1 // SPDX-License-Identifier: GPL-2.0 2 /* Copyright (C) 2018-2021, Intel Corporation. */ 3 4 /* Link Aggregation code */ 5 6 #include "ice.h" 7 #include "ice_lib.h" 8 #include "ice_lag.h" 9 10 #define ICE_LAG_RES_SHARED BIT(14) 11 #define ICE_LAG_RES_VALID BIT(15) 12 13 #define LACP_TRAIN_PKT_LEN 16 14 static const u8 lacp_train_pkt[LACP_TRAIN_PKT_LEN] = { 0, 0, 0, 0, 0, 0, 15 0, 0, 0, 0, 0, 0, 16 0x88, 0x09, 0, 0 }; 17 18 #define ICE_RECIPE_LEN 64 19 static const u8 ice_dflt_vsi_rcp[ICE_RECIPE_LEN] = { 20 0x05, 0, 0, 0, 0x20, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 21 0x85, 0, 0x01, 0, 0, 0, 0xff, 0xff, 0x08, 0, 0, 0, 0, 0, 0, 0, 22 0, 0, 0, 0, 0, 0, 0x30 }; 23 static const u8 ice_lport_rcp[ICE_RECIPE_LEN] = { 24 0x05, 0, 0, 0, 0x20, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 25 0x85, 0, 0x16, 0, 0, 0, 0xff, 0xff, 0x07, 0, 0, 0, 0, 0, 0, 0, 26 0, 0, 0, 0, 0, 0, 0x30 }; 27 28 /** 29 * ice_lag_set_primary - set PF LAG state as Primary 30 * @lag: LAG info struct 31 */ 32 static void ice_lag_set_primary(struct ice_lag *lag) 33 { 34 struct ice_pf *pf = lag->pf; 35 36 if (!pf) 37 return; 38 39 if (lag->role != ICE_LAG_UNSET && lag->role != ICE_LAG_BACKUP) { 40 dev_warn(ice_pf_to_dev(pf), "%s: Attempt to be Primary, but incompatible state.\n", 41 netdev_name(lag->netdev)); 42 return; 43 } 44 45 lag->role = ICE_LAG_PRIMARY; 46 } 47 48 /** 49 * ice_lag_set_backup - set PF LAG state to Backup 50 * @lag: LAG info struct 51 */ 52 static void ice_lag_set_backup(struct ice_lag *lag) 53 { 54 struct ice_pf *pf = lag->pf; 55 56 if (!pf) 57 return; 58 59 if (lag->role != ICE_LAG_UNSET && lag->role != ICE_LAG_PRIMARY) { 60 dev_dbg(ice_pf_to_dev(pf), "%s: Attempt to be Backup, but incompatible state\n", 61 netdev_name(lag->netdev)); 62 return; 63 } 64 65 lag->role = ICE_LAG_BACKUP; 66 } 67 68 /** 69 * netif_is_same_ice - determine if netdev is on the same ice NIC as local PF 70 * @pf: local PF struct 71 * @netdev: netdev we are evaluating 72 */ 73 static bool netif_is_same_ice(struct ice_pf *pf, struct net_device *netdev) 74 { 75 struct ice_netdev_priv *np; 76 struct ice_pf *test_pf; 77 struct ice_vsi *vsi; 78 79 if (!netif_is_ice(netdev)) 80 return false; 81 82 np = netdev_priv(netdev); 83 if (!np) 84 return false; 85 86 vsi = np->vsi; 87 if (!vsi) 88 return false; 89 90 test_pf = vsi->back; 91 if (!test_pf) 92 return false; 93 94 if (pf->pdev->bus != test_pf->pdev->bus || 95 pf->pdev->slot != test_pf->pdev->slot) 96 return false; 97 98 return true; 99 } 100 101 /** 102 * ice_netdev_to_lag - return pointer to associated lag struct from netdev 103 * @netdev: pointer to net_device struct to query 104 */ 105 static struct ice_lag *ice_netdev_to_lag(struct net_device *netdev) 106 { 107 struct ice_netdev_priv *np; 108 struct ice_vsi *vsi; 109 110 if (!netif_is_ice(netdev)) 111 return NULL; 112 113 np = netdev_priv(netdev); 114 if (!np) 115 return NULL; 116 117 vsi = np->vsi; 118 if (!vsi) 119 return NULL; 120 121 return vsi->back->lag; 122 } 123 124 /** 125 * ice_lag_find_hw_by_lport - return an hw struct from bond members lport 126 * @lag: lag struct 127 * @lport: lport value to search for 128 */ 129 static struct ice_hw * 130 ice_lag_find_hw_by_lport(struct ice_lag *lag, u8 lport) 131 { 132 struct ice_lag_netdev_list *entry; 133 struct net_device *tmp_netdev; 134 struct ice_netdev_priv *np; 135 struct ice_hw *hw; 136 137 list_for_each_entry(entry, lag->netdev_head, node) { 138 tmp_netdev = entry->netdev; 139 if (!tmp_netdev || !netif_is_ice(tmp_netdev)) 140 continue; 141 142 np = netdev_priv(tmp_netdev); 143 if (!np || !np->vsi) 144 continue; 145 146 hw = &np->vsi->back->hw; 147 if (hw->port_info->lport == lport) 148 return hw; 149 } 150 151 return NULL; 152 } 153 154 /** 155 * ice_pkg_has_lport_extract - check if lport extraction supported 156 * @hw: HW struct 157 */ 158 static bool ice_pkg_has_lport_extract(struct ice_hw *hw) 159 { 160 int i; 161 162 for (i = 0; i < hw->blk[ICE_BLK_SW].es.count; i++) { 163 u16 offset; 164 u8 fv_prot; 165 166 ice_find_prot_off(hw, ICE_BLK_SW, ICE_SW_DEFAULT_PROFILE, i, 167 &fv_prot, &offset); 168 if (fv_prot == ICE_FV_PROT_MDID && 169 offset == ICE_LP_EXT_BUF_OFFSET) 170 return true; 171 } 172 return false; 173 } 174 175 /** 176 * ice_lag_find_primary - returns pointer to primary interfaces lag struct 177 * @lag: local interfaces lag struct 178 */ 179 static struct ice_lag *ice_lag_find_primary(struct ice_lag *lag) 180 { 181 struct ice_lag *primary_lag = NULL; 182 struct list_head *tmp; 183 184 list_for_each(tmp, lag->netdev_head) { 185 struct ice_lag_netdev_list *entry; 186 struct ice_lag *tmp_lag; 187 188 entry = list_entry(tmp, struct ice_lag_netdev_list, node); 189 tmp_lag = ice_netdev_to_lag(entry->netdev); 190 if (tmp_lag && tmp_lag->primary) { 191 primary_lag = tmp_lag; 192 break; 193 } 194 } 195 196 return primary_lag; 197 } 198 199 /** 200 * ice_lag_cfg_fltr - Add/Remove rule for LAG 201 * @lag: lag struct for local interface 202 * @act: rule action 203 * @recipe_id: recipe id for the new rule 204 * @rule_idx: pointer to rule index 205 * @direction: ICE_FLTR_RX or ICE_FLTR_TX 206 * @add: boolean on whether we are adding filters 207 */ 208 static int 209 ice_lag_cfg_fltr(struct ice_lag *lag, u32 act, u16 recipe_id, u16 *rule_idx, 210 u8 direction, bool add) 211 { 212 struct ice_sw_rule_lkup_rx_tx *s_rule; 213 u16 s_rule_sz, vsi_num; 214 struct ice_hw *hw; 215 u8 *eth_hdr; 216 u32 opc; 217 int err; 218 219 hw = &lag->pf->hw; 220 vsi_num = ice_get_hw_vsi_num(hw, 0); 221 222 s_rule_sz = ICE_SW_RULE_RX_TX_ETH_HDR_SIZE(s_rule); 223 s_rule = kzalloc(s_rule_sz, GFP_KERNEL); 224 if (!s_rule) { 225 dev_err(ice_pf_to_dev(lag->pf), "error allocating rule for LAG\n"); 226 return -ENOMEM; 227 } 228 229 if (add) { 230 eth_hdr = s_rule->hdr_data; 231 ice_fill_eth_hdr(eth_hdr); 232 233 act |= FIELD_PREP(ICE_SINGLE_ACT_VSI_ID_M, vsi_num); 234 235 s_rule->recipe_id = cpu_to_le16(recipe_id); 236 if (direction == ICE_FLTR_RX) { 237 s_rule->hdr.type = 238 cpu_to_le16(ICE_AQC_SW_RULES_T_LKUP_RX); 239 s_rule->src = cpu_to_le16(hw->port_info->lport); 240 } else { 241 s_rule->hdr.type = 242 cpu_to_le16(ICE_AQC_SW_RULES_T_LKUP_TX); 243 s_rule->src = cpu_to_le16(vsi_num); 244 } 245 s_rule->act = cpu_to_le32(act); 246 s_rule->hdr_len = cpu_to_le16(DUMMY_ETH_HDR_LEN); 247 opc = ice_aqc_opc_add_sw_rules; 248 } else { 249 s_rule->index = cpu_to_le16(*rule_idx); 250 opc = ice_aqc_opc_remove_sw_rules; 251 } 252 253 err = ice_aq_sw_rules(&lag->pf->hw, s_rule, s_rule_sz, 1, opc, NULL); 254 if (err) 255 goto dflt_fltr_free; 256 257 if (add) 258 *rule_idx = le16_to_cpu(s_rule->index); 259 else 260 *rule_idx = 0; 261 262 dflt_fltr_free: 263 kfree(s_rule); 264 return err; 265 } 266 267 /** 268 * ice_lag_cfg_dflt_fltr - Add/Remove default VSI rule for LAG 269 * @lag: lag struct for local interface 270 * @add: boolean on whether to add filter 271 */ 272 static int 273 ice_lag_cfg_dflt_fltr(struct ice_lag *lag, bool add) 274 { 275 u32 act = ICE_SINGLE_ACT_VSI_FORWARDING | 276 ICE_SINGLE_ACT_VALID_BIT | ICE_SINGLE_ACT_LAN_ENABLE; 277 int err; 278 279 err = ice_lag_cfg_fltr(lag, act, lag->pf_recipe, &lag->pf_rx_rule_id, 280 ICE_FLTR_RX, add); 281 if (err) 282 goto err_rx; 283 284 act = ICE_SINGLE_ACT_VSI_FORWARDING | ICE_SINGLE_ACT_VALID_BIT | 285 ICE_SINGLE_ACT_LB_ENABLE; 286 err = ice_lag_cfg_fltr(lag, act, lag->pf_recipe, &lag->pf_tx_rule_id, 287 ICE_FLTR_TX, add); 288 if (err) 289 goto err_tx; 290 291 return 0; 292 293 err_tx: 294 ice_lag_cfg_fltr(lag, act, lag->pf_recipe, &lag->pf_rx_rule_id, 295 ICE_FLTR_RX, !add); 296 err_rx: 297 return err; 298 } 299 300 /** 301 * ice_lag_cfg_drop_fltr - Add/Remove lport drop rule 302 * @lag: lag struct for local interface 303 * @add: boolean on whether to add filter 304 */ 305 static int 306 ice_lag_cfg_drop_fltr(struct ice_lag *lag, bool add) 307 { 308 u32 act = ICE_SINGLE_ACT_VSI_FORWARDING | 309 ICE_SINGLE_ACT_VALID_BIT | 310 ICE_SINGLE_ACT_DROP; 311 312 return ice_lag_cfg_fltr(lag, act, lag->lport_recipe, 313 &lag->lport_rule_idx, ICE_FLTR_RX, add); 314 } 315 316 /** 317 * ice_lag_cfg_pf_fltrs - set filters up for new active port 318 * @lag: local interfaces lag struct 319 * @ptr: opaque data containing notifier event 320 */ 321 static void 322 ice_lag_cfg_pf_fltrs(struct ice_lag *lag, void *ptr) 323 { 324 struct netdev_notifier_bonding_info *info; 325 struct netdev_bonding_info *bonding_info; 326 struct net_device *event_netdev; 327 struct device *dev; 328 329 event_netdev = netdev_notifier_info_to_dev(ptr); 330 /* not for this netdev */ 331 if (event_netdev != lag->netdev) 332 return; 333 334 info = (struct netdev_notifier_bonding_info *)ptr; 335 bonding_info = &info->bonding_info; 336 dev = ice_pf_to_dev(lag->pf); 337 338 /* interface not active - remove old default VSI rule */ 339 if (bonding_info->slave.state && lag->pf_rx_rule_id) { 340 if (ice_lag_cfg_dflt_fltr(lag, false)) 341 dev_err(dev, "Error removing old default VSI filter\n"); 342 if (ice_lag_cfg_drop_fltr(lag, true)) 343 dev_err(dev, "Error adding new drop filter\n"); 344 return; 345 } 346 347 /* interface becoming active - add new default VSI rule */ 348 if (!bonding_info->slave.state && !lag->pf_rx_rule_id) { 349 if (ice_lag_cfg_dflt_fltr(lag, true)) 350 dev_err(dev, "Error adding new default VSI filter\n"); 351 if (lag->lport_rule_idx && ice_lag_cfg_drop_fltr(lag, false)) 352 dev_err(dev, "Error removing old drop filter\n"); 353 } 354 } 355 356 /** 357 * ice_display_lag_info - print LAG info 358 * @lag: LAG info struct 359 */ 360 static void ice_display_lag_info(struct ice_lag *lag) 361 { 362 const char *name, *upper, *role, *bonded, *primary; 363 struct device *dev = &lag->pf->pdev->dev; 364 365 name = lag->netdev ? netdev_name(lag->netdev) : "unset"; 366 upper = lag->upper_netdev ? netdev_name(lag->upper_netdev) : "unset"; 367 primary = lag->primary ? "TRUE" : "FALSE"; 368 bonded = lag->bonded ? "BONDED" : "UNBONDED"; 369 370 switch (lag->role) { 371 case ICE_LAG_NONE: 372 role = "NONE"; 373 break; 374 case ICE_LAG_PRIMARY: 375 role = "PRIMARY"; 376 break; 377 case ICE_LAG_BACKUP: 378 role = "BACKUP"; 379 break; 380 case ICE_LAG_UNSET: 381 role = "UNSET"; 382 break; 383 default: 384 role = "ERROR"; 385 } 386 387 dev_dbg(dev, "%s %s, upper:%s, role:%s, primary:%s\n", name, bonded, 388 upper, role, primary); 389 } 390 391 /** 392 * ice_lag_qbuf_recfg - generate a buffer of queues for a reconfigure command 393 * @hw: HW struct that contains the queue contexts 394 * @qbuf: pointer to buffer to populate 395 * @vsi_num: index of the VSI in PF space 396 * @numq: number of queues to search for 397 * @tc: traffic class that contains the queues 398 * 399 * function returns the number of valid queues in buffer 400 */ 401 static u16 402 ice_lag_qbuf_recfg(struct ice_hw *hw, struct ice_aqc_cfg_txqs_buf *qbuf, 403 u16 vsi_num, u16 numq, u8 tc) 404 { 405 struct ice_q_ctx *q_ctx; 406 u16 qid, count = 0; 407 struct ice_pf *pf; 408 int i; 409 410 pf = hw->back; 411 for (i = 0; i < numq; i++) { 412 q_ctx = ice_get_lan_q_ctx(hw, vsi_num, tc, i); 413 if (!q_ctx) { 414 dev_dbg(ice_hw_to_dev(hw), "%s queue %d NO Q CONTEXT\n", 415 __func__, i); 416 continue; 417 } 418 if (q_ctx->q_teid == ICE_INVAL_TEID) { 419 dev_dbg(ice_hw_to_dev(hw), "%s queue %d INVAL TEID\n", 420 __func__, i); 421 continue; 422 } 423 if (q_ctx->q_handle == ICE_INVAL_Q_HANDLE) { 424 dev_dbg(ice_hw_to_dev(hw), "%s queue %d INVAL Q HANDLE\n", 425 __func__, i); 426 continue; 427 } 428 429 qid = pf->vsi[vsi_num]->txq_map[q_ctx->q_handle]; 430 qbuf->queue_info[count].q_handle = cpu_to_le16(qid); 431 qbuf->queue_info[count].tc = tc; 432 qbuf->queue_info[count].q_teid = cpu_to_le32(q_ctx->q_teid); 433 count++; 434 } 435 436 return count; 437 } 438 439 /** 440 * ice_lag_get_sched_parent - locate or create a sched node parent 441 * @hw: HW struct for getting parent in 442 * @tc: traffic class on parent/node 443 */ 444 static struct ice_sched_node * 445 ice_lag_get_sched_parent(struct ice_hw *hw, u8 tc) 446 { 447 struct ice_sched_node *tc_node, *aggnode, *parent = NULL; 448 u16 num_nodes[ICE_AQC_TOPO_MAX_LEVEL_NUM] = { 0 }; 449 struct ice_port_info *pi = hw->port_info; 450 struct device *dev; 451 u8 aggl, vsil; 452 int n; 453 454 dev = ice_hw_to_dev(hw); 455 456 tc_node = ice_sched_get_tc_node(pi, tc); 457 if (!tc_node) { 458 dev_warn(dev, "Failure to find TC node for LAG move\n"); 459 return parent; 460 } 461 462 aggnode = ice_sched_get_agg_node(pi, tc_node, ICE_DFLT_AGG_ID); 463 if (!aggnode) { 464 dev_warn(dev, "Failure to find aggregate node for LAG move\n"); 465 return parent; 466 } 467 468 aggl = ice_sched_get_agg_layer(hw); 469 vsil = ice_sched_get_vsi_layer(hw); 470 471 for (n = aggl + 1; n < vsil; n++) 472 num_nodes[n] = 1; 473 474 for (n = 0; n < aggnode->num_children; n++) { 475 parent = ice_sched_get_free_vsi_parent(hw, aggnode->children[n], 476 num_nodes); 477 if (parent) 478 return parent; 479 } 480 481 /* if free parent not found - add one */ 482 parent = aggnode; 483 for (n = aggl + 1; n < vsil; n++) { 484 u16 num_nodes_added; 485 u32 first_teid; 486 int err; 487 488 err = ice_sched_add_nodes_to_layer(pi, tc_node, parent, n, 489 num_nodes[n], &first_teid, 490 &num_nodes_added); 491 if (err || num_nodes[n] != num_nodes_added) 492 return NULL; 493 494 if (num_nodes_added) 495 parent = ice_sched_find_node_by_teid(tc_node, 496 first_teid); 497 else 498 parent = parent->children[0]; 499 if (!parent) { 500 dev_warn(dev, "Failure to add new parent for LAG move\n"); 501 return parent; 502 } 503 } 504 505 return parent; 506 } 507 508 /** 509 * ice_lag_move_vf_node_tc - move scheduling nodes for one VF on one TC 510 * @lag: lag info struct 511 * @oldport: lport of previous nodes location 512 * @newport: lport of destination nodes location 513 * @vsi_num: array index of VSI in PF space 514 * @tc: traffic class to move 515 */ 516 static void 517 ice_lag_move_vf_node_tc(struct ice_lag *lag, u8 oldport, u8 newport, 518 u16 vsi_num, u8 tc) 519 { 520 DEFINE_RAW_FLEX(struct ice_aqc_move_elem, buf, teid, 1); 521 struct device *dev = ice_pf_to_dev(lag->pf); 522 u16 numq, valq, num_moved, qbuf_size; 523 u16 buf_size = __struct_size(buf); 524 struct ice_aqc_cfg_txqs_buf *qbuf; 525 struct ice_sched_node *n_prt; 526 struct ice_hw *new_hw = NULL; 527 __le32 teid, parent_teid; 528 struct ice_vsi_ctx *ctx; 529 u32 tmp_teid; 530 531 ctx = ice_get_vsi_ctx(&lag->pf->hw, vsi_num); 532 if (!ctx) { 533 dev_warn(dev, "Unable to locate VSI context for LAG failover\n"); 534 return; 535 } 536 537 /* check to see if this VF is enabled on this TC */ 538 if (!ctx->sched.vsi_node[tc]) 539 return; 540 541 /* locate HW struct for destination port */ 542 new_hw = ice_lag_find_hw_by_lport(lag, newport); 543 if (!new_hw) { 544 dev_warn(dev, "Unable to locate HW struct for LAG node destination\n"); 545 return; 546 } 547 548 numq = ctx->num_lan_q_entries[tc]; 549 teid = ctx->sched.vsi_node[tc]->info.node_teid; 550 tmp_teid = le32_to_cpu(teid); 551 parent_teid = ctx->sched.vsi_node[tc]->info.parent_teid; 552 /* if no teid assigned or numq == 0, then this TC is not active */ 553 if (!tmp_teid || !numq) 554 return; 555 556 /* suspend VSI subtree for Traffic Class "tc" on 557 * this VF's VSI 558 */ 559 if (ice_sched_suspend_resume_elems(&lag->pf->hw, 1, &tmp_teid, true)) 560 dev_dbg(dev, "Problem suspending traffic for LAG node move\n"); 561 562 /* reconfigure all VF's queues on this Traffic Class 563 * to new port 564 */ 565 qbuf_size = struct_size(qbuf, queue_info, numq); 566 qbuf = kzalloc(qbuf_size, GFP_KERNEL); 567 if (!qbuf) { 568 dev_warn(dev, "Failure allocating memory for VF queue recfg buffer\n"); 569 goto resume_traffic; 570 } 571 572 /* add the per queue info for the reconfigure command buffer */ 573 valq = ice_lag_qbuf_recfg(&lag->pf->hw, qbuf, vsi_num, numq, tc); 574 if (!valq) { 575 dev_dbg(dev, "No valid queues found for LAG failover\n"); 576 goto qbuf_none; 577 } 578 579 if (ice_aq_cfg_lan_txq(&lag->pf->hw, qbuf, qbuf_size, valq, oldport, 580 newport, NULL)) { 581 dev_warn(dev, "Failure to configure queues for LAG failover\n"); 582 goto qbuf_err; 583 } 584 585 qbuf_none: 586 kfree(qbuf); 587 588 /* find new parent in destination port's tree for VF VSI node on this 589 * Traffic Class 590 */ 591 n_prt = ice_lag_get_sched_parent(new_hw, tc); 592 if (!n_prt) 593 goto resume_traffic; 594 595 /* Move Vf's VSI node for this TC to newport's scheduler tree */ 596 buf->hdr.src_parent_teid = parent_teid; 597 buf->hdr.dest_parent_teid = n_prt->info.node_teid; 598 buf->hdr.num_elems = cpu_to_le16(1); 599 buf->hdr.mode = ICE_AQC_MOVE_ELEM_MODE_KEEP_OWN; 600 buf->teid[0] = teid; 601 602 if (ice_aq_move_sched_elems(&lag->pf->hw, buf, buf_size, &num_moved)) 603 dev_warn(dev, "Failure to move VF nodes for failover\n"); 604 else 605 ice_sched_update_parent(n_prt, ctx->sched.vsi_node[tc]); 606 607 goto resume_traffic; 608 609 qbuf_err: 610 kfree(qbuf); 611 612 resume_traffic: 613 /* restart traffic for VSI node */ 614 if (ice_sched_suspend_resume_elems(&lag->pf->hw, 1, &tmp_teid, false)) 615 dev_dbg(dev, "Problem restarting traffic for LAG node move\n"); 616 } 617 618 /** 619 * ice_lag_build_netdev_list - populate the lag struct's netdev list 620 * @lag: local lag struct 621 * @ndlist: pointer to netdev list to populate 622 */ 623 static void ice_lag_build_netdev_list(struct ice_lag *lag, 624 struct ice_lag_netdev_list *ndlist) 625 { 626 struct ice_lag_netdev_list *nl; 627 struct net_device *tmp_nd; 628 629 INIT_LIST_HEAD(&ndlist->node); 630 rcu_read_lock(); 631 for_each_netdev_in_bond_rcu(lag->upper_netdev, tmp_nd) { 632 nl = kzalloc(sizeof(*nl), GFP_ATOMIC); 633 if (!nl) 634 break; 635 636 nl->netdev = tmp_nd; 637 list_add(&nl->node, &ndlist->node); 638 } 639 rcu_read_unlock(); 640 lag->netdev_head = &ndlist->node; 641 } 642 643 /** 644 * ice_lag_destroy_netdev_list - free lag struct's netdev list 645 * @lag: pointer to local lag struct 646 * @ndlist: pointer to lag struct netdev list 647 */ 648 static void ice_lag_destroy_netdev_list(struct ice_lag *lag, 649 struct ice_lag_netdev_list *ndlist) 650 { 651 struct ice_lag_netdev_list *entry, *n; 652 653 rcu_read_lock(); 654 list_for_each_entry_safe(entry, n, &ndlist->node, node) { 655 list_del(&entry->node); 656 kfree(entry); 657 } 658 rcu_read_unlock(); 659 lag->netdev_head = NULL; 660 } 661 662 /** 663 * ice_lag_move_single_vf_nodes - Move Tx scheduling nodes for single VF 664 * @lag: primary interface LAG struct 665 * @oldport: lport of previous interface 666 * @newport: lport of destination interface 667 * @vsi_num: SW index of VF's VSI 668 */ 669 static void 670 ice_lag_move_single_vf_nodes(struct ice_lag *lag, u8 oldport, u8 newport, 671 u16 vsi_num) 672 { 673 u8 tc; 674 675 ice_for_each_traffic_class(tc) 676 ice_lag_move_vf_node_tc(lag, oldport, newport, vsi_num, tc); 677 } 678 679 /** 680 * ice_lag_move_new_vf_nodes - Move Tx scheduling nodes for a VF if required 681 * @vf: the VF to move Tx nodes for 682 * 683 * Called just after configuring new VF queues. Check whether the VF Tx 684 * scheduling nodes need to be updated to fail over to the active port. If so, 685 * move them now. 686 */ 687 void ice_lag_move_new_vf_nodes(struct ice_vf *vf) 688 { 689 struct ice_lag_netdev_list ndlist; 690 u8 pri_port, act_port; 691 struct ice_lag *lag; 692 struct ice_vsi *vsi; 693 struct ice_pf *pf; 694 695 vsi = ice_get_vf_vsi(vf); 696 697 if (WARN_ON(!vsi)) 698 return; 699 700 if (WARN_ON(vsi->type != ICE_VSI_VF)) 701 return; 702 703 pf = vf->pf; 704 lag = pf->lag; 705 706 mutex_lock(&pf->lag_mutex); 707 if (!lag->bonded) 708 goto new_vf_unlock; 709 710 pri_port = pf->hw.port_info->lport; 711 act_port = lag->active_port; 712 713 if (lag->upper_netdev) 714 ice_lag_build_netdev_list(lag, &ndlist); 715 716 if (ice_is_feature_supported(pf, ICE_F_SRIOV_LAG) && 717 lag->bonded && lag->primary && pri_port != act_port && 718 !list_empty(lag->netdev_head)) 719 ice_lag_move_single_vf_nodes(lag, pri_port, act_port, vsi->idx); 720 721 ice_lag_destroy_netdev_list(lag, &ndlist); 722 723 new_vf_unlock: 724 mutex_unlock(&pf->lag_mutex); 725 } 726 727 /** 728 * ice_lag_move_vf_nodes - move Tx scheduling nodes for all VFs to new port 729 * @lag: lag info struct 730 * @oldport: lport of previous interface 731 * @newport: lport of destination interface 732 */ 733 static void ice_lag_move_vf_nodes(struct ice_lag *lag, u8 oldport, u8 newport) 734 { 735 struct ice_pf *pf; 736 int i; 737 738 if (!lag->primary) 739 return; 740 741 pf = lag->pf; 742 ice_for_each_vsi(pf, i) 743 if (pf->vsi[i] && pf->vsi[i]->type == ICE_VSI_VF) 744 ice_lag_move_single_vf_nodes(lag, oldport, newport, i); 745 } 746 747 /** 748 * ice_lag_move_vf_nodes_cfg - move vf nodes outside LAG netdev event context 749 * @lag: local lag struct 750 * @src_prt: lport value for source port 751 * @dst_prt: lport value for destination port 752 * 753 * This function is used to move nodes during an out-of-netdev-event situation, 754 * primarily when the driver needs to reconfigure or recreate resources. 755 * 756 * Must be called while holding the lag_mutex to avoid lag events from 757 * processing while out-of-sync moves are happening. Also, paired moves, 758 * such as used in a reset flow, should both be called under the same mutex 759 * lock to avoid changes between start of reset and end of reset. 760 */ 761 void ice_lag_move_vf_nodes_cfg(struct ice_lag *lag, u8 src_prt, u8 dst_prt) 762 { 763 struct ice_lag_netdev_list ndlist; 764 765 ice_lag_build_netdev_list(lag, &ndlist); 766 ice_lag_move_vf_nodes(lag, src_prt, dst_prt); 767 ice_lag_destroy_netdev_list(lag, &ndlist); 768 } 769 770 #define ICE_LAG_SRIOV_CP_RECIPE 10 771 #define ICE_LAG_SRIOV_TRAIN_PKT_LEN 16 772 773 /** 774 * ice_lag_cfg_cp_fltr - configure filter for control packets 775 * @lag: local interface's lag struct 776 * @add: add or remove rule 777 */ 778 static void 779 ice_lag_cfg_cp_fltr(struct ice_lag *lag, bool add) 780 { 781 struct ice_sw_rule_lkup_rx_tx *s_rule = NULL; 782 struct ice_vsi *vsi; 783 u16 buf_len, opc; 784 785 vsi = lag->pf->vsi[0]; 786 787 buf_len = ICE_SW_RULE_RX_TX_HDR_SIZE(s_rule, 788 ICE_LAG_SRIOV_TRAIN_PKT_LEN); 789 s_rule = kzalloc(buf_len, GFP_KERNEL); 790 if (!s_rule) { 791 netdev_warn(lag->netdev, "-ENOMEM error configuring CP filter\n"); 792 return; 793 } 794 795 if (add) { 796 s_rule->hdr.type = cpu_to_le16(ICE_AQC_SW_RULES_T_LKUP_RX); 797 s_rule->recipe_id = cpu_to_le16(ICE_LAG_SRIOV_CP_RECIPE); 798 s_rule->src = cpu_to_le16(vsi->port_info->lport); 799 s_rule->act = cpu_to_le32(ICE_FWD_TO_VSI | 800 ICE_SINGLE_ACT_LAN_ENABLE | 801 ICE_SINGLE_ACT_VALID_BIT | 802 FIELD_PREP(ICE_SINGLE_ACT_VSI_ID_M, vsi->vsi_num)); 803 s_rule->hdr_len = cpu_to_le16(ICE_LAG_SRIOV_TRAIN_PKT_LEN); 804 memcpy(s_rule->hdr_data, lacp_train_pkt, LACP_TRAIN_PKT_LEN); 805 opc = ice_aqc_opc_add_sw_rules; 806 } else { 807 opc = ice_aqc_opc_remove_sw_rules; 808 s_rule->index = cpu_to_le16(lag->cp_rule_idx); 809 } 810 if (ice_aq_sw_rules(&lag->pf->hw, s_rule, buf_len, 1, opc, NULL)) { 811 netdev_warn(lag->netdev, "Error %s CP rule for fail-over\n", 812 add ? "ADDING" : "REMOVING"); 813 goto cp_free; 814 } 815 816 if (add) 817 lag->cp_rule_idx = le16_to_cpu(s_rule->index); 818 else 819 lag->cp_rule_idx = 0; 820 821 cp_free: 822 kfree(s_rule); 823 } 824 825 /** 826 * ice_lag_info_event - handle NETDEV_BONDING_INFO event 827 * @lag: LAG info struct 828 * @ptr: opaque data pointer 829 * 830 * ptr is to be cast to (netdev_notifier_bonding_info *) 831 */ 832 static void ice_lag_info_event(struct ice_lag *lag, void *ptr) 833 { 834 struct netdev_notifier_bonding_info *info; 835 struct netdev_bonding_info *bonding_info; 836 struct net_device *event_netdev; 837 const char *lag_netdev_name; 838 839 event_netdev = netdev_notifier_info_to_dev(ptr); 840 info = ptr; 841 lag_netdev_name = netdev_name(lag->netdev); 842 bonding_info = &info->bonding_info; 843 844 if (event_netdev != lag->netdev || !lag->bonded || !lag->upper_netdev) 845 return; 846 847 if (bonding_info->master.bond_mode != BOND_MODE_ACTIVEBACKUP) { 848 netdev_dbg(lag->netdev, "Bonding event recv, but mode not active/backup\n"); 849 goto lag_out; 850 } 851 852 if (strcmp(bonding_info->slave.slave_name, lag_netdev_name)) { 853 netdev_dbg(lag->netdev, "Bonding event recv, but secondary info not for us\n"); 854 goto lag_out; 855 } 856 857 if (bonding_info->slave.state) 858 ice_lag_set_backup(lag); 859 else 860 ice_lag_set_primary(lag); 861 862 lag_out: 863 ice_display_lag_info(lag); 864 } 865 866 /** 867 * ice_lag_reclaim_vf_tc - move scheduling nodes back to primary interface 868 * @lag: primary interface lag struct 869 * @src_hw: HW struct current node location 870 * @vsi_num: VSI index in PF space 871 * @tc: traffic class to move 872 */ 873 static void 874 ice_lag_reclaim_vf_tc(struct ice_lag *lag, struct ice_hw *src_hw, u16 vsi_num, 875 u8 tc) 876 { 877 DEFINE_RAW_FLEX(struct ice_aqc_move_elem, buf, teid, 1); 878 struct device *dev = ice_pf_to_dev(lag->pf); 879 u16 numq, valq, num_moved, qbuf_size; 880 u16 buf_size = __struct_size(buf); 881 struct ice_aqc_cfg_txqs_buf *qbuf; 882 struct ice_sched_node *n_prt; 883 __le32 teid, parent_teid; 884 struct ice_vsi_ctx *ctx; 885 struct ice_hw *hw; 886 u32 tmp_teid; 887 888 hw = &lag->pf->hw; 889 ctx = ice_get_vsi_ctx(hw, vsi_num); 890 if (!ctx) { 891 dev_warn(dev, "Unable to locate VSI context for LAG reclaim\n"); 892 return; 893 } 894 895 /* check to see if this VF is enabled on this TC */ 896 if (!ctx->sched.vsi_node[tc]) 897 return; 898 899 numq = ctx->num_lan_q_entries[tc]; 900 teid = ctx->sched.vsi_node[tc]->info.node_teid; 901 tmp_teid = le32_to_cpu(teid); 902 parent_teid = ctx->sched.vsi_node[tc]->info.parent_teid; 903 904 /* if !teid or !numq, then this TC is not active */ 905 if (!tmp_teid || !numq) 906 return; 907 908 /* suspend traffic */ 909 if (ice_sched_suspend_resume_elems(hw, 1, &tmp_teid, true)) 910 dev_dbg(dev, "Problem suspending traffic for LAG node move\n"); 911 912 /* reconfig queues for new port */ 913 qbuf_size = struct_size(qbuf, queue_info, numq); 914 qbuf = kzalloc(qbuf_size, GFP_KERNEL); 915 if (!qbuf) { 916 dev_warn(dev, "Failure allocating memory for VF queue recfg buffer\n"); 917 goto resume_reclaim; 918 } 919 920 /* add the per queue info for the reconfigure command buffer */ 921 valq = ice_lag_qbuf_recfg(hw, qbuf, vsi_num, numq, tc); 922 if (!valq) { 923 dev_dbg(dev, "No valid queues found for LAG reclaim\n"); 924 goto reclaim_none; 925 } 926 927 if (ice_aq_cfg_lan_txq(hw, qbuf, qbuf_size, numq, 928 src_hw->port_info->lport, hw->port_info->lport, 929 NULL)) { 930 dev_warn(dev, "Failure to configure queues for LAG failover\n"); 931 goto reclaim_qerr; 932 } 933 934 reclaim_none: 935 kfree(qbuf); 936 937 /* find parent in primary tree */ 938 n_prt = ice_lag_get_sched_parent(hw, tc); 939 if (!n_prt) 940 goto resume_reclaim; 941 942 /* Move node to new parent */ 943 buf->hdr.src_parent_teid = parent_teid; 944 buf->hdr.dest_parent_teid = n_prt->info.node_teid; 945 buf->hdr.num_elems = cpu_to_le16(1); 946 buf->hdr.mode = ICE_AQC_MOVE_ELEM_MODE_KEEP_OWN; 947 buf->teid[0] = teid; 948 949 if (ice_aq_move_sched_elems(&lag->pf->hw, buf, buf_size, &num_moved)) 950 dev_warn(dev, "Failure to move VF nodes for LAG reclaim\n"); 951 else 952 ice_sched_update_parent(n_prt, ctx->sched.vsi_node[tc]); 953 954 goto resume_reclaim; 955 956 reclaim_qerr: 957 kfree(qbuf); 958 959 resume_reclaim: 960 /* restart traffic */ 961 if (ice_sched_suspend_resume_elems(hw, 1, &tmp_teid, false)) 962 dev_warn(dev, "Problem restarting traffic for LAG node reclaim\n"); 963 } 964 965 /** 966 * ice_lag_reclaim_vf_nodes - When interface leaving bond primary reclaims nodes 967 * @lag: primary interface lag struct 968 * @src_hw: HW struct for current node location 969 */ 970 static void 971 ice_lag_reclaim_vf_nodes(struct ice_lag *lag, struct ice_hw *src_hw) 972 { 973 struct ice_pf *pf; 974 int i, tc; 975 976 if (!lag->primary || !src_hw) 977 return; 978 979 pf = lag->pf; 980 ice_for_each_vsi(pf, i) 981 if (pf->vsi[i] && pf->vsi[i]->type == ICE_VSI_VF) 982 ice_for_each_traffic_class(tc) 983 ice_lag_reclaim_vf_tc(lag, src_hw, i, tc); 984 } 985 986 /** 987 * ice_lag_link - handle LAG link event 988 * @lag: LAG info struct 989 */ 990 static void ice_lag_link(struct ice_lag *lag) 991 { 992 struct ice_pf *pf = lag->pf; 993 994 if (lag->bonded) 995 dev_warn(ice_pf_to_dev(pf), "%s Already part of a bond\n", 996 netdev_name(lag->netdev)); 997 998 lag->bonded = true; 999 lag->role = ICE_LAG_UNSET; 1000 netdev_info(lag->netdev, "Shared SR-IOV resources in bond are active\n"); 1001 } 1002 1003 /** 1004 * ice_lag_config_eswitch - configure eswitch to work with LAG 1005 * @lag: lag info struct 1006 * @netdev: active network interface device struct 1007 * 1008 * Updates all port representors in eswitch to use @netdev for Tx. 1009 * 1010 * Configures the netdev to keep dst metadata (also used in representor Tx). 1011 * This is required for an uplink without switchdev mode configured. 1012 */ 1013 static void ice_lag_config_eswitch(struct ice_lag *lag, 1014 struct net_device *netdev) 1015 { 1016 struct ice_repr *repr; 1017 unsigned long id; 1018 1019 xa_for_each(&lag->pf->eswitch.reprs, id, repr) 1020 repr->dst->u.port_info.lower_dev = netdev; 1021 1022 netif_keep_dst(netdev); 1023 } 1024 1025 /** 1026 * ice_lag_unlink - handle unlink event 1027 * @lag: LAG info struct 1028 */ 1029 static void ice_lag_unlink(struct ice_lag *lag) 1030 { 1031 u8 pri_port, act_port, loc_port; 1032 struct ice_pf *pf = lag->pf; 1033 1034 if (!lag->bonded) { 1035 netdev_dbg(lag->netdev, "bonding unlink event on non-LAG netdev\n"); 1036 return; 1037 } 1038 1039 if (lag->primary) { 1040 act_port = lag->active_port; 1041 pri_port = lag->pf->hw.port_info->lport; 1042 if (act_port != pri_port && act_port != ICE_LAG_INVALID_PORT) 1043 ice_lag_move_vf_nodes(lag, act_port, pri_port); 1044 lag->primary = false; 1045 lag->active_port = ICE_LAG_INVALID_PORT; 1046 1047 /* Config primary's eswitch back to normal operation. */ 1048 ice_lag_config_eswitch(lag, lag->netdev); 1049 } else { 1050 struct ice_lag *primary_lag; 1051 1052 primary_lag = ice_lag_find_primary(lag); 1053 if (primary_lag) { 1054 act_port = primary_lag->active_port; 1055 pri_port = primary_lag->pf->hw.port_info->lport; 1056 loc_port = pf->hw.port_info->lport; 1057 if (act_port == loc_port && 1058 act_port != ICE_LAG_INVALID_PORT) { 1059 ice_lag_reclaim_vf_nodes(primary_lag, 1060 &lag->pf->hw); 1061 primary_lag->active_port = ICE_LAG_INVALID_PORT; 1062 } 1063 } 1064 } 1065 1066 lag->bonded = false; 1067 lag->role = ICE_LAG_NONE; 1068 lag->upper_netdev = NULL; 1069 } 1070 1071 /** 1072 * ice_lag_link_unlink - helper function to call lag_link/unlink 1073 * @lag: lag info struct 1074 * @ptr: opaque pointer data 1075 */ 1076 static void ice_lag_link_unlink(struct ice_lag *lag, void *ptr) 1077 { 1078 struct net_device *netdev = netdev_notifier_info_to_dev(ptr); 1079 struct netdev_notifier_changeupper_info *info = ptr; 1080 1081 if (netdev != lag->netdev) 1082 return; 1083 1084 if (info->linking) 1085 ice_lag_link(lag); 1086 else 1087 ice_lag_unlink(lag); 1088 } 1089 1090 /** 1091 * ice_lag_set_swid - set the SWID on secondary interface 1092 * @primary_swid: primary interface's SWID 1093 * @local_lag: local interfaces LAG struct 1094 * @link: Is this a linking activity 1095 * 1096 * If link is false, then primary_swid should be expected to not be valid 1097 * This function should never be called in interrupt context. 1098 */ 1099 static void 1100 ice_lag_set_swid(u16 primary_swid, struct ice_lag *local_lag, 1101 bool link) 1102 { 1103 struct ice_aqc_alloc_free_res_elem *buf; 1104 struct ice_aqc_set_port_params *cmd; 1105 struct ice_aq_desc desc; 1106 u16 buf_len, swid; 1107 int status, i; 1108 1109 buf_len = struct_size(buf, elem, 1); 1110 buf = kzalloc(buf_len, GFP_KERNEL); 1111 if (!buf) { 1112 dev_err(ice_pf_to_dev(local_lag->pf), "-ENOMEM error setting SWID\n"); 1113 return; 1114 } 1115 1116 buf->num_elems = cpu_to_le16(1); 1117 buf->res_type = cpu_to_le16(ICE_AQC_RES_TYPE_SWID); 1118 /* if unlinnking need to free the shared resource */ 1119 if (!link && local_lag->bond_swid) { 1120 buf->elem[0].e.sw_resp = cpu_to_le16(local_lag->bond_swid); 1121 status = ice_aq_alloc_free_res(&local_lag->pf->hw, buf, 1122 buf_len, ice_aqc_opc_free_res); 1123 if (status) 1124 dev_err(ice_pf_to_dev(local_lag->pf), "Error freeing SWID during LAG unlink\n"); 1125 local_lag->bond_swid = 0; 1126 } 1127 1128 if (link) { 1129 buf->res_type |= cpu_to_le16(ICE_LAG_RES_SHARED | 1130 ICE_LAG_RES_VALID); 1131 /* store the primary's SWID in case it leaves bond first */ 1132 local_lag->bond_swid = primary_swid; 1133 buf->elem[0].e.sw_resp = cpu_to_le16(local_lag->bond_swid); 1134 } else { 1135 buf->elem[0].e.sw_resp = 1136 cpu_to_le16(local_lag->pf->hw.port_info->sw_id); 1137 } 1138 1139 status = ice_aq_alloc_free_res(&local_lag->pf->hw, buf, buf_len, 1140 ice_aqc_opc_alloc_res); 1141 if (status) 1142 dev_err(ice_pf_to_dev(local_lag->pf), "Error subscribing to SWID 0x%04X\n", 1143 local_lag->bond_swid); 1144 1145 kfree(buf); 1146 1147 /* Configure port param SWID to correct value */ 1148 if (link) 1149 swid = primary_swid; 1150 else 1151 swid = local_lag->pf->hw.port_info->sw_id; 1152 1153 cmd = &desc.params.set_port_params; 1154 ice_fill_dflt_direct_cmd_desc(&desc, ice_aqc_opc_set_port_params); 1155 1156 cmd->swid = cpu_to_le16(ICE_AQC_PORT_SWID_VALID | swid); 1157 /* If this is happening in reset context, it is possible that the 1158 * primary interface has not finished setting its SWID to SHARED 1159 * yet. Allow retries to account for this timing issue between 1160 * interfaces. 1161 */ 1162 for (i = 0; i < ICE_LAG_RESET_RETRIES; i++) { 1163 status = ice_aq_send_cmd(&local_lag->pf->hw, &desc, NULL, 0, 1164 NULL); 1165 if (!status) 1166 break; 1167 1168 usleep_range(1000, 2000); 1169 } 1170 1171 if (status) 1172 dev_err(ice_pf_to_dev(local_lag->pf), "Error setting SWID in port params %d\n", 1173 status); 1174 } 1175 1176 /** 1177 * ice_lag_primary_swid - set/clear the SHARED attrib of primary's SWID 1178 * @lag: primary interface's lag struct 1179 * @link: is this a linking activity 1180 * 1181 * Implement setting primary SWID as shared using 0x020B 1182 */ 1183 static void ice_lag_primary_swid(struct ice_lag *lag, bool link) 1184 { 1185 struct ice_hw *hw; 1186 u16 swid; 1187 1188 hw = &lag->pf->hw; 1189 swid = hw->port_info->sw_id; 1190 1191 if (ice_share_res(hw, ICE_AQC_RES_TYPE_SWID, link, swid)) 1192 dev_warn(ice_pf_to_dev(lag->pf), "Failure to set primary interface shared status\n"); 1193 } 1194 1195 /** 1196 * ice_lag_add_prune_list - Adds event_pf's VSI to primary's prune list 1197 * @lag: lag info struct 1198 * @event_pf: PF struct for VSI we are adding to primary's prune list 1199 */ 1200 static void ice_lag_add_prune_list(struct ice_lag *lag, struct ice_pf *event_pf) 1201 { 1202 u16 num_vsi, rule_buf_sz, vsi_list_id, event_vsi_num, prim_vsi_idx; 1203 struct ice_sw_rule_vsi_list *s_rule = NULL; 1204 struct device *dev; 1205 1206 num_vsi = 1; 1207 1208 dev = ice_pf_to_dev(lag->pf); 1209 event_vsi_num = event_pf->vsi[0]->vsi_num; 1210 prim_vsi_idx = lag->pf->vsi[0]->idx; 1211 1212 if (!ice_find_vsi_list_entry(&lag->pf->hw, ICE_SW_LKUP_VLAN, 1213 prim_vsi_idx, &vsi_list_id)) { 1214 dev_warn(dev, "Could not locate prune list when setting up SRIOV LAG\n"); 1215 return; 1216 } 1217 1218 rule_buf_sz = (u16)ICE_SW_RULE_VSI_LIST_SIZE(s_rule, num_vsi); 1219 s_rule = kzalloc(rule_buf_sz, GFP_KERNEL); 1220 if (!s_rule) { 1221 dev_warn(dev, "Error allocating space for prune list when configuring SRIOV LAG\n"); 1222 return; 1223 } 1224 1225 s_rule->hdr.type = cpu_to_le16(ICE_AQC_SW_RULES_T_PRUNE_LIST_SET); 1226 s_rule->index = cpu_to_le16(vsi_list_id); 1227 s_rule->number_vsi = cpu_to_le16(num_vsi); 1228 s_rule->vsi[0] = cpu_to_le16(event_vsi_num); 1229 1230 if (ice_aq_sw_rules(&event_pf->hw, s_rule, rule_buf_sz, 1, 1231 ice_aqc_opc_update_sw_rules, NULL)) 1232 dev_warn(dev, "Error adding VSI prune list\n"); 1233 kfree(s_rule); 1234 } 1235 1236 /** 1237 * ice_lag_del_prune_list - Remove secondary's vsi from primary's prune list 1238 * @lag: primary interface's ice_lag struct 1239 * @event_pf: PF struct for unlinking interface 1240 */ 1241 static void ice_lag_del_prune_list(struct ice_lag *lag, struct ice_pf *event_pf) 1242 { 1243 u16 num_vsi, vsi_num, vsi_idx, rule_buf_sz, vsi_list_id; 1244 struct ice_sw_rule_vsi_list *s_rule = NULL; 1245 struct device *dev; 1246 1247 num_vsi = 1; 1248 1249 dev = ice_pf_to_dev(lag->pf); 1250 vsi_num = event_pf->vsi[0]->vsi_num; 1251 vsi_idx = lag->pf->vsi[0]->idx; 1252 1253 if (!ice_find_vsi_list_entry(&lag->pf->hw, ICE_SW_LKUP_VLAN, 1254 vsi_idx, &vsi_list_id)) { 1255 dev_warn(dev, "Could not locate prune list when unwinding SRIOV LAG\n"); 1256 return; 1257 } 1258 1259 rule_buf_sz = (u16)ICE_SW_RULE_VSI_LIST_SIZE(s_rule, num_vsi); 1260 s_rule = kzalloc(rule_buf_sz, GFP_KERNEL); 1261 if (!s_rule) { 1262 dev_warn(dev, "Error allocating prune list when unwinding SRIOV LAG\n"); 1263 return; 1264 } 1265 1266 s_rule->hdr.type = cpu_to_le16(ICE_AQC_SW_RULES_T_PRUNE_LIST_CLEAR); 1267 s_rule->index = cpu_to_le16(vsi_list_id); 1268 s_rule->number_vsi = cpu_to_le16(num_vsi); 1269 s_rule->vsi[0] = cpu_to_le16(vsi_num); 1270 1271 if (ice_aq_sw_rules(&event_pf->hw, (struct ice_aqc_sw_rules *)s_rule, 1272 rule_buf_sz, 1, ice_aqc_opc_update_sw_rules, NULL)) 1273 dev_warn(dev, "Error clearing VSI prune list\n"); 1274 1275 kfree(s_rule); 1276 } 1277 1278 /** 1279 * ice_lag_init_feature_support_flag - Check for package and NVM support for LAG 1280 * @pf: PF struct 1281 */ 1282 static void ice_lag_init_feature_support_flag(struct ice_pf *pf) 1283 { 1284 struct ice_hw_common_caps *caps; 1285 1286 caps = &pf->hw.dev_caps.common_cap; 1287 if (caps->roce_lag) 1288 ice_set_feature_support(pf, ICE_F_ROCE_LAG); 1289 else 1290 ice_clear_feature_support(pf, ICE_F_ROCE_LAG); 1291 1292 if (caps->sriov_lag && ice_pkg_has_lport_extract(&pf->hw)) 1293 ice_set_feature_support(pf, ICE_F_SRIOV_LAG); 1294 else 1295 ice_clear_feature_support(pf, ICE_F_SRIOV_LAG); 1296 } 1297 1298 /** 1299 * ice_lag_changeupper_event - handle LAG changeupper event 1300 * @lag: LAG info struct 1301 * @ptr: opaque pointer data 1302 */ 1303 static void ice_lag_changeupper_event(struct ice_lag *lag, void *ptr) 1304 { 1305 struct netdev_notifier_changeupper_info *info; 1306 struct ice_lag *primary_lag; 1307 struct net_device *netdev; 1308 1309 info = ptr; 1310 netdev = netdev_notifier_info_to_dev(ptr); 1311 1312 /* not for this netdev */ 1313 if (netdev != lag->netdev) 1314 return; 1315 1316 primary_lag = ice_lag_find_primary(lag); 1317 if (info->linking) { 1318 lag->upper_netdev = info->upper_dev; 1319 /* If there is not already a primary interface in the LAG, 1320 * then mark this one as primary. 1321 */ 1322 if (!primary_lag) { 1323 lag->primary = true; 1324 /* Configure primary's SWID to be shared */ 1325 ice_lag_primary_swid(lag, true); 1326 primary_lag = lag; 1327 } else { 1328 u16 swid; 1329 1330 swid = primary_lag->pf->hw.port_info->sw_id; 1331 ice_lag_set_swid(swid, lag, true); 1332 ice_lag_add_prune_list(primary_lag, lag->pf); 1333 ice_lag_cfg_drop_fltr(lag, true); 1334 } 1335 /* add filter for primary control packets */ 1336 ice_lag_cfg_cp_fltr(lag, true); 1337 } else { 1338 if (!primary_lag && lag->primary) 1339 primary_lag = lag; 1340 1341 if (!lag->primary) { 1342 ice_lag_set_swid(0, lag, false); 1343 } else { 1344 if (primary_lag && lag->primary) { 1345 ice_lag_primary_swid(lag, false); 1346 ice_lag_del_prune_list(primary_lag, lag->pf); 1347 } 1348 } 1349 /* remove filter for control packets */ 1350 ice_lag_cfg_cp_fltr(lag, false); 1351 } 1352 } 1353 1354 /** 1355 * ice_lag_monitor_link - monitor interfaces entering/leaving the aggregate 1356 * @lag: lag info struct 1357 * @ptr: opaque data containing notifier event 1358 * 1359 * This function only operates after a primary has been set. 1360 */ 1361 static void ice_lag_monitor_link(struct ice_lag *lag, void *ptr) 1362 { 1363 struct netdev_notifier_changeupper_info *info; 1364 struct ice_hw *prim_hw, *active_hw; 1365 struct net_device *event_netdev; 1366 struct ice_pf *pf; 1367 u8 prim_port; 1368 1369 if (!lag->primary) 1370 return; 1371 1372 event_netdev = netdev_notifier_info_to_dev(ptr); 1373 if (!netif_is_same_ice(lag->pf, event_netdev)) 1374 return; 1375 1376 pf = lag->pf; 1377 prim_hw = &pf->hw; 1378 prim_port = prim_hw->port_info->lport; 1379 1380 info = (struct netdev_notifier_changeupper_info *)ptr; 1381 if (info->upper_dev != lag->upper_netdev) 1382 return; 1383 1384 if (!info->linking) { 1385 /* Since there are only two interfaces allowed in SRIOV+LAG, if 1386 * one port is leaving, then nodes need to be on primary 1387 * interface. 1388 */ 1389 if (prim_port != lag->active_port && 1390 lag->active_port != ICE_LAG_INVALID_PORT) { 1391 active_hw = ice_lag_find_hw_by_lport(lag, 1392 lag->active_port); 1393 ice_lag_reclaim_vf_nodes(lag, active_hw); 1394 lag->active_port = ICE_LAG_INVALID_PORT; 1395 } 1396 } 1397 } 1398 1399 /** 1400 * ice_lag_monitor_active - main PF keep track of which port is active 1401 * @lag: lag info struct 1402 * @ptr: opaque data containing notifier event 1403 * 1404 * This function is for the primary PF to monitor changes in which port is 1405 * active and handle changes for SRIOV VF functionality 1406 */ 1407 static void ice_lag_monitor_active(struct ice_lag *lag, void *ptr) 1408 { 1409 struct net_device *event_netdev, *event_upper; 1410 struct netdev_notifier_bonding_info *info; 1411 struct netdev_bonding_info *bonding_info; 1412 struct ice_netdev_priv *event_np; 1413 struct ice_pf *pf, *event_pf; 1414 u8 prim_port, event_port; 1415 1416 if (!lag->primary) 1417 return; 1418 1419 pf = lag->pf; 1420 if (!pf) 1421 return; 1422 1423 event_netdev = netdev_notifier_info_to_dev(ptr); 1424 rcu_read_lock(); 1425 event_upper = netdev_master_upper_dev_get_rcu(event_netdev); 1426 rcu_read_unlock(); 1427 if (!netif_is_ice(event_netdev) || event_upper != lag->upper_netdev) 1428 return; 1429 1430 event_np = netdev_priv(event_netdev); 1431 event_pf = event_np->vsi->back; 1432 event_port = event_pf->hw.port_info->lport; 1433 prim_port = pf->hw.port_info->lport; 1434 1435 info = (struct netdev_notifier_bonding_info *)ptr; 1436 bonding_info = &info->bonding_info; 1437 1438 if (!bonding_info->slave.state) { 1439 /* if no port is currently active, then nodes and filters exist 1440 * on primary port, check if we need to move them 1441 */ 1442 if (lag->active_port == ICE_LAG_INVALID_PORT) { 1443 if (event_port != prim_port) 1444 ice_lag_move_vf_nodes(lag, prim_port, 1445 event_port); 1446 lag->active_port = event_port; 1447 ice_lag_config_eswitch(lag, event_netdev); 1448 return; 1449 } 1450 1451 /* active port is already set and is current event port */ 1452 if (lag->active_port == event_port) 1453 return; 1454 /* new active port */ 1455 ice_lag_move_vf_nodes(lag, lag->active_port, event_port); 1456 lag->active_port = event_port; 1457 ice_lag_config_eswitch(lag, event_netdev); 1458 } else { 1459 /* port not set as currently active (e.g. new active port 1460 * has already claimed the nodes and filters 1461 */ 1462 if (lag->active_port != event_port) 1463 return; 1464 /* This is the case when neither port is active (both link down) 1465 * Link down on the bond - set active port to invalid and move 1466 * nodes and filters back to primary if not already there 1467 */ 1468 if (event_port != prim_port) 1469 ice_lag_move_vf_nodes(lag, event_port, prim_port); 1470 lag->active_port = ICE_LAG_INVALID_PORT; 1471 } 1472 } 1473 1474 /** 1475 * ice_lag_chk_comp - evaluate bonded interface for feature support 1476 * @lag: lag info struct 1477 * @ptr: opaque data for netdev event info 1478 */ 1479 static bool 1480 ice_lag_chk_comp(struct ice_lag *lag, void *ptr) 1481 { 1482 struct net_device *event_netdev, *event_upper; 1483 struct netdev_notifier_bonding_info *info; 1484 struct netdev_bonding_info *bonding_info; 1485 struct list_head *tmp; 1486 struct device *dev; 1487 int count = 0; 1488 1489 if (!lag->primary) 1490 return true; 1491 1492 event_netdev = netdev_notifier_info_to_dev(ptr); 1493 rcu_read_lock(); 1494 event_upper = netdev_master_upper_dev_get_rcu(event_netdev); 1495 rcu_read_unlock(); 1496 if (event_upper != lag->upper_netdev) 1497 return true; 1498 1499 dev = ice_pf_to_dev(lag->pf); 1500 1501 /* only supporting switchdev mode for SRIOV VF LAG. 1502 * primary interface has to be in switchdev mode 1503 */ 1504 if (!ice_is_switchdev_running(lag->pf)) { 1505 dev_info(dev, "Primary interface not in switchdev mode - VF LAG disabled\n"); 1506 return false; 1507 } 1508 1509 info = (struct netdev_notifier_bonding_info *)ptr; 1510 bonding_info = &info->bonding_info; 1511 lag->bond_mode = bonding_info->master.bond_mode; 1512 if (lag->bond_mode != BOND_MODE_ACTIVEBACKUP) { 1513 dev_info(dev, "Bond Mode not ACTIVE-BACKUP - VF LAG disabled\n"); 1514 return false; 1515 } 1516 1517 list_for_each(tmp, lag->netdev_head) { 1518 struct ice_dcbx_cfg *dcb_cfg, *peer_dcb_cfg; 1519 struct ice_lag_netdev_list *entry; 1520 struct ice_netdev_priv *peer_np; 1521 struct net_device *peer_netdev; 1522 struct ice_vsi *vsi, *peer_vsi; 1523 struct ice_pf *peer_pf; 1524 1525 entry = list_entry(tmp, struct ice_lag_netdev_list, node); 1526 peer_netdev = entry->netdev; 1527 if (!netif_is_ice(peer_netdev)) { 1528 dev_info(dev, "Found %s non-ice netdev in LAG - VF LAG disabled\n", 1529 netdev_name(peer_netdev)); 1530 return false; 1531 } 1532 1533 count++; 1534 if (count > 2) { 1535 dev_info(dev, "Found more than two netdevs in LAG - VF LAG disabled\n"); 1536 return false; 1537 } 1538 1539 peer_np = netdev_priv(peer_netdev); 1540 vsi = ice_get_main_vsi(lag->pf); 1541 peer_vsi = peer_np->vsi; 1542 if (lag->pf->pdev->bus != peer_vsi->back->pdev->bus || 1543 lag->pf->pdev->slot != peer_vsi->back->pdev->slot) { 1544 dev_info(dev, "Found %s on different device in LAG - VF LAG disabled\n", 1545 netdev_name(peer_netdev)); 1546 return false; 1547 } 1548 1549 dcb_cfg = &vsi->port_info->qos_cfg.local_dcbx_cfg; 1550 peer_dcb_cfg = &peer_vsi->port_info->qos_cfg.local_dcbx_cfg; 1551 if (memcmp(dcb_cfg, peer_dcb_cfg, 1552 sizeof(struct ice_dcbx_cfg))) { 1553 dev_info(dev, "Found %s with different DCB in LAG - VF LAG disabled\n", 1554 netdev_name(peer_netdev)); 1555 return false; 1556 } 1557 1558 peer_pf = peer_vsi->back; 1559 if (test_bit(ICE_FLAG_FW_LLDP_AGENT, peer_pf->flags)) { 1560 dev_warn(dev, "Found %s with FW LLDP agent active - VF LAG disabled\n", 1561 netdev_name(peer_netdev)); 1562 return false; 1563 } 1564 } 1565 1566 return true; 1567 } 1568 1569 /** 1570 * ice_lag_unregister - handle netdev unregister events 1571 * @lag: LAG info struct 1572 * @event_netdev: netdev struct for target of notifier event 1573 */ 1574 static void 1575 ice_lag_unregister(struct ice_lag *lag, struct net_device *event_netdev) 1576 { 1577 struct ice_netdev_priv *np; 1578 struct ice_pf *event_pf; 1579 struct ice_lag *p_lag; 1580 1581 p_lag = ice_lag_find_primary(lag); 1582 np = netdev_priv(event_netdev); 1583 event_pf = np->vsi->back; 1584 1585 if (p_lag) { 1586 if (p_lag->active_port != p_lag->pf->hw.port_info->lport && 1587 p_lag->active_port != ICE_LAG_INVALID_PORT) { 1588 struct ice_hw *active_hw; 1589 1590 active_hw = ice_lag_find_hw_by_lport(lag, 1591 p_lag->active_port); 1592 if (active_hw) 1593 ice_lag_reclaim_vf_nodes(p_lag, active_hw); 1594 lag->active_port = ICE_LAG_INVALID_PORT; 1595 } 1596 } 1597 1598 /* primary processing for primary */ 1599 if (lag->primary && lag->netdev == event_netdev) 1600 ice_lag_primary_swid(lag, false); 1601 1602 /* primary processing for secondary */ 1603 if (lag->primary && lag->netdev != event_netdev) 1604 ice_lag_del_prune_list(lag, event_pf); 1605 1606 /* secondary processing for secondary */ 1607 if (!lag->primary && lag->netdev == event_netdev) 1608 ice_lag_set_swid(0, lag, false); 1609 } 1610 1611 /** 1612 * ice_lag_monitor_rdma - set and clear rdma functionality 1613 * @lag: pointer to lag struct 1614 * @ptr: opaque data for netdev event info 1615 */ 1616 static void 1617 ice_lag_monitor_rdma(struct ice_lag *lag, void *ptr) 1618 { 1619 struct netdev_notifier_changeupper_info *info; 1620 struct net_device *netdev; 1621 1622 info = ptr; 1623 netdev = netdev_notifier_info_to_dev(ptr); 1624 1625 if (netdev != lag->netdev) 1626 return; 1627 1628 if (info->linking) 1629 ice_clear_rdma_cap(lag->pf); 1630 else 1631 ice_set_rdma_cap(lag->pf); 1632 } 1633 1634 /** 1635 * ice_lag_chk_disabled_bond - monitor interfaces entering/leaving disabled bond 1636 * @lag: lag info struct 1637 * @ptr: opaque data containing event 1638 * 1639 * as interfaces enter a bond - determine if the bond is currently 1640 * SRIOV LAG compliant and flag if not. As interfaces leave the 1641 * bond, reset their compliant status. 1642 */ 1643 static void ice_lag_chk_disabled_bond(struct ice_lag *lag, void *ptr) 1644 { 1645 struct net_device *netdev = netdev_notifier_info_to_dev(ptr); 1646 struct netdev_notifier_changeupper_info *info = ptr; 1647 struct ice_lag *prim_lag; 1648 1649 if (netdev != lag->netdev) 1650 return; 1651 1652 if (info->linking) { 1653 prim_lag = ice_lag_find_primary(lag); 1654 if (prim_lag && 1655 !ice_is_feature_supported(prim_lag->pf, ICE_F_SRIOV_LAG)) { 1656 ice_clear_feature_support(lag->pf, ICE_F_SRIOV_LAG); 1657 netdev_info(netdev, "Interface added to non-compliant SRIOV LAG aggregate\n"); 1658 } 1659 } else { 1660 ice_lag_init_feature_support_flag(lag->pf); 1661 } 1662 } 1663 1664 /** 1665 * ice_lag_disable_sriov_bond - set members of bond as not supporting SRIOV LAG 1666 * @lag: primary interfaces lag struct 1667 */ 1668 static void ice_lag_disable_sriov_bond(struct ice_lag *lag) 1669 { 1670 struct ice_netdev_priv *np; 1671 struct ice_pf *pf; 1672 1673 np = netdev_priv(lag->netdev); 1674 pf = np->vsi->back; 1675 ice_clear_feature_support(pf, ICE_F_SRIOV_LAG); 1676 } 1677 1678 /** 1679 * ice_lag_process_event - process a task assigned to the lag_wq 1680 * @work: pointer to work_struct 1681 */ 1682 static void ice_lag_process_event(struct work_struct *work) 1683 { 1684 struct netdev_notifier_changeupper_info *info; 1685 struct ice_lag_work *lag_work; 1686 struct net_device *netdev; 1687 struct list_head *tmp, *n; 1688 struct ice_pf *pf; 1689 1690 lag_work = container_of(work, struct ice_lag_work, lag_task); 1691 pf = lag_work->lag->pf; 1692 1693 mutex_lock(&pf->lag_mutex); 1694 lag_work->lag->netdev_head = &lag_work->netdev_list.node; 1695 1696 switch (lag_work->event) { 1697 case NETDEV_CHANGEUPPER: 1698 info = &lag_work->info.changeupper_info; 1699 ice_lag_chk_disabled_bond(lag_work->lag, info); 1700 if (ice_is_feature_supported(pf, ICE_F_SRIOV_LAG)) { 1701 ice_lag_monitor_link(lag_work->lag, info); 1702 ice_lag_changeupper_event(lag_work->lag, info); 1703 ice_lag_link_unlink(lag_work->lag, info); 1704 } 1705 ice_lag_monitor_rdma(lag_work->lag, info); 1706 break; 1707 case NETDEV_BONDING_INFO: 1708 if (ice_is_feature_supported(pf, ICE_F_SRIOV_LAG)) { 1709 if (!ice_lag_chk_comp(lag_work->lag, 1710 &lag_work->info.bonding_info)) { 1711 netdev = lag_work->info.bonding_info.info.dev; 1712 ice_lag_disable_sriov_bond(lag_work->lag); 1713 ice_lag_unregister(lag_work->lag, netdev); 1714 goto lag_cleanup; 1715 } 1716 ice_lag_monitor_active(lag_work->lag, 1717 &lag_work->info.bonding_info); 1718 ice_lag_cfg_pf_fltrs(lag_work->lag, 1719 &lag_work->info.bonding_info); 1720 } 1721 ice_lag_info_event(lag_work->lag, &lag_work->info.bonding_info); 1722 break; 1723 case NETDEV_UNREGISTER: 1724 if (ice_is_feature_supported(pf, ICE_F_SRIOV_LAG)) { 1725 netdev = lag_work->info.bonding_info.info.dev; 1726 if ((netdev == lag_work->lag->netdev || 1727 lag_work->lag->primary) && lag_work->lag->bonded) 1728 ice_lag_unregister(lag_work->lag, netdev); 1729 } 1730 break; 1731 default: 1732 break; 1733 } 1734 1735 lag_cleanup: 1736 /* cleanup resources allocated for this work item */ 1737 list_for_each_safe(tmp, n, &lag_work->netdev_list.node) { 1738 struct ice_lag_netdev_list *entry; 1739 1740 entry = list_entry(tmp, struct ice_lag_netdev_list, node); 1741 list_del(&entry->node); 1742 kfree(entry); 1743 } 1744 lag_work->lag->netdev_head = NULL; 1745 1746 mutex_unlock(&pf->lag_mutex); 1747 1748 kfree(lag_work); 1749 } 1750 1751 /** 1752 * ice_lag_event_handler - handle LAG events from netdev 1753 * @notif_blk: notifier block registered by this netdev 1754 * @event: event type 1755 * @ptr: opaque data containing notifier event 1756 */ 1757 static int 1758 ice_lag_event_handler(struct notifier_block *notif_blk, unsigned long event, 1759 void *ptr) 1760 { 1761 struct net_device *netdev = netdev_notifier_info_to_dev(ptr); 1762 struct net_device *upper_netdev; 1763 struct ice_lag_work *lag_work; 1764 struct ice_lag *lag; 1765 1766 if (!netif_is_ice(netdev)) 1767 return NOTIFY_DONE; 1768 1769 if (event != NETDEV_CHANGEUPPER && event != NETDEV_BONDING_INFO && 1770 event != NETDEV_UNREGISTER) 1771 return NOTIFY_DONE; 1772 1773 if (!(netdev->priv_flags & IFF_BONDING)) 1774 return NOTIFY_DONE; 1775 1776 lag = container_of(notif_blk, struct ice_lag, notif_block); 1777 if (!lag->netdev) 1778 return NOTIFY_DONE; 1779 1780 if (!net_eq(dev_net(netdev), &init_net)) 1781 return NOTIFY_DONE; 1782 1783 /* This memory will be freed at the end of ice_lag_process_event */ 1784 lag_work = kzalloc(sizeof(*lag_work), GFP_KERNEL); 1785 if (!lag_work) 1786 return -ENOMEM; 1787 1788 lag_work->event_netdev = netdev; 1789 lag_work->lag = lag; 1790 lag_work->event = event; 1791 if (event == NETDEV_CHANGEUPPER) { 1792 struct netdev_notifier_changeupper_info *info; 1793 1794 info = ptr; 1795 upper_netdev = info->upper_dev; 1796 } else { 1797 upper_netdev = netdev_master_upper_dev_get(netdev); 1798 } 1799 1800 INIT_LIST_HEAD(&lag_work->netdev_list.node); 1801 if (upper_netdev) { 1802 struct ice_lag_netdev_list *nd_list; 1803 struct net_device *tmp_nd; 1804 1805 rcu_read_lock(); 1806 for_each_netdev_in_bond_rcu(upper_netdev, tmp_nd) { 1807 nd_list = kzalloc(sizeof(*nd_list), GFP_ATOMIC); 1808 if (!nd_list) 1809 break; 1810 1811 nd_list->netdev = tmp_nd; 1812 list_add(&nd_list->node, &lag_work->netdev_list.node); 1813 } 1814 rcu_read_unlock(); 1815 } 1816 1817 switch (event) { 1818 case NETDEV_CHANGEUPPER: 1819 lag_work->info.changeupper_info = 1820 *((struct netdev_notifier_changeupper_info *)ptr); 1821 break; 1822 case NETDEV_BONDING_INFO: 1823 lag_work->info.bonding_info = 1824 *((struct netdev_notifier_bonding_info *)ptr); 1825 break; 1826 default: 1827 lag_work->info.notifier_info = 1828 *((struct netdev_notifier_info *)ptr); 1829 break; 1830 } 1831 1832 INIT_WORK(&lag_work->lag_task, ice_lag_process_event); 1833 queue_work(ice_lag_wq, &lag_work->lag_task); 1834 1835 return NOTIFY_DONE; 1836 } 1837 1838 /** 1839 * ice_register_lag_handler - register LAG handler on netdev 1840 * @lag: LAG struct 1841 */ 1842 static int ice_register_lag_handler(struct ice_lag *lag) 1843 { 1844 struct device *dev = ice_pf_to_dev(lag->pf); 1845 struct notifier_block *notif_blk; 1846 1847 notif_blk = &lag->notif_block; 1848 1849 if (!notif_blk->notifier_call) { 1850 notif_blk->notifier_call = ice_lag_event_handler; 1851 if (register_netdevice_notifier(notif_blk)) { 1852 notif_blk->notifier_call = NULL; 1853 dev_err(dev, "FAIL register LAG event handler!\n"); 1854 return -EINVAL; 1855 } 1856 dev_dbg(dev, "LAG event handler registered\n"); 1857 } 1858 return 0; 1859 } 1860 1861 /** 1862 * ice_unregister_lag_handler - unregister LAG handler on netdev 1863 * @lag: LAG struct 1864 */ 1865 static void ice_unregister_lag_handler(struct ice_lag *lag) 1866 { 1867 struct device *dev = ice_pf_to_dev(lag->pf); 1868 struct notifier_block *notif_blk; 1869 1870 notif_blk = &lag->notif_block; 1871 if (notif_blk->notifier_call) { 1872 unregister_netdevice_notifier(notif_blk); 1873 dev_dbg(dev, "LAG event handler unregistered\n"); 1874 } 1875 } 1876 1877 /** 1878 * ice_create_lag_recipe 1879 * @hw: pointer to HW struct 1880 * @rid: pointer to u16 to pass back recipe index 1881 * @base_recipe: recipe to base the new recipe on 1882 * @prio: priority for new recipe 1883 * 1884 * function returns 0 on error 1885 */ 1886 static int ice_create_lag_recipe(struct ice_hw *hw, u16 *rid, 1887 const u8 *base_recipe, u8 prio) 1888 { 1889 struct ice_aqc_recipe_data_elem *new_rcp; 1890 int err; 1891 1892 err = ice_alloc_recipe(hw, rid); 1893 if (err) 1894 return err; 1895 1896 new_rcp = kzalloc(ICE_RECIPE_LEN * ICE_MAX_NUM_RECIPES, GFP_KERNEL); 1897 if (!new_rcp) 1898 return -ENOMEM; 1899 1900 memcpy(new_rcp, base_recipe, ICE_RECIPE_LEN); 1901 new_rcp->content.act_ctrl_fwd_priority = prio; 1902 new_rcp->content.rid = *rid | ICE_AQ_RECIPE_ID_IS_ROOT; 1903 new_rcp->recipe_indx = *rid; 1904 bitmap_zero((unsigned long *)new_rcp->recipe_bitmap, 1905 ICE_MAX_NUM_RECIPES); 1906 set_bit(*rid, (unsigned long *)new_rcp->recipe_bitmap); 1907 1908 err = ice_aq_add_recipe(hw, new_rcp, 1, NULL); 1909 if (err) 1910 *rid = 0; 1911 1912 kfree(new_rcp); 1913 return err; 1914 } 1915 1916 /** 1917 * ice_lag_move_vf_nodes_tc_sync - move a VF's nodes for a tc during reset 1918 * @lag: primary interfaces lag struct 1919 * @dest_hw: HW struct for destination's interface 1920 * @vsi_num: VSI index in PF space 1921 * @tc: traffic class to move 1922 */ 1923 static void 1924 ice_lag_move_vf_nodes_tc_sync(struct ice_lag *lag, struct ice_hw *dest_hw, 1925 u16 vsi_num, u8 tc) 1926 { 1927 DEFINE_RAW_FLEX(struct ice_aqc_move_elem, buf, teid, 1); 1928 struct device *dev = ice_pf_to_dev(lag->pf); 1929 u16 numq, valq, num_moved, qbuf_size; 1930 u16 buf_size = __struct_size(buf); 1931 struct ice_aqc_cfg_txqs_buf *qbuf; 1932 struct ice_sched_node *n_prt; 1933 __le32 teid, parent_teid; 1934 struct ice_vsi_ctx *ctx; 1935 struct ice_hw *hw; 1936 u32 tmp_teid; 1937 1938 hw = &lag->pf->hw; 1939 ctx = ice_get_vsi_ctx(hw, vsi_num); 1940 if (!ctx) { 1941 dev_warn(dev, "LAG rebuild failed after reset due to VSI Context failure\n"); 1942 return; 1943 } 1944 1945 if (!ctx->sched.vsi_node[tc]) 1946 return; 1947 1948 numq = ctx->num_lan_q_entries[tc]; 1949 teid = ctx->sched.vsi_node[tc]->info.node_teid; 1950 tmp_teid = le32_to_cpu(teid); 1951 parent_teid = ctx->sched.vsi_node[tc]->info.parent_teid; 1952 1953 if (!tmp_teid || !numq) 1954 return; 1955 1956 if (ice_sched_suspend_resume_elems(hw, 1, &tmp_teid, true)) 1957 dev_dbg(dev, "Problem suspending traffic during reset rebuild\n"); 1958 1959 /* reconfig queues for new port */ 1960 qbuf_size = struct_size(qbuf, queue_info, numq); 1961 qbuf = kzalloc(qbuf_size, GFP_KERNEL); 1962 if (!qbuf) { 1963 dev_warn(dev, "Failure allocating VF queue recfg buffer for reset rebuild\n"); 1964 goto resume_sync; 1965 } 1966 1967 /* add the per queue info for the reconfigure command buffer */ 1968 valq = ice_lag_qbuf_recfg(hw, qbuf, vsi_num, numq, tc); 1969 if (!valq) { 1970 dev_warn(dev, "Failure to reconfig queues for LAG reset rebuild\n"); 1971 goto sync_none; 1972 } 1973 1974 if (ice_aq_cfg_lan_txq(hw, qbuf, qbuf_size, numq, hw->port_info->lport, 1975 dest_hw->port_info->lport, NULL)) { 1976 dev_warn(dev, "Failure to configure queues for LAG reset rebuild\n"); 1977 goto sync_qerr; 1978 } 1979 1980 sync_none: 1981 kfree(qbuf); 1982 1983 /* find parent in destination tree */ 1984 n_prt = ice_lag_get_sched_parent(dest_hw, tc); 1985 if (!n_prt) 1986 goto resume_sync; 1987 1988 /* Move node to new parent */ 1989 buf->hdr.src_parent_teid = parent_teid; 1990 buf->hdr.dest_parent_teid = n_prt->info.node_teid; 1991 buf->hdr.num_elems = cpu_to_le16(1); 1992 buf->hdr.mode = ICE_AQC_MOVE_ELEM_MODE_KEEP_OWN; 1993 buf->teid[0] = teid; 1994 1995 if (ice_aq_move_sched_elems(&lag->pf->hw, buf, buf_size, &num_moved)) 1996 dev_warn(dev, "Failure to move VF nodes for LAG reset rebuild\n"); 1997 else 1998 ice_sched_update_parent(n_prt, ctx->sched.vsi_node[tc]); 1999 2000 goto resume_sync; 2001 2002 sync_qerr: 2003 kfree(qbuf); 2004 2005 resume_sync: 2006 if (ice_sched_suspend_resume_elems(hw, 1, &tmp_teid, false)) 2007 dev_warn(dev, "Problem restarting traffic for LAG node reset rebuild\n"); 2008 } 2009 2010 /** 2011 * ice_lag_move_vf_nodes_sync - move vf nodes to active interface 2012 * @lag: primary interfaces lag struct 2013 * @dest_hw: lport value for currently active port 2014 * 2015 * This function is used in a reset context, outside of event handling, 2016 * to move the VF nodes to the secondary interface when that interface 2017 * is the active interface during a reset rebuild 2018 */ 2019 static void 2020 ice_lag_move_vf_nodes_sync(struct ice_lag *lag, struct ice_hw *dest_hw) 2021 { 2022 struct ice_pf *pf; 2023 int i, tc; 2024 2025 if (!lag->primary || !dest_hw) 2026 return; 2027 2028 pf = lag->pf; 2029 ice_for_each_vsi(pf, i) 2030 if (pf->vsi[i] && pf->vsi[i]->type == ICE_VSI_VF) 2031 ice_for_each_traffic_class(tc) 2032 ice_lag_move_vf_nodes_tc_sync(lag, dest_hw, i, 2033 tc); 2034 } 2035 2036 /** 2037 * ice_init_lag - initialize support for LAG 2038 * @pf: PF struct 2039 * 2040 * Alloc memory for LAG structs and initialize the elements. 2041 * Memory will be freed in ice_deinit_lag 2042 */ 2043 int ice_init_lag(struct ice_pf *pf) 2044 { 2045 struct device *dev = ice_pf_to_dev(pf); 2046 struct ice_lag *lag; 2047 struct ice_vsi *vsi; 2048 u64 recipe_bits = 0; 2049 int n, err; 2050 2051 ice_lag_init_feature_support_flag(pf); 2052 if (!ice_is_feature_supported(pf, ICE_F_SRIOV_LAG)) 2053 return 0; 2054 2055 pf->lag = kzalloc(sizeof(*lag), GFP_KERNEL); 2056 if (!pf->lag) 2057 return -ENOMEM; 2058 lag = pf->lag; 2059 2060 vsi = ice_get_main_vsi(pf); 2061 if (!vsi) { 2062 dev_err(dev, "couldn't get main vsi, link aggregation init fail\n"); 2063 err = -EIO; 2064 goto lag_error; 2065 } 2066 2067 lag->pf = pf; 2068 lag->netdev = vsi->netdev; 2069 lag->role = ICE_LAG_NONE; 2070 lag->active_port = ICE_LAG_INVALID_PORT; 2071 lag->bonded = false; 2072 lag->upper_netdev = NULL; 2073 lag->notif_block.notifier_call = NULL; 2074 2075 err = ice_register_lag_handler(lag); 2076 if (err) { 2077 dev_warn(dev, "INIT LAG: Failed to register event handler\n"); 2078 goto lag_error; 2079 } 2080 2081 err = ice_create_lag_recipe(&pf->hw, &lag->pf_recipe, 2082 ice_dflt_vsi_rcp, 1); 2083 if (err) 2084 goto lag_error; 2085 2086 err = ice_create_lag_recipe(&pf->hw, &lag->lport_recipe, 2087 ice_lport_rcp, 3); 2088 if (err) 2089 goto free_rcp_res; 2090 2091 /* associate recipes to profiles */ 2092 for (n = 0; n < ICE_PROFID_IPV6_GTPU_IPV6_TCP_INNER; n++) { 2093 err = ice_aq_get_recipe_to_profile(&pf->hw, n, 2094 &recipe_bits, NULL); 2095 if (err) 2096 continue; 2097 2098 if (recipe_bits & BIT(ICE_SW_LKUP_DFLT)) { 2099 recipe_bits |= BIT(lag->pf_recipe) | 2100 BIT(lag->lport_recipe); 2101 ice_aq_map_recipe_to_profile(&pf->hw, n, 2102 recipe_bits, NULL); 2103 } 2104 } 2105 2106 ice_display_lag_info(lag); 2107 2108 dev_dbg(dev, "INIT LAG complete\n"); 2109 return 0; 2110 2111 free_rcp_res: 2112 ice_free_hw_res(&pf->hw, ICE_AQC_RES_TYPE_RECIPE, 1, 2113 &pf->lag->pf_recipe); 2114 lag_error: 2115 kfree(lag); 2116 pf->lag = NULL; 2117 return err; 2118 } 2119 2120 /** 2121 * ice_deinit_lag - Clean up LAG 2122 * @pf: PF struct 2123 * 2124 * Clean up kernel LAG info and free memory 2125 * This function is meant to only be called on driver remove/shutdown 2126 */ 2127 void ice_deinit_lag(struct ice_pf *pf) 2128 { 2129 struct ice_lag *lag; 2130 2131 lag = pf->lag; 2132 2133 if (!lag) 2134 return; 2135 2136 if (lag->pf) 2137 ice_unregister_lag_handler(lag); 2138 2139 flush_workqueue(ice_lag_wq); 2140 2141 ice_free_hw_res(&pf->hw, ICE_AQC_RES_TYPE_RECIPE, 1, 2142 &pf->lag->pf_recipe); 2143 ice_free_hw_res(&pf->hw, ICE_AQC_RES_TYPE_RECIPE, 1, 2144 &pf->lag->lport_recipe); 2145 2146 kfree(lag); 2147 2148 pf->lag = NULL; 2149 } 2150 2151 /** 2152 * ice_lag_rebuild - rebuild lag resources after reset 2153 * @pf: pointer to local pf struct 2154 * 2155 * PF resets are promoted to CORER resets when interface in an aggregate. This 2156 * means that we need to rebuild the PF resources for the interface. Since 2157 * this will happen outside the normal event processing, need to acquire the lag 2158 * lock. 2159 * 2160 * This function will also evaluate the VF resources if this is the primary 2161 * interface. 2162 */ 2163 void ice_lag_rebuild(struct ice_pf *pf) 2164 { 2165 struct ice_lag_netdev_list ndlist; 2166 struct ice_lag *lag, *prim_lag; 2167 u8 act_port, loc_port; 2168 2169 if (!pf->lag || !pf->lag->bonded) 2170 return; 2171 2172 mutex_lock(&pf->lag_mutex); 2173 2174 lag = pf->lag; 2175 if (lag->primary) { 2176 prim_lag = lag; 2177 } else { 2178 ice_lag_build_netdev_list(lag, &ndlist); 2179 prim_lag = ice_lag_find_primary(lag); 2180 } 2181 2182 if (!prim_lag) { 2183 dev_dbg(ice_pf_to_dev(pf), "No primary interface in aggregate, can't rebuild\n"); 2184 goto lag_rebuild_out; 2185 } 2186 2187 act_port = prim_lag->active_port; 2188 loc_port = lag->pf->hw.port_info->lport; 2189 2190 /* configure SWID for this port */ 2191 if (lag->primary) { 2192 ice_lag_primary_swid(lag, true); 2193 } else { 2194 ice_lag_set_swid(prim_lag->pf->hw.port_info->sw_id, lag, true); 2195 ice_lag_add_prune_list(prim_lag, pf); 2196 if (act_port == loc_port) 2197 ice_lag_move_vf_nodes_sync(prim_lag, &pf->hw); 2198 } 2199 2200 ice_lag_cfg_cp_fltr(lag, true); 2201 2202 if (lag->pf_rx_rule_id) 2203 if (ice_lag_cfg_dflt_fltr(lag, true)) 2204 dev_err(ice_pf_to_dev(pf), "Error adding default VSI rule in rebuild\n"); 2205 2206 ice_clear_rdma_cap(pf); 2207 lag_rebuild_out: 2208 ice_lag_destroy_netdev_list(lag, &ndlist); 2209 mutex_unlock(&pf->lag_mutex); 2210 } 2211 2212 /** 2213 * ice_lag_is_switchdev_running 2214 * @pf: pointer to PF structure 2215 * 2216 * Check if switchdev is running on any of the interfaces connected to lag. 2217 */ 2218 bool ice_lag_is_switchdev_running(struct ice_pf *pf) 2219 { 2220 struct ice_lag *lag = pf->lag; 2221 struct net_device *tmp_nd; 2222 2223 if (!ice_is_feature_supported(pf, ICE_F_SRIOV_LAG) || !lag) 2224 return false; 2225 2226 rcu_read_lock(); 2227 for_each_netdev_in_bond_rcu(lag->upper_netdev, tmp_nd) { 2228 struct ice_netdev_priv *priv = netdev_priv(tmp_nd); 2229 2230 if (!netif_is_ice(tmp_nd) || !priv || !priv->vsi || 2231 !priv->vsi->back) 2232 continue; 2233 2234 if (ice_is_switchdev_running(priv->vsi->back)) { 2235 rcu_read_unlock(); 2236 return true; 2237 } 2238 } 2239 rcu_read_unlock(); 2240 2241 return false; 2242 } 2243