct tcf_exts *src); 330 int tcf_exts_dump(struct sk_buff *skb, struct tcf_exts *exts); 331 int tcf_exts_terse_dump(struct sk_buff *skb, struct tcf_exts *exts); 332 int tcf_exts_dump_stats(struct sk_buff *skb, struct tcf_exts *exts); 333 334 /** 335 * struct tcf_pkt_info - packet information 336 * 337 * @ptr: start of the pkt data 338 * @nexthdr: offset of the next header 339 */ 340 struct tcf_pkt_info { 341 unsigned char * ptr; 342 int nexthdr; 343 }; 344 345 #ifdef CONFIG_NET_EMATCH 346 347 struct tcf_ematch_ops; 348 349 /** 350 * struct tcf_ematch - extended match (ematch) 351 * 352 * @matchid: identifier to allow userspace to reidentify a match 353 * @flags: flags specifying attributes and the relation to other matches 354 * @ops: the operations lookup table of the corresponding ematch module 355 * @datalen: length of the ematch specific configuration data 356 * @data: ematch specific data 357 * @net: the network namespace 358 */ 359 struct tcf_ematch { 360 struct tcf_ematch_ops * ops; 361 unsigned long data; 362 unsigned int datalen; 363 u16 matchid; 364 u16 flags; 365 struct net *net; 366 }; 367 368 static inline int tcf_em_is_container(struct tcf_ematch *em) 369 { 370 return !em->ops; 371 } 372 373 static inline int tcf_em_is_simple(struct tcf_ematch *em) 374 { 375 return em->flags & TCF_EM_SIMPLE; 376 } 377 378 static inline int tcf_em_is_inverted(struct tcf_ematch *em) 379 { 380 return em->flags & TCF_EM_INVERT; 381 } 382 383 static inline int tcf_em_last_match(struct tcf_ematch *em) 384 { 385 return (em->flags & TCF_EM_REL_MASK) == TCF_EM_REL_END; 386 } 387 388 static inline int tcf_em_early_end(struct tcf_ematch *em, int result) 389 { 390 if (tcf_em_last_match(em)) 391 return 1; 392 393 if (result == 0 && em->flags & TCF_EM_REL_AND) 394 return 1; 395 396 if (result != 0 && em->flags & TCF_EM_REL_OR) 397 return 1; 398 399 return 0; 400 } 401 402 /** 403 * struct tcf_ematch_tree - ematch tree handle 404 * 405 * @hdr: ematch tree header supplied by userspace 406 * @matches: array of ematches 407 */ 408 struct tcf_ematch_tree { 409 struct tcf_ematch_tree_hdr hdr; 410 struct tcf_ematch * matches; 411 412 }; 413 414 /** 415 * struct tcf_ematch_ops - ematch module operations 416 * 417 * @kind: identifier (kind) of this ematch module 418 * @datalen: length of expected configuration data (optional) 419 * @change: called during validation (optional) 420 * @match: called during ematch tree evaluation, must return 1/0 421 * @destroy: called during destroyage (optional) 422 * @dump: called during dumping process (optional) 423 * @owner: owner, must be set to THIS_MODULE 424 * @link: link to previous/next ematch module (internal use) 425 */ 426 struct tcf_ematch_ops { 427 int kind; 428 int datalen; 429 int (*change)(struct net *net, void *, 430 int, struct tcf_ematch *); 431 int (*match)(struct sk_buff *, struct tcf_ematch *, 432 struct tcf_pkt_info *); 433 void (*destroy)(struct tcf_ematch *); 434 int (*dump)(struct sk_buff *, struct tcf_ematch *); 435 struct module *owner; 436 struct list_head link; 437 }; 438 439 int tcf_em_register(struct tcf_ematch_ops *); 440 void tcf_em_unregister(struct tcf_ematch_ops *); 441 int tcf_em_tree_validate(struct tcf_proto *, struct nlattr *, 442 struct tcf_ematch_tree *); 443 void tcf_em_tree_destroy(struct tcf_ematch_tree *); 444 int tcf_em_tree_dump(struct sk_buff *, struct tcf_ematch_tree *, int); 445 int __tcf_em_tree_match(struct sk_buff *, struct tcf_ematch_tree *, 446 struct tcf_pkt_info *); 447 448 /** 449 * tcf_em_tree_match - evaulate an ematch tree 450 * 451 * @skb: socket buffer of the packet in question 452 * @tree: ematch tree to be used for evaluation 453 * @info: packet information examined by classifier 454 * 455 * This function matches @skb against the ematch tree in @tree by going 456 * through all ematches respecting their logic relations returning 457 * as soon as the result is obvious. 458 * 459 * Returns 1 if the ematch tree as-one matches, no ematches are configured 460 * or ematch is not enabled in the kernel, otherwise 0 is returned. 461 */ 462 static inline int tcf_em_tree_match(struct sk_buff *skb, 463 struct tcf_ematch_tree *tree, 464 struct tcf_pkt_info *info) 465 { 466 if (tree->hdr.nmatches) 467 return __tcf_em_tree_match(skb, tree, info); 468 else 469 return 1; 470 } 471 472 #define MODULE_ALIAS_TCF_EMATCH(kind) MODULE_ALIAS("ematch-kind-" __stringify(kind)) 473 474 #else /* CONFIG_NET_EMATCH */ 475 476 struct tcf_ematch_tree { 477 }; 478 479 #define tcf_em_tree_validate(tp, tb, t) ((void)(t), 0) 480 #define tcf_em_tree_destroy(t) do { (void)(t); } while(0) 481 #define tcf_em_tree_dump(skb, t, tlv) (0) 482 #define tcf_em_tree_match(skb, t, info) ((void)(info), 1) 483 484 #endif /* CONFIG_NET_EMATCH */ 485 486 static inline unsigned char * tcf_get_base_ptr(struct sk_buff *skb, int layer) 487 { 488 switch (layer) { 489 case TCF_LAYER_LINK: 490 return skb_mac_header(skb); 491 case TCF_LAYER_NETWORK: 492 return skb_network_header(skb); 493 case TCF_LAYER_TRANSPORT: 494 return skb_transport_header(skb); 495 } 496 497 return NULL; 498 } 499 500 static inline int tcf_valid_offset(const struct sk_buff *skb, 501 const unsigned char *ptr, const int len) 502 { 503 return likely((ptr + len) <= skb_tail_pointer(skb) && 504 ptr >= skb->head && 505 (ptr <= (ptr + len))); 506 } 507 508 static inline int 509 tcf_change_indev(struct net *net, struct nlattr *indev_tlv, 510 struct netlink_ext_ack *extack) 511 { 512 char indev[IFNAMSIZ]; 513 struct net_device *dev; 514 515 if (nla_strscpy(indev, indev_tlv, IFNAMSIZ) < 0) { 516 NL_SET_ERR_MSG_ATTR(extack, indev_tlv, 517 "Interface name too long"); 518 return -EINVAL; 519 } 520 dev = __dev_get_by_name(net, indev); 521 if (!dev) { 522 NL_SET_ERR_MSG_ATTR(extack, indev_tlv, 523 "Network device not found"); 524 return -ENODEV; 525 } 526 return dev->ifindex; 527 } 528 529 static inline bool 530 tcf_match_indev(struct sk_buff *skb, int ifindex) 531 { 532 if (!ifindex) 533 return true; 534 if (!skb->skb_iif) 535 return false; 536 return ifindex == skb->skb_iif; 537 } 538 539 int tc_setup_flow_action(struct flow_action *flow_action, 540 const struct tcf_exts *exts); 541 void tc_cleanup_flow_action(struct flow_action *flow_action); 542 543 int tc_setup_cb_call(struct tcf_block *block, enum tc_setup_type type, 544 void *type_data, bool err_stop, bool rtnl_held); 545 int tc_setup_cb_add(struct tcf_block *block, struct tcf_proto *tp, 546 enum tc_setup_type type, void *type_data, bool err_stop, 547 u32 *flags, unsigned int *in_hw_count, bool rtnl_held); 548 int tc_setup_cb_replace(struct tcf_block *block, struct tcf_proto *tp, 549 enum tc_setup_type type, void *type_data, bool err_stop, 550 u32 *old_flags, unsigned int *old_in_hw_count, 551 u32 *new_flags, unsigned int *new_in_hw_count, 552 bool rtnl_held); 553 int tc_setup_cb_destroy(struct tcf_block *block, struct tcf_proto *tp, 554 enum tc_setup_type type, void *type_data, bool err_stop, 555 u32 *flags, unsigned int *in_hw_count, bool rtnl_held); 556 int tc_setup_cb_reoffload(struct tcf_block *block, struct tcf_proto *tp, 557 bool add, flow_setup_cb_t *cb, 558 enum tc_setup_type type, void *type_data, 559 void *cb_priv, u32 *flags, unsigned int *in_hw_count); 560 unsigned int tcf_exts_num_actions(struct tcf_exts *exts); 561 562 #ifdef CONFIG_NET_CLS_ACT 563 int tcf_qevent_init(struct tcf_qevent *qe, struct Qdisc *sch, 564 enum flow_block_binder_type binder_type, 565 struct nlattr *block_index_attr, 566 struct netlink_ext_ack *extack); 567 void tcf_qevent_destroy(struct tcf_qevent *qe, struct Qdisc *sch); 568 int tcf_qevent_validate_change(struct tcf_qevent *qe, struct nlattr *block_index_attr, 569 struct netlink_ext_ack *extack); 570 struct sk_buff *tcf_qevent_handle(struct tcf_qevent *qe, struct Qdisc *sch, struct sk_buff *skb, 571 struct sk_buff **to_free, int *ret); 572 int tcf_qevent_dump(struct sk_buff *skb, int attr_name, struct tcf_qevent *qe); 573 #else 574 static inline int tcf_qevent_init(struct tcf_qevent *qe, struct Qdisc *sch, 575 enum flow_block_binder_type binder_type, 576 struct nlattr *block_index_attr, 577 struct netlink_ext_ack *extack) 578 { 579 return 0; 580 } 581 582 static inline void tcf_qevent_destroy(struct tcf_qevent *qe, struct Qdisc *sch) 583 { 584 } 585 586 static inline int tcf_qevent_validate_change(struct tcf_qevent *qe, struct nlattr *block_index_attr, 587 struct netlink_ext_ack *extack) 588 { 589 return 0; 590 } 591 592 static inline struct sk_buff * 593 tcf_qevent_handle(struct tcf_qevent *qe, struct Qdisc *sch, struct sk_buff *skb, 594 struct sk_buff **to_free, int *ret) 595 { 596 return skb; 597 } 598 599 static inline int tcf_qevent_dump(struct sk_buff *skb, int attr_name, struct tcf_qevent *qe) 600 { 601 return 0; 602 } 603 #endif 604 605 struct tc_cls_u32_knode { 606 struct tcf_exts *exts; 607 struct tcf_result *res; 608 struct tc_u32_sel *sel; 609 u32 handle; 610 u32 val; 611 u32 mask; 612 u32 link_handle; 613 u8 fshift; 614 }; 615 616 struct tc_cls_u32_hnode { 617 u32 handle; 618 u32 prio; 619 unsigned int divisor; 620 }; 621 622 enum tc_clsu32_command { 623 TC_CLSU32_NEW_KNODE, 624 TC_CLSU32_REPLACE_KNODE, 625 TC_CLSU32_DELETE_KNODE, 626 TC_CLSU32_NEW_HNODE, 627 TC_CLSU32_REPLACE_HNODE, 628 TC_CLSU32_DELETE_HNODE, 629 }; 630 631 struct tc_cls_u32_offload { 632 struct flow_cls_common_offload common; 633 /* knode values */ 634 enum tc_clsu32_command command; 635 union { 636 struct tc_cls_u32_knode knode; 637 struct tc_cls_u32_hnode hnode; 638 }; 639 }; 640 641 static inline bool tc_can_offload(const struct net_device *dev) 642 { 643 return dev->features & NETIF_F_HW_TC; 644 } 645 646 static inline bool tc_can_offload_extack(const struct net_device *dev, 647 struct netlink_ext_ack *extack) 648 { 649 bool can = tc_can_offload(dev); 650 651 if (!can) 652 NL_SET_ERR_MSG(extack, "TC offload is disabled on net device"); 653 654 return can; 655 } 656 657 static inline bool 658 tc_cls_can_offload_and_chain0(const struct net_device *dev, 659 struct flow_cls_common_offload *common) 660 { 661 if (!tc_can_offload_extack(dev, common->extack)) 662 return false; 663 if (common->chain_index) { 664 NL_SET_ERR_MSG(common->extack, 665 "Driver supports only offload of chain 0"); 666 return false; 667 } 668 return true; 669 } 670 671 static inline bool tc_skip_hw(u32 flags) 672 { 673 return (flags & TCA_CLS_FLAGS_SKIP_HW) ? true : false; 674 } 675 676 static inline bool tc_skip_sw(u32 flags) 677 { 678 return (flags & TCA_CLS_FLAGS_SKIP_SW) ? true : false; 679 } 680 681 /* SKIP_HW and SKIP_SW are mutually exclusive flags. */ 682 static inline bool tc_flags_valid(u32 flags) 683 { 684 if (flags & ~(TCA_CLS_FLAGS_SKIP_HW | TCA_CLS_FLAGS_SKIP_SW | 685 TCA_CLS_FLAGS_VERBOSE)) 686 return false; 687 688 flags &= TCA_CLS_FLAGS_SKIP_HW | TCA_CLS_FLAGS_SKIP_SW; 689 if (!(flags ^ (TCA_CLS_FLAGS_SKIP_HW | TCA_CLS_FLAGS_SKIP_SW))) 690 return false; 691 692 return true; 693 } 694 695 static inline bool tc_in_hw(u32 flags) 696 { 697 return (flags & TCA_CLS_FLAGS_IN_HW) ? true : false; 698 } 699 700 static inline void 701 tc_cls_common_offload_init(struct flow_cls_common_offload *cls_common, 702 const struct tcf_proto *tp, u32 flags, 703 struct netlink_ext_ack *extack) 704 { 705 cls_common->chain_index = tp->chain->index; 706 cls_common->protocol = tp->protocol; 707 cls_common->prio = tp->prio >> 16; 708 if (tc_skip_sw(flags) || flags & TCA_CLS_FLAGS_VERBOSE) 709 cls_common->extack = extack; 710 } 711 712 #if IS_ENABLED(CONFIG_NET_TC_SKB_EXT) 713 static inline struct tc_skb_ext *tc_skb_ext_alloc(struct sk_buff *skb) 714 { 715 struct tc_skb_ext *tc_skb_ext = skb_ext_add(skb, TC_SKB_EXT); 716 717 if (tc_skb_ext) 718 memset(tc_skb_ext, 0, sizeof(*tc_skb_ext)); 719 return tc_skb_ext; 720 } 721 #endif 722 723 enum tc_matchall_command { 724 TC_CLSMATCHALL_REPLACE, 725 TC_CLSMATCHALL_DESTROY, 726 TC_CLSMATCHALL_STATS, 727 }; 728 729 struct tc_cls_matchall_offload { 730 struct flow_cls_common_offload common; 731 enum tc_matchall_command command; 732 struct flow_rule *rule; 733 struct flow_stats stats; 734 unsigned long cookie; 735 }; 736 737 enum tc_clsbpf_command { 738 TC_CLSBPF_OFFLOAD, 739 TC_CLSBPF_STATS, 740 }; 741 742 struct tc_cls_bpf_offload { 743 struct flow_cls_common_offload common; 744 enum tc_clsbpf_command command; 745 struct tcf_exts *exts; 746 struct bpf_prog *prog; 747 struct bpf_prog *oldprog; 748 const char *name; 749 bool exts_integrated; 750 }; 751 752 struct tc_mqprio_qopt_offload { 753 /* struct tc_mqprio_qopt must always be the first element */ 754 struct tc_mqprio_qopt qopt; 755 u16 mode; 756 u16 shaper; 757 u32 flags; 758 u64 min_rate[TC_QOPT_MAX_QUEUE]; 759 u64 max_rate[TC_QOPT_MAX_QUEUE]; 760 }; 761 762 /* This structure holds cookie structure that is passed from user 763 * to the kernel for actions and classifiers 764 */ 765 struct tc_cookie { 766 u8 *data; 767 u32 len; 768 struct rcu_head rcu; 769 }; 770 771 struct tc_qopt_offload_stats { 772 struct gnet_stats_basic_sync *bstats; 773 struct gnet_stats_queue *qstats; 774 }; 775 776 enum tc_mq_command { 777 TC_MQ_CREATE, 778 TC_MQ_DESTROY, 779 TC_MQ_STATS, 780 TC_MQ_GRAFT, 781 }; 782 783 struct tc_mq_opt_offload_graft_params { 784 unsigned long queue; 785 u32 child_handle; 786 }; 787 788 struct tc_mq_qopt_offload { 789 enum tc_mq_command command; 790 u32 handle; 791 union { 792 struct tc_qopt_offload_stats stats; 793 struct tc_mq_opt_offload_graft_params graft_params; 794 }; 795 }; 796 797 enum tc_htb_command { 798 /* Root */ 799 TC_HTB_CREATE, /* Initialize HTB offload. */ 800 TC_HTB_DESTROY, /* Destroy HTB offload. */ 801 802 /* Classes */ 803 /* Allocate qid and create leaf. */ 804 TC_HTB_LEAF_ALLOC_QUEUE, 805 /* Convert leaf to inner, preserve and return qid, create new leaf. */ 806 TC_HTB_LEAF_TO_INNER, 807 /* Delete leaf, while siblings remain. */ 808 TC_HTB_LEAF_DEL, 809 /* Delete leaf, convert parent to leaf, preserving qid. */ 810 TC_HTB_LEAF_DEL_LAST, 811 /* TC_HTB_LEAF_DEL_LAST, but delete driver data on hardware errors. */ 812 TC_HTB_LEAF_DEL_LAST_FORCE, 813 /* Modify parameters of a node. */ 814 TC_HTB_NODE_MODIFY, 815 816 /* Class qdisc */ 817 TC_HTB_LEAF_QUERY_QUEUE, /* Query qid by classid. */ 818 }; 819 820 struct tc_htb_qopt_offload { 821 struct netlink_ext_ack *extack; 822 enum tc_htb_command command; 823 u32 parent_classid; 824 u16 classid; 825 u16 qid; 826 u64 rate; 827 u64 ceil; 828 }; 829 830 #define TC_HTB_CLASSID_ROOT U32_MAX 831 832 enum tc_red_command { 833 TC_RED_REPLACE, 834 TC_RED_DESTROY, 835 TC_RED_STATS, 836 TC_RED_XSTATS, 837 TC_RED_GRAFT, 838 }; 839 840 struct tc_red_qopt_offload_params { 841 u32 min; 842 u32 max; 843 u32 probability; 844 u32 limit; 845 bool is_ecn; 846 bool is_harddrop; 847 bool is_nodrop; 848 struct gnet_stats_queue *qstats; 849 }; 850 851 struct tc_red_qopt_offload { 852 enum tc_red_command command; 853 u32 handle; 854 u32 parent; 855 union { 856 struct tc_red_qopt_offload_params set; 857 struct tc_qopt_offload_stats stats; 858 struct red_stats *xstats; 859 u32 child_handle; 860 }; 861 }; 862 863 enum tc_gred_command { 864 TC_GRED_REPLACE, 865 TC_GRED_DESTROY, 866 TC_GRED_STATS, 867 }; 868 869 struct tc_gred_vq_qopt_offload_params { 870 bool present; 871 u32 limit; 872 u32 prio; 873 u32 min; 874 u32 max; 875 bool is_ecn; 876 bool is_harddrop; 877 u32 probability; 878 /* Only need backlog, see struct tc_prio_qopt_offload_params */ 879 u32 *backlog; 880 }; 881 882 struct tc_gred_qopt_offload_params { 883 bool grio_on; 884 bool wred_on; 885 unsigned int dp_cnt; 886 unsigned int dp_def; 887 struct gnet_stats_queue *qstats; 888 struct tc_gred_vq_qopt_offload_params tab[MAX_DPs]; 889 }; 890 891 struct tc_gred_qopt_offload_stats { 892 struct gnet_stats_basic_sync bstats[MAX_DPs]; 893 struct gnet_stats_queue qstats[MAX_DPs]; 894 struct red_stats *xstats[MAX_DPs]; 895 }; 896 897 struct tc_gred_qopt_offload { 898 enum tc_gred_command command; 899 u32 handle; 900 u32 parent; 901 union { 902 struct tc_gred_qopt_offload_params set; 903 struct tc_gred_qopt_offload_stats stats; 904 }; 905 }; 906 907 enum tc_prio_command { 908 TC_PRIO_REPLACE, 909 TC_PRIO_DESTROY, 910 TC_PRIO_STATS, 911 TC_PRIO_GRAFT, 912 }; 913 914 struct tc_prio_qopt_offload_params { 915 int bands; 916 u8 priomap[TC_PRIO_MAX + 1]; 917 /* At the point of un-offloading the Qdisc, the reported backlog and 918 * qlen need to be reduced by the portion that is in HW. 919 */ 920 struct gnet_stats_queue *qstats; 921 }; 922 923 struct tc_prio_qopt_offload_graft_params { 924 u8 band; 925 u32 child_handle; 926 }; 927 928 struct tc_prio_qopt_offload { 929 enum tc_prio_command command; 930 u32 handle; 931 u32 parent; 932 union { 933 struct tc_prio_qopt_offload_params replace_params; 934 struct tc_qopt_offload_stats stats; 935 struct tc_prio_qopt_offload_graft_params graft_params; 936 }; 937 }; 938 939 enum tc_root_command { 940 TC_ROOT_GRAFT, 941 }; 942 943 struct tc_root_qopt_offload { 944 enum tc_root_command command; 945 u32 handle; 946 bool ingress; 947 }; 948 949 enum tc_ets_command { 950 TC_ETS_REPLACE, 951 TC_ETS_DESTROY, 952 TC_ETS_STATS, 953 TC_ETS_GRAFT, 954 }; 955 956 struct tc_ets_qopt_offload_replace_params { 957 unsigned int bands; 958 u8 priomap[TC_PRIO_MAX + 1]; 959 unsigned int quanta[TCQ_ETS_MAX_BANDS]; /* 0 for strict bands. */ 960 unsigned int weights[TCQ_ETS_MAX_BANDS]; 961 struct gnet_stats_queue *qstats; 962 }; 963 964 struct tc_ets_qopt_offload_graft_params { 965 u8 band; 966 u32 child_handle; 967 }; 968 969 struct tc_ets_qopt_offload { 970 enum tc_ets_command command; 971 u32 handle; 972 u32 parent; 973 union { 974 struct tc_ets_qopt_offload_replace_params replace_params; 975 struct tc_qopt_offload_stats stats; 976 struct tc_ets_qopt_offload_graft_params graft_params; 977 }; 978 }; 979 980 enum tc_tbf_command { 981 TC_TBF_REPLACE, 982 TC_TBF_DESTROY, 983 TC_TBF_STATS, 984 TC_TBF_GRAFT, 985 }; 986 987 struct tc_tbf_qopt_offload_replace_params { 988 struct psched_ratecfg rate; 989 u32 max_size; 990 struct gnet_stats_queue *qstats; 991 }; 992 993 struct tc_tbf_qopt_offload { 994 enum tc_tbf_command command; 995 u32 handle; 996 u32 parent; 997 union { 998 struct tc_tbf_qopt_offload_replace_params replace_params; 999 struct tc_qopt_offload_stats stats; 1000 u32 child_handle; 1001 }; 1002 }; 1003 1004 enum tc_fifo_command { 1005 TC_FIFO_REPLACE, 1006 TC_FIFO_DESTROY, 1007 TC_FIFO_STATS, 1008 }; 1009 1010 struct tc_fifo_qopt_offload { 1011 enum tc_fifo_command command; 1012 u32 handle; 1013 u32 parent; 1014 union { 1015 struct tc_qopt_offload_stats stats; 1016 }; 1017 }; 1018 1019 #endif 1020