1 /* 2 * Copyright 2008 Cisco Systems, Inc. All rights reserved. 3 * Copyright 2007 Nuova Systems, Inc. All rights reserved. 4 * 5 * This program is free software; you may redistribute it and/or modify 6 * it under the terms of the GNU General Public License as published by 7 * the Free Software Foundation; version 2 of the License. 8 * 9 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, 10 * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF 11 * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND 12 * NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS 13 * BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN 14 * ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN 15 * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE 16 * SOFTWARE. 17 */ 18 #include <linux/errno.h> 19 #include <linux/pci.h> 20 #include <linux/slab.h> 21 #include <linux/skbuff.h> 22 #include <linux/interrupt.h> 23 #include <linux/spinlock.h> 24 #include <linux/if_ether.h> 25 #include <linux/if_vlan.h> 26 #include <linux/workqueue.h> 27 #include <scsi/fc/fc_fip.h> 28 #include <scsi/fc/fc_els.h> 29 #include <scsi/fc/fc_fcoe.h> 30 #include <scsi/fc_frame.h> 31 #include <scsi/libfc.h> 32 #include "fnic_io.h" 33 #include "fnic.h" 34 #include "fnic_fip.h" 35 #include "cq_enet_desc.h" 36 #include "cq_exch_desc.h" 37 38 static u8 fcoe_all_fcfs[ETH_ALEN] = FIP_ALL_FCF_MACS; 39 struct workqueue_struct *fnic_fip_queue; 40 struct workqueue_struct *fnic_event_queue; 41 42 static void fnic_set_eth_mode(struct fnic *); 43 static void fnic_fcoe_send_vlan_req(struct fnic *fnic); 44 static void fnic_fcoe_start_fcf_disc(struct fnic *fnic); 45 static void fnic_fcoe_process_vlan_resp(struct fnic *fnic, struct sk_buff *); 46 static int fnic_fcoe_vlan_check(struct fnic *fnic, u16 flag); 47 static int fnic_fcoe_handle_fip_frame(struct fnic *fnic, struct sk_buff *skb); 48 49 void fnic_handle_link(struct work_struct *work) 50 { 51 struct fnic *fnic = container_of(work, struct fnic, link_work); 52 unsigned long flags; 53 int old_link_status; 54 u32 old_link_down_cnt; 55 56 spin_lock_irqsave(&fnic->fnic_lock, flags); 57 58 if (fnic->stop_rx_link_events) { 59 spin_unlock_irqrestore(&fnic->fnic_lock, flags); 60 return; 61 } 62 63 old_link_down_cnt = fnic->link_down_cnt; 64 old_link_status = fnic->link_status; 65 fnic->link_status = vnic_dev_link_status(fnic->vdev); 66 fnic->link_down_cnt = vnic_dev_link_down_cnt(fnic->vdev); 67 68 if (old_link_status == fnic->link_status) { 69 if (!fnic->link_status) { 70 /* DOWN -> DOWN */ 71 spin_unlock_irqrestore(&fnic->fnic_lock, flags); 72 fnic_fc_trace_set_data(fnic->lport->host->host_no, 73 FNIC_FC_LE, "Link Status: DOWN->DOWN", 74 strlen("Link Status: DOWN->DOWN")); 75 } else { 76 if (old_link_down_cnt != fnic->link_down_cnt) { 77 /* UP -> DOWN -> UP */ 78 fnic->lport->host_stats.link_failure_count++; 79 spin_unlock_irqrestore(&fnic->fnic_lock, flags); 80 fnic_fc_trace_set_data( 81 fnic->lport->host->host_no, 82 FNIC_FC_LE, 83 "Link Status:UP_DOWN_UP", 84 strlen("Link_Status:UP_DOWN_UP") 85 ); 86 FNIC_FCS_DBG(KERN_DEBUG, fnic->lport->host, 87 "link down\n"); 88 fcoe_ctlr_link_down(&fnic->ctlr); 89 if (fnic->config.flags & VFCF_FIP_CAPABLE) { 90 /* start FCoE VLAN discovery */ 91 fnic_fc_trace_set_data( 92 fnic->lport->host->host_no, 93 FNIC_FC_LE, 94 "Link Status: UP_DOWN_UP_VLAN", 95 strlen( 96 "Link Status: UP_DOWN_UP_VLAN") 97 ); 98 fnic_fcoe_send_vlan_req(fnic); 99 return; 100 } 101 FNIC_FCS_DBG(KERN_DEBUG, fnic->lport->host, 102 "link up\n"); 103 fcoe_ctlr_link_up(&fnic->ctlr); 104 } else { 105 /* UP -> UP */ 106 spin_unlock_irqrestore(&fnic->fnic_lock, flags); 107 fnic_fc_trace_set_data( 108 fnic->lport->host->host_no, FNIC_FC_LE, 109 "Link Status: UP_UP", 110 strlen("Link Status: UP_UP")); 111 } 112 } 113 } else if (fnic->link_status) { 114 /* DOWN -> UP */ 115 spin_unlock_irqrestore(&fnic->fnic_lock, flags); 116 if (fnic->config.flags & VFCF_FIP_CAPABLE) { 117 /* start FCoE VLAN discovery */ 118 fnic_fc_trace_set_data( 119 fnic->lport->host->host_no, 120 FNIC_FC_LE, "Link Status: DOWN_UP_VLAN", 121 strlen("Link Status: DOWN_UP_VLAN")); 122 fnic_fcoe_send_vlan_req(fnic); 123 return; 124 } 125 FNIC_FCS_DBG(KERN_DEBUG, fnic->lport->host, "link up\n"); 126 fnic_fc_trace_set_data(fnic->lport->host->host_no, FNIC_FC_LE, 127 "Link Status: DOWN_UP", strlen("Link Status: DOWN_UP")); 128 fcoe_ctlr_link_up(&fnic->ctlr); 129 } else { 130 /* UP -> DOWN */ 131 fnic->lport->host_stats.link_failure_count++; 132 spin_unlock_irqrestore(&fnic->fnic_lock, flags); 133 FNIC_FCS_DBG(KERN_DEBUG, fnic->lport->host, "link down\n"); 134 fnic_fc_trace_set_data( 135 fnic->lport->host->host_no, FNIC_FC_LE, 136 "Link Status: UP_DOWN", 137 strlen("Link Status: UP_DOWN")); 138 if (fnic->config.flags & VFCF_FIP_CAPABLE) { 139 FNIC_FCS_DBG(KERN_DEBUG, fnic->lport->host, 140 "deleting fip-timer during link-down\n"); 141 del_timer_sync(&fnic->fip_timer); 142 } 143 fcoe_ctlr_link_down(&fnic->ctlr); 144 } 145 146 } 147 148 /* 149 * This function passes incoming fabric frames to libFC 150 */ 151 void fnic_handle_frame(struct work_struct *work) 152 { 153 struct fnic *fnic = container_of(work, struct fnic, frame_work); 154 struct fc_lport *lp = fnic->lport; 155 unsigned long flags; 156 struct sk_buff *skb; 157 struct fc_frame *fp; 158 159 while ((skb = skb_dequeue(&fnic->frame_queue))) { 160 161 spin_lock_irqsave(&fnic->fnic_lock, flags); 162 if (fnic->stop_rx_link_events) { 163 spin_unlock_irqrestore(&fnic->fnic_lock, flags); 164 dev_kfree_skb(skb); 165 return; 166 } 167 fp = (struct fc_frame *)skb; 168 169 /* 170 * If we're in a transitional state, just re-queue and return. 171 * The queue will be serviced when we get to a stable state. 172 */ 173 if (fnic->state != FNIC_IN_FC_MODE && 174 fnic->state != FNIC_IN_ETH_MODE) { 175 skb_queue_head(&fnic->frame_queue, skb); 176 spin_unlock_irqrestore(&fnic->fnic_lock, flags); 177 return; 178 } 179 spin_unlock_irqrestore(&fnic->fnic_lock, flags); 180 181 fc_exch_recv(lp, fp); 182 } 183 } 184 185 void fnic_fcoe_evlist_free(struct fnic *fnic) 186 { 187 struct fnic_event *fevt = NULL; 188 struct fnic_event *next = NULL; 189 unsigned long flags; 190 191 spin_lock_irqsave(&fnic->fnic_lock, flags); 192 if (list_empty(&fnic->evlist)) { 193 spin_unlock_irqrestore(&fnic->fnic_lock, flags); 194 return; 195 } 196 197 list_for_each_entry_safe(fevt, next, &fnic->evlist, list) { 198 list_del(&fevt->list); 199 kfree(fevt); 200 } 201 spin_unlock_irqrestore(&fnic->fnic_lock, flags); 202 } 203 204 void fnic_handle_event(struct work_struct *work) 205 { 206 struct fnic *fnic = container_of(work, struct fnic, event_work); 207 struct fnic_event *fevt = NULL; 208 struct fnic_event *next = NULL; 209 unsigned long flags; 210 211 spin_lock_irqsave(&fnic->fnic_lock, flags); 212 if (list_empty(&fnic->evlist)) { 213 spin_unlock_irqrestore(&fnic->fnic_lock, flags); 214 return; 215 } 216 217 list_for_each_entry_safe(fevt, next, &fnic->evlist, list) { 218 if (fnic->stop_rx_link_events) { 219 list_del(&fevt->list); 220 kfree(fevt); 221 spin_unlock_irqrestore(&fnic->fnic_lock, flags); 222 return; 223 } 224 /* 225 * If we're in a transitional state, just re-queue and return. 226 * The queue will be serviced when we get to a stable state. 227 */ 228 if (fnic->state != FNIC_IN_FC_MODE && 229 fnic->state != FNIC_IN_ETH_MODE) { 230 spin_unlock_irqrestore(&fnic->fnic_lock, flags); 231 return; 232 } 233 234 list_del(&fevt->list); 235 switch (fevt->event) { 236 case FNIC_EVT_START_VLAN_DISC: 237 spin_unlock_irqrestore(&fnic->fnic_lock, flags); 238 fnic_fcoe_send_vlan_req(fnic); 239 spin_lock_irqsave(&fnic->fnic_lock, flags); 240 break; 241 case FNIC_EVT_START_FCF_DISC: 242 FNIC_FCS_DBG(KERN_DEBUG, fnic->lport->host, 243 "Start FCF Discovery\n"); 244 fnic_fcoe_start_fcf_disc(fnic); 245 break; 246 default: 247 FNIC_FCS_DBG(KERN_DEBUG, fnic->lport->host, 248 "Unknown event 0x%x\n", fevt->event); 249 break; 250 } 251 kfree(fevt); 252 } 253 spin_unlock_irqrestore(&fnic->fnic_lock, flags); 254 } 255 256 /** 257 * Check if the Received FIP FLOGI frame is rejected 258 * @fip: The FCoE controller that received the frame 259 * @skb: The received FIP frame 260 * 261 * Returns non-zero if the frame is rejected with unsupported cmd with 262 * insufficient resource els explanation. 263 */ 264 static inline int is_fnic_fip_flogi_reject(struct fcoe_ctlr *fip, 265 struct sk_buff *skb) 266 { 267 struct fc_lport *lport = fip->lp; 268 struct fip_header *fiph; 269 struct fc_frame_header *fh = NULL; 270 struct fip_desc *desc; 271 struct fip_encaps *els; 272 enum fip_desc_type els_dtype = 0; 273 u16 op; 274 u8 els_op; 275 u8 sub; 276 277 size_t els_len = 0; 278 size_t rlen; 279 size_t dlen = 0; 280 281 if (skb_linearize(skb)) 282 return 0; 283 284 if (skb->len < sizeof(*fiph)) 285 return 0; 286 287 fiph = (struct fip_header *)skb->data; 288 op = ntohs(fiph->fip_op); 289 sub = fiph->fip_subcode; 290 291 if (op != FIP_OP_LS) 292 return 0; 293 294 if (sub != FIP_SC_REP) 295 return 0; 296 297 rlen = ntohs(fiph->fip_dl_len) * 4; 298 if (rlen + sizeof(*fiph) > skb->len) 299 return 0; 300 301 desc = (struct fip_desc *)(fiph + 1); 302 dlen = desc->fip_dlen * FIP_BPW; 303 304 if (desc->fip_dtype == FIP_DT_FLOGI) { 305 306 if (dlen < sizeof(*els) + sizeof(*fh) + 1) 307 return 0; 308 309 els_len = dlen - sizeof(*els); 310 els = (struct fip_encaps *)desc; 311 fh = (struct fc_frame_header *)(els + 1); 312 els_dtype = desc->fip_dtype; 313 314 if (!fh) 315 return 0; 316 317 /* 318 * ELS command code, reason and explanation should be = Reject, 319 * unsupported command and insufficient resource 320 */ 321 els_op = *(u8 *)(fh + 1); 322 if (els_op == ELS_LS_RJT) { 323 shost_printk(KERN_INFO, lport->host, 324 "Flogi Request Rejected by Switch\n"); 325 return 1; 326 } 327 shost_printk(KERN_INFO, lport->host, 328 "Flogi Request Accepted by Switch\n"); 329 } 330 return 0; 331 } 332 333 static void fnic_fcoe_send_vlan_req(struct fnic *fnic) 334 { 335 struct fcoe_ctlr *fip = &fnic->ctlr; 336 struct fnic_stats *fnic_stats = &fnic->fnic_stats; 337 struct sk_buff *skb; 338 char *eth_fr; 339 int fr_len; 340 struct fip_vlan *vlan; 341 u64 vlan_tov; 342 343 fnic_fcoe_reset_vlans(fnic); 344 fnic->set_vlan(fnic, 0); 345 346 if (printk_ratelimit()) 347 FNIC_FCS_DBG(KERN_INFO, fnic->lport->host, 348 "Sending VLAN request...\n"); 349 350 skb = dev_alloc_skb(sizeof(struct fip_vlan)); 351 if (!skb) 352 return; 353 354 fr_len = sizeof(*vlan); 355 eth_fr = (char *)skb->data; 356 vlan = (struct fip_vlan *)eth_fr; 357 358 memset(vlan, 0, sizeof(*vlan)); 359 memcpy(vlan->eth.h_source, fip->ctl_src_addr, ETH_ALEN); 360 memcpy(vlan->eth.h_dest, fcoe_all_fcfs, ETH_ALEN); 361 vlan->eth.h_proto = htons(ETH_P_FIP); 362 363 vlan->fip.fip_ver = FIP_VER_ENCAPS(FIP_VER); 364 vlan->fip.fip_op = htons(FIP_OP_VLAN); 365 vlan->fip.fip_subcode = FIP_SC_VL_NOTE; 366 vlan->fip.fip_dl_len = htons(sizeof(vlan->desc) / FIP_BPW); 367 368 vlan->desc.mac.fd_desc.fip_dtype = FIP_DT_MAC; 369 vlan->desc.mac.fd_desc.fip_dlen = sizeof(vlan->desc.mac) / FIP_BPW; 370 memcpy(&vlan->desc.mac.fd_mac, fip->ctl_src_addr, ETH_ALEN); 371 372 vlan->desc.wwnn.fd_desc.fip_dtype = FIP_DT_NAME; 373 vlan->desc.wwnn.fd_desc.fip_dlen = sizeof(vlan->desc.wwnn) / FIP_BPW; 374 put_unaligned_be64(fip->lp->wwnn, &vlan->desc.wwnn.fd_wwn); 375 atomic64_inc(&fnic_stats->vlan_stats.vlan_disc_reqs); 376 377 skb_put(skb, sizeof(*vlan)); 378 skb->protocol = htons(ETH_P_FIP); 379 skb_reset_mac_header(skb); 380 skb_reset_network_header(skb); 381 fip->send(fip, skb); 382 383 /* set a timer so that we can retry if there no response */ 384 vlan_tov = jiffies + msecs_to_jiffies(FCOE_CTLR_FIPVLAN_TOV); 385 mod_timer(&fnic->fip_timer, round_jiffies(vlan_tov)); 386 } 387 388 static void fnic_fcoe_process_vlan_resp(struct fnic *fnic, struct sk_buff *skb) 389 { 390 struct fcoe_ctlr *fip = &fnic->ctlr; 391 struct fip_header *fiph; 392 struct fip_desc *desc; 393 struct fnic_stats *fnic_stats = &fnic->fnic_stats; 394 u16 vid; 395 size_t rlen; 396 size_t dlen; 397 struct fcoe_vlan *vlan; 398 u64 sol_time; 399 unsigned long flags; 400 401 FNIC_FCS_DBG(KERN_INFO, fnic->lport->host, 402 "Received VLAN response...\n"); 403 404 fiph = (struct fip_header *) skb->data; 405 406 FNIC_FCS_DBG(KERN_INFO, fnic->lport->host, 407 "Received VLAN response... OP 0x%x SUB_OP 0x%x\n", 408 ntohs(fiph->fip_op), fiph->fip_subcode); 409 410 rlen = ntohs(fiph->fip_dl_len) * 4; 411 fnic_fcoe_reset_vlans(fnic); 412 spin_lock_irqsave(&fnic->vlans_lock, flags); 413 desc = (struct fip_desc *)(fiph + 1); 414 while (rlen > 0) { 415 dlen = desc->fip_dlen * FIP_BPW; 416 switch (desc->fip_dtype) { 417 case FIP_DT_VLAN: 418 vid = ntohs(((struct fip_vlan_desc *)desc)->fd_vlan); 419 shost_printk(KERN_INFO, fnic->lport->host, 420 "process_vlan_resp: FIP VLAN %d\n", vid); 421 vlan = kmalloc(sizeof(*vlan), 422 GFP_ATOMIC); 423 if (!vlan) { 424 /* retry from timer */ 425 spin_unlock_irqrestore(&fnic->vlans_lock, 426 flags); 427 goto out; 428 } 429 memset(vlan, 0, sizeof(struct fcoe_vlan)); 430 vlan->vid = vid & 0x0fff; 431 vlan->state = FIP_VLAN_AVAIL; 432 list_add_tail(&vlan->list, &fnic->vlans); 433 break; 434 } 435 desc = (struct fip_desc *)((char *)desc + dlen); 436 rlen -= dlen; 437 } 438 439 /* any VLAN descriptors present ? */ 440 if (list_empty(&fnic->vlans)) { 441 /* retry from timer */ 442 atomic64_inc(&fnic_stats->vlan_stats.resp_withno_vlanID); 443 FNIC_FCS_DBG(KERN_INFO, fnic->lport->host, 444 "No VLAN descriptors in FIP VLAN response\n"); 445 spin_unlock_irqrestore(&fnic->vlans_lock, flags); 446 goto out; 447 } 448 449 vlan = list_first_entry(&fnic->vlans, struct fcoe_vlan, list); 450 fnic->set_vlan(fnic, vlan->vid); 451 vlan->state = FIP_VLAN_SENT; /* sent now */ 452 vlan->sol_count++; 453 spin_unlock_irqrestore(&fnic->vlans_lock, flags); 454 455 /* start the solicitation */ 456 fcoe_ctlr_link_up(fip); 457 458 sol_time = jiffies + msecs_to_jiffies(FCOE_CTLR_START_DELAY); 459 mod_timer(&fnic->fip_timer, round_jiffies(sol_time)); 460 out: 461 return; 462 } 463 464 static void fnic_fcoe_start_fcf_disc(struct fnic *fnic) 465 { 466 unsigned long flags; 467 struct fcoe_vlan *vlan; 468 u64 sol_time; 469 470 spin_lock_irqsave(&fnic->vlans_lock, flags); 471 vlan = list_first_entry(&fnic->vlans, struct fcoe_vlan, list); 472 fnic->set_vlan(fnic, vlan->vid); 473 vlan->state = FIP_VLAN_SENT; /* sent now */ 474 vlan->sol_count = 1; 475 spin_unlock_irqrestore(&fnic->vlans_lock, flags); 476 477 /* start the solicitation */ 478 fcoe_ctlr_link_up(&fnic->ctlr); 479 480 sol_time = jiffies + msecs_to_jiffies(FCOE_CTLR_START_DELAY); 481 mod_timer(&fnic->fip_timer, round_jiffies(sol_time)); 482 } 483 484 static int fnic_fcoe_vlan_check(struct fnic *fnic, u16 flag) 485 { 486 unsigned long flags; 487 struct fcoe_vlan *fvlan; 488 489 spin_lock_irqsave(&fnic->vlans_lock, flags); 490 if (list_empty(&fnic->vlans)) { 491 spin_unlock_irqrestore(&fnic->vlans_lock, flags); 492 return -EINVAL; 493 } 494 495 fvlan = list_first_entry(&fnic->vlans, struct fcoe_vlan, list); 496 if (fvlan->state == FIP_VLAN_USED) { 497 spin_unlock_irqrestore(&fnic->vlans_lock, flags); 498 return 0; 499 } 500 501 if (fvlan->state == FIP_VLAN_SENT) { 502 fvlan->state = FIP_VLAN_USED; 503 spin_unlock_irqrestore(&fnic->vlans_lock, flags); 504 return 0; 505 } 506 spin_unlock_irqrestore(&fnic->vlans_lock, flags); 507 return -EINVAL; 508 } 509 510 static void fnic_event_enq(struct fnic *fnic, enum fnic_evt ev) 511 { 512 struct fnic_event *fevt; 513 unsigned long flags; 514 515 fevt = kmalloc(sizeof(*fevt), GFP_ATOMIC); 516 if (!fevt) 517 return; 518 519 fevt->fnic = fnic; 520 fevt->event = ev; 521 522 spin_lock_irqsave(&fnic->fnic_lock, flags); 523 list_add_tail(&fevt->list, &fnic->evlist); 524 spin_unlock_irqrestore(&fnic->fnic_lock, flags); 525 526 schedule_work(&fnic->event_work); 527 } 528 529 static int fnic_fcoe_handle_fip_frame(struct fnic *fnic, struct sk_buff *skb) 530 { 531 struct fip_header *fiph; 532 int ret = 1; 533 u16 op; 534 u8 sub; 535 536 if (!skb || !(skb->data)) 537 return -1; 538 539 if (skb_linearize(skb)) 540 goto drop; 541 542 fiph = (struct fip_header *)skb->data; 543 op = ntohs(fiph->fip_op); 544 sub = fiph->fip_subcode; 545 546 if (FIP_VER_DECAPS(fiph->fip_ver) != FIP_VER) 547 goto drop; 548 549 if (ntohs(fiph->fip_dl_len) * FIP_BPW + sizeof(*fiph) > skb->len) 550 goto drop; 551 552 if (op == FIP_OP_DISC && sub == FIP_SC_ADV) { 553 if (fnic_fcoe_vlan_check(fnic, ntohs(fiph->fip_flags))) 554 goto drop; 555 /* pass it on to fcoe */ 556 ret = 1; 557 } else if (op == FIP_OP_VLAN && sub == FIP_SC_VL_NOTE) { 558 /* set the vlan as used */ 559 fnic_fcoe_process_vlan_resp(fnic, skb); 560 ret = 0; 561 } else if (op == FIP_OP_CTRL && sub == FIP_SC_CLR_VLINK) { 562 /* received CVL request, restart vlan disc */ 563 fnic_event_enq(fnic, FNIC_EVT_START_VLAN_DISC); 564 /* pass it on to fcoe */ 565 ret = 1; 566 } 567 drop: 568 return ret; 569 } 570 571 void fnic_handle_fip_frame(struct work_struct *work) 572 { 573 struct fnic *fnic = container_of(work, struct fnic, fip_frame_work); 574 struct fnic_stats *fnic_stats = &fnic->fnic_stats; 575 unsigned long flags; 576 struct sk_buff *skb; 577 struct ethhdr *eh; 578 579 while ((skb = skb_dequeue(&fnic->fip_frame_queue))) { 580 spin_lock_irqsave(&fnic->fnic_lock, flags); 581 if (fnic->stop_rx_link_events) { 582 spin_unlock_irqrestore(&fnic->fnic_lock, flags); 583 dev_kfree_skb(skb); 584 return; 585 } 586 /* 587 * If we're in a transitional state, just re-queue and return. 588 * The queue will be serviced when we get to a stable state. 589 */ 590 if (fnic->state != FNIC_IN_FC_MODE && 591 fnic->state != FNIC_IN_ETH_MODE) { 592 skb_queue_head(&fnic->fip_frame_queue, skb); 593 spin_unlock_irqrestore(&fnic->fnic_lock, flags); 594 return; 595 } 596 spin_unlock_irqrestore(&fnic->fnic_lock, flags); 597 eh = (struct ethhdr *)skb->data; 598 if (eh->h_proto == htons(ETH_P_FIP)) { 599 skb_pull(skb, sizeof(*eh)); 600 if (fnic_fcoe_handle_fip_frame(fnic, skb) <= 0) { 601 dev_kfree_skb(skb); 602 continue; 603 } 604 /* 605 * If there's FLOGI rejects - clear all 606 * fcf's & restart from scratch 607 */ 608 if (is_fnic_fip_flogi_reject(&fnic->ctlr, skb)) { 609 atomic64_inc( 610 &fnic_stats->vlan_stats.flogi_rejects); 611 shost_printk(KERN_INFO, fnic->lport->host, 612 "Trigger a Link down - VLAN Disc\n"); 613 fcoe_ctlr_link_down(&fnic->ctlr); 614 /* start FCoE VLAN discovery */ 615 fnic_fcoe_send_vlan_req(fnic); 616 dev_kfree_skb(skb); 617 continue; 618 } 619 fcoe_ctlr_recv(&fnic->ctlr, skb); 620 continue; 621 } 622 } 623 } 624 625 /** 626 * fnic_import_rq_eth_pkt() - handle received FCoE or FIP frame. 627 * @fnic: fnic instance. 628 * @skb: Ethernet Frame. 629 */ 630 static inline int fnic_import_rq_eth_pkt(struct fnic *fnic, struct sk_buff *skb) 631 { 632 struct fc_frame *fp; 633 struct ethhdr *eh; 634 struct fcoe_hdr *fcoe_hdr; 635 struct fcoe_crc_eof *ft; 636 637 /* 638 * Undo VLAN encapsulation if present. 639 */ 640 eh = (struct ethhdr *)skb->data; 641 if (eh->h_proto == htons(ETH_P_8021Q)) { 642 memmove((u8 *)eh + VLAN_HLEN, eh, ETH_ALEN * 2); 643 eh = (struct ethhdr *)skb_pull(skb, VLAN_HLEN); 644 skb_reset_mac_header(skb); 645 } 646 if (eh->h_proto == htons(ETH_P_FIP)) { 647 if (!(fnic->config.flags & VFCF_FIP_CAPABLE)) { 648 printk(KERN_ERR "Dropped FIP frame, as firmware " 649 "uses non-FIP mode, Enable FIP " 650 "using UCSM\n"); 651 goto drop; 652 } 653 if ((fnic_fc_trace_set_data(fnic->lport->host->host_no, 654 FNIC_FC_RECV|0x80, (char *)skb->data, skb->len)) != 0) { 655 printk(KERN_ERR "fnic ctlr frame trace error!!!"); 656 } 657 skb_queue_tail(&fnic->fip_frame_queue, skb); 658 queue_work(fnic_fip_queue, &fnic->fip_frame_work); 659 return 1; /* let caller know packet was used */ 660 } 661 if (eh->h_proto != htons(ETH_P_FCOE)) 662 goto drop; 663 skb_set_network_header(skb, sizeof(*eh)); 664 skb_pull(skb, sizeof(*eh)); 665 666 fcoe_hdr = (struct fcoe_hdr *)skb->data; 667 if (FC_FCOE_DECAPS_VER(fcoe_hdr) != FC_FCOE_VER) 668 goto drop; 669 670 fp = (struct fc_frame *)skb; 671 fc_frame_init(fp); 672 fr_sof(fp) = fcoe_hdr->fcoe_sof; 673 skb_pull(skb, sizeof(struct fcoe_hdr)); 674 skb_reset_transport_header(skb); 675 676 ft = (struct fcoe_crc_eof *)(skb->data + skb->len - sizeof(*ft)); 677 fr_eof(fp) = ft->fcoe_eof; 678 skb_trim(skb, skb->len - sizeof(*ft)); 679 return 0; 680 drop: 681 dev_kfree_skb_irq(skb); 682 return -1; 683 } 684 685 /** 686 * fnic_update_mac_locked() - set data MAC address and filters. 687 * @fnic: fnic instance. 688 * @new: newly-assigned FCoE MAC address. 689 * 690 * Called with the fnic lock held. 691 */ 692 void fnic_update_mac_locked(struct fnic *fnic, u8 *new) 693 { 694 u8 *ctl = fnic->ctlr.ctl_src_addr; 695 u8 *data = fnic->data_src_addr; 696 697 if (is_zero_ether_addr(new)) 698 new = ctl; 699 if (ether_addr_equal(data, new)) 700 return; 701 FNIC_FCS_DBG(KERN_DEBUG, fnic->lport->host, "update_mac %pM\n", new); 702 if (!is_zero_ether_addr(data) && !ether_addr_equal(data, ctl)) 703 vnic_dev_del_addr(fnic->vdev, data); 704 memcpy(data, new, ETH_ALEN); 705 if (!ether_addr_equal(new, ctl)) 706 vnic_dev_add_addr(fnic->vdev, new); 707 } 708 709 /** 710 * fnic_update_mac() - set data MAC address and filters. 711 * @lport: local port. 712 * @new: newly-assigned FCoE MAC address. 713 */ 714 void fnic_update_mac(struct fc_lport *lport, u8 *new) 715 { 716 struct fnic *fnic = lport_priv(lport); 717 718 spin_lock_irq(&fnic->fnic_lock); 719 fnic_update_mac_locked(fnic, new); 720 spin_unlock_irq(&fnic->fnic_lock); 721 } 722 723 /** 724 * fnic_set_port_id() - set the port_ID after successful FLOGI. 725 * @lport: local port. 726 * @port_id: assigned FC_ID. 727 * @fp: received frame containing the FLOGI accept or NULL. 728 * 729 * This is called from libfc when a new FC_ID has been assigned. 730 * This causes us to reset the firmware to FC_MODE and setup the new MAC 731 * address and FC_ID. 732 * 733 * It is also called with FC_ID 0 when we're logged off. 734 * 735 * If the FC_ID is due to point-to-point, fp may be NULL. 736 */ 737 void fnic_set_port_id(struct fc_lport *lport, u32 port_id, struct fc_frame *fp) 738 { 739 struct fnic *fnic = lport_priv(lport); 740 u8 *mac; 741 int ret; 742 743 FNIC_FCS_DBG(KERN_DEBUG, lport->host, "set port_id %x fp %p\n", 744 port_id, fp); 745 746 /* 747 * If we're clearing the FC_ID, change to use the ctl_src_addr. 748 * Set ethernet mode to send FLOGI. 749 */ 750 if (!port_id) { 751 fnic_update_mac(lport, fnic->ctlr.ctl_src_addr); 752 fnic_set_eth_mode(fnic); 753 return; 754 } 755 756 if (fp) { 757 mac = fr_cb(fp)->granted_mac; 758 if (is_zero_ether_addr(mac)) { 759 /* non-FIP - FLOGI already accepted - ignore return */ 760 fcoe_ctlr_recv_flogi(&fnic->ctlr, lport, fp); 761 } 762 fnic_update_mac(lport, mac); 763 } 764 765 /* Change state to reflect transition to FC mode */ 766 spin_lock_irq(&fnic->fnic_lock); 767 if (fnic->state == FNIC_IN_ETH_MODE || fnic->state == FNIC_IN_FC_MODE) 768 fnic->state = FNIC_IN_ETH_TRANS_FC_MODE; 769 else { 770 FNIC_FCS_DBG(KERN_DEBUG, fnic->lport->host, 771 "Unexpected fnic state %s while" 772 " processing flogi resp\n", 773 fnic_state_to_str(fnic->state)); 774 spin_unlock_irq(&fnic->fnic_lock); 775 return; 776 } 777 spin_unlock_irq(&fnic->fnic_lock); 778 779 /* 780 * Send FLOGI registration to firmware to set up FC mode. 781 * The new address will be set up when registration completes. 782 */ 783 ret = fnic_flogi_reg_handler(fnic, port_id); 784 785 if (ret < 0) { 786 spin_lock_irq(&fnic->fnic_lock); 787 if (fnic->state == FNIC_IN_ETH_TRANS_FC_MODE) 788 fnic->state = FNIC_IN_ETH_MODE; 789 spin_unlock_irq(&fnic->fnic_lock); 790 } 791 } 792 793 static void fnic_rq_cmpl_frame_recv(struct vnic_rq *rq, struct cq_desc 794 *cq_desc, struct vnic_rq_buf *buf, 795 int skipped __attribute__((unused)), 796 void *opaque) 797 { 798 struct fnic *fnic = vnic_dev_priv(rq->vdev); 799 struct sk_buff *skb; 800 struct fc_frame *fp; 801 struct fnic_stats *fnic_stats = &fnic->fnic_stats; 802 unsigned int eth_hdrs_stripped; 803 u8 type, color, eop, sop, ingress_port, vlan_stripped; 804 u8 fcoe = 0, fcoe_sof, fcoe_eof; 805 u8 fcoe_fc_crc_ok = 1, fcoe_enc_error = 0; 806 u8 tcp_udp_csum_ok, udp, tcp, ipv4_csum_ok; 807 u8 ipv6, ipv4, ipv4_fragment, rss_type, csum_not_calc; 808 u8 fcs_ok = 1, packet_error = 0; 809 u16 q_number, completed_index, bytes_written = 0, vlan, checksum; 810 u32 rss_hash; 811 u16 exchange_id, tmpl; 812 u8 sof = 0; 813 u8 eof = 0; 814 u32 fcp_bytes_written = 0; 815 unsigned long flags; 816 817 pci_unmap_single(fnic->pdev, buf->dma_addr, buf->len, 818 PCI_DMA_FROMDEVICE); 819 skb = buf->os_buf; 820 fp = (struct fc_frame *)skb; 821 buf->os_buf = NULL; 822 823 cq_desc_dec(cq_desc, &type, &color, &q_number, &completed_index); 824 if (type == CQ_DESC_TYPE_RQ_FCP) { 825 cq_fcp_rq_desc_dec((struct cq_fcp_rq_desc *)cq_desc, 826 &type, &color, &q_number, &completed_index, 827 &eop, &sop, &fcoe_fc_crc_ok, &exchange_id, 828 &tmpl, &fcp_bytes_written, &sof, &eof, 829 &ingress_port, &packet_error, 830 &fcoe_enc_error, &fcs_ok, &vlan_stripped, 831 &vlan); 832 eth_hdrs_stripped = 1; 833 skb_trim(skb, fcp_bytes_written); 834 fr_sof(fp) = sof; 835 fr_eof(fp) = eof; 836 837 } else if (type == CQ_DESC_TYPE_RQ_ENET) { 838 cq_enet_rq_desc_dec((struct cq_enet_rq_desc *)cq_desc, 839 &type, &color, &q_number, &completed_index, 840 &ingress_port, &fcoe, &eop, &sop, 841 &rss_type, &csum_not_calc, &rss_hash, 842 &bytes_written, &packet_error, 843 &vlan_stripped, &vlan, &checksum, 844 &fcoe_sof, &fcoe_fc_crc_ok, 845 &fcoe_enc_error, &fcoe_eof, 846 &tcp_udp_csum_ok, &udp, &tcp, 847 &ipv4_csum_ok, &ipv6, &ipv4, 848 &ipv4_fragment, &fcs_ok); 849 eth_hdrs_stripped = 0; 850 skb_trim(skb, bytes_written); 851 if (!fcs_ok) { 852 atomic64_inc(&fnic_stats->misc_stats.frame_errors); 853 FNIC_FCS_DBG(KERN_DEBUG, fnic->lport->host, 854 "fcs error. dropping packet.\n"); 855 goto drop; 856 } 857 if (fnic_import_rq_eth_pkt(fnic, skb)) 858 return; 859 860 } else { 861 /* wrong CQ type*/ 862 shost_printk(KERN_ERR, fnic->lport->host, 863 "fnic rq_cmpl wrong cq type x%x\n", type); 864 goto drop; 865 } 866 867 if (!fcs_ok || packet_error || !fcoe_fc_crc_ok || fcoe_enc_error) { 868 atomic64_inc(&fnic_stats->misc_stats.frame_errors); 869 FNIC_FCS_DBG(KERN_DEBUG, fnic->lport->host, 870 "fnic rq_cmpl fcoe x%x fcsok x%x" 871 " pkterr x%x fcoe_fc_crc_ok x%x, fcoe_enc_err" 872 " x%x\n", 873 fcoe, fcs_ok, packet_error, 874 fcoe_fc_crc_ok, fcoe_enc_error); 875 goto drop; 876 } 877 878 spin_lock_irqsave(&fnic->fnic_lock, flags); 879 if (fnic->stop_rx_link_events) { 880 spin_unlock_irqrestore(&fnic->fnic_lock, flags); 881 goto drop; 882 } 883 fr_dev(fp) = fnic->lport; 884 spin_unlock_irqrestore(&fnic->fnic_lock, flags); 885 if ((fnic_fc_trace_set_data(fnic->lport->host->host_no, FNIC_FC_RECV, 886 (char *)skb->data, skb->len)) != 0) { 887 printk(KERN_ERR "fnic ctlr frame trace error!!!"); 888 } 889 890 skb_queue_tail(&fnic->frame_queue, skb); 891 queue_work(fnic_event_queue, &fnic->frame_work); 892 893 return; 894 drop: 895 dev_kfree_skb_irq(skb); 896 } 897 898 static int fnic_rq_cmpl_handler_cont(struct vnic_dev *vdev, 899 struct cq_desc *cq_desc, u8 type, 900 u16 q_number, u16 completed_index, 901 void *opaque) 902 { 903 struct fnic *fnic = vnic_dev_priv(vdev); 904 905 vnic_rq_service(&fnic->rq[q_number], cq_desc, completed_index, 906 VNIC_RQ_RETURN_DESC, fnic_rq_cmpl_frame_recv, 907 NULL); 908 return 0; 909 } 910 911 int fnic_rq_cmpl_handler(struct fnic *fnic, int rq_work_to_do) 912 { 913 unsigned int tot_rq_work_done = 0, cur_work_done; 914 unsigned int i; 915 int err; 916 917 for (i = 0; i < fnic->rq_count; i++) { 918 cur_work_done = vnic_cq_service(&fnic->cq[i], rq_work_to_do, 919 fnic_rq_cmpl_handler_cont, 920 NULL); 921 if (cur_work_done) { 922 err = vnic_rq_fill(&fnic->rq[i], fnic_alloc_rq_frame); 923 if (err) 924 shost_printk(KERN_ERR, fnic->lport->host, 925 "fnic_alloc_rq_frame can't alloc" 926 " frame\n"); 927 } 928 tot_rq_work_done += cur_work_done; 929 } 930 931 return tot_rq_work_done; 932 } 933 934 /* 935 * This function is called once at init time to allocate and fill RQ 936 * buffers. Subsequently, it is called in the interrupt context after RQ 937 * buffer processing to replenish the buffers in the RQ 938 */ 939 int fnic_alloc_rq_frame(struct vnic_rq *rq) 940 { 941 struct fnic *fnic = vnic_dev_priv(rq->vdev); 942 struct sk_buff *skb; 943 u16 len; 944 dma_addr_t pa; 945 int r; 946 947 len = FC_FRAME_HEADROOM + FC_MAX_FRAME + FC_FRAME_TAILROOM; 948 skb = dev_alloc_skb(len); 949 if (!skb) { 950 FNIC_FCS_DBG(KERN_DEBUG, fnic->lport->host, 951 "Unable to allocate RQ sk_buff\n"); 952 return -ENOMEM; 953 } 954 skb_reset_mac_header(skb); 955 skb_reset_transport_header(skb); 956 skb_reset_network_header(skb); 957 skb_put(skb, len); 958 pa = pci_map_single(fnic->pdev, skb->data, len, PCI_DMA_FROMDEVICE); 959 960 if (pci_dma_mapping_error(fnic->pdev, pa)) { 961 r = -ENOMEM; 962 printk(KERN_ERR "PCI mapping failed with error %d\n", r); 963 goto free_skb; 964 } 965 966 fnic_queue_rq_desc(rq, skb, pa, len); 967 return 0; 968 969 free_skb: 970 kfree_skb(skb); 971 return r; 972 } 973 974 void fnic_free_rq_buf(struct vnic_rq *rq, struct vnic_rq_buf *buf) 975 { 976 struct fc_frame *fp = buf->os_buf; 977 struct fnic *fnic = vnic_dev_priv(rq->vdev); 978 979 pci_unmap_single(fnic->pdev, buf->dma_addr, buf->len, 980 PCI_DMA_FROMDEVICE); 981 982 dev_kfree_skb(fp_skb(fp)); 983 buf->os_buf = NULL; 984 } 985 986 /** 987 * fnic_eth_send() - Send Ethernet frame. 988 * @fip: fcoe_ctlr instance. 989 * @skb: Ethernet Frame, FIP, without VLAN encapsulation. 990 */ 991 void fnic_eth_send(struct fcoe_ctlr *fip, struct sk_buff *skb) 992 { 993 struct fnic *fnic = fnic_from_ctlr(fip); 994 struct vnic_wq *wq = &fnic->wq[0]; 995 dma_addr_t pa; 996 struct ethhdr *eth_hdr; 997 struct vlan_ethhdr *vlan_hdr; 998 unsigned long flags; 999 int r; 1000 1001 if (!fnic->vlan_hw_insert) { 1002 eth_hdr = (struct ethhdr *)skb_mac_header(skb); 1003 vlan_hdr = (struct vlan_ethhdr *)skb_push(skb, 1004 sizeof(*vlan_hdr) - sizeof(*eth_hdr)); 1005 memcpy(vlan_hdr, eth_hdr, 2 * ETH_ALEN); 1006 vlan_hdr->h_vlan_proto = htons(ETH_P_8021Q); 1007 vlan_hdr->h_vlan_encapsulated_proto = eth_hdr->h_proto; 1008 vlan_hdr->h_vlan_TCI = htons(fnic->vlan_id); 1009 if ((fnic_fc_trace_set_data(fnic->lport->host->host_no, 1010 FNIC_FC_SEND|0x80, (char *)eth_hdr, skb->len)) != 0) { 1011 printk(KERN_ERR "fnic ctlr frame trace error!!!"); 1012 } 1013 } else { 1014 if ((fnic_fc_trace_set_data(fnic->lport->host->host_no, 1015 FNIC_FC_SEND|0x80, (char *)skb->data, skb->len)) != 0) { 1016 printk(KERN_ERR "fnic ctlr frame trace error!!!"); 1017 } 1018 } 1019 1020 pa = pci_map_single(fnic->pdev, skb->data, skb->len, PCI_DMA_TODEVICE); 1021 1022 r = pci_dma_mapping_error(fnic->pdev, pa); 1023 if (r) { 1024 printk(KERN_ERR "PCI mapping failed with error %d\n", r); 1025 goto free_skb; 1026 } 1027 1028 spin_lock_irqsave(&fnic->wq_lock[0], flags); 1029 if (!vnic_wq_desc_avail(wq)) 1030 goto irq_restore; 1031 1032 fnic_queue_wq_eth_desc(wq, skb, pa, skb->len, 1033 0 /* hw inserts cos value */, 1034 fnic->vlan_id, 1); 1035 spin_unlock_irqrestore(&fnic->wq_lock[0], flags); 1036 return; 1037 1038 irq_restore: 1039 spin_unlock_irqrestore(&fnic->wq_lock[0], flags); 1040 pci_unmap_single(fnic->pdev, pa, skb->len, PCI_DMA_TODEVICE); 1041 free_skb: 1042 kfree_skb(skb); 1043 } 1044 1045 /* 1046 * Send FC frame. 1047 */ 1048 static int fnic_send_frame(struct fnic *fnic, struct fc_frame *fp) 1049 { 1050 struct vnic_wq *wq = &fnic->wq[0]; 1051 struct sk_buff *skb; 1052 dma_addr_t pa; 1053 struct ethhdr *eth_hdr; 1054 struct vlan_ethhdr *vlan_hdr; 1055 struct fcoe_hdr *fcoe_hdr; 1056 struct fc_frame_header *fh; 1057 u32 tot_len, eth_hdr_len; 1058 int ret = 0; 1059 unsigned long flags; 1060 1061 fh = fc_frame_header_get(fp); 1062 skb = fp_skb(fp); 1063 1064 if (unlikely(fh->fh_r_ctl == FC_RCTL_ELS_REQ) && 1065 fcoe_ctlr_els_send(&fnic->ctlr, fnic->lport, skb)) 1066 return 0; 1067 1068 if (!fnic->vlan_hw_insert) { 1069 eth_hdr_len = sizeof(*vlan_hdr) + sizeof(*fcoe_hdr); 1070 vlan_hdr = (struct vlan_ethhdr *)skb_push(skb, eth_hdr_len); 1071 eth_hdr = (struct ethhdr *)vlan_hdr; 1072 vlan_hdr->h_vlan_proto = htons(ETH_P_8021Q); 1073 vlan_hdr->h_vlan_encapsulated_proto = htons(ETH_P_FCOE); 1074 vlan_hdr->h_vlan_TCI = htons(fnic->vlan_id); 1075 fcoe_hdr = (struct fcoe_hdr *)(vlan_hdr + 1); 1076 } else { 1077 eth_hdr_len = sizeof(*eth_hdr) + sizeof(*fcoe_hdr); 1078 eth_hdr = (struct ethhdr *)skb_push(skb, eth_hdr_len); 1079 eth_hdr->h_proto = htons(ETH_P_FCOE); 1080 fcoe_hdr = (struct fcoe_hdr *)(eth_hdr + 1); 1081 } 1082 1083 if (fnic->ctlr.map_dest) 1084 fc_fcoe_set_mac(eth_hdr->h_dest, fh->fh_d_id); 1085 else 1086 memcpy(eth_hdr->h_dest, fnic->ctlr.dest_addr, ETH_ALEN); 1087 memcpy(eth_hdr->h_source, fnic->data_src_addr, ETH_ALEN); 1088 1089 tot_len = skb->len; 1090 BUG_ON(tot_len % 4); 1091 1092 memset(fcoe_hdr, 0, sizeof(*fcoe_hdr)); 1093 fcoe_hdr->fcoe_sof = fr_sof(fp); 1094 if (FC_FCOE_VER) 1095 FC_FCOE_ENCAPS_VER(fcoe_hdr, FC_FCOE_VER); 1096 1097 pa = pci_map_single(fnic->pdev, eth_hdr, tot_len, PCI_DMA_TODEVICE); 1098 1099 if (pci_dma_mapping_error(fnic->pdev, pa)) { 1100 ret = -ENOMEM; 1101 printk(KERN_ERR "DMA map failed with error %d\n", ret); 1102 goto free_skb_on_err; 1103 } 1104 1105 if ((fnic_fc_trace_set_data(fnic->lport->host->host_no, FNIC_FC_SEND, 1106 (char *)eth_hdr, tot_len)) != 0) { 1107 printk(KERN_ERR "fnic ctlr frame trace error!!!"); 1108 } 1109 1110 spin_lock_irqsave(&fnic->wq_lock[0], flags); 1111 1112 if (!vnic_wq_desc_avail(wq)) { 1113 pci_unmap_single(fnic->pdev, pa, 1114 tot_len, PCI_DMA_TODEVICE); 1115 ret = -1; 1116 goto irq_restore; 1117 } 1118 1119 fnic_queue_wq_desc(wq, skb, pa, tot_len, fr_eof(fp), 1120 0 /* hw inserts cos value */, 1121 fnic->vlan_id, 1, 1, 1); 1122 1123 irq_restore: 1124 spin_unlock_irqrestore(&fnic->wq_lock[0], flags); 1125 1126 free_skb_on_err: 1127 if (ret) 1128 dev_kfree_skb_any(fp_skb(fp)); 1129 1130 return ret; 1131 } 1132 1133 /* 1134 * fnic_send 1135 * Routine to send a raw frame 1136 */ 1137 int fnic_send(struct fc_lport *lp, struct fc_frame *fp) 1138 { 1139 struct fnic *fnic = lport_priv(lp); 1140 unsigned long flags; 1141 1142 if (fnic->in_remove) { 1143 dev_kfree_skb(fp_skb(fp)); 1144 return -1; 1145 } 1146 1147 /* 1148 * Queue frame if in a transitional state. 1149 * This occurs while registering the Port_ID / MAC address after FLOGI. 1150 */ 1151 spin_lock_irqsave(&fnic->fnic_lock, flags); 1152 if (fnic->state != FNIC_IN_FC_MODE && fnic->state != FNIC_IN_ETH_MODE) { 1153 skb_queue_tail(&fnic->tx_queue, fp_skb(fp)); 1154 spin_unlock_irqrestore(&fnic->fnic_lock, flags); 1155 return 0; 1156 } 1157 spin_unlock_irqrestore(&fnic->fnic_lock, flags); 1158 1159 return fnic_send_frame(fnic, fp); 1160 } 1161 1162 /** 1163 * fnic_flush_tx() - send queued frames. 1164 * @fnic: fnic device 1165 * 1166 * Send frames that were waiting to go out in FC or Ethernet mode. 1167 * Whenever changing modes we purge queued frames, so these frames should 1168 * be queued for the stable mode that we're in, either FC or Ethernet. 1169 * 1170 * Called without fnic_lock held. 1171 */ 1172 void fnic_flush_tx(struct fnic *fnic) 1173 { 1174 struct sk_buff *skb; 1175 struct fc_frame *fp; 1176 1177 while ((skb = skb_dequeue(&fnic->tx_queue))) { 1178 fp = (struct fc_frame *)skb; 1179 fnic_send_frame(fnic, fp); 1180 } 1181 } 1182 1183 /** 1184 * fnic_set_eth_mode() - put fnic into ethernet mode. 1185 * @fnic: fnic device 1186 * 1187 * Called without fnic lock held. 1188 */ 1189 static void fnic_set_eth_mode(struct fnic *fnic) 1190 { 1191 unsigned long flags; 1192 enum fnic_state old_state; 1193 int ret; 1194 1195 spin_lock_irqsave(&fnic->fnic_lock, flags); 1196 again: 1197 old_state = fnic->state; 1198 switch (old_state) { 1199 case FNIC_IN_FC_MODE: 1200 case FNIC_IN_ETH_TRANS_FC_MODE: 1201 default: 1202 fnic->state = FNIC_IN_FC_TRANS_ETH_MODE; 1203 spin_unlock_irqrestore(&fnic->fnic_lock, flags); 1204 1205 ret = fnic_fw_reset_handler(fnic); 1206 1207 spin_lock_irqsave(&fnic->fnic_lock, flags); 1208 if (fnic->state != FNIC_IN_FC_TRANS_ETH_MODE) 1209 goto again; 1210 if (ret) 1211 fnic->state = old_state; 1212 break; 1213 1214 case FNIC_IN_FC_TRANS_ETH_MODE: 1215 case FNIC_IN_ETH_MODE: 1216 break; 1217 } 1218 spin_unlock_irqrestore(&fnic->fnic_lock, flags); 1219 } 1220 1221 static void fnic_wq_complete_frame_send(struct vnic_wq *wq, 1222 struct cq_desc *cq_desc, 1223 struct vnic_wq_buf *buf, void *opaque) 1224 { 1225 struct sk_buff *skb = buf->os_buf; 1226 struct fc_frame *fp = (struct fc_frame *)skb; 1227 struct fnic *fnic = vnic_dev_priv(wq->vdev); 1228 1229 pci_unmap_single(fnic->pdev, buf->dma_addr, 1230 buf->len, PCI_DMA_TODEVICE); 1231 dev_kfree_skb_irq(fp_skb(fp)); 1232 buf->os_buf = NULL; 1233 } 1234 1235 static int fnic_wq_cmpl_handler_cont(struct vnic_dev *vdev, 1236 struct cq_desc *cq_desc, u8 type, 1237 u16 q_number, u16 completed_index, 1238 void *opaque) 1239 { 1240 struct fnic *fnic = vnic_dev_priv(vdev); 1241 unsigned long flags; 1242 1243 spin_lock_irqsave(&fnic->wq_lock[q_number], flags); 1244 vnic_wq_service(&fnic->wq[q_number], cq_desc, completed_index, 1245 fnic_wq_complete_frame_send, NULL); 1246 spin_unlock_irqrestore(&fnic->wq_lock[q_number], flags); 1247 1248 return 0; 1249 } 1250 1251 int fnic_wq_cmpl_handler(struct fnic *fnic, int work_to_do) 1252 { 1253 unsigned int wq_work_done = 0; 1254 unsigned int i; 1255 1256 for (i = 0; i < fnic->raw_wq_count; i++) { 1257 wq_work_done += vnic_cq_service(&fnic->cq[fnic->rq_count+i], 1258 work_to_do, 1259 fnic_wq_cmpl_handler_cont, 1260 NULL); 1261 } 1262 1263 return wq_work_done; 1264 } 1265 1266 1267 void fnic_free_wq_buf(struct vnic_wq *wq, struct vnic_wq_buf *buf) 1268 { 1269 struct fc_frame *fp = buf->os_buf; 1270 struct fnic *fnic = vnic_dev_priv(wq->vdev); 1271 1272 pci_unmap_single(fnic->pdev, buf->dma_addr, 1273 buf->len, PCI_DMA_TODEVICE); 1274 1275 dev_kfree_skb(fp_skb(fp)); 1276 buf->os_buf = NULL; 1277 } 1278 1279 void fnic_fcoe_reset_vlans(struct fnic *fnic) 1280 { 1281 unsigned long flags; 1282 struct fcoe_vlan *vlan; 1283 struct fcoe_vlan *next; 1284 1285 /* 1286 * indicate a link down to fcoe so that all fcf's are free'd 1287 * might not be required since we did this before sending vlan 1288 * discovery request 1289 */ 1290 spin_lock_irqsave(&fnic->vlans_lock, flags); 1291 if (!list_empty(&fnic->vlans)) { 1292 list_for_each_entry_safe(vlan, next, &fnic->vlans, list) { 1293 list_del(&vlan->list); 1294 kfree(vlan); 1295 } 1296 } 1297 spin_unlock_irqrestore(&fnic->vlans_lock, flags); 1298 } 1299 1300 void fnic_handle_fip_timer(struct fnic *fnic) 1301 { 1302 unsigned long flags; 1303 struct fcoe_vlan *vlan; 1304 struct fnic_stats *fnic_stats = &fnic->fnic_stats; 1305 u64 sol_time; 1306 1307 spin_lock_irqsave(&fnic->fnic_lock, flags); 1308 if (fnic->stop_rx_link_events) { 1309 spin_unlock_irqrestore(&fnic->fnic_lock, flags); 1310 return; 1311 } 1312 spin_unlock_irqrestore(&fnic->fnic_lock, flags); 1313 1314 if (fnic->ctlr.mode == FIP_MODE_NON_FIP) 1315 return; 1316 1317 spin_lock_irqsave(&fnic->vlans_lock, flags); 1318 if (list_empty(&fnic->vlans)) { 1319 spin_unlock_irqrestore(&fnic->vlans_lock, flags); 1320 /* no vlans available, try again */ 1321 if (printk_ratelimit()) 1322 FNIC_FCS_DBG(KERN_DEBUG, fnic->lport->host, 1323 "Start VLAN Discovery\n"); 1324 fnic_event_enq(fnic, FNIC_EVT_START_VLAN_DISC); 1325 return; 1326 } 1327 1328 vlan = list_first_entry(&fnic->vlans, struct fcoe_vlan, list); 1329 shost_printk(KERN_DEBUG, fnic->lport->host, 1330 "fip_timer: vlan %d state %d sol_count %d\n", 1331 vlan->vid, vlan->state, vlan->sol_count); 1332 switch (vlan->state) { 1333 case FIP_VLAN_USED: 1334 FNIC_FCS_DBG(KERN_DEBUG, fnic->lport->host, 1335 "FIP VLAN is selected for FC transaction\n"); 1336 spin_unlock_irqrestore(&fnic->vlans_lock, flags); 1337 break; 1338 case FIP_VLAN_FAILED: 1339 spin_unlock_irqrestore(&fnic->vlans_lock, flags); 1340 /* if all vlans are in failed state, restart vlan disc */ 1341 if (printk_ratelimit()) 1342 FNIC_FCS_DBG(KERN_DEBUG, fnic->lport->host, 1343 "Start VLAN Discovery\n"); 1344 fnic_event_enq(fnic, FNIC_EVT_START_VLAN_DISC); 1345 break; 1346 case FIP_VLAN_SENT: 1347 if (vlan->sol_count >= FCOE_CTLR_MAX_SOL) { 1348 /* 1349 * no response on this vlan, remove from the list. 1350 * Try the next vlan 1351 */ 1352 shost_printk(KERN_INFO, fnic->lport->host, 1353 "Dequeue this VLAN ID %d from list\n", 1354 vlan->vid); 1355 list_del(&vlan->list); 1356 kfree(vlan); 1357 vlan = NULL; 1358 if (list_empty(&fnic->vlans)) { 1359 /* we exhausted all vlans, restart vlan disc */ 1360 spin_unlock_irqrestore(&fnic->vlans_lock, 1361 flags); 1362 shost_printk(KERN_INFO, fnic->lport->host, 1363 "fip_timer: vlan list empty, " 1364 "trigger vlan disc\n"); 1365 fnic_event_enq(fnic, FNIC_EVT_START_VLAN_DISC); 1366 return; 1367 } 1368 /* check the next vlan */ 1369 vlan = list_first_entry(&fnic->vlans, struct fcoe_vlan, 1370 list); 1371 fnic->set_vlan(fnic, vlan->vid); 1372 vlan->state = FIP_VLAN_SENT; /* sent now */ 1373 } 1374 spin_unlock_irqrestore(&fnic->vlans_lock, flags); 1375 atomic64_inc(&fnic_stats->vlan_stats.sol_expiry_count); 1376 vlan->sol_count++; 1377 sol_time = jiffies + msecs_to_jiffies 1378 (FCOE_CTLR_START_DELAY); 1379 mod_timer(&fnic->fip_timer, round_jiffies(sol_time)); 1380 break; 1381 } 1382 } 1383