1 /*
2 * Copyright (c) 2016, Mellanox Technologies. All rights reserved.
3 *
4 * This software is available to you under a choice of one of two
5 * licenses. You may choose to be licensed under the terms of the GNU
6 * General Public License (GPL) Version 2, available from the file
7 * COPYING in the main directory of this source tree, or the
8 * OpenIB.org BSD license below:
9 *
10 * Redistribution and use in source and binary forms, with or
11 * without modification, are permitted provided that the following
12 * conditions are met:
13 *
14 * - Redistributions of source code must retain the above
15 * copyright notice, this list of conditions and the following
16 * disclaimer.
17 *
18 * - Redistributions in binary form must reproduce the above
19 * copyright notice, this list of conditions and the following
20 * disclaimer in the documentation and/or other materials
21 * provided with the distribution.
22 *
23 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
24 * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
25 * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
26 * NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS
27 * BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN
28 * ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
29 * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
30 * SOFTWARE.
31 */
32
33 #include <net/flow_dissector.h>
34 #include <net/flow_offload.h>
35 #include <net/sch_generic.h>
36 #include <net/pkt_cls.h>
37 #include <net/tc_act/tc_gact.h>
38 #include <net/tc_act/tc_skbedit.h>
39 #include <linux/mlx5/fs.h>
40 #include <linux/mlx5/device.h>
41 #include <linux/rhashtable.h>
42 #include <linux/refcount.h>
43 #include <linux/completion.h>
44 #include <net/tc_act/tc_mirred.h>
45 #include <net/tc_act/tc_vlan.h>
46 #include <net/tc_act/tc_tunnel_key.h>
47 #include <net/tc_act/tc_pedit.h>
48 #include <net/tc_act/tc_csum.h>
49 #include <net/tc_act/tc_mpls.h>
50 #include <net/arp.h>
51 #include <net/ipv6_stubs.h>
52 #include <net/bareudp.h>
53 #include <net/bonding.h>
54 #include "en.h"
55 #include "en_rep.h"
56 #include "en/rep/tc.h"
57 #include "en/rep/neigh.h"
58 #include "en_tc.h"
59 #include "eswitch.h"
60 #include "fs_core.h"
61 #include "en/port.h"
62 #include "en/tc_tun.h"
63 #include "en/mapping.h"
64 #include "en/tc_ct.h"
65 #include "en/mod_hdr.h"
66 #include "lib/devcom.h"
67 #include "lib/geneve.h"
68 #include "lib/fs_chains.h"
69 #include "diag/en_tc_tracepoint.h"
70
71 #define nic_chains(priv) ((priv)->fs.tc.chains)
72 #define MLX5_MH_ACT_SZ MLX5_UN_SZ_BYTES(set_add_copy_action_in_auto)
73 #define MLX5E_TC_FLOW_BASE (MLX5E_TC_FLAG_LAST_EXPORTED_BIT + 1)
74
75 enum {
76 MLX5E_TC_FLOW_FLAG_INGRESS = MLX5E_TC_FLAG_INGRESS_BIT,
77 MLX5E_TC_FLOW_FLAG_EGRESS = MLX5E_TC_FLAG_EGRESS_BIT,
78 MLX5E_TC_FLOW_FLAG_ESWITCH = MLX5E_TC_FLAG_ESW_OFFLOAD_BIT,
79 MLX5E_TC_FLOW_FLAG_FT = MLX5E_TC_FLAG_FT_OFFLOAD_BIT,
80 MLX5E_TC_FLOW_FLAG_NIC = MLX5E_TC_FLAG_NIC_OFFLOAD_BIT,
81 MLX5E_TC_FLOW_FLAG_OFFLOADED = MLX5E_TC_FLOW_BASE,
82 MLX5E_TC_FLOW_FLAG_HAIRPIN = MLX5E_TC_FLOW_BASE + 1,
83 MLX5E_TC_FLOW_FLAG_HAIRPIN_RSS = MLX5E_TC_FLOW_BASE + 2,
84 MLX5E_TC_FLOW_FLAG_SLOW = MLX5E_TC_FLOW_BASE + 3,
85 MLX5E_TC_FLOW_FLAG_DUP = MLX5E_TC_FLOW_BASE + 4,
86 MLX5E_TC_FLOW_FLAG_NOT_READY = MLX5E_TC_FLOW_BASE + 5,
87 MLX5E_TC_FLOW_FLAG_DELETED = MLX5E_TC_FLOW_BASE + 6,
88 MLX5E_TC_FLOW_FLAG_CT = MLX5E_TC_FLOW_BASE + 7,
89 MLX5E_TC_FLOW_FLAG_L3_TO_L2_DECAP = MLX5E_TC_FLOW_BASE + 8,
90 };
91
92 #define MLX5E_TC_MAX_SPLITS 1
93
94 /* Helper struct for accessing a struct containing list_head array.
95 * Containing struct
96 * |- Helper array
97 * [0] Helper item 0
98 * |- list_head item 0
99 * |- index (0)
100 * [1] Helper item 1
101 * |- list_head item 1
102 * |- index (1)
103 * To access the containing struct from one of the list_head items:
104 * 1. Get the helper item from the list_head item using
105 * helper item =
106 * container_of(list_head item, helper struct type, list_head field)
107 * 2. Get the contining struct from the helper item and its index in the array:
108 * containing struct =
109 * container_of(helper item, containing struct type, helper field[index])
110 */
111 struct encap_flow_item {
112 struct mlx5e_encap_entry *e; /* attached encap instance */
113 struct list_head list;
114 int index;
115 };
116
117 struct mlx5e_tc_flow {
118 struct rhash_head node;
119 struct mlx5e_priv *priv;
120 u64 cookie;
121 unsigned long flags;
122 struct mlx5_flow_handle *rule[MLX5E_TC_MAX_SPLITS + 1];
123
124 /* flows sharing the same reformat object - currently mpls decap */
125 struct list_head l3_to_l2_reformat;
126 struct mlx5e_decap_entry *decap_reformat;
127
128 /* Flow can be associated with multiple encap IDs.
129 * The number of encaps is bounded by the number of supported
130 * destinations.
131 */
132 struct encap_flow_item encaps[MLX5_MAX_FLOW_FWD_VPORTS];
133 struct mlx5e_tc_flow *peer_flow;
134 struct mlx5e_mod_hdr_handle *mh; /* attached mod header instance */
135 struct mlx5e_hairpin_entry *hpe; /* attached hairpin instance */
136 struct list_head hairpin; /* flows sharing the same hairpin */
137 struct list_head peer; /* flows with peer flow */
138 struct list_head unready; /* flows not ready to be offloaded (e.g due to missing route) */
139 struct net_device *orig_dev; /* netdev adding flow first */
140 int tmp_efi_index;
141 struct list_head tmp_list; /* temporary flow list used by neigh update */
142 refcount_t refcnt;
143 struct rcu_head rcu_head;
144 struct completion init_done;
145 int tunnel_id; /* the mapped tunnel id of this flow */
146 struct mlx5_flow_attr *attr;
147 };
148
149 struct mlx5e_tc_flow_parse_attr {
150 const struct ip_tunnel_info *tun_info[MLX5_MAX_FLOW_FWD_VPORTS];
151 struct net_device *filter_dev;
152 struct mlx5_flow_spec spec;
153 struct mlx5e_tc_mod_hdr_acts mod_hdr_acts;
154 int mirred_ifindex[MLX5_MAX_FLOW_FWD_VPORTS];
155 struct ethhdr eth;
156 };
157
158 #define MLX5E_TC_TABLE_NUM_GROUPS 4
159 #define MLX5E_TC_TABLE_MAX_GROUP_SIZE BIT(18)
160
161 struct mlx5e_tc_attr_to_reg_mapping mlx5e_tc_attr_to_reg_mappings[] = {
162 [CHAIN_TO_REG] = {
163 .mfield = MLX5_ACTION_IN_FIELD_METADATA_REG_C_0,
164 .moffset = 0,
165 .mlen = 2,
166 },
167 [TUNNEL_TO_REG] = {
168 .mfield = MLX5_ACTION_IN_FIELD_METADATA_REG_C_1,
169 .moffset = 1,
170 .mlen = 3,
171 .soffset = MLX5_BYTE_OFF(fte_match_param,
172 misc_parameters_2.metadata_reg_c_1),
173 },
174 [ZONE_TO_REG] = zone_to_reg_ct,
175 [ZONE_RESTORE_TO_REG] = zone_restore_to_reg_ct,
176 [CTSTATE_TO_REG] = ctstate_to_reg_ct,
177 [MARK_TO_REG] = mark_to_reg_ct,
178 [LABELS_TO_REG] = labels_to_reg_ct,
179 [FTEID_TO_REG] = fteid_to_reg_ct,
180 /* For NIC rules we store the retore metadata directly
181 * into reg_b that is passed to SW since we don't
182 * jump between steering domains.
183 */
184 [NIC_CHAIN_TO_REG] = {
185 .mfield = MLX5_ACTION_IN_FIELD_METADATA_REG_B,
186 .moffset = 0,
187 .mlen = 2,
188 },
189 [NIC_ZONE_RESTORE_TO_REG] = nic_zone_restore_to_reg_ct,
190 };
191
192 static void mlx5e_put_flow_tunnel_id(struct mlx5e_tc_flow *flow);
193
194 void
mlx5e_tc_match_to_reg_match(struct mlx5_flow_spec * spec,enum mlx5e_tc_attr_to_reg type,u32 data,u32 mask)195 mlx5e_tc_match_to_reg_match(struct mlx5_flow_spec *spec,
196 enum mlx5e_tc_attr_to_reg type,
197 u32 data,
198 u32 mask)
199 {
200 int soffset = mlx5e_tc_attr_to_reg_mappings[type].soffset;
201 int match_len = mlx5e_tc_attr_to_reg_mappings[type].mlen;
202 void *headers_c = spec->match_criteria;
203 void *headers_v = spec->match_value;
204 void *fmask, *fval;
205
206 fmask = headers_c + soffset;
207 fval = headers_v + soffset;
208
209 mask = (__force u32)(cpu_to_be32(mask)) >> (32 - (match_len * 8));
210 data = (__force u32)(cpu_to_be32(data)) >> (32 - (match_len * 8));
211
212 memcpy(fmask, &mask, match_len);
213 memcpy(fval, &data, match_len);
214
215 spec->match_criteria_enable |= MLX5_MATCH_MISC_PARAMETERS_2;
216 }
217
218 void
mlx5e_tc_match_to_reg_get_match(struct mlx5_flow_spec * spec,enum mlx5e_tc_attr_to_reg type,u32 * data,u32 * mask)219 mlx5e_tc_match_to_reg_get_match(struct mlx5_flow_spec *spec,
220 enum mlx5e_tc_attr_to_reg type,
221 u32 *data,
222 u32 *mask)
223 {
224 int soffset = mlx5e_tc_attr_to_reg_mappings[type].soffset;
225 int match_len = mlx5e_tc_attr_to_reg_mappings[type].mlen;
226 void *headers_c = spec->match_criteria;
227 void *headers_v = spec->match_value;
228 void *fmask, *fval;
229
230 fmask = headers_c + soffset;
231 fval = headers_v + soffset;
232
233 memcpy(mask, fmask, match_len);
234 memcpy(data, fval, match_len);
235
236 *mask = be32_to_cpu((__force __be32)(*mask << (32 - (match_len * 8))));
237 *data = be32_to_cpu((__force __be32)(*data << (32 - (match_len * 8))));
238 }
239
240 int
mlx5e_tc_match_to_reg_set(struct mlx5_core_dev * mdev,struct mlx5e_tc_mod_hdr_acts * mod_hdr_acts,enum mlx5_flow_namespace_type ns,enum mlx5e_tc_attr_to_reg type,u32 data)241 mlx5e_tc_match_to_reg_set(struct mlx5_core_dev *mdev,
242 struct mlx5e_tc_mod_hdr_acts *mod_hdr_acts,
243 enum mlx5_flow_namespace_type ns,
244 enum mlx5e_tc_attr_to_reg type,
245 u32 data)
246 {
247 int moffset = mlx5e_tc_attr_to_reg_mappings[type].moffset;
248 int mfield = mlx5e_tc_attr_to_reg_mappings[type].mfield;
249 int mlen = mlx5e_tc_attr_to_reg_mappings[type].mlen;
250 char *modact;
251 int err;
252
253 err = alloc_mod_hdr_actions(mdev, ns, mod_hdr_acts);
254 if (err)
255 return err;
256
257 modact = mod_hdr_acts->actions +
258 (mod_hdr_acts->num_actions * MLX5_MH_ACT_SZ);
259
260 /* Firmware has 5bit length field and 0 means 32bits */
261 if (mlen == 4)
262 mlen = 0;
263
264 MLX5_SET(set_action_in, modact, action_type, MLX5_ACTION_TYPE_SET);
265 MLX5_SET(set_action_in, modact, field, mfield);
266 MLX5_SET(set_action_in, modact, offset, moffset * 8);
267 MLX5_SET(set_action_in, modact, length, mlen * 8);
268 MLX5_SET(set_action_in, modact, data, data);
269 mod_hdr_acts->num_actions++;
270
271 return 0;
272 }
273
274 #define esw_offloads_mode(esw) (mlx5_eswitch_mode(esw) == MLX5_ESWITCH_OFFLOADS)
275
276 static struct mlx5_tc_ct_priv *
get_ct_priv(struct mlx5e_priv * priv)277 get_ct_priv(struct mlx5e_priv *priv)
278 {
279 struct mlx5_eswitch *esw = priv->mdev->priv.eswitch;
280 struct mlx5_rep_uplink_priv *uplink_priv;
281 struct mlx5e_rep_priv *uplink_rpriv;
282
283 if (esw_offloads_mode(esw)) {
284 uplink_rpriv = mlx5_eswitch_get_uplink_priv(esw, REP_ETH);
285 uplink_priv = &uplink_rpriv->uplink_priv;
286
287 return uplink_priv->ct_priv;
288 }
289
290 return priv->fs.tc.ct;
291 }
292
293 struct mlx5_flow_handle *
mlx5_tc_rule_insert(struct mlx5e_priv * priv,struct mlx5_flow_spec * spec,struct mlx5_flow_attr * attr)294 mlx5_tc_rule_insert(struct mlx5e_priv *priv,
295 struct mlx5_flow_spec *spec,
296 struct mlx5_flow_attr *attr)
297 {
298 struct mlx5_eswitch *esw = priv->mdev->priv.eswitch;
299
300 if (esw_offloads_mode(esw))
301 return mlx5_eswitch_add_offloaded_rule(esw, spec, attr);
302
303 return mlx5e_add_offloaded_nic_rule(priv, spec, attr);
304 }
305
306 void
mlx5_tc_rule_delete(struct mlx5e_priv * priv,struct mlx5_flow_handle * rule,struct mlx5_flow_attr * attr)307 mlx5_tc_rule_delete(struct mlx5e_priv *priv,
308 struct mlx5_flow_handle *rule,
309 struct mlx5_flow_attr *attr)
310 {
311 struct mlx5_eswitch *esw = priv->mdev->priv.eswitch;
312
313 if (esw_offloads_mode(esw)) {
314 mlx5_eswitch_del_offloaded_rule(esw, rule, attr);
315
316 return;
317 }
318
319 mlx5e_del_offloaded_nic_rule(priv, rule, attr);
320 }
321
322 struct mlx5e_hairpin {
323 struct mlx5_hairpin *pair;
324
325 struct mlx5_core_dev *func_mdev;
326 struct mlx5e_priv *func_priv;
327 u32 tdn;
328 u32 tirn;
329
330 int num_channels;
331 struct mlx5e_rqt indir_rqt;
332 u32 indir_tirn[MLX5E_NUM_INDIR_TIRS];
333 struct mlx5e_ttc_table ttc;
334 };
335
336 struct mlx5e_hairpin_entry {
337 /* a node of a hash table which keeps all the hairpin entries */
338 struct hlist_node hairpin_hlist;
339
340 /* protects flows list */
341 spinlock_t flows_lock;
342 /* flows sharing the same hairpin */
343 struct list_head flows;
344 /* hpe's that were not fully initialized when dead peer update event
345 * function traversed them.
346 */
347 struct list_head dead_peer_wait_list;
348
349 u16 peer_vhca_id;
350 u8 prio;
351 struct mlx5e_hairpin *hp;
352 refcount_t refcnt;
353 struct completion res_ready;
354 };
355
356 static void mlx5e_tc_del_flow(struct mlx5e_priv *priv,
357 struct mlx5e_tc_flow *flow);
358
mlx5e_flow_get(struct mlx5e_tc_flow * flow)359 static struct mlx5e_tc_flow *mlx5e_flow_get(struct mlx5e_tc_flow *flow)
360 {
361 if (!flow || !refcount_inc_not_zero(&flow->refcnt))
362 return ERR_PTR(-EINVAL);
363 return flow;
364 }
365
mlx5e_flow_put(struct mlx5e_priv * priv,struct mlx5e_tc_flow * flow)366 static void mlx5e_flow_put(struct mlx5e_priv *priv,
367 struct mlx5e_tc_flow *flow)
368 {
369 if (refcount_dec_and_test(&flow->refcnt)) {
370 mlx5e_tc_del_flow(priv, flow);
371 kfree_rcu(flow, rcu_head);
372 }
373 }
374
__flow_flag_set(struct mlx5e_tc_flow * flow,unsigned long flag)375 static void __flow_flag_set(struct mlx5e_tc_flow *flow, unsigned long flag)
376 {
377 /* Complete all memory stores before setting bit. */
378 smp_mb__before_atomic();
379 set_bit(flag, &flow->flags);
380 }
381
382 #define flow_flag_set(flow, flag) __flow_flag_set(flow, MLX5E_TC_FLOW_FLAG_##flag)
383
__flow_flag_test_and_set(struct mlx5e_tc_flow * flow,unsigned long flag)384 static bool __flow_flag_test_and_set(struct mlx5e_tc_flow *flow,
385 unsigned long flag)
386 {
387 /* test_and_set_bit() provides all necessary barriers */
388 return test_and_set_bit(flag, &flow->flags);
389 }
390
391 #define flow_flag_test_and_set(flow, flag) \
392 __flow_flag_test_and_set(flow, \
393 MLX5E_TC_FLOW_FLAG_##flag)
394
__flow_flag_clear(struct mlx5e_tc_flow * flow,unsigned long flag)395 static void __flow_flag_clear(struct mlx5e_tc_flow *flow, unsigned long flag)
396 {
397 /* Complete all memory stores before clearing bit. */
398 smp_mb__before_atomic();
399 clear_bit(flag, &flow->flags);
400 }
401
402 #define flow_flag_clear(flow, flag) __flow_flag_clear(flow, \
403 MLX5E_TC_FLOW_FLAG_##flag)
404
__flow_flag_test(struct mlx5e_tc_flow * flow,unsigned long flag)405 static bool __flow_flag_test(struct mlx5e_tc_flow *flow, unsigned long flag)
406 {
407 bool ret = test_bit(flag, &flow->flags);
408
409 /* Read fields of flow structure only after checking flags. */
410 smp_mb__after_atomic();
411 return ret;
412 }
413
414 #define flow_flag_test(flow, flag) __flow_flag_test(flow, \
415 MLX5E_TC_FLOW_FLAG_##flag)
416
mlx5e_is_eswitch_flow(struct mlx5e_tc_flow * flow)417 bool mlx5e_is_eswitch_flow(struct mlx5e_tc_flow *flow)
418 {
419 return flow_flag_test(flow, ESWITCH);
420 }
421
mlx5e_is_ft_flow(struct mlx5e_tc_flow * flow)422 static bool mlx5e_is_ft_flow(struct mlx5e_tc_flow *flow)
423 {
424 return flow_flag_test(flow, FT);
425 }
426
mlx5e_is_offloaded_flow(struct mlx5e_tc_flow * flow)427 static bool mlx5e_is_offloaded_flow(struct mlx5e_tc_flow *flow)
428 {
429 return flow_flag_test(flow, OFFLOADED);
430 }
431
get_flow_name_space(struct mlx5e_tc_flow * flow)432 static int get_flow_name_space(struct mlx5e_tc_flow *flow)
433 {
434 return mlx5e_is_eswitch_flow(flow) ?
435 MLX5_FLOW_NAMESPACE_FDB : MLX5_FLOW_NAMESPACE_KERNEL;
436 }
437
438 static struct mod_hdr_tbl *
get_mod_hdr_table(struct mlx5e_priv * priv,struct mlx5e_tc_flow * flow)439 get_mod_hdr_table(struct mlx5e_priv *priv, struct mlx5e_tc_flow *flow)
440 {
441 struct mlx5_eswitch *esw = priv->mdev->priv.eswitch;
442
443 return get_flow_name_space(flow) == MLX5_FLOW_NAMESPACE_FDB ?
444 &esw->offloads.mod_hdr :
445 &priv->fs.tc.mod_hdr;
446 }
447
mlx5e_attach_mod_hdr(struct mlx5e_priv * priv,struct mlx5e_tc_flow * flow,struct mlx5e_tc_flow_parse_attr * parse_attr)448 static int mlx5e_attach_mod_hdr(struct mlx5e_priv *priv,
449 struct mlx5e_tc_flow *flow,
450 struct mlx5e_tc_flow_parse_attr *parse_attr)
451 {
452 struct mlx5_modify_hdr *modify_hdr;
453 struct mlx5e_mod_hdr_handle *mh;
454
455 mh = mlx5e_mod_hdr_attach(priv->mdev, get_mod_hdr_table(priv, flow),
456 get_flow_name_space(flow),
457 &parse_attr->mod_hdr_acts);
458 if (IS_ERR(mh))
459 return PTR_ERR(mh);
460
461 modify_hdr = mlx5e_mod_hdr_get(mh);
462 flow->attr->modify_hdr = modify_hdr;
463 flow->mh = mh;
464
465 return 0;
466 }
467
mlx5e_detach_mod_hdr(struct mlx5e_priv * priv,struct mlx5e_tc_flow * flow)468 static void mlx5e_detach_mod_hdr(struct mlx5e_priv *priv,
469 struct mlx5e_tc_flow *flow)
470 {
471 /* flow wasn't fully initialized */
472 if (!flow->mh)
473 return;
474
475 mlx5e_mod_hdr_detach(priv->mdev, get_mod_hdr_table(priv, flow),
476 flow->mh);
477 flow->mh = NULL;
478 }
479
480 static
mlx5e_hairpin_get_mdev(struct net * net,int ifindex)481 struct mlx5_core_dev *mlx5e_hairpin_get_mdev(struct net *net, int ifindex)
482 {
483 struct net_device *netdev;
484 struct mlx5e_priv *priv;
485
486 netdev = __dev_get_by_index(net, ifindex);
487 priv = netdev_priv(netdev);
488 return priv->mdev;
489 }
490
mlx5e_hairpin_create_transport(struct mlx5e_hairpin * hp)491 static int mlx5e_hairpin_create_transport(struct mlx5e_hairpin *hp)
492 {
493 u32 in[MLX5_ST_SZ_DW(create_tir_in)] = {};
494 void *tirc;
495 int err;
496
497 err = mlx5_core_alloc_transport_domain(hp->func_mdev, &hp->tdn);
498 if (err)
499 goto alloc_tdn_err;
500
501 tirc = MLX5_ADDR_OF(create_tir_in, in, ctx);
502
503 MLX5_SET(tirc, tirc, disp_type, MLX5_TIRC_DISP_TYPE_DIRECT);
504 MLX5_SET(tirc, tirc, inline_rqn, hp->pair->rqn[0]);
505 MLX5_SET(tirc, tirc, transport_domain, hp->tdn);
506
507 err = mlx5_core_create_tir(hp->func_mdev, in, &hp->tirn);
508 if (err)
509 goto create_tir_err;
510
511 return 0;
512
513 create_tir_err:
514 mlx5_core_dealloc_transport_domain(hp->func_mdev, hp->tdn);
515 alloc_tdn_err:
516 return err;
517 }
518
mlx5e_hairpin_destroy_transport(struct mlx5e_hairpin * hp)519 static void mlx5e_hairpin_destroy_transport(struct mlx5e_hairpin *hp)
520 {
521 mlx5_core_destroy_tir(hp->func_mdev, hp->tirn);
522 mlx5_core_dealloc_transport_domain(hp->func_mdev, hp->tdn);
523 }
524
mlx5e_hairpin_fill_rqt_rqns(struct mlx5e_hairpin * hp,void * rqtc)525 static void mlx5e_hairpin_fill_rqt_rqns(struct mlx5e_hairpin *hp, void *rqtc)
526 {
527 u32 indirection_rqt[MLX5E_INDIR_RQT_SIZE], rqn;
528 struct mlx5e_priv *priv = hp->func_priv;
529 int i, ix, sz = MLX5E_INDIR_RQT_SIZE;
530
531 mlx5e_build_default_indir_rqt(indirection_rqt, sz,
532 hp->num_channels);
533
534 for (i = 0; i < sz; i++) {
535 ix = i;
536 if (priv->rss_params.hfunc == ETH_RSS_HASH_XOR)
537 ix = mlx5e_bits_invert(i, ilog2(sz));
538 ix = indirection_rqt[ix];
539 rqn = hp->pair->rqn[ix];
540 MLX5_SET(rqtc, rqtc, rq_num[i], rqn);
541 }
542 }
543
mlx5e_hairpin_create_indirect_rqt(struct mlx5e_hairpin * hp)544 static int mlx5e_hairpin_create_indirect_rqt(struct mlx5e_hairpin *hp)
545 {
546 int inlen, err, sz = MLX5E_INDIR_RQT_SIZE;
547 struct mlx5e_priv *priv = hp->func_priv;
548 struct mlx5_core_dev *mdev = priv->mdev;
549 void *rqtc;
550 u32 *in;
551
552 inlen = MLX5_ST_SZ_BYTES(create_rqt_in) + sizeof(u32) * sz;
553 in = kvzalloc(inlen, GFP_KERNEL);
554 if (!in)
555 return -ENOMEM;
556
557 rqtc = MLX5_ADDR_OF(create_rqt_in, in, rqt_context);
558
559 MLX5_SET(rqtc, rqtc, rqt_actual_size, sz);
560 MLX5_SET(rqtc, rqtc, rqt_max_size, sz);
561
562 mlx5e_hairpin_fill_rqt_rqns(hp, rqtc);
563
564 err = mlx5_core_create_rqt(mdev, in, inlen, &hp->indir_rqt.rqtn);
565 if (!err)
566 hp->indir_rqt.enabled = true;
567
568 kvfree(in);
569 return err;
570 }
571
mlx5e_hairpin_create_indirect_tirs(struct mlx5e_hairpin * hp)572 static int mlx5e_hairpin_create_indirect_tirs(struct mlx5e_hairpin *hp)
573 {
574 struct mlx5e_priv *priv = hp->func_priv;
575 u32 in[MLX5_ST_SZ_DW(create_tir_in)];
576 int tt, i, err;
577 void *tirc;
578
579 for (tt = 0; tt < MLX5E_NUM_INDIR_TIRS; tt++) {
580 struct mlx5e_tirc_config ttconfig = mlx5e_tirc_get_default_config(tt);
581
582 memset(in, 0, MLX5_ST_SZ_BYTES(create_tir_in));
583 tirc = MLX5_ADDR_OF(create_tir_in, in, ctx);
584
585 MLX5_SET(tirc, tirc, transport_domain, hp->tdn);
586 MLX5_SET(tirc, tirc, disp_type, MLX5_TIRC_DISP_TYPE_INDIRECT);
587 MLX5_SET(tirc, tirc, indirect_table, hp->indir_rqt.rqtn);
588 mlx5e_build_indir_tir_ctx_hash(&priv->rss_params, &ttconfig, tirc, false);
589
590 err = mlx5_core_create_tir(hp->func_mdev, in,
591 &hp->indir_tirn[tt]);
592 if (err) {
593 mlx5_core_warn(hp->func_mdev, "create indirect tirs failed, %d\n", err);
594 goto err_destroy_tirs;
595 }
596 }
597 return 0;
598
599 err_destroy_tirs:
600 for (i = 0; i < tt; i++)
601 mlx5_core_destroy_tir(hp->func_mdev, hp->indir_tirn[i]);
602 return err;
603 }
604
mlx5e_hairpin_destroy_indirect_tirs(struct mlx5e_hairpin * hp)605 static void mlx5e_hairpin_destroy_indirect_tirs(struct mlx5e_hairpin *hp)
606 {
607 int tt;
608
609 for (tt = 0; tt < MLX5E_NUM_INDIR_TIRS; tt++)
610 mlx5_core_destroy_tir(hp->func_mdev, hp->indir_tirn[tt]);
611 }
612
mlx5e_hairpin_set_ttc_params(struct mlx5e_hairpin * hp,struct ttc_params * ttc_params)613 static void mlx5e_hairpin_set_ttc_params(struct mlx5e_hairpin *hp,
614 struct ttc_params *ttc_params)
615 {
616 struct mlx5_flow_table_attr *ft_attr = &ttc_params->ft_attr;
617 int tt;
618
619 memset(ttc_params, 0, sizeof(*ttc_params));
620
621 ttc_params->any_tt_tirn = hp->tirn;
622
623 for (tt = 0; tt < MLX5E_NUM_INDIR_TIRS; tt++)
624 ttc_params->indir_tirn[tt] = hp->indir_tirn[tt];
625
626 ft_attr->max_fte = MLX5E_TTC_TABLE_SIZE;
627 ft_attr->level = MLX5E_TC_TTC_FT_LEVEL;
628 ft_attr->prio = MLX5E_TC_PRIO;
629 }
630
mlx5e_hairpin_rss_init(struct mlx5e_hairpin * hp)631 static int mlx5e_hairpin_rss_init(struct mlx5e_hairpin *hp)
632 {
633 struct mlx5e_priv *priv = hp->func_priv;
634 struct ttc_params ttc_params;
635 int err;
636
637 err = mlx5e_hairpin_create_indirect_rqt(hp);
638 if (err)
639 return err;
640
641 err = mlx5e_hairpin_create_indirect_tirs(hp);
642 if (err)
643 goto err_create_indirect_tirs;
644
645 mlx5e_hairpin_set_ttc_params(hp, &ttc_params);
646 err = mlx5e_create_ttc_table(priv, &ttc_params, &hp->ttc);
647 if (err)
648 goto err_create_ttc_table;
649
650 netdev_dbg(priv->netdev, "add hairpin: using %d channels rss ttc table id %x\n",
651 hp->num_channels, hp->ttc.ft.t->id);
652
653 return 0;
654
655 err_create_ttc_table:
656 mlx5e_hairpin_destroy_indirect_tirs(hp);
657 err_create_indirect_tirs:
658 mlx5e_destroy_rqt(priv, &hp->indir_rqt);
659
660 return err;
661 }
662
mlx5e_hairpin_rss_cleanup(struct mlx5e_hairpin * hp)663 static void mlx5e_hairpin_rss_cleanup(struct mlx5e_hairpin *hp)
664 {
665 struct mlx5e_priv *priv = hp->func_priv;
666
667 mlx5e_destroy_ttc_table(priv, &hp->ttc);
668 mlx5e_hairpin_destroy_indirect_tirs(hp);
669 mlx5e_destroy_rqt(priv, &hp->indir_rqt);
670 }
671
672 static struct mlx5e_hairpin *
mlx5e_hairpin_create(struct mlx5e_priv * priv,struct mlx5_hairpin_params * params,int peer_ifindex)673 mlx5e_hairpin_create(struct mlx5e_priv *priv, struct mlx5_hairpin_params *params,
674 int peer_ifindex)
675 {
676 struct mlx5_core_dev *func_mdev, *peer_mdev;
677 struct mlx5e_hairpin *hp;
678 struct mlx5_hairpin *pair;
679 int err;
680
681 hp = kzalloc(sizeof(*hp), GFP_KERNEL);
682 if (!hp)
683 return ERR_PTR(-ENOMEM);
684
685 func_mdev = priv->mdev;
686 peer_mdev = mlx5e_hairpin_get_mdev(dev_net(priv->netdev), peer_ifindex);
687
688 pair = mlx5_core_hairpin_create(func_mdev, peer_mdev, params);
689 if (IS_ERR(pair)) {
690 err = PTR_ERR(pair);
691 goto create_pair_err;
692 }
693 hp->pair = pair;
694 hp->func_mdev = func_mdev;
695 hp->func_priv = priv;
696 hp->num_channels = params->num_channels;
697
698 err = mlx5e_hairpin_create_transport(hp);
699 if (err)
700 goto create_transport_err;
701
702 if (hp->num_channels > 1) {
703 err = mlx5e_hairpin_rss_init(hp);
704 if (err)
705 goto rss_init_err;
706 }
707
708 return hp;
709
710 rss_init_err:
711 mlx5e_hairpin_destroy_transport(hp);
712 create_transport_err:
713 mlx5_core_hairpin_destroy(hp->pair);
714 create_pair_err:
715 kfree(hp);
716 return ERR_PTR(err);
717 }
718
mlx5e_hairpin_destroy(struct mlx5e_hairpin * hp)719 static void mlx5e_hairpin_destroy(struct mlx5e_hairpin *hp)
720 {
721 if (hp->num_channels > 1)
722 mlx5e_hairpin_rss_cleanup(hp);
723 mlx5e_hairpin_destroy_transport(hp);
724 mlx5_core_hairpin_destroy(hp->pair);
725 kvfree(hp);
726 }
727
hash_hairpin_info(u16 peer_vhca_id,u8 prio)728 static inline u32 hash_hairpin_info(u16 peer_vhca_id, u8 prio)
729 {
730 return (peer_vhca_id << 16 | prio);
731 }
732
mlx5e_hairpin_get(struct mlx5e_priv * priv,u16 peer_vhca_id,u8 prio)733 static struct mlx5e_hairpin_entry *mlx5e_hairpin_get(struct mlx5e_priv *priv,
734 u16 peer_vhca_id, u8 prio)
735 {
736 struct mlx5e_hairpin_entry *hpe;
737 u32 hash_key = hash_hairpin_info(peer_vhca_id, prio);
738
739 hash_for_each_possible(priv->fs.tc.hairpin_tbl, hpe,
740 hairpin_hlist, hash_key) {
741 if (hpe->peer_vhca_id == peer_vhca_id && hpe->prio == prio) {
742 refcount_inc(&hpe->refcnt);
743 return hpe;
744 }
745 }
746
747 return NULL;
748 }
749
mlx5e_hairpin_put(struct mlx5e_priv * priv,struct mlx5e_hairpin_entry * hpe)750 static void mlx5e_hairpin_put(struct mlx5e_priv *priv,
751 struct mlx5e_hairpin_entry *hpe)
752 {
753 /* no more hairpin flows for us, release the hairpin pair */
754 if (!refcount_dec_and_mutex_lock(&hpe->refcnt, &priv->fs.tc.hairpin_tbl_lock))
755 return;
756 hash_del(&hpe->hairpin_hlist);
757 mutex_unlock(&priv->fs.tc.hairpin_tbl_lock);
758
759 if (!IS_ERR_OR_NULL(hpe->hp)) {
760 netdev_dbg(priv->netdev, "del hairpin: peer %s\n",
761 dev_name(hpe->hp->pair->peer_mdev->device));
762
763 mlx5e_hairpin_destroy(hpe->hp);
764 }
765
766 WARN_ON(!list_empty(&hpe->flows));
767 kfree(hpe);
768 }
769
770 #define UNKNOWN_MATCH_PRIO 8
771
mlx5e_hairpin_get_prio(struct mlx5e_priv * priv,struct mlx5_flow_spec * spec,u8 * match_prio,struct netlink_ext_ack * extack)772 static int mlx5e_hairpin_get_prio(struct mlx5e_priv *priv,
773 struct mlx5_flow_spec *spec, u8 *match_prio,
774 struct netlink_ext_ack *extack)
775 {
776 void *headers_c, *headers_v;
777 u8 prio_val, prio_mask = 0;
778 bool vlan_present;
779
780 #ifdef CONFIG_MLX5_CORE_EN_DCB
781 if (priv->dcbx_dp.trust_state != MLX5_QPTS_TRUST_PCP) {
782 NL_SET_ERR_MSG_MOD(extack,
783 "only PCP trust state supported for hairpin");
784 return -EOPNOTSUPP;
785 }
786 #endif
787 headers_c = MLX5_ADDR_OF(fte_match_param, spec->match_criteria, outer_headers);
788 headers_v = MLX5_ADDR_OF(fte_match_param, spec->match_value, outer_headers);
789
790 vlan_present = MLX5_GET(fte_match_set_lyr_2_4, headers_v, cvlan_tag);
791 if (vlan_present) {
792 prio_mask = MLX5_GET(fte_match_set_lyr_2_4, headers_c, first_prio);
793 prio_val = MLX5_GET(fte_match_set_lyr_2_4, headers_v, first_prio);
794 }
795
796 if (!vlan_present || !prio_mask) {
797 prio_val = UNKNOWN_MATCH_PRIO;
798 } else if (prio_mask != 0x7) {
799 NL_SET_ERR_MSG_MOD(extack,
800 "masked priority match not supported for hairpin");
801 return -EOPNOTSUPP;
802 }
803
804 *match_prio = prio_val;
805 return 0;
806 }
807
mlx5e_hairpin_flow_add(struct mlx5e_priv * priv,struct mlx5e_tc_flow * flow,struct mlx5e_tc_flow_parse_attr * parse_attr,struct netlink_ext_ack * extack)808 static int mlx5e_hairpin_flow_add(struct mlx5e_priv *priv,
809 struct mlx5e_tc_flow *flow,
810 struct mlx5e_tc_flow_parse_attr *parse_attr,
811 struct netlink_ext_ack *extack)
812 {
813 int peer_ifindex = parse_attr->mirred_ifindex[0];
814 struct mlx5_hairpin_params params;
815 struct mlx5_core_dev *peer_mdev;
816 struct mlx5e_hairpin_entry *hpe;
817 struct mlx5e_hairpin *hp;
818 u64 link_speed64;
819 u32 link_speed;
820 u8 match_prio;
821 u16 peer_id;
822 int err;
823
824 peer_mdev = mlx5e_hairpin_get_mdev(dev_net(priv->netdev), peer_ifindex);
825 if (!MLX5_CAP_GEN(priv->mdev, hairpin) || !MLX5_CAP_GEN(peer_mdev, hairpin)) {
826 NL_SET_ERR_MSG_MOD(extack, "hairpin is not supported");
827 return -EOPNOTSUPP;
828 }
829
830 peer_id = MLX5_CAP_GEN(peer_mdev, vhca_id);
831 err = mlx5e_hairpin_get_prio(priv, &parse_attr->spec, &match_prio,
832 extack);
833 if (err)
834 return err;
835
836 mutex_lock(&priv->fs.tc.hairpin_tbl_lock);
837 hpe = mlx5e_hairpin_get(priv, peer_id, match_prio);
838 if (hpe) {
839 mutex_unlock(&priv->fs.tc.hairpin_tbl_lock);
840 wait_for_completion(&hpe->res_ready);
841
842 if (IS_ERR(hpe->hp)) {
843 err = -EREMOTEIO;
844 goto out_err;
845 }
846 goto attach_flow;
847 }
848
849 hpe = kzalloc(sizeof(*hpe), GFP_KERNEL);
850 if (!hpe) {
851 mutex_unlock(&priv->fs.tc.hairpin_tbl_lock);
852 return -ENOMEM;
853 }
854
855 spin_lock_init(&hpe->flows_lock);
856 INIT_LIST_HEAD(&hpe->flows);
857 INIT_LIST_HEAD(&hpe->dead_peer_wait_list);
858 hpe->peer_vhca_id = peer_id;
859 hpe->prio = match_prio;
860 refcount_set(&hpe->refcnt, 1);
861 init_completion(&hpe->res_ready);
862
863 hash_add(priv->fs.tc.hairpin_tbl, &hpe->hairpin_hlist,
864 hash_hairpin_info(peer_id, match_prio));
865 mutex_unlock(&priv->fs.tc.hairpin_tbl_lock);
866
867 params.log_data_size = 15;
868 params.log_data_size = min_t(u8, params.log_data_size,
869 MLX5_CAP_GEN(priv->mdev, log_max_hairpin_wq_data_sz));
870 params.log_data_size = max_t(u8, params.log_data_size,
871 MLX5_CAP_GEN(priv->mdev, log_min_hairpin_wq_data_sz));
872
873 params.log_num_packets = params.log_data_size -
874 MLX5_MPWRQ_MIN_LOG_STRIDE_SZ(priv->mdev);
875 params.log_num_packets = min_t(u8, params.log_num_packets,
876 MLX5_CAP_GEN(priv->mdev, log_max_hairpin_num_packets));
877
878 params.q_counter = priv->q_counter;
879 /* set hairpin pair per each 50Gbs share of the link */
880 mlx5e_port_max_linkspeed(priv->mdev, &link_speed);
881 link_speed = max_t(u32, link_speed, 50000);
882 link_speed64 = link_speed;
883 do_div(link_speed64, 50000);
884 params.num_channels = link_speed64;
885
886 hp = mlx5e_hairpin_create(priv, ¶ms, peer_ifindex);
887 hpe->hp = hp;
888 complete_all(&hpe->res_ready);
889 if (IS_ERR(hp)) {
890 err = PTR_ERR(hp);
891 goto out_err;
892 }
893
894 netdev_dbg(priv->netdev, "add hairpin: tirn %x rqn %x peer %s sqn %x prio %d (log) data %d packets %d\n",
895 hp->tirn, hp->pair->rqn[0],
896 dev_name(hp->pair->peer_mdev->device),
897 hp->pair->sqn[0], match_prio, params.log_data_size, params.log_num_packets);
898
899 attach_flow:
900 if (hpe->hp->num_channels > 1) {
901 flow_flag_set(flow, HAIRPIN_RSS);
902 flow->attr->nic_attr->hairpin_ft = hpe->hp->ttc.ft.t;
903 } else {
904 flow->attr->nic_attr->hairpin_tirn = hpe->hp->tirn;
905 }
906
907 flow->hpe = hpe;
908 spin_lock(&hpe->flows_lock);
909 list_add(&flow->hairpin, &hpe->flows);
910 spin_unlock(&hpe->flows_lock);
911
912 return 0;
913
914 out_err:
915 mlx5e_hairpin_put(priv, hpe);
916 return err;
917 }
918
mlx5e_hairpin_flow_del(struct mlx5e_priv * priv,struct mlx5e_tc_flow * flow)919 static void mlx5e_hairpin_flow_del(struct mlx5e_priv *priv,
920 struct mlx5e_tc_flow *flow)
921 {
922 /* flow wasn't fully initialized */
923 if (!flow->hpe)
924 return;
925
926 spin_lock(&flow->hpe->flows_lock);
927 list_del(&flow->hairpin);
928 spin_unlock(&flow->hpe->flows_lock);
929
930 mlx5e_hairpin_put(priv, flow->hpe);
931 flow->hpe = NULL;
932 }
933
934 struct mlx5_flow_handle *
mlx5e_add_offloaded_nic_rule(struct mlx5e_priv * priv,struct mlx5_flow_spec * spec,struct mlx5_flow_attr * attr)935 mlx5e_add_offloaded_nic_rule(struct mlx5e_priv *priv,
936 struct mlx5_flow_spec *spec,
937 struct mlx5_flow_attr *attr)
938 {
939 struct mlx5_flow_context *flow_context = &spec->flow_context;
940 struct mlx5_fs_chains *nic_chains = nic_chains(priv);
941 struct mlx5_nic_flow_attr *nic_attr = attr->nic_attr;
942 struct mlx5e_tc_table *tc = &priv->fs.tc;
943 struct mlx5_flow_destination dest[2] = {};
944 struct mlx5_flow_act flow_act = {
945 .action = attr->action,
946 .flags = FLOW_ACT_NO_APPEND,
947 };
948 struct mlx5_flow_handle *rule;
949 struct mlx5_flow_table *ft;
950 int dest_ix = 0;
951
952 flow_context->flags |= FLOW_CONTEXT_HAS_TAG;
953 flow_context->flow_tag = nic_attr->flow_tag;
954
955 if (attr->dest_ft) {
956 dest[dest_ix].type = MLX5_FLOW_DESTINATION_TYPE_FLOW_TABLE;
957 dest[dest_ix].ft = attr->dest_ft;
958 dest_ix++;
959 } else if (nic_attr->hairpin_ft) {
960 dest[dest_ix].type = MLX5_FLOW_DESTINATION_TYPE_FLOW_TABLE;
961 dest[dest_ix].ft = nic_attr->hairpin_ft;
962 dest_ix++;
963 } else if (nic_attr->hairpin_tirn) {
964 dest[dest_ix].type = MLX5_FLOW_DESTINATION_TYPE_TIR;
965 dest[dest_ix].tir_num = nic_attr->hairpin_tirn;
966 dest_ix++;
967 } else if (attr->action & MLX5_FLOW_CONTEXT_ACTION_FWD_DEST) {
968 dest[dest_ix].type = MLX5_FLOW_DESTINATION_TYPE_FLOW_TABLE;
969 if (attr->dest_chain) {
970 dest[dest_ix].ft = mlx5_chains_get_table(nic_chains,
971 attr->dest_chain, 1,
972 MLX5E_TC_FT_LEVEL);
973 if (IS_ERR(dest[dest_ix].ft))
974 return ERR_CAST(dest[dest_ix].ft);
975 } else {
976 dest[dest_ix].ft = priv->fs.vlan.ft.t;
977 }
978 dest_ix++;
979 }
980
981 if (dest[0].type == MLX5_FLOW_DESTINATION_TYPE_FLOW_TABLE &&
982 MLX5_CAP_FLOWTABLE_NIC_RX(priv->mdev, ignore_flow_level))
983 flow_act.flags |= FLOW_ACT_IGNORE_FLOW_LEVEL;
984
985 if (flow_act.action & MLX5_FLOW_CONTEXT_ACTION_COUNT) {
986 dest[dest_ix].type = MLX5_FLOW_DESTINATION_TYPE_COUNTER;
987 dest[dest_ix].counter_id = mlx5_fc_id(attr->counter);
988 dest_ix++;
989 }
990
991 if (attr->action & MLX5_FLOW_CONTEXT_ACTION_MOD_HDR)
992 flow_act.modify_hdr = attr->modify_hdr;
993
994 mutex_lock(&tc->t_lock);
995 if (IS_ERR_OR_NULL(tc->t)) {
996 /* Create the root table here if doesn't exist yet */
997 tc->t =
998 mlx5_chains_get_table(nic_chains, 0, 1, MLX5E_TC_FT_LEVEL);
999
1000 if (IS_ERR(tc->t)) {
1001 mutex_unlock(&tc->t_lock);
1002 netdev_err(priv->netdev,
1003 "Failed to create tc offload table\n");
1004 rule = ERR_CAST(priv->fs.tc.t);
1005 goto err_ft_get;
1006 }
1007 }
1008 mutex_unlock(&tc->t_lock);
1009
1010 if (attr->chain || attr->prio)
1011 ft = mlx5_chains_get_table(nic_chains,
1012 attr->chain, attr->prio,
1013 MLX5E_TC_FT_LEVEL);
1014 else
1015 ft = attr->ft;
1016
1017 if (IS_ERR(ft)) {
1018 rule = ERR_CAST(ft);
1019 goto err_ft_get;
1020 }
1021
1022 if (attr->outer_match_level != MLX5_MATCH_NONE)
1023 spec->match_criteria_enable |= MLX5_MATCH_OUTER_HEADERS;
1024
1025 rule = mlx5_add_flow_rules(ft, spec,
1026 &flow_act, dest, dest_ix);
1027 if (IS_ERR(rule))
1028 goto err_rule;
1029
1030 return rule;
1031
1032 err_rule:
1033 if (attr->chain || attr->prio)
1034 mlx5_chains_put_table(nic_chains,
1035 attr->chain, attr->prio,
1036 MLX5E_TC_FT_LEVEL);
1037 err_ft_get:
1038 if (attr->dest_chain)
1039 mlx5_chains_put_table(nic_chains,
1040 attr->dest_chain, 1,
1041 MLX5E_TC_FT_LEVEL);
1042
1043 return ERR_CAST(rule);
1044 }
1045
1046 static int
mlx5e_tc_add_nic_flow(struct mlx5e_priv * priv,struct mlx5e_tc_flow_parse_attr * parse_attr,struct mlx5e_tc_flow * flow,struct netlink_ext_ack * extack)1047 mlx5e_tc_add_nic_flow(struct mlx5e_priv *priv,
1048 struct mlx5e_tc_flow_parse_attr *parse_attr,
1049 struct mlx5e_tc_flow *flow,
1050 struct netlink_ext_ack *extack)
1051 {
1052 struct mlx5_flow_attr *attr = flow->attr;
1053 struct mlx5_core_dev *dev = priv->mdev;
1054 struct mlx5_fc *counter = NULL;
1055 int err;
1056
1057 if (flow_flag_test(flow, HAIRPIN)) {
1058 err = mlx5e_hairpin_flow_add(priv, flow, parse_attr, extack);
1059 if (err)
1060 return err;
1061 }
1062
1063 if (attr->action & MLX5_FLOW_CONTEXT_ACTION_COUNT) {
1064 counter = mlx5_fc_create(dev, true);
1065 if (IS_ERR(counter))
1066 return PTR_ERR(counter);
1067
1068 attr->counter = counter;
1069 }
1070
1071 if (attr->action & MLX5_FLOW_CONTEXT_ACTION_MOD_HDR) {
1072 err = mlx5e_attach_mod_hdr(priv, flow, parse_attr);
1073 dealloc_mod_hdr_actions(&parse_attr->mod_hdr_acts);
1074 if (err)
1075 return err;
1076 }
1077
1078 if (flow_flag_test(flow, CT))
1079 flow->rule[0] = mlx5_tc_ct_flow_offload(get_ct_priv(priv), flow, &parse_attr->spec,
1080 attr, &parse_attr->mod_hdr_acts);
1081 else
1082 flow->rule[0] = mlx5e_add_offloaded_nic_rule(priv, &parse_attr->spec,
1083 attr);
1084
1085 return PTR_ERR_OR_ZERO(flow->rule[0]);
1086 }
1087
mlx5e_del_offloaded_nic_rule(struct mlx5e_priv * priv,struct mlx5_flow_handle * rule,struct mlx5_flow_attr * attr)1088 void mlx5e_del_offloaded_nic_rule(struct mlx5e_priv *priv,
1089 struct mlx5_flow_handle *rule,
1090 struct mlx5_flow_attr *attr)
1091 {
1092 struct mlx5_fs_chains *nic_chains = nic_chains(priv);
1093
1094 mlx5_del_flow_rules(rule);
1095
1096 if (attr->chain || attr->prio)
1097 mlx5_chains_put_table(nic_chains, attr->chain, attr->prio,
1098 MLX5E_TC_FT_LEVEL);
1099
1100 if (attr->dest_chain)
1101 mlx5_chains_put_table(nic_chains, attr->dest_chain, 1,
1102 MLX5E_TC_FT_LEVEL);
1103 }
1104
mlx5e_tc_del_nic_flow(struct mlx5e_priv * priv,struct mlx5e_tc_flow * flow)1105 static void mlx5e_tc_del_nic_flow(struct mlx5e_priv *priv,
1106 struct mlx5e_tc_flow *flow)
1107 {
1108 struct mlx5_flow_attr *attr = flow->attr;
1109 struct mlx5e_tc_table *tc = &priv->fs.tc;
1110
1111 flow_flag_clear(flow, OFFLOADED);
1112
1113 if (flow_flag_test(flow, CT))
1114 mlx5_tc_ct_delete_flow(get_ct_priv(flow->priv), flow, attr);
1115 else if (!IS_ERR_OR_NULL(flow->rule[0]))
1116 mlx5e_del_offloaded_nic_rule(priv, flow->rule[0], attr);
1117
1118 /* Remove root table if no rules are left to avoid
1119 * extra steering hops.
1120 */
1121 mutex_lock(&priv->fs.tc.t_lock);
1122 if (!mlx5e_tc_num_filters(priv, MLX5_TC_FLAG(NIC_OFFLOAD)) &&
1123 !IS_ERR_OR_NULL(tc->t)) {
1124 mlx5_chains_put_table(nic_chains(priv), 0, 1, MLX5E_TC_FT_LEVEL);
1125 priv->fs.tc.t = NULL;
1126 }
1127 mutex_unlock(&priv->fs.tc.t_lock);
1128
1129 kvfree(attr->parse_attr);
1130
1131 if (attr->action & MLX5_FLOW_CONTEXT_ACTION_MOD_HDR)
1132 mlx5e_detach_mod_hdr(priv, flow);
1133
1134 mlx5_fc_destroy(priv->mdev, attr->counter);
1135
1136 if (flow_flag_test(flow, HAIRPIN))
1137 mlx5e_hairpin_flow_del(priv, flow);
1138
1139 kfree(flow->attr);
1140 }
1141
1142 static void mlx5e_detach_encap(struct mlx5e_priv *priv,
1143 struct mlx5e_tc_flow *flow, int out_index);
1144
1145 static int mlx5e_attach_encap(struct mlx5e_priv *priv,
1146 struct mlx5e_tc_flow *flow,
1147 struct net_device *mirred_dev,
1148 int out_index,
1149 struct netlink_ext_ack *extack,
1150 struct net_device **encap_dev,
1151 bool *encap_valid);
1152 static int mlx5e_attach_decap(struct mlx5e_priv *priv,
1153 struct mlx5e_tc_flow *flow,
1154 struct netlink_ext_ack *extack);
1155 static void mlx5e_detach_decap(struct mlx5e_priv *priv,
1156 struct mlx5e_tc_flow *flow);
1157
1158 static struct mlx5_flow_handle *
mlx5e_tc_offload_fdb_rules(struct mlx5_eswitch * esw,struct mlx5e_tc_flow * flow,struct mlx5_flow_spec * spec,struct mlx5_flow_attr * attr)1159 mlx5e_tc_offload_fdb_rules(struct mlx5_eswitch *esw,
1160 struct mlx5e_tc_flow *flow,
1161 struct mlx5_flow_spec *spec,
1162 struct mlx5_flow_attr *attr)
1163 {
1164 struct mlx5e_tc_mod_hdr_acts *mod_hdr_acts;
1165 struct mlx5_flow_handle *rule;
1166
1167 if (flow_flag_test(flow, CT)) {
1168 mod_hdr_acts = &attr->parse_attr->mod_hdr_acts;
1169
1170 return mlx5_tc_ct_flow_offload(get_ct_priv(flow->priv),
1171 flow, spec, attr,
1172 mod_hdr_acts);
1173 }
1174
1175 rule = mlx5_eswitch_add_offloaded_rule(esw, spec, attr);
1176 if (IS_ERR(rule))
1177 return rule;
1178
1179 if (attr->esw_attr->split_count) {
1180 flow->rule[1] = mlx5_eswitch_add_fwd_rule(esw, spec, attr);
1181 if (IS_ERR(flow->rule[1])) {
1182 mlx5_eswitch_del_offloaded_rule(esw, rule, attr);
1183 return flow->rule[1];
1184 }
1185 }
1186
1187 return rule;
1188 }
1189
1190 static void
mlx5e_tc_unoffload_fdb_rules(struct mlx5_eswitch * esw,struct mlx5e_tc_flow * flow,struct mlx5_flow_attr * attr)1191 mlx5e_tc_unoffload_fdb_rules(struct mlx5_eswitch *esw,
1192 struct mlx5e_tc_flow *flow,
1193 struct mlx5_flow_attr *attr)
1194 {
1195 flow_flag_clear(flow, OFFLOADED);
1196
1197 if (flow_flag_test(flow, CT)) {
1198 mlx5_tc_ct_delete_flow(get_ct_priv(flow->priv), flow, attr);
1199 return;
1200 }
1201
1202 if (attr->esw_attr->split_count)
1203 mlx5_eswitch_del_fwd_rule(esw, flow->rule[1], attr);
1204
1205 mlx5_eswitch_del_offloaded_rule(esw, flow->rule[0], attr);
1206 }
1207
1208 static struct mlx5_flow_handle *
mlx5e_tc_offload_to_slow_path(struct mlx5_eswitch * esw,struct mlx5e_tc_flow * flow,struct mlx5_flow_spec * spec)1209 mlx5e_tc_offload_to_slow_path(struct mlx5_eswitch *esw,
1210 struct mlx5e_tc_flow *flow,
1211 struct mlx5_flow_spec *spec)
1212 {
1213 struct mlx5_flow_attr *slow_attr;
1214 struct mlx5_flow_handle *rule;
1215
1216 slow_attr = mlx5_alloc_flow_attr(MLX5_FLOW_NAMESPACE_FDB);
1217 if (!slow_attr)
1218 return ERR_PTR(-ENOMEM);
1219
1220 memcpy(slow_attr, flow->attr, ESW_FLOW_ATTR_SZ);
1221 slow_attr->action = MLX5_FLOW_CONTEXT_ACTION_FWD_DEST;
1222 slow_attr->esw_attr->split_count = 0;
1223 slow_attr->flags |= MLX5_ESW_ATTR_FLAG_SLOW_PATH;
1224
1225 rule = mlx5e_tc_offload_fdb_rules(esw, flow, spec, slow_attr);
1226 if (!IS_ERR(rule))
1227 flow_flag_set(flow, SLOW);
1228
1229 kfree(slow_attr);
1230
1231 return rule;
1232 }
1233
1234 static void
mlx5e_tc_unoffload_from_slow_path(struct mlx5_eswitch * esw,struct mlx5e_tc_flow * flow)1235 mlx5e_tc_unoffload_from_slow_path(struct mlx5_eswitch *esw,
1236 struct mlx5e_tc_flow *flow)
1237 {
1238 struct mlx5_flow_attr *slow_attr;
1239
1240 slow_attr = mlx5_alloc_flow_attr(MLX5_FLOW_NAMESPACE_FDB);
1241 if (!slow_attr) {
1242 mlx5_core_warn(flow->priv->mdev, "Unable to alloc attr to unoffload slow path rule\n");
1243 return;
1244 }
1245
1246 memcpy(slow_attr, flow->attr, ESW_FLOW_ATTR_SZ);
1247 slow_attr->action = MLX5_FLOW_CONTEXT_ACTION_FWD_DEST;
1248 slow_attr->esw_attr->split_count = 0;
1249 slow_attr->flags |= MLX5_ESW_ATTR_FLAG_SLOW_PATH;
1250 mlx5e_tc_unoffload_fdb_rules(esw, flow, slow_attr);
1251 flow_flag_clear(flow, SLOW);
1252 kfree(slow_attr);
1253 }
1254
1255 /* Caller must obtain uplink_priv->unready_flows_lock mutex before calling this
1256 * function.
1257 */
unready_flow_add(struct mlx5e_tc_flow * flow,struct list_head * unready_flows)1258 static void unready_flow_add(struct mlx5e_tc_flow *flow,
1259 struct list_head *unready_flows)
1260 {
1261 flow_flag_set(flow, NOT_READY);
1262 list_add_tail(&flow->unready, unready_flows);
1263 }
1264
1265 /* Caller must obtain uplink_priv->unready_flows_lock mutex before calling this
1266 * function.
1267 */
unready_flow_del(struct mlx5e_tc_flow * flow)1268 static void unready_flow_del(struct mlx5e_tc_flow *flow)
1269 {
1270 list_del(&flow->unready);
1271 flow_flag_clear(flow, NOT_READY);
1272 }
1273
add_unready_flow(struct mlx5e_tc_flow * flow)1274 static void add_unready_flow(struct mlx5e_tc_flow *flow)
1275 {
1276 struct mlx5_rep_uplink_priv *uplink_priv;
1277 struct mlx5e_rep_priv *rpriv;
1278 struct mlx5_eswitch *esw;
1279
1280 esw = flow->priv->mdev->priv.eswitch;
1281 rpriv = mlx5_eswitch_get_uplink_priv(esw, REP_ETH);
1282 uplink_priv = &rpriv->uplink_priv;
1283
1284 mutex_lock(&uplink_priv->unready_flows_lock);
1285 unready_flow_add(flow, &uplink_priv->unready_flows);
1286 mutex_unlock(&uplink_priv->unready_flows_lock);
1287 }
1288
remove_unready_flow(struct mlx5e_tc_flow * flow)1289 static void remove_unready_flow(struct mlx5e_tc_flow *flow)
1290 {
1291 struct mlx5_rep_uplink_priv *uplink_priv;
1292 struct mlx5e_rep_priv *rpriv;
1293 struct mlx5_eswitch *esw;
1294
1295 esw = flow->priv->mdev->priv.eswitch;
1296 rpriv = mlx5_eswitch_get_uplink_priv(esw, REP_ETH);
1297 uplink_priv = &rpriv->uplink_priv;
1298
1299 mutex_lock(&uplink_priv->unready_flows_lock);
1300 unready_flow_del(flow);
1301 mutex_unlock(&uplink_priv->unready_flows_lock);
1302 }
1303
1304 static int
mlx5e_tc_add_fdb_flow(struct mlx5e_priv * priv,struct mlx5e_tc_flow * flow,struct netlink_ext_ack * extack)1305 mlx5e_tc_add_fdb_flow(struct mlx5e_priv *priv,
1306 struct mlx5e_tc_flow *flow,
1307 struct netlink_ext_ack *extack)
1308 {
1309 struct mlx5_eswitch *esw = priv->mdev->priv.eswitch;
1310 struct net_device *out_dev, *encap_dev = NULL;
1311 struct mlx5e_tc_flow_parse_attr *parse_attr;
1312 struct mlx5_flow_attr *attr = flow->attr;
1313 struct mlx5_esw_flow_attr *esw_attr;
1314 struct mlx5_fc *counter = NULL;
1315 struct mlx5e_rep_priv *rpriv;
1316 struct mlx5e_priv *out_priv;
1317 bool encap_valid = true;
1318 u32 max_prio, max_chain;
1319 int err = 0;
1320 int out_index;
1321
1322 if (!mlx5_chains_prios_supported(esw_chains(esw)) && attr->prio != 1) {
1323 NL_SET_ERR_MSG_MOD(extack,
1324 "E-switch priorities unsupported, upgrade FW");
1325 return -EOPNOTSUPP;
1326 }
1327
1328 /* We check chain range only for tc flows.
1329 * For ft flows, we checked attr->chain was originally 0 and set it to
1330 * FDB_FT_CHAIN which is outside tc range.
1331 * See mlx5e_rep_setup_ft_cb().
1332 */
1333 max_chain = mlx5_chains_get_chain_range(esw_chains(esw));
1334 if (!mlx5e_is_ft_flow(flow) && attr->chain > max_chain) {
1335 NL_SET_ERR_MSG_MOD(extack,
1336 "Requested chain is out of supported range");
1337 return -EOPNOTSUPP;
1338 }
1339
1340 max_prio = mlx5_chains_get_prio_range(esw_chains(esw));
1341 if (attr->prio > max_prio) {
1342 NL_SET_ERR_MSG_MOD(extack,
1343 "Requested priority is out of supported range");
1344 return -EOPNOTSUPP;
1345 }
1346
1347 if (flow_flag_test(flow, L3_TO_L2_DECAP)) {
1348 err = mlx5e_attach_decap(priv, flow, extack);
1349 if (err)
1350 return err;
1351 }
1352
1353 parse_attr = attr->parse_attr;
1354 esw_attr = attr->esw_attr;
1355
1356 for (out_index = 0; out_index < MLX5_MAX_FLOW_FWD_VPORTS; out_index++) {
1357 int mirred_ifindex;
1358
1359 if (!(esw_attr->dests[out_index].flags & MLX5_ESW_DEST_ENCAP))
1360 continue;
1361
1362 mirred_ifindex = parse_attr->mirred_ifindex[out_index];
1363 out_dev = __dev_get_by_index(dev_net(priv->netdev),
1364 mirred_ifindex);
1365 err = mlx5e_attach_encap(priv, flow, out_dev, out_index,
1366 extack, &encap_dev, &encap_valid);
1367 if (err)
1368 return err;
1369
1370 out_priv = netdev_priv(encap_dev);
1371 rpriv = out_priv->ppriv;
1372 esw_attr->dests[out_index].rep = rpriv->rep;
1373 esw_attr->dests[out_index].mdev = out_priv->mdev;
1374 }
1375
1376 err = mlx5_eswitch_add_vlan_action(esw, attr);
1377 if (err)
1378 return err;
1379
1380 if (attr->action & MLX5_FLOW_CONTEXT_ACTION_MOD_HDR &&
1381 !(attr->ct_attr.ct_action & TCA_CT_ACT_CLEAR)) {
1382 err = mlx5e_attach_mod_hdr(priv, flow, parse_attr);
1383 dealloc_mod_hdr_actions(&parse_attr->mod_hdr_acts);
1384 if (err)
1385 return err;
1386 }
1387
1388 if (attr->action & MLX5_FLOW_CONTEXT_ACTION_COUNT) {
1389 counter = mlx5_fc_create(esw_attr->counter_dev, true);
1390 if (IS_ERR(counter))
1391 return PTR_ERR(counter);
1392
1393 attr->counter = counter;
1394 }
1395
1396 /* we get here if one of the following takes place:
1397 * (1) there's no error
1398 * (2) there's an encap action and we don't have valid neigh
1399 */
1400 if (!encap_valid)
1401 flow->rule[0] = mlx5e_tc_offload_to_slow_path(esw, flow, &parse_attr->spec);
1402 else
1403 flow->rule[0] = mlx5e_tc_offload_fdb_rules(esw, flow, &parse_attr->spec, attr);
1404
1405 if (IS_ERR(flow->rule[0]))
1406 return PTR_ERR(flow->rule[0]);
1407 else
1408 flow_flag_set(flow, OFFLOADED);
1409
1410 return 0;
1411 }
1412
mlx5_flow_has_geneve_opt(struct mlx5e_tc_flow * flow)1413 static bool mlx5_flow_has_geneve_opt(struct mlx5e_tc_flow *flow)
1414 {
1415 struct mlx5_flow_spec *spec = &flow->attr->parse_attr->spec;
1416 void *headers_v = MLX5_ADDR_OF(fte_match_param,
1417 spec->match_value,
1418 misc_parameters_3);
1419 u32 geneve_tlv_opt_0_data = MLX5_GET(fte_match_set_misc3,
1420 headers_v,
1421 geneve_tlv_option_0_data);
1422
1423 return !!geneve_tlv_opt_0_data;
1424 }
1425
mlx5e_tc_del_fdb_flow(struct mlx5e_priv * priv,struct mlx5e_tc_flow * flow)1426 static void mlx5e_tc_del_fdb_flow(struct mlx5e_priv *priv,
1427 struct mlx5e_tc_flow *flow)
1428 {
1429 struct mlx5_eswitch *esw = priv->mdev->priv.eswitch;
1430 struct mlx5_flow_attr *attr = flow->attr;
1431 int out_index;
1432
1433 mlx5e_put_flow_tunnel_id(flow);
1434
1435 if (flow_flag_test(flow, NOT_READY))
1436 remove_unready_flow(flow);
1437
1438 if (mlx5e_is_offloaded_flow(flow)) {
1439 if (flow_flag_test(flow, SLOW))
1440 mlx5e_tc_unoffload_from_slow_path(esw, flow);
1441 else
1442 mlx5e_tc_unoffload_fdb_rules(esw, flow, attr);
1443 }
1444
1445 if (mlx5_flow_has_geneve_opt(flow))
1446 mlx5_geneve_tlv_option_del(priv->mdev->geneve);
1447
1448 mlx5_eswitch_del_vlan_action(esw, attr);
1449
1450 for (out_index = 0; out_index < MLX5_MAX_FLOW_FWD_VPORTS; out_index++)
1451 if (attr->esw_attr->dests[out_index].flags & MLX5_ESW_DEST_ENCAP) {
1452 mlx5e_detach_encap(priv, flow, out_index);
1453 kfree(attr->parse_attr->tun_info[out_index]);
1454 }
1455 kvfree(attr->parse_attr);
1456
1457 mlx5_tc_ct_match_del(get_ct_priv(priv), &flow->attr->ct_attr);
1458
1459 if (attr->action & MLX5_FLOW_CONTEXT_ACTION_MOD_HDR)
1460 mlx5e_detach_mod_hdr(priv, flow);
1461
1462 if (attr->action & MLX5_FLOW_CONTEXT_ACTION_COUNT)
1463 mlx5_fc_destroy(attr->esw_attr->counter_dev, attr->counter);
1464
1465 if (flow_flag_test(flow, L3_TO_L2_DECAP))
1466 mlx5e_detach_decap(priv, flow);
1467
1468 kfree(flow->attr);
1469 }
1470
mlx5e_tc_encap_flows_add(struct mlx5e_priv * priv,struct mlx5e_encap_entry * e,struct list_head * flow_list)1471 void mlx5e_tc_encap_flows_add(struct mlx5e_priv *priv,
1472 struct mlx5e_encap_entry *e,
1473 struct list_head *flow_list)
1474 {
1475 struct mlx5_eswitch *esw = priv->mdev->priv.eswitch;
1476 struct mlx5_esw_flow_attr *esw_attr;
1477 struct mlx5_flow_handle *rule;
1478 struct mlx5_flow_attr *attr;
1479 struct mlx5_flow_spec *spec;
1480 struct mlx5e_tc_flow *flow;
1481 int err;
1482
1483 e->pkt_reformat = mlx5_packet_reformat_alloc(priv->mdev,
1484 e->reformat_type,
1485 e->encap_size, e->encap_header,
1486 MLX5_FLOW_NAMESPACE_FDB);
1487 if (IS_ERR(e->pkt_reformat)) {
1488 mlx5_core_warn(priv->mdev, "Failed to offload cached encapsulation header, %lu\n",
1489 PTR_ERR(e->pkt_reformat));
1490 return;
1491 }
1492 e->flags |= MLX5_ENCAP_ENTRY_VALID;
1493 mlx5e_rep_queue_neigh_stats_work(priv);
1494
1495 list_for_each_entry(flow, flow_list, tmp_list) {
1496 bool all_flow_encaps_valid = true;
1497 int i;
1498
1499 if (!mlx5e_is_offloaded_flow(flow))
1500 continue;
1501 attr = flow->attr;
1502 esw_attr = attr->esw_attr;
1503 spec = &attr->parse_attr->spec;
1504
1505 esw_attr->dests[flow->tmp_efi_index].pkt_reformat = e->pkt_reformat;
1506 esw_attr->dests[flow->tmp_efi_index].flags |= MLX5_ESW_DEST_ENCAP_VALID;
1507 /* Flow can be associated with multiple encap entries.
1508 * Before offloading the flow verify that all of them have
1509 * a valid neighbour.
1510 */
1511 for (i = 0; i < MLX5_MAX_FLOW_FWD_VPORTS; i++) {
1512 if (!(esw_attr->dests[i].flags & MLX5_ESW_DEST_ENCAP))
1513 continue;
1514 if (!(esw_attr->dests[i].flags & MLX5_ESW_DEST_ENCAP_VALID)) {
1515 all_flow_encaps_valid = false;
1516 break;
1517 }
1518 }
1519 /* Do not offload flows with unresolved neighbors */
1520 if (!all_flow_encaps_valid)
1521 continue;
1522 /* update from slow path rule to encap rule */
1523 rule = mlx5e_tc_offload_fdb_rules(esw, flow, spec, attr);
1524 if (IS_ERR(rule)) {
1525 err = PTR_ERR(rule);
1526 mlx5_core_warn(priv->mdev, "Failed to update cached encapsulation flow, %d\n",
1527 err);
1528 continue;
1529 }
1530
1531 mlx5e_tc_unoffload_from_slow_path(esw, flow);
1532 flow->rule[0] = rule;
1533 /* was unset when slow path rule removed */
1534 flow_flag_set(flow, OFFLOADED);
1535 }
1536 }
1537
mlx5e_tc_encap_flows_del(struct mlx5e_priv * priv,struct mlx5e_encap_entry * e,struct list_head * flow_list)1538 void mlx5e_tc_encap_flows_del(struct mlx5e_priv *priv,
1539 struct mlx5e_encap_entry *e,
1540 struct list_head *flow_list)
1541 {
1542 struct mlx5_eswitch *esw = priv->mdev->priv.eswitch;
1543 struct mlx5_esw_flow_attr *esw_attr;
1544 struct mlx5_flow_handle *rule;
1545 struct mlx5_flow_attr *attr;
1546 struct mlx5_flow_spec *spec;
1547 struct mlx5e_tc_flow *flow;
1548 int err;
1549
1550 list_for_each_entry(flow, flow_list, tmp_list) {
1551 if (!mlx5e_is_offloaded_flow(flow))
1552 continue;
1553 attr = flow->attr;
1554 esw_attr = attr->esw_attr;
1555 spec = &attr->parse_attr->spec;
1556
1557 /* update from encap rule to slow path rule */
1558 rule = mlx5e_tc_offload_to_slow_path(esw, flow, spec);
1559 /* mark the flow's encap dest as non-valid */
1560 esw_attr->dests[flow->tmp_efi_index].flags &= ~MLX5_ESW_DEST_ENCAP_VALID;
1561
1562 if (IS_ERR(rule)) {
1563 err = PTR_ERR(rule);
1564 mlx5_core_warn(priv->mdev, "Failed to update slow path (encap) flow, %d\n",
1565 err);
1566 continue;
1567 }
1568
1569 mlx5e_tc_unoffload_fdb_rules(esw, flow, attr);
1570 flow->rule[0] = rule;
1571 /* was unset when fast path rule removed */
1572 flow_flag_set(flow, OFFLOADED);
1573 }
1574
1575 /* we know that the encap is valid */
1576 e->flags &= ~MLX5_ENCAP_ENTRY_VALID;
1577 mlx5_packet_reformat_dealloc(priv->mdev, e->pkt_reformat);
1578 }
1579
mlx5e_tc_get_counter(struct mlx5e_tc_flow * flow)1580 static struct mlx5_fc *mlx5e_tc_get_counter(struct mlx5e_tc_flow *flow)
1581 {
1582 return flow->attr->counter;
1583 }
1584
1585 /* Takes reference to all flows attached to encap and adds the flows to
1586 * flow_list using 'tmp_list' list_head in mlx5e_tc_flow.
1587 */
mlx5e_take_all_encap_flows(struct mlx5e_encap_entry * e,struct list_head * flow_list)1588 void mlx5e_take_all_encap_flows(struct mlx5e_encap_entry *e, struct list_head *flow_list)
1589 {
1590 struct encap_flow_item *efi;
1591 struct mlx5e_tc_flow *flow;
1592
1593 list_for_each_entry(efi, &e->flows, list) {
1594 flow = container_of(efi, struct mlx5e_tc_flow, encaps[efi->index]);
1595 if (IS_ERR(mlx5e_flow_get(flow)))
1596 continue;
1597 wait_for_completion(&flow->init_done);
1598
1599 flow->tmp_efi_index = efi->index;
1600 list_add(&flow->tmp_list, flow_list);
1601 }
1602 }
1603
1604 /* Iterate over tmp_list of flows attached to flow_list head. */
mlx5e_put_encap_flow_list(struct mlx5e_priv * priv,struct list_head * flow_list)1605 void mlx5e_put_encap_flow_list(struct mlx5e_priv *priv, struct list_head *flow_list)
1606 {
1607 struct mlx5e_tc_flow *flow, *tmp;
1608
1609 list_for_each_entry_safe(flow, tmp, flow_list, tmp_list)
1610 mlx5e_flow_put(priv, flow);
1611 }
1612
1613 static struct mlx5e_encap_entry *
mlx5e_get_next_valid_encap(struct mlx5e_neigh_hash_entry * nhe,struct mlx5e_encap_entry * e)1614 mlx5e_get_next_valid_encap(struct mlx5e_neigh_hash_entry *nhe,
1615 struct mlx5e_encap_entry *e)
1616 {
1617 struct mlx5e_encap_entry *next = NULL;
1618
1619 retry:
1620 rcu_read_lock();
1621
1622 /* find encap with non-zero reference counter value */
1623 for (next = e ?
1624 list_next_or_null_rcu(&nhe->encap_list,
1625 &e->encap_list,
1626 struct mlx5e_encap_entry,
1627 encap_list) :
1628 list_first_or_null_rcu(&nhe->encap_list,
1629 struct mlx5e_encap_entry,
1630 encap_list);
1631 next;
1632 next = list_next_or_null_rcu(&nhe->encap_list,
1633 &next->encap_list,
1634 struct mlx5e_encap_entry,
1635 encap_list))
1636 if (mlx5e_encap_take(next))
1637 break;
1638
1639 rcu_read_unlock();
1640
1641 /* release starting encap */
1642 if (e)
1643 mlx5e_encap_put(netdev_priv(e->out_dev), e);
1644 if (!next)
1645 return next;
1646
1647 /* wait for encap to be fully initialized */
1648 wait_for_completion(&next->res_ready);
1649 /* continue searching if encap entry is not in valid state after completion */
1650 if (!(next->flags & MLX5_ENCAP_ENTRY_VALID)) {
1651 e = next;
1652 goto retry;
1653 }
1654
1655 return next;
1656 }
1657
mlx5e_tc_update_neigh_used_value(struct mlx5e_neigh_hash_entry * nhe)1658 void mlx5e_tc_update_neigh_used_value(struct mlx5e_neigh_hash_entry *nhe)
1659 {
1660 struct mlx5e_neigh *m_neigh = &nhe->m_neigh;
1661 struct mlx5e_encap_entry *e = NULL;
1662 struct mlx5e_tc_flow *flow;
1663 struct mlx5_fc *counter;
1664 struct neigh_table *tbl;
1665 bool neigh_used = false;
1666 struct neighbour *n;
1667 u64 lastuse;
1668
1669 if (m_neigh->family == AF_INET)
1670 tbl = &arp_tbl;
1671 #if IS_ENABLED(CONFIG_IPV6)
1672 else if (m_neigh->family == AF_INET6)
1673 tbl = ipv6_stub->nd_tbl;
1674 #endif
1675 else
1676 return;
1677
1678 /* mlx5e_get_next_valid_encap() releases previous encap before returning
1679 * next one.
1680 */
1681 while ((e = mlx5e_get_next_valid_encap(nhe, e)) != NULL) {
1682 struct mlx5e_priv *priv = netdev_priv(e->out_dev);
1683 struct encap_flow_item *efi, *tmp;
1684 struct mlx5_eswitch *esw;
1685 LIST_HEAD(flow_list);
1686
1687 esw = priv->mdev->priv.eswitch;
1688 mutex_lock(&esw->offloads.encap_tbl_lock);
1689 list_for_each_entry_safe(efi, tmp, &e->flows, list) {
1690 flow = container_of(efi, struct mlx5e_tc_flow,
1691 encaps[efi->index]);
1692 if (IS_ERR(mlx5e_flow_get(flow)))
1693 continue;
1694 list_add(&flow->tmp_list, &flow_list);
1695
1696 if (mlx5e_is_offloaded_flow(flow)) {
1697 counter = mlx5e_tc_get_counter(flow);
1698 lastuse = mlx5_fc_query_lastuse(counter);
1699 if (time_after((unsigned long)lastuse, nhe->reported_lastuse)) {
1700 neigh_used = true;
1701 break;
1702 }
1703 }
1704 }
1705 mutex_unlock(&esw->offloads.encap_tbl_lock);
1706
1707 mlx5e_put_encap_flow_list(priv, &flow_list);
1708 if (neigh_used) {
1709 /* release current encap before breaking the loop */
1710 mlx5e_encap_put(priv, e);
1711 break;
1712 }
1713 }
1714
1715 trace_mlx5e_tc_update_neigh_used_value(nhe, neigh_used);
1716
1717 if (neigh_used) {
1718 nhe->reported_lastuse = jiffies;
1719
1720 /* find the relevant neigh according to the cached device and
1721 * dst ip pair
1722 */
1723 n = neigh_lookup(tbl, &m_neigh->dst_ip, m_neigh->dev);
1724 if (!n)
1725 return;
1726
1727 neigh_event_send(n, NULL);
1728 neigh_release(n);
1729 }
1730 }
1731
mlx5e_encap_dealloc(struct mlx5e_priv * priv,struct mlx5e_encap_entry * e)1732 static void mlx5e_encap_dealloc(struct mlx5e_priv *priv, struct mlx5e_encap_entry *e)
1733 {
1734 WARN_ON(!list_empty(&e->flows));
1735
1736 if (e->compl_result > 0) {
1737 mlx5e_rep_encap_entry_detach(netdev_priv(e->out_dev), e);
1738
1739 if (e->flags & MLX5_ENCAP_ENTRY_VALID)
1740 mlx5_packet_reformat_dealloc(priv->mdev, e->pkt_reformat);
1741 }
1742
1743 kfree(e->tun_info);
1744 kfree(e->encap_header);
1745 kfree_rcu(e, rcu);
1746 }
1747
mlx5e_decap_dealloc(struct mlx5e_priv * priv,struct mlx5e_decap_entry * d)1748 static void mlx5e_decap_dealloc(struct mlx5e_priv *priv,
1749 struct mlx5e_decap_entry *d)
1750 {
1751 WARN_ON(!list_empty(&d->flows));
1752
1753 if (!d->compl_result)
1754 mlx5_packet_reformat_dealloc(priv->mdev, d->pkt_reformat);
1755
1756 kfree_rcu(d, rcu);
1757 }
1758
mlx5e_encap_put(struct mlx5e_priv * priv,struct mlx5e_encap_entry * e)1759 void mlx5e_encap_put(struct mlx5e_priv *priv, struct mlx5e_encap_entry *e)
1760 {
1761 struct mlx5_eswitch *esw = priv->mdev->priv.eswitch;
1762
1763 if (!refcount_dec_and_mutex_lock(&e->refcnt, &esw->offloads.encap_tbl_lock))
1764 return;
1765 hash_del_rcu(&e->encap_hlist);
1766 mutex_unlock(&esw->offloads.encap_tbl_lock);
1767
1768 mlx5e_encap_dealloc(priv, e);
1769 }
1770
mlx5e_decap_put(struct mlx5e_priv * priv,struct mlx5e_decap_entry * d)1771 static void mlx5e_decap_put(struct mlx5e_priv *priv, struct mlx5e_decap_entry *d)
1772 {
1773 struct mlx5_eswitch *esw = priv->mdev->priv.eswitch;
1774
1775 if (!refcount_dec_and_mutex_lock(&d->refcnt, &esw->offloads.decap_tbl_lock))
1776 return;
1777 hash_del_rcu(&d->hlist);
1778 mutex_unlock(&esw->offloads.decap_tbl_lock);
1779
1780 mlx5e_decap_dealloc(priv, d);
1781 }
1782
mlx5e_detach_encap(struct mlx5e_priv * priv,struct mlx5e_tc_flow * flow,int out_index)1783 static void mlx5e_detach_encap(struct mlx5e_priv *priv,
1784 struct mlx5e_tc_flow *flow, int out_index)
1785 {
1786 struct mlx5e_encap_entry *e = flow->encaps[out_index].e;
1787 struct mlx5_eswitch *esw = priv->mdev->priv.eswitch;
1788
1789 /* flow wasn't fully initialized */
1790 if (!e)
1791 return;
1792
1793 mutex_lock(&esw->offloads.encap_tbl_lock);
1794 list_del(&flow->encaps[out_index].list);
1795 flow->encaps[out_index].e = NULL;
1796 if (!refcount_dec_and_test(&e->refcnt)) {
1797 mutex_unlock(&esw->offloads.encap_tbl_lock);
1798 return;
1799 }
1800 hash_del_rcu(&e->encap_hlist);
1801 mutex_unlock(&esw->offloads.encap_tbl_lock);
1802
1803 mlx5e_encap_dealloc(priv, e);
1804 }
1805
mlx5e_detach_decap(struct mlx5e_priv * priv,struct mlx5e_tc_flow * flow)1806 static void mlx5e_detach_decap(struct mlx5e_priv *priv,
1807 struct mlx5e_tc_flow *flow)
1808 {
1809 struct mlx5_eswitch *esw = priv->mdev->priv.eswitch;
1810 struct mlx5e_decap_entry *d = flow->decap_reformat;
1811
1812 if (!d)
1813 return;
1814
1815 mutex_lock(&esw->offloads.decap_tbl_lock);
1816 list_del(&flow->l3_to_l2_reformat);
1817 flow->decap_reformat = NULL;
1818
1819 if (!refcount_dec_and_test(&d->refcnt)) {
1820 mutex_unlock(&esw->offloads.decap_tbl_lock);
1821 return;
1822 }
1823 hash_del_rcu(&d->hlist);
1824 mutex_unlock(&esw->offloads.decap_tbl_lock);
1825
1826 mlx5e_decap_dealloc(priv, d);
1827 }
1828
__mlx5e_tc_del_fdb_peer_flow(struct mlx5e_tc_flow * flow)1829 static void __mlx5e_tc_del_fdb_peer_flow(struct mlx5e_tc_flow *flow)
1830 {
1831 struct mlx5_eswitch *esw = flow->priv->mdev->priv.eswitch;
1832
1833 if (!flow_flag_test(flow, ESWITCH) ||
1834 !flow_flag_test(flow, DUP))
1835 return;
1836
1837 mutex_lock(&esw->offloads.peer_mutex);
1838 list_del(&flow->peer);
1839 mutex_unlock(&esw->offloads.peer_mutex);
1840
1841 flow_flag_clear(flow, DUP);
1842
1843 if (refcount_dec_and_test(&flow->peer_flow->refcnt)) {
1844 mlx5e_tc_del_fdb_flow(flow->peer_flow->priv, flow->peer_flow);
1845 kfree(flow->peer_flow);
1846 }
1847
1848 flow->peer_flow = NULL;
1849 }
1850
mlx5e_tc_del_fdb_peer_flow(struct mlx5e_tc_flow * flow)1851 static void mlx5e_tc_del_fdb_peer_flow(struct mlx5e_tc_flow *flow)
1852 {
1853 struct mlx5_core_dev *dev = flow->priv->mdev;
1854 struct mlx5_devcom *devcom = dev->priv.devcom;
1855 struct mlx5_eswitch *peer_esw;
1856
1857 peer_esw = mlx5_devcom_get_peer_data(devcom, MLX5_DEVCOM_ESW_OFFLOADS);
1858 if (!peer_esw)
1859 return;
1860
1861 __mlx5e_tc_del_fdb_peer_flow(flow);
1862 mlx5_devcom_release_peer_data(devcom, MLX5_DEVCOM_ESW_OFFLOADS);
1863 }
1864
mlx5e_tc_del_flow(struct mlx5e_priv * priv,struct mlx5e_tc_flow * flow)1865 static void mlx5e_tc_del_flow(struct mlx5e_priv *priv,
1866 struct mlx5e_tc_flow *flow)
1867 {
1868 if (mlx5e_is_eswitch_flow(flow)) {
1869 mlx5e_tc_del_fdb_peer_flow(flow);
1870 mlx5e_tc_del_fdb_flow(priv, flow);
1871 } else {
1872 mlx5e_tc_del_nic_flow(priv, flow);
1873 }
1874 }
1875
flow_has_tc_fwd_action(struct flow_cls_offload * f)1876 static int flow_has_tc_fwd_action(struct flow_cls_offload *f)
1877 {
1878 struct flow_rule *rule = flow_cls_offload_flow_rule(f);
1879 struct flow_action *flow_action = &rule->action;
1880 const struct flow_action_entry *act;
1881 int i;
1882
1883 flow_action_for_each(i, act, flow_action) {
1884 switch (act->id) {
1885 case FLOW_ACTION_GOTO:
1886 return true;
1887 default:
1888 continue;
1889 }
1890 }
1891
1892 return false;
1893 }
1894
1895 static int
enc_opts_is_dont_care_or_full_match(struct mlx5e_priv * priv,struct flow_dissector_key_enc_opts * opts,struct netlink_ext_ack * extack,bool * dont_care)1896 enc_opts_is_dont_care_or_full_match(struct mlx5e_priv *priv,
1897 struct flow_dissector_key_enc_opts *opts,
1898 struct netlink_ext_ack *extack,
1899 bool *dont_care)
1900 {
1901 struct geneve_opt *opt;
1902 int off = 0;
1903
1904 *dont_care = true;
1905
1906 while (opts->len > off) {
1907 opt = (struct geneve_opt *)&opts->data[off];
1908
1909 if (!(*dont_care) || opt->opt_class || opt->type ||
1910 memchr_inv(opt->opt_data, 0, opt->length * 4)) {
1911 *dont_care = false;
1912
1913 if (opt->opt_class != htons(U16_MAX) ||
1914 opt->type != U8_MAX) {
1915 NL_SET_ERR_MSG(extack,
1916 "Partial match of tunnel options in chain > 0 isn't supported");
1917 netdev_warn(priv->netdev,
1918 "Partial match of tunnel options in chain > 0 isn't supported");
1919 return -EOPNOTSUPP;
1920 }
1921 }
1922
1923 off += sizeof(struct geneve_opt) + opt->length * 4;
1924 }
1925
1926 return 0;
1927 }
1928
1929 #define COPY_DISSECTOR(rule, diss_key, dst)\
1930 ({ \
1931 struct flow_rule *__rule = (rule);\
1932 typeof(dst) __dst = dst;\
1933 \
1934 memcpy(__dst,\
1935 skb_flow_dissector_target(__rule->match.dissector,\
1936 diss_key,\
1937 __rule->match.key),\
1938 sizeof(*__dst));\
1939 })
1940
mlx5e_get_flow_tunnel_id(struct mlx5e_priv * priv,struct mlx5e_tc_flow * flow,struct flow_cls_offload * f,struct net_device * filter_dev)1941 static int mlx5e_get_flow_tunnel_id(struct mlx5e_priv *priv,
1942 struct mlx5e_tc_flow *flow,
1943 struct flow_cls_offload *f,
1944 struct net_device *filter_dev)
1945 {
1946 struct flow_rule *rule = flow_cls_offload_flow_rule(f);
1947 struct netlink_ext_ack *extack = f->common.extack;
1948 struct mlx5e_tc_mod_hdr_acts *mod_hdr_acts;
1949 struct flow_match_enc_opts enc_opts_match;
1950 struct tunnel_match_enc_opts tun_enc_opts;
1951 struct mlx5_rep_uplink_priv *uplink_priv;
1952 struct mlx5_flow_attr *attr = flow->attr;
1953 struct mlx5e_rep_priv *uplink_rpriv;
1954 struct tunnel_match_key tunnel_key;
1955 bool enc_opts_is_dont_care = true;
1956 u32 tun_id, enc_opts_id = 0;
1957 struct mlx5_eswitch *esw;
1958 u32 value, mask;
1959 int err;
1960
1961 esw = priv->mdev->priv.eswitch;
1962 uplink_rpriv = mlx5_eswitch_get_uplink_priv(esw, REP_ETH);
1963 uplink_priv = &uplink_rpriv->uplink_priv;
1964
1965 memset(&tunnel_key, 0, sizeof(tunnel_key));
1966 COPY_DISSECTOR(rule, FLOW_DISSECTOR_KEY_ENC_CONTROL,
1967 &tunnel_key.enc_control);
1968 if (tunnel_key.enc_control.addr_type == FLOW_DISSECTOR_KEY_IPV4_ADDRS)
1969 COPY_DISSECTOR(rule, FLOW_DISSECTOR_KEY_ENC_IPV4_ADDRS,
1970 &tunnel_key.enc_ipv4);
1971 else
1972 COPY_DISSECTOR(rule, FLOW_DISSECTOR_KEY_ENC_IPV6_ADDRS,
1973 &tunnel_key.enc_ipv6);
1974 COPY_DISSECTOR(rule, FLOW_DISSECTOR_KEY_ENC_IP, &tunnel_key.enc_ip);
1975 COPY_DISSECTOR(rule, FLOW_DISSECTOR_KEY_ENC_PORTS,
1976 &tunnel_key.enc_tp);
1977 COPY_DISSECTOR(rule, FLOW_DISSECTOR_KEY_ENC_KEYID,
1978 &tunnel_key.enc_key_id);
1979 tunnel_key.filter_ifindex = filter_dev->ifindex;
1980
1981 err = mapping_add(uplink_priv->tunnel_mapping, &tunnel_key, &tun_id);
1982 if (err)
1983 return err;
1984
1985 flow_rule_match_enc_opts(rule, &enc_opts_match);
1986 err = enc_opts_is_dont_care_or_full_match(priv,
1987 enc_opts_match.mask,
1988 extack,
1989 &enc_opts_is_dont_care);
1990 if (err)
1991 goto err_enc_opts;
1992
1993 if (!enc_opts_is_dont_care) {
1994 memset(&tun_enc_opts, 0, sizeof(tun_enc_opts));
1995 memcpy(&tun_enc_opts.key, enc_opts_match.key,
1996 sizeof(*enc_opts_match.key));
1997 memcpy(&tun_enc_opts.mask, enc_opts_match.mask,
1998 sizeof(*enc_opts_match.mask));
1999
2000 err = mapping_add(uplink_priv->tunnel_enc_opts_mapping,
2001 &tun_enc_opts, &enc_opts_id);
2002 if (err)
2003 goto err_enc_opts;
2004 }
2005
2006 value = tun_id << ENC_OPTS_BITS | enc_opts_id;
2007 mask = enc_opts_id ? TUNNEL_ID_MASK :
2008 (TUNNEL_ID_MASK & ~ENC_OPTS_BITS_MASK);
2009
2010 if (attr->chain) {
2011 mlx5e_tc_match_to_reg_match(&attr->parse_attr->spec,
2012 TUNNEL_TO_REG, value, mask);
2013 } else {
2014 mod_hdr_acts = &attr->parse_attr->mod_hdr_acts;
2015 err = mlx5e_tc_match_to_reg_set(priv->mdev,
2016 mod_hdr_acts, MLX5_FLOW_NAMESPACE_FDB,
2017 TUNNEL_TO_REG, value);
2018 if (err)
2019 goto err_set;
2020
2021 attr->action |= MLX5_FLOW_CONTEXT_ACTION_MOD_HDR;
2022 }
2023
2024 flow->tunnel_id = value;
2025 return 0;
2026
2027 err_set:
2028 if (enc_opts_id)
2029 mapping_remove(uplink_priv->tunnel_enc_opts_mapping,
2030 enc_opts_id);
2031 err_enc_opts:
2032 mapping_remove(uplink_priv->tunnel_mapping, tun_id);
2033 return err;
2034 }
2035
mlx5e_put_flow_tunnel_id(struct mlx5e_tc_flow * flow)2036 static void mlx5e_put_flow_tunnel_id(struct mlx5e_tc_flow *flow)
2037 {
2038 u32 enc_opts_id = flow->tunnel_id & ENC_OPTS_BITS_MASK;
2039 u32 tun_id = flow->tunnel_id >> ENC_OPTS_BITS;
2040 struct mlx5_rep_uplink_priv *uplink_priv;
2041 struct mlx5e_rep_priv *uplink_rpriv;
2042 struct mlx5_eswitch *esw;
2043
2044 esw = flow->priv->mdev->priv.eswitch;
2045 uplink_rpriv = mlx5_eswitch_get_uplink_priv(esw, REP_ETH);
2046 uplink_priv = &uplink_rpriv->uplink_priv;
2047
2048 if (tun_id)
2049 mapping_remove(uplink_priv->tunnel_mapping, tun_id);
2050 if (enc_opts_id)
2051 mapping_remove(uplink_priv->tunnel_enc_opts_mapping,
2052 enc_opts_id);
2053 }
2054
mlx5e_tc_get_flow_tun_id(struct mlx5e_tc_flow * flow)2055 u32 mlx5e_tc_get_flow_tun_id(struct mlx5e_tc_flow *flow)
2056 {
2057 return flow->tunnel_id;
2058 }
2059
mlx5e_tc_set_ethertype(struct mlx5_core_dev * mdev,struct flow_match_basic * match,bool outer,void * headers_c,void * headers_v)2060 void mlx5e_tc_set_ethertype(struct mlx5_core_dev *mdev,
2061 struct flow_match_basic *match, bool outer,
2062 void *headers_c, void *headers_v)
2063 {
2064 bool ip_version_cap;
2065
2066 ip_version_cap = outer ?
2067 MLX5_CAP_FLOWTABLE_NIC_RX(mdev,
2068 ft_field_support.outer_ip_version) :
2069 MLX5_CAP_FLOWTABLE_NIC_RX(mdev,
2070 ft_field_support.inner_ip_version);
2071
2072 if (ip_version_cap && match->mask->n_proto == htons(0xFFFF) &&
2073 (match->key->n_proto == htons(ETH_P_IP) ||
2074 match->key->n_proto == htons(ETH_P_IPV6))) {
2075 MLX5_SET_TO_ONES(fte_match_set_lyr_2_4, headers_c, ip_version);
2076 MLX5_SET(fte_match_set_lyr_2_4, headers_v, ip_version,
2077 match->key->n_proto == htons(ETH_P_IP) ? 4 : 6);
2078 } else {
2079 MLX5_SET(fte_match_set_lyr_2_4, headers_c, ethertype,
2080 ntohs(match->mask->n_proto));
2081 MLX5_SET(fte_match_set_lyr_2_4, headers_v, ethertype,
2082 ntohs(match->key->n_proto));
2083 }
2084 }
2085
parse_tunnel_attr(struct mlx5e_priv * priv,struct mlx5e_tc_flow * flow,struct mlx5_flow_spec * spec,struct flow_cls_offload * f,struct net_device * filter_dev,u8 * match_level,bool * match_inner)2086 static int parse_tunnel_attr(struct mlx5e_priv *priv,
2087 struct mlx5e_tc_flow *flow,
2088 struct mlx5_flow_spec *spec,
2089 struct flow_cls_offload *f,
2090 struct net_device *filter_dev,
2091 u8 *match_level,
2092 bool *match_inner)
2093 {
2094 struct mlx5_eswitch *esw = priv->mdev->priv.eswitch;
2095 struct netlink_ext_ack *extack = f->common.extack;
2096 bool needs_mapping, sets_mapping;
2097 int err;
2098
2099 if (!mlx5e_is_eswitch_flow(flow))
2100 return -EOPNOTSUPP;
2101
2102 needs_mapping = !!flow->attr->chain;
2103 sets_mapping = !flow->attr->chain && flow_has_tc_fwd_action(f);
2104 *match_inner = !needs_mapping;
2105
2106 if ((needs_mapping || sets_mapping) &&
2107 !mlx5_eswitch_reg_c1_loopback_enabled(esw)) {
2108 NL_SET_ERR_MSG(extack,
2109 "Chains on tunnel devices isn't supported without register loopback support");
2110 netdev_warn(priv->netdev,
2111 "Chains on tunnel devices isn't supported without register loopback support");
2112 return -EOPNOTSUPP;
2113 }
2114
2115 if (!flow->attr->chain) {
2116 err = mlx5e_tc_tun_parse(filter_dev, priv, spec, f,
2117 match_level);
2118 if (err) {
2119 NL_SET_ERR_MSG_MOD(extack,
2120 "Failed to parse tunnel attributes");
2121 netdev_warn(priv->netdev,
2122 "Failed to parse tunnel attributes");
2123 return err;
2124 }
2125
2126 /* With mpls over udp we decapsulate using packet reformat
2127 * object
2128 */
2129 if (!netif_is_bareudp(filter_dev))
2130 flow->attr->action |= MLX5_FLOW_CONTEXT_ACTION_DECAP;
2131 }
2132
2133 if (!needs_mapping && !sets_mapping)
2134 return 0;
2135
2136 return mlx5e_get_flow_tunnel_id(priv, flow, f, filter_dev);
2137 }
2138
get_match_inner_headers_criteria(struct mlx5_flow_spec * spec)2139 static void *get_match_inner_headers_criteria(struct mlx5_flow_spec *spec)
2140 {
2141 return MLX5_ADDR_OF(fte_match_param, spec->match_criteria,
2142 inner_headers);
2143 }
2144
get_match_inner_headers_value(struct mlx5_flow_spec * spec)2145 static void *get_match_inner_headers_value(struct mlx5_flow_spec *spec)
2146 {
2147 return MLX5_ADDR_OF(fte_match_param, spec->match_value,
2148 inner_headers);
2149 }
2150
get_match_outer_headers_criteria(struct mlx5_flow_spec * spec)2151 static void *get_match_outer_headers_criteria(struct mlx5_flow_spec *spec)
2152 {
2153 return MLX5_ADDR_OF(fte_match_param, spec->match_criteria,
2154 outer_headers);
2155 }
2156
get_match_outer_headers_value(struct mlx5_flow_spec * spec)2157 static void *get_match_outer_headers_value(struct mlx5_flow_spec *spec)
2158 {
2159 return MLX5_ADDR_OF(fte_match_param, spec->match_value,
2160 outer_headers);
2161 }
2162
get_match_headers_value(u32 flags,struct mlx5_flow_spec * spec)2163 static void *get_match_headers_value(u32 flags,
2164 struct mlx5_flow_spec *spec)
2165 {
2166 return (flags & MLX5_FLOW_CONTEXT_ACTION_DECAP) ?
2167 get_match_inner_headers_value(spec) :
2168 get_match_outer_headers_value(spec);
2169 }
2170
get_match_headers_criteria(u32 flags,struct mlx5_flow_spec * spec)2171 static void *get_match_headers_criteria(u32 flags,
2172 struct mlx5_flow_spec *spec)
2173 {
2174 return (flags & MLX5_FLOW_CONTEXT_ACTION_DECAP) ?
2175 get_match_inner_headers_criteria(spec) :
2176 get_match_outer_headers_criteria(spec);
2177 }
2178
mlx5e_flower_parse_meta(struct net_device * filter_dev,struct flow_cls_offload * f)2179 static int mlx5e_flower_parse_meta(struct net_device *filter_dev,
2180 struct flow_cls_offload *f)
2181 {
2182 struct flow_rule *rule = flow_cls_offload_flow_rule(f);
2183 struct netlink_ext_ack *extack = f->common.extack;
2184 struct net_device *ingress_dev;
2185 struct flow_match_meta match;
2186
2187 if (!flow_rule_match_key(rule, FLOW_DISSECTOR_KEY_META))
2188 return 0;
2189
2190 flow_rule_match_meta(rule, &match);
2191 if (match.mask->ingress_ifindex != 0xFFFFFFFF) {
2192 NL_SET_ERR_MSG_MOD(extack, "Unsupported ingress ifindex mask");
2193 return -EOPNOTSUPP;
2194 }
2195
2196 ingress_dev = __dev_get_by_index(dev_net(filter_dev),
2197 match.key->ingress_ifindex);
2198 if (!ingress_dev) {
2199 NL_SET_ERR_MSG_MOD(extack,
2200 "Can't find the ingress port to match on");
2201 return -ENOENT;
2202 }
2203
2204 if (ingress_dev != filter_dev) {
2205 NL_SET_ERR_MSG_MOD(extack,
2206 "Can't match on the ingress filter port");
2207 return -EOPNOTSUPP;
2208 }
2209
2210 return 0;
2211 }
2212
skip_key_basic(struct net_device * filter_dev,struct flow_cls_offload * f)2213 static bool skip_key_basic(struct net_device *filter_dev,
2214 struct flow_cls_offload *f)
2215 {
2216 /* When doing mpls over udp decap, the user needs to provide
2217 * MPLS_UC as the protocol in order to be able to match on mpls
2218 * label fields. However, the actual ethertype is IP so we want to
2219 * avoid matching on this, otherwise we'll fail the match.
2220 */
2221 if (netif_is_bareudp(filter_dev) && f->common.chain_index == 0)
2222 return true;
2223
2224 return false;
2225 }
2226
__parse_cls_flower(struct mlx5e_priv * priv,struct mlx5e_tc_flow * flow,struct mlx5_flow_spec * spec,struct flow_cls_offload * f,struct net_device * filter_dev,u8 * inner_match_level,u8 * outer_match_level)2227 static int __parse_cls_flower(struct mlx5e_priv *priv,
2228 struct mlx5e_tc_flow *flow,
2229 struct mlx5_flow_spec *spec,
2230 struct flow_cls_offload *f,
2231 struct net_device *filter_dev,
2232 u8 *inner_match_level, u8 *outer_match_level)
2233 {
2234 struct netlink_ext_ack *extack = f->common.extack;
2235 void *headers_c = MLX5_ADDR_OF(fte_match_param, spec->match_criteria,
2236 outer_headers);
2237 void *headers_v = MLX5_ADDR_OF(fte_match_param, spec->match_value,
2238 outer_headers);
2239 void *misc_c = MLX5_ADDR_OF(fte_match_param, spec->match_criteria,
2240 misc_parameters);
2241 void *misc_v = MLX5_ADDR_OF(fte_match_param, spec->match_value,
2242 misc_parameters);
2243 struct flow_rule *rule = flow_cls_offload_flow_rule(f);
2244 struct flow_dissector *dissector = rule->match.dissector;
2245 u16 addr_type = 0;
2246 u8 ip_proto = 0;
2247 u8 *match_level;
2248 int err;
2249
2250 match_level = outer_match_level;
2251
2252 if (dissector->used_keys &
2253 ~(BIT(FLOW_DISSECTOR_KEY_META) |
2254 BIT(FLOW_DISSECTOR_KEY_CONTROL) |
2255 BIT(FLOW_DISSECTOR_KEY_BASIC) |
2256 BIT(FLOW_DISSECTOR_KEY_ETH_ADDRS) |
2257 BIT(FLOW_DISSECTOR_KEY_VLAN) |
2258 BIT(FLOW_DISSECTOR_KEY_CVLAN) |
2259 BIT(FLOW_DISSECTOR_KEY_IPV4_ADDRS) |
2260 BIT(FLOW_DISSECTOR_KEY_IPV6_ADDRS) |
2261 BIT(FLOW_DISSECTOR_KEY_PORTS) |
2262 BIT(FLOW_DISSECTOR_KEY_ENC_KEYID) |
2263 BIT(FLOW_DISSECTOR_KEY_ENC_IPV4_ADDRS) |
2264 BIT(FLOW_DISSECTOR_KEY_ENC_IPV6_ADDRS) |
2265 BIT(FLOW_DISSECTOR_KEY_ENC_PORTS) |
2266 BIT(FLOW_DISSECTOR_KEY_ENC_CONTROL) |
2267 BIT(FLOW_DISSECTOR_KEY_TCP) |
2268 BIT(FLOW_DISSECTOR_KEY_IP) |
2269 BIT(FLOW_DISSECTOR_KEY_CT) |
2270 BIT(FLOW_DISSECTOR_KEY_ENC_IP) |
2271 BIT(FLOW_DISSECTOR_KEY_ENC_OPTS) |
2272 BIT(FLOW_DISSECTOR_KEY_MPLS))) {
2273 NL_SET_ERR_MSG_MOD(extack, "Unsupported key");
2274 netdev_warn(priv->netdev, "Unsupported key used: 0x%x\n",
2275 dissector->used_keys);
2276 return -EOPNOTSUPP;
2277 }
2278
2279 if (mlx5e_get_tc_tun(filter_dev)) {
2280 bool match_inner = false;
2281
2282 err = parse_tunnel_attr(priv, flow, spec, f, filter_dev,
2283 outer_match_level, &match_inner);
2284 if (err)
2285 return err;
2286
2287 if (match_inner) {
2288 /* header pointers should point to the inner headers
2289 * if the packet was decapsulated already.
2290 * outer headers are set by parse_tunnel_attr.
2291 */
2292 match_level = inner_match_level;
2293 headers_c = get_match_inner_headers_criteria(spec);
2294 headers_v = get_match_inner_headers_value(spec);
2295 }
2296 }
2297
2298 err = mlx5e_flower_parse_meta(filter_dev, f);
2299 if (err)
2300 return err;
2301
2302 if (flow_rule_match_key(rule, FLOW_DISSECTOR_KEY_BASIC) &&
2303 !skip_key_basic(filter_dev, f)) {
2304 struct flow_match_basic match;
2305
2306 flow_rule_match_basic(rule, &match);
2307 mlx5e_tc_set_ethertype(priv->mdev, &match,
2308 match_level == outer_match_level,
2309 headers_c, headers_v);
2310
2311 if (match.mask->n_proto)
2312 *match_level = MLX5_MATCH_L2;
2313 }
2314 if (flow_rule_match_key(rule, FLOW_DISSECTOR_KEY_VLAN) ||
2315 is_vlan_dev(filter_dev)) {
2316 struct flow_dissector_key_vlan filter_dev_mask;
2317 struct flow_dissector_key_vlan filter_dev_key;
2318 struct flow_match_vlan match;
2319
2320 if (is_vlan_dev(filter_dev)) {
2321 match.key = &filter_dev_key;
2322 match.key->vlan_id = vlan_dev_vlan_id(filter_dev);
2323 match.key->vlan_tpid = vlan_dev_vlan_proto(filter_dev);
2324 match.key->vlan_priority = 0;
2325 match.mask = &filter_dev_mask;
2326 memset(match.mask, 0xff, sizeof(*match.mask));
2327 match.mask->vlan_priority = 0;
2328 } else {
2329 flow_rule_match_vlan(rule, &match);
2330 }
2331 if (match.mask->vlan_id ||
2332 match.mask->vlan_priority ||
2333 match.mask->vlan_tpid) {
2334 if (match.key->vlan_tpid == htons(ETH_P_8021AD)) {
2335 MLX5_SET(fte_match_set_lyr_2_4, headers_c,
2336 svlan_tag, 1);
2337 MLX5_SET(fte_match_set_lyr_2_4, headers_v,
2338 svlan_tag, 1);
2339 } else {
2340 MLX5_SET(fte_match_set_lyr_2_4, headers_c,
2341 cvlan_tag, 1);
2342 MLX5_SET(fte_match_set_lyr_2_4, headers_v,
2343 cvlan_tag, 1);
2344 }
2345
2346 MLX5_SET(fte_match_set_lyr_2_4, headers_c, first_vid,
2347 match.mask->vlan_id);
2348 MLX5_SET(fte_match_set_lyr_2_4, headers_v, first_vid,
2349 match.key->vlan_id);
2350
2351 MLX5_SET(fte_match_set_lyr_2_4, headers_c, first_prio,
2352 match.mask->vlan_priority);
2353 MLX5_SET(fte_match_set_lyr_2_4, headers_v, first_prio,
2354 match.key->vlan_priority);
2355
2356 *match_level = MLX5_MATCH_L2;
2357 }
2358 } else if (*match_level != MLX5_MATCH_NONE) {
2359 /* cvlan_tag enabled in match criteria and
2360 * disabled in match value means both S & C tags
2361 * don't exist (untagged of both)
2362 */
2363 MLX5_SET(fte_match_set_lyr_2_4, headers_c, cvlan_tag, 1);
2364 *match_level = MLX5_MATCH_L2;
2365 }
2366
2367 if (flow_rule_match_key(rule, FLOW_DISSECTOR_KEY_CVLAN)) {
2368 struct flow_match_vlan match;
2369
2370 flow_rule_match_cvlan(rule, &match);
2371 if (match.mask->vlan_id ||
2372 match.mask->vlan_priority ||
2373 match.mask->vlan_tpid) {
2374 if (match.key->vlan_tpid == htons(ETH_P_8021AD)) {
2375 MLX5_SET(fte_match_set_misc, misc_c,
2376 outer_second_svlan_tag, 1);
2377 MLX5_SET(fte_match_set_misc, misc_v,
2378 outer_second_svlan_tag, 1);
2379 } else {
2380 MLX5_SET(fte_match_set_misc, misc_c,
2381 outer_second_cvlan_tag, 1);
2382 MLX5_SET(fte_match_set_misc, misc_v,
2383 outer_second_cvlan_tag, 1);
2384 }
2385
2386 MLX5_SET(fte_match_set_misc, misc_c, outer_second_vid,
2387 match.mask->vlan_id);
2388 MLX5_SET(fte_match_set_misc, misc_v, outer_second_vid,
2389 match.key->vlan_id);
2390 MLX5_SET(fte_match_set_misc, misc_c, outer_second_prio,
2391 match.mask->vlan_priority);
2392 MLX5_SET(fte_match_set_misc, misc_v, outer_second_prio,
2393 match.key->vlan_priority);
2394
2395 *match_level = MLX5_MATCH_L2;
2396 spec->match_criteria_enable |= MLX5_MATCH_MISC_PARAMETERS;
2397 }
2398 }
2399
2400 if (flow_rule_match_key(rule, FLOW_DISSECTOR_KEY_ETH_ADDRS)) {
2401 struct flow_match_eth_addrs match;
2402
2403 flow_rule_match_eth_addrs(rule, &match);
2404 ether_addr_copy(MLX5_ADDR_OF(fte_match_set_lyr_2_4, headers_c,
2405 dmac_47_16),
2406 match.mask->dst);
2407 ether_addr_copy(MLX5_ADDR_OF(fte_match_set_lyr_2_4, headers_v,
2408 dmac_47_16),
2409 match.key->dst);
2410
2411 ether_addr_copy(MLX5_ADDR_OF(fte_match_set_lyr_2_4, headers_c,
2412 smac_47_16),
2413 match.mask->src);
2414 ether_addr_copy(MLX5_ADDR_OF(fte_match_set_lyr_2_4, headers_v,
2415 smac_47_16),
2416 match.key->src);
2417
2418 if (!is_zero_ether_addr(match.mask->src) ||
2419 !is_zero_ether_addr(match.mask->dst))
2420 *match_level = MLX5_MATCH_L2;
2421 }
2422
2423 if (flow_rule_match_key(rule, FLOW_DISSECTOR_KEY_CONTROL)) {
2424 struct flow_match_control match;
2425
2426 flow_rule_match_control(rule, &match);
2427 addr_type = match.key->addr_type;
2428
2429 /* the HW doesn't support frag first/later */
2430 if (match.mask->flags & FLOW_DIS_FIRST_FRAG)
2431 return -EOPNOTSUPP;
2432
2433 if (match.mask->flags & FLOW_DIS_IS_FRAGMENT) {
2434 MLX5_SET(fte_match_set_lyr_2_4, headers_c, frag, 1);
2435 MLX5_SET(fte_match_set_lyr_2_4, headers_v, frag,
2436 match.key->flags & FLOW_DIS_IS_FRAGMENT);
2437
2438 /* the HW doesn't need L3 inline to match on frag=no */
2439 if (!(match.key->flags & FLOW_DIS_IS_FRAGMENT))
2440 *match_level = MLX5_MATCH_L2;
2441 /* *** L2 attributes parsing up to here *** */
2442 else
2443 *match_level = MLX5_MATCH_L3;
2444 }
2445 }
2446
2447 if (flow_rule_match_key(rule, FLOW_DISSECTOR_KEY_BASIC)) {
2448 struct flow_match_basic match;
2449
2450 flow_rule_match_basic(rule, &match);
2451 ip_proto = match.key->ip_proto;
2452
2453 MLX5_SET(fte_match_set_lyr_2_4, headers_c, ip_protocol,
2454 match.mask->ip_proto);
2455 MLX5_SET(fte_match_set_lyr_2_4, headers_v, ip_protocol,
2456 match.key->ip_proto);
2457
2458 if (match.mask->ip_proto)
2459 *match_level = MLX5_MATCH_L3;
2460 }
2461
2462 if (addr_type == FLOW_DISSECTOR_KEY_IPV4_ADDRS) {
2463 struct flow_match_ipv4_addrs match;
2464
2465 flow_rule_match_ipv4_addrs(rule, &match);
2466 memcpy(MLX5_ADDR_OF(fte_match_set_lyr_2_4, headers_c,
2467 src_ipv4_src_ipv6.ipv4_layout.ipv4),
2468 &match.mask->src, sizeof(match.mask->src));
2469 memcpy(MLX5_ADDR_OF(fte_match_set_lyr_2_4, headers_v,
2470 src_ipv4_src_ipv6.ipv4_layout.ipv4),
2471 &match.key->src, sizeof(match.key->src));
2472 memcpy(MLX5_ADDR_OF(fte_match_set_lyr_2_4, headers_c,
2473 dst_ipv4_dst_ipv6.ipv4_layout.ipv4),
2474 &match.mask->dst, sizeof(match.mask->dst));
2475 memcpy(MLX5_ADDR_OF(fte_match_set_lyr_2_4, headers_v,
2476 dst_ipv4_dst_ipv6.ipv4_layout.ipv4),
2477 &match.key->dst, sizeof(match.key->dst));
2478
2479 if (match.mask->src || match.mask->dst)
2480 *match_level = MLX5_MATCH_L3;
2481 }
2482
2483 if (addr_type == FLOW_DISSECTOR_KEY_IPV6_ADDRS) {
2484 struct flow_match_ipv6_addrs match;
2485
2486 flow_rule_match_ipv6_addrs(rule, &match);
2487 memcpy(MLX5_ADDR_OF(fte_match_set_lyr_2_4, headers_c,
2488 src_ipv4_src_ipv6.ipv6_layout.ipv6),
2489 &match.mask->src, sizeof(match.mask->src));
2490 memcpy(MLX5_ADDR_OF(fte_match_set_lyr_2_4, headers_v,
2491 src_ipv4_src_ipv6.ipv6_layout.ipv6),
2492 &match.key->src, sizeof(match.key->src));
2493
2494 memcpy(MLX5_ADDR_OF(fte_match_set_lyr_2_4, headers_c,
2495 dst_ipv4_dst_ipv6.ipv6_layout.ipv6),
2496 &match.mask->dst, sizeof(match.mask->dst));
2497 memcpy(MLX5_ADDR_OF(fte_match_set_lyr_2_4, headers_v,
2498 dst_ipv4_dst_ipv6.ipv6_layout.ipv6),
2499 &match.key->dst, sizeof(match.key->dst));
2500
2501 if (ipv6_addr_type(&match.mask->src) != IPV6_ADDR_ANY ||
2502 ipv6_addr_type(&match.mask->dst) != IPV6_ADDR_ANY)
2503 *match_level = MLX5_MATCH_L3;
2504 }
2505
2506 if (flow_rule_match_key(rule, FLOW_DISSECTOR_KEY_IP)) {
2507 struct flow_match_ip match;
2508
2509 flow_rule_match_ip(rule, &match);
2510 MLX5_SET(fte_match_set_lyr_2_4, headers_c, ip_ecn,
2511 match.mask->tos & 0x3);
2512 MLX5_SET(fte_match_set_lyr_2_4, headers_v, ip_ecn,
2513 match.key->tos & 0x3);
2514
2515 MLX5_SET(fte_match_set_lyr_2_4, headers_c, ip_dscp,
2516 match.mask->tos >> 2);
2517 MLX5_SET(fte_match_set_lyr_2_4, headers_v, ip_dscp,
2518 match.key->tos >> 2);
2519
2520 MLX5_SET(fte_match_set_lyr_2_4, headers_c, ttl_hoplimit,
2521 match.mask->ttl);
2522 MLX5_SET(fte_match_set_lyr_2_4, headers_v, ttl_hoplimit,
2523 match.key->ttl);
2524
2525 if (match.mask->ttl &&
2526 !MLX5_CAP_ESW_FLOWTABLE_FDB(priv->mdev,
2527 ft_field_support.outer_ipv4_ttl)) {
2528 NL_SET_ERR_MSG_MOD(extack,
2529 "Matching on TTL is not supported");
2530 return -EOPNOTSUPP;
2531 }
2532
2533 if (match.mask->tos || match.mask->ttl)
2534 *match_level = MLX5_MATCH_L3;
2535 }
2536
2537 /* *** L3 attributes parsing up to here *** */
2538
2539 if (flow_rule_match_key(rule, FLOW_DISSECTOR_KEY_PORTS)) {
2540 struct flow_match_ports match;
2541
2542 flow_rule_match_ports(rule, &match);
2543 switch (ip_proto) {
2544 case IPPROTO_TCP:
2545 MLX5_SET(fte_match_set_lyr_2_4, headers_c,
2546 tcp_sport, ntohs(match.mask->src));
2547 MLX5_SET(fte_match_set_lyr_2_4, headers_v,
2548 tcp_sport, ntohs(match.key->src));
2549
2550 MLX5_SET(fte_match_set_lyr_2_4, headers_c,
2551 tcp_dport, ntohs(match.mask->dst));
2552 MLX5_SET(fte_match_set_lyr_2_4, headers_v,
2553 tcp_dport, ntohs(match.key->dst));
2554 break;
2555
2556 case IPPROTO_UDP:
2557 MLX5_SET(fte_match_set_lyr_2_4, headers_c,
2558 udp_sport, ntohs(match.mask->src));
2559 MLX5_SET(fte_match_set_lyr_2_4, headers_v,
2560 udp_sport, ntohs(match.key->src));
2561
2562 MLX5_SET(fte_match_set_lyr_2_4, headers_c,
2563 udp_dport, ntohs(match.mask->dst));
2564 MLX5_SET(fte_match_set_lyr_2_4, headers_v,
2565 udp_dport, ntohs(match.key->dst));
2566 break;
2567 default:
2568 NL_SET_ERR_MSG_MOD(extack,
2569 "Only UDP and TCP transports are supported for L4 matching");
2570 netdev_err(priv->netdev,
2571 "Only UDP and TCP transport are supported\n");
2572 return -EINVAL;
2573 }
2574
2575 if (match.mask->src || match.mask->dst)
2576 *match_level = MLX5_MATCH_L4;
2577 }
2578
2579 if (flow_rule_match_key(rule, FLOW_DISSECTOR_KEY_TCP)) {
2580 struct flow_match_tcp match;
2581
2582 flow_rule_match_tcp(rule, &match);
2583 MLX5_SET(fte_match_set_lyr_2_4, headers_c, tcp_flags,
2584 ntohs(match.mask->flags));
2585 MLX5_SET(fte_match_set_lyr_2_4, headers_v, tcp_flags,
2586 ntohs(match.key->flags));
2587
2588 if (match.mask->flags)
2589 *match_level = MLX5_MATCH_L4;
2590 }
2591
2592 return 0;
2593 }
2594
parse_cls_flower(struct mlx5e_priv * priv,struct mlx5e_tc_flow * flow,struct mlx5_flow_spec * spec,struct flow_cls_offload * f,struct net_device * filter_dev)2595 static int parse_cls_flower(struct mlx5e_priv *priv,
2596 struct mlx5e_tc_flow *flow,
2597 struct mlx5_flow_spec *spec,
2598 struct flow_cls_offload *f,
2599 struct net_device *filter_dev)
2600 {
2601 u8 inner_match_level, outer_match_level, non_tunnel_match_level;
2602 struct netlink_ext_ack *extack = f->common.extack;
2603 struct mlx5_core_dev *dev = priv->mdev;
2604 struct mlx5_eswitch *esw = dev->priv.eswitch;
2605 struct mlx5e_rep_priv *rpriv = priv->ppriv;
2606 struct mlx5_eswitch_rep *rep;
2607 bool is_eswitch_flow;
2608 int err;
2609
2610 inner_match_level = MLX5_MATCH_NONE;
2611 outer_match_level = MLX5_MATCH_NONE;
2612
2613 err = __parse_cls_flower(priv, flow, spec, f, filter_dev,
2614 &inner_match_level, &outer_match_level);
2615 non_tunnel_match_level = (inner_match_level == MLX5_MATCH_NONE) ?
2616 outer_match_level : inner_match_level;
2617
2618 is_eswitch_flow = mlx5e_is_eswitch_flow(flow);
2619 if (!err && is_eswitch_flow) {
2620 rep = rpriv->rep;
2621 if (rep->vport != MLX5_VPORT_UPLINK &&
2622 (esw->offloads.inline_mode != MLX5_INLINE_MODE_NONE &&
2623 esw->offloads.inline_mode < non_tunnel_match_level)) {
2624 NL_SET_ERR_MSG_MOD(extack,
2625 "Flow is not offloaded due to min inline setting");
2626 netdev_warn(priv->netdev,
2627 "Flow is not offloaded due to min inline setting, required %d actual %d\n",
2628 non_tunnel_match_level, esw->offloads.inline_mode);
2629 return -EOPNOTSUPP;
2630 }
2631 }
2632
2633 flow->attr->inner_match_level = inner_match_level;
2634 flow->attr->outer_match_level = outer_match_level;
2635
2636
2637 return err;
2638 }
2639
2640 struct pedit_headers {
2641 struct ethhdr eth;
2642 struct vlan_hdr vlan;
2643 struct iphdr ip4;
2644 struct ipv6hdr ip6;
2645 struct tcphdr tcp;
2646 struct udphdr udp;
2647 };
2648
2649 struct pedit_headers_action {
2650 struct pedit_headers vals;
2651 struct pedit_headers masks;
2652 u32 pedits;
2653 };
2654
2655 static int pedit_header_offsets[] = {
2656 [FLOW_ACT_MANGLE_HDR_TYPE_ETH] = offsetof(struct pedit_headers, eth),
2657 [FLOW_ACT_MANGLE_HDR_TYPE_IP4] = offsetof(struct pedit_headers, ip4),
2658 [FLOW_ACT_MANGLE_HDR_TYPE_IP6] = offsetof(struct pedit_headers, ip6),
2659 [FLOW_ACT_MANGLE_HDR_TYPE_TCP] = offsetof(struct pedit_headers, tcp),
2660 [FLOW_ACT_MANGLE_HDR_TYPE_UDP] = offsetof(struct pedit_headers, udp),
2661 };
2662
2663 #define pedit_header(_ph, _htype) ((void *)(_ph) + pedit_header_offsets[_htype])
2664
set_pedit_val(u8 hdr_type,u32 mask,u32 val,u32 offset,struct pedit_headers_action * hdrs)2665 static int set_pedit_val(u8 hdr_type, u32 mask, u32 val, u32 offset,
2666 struct pedit_headers_action *hdrs)
2667 {
2668 u32 *curr_pmask, *curr_pval;
2669
2670 curr_pmask = (u32 *)(pedit_header(&hdrs->masks, hdr_type) + offset);
2671 curr_pval = (u32 *)(pedit_header(&hdrs->vals, hdr_type) + offset);
2672
2673 if (*curr_pmask & mask) /* disallow acting twice on the same location */
2674 goto out_err;
2675
2676 *curr_pmask |= mask;
2677 *curr_pval |= (val & mask);
2678
2679 return 0;
2680
2681 out_err:
2682 return -EOPNOTSUPP;
2683 }
2684
2685 struct mlx5_fields {
2686 u8 field;
2687 u8 field_bsize;
2688 u32 field_mask;
2689 u32 offset;
2690 u32 match_offset;
2691 };
2692
2693 #define OFFLOAD(fw_field, field_bsize, field_mask, field, off, match_field) \
2694 {MLX5_ACTION_IN_FIELD_OUT_ ## fw_field, field_bsize, field_mask, \
2695 offsetof(struct pedit_headers, field) + (off), \
2696 MLX5_BYTE_OFF(fte_match_set_lyr_2_4, match_field)}
2697
2698 /* masked values are the same and there are no rewrites that do not have a
2699 * match.
2700 */
2701 #define SAME_VAL_MASK(type, valp, maskp, matchvalp, matchmaskp) ({ \
2702 type matchmaskx = *(type *)(matchmaskp); \
2703 type matchvalx = *(type *)(matchvalp); \
2704 type maskx = *(type *)(maskp); \
2705 type valx = *(type *)(valp); \
2706 \
2707 (valx & maskx) == (matchvalx & matchmaskx) && !(maskx & (maskx ^ \
2708 matchmaskx)); \
2709 })
2710
cmp_val_mask(void * valp,void * maskp,void * matchvalp,void * matchmaskp,u8 bsize)2711 static bool cmp_val_mask(void *valp, void *maskp, void *matchvalp,
2712 void *matchmaskp, u8 bsize)
2713 {
2714 bool same = false;
2715
2716 switch (bsize) {
2717 case 8:
2718 same = SAME_VAL_MASK(u8, valp, maskp, matchvalp, matchmaskp);
2719 break;
2720 case 16:
2721 same = SAME_VAL_MASK(u16, valp, maskp, matchvalp, matchmaskp);
2722 break;
2723 case 32:
2724 same = SAME_VAL_MASK(u32, valp, maskp, matchvalp, matchmaskp);
2725 break;
2726 }
2727
2728 return same;
2729 }
2730
2731 static struct mlx5_fields fields[] = {
2732 OFFLOAD(DMAC_47_16, 32, U32_MAX, eth.h_dest[0], 0, dmac_47_16),
2733 OFFLOAD(DMAC_15_0, 16, U16_MAX, eth.h_dest[4], 0, dmac_15_0),
2734 OFFLOAD(SMAC_47_16, 32, U32_MAX, eth.h_source[0], 0, smac_47_16),
2735 OFFLOAD(SMAC_15_0, 16, U16_MAX, eth.h_source[4], 0, smac_15_0),
2736 OFFLOAD(ETHERTYPE, 16, U16_MAX, eth.h_proto, 0, ethertype),
2737 OFFLOAD(FIRST_VID, 16, U16_MAX, vlan.h_vlan_TCI, 0, first_vid),
2738
2739 OFFLOAD(IP_DSCP, 8, 0xfc, ip4.tos, 0, ip_dscp),
2740 OFFLOAD(IP_TTL, 8, U8_MAX, ip4.ttl, 0, ttl_hoplimit),
2741 OFFLOAD(SIPV4, 32, U32_MAX, ip4.saddr, 0, src_ipv4_src_ipv6.ipv4_layout.ipv4),
2742 OFFLOAD(DIPV4, 32, U32_MAX, ip4.daddr, 0, dst_ipv4_dst_ipv6.ipv4_layout.ipv4),
2743
2744 OFFLOAD(SIPV6_127_96, 32, U32_MAX, ip6.saddr.s6_addr32[0], 0,
2745 src_ipv4_src_ipv6.ipv6_layout.ipv6[0]),
2746 OFFLOAD(SIPV6_95_64, 32, U32_MAX, ip6.saddr.s6_addr32[1], 0,
2747 src_ipv4_src_ipv6.ipv6_layout.ipv6[4]),
2748 OFFLOAD(SIPV6_63_32, 32, U32_MAX, ip6.saddr.s6_addr32[2], 0,
2749 src_ipv4_src_ipv6.ipv6_layout.ipv6[8]),
2750 OFFLOAD(SIPV6_31_0, 32, U32_MAX, ip6.saddr.s6_addr32[3], 0,
2751 src_ipv4_src_ipv6.ipv6_layout.ipv6[12]),
2752 OFFLOAD(DIPV6_127_96, 32, U32_MAX, ip6.daddr.s6_addr32[0], 0,
2753 dst_ipv4_dst_ipv6.ipv6_layout.ipv6[0]),
2754 OFFLOAD(DIPV6_95_64, 32, U32_MAX, ip6.daddr.s6_addr32[1], 0,
2755 dst_ipv4_dst_ipv6.ipv6_layout.ipv6[4]),
2756 OFFLOAD(DIPV6_63_32, 32, U32_MAX, ip6.daddr.s6_addr32[2], 0,
2757 dst_ipv4_dst_ipv6.ipv6_layout.ipv6[8]),
2758 OFFLOAD(DIPV6_31_0, 32, U32_MAX, ip6.daddr.s6_addr32[3], 0,
2759 dst_ipv4_dst_ipv6.ipv6_layout.ipv6[12]),
2760 OFFLOAD(IPV6_HOPLIMIT, 8, U8_MAX, ip6.hop_limit, 0, ttl_hoplimit),
2761 OFFLOAD(IP_DSCP, 16, 0xc00f, ip6, 0, ip_dscp),
2762
2763 OFFLOAD(TCP_SPORT, 16, U16_MAX, tcp.source, 0, tcp_sport),
2764 OFFLOAD(TCP_DPORT, 16, U16_MAX, tcp.dest, 0, tcp_dport),
2765 /* in linux iphdr tcp_flags is 8 bits long */
2766 OFFLOAD(TCP_FLAGS, 8, U8_MAX, tcp.ack_seq, 5, tcp_flags),
2767
2768 OFFLOAD(UDP_SPORT, 16, U16_MAX, udp.source, 0, udp_sport),
2769 OFFLOAD(UDP_DPORT, 16, U16_MAX, udp.dest, 0, udp_dport),
2770 };
2771
mask_to_le(unsigned long mask,int size)2772 static unsigned long mask_to_le(unsigned long mask, int size)
2773 {
2774 __be32 mask_be32;
2775 __be16 mask_be16;
2776
2777 if (size == 32) {
2778 mask_be32 = (__force __be32)(mask);
2779 mask = (__force unsigned long)cpu_to_le32(be32_to_cpu(mask_be32));
2780 } else if (size == 16) {
2781 mask_be32 = (__force __be32)(mask);
2782 mask_be16 = *(__be16 *)&mask_be32;
2783 mask = (__force unsigned long)cpu_to_le16(be16_to_cpu(mask_be16));
2784 }
2785
2786 return mask;
2787 }
offload_pedit_fields(struct mlx5e_priv * priv,int namespace,struct pedit_headers_action * hdrs,struct mlx5e_tc_flow_parse_attr * parse_attr,u32 * action_flags,struct netlink_ext_ack * extack)2788 static int offload_pedit_fields(struct mlx5e_priv *priv,
2789 int namespace,
2790 struct pedit_headers_action *hdrs,
2791 struct mlx5e_tc_flow_parse_attr *parse_attr,
2792 u32 *action_flags,
2793 struct netlink_ext_ack *extack)
2794 {
2795 struct pedit_headers *set_masks, *add_masks, *set_vals, *add_vals;
2796 int i, action_size, first, last, next_z;
2797 void *headers_c, *headers_v, *action, *vals_p;
2798 u32 *s_masks_p, *a_masks_p, s_mask, a_mask;
2799 struct mlx5e_tc_mod_hdr_acts *mod_acts;
2800 struct mlx5_fields *f;
2801 unsigned long mask, field_mask;
2802 int err;
2803 u8 cmd;
2804
2805 mod_acts = &parse_attr->mod_hdr_acts;
2806 headers_c = get_match_headers_criteria(*action_flags, &parse_attr->spec);
2807 headers_v = get_match_headers_value(*action_flags, &parse_attr->spec);
2808
2809 set_masks = &hdrs[0].masks;
2810 add_masks = &hdrs[1].masks;
2811 set_vals = &hdrs[0].vals;
2812 add_vals = &hdrs[1].vals;
2813
2814 action_size = MLX5_UN_SZ_BYTES(set_add_copy_action_in_auto);
2815
2816 for (i = 0; i < ARRAY_SIZE(fields); i++) {
2817 bool skip;
2818
2819 f = &fields[i];
2820 /* avoid seeing bits set from previous iterations */
2821 s_mask = 0;
2822 a_mask = 0;
2823
2824 s_masks_p = (void *)set_masks + f->offset;
2825 a_masks_p = (void *)add_masks + f->offset;
2826
2827 s_mask = *s_masks_p & f->field_mask;
2828 a_mask = *a_masks_p & f->field_mask;
2829
2830 if (!s_mask && !a_mask) /* nothing to offload here */
2831 continue;
2832
2833 if (s_mask && a_mask) {
2834 NL_SET_ERR_MSG_MOD(extack,
2835 "can't set and add to the same HW field");
2836 printk(KERN_WARNING "mlx5: can't set and add to the same HW field (%x)\n", f->field);
2837 return -EOPNOTSUPP;
2838 }
2839
2840 skip = false;
2841 if (s_mask) {
2842 void *match_mask = headers_c + f->match_offset;
2843 void *match_val = headers_v + f->match_offset;
2844
2845 cmd = MLX5_ACTION_TYPE_SET;
2846 mask = s_mask;
2847 vals_p = (void *)set_vals + f->offset;
2848 /* don't rewrite if we have a match on the same value */
2849 if (cmp_val_mask(vals_p, s_masks_p, match_val,
2850 match_mask, f->field_bsize))
2851 skip = true;
2852 /* clear to denote we consumed this field */
2853 *s_masks_p &= ~f->field_mask;
2854 } else {
2855 cmd = MLX5_ACTION_TYPE_ADD;
2856 mask = a_mask;
2857 vals_p = (void *)add_vals + f->offset;
2858 /* add 0 is no change */
2859 if ((*(u32 *)vals_p & f->field_mask) == 0)
2860 skip = true;
2861 /* clear to denote we consumed this field */
2862 *a_masks_p &= ~f->field_mask;
2863 }
2864 if (skip)
2865 continue;
2866
2867 mask = mask_to_le(mask, f->field_bsize);
2868
2869 first = find_first_bit(&mask, f->field_bsize);
2870 next_z = find_next_zero_bit(&mask, f->field_bsize, first);
2871 last = find_last_bit(&mask, f->field_bsize);
2872 if (first < next_z && next_z < last) {
2873 NL_SET_ERR_MSG_MOD(extack,
2874 "rewrite of few sub-fields isn't supported");
2875 printk(KERN_WARNING "mlx5: rewrite of few sub-fields (mask %lx) isn't offloaded\n",
2876 mask);
2877 return -EOPNOTSUPP;
2878 }
2879
2880 err = alloc_mod_hdr_actions(priv->mdev, namespace, mod_acts);
2881 if (err) {
2882 NL_SET_ERR_MSG_MOD(extack,
2883 "too many pedit actions, can't offload");
2884 mlx5_core_warn(priv->mdev,
2885 "mlx5: parsed %d pedit actions, can't do more\n",
2886 mod_acts->num_actions);
2887 return err;
2888 }
2889
2890 action = mod_acts->actions +
2891 (mod_acts->num_actions * action_size);
2892 MLX5_SET(set_action_in, action, action_type, cmd);
2893 MLX5_SET(set_action_in, action, field, f->field);
2894
2895 if (cmd == MLX5_ACTION_TYPE_SET) {
2896 int start;
2897
2898 field_mask = mask_to_le(f->field_mask, f->field_bsize);
2899
2900 /* if field is bit sized it can start not from first bit */
2901 start = find_first_bit(&field_mask, f->field_bsize);
2902
2903 MLX5_SET(set_action_in, action, offset, first - start);
2904 /* length is num of bits to be written, zero means length of 32 */
2905 MLX5_SET(set_action_in, action, length, (last - first + 1));
2906 }
2907
2908 if (f->field_bsize == 32)
2909 MLX5_SET(set_action_in, action, data, ntohl(*(__be32 *)vals_p) >> first);
2910 else if (f->field_bsize == 16)
2911 MLX5_SET(set_action_in, action, data, ntohs(*(__be16 *)vals_p) >> first);
2912 else if (f->field_bsize == 8)
2913 MLX5_SET(set_action_in, action, data, *(u8 *)vals_p >> first);
2914
2915 ++mod_acts->num_actions;
2916 }
2917
2918 return 0;
2919 }
2920
mlx5e_flow_namespace_max_modify_action(struct mlx5_core_dev * mdev,int namespace)2921 static int mlx5e_flow_namespace_max_modify_action(struct mlx5_core_dev *mdev,
2922 int namespace)
2923 {
2924 if (namespace == MLX5_FLOW_NAMESPACE_FDB) /* FDB offloading */
2925 return MLX5_CAP_ESW_FLOWTABLE_FDB(mdev, max_modify_header_actions);
2926 else /* namespace is MLX5_FLOW_NAMESPACE_KERNEL - NIC offloading */
2927 return MLX5_CAP_FLOWTABLE_NIC_RX(mdev, max_modify_header_actions);
2928 }
2929
alloc_mod_hdr_actions(struct mlx5_core_dev * mdev,int namespace,struct mlx5e_tc_mod_hdr_acts * mod_hdr_acts)2930 int alloc_mod_hdr_actions(struct mlx5_core_dev *mdev,
2931 int namespace,
2932 struct mlx5e_tc_mod_hdr_acts *mod_hdr_acts)
2933 {
2934 int action_size, new_num_actions, max_hw_actions;
2935 size_t new_sz, old_sz;
2936 void *ret;
2937
2938 if (mod_hdr_acts->num_actions < mod_hdr_acts->max_actions)
2939 return 0;
2940
2941 action_size = MLX5_UN_SZ_BYTES(set_add_copy_action_in_auto);
2942
2943 max_hw_actions = mlx5e_flow_namespace_max_modify_action(mdev,
2944 namespace);
2945 new_num_actions = min(max_hw_actions,
2946 mod_hdr_acts->actions ?
2947 mod_hdr_acts->max_actions * 2 : 1);
2948 if (mod_hdr_acts->max_actions == new_num_actions)
2949 return -ENOSPC;
2950
2951 new_sz = action_size * new_num_actions;
2952 old_sz = mod_hdr_acts->max_actions * action_size;
2953 ret = krealloc(mod_hdr_acts->actions, new_sz, GFP_KERNEL);
2954 if (!ret)
2955 return -ENOMEM;
2956
2957 memset(ret + old_sz, 0, new_sz - old_sz);
2958 mod_hdr_acts->actions = ret;
2959 mod_hdr_acts->max_actions = new_num_actions;
2960
2961 return 0;
2962 }
2963
dealloc_mod_hdr_actions(struct mlx5e_tc_mod_hdr_acts * mod_hdr_acts)2964 void dealloc_mod_hdr_actions(struct mlx5e_tc_mod_hdr_acts *mod_hdr_acts)
2965 {
2966 kfree(mod_hdr_acts->actions);
2967 mod_hdr_acts->actions = NULL;
2968 mod_hdr_acts->num_actions = 0;
2969 mod_hdr_acts->max_actions = 0;
2970 }
2971
2972 static const struct pedit_headers zero_masks = {};
2973
2974 static int
parse_pedit_to_modify_hdr(struct mlx5e_priv * priv,const struct flow_action_entry * act,int namespace,struct mlx5e_tc_flow_parse_attr * parse_attr,struct pedit_headers_action * hdrs,struct netlink_ext_ack * extack)2975 parse_pedit_to_modify_hdr(struct mlx5e_priv *priv,
2976 const struct flow_action_entry *act, int namespace,
2977 struct mlx5e_tc_flow_parse_attr *parse_attr,
2978 struct pedit_headers_action *hdrs,
2979 struct netlink_ext_ack *extack)
2980 {
2981 u8 cmd = (act->id == FLOW_ACTION_MANGLE) ? 0 : 1;
2982 int err = -EOPNOTSUPP;
2983 u32 mask, val, offset;
2984 u8 htype;
2985
2986 htype = act->mangle.htype;
2987 err = -EOPNOTSUPP; /* can't be all optimistic */
2988
2989 if (htype == FLOW_ACT_MANGLE_UNSPEC) {
2990 NL_SET_ERR_MSG_MOD(extack, "legacy pedit isn't offloaded");
2991 goto out_err;
2992 }
2993
2994 if (!mlx5e_flow_namespace_max_modify_action(priv->mdev, namespace)) {
2995 NL_SET_ERR_MSG_MOD(extack,
2996 "The pedit offload action is not supported");
2997 goto out_err;
2998 }
2999
3000 mask = act->mangle.mask;
3001 val = act->mangle.val;
3002 offset = act->mangle.offset;
3003
3004 err = set_pedit_val(htype, ~mask, val, offset, &hdrs[cmd]);
3005 if (err)
3006 goto out_err;
3007
3008 hdrs[cmd].pedits++;
3009
3010 return 0;
3011 out_err:
3012 return err;
3013 }
3014
3015 static int
parse_pedit_to_reformat(struct mlx5e_priv * priv,const struct flow_action_entry * act,struct mlx5e_tc_flow_parse_attr * parse_attr,struct netlink_ext_ack * extack)3016 parse_pedit_to_reformat(struct mlx5e_priv *priv,
3017 const struct flow_action_entry *act,
3018 struct mlx5e_tc_flow_parse_attr *parse_attr,
3019 struct netlink_ext_ack *extack)
3020 {
3021 u32 mask, val, offset;
3022 u32 *p;
3023
3024 if (act->id != FLOW_ACTION_MANGLE)
3025 return -EOPNOTSUPP;
3026
3027 if (act->mangle.htype != FLOW_ACT_MANGLE_HDR_TYPE_ETH) {
3028 NL_SET_ERR_MSG_MOD(extack, "Only Ethernet modification is supported");
3029 return -EOPNOTSUPP;
3030 }
3031
3032 mask = ~act->mangle.mask;
3033 val = act->mangle.val;
3034 offset = act->mangle.offset;
3035 p = (u32 *)&parse_attr->eth;
3036 *(p + (offset >> 2)) |= (val & mask);
3037
3038 return 0;
3039 }
3040
parse_tc_pedit_action(struct mlx5e_priv * priv,const struct flow_action_entry * act,int namespace,struct mlx5e_tc_flow_parse_attr * parse_attr,struct pedit_headers_action * hdrs,struct mlx5e_tc_flow * flow,struct netlink_ext_ack * extack)3041 static int parse_tc_pedit_action(struct mlx5e_priv *priv,
3042 const struct flow_action_entry *act, int namespace,
3043 struct mlx5e_tc_flow_parse_attr *parse_attr,
3044 struct pedit_headers_action *hdrs,
3045 struct mlx5e_tc_flow *flow,
3046 struct netlink_ext_ack *extack)
3047 {
3048 if (flow && flow_flag_test(flow, L3_TO_L2_DECAP))
3049 return parse_pedit_to_reformat(priv, act, parse_attr, extack);
3050
3051 return parse_pedit_to_modify_hdr(priv, act, namespace,
3052 parse_attr, hdrs, extack);
3053 }
3054
alloc_tc_pedit_action(struct mlx5e_priv * priv,int namespace,struct mlx5e_tc_flow_parse_attr * parse_attr,struct pedit_headers_action * hdrs,u32 * action_flags,struct netlink_ext_ack * extack)3055 static int alloc_tc_pedit_action(struct mlx5e_priv *priv, int namespace,
3056 struct mlx5e_tc_flow_parse_attr *parse_attr,
3057 struct pedit_headers_action *hdrs,
3058 u32 *action_flags,
3059 struct netlink_ext_ack *extack)
3060 {
3061 struct pedit_headers *cmd_masks;
3062 int err;
3063 u8 cmd;
3064
3065 err = offload_pedit_fields(priv, namespace, hdrs, parse_attr,
3066 action_flags, extack);
3067 if (err < 0)
3068 goto out_dealloc_parsed_actions;
3069
3070 for (cmd = 0; cmd < __PEDIT_CMD_MAX; cmd++) {
3071 cmd_masks = &hdrs[cmd].masks;
3072 if (memcmp(cmd_masks, &zero_masks, sizeof(zero_masks))) {
3073 NL_SET_ERR_MSG_MOD(extack,
3074 "attempt to offload an unsupported field");
3075 netdev_warn(priv->netdev, "attempt to offload an unsupported field (cmd %d)\n", cmd);
3076 print_hex_dump(KERN_WARNING, "mask: ", DUMP_PREFIX_ADDRESS,
3077 16, 1, cmd_masks, sizeof(zero_masks), true);
3078 err = -EOPNOTSUPP;
3079 goto out_dealloc_parsed_actions;
3080 }
3081 }
3082
3083 return 0;
3084
3085 out_dealloc_parsed_actions:
3086 dealloc_mod_hdr_actions(&parse_attr->mod_hdr_acts);
3087 return err;
3088 }
3089
csum_offload_supported(struct mlx5e_priv * priv,u32 action,u32 update_flags,struct netlink_ext_ack * extack)3090 static bool csum_offload_supported(struct mlx5e_priv *priv,
3091 u32 action,
3092 u32 update_flags,
3093 struct netlink_ext_ack *extack)
3094 {
3095 u32 prot_flags = TCA_CSUM_UPDATE_FLAG_IPV4HDR | TCA_CSUM_UPDATE_FLAG_TCP |
3096 TCA_CSUM_UPDATE_FLAG_UDP;
3097
3098 /* The HW recalcs checksums only if re-writing headers */
3099 if (!(action & MLX5_FLOW_CONTEXT_ACTION_MOD_HDR)) {
3100 NL_SET_ERR_MSG_MOD(extack,
3101 "TC csum action is only offloaded with pedit");
3102 netdev_warn(priv->netdev,
3103 "TC csum action is only offloaded with pedit\n");
3104 return false;
3105 }
3106
3107 if (update_flags & ~prot_flags) {
3108 NL_SET_ERR_MSG_MOD(extack,
3109 "can't offload TC csum action for some header/s");
3110 netdev_warn(priv->netdev,
3111 "can't offload TC csum action for some header/s - flags %#x\n",
3112 update_flags);
3113 return false;
3114 }
3115
3116 return true;
3117 }
3118
3119 struct ip_ttl_word {
3120 __u8 ttl;
3121 __u8 protocol;
3122 __sum16 check;
3123 };
3124
3125 struct ipv6_hoplimit_word {
3126 __be16 payload_len;
3127 __u8 nexthdr;
3128 __u8 hop_limit;
3129 };
3130
is_action_keys_supported(const struct flow_action_entry * act,bool ct_flow,bool * modify_ip_header,bool * modify_tuple,struct netlink_ext_ack * extack)3131 static int is_action_keys_supported(const struct flow_action_entry *act,
3132 bool ct_flow, bool *modify_ip_header,
3133 bool *modify_tuple,
3134 struct netlink_ext_ack *extack)
3135 {
3136 u32 mask, offset;
3137 u8 htype;
3138
3139 htype = act->mangle.htype;
3140 offset = act->mangle.offset;
3141 mask = ~act->mangle.mask;
3142 /* For IPv4 & IPv6 header check 4 byte word,
3143 * to determine that modified fields
3144 * are NOT ttl & hop_limit only.
3145 */
3146 if (htype == FLOW_ACT_MANGLE_HDR_TYPE_IP4) {
3147 struct ip_ttl_word *ttl_word =
3148 (struct ip_ttl_word *)&mask;
3149
3150 if (offset != offsetof(struct iphdr, ttl) ||
3151 ttl_word->protocol ||
3152 ttl_word->check) {
3153 *modify_ip_header = true;
3154 }
3155
3156 if (offset >= offsetof(struct iphdr, saddr))
3157 *modify_tuple = true;
3158
3159 if (ct_flow && *modify_tuple) {
3160 NL_SET_ERR_MSG_MOD(extack,
3161 "can't offload re-write of ipv4 address with action ct");
3162 return -EOPNOTSUPP;
3163 }
3164 } else if (htype == FLOW_ACT_MANGLE_HDR_TYPE_IP6) {
3165 struct ipv6_hoplimit_word *hoplimit_word =
3166 (struct ipv6_hoplimit_word *)&mask;
3167
3168 if (offset != offsetof(struct ipv6hdr, payload_len) ||
3169 hoplimit_word->payload_len ||
3170 hoplimit_word->nexthdr) {
3171 *modify_ip_header = true;
3172 }
3173
3174 if (ct_flow && offset >= offsetof(struct ipv6hdr, saddr))
3175 *modify_tuple = true;
3176
3177 if (ct_flow && *modify_tuple) {
3178 NL_SET_ERR_MSG_MOD(extack,
3179 "can't offload re-write of ipv6 address with action ct");
3180 return -EOPNOTSUPP;
3181 }
3182 } else if (htype == FLOW_ACT_MANGLE_HDR_TYPE_TCP ||
3183 htype == FLOW_ACT_MANGLE_HDR_TYPE_UDP) {
3184 *modify_tuple = true;
3185 if (ct_flow) {
3186 NL_SET_ERR_MSG_MOD(extack,
3187 "can't offload re-write of transport header ports with action ct");
3188 return -EOPNOTSUPP;
3189 }
3190 }
3191
3192 return 0;
3193 }
3194
modify_header_match_supported(struct mlx5e_priv * priv,struct mlx5_flow_spec * spec,struct flow_action * flow_action,u32 actions,bool ct_flow,bool ct_clear,struct netlink_ext_ack * extack)3195 static bool modify_header_match_supported(struct mlx5e_priv *priv,
3196 struct mlx5_flow_spec *spec,
3197 struct flow_action *flow_action,
3198 u32 actions, bool ct_flow,
3199 bool ct_clear,
3200 struct netlink_ext_ack *extack)
3201 {
3202 const struct flow_action_entry *act;
3203 bool modify_ip_header, modify_tuple;
3204 void *headers_c;
3205 void *headers_v;
3206 u16 ethertype;
3207 u8 ip_proto;
3208 int i, err;
3209
3210 headers_c = get_match_headers_criteria(actions, spec);
3211 headers_v = get_match_headers_value(actions, spec);
3212 ethertype = MLX5_GET(fte_match_set_lyr_2_4, headers_v, ethertype);
3213
3214 /* for non-IP we only re-write MACs, so we're okay */
3215 if (MLX5_GET(fte_match_set_lyr_2_4, headers_c, ip_version) == 0 &&
3216 ethertype != ETH_P_IP && ethertype != ETH_P_IPV6)
3217 goto out_ok;
3218
3219 modify_ip_header = false;
3220 modify_tuple = false;
3221 flow_action_for_each(i, act, flow_action) {
3222 if (act->id != FLOW_ACTION_MANGLE &&
3223 act->id != FLOW_ACTION_ADD)
3224 continue;
3225
3226 err = is_action_keys_supported(act, ct_flow,
3227 &modify_ip_header,
3228 &modify_tuple, extack);
3229 if (err)
3230 return err;
3231 }
3232
3233 /* Add ct_state=-trk match so it will be offloaded for non ct flows
3234 * (or after clear action), as otherwise, since the tuple is changed,
3235 * we can't restore ct state
3236 */
3237 if (!ct_clear && modify_tuple &&
3238 mlx5_tc_ct_add_no_trk_match(spec)) {
3239 NL_SET_ERR_MSG_MOD(extack,
3240 "can't offload tuple modify header with ct matches");
3241 netdev_info(priv->netdev,
3242 "can't offload tuple modify header with ct matches");
3243 return false;
3244 }
3245
3246 ip_proto = MLX5_GET(fte_match_set_lyr_2_4, headers_v, ip_protocol);
3247 if (modify_ip_header && ip_proto != IPPROTO_TCP &&
3248 ip_proto != IPPROTO_UDP && ip_proto != IPPROTO_ICMP) {
3249 NL_SET_ERR_MSG_MOD(extack,
3250 "can't offload re-write of non TCP/UDP");
3251 netdev_info(priv->netdev, "can't offload re-write of ip proto %d\n",
3252 ip_proto);
3253 return false;
3254 }
3255
3256 out_ok:
3257 return true;
3258 }
3259
actions_match_supported(struct mlx5e_priv * priv,struct flow_action * flow_action,struct mlx5e_tc_flow_parse_attr * parse_attr,struct mlx5e_tc_flow * flow,struct netlink_ext_ack * extack)3260 static bool actions_match_supported(struct mlx5e_priv *priv,
3261 struct flow_action *flow_action,
3262 struct mlx5e_tc_flow_parse_attr *parse_attr,
3263 struct mlx5e_tc_flow *flow,
3264 struct netlink_ext_ack *extack)
3265 {
3266 bool ct_flow = false, ct_clear = false;
3267 u32 actions;
3268
3269 ct_clear = flow->attr->ct_attr.ct_action &
3270 TCA_CT_ACT_CLEAR;
3271 ct_flow = flow_flag_test(flow, CT) && !ct_clear;
3272 actions = flow->attr->action;
3273
3274 if (mlx5e_is_eswitch_flow(flow)) {
3275 if (flow->attr->esw_attr->split_count && ct_flow) {
3276 /* All registers used by ct are cleared when using
3277 * split rules.
3278 */
3279 NL_SET_ERR_MSG_MOD(extack,
3280 "Can't offload mirroring with action ct");
3281 return false;
3282 }
3283 }
3284
3285 if (actions & MLX5_FLOW_CONTEXT_ACTION_MOD_HDR)
3286 return modify_header_match_supported(priv, &parse_attr->spec,
3287 flow_action, actions,
3288 ct_flow, ct_clear,
3289 extack);
3290
3291 return true;
3292 }
3293
same_port_devs(struct mlx5e_priv * priv,struct mlx5e_priv * peer_priv)3294 static bool same_port_devs(struct mlx5e_priv *priv, struct mlx5e_priv *peer_priv)
3295 {
3296 return priv->mdev == peer_priv->mdev;
3297 }
3298
same_hw_devs(struct mlx5e_priv * priv,struct mlx5e_priv * peer_priv)3299 static bool same_hw_devs(struct mlx5e_priv *priv, struct mlx5e_priv *peer_priv)
3300 {
3301 struct mlx5_core_dev *fmdev, *pmdev;
3302 u64 fsystem_guid, psystem_guid;
3303
3304 fmdev = priv->mdev;
3305 pmdev = peer_priv->mdev;
3306
3307 fsystem_guid = mlx5_query_nic_system_image_guid(fmdev);
3308 psystem_guid = mlx5_query_nic_system_image_guid(pmdev);
3309
3310 return (fsystem_guid == psystem_guid);
3311 }
3312
add_vlan_rewrite_action(struct mlx5e_priv * priv,int namespace,const struct flow_action_entry * act,struct mlx5e_tc_flow_parse_attr * parse_attr,struct pedit_headers_action * hdrs,u32 * action,struct netlink_ext_ack * extack)3313 static int add_vlan_rewrite_action(struct mlx5e_priv *priv, int namespace,
3314 const struct flow_action_entry *act,
3315 struct mlx5e_tc_flow_parse_attr *parse_attr,
3316 struct pedit_headers_action *hdrs,
3317 u32 *action, struct netlink_ext_ack *extack)
3318 {
3319 u16 mask16 = VLAN_VID_MASK;
3320 u16 val16 = act->vlan.vid & VLAN_VID_MASK;
3321 const struct flow_action_entry pedit_act = {
3322 .id = FLOW_ACTION_MANGLE,
3323 .mangle.htype = FLOW_ACT_MANGLE_HDR_TYPE_ETH,
3324 .mangle.offset = offsetof(struct vlan_ethhdr, h_vlan_TCI),
3325 .mangle.mask = ~(u32)be16_to_cpu(*(__be16 *)&mask16),
3326 .mangle.val = (u32)be16_to_cpu(*(__be16 *)&val16),
3327 };
3328 u8 match_prio_mask, match_prio_val;
3329 void *headers_c, *headers_v;
3330 int err;
3331
3332 headers_c = get_match_headers_criteria(*action, &parse_attr->spec);
3333 headers_v = get_match_headers_value(*action, &parse_attr->spec);
3334
3335 if (!(MLX5_GET(fte_match_set_lyr_2_4, headers_c, cvlan_tag) &&
3336 MLX5_GET(fte_match_set_lyr_2_4, headers_v, cvlan_tag))) {
3337 NL_SET_ERR_MSG_MOD(extack,
3338 "VLAN rewrite action must have VLAN protocol match");
3339 return -EOPNOTSUPP;
3340 }
3341
3342 match_prio_mask = MLX5_GET(fte_match_set_lyr_2_4, headers_c, first_prio);
3343 match_prio_val = MLX5_GET(fte_match_set_lyr_2_4, headers_v, first_prio);
3344 if (act->vlan.prio != (match_prio_val & match_prio_mask)) {
3345 NL_SET_ERR_MSG_MOD(extack,
3346 "Changing VLAN prio is not supported");
3347 return -EOPNOTSUPP;
3348 }
3349
3350 err = parse_tc_pedit_action(priv, &pedit_act, namespace, parse_attr, hdrs, NULL, extack);
3351 *action |= MLX5_FLOW_CONTEXT_ACTION_MOD_HDR;
3352
3353 return err;
3354 }
3355
3356 static int
add_vlan_prio_tag_rewrite_action(struct mlx5e_priv * priv,struct mlx5e_tc_flow_parse_attr * parse_attr,struct pedit_headers_action * hdrs,u32 * action,struct netlink_ext_ack * extack)3357 add_vlan_prio_tag_rewrite_action(struct mlx5e_priv *priv,
3358 struct mlx5e_tc_flow_parse_attr *parse_attr,
3359 struct pedit_headers_action *hdrs,
3360 u32 *action, struct netlink_ext_ack *extack)
3361 {
3362 const struct flow_action_entry prio_tag_act = {
3363 .vlan.vid = 0,
3364 .vlan.prio =
3365 MLX5_GET(fte_match_set_lyr_2_4,
3366 get_match_headers_value(*action,
3367 &parse_attr->spec),
3368 first_prio) &
3369 MLX5_GET(fte_match_set_lyr_2_4,
3370 get_match_headers_criteria(*action,
3371 &parse_attr->spec),
3372 first_prio),
3373 };
3374
3375 return add_vlan_rewrite_action(priv, MLX5_FLOW_NAMESPACE_FDB,
3376 &prio_tag_act, parse_attr, hdrs, action,
3377 extack);
3378 }
3379
validate_goto_chain(struct mlx5e_priv * priv,struct mlx5e_tc_flow * flow,const struct flow_action_entry * act,u32 actions,struct netlink_ext_ack * extack)3380 static int validate_goto_chain(struct mlx5e_priv *priv,
3381 struct mlx5e_tc_flow *flow,
3382 const struct flow_action_entry *act,
3383 u32 actions,
3384 struct netlink_ext_ack *extack)
3385 {
3386 bool is_esw = mlx5e_is_eswitch_flow(flow);
3387 struct mlx5_flow_attr *attr = flow->attr;
3388 bool ft_flow = mlx5e_is_ft_flow(flow);
3389 u32 dest_chain = act->chain_index;
3390 struct mlx5_fs_chains *chains;
3391 struct mlx5_eswitch *esw;
3392 u32 reformat_and_fwd;
3393 u32 max_chain;
3394
3395 esw = priv->mdev->priv.eswitch;
3396 chains = is_esw ? esw_chains(esw) : nic_chains(priv);
3397 max_chain = mlx5_chains_get_chain_range(chains);
3398 reformat_and_fwd = is_esw ?
3399 MLX5_CAP_ESW_FLOWTABLE_FDB(priv->mdev, reformat_and_fwd_to_table) :
3400 MLX5_CAP_FLOWTABLE_NIC_RX(priv->mdev, reformat_and_fwd_to_table);
3401
3402 if (ft_flow) {
3403 NL_SET_ERR_MSG_MOD(extack, "Goto action is not supported");
3404 return -EOPNOTSUPP;
3405 }
3406
3407 if (!mlx5_chains_backwards_supported(chains) &&
3408 dest_chain <= attr->chain) {
3409 NL_SET_ERR_MSG_MOD(extack,
3410 "Goto lower numbered chain isn't supported");
3411 return -EOPNOTSUPP;
3412 }
3413
3414 if (dest_chain > max_chain) {
3415 NL_SET_ERR_MSG_MOD(extack,
3416 "Requested destination chain is out of supported range");
3417 return -EOPNOTSUPP;
3418 }
3419
3420 if (actions & (MLX5_FLOW_CONTEXT_ACTION_PACKET_REFORMAT |
3421 MLX5_FLOW_CONTEXT_ACTION_DECAP) &&
3422 !reformat_and_fwd) {
3423 NL_SET_ERR_MSG_MOD(extack,
3424 "Goto chain is not allowed if action has reformat or decap");
3425 return -EOPNOTSUPP;
3426 }
3427
3428 return 0;
3429 }
3430
parse_tc_nic_actions(struct mlx5e_priv * priv,struct flow_action * flow_action,struct mlx5e_tc_flow_parse_attr * parse_attr,struct mlx5e_tc_flow * flow,struct netlink_ext_ack * extack)3431 static int parse_tc_nic_actions(struct mlx5e_priv *priv,
3432 struct flow_action *flow_action,
3433 struct mlx5e_tc_flow_parse_attr *parse_attr,
3434 struct mlx5e_tc_flow *flow,
3435 struct netlink_ext_ack *extack)
3436 {
3437 struct mlx5_flow_attr *attr = flow->attr;
3438 struct pedit_headers_action hdrs[2] = {};
3439 const struct flow_action_entry *act;
3440 struct mlx5_nic_flow_attr *nic_attr;
3441 u32 action = 0;
3442 int err, i;
3443
3444 if (!flow_action_has_entries(flow_action))
3445 return -EINVAL;
3446
3447 if (!flow_action_hw_stats_check(flow_action, extack,
3448 FLOW_ACTION_HW_STATS_DELAYED_BIT))
3449 return -EOPNOTSUPP;
3450
3451 nic_attr = attr->nic_attr;
3452
3453 nic_attr->flow_tag = MLX5_FS_DEFAULT_FLOW_TAG;
3454
3455 flow_action_for_each(i, act, flow_action) {
3456 switch (act->id) {
3457 case FLOW_ACTION_ACCEPT:
3458 action |= MLX5_FLOW_CONTEXT_ACTION_FWD_DEST |
3459 MLX5_FLOW_CONTEXT_ACTION_COUNT;
3460 break;
3461 case FLOW_ACTION_DROP:
3462 action |= MLX5_FLOW_CONTEXT_ACTION_DROP;
3463 if (MLX5_CAP_FLOWTABLE(priv->mdev,
3464 flow_table_properties_nic_receive.flow_counter))
3465 action |= MLX5_FLOW_CONTEXT_ACTION_COUNT;
3466 break;
3467 case FLOW_ACTION_MANGLE:
3468 case FLOW_ACTION_ADD:
3469 err = parse_tc_pedit_action(priv, act, MLX5_FLOW_NAMESPACE_KERNEL,
3470 parse_attr, hdrs, NULL, extack);
3471 if (err)
3472 return err;
3473
3474 action |= MLX5_FLOW_CONTEXT_ACTION_MOD_HDR;
3475 break;
3476 case FLOW_ACTION_VLAN_MANGLE:
3477 err = add_vlan_rewrite_action(priv,
3478 MLX5_FLOW_NAMESPACE_KERNEL,
3479 act, parse_attr, hdrs,
3480 &action, extack);
3481 if (err)
3482 return err;
3483
3484 break;
3485 case FLOW_ACTION_CSUM:
3486 if (csum_offload_supported(priv, action,
3487 act->csum_flags,
3488 extack))
3489 break;
3490
3491 return -EOPNOTSUPP;
3492 case FLOW_ACTION_REDIRECT: {
3493 struct net_device *peer_dev = act->dev;
3494
3495 if (priv->netdev->netdev_ops == peer_dev->netdev_ops &&
3496 same_hw_devs(priv, netdev_priv(peer_dev))) {
3497 parse_attr->mirred_ifindex[0] = peer_dev->ifindex;
3498 flow_flag_set(flow, HAIRPIN);
3499 action |= MLX5_FLOW_CONTEXT_ACTION_FWD_DEST |
3500 MLX5_FLOW_CONTEXT_ACTION_COUNT;
3501 } else {
3502 NL_SET_ERR_MSG_MOD(extack,
3503 "device is not on same HW, can't offload");
3504 netdev_warn(priv->netdev, "device %s not on same HW, can't offload\n",
3505 peer_dev->name);
3506 return -EINVAL;
3507 }
3508 }
3509 break;
3510 case FLOW_ACTION_MARK: {
3511 u32 mark = act->mark;
3512
3513 if (mark & ~MLX5E_TC_FLOW_ID_MASK) {
3514 NL_SET_ERR_MSG_MOD(extack,
3515 "Bad flow mark - only 16 bit is supported");
3516 return -EINVAL;
3517 }
3518
3519 nic_attr->flow_tag = mark;
3520 action |= MLX5_FLOW_CONTEXT_ACTION_FWD_DEST;
3521 }
3522 break;
3523 case FLOW_ACTION_GOTO:
3524 err = validate_goto_chain(priv, flow, act, action,
3525 extack);
3526 if (err)
3527 return err;
3528
3529 action |= MLX5_FLOW_CONTEXT_ACTION_COUNT;
3530 attr->dest_chain = act->chain_index;
3531 break;
3532 case FLOW_ACTION_CT:
3533 err = mlx5_tc_ct_parse_action(get_ct_priv(priv), attr, act, extack);
3534 if (err)
3535 return err;
3536
3537 flow_flag_set(flow, CT);
3538 break;
3539 default:
3540 NL_SET_ERR_MSG_MOD(extack, "The offload action is not supported");
3541 return -EOPNOTSUPP;
3542 }
3543 }
3544
3545 if (hdrs[TCA_PEDIT_KEY_EX_CMD_SET].pedits ||
3546 hdrs[TCA_PEDIT_KEY_EX_CMD_ADD].pedits) {
3547 err = alloc_tc_pedit_action(priv, MLX5_FLOW_NAMESPACE_KERNEL,
3548 parse_attr, hdrs, &action, extack);
3549 if (err)
3550 return err;
3551 /* in case all pedit actions are skipped, remove the MOD_HDR
3552 * flag.
3553 */
3554 if (parse_attr->mod_hdr_acts.num_actions == 0) {
3555 action &= ~MLX5_FLOW_CONTEXT_ACTION_MOD_HDR;
3556 dealloc_mod_hdr_actions(&parse_attr->mod_hdr_acts);
3557 }
3558 }
3559
3560 attr->action = action;
3561
3562 if (attr->dest_chain) {
3563 if (attr->action & MLX5_FLOW_CONTEXT_ACTION_FWD_DEST) {
3564 NL_SET_ERR_MSG(extack, "Mirroring goto chain rules isn't supported");
3565 return -EOPNOTSUPP;
3566 }
3567 attr->action |= MLX5_FLOW_CONTEXT_ACTION_FWD_DEST;
3568 }
3569
3570 if (attr->action & MLX5_FLOW_CONTEXT_ACTION_MOD_HDR)
3571 attr->action |= MLX5_FLOW_CONTEXT_ACTION_FWD_DEST;
3572
3573 if (!actions_match_supported(priv, flow_action, parse_attr, flow, extack))
3574 return -EOPNOTSUPP;
3575
3576 return 0;
3577 }
3578
3579 struct encap_key {
3580 const struct ip_tunnel_key *ip_tun_key;
3581 struct mlx5e_tc_tunnel *tc_tunnel;
3582 };
3583
cmp_encap_info(struct encap_key * a,struct encap_key * b)3584 static inline int cmp_encap_info(struct encap_key *a,
3585 struct encap_key *b)
3586 {
3587 return memcmp(a->ip_tun_key, b->ip_tun_key, sizeof(*a->ip_tun_key)) ||
3588 a->tc_tunnel->tunnel_type != b->tc_tunnel->tunnel_type;
3589 }
3590
cmp_decap_info(struct mlx5e_decap_key * a,struct mlx5e_decap_key * b)3591 static inline int cmp_decap_info(struct mlx5e_decap_key *a,
3592 struct mlx5e_decap_key *b)
3593 {
3594 return memcmp(&a->key, &b->key, sizeof(b->key));
3595 }
3596
hash_encap_info(struct encap_key * key)3597 static inline int hash_encap_info(struct encap_key *key)
3598 {
3599 return jhash(key->ip_tun_key, sizeof(*key->ip_tun_key),
3600 key->tc_tunnel->tunnel_type);
3601 }
3602
hash_decap_info(struct mlx5e_decap_key * key)3603 static inline int hash_decap_info(struct mlx5e_decap_key *key)
3604 {
3605 return jhash(&key->key, sizeof(key->key), 0);
3606 }
3607
is_merged_eswitch_vfs(struct mlx5e_priv * priv,struct net_device * peer_netdev)3608 static bool is_merged_eswitch_vfs(struct mlx5e_priv *priv,
3609 struct net_device *peer_netdev)
3610 {
3611 struct mlx5e_priv *peer_priv;
3612
3613 peer_priv = netdev_priv(peer_netdev);
3614
3615 return (MLX5_CAP_ESW(priv->mdev, merged_eswitch) &&
3616 mlx5e_eswitch_vf_rep(priv->netdev) &&
3617 mlx5e_eswitch_vf_rep(peer_netdev) &&
3618 same_hw_devs(priv, peer_priv));
3619 }
3620
mlx5e_encap_take(struct mlx5e_encap_entry * e)3621 bool mlx5e_encap_take(struct mlx5e_encap_entry *e)
3622 {
3623 return refcount_inc_not_zero(&e->refcnt);
3624 }
3625
mlx5e_decap_take(struct mlx5e_decap_entry * e)3626 static bool mlx5e_decap_take(struct mlx5e_decap_entry *e)
3627 {
3628 return refcount_inc_not_zero(&e->refcnt);
3629 }
3630
3631 static struct mlx5e_encap_entry *
mlx5e_encap_get(struct mlx5e_priv * priv,struct encap_key * key,uintptr_t hash_key)3632 mlx5e_encap_get(struct mlx5e_priv *priv, struct encap_key *key,
3633 uintptr_t hash_key)
3634 {
3635 struct mlx5_eswitch *esw = priv->mdev->priv.eswitch;
3636 struct mlx5e_encap_entry *e;
3637 struct encap_key e_key;
3638
3639 hash_for_each_possible_rcu(esw->offloads.encap_tbl, e,
3640 encap_hlist, hash_key) {
3641 e_key.ip_tun_key = &e->tun_info->key;
3642 e_key.tc_tunnel = e->tunnel;
3643 if (!cmp_encap_info(&e_key, key) &&
3644 mlx5e_encap_take(e))
3645 return e;
3646 }
3647
3648 return NULL;
3649 }
3650
3651 static struct mlx5e_decap_entry *
mlx5e_decap_get(struct mlx5e_priv * priv,struct mlx5e_decap_key * key,uintptr_t hash_key)3652 mlx5e_decap_get(struct mlx5e_priv *priv, struct mlx5e_decap_key *key,
3653 uintptr_t hash_key)
3654 {
3655 struct mlx5_eswitch *esw = priv->mdev->priv.eswitch;
3656 struct mlx5e_decap_key r_key;
3657 struct mlx5e_decap_entry *e;
3658
3659 hash_for_each_possible_rcu(esw->offloads.decap_tbl, e,
3660 hlist, hash_key) {
3661 r_key = e->key;
3662 if (!cmp_decap_info(&r_key, key) &&
3663 mlx5e_decap_take(e))
3664 return e;
3665 }
3666 return NULL;
3667 }
3668
dup_tun_info(const struct ip_tunnel_info * tun_info)3669 static struct ip_tunnel_info *dup_tun_info(const struct ip_tunnel_info *tun_info)
3670 {
3671 size_t tun_size = sizeof(*tun_info) + tun_info->options_len;
3672
3673 return kmemdup(tun_info, tun_size, GFP_KERNEL);
3674 }
3675
is_duplicated_encap_entry(struct mlx5e_priv * priv,struct mlx5e_tc_flow * flow,int out_index,struct mlx5e_encap_entry * e,struct netlink_ext_ack * extack)3676 static bool is_duplicated_encap_entry(struct mlx5e_priv *priv,
3677 struct mlx5e_tc_flow *flow,
3678 int out_index,
3679 struct mlx5e_encap_entry *e,
3680 struct netlink_ext_ack *extack)
3681 {
3682 int i;
3683
3684 for (i = 0; i < out_index; i++) {
3685 if (flow->encaps[i].e != e)
3686 continue;
3687 NL_SET_ERR_MSG_MOD(extack, "can't duplicate encap action");
3688 netdev_err(priv->netdev, "can't duplicate encap action\n");
3689 return true;
3690 }
3691
3692 return false;
3693 }
3694
mlx5e_attach_encap(struct mlx5e_priv * priv,struct mlx5e_tc_flow * flow,struct net_device * mirred_dev,int out_index,struct netlink_ext_ack * extack,struct net_device ** encap_dev,bool * encap_valid)3695 static int mlx5e_attach_encap(struct mlx5e_priv *priv,
3696 struct mlx5e_tc_flow *flow,
3697 struct net_device *mirred_dev,
3698 int out_index,
3699 struct netlink_ext_ack *extack,
3700 struct net_device **encap_dev,
3701 bool *encap_valid)
3702 {
3703 struct mlx5_eswitch *esw = priv->mdev->priv.eswitch;
3704 struct mlx5e_tc_flow_parse_attr *parse_attr;
3705 struct mlx5_flow_attr *attr = flow->attr;
3706 const struct ip_tunnel_info *tun_info;
3707 struct encap_key key;
3708 struct mlx5e_encap_entry *e;
3709 unsigned short family;
3710 uintptr_t hash_key;
3711 int err = 0;
3712
3713 parse_attr = attr->parse_attr;
3714 tun_info = parse_attr->tun_info[out_index];
3715 family = ip_tunnel_info_af(tun_info);
3716 key.ip_tun_key = &tun_info->key;
3717 key.tc_tunnel = mlx5e_get_tc_tun(mirred_dev);
3718 if (!key.tc_tunnel) {
3719 NL_SET_ERR_MSG_MOD(extack, "Unsupported tunnel");
3720 return -EOPNOTSUPP;
3721 }
3722
3723 hash_key = hash_encap_info(&key);
3724
3725 mutex_lock(&esw->offloads.encap_tbl_lock);
3726 e = mlx5e_encap_get(priv, &key, hash_key);
3727
3728 /* must verify if encap is valid or not */
3729 if (e) {
3730 /* Check that entry was not already attached to this flow */
3731 if (is_duplicated_encap_entry(priv, flow, out_index, e, extack)) {
3732 err = -EOPNOTSUPP;
3733 goto out_err;
3734 }
3735
3736 mutex_unlock(&esw->offloads.encap_tbl_lock);
3737 wait_for_completion(&e->res_ready);
3738
3739 /* Protect against concurrent neigh update. */
3740 mutex_lock(&esw->offloads.encap_tbl_lock);
3741 if (e->compl_result < 0) {
3742 err = -EREMOTEIO;
3743 goto out_err;
3744 }
3745 goto attach_flow;
3746 }
3747
3748 e = kzalloc(sizeof(*e), GFP_KERNEL);
3749 if (!e) {
3750 err = -ENOMEM;
3751 goto out_err;
3752 }
3753
3754 refcount_set(&e->refcnt, 1);
3755 init_completion(&e->res_ready);
3756
3757 tun_info = dup_tun_info(tun_info);
3758 if (!tun_info) {
3759 err = -ENOMEM;
3760 goto out_err_init;
3761 }
3762 e->tun_info = tun_info;
3763 err = mlx5e_tc_tun_init_encap_attr(mirred_dev, priv, e, extack);
3764 if (err)
3765 goto out_err_init;
3766
3767 INIT_LIST_HEAD(&e->flows);
3768 hash_add_rcu(esw->offloads.encap_tbl, &e->encap_hlist, hash_key);
3769 mutex_unlock(&esw->offloads.encap_tbl_lock);
3770
3771 if (family == AF_INET)
3772 err = mlx5e_tc_tun_create_header_ipv4(priv, mirred_dev, e);
3773 else if (family == AF_INET6)
3774 err = mlx5e_tc_tun_create_header_ipv6(priv, mirred_dev, e);
3775
3776 /* Protect against concurrent neigh update. */
3777 mutex_lock(&esw->offloads.encap_tbl_lock);
3778 complete_all(&e->res_ready);
3779 if (err) {
3780 e->compl_result = err;
3781 goto out_err;
3782 }
3783 e->compl_result = 1;
3784
3785 attach_flow:
3786 flow->encaps[out_index].e = e;
3787 list_add(&flow->encaps[out_index].list, &e->flows);
3788 flow->encaps[out_index].index = out_index;
3789 *encap_dev = e->out_dev;
3790 if (e->flags & MLX5_ENCAP_ENTRY_VALID) {
3791 attr->esw_attr->dests[out_index].pkt_reformat = e->pkt_reformat;
3792 attr->esw_attr->dests[out_index].flags |= MLX5_ESW_DEST_ENCAP_VALID;
3793 *encap_valid = true;
3794 } else {
3795 *encap_valid = false;
3796 }
3797 mutex_unlock(&esw->offloads.encap_tbl_lock);
3798
3799 return err;
3800
3801 out_err:
3802 mutex_unlock(&esw->offloads.encap_tbl_lock);
3803 if (e)
3804 mlx5e_encap_put(priv, e);
3805 return err;
3806
3807 out_err_init:
3808 mutex_unlock(&esw->offloads.encap_tbl_lock);
3809 kfree(tun_info);
3810 kfree(e);
3811 return err;
3812 }
3813
mlx5e_attach_decap(struct mlx5e_priv * priv,struct mlx5e_tc_flow * flow,struct netlink_ext_ack * extack)3814 static int mlx5e_attach_decap(struct mlx5e_priv *priv,
3815 struct mlx5e_tc_flow *flow,
3816 struct netlink_ext_ack *extack)
3817 {
3818 struct mlx5_eswitch *esw = priv->mdev->priv.eswitch;
3819 struct mlx5_esw_flow_attr *attr = flow->attr->esw_attr;
3820 struct mlx5e_tc_flow_parse_attr *parse_attr;
3821 struct mlx5e_decap_entry *d;
3822 struct mlx5e_decap_key key;
3823 uintptr_t hash_key;
3824 int err = 0;
3825
3826 parse_attr = flow->attr->parse_attr;
3827 if (sizeof(parse_attr->eth) > MLX5_CAP_ESW(priv->mdev, max_encap_header_size)) {
3828 NL_SET_ERR_MSG_MOD(extack,
3829 "encap header larger than max supported");
3830 return -EOPNOTSUPP;
3831 }
3832
3833 key.key = parse_attr->eth;
3834 hash_key = hash_decap_info(&key);
3835 mutex_lock(&esw->offloads.decap_tbl_lock);
3836 d = mlx5e_decap_get(priv, &key, hash_key);
3837 if (d) {
3838 mutex_unlock(&esw->offloads.decap_tbl_lock);
3839 wait_for_completion(&d->res_ready);
3840 mutex_lock(&esw->offloads.decap_tbl_lock);
3841 if (d->compl_result) {
3842 err = -EREMOTEIO;
3843 goto out_free;
3844 }
3845 goto found;
3846 }
3847
3848 d = kzalloc(sizeof(*d), GFP_KERNEL);
3849 if (!d) {
3850 err = -ENOMEM;
3851 goto out_err;
3852 }
3853
3854 d->key = key;
3855 refcount_set(&d->refcnt, 1);
3856 init_completion(&d->res_ready);
3857 INIT_LIST_HEAD(&d->flows);
3858 hash_add_rcu(esw->offloads.decap_tbl, &d->hlist, hash_key);
3859 mutex_unlock(&esw->offloads.decap_tbl_lock);
3860
3861 d->pkt_reformat = mlx5_packet_reformat_alloc(priv->mdev,
3862 MLX5_REFORMAT_TYPE_L3_TUNNEL_TO_L2,
3863 sizeof(parse_attr->eth),
3864 &parse_attr->eth,
3865 MLX5_FLOW_NAMESPACE_FDB);
3866 if (IS_ERR(d->pkt_reformat)) {
3867 err = PTR_ERR(d->pkt_reformat);
3868 d->compl_result = err;
3869 }
3870 mutex_lock(&esw->offloads.decap_tbl_lock);
3871 complete_all(&d->res_ready);
3872 if (err)
3873 goto out_free;
3874
3875 found:
3876 flow->decap_reformat = d;
3877 attr->decap_pkt_reformat = d->pkt_reformat;
3878 list_add(&flow->l3_to_l2_reformat, &d->flows);
3879 mutex_unlock(&esw->offloads.decap_tbl_lock);
3880 return 0;
3881
3882 out_free:
3883 mutex_unlock(&esw->offloads.decap_tbl_lock);
3884 mlx5e_decap_put(priv, d);
3885 return err;
3886
3887 out_err:
3888 mutex_unlock(&esw->offloads.decap_tbl_lock);
3889 return err;
3890 }
3891
parse_tc_vlan_action(struct mlx5e_priv * priv,const struct flow_action_entry * act,struct mlx5_esw_flow_attr * attr,u32 * action)3892 static int parse_tc_vlan_action(struct mlx5e_priv *priv,
3893 const struct flow_action_entry *act,
3894 struct mlx5_esw_flow_attr *attr,
3895 u32 *action)
3896 {
3897 u8 vlan_idx = attr->total_vlan;
3898
3899 if (vlan_idx >= MLX5_FS_VLAN_DEPTH)
3900 return -EOPNOTSUPP;
3901
3902 switch (act->id) {
3903 case FLOW_ACTION_VLAN_POP:
3904 if (vlan_idx) {
3905 if (!mlx5_eswitch_vlan_actions_supported(priv->mdev,
3906 MLX5_FS_VLAN_DEPTH))
3907 return -EOPNOTSUPP;
3908
3909 *action |= MLX5_FLOW_CONTEXT_ACTION_VLAN_POP_2;
3910 } else {
3911 *action |= MLX5_FLOW_CONTEXT_ACTION_VLAN_POP;
3912 }
3913 break;
3914 case FLOW_ACTION_VLAN_PUSH:
3915 attr->vlan_vid[vlan_idx] = act->vlan.vid;
3916 attr->vlan_prio[vlan_idx] = act->vlan.prio;
3917 attr->vlan_proto[vlan_idx] = act->vlan.proto;
3918 if (!attr->vlan_proto[vlan_idx])
3919 attr->vlan_proto[vlan_idx] = htons(ETH_P_8021Q);
3920
3921 if (vlan_idx) {
3922 if (!mlx5_eswitch_vlan_actions_supported(priv->mdev,
3923 MLX5_FS_VLAN_DEPTH))
3924 return -EOPNOTSUPP;
3925
3926 *action |= MLX5_FLOW_CONTEXT_ACTION_VLAN_PUSH_2;
3927 } else {
3928 if (!mlx5_eswitch_vlan_actions_supported(priv->mdev, 1) &&
3929 (act->vlan.proto != htons(ETH_P_8021Q) ||
3930 act->vlan.prio))
3931 return -EOPNOTSUPP;
3932
3933 *action |= MLX5_FLOW_CONTEXT_ACTION_VLAN_PUSH;
3934 }
3935 break;
3936 default:
3937 return -EINVAL;
3938 }
3939
3940 attr->total_vlan = vlan_idx + 1;
3941
3942 return 0;
3943 }
3944
get_fdb_out_dev(struct net_device * uplink_dev,struct net_device * out_dev)3945 static struct net_device *get_fdb_out_dev(struct net_device *uplink_dev,
3946 struct net_device *out_dev)
3947 {
3948 struct net_device *fdb_out_dev = out_dev;
3949 struct net_device *uplink_upper;
3950
3951 rcu_read_lock();
3952 uplink_upper = netdev_master_upper_dev_get_rcu(uplink_dev);
3953 if (uplink_upper && netif_is_lag_master(uplink_upper) &&
3954 uplink_upper == out_dev) {
3955 fdb_out_dev = uplink_dev;
3956 } else if (netif_is_lag_master(out_dev)) {
3957 fdb_out_dev = bond_option_active_slave_get_rcu(netdev_priv(out_dev));
3958 if (fdb_out_dev &&
3959 (!mlx5e_eswitch_rep(fdb_out_dev) ||
3960 !netdev_port_same_parent_id(fdb_out_dev, uplink_dev)))
3961 fdb_out_dev = NULL;
3962 }
3963 rcu_read_unlock();
3964 return fdb_out_dev;
3965 }
3966
add_vlan_push_action(struct mlx5e_priv * priv,struct mlx5_flow_attr * attr,struct net_device ** out_dev,u32 * action)3967 static int add_vlan_push_action(struct mlx5e_priv *priv,
3968 struct mlx5_flow_attr *attr,
3969 struct net_device **out_dev,
3970 u32 *action)
3971 {
3972 struct net_device *vlan_dev = *out_dev;
3973 struct flow_action_entry vlan_act = {
3974 .id = FLOW_ACTION_VLAN_PUSH,
3975 .vlan.vid = vlan_dev_vlan_id(vlan_dev),
3976 .vlan.proto = vlan_dev_vlan_proto(vlan_dev),
3977 .vlan.prio = 0,
3978 };
3979 int err;
3980
3981 err = parse_tc_vlan_action(priv, &vlan_act, attr->esw_attr, action);
3982 if (err)
3983 return err;
3984
3985 *out_dev = dev_get_by_index_rcu(dev_net(vlan_dev),
3986 dev_get_iflink(vlan_dev));
3987 if (is_vlan_dev(*out_dev))
3988 err = add_vlan_push_action(priv, attr, out_dev, action);
3989
3990 return err;
3991 }
3992
add_vlan_pop_action(struct mlx5e_priv * priv,struct mlx5_flow_attr * attr,u32 * action)3993 static int add_vlan_pop_action(struct mlx5e_priv *priv,
3994 struct mlx5_flow_attr *attr,
3995 u32 *action)
3996 {
3997 struct flow_action_entry vlan_act = {
3998 .id = FLOW_ACTION_VLAN_POP,
3999 };
4000 int nest_level, err = 0;
4001
4002 nest_level = attr->parse_attr->filter_dev->lower_level -
4003 priv->netdev->lower_level;
4004 while (nest_level--) {
4005 err = parse_tc_vlan_action(priv, &vlan_act, attr->esw_attr, action);
4006 if (err)
4007 return err;
4008 }
4009
4010 return err;
4011 }
4012
same_hw_reps(struct mlx5e_priv * priv,struct net_device * peer_netdev)4013 static bool same_hw_reps(struct mlx5e_priv *priv,
4014 struct net_device *peer_netdev)
4015 {
4016 struct mlx5e_priv *peer_priv;
4017
4018 peer_priv = netdev_priv(peer_netdev);
4019
4020 return mlx5e_eswitch_rep(priv->netdev) &&
4021 mlx5e_eswitch_rep(peer_netdev) &&
4022 same_hw_devs(priv, peer_priv);
4023 }
4024
is_lag_dev(struct mlx5e_priv * priv,struct net_device * peer_netdev)4025 static bool is_lag_dev(struct mlx5e_priv *priv,
4026 struct net_device *peer_netdev)
4027 {
4028 return ((mlx5_lag_is_sriov(priv->mdev) ||
4029 mlx5_lag_is_multipath(priv->mdev)) &&
4030 same_hw_reps(priv, peer_netdev));
4031 }
4032
mlx5e_is_valid_eswitch_fwd_dev(struct mlx5e_priv * priv,struct net_device * out_dev)4033 bool mlx5e_is_valid_eswitch_fwd_dev(struct mlx5e_priv *priv,
4034 struct net_device *out_dev)
4035 {
4036 if (is_merged_eswitch_vfs(priv, out_dev))
4037 return true;
4038
4039 if (is_lag_dev(priv, out_dev))
4040 return true;
4041
4042 return mlx5e_eswitch_rep(out_dev) &&
4043 same_port_devs(priv, netdev_priv(out_dev));
4044 }
4045
is_duplicated_output_device(struct net_device * dev,struct net_device * out_dev,int * ifindexes,int if_count,struct netlink_ext_ack * extack)4046 static bool is_duplicated_output_device(struct net_device *dev,
4047 struct net_device *out_dev,
4048 int *ifindexes, int if_count,
4049 struct netlink_ext_ack *extack)
4050 {
4051 int i;
4052
4053 for (i = 0; i < if_count; i++) {
4054 if (ifindexes[i] == out_dev->ifindex) {
4055 NL_SET_ERR_MSG_MOD(extack,
4056 "can't duplicate output to same device");
4057 netdev_err(dev, "can't duplicate output to same device: %s\n",
4058 out_dev->name);
4059 return true;
4060 }
4061 }
4062
4063 return false;
4064 }
4065
verify_uplink_forwarding(struct mlx5e_priv * priv,struct mlx5e_tc_flow * flow,struct net_device * out_dev,struct netlink_ext_ack * extack)4066 static int verify_uplink_forwarding(struct mlx5e_priv *priv,
4067 struct mlx5e_tc_flow *flow,
4068 struct net_device *out_dev,
4069 struct netlink_ext_ack *extack)
4070 {
4071 struct mlx5_esw_flow_attr *attr = flow->attr->esw_attr;
4072 struct mlx5_eswitch *esw = priv->mdev->priv.eswitch;
4073 struct mlx5e_rep_priv *rep_priv;
4074
4075 /* Forwarding non encapsulated traffic between
4076 * uplink ports is allowed only if
4077 * termination_table_raw_traffic cap is set.
4078 *
4079 * Input vport was stored attr->in_rep.
4080 * In LAG case, *priv* is the private data of
4081 * uplink which may be not the input vport.
4082 */
4083 rep_priv = mlx5e_rep_to_rep_priv(attr->in_rep);
4084
4085 if (!(mlx5e_eswitch_uplink_rep(rep_priv->netdev) &&
4086 mlx5e_eswitch_uplink_rep(out_dev)))
4087 return 0;
4088
4089 if (!MLX5_CAP_ESW_FLOWTABLE_FDB(esw->dev,
4090 termination_table_raw_traffic)) {
4091 NL_SET_ERR_MSG_MOD(extack,
4092 "devices are both uplink, can't offload forwarding");
4093 pr_err("devices %s %s are both uplink, can't offload forwarding\n",
4094 priv->netdev->name, out_dev->name);
4095 return -EOPNOTSUPP;
4096 } else if (out_dev != rep_priv->netdev) {
4097 NL_SET_ERR_MSG_MOD(extack,
4098 "devices are not the same uplink, can't offload forwarding");
4099 pr_err("devices %s %s are both uplink but not the same, can't offload forwarding\n",
4100 priv->netdev->name, out_dev->name);
4101 return -EOPNOTSUPP;
4102 }
4103 return 0;
4104 }
4105
parse_tc_fdb_actions(struct mlx5e_priv * priv,struct flow_action * flow_action,struct mlx5e_tc_flow * flow,struct netlink_ext_ack * extack,struct net_device * filter_dev)4106 static int parse_tc_fdb_actions(struct mlx5e_priv *priv,
4107 struct flow_action *flow_action,
4108 struct mlx5e_tc_flow *flow,
4109 struct netlink_ext_ack *extack,
4110 struct net_device *filter_dev)
4111 {
4112 struct pedit_headers_action hdrs[2] = {};
4113 struct mlx5_eswitch *esw = priv->mdev->priv.eswitch;
4114 struct mlx5e_tc_flow_parse_attr *parse_attr;
4115 struct mlx5e_rep_priv *rpriv = priv->ppriv;
4116 const struct ip_tunnel_info *info = NULL;
4117 struct mlx5_flow_attr *attr = flow->attr;
4118 int ifindexes[MLX5_MAX_FLOW_FWD_VPORTS];
4119 bool ft_flow = mlx5e_is_ft_flow(flow);
4120 const struct flow_action_entry *act;
4121 struct mlx5_esw_flow_attr *esw_attr;
4122 bool encap = false, decap = false;
4123 u32 action = attr->action;
4124 int err, i, if_count = 0;
4125 bool mpls_push = false;
4126
4127 if (!flow_action_has_entries(flow_action))
4128 return -EINVAL;
4129
4130 if (!flow_action_hw_stats_check(flow_action, extack,
4131 FLOW_ACTION_HW_STATS_DELAYED_BIT))
4132 return -EOPNOTSUPP;
4133
4134 esw_attr = attr->esw_attr;
4135 parse_attr = attr->parse_attr;
4136
4137 flow_action_for_each(i, act, flow_action) {
4138 switch (act->id) {
4139 case FLOW_ACTION_DROP:
4140 action |= MLX5_FLOW_CONTEXT_ACTION_DROP |
4141 MLX5_FLOW_CONTEXT_ACTION_COUNT;
4142 break;
4143 case FLOW_ACTION_TRAP:
4144 if (!flow_offload_has_one_action(flow_action)) {
4145 NL_SET_ERR_MSG_MOD(extack,
4146 "action trap is supported as a sole action only");
4147 return -EOPNOTSUPP;
4148 }
4149 action |= (MLX5_FLOW_CONTEXT_ACTION_FWD_DEST |
4150 MLX5_FLOW_CONTEXT_ACTION_COUNT);
4151 attr->flags |= MLX5_ESW_ATTR_FLAG_SLOW_PATH;
4152 break;
4153 case FLOW_ACTION_MPLS_PUSH:
4154 if (!MLX5_CAP_ESW_FLOWTABLE_FDB(priv->mdev,
4155 reformat_l2_to_l3_tunnel) ||
4156 act->mpls_push.proto != htons(ETH_P_MPLS_UC)) {
4157 NL_SET_ERR_MSG_MOD(extack,
4158 "mpls push is supported only for mpls_uc protocol");
4159 return -EOPNOTSUPP;
4160 }
4161 mpls_push = true;
4162 break;
4163 case FLOW_ACTION_MPLS_POP:
4164 /* we only support mpls pop if it is the first action
4165 * and the filter net device is bareudp. Subsequent
4166 * actions can be pedit and the last can be mirred
4167 * egress redirect.
4168 */
4169 if (i) {
4170 NL_SET_ERR_MSG_MOD(extack,
4171 "mpls pop supported only as first action");
4172 return -EOPNOTSUPP;
4173 }
4174 if (!netif_is_bareudp(filter_dev)) {
4175 NL_SET_ERR_MSG_MOD(extack,
4176 "mpls pop supported only on bareudp devices");
4177 return -EOPNOTSUPP;
4178 }
4179
4180 parse_attr->eth.h_proto = act->mpls_pop.proto;
4181 action |= MLX5_FLOW_CONTEXT_ACTION_PACKET_REFORMAT;
4182 flow_flag_set(flow, L3_TO_L2_DECAP);
4183 break;
4184 case FLOW_ACTION_MANGLE:
4185 case FLOW_ACTION_ADD:
4186 err = parse_tc_pedit_action(priv, act, MLX5_FLOW_NAMESPACE_FDB,
4187 parse_attr, hdrs, flow, extack);
4188 if (err)
4189 return err;
4190
4191 if (!flow_flag_test(flow, L3_TO_L2_DECAP)) {
4192 action |= MLX5_FLOW_CONTEXT_ACTION_MOD_HDR;
4193 esw_attr->split_count = esw_attr->out_count;
4194 }
4195 break;
4196 case FLOW_ACTION_CSUM:
4197 if (csum_offload_supported(priv, action,
4198 act->csum_flags, extack))
4199 break;
4200
4201 return -EOPNOTSUPP;
4202 case FLOW_ACTION_REDIRECT:
4203 case FLOW_ACTION_MIRRED: {
4204 struct mlx5e_priv *out_priv;
4205 struct net_device *out_dev;
4206
4207 out_dev = act->dev;
4208 if (!out_dev) {
4209 /* out_dev is NULL when filters with
4210 * non-existing mirred device are replayed to
4211 * the driver.
4212 */
4213 return -EINVAL;
4214 }
4215
4216 if (mpls_push && !netif_is_bareudp(out_dev)) {
4217 NL_SET_ERR_MSG_MOD(extack,
4218 "mpls is supported only through a bareudp device");
4219 return -EOPNOTSUPP;
4220 }
4221
4222 if (ft_flow && out_dev == priv->netdev) {
4223 /* Ignore forward to self rules generated
4224 * by adding both mlx5 devs to the flow table
4225 * block on a normal nft offload setup.
4226 */
4227 return -EOPNOTSUPP;
4228 }
4229
4230 if (esw_attr->out_count >= MLX5_MAX_FLOW_FWD_VPORTS) {
4231 NL_SET_ERR_MSG_MOD(extack,
4232 "can't support more output ports, can't offload forwarding");
4233 netdev_warn(priv->netdev,
4234 "can't support more than %d output ports, can't offload forwarding\n",
4235 esw_attr->out_count);
4236 return -EOPNOTSUPP;
4237 }
4238
4239 action |= MLX5_FLOW_CONTEXT_ACTION_FWD_DEST |
4240 MLX5_FLOW_CONTEXT_ACTION_COUNT;
4241 if (encap) {
4242 parse_attr->mirred_ifindex[esw_attr->out_count] =
4243 out_dev->ifindex;
4244 parse_attr->tun_info[esw_attr->out_count] = dup_tun_info(info);
4245 if (!parse_attr->tun_info[esw_attr->out_count])
4246 return -ENOMEM;
4247 encap = false;
4248 esw_attr->dests[esw_attr->out_count].flags |=
4249 MLX5_ESW_DEST_ENCAP;
4250 esw_attr->out_count++;
4251 /* attr->dests[].rep is resolved when we
4252 * handle encap
4253 */
4254 } else if (netdev_port_same_parent_id(priv->netdev, out_dev)) {
4255 struct mlx5_eswitch *esw = priv->mdev->priv.eswitch;
4256 struct net_device *uplink_dev = mlx5_eswitch_uplink_get_proto_dev(esw, REP_ETH);
4257
4258 if (is_duplicated_output_device(priv->netdev,
4259 out_dev,
4260 ifindexes,
4261 if_count,
4262 extack))
4263 return -EOPNOTSUPP;
4264
4265 ifindexes[if_count] = out_dev->ifindex;
4266 if_count++;
4267
4268 out_dev = get_fdb_out_dev(uplink_dev, out_dev);
4269 if (!out_dev)
4270 return -ENODEV;
4271
4272 if (is_vlan_dev(out_dev)) {
4273 err = add_vlan_push_action(priv, attr,
4274 &out_dev,
4275 &action);
4276 if (err)
4277 return err;
4278 }
4279
4280 if (is_vlan_dev(parse_attr->filter_dev)) {
4281 err = add_vlan_pop_action(priv, attr,
4282 &action);
4283 if (err)
4284 return err;
4285 }
4286
4287 err = verify_uplink_forwarding(priv, flow, out_dev, extack);
4288 if (err)
4289 return err;
4290
4291 if (!mlx5e_is_valid_eswitch_fwd_dev(priv, out_dev)) {
4292 NL_SET_ERR_MSG_MOD(extack,
4293 "devices are not on same switch HW, can't offload forwarding");
4294 return -EOPNOTSUPP;
4295 }
4296
4297 out_priv = netdev_priv(out_dev);
4298 rpriv = out_priv->ppriv;
4299 esw_attr->dests[esw_attr->out_count].rep = rpriv->rep;
4300 esw_attr->dests[esw_attr->out_count].mdev = out_priv->mdev;
4301 esw_attr->out_count++;
4302 } else if (parse_attr->filter_dev != priv->netdev) {
4303 /* All mlx5 devices are called to configure
4304 * high level device filters. Therefore, the
4305 * *attempt* to install a filter on invalid
4306 * eswitch should not trigger an explicit error
4307 */
4308 return -EINVAL;
4309 } else {
4310 NL_SET_ERR_MSG_MOD(extack,
4311 "devices are not on same switch HW, can't offload forwarding");
4312 netdev_warn(priv->netdev,
4313 "devices %s %s not on same switch HW, can't offload forwarding\n",
4314 priv->netdev->name,
4315 out_dev->name);
4316 return -EINVAL;
4317 }
4318 }
4319 break;
4320 case FLOW_ACTION_TUNNEL_ENCAP:
4321 info = act->tunnel;
4322 if (info)
4323 encap = true;
4324 else
4325 return -EOPNOTSUPP;
4326
4327 break;
4328 case FLOW_ACTION_VLAN_PUSH:
4329 case FLOW_ACTION_VLAN_POP:
4330 if (act->id == FLOW_ACTION_VLAN_PUSH &&
4331 (action & MLX5_FLOW_CONTEXT_ACTION_VLAN_POP)) {
4332 /* Replace vlan pop+push with vlan modify */
4333 action &= ~MLX5_FLOW_CONTEXT_ACTION_VLAN_POP;
4334 err = add_vlan_rewrite_action(priv,
4335 MLX5_FLOW_NAMESPACE_FDB,
4336 act, parse_attr, hdrs,
4337 &action, extack);
4338 } else {
4339 err = parse_tc_vlan_action(priv, act, esw_attr, &action);
4340 }
4341 if (err)
4342 return err;
4343
4344 esw_attr->split_count = esw_attr->out_count;
4345 break;
4346 case FLOW_ACTION_VLAN_MANGLE:
4347 err = add_vlan_rewrite_action(priv,
4348 MLX5_FLOW_NAMESPACE_FDB,
4349 act, parse_attr, hdrs,
4350 &action, extack);
4351 if (err)
4352 return err;
4353
4354 esw_attr->split_count = esw_attr->out_count;
4355 break;
4356 case FLOW_ACTION_TUNNEL_DECAP:
4357 decap = true;
4358 break;
4359 case FLOW_ACTION_GOTO:
4360 err = validate_goto_chain(priv, flow, act, action,
4361 extack);
4362 if (err)
4363 return err;
4364
4365 action |= MLX5_FLOW_CONTEXT_ACTION_COUNT;
4366 attr->dest_chain = act->chain_index;
4367 break;
4368 case FLOW_ACTION_CT:
4369 err = mlx5_tc_ct_parse_action(get_ct_priv(priv), attr, act, extack);
4370 if (err)
4371 return err;
4372
4373 flow_flag_set(flow, CT);
4374 break;
4375 default:
4376 NL_SET_ERR_MSG_MOD(extack, "The offload action is not supported");
4377 return -EOPNOTSUPP;
4378 }
4379 }
4380
4381 if (MLX5_CAP_GEN(esw->dev, prio_tag_required) &&
4382 action & MLX5_FLOW_CONTEXT_ACTION_VLAN_POP) {
4383 /* For prio tag mode, replace vlan pop with rewrite vlan prio
4384 * tag rewrite.
4385 */
4386 action &= ~MLX5_FLOW_CONTEXT_ACTION_VLAN_POP;
4387 err = add_vlan_prio_tag_rewrite_action(priv, parse_attr, hdrs,
4388 &action, extack);
4389 if (err)
4390 return err;
4391 }
4392
4393 if (hdrs[TCA_PEDIT_KEY_EX_CMD_SET].pedits ||
4394 hdrs[TCA_PEDIT_KEY_EX_CMD_ADD].pedits) {
4395 err = alloc_tc_pedit_action(priv, MLX5_FLOW_NAMESPACE_FDB,
4396 parse_attr, hdrs, &action, extack);
4397 if (err)
4398 return err;
4399 /* in case all pedit actions are skipped, remove the MOD_HDR
4400 * flag. we might have set split_count either by pedit or
4401 * pop/push. if there is no pop/push either, reset it too.
4402 */
4403 if (parse_attr->mod_hdr_acts.num_actions == 0) {
4404 action &= ~MLX5_FLOW_CONTEXT_ACTION_MOD_HDR;
4405 dealloc_mod_hdr_actions(&parse_attr->mod_hdr_acts);
4406 if (!((action & MLX5_FLOW_CONTEXT_ACTION_VLAN_POP) ||
4407 (action & MLX5_FLOW_CONTEXT_ACTION_VLAN_PUSH)))
4408 esw_attr->split_count = 0;
4409 }
4410 }
4411
4412 attr->action = action;
4413 if (!actions_match_supported(priv, flow_action, parse_attr, flow, extack))
4414 return -EOPNOTSUPP;
4415
4416 if (attr->dest_chain) {
4417 if (decap) {
4418 /* It can be supported if we'll create a mapping for
4419 * the tunnel device only (without tunnel), and set
4420 * this tunnel id with this decap flow.
4421 *
4422 * On restore (miss), we'll just set this saved tunnel
4423 * device.
4424 */
4425
4426 NL_SET_ERR_MSG(extack,
4427 "Decap with goto isn't supported");
4428 netdev_warn(priv->netdev,
4429 "Decap with goto isn't supported");
4430 return -EOPNOTSUPP;
4431 }
4432
4433 if (attr->action & MLX5_FLOW_CONTEXT_ACTION_FWD_DEST) {
4434 NL_SET_ERR_MSG_MOD(extack,
4435 "Mirroring goto chain rules isn't supported");
4436 return -EOPNOTSUPP;
4437 }
4438 attr->action |= MLX5_FLOW_CONTEXT_ACTION_FWD_DEST;
4439 }
4440
4441 if (!(attr->action &
4442 (MLX5_FLOW_CONTEXT_ACTION_FWD_DEST | MLX5_FLOW_CONTEXT_ACTION_DROP))) {
4443 NL_SET_ERR_MSG_MOD(extack,
4444 "Rule must have at least one forward/drop action");
4445 return -EOPNOTSUPP;
4446 }
4447
4448 if (esw_attr->split_count > 0 && !mlx5_esw_has_fwd_fdb(priv->mdev)) {
4449 NL_SET_ERR_MSG_MOD(extack,
4450 "current firmware doesn't support split rule for port mirroring");
4451 netdev_warn_once(priv->netdev, "current firmware doesn't support split rule for port mirroring\n");
4452 return -EOPNOTSUPP;
4453 }
4454
4455 return 0;
4456 }
4457
get_flags(int flags,unsigned long * flow_flags)4458 static void get_flags(int flags, unsigned long *flow_flags)
4459 {
4460 unsigned long __flow_flags = 0;
4461
4462 if (flags & MLX5_TC_FLAG(INGRESS))
4463 __flow_flags |= BIT(MLX5E_TC_FLOW_FLAG_INGRESS);
4464 if (flags & MLX5_TC_FLAG(EGRESS))
4465 __flow_flags |= BIT(MLX5E_TC_FLOW_FLAG_EGRESS);
4466
4467 if (flags & MLX5_TC_FLAG(ESW_OFFLOAD))
4468 __flow_flags |= BIT(MLX5E_TC_FLOW_FLAG_ESWITCH);
4469 if (flags & MLX5_TC_FLAG(NIC_OFFLOAD))
4470 __flow_flags |= BIT(MLX5E_TC_FLOW_FLAG_NIC);
4471 if (flags & MLX5_TC_FLAG(FT_OFFLOAD))
4472 __flow_flags |= BIT(MLX5E_TC_FLOW_FLAG_FT);
4473
4474 *flow_flags = __flow_flags;
4475 }
4476
4477 static const struct rhashtable_params tc_ht_params = {
4478 .head_offset = offsetof(struct mlx5e_tc_flow, node),
4479 .key_offset = offsetof(struct mlx5e_tc_flow, cookie),
4480 .key_len = sizeof(((struct mlx5e_tc_flow *)0)->cookie),
4481 .automatic_shrinking = true,
4482 };
4483
get_tc_ht(struct mlx5e_priv * priv,unsigned long flags)4484 static struct rhashtable *get_tc_ht(struct mlx5e_priv *priv,
4485 unsigned long flags)
4486 {
4487 struct mlx5_eswitch *esw = priv->mdev->priv.eswitch;
4488 struct mlx5e_rep_priv *uplink_rpriv;
4489
4490 if (flags & MLX5_TC_FLAG(ESW_OFFLOAD)) {
4491 uplink_rpriv = mlx5_eswitch_get_uplink_priv(esw, REP_ETH);
4492 return &uplink_rpriv->uplink_priv.tc_ht;
4493 } else /* NIC offload */
4494 return &priv->fs.tc.ht;
4495 }
4496
is_peer_flow_needed(struct mlx5e_tc_flow * flow)4497 static bool is_peer_flow_needed(struct mlx5e_tc_flow *flow)
4498 {
4499 struct mlx5_esw_flow_attr *esw_attr = flow->attr->esw_attr;
4500 struct mlx5_flow_attr *attr = flow->attr;
4501 bool is_rep_ingress = esw_attr->in_rep->vport != MLX5_VPORT_UPLINK &&
4502 flow_flag_test(flow, INGRESS);
4503 bool act_is_encap = !!(attr->action &
4504 MLX5_FLOW_CONTEXT_ACTION_PACKET_REFORMAT);
4505 bool esw_paired = mlx5_devcom_is_paired(esw_attr->in_mdev->priv.devcom,
4506 MLX5_DEVCOM_ESW_OFFLOADS);
4507
4508 if (!esw_paired)
4509 return false;
4510
4511 if ((mlx5_lag_is_sriov(esw_attr->in_mdev) ||
4512 mlx5_lag_is_multipath(esw_attr->in_mdev)) &&
4513 (is_rep_ingress || act_is_encap))
4514 return true;
4515
4516 return false;
4517 }
4518
4519 struct mlx5_flow_attr *
mlx5_alloc_flow_attr(enum mlx5_flow_namespace_type type)4520 mlx5_alloc_flow_attr(enum mlx5_flow_namespace_type type)
4521 {
4522 u32 ex_attr_size = (type == MLX5_FLOW_NAMESPACE_FDB) ?
4523 sizeof(struct mlx5_esw_flow_attr) :
4524 sizeof(struct mlx5_nic_flow_attr);
4525 struct mlx5_flow_attr *attr;
4526
4527 return kzalloc(sizeof(*attr) + ex_attr_size, GFP_KERNEL);
4528 }
4529
4530 static int
mlx5e_alloc_flow(struct mlx5e_priv * priv,int attr_size,struct flow_cls_offload * f,unsigned long flow_flags,struct mlx5e_tc_flow_parse_attr ** __parse_attr,struct mlx5e_tc_flow ** __flow)4531 mlx5e_alloc_flow(struct mlx5e_priv *priv, int attr_size,
4532 struct flow_cls_offload *f, unsigned long flow_flags,
4533 struct mlx5e_tc_flow_parse_attr **__parse_attr,
4534 struct mlx5e_tc_flow **__flow)
4535 {
4536 struct mlx5e_tc_flow_parse_attr *parse_attr;
4537 struct mlx5_flow_attr *attr;
4538 struct mlx5e_tc_flow *flow;
4539 int err = -ENOMEM;
4540 int out_index;
4541
4542 flow = kzalloc(sizeof(*flow), GFP_KERNEL);
4543 parse_attr = kvzalloc(sizeof(*parse_attr), GFP_KERNEL);
4544 if (!parse_attr || !flow)
4545 goto err_free;
4546
4547 flow->flags = flow_flags;
4548 flow->cookie = f->cookie;
4549 flow->priv = priv;
4550
4551 attr = mlx5_alloc_flow_attr(get_flow_name_space(flow));
4552 if (!attr)
4553 goto err_free;
4554
4555 flow->attr = attr;
4556
4557 for (out_index = 0; out_index < MLX5_MAX_FLOW_FWD_VPORTS; out_index++)
4558 INIT_LIST_HEAD(&flow->encaps[out_index].list);
4559 INIT_LIST_HEAD(&flow->hairpin);
4560 INIT_LIST_HEAD(&flow->l3_to_l2_reformat);
4561 refcount_set(&flow->refcnt, 1);
4562 init_completion(&flow->init_done);
4563
4564 *__flow = flow;
4565 *__parse_attr = parse_attr;
4566
4567 return 0;
4568
4569 err_free:
4570 kfree(flow);
4571 kvfree(parse_attr);
4572 return err;
4573 }
4574
4575 static void
mlx5e_flow_attr_init(struct mlx5_flow_attr * attr,struct mlx5e_tc_flow_parse_attr * parse_attr,struct flow_cls_offload * f)4576 mlx5e_flow_attr_init(struct mlx5_flow_attr *attr,
4577 struct mlx5e_tc_flow_parse_attr *parse_attr,
4578 struct flow_cls_offload *f)
4579 {
4580 attr->parse_attr = parse_attr;
4581 attr->chain = f->common.chain_index;
4582 attr->prio = f->common.prio;
4583 }
4584
4585 static void
mlx5e_flow_esw_attr_init(struct mlx5_flow_attr * attr,struct mlx5e_priv * priv,struct mlx5e_tc_flow_parse_attr * parse_attr,struct flow_cls_offload * f,struct mlx5_eswitch_rep * in_rep,struct mlx5_core_dev * in_mdev)4586 mlx5e_flow_esw_attr_init(struct mlx5_flow_attr *attr,
4587 struct mlx5e_priv *priv,
4588 struct mlx5e_tc_flow_parse_attr *parse_attr,
4589 struct flow_cls_offload *f,
4590 struct mlx5_eswitch_rep *in_rep,
4591 struct mlx5_core_dev *in_mdev)
4592 {
4593 struct mlx5_eswitch *esw = priv->mdev->priv.eswitch;
4594 struct mlx5_esw_flow_attr *esw_attr = attr->esw_attr;
4595
4596 mlx5e_flow_attr_init(attr, parse_attr, f);
4597
4598 esw_attr->in_rep = in_rep;
4599 esw_attr->in_mdev = in_mdev;
4600
4601 if (MLX5_CAP_ESW(esw->dev, counter_eswitch_affinity) ==
4602 MLX5_COUNTER_SOURCE_ESWITCH)
4603 esw_attr->counter_dev = in_mdev;
4604 else
4605 esw_attr->counter_dev = priv->mdev;
4606 }
4607
4608 static struct mlx5e_tc_flow *
__mlx5e_add_fdb_flow(struct mlx5e_priv * priv,struct flow_cls_offload * f,unsigned long flow_flags,struct net_device * filter_dev,struct mlx5_eswitch_rep * in_rep,struct mlx5_core_dev * in_mdev)4609 __mlx5e_add_fdb_flow(struct mlx5e_priv *priv,
4610 struct flow_cls_offload *f,
4611 unsigned long flow_flags,
4612 struct net_device *filter_dev,
4613 struct mlx5_eswitch_rep *in_rep,
4614 struct mlx5_core_dev *in_mdev)
4615 {
4616 struct flow_rule *rule = flow_cls_offload_flow_rule(f);
4617 struct netlink_ext_ack *extack = f->common.extack;
4618 struct mlx5e_tc_flow_parse_attr *parse_attr;
4619 struct mlx5e_tc_flow *flow;
4620 int attr_size, err;
4621
4622 flow_flags |= BIT(MLX5E_TC_FLOW_FLAG_ESWITCH);
4623 attr_size = sizeof(struct mlx5_esw_flow_attr);
4624 err = mlx5e_alloc_flow(priv, attr_size, f, flow_flags,
4625 &parse_attr, &flow);
4626 if (err)
4627 goto out;
4628
4629 parse_attr->filter_dev = filter_dev;
4630 mlx5e_flow_esw_attr_init(flow->attr,
4631 priv, parse_attr,
4632 f, in_rep, in_mdev);
4633
4634 err = parse_cls_flower(flow->priv, flow, &parse_attr->spec,
4635 f, filter_dev);
4636 if (err)
4637 goto err_free;
4638
4639 /* actions validation depends on parsing the ct matches first */
4640 err = mlx5_tc_ct_match_add(get_ct_priv(priv), &parse_attr->spec, f,
4641 &flow->attr->ct_attr, extack);
4642 if (err)
4643 goto err_free;
4644
4645 err = parse_tc_fdb_actions(priv, &rule->action, flow, extack, filter_dev);
4646 if (err)
4647 goto err_free;
4648
4649 err = mlx5e_tc_add_fdb_flow(priv, flow, extack);
4650 complete_all(&flow->init_done);
4651 if (err) {
4652 if (!(err == -ENETUNREACH && mlx5_lag_is_multipath(in_mdev)))
4653 goto err_free;
4654
4655 add_unready_flow(flow);
4656 }
4657
4658 return flow;
4659
4660 err_free:
4661 dealloc_mod_hdr_actions(&parse_attr->mod_hdr_acts);
4662 mlx5e_flow_put(priv, flow);
4663 out:
4664 return ERR_PTR(err);
4665 }
4666
mlx5e_tc_add_fdb_peer_flow(struct flow_cls_offload * f,struct mlx5e_tc_flow * flow,unsigned long flow_flags)4667 static int mlx5e_tc_add_fdb_peer_flow(struct flow_cls_offload *f,
4668 struct mlx5e_tc_flow *flow,
4669 unsigned long flow_flags)
4670 {
4671 struct mlx5e_priv *priv = flow->priv, *peer_priv;
4672 struct mlx5_eswitch *esw = priv->mdev->priv.eswitch, *peer_esw;
4673 struct mlx5_esw_flow_attr *attr = flow->attr->esw_attr;
4674 struct mlx5_devcom *devcom = priv->mdev->priv.devcom;
4675 struct mlx5e_tc_flow_parse_attr *parse_attr;
4676 struct mlx5e_rep_priv *peer_urpriv;
4677 struct mlx5e_tc_flow *peer_flow;
4678 struct mlx5_core_dev *in_mdev;
4679 int err = 0;
4680
4681 peer_esw = mlx5_devcom_get_peer_data(devcom, MLX5_DEVCOM_ESW_OFFLOADS);
4682 if (!peer_esw)
4683 return -ENODEV;
4684
4685 peer_urpriv = mlx5_eswitch_get_uplink_priv(peer_esw, REP_ETH);
4686 peer_priv = netdev_priv(peer_urpriv->netdev);
4687
4688 /* in_mdev is assigned of which the packet originated from.
4689 * So packets redirected to uplink use the same mdev of the
4690 * original flow and packets redirected from uplink use the
4691 * peer mdev.
4692 */
4693 if (attr->in_rep->vport == MLX5_VPORT_UPLINK)
4694 in_mdev = peer_priv->mdev;
4695 else
4696 in_mdev = priv->mdev;
4697
4698 parse_attr = flow->attr->parse_attr;
4699 peer_flow = __mlx5e_add_fdb_flow(peer_priv, f, flow_flags,
4700 parse_attr->filter_dev,
4701 attr->in_rep, in_mdev);
4702 if (IS_ERR(peer_flow)) {
4703 err = PTR_ERR(peer_flow);
4704 goto out;
4705 }
4706
4707 flow->peer_flow = peer_flow;
4708 flow_flag_set(flow, DUP);
4709 mutex_lock(&esw->offloads.peer_mutex);
4710 list_add_tail(&flow->peer, &esw->offloads.peer_flows);
4711 mutex_unlock(&esw->offloads.peer_mutex);
4712
4713 out:
4714 mlx5_devcom_release_peer_data(devcom, MLX5_DEVCOM_ESW_OFFLOADS);
4715 return err;
4716 }
4717
4718 static int
mlx5e_add_fdb_flow(struct mlx5e_priv * priv,struct flow_cls_offload * f,unsigned long flow_flags,struct net_device * filter_dev,struct mlx5e_tc_flow ** __flow)4719 mlx5e_add_fdb_flow(struct mlx5e_priv *priv,
4720 struct flow_cls_offload *f,
4721 unsigned long flow_flags,
4722 struct net_device *filter_dev,
4723 struct mlx5e_tc_flow **__flow)
4724 {
4725 struct mlx5e_rep_priv *rpriv = priv->ppriv;
4726 struct mlx5_eswitch_rep *in_rep = rpriv->rep;
4727 struct mlx5_core_dev *in_mdev = priv->mdev;
4728 struct mlx5e_tc_flow *flow;
4729 int err;
4730
4731 flow = __mlx5e_add_fdb_flow(priv, f, flow_flags, filter_dev, in_rep,
4732 in_mdev);
4733 if (IS_ERR(flow))
4734 return PTR_ERR(flow);
4735
4736 if (is_peer_flow_needed(flow)) {
4737 err = mlx5e_tc_add_fdb_peer_flow(f, flow, flow_flags);
4738 if (err) {
4739 mlx5e_tc_del_fdb_flow(priv, flow);
4740 goto out;
4741 }
4742 }
4743
4744 *__flow = flow;
4745
4746 return 0;
4747
4748 out:
4749 return err;
4750 }
4751
4752 static int
mlx5e_add_nic_flow(struct mlx5e_priv * priv,struct flow_cls_offload * f,unsigned long flow_flags,struct net_device * filter_dev,struct mlx5e_tc_flow ** __flow)4753 mlx5e_add_nic_flow(struct mlx5e_priv *priv,
4754 struct flow_cls_offload *f,
4755 unsigned long flow_flags,
4756 struct net_device *filter_dev,
4757 struct mlx5e_tc_flow **__flow)
4758 {
4759 struct flow_rule *rule = flow_cls_offload_flow_rule(f);
4760 struct netlink_ext_ack *extack = f->common.extack;
4761 struct mlx5e_tc_flow_parse_attr *parse_attr;
4762 struct mlx5e_tc_flow *flow;
4763 int attr_size, err;
4764
4765 if (!MLX5_CAP_FLOWTABLE_NIC_RX(priv->mdev, ignore_flow_level)) {
4766 if (!tc_cls_can_offload_and_chain0(priv->netdev, &f->common))
4767 return -EOPNOTSUPP;
4768 } else if (!tc_can_offload_extack(priv->netdev, f->common.extack)) {
4769 return -EOPNOTSUPP;
4770 }
4771
4772 flow_flags |= BIT(MLX5E_TC_FLOW_FLAG_NIC);
4773 attr_size = sizeof(struct mlx5_nic_flow_attr);
4774 err = mlx5e_alloc_flow(priv, attr_size, f, flow_flags,
4775 &parse_attr, &flow);
4776 if (err)
4777 goto out;
4778
4779 parse_attr->filter_dev = filter_dev;
4780 mlx5e_flow_attr_init(flow->attr, parse_attr, f);
4781
4782 err = parse_cls_flower(flow->priv, flow, &parse_attr->spec,
4783 f, filter_dev);
4784 if (err)
4785 goto err_free;
4786
4787 err = mlx5_tc_ct_match_add(get_ct_priv(priv), &parse_attr->spec, f,
4788 &flow->attr->ct_attr, extack);
4789 if (err)
4790 goto err_free;
4791
4792 err = parse_tc_nic_actions(priv, &rule->action, parse_attr, flow, extack);
4793 if (err)
4794 goto err_free;
4795
4796 err = mlx5e_tc_add_nic_flow(priv, parse_attr, flow, extack);
4797 if (err)
4798 goto err_free;
4799
4800 flow_flag_set(flow, OFFLOADED);
4801 *__flow = flow;
4802
4803 return 0;
4804
4805 err_free:
4806 dealloc_mod_hdr_actions(&parse_attr->mod_hdr_acts);
4807 mlx5e_flow_put(priv, flow);
4808 out:
4809 return err;
4810 }
4811
4812 static int
mlx5e_tc_add_flow(struct mlx5e_priv * priv,struct flow_cls_offload * f,unsigned long flags,struct net_device * filter_dev,struct mlx5e_tc_flow ** flow)4813 mlx5e_tc_add_flow(struct mlx5e_priv *priv,
4814 struct flow_cls_offload *f,
4815 unsigned long flags,
4816 struct net_device *filter_dev,
4817 struct mlx5e_tc_flow **flow)
4818 {
4819 struct mlx5_eswitch *esw = priv->mdev->priv.eswitch;
4820 unsigned long flow_flags;
4821 int err;
4822
4823 get_flags(flags, &flow_flags);
4824
4825 if (!tc_can_offload_extack(priv->netdev, f->common.extack))
4826 return -EOPNOTSUPP;
4827
4828 if (esw && esw->mode == MLX5_ESWITCH_OFFLOADS)
4829 err = mlx5e_add_fdb_flow(priv, f, flow_flags,
4830 filter_dev, flow);
4831 else
4832 err = mlx5e_add_nic_flow(priv, f, flow_flags,
4833 filter_dev, flow);
4834
4835 return err;
4836 }
4837
is_flow_rule_duplicate_allowed(struct net_device * dev,struct mlx5e_rep_priv * rpriv)4838 static bool is_flow_rule_duplicate_allowed(struct net_device *dev,
4839 struct mlx5e_rep_priv *rpriv)
4840 {
4841 /* Offloaded flow rule is allowed to duplicate on non-uplink representor
4842 * sharing tc block with other slaves of a lag device. Rpriv can be NULL if this
4843 * function is called from NIC mode.
4844 */
4845 return netif_is_lag_port(dev) && rpriv && rpriv->rep->vport != MLX5_VPORT_UPLINK;
4846 }
4847
mlx5e_configure_flower(struct net_device * dev,struct mlx5e_priv * priv,struct flow_cls_offload * f,unsigned long flags)4848 int mlx5e_configure_flower(struct net_device *dev, struct mlx5e_priv *priv,
4849 struct flow_cls_offload *f, unsigned long flags)
4850 {
4851 struct netlink_ext_ack *extack = f->common.extack;
4852 struct rhashtable *tc_ht = get_tc_ht(priv, flags);
4853 struct mlx5e_rep_priv *rpriv = priv->ppriv;
4854 struct mlx5e_tc_flow *flow;
4855 int err = 0;
4856
4857 rcu_read_lock();
4858 flow = rhashtable_lookup(tc_ht, &f->cookie, tc_ht_params);
4859 if (flow) {
4860 /* Same flow rule offloaded to non-uplink representor sharing tc block,
4861 * just return 0.
4862 */
4863 if (is_flow_rule_duplicate_allowed(dev, rpriv) && flow->orig_dev != dev)
4864 goto rcu_unlock;
4865
4866 NL_SET_ERR_MSG_MOD(extack,
4867 "flow cookie already exists, ignoring");
4868 netdev_warn_once(priv->netdev,
4869 "flow cookie %lx already exists, ignoring\n",
4870 f->cookie);
4871 err = -EEXIST;
4872 goto rcu_unlock;
4873 }
4874 rcu_unlock:
4875 rcu_read_unlock();
4876 if (flow)
4877 goto out;
4878
4879 trace_mlx5e_configure_flower(f);
4880 err = mlx5e_tc_add_flow(priv, f, flags, dev, &flow);
4881 if (err)
4882 goto out;
4883
4884 /* Flow rule offloaded to non-uplink representor sharing tc block,
4885 * set the flow's owner dev.
4886 */
4887 if (is_flow_rule_duplicate_allowed(dev, rpriv))
4888 flow->orig_dev = dev;
4889
4890 err = rhashtable_lookup_insert_fast(tc_ht, &flow->node, tc_ht_params);
4891 if (err)
4892 goto err_free;
4893
4894 return 0;
4895
4896 err_free:
4897 mlx5e_flow_put(priv, flow);
4898 out:
4899 return err;
4900 }
4901
same_flow_direction(struct mlx5e_tc_flow * flow,int flags)4902 static bool same_flow_direction(struct mlx5e_tc_flow *flow, int flags)
4903 {
4904 bool dir_ingress = !!(flags & MLX5_TC_FLAG(INGRESS));
4905 bool dir_egress = !!(flags & MLX5_TC_FLAG(EGRESS));
4906
4907 return flow_flag_test(flow, INGRESS) == dir_ingress &&
4908 flow_flag_test(flow, EGRESS) == dir_egress;
4909 }
4910
mlx5e_delete_flower(struct net_device * dev,struct mlx5e_priv * priv,struct flow_cls_offload * f,unsigned long flags)4911 int mlx5e_delete_flower(struct net_device *dev, struct mlx5e_priv *priv,
4912 struct flow_cls_offload *f, unsigned long flags)
4913 {
4914 struct rhashtable *tc_ht = get_tc_ht(priv, flags);
4915 struct mlx5e_tc_flow *flow;
4916 int err;
4917
4918 rcu_read_lock();
4919 flow = rhashtable_lookup(tc_ht, &f->cookie, tc_ht_params);
4920 if (!flow || !same_flow_direction(flow, flags)) {
4921 err = -EINVAL;
4922 goto errout;
4923 }
4924
4925 /* Only delete the flow if it doesn't have MLX5E_TC_FLOW_DELETED flag
4926 * set.
4927 */
4928 if (flow_flag_test_and_set(flow, DELETED)) {
4929 err = -EINVAL;
4930 goto errout;
4931 }
4932 rhashtable_remove_fast(tc_ht, &flow->node, tc_ht_params);
4933 rcu_read_unlock();
4934
4935 trace_mlx5e_delete_flower(f);
4936 mlx5e_flow_put(priv, flow);
4937
4938 return 0;
4939
4940 errout:
4941 rcu_read_unlock();
4942 return err;
4943 }
4944
mlx5e_stats_flower(struct net_device * dev,struct mlx5e_priv * priv,struct flow_cls_offload * f,unsigned long flags)4945 int mlx5e_stats_flower(struct net_device *dev, struct mlx5e_priv *priv,
4946 struct flow_cls_offload *f, unsigned long flags)
4947 {
4948 struct mlx5_devcom *devcom = priv->mdev->priv.devcom;
4949 struct rhashtable *tc_ht = get_tc_ht(priv, flags);
4950 struct mlx5_eswitch *peer_esw;
4951 struct mlx5e_tc_flow *flow;
4952 struct mlx5_fc *counter;
4953 u64 lastuse = 0;
4954 u64 packets = 0;
4955 u64 bytes = 0;
4956 int err = 0;
4957
4958 rcu_read_lock();
4959 flow = mlx5e_flow_get(rhashtable_lookup(tc_ht, &f->cookie,
4960 tc_ht_params));
4961 rcu_read_unlock();
4962 if (IS_ERR(flow))
4963 return PTR_ERR(flow);
4964
4965 if (!same_flow_direction(flow, flags)) {
4966 err = -EINVAL;
4967 goto errout;
4968 }
4969
4970 if (mlx5e_is_offloaded_flow(flow) || flow_flag_test(flow, CT)) {
4971 counter = mlx5e_tc_get_counter(flow);
4972 if (!counter)
4973 goto errout;
4974
4975 mlx5_fc_query_cached(counter, &bytes, &packets, &lastuse);
4976 }
4977
4978 /* Under multipath it's possible for one rule to be currently
4979 * un-offloaded while the other rule is offloaded.
4980 */
4981 peer_esw = mlx5_devcom_get_peer_data(devcom, MLX5_DEVCOM_ESW_OFFLOADS);
4982 if (!peer_esw)
4983 goto out;
4984
4985 if (flow_flag_test(flow, DUP) &&
4986 flow_flag_test(flow->peer_flow, OFFLOADED)) {
4987 u64 bytes2;
4988 u64 packets2;
4989 u64 lastuse2;
4990
4991 counter = mlx5e_tc_get_counter(flow->peer_flow);
4992 if (!counter)
4993 goto no_peer_counter;
4994 mlx5_fc_query_cached(counter, &bytes2, &packets2, &lastuse2);
4995
4996 bytes += bytes2;
4997 packets += packets2;
4998 lastuse = max_t(u64, lastuse, lastuse2);
4999 }
5000
5001 no_peer_counter:
5002 mlx5_devcom_release_peer_data(devcom, MLX5_DEVCOM_ESW_OFFLOADS);
5003 out:
5004 flow_stats_update(&f->stats, bytes, packets, 0, lastuse,
5005 FLOW_ACTION_HW_STATS_DELAYED);
5006 trace_mlx5e_stats_flower(f);
5007 errout:
5008 mlx5e_flow_put(priv, flow);
5009 return err;
5010 }
5011
apply_police_params(struct mlx5e_priv * priv,u32 rate,struct netlink_ext_ack * extack)5012 static int apply_police_params(struct mlx5e_priv *priv, u32 rate,
5013 struct netlink_ext_ack *extack)
5014 {
5015 struct mlx5e_rep_priv *rpriv = priv->ppriv;
5016 struct mlx5_eswitch *esw;
5017 u16 vport_num;
5018 u32 rate_mbps;
5019 int err;
5020
5021 vport_num = rpriv->rep->vport;
5022 if (vport_num >= MLX5_VPORT_ECPF) {
5023 NL_SET_ERR_MSG_MOD(extack,
5024 "Ingress rate limit is supported only for Eswitch ports connected to VFs");
5025 return -EOPNOTSUPP;
5026 }
5027
5028 esw = priv->mdev->priv.eswitch;
5029 /* rate is given in bytes/sec.
5030 * First convert to bits/sec and then round to the nearest mbit/secs.
5031 * mbit means million bits.
5032 * Moreover, if rate is non zero we choose to configure to a minimum of
5033 * 1 mbit/sec.
5034 */
5035 rate_mbps = rate ? max_t(u32, (rate * 8 + 500000) / 1000000, 1) : 0;
5036 err = mlx5_esw_modify_vport_rate(esw, vport_num, rate_mbps);
5037 if (err)
5038 NL_SET_ERR_MSG_MOD(extack, "failed applying action to hardware");
5039
5040 return err;
5041 }
5042
scan_tc_matchall_fdb_actions(struct mlx5e_priv * priv,struct flow_action * flow_action,struct netlink_ext_ack * extack)5043 static int scan_tc_matchall_fdb_actions(struct mlx5e_priv *priv,
5044 struct flow_action *flow_action,
5045 struct netlink_ext_ack *extack)
5046 {
5047 struct mlx5e_rep_priv *rpriv = priv->ppriv;
5048 const struct flow_action_entry *act;
5049 int err;
5050 int i;
5051
5052 if (!flow_action_has_entries(flow_action)) {
5053 NL_SET_ERR_MSG_MOD(extack, "matchall called with no action");
5054 return -EINVAL;
5055 }
5056
5057 if (!flow_offload_has_one_action(flow_action)) {
5058 NL_SET_ERR_MSG_MOD(extack, "matchall policing support only a single action");
5059 return -EOPNOTSUPP;
5060 }
5061
5062 if (!flow_action_basic_hw_stats_check(flow_action, extack))
5063 return -EOPNOTSUPP;
5064
5065 flow_action_for_each(i, act, flow_action) {
5066 switch (act->id) {
5067 case FLOW_ACTION_POLICE:
5068 err = apply_police_params(priv, act->police.rate_bytes_ps, extack);
5069 if (err)
5070 return err;
5071
5072 rpriv->prev_vf_vport_stats = priv->stats.vf_vport;
5073 break;
5074 default:
5075 NL_SET_ERR_MSG_MOD(extack, "mlx5 supports only police action for matchall");
5076 return -EOPNOTSUPP;
5077 }
5078 }
5079
5080 return 0;
5081 }
5082
mlx5e_tc_configure_matchall(struct mlx5e_priv * priv,struct tc_cls_matchall_offload * ma)5083 int mlx5e_tc_configure_matchall(struct mlx5e_priv *priv,
5084 struct tc_cls_matchall_offload *ma)
5085 {
5086 struct mlx5_eswitch *esw = priv->mdev->priv.eswitch;
5087 struct netlink_ext_ack *extack = ma->common.extack;
5088
5089 if (!mlx5_esw_qos_enabled(esw)) {
5090 NL_SET_ERR_MSG_MOD(extack, "QoS is not supported on this device");
5091 return -EOPNOTSUPP;
5092 }
5093
5094 if (ma->common.prio != 1) {
5095 NL_SET_ERR_MSG_MOD(extack, "only priority 1 is supported");
5096 return -EINVAL;
5097 }
5098
5099 return scan_tc_matchall_fdb_actions(priv, &ma->rule->action, extack);
5100 }
5101
mlx5e_tc_delete_matchall(struct mlx5e_priv * priv,struct tc_cls_matchall_offload * ma)5102 int mlx5e_tc_delete_matchall(struct mlx5e_priv *priv,
5103 struct tc_cls_matchall_offload *ma)
5104 {
5105 struct netlink_ext_ack *extack = ma->common.extack;
5106
5107 return apply_police_params(priv, 0, extack);
5108 }
5109
mlx5e_tc_stats_matchall(struct mlx5e_priv * priv,struct tc_cls_matchall_offload * ma)5110 void mlx5e_tc_stats_matchall(struct mlx5e_priv *priv,
5111 struct tc_cls_matchall_offload *ma)
5112 {
5113 struct mlx5e_rep_priv *rpriv = priv->ppriv;
5114 struct rtnl_link_stats64 cur_stats;
5115 u64 dbytes;
5116 u64 dpkts;
5117
5118 cur_stats = priv->stats.vf_vport;
5119 dpkts = cur_stats.rx_packets - rpriv->prev_vf_vport_stats.rx_packets;
5120 dbytes = cur_stats.rx_bytes - rpriv->prev_vf_vport_stats.rx_bytes;
5121 rpriv->prev_vf_vport_stats = cur_stats;
5122 flow_stats_update(&ma->stats, dbytes, dpkts, 0, jiffies,
5123 FLOW_ACTION_HW_STATS_DELAYED);
5124 }
5125
mlx5e_tc_hairpin_update_dead_peer(struct mlx5e_priv * priv,struct mlx5e_priv * peer_priv)5126 static void mlx5e_tc_hairpin_update_dead_peer(struct mlx5e_priv *priv,
5127 struct mlx5e_priv *peer_priv)
5128 {
5129 struct mlx5_core_dev *peer_mdev = peer_priv->mdev;
5130 struct mlx5e_hairpin_entry *hpe, *tmp;
5131 LIST_HEAD(init_wait_list);
5132 u16 peer_vhca_id;
5133 int bkt;
5134
5135 if (!same_hw_devs(priv, peer_priv))
5136 return;
5137
5138 peer_vhca_id = MLX5_CAP_GEN(peer_mdev, vhca_id);
5139
5140 mutex_lock(&priv->fs.tc.hairpin_tbl_lock);
5141 hash_for_each(priv->fs.tc.hairpin_tbl, bkt, hpe, hairpin_hlist)
5142 if (refcount_inc_not_zero(&hpe->refcnt))
5143 list_add(&hpe->dead_peer_wait_list, &init_wait_list);
5144 mutex_unlock(&priv->fs.tc.hairpin_tbl_lock);
5145
5146 list_for_each_entry_safe(hpe, tmp, &init_wait_list, dead_peer_wait_list) {
5147 wait_for_completion(&hpe->res_ready);
5148 if (!IS_ERR_OR_NULL(hpe->hp) && hpe->peer_vhca_id == peer_vhca_id)
5149 hpe->hp->pair->peer_gone = true;
5150
5151 mlx5e_hairpin_put(priv, hpe);
5152 }
5153 }
5154
mlx5e_tc_netdev_event(struct notifier_block * this,unsigned long event,void * ptr)5155 static int mlx5e_tc_netdev_event(struct notifier_block *this,
5156 unsigned long event, void *ptr)
5157 {
5158 struct net_device *ndev = netdev_notifier_info_to_dev(ptr);
5159 struct mlx5e_flow_steering *fs;
5160 struct mlx5e_priv *peer_priv;
5161 struct mlx5e_tc_table *tc;
5162 struct mlx5e_priv *priv;
5163
5164 if (ndev->netdev_ops != &mlx5e_netdev_ops ||
5165 event != NETDEV_UNREGISTER ||
5166 ndev->reg_state == NETREG_REGISTERED)
5167 return NOTIFY_DONE;
5168
5169 tc = container_of(this, struct mlx5e_tc_table, netdevice_nb);
5170 fs = container_of(tc, struct mlx5e_flow_steering, tc);
5171 priv = container_of(fs, struct mlx5e_priv, fs);
5172 peer_priv = netdev_priv(ndev);
5173 if (priv == peer_priv ||
5174 !(priv->netdev->features & NETIF_F_HW_TC))
5175 return NOTIFY_DONE;
5176
5177 mlx5e_tc_hairpin_update_dead_peer(priv, peer_priv);
5178
5179 return NOTIFY_DONE;
5180 }
5181
mlx5e_tc_nic_get_ft_size(struct mlx5_core_dev * dev)5182 static int mlx5e_tc_nic_get_ft_size(struct mlx5_core_dev *dev)
5183 {
5184 int tc_grp_size, tc_tbl_size;
5185 u32 max_flow_counter;
5186
5187 max_flow_counter = (MLX5_CAP_GEN(dev, max_flow_counter_31_16) << 16) |
5188 MLX5_CAP_GEN(dev, max_flow_counter_15_0);
5189
5190 tc_grp_size = min_t(int, max_flow_counter, MLX5E_TC_TABLE_MAX_GROUP_SIZE);
5191
5192 tc_tbl_size = min_t(int, tc_grp_size * MLX5E_TC_TABLE_NUM_GROUPS,
5193 BIT(MLX5_CAP_FLOWTABLE_NIC_RX(dev, log_max_ft_size)));
5194
5195 return tc_tbl_size;
5196 }
5197
mlx5e_tc_nic_init(struct mlx5e_priv * priv)5198 int mlx5e_tc_nic_init(struct mlx5e_priv *priv)
5199 {
5200 struct mlx5e_tc_table *tc = &priv->fs.tc;
5201 struct mlx5_core_dev *dev = priv->mdev;
5202 struct mlx5_chains_attr attr = {};
5203 int err;
5204
5205 mlx5e_mod_hdr_tbl_init(&tc->mod_hdr);
5206 mutex_init(&tc->t_lock);
5207 mutex_init(&tc->hairpin_tbl_lock);
5208 hash_init(tc->hairpin_tbl);
5209
5210 err = rhashtable_init(&tc->ht, &tc_ht_params);
5211 if (err)
5212 return err;
5213
5214 if (MLX5_CAP_FLOWTABLE_NIC_RX(priv->mdev, ignore_flow_level)) {
5215 attr.flags = MLX5_CHAINS_AND_PRIOS_SUPPORTED |
5216 MLX5_CHAINS_IGNORE_FLOW_LEVEL_SUPPORTED;
5217 attr.max_restore_tag = MLX5E_TC_TABLE_CHAIN_TAG_MASK;
5218 }
5219 attr.ns = MLX5_FLOW_NAMESPACE_KERNEL;
5220 attr.max_ft_sz = mlx5e_tc_nic_get_ft_size(dev);
5221 attr.max_grp_num = MLX5E_TC_TABLE_NUM_GROUPS;
5222 attr.default_ft = priv->fs.vlan.ft.t;
5223
5224 tc->chains = mlx5_chains_create(dev, &attr);
5225 if (IS_ERR(tc->chains)) {
5226 err = PTR_ERR(tc->chains);
5227 goto err_chains;
5228 }
5229
5230 tc->ct = mlx5_tc_ct_init(priv, tc->chains, &priv->fs.tc.mod_hdr,
5231 MLX5_FLOW_NAMESPACE_KERNEL);
5232 if (IS_ERR(tc->ct)) {
5233 err = PTR_ERR(tc->ct);
5234 goto err_ct;
5235 }
5236
5237 tc->netdevice_nb.notifier_call = mlx5e_tc_netdev_event;
5238 err = register_netdevice_notifier_dev_net(priv->netdev,
5239 &tc->netdevice_nb,
5240 &tc->netdevice_nn);
5241 if (err) {
5242 tc->netdevice_nb.notifier_call = NULL;
5243 mlx5_core_warn(priv->mdev, "Failed to register netdev notifier\n");
5244 goto err_reg;
5245 }
5246
5247 return 0;
5248
5249 err_reg:
5250 mlx5_tc_ct_clean(tc->ct);
5251 err_ct:
5252 mlx5_chains_destroy(tc->chains);
5253 err_chains:
5254 rhashtable_destroy(&tc->ht);
5255 return err;
5256 }
5257
_mlx5e_tc_del_flow(void * ptr,void * arg)5258 static void _mlx5e_tc_del_flow(void *ptr, void *arg)
5259 {
5260 struct mlx5e_tc_flow *flow = ptr;
5261 struct mlx5e_priv *priv = flow->priv;
5262
5263 mlx5e_tc_del_flow(priv, flow);
5264 kfree(flow);
5265 }
5266
mlx5e_tc_nic_cleanup(struct mlx5e_priv * priv)5267 void mlx5e_tc_nic_cleanup(struct mlx5e_priv *priv)
5268 {
5269 struct mlx5e_tc_table *tc = &priv->fs.tc;
5270
5271 if (tc->netdevice_nb.notifier_call)
5272 unregister_netdevice_notifier_dev_net(priv->netdev,
5273 &tc->netdevice_nb,
5274 &tc->netdevice_nn);
5275
5276 mlx5e_mod_hdr_tbl_destroy(&tc->mod_hdr);
5277 mutex_destroy(&tc->hairpin_tbl_lock);
5278
5279 rhashtable_free_and_destroy(&tc->ht, _mlx5e_tc_del_flow, NULL);
5280
5281 if (!IS_ERR_OR_NULL(tc->t)) {
5282 mlx5_chains_put_table(tc->chains, 0, 1, MLX5E_TC_FT_LEVEL);
5283 tc->t = NULL;
5284 }
5285 mutex_destroy(&tc->t_lock);
5286
5287 mlx5_tc_ct_clean(tc->ct);
5288 mlx5_chains_destroy(tc->chains);
5289 }
5290
mlx5e_tc_esw_init(struct rhashtable * tc_ht)5291 int mlx5e_tc_esw_init(struct rhashtable *tc_ht)
5292 {
5293 const size_t sz_enc_opts = sizeof(struct tunnel_match_enc_opts);
5294 struct mlx5_rep_uplink_priv *uplink_priv;
5295 struct mlx5e_rep_priv *rpriv;
5296 struct mapping_ctx *mapping;
5297 struct mlx5_eswitch *esw;
5298 struct mlx5e_priv *priv;
5299 int err = 0;
5300
5301 uplink_priv = container_of(tc_ht, struct mlx5_rep_uplink_priv, tc_ht);
5302 rpriv = container_of(uplink_priv, struct mlx5e_rep_priv, uplink_priv);
5303 priv = netdev_priv(rpriv->netdev);
5304 esw = priv->mdev->priv.eswitch;
5305
5306 uplink_priv->ct_priv = mlx5_tc_ct_init(netdev_priv(priv->netdev),
5307 esw_chains(esw),
5308 &esw->offloads.mod_hdr,
5309 MLX5_FLOW_NAMESPACE_FDB);
5310 if (IS_ERR(uplink_priv->ct_priv))
5311 goto err_ct;
5312
5313 mapping = mapping_create(sizeof(struct tunnel_match_key),
5314 TUNNEL_INFO_BITS_MASK, true);
5315 if (IS_ERR(mapping)) {
5316 err = PTR_ERR(mapping);
5317 goto err_tun_mapping;
5318 }
5319 uplink_priv->tunnel_mapping = mapping;
5320
5321 mapping = mapping_create(sz_enc_opts, ENC_OPTS_BITS_MASK, true);
5322 if (IS_ERR(mapping)) {
5323 err = PTR_ERR(mapping);
5324 goto err_enc_opts_mapping;
5325 }
5326 uplink_priv->tunnel_enc_opts_mapping = mapping;
5327
5328 err = rhashtable_init(tc_ht, &tc_ht_params);
5329 if (err)
5330 goto err_ht_init;
5331
5332 return err;
5333
5334 err_ht_init:
5335 mapping_destroy(uplink_priv->tunnel_enc_opts_mapping);
5336 err_enc_opts_mapping:
5337 mapping_destroy(uplink_priv->tunnel_mapping);
5338 err_tun_mapping:
5339 mlx5_tc_ct_clean(uplink_priv->ct_priv);
5340 err_ct:
5341 netdev_warn(priv->netdev,
5342 "Failed to initialize tc (eswitch), err: %d", err);
5343 return err;
5344 }
5345
mlx5e_tc_esw_cleanup(struct rhashtable * tc_ht)5346 void mlx5e_tc_esw_cleanup(struct rhashtable *tc_ht)
5347 {
5348 struct mlx5_rep_uplink_priv *uplink_priv;
5349
5350 rhashtable_free_and_destroy(tc_ht, _mlx5e_tc_del_flow, NULL);
5351
5352 uplink_priv = container_of(tc_ht, struct mlx5_rep_uplink_priv, tc_ht);
5353
5354 mapping_destroy(uplink_priv->tunnel_enc_opts_mapping);
5355 mapping_destroy(uplink_priv->tunnel_mapping);
5356
5357 mlx5_tc_ct_clean(uplink_priv->ct_priv);
5358 }
5359
mlx5e_tc_num_filters(struct mlx5e_priv * priv,unsigned long flags)5360 int mlx5e_tc_num_filters(struct mlx5e_priv *priv, unsigned long flags)
5361 {
5362 struct rhashtable *tc_ht = get_tc_ht(priv, flags);
5363
5364 return atomic_read(&tc_ht->nelems);
5365 }
5366
mlx5e_tc_clean_fdb_peer_flows(struct mlx5_eswitch * esw)5367 void mlx5e_tc_clean_fdb_peer_flows(struct mlx5_eswitch *esw)
5368 {
5369 struct mlx5e_tc_flow *flow, *tmp;
5370
5371 list_for_each_entry_safe(flow, tmp, &esw->offloads.peer_flows, peer)
5372 __mlx5e_tc_del_fdb_peer_flow(flow);
5373 }
5374
mlx5e_tc_reoffload_flows_work(struct work_struct * work)5375 void mlx5e_tc_reoffload_flows_work(struct work_struct *work)
5376 {
5377 struct mlx5_rep_uplink_priv *rpriv =
5378 container_of(work, struct mlx5_rep_uplink_priv,
5379 reoffload_flows_work);
5380 struct mlx5e_tc_flow *flow, *tmp;
5381
5382 mutex_lock(&rpriv->unready_flows_lock);
5383 list_for_each_entry_safe(flow, tmp, &rpriv->unready_flows, unready) {
5384 if (!mlx5e_tc_add_fdb_flow(flow->priv, flow, NULL))
5385 unready_flow_del(flow);
5386 }
5387 mutex_unlock(&rpriv->unready_flows_lock);
5388 }
5389
mlx5e_setup_tc_cls_flower(struct mlx5e_priv * priv,struct flow_cls_offload * cls_flower,unsigned long flags)5390 static int mlx5e_setup_tc_cls_flower(struct mlx5e_priv *priv,
5391 struct flow_cls_offload *cls_flower,
5392 unsigned long flags)
5393 {
5394 switch (cls_flower->command) {
5395 case FLOW_CLS_REPLACE:
5396 return mlx5e_configure_flower(priv->netdev, priv, cls_flower,
5397 flags);
5398 case FLOW_CLS_DESTROY:
5399 return mlx5e_delete_flower(priv->netdev, priv, cls_flower,
5400 flags);
5401 case FLOW_CLS_STATS:
5402 return mlx5e_stats_flower(priv->netdev, priv, cls_flower,
5403 flags);
5404 default:
5405 return -EOPNOTSUPP;
5406 }
5407 }
5408
mlx5e_setup_tc_block_cb(enum tc_setup_type type,void * type_data,void * cb_priv)5409 int mlx5e_setup_tc_block_cb(enum tc_setup_type type, void *type_data,
5410 void *cb_priv)
5411 {
5412 unsigned long flags = MLX5_TC_FLAG(INGRESS) | MLX5_TC_FLAG(NIC_OFFLOAD);
5413 struct mlx5e_priv *priv = cb_priv;
5414
5415 switch (type) {
5416 case TC_SETUP_CLSFLOWER:
5417 return mlx5e_setup_tc_cls_flower(priv, type_data, flags);
5418 default:
5419 return -EOPNOTSUPP;
5420 }
5421 }
5422
mlx5e_tc_update_skb(struct mlx5_cqe64 * cqe,struct sk_buff * skb)5423 bool mlx5e_tc_update_skb(struct mlx5_cqe64 *cqe,
5424 struct sk_buff *skb)
5425 {
5426 #if IS_ENABLED(CONFIG_NET_TC_SKB_EXT)
5427 u32 chain = 0, chain_tag, reg_b, zone_restore_id;
5428 struct mlx5e_priv *priv = netdev_priv(skb->dev);
5429 struct mlx5e_tc_table *tc = &priv->fs.tc;
5430 struct tc_skb_ext *tc_skb_ext;
5431 int err;
5432
5433 reg_b = be32_to_cpu(cqe->ft_metadata);
5434
5435 chain_tag = reg_b & MLX5E_TC_TABLE_CHAIN_TAG_MASK;
5436
5437 err = mlx5_get_chain_for_tag(nic_chains(priv), chain_tag, &chain);
5438 if (err) {
5439 netdev_dbg(priv->netdev,
5440 "Couldn't find chain for chain tag: %d, err: %d\n",
5441 chain_tag, err);
5442 return false;
5443 }
5444
5445 if (chain) {
5446 tc_skb_ext = skb_ext_add(skb, TC_SKB_EXT);
5447 if (WARN_ON(!tc_skb_ext))
5448 return false;
5449
5450 tc_skb_ext->chain = chain;
5451
5452 zone_restore_id = (reg_b >> REG_MAPPING_SHIFT(NIC_ZONE_RESTORE_TO_REG)) &
5453 ZONE_RESTORE_MAX;
5454
5455 if (!mlx5e_tc_ct_restore_flow(tc->ct, skb,
5456 zone_restore_id))
5457 return false;
5458 }
5459 #endif /* CONFIG_NET_TC_SKB_EXT */
5460
5461 return true;
5462 }
5463