1 /******************************************************************* 2 * This file is part of the Emulex Linux Device Driver for * 3 * Fibre Channel Host Bus Adapters. * 4 * Copyright (C) 2017-2024 Broadcom. All Rights Reserved. The term * 5 * “Broadcom” refers to Broadcom Inc. and/or its subsidiaries. * 6 * Copyright (C) 2004-2016 Emulex. All rights reserved. * 7 * EMULEX and SLI are trademarks of Emulex. * 8 * www.broadcom.com * 9 * Portions Copyright (C) 2004-2005 Christoph Hellwig * 10 * * 11 * This program is free software; you can redistribute it and/or * 12 * modify it under the terms of version 2 of the GNU General * 13 * Public License as published by the Free Software Foundation. * 14 * This program is distributed in the hope that it will be useful. * 15 * ALL EXPRESS OR IMPLIED CONDITIONS, REPRESENTATIONS AND * 16 * WARRANTIES, INCLUDING ANY IMPLIED WARRANTY OF MERCHANTABILITY, * 17 * FITNESS FOR A PARTICULAR PURPOSE, OR NON-INFRINGEMENT, ARE * 18 * DISCLAIMED, EXCEPT TO THE EXTENT THAT SUCH DISCLAIMERS ARE HELD * 19 * TO BE LEGALLY INVALID. See the GNU General Public License for * 20 * more details, a copy of which can be found in the file COPYING * 21 * included with this package. * 22 *******************************************************************/ 23 /* See Fibre Channel protocol T11 FC-LS for details */ 24 #include <linux/blkdev.h> 25 #include <linux/pci.h> 26 #include <linux/slab.h> 27 #include <linux/interrupt.h> 28 #include <linux/delay.h> 29 30 #include <scsi/scsi.h> 31 #include <scsi/scsi_device.h> 32 #include <scsi/scsi_host.h> 33 #include <scsi/scsi_transport_fc.h> 34 #include <uapi/scsi/fc/fc_fs.h> 35 #include <uapi/scsi/fc/fc_els.h> 36 37 #include "lpfc_hw4.h" 38 #include "lpfc_hw.h" 39 #include "lpfc_sli.h" 40 #include "lpfc_sli4.h" 41 #include "lpfc_nl.h" 42 #include "lpfc_disc.h" 43 #include "lpfc_scsi.h" 44 #include "lpfc.h" 45 #include "lpfc_logmsg.h" 46 #include "lpfc_crtn.h" 47 #include "lpfc_vport.h" 48 #include "lpfc_debugfs.h" 49 50 static int lpfc_els_retry(struct lpfc_hba *, struct lpfc_iocbq *, 51 struct lpfc_iocbq *); 52 static void lpfc_cmpl_fabric_iocb(struct lpfc_hba *, struct lpfc_iocbq *, 53 struct lpfc_iocbq *); 54 static void lpfc_fabric_abort_vport(struct lpfc_vport *vport); 55 static int lpfc_issue_els_fdisc(struct lpfc_vport *vport, 56 struct lpfc_nodelist *ndlp, uint8_t retry); 57 static int lpfc_issue_fabric_iocb(struct lpfc_hba *phba, 58 struct lpfc_iocbq *iocb); 59 static void lpfc_cmpl_els_edc(struct lpfc_hba *phba, 60 struct lpfc_iocbq *cmdiocb, 61 struct lpfc_iocbq *rspiocb); 62 static void lpfc_cmpl_els_uvem(struct lpfc_hba *, struct lpfc_iocbq *, 63 struct lpfc_iocbq *); 64 65 static int lpfc_max_els_tries = 3; 66 67 static void lpfc_init_cs_ctl_bitmap(struct lpfc_vport *vport); 68 static void lpfc_vmid_set_cs_ctl_range(struct lpfc_vport *vport, u32 min, u32 max); 69 static void lpfc_vmid_put_cs_ctl(struct lpfc_vport *vport, u32 ctcl_vmid); 70 71 /** 72 * lpfc_els_chk_latt - Check host link attention event for a vport 73 * @vport: pointer to a host virtual N_Port data structure. 74 * 75 * This routine checks whether there is an outstanding host link 76 * attention event during the discovery process with the @vport. It is done 77 * by reading the HBA's Host Attention (HA) register. If there is any host 78 * link attention events during this @vport's discovery process, the @vport 79 * shall be marked as FC_ABORT_DISCOVERY, a host link attention clear shall 80 * be issued if the link state is not already in host link cleared state, 81 * and a return code shall indicate whether the host link attention event 82 * had happened. 83 * 84 * Note that, if either the host link is in state LPFC_LINK_DOWN or @vport 85 * state in LPFC_VPORT_READY, the request for checking host link attention 86 * event will be ignored and a return code shall indicate no host link 87 * attention event had happened. 88 * 89 * Return codes 90 * 0 - no host link attention event happened 91 * 1 - host link attention event happened 92 **/ 93 int 94 lpfc_els_chk_latt(struct lpfc_vport *vport) 95 { 96 struct lpfc_hba *phba = vport->phba; 97 uint32_t ha_copy; 98 99 if (vport->port_state >= LPFC_VPORT_READY || 100 phba->link_state == LPFC_LINK_DOWN || 101 phba->sli_rev > LPFC_SLI_REV3) 102 return 0; 103 104 /* Read the HBA Host Attention Register */ 105 if (lpfc_readl(phba->HAregaddr, &ha_copy)) 106 return 1; 107 108 if (!(ha_copy & HA_LATT)) 109 return 0; 110 111 /* Pending Link Event during Discovery */ 112 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT, 113 "0237 Pending Link Event during " 114 "Discovery: State x%x\n", 115 phba->pport->port_state); 116 117 /* CLEAR_LA should re-enable link attention events and 118 * we should then immediately take a LATT event. The 119 * LATT processing should call lpfc_linkdown() which 120 * will cleanup any left over in-progress discovery 121 * events. 122 */ 123 set_bit(FC_ABORT_DISCOVERY, &vport->fc_flag); 124 125 if (phba->link_state != LPFC_CLEAR_LA) 126 lpfc_issue_clear_la(phba, vport); 127 128 return 1; 129 } 130 131 static bool lpfc_is_els_acc_rsp(struct lpfc_dmabuf *buf) 132 { 133 struct fc_els_ls_acc *rsp = buf->virt; 134 135 if (rsp && rsp->la_cmd == ELS_LS_ACC) 136 return true; 137 return false; 138 } 139 140 /** 141 * lpfc_prep_els_iocb - Allocate and prepare a lpfc iocb data structure 142 * @vport: pointer to a host virtual N_Port data structure. 143 * @expect_rsp: flag indicating whether response is expected. 144 * @cmd_size: size of the ELS command. 145 * @retry: number of retries to the command when it fails. 146 * @ndlp: pointer to a node-list data structure. 147 * @did: destination identifier. 148 * @elscmd: the ELS command code. 149 * 150 * This routine is used for allocating a lpfc-IOCB data structure from 151 * the driver lpfc-IOCB free-list and prepare the IOCB with the parameters 152 * passed into the routine for discovery state machine to issue an Extended 153 * Link Service (ELS) commands. It is a generic lpfc-IOCB allocation 154 * and preparation routine that is used by all the discovery state machine 155 * routines and the ELS command-specific fields will be later set up by 156 * the individual discovery machine routines after calling this routine 157 * allocating and preparing a generic IOCB data structure. It fills in the 158 * Buffer Descriptor Entries (BDEs), allocates buffers for both command 159 * payload and response payload (if expected). The reference count on the 160 * ndlp is incremented by 1 and the reference to the ndlp is put into 161 * ndlp of the IOCB data structure for this IOCB to hold the ndlp 162 * reference for the command's callback function to access later. 163 * 164 * Return code 165 * Pointer to the newly allocated/prepared els iocb data structure 166 * NULL - when els iocb data structure allocation/preparation failed 167 **/ 168 struct lpfc_iocbq * 169 lpfc_prep_els_iocb(struct lpfc_vport *vport, u8 expect_rsp, 170 u16 cmd_size, u8 retry, 171 struct lpfc_nodelist *ndlp, u32 did, 172 u32 elscmd) 173 { 174 struct lpfc_hba *phba = vport->phba; 175 struct lpfc_iocbq *elsiocb; 176 struct lpfc_dmabuf *pcmd, *prsp, *pbuflist, *bmp; 177 struct ulp_bde64_le *bpl; 178 u32 timeout = 0; 179 180 if (!lpfc_is_link_up(phba)) 181 return NULL; 182 183 /* Allocate buffer for command iocb */ 184 elsiocb = lpfc_sli_get_iocbq(phba); 185 if (!elsiocb) 186 return NULL; 187 188 /* 189 * If this command is for fabric controller and HBA running 190 * in FIP mode send FLOGI, FDISC and LOGO as FIP frames. 191 */ 192 if (did == Fabric_DID && 193 test_bit(HBA_FIP_SUPPORT, &phba->hba_flag) && 194 (elscmd == ELS_CMD_FLOGI || 195 elscmd == ELS_CMD_FDISC || 196 elscmd == ELS_CMD_LOGO)) 197 switch (elscmd) { 198 case ELS_CMD_FLOGI: 199 elsiocb->cmd_flag |= 200 ((LPFC_ELS_ID_FLOGI << LPFC_FIP_ELS_ID_SHIFT) 201 & LPFC_FIP_ELS_ID_MASK); 202 break; 203 case ELS_CMD_FDISC: 204 elsiocb->cmd_flag |= 205 ((LPFC_ELS_ID_FDISC << LPFC_FIP_ELS_ID_SHIFT) 206 & LPFC_FIP_ELS_ID_MASK); 207 break; 208 case ELS_CMD_LOGO: 209 elsiocb->cmd_flag |= 210 ((LPFC_ELS_ID_LOGO << LPFC_FIP_ELS_ID_SHIFT) 211 & LPFC_FIP_ELS_ID_MASK); 212 break; 213 } 214 else 215 elsiocb->cmd_flag &= ~LPFC_FIP_ELS_ID_MASK; 216 217 /* fill in BDEs for command */ 218 /* Allocate buffer for command payload */ 219 pcmd = kmalloc(sizeof(*pcmd), GFP_KERNEL); 220 if (pcmd) 221 pcmd->virt = lpfc_mbuf_alloc(phba, MEM_PRI, &pcmd->phys); 222 if (!pcmd || !pcmd->virt) 223 goto els_iocb_free_pcmb_exit; 224 225 INIT_LIST_HEAD(&pcmd->list); 226 227 /* Allocate buffer for response payload */ 228 if (expect_rsp) { 229 prsp = kmalloc(sizeof(*prsp), GFP_KERNEL); 230 if (prsp) 231 prsp->virt = lpfc_mbuf_alloc(phba, MEM_PRI, 232 &prsp->phys); 233 if (!prsp || !prsp->virt) 234 goto els_iocb_free_prsp_exit; 235 INIT_LIST_HEAD(&prsp->list); 236 } else { 237 prsp = NULL; 238 } 239 240 /* Allocate buffer for Buffer ptr list */ 241 pbuflist = kmalloc(sizeof(*pbuflist), GFP_KERNEL); 242 if (pbuflist) 243 pbuflist->virt = lpfc_mbuf_alloc(phba, MEM_PRI, 244 &pbuflist->phys); 245 if (!pbuflist || !pbuflist->virt) 246 goto els_iocb_free_pbuf_exit; 247 248 INIT_LIST_HEAD(&pbuflist->list); 249 250 if (expect_rsp) { 251 switch (elscmd) { 252 case ELS_CMD_FLOGI: 253 timeout = FF_DEF_RATOV * 2; 254 break; 255 case ELS_CMD_LOGO: 256 timeout = phba->fc_ratov; 257 break; 258 default: 259 timeout = phba->fc_ratov * 2; 260 } 261 262 /* Fill SGE for the num bde count */ 263 elsiocb->num_bdes = 2; 264 } 265 266 if (phba->sli_rev == LPFC_SLI_REV4) 267 bmp = pcmd; 268 else 269 bmp = pbuflist; 270 271 lpfc_sli_prep_els_req_rsp(phba, elsiocb, vport, bmp, cmd_size, did, 272 elscmd, timeout, expect_rsp); 273 274 bpl = (struct ulp_bde64_le *)pbuflist->virt; 275 bpl->addr_low = cpu_to_le32(putPaddrLow(pcmd->phys)); 276 bpl->addr_high = cpu_to_le32(putPaddrHigh(pcmd->phys)); 277 bpl->type_size = cpu_to_le32(cmd_size); 278 bpl->type_size |= cpu_to_le32(ULP_BDE64_TYPE_BDE_64); 279 280 if (expect_rsp) { 281 bpl++; 282 bpl->addr_low = cpu_to_le32(putPaddrLow(prsp->phys)); 283 bpl->addr_high = cpu_to_le32(putPaddrHigh(prsp->phys)); 284 bpl->type_size = cpu_to_le32(FCELSSIZE); 285 bpl->type_size |= cpu_to_le32(ULP_BDE64_TYPE_BDE_64); 286 } 287 288 elsiocb->cmd_dmabuf = pcmd; 289 elsiocb->bpl_dmabuf = pbuflist; 290 elsiocb->retry = retry; 291 elsiocb->vport = vport; 292 elsiocb->drvrTimeout = (phba->fc_ratov << 1) + LPFC_DRVR_TIMEOUT; 293 294 if (prsp) 295 list_add(&prsp->list, &pcmd->list); 296 if (expect_rsp) { 297 /* Xmit ELS command <elsCmd> to remote NPORT <did> */ 298 lpfc_printf_vlog(vport, KERN_INFO, LOG_ELS, 299 "0116 Xmit ELS command x%x to remote " 300 "NPORT x%x I/O tag: x%x, port state:x%x " 301 "rpi x%x fc_flag:x%lx\n", 302 elscmd, did, elsiocb->iotag, 303 vport->port_state, ndlp->nlp_rpi, 304 vport->fc_flag); 305 } else { 306 /* Xmit ELS response <elsCmd> to remote NPORT <did> */ 307 lpfc_printf_vlog(vport, KERN_INFO, LOG_ELS, 308 "0117 Xmit ELS response x%x to remote " 309 "NPORT x%x I/O tag: x%x, size: x%x " 310 "port_state x%x rpi x%x fc_flag x%lx\n", 311 elscmd, ndlp->nlp_DID, elsiocb->iotag, 312 cmd_size, vport->port_state, 313 ndlp->nlp_rpi, vport->fc_flag); 314 } 315 316 return elsiocb; 317 318 els_iocb_free_pbuf_exit: 319 if (expect_rsp) 320 lpfc_mbuf_free(phba, prsp->virt, prsp->phys); 321 kfree(pbuflist); 322 323 els_iocb_free_prsp_exit: 324 lpfc_mbuf_free(phba, pcmd->virt, pcmd->phys); 325 kfree(prsp); 326 327 els_iocb_free_pcmb_exit: 328 kfree(pcmd); 329 lpfc_sli_release_iocbq(phba, elsiocb); 330 return NULL; 331 } 332 333 /** 334 * lpfc_issue_fabric_reglogin - Issue fabric registration login for a vport 335 * @vport: pointer to a host virtual N_Port data structure. 336 * 337 * This routine issues a fabric registration login for a @vport. An 338 * active ndlp node with Fabric_DID must already exist for this @vport. 339 * The routine invokes two mailbox commands to carry out fabric registration 340 * login through the HBA firmware: the first mailbox command requests the 341 * HBA to perform link configuration for the @vport; and the second mailbox 342 * command requests the HBA to perform the actual fabric registration login 343 * with the @vport. 344 * 345 * Return code 346 * 0 - successfully issued fabric registration login for @vport 347 * -ENXIO -- failed to issue fabric registration login for @vport 348 **/ 349 int 350 lpfc_issue_fabric_reglogin(struct lpfc_vport *vport) 351 { 352 struct lpfc_hba *phba = vport->phba; 353 LPFC_MBOXQ_t *mbox; 354 struct lpfc_nodelist *ndlp; 355 struct serv_parm *sp; 356 int rc; 357 int err = 0; 358 359 sp = &phba->fc_fabparam; 360 ndlp = lpfc_findnode_did(vport, Fabric_DID); 361 if (!ndlp) { 362 err = 1; 363 goto fail; 364 } 365 366 mbox = mempool_alloc(phba->mbox_mem_pool, GFP_KERNEL); 367 if (!mbox) { 368 err = 2; 369 goto fail; 370 } 371 372 vport->port_state = LPFC_FABRIC_CFG_LINK; 373 lpfc_config_link(phba, mbox); 374 mbox->mbox_cmpl = lpfc_sli_def_mbox_cmpl; 375 mbox->vport = vport; 376 377 rc = lpfc_sli_issue_mbox(phba, mbox, MBX_NOWAIT); 378 if (rc == MBX_NOT_FINISHED) { 379 err = 3; 380 goto fail_free_mbox; 381 } 382 383 mbox = mempool_alloc(phba->mbox_mem_pool, GFP_KERNEL); 384 if (!mbox) { 385 err = 4; 386 goto fail; 387 } 388 rc = lpfc_reg_rpi(phba, vport->vpi, Fabric_DID, (uint8_t *)sp, mbox, 389 ndlp->nlp_rpi); 390 if (rc) { 391 err = 5; 392 goto fail_free_mbox; 393 } 394 395 mbox->mbox_cmpl = lpfc_mbx_cmpl_fabric_reg_login; 396 mbox->vport = vport; 397 /* increment the reference count on ndlp to hold reference 398 * for the callback routine. 399 */ 400 mbox->ctx_ndlp = lpfc_nlp_get(ndlp); 401 if (!mbox->ctx_ndlp) { 402 err = 6; 403 goto fail_free_mbox; 404 } 405 406 rc = lpfc_sli_issue_mbox(phba, mbox, MBX_NOWAIT); 407 if (rc == MBX_NOT_FINISHED) { 408 err = 7; 409 goto fail_issue_reg_login; 410 } 411 412 return 0; 413 414 fail_issue_reg_login: 415 /* decrement the reference count on ndlp just incremented 416 * for the failed mbox command. 417 */ 418 lpfc_nlp_put(ndlp); 419 fail_free_mbox: 420 lpfc_mbox_rsrc_cleanup(phba, mbox, MBOX_THD_UNLOCKED); 421 fail: 422 lpfc_vport_set_state(vport, FC_VPORT_FAILED); 423 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT, 424 "0249 Cannot issue Register Fabric login: Err %d\n", 425 err); 426 return -ENXIO; 427 } 428 429 /** 430 * lpfc_issue_reg_vfi - Register VFI for this vport's fabric login 431 * @vport: pointer to a host virtual N_Port data structure. 432 * 433 * This routine issues a REG_VFI mailbox for the vfi, vpi, fcfi triplet for 434 * the @vport. This mailbox command is necessary for SLI4 port only. 435 * 436 * Return code 437 * 0 - successfully issued REG_VFI for @vport 438 * A failure code otherwise. 439 **/ 440 int 441 lpfc_issue_reg_vfi(struct lpfc_vport *vport) 442 { 443 struct lpfc_hba *phba = vport->phba; 444 LPFC_MBOXQ_t *mboxq = NULL; 445 struct lpfc_nodelist *ndlp; 446 struct lpfc_dmabuf *dmabuf = NULL; 447 int rc = 0; 448 449 /* move forward in case of SLI4 FC port loopback test and pt2pt mode */ 450 if ((phba->sli_rev == LPFC_SLI_REV4) && 451 !(phba->link_flag & LS_LOOPBACK_MODE) && 452 !test_bit(FC_PT2PT, &vport->fc_flag)) { 453 ndlp = lpfc_findnode_did(vport, Fabric_DID); 454 if (!ndlp) { 455 rc = -ENODEV; 456 goto fail; 457 } 458 } 459 460 mboxq = mempool_alloc(phba->mbox_mem_pool, GFP_KERNEL); 461 if (!mboxq) { 462 rc = -ENOMEM; 463 goto fail; 464 } 465 466 /* Supply CSP's only if we are fabric connect or pt-to-pt connect */ 467 if (test_bit(FC_FABRIC, &vport->fc_flag) || 468 test_bit(FC_PT2PT, &vport->fc_flag)) { 469 rc = lpfc_mbox_rsrc_prep(phba, mboxq); 470 if (rc) { 471 rc = -ENOMEM; 472 goto fail_mbox; 473 } 474 dmabuf = mboxq->ctx_buf; 475 memcpy(dmabuf->virt, &phba->fc_fabparam, 476 sizeof(struct serv_parm)); 477 } 478 479 vport->port_state = LPFC_FABRIC_CFG_LINK; 480 if (dmabuf) { 481 lpfc_reg_vfi(mboxq, vport, dmabuf->phys); 482 /* lpfc_reg_vfi memsets the mailbox. Restore the ctx_buf. */ 483 mboxq->ctx_buf = dmabuf; 484 } else { 485 lpfc_reg_vfi(mboxq, vport, 0); 486 } 487 488 mboxq->mbox_cmpl = lpfc_mbx_cmpl_reg_vfi; 489 mboxq->vport = vport; 490 rc = lpfc_sli_issue_mbox(phba, mboxq, MBX_NOWAIT); 491 if (rc == MBX_NOT_FINISHED) { 492 rc = -ENXIO; 493 goto fail_mbox; 494 } 495 return 0; 496 497 fail_mbox: 498 lpfc_mbox_rsrc_cleanup(phba, mboxq, MBOX_THD_UNLOCKED); 499 fail: 500 lpfc_vport_set_state(vport, FC_VPORT_FAILED); 501 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT, 502 "0289 Issue Register VFI failed: Err %d\n", rc); 503 return rc; 504 } 505 506 /** 507 * lpfc_issue_unreg_vfi - Unregister VFI for this vport's fabric login 508 * @vport: pointer to a host virtual N_Port data structure. 509 * 510 * This routine issues a UNREG_VFI mailbox with the vfi, vpi, fcfi triplet for 511 * the @vport. This mailbox command is necessary for SLI4 port only. 512 * 513 * Return code 514 * 0 - successfully issued REG_VFI for @vport 515 * A failure code otherwise. 516 **/ 517 int 518 lpfc_issue_unreg_vfi(struct lpfc_vport *vport) 519 { 520 struct lpfc_hba *phba = vport->phba; 521 LPFC_MBOXQ_t *mboxq; 522 int rc; 523 524 mboxq = mempool_alloc(phba->mbox_mem_pool, GFP_KERNEL); 525 if (!mboxq) { 526 lpfc_printf_log(phba, KERN_ERR, LOG_TRACE_EVENT, 527 "2556 UNREG_VFI mbox allocation failed" 528 "HBA state x%x\n", phba->pport->port_state); 529 return -ENOMEM; 530 } 531 532 lpfc_unreg_vfi(mboxq, vport); 533 mboxq->vport = vport; 534 mboxq->mbox_cmpl = lpfc_unregister_vfi_cmpl; 535 536 rc = lpfc_sli_issue_mbox(phba, mboxq, MBX_NOWAIT); 537 if (rc == MBX_NOT_FINISHED) { 538 lpfc_printf_log(phba, KERN_ERR, LOG_TRACE_EVENT, 539 "2557 UNREG_VFI issue mbox failed rc x%x " 540 "HBA state x%x\n", 541 rc, phba->pport->port_state); 542 mempool_free(mboxq, phba->mbox_mem_pool); 543 return -EIO; 544 } 545 546 clear_bit(FC_VFI_REGISTERED, &vport->fc_flag); 547 return 0; 548 } 549 550 /** 551 * lpfc_check_clean_addr_bit - Check whether assigned FCID is clean. 552 * @vport: pointer to a host virtual N_Port data structure. 553 * @sp: pointer to service parameter data structure. 554 * 555 * This routine is called from FLOGI/FDISC completion handler functions. 556 * lpfc_check_clean_addr_bit return 1 when FCID/Fabric portname/ Fabric 557 * node nodename is changed in the completion service parameter else return 558 * 0. This function also set flag in the vport data structure to delay 559 * NP_Port discovery after the FLOGI/FDISC completion if Clean address bit 560 * in FLOGI/FDISC response is cleared and FCID/Fabric portname/ Fabric 561 * node nodename is changed in the completion service parameter. 562 * 563 * Return code 564 * 0 - FCID and Fabric Nodename and Fabric portname is not changed. 565 * 1 - FCID or Fabric Nodename or Fabric portname is changed. 566 * 567 **/ 568 static uint8_t 569 lpfc_check_clean_addr_bit(struct lpfc_vport *vport, 570 struct serv_parm *sp) 571 { 572 struct lpfc_hba *phba = vport->phba; 573 uint8_t fabric_param_changed = 0; 574 575 if ((vport->fc_prevDID != vport->fc_myDID) || 576 memcmp(&vport->fabric_portname, &sp->portName, 577 sizeof(struct lpfc_name)) || 578 memcmp(&vport->fabric_nodename, &sp->nodeName, 579 sizeof(struct lpfc_name)) || 580 (vport->vport_flag & FAWWPN_PARAM_CHG)) { 581 fabric_param_changed = 1; 582 vport->vport_flag &= ~FAWWPN_PARAM_CHG; 583 } 584 /* 585 * Word 1 Bit 31 in common service parameter is overloaded. 586 * Word 1 Bit 31 in FLOGI request is multiple NPort request 587 * Word 1 Bit 31 in FLOGI response is clean address bit 588 * 589 * If fabric parameter is changed and clean address bit is 590 * cleared delay nport discovery if 591 * - vport->fc_prevDID != 0 (not initial discovery) OR 592 * - lpfc_delay_discovery module parameter is set. 593 */ 594 if (fabric_param_changed && !sp->cmn.clean_address_bit && 595 (vport->fc_prevDID || phba->cfg_delay_discovery)) 596 set_bit(FC_DISC_DELAYED, &vport->fc_flag); 597 598 return fabric_param_changed; 599 } 600 601 602 /** 603 * lpfc_cmpl_els_flogi_fabric - Completion function for flogi to a fabric port 604 * @vport: pointer to a host virtual N_Port data structure. 605 * @ndlp: pointer to a node-list data structure. 606 * @sp: pointer to service parameter data structure. 607 * @ulp_word4: command response value 608 * 609 * This routine is invoked by the lpfc_cmpl_els_flogi() completion callback 610 * function to handle the completion of a Fabric Login (FLOGI) into a fabric 611 * port in a fabric topology. It properly sets up the parameters to the @ndlp 612 * from the IOCB response. It also check the newly assigned N_Port ID to the 613 * @vport against the previously assigned N_Port ID. If it is different from 614 * the previously assigned Destination ID (DID), the lpfc_unreg_rpi() routine 615 * is invoked on all the remaining nodes with the @vport to unregister the 616 * Remote Port Indicators (RPIs). Finally, the lpfc_issue_fabric_reglogin() 617 * is invoked to register login to the fabric. 618 * 619 * Return code 620 * 0 - Success (currently, always return 0) 621 **/ 622 static int 623 lpfc_cmpl_els_flogi_fabric(struct lpfc_vport *vport, struct lpfc_nodelist *ndlp, 624 struct serv_parm *sp, uint32_t ulp_word4) 625 { 626 struct lpfc_hba *phba = vport->phba; 627 struct lpfc_nodelist *np; 628 struct lpfc_nodelist *next_np; 629 uint8_t fabric_param_changed; 630 631 set_bit(FC_FABRIC, &vport->fc_flag); 632 633 phba->fc_edtov = be32_to_cpu(sp->cmn.e_d_tov); 634 if (sp->cmn.edtovResolution) /* E_D_TOV ticks are in nanoseconds */ 635 phba->fc_edtov = (phba->fc_edtov + 999999) / 1000000; 636 637 phba->fc_edtovResol = sp->cmn.edtovResolution; 638 phba->fc_ratov = (be32_to_cpu(sp->cmn.w2.r_a_tov) + 999) / 1000; 639 640 if (phba->fc_topology == LPFC_TOPOLOGY_LOOP) 641 set_bit(FC_PUBLIC_LOOP, &vport->fc_flag); 642 643 vport->fc_myDID = ulp_word4 & Mask_DID; 644 memcpy(&ndlp->nlp_portname, &sp->portName, sizeof(struct lpfc_name)); 645 memcpy(&ndlp->nlp_nodename, &sp->nodeName, sizeof(struct lpfc_name)); 646 ndlp->nlp_class_sup = 0; 647 if (sp->cls1.classValid) 648 ndlp->nlp_class_sup |= FC_COS_CLASS1; 649 if (sp->cls2.classValid) 650 ndlp->nlp_class_sup |= FC_COS_CLASS2; 651 if (sp->cls3.classValid) 652 ndlp->nlp_class_sup |= FC_COS_CLASS3; 653 if (sp->cls4.classValid) 654 ndlp->nlp_class_sup |= FC_COS_CLASS4; 655 ndlp->nlp_maxframe = ((sp->cmn.bbRcvSizeMsb & 0x0F) << 8) | 656 sp->cmn.bbRcvSizeLsb; 657 658 fabric_param_changed = lpfc_check_clean_addr_bit(vport, sp); 659 if (fabric_param_changed) { 660 /* Reset FDMI attribute masks based on config parameter */ 661 if (phba->cfg_enable_SmartSAN || 662 (phba->cfg_fdmi_on == LPFC_FDMI_SUPPORT)) { 663 /* Setup appropriate attribute masks */ 664 vport->fdmi_hba_mask = LPFC_FDMI2_HBA_ATTR; 665 if (phba->cfg_enable_SmartSAN) 666 vport->fdmi_port_mask = LPFC_FDMI2_SMART_ATTR; 667 else 668 vport->fdmi_port_mask = LPFC_FDMI2_PORT_ATTR; 669 } else { 670 vport->fdmi_hba_mask = 0; 671 vport->fdmi_port_mask = 0; 672 } 673 674 } 675 memcpy(&vport->fabric_portname, &sp->portName, 676 sizeof(struct lpfc_name)); 677 memcpy(&vport->fabric_nodename, &sp->nodeName, 678 sizeof(struct lpfc_name)); 679 memcpy(&phba->fc_fabparam, sp, sizeof(struct serv_parm)); 680 681 if (phba->sli3_options & LPFC_SLI3_NPIV_ENABLED) { 682 if (sp->cmn.response_multiple_NPort) { 683 lpfc_printf_vlog(vport, KERN_WARNING, 684 LOG_ELS | LOG_VPORT, 685 "1816 FLOGI NPIV supported, " 686 "response data 0x%x\n", 687 sp->cmn.response_multiple_NPort); 688 spin_lock_irq(&phba->hbalock); 689 phba->link_flag |= LS_NPIV_FAB_SUPPORTED; 690 spin_unlock_irq(&phba->hbalock); 691 } else { 692 /* Because we asked f/w for NPIV it still expects us 693 to call reg_vnpid at least for the physical host */ 694 lpfc_printf_vlog(vport, KERN_WARNING, 695 LOG_ELS | LOG_VPORT, 696 "1817 Fabric does not support NPIV " 697 "- configuring single port mode.\n"); 698 spin_lock_irq(&phba->hbalock); 699 phba->link_flag &= ~LS_NPIV_FAB_SUPPORTED; 700 spin_unlock_irq(&phba->hbalock); 701 } 702 } 703 704 /* 705 * For FC we need to do some special processing because of the SLI 706 * Port's default settings of the Common Service Parameters. 707 */ 708 if ((phba->sli_rev == LPFC_SLI_REV4) && 709 (phba->sli4_hba.lnk_info.lnk_tp == LPFC_LNK_TYPE_FC)) { 710 /* If physical FC port changed, unreg VFI and ALL VPIs / RPIs */ 711 if (fabric_param_changed) 712 lpfc_unregister_fcf_prep(phba); 713 714 /* This should just update the VFI CSPs*/ 715 if (test_bit(FC_VFI_REGISTERED, &vport->fc_flag)) 716 lpfc_issue_reg_vfi(vport); 717 } 718 719 if (fabric_param_changed && 720 !test_bit(FC_VPORT_NEEDS_REG_VPI, &vport->fc_flag)) { 721 722 /* If our NportID changed, we need to ensure all 723 * remaining NPORTs get unreg_login'ed. 724 */ 725 list_for_each_entry_safe(np, next_np, 726 &vport->fc_nodes, nlp_listp) { 727 if ((np->nlp_state != NLP_STE_NPR_NODE) || 728 !(np->nlp_flag & NLP_NPR_ADISC)) 729 continue; 730 spin_lock_irq(&np->lock); 731 np->nlp_flag &= ~NLP_NPR_ADISC; 732 spin_unlock_irq(&np->lock); 733 lpfc_unreg_rpi(vport, np); 734 } 735 lpfc_cleanup_pending_mbox(vport); 736 737 if (phba->sli_rev == LPFC_SLI_REV4) { 738 lpfc_sli4_unreg_all_rpis(vport); 739 lpfc_mbx_unreg_vpi(vport); 740 set_bit(FC_VPORT_NEEDS_INIT_VPI, &vport->fc_flag); 741 } 742 743 /* 744 * For SLI3 and SLI4, the VPI needs to be reregistered in 745 * response to this fabric parameter change event. 746 */ 747 set_bit(FC_VPORT_NEEDS_REG_VPI, &vport->fc_flag); 748 } else if ((phba->sli_rev == LPFC_SLI_REV4) && 749 !test_bit(FC_VPORT_NEEDS_REG_VPI, &vport->fc_flag)) { 750 /* 751 * Driver needs to re-reg VPI in order for f/w 752 * to update the MAC address. 753 */ 754 lpfc_nlp_set_state(vport, ndlp, NLP_STE_UNMAPPED_NODE); 755 lpfc_register_new_vport(phba, vport, ndlp); 756 return 0; 757 } 758 759 if (phba->sli_rev < LPFC_SLI_REV4) { 760 lpfc_nlp_set_state(vport, ndlp, NLP_STE_REG_LOGIN_ISSUE); 761 if (phba->sli3_options & LPFC_SLI3_NPIV_ENABLED && 762 test_bit(FC_VPORT_NEEDS_REG_VPI, &vport->fc_flag)) 763 lpfc_register_new_vport(phba, vport, ndlp); 764 else 765 lpfc_issue_fabric_reglogin(vport); 766 } else { 767 ndlp->nlp_type |= NLP_FABRIC; 768 lpfc_nlp_set_state(vport, ndlp, NLP_STE_UNMAPPED_NODE); 769 if ((!test_bit(FC_VPORT_NEEDS_REG_VPI, &vport->fc_flag)) && 770 (vport->vpi_state & LPFC_VPI_REGISTERED)) { 771 lpfc_start_fdiscs(phba); 772 lpfc_do_scr_ns_plogi(phba, vport); 773 } else if (test_bit(FC_VFI_REGISTERED, &vport->fc_flag)) 774 lpfc_issue_init_vpi(vport); 775 else { 776 lpfc_printf_vlog(vport, KERN_INFO, LOG_ELS, 777 "3135 Need register VFI: (x%x/%x)\n", 778 vport->fc_prevDID, vport->fc_myDID); 779 lpfc_issue_reg_vfi(vport); 780 } 781 } 782 return 0; 783 } 784 785 /** 786 * lpfc_cmpl_els_flogi_nport - Completion function for flogi to an N_Port 787 * @vport: pointer to a host virtual N_Port data structure. 788 * @ndlp: pointer to a node-list data structure. 789 * @sp: pointer to service parameter data structure. 790 * 791 * This routine is invoked by the lpfc_cmpl_els_flogi() completion callback 792 * function to handle the completion of a Fabric Login (FLOGI) into an N_Port 793 * in a point-to-point topology. First, the @vport's N_Port Name is compared 794 * with the received N_Port Name: if the @vport's N_Port Name is greater than 795 * the received N_Port Name lexicographically, this node shall assign local 796 * N_Port ID (PT2PT_LocalID: 1) and remote N_Port ID (PT2PT_RemoteID: 2) and 797 * will send out Port Login (PLOGI) with the N_Port IDs assigned. Otherwise, 798 * this node shall just wait for the remote node to issue PLOGI and assign 799 * N_Port IDs. 800 * 801 * Return code 802 * 0 - Success 803 * -ENXIO - Fail 804 **/ 805 static int 806 lpfc_cmpl_els_flogi_nport(struct lpfc_vport *vport, struct lpfc_nodelist *ndlp, 807 struct serv_parm *sp) 808 { 809 struct lpfc_hba *phba = vport->phba; 810 LPFC_MBOXQ_t *mbox; 811 int rc; 812 813 clear_bit(FC_FABRIC, &vport->fc_flag); 814 clear_bit(FC_PUBLIC_LOOP, &vport->fc_flag); 815 set_bit(FC_PT2PT, &vport->fc_flag); 816 817 /* If we are pt2pt with another NPort, force NPIV off! */ 818 phba->sli3_options &= ~LPFC_SLI3_NPIV_ENABLED; 819 820 /* If physical FC port changed, unreg VFI and ALL VPIs / RPIs */ 821 if ((phba->sli_rev == LPFC_SLI_REV4) && phba->fc_topology_changed) { 822 lpfc_unregister_fcf_prep(phba); 823 clear_bit(FC_VFI_REGISTERED, &vport->fc_flag); 824 phba->fc_topology_changed = 0; 825 } 826 827 rc = memcmp(&vport->fc_portname, &sp->portName, 828 sizeof(vport->fc_portname)); 829 830 if (rc >= 0) { 831 /* This side will initiate the PLOGI */ 832 set_bit(FC_PT2PT_PLOGI, &vport->fc_flag); 833 834 /* 835 * N_Port ID cannot be 0, set our Id to LocalID 836 * the other side will be RemoteID. 837 */ 838 839 /* not equal */ 840 if (rc) 841 vport->fc_myDID = PT2PT_LocalID; 842 843 /* If not registered with a transport, decrement ndlp reference 844 * count indicating that ndlp can be safely released when other 845 * references are removed. 846 */ 847 if (!(ndlp->fc4_xpt_flags & (SCSI_XPT_REGD | NVME_XPT_REGD))) 848 lpfc_nlp_put(ndlp); 849 850 ndlp = lpfc_findnode_did(vport, PT2PT_RemoteID); 851 if (!ndlp) { 852 /* 853 * Cannot find existing Fabric ndlp, so allocate a 854 * new one 855 */ 856 ndlp = lpfc_nlp_init(vport, PT2PT_RemoteID); 857 if (!ndlp) 858 goto fail; 859 } 860 861 memcpy(&ndlp->nlp_portname, &sp->portName, 862 sizeof(struct lpfc_name)); 863 memcpy(&ndlp->nlp_nodename, &sp->nodeName, 864 sizeof(struct lpfc_name)); 865 /* Set state will put ndlp onto node list if not already done */ 866 lpfc_nlp_set_state(vport, ndlp, NLP_STE_NPR_NODE); 867 spin_lock_irq(&ndlp->lock); 868 ndlp->nlp_flag |= NLP_NPR_2B_DISC; 869 spin_unlock_irq(&ndlp->lock); 870 871 mbox = mempool_alloc(phba->mbox_mem_pool, GFP_KERNEL); 872 if (!mbox) 873 goto fail; 874 875 lpfc_config_link(phba, mbox); 876 877 mbox->mbox_cmpl = lpfc_mbx_cmpl_local_config_link; 878 mbox->vport = vport; 879 rc = lpfc_sli_issue_mbox(phba, mbox, MBX_NOWAIT); 880 if (rc == MBX_NOT_FINISHED) { 881 mempool_free(mbox, phba->mbox_mem_pool); 882 goto fail; 883 } 884 } else { 885 /* This side will wait for the PLOGI. If not registered with 886 * a transport, decrement node reference count indicating that 887 * ndlp can be released when other references are removed. 888 */ 889 if (!(ndlp->fc4_xpt_flags & (SCSI_XPT_REGD | NVME_XPT_REGD))) 890 lpfc_nlp_put(ndlp); 891 892 /* Start discovery - this should just do CLEAR_LA */ 893 lpfc_disc_start(vport); 894 } 895 896 return 0; 897 fail: 898 return -ENXIO; 899 } 900 901 /** 902 * lpfc_cmpl_els_flogi - Completion callback function for flogi 903 * @phba: pointer to lpfc hba data structure. 904 * @cmdiocb: pointer to lpfc command iocb data structure. 905 * @rspiocb: pointer to lpfc response iocb data structure. 906 * 907 * This routine is the top-level completion callback function for issuing 908 * a Fabric Login (FLOGI) command. If the response IOCB reported error, 909 * the lpfc_els_retry() routine shall be invoked to retry the FLOGI. If 910 * retry has been made (either immediately or delayed with lpfc_els_retry() 911 * returning 1), the command IOCB will be released and function returned. 912 * If the retry attempt has been given up (possibly reach the maximum 913 * number of retries), one additional decrement of ndlp reference shall be 914 * invoked before going out after releasing the command IOCB. This will 915 * actually release the remote node (Note, lpfc_els_free_iocb() will also 916 * invoke one decrement of ndlp reference count). If no error reported in 917 * the IOCB status, the command Port ID field is used to determine whether 918 * this is a point-to-point topology or a fabric topology: if the Port ID 919 * field is assigned, it is a fabric topology; otherwise, it is a 920 * point-to-point topology. The routine lpfc_cmpl_els_flogi_fabric() or 921 * lpfc_cmpl_els_flogi_nport() shall be invoked accordingly to handle the 922 * specific topology completion conditions. 923 **/ 924 static void 925 lpfc_cmpl_els_flogi(struct lpfc_hba *phba, struct lpfc_iocbq *cmdiocb, 926 struct lpfc_iocbq *rspiocb) 927 { 928 struct lpfc_vport *vport = cmdiocb->vport; 929 struct lpfc_nodelist *ndlp = cmdiocb->ndlp; 930 IOCB_t *irsp; 931 struct lpfc_dmabuf *pcmd = cmdiocb->cmd_dmabuf, *prsp; 932 struct serv_parm *sp; 933 uint16_t fcf_index; 934 int rc; 935 u32 ulp_status, ulp_word4, tmo; 936 bool flogi_in_retry = false; 937 938 /* Check to see if link went down during discovery */ 939 if (lpfc_els_chk_latt(vport)) { 940 /* One additional decrement on node reference count to 941 * trigger the release of the node 942 */ 943 if (!(ndlp->fc4_xpt_flags & SCSI_XPT_REGD)) 944 lpfc_nlp_put(ndlp); 945 goto out; 946 } 947 948 ulp_status = get_job_ulpstatus(phba, rspiocb); 949 ulp_word4 = get_job_word4(phba, rspiocb); 950 951 if (phba->sli_rev == LPFC_SLI_REV4) { 952 tmo = get_wqe_tmo(cmdiocb); 953 } else { 954 irsp = &rspiocb->iocb; 955 tmo = irsp->ulpTimeout; 956 } 957 958 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_CMD, 959 "FLOGI cmpl: status:x%x/x%x state:x%x", 960 ulp_status, ulp_word4, 961 vport->port_state); 962 963 if (ulp_status) { 964 /* 965 * In case of FIP mode, perform roundrobin FCF failover 966 * due to new FCF discovery 967 */ 968 if (test_bit(HBA_FIP_SUPPORT, &phba->hba_flag) && 969 (phba->fcf.fcf_flag & FCF_DISCOVERY)) { 970 if (phba->link_state < LPFC_LINK_UP) 971 goto stop_rr_fcf_flogi; 972 if ((phba->fcoe_cvl_eventtag_attn == 973 phba->fcoe_cvl_eventtag) && 974 (ulp_status == IOSTAT_LOCAL_REJECT) && 975 ((ulp_word4 & IOERR_PARAM_MASK) == 976 IOERR_SLI_ABORTED)) 977 goto stop_rr_fcf_flogi; 978 else 979 phba->fcoe_cvl_eventtag_attn = 980 phba->fcoe_cvl_eventtag; 981 lpfc_printf_log(phba, KERN_WARNING, LOG_FIP | LOG_ELS, 982 "2611 FLOGI failed on FCF (x%x), " 983 "status:x%x/x%x, tmo:x%x, perform " 984 "roundrobin FCF failover\n", 985 phba->fcf.current_rec.fcf_indx, 986 ulp_status, ulp_word4, tmo); 987 lpfc_sli4_set_fcf_flogi_fail(phba, 988 phba->fcf.current_rec.fcf_indx); 989 fcf_index = lpfc_sli4_fcf_rr_next_index_get(phba); 990 rc = lpfc_sli4_fcf_rr_next_proc(vport, fcf_index); 991 if (rc) 992 goto out; 993 } 994 995 stop_rr_fcf_flogi: 996 /* FLOGI failure */ 997 if (!(ulp_status == IOSTAT_LOCAL_REJECT && 998 ((ulp_word4 & IOERR_PARAM_MASK) == 999 IOERR_LOOP_OPEN_FAILURE))) 1000 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT, 1001 "2858 FLOGI failure Status:x%x/x%x TMO" 1002 ":x%x Data x%lx x%x\n", 1003 ulp_status, ulp_word4, tmo, 1004 phba->hba_flag, phba->fcf.fcf_flag); 1005 1006 /* Check for retry */ 1007 if (lpfc_els_retry(phba, cmdiocb, rspiocb)) { 1008 /* Address a timing race with dev_loss. If dev_loss 1009 * is active on this FPort node, put the initial ref 1010 * count back to stop premature node release actions. 1011 */ 1012 lpfc_check_nlp_post_devloss(vport, ndlp); 1013 flogi_in_retry = true; 1014 goto out; 1015 } 1016 1017 /* The FLOGI will not be retried. If the FPort node is not 1018 * registered with the SCSI transport, remove the initial 1019 * reference to trigger node release. 1020 */ 1021 if (!(ndlp->nlp_flag & NLP_IN_DEV_LOSS) && 1022 !(ndlp->fc4_xpt_flags & SCSI_XPT_REGD)) 1023 lpfc_nlp_put(ndlp); 1024 1025 lpfc_printf_vlog(vport, KERN_WARNING, LOG_ELS, 1026 "0150 FLOGI failure Status:x%x/x%x " 1027 "xri x%x TMO:x%x refcnt %d\n", 1028 ulp_status, ulp_word4, cmdiocb->sli4_xritag, 1029 tmo, kref_read(&ndlp->kref)); 1030 1031 /* If this is not a loop open failure, bail out */ 1032 if (!(ulp_status == IOSTAT_LOCAL_REJECT && 1033 ((ulp_word4 & IOERR_PARAM_MASK) == 1034 IOERR_LOOP_OPEN_FAILURE))) { 1035 /* FLOGI failure */ 1036 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT, 1037 "0100 FLOGI failure Status:x%x/x%x " 1038 "TMO:x%x\n", 1039 ulp_status, ulp_word4, tmo); 1040 goto flogifail; 1041 } 1042 1043 /* FLOGI failed, so there is no fabric */ 1044 clear_bit(FC_FABRIC, &vport->fc_flag); 1045 clear_bit(FC_PUBLIC_LOOP, &vport->fc_flag); 1046 clear_bit(FC_PT2PT_NO_NVME, &vport->fc_flag); 1047 1048 /* If private loop, then allow max outstanding els to be 1049 * LPFC_MAX_DISC_THREADS (32). Scanning in the case of no 1050 * alpa map would take too long otherwise. 1051 */ 1052 if (phba->alpa_map[0] == 0) 1053 vport->cfg_discovery_threads = LPFC_MAX_DISC_THREADS; 1054 if ((phba->sli_rev == LPFC_SLI_REV4) && 1055 (!test_bit(FC_VFI_REGISTERED, &vport->fc_flag) || 1056 (vport->fc_prevDID != vport->fc_myDID) || 1057 phba->fc_topology_changed)) { 1058 if (test_bit(FC_VFI_REGISTERED, &vport->fc_flag)) { 1059 if (phba->fc_topology_changed) { 1060 lpfc_unregister_fcf_prep(phba); 1061 clear_bit(FC_VFI_REGISTERED, 1062 &vport->fc_flag); 1063 phba->fc_topology_changed = 0; 1064 } else { 1065 lpfc_sli4_unreg_all_rpis(vport); 1066 } 1067 } 1068 1069 /* Do not register VFI if the driver aborted FLOGI */ 1070 if (!lpfc_error_lost_link(vport, ulp_status, ulp_word4)) 1071 lpfc_issue_reg_vfi(vport); 1072 1073 goto out; 1074 } 1075 goto flogifail; 1076 } 1077 clear_bit(FC_VPORT_CVL_RCVD, &vport->fc_flag); 1078 clear_bit(FC_VPORT_LOGO_RCVD, &vport->fc_flag); 1079 1080 /* 1081 * The FLOGI succeeded. Sync the data for the CPU before 1082 * accessing it. 1083 */ 1084 prsp = list_get_first(&pcmd->list, struct lpfc_dmabuf, list); 1085 if (!prsp) 1086 goto out; 1087 if (!lpfc_is_els_acc_rsp(prsp)) 1088 goto out; 1089 sp = prsp->virt + sizeof(uint32_t); 1090 1091 /* FLOGI completes successfully */ 1092 lpfc_printf_vlog(vport, KERN_INFO, LOG_ELS, 1093 "0101 FLOGI completes successfully, I/O tag:x%x " 1094 "xri x%x Data: x%x x%x x%x x%x x%x x%lx x%x %d\n", 1095 cmdiocb->iotag, cmdiocb->sli4_xritag, 1096 ulp_word4, sp->cmn.e_d_tov, 1097 sp->cmn.w2.r_a_tov, sp->cmn.edtovResolution, 1098 vport->port_state, vport->fc_flag, 1099 sp->cmn.priority_tagging, kref_read(&ndlp->kref)); 1100 1101 /* reinitialize the VMID datastructure before returning */ 1102 if (lpfc_is_vmid_enabled(phba)) { 1103 lpfc_reinit_vmid(vport); 1104 vport->vmid_flag = 0; 1105 } 1106 if (sp->cmn.priority_tagging) 1107 vport->phba->pport->vmid_flag |= (LPFC_VMID_ISSUE_QFPA | 1108 LPFC_VMID_TYPE_PRIO); 1109 1110 /* 1111 * Address a timing race with dev_loss. If dev_loss is active on 1112 * this FPort node, put the initial ref count back to stop premature 1113 * node release actions. 1114 */ 1115 lpfc_check_nlp_post_devloss(vport, ndlp); 1116 if (vport->port_state == LPFC_FLOGI) { 1117 /* 1118 * If Common Service Parameters indicate Nport 1119 * we are point to point, if Fport we are Fabric. 1120 */ 1121 if (sp->cmn.fPort) 1122 rc = lpfc_cmpl_els_flogi_fabric(vport, ndlp, sp, 1123 ulp_word4); 1124 else if (!test_bit(HBA_FCOE_MODE, &phba->hba_flag)) 1125 rc = lpfc_cmpl_els_flogi_nport(vport, ndlp, sp); 1126 else { 1127 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT, 1128 "2831 FLOGI response with cleared Fabric " 1129 "bit fcf_index 0x%x " 1130 "Switch Name %02x%02x%02x%02x%02x%02x%02x%02x " 1131 "Fabric Name " 1132 "%02x%02x%02x%02x%02x%02x%02x%02x\n", 1133 phba->fcf.current_rec.fcf_indx, 1134 phba->fcf.current_rec.switch_name[0], 1135 phba->fcf.current_rec.switch_name[1], 1136 phba->fcf.current_rec.switch_name[2], 1137 phba->fcf.current_rec.switch_name[3], 1138 phba->fcf.current_rec.switch_name[4], 1139 phba->fcf.current_rec.switch_name[5], 1140 phba->fcf.current_rec.switch_name[6], 1141 phba->fcf.current_rec.switch_name[7], 1142 phba->fcf.current_rec.fabric_name[0], 1143 phba->fcf.current_rec.fabric_name[1], 1144 phba->fcf.current_rec.fabric_name[2], 1145 phba->fcf.current_rec.fabric_name[3], 1146 phba->fcf.current_rec.fabric_name[4], 1147 phba->fcf.current_rec.fabric_name[5], 1148 phba->fcf.current_rec.fabric_name[6], 1149 phba->fcf.current_rec.fabric_name[7]); 1150 1151 lpfc_nlp_put(ndlp); 1152 spin_lock_irq(&phba->hbalock); 1153 phba->fcf.fcf_flag &= ~FCF_DISCOVERY; 1154 spin_unlock_irq(&phba->hbalock); 1155 clear_bit(FCF_RR_INPROG, &phba->hba_flag); 1156 clear_bit(HBA_DEVLOSS_TMO, &phba->hba_flag); 1157 phba->fcf.fcf_redisc_attempted = 0; /* reset */ 1158 goto out; 1159 } 1160 if (!rc) { 1161 /* Mark the FCF discovery process done */ 1162 if (test_bit(HBA_FIP_SUPPORT, &phba->hba_flag)) 1163 lpfc_printf_vlog(vport, KERN_INFO, LOG_FIP | 1164 LOG_ELS, 1165 "2769 FLOGI to FCF (x%x) " 1166 "completed successfully\n", 1167 phba->fcf.current_rec.fcf_indx); 1168 spin_lock_irq(&phba->hbalock); 1169 phba->fcf.fcf_flag &= ~FCF_DISCOVERY; 1170 spin_unlock_irq(&phba->hbalock); 1171 clear_bit(FCF_RR_INPROG, &phba->hba_flag); 1172 clear_bit(HBA_DEVLOSS_TMO, &phba->hba_flag); 1173 phba->fcf.fcf_redisc_attempted = 0; /* reset */ 1174 goto out; 1175 } 1176 } else if (vport->port_state > LPFC_FLOGI && 1177 test_bit(FC_PT2PT, &vport->fc_flag)) { 1178 /* 1179 * In a p2p topology, it is possible that discovery has 1180 * already progressed, and this completion can be ignored. 1181 * Recheck the indicated topology. 1182 */ 1183 if (!sp->cmn.fPort) 1184 goto out; 1185 } 1186 1187 flogifail: 1188 spin_lock_irq(&phba->hbalock); 1189 phba->fcf.fcf_flag &= ~FCF_DISCOVERY; 1190 spin_unlock_irq(&phba->hbalock); 1191 1192 if (!lpfc_error_lost_link(vport, ulp_status, ulp_word4)) { 1193 /* FLOGI failed, so just use loop map to make discovery list */ 1194 lpfc_disc_list_loopmap(vport); 1195 1196 /* Start discovery */ 1197 lpfc_disc_start(vport); 1198 } else if (((ulp_status != IOSTAT_LOCAL_REJECT) || 1199 (((ulp_word4 & IOERR_PARAM_MASK) != 1200 IOERR_SLI_ABORTED) && 1201 ((ulp_word4 & IOERR_PARAM_MASK) != 1202 IOERR_SLI_DOWN))) && 1203 (phba->link_state != LPFC_CLEAR_LA)) { 1204 /* If FLOGI failed enable link interrupt. */ 1205 lpfc_issue_clear_la(phba, vport); 1206 } 1207 out: 1208 if (!flogi_in_retry) 1209 clear_bit(HBA_FLOGI_OUTSTANDING, &phba->hba_flag); 1210 1211 lpfc_els_free_iocb(phba, cmdiocb); 1212 lpfc_nlp_put(ndlp); 1213 } 1214 1215 /** 1216 * lpfc_cmpl_els_link_down - Completion callback function for ELS command 1217 * aborted during a link down 1218 * @phba: pointer to lpfc hba data structure. 1219 * @cmdiocb: pointer to lpfc command iocb data structure. 1220 * @rspiocb: pointer to lpfc response iocb data structure. 1221 * 1222 */ 1223 static void 1224 lpfc_cmpl_els_link_down(struct lpfc_hba *phba, struct lpfc_iocbq *cmdiocb, 1225 struct lpfc_iocbq *rspiocb) 1226 { 1227 uint32_t *pcmd; 1228 uint32_t cmd; 1229 u32 ulp_status, ulp_word4; 1230 1231 pcmd = (uint32_t *)cmdiocb->cmd_dmabuf->virt; 1232 cmd = *pcmd; 1233 1234 ulp_status = get_job_ulpstatus(phba, rspiocb); 1235 ulp_word4 = get_job_word4(phba, rspiocb); 1236 1237 lpfc_printf_log(phba, KERN_INFO, LOG_ELS, 1238 "6445 ELS completes after LINK_DOWN: " 1239 " Status %x/%x cmd x%x flg x%x\n", 1240 ulp_status, ulp_word4, cmd, 1241 cmdiocb->cmd_flag); 1242 1243 if (cmdiocb->cmd_flag & LPFC_IO_FABRIC) { 1244 cmdiocb->cmd_flag &= ~LPFC_IO_FABRIC; 1245 atomic_dec(&phba->fabric_iocb_count); 1246 } 1247 lpfc_els_free_iocb(phba, cmdiocb); 1248 } 1249 1250 /** 1251 * lpfc_issue_els_flogi - Issue an flogi iocb command for a vport 1252 * @vport: pointer to a host virtual N_Port data structure. 1253 * @ndlp: pointer to a node-list data structure. 1254 * @retry: number of retries to the command IOCB. 1255 * 1256 * This routine issues a Fabric Login (FLOGI) Request ELS command 1257 * for a @vport. The initiator service parameters are put into the payload 1258 * of the FLOGI Request IOCB and the top-level callback function pointer 1259 * to lpfc_cmpl_els_flogi() routine is put to the IOCB completion callback 1260 * function field. The lpfc_issue_fabric_iocb routine is invoked to send 1261 * out FLOGI ELS command with one outstanding fabric IOCB at a time. 1262 * 1263 * Note that the ndlp reference count will be incremented by 1 for holding the 1264 * ndlp and the reference to ndlp will be stored into the ndlp field of 1265 * the IOCB for the completion callback function to the FLOGI ELS command. 1266 * 1267 * Return code 1268 * 0 - successfully issued flogi iocb for @vport 1269 * 1 - failed to issue flogi iocb for @vport 1270 **/ 1271 static int 1272 lpfc_issue_els_flogi(struct lpfc_vport *vport, struct lpfc_nodelist *ndlp, 1273 uint8_t retry) 1274 { 1275 struct lpfc_hba *phba = vport->phba; 1276 struct serv_parm *sp; 1277 union lpfc_wqe128 *wqe = NULL; 1278 IOCB_t *icmd = NULL; 1279 struct lpfc_iocbq *elsiocb; 1280 struct lpfc_iocbq defer_flogi_acc; 1281 u8 *pcmd, ct; 1282 uint16_t cmdsize; 1283 uint32_t tmo, did; 1284 int rc; 1285 1286 cmdsize = (sizeof(uint32_t) + sizeof(struct serv_parm)); 1287 elsiocb = lpfc_prep_els_iocb(vport, 1, cmdsize, retry, ndlp, 1288 ndlp->nlp_DID, ELS_CMD_FLOGI); 1289 1290 if (!elsiocb) 1291 return 1; 1292 1293 wqe = &elsiocb->wqe; 1294 pcmd = (uint8_t *)elsiocb->cmd_dmabuf->virt; 1295 icmd = &elsiocb->iocb; 1296 1297 /* For FLOGI request, remainder of payload is service parameters */ 1298 *((uint32_t *) (pcmd)) = ELS_CMD_FLOGI; 1299 pcmd += sizeof(uint32_t); 1300 memcpy(pcmd, &vport->fc_sparam, sizeof(struct serv_parm)); 1301 sp = (struct serv_parm *) pcmd; 1302 1303 /* Setup CSPs accordingly for Fabric */ 1304 sp->cmn.e_d_tov = 0; 1305 sp->cmn.w2.r_a_tov = 0; 1306 sp->cmn.virtual_fabric_support = 0; 1307 sp->cls1.classValid = 0; 1308 if (sp->cmn.fcphLow < FC_PH3) 1309 sp->cmn.fcphLow = FC_PH3; 1310 if (sp->cmn.fcphHigh < FC_PH3) 1311 sp->cmn.fcphHigh = FC_PH3; 1312 1313 /* Determine if switch supports priority tagging */ 1314 if (phba->cfg_vmid_priority_tagging) { 1315 sp->cmn.priority_tagging = 1; 1316 /* lpfc_vmid_host_uuid is combination of wwpn and wwnn */ 1317 if (!memchr_inv(vport->lpfc_vmid_host_uuid, 0, 1318 sizeof(vport->lpfc_vmid_host_uuid))) { 1319 memcpy(vport->lpfc_vmid_host_uuid, phba->wwpn, 1320 sizeof(phba->wwpn)); 1321 memcpy(&vport->lpfc_vmid_host_uuid[8], phba->wwnn, 1322 sizeof(phba->wwnn)); 1323 } 1324 } 1325 1326 if (phba->sli_rev == LPFC_SLI_REV4) { 1327 if (bf_get(lpfc_sli_intf_if_type, &phba->sli4_hba.sli_intf) == 1328 LPFC_SLI_INTF_IF_TYPE_0) { 1329 /* FLOGI needs to be 3 for WQE FCFI */ 1330 ct = SLI4_CT_FCFI; 1331 bf_set(wqe_ct, &wqe->els_req.wqe_com, ct); 1332 1333 /* Set the fcfi to the fcfi we registered with */ 1334 bf_set(wqe_ctxt_tag, &wqe->els_req.wqe_com, 1335 phba->fcf.fcfi); 1336 } 1337 1338 /* Can't do SLI4 class2 without support sequence coalescing */ 1339 sp->cls2.classValid = 0; 1340 sp->cls2.seqDelivery = 0; 1341 } else { 1342 /* Historical, setting sequential-delivery bit for SLI3 */ 1343 sp->cls2.seqDelivery = (sp->cls2.classValid) ? 1 : 0; 1344 sp->cls3.seqDelivery = (sp->cls3.classValid) ? 1 : 0; 1345 if (phba->sli3_options & LPFC_SLI3_NPIV_ENABLED) { 1346 sp->cmn.request_multiple_Nport = 1; 1347 /* For FLOGI, Let FLOGI rsp set the NPortID for VPI 0 */ 1348 icmd->ulpCt_h = 1; 1349 icmd->ulpCt_l = 0; 1350 } else { 1351 sp->cmn.request_multiple_Nport = 0; 1352 } 1353 1354 if (phba->fc_topology != LPFC_TOPOLOGY_LOOP) { 1355 icmd->un.elsreq64.myID = 0; 1356 icmd->un.elsreq64.fl = 1; 1357 } 1358 } 1359 1360 tmo = phba->fc_ratov; 1361 phba->fc_ratov = LPFC_DISC_FLOGI_TMO; 1362 lpfc_set_disctmo(vport); 1363 phba->fc_ratov = tmo; 1364 1365 phba->fc_stat.elsXmitFLOGI++; 1366 elsiocb->cmd_cmpl = lpfc_cmpl_els_flogi; 1367 1368 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_CMD, 1369 "Issue FLOGI: opt:x%x", 1370 phba->sli3_options, 0, 0); 1371 1372 elsiocb->ndlp = lpfc_nlp_get(ndlp); 1373 if (!elsiocb->ndlp) { 1374 lpfc_els_free_iocb(phba, elsiocb); 1375 return 1; 1376 } 1377 1378 /* Avoid race with FLOGI completion and hba_flags. */ 1379 set_bit(HBA_FLOGI_ISSUED, &phba->hba_flag); 1380 set_bit(HBA_FLOGI_OUTSTANDING, &phba->hba_flag); 1381 1382 rc = lpfc_issue_fabric_iocb(phba, elsiocb); 1383 if (rc == IOCB_ERROR) { 1384 clear_bit(HBA_FLOGI_ISSUED, &phba->hba_flag); 1385 clear_bit(HBA_FLOGI_OUTSTANDING, &phba->hba_flag); 1386 lpfc_els_free_iocb(phba, elsiocb); 1387 lpfc_nlp_put(ndlp); 1388 return 1; 1389 } 1390 1391 /* Clear external loopback plug detected flag */ 1392 phba->link_flag &= ~LS_EXTERNAL_LOOPBACK; 1393 1394 /* Check for a deferred FLOGI ACC condition */ 1395 if (phba->defer_flogi_acc.flag) { 1396 /* lookup ndlp for received FLOGI */ 1397 ndlp = lpfc_findnode_did(vport, 0); 1398 if (!ndlp) 1399 return 0; 1400 1401 did = vport->fc_myDID; 1402 vport->fc_myDID = Fabric_DID; 1403 1404 memset(&defer_flogi_acc, 0, sizeof(struct lpfc_iocbq)); 1405 1406 if (phba->sli_rev == LPFC_SLI_REV4) { 1407 bf_set(wqe_ctxt_tag, 1408 &defer_flogi_acc.wqe.xmit_els_rsp.wqe_com, 1409 phba->defer_flogi_acc.rx_id); 1410 bf_set(wqe_rcvoxid, 1411 &defer_flogi_acc.wqe.xmit_els_rsp.wqe_com, 1412 phba->defer_flogi_acc.ox_id); 1413 } else { 1414 icmd = &defer_flogi_acc.iocb; 1415 icmd->ulpContext = phba->defer_flogi_acc.rx_id; 1416 icmd->unsli3.rcvsli3.ox_id = 1417 phba->defer_flogi_acc.ox_id; 1418 } 1419 1420 lpfc_printf_vlog(vport, KERN_INFO, LOG_ELS, 1421 "3354 Xmit deferred FLOGI ACC: rx_id: x%x," 1422 " ox_id: x%x, hba_flag x%lx\n", 1423 phba->defer_flogi_acc.rx_id, 1424 phba->defer_flogi_acc.ox_id, phba->hba_flag); 1425 1426 /* Send deferred FLOGI ACC */ 1427 lpfc_els_rsp_acc(vport, ELS_CMD_FLOGI, &defer_flogi_acc, 1428 ndlp, NULL); 1429 1430 phba->defer_flogi_acc.flag = false; 1431 1432 /* Decrement the held ndlp that was incremented when the 1433 * deferred flogi acc flag was set. 1434 */ 1435 if (phba->defer_flogi_acc.ndlp) { 1436 lpfc_nlp_put(phba->defer_flogi_acc.ndlp); 1437 phba->defer_flogi_acc.ndlp = NULL; 1438 } 1439 1440 vport->fc_myDID = did; 1441 } 1442 1443 return 0; 1444 } 1445 1446 /** 1447 * lpfc_els_abort_flogi - Abort all outstanding flogi iocbs 1448 * @phba: pointer to lpfc hba data structure. 1449 * 1450 * This routine aborts all the outstanding Fabric Login (FLOGI) IOCBs 1451 * with a @phba. This routine walks all the outstanding IOCBs on the txcmplq 1452 * list and issues an abort IOCB commond on each outstanding IOCB that 1453 * contains a active Fabric_DID ndlp. Note that this function is to issue 1454 * the abort IOCB command on all the outstanding IOCBs, thus when this 1455 * function returns, it does not guarantee all the IOCBs are actually aborted. 1456 * 1457 * Return code 1458 * 0 - Successfully issued abort iocb on all outstanding flogis (Always 0) 1459 **/ 1460 int 1461 lpfc_els_abort_flogi(struct lpfc_hba *phba) 1462 { 1463 struct lpfc_sli_ring *pring; 1464 struct lpfc_iocbq *iocb, *next_iocb; 1465 struct lpfc_nodelist *ndlp; 1466 u32 ulp_command; 1467 1468 /* Abort outstanding I/O on NPort <nlp_DID> */ 1469 lpfc_printf_log(phba, KERN_INFO, LOG_DISCOVERY, 1470 "0201 Abort outstanding I/O on NPort x%x\n", 1471 Fabric_DID); 1472 1473 pring = lpfc_phba_elsring(phba); 1474 if (unlikely(!pring)) 1475 return -EIO; 1476 1477 /* 1478 * Check the txcmplq for an iocb that matches the nport the driver is 1479 * searching for. 1480 */ 1481 spin_lock_irq(&phba->hbalock); 1482 list_for_each_entry_safe(iocb, next_iocb, &pring->txcmplq, list) { 1483 ulp_command = get_job_cmnd(phba, iocb); 1484 if (ulp_command == CMD_ELS_REQUEST64_CR) { 1485 ndlp = iocb->ndlp; 1486 if (ndlp && ndlp->nlp_DID == Fabric_DID) { 1487 if (test_bit(FC_PT2PT, &phba->pport->fc_flag) && 1488 !test_bit(FC_PT2PT_PLOGI, 1489 &phba->pport->fc_flag)) 1490 iocb->fabric_cmd_cmpl = 1491 lpfc_ignore_els_cmpl; 1492 lpfc_sli_issue_abort_iotag(phba, pring, iocb, 1493 NULL); 1494 } 1495 } 1496 } 1497 /* Make sure HBA is alive */ 1498 lpfc_issue_hb_tmo(phba); 1499 1500 spin_unlock_irq(&phba->hbalock); 1501 1502 return 0; 1503 } 1504 1505 /** 1506 * lpfc_initial_flogi - Issue an initial fabric login for a vport 1507 * @vport: pointer to a host virtual N_Port data structure. 1508 * 1509 * This routine issues an initial Fabric Login (FLOGI) for the @vport 1510 * specified. It first searches the ndlp with the Fabric_DID (0xfffffe) from 1511 * the @vport's ndlp list. If no such ndlp found, it will create an ndlp and 1512 * put it into the @vport's ndlp list. If an inactive ndlp found on the list, 1513 * it will just be enabled and made active. The lpfc_issue_els_flogi() routine 1514 * is then invoked with the @vport and the ndlp to perform the FLOGI for the 1515 * @vport. 1516 * 1517 * Return code 1518 * 0 - failed to issue initial flogi for @vport 1519 * 1 - successfully issued initial flogi for @vport 1520 **/ 1521 int 1522 lpfc_initial_flogi(struct lpfc_vport *vport) 1523 { 1524 struct lpfc_nodelist *ndlp; 1525 1526 vport->port_state = LPFC_FLOGI; 1527 lpfc_set_disctmo(vport); 1528 1529 /* First look for the Fabric ndlp */ 1530 ndlp = lpfc_findnode_did(vport, Fabric_DID); 1531 if (!ndlp) { 1532 /* Cannot find existing Fabric ndlp, so allocate a new one */ 1533 ndlp = lpfc_nlp_init(vport, Fabric_DID); 1534 if (!ndlp) 1535 return 0; 1536 /* Set the node type */ 1537 ndlp->nlp_type |= NLP_FABRIC; 1538 1539 /* Put ndlp onto node list */ 1540 lpfc_enqueue_node(vport, ndlp); 1541 } 1542 1543 /* Reset the Fabric flag, topology change may have happened */ 1544 clear_bit(FC_FABRIC, &vport->fc_flag); 1545 if (lpfc_issue_els_flogi(vport, ndlp, 0)) { 1546 /* A node reference should be retained while registered with a 1547 * transport or dev-loss-evt work is pending. 1548 * Otherwise, decrement node reference to trigger release. 1549 */ 1550 if (!(ndlp->fc4_xpt_flags & (SCSI_XPT_REGD | NVME_XPT_REGD)) && 1551 !(ndlp->nlp_flag & NLP_IN_DEV_LOSS)) 1552 lpfc_nlp_put(ndlp); 1553 return 0; 1554 } 1555 return 1; 1556 } 1557 1558 /** 1559 * lpfc_initial_fdisc - Issue an initial fabric discovery for a vport 1560 * @vport: pointer to a host virtual N_Port data structure. 1561 * 1562 * This routine issues an initial Fabric Discover (FDISC) for the @vport 1563 * specified. It first searches the ndlp with the Fabric_DID (0xfffffe) from 1564 * the @vport's ndlp list. If no such ndlp found, it will create an ndlp and 1565 * put it into the @vport's ndlp list. If an inactive ndlp found on the list, 1566 * it will just be enabled and made active. The lpfc_issue_els_fdisc() routine 1567 * is then invoked with the @vport and the ndlp to perform the FDISC for the 1568 * @vport. 1569 * 1570 * Return code 1571 * 0 - failed to issue initial fdisc for @vport 1572 * 1 - successfully issued initial fdisc for @vport 1573 **/ 1574 int 1575 lpfc_initial_fdisc(struct lpfc_vport *vport) 1576 { 1577 struct lpfc_nodelist *ndlp; 1578 1579 /* First look for the Fabric ndlp */ 1580 ndlp = lpfc_findnode_did(vport, Fabric_DID); 1581 if (!ndlp) { 1582 /* Cannot find existing Fabric ndlp, so allocate a new one */ 1583 ndlp = lpfc_nlp_init(vport, Fabric_DID); 1584 if (!ndlp) 1585 return 0; 1586 1587 /* NPIV is only supported in Fabrics. */ 1588 ndlp->nlp_type |= NLP_FABRIC; 1589 1590 /* Put ndlp onto node list */ 1591 lpfc_enqueue_node(vport, ndlp); 1592 } 1593 1594 if (lpfc_issue_els_fdisc(vport, ndlp, 0)) { 1595 /* A node reference should be retained while registered with a 1596 * transport or dev-loss-evt work is pending. 1597 * Otherwise, decrement node reference to trigger release. 1598 */ 1599 if (!(ndlp->fc4_xpt_flags & (SCSI_XPT_REGD | NVME_XPT_REGD)) && 1600 !(ndlp->nlp_flag & NLP_IN_DEV_LOSS)) 1601 lpfc_nlp_put(ndlp); 1602 return 0; 1603 } 1604 return 1; 1605 } 1606 1607 /** 1608 * lpfc_more_plogi - Check and issue remaining plogis for a vport 1609 * @vport: pointer to a host virtual N_Port data structure. 1610 * 1611 * This routine checks whether there are more remaining Port Logins 1612 * (PLOGI) to be issued for the @vport. If so, it will invoke the routine 1613 * lpfc_els_disc_plogi() to go through the Node Port Recovery (NPR) nodes 1614 * to issue ELS PLOGIs up to the configured discover threads with the 1615 * @vport (@vport->cfg_discovery_threads). The function also decrement 1616 * the @vport's num_disc_node by 1 if it is not already 0. 1617 **/ 1618 void 1619 lpfc_more_plogi(struct lpfc_vport *vport) 1620 { 1621 if (vport->num_disc_nodes) 1622 vport->num_disc_nodes--; 1623 1624 /* Continue discovery with <num_disc_nodes> PLOGIs to go */ 1625 lpfc_printf_vlog(vport, KERN_INFO, LOG_DISCOVERY, 1626 "0232 Continue discovery with %d PLOGIs to go " 1627 "Data: x%x x%lx x%x\n", 1628 vport->num_disc_nodes, 1629 atomic_read(&vport->fc_plogi_cnt), 1630 vport->fc_flag, vport->port_state); 1631 /* Check to see if there are more PLOGIs to be sent */ 1632 if (test_bit(FC_NLP_MORE, &vport->fc_flag)) 1633 /* go thru NPR nodes and issue any remaining ELS PLOGIs */ 1634 lpfc_els_disc_plogi(vport); 1635 1636 return; 1637 } 1638 1639 /** 1640 * lpfc_plogi_confirm_nport - Confirm plogi wwpn matches stored ndlp 1641 * @phba: pointer to lpfc hba data structure. 1642 * @prsp: pointer to response IOCB payload. 1643 * @ndlp: pointer to a node-list data structure. 1644 * 1645 * This routine checks and indicates whether the WWPN of an N_Port, retrieved 1646 * from a PLOGI, matches the WWPN that is stored in the @ndlp for that N_POrt. 1647 * The following cases are considered N_Port confirmed: 1648 * 1) The N_Port is a Fabric ndlp; 2) The @ndlp is on vport list and matches 1649 * the WWPN of the N_Port logged into; 3) The @ndlp is not on vport list but 1650 * it does not have WWPN assigned either. If the WWPN is confirmed, the 1651 * pointer to the @ndlp will be returned. If the WWPN is not confirmed: 1652 * 1) if there is a node on vport list other than the @ndlp with the same 1653 * WWPN of the N_Port PLOGI logged into, the lpfc_unreg_rpi() will be invoked 1654 * on that node to release the RPI associated with the node; 2) if there is 1655 * no node found on vport list with the same WWPN of the N_Port PLOGI logged 1656 * into, a new node shall be allocated (or activated). In either case, the 1657 * parameters of the @ndlp shall be copied to the new_ndlp, the @ndlp shall 1658 * be released and the new_ndlp shall be put on to the vport node list and 1659 * its pointer returned as the confirmed node. 1660 * 1661 * Note that before the @ndlp got "released", the keepDID from not-matching 1662 * or inactive "new_ndlp" on the vport node list is assigned to the nlp_DID 1663 * of the @ndlp. This is because the release of @ndlp is actually to put it 1664 * into an inactive state on the vport node list and the vport node list 1665 * management algorithm does not allow two node with a same DID. 1666 * 1667 * Return code 1668 * pointer to the PLOGI N_Port @ndlp 1669 **/ 1670 static struct lpfc_nodelist * 1671 lpfc_plogi_confirm_nport(struct lpfc_hba *phba, uint32_t *prsp, 1672 struct lpfc_nodelist *ndlp) 1673 { 1674 struct lpfc_vport *vport = ndlp->vport; 1675 struct lpfc_nodelist *new_ndlp; 1676 struct serv_parm *sp; 1677 uint8_t name[sizeof(struct lpfc_name)]; 1678 uint32_t keepDID = 0, keep_nlp_flag = 0; 1679 int rc; 1680 uint32_t keep_new_nlp_flag = 0; 1681 uint16_t keep_nlp_state; 1682 u32 keep_nlp_fc4_type = 0; 1683 struct lpfc_nvme_rport *keep_nrport = NULL; 1684 unsigned long *active_rrqs_xri_bitmap = NULL; 1685 1686 sp = (struct serv_parm *) ((uint8_t *) prsp + sizeof(uint32_t)); 1687 memset(name, 0, sizeof(struct lpfc_name)); 1688 1689 /* Now we find out if the NPort we are logging into, matches the WWPN 1690 * we have for that ndlp. If not, we have some work to do. 1691 */ 1692 new_ndlp = lpfc_findnode_wwpn(vport, &sp->portName); 1693 1694 /* return immediately if the WWPN matches ndlp */ 1695 if (new_ndlp == ndlp) 1696 return ndlp; 1697 1698 if (phba->sli_rev == LPFC_SLI_REV4) { 1699 active_rrqs_xri_bitmap = mempool_alloc(phba->active_rrq_pool, 1700 GFP_KERNEL); 1701 if (active_rrqs_xri_bitmap) 1702 memset(active_rrqs_xri_bitmap, 0, 1703 phba->cfg_rrq_xri_bitmap_sz); 1704 } 1705 1706 lpfc_printf_vlog(vport, KERN_INFO, LOG_ELS | LOG_NODE, 1707 "3178 PLOGI confirm: ndlp x%x x%x x%x: " 1708 "new_ndlp x%x x%x x%x\n", 1709 ndlp->nlp_DID, ndlp->nlp_flag, ndlp->nlp_fc4_type, 1710 (new_ndlp ? new_ndlp->nlp_DID : 0), 1711 (new_ndlp ? new_ndlp->nlp_flag : 0), 1712 (new_ndlp ? new_ndlp->nlp_fc4_type : 0)); 1713 1714 if (!new_ndlp) { 1715 rc = memcmp(&ndlp->nlp_portname, name, 1716 sizeof(struct lpfc_name)); 1717 if (!rc) { 1718 if (active_rrqs_xri_bitmap) 1719 mempool_free(active_rrqs_xri_bitmap, 1720 phba->active_rrq_pool); 1721 return ndlp; 1722 } 1723 new_ndlp = lpfc_nlp_init(vport, ndlp->nlp_DID); 1724 if (!new_ndlp) { 1725 if (active_rrqs_xri_bitmap) 1726 mempool_free(active_rrqs_xri_bitmap, 1727 phba->active_rrq_pool); 1728 return ndlp; 1729 } 1730 } else { 1731 if (phba->sli_rev == LPFC_SLI_REV4 && 1732 active_rrqs_xri_bitmap) 1733 memcpy(active_rrqs_xri_bitmap, 1734 new_ndlp->active_rrqs_xri_bitmap, 1735 phba->cfg_rrq_xri_bitmap_sz); 1736 1737 /* 1738 * Unregister from backend if not done yet. Could have been 1739 * skipped due to ADISC 1740 */ 1741 lpfc_nlp_unreg_node(vport, new_ndlp); 1742 } 1743 1744 keepDID = new_ndlp->nlp_DID; 1745 1746 /* At this point in this routine, we know new_ndlp will be 1747 * returned. however, any previous GID_FTs that were done 1748 * would have updated nlp_fc4_type in ndlp, so we must ensure 1749 * new_ndlp has the right value. 1750 */ 1751 if (test_bit(FC_FABRIC, &vport->fc_flag)) { 1752 keep_nlp_fc4_type = new_ndlp->nlp_fc4_type; 1753 new_ndlp->nlp_fc4_type = ndlp->nlp_fc4_type; 1754 } 1755 1756 lpfc_unreg_rpi(vport, new_ndlp); 1757 new_ndlp->nlp_DID = ndlp->nlp_DID; 1758 new_ndlp->nlp_prev_state = ndlp->nlp_prev_state; 1759 if (phba->sli_rev == LPFC_SLI_REV4) 1760 memcpy(new_ndlp->active_rrqs_xri_bitmap, 1761 ndlp->active_rrqs_xri_bitmap, 1762 phba->cfg_rrq_xri_bitmap_sz); 1763 1764 /* Lock both ndlps */ 1765 spin_lock_irq(&ndlp->lock); 1766 spin_lock_irq(&new_ndlp->lock); 1767 keep_new_nlp_flag = new_ndlp->nlp_flag; 1768 keep_nlp_flag = ndlp->nlp_flag; 1769 new_ndlp->nlp_flag = ndlp->nlp_flag; 1770 1771 /* if new_ndlp had NLP_UNREG_INP set, keep it */ 1772 if (keep_new_nlp_flag & NLP_UNREG_INP) 1773 new_ndlp->nlp_flag |= NLP_UNREG_INP; 1774 else 1775 new_ndlp->nlp_flag &= ~NLP_UNREG_INP; 1776 1777 /* if new_ndlp had NLP_RPI_REGISTERED set, keep it */ 1778 if (keep_new_nlp_flag & NLP_RPI_REGISTERED) 1779 new_ndlp->nlp_flag |= NLP_RPI_REGISTERED; 1780 else 1781 new_ndlp->nlp_flag &= ~NLP_RPI_REGISTERED; 1782 1783 /* 1784 * Retain the DROPPED flag. This will take care of the init 1785 * refcount when affecting the state change 1786 */ 1787 if (keep_new_nlp_flag & NLP_DROPPED) 1788 new_ndlp->nlp_flag |= NLP_DROPPED; 1789 else 1790 new_ndlp->nlp_flag &= ~NLP_DROPPED; 1791 1792 ndlp->nlp_flag = keep_new_nlp_flag; 1793 1794 /* if ndlp had NLP_UNREG_INP set, keep it */ 1795 if (keep_nlp_flag & NLP_UNREG_INP) 1796 ndlp->nlp_flag |= NLP_UNREG_INP; 1797 else 1798 ndlp->nlp_flag &= ~NLP_UNREG_INP; 1799 1800 /* if ndlp had NLP_RPI_REGISTERED set, keep it */ 1801 if (keep_nlp_flag & NLP_RPI_REGISTERED) 1802 ndlp->nlp_flag |= NLP_RPI_REGISTERED; 1803 else 1804 ndlp->nlp_flag &= ~NLP_RPI_REGISTERED; 1805 1806 /* 1807 * Retain the DROPPED flag. This will take care of the init 1808 * refcount when affecting the state change 1809 */ 1810 if (keep_nlp_flag & NLP_DROPPED) 1811 ndlp->nlp_flag |= NLP_DROPPED; 1812 else 1813 ndlp->nlp_flag &= ~NLP_DROPPED; 1814 1815 spin_unlock_irq(&new_ndlp->lock); 1816 spin_unlock_irq(&ndlp->lock); 1817 1818 /* Set nlp_states accordingly */ 1819 keep_nlp_state = new_ndlp->nlp_state; 1820 lpfc_nlp_set_state(vport, new_ndlp, ndlp->nlp_state); 1821 1822 /* interchange the nvme remoteport structs */ 1823 keep_nrport = new_ndlp->nrport; 1824 new_ndlp->nrport = ndlp->nrport; 1825 1826 /* Move this back to NPR state */ 1827 if (memcmp(&ndlp->nlp_portname, name, sizeof(struct lpfc_name)) == 0) { 1828 /* The ndlp doesn't have a portname yet, but does have an 1829 * NPort ID. The new_ndlp portname matches the Rport's 1830 * portname. Reinstantiate the new_ndlp and reset the ndlp. 1831 */ 1832 lpfc_printf_vlog(vport, KERN_INFO, LOG_ELS, 1833 "3179 PLOGI confirm NEW: %x %x\n", 1834 new_ndlp->nlp_DID, keepDID); 1835 1836 /* Two ndlps cannot have the same did on the nodelist. 1837 * The KeepDID and keep_nlp_fc4_type need to be swapped 1838 * because ndlp is inflight with no WWPN. 1839 */ 1840 ndlp->nlp_DID = keepDID; 1841 ndlp->nlp_fc4_type = keep_nlp_fc4_type; 1842 lpfc_nlp_set_state(vport, ndlp, keep_nlp_state); 1843 if (phba->sli_rev == LPFC_SLI_REV4 && 1844 active_rrqs_xri_bitmap) 1845 memcpy(ndlp->active_rrqs_xri_bitmap, 1846 active_rrqs_xri_bitmap, 1847 phba->cfg_rrq_xri_bitmap_sz); 1848 1849 } else { 1850 lpfc_printf_vlog(vport, KERN_INFO, LOG_ELS, 1851 "3180 PLOGI confirm SWAP: %x %x\n", 1852 new_ndlp->nlp_DID, keepDID); 1853 1854 lpfc_unreg_rpi(vport, ndlp); 1855 1856 /* The ndlp and new_ndlp both have WWPNs but are swapping 1857 * NPort Ids and attributes. 1858 */ 1859 ndlp->nlp_DID = keepDID; 1860 ndlp->nlp_fc4_type = keep_nlp_fc4_type; 1861 1862 if (phba->sli_rev == LPFC_SLI_REV4 && 1863 active_rrqs_xri_bitmap) 1864 memcpy(ndlp->active_rrqs_xri_bitmap, 1865 active_rrqs_xri_bitmap, 1866 phba->cfg_rrq_xri_bitmap_sz); 1867 1868 /* Since we are switching over to the new_ndlp, 1869 * reset the old ndlp state 1870 */ 1871 if ((ndlp->nlp_state == NLP_STE_UNMAPPED_NODE) || 1872 (ndlp->nlp_state == NLP_STE_MAPPED_NODE)) 1873 keep_nlp_state = NLP_STE_NPR_NODE; 1874 lpfc_nlp_set_state(vport, ndlp, keep_nlp_state); 1875 ndlp->nrport = keep_nrport; 1876 } 1877 1878 /* 1879 * If ndlp is not associated with any rport we can drop it here else 1880 * let dev_loss_tmo_callbk trigger DEVICE_RM event 1881 */ 1882 if (!ndlp->rport && (ndlp->nlp_state == NLP_STE_NPR_NODE)) 1883 lpfc_disc_state_machine(vport, ndlp, NULL, NLP_EVT_DEVICE_RM); 1884 1885 if (phba->sli_rev == LPFC_SLI_REV4 && 1886 active_rrqs_xri_bitmap) 1887 mempool_free(active_rrqs_xri_bitmap, 1888 phba->active_rrq_pool); 1889 1890 lpfc_printf_vlog(vport, KERN_INFO, LOG_ELS | LOG_NODE, 1891 "3173 PLOGI confirm exit: new_ndlp x%x x%x x%x\n", 1892 new_ndlp->nlp_DID, new_ndlp->nlp_flag, 1893 new_ndlp->nlp_fc4_type); 1894 1895 return new_ndlp; 1896 } 1897 1898 /** 1899 * lpfc_end_rscn - Check and handle more rscn for a vport 1900 * @vport: pointer to a host virtual N_Port data structure. 1901 * 1902 * This routine checks whether more Registration State Change 1903 * Notifications (RSCNs) came in while the discovery state machine was in 1904 * the FC_RSCN_MODE. If so, the lpfc_els_handle_rscn() routine will be 1905 * invoked to handle the additional RSCNs for the @vport. Otherwise, the 1906 * FC_RSCN_MODE bit will be cleared with the @vport to mark as the end of 1907 * handling the RSCNs. 1908 **/ 1909 void 1910 lpfc_end_rscn(struct lpfc_vport *vport) 1911 { 1912 1913 if (test_bit(FC_RSCN_MODE, &vport->fc_flag)) { 1914 /* 1915 * Check to see if more RSCNs came in while we were 1916 * processing this one. 1917 */ 1918 if (vport->fc_rscn_id_cnt || 1919 test_bit(FC_RSCN_DISCOVERY, &vport->fc_flag)) 1920 lpfc_els_handle_rscn(vport); 1921 else 1922 clear_bit(FC_RSCN_MODE, &vport->fc_flag); 1923 } 1924 } 1925 1926 /** 1927 * lpfc_cmpl_els_rrq - Completion handled for els RRQs. 1928 * @phba: pointer to lpfc hba data structure. 1929 * @cmdiocb: pointer to lpfc command iocb data structure. 1930 * @rspiocb: pointer to lpfc response iocb data structure. 1931 * 1932 * This routine will call the clear rrq function to free the rrq and 1933 * clear the xri's bit in the ndlp's xri_bitmap. If the ndlp does not 1934 * exist then the clear_rrq is still called because the rrq needs to 1935 * be freed. 1936 **/ 1937 1938 static void 1939 lpfc_cmpl_els_rrq(struct lpfc_hba *phba, struct lpfc_iocbq *cmdiocb, 1940 struct lpfc_iocbq *rspiocb) 1941 { 1942 struct lpfc_vport *vport = cmdiocb->vport; 1943 struct lpfc_nodelist *ndlp = cmdiocb->ndlp; 1944 struct lpfc_node_rrq *rrq; 1945 u32 ulp_status = get_job_ulpstatus(phba, rspiocb); 1946 u32 ulp_word4 = get_job_word4(phba, rspiocb); 1947 1948 /* we pass cmdiocb to state machine which needs rspiocb as well */ 1949 rrq = cmdiocb->context_un.rrq; 1950 cmdiocb->rsp_iocb = rspiocb; 1951 1952 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_CMD, 1953 "RRQ cmpl: status:x%x/x%x did:x%x", 1954 ulp_status, ulp_word4, 1955 get_job_els_rsp64_did(phba, cmdiocb)); 1956 1957 1958 /* rrq completes to NPort <nlp_DID> */ 1959 lpfc_printf_vlog(vport, KERN_INFO, LOG_ELS, 1960 "2880 RRQ completes to DID x%x " 1961 "Data: x%x x%x x%x x%x x%x\n", 1962 ndlp->nlp_DID, ulp_status, ulp_word4, 1963 get_wqe_tmo(cmdiocb), rrq->xritag, rrq->rxid); 1964 1965 if (ulp_status) { 1966 /* Check for retry */ 1967 /* RRQ failed Don't print the vport to vport rjts */ 1968 if (ulp_status != IOSTAT_LS_RJT || 1969 (((ulp_word4) >> 16 != LSRJT_INVALID_CMD) && 1970 ((ulp_word4) >> 16 != LSRJT_UNABLE_TPC)) || 1971 (phba)->pport->cfg_log_verbose & LOG_ELS) 1972 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT, 1973 "2881 RRQ failure DID:%06X Status:" 1974 "x%x/x%x\n", 1975 ndlp->nlp_DID, ulp_status, 1976 ulp_word4); 1977 } 1978 1979 lpfc_clr_rrq_active(phba, rrq->xritag, rrq); 1980 lpfc_els_free_iocb(phba, cmdiocb); 1981 lpfc_nlp_put(ndlp); 1982 return; 1983 } 1984 /** 1985 * lpfc_cmpl_els_plogi - Completion callback function for plogi 1986 * @phba: pointer to lpfc hba data structure. 1987 * @cmdiocb: pointer to lpfc command iocb data structure. 1988 * @rspiocb: pointer to lpfc response iocb data structure. 1989 * 1990 * This routine is the completion callback function for issuing the Port 1991 * Login (PLOGI) command. For PLOGI completion, there must be an active 1992 * ndlp on the vport node list that matches the remote node ID from the 1993 * PLOGI response IOCB. If such ndlp does not exist, the PLOGI is simply 1994 * ignored and command IOCB released. The PLOGI response IOCB status is 1995 * checked for error conditions. If there is error status reported, PLOGI 1996 * retry shall be attempted by invoking the lpfc_els_retry() routine. 1997 * Otherwise, the lpfc_plogi_confirm_nport() routine shall be invoked on 1998 * the ndlp and the NLP_EVT_CMPL_PLOGI state to the Discover State Machine 1999 * (DSM) is set for this PLOGI completion. Finally, it checks whether 2000 * there are additional N_Port nodes with the vport that need to perform 2001 * PLOGI. If so, the lpfc_more_plogi() routine is invoked to issue addition 2002 * PLOGIs. 2003 **/ 2004 static void 2005 lpfc_cmpl_els_plogi(struct lpfc_hba *phba, struct lpfc_iocbq *cmdiocb, 2006 struct lpfc_iocbq *rspiocb) 2007 { 2008 struct lpfc_vport *vport = cmdiocb->vport; 2009 IOCB_t *irsp; 2010 struct lpfc_nodelist *ndlp, *free_ndlp; 2011 struct lpfc_dmabuf *prsp; 2012 int disc; 2013 struct serv_parm *sp = NULL; 2014 u32 ulp_status, ulp_word4, did, iotag; 2015 bool release_node = false; 2016 2017 /* we pass cmdiocb to state machine which needs rspiocb as well */ 2018 cmdiocb->rsp_iocb = rspiocb; 2019 2020 ulp_status = get_job_ulpstatus(phba, rspiocb); 2021 ulp_word4 = get_job_word4(phba, rspiocb); 2022 did = get_job_els_rsp64_did(phba, cmdiocb); 2023 2024 if (phba->sli_rev == LPFC_SLI_REV4) { 2025 iotag = get_wqe_reqtag(cmdiocb); 2026 } else { 2027 irsp = &rspiocb->iocb; 2028 iotag = irsp->ulpIoTag; 2029 } 2030 2031 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_CMD, 2032 "PLOGI cmpl: status:x%x/x%x did:x%x", 2033 ulp_status, ulp_word4, did); 2034 2035 ndlp = lpfc_findnode_did(vport, did); 2036 if (!ndlp) { 2037 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT, 2038 "0136 PLOGI completes to NPort x%x " 2039 "with no ndlp. Data: x%x x%x x%x\n", 2040 did, ulp_status, ulp_word4, iotag); 2041 goto out_freeiocb; 2042 } 2043 2044 /* Since ndlp can be freed in the disc state machine, note if this node 2045 * is being used during discovery. 2046 */ 2047 spin_lock_irq(&ndlp->lock); 2048 disc = (ndlp->nlp_flag & NLP_NPR_2B_DISC); 2049 ndlp->nlp_flag &= ~NLP_NPR_2B_DISC; 2050 spin_unlock_irq(&ndlp->lock); 2051 2052 /* PLOGI completes to NPort <nlp_DID> */ 2053 lpfc_printf_vlog(vport, KERN_INFO, LOG_ELS, 2054 "0102 PLOGI completes to NPort x%06x " 2055 "IoTag x%x Data: x%x x%x x%x x%x x%x\n", 2056 ndlp->nlp_DID, iotag, 2057 ndlp->nlp_fc4_type, 2058 ulp_status, ulp_word4, 2059 disc, vport->num_disc_nodes); 2060 2061 /* Check to see if link went down during discovery */ 2062 if (lpfc_els_chk_latt(vport)) { 2063 spin_lock_irq(&ndlp->lock); 2064 ndlp->nlp_flag |= NLP_NPR_2B_DISC; 2065 spin_unlock_irq(&ndlp->lock); 2066 goto out; 2067 } 2068 2069 if (ulp_status) { 2070 /* Check for retry */ 2071 if (lpfc_els_retry(phba, cmdiocb, rspiocb)) { 2072 /* ELS command is being retried */ 2073 if (disc) { 2074 spin_lock_irq(&ndlp->lock); 2075 ndlp->nlp_flag |= NLP_NPR_2B_DISC; 2076 spin_unlock_irq(&ndlp->lock); 2077 } 2078 goto out; 2079 } 2080 /* PLOGI failed Don't print the vport to vport rjts */ 2081 if (ulp_status != IOSTAT_LS_RJT || 2082 (((ulp_word4) >> 16 != LSRJT_INVALID_CMD) && 2083 ((ulp_word4) >> 16 != LSRJT_UNABLE_TPC)) || 2084 (phba)->pport->cfg_log_verbose & LOG_ELS) 2085 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT, 2086 "2753 PLOGI failure DID:%06X " 2087 "Status:x%x/x%x\n", 2088 ndlp->nlp_DID, ulp_status, 2089 ulp_word4); 2090 2091 /* Do not call DSM for lpfc_els_abort'ed ELS cmds */ 2092 if (!lpfc_error_lost_link(vport, ulp_status, ulp_word4)) 2093 lpfc_disc_state_machine(vport, ndlp, cmdiocb, 2094 NLP_EVT_CMPL_PLOGI); 2095 2096 /* If a PLOGI collision occurred, the node needs to continue 2097 * with the reglogin process. 2098 */ 2099 spin_lock_irq(&ndlp->lock); 2100 if ((ndlp->nlp_flag & (NLP_ACC_REGLOGIN | NLP_RCV_PLOGI)) && 2101 ndlp->nlp_state == NLP_STE_REG_LOGIN_ISSUE) { 2102 spin_unlock_irq(&ndlp->lock); 2103 goto out; 2104 } 2105 2106 /* No PLOGI collision and the node is not registered with the 2107 * scsi or nvme transport. It is no longer an active node. Just 2108 * start the device remove process. 2109 */ 2110 if (!(ndlp->fc4_xpt_flags & (SCSI_XPT_REGD | NVME_XPT_REGD))) { 2111 ndlp->nlp_flag &= ~NLP_NPR_2B_DISC; 2112 if (!(ndlp->nlp_flag & NLP_IN_DEV_LOSS)) 2113 release_node = true; 2114 } 2115 spin_unlock_irq(&ndlp->lock); 2116 2117 if (release_node) 2118 lpfc_disc_state_machine(vport, ndlp, cmdiocb, 2119 NLP_EVT_DEVICE_RM); 2120 } else { 2121 /* Good status, call state machine */ 2122 prsp = list_get_first(&cmdiocb->cmd_dmabuf->list, 2123 struct lpfc_dmabuf, list); 2124 if (!prsp) 2125 goto out; 2126 if (!lpfc_is_els_acc_rsp(prsp)) 2127 goto out; 2128 ndlp = lpfc_plogi_confirm_nport(phba, prsp->virt, ndlp); 2129 2130 sp = (struct serv_parm *)((u8 *)prsp->virt + 2131 sizeof(u32)); 2132 2133 ndlp->vmid_support = 0; 2134 if ((phba->cfg_vmid_app_header && sp->cmn.app_hdr_support) || 2135 (phba->cfg_vmid_priority_tagging && 2136 sp->cmn.priority_tagging)) { 2137 lpfc_printf_log(phba, KERN_DEBUG, LOG_ELS, 2138 "4018 app_hdr_support %d tagging %d DID x%x\n", 2139 sp->cmn.app_hdr_support, 2140 sp->cmn.priority_tagging, 2141 ndlp->nlp_DID); 2142 /* if the dest port supports VMID, mark it in ndlp */ 2143 ndlp->vmid_support = 1; 2144 } 2145 2146 lpfc_disc_state_machine(vport, ndlp, cmdiocb, 2147 NLP_EVT_CMPL_PLOGI); 2148 } 2149 2150 if (disc && vport->num_disc_nodes) { 2151 /* Check to see if there are more PLOGIs to be sent */ 2152 lpfc_more_plogi(vport); 2153 2154 if (vport->num_disc_nodes == 0) { 2155 clear_bit(FC_NDISC_ACTIVE, &vport->fc_flag); 2156 2157 lpfc_can_disctmo(vport); 2158 lpfc_end_rscn(vport); 2159 } 2160 } 2161 2162 out: 2163 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_NODE, 2164 "PLOGI Cmpl PUT: did:x%x refcnt %d", 2165 ndlp->nlp_DID, kref_read(&ndlp->kref), 0); 2166 2167 out_freeiocb: 2168 /* Release the reference on the original I/O request. */ 2169 free_ndlp = cmdiocb->ndlp; 2170 2171 lpfc_els_free_iocb(phba, cmdiocb); 2172 lpfc_nlp_put(free_ndlp); 2173 return; 2174 } 2175 2176 /** 2177 * lpfc_issue_els_plogi - Issue an plogi iocb command for a vport 2178 * @vport: pointer to a host virtual N_Port data structure. 2179 * @did: destination port identifier. 2180 * @retry: number of retries to the command IOCB. 2181 * 2182 * This routine issues a Port Login (PLOGI) command to a remote N_Port 2183 * (with the @did) for a @vport. Before issuing a PLOGI to a remote N_Port, 2184 * the ndlp with the remote N_Port DID must exist on the @vport's ndlp list. 2185 * This routine constructs the proper fields of the PLOGI IOCB and invokes 2186 * the lpfc_sli_issue_iocb() routine to send out PLOGI ELS command. 2187 * 2188 * Note that the ndlp reference count will be incremented by 1 for holding 2189 * the ndlp and the reference to ndlp will be stored into the ndlp field 2190 * of the IOCB for the completion callback function to the PLOGI ELS command. 2191 * 2192 * Return code 2193 * 0 - Successfully issued a plogi for @vport 2194 * 1 - failed to issue a plogi for @vport 2195 **/ 2196 int 2197 lpfc_issue_els_plogi(struct lpfc_vport *vport, uint32_t did, uint8_t retry) 2198 { 2199 struct lpfc_hba *phba = vport->phba; 2200 struct serv_parm *sp; 2201 struct lpfc_nodelist *ndlp; 2202 struct lpfc_iocbq *elsiocb; 2203 uint8_t *pcmd; 2204 uint16_t cmdsize; 2205 int ret; 2206 2207 ndlp = lpfc_findnode_did(vport, did); 2208 if (!ndlp) 2209 return 1; 2210 2211 /* Defer the processing of the issue PLOGI until after the 2212 * outstanding UNREG_RPI mbox command completes, unless we 2213 * are going offline. This logic does not apply for Fabric DIDs 2214 */ 2215 if ((ndlp->nlp_flag & (NLP_IGNR_REG_CMPL | NLP_UNREG_INP)) && 2216 ((ndlp->nlp_DID & Fabric_DID_MASK) != Fabric_DID_MASK) && 2217 !test_bit(FC_OFFLINE_MODE, &vport->fc_flag)) { 2218 lpfc_printf_vlog(vport, KERN_INFO, LOG_DISCOVERY, 2219 "4110 Issue PLOGI x%x deferred " 2220 "on NPort x%x rpi x%x flg x%x Data:" 2221 " x%px\n", 2222 ndlp->nlp_defer_did, ndlp->nlp_DID, 2223 ndlp->nlp_rpi, ndlp->nlp_flag, ndlp); 2224 2225 /* We can only defer 1st PLOGI */ 2226 if (ndlp->nlp_defer_did == NLP_EVT_NOTHING_PENDING) 2227 ndlp->nlp_defer_did = did; 2228 return 0; 2229 } 2230 2231 cmdsize = (sizeof(uint32_t) + sizeof(struct serv_parm)); 2232 elsiocb = lpfc_prep_els_iocb(vport, 1, cmdsize, retry, ndlp, did, 2233 ELS_CMD_PLOGI); 2234 if (!elsiocb) 2235 return 1; 2236 2237 pcmd = (uint8_t *)elsiocb->cmd_dmabuf->virt; 2238 2239 /* For PLOGI request, remainder of payload is service parameters */ 2240 *((uint32_t *) (pcmd)) = ELS_CMD_PLOGI; 2241 pcmd += sizeof(uint32_t); 2242 memcpy(pcmd, &vport->fc_sparam, sizeof(struct serv_parm)); 2243 sp = (struct serv_parm *) pcmd; 2244 2245 /* 2246 * If we are a N-port connected to a Fabric, fix-up paramm's so logins 2247 * to device on remote loops work. 2248 */ 2249 if (test_bit(FC_FABRIC, &vport->fc_flag) && 2250 !test_bit(FC_PUBLIC_LOOP, &vport->fc_flag)) 2251 sp->cmn.altBbCredit = 1; 2252 2253 if (sp->cmn.fcphLow < FC_PH_4_3) 2254 sp->cmn.fcphLow = FC_PH_4_3; 2255 2256 if (sp->cmn.fcphHigh < FC_PH3) 2257 sp->cmn.fcphHigh = FC_PH3; 2258 2259 sp->cmn.valid_vendor_ver_level = 0; 2260 memset(sp->un.vendorVersion, 0, sizeof(sp->un.vendorVersion)); 2261 sp->cmn.bbRcvSizeMsb &= 0xF; 2262 2263 /* Check if the destination port supports VMID */ 2264 ndlp->vmid_support = 0; 2265 if (vport->vmid_priority_tagging) 2266 sp->cmn.priority_tagging = 1; 2267 else if (phba->cfg_vmid_app_header && 2268 bf_get(lpfc_ftr_ashdr, &phba->sli4_hba.sli4_flags)) 2269 sp->cmn.app_hdr_support = 1; 2270 2271 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_CMD, 2272 "Issue PLOGI: did:x%x", 2273 did, 0, 0); 2274 2275 /* If our firmware supports this feature, convey that 2276 * information to the target using the vendor specific field. 2277 */ 2278 if (phba->sli.sli_flag & LPFC_SLI_SUPPRESS_RSP) { 2279 sp->cmn.valid_vendor_ver_level = 1; 2280 sp->un.vv.vid = cpu_to_be32(LPFC_VV_EMLX_ID); 2281 sp->un.vv.flags = cpu_to_be32(LPFC_VV_SUPPRESS_RSP); 2282 } 2283 2284 phba->fc_stat.elsXmitPLOGI++; 2285 elsiocb->cmd_cmpl = lpfc_cmpl_els_plogi; 2286 2287 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_CMD, 2288 "Issue PLOGI: did:x%x refcnt %d", 2289 did, kref_read(&ndlp->kref), 0); 2290 elsiocb->ndlp = lpfc_nlp_get(ndlp); 2291 if (!elsiocb->ndlp) { 2292 lpfc_els_free_iocb(phba, elsiocb); 2293 return 1; 2294 } 2295 2296 ret = lpfc_sli_issue_iocb(phba, LPFC_ELS_RING, elsiocb, 0); 2297 if (ret) { 2298 lpfc_els_free_iocb(phba, elsiocb); 2299 lpfc_nlp_put(ndlp); 2300 return 1; 2301 } 2302 2303 return 0; 2304 } 2305 2306 /** 2307 * lpfc_cmpl_els_prli - Completion callback function for prli 2308 * @phba: pointer to lpfc hba data structure. 2309 * @cmdiocb: pointer to lpfc command iocb data structure. 2310 * @rspiocb: pointer to lpfc response iocb data structure. 2311 * 2312 * This routine is the completion callback function for a Process Login 2313 * (PRLI) ELS command. The PRLI response IOCB status is checked for error 2314 * status. If there is error status reported, PRLI retry shall be attempted 2315 * by invoking the lpfc_els_retry() routine. Otherwise, the state 2316 * NLP_EVT_CMPL_PRLI is sent to the Discover State Machine (DSM) for this 2317 * ndlp to mark the PRLI completion. 2318 **/ 2319 static void 2320 lpfc_cmpl_els_prli(struct lpfc_hba *phba, struct lpfc_iocbq *cmdiocb, 2321 struct lpfc_iocbq *rspiocb) 2322 { 2323 struct lpfc_vport *vport = cmdiocb->vport; 2324 struct lpfc_nodelist *ndlp; 2325 char *mode; 2326 u32 loglevel; 2327 u32 ulp_status; 2328 u32 ulp_word4; 2329 bool release_node = false; 2330 2331 /* we pass cmdiocb to state machine which needs rspiocb as well */ 2332 cmdiocb->rsp_iocb = rspiocb; 2333 2334 ndlp = cmdiocb->ndlp; 2335 2336 ulp_status = get_job_ulpstatus(phba, rspiocb); 2337 ulp_word4 = get_job_word4(phba, rspiocb); 2338 2339 spin_lock_irq(&ndlp->lock); 2340 ndlp->nlp_flag &= ~NLP_PRLI_SND; 2341 2342 /* Driver supports multiple FC4 types. Counters matter. */ 2343 vport->fc_prli_sent--; 2344 ndlp->fc4_prli_sent--; 2345 spin_unlock_irq(&ndlp->lock); 2346 2347 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_CMD, 2348 "PRLI cmpl: status:x%x/x%x did:x%x", 2349 ulp_status, ulp_word4, 2350 ndlp->nlp_DID); 2351 2352 /* PRLI completes to NPort <nlp_DID> */ 2353 lpfc_printf_vlog(vport, KERN_INFO, LOG_ELS, 2354 "0103 PRLI completes to NPort x%06x " 2355 "Data: x%x x%x x%x x%x x%x\n", 2356 ndlp->nlp_DID, ulp_status, ulp_word4, 2357 vport->num_disc_nodes, ndlp->fc4_prli_sent, 2358 ndlp->fc4_xpt_flags); 2359 2360 /* Check to see if link went down during discovery */ 2361 if (lpfc_els_chk_latt(vport)) 2362 goto out; 2363 2364 if (ulp_status) { 2365 /* Check for retry */ 2366 if (lpfc_els_retry(phba, cmdiocb, rspiocb)) { 2367 /* ELS command is being retried */ 2368 goto out; 2369 } 2370 2371 /* If we don't send GFT_ID to Fabric, a PRLI error 2372 * could be expected. 2373 */ 2374 if (test_bit(FC_FABRIC, &vport->fc_flag) || 2375 vport->cfg_enable_fc4_type != LPFC_ENABLE_BOTH) { 2376 mode = KERN_ERR; 2377 loglevel = LOG_TRACE_EVENT; 2378 } else { 2379 mode = KERN_INFO; 2380 loglevel = LOG_ELS; 2381 } 2382 2383 /* PRLI failed */ 2384 lpfc_printf_vlog(vport, mode, loglevel, 2385 "2754 PRLI failure DID:%06X Status:x%x/x%x, " 2386 "data: x%x x%x x%x\n", 2387 ndlp->nlp_DID, ulp_status, 2388 ulp_word4, ndlp->nlp_state, 2389 ndlp->fc4_prli_sent, ndlp->nlp_flag); 2390 2391 /* Do not call DSM for lpfc_els_abort'ed ELS cmds */ 2392 if (!lpfc_error_lost_link(vport, ulp_status, ulp_word4)) 2393 lpfc_disc_state_machine(vport, ndlp, cmdiocb, 2394 NLP_EVT_CMPL_PRLI); 2395 2396 /* The following condition catches an inflight transition 2397 * mismatch typically caused by an RSCN. Skip any 2398 * processing to allow recovery. 2399 */ 2400 if ((ndlp->nlp_state >= NLP_STE_PLOGI_ISSUE && 2401 ndlp->nlp_state <= NLP_STE_REG_LOGIN_ISSUE) || 2402 (ndlp->nlp_state == NLP_STE_NPR_NODE && 2403 ndlp->nlp_flag & NLP_DELAY_TMO)) { 2404 lpfc_printf_vlog(vport, KERN_WARNING, LOG_NODE, 2405 "2784 PRLI cmpl: Allow Node recovery " 2406 "DID x%06x nstate x%x nflag x%x\n", 2407 ndlp->nlp_DID, ndlp->nlp_state, 2408 ndlp->nlp_flag); 2409 goto out; 2410 } 2411 2412 /* 2413 * For P2P topology, retain the node so that PLOGI can be 2414 * attempted on it again. 2415 */ 2416 if (test_bit(FC_PT2PT, &vport->fc_flag)) 2417 goto out; 2418 2419 /* As long as this node is not registered with the SCSI 2420 * or NVMe transport and no other PRLIs are outstanding, 2421 * it is no longer an active node. Otherwise devloss 2422 * handles the final cleanup. 2423 */ 2424 spin_lock_irq(&ndlp->lock); 2425 if (!(ndlp->fc4_xpt_flags & (SCSI_XPT_REGD | NVME_XPT_REGD)) && 2426 !ndlp->fc4_prli_sent) { 2427 ndlp->nlp_flag &= ~NLP_NPR_2B_DISC; 2428 if (!(ndlp->nlp_flag & NLP_IN_DEV_LOSS)) 2429 release_node = true; 2430 } 2431 spin_unlock_irq(&ndlp->lock); 2432 2433 if (release_node) 2434 lpfc_disc_state_machine(vport, ndlp, cmdiocb, 2435 NLP_EVT_DEVICE_RM); 2436 } else { 2437 /* Good status, call state machine. However, if another 2438 * PRLI is outstanding, don't call the state machine 2439 * because final disposition to Mapped or Unmapped is 2440 * completed there. 2441 */ 2442 lpfc_disc_state_machine(vport, ndlp, cmdiocb, 2443 NLP_EVT_CMPL_PRLI); 2444 } 2445 2446 out: 2447 lpfc_els_free_iocb(phba, cmdiocb); 2448 lpfc_nlp_put(ndlp); 2449 return; 2450 } 2451 2452 /** 2453 * lpfc_issue_els_prli - Issue a prli iocb command for a vport 2454 * @vport: pointer to a host virtual N_Port data structure. 2455 * @ndlp: pointer to a node-list data structure. 2456 * @retry: number of retries to the command IOCB. 2457 * 2458 * This routine issues a Process Login (PRLI) ELS command for the 2459 * @vport. The PRLI service parameters are set up in the payload of the 2460 * PRLI Request command and the pointer to lpfc_cmpl_els_prli() routine 2461 * is put to the IOCB completion callback func field before invoking the 2462 * routine lpfc_sli_issue_iocb() to send out PRLI command. 2463 * 2464 * Note that the ndlp reference count will be incremented by 1 for holding the 2465 * ndlp and the reference to ndlp will be stored into the ndlp field of 2466 * the IOCB for the completion callback function to the PRLI ELS command. 2467 * 2468 * Return code 2469 * 0 - successfully issued prli iocb command for @vport 2470 * 1 - failed to issue prli iocb command for @vport 2471 **/ 2472 int 2473 lpfc_issue_els_prli(struct lpfc_vport *vport, struct lpfc_nodelist *ndlp, 2474 uint8_t retry) 2475 { 2476 int rc = 0; 2477 struct lpfc_hba *phba = vport->phba; 2478 PRLI *npr; 2479 struct lpfc_nvme_prli *npr_nvme; 2480 struct lpfc_iocbq *elsiocb; 2481 uint8_t *pcmd; 2482 uint16_t cmdsize; 2483 u32 local_nlp_type, elscmd; 2484 2485 /* 2486 * If we are in RSCN mode, the FC4 types supported from a 2487 * previous GFT_ID command may not be accurate. So, if we 2488 * are a NVME Initiator, always look for the possibility of 2489 * the remote NPort beng a NVME Target. 2490 */ 2491 if (phba->sli_rev == LPFC_SLI_REV4 && 2492 test_bit(FC_RSCN_MODE, &vport->fc_flag) && 2493 vport->nvmei_support) 2494 ndlp->nlp_fc4_type |= NLP_FC4_NVME; 2495 local_nlp_type = ndlp->nlp_fc4_type; 2496 2497 /* This routine will issue 1 or 2 PRLIs, so zero all the ndlp 2498 * fields here before any of them can complete. 2499 */ 2500 ndlp->nlp_type &= ~(NLP_FCP_TARGET | NLP_FCP_INITIATOR); 2501 ndlp->nlp_type &= ~(NLP_NVME_TARGET | NLP_NVME_INITIATOR); 2502 ndlp->nlp_fcp_info &= ~NLP_FCP_2_DEVICE; 2503 ndlp->nlp_flag &= ~(NLP_FIRSTBURST | NLP_NPR_2B_DISC); 2504 ndlp->nvme_fb_size = 0; 2505 2506 send_next_prli: 2507 if (local_nlp_type & NLP_FC4_FCP) { 2508 /* Payload is 4 + 16 = 20 x14 bytes. */ 2509 cmdsize = (sizeof(uint32_t) + sizeof(PRLI)); 2510 elscmd = ELS_CMD_PRLI; 2511 } else if (local_nlp_type & NLP_FC4_NVME) { 2512 /* Payload is 4 + 20 = 24 x18 bytes. */ 2513 cmdsize = (sizeof(uint32_t) + sizeof(struct lpfc_nvme_prli)); 2514 elscmd = ELS_CMD_NVMEPRLI; 2515 } else { 2516 lpfc_printf_vlog(vport, KERN_INFO, LOG_DISCOVERY, 2517 "3083 Unknown FC_TYPE x%x ndlp x%06x\n", 2518 ndlp->nlp_fc4_type, ndlp->nlp_DID); 2519 return 1; 2520 } 2521 2522 /* SLI3 ports don't support NVME. If this rport is a strict NVME 2523 * FC4 type, implicitly LOGO. 2524 */ 2525 if (phba->sli_rev == LPFC_SLI_REV3 && 2526 ndlp->nlp_fc4_type == NLP_FC4_NVME) { 2527 lpfc_printf_vlog(vport, KERN_INFO, LOG_DISCOVERY, 2528 "3088 Rport fc4 type 0x%x not supported by SLI3 adapter\n", 2529 ndlp->nlp_type); 2530 lpfc_disc_state_machine(vport, ndlp, NULL, NLP_EVT_DEVICE_RM); 2531 return 1; 2532 } 2533 2534 elsiocb = lpfc_prep_els_iocb(vport, 1, cmdsize, retry, ndlp, 2535 ndlp->nlp_DID, elscmd); 2536 if (!elsiocb) 2537 return 1; 2538 2539 pcmd = (uint8_t *)elsiocb->cmd_dmabuf->virt; 2540 2541 /* For PRLI request, remainder of payload is service parameters */ 2542 memset(pcmd, 0, cmdsize); 2543 2544 if (local_nlp_type & NLP_FC4_FCP) { 2545 /* Remainder of payload is FCP PRLI parameter page. 2546 * Note: this data structure is defined as 2547 * BE/LE in the structure definition so no 2548 * byte swap call is made. 2549 */ 2550 *((uint32_t *)(pcmd)) = ELS_CMD_PRLI; 2551 pcmd += sizeof(uint32_t); 2552 npr = (PRLI *)pcmd; 2553 2554 /* 2555 * If our firmware version is 3.20 or later, 2556 * set the following bits for FC-TAPE support. 2557 */ 2558 if (phba->vpd.rev.feaLevelHigh >= 0x02) { 2559 npr->ConfmComplAllowed = 1; 2560 npr->Retry = 1; 2561 npr->TaskRetryIdReq = 1; 2562 } 2563 npr->estabImagePair = 1; 2564 npr->readXferRdyDis = 1; 2565 if (vport->cfg_first_burst_size) 2566 npr->writeXferRdyDis = 1; 2567 2568 /* For FCP support */ 2569 npr->prliType = PRLI_FCP_TYPE; 2570 npr->initiatorFunc = 1; 2571 elsiocb->cmd_flag |= LPFC_PRLI_FCP_REQ; 2572 2573 /* Remove FCP type - processed. */ 2574 local_nlp_type &= ~NLP_FC4_FCP; 2575 } else if (local_nlp_type & NLP_FC4_NVME) { 2576 /* Remainder of payload is NVME PRLI parameter page. 2577 * This data structure is the newer definition that 2578 * uses bf macros so a byte swap is required. 2579 */ 2580 *((uint32_t *)(pcmd)) = ELS_CMD_NVMEPRLI; 2581 pcmd += sizeof(uint32_t); 2582 npr_nvme = (struct lpfc_nvme_prli *)pcmd; 2583 bf_set(prli_type_code, npr_nvme, PRLI_NVME_TYPE); 2584 bf_set(prli_estabImagePair, npr_nvme, 0); /* Should be 0 */ 2585 if (phba->nsler) { 2586 bf_set(prli_nsler, npr_nvme, 1); 2587 bf_set(prli_conf, npr_nvme, 1); 2588 } 2589 2590 /* Only initiators request first burst. */ 2591 if ((phba->cfg_nvme_enable_fb) && 2592 !phba->nvmet_support) 2593 bf_set(prli_fba, npr_nvme, 1); 2594 2595 if (phba->nvmet_support) { 2596 bf_set(prli_tgt, npr_nvme, 1); 2597 bf_set(prli_disc, npr_nvme, 1); 2598 } else { 2599 bf_set(prli_init, npr_nvme, 1); 2600 bf_set(prli_conf, npr_nvme, 1); 2601 } 2602 2603 npr_nvme->word1 = cpu_to_be32(npr_nvme->word1); 2604 npr_nvme->word4 = cpu_to_be32(npr_nvme->word4); 2605 elsiocb->cmd_flag |= LPFC_PRLI_NVME_REQ; 2606 2607 /* Remove NVME type - processed. */ 2608 local_nlp_type &= ~NLP_FC4_NVME; 2609 } 2610 2611 phba->fc_stat.elsXmitPRLI++; 2612 elsiocb->cmd_cmpl = lpfc_cmpl_els_prli; 2613 2614 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_CMD, 2615 "Issue PRLI: did:x%x refcnt %d", 2616 ndlp->nlp_DID, kref_read(&ndlp->kref), 0); 2617 elsiocb->ndlp = lpfc_nlp_get(ndlp); 2618 if (!elsiocb->ndlp) { 2619 lpfc_els_free_iocb(phba, elsiocb); 2620 return 1; 2621 } 2622 2623 rc = lpfc_sli_issue_iocb(phba, LPFC_ELS_RING, elsiocb, 0); 2624 if (rc == IOCB_ERROR) { 2625 lpfc_els_free_iocb(phba, elsiocb); 2626 lpfc_nlp_put(ndlp); 2627 return 1; 2628 } 2629 2630 /* The vport counters are used for lpfc_scan_finished, but 2631 * the ndlp is used to track outstanding PRLIs for different 2632 * FC4 types. 2633 */ 2634 spin_lock_irq(&ndlp->lock); 2635 ndlp->nlp_flag |= NLP_PRLI_SND; 2636 vport->fc_prli_sent++; 2637 ndlp->fc4_prli_sent++; 2638 spin_unlock_irq(&ndlp->lock); 2639 2640 /* The driver supports 2 FC4 types. Make sure 2641 * a PRLI is issued for all types before exiting. 2642 */ 2643 if (phba->sli_rev == LPFC_SLI_REV4 && 2644 local_nlp_type & (NLP_FC4_FCP | NLP_FC4_NVME)) 2645 goto send_next_prli; 2646 else 2647 return 0; 2648 } 2649 2650 /** 2651 * lpfc_rscn_disc - Perform rscn discovery for a vport 2652 * @vport: pointer to a host virtual N_Port data structure. 2653 * 2654 * This routine performs Registration State Change Notification (RSCN) 2655 * discovery for a @vport. If the @vport's node port recovery count is not 2656 * zero, it will invoke the lpfc_els_disc_plogi() to perform PLOGI for all 2657 * the nodes that need recovery. If none of the PLOGI were needed through 2658 * the lpfc_els_disc_plogi() routine, the lpfc_end_rscn() routine shall be 2659 * invoked to check and handle possible more RSCN came in during the period 2660 * of processing the current ones. 2661 **/ 2662 static void 2663 lpfc_rscn_disc(struct lpfc_vport *vport) 2664 { 2665 lpfc_can_disctmo(vport); 2666 2667 /* RSCN discovery */ 2668 /* go thru NPR nodes and issue ELS PLOGIs */ 2669 if (atomic_read(&vport->fc_npr_cnt)) 2670 if (lpfc_els_disc_plogi(vport)) 2671 return; 2672 2673 lpfc_end_rscn(vport); 2674 } 2675 2676 /** 2677 * lpfc_adisc_done - Complete the adisc phase of discovery 2678 * @vport: pointer to lpfc_vport hba data structure that finished all ADISCs. 2679 * 2680 * This function is called when the final ADISC is completed during discovery. 2681 * This function handles clearing link attention or issuing reg_vpi depending 2682 * on whether npiv is enabled. This function also kicks off the PLOGI phase of 2683 * discovery. 2684 * This function is called with no locks held. 2685 **/ 2686 static void 2687 lpfc_adisc_done(struct lpfc_vport *vport) 2688 { 2689 struct lpfc_hba *phba = vport->phba; 2690 2691 /* 2692 * For NPIV, cmpl_reg_vpi will set port_state to READY, 2693 * and continue discovery. 2694 */ 2695 if ((phba->sli3_options & LPFC_SLI3_NPIV_ENABLED) && 2696 !test_bit(FC_RSCN_MODE, &vport->fc_flag) && 2697 (phba->sli_rev < LPFC_SLI_REV4)) { 2698 2699 /* 2700 * If link is down, clear_la and reg_vpi will be done after 2701 * flogi following a link up event 2702 */ 2703 if (!lpfc_is_link_up(phba)) 2704 return; 2705 2706 /* The ADISCs are complete. Doesn't matter if they 2707 * succeeded or failed because the ADISC completion 2708 * routine guarantees to call the state machine and 2709 * the RPI is either unregistered (failed ADISC response) 2710 * or the RPI is still valid and the node is marked 2711 * mapped for a target. The exchanges should be in the 2712 * correct state. This code is specific to SLI3. 2713 */ 2714 lpfc_issue_clear_la(phba, vport); 2715 lpfc_issue_reg_vpi(phba, vport); 2716 return; 2717 } 2718 /* 2719 * For SLI2, we need to set port_state to READY 2720 * and continue discovery. 2721 */ 2722 if (vport->port_state < LPFC_VPORT_READY) { 2723 /* If we get here, there is nothing to ADISC */ 2724 lpfc_issue_clear_la(phba, vport); 2725 if (!test_bit(FC_ABORT_DISCOVERY, &vport->fc_flag)) { 2726 vport->num_disc_nodes = 0; 2727 /* go thru NPR list, issue ELS PLOGIs */ 2728 if (atomic_read(&vport->fc_npr_cnt)) 2729 lpfc_els_disc_plogi(vport); 2730 if (!vport->num_disc_nodes) { 2731 clear_bit(FC_NDISC_ACTIVE, &vport->fc_flag); 2732 lpfc_can_disctmo(vport); 2733 lpfc_end_rscn(vport); 2734 } 2735 } 2736 vport->port_state = LPFC_VPORT_READY; 2737 } else 2738 lpfc_rscn_disc(vport); 2739 } 2740 2741 /** 2742 * lpfc_more_adisc - Issue more adisc as needed 2743 * @vport: pointer to a host virtual N_Port data structure. 2744 * 2745 * This routine determines whether there are more ndlps on a @vport 2746 * node list need to have Address Discover (ADISC) issued. If so, it will 2747 * invoke the lpfc_els_disc_adisc() routine to issue ADISC on the @vport's 2748 * remaining nodes which need to have ADISC sent. 2749 **/ 2750 void 2751 lpfc_more_adisc(struct lpfc_vport *vport) 2752 { 2753 if (vport->num_disc_nodes) 2754 vport->num_disc_nodes--; 2755 /* Continue discovery with <num_disc_nodes> ADISCs to go */ 2756 lpfc_printf_vlog(vport, KERN_INFO, LOG_DISCOVERY, 2757 "0210 Continue discovery with %d ADISCs to go " 2758 "Data: x%x x%lx x%x\n", 2759 vport->num_disc_nodes, 2760 atomic_read(&vport->fc_adisc_cnt), 2761 vport->fc_flag, vport->port_state); 2762 /* Check to see if there are more ADISCs to be sent */ 2763 if (test_bit(FC_NLP_MORE, &vport->fc_flag)) { 2764 lpfc_set_disctmo(vport); 2765 /* go thru NPR nodes and issue any remaining ELS ADISCs */ 2766 lpfc_els_disc_adisc(vport); 2767 } 2768 if (!vport->num_disc_nodes) 2769 lpfc_adisc_done(vport); 2770 return; 2771 } 2772 2773 /** 2774 * lpfc_cmpl_els_adisc - Completion callback function for adisc 2775 * @phba: pointer to lpfc hba data structure. 2776 * @cmdiocb: pointer to lpfc command iocb data structure. 2777 * @rspiocb: pointer to lpfc response iocb data structure. 2778 * 2779 * This routine is the completion function for issuing the Address Discover 2780 * (ADISC) command. It first checks to see whether link went down during 2781 * the discovery process. If so, the node will be marked as node port 2782 * recovery for issuing discover IOCB by the link attention handler and 2783 * exit. Otherwise, the response status is checked. If error was reported 2784 * in the response status, the ADISC command shall be retried by invoking 2785 * the lpfc_els_retry() routine. Otherwise, if no error was reported in 2786 * the response status, the state machine is invoked to set transition 2787 * with respect to NLP_EVT_CMPL_ADISC event. 2788 **/ 2789 static void 2790 lpfc_cmpl_els_adisc(struct lpfc_hba *phba, struct lpfc_iocbq *cmdiocb, 2791 struct lpfc_iocbq *rspiocb) 2792 { 2793 struct lpfc_vport *vport = cmdiocb->vport; 2794 IOCB_t *irsp; 2795 struct lpfc_nodelist *ndlp; 2796 int disc; 2797 u32 ulp_status, ulp_word4, tmo, iotag; 2798 bool release_node = false; 2799 2800 /* we pass cmdiocb to state machine which needs rspiocb as well */ 2801 cmdiocb->rsp_iocb = rspiocb; 2802 2803 ndlp = cmdiocb->ndlp; 2804 2805 ulp_status = get_job_ulpstatus(phba, rspiocb); 2806 ulp_word4 = get_job_word4(phba, rspiocb); 2807 2808 if (phba->sli_rev == LPFC_SLI_REV4) { 2809 tmo = get_wqe_tmo(cmdiocb); 2810 iotag = get_wqe_reqtag(cmdiocb); 2811 } else { 2812 irsp = &rspiocb->iocb; 2813 tmo = irsp->ulpTimeout; 2814 iotag = irsp->ulpIoTag; 2815 } 2816 2817 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_CMD, 2818 "ADISC cmpl: status:x%x/x%x did:x%x", 2819 ulp_status, ulp_word4, 2820 ndlp->nlp_DID); 2821 2822 /* Since ndlp can be freed in the disc state machine, note if this node 2823 * is being used during discovery. 2824 */ 2825 spin_lock_irq(&ndlp->lock); 2826 disc = (ndlp->nlp_flag & NLP_NPR_2B_DISC); 2827 ndlp->nlp_flag &= ~(NLP_ADISC_SND | NLP_NPR_2B_DISC); 2828 spin_unlock_irq(&ndlp->lock); 2829 /* ADISC completes to NPort <nlp_DID> */ 2830 lpfc_printf_vlog(vport, KERN_INFO, LOG_ELS, 2831 "0104 ADISC completes to NPort x%x " 2832 "IoTag x%x Data: x%x x%x x%x x%x x%x\n", 2833 ndlp->nlp_DID, iotag, 2834 ulp_status, ulp_word4, 2835 tmo, disc, vport->num_disc_nodes); 2836 2837 /* Check to see if link went down during discovery */ 2838 if (lpfc_els_chk_latt(vport)) { 2839 spin_lock_irq(&ndlp->lock); 2840 ndlp->nlp_flag |= NLP_NPR_2B_DISC; 2841 spin_unlock_irq(&ndlp->lock); 2842 goto out; 2843 } 2844 2845 if (ulp_status) { 2846 /* Check for retry */ 2847 if (lpfc_els_retry(phba, cmdiocb, rspiocb)) { 2848 /* ELS command is being retried */ 2849 if (disc) { 2850 spin_lock_irq(&ndlp->lock); 2851 ndlp->nlp_flag |= NLP_NPR_2B_DISC; 2852 spin_unlock_irq(&ndlp->lock); 2853 lpfc_set_disctmo(vport); 2854 } 2855 goto out; 2856 } 2857 /* ADISC failed */ 2858 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT, 2859 "2755 ADISC failure DID:%06X Status:x%x/x%x\n", 2860 ndlp->nlp_DID, ulp_status, 2861 ulp_word4); 2862 lpfc_disc_state_machine(vport, ndlp, cmdiocb, 2863 NLP_EVT_CMPL_ADISC); 2864 2865 /* As long as this node is not registered with the SCSI or NVMe 2866 * transport, it is no longer an active node. Otherwise 2867 * devloss handles the final cleanup. 2868 */ 2869 spin_lock_irq(&ndlp->lock); 2870 if (!(ndlp->fc4_xpt_flags & (SCSI_XPT_REGD | NVME_XPT_REGD))) { 2871 ndlp->nlp_flag &= ~NLP_NPR_2B_DISC; 2872 if (!(ndlp->nlp_flag & NLP_IN_DEV_LOSS)) 2873 release_node = true; 2874 } 2875 spin_unlock_irq(&ndlp->lock); 2876 2877 if (release_node) 2878 lpfc_disc_state_machine(vport, ndlp, cmdiocb, 2879 NLP_EVT_DEVICE_RM); 2880 } else 2881 /* Good status, call state machine */ 2882 lpfc_disc_state_machine(vport, ndlp, cmdiocb, 2883 NLP_EVT_CMPL_ADISC); 2884 2885 /* Check to see if there are more ADISCs to be sent */ 2886 if (disc && vport->num_disc_nodes) 2887 lpfc_more_adisc(vport); 2888 out: 2889 lpfc_els_free_iocb(phba, cmdiocb); 2890 lpfc_nlp_put(ndlp); 2891 return; 2892 } 2893 2894 /** 2895 * lpfc_issue_els_adisc - Issue an address discover iocb to an node on a vport 2896 * @vport: pointer to a virtual N_Port data structure. 2897 * @ndlp: pointer to a node-list data structure. 2898 * @retry: number of retries to the command IOCB. 2899 * 2900 * This routine issues an Address Discover (ADISC) for an @ndlp on a 2901 * @vport. It prepares the payload of the ADISC ELS command, updates the 2902 * and states of the ndlp, and invokes the lpfc_sli_issue_iocb() routine 2903 * to issue the ADISC ELS command. 2904 * 2905 * Note that the ndlp reference count will be incremented by 1 for holding the 2906 * ndlp and the reference to ndlp will be stored into the ndlp field of 2907 * the IOCB for the completion callback function to the ADISC ELS command. 2908 * 2909 * Return code 2910 * 0 - successfully issued adisc 2911 * 1 - failed to issue adisc 2912 **/ 2913 int 2914 lpfc_issue_els_adisc(struct lpfc_vport *vport, struct lpfc_nodelist *ndlp, 2915 uint8_t retry) 2916 { 2917 int rc = 0; 2918 struct lpfc_hba *phba = vport->phba; 2919 ADISC *ap; 2920 struct lpfc_iocbq *elsiocb; 2921 uint8_t *pcmd; 2922 uint16_t cmdsize; 2923 2924 cmdsize = (sizeof(uint32_t) + sizeof(ADISC)); 2925 elsiocb = lpfc_prep_els_iocb(vport, 1, cmdsize, retry, ndlp, 2926 ndlp->nlp_DID, ELS_CMD_ADISC); 2927 if (!elsiocb) 2928 return 1; 2929 2930 pcmd = (uint8_t *)elsiocb->cmd_dmabuf->virt; 2931 2932 /* For ADISC request, remainder of payload is service parameters */ 2933 *((uint32_t *) (pcmd)) = ELS_CMD_ADISC; 2934 pcmd += sizeof(uint32_t); 2935 2936 /* Fill in ADISC payload */ 2937 ap = (ADISC *) pcmd; 2938 ap->hardAL_PA = phba->fc_pref_ALPA; 2939 memcpy(&ap->portName, &vport->fc_portname, sizeof(struct lpfc_name)); 2940 memcpy(&ap->nodeName, &vport->fc_nodename, sizeof(struct lpfc_name)); 2941 ap->DID = be32_to_cpu(vport->fc_myDID); 2942 2943 phba->fc_stat.elsXmitADISC++; 2944 elsiocb->cmd_cmpl = lpfc_cmpl_els_adisc; 2945 spin_lock_irq(&ndlp->lock); 2946 ndlp->nlp_flag |= NLP_ADISC_SND; 2947 spin_unlock_irq(&ndlp->lock); 2948 elsiocb->ndlp = lpfc_nlp_get(ndlp); 2949 if (!elsiocb->ndlp) { 2950 lpfc_els_free_iocb(phba, elsiocb); 2951 goto err; 2952 } 2953 2954 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_CMD, 2955 "Issue ADISC: did:x%x refcnt %d", 2956 ndlp->nlp_DID, kref_read(&ndlp->kref), 0); 2957 2958 rc = lpfc_sli_issue_iocb(phba, LPFC_ELS_RING, elsiocb, 0); 2959 if (rc == IOCB_ERROR) { 2960 lpfc_els_free_iocb(phba, elsiocb); 2961 lpfc_nlp_put(ndlp); 2962 goto err; 2963 } 2964 2965 return 0; 2966 2967 err: 2968 spin_lock_irq(&ndlp->lock); 2969 ndlp->nlp_flag &= ~NLP_ADISC_SND; 2970 spin_unlock_irq(&ndlp->lock); 2971 return 1; 2972 } 2973 2974 /** 2975 * lpfc_cmpl_els_logo - Completion callback function for logo 2976 * @phba: pointer to lpfc hba data structure. 2977 * @cmdiocb: pointer to lpfc command iocb data structure. 2978 * @rspiocb: pointer to lpfc response iocb data structure. 2979 * 2980 * This routine is the completion function for issuing the ELS Logout (LOGO) 2981 * command. If no error status was reported from the LOGO response, the 2982 * state machine of the associated ndlp shall be invoked for transition with 2983 * respect to NLP_EVT_CMPL_LOGO event. 2984 **/ 2985 static void 2986 lpfc_cmpl_els_logo(struct lpfc_hba *phba, struct lpfc_iocbq *cmdiocb, 2987 struct lpfc_iocbq *rspiocb) 2988 { 2989 struct lpfc_nodelist *ndlp = cmdiocb->ndlp; 2990 struct lpfc_vport *vport = ndlp->vport; 2991 IOCB_t *irsp; 2992 unsigned long flags; 2993 uint32_t skip_recovery = 0; 2994 int wake_up_waiter = 0; 2995 u32 ulp_status; 2996 u32 ulp_word4; 2997 u32 tmo, iotag; 2998 2999 /* we pass cmdiocb to state machine which needs rspiocb as well */ 3000 cmdiocb->rsp_iocb = rspiocb; 3001 3002 ulp_status = get_job_ulpstatus(phba, rspiocb); 3003 ulp_word4 = get_job_word4(phba, rspiocb); 3004 3005 if (phba->sli_rev == LPFC_SLI_REV4) { 3006 tmo = get_wqe_tmo(cmdiocb); 3007 iotag = get_wqe_reqtag(cmdiocb); 3008 } else { 3009 irsp = &rspiocb->iocb; 3010 tmo = irsp->ulpTimeout; 3011 iotag = irsp->ulpIoTag; 3012 } 3013 3014 spin_lock_irq(&ndlp->lock); 3015 ndlp->nlp_flag &= ~NLP_LOGO_SND; 3016 if (ndlp->save_flags & NLP_WAIT_FOR_LOGO) { 3017 wake_up_waiter = 1; 3018 ndlp->save_flags &= ~NLP_WAIT_FOR_LOGO; 3019 } 3020 spin_unlock_irq(&ndlp->lock); 3021 3022 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_CMD, 3023 "LOGO cmpl: status:x%x/x%x did:x%x", 3024 ulp_status, ulp_word4, 3025 ndlp->nlp_DID); 3026 3027 /* LOGO completes to NPort <nlp_DID> */ 3028 lpfc_printf_vlog(vport, KERN_INFO, LOG_ELS, 3029 "0105 LOGO completes to NPort x%x " 3030 "IoTag x%x refcnt %d nflags x%x xflags x%x " 3031 "Data: x%x x%x x%x x%x\n", 3032 ndlp->nlp_DID, iotag, 3033 kref_read(&ndlp->kref), ndlp->nlp_flag, 3034 ndlp->fc4_xpt_flags, ulp_status, ulp_word4, 3035 tmo, vport->num_disc_nodes); 3036 3037 if (lpfc_els_chk_latt(vport)) { 3038 skip_recovery = 1; 3039 goto out; 3040 } 3041 3042 /* The LOGO will not be retried on failure. A LOGO was 3043 * issued to the remote rport and a ACC or RJT or no Answer are 3044 * all acceptable. Note the failure and move forward with 3045 * discovery. The PLOGI will retry. 3046 */ 3047 if (ulp_status) { 3048 /* LOGO failed */ 3049 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT, 3050 "2756 LOGO failure, No Retry DID:%06X " 3051 "Status:x%x/x%x\n", 3052 ndlp->nlp_DID, ulp_status, 3053 ulp_word4); 3054 3055 if (lpfc_error_lost_link(vport, ulp_status, ulp_word4)) 3056 skip_recovery = 1; 3057 } 3058 3059 /* Call state machine. This will unregister the rpi if needed. */ 3060 lpfc_disc_state_machine(vport, ndlp, cmdiocb, NLP_EVT_CMPL_LOGO); 3061 3062 if (skip_recovery) 3063 goto out; 3064 3065 /* The driver sets this flag for an NPIV instance that doesn't want to 3066 * log into the remote port. 3067 */ 3068 if (ndlp->nlp_flag & NLP_TARGET_REMOVE) { 3069 spin_lock_irq(&ndlp->lock); 3070 if (phba->sli_rev == LPFC_SLI_REV4) 3071 ndlp->nlp_flag |= NLP_RELEASE_RPI; 3072 ndlp->nlp_flag &= ~NLP_NPR_2B_DISC; 3073 spin_unlock_irq(&ndlp->lock); 3074 lpfc_disc_state_machine(vport, ndlp, cmdiocb, 3075 NLP_EVT_DEVICE_RM); 3076 goto out_rsrc_free; 3077 } 3078 3079 out: 3080 /* At this point, the LOGO processing is complete. NOTE: For a 3081 * pt2pt topology, we are assuming the NPortID will only change 3082 * on link up processing. For a LOGO / PLOGI initiated by the 3083 * Initiator, we are assuming the NPortID is not going to change. 3084 */ 3085 3086 if (wake_up_waiter && ndlp->logo_waitq) 3087 wake_up(ndlp->logo_waitq); 3088 /* 3089 * If the node is a target, the handling attempts to recover the port. 3090 * For any other port type, the rpi is unregistered as an implicit 3091 * LOGO. 3092 */ 3093 if (ndlp->nlp_type & (NLP_FCP_TARGET | NLP_NVME_TARGET) && 3094 skip_recovery == 0) { 3095 lpfc_cancel_retry_delay_tmo(vport, ndlp); 3096 spin_lock_irqsave(&ndlp->lock, flags); 3097 ndlp->nlp_flag |= NLP_NPR_2B_DISC; 3098 spin_unlock_irqrestore(&ndlp->lock, flags); 3099 3100 lpfc_printf_vlog(vport, KERN_INFO, LOG_ELS, 3101 "3187 LOGO completes to NPort x%x: Start " 3102 "Recovery Data: x%x x%x x%x x%x\n", 3103 ndlp->nlp_DID, ulp_status, 3104 ulp_word4, tmo, 3105 vport->num_disc_nodes); 3106 3107 lpfc_els_free_iocb(phba, cmdiocb); 3108 lpfc_nlp_put(ndlp); 3109 3110 lpfc_disc_start(vport); 3111 return; 3112 } 3113 3114 /* Cleanup path for failed REG_RPI handling. If REG_RPI fails, the 3115 * driver sends a LOGO to the rport to cleanup. For fabric and 3116 * initiator ports cleanup the node as long as it the node is not 3117 * register with the transport. 3118 */ 3119 if (!(ndlp->fc4_xpt_flags & (SCSI_XPT_REGD | NVME_XPT_REGD))) { 3120 spin_lock_irq(&ndlp->lock); 3121 ndlp->nlp_flag &= ~NLP_NPR_2B_DISC; 3122 spin_unlock_irq(&ndlp->lock); 3123 lpfc_disc_state_machine(vport, ndlp, cmdiocb, 3124 NLP_EVT_DEVICE_RM); 3125 } 3126 out_rsrc_free: 3127 /* Driver is done with the I/O. */ 3128 lpfc_els_free_iocb(phba, cmdiocb); 3129 lpfc_nlp_put(ndlp); 3130 } 3131 3132 /** 3133 * lpfc_issue_els_logo - Issue a logo to an node on a vport 3134 * @vport: pointer to a virtual N_Port data structure. 3135 * @ndlp: pointer to a node-list data structure. 3136 * @retry: number of retries to the command IOCB. 3137 * 3138 * This routine constructs and issues an ELS Logout (LOGO) iocb command 3139 * to a remote node, referred by an @ndlp on a @vport. It constructs the 3140 * payload of the IOCB, properly sets up the @ndlp state, and invokes the 3141 * lpfc_sli_issue_iocb() routine to send out the LOGO ELS command. 3142 * 3143 * Note that the ndlp reference count will be incremented by 1 for holding the 3144 * ndlp and the reference to ndlp will be stored into the ndlp field of 3145 * the IOCB for the completion callback function to the LOGO ELS command. 3146 * 3147 * Callers of this routine are expected to unregister the RPI first 3148 * 3149 * Return code 3150 * 0 - successfully issued logo 3151 * 1 - failed to issue logo 3152 **/ 3153 int 3154 lpfc_issue_els_logo(struct lpfc_vport *vport, struct lpfc_nodelist *ndlp, 3155 uint8_t retry) 3156 { 3157 struct lpfc_hba *phba = vport->phba; 3158 struct lpfc_iocbq *elsiocb; 3159 uint8_t *pcmd; 3160 uint16_t cmdsize; 3161 int rc; 3162 3163 spin_lock_irq(&ndlp->lock); 3164 if (ndlp->nlp_flag & NLP_LOGO_SND) { 3165 spin_unlock_irq(&ndlp->lock); 3166 return 0; 3167 } 3168 spin_unlock_irq(&ndlp->lock); 3169 3170 cmdsize = (2 * sizeof(uint32_t)) + sizeof(struct lpfc_name); 3171 elsiocb = lpfc_prep_els_iocb(vport, 1, cmdsize, retry, ndlp, 3172 ndlp->nlp_DID, ELS_CMD_LOGO); 3173 if (!elsiocb) 3174 return 1; 3175 3176 pcmd = (uint8_t *)elsiocb->cmd_dmabuf->virt; 3177 *((uint32_t *) (pcmd)) = ELS_CMD_LOGO; 3178 pcmd += sizeof(uint32_t); 3179 3180 /* Fill in LOGO payload */ 3181 *((uint32_t *) (pcmd)) = be32_to_cpu(vport->fc_myDID); 3182 pcmd += sizeof(uint32_t); 3183 memcpy(pcmd, &vport->fc_portname, sizeof(struct lpfc_name)); 3184 3185 phba->fc_stat.elsXmitLOGO++; 3186 elsiocb->cmd_cmpl = lpfc_cmpl_els_logo; 3187 spin_lock_irq(&ndlp->lock); 3188 ndlp->nlp_flag |= NLP_LOGO_SND; 3189 ndlp->nlp_flag &= ~NLP_ISSUE_LOGO; 3190 spin_unlock_irq(&ndlp->lock); 3191 elsiocb->ndlp = lpfc_nlp_get(ndlp); 3192 if (!elsiocb->ndlp) { 3193 lpfc_els_free_iocb(phba, elsiocb); 3194 goto err; 3195 } 3196 3197 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_CMD, 3198 "Issue LOGO: did:x%x refcnt %d", 3199 ndlp->nlp_DID, kref_read(&ndlp->kref), 0); 3200 3201 rc = lpfc_sli_issue_iocb(phba, LPFC_ELS_RING, elsiocb, 0); 3202 if (rc == IOCB_ERROR) { 3203 lpfc_els_free_iocb(phba, elsiocb); 3204 lpfc_nlp_put(ndlp); 3205 goto err; 3206 } 3207 3208 spin_lock_irq(&ndlp->lock); 3209 ndlp->nlp_prev_state = ndlp->nlp_state; 3210 spin_unlock_irq(&ndlp->lock); 3211 lpfc_nlp_set_state(vport, ndlp, NLP_STE_LOGO_ISSUE); 3212 return 0; 3213 3214 err: 3215 spin_lock_irq(&ndlp->lock); 3216 ndlp->nlp_flag &= ~NLP_LOGO_SND; 3217 spin_unlock_irq(&ndlp->lock); 3218 return 1; 3219 } 3220 3221 /** 3222 * lpfc_cmpl_els_cmd - Completion callback function for generic els command 3223 * @phba: pointer to lpfc hba data structure. 3224 * @cmdiocb: pointer to lpfc command iocb data structure. 3225 * @rspiocb: pointer to lpfc response iocb data structure. 3226 * 3227 * This routine is a generic completion callback function for ELS commands. 3228 * Specifically, it is the callback function which does not need to perform 3229 * any command specific operations. It is currently used by the ELS command 3230 * issuing routines for RSCN, lpfc_issue_els_rscn, and the ELS Fibre Channel 3231 * Address Resolution Protocol Response (FARPR) routine, lpfc_issue_els_farpr(). 3232 * Other than certain debug loggings, this callback function simply invokes the 3233 * lpfc_els_chk_latt() routine to check whether link went down during the 3234 * discovery process. 3235 **/ 3236 static void 3237 lpfc_cmpl_els_cmd(struct lpfc_hba *phba, struct lpfc_iocbq *cmdiocb, 3238 struct lpfc_iocbq *rspiocb) 3239 { 3240 struct lpfc_vport *vport = cmdiocb->vport; 3241 struct lpfc_nodelist *free_ndlp; 3242 IOCB_t *irsp; 3243 u32 ulp_status, ulp_word4, tmo, did, iotag; 3244 3245 ulp_status = get_job_ulpstatus(phba, rspiocb); 3246 ulp_word4 = get_job_word4(phba, rspiocb); 3247 did = get_job_els_rsp64_did(phba, cmdiocb); 3248 3249 if (phba->sli_rev == LPFC_SLI_REV4) { 3250 tmo = get_wqe_tmo(cmdiocb); 3251 iotag = get_wqe_reqtag(cmdiocb); 3252 } else { 3253 irsp = &rspiocb->iocb; 3254 tmo = irsp->ulpTimeout; 3255 iotag = irsp->ulpIoTag; 3256 } 3257 3258 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_CMD, 3259 "ELS cmd cmpl: status:x%x/x%x did:x%x", 3260 ulp_status, ulp_word4, did); 3261 3262 /* ELS cmd tag <ulpIoTag> completes */ 3263 lpfc_printf_vlog(vport, KERN_INFO, LOG_ELS, 3264 "0106 ELS cmd tag x%x completes Data: x%x x%x x%x\n", 3265 iotag, ulp_status, ulp_word4, tmo); 3266 3267 /* Check to see if link went down during discovery */ 3268 lpfc_els_chk_latt(vport); 3269 3270 free_ndlp = cmdiocb->ndlp; 3271 3272 lpfc_els_free_iocb(phba, cmdiocb); 3273 lpfc_nlp_put(free_ndlp); 3274 } 3275 3276 /** 3277 * lpfc_reg_fab_ctrl_node - RPI register the fabric controller node. 3278 * @vport: pointer to lpfc_vport data structure. 3279 * @fc_ndlp: pointer to the fabric controller (0xfffffd) node. 3280 * 3281 * This routine registers the rpi assigned to the fabric controller 3282 * NPort_ID (0xfffffd) with the port and moves the node to UNMAPPED 3283 * state triggering a registration with the SCSI transport. 3284 * 3285 * This routine is single out because the fabric controller node 3286 * does not receive a PLOGI. This routine is consumed by the 3287 * SCR and RDF ELS commands. Callers are expected to qualify 3288 * with SLI4 first. 3289 **/ 3290 static int 3291 lpfc_reg_fab_ctrl_node(struct lpfc_vport *vport, struct lpfc_nodelist *fc_ndlp) 3292 { 3293 int rc = 0; 3294 struct lpfc_hba *phba = vport->phba; 3295 struct lpfc_nodelist *ns_ndlp; 3296 LPFC_MBOXQ_t *mbox; 3297 3298 if (fc_ndlp->nlp_flag & NLP_RPI_REGISTERED) 3299 return rc; 3300 3301 ns_ndlp = lpfc_findnode_did(vport, NameServer_DID); 3302 if (!ns_ndlp) 3303 return -ENODEV; 3304 3305 lpfc_printf_vlog(vport, KERN_INFO, LOG_NODE, 3306 "0935 %s: Reg FC RPI x%x on FC DID x%x NSSte: x%x\n", 3307 __func__, fc_ndlp->nlp_rpi, fc_ndlp->nlp_DID, 3308 ns_ndlp->nlp_state); 3309 if (ns_ndlp->nlp_state != NLP_STE_UNMAPPED_NODE) 3310 return -ENODEV; 3311 3312 mbox = mempool_alloc(phba->mbox_mem_pool, GFP_KERNEL); 3313 if (!mbox) { 3314 lpfc_printf_vlog(vport, KERN_ERR, LOG_NODE, 3315 "0936 %s: no memory for reg_login " 3316 "Data: x%x x%x x%x x%x\n", __func__, 3317 fc_ndlp->nlp_DID, fc_ndlp->nlp_state, 3318 fc_ndlp->nlp_flag, fc_ndlp->nlp_rpi); 3319 return -ENOMEM; 3320 } 3321 rc = lpfc_reg_rpi(phba, vport->vpi, fc_ndlp->nlp_DID, 3322 (u8 *)&vport->fc_sparam, mbox, fc_ndlp->nlp_rpi); 3323 if (rc) { 3324 rc = -EACCES; 3325 goto out; 3326 } 3327 3328 fc_ndlp->nlp_flag |= NLP_REG_LOGIN_SEND; 3329 mbox->mbox_cmpl = lpfc_mbx_cmpl_fc_reg_login; 3330 mbox->ctx_ndlp = lpfc_nlp_get(fc_ndlp); 3331 if (!mbox->ctx_ndlp) { 3332 rc = -ENOMEM; 3333 goto out; 3334 } 3335 3336 mbox->vport = vport; 3337 rc = lpfc_sli_issue_mbox(phba, mbox, MBX_NOWAIT); 3338 if (rc == MBX_NOT_FINISHED) { 3339 rc = -ENODEV; 3340 lpfc_nlp_put(fc_ndlp); 3341 goto out; 3342 } 3343 /* Success path. Exit. */ 3344 lpfc_nlp_set_state(vport, fc_ndlp, 3345 NLP_STE_REG_LOGIN_ISSUE); 3346 return 0; 3347 3348 out: 3349 lpfc_mbox_rsrc_cleanup(phba, mbox, MBOX_THD_UNLOCKED); 3350 lpfc_printf_vlog(vport, KERN_ERR, LOG_NODE, 3351 "0938 %s: failed to format reg_login " 3352 "Data: x%x x%x x%x x%x\n", __func__, 3353 fc_ndlp->nlp_DID, fc_ndlp->nlp_state, 3354 fc_ndlp->nlp_flag, fc_ndlp->nlp_rpi); 3355 return rc; 3356 } 3357 3358 /** 3359 * lpfc_cmpl_els_disc_cmd - Completion callback function for Discovery ELS cmd 3360 * @phba: pointer to lpfc hba data structure. 3361 * @cmdiocb: pointer to lpfc command iocb data structure. 3362 * @rspiocb: pointer to lpfc response iocb data structure. 3363 * 3364 * This routine is a generic completion callback function for Discovery ELS cmd. 3365 * Currently used by the ELS command issuing routines for the ELS State Change 3366 * Request (SCR), lpfc_issue_els_scr() and the ELS RDF, lpfc_issue_els_rdf(). 3367 * These commands will be retried once only for ELS timeout errors. 3368 **/ 3369 static void 3370 lpfc_cmpl_els_disc_cmd(struct lpfc_hba *phba, struct lpfc_iocbq *cmdiocb, 3371 struct lpfc_iocbq *rspiocb) 3372 { 3373 struct lpfc_vport *vport = cmdiocb->vport; 3374 IOCB_t *irsp; 3375 struct lpfc_els_rdf_rsp *prdf; 3376 struct lpfc_dmabuf *pcmd, *prsp; 3377 u32 *pdata; 3378 u32 cmd; 3379 struct lpfc_nodelist *ndlp = cmdiocb->ndlp; 3380 u32 ulp_status, ulp_word4, tmo, did, iotag; 3381 3382 ulp_status = get_job_ulpstatus(phba, rspiocb); 3383 ulp_word4 = get_job_word4(phba, rspiocb); 3384 did = get_job_els_rsp64_did(phba, cmdiocb); 3385 3386 if (phba->sli_rev == LPFC_SLI_REV4) { 3387 tmo = get_wqe_tmo(cmdiocb); 3388 iotag = get_wqe_reqtag(cmdiocb); 3389 } else { 3390 irsp = &rspiocb->iocb; 3391 tmo = irsp->ulpTimeout; 3392 iotag = irsp->ulpIoTag; 3393 } 3394 3395 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_CMD, 3396 "ELS cmd cmpl: status:x%x/x%x did:x%x", 3397 ulp_status, ulp_word4, did); 3398 3399 /* ELS cmd tag <ulpIoTag> completes */ 3400 lpfc_printf_vlog(vport, KERN_INFO, LOG_ELS | LOG_CGN_MGMT, 3401 "0217 ELS cmd tag x%x completes Data: x%x x%x x%x x%x\n", 3402 iotag, ulp_status, ulp_word4, tmo, cmdiocb->retry); 3403 3404 pcmd = cmdiocb->cmd_dmabuf; 3405 if (!pcmd) 3406 goto out; 3407 3408 pdata = (u32 *)pcmd->virt; 3409 if (!pdata) 3410 goto out; 3411 cmd = *pdata; 3412 3413 /* Only 1 retry for ELS Timeout only */ 3414 if (ulp_status == IOSTAT_LOCAL_REJECT && 3415 ((ulp_word4 & IOERR_PARAM_MASK) == 3416 IOERR_SEQUENCE_TIMEOUT)) { 3417 cmdiocb->retry++; 3418 if (cmdiocb->retry <= 1) { 3419 switch (cmd) { 3420 case ELS_CMD_SCR: 3421 lpfc_issue_els_scr(vport, cmdiocb->retry); 3422 break; 3423 case ELS_CMD_EDC: 3424 lpfc_issue_els_edc(vport, cmdiocb->retry); 3425 break; 3426 case ELS_CMD_RDF: 3427 lpfc_issue_els_rdf(vport, cmdiocb->retry); 3428 break; 3429 } 3430 goto out; 3431 } 3432 phba->fc_stat.elsRetryExceeded++; 3433 } 3434 if (cmd == ELS_CMD_EDC) { 3435 /* must be called before checking uplStatus and returning */ 3436 lpfc_cmpl_els_edc(phba, cmdiocb, rspiocb); 3437 return; 3438 } 3439 if (ulp_status) { 3440 /* ELS discovery cmd completes with error */ 3441 lpfc_printf_vlog(vport, KERN_WARNING, LOG_ELS | LOG_CGN_MGMT, 3442 "4203 ELS cmd x%x error: x%x x%X\n", cmd, 3443 ulp_status, ulp_word4); 3444 goto out; 3445 } 3446 3447 /* The RDF response doesn't have any impact on the running driver 3448 * but the notification descriptors are dumped here for support. 3449 */ 3450 if (cmd == ELS_CMD_RDF) { 3451 int i; 3452 3453 prsp = list_get_first(&pcmd->list, struct lpfc_dmabuf, list); 3454 if (!prsp) 3455 goto out; 3456 3457 prdf = (struct lpfc_els_rdf_rsp *)prsp->virt; 3458 if (!prdf) 3459 goto out; 3460 if (!lpfc_is_els_acc_rsp(prsp)) 3461 goto out; 3462 3463 for (i = 0; i < ELS_RDF_REG_TAG_CNT && 3464 i < be32_to_cpu(prdf->reg_d1.reg_desc.count); i++) 3465 lpfc_printf_vlog(vport, KERN_INFO, 3466 LOG_ELS | LOG_CGN_MGMT, 3467 "4677 Fabric RDF Notification Grant " 3468 "Data: 0x%08x Reg: %x %x\n", 3469 be32_to_cpu( 3470 prdf->reg_d1.desc_tags[i]), 3471 phba->cgn_reg_signal, 3472 phba->cgn_reg_fpin); 3473 } 3474 3475 out: 3476 /* Check to see if link went down during discovery */ 3477 lpfc_els_chk_latt(vport); 3478 lpfc_els_free_iocb(phba, cmdiocb); 3479 lpfc_nlp_put(ndlp); 3480 return; 3481 } 3482 3483 /** 3484 * lpfc_issue_els_scr - Issue a scr to an node on a vport 3485 * @vport: pointer to a host virtual N_Port data structure. 3486 * @retry: retry counter for the command IOCB. 3487 * 3488 * This routine issues a State Change Request (SCR) to a fabric node 3489 * on a @vport. The remote node is Fabric Controller (0xfffffd). It 3490 * first search the @vport node list to find the matching ndlp. If no such 3491 * ndlp is found, a new ndlp shall be created for this (SCR) purpose. An 3492 * IOCB is allocated, payload prepared, and the lpfc_sli_issue_iocb() 3493 * routine is invoked to send the SCR IOCB. 3494 * 3495 * Note that the ndlp reference count will be incremented by 1 for holding the 3496 * ndlp and the reference to ndlp will be stored into the ndlp field of 3497 * the IOCB for the completion callback function to the SCR ELS command. 3498 * 3499 * Return code 3500 * 0 - Successfully issued scr command 3501 * 1 - Failed to issue scr command 3502 **/ 3503 int 3504 lpfc_issue_els_scr(struct lpfc_vport *vport, uint8_t retry) 3505 { 3506 int rc = 0; 3507 struct lpfc_hba *phba = vport->phba; 3508 struct lpfc_iocbq *elsiocb; 3509 uint8_t *pcmd; 3510 uint16_t cmdsize; 3511 struct lpfc_nodelist *ndlp; 3512 3513 cmdsize = (sizeof(uint32_t) + sizeof(SCR)); 3514 3515 ndlp = lpfc_findnode_did(vport, Fabric_Cntl_DID); 3516 if (!ndlp) { 3517 ndlp = lpfc_nlp_init(vport, Fabric_Cntl_DID); 3518 if (!ndlp) 3519 return 1; 3520 lpfc_enqueue_node(vport, ndlp); 3521 } 3522 3523 elsiocb = lpfc_prep_els_iocb(vport, 1, cmdsize, retry, ndlp, 3524 ndlp->nlp_DID, ELS_CMD_SCR); 3525 if (!elsiocb) 3526 return 1; 3527 3528 if (phba->sli_rev == LPFC_SLI_REV4) { 3529 rc = lpfc_reg_fab_ctrl_node(vport, ndlp); 3530 if (rc) { 3531 lpfc_els_free_iocb(phba, elsiocb); 3532 lpfc_printf_vlog(vport, KERN_ERR, LOG_NODE, 3533 "0937 %s: Failed to reg fc node, rc %d\n", 3534 __func__, rc); 3535 return 1; 3536 } 3537 } 3538 pcmd = (uint8_t *)elsiocb->cmd_dmabuf->virt; 3539 3540 *((uint32_t *) (pcmd)) = ELS_CMD_SCR; 3541 pcmd += sizeof(uint32_t); 3542 3543 /* For SCR, remainder of payload is SCR parameter page */ 3544 memset(pcmd, 0, sizeof(SCR)); 3545 ((SCR *) pcmd)->Function = SCR_FUNC_FULL; 3546 3547 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_CMD, 3548 "Issue SCR: did:x%x", 3549 ndlp->nlp_DID, 0, 0); 3550 3551 phba->fc_stat.elsXmitSCR++; 3552 elsiocb->cmd_cmpl = lpfc_cmpl_els_disc_cmd; 3553 elsiocb->ndlp = lpfc_nlp_get(ndlp); 3554 if (!elsiocb->ndlp) { 3555 lpfc_els_free_iocb(phba, elsiocb); 3556 return 1; 3557 } 3558 3559 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_CMD, 3560 "Issue SCR: did:x%x refcnt %d", 3561 ndlp->nlp_DID, kref_read(&ndlp->kref), 0); 3562 3563 rc = lpfc_sli_issue_iocb(phba, LPFC_ELS_RING, elsiocb, 0); 3564 if (rc == IOCB_ERROR) { 3565 lpfc_els_free_iocb(phba, elsiocb); 3566 lpfc_nlp_put(ndlp); 3567 return 1; 3568 } 3569 3570 return 0; 3571 } 3572 3573 /** 3574 * lpfc_issue_els_rscn - Issue an RSCN to the Fabric Controller (Fabric) 3575 * or the other nport (pt2pt). 3576 * @vport: pointer to a host virtual N_Port data structure. 3577 * @retry: number of retries to the command IOCB. 3578 * 3579 * This routine issues a RSCN to the Fabric Controller (DID 0xFFFFFD) 3580 * when connected to a fabric, or to the remote port when connected 3581 * in point-to-point mode. When sent to the Fabric Controller, it will 3582 * replay the RSCN to registered recipients. 3583 * 3584 * Note that the ndlp reference count will be incremented by 1 for holding the 3585 * ndlp and the reference to ndlp will be stored into the ndlp field of 3586 * the IOCB for the completion callback function to the RSCN ELS command. 3587 * 3588 * Return code 3589 * 0 - Successfully issued RSCN command 3590 * 1 - Failed to issue RSCN command 3591 **/ 3592 int 3593 lpfc_issue_els_rscn(struct lpfc_vport *vport, uint8_t retry) 3594 { 3595 int rc = 0; 3596 struct lpfc_hba *phba = vport->phba; 3597 struct lpfc_iocbq *elsiocb; 3598 struct lpfc_nodelist *ndlp; 3599 struct { 3600 struct fc_els_rscn rscn; 3601 struct fc_els_rscn_page portid; 3602 } *event; 3603 uint32_t nportid; 3604 uint16_t cmdsize = sizeof(*event); 3605 3606 /* Not supported for private loop */ 3607 if (phba->fc_topology == LPFC_TOPOLOGY_LOOP && 3608 !test_bit(FC_PUBLIC_LOOP, &vport->fc_flag)) 3609 return 1; 3610 3611 if (test_bit(FC_PT2PT, &vport->fc_flag)) { 3612 /* find any mapped nport - that would be the other nport */ 3613 ndlp = lpfc_findnode_mapped(vport); 3614 if (!ndlp) 3615 return 1; 3616 } else { 3617 nportid = FC_FID_FCTRL; 3618 /* find the fabric controller node */ 3619 ndlp = lpfc_findnode_did(vport, nportid); 3620 if (!ndlp) { 3621 /* if one didn't exist, make one */ 3622 ndlp = lpfc_nlp_init(vport, nportid); 3623 if (!ndlp) 3624 return 1; 3625 lpfc_enqueue_node(vport, ndlp); 3626 } 3627 } 3628 3629 elsiocb = lpfc_prep_els_iocb(vport, 1, cmdsize, retry, ndlp, 3630 ndlp->nlp_DID, ELS_CMD_RSCN_XMT); 3631 3632 if (!elsiocb) 3633 return 1; 3634 3635 event = elsiocb->cmd_dmabuf->virt; 3636 3637 event->rscn.rscn_cmd = ELS_RSCN; 3638 event->rscn.rscn_page_len = sizeof(struct fc_els_rscn_page); 3639 event->rscn.rscn_plen = cpu_to_be16(cmdsize); 3640 3641 nportid = vport->fc_myDID; 3642 /* appears that page flags must be 0 for fabric to broadcast RSCN */ 3643 event->portid.rscn_page_flags = 0; 3644 event->portid.rscn_fid[0] = (nportid & 0x00FF0000) >> 16; 3645 event->portid.rscn_fid[1] = (nportid & 0x0000FF00) >> 8; 3646 event->portid.rscn_fid[2] = nportid & 0x000000FF; 3647 3648 phba->fc_stat.elsXmitRSCN++; 3649 elsiocb->cmd_cmpl = lpfc_cmpl_els_cmd; 3650 elsiocb->ndlp = lpfc_nlp_get(ndlp); 3651 if (!elsiocb->ndlp) { 3652 lpfc_els_free_iocb(phba, elsiocb); 3653 return 1; 3654 } 3655 3656 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_CMD, 3657 "Issue RSCN: did:x%x", 3658 ndlp->nlp_DID, 0, 0); 3659 3660 rc = lpfc_sli_issue_iocb(phba, LPFC_ELS_RING, elsiocb, 0); 3661 if (rc == IOCB_ERROR) { 3662 lpfc_els_free_iocb(phba, elsiocb); 3663 lpfc_nlp_put(ndlp); 3664 return 1; 3665 } 3666 3667 return 0; 3668 } 3669 3670 /** 3671 * lpfc_issue_els_farpr - Issue a farp to an node on a vport 3672 * @vport: pointer to a host virtual N_Port data structure. 3673 * @nportid: N_Port identifier to the remote node. 3674 * @retry: number of retries to the command IOCB. 3675 * 3676 * This routine issues a Fibre Channel Address Resolution Response 3677 * (FARPR) to a node on a vport. The remote node N_Port identifier (@nportid) 3678 * is passed into the function. It first search the @vport node list to find 3679 * the matching ndlp. If no such ndlp is found, a new ndlp shall be created 3680 * for this (FARPR) purpose. An IOCB is allocated, payload prepared, and the 3681 * lpfc_sli_issue_iocb() routine is invoked to send the FARPR ELS command. 3682 * 3683 * Note that the ndlp reference count will be incremented by 1 for holding the 3684 * ndlp and the reference to ndlp will be stored into the ndlp field of 3685 * the IOCB for the completion callback function to the FARPR ELS command. 3686 * 3687 * Return code 3688 * 0 - Successfully issued farpr command 3689 * 1 - Failed to issue farpr command 3690 **/ 3691 static int 3692 lpfc_issue_els_farpr(struct lpfc_vport *vport, uint32_t nportid, uint8_t retry) 3693 { 3694 int rc = 0; 3695 struct lpfc_hba *phba = vport->phba; 3696 struct lpfc_iocbq *elsiocb; 3697 FARP *fp; 3698 uint8_t *pcmd; 3699 uint32_t *lp; 3700 uint16_t cmdsize; 3701 struct lpfc_nodelist *ondlp; 3702 struct lpfc_nodelist *ndlp; 3703 3704 cmdsize = (sizeof(uint32_t) + sizeof(FARP)); 3705 3706 ndlp = lpfc_findnode_did(vport, nportid); 3707 if (!ndlp) { 3708 ndlp = lpfc_nlp_init(vport, nportid); 3709 if (!ndlp) 3710 return 1; 3711 lpfc_enqueue_node(vport, ndlp); 3712 } 3713 3714 elsiocb = lpfc_prep_els_iocb(vport, 1, cmdsize, retry, ndlp, 3715 ndlp->nlp_DID, ELS_CMD_FARPR); 3716 if (!elsiocb) 3717 return 1; 3718 3719 pcmd = (uint8_t *)elsiocb->cmd_dmabuf->virt; 3720 3721 *((uint32_t *) (pcmd)) = ELS_CMD_FARPR; 3722 pcmd += sizeof(uint32_t); 3723 3724 /* Fill in FARPR payload */ 3725 fp = (FARP *) (pcmd); 3726 memset(fp, 0, sizeof(FARP)); 3727 lp = (uint32_t *) pcmd; 3728 *lp++ = be32_to_cpu(nportid); 3729 *lp++ = be32_to_cpu(vport->fc_myDID); 3730 fp->Rflags = 0; 3731 fp->Mflags = (FARP_MATCH_PORT | FARP_MATCH_NODE); 3732 3733 memcpy(&fp->RportName, &vport->fc_portname, sizeof(struct lpfc_name)); 3734 memcpy(&fp->RnodeName, &vport->fc_nodename, sizeof(struct lpfc_name)); 3735 ondlp = lpfc_findnode_did(vport, nportid); 3736 if (ondlp) { 3737 memcpy(&fp->OportName, &ondlp->nlp_portname, 3738 sizeof(struct lpfc_name)); 3739 memcpy(&fp->OnodeName, &ondlp->nlp_nodename, 3740 sizeof(struct lpfc_name)); 3741 } 3742 3743 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_CMD, 3744 "Issue FARPR: did:x%x", 3745 ndlp->nlp_DID, 0, 0); 3746 3747 phba->fc_stat.elsXmitFARPR++; 3748 elsiocb->cmd_cmpl = lpfc_cmpl_els_cmd; 3749 elsiocb->ndlp = lpfc_nlp_get(ndlp); 3750 if (!elsiocb->ndlp) { 3751 lpfc_els_free_iocb(phba, elsiocb); 3752 return 1; 3753 } 3754 3755 rc = lpfc_sli_issue_iocb(phba, LPFC_ELS_RING, elsiocb, 0); 3756 if (rc == IOCB_ERROR) { 3757 /* The additional lpfc_nlp_put will cause the following 3758 * lpfc_els_free_iocb routine to trigger the release of 3759 * the node. 3760 */ 3761 lpfc_els_free_iocb(phba, elsiocb); 3762 lpfc_nlp_put(ndlp); 3763 return 1; 3764 } 3765 /* This will cause the callback-function lpfc_cmpl_els_cmd to 3766 * trigger the release of the node. 3767 */ 3768 /* Don't release reference count as RDF is likely outstanding */ 3769 return 0; 3770 } 3771 3772 /** 3773 * lpfc_issue_els_rdf - Register for diagnostic functions from the fabric. 3774 * @vport: pointer to a host virtual N_Port data structure. 3775 * @retry: retry counter for the command IOCB. 3776 * 3777 * This routine issues an ELS RDF to the Fabric Controller to register 3778 * for diagnostic functions. 3779 * 3780 * Note that the ndlp reference count will be incremented by 1 for holding the 3781 * ndlp and the reference to ndlp will be stored into the ndlp field of 3782 * the IOCB for the completion callback function to the RDF ELS command. 3783 * 3784 * Return code 3785 * 0 - Successfully issued rdf command 3786 * 1 - Failed to issue rdf command 3787 **/ 3788 int 3789 lpfc_issue_els_rdf(struct lpfc_vport *vport, uint8_t retry) 3790 { 3791 struct lpfc_hba *phba = vport->phba; 3792 struct lpfc_iocbq *elsiocb; 3793 struct lpfc_els_rdf_req *prdf; 3794 struct lpfc_nodelist *ndlp; 3795 uint16_t cmdsize; 3796 int rc; 3797 3798 cmdsize = sizeof(*prdf); 3799 3800 ndlp = lpfc_findnode_did(vport, Fabric_Cntl_DID); 3801 if (!ndlp) { 3802 ndlp = lpfc_nlp_init(vport, Fabric_Cntl_DID); 3803 if (!ndlp) 3804 return -ENODEV; 3805 lpfc_enqueue_node(vport, ndlp); 3806 } 3807 3808 /* RDF ELS is not required on an NPIV VN_Port. */ 3809 if (vport->port_type == LPFC_NPIV_PORT) 3810 return -EACCES; 3811 3812 elsiocb = lpfc_prep_els_iocb(vport, 1, cmdsize, retry, ndlp, 3813 ndlp->nlp_DID, ELS_CMD_RDF); 3814 if (!elsiocb) 3815 return -ENOMEM; 3816 3817 /* Configure the payload for the supported FPIN events. */ 3818 prdf = (struct lpfc_els_rdf_req *)elsiocb->cmd_dmabuf->virt; 3819 memset(prdf, 0, cmdsize); 3820 prdf->rdf.fpin_cmd = ELS_RDF; 3821 prdf->rdf.desc_len = cpu_to_be32(sizeof(struct lpfc_els_rdf_req) - 3822 sizeof(struct fc_els_rdf)); 3823 prdf->reg_d1.reg_desc.desc_tag = cpu_to_be32(ELS_DTAG_FPIN_REGISTER); 3824 prdf->reg_d1.reg_desc.desc_len = cpu_to_be32( 3825 FC_TLV_DESC_LENGTH_FROM_SZ(prdf->reg_d1)); 3826 prdf->reg_d1.reg_desc.count = cpu_to_be32(ELS_RDF_REG_TAG_CNT); 3827 prdf->reg_d1.desc_tags[0] = cpu_to_be32(ELS_DTAG_LNK_INTEGRITY); 3828 prdf->reg_d1.desc_tags[1] = cpu_to_be32(ELS_DTAG_DELIVERY); 3829 prdf->reg_d1.desc_tags[2] = cpu_to_be32(ELS_DTAG_PEER_CONGEST); 3830 prdf->reg_d1.desc_tags[3] = cpu_to_be32(ELS_DTAG_CONGESTION); 3831 3832 lpfc_printf_vlog(vport, KERN_INFO, LOG_ELS | LOG_CGN_MGMT, 3833 "6444 Xmit RDF to remote NPORT x%x Reg: %x %x\n", 3834 ndlp->nlp_DID, phba->cgn_reg_signal, 3835 phba->cgn_reg_fpin); 3836 3837 phba->cgn_fpin_frequency = LPFC_FPIN_INIT_FREQ; 3838 elsiocb->cmd_cmpl = lpfc_cmpl_els_disc_cmd; 3839 elsiocb->ndlp = lpfc_nlp_get(ndlp); 3840 if (!elsiocb->ndlp) { 3841 lpfc_els_free_iocb(phba, elsiocb); 3842 return -EIO; 3843 } 3844 3845 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_CMD, 3846 "Issue RDF: did:x%x refcnt %d", 3847 ndlp->nlp_DID, kref_read(&ndlp->kref), 0); 3848 3849 rc = lpfc_sli_issue_iocb(phba, LPFC_ELS_RING, elsiocb, 0); 3850 if (rc == IOCB_ERROR) { 3851 lpfc_els_free_iocb(phba, elsiocb); 3852 lpfc_nlp_put(ndlp); 3853 return -EIO; 3854 } 3855 return 0; 3856 } 3857 3858 /** 3859 * lpfc_els_rcv_rdf - Receive RDF ELS request from the fabric. 3860 * @vport: pointer to a host virtual N_Port data structure. 3861 * @cmdiocb: pointer to lpfc command iocb data structure. 3862 * @ndlp: pointer to a node-list data structure. 3863 * 3864 * A received RDF implies a possible change to fabric supported diagnostic 3865 * functions. This routine sends LS_ACC and then has the Nx_Port issue a new 3866 * RDF request to reregister for supported diagnostic functions. 3867 * 3868 * Return code 3869 * 0 - Success 3870 * -EIO - Failed to process received RDF 3871 **/ 3872 static int 3873 lpfc_els_rcv_rdf(struct lpfc_vport *vport, struct lpfc_iocbq *cmdiocb, 3874 struct lpfc_nodelist *ndlp) 3875 { 3876 /* Send LS_ACC */ 3877 if (lpfc_els_rsp_acc(vport, ELS_CMD_RDF, cmdiocb, ndlp, NULL)) { 3878 lpfc_printf_vlog(vport, KERN_INFO, LOG_ELS | LOG_CGN_MGMT, 3879 "1623 Failed to RDF_ACC from x%x for x%x\n", 3880 ndlp->nlp_DID, vport->fc_myDID); 3881 return -EIO; 3882 } 3883 3884 /* Issue new RDF for reregistering */ 3885 if (lpfc_issue_els_rdf(vport, 0)) { 3886 lpfc_printf_vlog(vport, KERN_INFO, LOG_ELS | LOG_CGN_MGMT, 3887 "2623 Failed to re register RDF for x%x\n", 3888 vport->fc_myDID); 3889 return -EIO; 3890 } 3891 3892 return 0; 3893 } 3894 3895 /** 3896 * lpfc_least_capable_settings - helper function for EDC rsp processing 3897 * @phba: pointer to lpfc hba data structure. 3898 * @pcgd: pointer to congestion detection descriptor in EDC rsp. 3899 * 3900 * This helper routine determines the least capable setting for 3901 * congestion signals, signal freq, including scale, from the 3902 * congestion detection descriptor in the EDC rsp. The routine 3903 * sets @phba values in preparation for a set_featues mailbox. 3904 **/ 3905 static void 3906 lpfc_least_capable_settings(struct lpfc_hba *phba, 3907 struct fc_diag_cg_sig_desc *pcgd) 3908 { 3909 u32 rsp_sig_cap = 0, drv_sig_cap = 0; 3910 u32 rsp_sig_freq_cyc = 0, rsp_sig_freq_scale = 0; 3911 3912 /* Get rsp signal and frequency capabilities. */ 3913 rsp_sig_cap = be32_to_cpu(pcgd->xmt_signal_capability); 3914 rsp_sig_freq_cyc = be16_to_cpu(pcgd->xmt_signal_frequency.count); 3915 rsp_sig_freq_scale = be16_to_cpu(pcgd->xmt_signal_frequency.units); 3916 3917 /* If the Fport does not support signals. Set FPIN only */ 3918 if (rsp_sig_cap == EDC_CG_SIG_NOTSUPPORTED) 3919 goto out_no_support; 3920 3921 /* Apply the xmt scale to the xmt cycle to get the correct frequency. 3922 * Adapter default is 100 millisSeconds. Convert all xmt cycle values 3923 * to milliSeconds. 3924 */ 3925 switch (rsp_sig_freq_scale) { 3926 case EDC_CG_SIGFREQ_SEC: 3927 rsp_sig_freq_cyc *= MSEC_PER_SEC; 3928 break; 3929 case EDC_CG_SIGFREQ_MSEC: 3930 rsp_sig_freq_cyc = 1; 3931 break; 3932 default: 3933 goto out_no_support; 3934 } 3935 3936 /* Convenient shorthand. */ 3937 drv_sig_cap = phba->cgn_reg_signal; 3938 3939 /* Choose the least capable frequency. */ 3940 if (rsp_sig_freq_cyc > phba->cgn_sig_freq) 3941 phba->cgn_sig_freq = rsp_sig_freq_cyc; 3942 3943 /* Should be some common signals support. Settle on least capable 3944 * signal and adjust FPIN values. Initialize defaults to ease the 3945 * decision. 3946 */ 3947 phba->cgn_reg_fpin = LPFC_CGN_FPIN_WARN | LPFC_CGN_FPIN_ALARM; 3948 phba->cgn_reg_signal = EDC_CG_SIG_NOTSUPPORTED; 3949 if (rsp_sig_cap == EDC_CG_SIG_WARN_ONLY && 3950 (drv_sig_cap == EDC_CG_SIG_WARN_ONLY || 3951 drv_sig_cap == EDC_CG_SIG_WARN_ALARM)) { 3952 phba->cgn_reg_signal = EDC_CG_SIG_WARN_ONLY; 3953 phba->cgn_reg_fpin &= ~LPFC_CGN_FPIN_WARN; 3954 } 3955 if (rsp_sig_cap == EDC_CG_SIG_WARN_ALARM) { 3956 if (drv_sig_cap == EDC_CG_SIG_WARN_ALARM) { 3957 phba->cgn_reg_signal = EDC_CG_SIG_WARN_ALARM; 3958 phba->cgn_reg_fpin = LPFC_CGN_FPIN_NONE; 3959 } 3960 if (drv_sig_cap == EDC_CG_SIG_WARN_ONLY) { 3961 phba->cgn_reg_signal = EDC_CG_SIG_WARN_ONLY; 3962 phba->cgn_reg_fpin &= ~LPFC_CGN_FPIN_WARN; 3963 } 3964 } 3965 3966 /* We are NOT recording signal frequency in congestion info buffer */ 3967 return; 3968 3969 out_no_support: 3970 phba->cgn_reg_signal = EDC_CG_SIG_NOTSUPPORTED; 3971 phba->cgn_sig_freq = 0; 3972 phba->cgn_reg_fpin = LPFC_CGN_FPIN_ALARM | LPFC_CGN_FPIN_WARN; 3973 } 3974 3975 DECLARE_ENUM2STR_LOOKUP(lpfc_get_tlv_dtag_nm, fc_ls_tlv_dtag, 3976 FC_LS_TLV_DTAG_INIT); 3977 3978 /** 3979 * lpfc_cmpl_els_edc - Completion callback function for EDC 3980 * @phba: pointer to lpfc hba data structure. 3981 * @cmdiocb: pointer to lpfc command iocb data structure. 3982 * @rspiocb: pointer to lpfc response iocb data structure. 3983 * 3984 * This routine is the completion callback function for issuing the Exchange 3985 * Diagnostic Capabilities (EDC) command. The driver issues an EDC to 3986 * notify the FPort of its Congestion and Link Fault capabilities. This 3987 * routine parses the FPort's response and decides on the least common 3988 * values applicable to both FPort and NPort for Warnings and Alarms that 3989 * are communicated via hardware signals. 3990 **/ 3991 static void 3992 lpfc_cmpl_els_edc(struct lpfc_hba *phba, struct lpfc_iocbq *cmdiocb, 3993 struct lpfc_iocbq *rspiocb) 3994 { 3995 IOCB_t *irsp_iocb; 3996 struct fc_els_edc_resp *edc_rsp; 3997 struct fc_tlv_desc *tlv; 3998 struct fc_diag_cg_sig_desc *pcgd; 3999 struct fc_diag_lnkflt_desc *plnkflt; 4000 struct lpfc_dmabuf *pcmd, *prsp; 4001 const char *dtag_nm; 4002 u32 *pdata, dtag; 4003 int desc_cnt = 0, bytes_remain; 4004 bool rcv_cap_desc = false; 4005 struct lpfc_nodelist *ndlp; 4006 u32 ulp_status, ulp_word4, tmo, did, iotag; 4007 4008 ndlp = cmdiocb->ndlp; 4009 4010 ulp_status = get_job_ulpstatus(phba, rspiocb); 4011 ulp_word4 = get_job_word4(phba, rspiocb); 4012 did = get_job_els_rsp64_did(phba, rspiocb); 4013 4014 if (phba->sli_rev == LPFC_SLI_REV4) { 4015 tmo = get_wqe_tmo(rspiocb); 4016 iotag = get_wqe_reqtag(rspiocb); 4017 } else { 4018 irsp_iocb = &rspiocb->iocb; 4019 tmo = irsp_iocb->ulpTimeout; 4020 iotag = irsp_iocb->ulpIoTag; 4021 } 4022 4023 lpfc_debugfs_disc_trc(phba->pport, LPFC_DISC_TRC_ELS_CMD, 4024 "EDC cmpl: status:x%x/x%x did:x%x", 4025 ulp_status, ulp_word4, did); 4026 4027 /* ELS cmd tag <ulpIoTag> completes */ 4028 lpfc_printf_log(phba, KERN_INFO, LOG_ELS | LOG_CGN_MGMT, 4029 "4201 EDC cmd tag x%x completes Data: x%x x%x x%x\n", 4030 iotag, ulp_status, ulp_word4, tmo); 4031 4032 pcmd = cmdiocb->cmd_dmabuf; 4033 if (!pcmd) 4034 goto out; 4035 4036 pdata = (u32 *)pcmd->virt; 4037 if (!pdata) 4038 goto out; 4039 4040 /* Need to clear signal values, send features MB and RDF with FPIN. */ 4041 if (ulp_status) 4042 goto out; 4043 4044 prsp = list_get_first(&pcmd->list, struct lpfc_dmabuf, list); 4045 if (!prsp) 4046 goto out; 4047 4048 edc_rsp = prsp->virt; 4049 if (!edc_rsp) 4050 goto out; 4051 4052 /* ELS cmd tag <ulpIoTag> completes */ 4053 lpfc_printf_log(phba, KERN_INFO, 4054 LOG_ELS | LOG_CGN_MGMT | LOG_LDS_EVENT, 4055 "4676 Fabric EDC Rsp: " 4056 "0x%02x, 0x%08x\n", 4057 edc_rsp->acc_hdr.la_cmd, 4058 be32_to_cpu(edc_rsp->desc_list_len)); 4059 4060 if (!lpfc_is_els_acc_rsp(prsp)) 4061 goto out; 4062 4063 /* 4064 * Payload length in bytes is the response descriptor list 4065 * length minus the 12 bytes of Link Service Request 4066 * Information descriptor in the reply. 4067 */ 4068 bytes_remain = be32_to_cpu(edc_rsp->desc_list_len) - 4069 sizeof(struct fc_els_lsri_desc); 4070 if (bytes_remain <= 0) 4071 goto out; 4072 4073 tlv = edc_rsp->desc; 4074 4075 /* 4076 * cycle through EDC diagnostic descriptors to find the 4077 * congestion signaling capability descriptor 4078 */ 4079 while (bytes_remain) { 4080 if (bytes_remain < FC_TLV_DESC_HDR_SZ) { 4081 lpfc_printf_log(phba, KERN_WARNING, LOG_CGN_MGMT, 4082 "6461 Truncated TLV hdr on " 4083 "Diagnostic descriptor[%d]\n", 4084 desc_cnt); 4085 goto out; 4086 } 4087 4088 dtag = be32_to_cpu(tlv->desc_tag); 4089 switch (dtag) { 4090 case ELS_DTAG_LNK_FAULT_CAP: 4091 if (bytes_remain < FC_TLV_DESC_SZ_FROM_LENGTH(tlv) || 4092 FC_TLV_DESC_SZ_FROM_LENGTH(tlv) != 4093 sizeof(struct fc_diag_lnkflt_desc)) { 4094 lpfc_printf_log(phba, KERN_WARNING, 4095 LOG_ELS | LOG_CGN_MGMT | LOG_LDS_EVENT, 4096 "6462 Truncated Link Fault Diagnostic " 4097 "descriptor[%d]: %d vs 0x%zx 0x%zx\n", 4098 desc_cnt, bytes_remain, 4099 FC_TLV_DESC_SZ_FROM_LENGTH(tlv), 4100 sizeof(struct fc_diag_lnkflt_desc)); 4101 goto out; 4102 } 4103 plnkflt = (struct fc_diag_lnkflt_desc *)tlv; 4104 lpfc_printf_log(phba, KERN_INFO, 4105 LOG_ELS | LOG_LDS_EVENT, 4106 "4617 Link Fault Desc Data: 0x%08x 0x%08x " 4107 "0x%08x 0x%08x 0x%08x\n", 4108 be32_to_cpu(plnkflt->desc_tag), 4109 be32_to_cpu(plnkflt->desc_len), 4110 be32_to_cpu( 4111 plnkflt->degrade_activate_threshold), 4112 be32_to_cpu( 4113 plnkflt->degrade_deactivate_threshold), 4114 be32_to_cpu(plnkflt->fec_degrade_interval)); 4115 break; 4116 case ELS_DTAG_CG_SIGNAL_CAP: 4117 if (bytes_remain < FC_TLV_DESC_SZ_FROM_LENGTH(tlv) || 4118 FC_TLV_DESC_SZ_FROM_LENGTH(tlv) != 4119 sizeof(struct fc_diag_cg_sig_desc)) { 4120 lpfc_printf_log( 4121 phba, KERN_WARNING, LOG_CGN_MGMT, 4122 "6463 Truncated Cgn Signal Diagnostic " 4123 "descriptor[%d]: %d vs 0x%zx 0x%zx\n", 4124 desc_cnt, bytes_remain, 4125 FC_TLV_DESC_SZ_FROM_LENGTH(tlv), 4126 sizeof(struct fc_diag_cg_sig_desc)); 4127 goto out; 4128 } 4129 4130 pcgd = (struct fc_diag_cg_sig_desc *)tlv; 4131 lpfc_printf_log( 4132 phba, KERN_INFO, LOG_ELS | LOG_CGN_MGMT, 4133 "4616 CGN Desc Data: 0x%08x 0x%08x " 4134 "0x%08x 0x%04x 0x%04x 0x%08x 0x%04x 0x%04x\n", 4135 be32_to_cpu(pcgd->desc_tag), 4136 be32_to_cpu(pcgd->desc_len), 4137 be32_to_cpu(pcgd->xmt_signal_capability), 4138 be16_to_cpu(pcgd->xmt_signal_frequency.count), 4139 be16_to_cpu(pcgd->xmt_signal_frequency.units), 4140 be32_to_cpu(pcgd->rcv_signal_capability), 4141 be16_to_cpu(pcgd->rcv_signal_frequency.count), 4142 be16_to_cpu(pcgd->rcv_signal_frequency.units)); 4143 4144 /* Compare driver and Fport capabilities and choose 4145 * least common. 4146 */ 4147 lpfc_least_capable_settings(phba, pcgd); 4148 rcv_cap_desc = true; 4149 break; 4150 default: 4151 dtag_nm = lpfc_get_tlv_dtag_nm(dtag); 4152 lpfc_printf_log(phba, KERN_WARNING, LOG_CGN_MGMT, 4153 "4919 unknown Diagnostic " 4154 "Descriptor[%d]: tag x%x (%s)\n", 4155 desc_cnt, dtag, dtag_nm); 4156 } 4157 4158 bytes_remain -= FC_TLV_DESC_SZ_FROM_LENGTH(tlv); 4159 tlv = fc_tlv_next_desc(tlv); 4160 desc_cnt++; 4161 } 4162 4163 out: 4164 if (!rcv_cap_desc) { 4165 phba->cgn_reg_fpin = LPFC_CGN_FPIN_ALARM | LPFC_CGN_FPIN_WARN; 4166 phba->cgn_reg_signal = EDC_CG_SIG_NOTSUPPORTED; 4167 phba->cgn_sig_freq = 0; 4168 lpfc_printf_log(phba, KERN_WARNING, LOG_ELS | LOG_CGN_MGMT, 4169 "4202 EDC rsp error - sending RDF " 4170 "for FPIN only.\n"); 4171 } 4172 4173 lpfc_config_cgn_signal(phba); 4174 4175 /* Check to see if link went down during discovery */ 4176 lpfc_els_chk_latt(phba->pport); 4177 lpfc_debugfs_disc_trc(phba->pport, LPFC_DISC_TRC_ELS_CMD, 4178 "EDC Cmpl: did:x%x refcnt %d", 4179 ndlp->nlp_DID, kref_read(&ndlp->kref), 0); 4180 lpfc_els_free_iocb(phba, cmdiocb); 4181 lpfc_nlp_put(ndlp); 4182 } 4183 4184 static void 4185 lpfc_format_edc_lft_desc(struct lpfc_hba *phba, struct fc_tlv_desc *tlv) 4186 { 4187 struct fc_diag_lnkflt_desc *lft = (struct fc_diag_lnkflt_desc *)tlv; 4188 4189 lft->desc_tag = cpu_to_be32(ELS_DTAG_LNK_FAULT_CAP); 4190 lft->desc_len = cpu_to_be32( 4191 FC_TLV_DESC_LENGTH_FROM_SZ(struct fc_diag_lnkflt_desc)); 4192 4193 lft->degrade_activate_threshold = 4194 cpu_to_be32(phba->degrade_activate_threshold); 4195 lft->degrade_deactivate_threshold = 4196 cpu_to_be32(phba->degrade_deactivate_threshold); 4197 lft->fec_degrade_interval = cpu_to_be32(phba->fec_degrade_interval); 4198 } 4199 4200 static void 4201 lpfc_format_edc_cgn_desc(struct lpfc_hba *phba, struct fc_tlv_desc *tlv) 4202 { 4203 struct fc_diag_cg_sig_desc *cgd = (struct fc_diag_cg_sig_desc *)tlv; 4204 4205 /* We are assuming cgd was zero'ed before calling this routine */ 4206 4207 /* Configure the congestion detection capability */ 4208 cgd->desc_tag = cpu_to_be32(ELS_DTAG_CG_SIGNAL_CAP); 4209 4210 /* Descriptor len doesn't include the tag or len fields. */ 4211 cgd->desc_len = cpu_to_be32( 4212 FC_TLV_DESC_LENGTH_FROM_SZ(struct fc_diag_cg_sig_desc)); 4213 4214 /* xmt_signal_capability already set to EDC_CG_SIG_NOTSUPPORTED. 4215 * xmt_signal_frequency.count already set to 0. 4216 * xmt_signal_frequency.units already set to 0. 4217 */ 4218 4219 if (phba->cmf_active_mode == LPFC_CFG_OFF) { 4220 /* rcv_signal_capability already set to EDC_CG_SIG_NOTSUPPORTED. 4221 * rcv_signal_frequency.count already set to 0. 4222 * rcv_signal_frequency.units already set to 0. 4223 */ 4224 phba->cgn_sig_freq = 0; 4225 return; 4226 } 4227 switch (phba->cgn_reg_signal) { 4228 case EDC_CG_SIG_WARN_ONLY: 4229 cgd->rcv_signal_capability = cpu_to_be32(EDC_CG_SIG_WARN_ONLY); 4230 break; 4231 case EDC_CG_SIG_WARN_ALARM: 4232 cgd->rcv_signal_capability = cpu_to_be32(EDC_CG_SIG_WARN_ALARM); 4233 break; 4234 default: 4235 /* rcv_signal_capability left 0 thus no support */ 4236 break; 4237 } 4238 4239 /* We start negotiation with lpfc_fabric_cgn_frequency, after 4240 * the completion we settle on the higher frequency. 4241 */ 4242 cgd->rcv_signal_frequency.count = 4243 cpu_to_be16(lpfc_fabric_cgn_frequency); 4244 cgd->rcv_signal_frequency.units = 4245 cpu_to_be16(EDC_CG_SIGFREQ_MSEC); 4246 } 4247 4248 static bool 4249 lpfc_link_is_lds_capable(struct lpfc_hba *phba) 4250 { 4251 if (!(phba->lmt & LMT_64Gb)) 4252 return false; 4253 if (phba->sli_rev != LPFC_SLI_REV4) 4254 return false; 4255 4256 if (phba->sli4_hba.conf_trunk) { 4257 if (phba->trunk_link.phy_lnk_speed == LPFC_USER_LINK_SPEED_64G) 4258 return true; 4259 } else if (phba->fc_linkspeed == LPFC_LINK_SPEED_64GHZ) { 4260 return true; 4261 } 4262 return false; 4263 } 4264 4265 /** 4266 * lpfc_issue_els_edc - Exchange Diagnostic Capabilities with the fabric. 4267 * @vport: pointer to a host virtual N_Port data structure. 4268 * @retry: retry counter for the command iocb. 4269 * 4270 * This routine issues an ELS EDC to the F-Port Controller to communicate 4271 * this N_Port's support of hardware signals in its Congestion 4272 * Capabilities Descriptor. 4273 * 4274 * Note: This routine does not check if one or more signals are 4275 * set in the cgn_reg_signal parameter. The caller makes the 4276 * decision to enforce cgn_reg_signal as nonzero or zero depending 4277 * on the conditions. During Fabric requests, the driver 4278 * requires cgn_reg_signals to be nonzero. But a dynamic request 4279 * to set the congestion mode to OFF from Monitor or Manage 4280 * would correctly issue an EDC with no signals enabled to 4281 * turn off switch functionality and then update the FW. 4282 * 4283 * Return code 4284 * 0 - Successfully issued edc command 4285 * 1 - Failed to issue edc command 4286 **/ 4287 int 4288 lpfc_issue_els_edc(struct lpfc_vport *vport, uint8_t retry) 4289 { 4290 struct lpfc_hba *phba = vport->phba; 4291 struct lpfc_iocbq *elsiocb; 4292 struct fc_els_edc *edc_req; 4293 struct fc_tlv_desc *tlv; 4294 u16 cmdsize; 4295 struct lpfc_nodelist *ndlp; 4296 u8 *pcmd = NULL; 4297 u32 cgn_desc_size, lft_desc_size; 4298 int rc; 4299 4300 if (vport->port_type == LPFC_NPIV_PORT) 4301 return -EACCES; 4302 4303 ndlp = lpfc_findnode_did(vport, Fabric_DID); 4304 if (!ndlp || ndlp->nlp_state != NLP_STE_UNMAPPED_NODE) 4305 return -ENODEV; 4306 4307 cgn_desc_size = (phba->cgn_init_reg_signal) ? 4308 sizeof(struct fc_diag_cg_sig_desc) : 0; 4309 lft_desc_size = (lpfc_link_is_lds_capable(phba)) ? 4310 sizeof(struct fc_diag_lnkflt_desc) : 0; 4311 cmdsize = cgn_desc_size + lft_desc_size; 4312 4313 /* Skip EDC if no applicable descriptors */ 4314 if (!cmdsize) 4315 goto try_rdf; 4316 4317 cmdsize += sizeof(struct fc_els_edc); 4318 elsiocb = lpfc_prep_els_iocb(vport, 1, cmdsize, retry, ndlp, 4319 ndlp->nlp_DID, ELS_CMD_EDC); 4320 if (!elsiocb) 4321 goto try_rdf; 4322 4323 /* Configure the payload for the supported Diagnostics capabilities. */ 4324 pcmd = (u8 *)elsiocb->cmd_dmabuf->virt; 4325 memset(pcmd, 0, cmdsize); 4326 edc_req = (struct fc_els_edc *)pcmd; 4327 edc_req->desc_len = cpu_to_be32(cgn_desc_size + lft_desc_size); 4328 edc_req->edc_cmd = ELS_EDC; 4329 tlv = edc_req->desc; 4330 4331 if (cgn_desc_size) { 4332 lpfc_format_edc_cgn_desc(phba, tlv); 4333 phba->cgn_sig_freq = lpfc_fabric_cgn_frequency; 4334 tlv = fc_tlv_next_desc(tlv); 4335 } 4336 4337 if (lft_desc_size) 4338 lpfc_format_edc_lft_desc(phba, tlv); 4339 4340 lpfc_printf_vlog(vport, KERN_INFO, LOG_ELS | LOG_CGN_MGMT, 4341 "4623 Xmit EDC to remote " 4342 "NPORT x%x reg_sig x%x reg_fpin:x%x\n", 4343 ndlp->nlp_DID, phba->cgn_reg_signal, 4344 phba->cgn_reg_fpin); 4345 4346 elsiocb->cmd_cmpl = lpfc_cmpl_els_disc_cmd; 4347 elsiocb->ndlp = lpfc_nlp_get(ndlp); 4348 if (!elsiocb->ndlp) { 4349 lpfc_els_free_iocb(phba, elsiocb); 4350 return -EIO; 4351 } 4352 4353 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_CMD, 4354 "Issue EDC: did:x%x refcnt %d", 4355 ndlp->nlp_DID, kref_read(&ndlp->kref), 0); 4356 rc = lpfc_sli_issue_iocb(phba, LPFC_ELS_RING, elsiocb, 0); 4357 if (rc == IOCB_ERROR) { 4358 /* The additional lpfc_nlp_put will cause the following 4359 * lpfc_els_free_iocb routine to trigger the rlease of 4360 * the node. 4361 */ 4362 lpfc_els_free_iocb(phba, elsiocb); 4363 lpfc_nlp_put(ndlp); 4364 goto try_rdf; 4365 } 4366 return 0; 4367 try_rdf: 4368 phba->cgn_reg_fpin = LPFC_CGN_FPIN_WARN | LPFC_CGN_FPIN_ALARM; 4369 phba->cgn_reg_signal = EDC_CG_SIG_NOTSUPPORTED; 4370 rc = lpfc_issue_els_rdf(vport, 0); 4371 return rc; 4372 } 4373 4374 /** 4375 * lpfc_cancel_retry_delay_tmo - Cancel the timer with delayed iocb-cmd retry 4376 * @vport: pointer to a host virtual N_Port data structure. 4377 * @nlp: pointer to a node-list data structure. 4378 * 4379 * This routine cancels the timer with a delayed IOCB-command retry for 4380 * a @vport's @ndlp. It stops the timer for the delayed function retrial and 4381 * removes the ELS retry event if it presents. In addition, if the 4382 * NLP_NPR_2B_DISC bit is set in the @nlp's nlp_flag bitmap, ADISC IOCB 4383 * commands are sent for the @vport's nodes that require issuing discovery 4384 * ADISC. 4385 **/ 4386 void 4387 lpfc_cancel_retry_delay_tmo(struct lpfc_vport *vport, struct lpfc_nodelist *nlp) 4388 { 4389 struct lpfc_work_evt *evtp; 4390 4391 if (!(nlp->nlp_flag & NLP_DELAY_TMO)) 4392 return; 4393 spin_lock_irq(&nlp->lock); 4394 nlp->nlp_flag &= ~NLP_DELAY_TMO; 4395 spin_unlock_irq(&nlp->lock); 4396 del_timer_sync(&nlp->nlp_delayfunc); 4397 nlp->nlp_last_elscmd = 0; 4398 if (!list_empty(&nlp->els_retry_evt.evt_listp)) { 4399 list_del_init(&nlp->els_retry_evt.evt_listp); 4400 /* Decrement nlp reference count held for the delayed retry */ 4401 evtp = &nlp->els_retry_evt; 4402 lpfc_nlp_put((struct lpfc_nodelist *)evtp->evt_arg1); 4403 } 4404 if (nlp->nlp_flag & NLP_NPR_2B_DISC) { 4405 spin_lock_irq(&nlp->lock); 4406 nlp->nlp_flag &= ~NLP_NPR_2B_DISC; 4407 spin_unlock_irq(&nlp->lock); 4408 if (vport->num_disc_nodes) { 4409 if (vport->port_state < LPFC_VPORT_READY) { 4410 /* Check if there are more ADISCs to be sent */ 4411 lpfc_more_adisc(vport); 4412 } else { 4413 /* Check if there are more PLOGIs to be sent */ 4414 lpfc_more_plogi(vport); 4415 if (vport->num_disc_nodes == 0) { 4416 clear_bit(FC_NDISC_ACTIVE, 4417 &vport->fc_flag); 4418 lpfc_can_disctmo(vport); 4419 lpfc_end_rscn(vport); 4420 } 4421 } 4422 } 4423 } 4424 return; 4425 } 4426 4427 /** 4428 * lpfc_els_retry_delay - Timer function with a ndlp delayed function timer 4429 * @t: pointer to the timer function associated data (ndlp). 4430 * 4431 * This routine is invoked by the ndlp delayed-function timer to check 4432 * whether there is any pending ELS retry event(s) with the node. If not, it 4433 * simply returns. Otherwise, if there is at least one ELS delayed event, it 4434 * adds the delayed events to the HBA work list and invokes the 4435 * lpfc_worker_wake_up() routine to wake up worker thread to process the 4436 * event. Note that lpfc_nlp_get() is called before posting the event to 4437 * the work list to hold reference count of ndlp so that it guarantees the 4438 * reference to ndlp will still be available when the worker thread gets 4439 * to the event associated with the ndlp. 4440 **/ 4441 void 4442 lpfc_els_retry_delay(struct timer_list *t) 4443 { 4444 struct lpfc_nodelist *ndlp = from_timer(ndlp, t, nlp_delayfunc); 4445 struct lpfc_vport *vport = ndlp->vport; 4446 struct lpfc_hba *phba = vport->phba; 4447 unsigned long flags; 4448 struct lpfc_work_evt *evtp = &ndlp->els_retry_evt; 4449 4450 /* Hold a node reference for outstanding queued work */ 4451 if (!lpfc_nlp_get(ndlp)) 4452 return; 4453 4454 spin_lock_irqsave(&phba->hbalock, flags); 4455 if (!list_empty(&evtp->evt_listp)) { 4456 spin_unlock_irqrestore(&phba->hbalock, flags); 4457 lpfc_nlp_put(ndlp); 4458 return; 4459 } 4460 4461 evtp->evt_arg1 = ndlp; 4462 evtp->evt = LPFC_EVT_ELS_RETRY; 4463 list_add_tail(&evtp->evt_listp, &phba->work_list); 4464 spin_unlock_irqrestore(&phba->hbalock, flags); 4465 4466 lpfc_worker_wake_up(phba); 4467 } 4468 4469 /** 4470 * lpfc_els_retry_delay_handler - Work thread handler for ndlp delayed function 4471 * @ndlp: pointer to a node-list data structure. 4472 * 4473 * This routine is the worker-thread handler for processing the @ndlp delayed 4474 * event(s), posted by the lpfc_els_retry_delay() routine. It simply retrieves 4475 * the last ELS command from the associated ndlp and invokes the proper ELS 4476 * function according to the delayed ELS command to retry the command. 4477 **/ 4478 void 4479 lpfc_els_retry_delay_handler(struct lpfc_nodelist *ndlp) 4480 { 4481 struct lpfc_vport *vport = ndlp->vport; 4482 uint32_t cmd, retry; 4483 4484 spin_lock_irq(&ndlp->lock); 4485 cmd = ndlp->nlp_last_elscmd; 4486 ndlp->nlp_last_elscmd = 0; 4487 4488 if (!(ndlp->nlp_flag & NLP_DELAY_TMO)) { 4489 spin_unlock_irq(&ndlp->lock); 4490 return; 4491 } 4492 4493 ndlp->nlp_flag &= ~NLP_DELAY_TMO; 4494 spin_unlock_irq(&ndlp->lock); 4495 /* 4496 * If a discovery event readded nlp_delayfunc after timer 4497 * firing and before processing the timer, cancel the 4498 * nlp_delayfunc. 4499 */ 4500 del_timer_sync(&ndlp->nlp_delayfunc); 4501 retry = ndlp->nlp_retry; 4502 ndlp->nlp_retry = 0; 4503 4504 switch (cmd) { 4505 case ELS_CMD_FLOGI: 4506 lpfc_issue_els_flogi(vport, ndlp, retry); 4507 break; 4508 case ELS_CMD_PLOGI: 4509 if (!lpfc_issue_els_plogi(vport, ndlp->nlp_DID, retry)) { 4510 ndlp->nlp_prev_state = ndlp->nlp_state; 4511 lpfc_nlp_set_state(vport, ndlp, NLP_STE_PLOGI_ISSUE); 4512 } 4513 break; 4514 case ELS_CMD_ADISC: 4515 if (!lpfc_issue_els_adisc(vport, ndlp, retry)) { 4516 ndlp->nlp_prev_state = ndlp->nlp_state; 4517 lpfc_nlp_set_state(vport, ndlp, NLP_STE_ADISC_ISSUE); 4518 } 4519 break; 4520 case ELS_CMD_PRLI: 4521 case ELS_CMD_NVMEPRLI: 4522 if (!lpfc_issue_els_prli(vport, ndlp, retry)) { 4523 ndlp->nlp_prev_state = ndlp->nlp_state; 4524 lpfc_nlp_set_state(vport, ndlp, NLP_STE_PRLI_ISSUE); 4525 } 4526 break; 4527 case ELS_CMD_LOGO: 4528 if (!lpfc_issue_els_logo(vport, ndlp, retry)) { 4529 ndlp->nlp_prev_state = ndlp->nlp_state; 4530 lpfc_nlp_set_state(vport, ndlp, NLP_STE_LOGO_ISSUE); 4531 } 4532 break; 4533 case ELS_CMD_FDISC: 4534 if (!test_bit(FC_VPORT_NEEDS_INIT_VPI, &vport->fc_flag)) 4535 lpfc_issue_els_fdisc(vport, ndlp, retry); 4536 break; 4537 } 4538 return; 4539 } 4540 4541 /** 4542 * lpfc_link_reset - Issue link reset 4543 * @vport: pointer to a virtual N_Port data structure. 4544 * 4545 * This routine performs link reset by sending INIT_LINK mailbox command. 4546 * For SLI-3 adapter, link attention interrupt is enabled before issuing 4547 * INIT_LINK mailbox command. 4548 * 4549 * Return code 4550 * 0 - Link reset initiated successfully 4551 * 1 - Failed to initiate link reset 4552 **/ 4553 int 4554 lpfc_link_reset(struct lpfc_vport *vport) 4555 { 4556 struct lpfc_hba *phba = vport->phba; 4557 LPFC_MBOXQ_t *mbox; 4558 uint32_t control; 4559 int rc; 4560 4561 lpfc_printf_vlog(vport, KERN_ERR, LOG_ELS, 4562 "2851 Attempt link reset\n"); 4563 mbox = mempool_alloc(phba->mbox_mem_pool, GFP_KERNEL); 4564 if (!mbox) { 4565 lpfc_printf_log(phba, KERN_ERR, LOG_TRACE_EVENT, 4566 "2852 Failed to allocate mbox memory"); 4567 return 1; 4568 } 4569 4570 /* Enable Link attention interrupts */ 4571 if (phba->sli_rev <= LPFC_SLI_REV3) { 4572 spin_lock_irq(&phba->hbalock); 4573 phba->sli.sli_flag |= LPFC_PROCESS_LA; 4574 control = readl(phba->HCregaddr); 4575 control |= HC_LAINT_ENA; 4576 writel(control, phba->HCregaddr); 4577 readl(phba->HCregaddr); /* flush */ 4578 spin_unlock_irq(&phba->hbalock); 4579 } 4580 4581 lpfc_init_link(phba, mbox, phba->cfg_topology, 4582 phba->cfg_link_speed); 4583 mbox->mbox_cmpl = lpfc_sli_def_mbox_cmpl; 4584 mbox->vport = vport; 4585 rc = lpfc_sli_issue_mbox(phba, mbox, MBX_NOWAIT); 4586 if ((rc != MBX_BUSY) && (rc != MBX_SUCCESS)) { 4587 lpfc_printf_log(phba, KERN_ERR, LOG_TRACE_EVENT, 4588 "2853 Failed to issue INIT_LINK " 4589 "mbox command, rc:x%x\n", rc); 4590 mempool_free(mbox, phba->mbox_mem_pool); 4591 return 1; 4592 } 4593 4594 return 0; 4595 } 4596 4597 /** 4598 * lpfc_els_retry - Make retry decision on an els command iocb 4599 * @phba: pointer to lpfc hba data structure. 4600 * @cmdiocb: pointer to lpfc command iocb data structure. 4601 * @rspiocb: pointer to lpfc response iocb data structure. 4602 * 4603 * This routine makes a retry decision on an ELS command IOCB, which has 4604 * failed. The following ELS IOCBs use this function for retrying the command 4605 * when previously issued command responsed with error status: FLOGI, PLOGI, 4606 * PRLI, ADISC and FDISC. Based on the ELS command type and the 4607 * returned error status, it makes the decision whether a retry shall be 4608 * issued for the command, and whether a retry shall be made immediately or 4609 * delayed. In the former case, the corresponding ELS command issuing-function 4610 * is called to retry the command. In the later case, the ELS command shall 4611 * be posted to the ndlp delayed event and delayed function timer set to the 4612 * ndlp for the delayed command issusing. 4613 * 4614 * Return code 4615 * 0 - No retry of els command is made 4616 * 1 - Immediate or delayed retry of els command is made 4617 **/ 4618 static int 4619 lpfc_els_retry(struct lpfc_hba *phba, struct lpfc_iocbq *cmdiocb, 4620 struct lpfc_iocbq *rspiocb) 4621 { 4622 struct lpfc_vport *vport = cmdiocb->vport; 4623 union lpfc_wqe128 *irsp = &rspiocb->wqe; 4624 struct lpfc_nodelist *ndlp = cmdiocb->ndlp; 4625 struct lpfc_dmabuf *pcmd = cmdiocb->cmd_dmabuf; 4626 uint32_t *elscmd; 4627 struct ls_rjt stat; 4628 int retry = 0, maxretry = lpfc_max_els_tries, delay = 0; 4629 int logerr = 0; 4630 uint32_t cmd = 0; 4631 uint32_t did; 4632 int link_reset = 0, rc; 4633 u32 ulp_status = get_job_ulpstatus(phba, rspiocb); 4634 u32 ulp_word4 = get_job_word4(phba, rspiocb); 4635 4636 4637 /* Note: cmd_dmabuf may be 0 for internal driver abort 4638 * of delays ELS command. 4639 */ 4640 4641 if (pcmd && pcmd->virt) { 4642 elscmd = (uint32_t *) (pcmd->virt); 4643 cmd = *elscmd++; 4644 } 4645 4646 if (ndlp) 4647 did = ndlp->nlp_DID; 4648 else { 4649 /* We should only hit this case for retrying PLOGI */ 4650 did = get_job_els_rsp64_did(phba, rspiocb); 4651 ndlp = lpfc_findnode_did(vport, did); 4652 if (!ndlp && (cmd != ELS_CMD_PLOGI)) 4653 return 0; 4654 } 4655 4656 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_CMD, 4657 "Retry ELS: wd7:x%x wd4:x%x did:x%x", 4658 *(((uint32_t *)irsp) + 7), ulp_word4, did); 4659 4660 switch (ulp_status) { 4661 case IOSTAT_FCP_RSP_ERROR: 4662 break; 4663 case IOSTAT_REMOTE_STOP: 4664 if (phba->sli_rev == LPFC_SLI_REV4) { 4665 /* This IO was aborted by the target, we don't 4666 * know the rxid and because we did not send the 4667 * ABTS we cannot generate and RRQ. 4668 */ 4669 lpfc_set_rrq_active(phba, ndlp, 4670 cmdiocb->sli4_lxritag, 0, 0); 4671 } 4672 break; 4673 case IOSTAT_LOCAL_REJECT: 4674 switch ((ulp_word4 & IOERR_PARAM_MASK)) { 4675 case IOERR_LOOP_OPEN_FAILURE: 4676 if (cmd == ELS_CMD_PLOGI && cmdiocb->retry == 0) 4677 delay = 1000; 4678 retry = 1; 4679 break; 4680 4681 case IOERR_ILLEGAL_COMMAND: 4682 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT, 4683 "0124 Retry illegal cmd x%x " 4684 "retry:x%x delay:x%x\n", 4685 cmd, cmdiocb->retry, delay); 4686 retry = 1; 4687 /* All command's retry policy */ 4688 maxretry = 8; 4689 if (cmdiocb->retry > 2) 4690 delay = 1000; 4691 break; 4692 4693 case IOERR_NO_RESOURCES: 4694 logerr = 1; /* HBA out of resources */ 4695 retry = 1; 4696 if (cmdiocb->retry > 100) 4697 delay = 100; 4698 maxretry = 250; 4699 break; 4700 4701 case IOERR_ILLEGAL_FRAME: 4702 delay = 100; 4703 retry = 1; 4704 break; 4705 4706 case IOERR_INVALID_RPI: 4707 if (cmd == ELS_CMD_PLOGI && 4708 did == NameServer_DID) { 4709 /* Continue forever if plogi to */ 4710 /* the nameserver fails */ 4711 maxretry = 0; 4712 delay = 100; 4713 } else if (cmd == ELS_CMD_PRLI && 4714 ndlp->nlp_state != NLP_STE_PRLI_ISSUE) { 4715 /* State-command disagreement. The PRLI was 4716 * failed with an invalid rpi meaning there 4717 * some unexpected state change. Don't retry. 4718 */ 4719 maxretry = 0; 4720 retry = 0; 4721 break; 4722 } 4723 retry = 1; 4724 break; 4725 4726 case IOERR_SEQUENCE_TIMEOUT: 4727 if (cmd == ELS_CMD_PLOGI && 4728 did == NameServer_DID && 4729 (cmdiocb->retry + 1) == maxretry) { 4730 /* Reset the Link */ 4731 link_reset = 1; 4732 break; 4733 } 4734 retry = 1; 4735 delay = 100; 4736 break; 4737 case IOERR_SLI_ABORTED: 4738 /* Retry ELS PLOGI command? 4739 * Possibly the rport just wasn't ready. 4740 */ 4741 if (cmd == ELS_CMD_PLOGI) { 4742 /* No retry if state change */ 4743 if (ndlp && 4744 ndlp->nlp_state != NLP_STE_PLOGI_ISSUE) 4745 goto out_retry; 4746 retry = 1; 4747 maxretry = 2; 4748 } 4749 break; 4750 } 4751 break; 4752 4753 case IOSTAT_NPORT_RJT: 4754 case IOSTAT_FABRIC_RJT: 4755 if (ulp_word4 & RJT_UNAVAIL_TEMP) { 4756 retry = 1; 4757 break; 4758 } 4759 break; 4760 4761 case IOSTAT_NPORT_BSY: 4762 case IOSTAT_FABRIC_BSY: 4763 logerr = 1; /* Fabric / Remote NPort out of resources */ 4764 retry = 1; 4765 break; 4766 4767 case IOSTAT_LS_RJT: 4768 stat.un.ls_rjt_error_be = cpu_to_be32(ulp_word4); 4769 /* Added for Vendor specifc support 4770 * Just keep retrying for these Rsn / Exp codes 4771 */ 4772 if (test_bit(FC_PT2PT, &vport->fc_flag) && 4773 cmd == ELS_CMD_NVMEPRLI) { 4774 switch (stat.un.b.lsRjtRsnCode) { 4775 case LSRJT_UNABLE_TPC: 4776 case LSRJT_INVALID_CMD: 4777 case LSRJT_LOGICAL_ERR: 4778 case LSRJT_CMD_UNSUPPORTED: 4779 lpfc_printf_vlog(vport, KERN_WARNING, LOG_ELS, 4780 "0168 NVME PRLI LS_RJT " 4781 "reason %x port doesn't " 4782 "support NVME, disabling NVME\n", 4783 stat.un.b.lsRjtRsnCode); 4784 retry = 0; 4785 set_bit(FC_PT2PT_NO_NVME, &vport->fc_flag); 4786 goto out_retry; 4787 } 4788 } 4789 switch (stat.un.b.lsRjtRsnCode) { 4790 case LSRJT_UNABLE_TPC: 4791 /* Special case for PRLI LS_RJTs. Recall that lpfc 4792 * uses a single routine to issue both PRLI FC4 types. 4793 * If the PRLI is rejected because that FC4 type 4794 * isn't really supported, don't retry and cause 4795 * multiple transport registrations. Otherwise, parse 4796 * the reason code/reason code explanation and take the 4797 * appropriate action. 4798 */ 4799 lpfc_printf_vlog(vport, KERN_INFO, 4800 LOG_DISCOVERY | LOG_ELS | LOG_NODE, 4801 "0153 ELS cmd x%x LS_RJT by x%x. " 4802 "RsnCode x%x RsnCodeExp x%x\n", 4803 cmd, did, stat.un.b.lsRjtRsnCode, 4804 stat.un.b.lsRjtRsnCodeExp); 4805 4806 switch (stat.un.b.lsRjtRsnCodeExp) { 4807 case LSEXP_CANT_GIVE_DATA: 4808 case LSEXP_CMD_IN_PROGRESS: 4809 if (cmd == ELS_CMD_PLOGI) { 4810 delay = 1000; 4811 maxretry = 48; 4812 } 4813 retry = 1; 4814 break; 4815 case LSEXP_REQ_UNSUPPORTED: 4816 case LSEXP_NO_RSRC_ASSIGN: 4817 /* These explanation codes get no retry. */ 4818 if (cmd == ELS_CMD_PRLI || 4819 cmd == ELS_CMD_NVMEPRLI) 4820 break; 4821 fallthrough; 4822 default: 4823 /* Limit the delay and retry action to a limited 4824 * cmd set. There are other ELS commands where 4825 * a retry is not expected. 4826 */ 4827 if (cmd == ELS_CMD_PLOGI || 4828 cmd == ELS_CMD_PRLI || 4829 cmd == ELS_CMD_NVMEPRLI) { 4830 delay = 1000; 4831 maxretry = lpfc_max_els_tries + 1; 4832 retry = 1; 4833 } 4834 break; 4835 } 4836 4837 if ((phba->sli3_options & LPFC_SLI3_NPIV_ENABLED) && 4838 (cmd == ELS_CMD_FDISC) && 4839 (stat.un.b.lsRjtRsnCodeExp == LSEXP_OUT_OF_RESOURCE)){ 4840 lpfc_printf_vlog(vport, KERN_ERR, 4841 LOG_TRACE_EVENT, 4842 "0125 FDISC Failed (x%x). " 4843 "Fabric out of resources\n", 4844 stat.un.lsRjtError); 4845 lpfc_vport_set_state(vport, 4846 FC_VPORT_NO_FABRIC_RSCS); 4847 } 4848 break; 4849 4850 case LSRJT_LOGICAL_BSY: 4851 if ((cmd == ELS_CMD_PLOGI) || 4852 (cmd == ELS_CMD_PRLI) || 4853 (cmd == ELS_CMD_NVMEPRLI)) { 4854 delay = 1000; 4855 maxretry = 48; 4856 } else if (cmd == ELS_CMD_FDISC) { 4857 /* FDISC retry policy */ 4858 maxretry = 48; 4859 if (cmdiocb->retry >= 32) 4860 delay = 1000; 4861 } 4862 retry = 1; 4863 break; 4864 4865 case LSRJT_LOGICAL_ERR: 4866 /* There are some cases where switches return this 4867 * error when they are not ready and should be returning 4868 * Logical Busy. We should delay every time. 4869 */ 4870 if (cmd == ELS_CMD_FDISC && 4871 stat.un.b.lsRjtRsnCodeExp == LSEXP_PORT_LOGIN_REQ) { 4872 maxretry = 3; 4873 delay = 1000; 4874 retry = 1; 4875 } else if (cmd == ELS_CMD_FLOGI && 4876 stat.un.b.lsRjtRsnCodeExp == 4877 LSEXP_NOTHING_MORE) { 4878 vport->fc_sparam.cmn.bbRcvSizeMsb &= 0xf; 4879 retry = 1; 4880 lpfc_printf_vlog(vport, KERN_ERR, 4881 LOG_TRACE_EVENT, 4882 "0820 FLOGI Failed (x%x). " 4883 "BBCredit Not Supported\n", 4884 stat.un.lsRjtError); 4885 } 4886 break; 4887 4888 case LSRJT_PROTOCOL_ERR: 4889 if ((phba->sli3_options & LPFC_SLI3_NPIV_ENABLED) && 4890 (cmd == ELS_CMD_FDISC) && 4891 ((stat.un.b.lsRjtRsnCodeExp == LSEXP_INVALID_PNAME) || 4892 (stat.un.b.lsRjtRsnCodeExp == LSEXP_INVALID_NPORT_ID)) 4893 ) { 4894 lpfc_printf_vlog(vport, KERN_ERR, 4895 LOG_TRACE_EVENT, 4896 "0122 FDISC Failed (x%x). " 4897 "Fabric Detected Bad WWN\n", 4898 stat.un.lsRjtError); 4899 lpfc_vport_set_state(vport, 4900 FC_VPORT_FABRIC_REJ_WWN); 4901 } 4902 break; 4903 case LSRJT_VENDOR_UNIQUE: 4904 if ((stat.un.b.vendorUnique == 0x45) && 4905 (cmd == ELS_CMD_FLOGI)) { 4906 goto out_retry; 4907 } 4908 break; 4909 case LSRJT_CMD_UNSUPPORTED: 4910 /* lpfc nvmet returns this type of LS_RJT when it 4911 * receives an FCP PRLI because lpfc nvmet only 4912 * support NVME. ELS request is terminated for FCP4 4913 * on this rport. 4914 */ 4915 if (stat.un.b.lsRjtRsnCodeExp == 4916 LSEXP_REQ_UNSUPPORTED) { 4917 if (cmd == ELS_CMD_PRLI) 4918 goto out_retry; 4919 } 4920 break; 4921 } 4922 break; 4923 4924 case IOSTAT_INTERMED_RSP: 4925 case IOSTAT_BA_RJT: 4926 break; 4927 4928 default: 4929 break; 4930 } 4931 4932 if (link_reset) { 4933 rc = lpfc_link_reset(vport); 4934 if (rc) { 4935 /* Do not give up. Retry PLOGI one more time and attempt 4936 * link reset if PLOGI fails again. 4937 */ 4938 retry = 1; 4939 delay = 100; 4940 goto out_retry; 4941 } 4942 return 1; 4943 } 4944 4945 if (did == FDMI_DID) 4946 retry = 1; 4947 4948 if ((cmd == ELS_CMD_FLOGI) && 4949 (phba->fc_topology != LPFC_TOPOLOGY_LOOP) && 4950 !lpfc_error_lost_link(vport, ulp_status, ulp_word4)) { 4951 /* FLOGI retry policy */ 4952 retry = 1; 4953 /* retry FLOGI forever */ 4954 if (phba->link_flag != LS_LOOPBACK_MODE) 4955 maxretry = 0; 4956 else 4957 maxretry = 2; 4958 4959 if (cmdiocb->retry >= 100) 4960 delay = 5000; 4961 else if (cmdiocb->retry >= 32) 4962 delay = 1000; 4963 } else if ((cmd == ELS_CMD_FDISC) && 4964 !lpfc_error_lost_link(vport, ulp_status, ulp_word4)) { 4965 /* retry FDISCs every second up to devloss */ 4966 retry = 1; 4967 maxretry = vport->cfg_devloss_tmo; 4968 delay = 1000; 4969 } 4970 4971 cmdiocb->retry++; 4972 if (maxretry && (cmdiocb->retry >= maxretry)) { 4973 phba->fc_stat.elsRetryExceeded++; 4974 retry = 0; 4975 } 4976 4977 if (test_bit(FC_UNLOADING, &vport->load_flag)) 4978 retry = 0; 4979 4980 out_retry: 4981 if (retry) { 4982 if ((cmd == ELS_CMD_PLOGI) || (cmd == ELS_CMD_FDISC)) { 4983 /* Stop retrying PLOGI and FDISC if in FCF discovery */ 4984 if (phba->fcf.fcf_flag & FCF_DISCOVERY) { 4985 lpfc_printf_vlog(vport, KERN_INFO, LOG_ELS, 4986 "2849 Stop retry ELS command " 4987 "x%x to remote NPORT x%x, " 4988 "Data: x%x x%x\n", cmd, did, 4989 cmdiocb->retry, delay); 4990 return 0; 4991 } 4992 } 4993 4994 /* Retry ELS command <elsCmd> to remote NPORT <did> */ 4995 lpfc_printf_vlog(vport, KERN_INFO, LOG_ELS, 4996 "0107 Retry ELS command x%x to remote " 4997 "NPORT x%x Data: x%x x%x\n", 4998 cmd, did, cmdiocb->retry, delay); 4999 5000 if (((cmd == ELS_CMD_PLOGI) || (cmd == ELS_CMD_ADISC)) && 5001 ((ulp_status != IOSTAT_LOCAL_REJECT) || 5002 ((ulp_word4 & IOERR_PARAM_MASK) != 5003 IOERR_NO_RESOURCES))) { 5004 /* Don't reset timer for no resources */ 5005 5006 /* If discovery / RSCN timer is running, reset it */ 5007 if (timer_pending(&vport->fc_disctmo) || 5008 test_bit(FC_RSCN_MODE, &vport->fc_flag)) 5009 lpfc_set_disctmo(vport); 5010 } 5011 5012 phba->fc_stat.elsXmitRetry++; 5013 if (ndlp && delay) { 5014 phba->fc_stat.elsDelayRetry++; 5015 ndlp->nlp_retry = cmdiocb->retry; 5016 5017 /* delay is specified in milliseconds */ 5018 mod_timer(&ndlp->nlp_delayfunc, 5019 jiffies + msecs_to_jiffies(delay)); 5020 spin_lock_irq(&ndlp->lock); 5021 ndlp->nlp_flag |= NLP_DELAY_TMO; 5022 spin_unlock_irq(&ndlp->lock); 5023 5024 ndlp->nlp_prev_state = ndlp->nlp_state; 5025 if ((cmd == ELS_CMD_PRLI) || 5026 (cmd == ELS_CMD_NVMEPRLI)) 5027 lpfc_nlp_set_state(vport, ndlp, 5028 NLP_STE_PRLI_ISSUE); 5029 else if (cmd != ELS_CMD_ADISC) 5030 lpfc_nlp_set_state(vport, ndlp, 5031 NLP_STE_NPR_NODE); 5032 ndlp->nlp_last_elscmd = cmd; 5033 5034 return 1; 5035 } 5036 switch (cmd) { 5037 case ELS_CMD_FLOGI: 5038 lpfc_issue_els_flogi(vport, ndlp, cmdiocb->retry); 5039 return 1; 5040 case ELS_CMD_FDISC: 5041 lpfc_issue_els_fdisc(vport, ndlp, cmdiocb->retry); 5042 return 1; 5043 case ELS_CMD_PLOGI: 5044 if (ndlp) { 5045 ndlp->nlp_prev_state = ndlp->nlp_state; 5046 lpfc_nlp_set_state(vport, ndlp, 5047 NLP_STE_PLOGI_ISSUE); 5048 } 5049 lpfc_issue_els_plogi(vport, did, cmdiocb->retry); 5050 return 1; 5051 case ELS_CMD_ADISC: 5052 ndlp->nlp_prev_state = ndlp->nlp_state; 5053 lpfc_nlp_set_state(vport, ndlp, NLP_STE_ADISC_ISSUE); 5054 lpfc_issue_els_adisc(vport, ndlp, cmdiocb->retry); 5055 return 1; 5056 case ELS_CMD_PRLI: 5057 case ELS_CMD_NVMEPRLI: 5058 ndlp->nlp_prev_state = ndlp->nlp_state; 5059 lpfc_nlp_set_state(vport, ndlp, NLP_STE_PRLI_ISSUE); 5060 lpfc_issue_els_prli(vport, ndlp, cmdiocb->retry); 5061 return 1; 5062 case ELS_CMD_LOGO: 5063 ndlp->nlp_prev_state = ndlp->nlp_state; 5064 lpfc_nlp_set_state(vport, ndlp, NLP_STE_LOGO_ISSUE); 5065 lpfc_issue_els_logo(vport, ndlp, cmdiocb->retry); 5066 return 1; 5067 } 5068 } 5069 /* No retry ELS command <elsCmd> to remote NPORT <did> */ 5070 if (logerr) { 5071 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT, 5072 "0137 No retry ELS command x%x to remote " 5073 "NPORT x%x: Out of Resources: Error:x%x/%x " 5074 "IoTag x%x\n", 5075 cmd, did, ulp_status, ulp_word4, 5076 cmdiocb->iotag); 5077 } 5078 else { 5079 lpfc_printf_vlog(vport, KERN_INFO, LOG_ELS, 5080 "0108 No retry ELS command x%x to remote " 5081 "NPORT x%x Retried:%d Error:x%x/%x " 5082 "IoTag x%x nflags x%x\n", 5083 cmd, did, cmdiocb->retry, ulp_status, 5084 ulp_word4, cmdiocb->iotag, 5085 (ndlp ? ndlp->nlp_flag : 0)); 5086 } 5087 return 0; 5088 } 5089 5090 /** 5091 * lpfc_els_free_data - Free lpfc dma buffer and data structure with an iocb 5092 * @phba: pointer to lpfc hba data structure. 5093 * @buf_ptr1: pointer to the lpfc DMA buffer data structure. 5094 * 5095 * This routine releases the lpfc DMA (Direct Memory Access) buffer(s) 5096 * associated with a command IOCB back to the lpfc DMA buffer pool. It first 5097 * checks to see whether there is a lpfc DMA buffer associated with the 5098 * response of the command IOCB. If so, it will be released before releasing 5099 * the lpfc DMA buffer associated with the IOCB itself. 5100 * 5101 * Return code 5102 * 0 - Successfully released lpfc DMA buffer (currently, always return 0) 5103 **/ 5104 static int 5105 lpfc_els_free_data(struct lpfc_hba *phba, struct lpfc_dmabuf *buf_ptr1) 5106 { 5107 struct lpfc_dmabuf *buf_ptr; 5108 5109 /* Free the response before processing the command. */ 5110 if (!list_empty(&buf_ptr1->list)) { 5111 list_remove_head(&buf_ptr1->list, buf_ptr, 5112 struct lpfc_dmabuf, 5113 list); 5114 lpfc_mbuf_free(phba, buf_ptr->virt, buf_ptr->phys); 5115 kfree(buf_ptr); 5116 } 5117 lpfc_mbuf_free(phba, buf_ptr1->virt, buf_ptr1->phys); 5118 kfree(buf_ptr1); 5119 return 0; 5120 } 5121 5122 /** 5123 * lpfc_els_free_bpl - Free lpfc dma buffer and data structure with bpl 5124 * @phba: pointer to lpfc hba data structure. 5125 * @buf_ptr: pointer to the lpfc dma buffer data structure. 5126 * 5127 * This routine releases the lpfc Direct Memory Access (DMA) buffer 5128 * associated with a Buffer Pointer List (BPL) back to the lpfc DMA buffer 5129 * pool. 5130 * 5131 * Return code 5132 * 0 - Successfully released lpfc DMA buffer (currently, always return 0) 5133 **/ 5134 static int 5135 lpfc_els_free_bpl(struct lpfc_hba *phba, struct lpfc_dmabuf *buf_ptr) 5136 { 5137 lpfc_mbuf_free(phba, buf_ptr->virt, buf_ptr->phys); 5138 kfree(buf_ptr); 5139 return 0; 5140 } 5141 5142 /** 5143 * lpfc_els_free_iocb - Free a command iocb and its associated resources 5144 * @phba: pointer to lpfc hba data structure. 5145 * @elsiocb: pointer to lpfc els command iocb data structure. 5146 * 5147 * This routine frees a command IOCB and its associated resources. The 5148 * command IOCB data structure contains the reference to various associated 5149 * resources, these fields must be set to NULL if the associated reference 5150 * not present: 5151 * cmd_dmabuf - reference to cmd. 5152 * cmd_dmabuf->next - reference to rsp 5153 * rsp_dmabuf - unused 5154 * bpl_dmabuf - reference to bpl 5155 * 5156 * It first properly decrements the reference count held on ndlp for the 5157 * IOCB completion callback function. If LPFC_DELAY_MEM_FREE flag is not 5158 * set, it invokes the lpfc_els_free_data() routine to release the Direct 5159 * Memory Access (DMA) buffers associated with the IOCB. Otherwise, it 5160 * adds the DMA buffer the @phba data structure for the delayed release. 5161 * If reference to the Buffer Pointer List (BPL) is present, the 5162 * lpfc_els_free_bpl() routine is invoked to release the DMA memory 5163 * associated with BPL. Finally, the lpfc_sli_release_iocbq() routine is 5164 * invoked to release the IOCB data structure back to @phba IOCBQ list. 5165 * 5166 * Return code 5167 * 0 - Success (currently, always return 0) 5168 **/ 5169 int 5170 lpfc_els_free_iocb(struct lpfc_hba *phba, struct lpfc_iocbq *elsiocb) 5171 { 5172 struct lpfc_dmabuf *buf_ptr, *buf_ptr1; 5173 5174 /* The I/O iocb is complete. Clear the node and first dmbuf */ 5175 elsiocb->ndlp = NULL; 5176 5177 /* cmd_dmabuf = cmd, cmd_dmabuf->next = rsp, bpl_dmabuf = bpl */ 5178 if (elsiocb->cmd_dmabuf) { 5179 if (elsiocb->cmd_flag & LPFC_DELAY_MEM_FREE) { 5180 /* Firmware could still be in progress of DMAing 5181 * payload, so don't free data buffer till after 5182 * a hbeat. 5183 */ 5184 elsiocb->cmd_flag &= ~LPFC_DELAY_MEM_FREE; 5185 buf_ptr = elsiocb->cmd_dmabuf; 5186 elsiocb->cmd_dmabuf = NULL; 5187 if (buf_ptr) { 5188 buf_ptr1 = NULL; 5189 spin_lock_irq(&phba->hbalock); 5190 if (!list_empty(&buf_ptr->list)) { 5191 list_remove_head(&buf_ptr->list, 5192 buf_ptr1, struct lpfc_dmabuf, 5193 list); 5194 INIT_LIST_HEAD(&buf_ptr1->list); 5195 list_add_tail(&buf_ptr1->list, 5196 &phba->elsbuf); 5197 phba->elsbuf_cnt++; 5198 } 5199 INIT_LIST_HEAD(&buf_ptr->list); 5200 list_add_tail(&buf_ptr->list, &phba->elsbuf); 5201 phba->elsbuf_cnt++; 5202 spin_unlock_irq(&phba->hbalock); 5203 } 5204 } else { 5205 buf_ptr1 = elsiocb->cmd_dmabuf; 5206 lpfc_els_free_data(phba, buf_ptr1); 5207 elsiocb->cmd_dmabuf = NULL; 5208 } 5209 } 5210 5211 if (elsiocb->bpl_dmabuf) { 5212 buf_ptr = elsiocb->bpl_dmabuf; 5213 lpfc_els_free_bpl(phba, buf_ptr); 5214 elsiocb->bpl_dmabuf = NULL; 5215 } 5216 lpfc_sli_release_iocbq(phba, elsiocb); 5217 return 0; 5218 } 5219 5220 /** 5221 * lpfc_cmpl_els_logo_acc - Completion callback function to logo acc response 5222 * @phba: pointer to lpfc hba data structure. 5223 * @cmdiocb: pointer to lpfc command iocb data structure. 5224 * @rspiocb: pointer to lpfc response iocb data structure. 5225 * 5226 * This routine is the completion callback function to the Logout (LOGO) 5227 * Accept (ACC) Response ELS command. This routine is invoked to indicate 5228 * the completion of the LOGO process. If the node has transitioned to NPR, 5229 * this routine unregisters the RPI if it is still registered. The 5230 * lpfc_els_free_iocb() is invoked to release the IOCB data structure. 5231 **/ 5232 static void 5233 lpfc_cmpl_els_logo_acc(struct lpfc_hba *phba, struct lpfc_iocbq *cmdiocb, 5234 struct lpfc_iocbq *rspiocb) 5235 { 5236 struct lpfc_nodelist *ndlp = cmdiocb->ndlp; 5237 struct lpfc_vport *vport = cmdiocb->vport; 5238 u32 ulp_status, ulp_word4; 5239 5240 ulp_status = get_job_ulpstatus(phba, rspiocb); 5241 ulp_word4 = get_job_word4(phba, rspiocb); 5242 5243 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_RSP, 5244 "ACC LOGO cmpl: status:x%x/x%x did:x%x", 5245 ulp_status, ulp_word4, ndlp->nlp_DID); 5246 /* ACC to LOGO completes to NPort <nlp_DID> */ 5247 lpfc_printf_vlog(vport, KERN_INFO, LOG_ELS, 5248 "0109 ACC to LOGO completes to NPort x%x refcnt %d " 5249 "last els x%x Data: x%x x%x x%x\n", 5250 ndlp->nlp_DID, kref_read(&ndlp->kref), 5251 ndlp->nlp_last_elscmd, ndlp->nlp_flag, ndlp->nlp_state, 5252 ndlp->nlp_rpi); 5253 5254 /* This clause allows the LOGO ACC to complete and free resources 5255 * for the Fabric Domain Controller. It does deliberately skip 5256 * the unreg_rpi and release rpi because some fabrics send RDP 5257 * requests after logging out from the initiator. 5258 */ 5259 if (ndlp->nlp_type & NLP_FABRIC && 5260 ((ndlp->nlp_DID & WELL_KNOWN_DID_MASK) != WELL_KNOWN_DID_MASK)) 5261 goto out; 5262 5263 if (ndlp->nlp_state == NLP_STE_NPR_NODE) { 5264 if (ndlp->nlp_flag & NLP_RPI_REGISTERED) 5265 lpfc_unreg_rpi(vport, ndlp); 5266 5267 /* If came from PRLO, then PRLO_ACC is done. 5268 * Start rediscovery now. 5269 */ 5270 if (ndlp->nlp_last_elscmd == ELS_CMD_PRLO) { 5271 spin_lock_irq(&ndlp->lock); 5272 ndlp->nlp_flag |= NLP_NPR_2B_DISC; 5273 spin_unlock_irq(&ndlp->lock); 5274 ndlp->nlp_prev_state = ndlp->nlp_state; 5275 lpfc_nlp_set_state(vport, ndlp, NLP_STE_PLOGI_ISSUE); 5276 lpfc_issue_els_plogi(vport, ndlp->nlp_DID, 0); 5277 } 5278 } 5279 5280 out: 5281 /* 5282 * The driver received a LOGO from the rport and has ACK'd it. 5283 * At this point, the driver is done so release the IOCB 5284 */ 5285 lpfc_els_free_iocb(phba, cmdiocb); 5286 lpfc_nlp_put(ndlp); 5287 } 5288 5289 /** 5290 * lpfc_mbx_cmpl_dflt_rpi - Completion callbk func for unreg dflt rpi mbox cmd 5291 * @phba: pointer to lpfc hba data structure. 5292 * @pmb: pointer to the driver internal queue element for mailbox command. 5293 * 5294 * This routine is the completion callback function for unregister default 5295 * RPI (Remote Port Index) mailbox command to the @phba. It simply releases 5296 * the associated lpfc Direct Memory Access (DMA) buffer back to the pool and 5297 * decrements the ndlp reference count held for this completion callback 5298 * function. After that, it invokes the lpfc_drop_node to check 5299 * whether it is appropriate to release the node. 5300 **/ 5301 void 5302 lpfc_mbx_cmpl_dflt_rpi(struct lpfc_hba *phba, LPFC_MBOXQ_t *pmb) 5303 { 5304 struct lpfc_nodelist *ndlp = pmb->ctx_ndlp; 5305 u32 mbx_flag = pmb->mbox_flag; 5306 u32 mbx_cmd = pmb->u.mb.mbxCommand; 5307 5308 if (ndlp) { 5309 lpfc_printf_vlog(ndlp->vport, KERN_INFO, LOG_NODE, 5310 "0006 rpi x%x DID:%x flg:%x %d x%px " 5311 "mbx_cmd x%x mbx_flag x%x x%px\n", 5312 ndlp->nlp_rpi, ndlp->nlp_DID, ndlp->nlp_flag, 5313 kref_read(&ndlp->kref), ndlp, mbx_cmd, 5314 mbx_flag, pmb); 5315 5316 /* This ends the default/temporary RPI cleanup logic for this 5317 * ndlp and the node and rpi needs to be released. Free the rpi 5318 * first on an UNREG_LOGIN and then release the final 5319 * references. 5320 */ 5321 spin_lock_irq(&ndlp->lock); 5322 ndlp->nlp_flag &= ~NLP_REG_LOGIN_SEND; 5323 if (mbx_cmd == MBX_UNREG_LOGIN) 5324 ndlp->nlp_flag &= ~NLP_UNREG_INP; 5325 spin_unlock_irq(&ndlp->lock); 5326 lpfc_nlp_put(ndlp); 5327 lpfc_drop_node(ndlp->vport, ndlp); 5328 } 5329 5330 lpfc_mbox_rsrc_cleanup(phba, pmb, MBOX_THD_UNLOCKED); 5331 } 5332 5333 /** 5334 * lpfc_cmpl_els_rsp - Completion callback function for els response iocb cmd 5335 * @phba: pointer to lpfc hba data structure. 5336 * @cmdiocb: pointer to lpfc command iocb data structure. 5337 * @rspiocb: pointer to lpfc response iocb data structure. 5338 * 5339 * This routine is the completion callback function for ELS Response IOCB 5340 * command. In normal case, this callback function just properly sets the 5341 * nlp_flag bitmap in the ndlp data structure, if the mbox command reference 5342 * field in the command IOCB is not NULL, the referred mailbox command will 5343 * be send out, and then invokes the lpfc_els_free_iocb() routine to release 5344 * the IOCB. 5345 **/ 5346 static void 5347 lpfc_cmpl_els_rsp(struct lpfc_hba *phba, struct lpfc_iocbq *cmdiocb, 5348 struct lpfc_iocbq *rspiocb) 5349 { 5350 struct lpfc_nodelist *ndlp = cmdiocb->ndlp; 5351 struct lpfc_vport *vport = ndlp ? ndlp->vport : NULL; 5352 struct Scsi_Host *shost = vport ? lpfc_shost_from_vport(vport) : NULL; 5353 IOCB_t *irsp; 5354 LPFC_MBOXQ_t *mbox = NULL; 5355 u32 ulp_status, ulp_word4, tmo, did, iotag; 5356 5357 if (!vport) { 5358 lpfc_printf_log(phba, KERN_ERR, LOG_TRACE_EVENT, 5359 "3177 ELS response failed\n"); 5360 goto out; 5361 } 5362 if (cmdiocb->context_un.mbox) 5363 mbox = cmdiocb->context_un.mbox; 5364 5365 ulp_status = get_job_ulpstatus(phba, rspiocb); 5366 ulp_word4 = get_job_word4(phba, rspiocb); 5367 did = get_job_els_rsp64_did(phba, cmdiocb); 5368 5369 if (phba->sli_rev == LPFC_SLI_REV4) { 5370 tmo = get_wqe_tmo(cmdiocb); 5371 iotag = get_wqe_reqtag(cmdiocb); 5372 } else { 5373 irsp = &rspiocb->iocb; 5374 tmo = irsp->ulpTimeout; 5375 iotag = irsp->ulpIoTag; 5376 } 5377 5378 /* Check to see if link went down during discovery */ 5379 if (!ndlp || lpfc_els_chk_latt(vport)) { 5380 if (mbox) 5381 lpfc_mbox_rsrc_cleanup(phba, mbox, MBOX_THD_UNLOCKED); 5382 goto out; 5383 } 5384 5385 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_RSP, 5386 "ELS rsp cmpl: status:x%x/x%x did:x%x", 5387 ulp_status, ulp_word4, did); 5388 /* ELS response tag <ulpIoTag> completes */ 5389 lpfc_printf_vlog(vport, KERN_INFO, LOG_ELS, 5390 "0110 ELS response tag x%x completes " 5391 "Data: x%x x%x x%x x%x x%x x%x x%x x%x %p %p\n", 5392 iotag, ulp_status, ulp_word4, tmo, 5393 ndlp->nlp_DID, ndlp->nlp_flag, ndlp->nlp_state, 5394 ndlp->nlp_rpi, kref_read(&ndlp->kref), mbox, ndlp); 5395 if (mbox) { 5396 if (ulp_status == 0 5397 && (ndlp->nlp_flag & NLP_ACC_REGLOGIN)) { 5398 if (!lpfc_unreg_rpi(vport, ndlp) && 5399 !test_bit(FC_PT2PT, &vport->fc_flag)) { 5400 if (ndlp->nlp_state == NLP_STE_PLOGI_ISSUE || 5401 ndlp->nlp_state == 5402 NLP_STE_REG_LOGIN_ISSUE) { 5403 lpfc_printf_vlog(vport, KERN_INFO, 5404 LOG_DISCOVERY, 5405 "0314 PLOGI recov " 5406 "DID x%x " 5407 "Data: x%x x%x x%x\n", 5408 ndlp->nlp_DID, 5409 ndlp->nlp_state, 5410 ndlp->nlp_rpi, 5411 ndlp->nlp_flag); 5412 goto out_free_mbox; 5413 } 5414 } 5415 5416 /* Increment reference count to ndlp to hold the 5417 * reference to ndlp for the callback function. 5418 */ 5419 mbox->ctx_ndlp = lpfc_nlp_get(ndlp); 5420 if (!mbox->ctx_ndlp) 5421 goto out_free_mbox; 5422 5423 mbox->vport = vport; 5424 if (ndlp->nlp_flag & NLP_RM_DFLT_RPI) { 5425 mbox->mbox_flag |= LPFC_MBX_IMED_UNREG; 5426 mbox->mbox_cmpl = lpfc_mbx_cmpl_dflt_rpi; 5427 } 5428 else { 5429 mbox->mbox_cmpl = lpfc_mbx_cmpl_reg_login; 5430 ndlp->nlp_prev_state = ndlp->nlp_state; 5431 lpfc_nlp_set_state(vport, ndlp, 5432 NLP_STE_REG_LOGIN_ISSUE); 5433 } 5434 5435 ndlp->nlp_flag |= NLP_REG_LOGIN_SEND; 5436 if (lpfc_sli_issue_mbox(phba, mbox, MBX_NOWAIT) 5437 != MBX_NOT_FINISHED) 5438 goto out; 5439 5440 /* Decrement the ndlp reference count we 5441 * set for this failed mailbox command. 5442 */ 5443 lpfc_nlp_put(ndlp); 5444 ndlp->nlp_flag &= ~NLP_REG_LOGIN_SEND; 5445 5446 /* ELS rsp: Cannot issue reg_login for <NPortid> */ 5447 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT, 5448 "0138 ELS rsp: Cannot issue reg_login for x%x " 5449 "Data: x%x x%x x%x\n", 5450 ndlp->nlp_DID, ndlp->nlp_flag, ndlp->nlp_state, 5451 ndlp->nlp_rpi); 5452 } 5453 out_free_mbox: 5454 lpfc_mbox_rsrc_cleanup(phba, mbox, MBOX_THD_UNLOCKED); 5455 } 5456 out: 5457 if (ndlp && shost) { 5458 spin_lock_irq(&ndlp->lock); 5459 if (mbox) 5460 ndlp->nlp_flag &= ~NLP_ACC_REGLOGIN; 5461 ndlp->nlp_flag &= ~NLP_RM_DFLT_RPI; 5462 spin_unlock_irq(&ndlp->lock); 5463 } 5464 5465 /* An SLI4 NPIV instance wants to drop the node at this point under 5466 * these conditions and release the RPI. 5467 */ 5468 if (phba->sli_rev == LPFC_SLI_REV4 && 5469 vport && vport->port_type == LPFC_NPIV_PORT && 5470 !(ndlp->fc4_xpt_flags & SCSI_XPT_REGD)) { 5471 if (ndlp->nlp_flag & NLP_RELEASE_RPI) { 5472 if (ndlp->nlp_state != NLP_STE_PLOGI_ISSUE && 5473 ndlp->nlp_state != NLP_STE_REG_LOGIN_ISSUE) { 5474 lpfc_sli4_free_rpi(phba, ndlp->nlp_rpi); 5475 spin_lock_irq(&ndlp->lock); 5476 ndlp->nlp_rpi = LPFC_RPI_ALLOC_ERROR; 5477 ndlp->nlp_flag &= ~NLP_RELEASE_RPI; 5478 spin_unlock_irq(&ndlp->lock); 5479 } 5480 lpfc_drop_node(vport, ndlp); 5481 } else if (ndlp->nlp_state != NLP_STE_PLOGI_ISSUE && 5482 ndlp->nlp_state != NLP_STE_REG_LOGIN_ISSUE && 5483 ndlp->nlp_state != NLP_STE_PRLI_ISSUE) { 5484 /* Drop ndlp if there is no planned or outstanding 5485 * issued PRLI. 5486 * 5487 * In cases when the ndlp is acting as both an initiator 5488 * and target function, let our issued PRLI determine 5489 * the final ndlp kref drop. 5490 */ 5491 lpfc_drop_node(vport, ndlp); 5492 } 5493 } 5494 5495 /* Release the originating I/O reference. */ 5496 lpfc_els_free_iocb(phba, cmdiocb); 5497 lpfc_nlp_put(ndlp); 5498 return; 5499 } 5500 5501 /** 5502 * lpfc_els_rsp_acc - Prepare and issue an acc response iocb command 5503 * @vport: pointer to a host virtual N_Port data structure. 5504 * @flag: the els command code to be accepted. 5505 * @oldiocb: pointer to the original lpfc command iocb data structure. 5506 * @ndlp: pointer to a node-list data structure. 5507 * @mbox: pointer to the driver internal queue element for mailbox command. 5508 * 5509 * This routine prepares and issues an Accept (ACC) response IOCB 5510 * command. It uses the @flag to properly set up the IOCB field for the 5511 * specific ACC response command to be issued and invokes the 5512 * lpfc_sli_issue_iocb() routine to send out ACC response IOCB. If a 5513 * @mbox pointer is passed in, it will be put into the context_un.mbox 5514 * field of the IOCB for the completion callback function to issue the 5515 * mailbox command to the HBA later when callback is invoked. 5516 * 5517 * Note that the ndlp reference count will be incremented by 1 for holding the 5518 * ndlp and the reference to ndlp will be stored into the ndlp field of 5519 * the IOCB for the completion callback function to the corresponding 5520 * response ELS IOCB command. 5521 * 5522 * Return code 5523 * 0 - Successfully issued acc response 5524 * 1 - Failed to issue acc response 5525 **/ 5526 int 5527 lpfc_els_rsp_acc(struct lpfc_vport *vport, uint32_t flag, 5528 struct lpfc_iocbq *oldiocb, struct lpfc_nodelist *ndlp, 5529 LPFC_MBOXQ_t *mbox) 5530 { 5531 struct lpfc_hba *phba = vport->phba; 5532 IOCB_t *icmd; 5533 IOCB_t *oldcmd; 5534 union lpfc_wqe128 *wqe; 5535 union lpfc_wqe128 *oldwqe = &oldiocb->wqe; 5536 struct lpfc_iocbq *elsiocb; 5537 uint8_t *pcmd; 5538 struct serv_parm *sp; 5539 uint16_t cmdsize; 5540 int rc; 5541 ELS_PKT *els_pkt_ptr; 5542 struct fc_els_rdf_resp *rdf_resp; 5543 5544 switch (flag) { 5545 case ELS_CMD_ACC: 5546 cmdsize = sizeof(uint32_t); 5547 elsiocb = lpfc_prep_els_iocb(vport, 0, cmdsize, oldiocb->retry, 5548 ndlp, ndlp->nlp_DID, ELS_CMD_ACC); 5549 if (!elsiocb) { 5550 spin_lock_irq(&ndlp->lock); 5551 ndlp->nlp_flag &= ~NLP_LOGO_ACC; 5552 spin_unlock_irq(&ndlp->lock); 5553 return 1; 5554 } 5555 5556 if (phba->sli_rev == LPFC_SLI_REV4) { 5557 wqe = &elsiocb->wqe; 5558 /* XRI / rx_id */ 5559 bf_set(wqe_ctxt_tag, &wqe->xmit_els_rsp.wqe_com, 5560 bf_get(wqe_ctxt_tag, 5561 &oldwqe->xmit_els_rsp.wqe_com)); 5562 5563 /* oxid */ 5564 bf_set(wqe_rcvoxid, &wqe->xmit_els_rsp.wqe_com, 5565 bf_get(wqe_rcvoxid, 5566 &oldwqe->xmit_els_rsp.wqe_com)); 5567 } else { 5568 icmd = &elsiocb->iocb; 5569 oldcmd = &oldiocb->iocb; 5570 icmd->ulpContext = oldcmd->ulpContext; /* Xri / rx_id */ 5571 icmd->unsli3.rcvsli3.ox_id = 5572 oldcmd->unsli3.rcvsli3.ox_id; 5573 } 5574 5575 pcmd = elsiocb->cmd_dmabuf->virt; 5576 *((uint32_t *) (pcmd)) = ELS_CMD_ACC; 5577 pcmd += sizeof(uint32_t); 5578 5579 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_RSP, 5580 "Issue ACC: did:x%x flg:x%x", 5581 ndlp->nlp_DID, ndlp->nlp_flag, 0); 5582 break; 5583 case ELS_CMD_FLOGI: 5584 case ELS_CMD_PLOGI: 5585 cmdsize = (sizeof(struct serv_parm) + sizeof(uint32_t)); 5586 elsiocb = lpfc_prep_els_iocb(vport, 0, cmdsize, oldiocb->retry, 5587 ndlp, ndlp->nlp_DID, ELS_CMD_ACC); 5588 if (!elsiocb) 5589 return 1; 5590 5591 if (phba->sli_rev == LPFC_SLI_REV4) { 5592 wqe = &elsiocb->wqe; 5593 /* XRI / rx_id */ 5594 bf_set(wqe_ctxt_tag, &wqe->xmit_els_rsp.wqe_com, 5595 bf_get(wqe_ctxt_tag, 5596 &oldwqe->xmit_els_rsp.wqe_com)); 5597 5598 /* oxid */ 5599 bf_set(wqe_rcvoxid, &wqe->xmit_els_rsp.wqe_com, 5600 bf_get(wqe_rcvoxid, 5601 &oldwqe->xmit_els_rsp.wqe_com)); 5602 } else { 5603 icmd = &elsiocb->iocb; 5604 oldcmd = &oldiocb->iocb; 5605 icmd->ulpContext = oldcmd->ulpContext; /* Xri / rx_id */ 5606 icmd->unsli3.rcvsli3.ox_id = 5607 oldcmd->unsli3.rcvsli3.ox_id; 5608 } 5609 5610 pcmd = (u8 *)elsiocb->cmd_dmabuf->virt; 5611 5612 if (mbox) 5613 elsiocb->context_un.mbox = mbox; 5614 5615 *((uint32_t *) (pcmd)) = ELS_CMD_ACC; 5616 pcmd += sizeof(uint32_t); 5617 sp = (struct serv_parm *)pcmd; 5618 5619 if (flag == ELS_CMD_FLOGI) { 5620 /* Copy the received service parameters back */ 5621 memcpy(sp, &phba->fc_fabparam, 5622 sizeof(struct serv_parm)); 5623 5624 /* Clear the F_Port bit */ 5625 sp->cmn.fPort = 0; 5626 5627 /* Mark all class service parameters as invalid */ 5628 sp->cls1.classValid = 0; 5629 sp->cls2.classValid = 0; 5630 sp->cls3.classValid = 0; 5631 sp->cls4.classValid = 0; 5632 5633 /* Copy our worldwide names */ 5634 memcpy(&sp->portName, &vport->fc_sparam.portName, 5635 sizeof(struct lpfc_name)); 5636 memcpy(&sp->nodeName, &vport->fc_sparam.nodeName, 5637 sizeof(struct lpfc_name)); 5638 } else { 5639 memcpy(pcmd, &vport->fc_sparam, 5640 sizeof(struct serv_parm)); 5641 5642 sp->cmn.valid_vendor_ver_level = 0; 5643 memset(sp->un.vendorVersion, 0, 5644 sizeof(sp->un.vendorVersion)); 5645 sp->cmn.bbRcvSizeMsb &= 0xF; 5646 5647 /* If our firmware supports this feature, convey that 5648 * info to the target using the vendor specific field. 5649 */ 5650 if (phba->sli.sli_flag & LPFC_SLI_SUPPRESS_RSP) { 5651 sp->cmn.valid_vendor_ver_level = 1; 5652 sp->un.vv.vid = cpu_to_be32(LPFC_VV_EMLX_ID); 5653 sp->un.vv.flags = 5654 cpu_to_be32(LPFC_VV_SUPPRESS_RSP); 5655 } 5656 } 5657 5658 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_RSP, 5659 "Issue ACC FLOGI/PLOGI: did:x%x flg:x%x", 5660 ndlp->nlp_DID, ndlp->nlp_flag, 0); 5661 break; 5662 case ELS_CMD_PRLO: 5663 cmdsize = sizeof(uint32_t) + sizeof(PRLO); 5664 elsiocb = lpfc_prep_els_iocb(vport, 0, cmdsize, oldiocb->retry, 5665 ndlp, ndlp->nlp_DID, ELS_CMD_PRLO); 5666 if (!elsiocb) 5667 return 1; 5668 5669 if (phba->sli_rev == LPFC_SLI_REV4) { 5670 wqe = &elsiocb->wqe; 5671 /* XRI / rx_id */ 5672 bf_set(wqe_ctxt_tag, &wqe->xmit_els_rsp.wqe_com, 5673 bf_get(wqe_ctxt_tag, 5674 &oldwqe->xmit_els_rsp.wqe_com)); 5675 5676 /* oxid */ 5677 bf_set(wqe_rcvoxid, &wqe->xmit_els_rsp.wqe_com, 5678 bf_get(wqe_rcvoxid, 5679 &oldwqe->xmit_els_rsp.wqe_com)); 5680 } else { 5681 icmd = &elsiocb->iocb; 5682 oldcmd = &oldiocb->iocb; 5683 icmd->ulpContext = oldcmd->ulpContext; /* Xri / rx_id */ 5684 icmd->unsli3.rcvsli3.ox_id = 5685 oldcmd->unsli3.rcvsli3.ox_id; 5686 } 5687 5688 pcmd = (u8 *) elsiocb->cmd_dmabuf->virt; 5689 5690 memcpy(pcmd, oldiocb->cmd_dmabuf->virt, 5691 sizeof(uint32_t) + sizeof(PRLO)); 5692 *((uint32_t *) (pcmd)) = ELS_CMD_PRLO_ACC; 5693 els_pkt_ptr = (ELS_PKT *) pcmd; 5694 els_pkt_ptr->un.prlo.acceptRspCode = PRLO_REQ_EXECUTED; 5695 5696 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_RSP, 5697 "Issue ACC PRLO: did:x%x flg:x%x", 5698 ndlp->nlp_DID, ndlp->nlp_flag, 0); 5699 break; 5700 case ELS_CMD_RDF: 5701 cmdsize = sizeof(*rdf_resp); 5702 elsiocb = lpfc_prep_els_iocb(vport, 0, cmdsize, oldiocb->retry, 5703 ndlp, ndlp->nlp_DID, ELS_CMD_ACC); 5704 if (!elsiocb) 5705 return 1; 5706 5707 if (phba->sli_rev == LPFC_SLI_REV4) { 5708 wqe = &elsiocb->wqe; 5709 /* XRI / rx_id */ 5710 bf_set(wqe_ctxt_tag, &wqe->xmit_els_rsp.wqe_com, 5711 bf_get(wqe_ctxt_tag, 5712 &oldwqe->xmit_els_rsp.wqe_com)); 5713 5714 /* oxid */ 5715 bf_set(wqe_rcvoxid, &wqe->xmit_els_rsp.wqe_com, 5716 bf_get(wqe_rcvoxid, 5717 &oldwqe->xmit_els_rsp.wqe_com)); 5718 } else { 5719 icmd = &elsiocb->iocb; 5720 oldcmd = &oldiocb->iocb; 5721 icmd->ulpContext = oldcmd->ulpContext; /* Xri / rx_id */ 5722 icmd->unsli3.rcvsli3.ox_id = 5723 oldcmd->unsli3.rcvsli3.ox_id; 5724 } 5725 5726 pcmd = (u8 *)elsiocb->cmd_dmabuf->virt; 5727 rdf_resp = (struct fc_els_rdf_resp *)pcmd; 5728 memset(rdf_resp, 0, sizeof(*rdf_resp)); 5729 rdf_resp->acc_hdr.la_cmd = ELS_LS_ACC; 5730 5731 /* FC-LS-5 specifies desc_list_len shall be set to 12 */ 5732 rdf_resp->desc_list_len = cpu_to_be32(12); 5733 5734 /* FC-LS-5 specifies LS REQ Information descriptor */ 5735 rdf_resp->lsri.desc_tag = cpu_to_be32(1); 5736 rdf_resp->lsri.desc_len = cpu_to_be32(sizeof(u32)); 5737 rdf_resp->lsri.rqst_w0.cmd = ELS_RDF; 5738 break; 5739 default: 5740 return 1; 5741 } 5742 if (ndlp->nlp_flag & NLP_LOGO_ACC) { 5743 spin_lock_irq(&ndlp->lock); 5744 if (!(ndlp->nlp_flag & NLP_RPI_REGISTERED || 5745 ndlp->nlp_flag & NLP_REG_LOGIN_SEND)) 5746 ndlp->nlp_flag &= ~NLP_LOGO_ACC; 5747 spin_unlock_irq(&ndlp->lock); 5748 elsiocb->cmd_cmpl = lpfc_cmpl_els_logo_acc; 5749 } else { 5750 elsiocb->cmd_cmpl = lpfc_cmpl_els_rsp; 5751 } 5752 5753 phba->fc_stat.elsXmitACC++; 5754 elsiocb->ndlp = lpfc_nlp_get(ndlp); 5755 if (!elsiocb->ndlp) { 5756 lpfc_els_free_iocb(phba, elsiocb); 5757 return 1; 5758 } 5759 5760 rc = lpfc_sli_issue_iocb(phba, LPFC_ELS_RING, elsiocb, 0); 5761 if (rc == IOCB_ERROR) { 5762 lpfc_els_free_iocb(phba, elsiocb); 5763 lpfc_nlp_put(ndlp); 5764 return 1; 5765 } 5766 5767 /* Xmit ELS ACC response tag <ulpIoTag> */ 5768 lpfc_printf_vlog(vport, KERN_INFO, LOG_ELS, 5769 "0128 Xmit ELS ACC response Status: x%x, IoTag: x%x, " 5770 "XRI: x%x, DID: x%x, nlp_flag: x%x nlp_state: x%x " 5771 "RPI: x%x, fc_flag x%lx refcnt %d\n", 5772 rc, elsiocb->iotag, elsiocb->sli4_xritag, 5773 ndlp->nlp_DID, ndlp->nlp_flag, ndlp->nlp_state, 5774 ndlp->nlp_rpi, vport->fc_flag, kref_read(&ndlp->kref)); 5775 return 0; 5776 } 5777 5778 /** 5779 * lpfc_els_rsp_reject - Prepare and issue a rjt response iocb command 5780 * @vport: pointer to a virtual N_Port data structure. 5781 * @rejectError: reject response to issue 5782 * @oldiocb: pointer to the original lpfc command iocb data structure. 5783 * @ndlp: pointer to a node-list data structure. 5784 * @mbox: pointer to the driver internal queue element for mailbox command. 5785 * 5786 * This routine prepares and issue an Reject (RJT) response IOCB 5787 * command. If a @mbox pointer is passed in, it will be put into the 5788 * context_un.mbox field of the IOCB for the completion callback function 5789 * to issue to the HBA later. 5790 * 5791 * Note that the ndlp reference count will be incremented by 1 for holding the 5792 * ndlp and the reference to ndlp will be stored into the ndlp field of 5793 * the IOCB for the completion callback function to the reject response 5794 * ELS IOCB command. 5795 * 5796 * Return code 5797 * 0 - Successfully issued reject response 5798 * 1 - Failed to issue reject response 5799 **/ 5800 int 5801 lpfc_els_rsp_reject(struct lpfc_vport *vport, uint32_t rejectError, 5802 struct lpfc_iocbq *oldiocb, struct lpfc_nodelist *ndlp, 5803 LPFC_MBOXQ_t *mbox) 5804 { 5805 int rc; 5806 struct lpfc_hba *phba = vport->phba; 5807 IOCB_t *icmd; 5808 IOCB_t *oldcmd; 5809 union lpfc_wqe128 *wqe; 5810 struct lpfc_iocbq *elsiocb; 5811 uint8_t *pcmd; 5812 uint16_t cmdsize; 5813 5814 cmdsize = 2 * sizeof(uint32_t); 5815 elsiocb = lpfc_prep_els_iocb(vport, 0, cmdsize, oldiocb->retry, ndlp, 5816 ndlp->nlp_DID, ELS_CMD_LS_RJT); 5817 if (!elsiocb) 5818 return 1; 5819 5820 if (phba->sli_rev == LPFC_SLI_REV4) { 5821 wqe = &elsiocb->wqe; 5822 bf_set(wqe_ctxt_tag, &wqe->generic.wqe_com, 5823 get_job_ulpcontext(phba, oldiocb)); /* Xri / rx_id */ 5824 bf_set(wqe_rcvoxid, &wqe->xmit_els_rsp.wqe_com, 5825 get_job_rcvoxid(phba, oldiocb)); 5826 } else { 5827 icmd = &elsiocb->iocb; 5828 oldcmd = &oldiocb->iocb; 5829 icmd->ulpContext = oldcmd->ulpContext; /* Xri / rx_id */ 5830 icmd->unsli3.rcvsli3.ox_id = oldcmd->unsli3.rcvsli3.ox_id; 5831 } 5832 5833 pcmd = (uint8_t *)elsiocb->cmd_dmabuf->virt; 5834 5835 *((uint32_t *) (pcmd)) = ELS_CMD_LS_RJT; 5836 pcmd += sizeof(uint32_t); 5837 *((uint32_t *) (pcmd)) = rejectError; 5838 5839 if (mbox) 5840 elsiocb->context_un.mbox = mbox; 5841 5842 /* Xmit ELS RJT <err> response tag <ulpIoTag> */ 5843 lpfc_printf_vlog(vport, KERN_INFO, LOG_ELS, 5844 "0129 Xmit ELS RJT x%x response tag x%x " 5845 "xri x%x, did x%x, nlp_flag x%x, nlp_state x%x, " 5846 "rpi x%x\n", 5847 rejectError, elsiocb->iotag, 5848 get_job_ulpcontext(phba, elsiocb), ndlp->nlp_DID, 5849 ndlp->nlp_flag, ndlp->nlp_state, ndlp->nlp_rpi); 5850 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_RSP, 5851 "Issue LS_RJT: did:x%x flg:x%x err:x%x", 5852 ndlp->nlp_DID, ndlp->nlp_flag, rejectError); 5853 5854 phba->fc_stat.elsXmitLSRJT++; 5855 elsiocb->cmd_cmpl = lpfc_cmpl_els_rsp; 5856 elsiocb->ndlp = lpfc_nlp_get(ndlp); 5857 if (!elsiocb->ndlp) { 5858 lpfc_els_free_iocb(phba, elsiocb); 5859 return 1; 5860 } 5861 5862 /* The NPIV instance is rejecting this unsolicited ELS. Make sure the 5863 * node's assigned RPI gets released provided this node is not already 5864 * registered with the transport. 5865 */ 5866 if (phba->sli_rev == LPFC_SLI_REV4 && 5867 vport->port_type == LPFC_NPIV_PORT && 5868 !(ndlp->fc4_xpt_flags & SCSI_XPT_REGD)) { 5869 spin_lock_irq(&ndlp->lock); 5870 ndlp->nlp_flag |= NLP_RELEASE_RPI; 5871 spin_unlock_irq(&ndlp->lock); 5872 } 5873 5874 rc = lpfc_sli_issue_iocb(phba, LPFC_ELS_RING, elsiocb, 0); 5875 if (rc == IOCB_ERROR) { 5876 lpfc_els_free_iocb(phba, elsiocb); 5877 lpfc_nlp_put(ndlp); 5878 return 1; 5879 } 5880 5881 return 0; 5882 } 5883 5884 /** 5885 * lpfc_issue_els_edc_rsp - Exchange Diagnostic Capabilities with the fabric. 5886 * @vport: pointer to a host virtual N_Port data structure. 5887 * @cmdiocb: pointer to the original lpfc command iocb data structure. 5888 * @ndlp: NPort to where rsp is directed 5889 * 5890 * This routine issues an EDC ACC RSP to the F-Port Controller to communicate 5891 * this N_Port's support of hardware signals in its Congestion 5892 * Capabilities Descriptor. 5893 * 5894 * Return code 5895 * 0 - Successfully issued edc rsp command 5896 * 1 - Failed to issue edc rsp command 5897 **/ 5898 static int 5899 lpfc_issue_els_edc_rsp(struct lpfc_vport *vport, struct lpfc_iocbq *cmdiocb, 5900 struct lpfc_nodelist *ndlp) 5901 { 5902 struct lpfc_hba *phba = vport->phba; 5903 struct fc_els_edc_resp *edc_rsp; 5904 struct fc_tlv_desc *tlv; 5905 struct lpfc_iocbq *elsiocb; 5906 IOCB_t *icmd, *cmd; 5907 union lpfc_wqe128 *wqe; 5908 u32 cgn_desc_size, lft_desc_size; 5909 u16 cmdsize; 5910 uint8_t *pcmd; 5911 int rc; 5912 5913 cmdsize = sizeof(struct fc_els_edc_resp); 5914 cgn_desc_size = sizeof(struct fc_diag_cg_sig_desc); 5915 lft_desc_size = (lpfc_link_is_lds_capable(phba)) ? 5916 sizeof(struct fc_diag_lnkflt_desc) : 0; 5917 cmdsize += cgn_desc_size + lft_desc_size; 5918 elsiocb = lpfc_prep_els_iocb(vport, 0, cmdsize, cmdiocb->retry, 5919 ndlp, ndlp->nlp_DID, ELS_CMD_ACC); 5920 if (!elsiocb) 5921 return 1; 5922 5923 if (phba->sli_rev == LPFC_SLI_REV4) { 5924 wqe = &elsiocb->wqe; 5925 bf_set(wqe_ctxt_tag, &wqe->generic.wqe_com, 5926 get_job_ulpcontext(phba, cmdiocb)); /* Xri / rx_id */ 5927 bf_set(wqe_rcvoxid, &wqe->xmit_els_rsp.wqe_com, 5928 get_job_rcvoxid(phba, cmdiocb)); 5929 } else { 5930 icmd = &elsiocb->iocb; 5931 cmd = &cmdiocb->iocb; 5932 icmd->ulpContext = cmd->ulpContext; /* Xri / rx_id */ 5933 icmd->unsli3.rcvsli3.ox_id = cmd->unsli3.rcvsli3.ox_id; 5934 } 5935 5936 pcmd = elsiocb->cmd_dmabuf->virt; 5937 memset(pcmd, 0, cmdsize); 5938 5939 edc_rsp = (struct fc_els_edc_resp *)pcmd; 5940 edc_rsp->acc_hdr.la_cmd = ELS_LS_ACC; 5941 edc_rsp->desc_list_len = cpu_to_be32(sizeof(struct fc_els_lsri_desc) + 5942 cgn_desc_size + lft_desc_size); 5943 edc_rsp->lsri.desc_tag = cpu_to_be32(ELS_DTAG_LS_REQ_INFO); 5944 edc_rsp->lsri.desc_len = cpu_to_be32( 5945 FC_TLV_DESC_LENGTH_FROM_SZ(struct fc_els_lsri_desc)); 5946 edc_rsp->lsri.rqst_w0.cmd = ELS_EDC; 5947 tlv = edc_rsp->desc; 5948 lpfc_format_edc_cgn_desc(phba, tlv); 5949 tlv = fc_tlv_next_desc(tlv); 5950 if (lft_desc_size) 5951 lpfc_format_edc_lft_desc(phba, tlv); 5952 5953 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_RSP, 5954 "Issue EDC ACC: did:x%x flg:x%x refcnt %d", 5955 ndlp->nlp_DID, ndlp->nlp_flag, 5956 kref_read(&ndlp->kref)); 5957 elsiocb->cmd_cmpl = lpfc_cmpl_els_rsp; 5958 5959 phba->fc_stat.elsXmitACC++; 5960 elsiocb->ndlp = lpfc_nlp_get(ndlp); 5961 if (!elsiocb->ndlp) { 5962 lpfc_els_free_iocb(phba, elsiocb); 5963 return 1; 5964 } 5965 5966 rc = lpfc_sli_issue_iocb(phba, LPFC_ELS_RING, elsiocb, 0); 5967 if (rc == IOCB_ERROR) { 5968 lpfc_els_free_iocb(phba, elsiocb); 5969 lpfc_nlp_put(ndlp); 5970 return 1; 5971 } 5972 5973 /* Xmit ELS ACC response tag <ulpIoTag> */ 5974 lpfc_printf_vlog(vport, KERN_INFO, LOG_ELS, 5975 "0152 Xmit EDC ACC response Status: x%x, IoTag: x%x, " 5976 "XRI: x%x, DID: x%x, nlp_flag: x%x nlp_state: x%x " 5977 "RPI: x%x, fc_flag x%lx\n", 5978 rc, elsiocb->iotag, elsiocb->sli4_xritag, 5979 ndlp->nlp_DID, ndlp->nlp_flag, ndlp->nlp_state, 5980 ndlp->nlp_rpi, vport->fc_flag); 5981 5982 return 0; 5983 } 5984 5985 /** 5986 * lpfc_els_rsp_adisc_acc - Prepare and issue acc response to adisc iocb cmd 5987 * @vport: pointer to a virtual N_Port data structure. 5988 * @oldiocb: pointer to the original lpfc command iocb data structure. 5989 * @ndlp: pointer to a node-list data structure. 5990 * 5991 * This routine prepares and issues an Accept (ACC) response to Address 5992 * Discover (ADISC) ELS command. It simply prepares the payload of the IOCB 5993 * and invokes the lpfc_sli_issue_iocb() routine to send out the command. 5994 * 5995 * Note that the ndlp reference count will be incremented by 1 for holding the 5996 * ndlp and the reference to ndlp will be stored into the ndlp field of 5997 * the IOCB for the completion callback function to the ADISC Accept response 5998 * ELS IOCB command. 5999 * 6000 * Return code 6001 * 0 - Successfully issued acc adisc response 6002 * 1 - Failed to issue adisc acc response 6003 **/ 6004 int 6005 lpfc_els_rsp_adisc_acc(struct lpfc_vport *vport, struct lpfc_iocbq *oldiocb, 6006 struct lpfc_nodelist *ndlp) 6007 { 6008 struct lpfc_hba *phba = vport->phba; 6009 ADISC *ap; 6010 IOCB_t *icmd, *oldcmd; 6011 union lpfc_wqe128 *wqe; 6012 struct lpfc_iocbq *elsiocb; 6013 uint8_t *pcmd; 6014 uint16_t cmdsize; 6015 int rc; 6016 u32 ulp_context; 6017 6018 cmdsize = sizeof(uint32_t) + sizeof(ADISC); 6019 elsiocb = lpfc_prep_els_iocb(vport, 0, cmdsize, oldiocb->retry, ndlp, 6020 ndlp->nlp_DID, ELS_CMD_ACC); 6021 if (!elsiocb) 6022 return 1; 6023 6024 if (phba->sli_rev == LPFC_SLI_REV4) { 6025 wqe = &elsiocb->wqe; 6026 /* XRI / rx_id */ 6027 bf_set(wqe_ctxt_tag, &wqe->generic.wqe_com, 6028 get_job_ulpcontext(phba, oldiocb)); 6029 ulp_context = get_job_ulpcontext(phba, elsiocb); 6030 /* oxid */ 6031 bf_set(wqe_rcvoxid, &wqe->xmit_els_rsp.wqe_com, 6032 get_job_rcvoxid(phba, oldiocb)); 6033 } else { 6034 icmd = &elsiocb->iocb; 6035 oldcmd = &oldiocb->iocb; 6036 icmd->ulpContext = oldcmd->ulpContext; /* Xri / rx_id */ 6037 ulp_context = elsiocb->iocb.ulpContext; 6038 icmd->unsli3.rcvsli3.ox_id = 6039 oldcmd->unsli3.rcvsli3.ox_id; 6040 } 6041 6042 /* Xmit ADISC ACC response tag <ulpIoTag> */ 6043 lpfc_printf_vlog(vport, KERN_INFO, LOG_ELS, 6044 "0130 Xmit ADISC ACC response iotag x%x xri: " 6045 "x%x, did x%x, nlp_flag x%x, nlp_state x%x rpi x%x\n", 6046 elsiocb->iotag, ulp_context, 6047 ndlp->nlp_DID, ndlp->nlp_flag, ndlp->nlp_state, 6048 ndlp->nlp_rpi); 6049 pcmd = (uint8_t *)elsiocb->cmd_dmabuf->virt; 6050 6051 *((uint32_t *) (pcmd)) = ELS_CMD_ACC; 6052 pcmd += sizeof(uint32_t); 6053 6054 ap = (ADISC *) (pcmd); 6055 ap->hardAL_PA = phba->fc_pref_ALPA; 6056 memcpy(&ap->portName, &vport->fc_portname, sizeof(struct lpfc_name)); 6057 memcpy(&ap->nodeName, &vport->fc_nodename, sizeof(struct lpfc_name)); 6058 ap->DID = be32_to_cpu(vport->fc_myDID); 6059 6060 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_RSP, 6061 "Issue ACC ADISC: did:x%x flg:x%x refcnt %d", 6062 ndlp->nlp_DID, ndlp->nlp_flag, kref_read(&ndlp->kref)); 6063 6064 phba->fc_stat.elsXmitACC++; 6065 elsiocb->cmd_cmpl = lpfc_cmpl_els_rsp; 6066 elsiocb->ndlp = lpfc_nlp_get(ndlp); 6067 if (!elsiocb->ndlp) { 6068 lpfc_els_free_iocb(phba, elsiocb); 6069 return 1; 6070 } 6071 6072 rc = lpfc_sli_issue_iocb(phba, LPFC_ELS_RING, elsiocb, 0); 6073 if (rc == IOCB_ERROR) { 6074 lpfc_els_free_iocb(phba, elsiocb); 6075 lpfc_nlp_put(ndlp); 6076 return 1; 6077 } 6078 6079 return 0; 6080 } 6081 6082 /** 6083 * lpfc_els_rsp_prli_acc - Prepare and issue acc response to prli iocb cmd 6084 * @vport: pointer to a virtual N_Port data structure. 6085 * @oldiocb: pointer to the original lpfc command iocb data structure. 6086 * @ndlp: pointer to a node-list data structure. 6087 * 6088 * This routine prepares and issues an Accept (ACC) response to Process 6089 * Login (PRLI) ELS command. It simply prepares the payload of the IOCB 6090 * and invokes the lpfc_sli_issue_iocb() routine to send out the command. 6091 * 6092 * Note that the ndlp reference count will be incremented by 1 for holding the 6093 * ndlp and the reference to ndlp will be stored into the ndlp field of 6094 * the IOCB for the completion callback function to the PRLI Accept response 6095 * ELS IOCB command. 6096 * 6097 * Return code 6098 * 0 - Successfully issued acc prli response 6099 * 1 - Failed to issue acc prli response 6100 **/ 6101 int 6102 lpfc_els_rsp_prli_acc(struct lpfc_vport *vport, struct lpfc_iocbq *oldiocb, 6103 struct lpfc_nodelist *ndlp) 6104 { 6105 struct lpfc_hba *phba = vport->phba; 6106 PRLI *npr; 6107 struct lpfc_nvme_prli *npr_nvme; 6108 lpfc_vpd_t *vpd; 6109 IOCB_t *icmd; 6110 IOCB_t *oldcmd; 6111 union lpfc_wqe128 *wqe; 6112 struct lpfc_iocbq *elsiocb; 6113 uint8_t *pcmd; 6114 uint16_t cmdsize; 6115 uint32_t prli_fc4_req, *req_payload; 6116 struct lpfc_dmabuf *req_buf; 6117 int rc; 6118 u32 elsrspcmd, ulp_context; 6119 6120 /* Need the incoming PRLI payload to determine if the ACC is for an 6121 * FC4 or NVME PRLI type. The PRLI type is at word 1. 6122 */ 6123 req_buf = oldiocb->cmd_dmabuf; 6124 req_payload = (((uint32_t *)req_buf->virt) + 1); 6125 6126 /* PRLI type payload is at byte 3 for FCP or NVME. */ 6127 prli_fc4_req = be32_to_cpu(*req_payload); 6128 prli_fc4_req = (prli_fc4_req >> 24) & 0xff; 6129 lpfc_printf_vlog(vport, KERN_INFO, LOG_ELS, 6130 "6127 PRLI_ACC: Req Type x%x, Word1 x%08x\n", 6131 prli_fc4_req, *((uint32_t *)req_payload)); 6132 6133 if (prli_fc4_req == PRLI_FCP_TYPE) { 6134 cmdsize = sizeof(uint32_t) + sizeof(PRLI); 6135 elsrspcmd = (ELS_CMD_ACC | (ELS_CMD_PRLI & ~ELS_RSP_MASK)); 6136 } else if (prli_fc4_req == PRLI_NVME_TYPE) { 6137 cmdsize = sizeof(uint32_t) + sizeof(struct lpfc_nvme_prli); 6138 elsrspcmd = (ELS_CMD_ACC | (ELS_CMD_NVMEPRLI & ~ELS_RSP_MASK)); 6139 } else { 6140 return 1; 6141 } 6142 6143 elsiocb = lpfc_prep_els_iocb(vport, 0, cmdsize, oldiocb->retry, ndlp, 6144 ndlp->nlp_DID, elsrspcmd); 6145 if (!elsiocb) 6146 return 1; 6147 6148 if (phba->sli_rev == LPFC_SLI_REV4) { 6149 wqe = &elsiocb->wqe; 6150 bf_set(wqe_ctxt_tag, &wqe->generic.wqe_com, 6151 get_job_ulpcontext(phba, oldiocb)); /* Xri / rx_id */ 6152 ulp_context = get_job_ulpcontext(phba, elsiocb); 6153 bf_set(wqe_rcvoxid, &wqe->xmit_els_rsp.wqe_com, 6154 get_job_rcvoxid(phba, oldiocb)); 6155 } else { 6156 icmd = &elsiocb->iocb; 6157 oldcmd = &oldiocb->iocb; 6158 icmd->ulpContext = oldcmd->ulpContext; /* Xri / rx_id */ 6159 ulp_context = elsiocb->iocb.ulpContext; 6160 icmd->unsli3.rcvsli3.ox_id = 6161 oldcmd->unsli3.rcvsli3.ox_id; 6162 } 6163 6164 /* Xmit PRLI ACC response tag <ulpIoTag> */ 6165 lpfc_printf_vlog(vport, KERN_INFO, LOG_ELS, 6166 "0131 Xmit PRLI ACC response tag x%x xri x%x, " 6167 "did x%x, nlp_flag x%x, nlp_state x%x, rpi x%x\n", 6168 elsiocb->iotag, ulp_context, 6169 ndlp->nlp_DID, ndlp->nlp_flag, ndlp->nlp_state, 6170 ndlp->nlp_rpi); 6171 pcmd = (uint8_t *)elsiocb->cmd_dmabuf->virt; 6172 memset(pcmd, 0, cmdsize); 6173 6174 *((uint32_t *)(pcmd)) = elsrspcmd; 6175 pcmd += sizeof(uint32_t); 6176 6177 /* For PRLI, remainder of payload is PRLI parameter page */ 6178 vpd = &phba->vpd; 6179 6180 if (prli_fc4_req == PRLI_FCP_TYPE) { 6181 /* 6182 * If the remote port is a target and our firmware version 6183 * is 3.20 or later, set the following bits for FC-TAPE 6184 * support. 6185 */ 6186 npr = (PRLI *) pcmd; 6187 if ((ndlp->nlp_type & NLP_FCP_TARGET) && 6188 (vpd->rev.feaLevelHigh >= 0x02)) { 6189 npr->ConfmComplAllowed = 1; 6190 npr->Retry = 1; 6191 npr->TaskRetryIdReq = 1; 6192 } 6193 npr->acceptRspCode = PRLI_REQ_EXECUTED; 6194 6195 /* Set image pair for complementary pairs only. */ 6196 if (ndlp->nlp_type & NLP_FCP_TARGET) 6197 npr->estabImagePair = 1; 6198 else 6199 npr->estabImagePair = 0; 6200 npr->readXferRdyDis = 1; 6201 npr->ConfmComplAllowed = 1; 6202 npr->prliType = PRLI_FCP_TYPE; 6203 npr->initiatorFunc = 1; 6204 6205 /* Xmit PRLI ACC response tag <ulpIoTag> */ 6206 lpfc_printf_vlog(vport, KERN_INFO, 6207 LOG_ELS | LOG_NODE | LOG_DISCOVERY, 6208 "6014 FCP issue PRLI ACC imgpair %d " 6209 "retry %d task %d\n", 6210 npr->estabImagePair, 6211 npr->Retry, npr->TaskRetryIdReq); 6212 6213 } else if (prli_fc4_req == PRLI_NVME_TYPE) { 6214 /* Respond with an NVME PRLI Type */ 6215 npr_nvme = (struct lpfc_nvme_prli *) pcmd; 6216 bf_set(prli_type_code, npr_nvme, PRLI_NVME_TYPE); 6217 bf_set(prli_estabImagePair, npr_nvme, 0); /* Should be 0 */ 6218 bf_set(prli_acc_rsp_code, npr_nvme, PRLI_REQ_EXECUTED); 6219 if (phba->nvmet_support) { 6220 bf_set(prli_tgt, npr_nvme, 1); 6221 bf_set(prli_disc, npr_nvme, 1); 6222 if (phba->cfg_nvme_enable_fb) { 6223 bf_set(prli_fba, npr_nvme, 1); 6224 6225 /* TBD. Target mode needs to post buffers 6226 * that support the configured first burst 6227 * byte size. 6228 */ 6229 bf_set(prli_fb_sz, npr_nvme, 6230 phba->cfg_nvmet_fb_size); 6231 } 6232 } else { 6233 bf_set(prli_init, npr_nvme, 1); 6234 } 6235 6236 lpfc_printf_vlog(vport, KERN_INFO, LOG_NVME_DISC, 6237 "6015 NVME issue PRLI ACC word1 x%08x " 6238 "word4 x%08x word5 x%08x flag x%x, " 6239 "fcp_info x%x nlp_type x%x\n", 6240 npr_nvme->word1, npr_nvme->word4, 6241 npr_nvme->word5, ndlp->nlp_flag, 6242 ndlp->nlp_fcp_info, ndlp->nlp_type); 6243 npr_nvme->word1 = cpu_to_be32(npr_nvme->word1); 6244 npr_nvme->word4 = cpu_to_be32(npr_nvme->word4); 6245 npr_nvme->word5 = cpu_to_be32(npr_nvme->word5); 6246 } else 6247 lpfc_printf_vlog(vport, KERN_INFO, LOG_DISCOVERY, 6248 "6128 Unknown FC_TYPE x%x x%x ndlp x%06x\n", 6249 prli_fc4_req, ndlp->nlp_fc4_type, 6250 ndlp->nlp_DID); 6251 6252 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_RSP, 6253 "Issue ACC PRLI: did:x%x flg:x%x", 6254 ndlp->nlp_DID, ndlp->nlp_flag, kref_read(&ndlp->kref)); 6255 6256 phba->fc_stat.elsXmitACC++; 6257 elsiocb->cmd_cmpl = lpfc_cmpl_els_rsp; 6258 elsiocb->ndlp = lpfc_nlp_get(ndlp); 6259 if (!elsiocb->ndlp) { 6260 lpfc_els_free_iocb(phba, elsiocb); 6261 return 1; 6262 } 6263 6264 rc = lpfc_sli_issue_iocb(phba, LPFC_ELS_RING, elsiocb, 0); 6265 if (rc == IOCB_ERROR) { 6266 lpfc_els_free_iocb(phba, elsiocb); 6267 lpfc_nlp_put(ndlp); 6268 return 1; 6269 } 6270 6271 return 0; 6272 } 6273 6274 /** 6275 * lpfc_els_rsp_rnid_acc - Issue rnid acc response iocb command 6276 * @vport: pointer to a virtual N_Port data structure. 6277 * @format: rnid command format. 6278 * @oldiocb: pointer to the original lpfc command iocb data structure. 6279 * @ndlp: pointer to a node-list data structure. 6280 * 6281 * This routine issues a Request Node Identification Data (RNID) Accept 6282 * (ACC) response. It constructs the RNID ACC response command according to 6283 * the proper @format and then calls the lpfc_sli_issue_iocb() routine to 6284 * issue the response. 6285 * 6286 * Note that the ndlp reference count will be incremented by 1 for holding the 6287 * ndlp and the reference to ndlp will be stored into the ndlp field of 6288 * the IOCB for the completion callback function. 6289 * 6290 * Return code 6291 * 0 - Successfully issued acc rnid response 6292 * 1 - Failed to issue acc rnid response 6293 **/ 6294 static int 6295 lpfc_els_rsp_rnid_acc(struct lpfc_vport *vport, uint8_t format, 6296 struct lpfc_iocbq *oldiocb, struct lpfc_nodelist *ndlp) 6297 { 6298 struct lpfc_hba *phba = vport->phba; 6299 RNID *rn; 6300 IOCB_t *icmd, *oldcmd; 6301 union lpfc_wqe128 *wqe; 6302 struct lpfc_iocbq *elsiocb; 6303 uint8_t *pcmd; 6304 uint16_t cmdsize; 6305 int rc; 6306 u32 ulp_context; 6307 6308 cmdsize = sizeof(uint32_t) + sizeof(uint32_t) 6309 + (2 * sizeof(struct lpfc_name)); 6310 if (format) 6311 cmdsize += sizeof(RNID_TOP_DISC); 6312 6313 elsiocb = lpfc_prep_els_iocb(vport, 0, cmdsize, oldiocb->retry, ndlp, 6314 ndlp->nlp_DID, ELS_CMD_ACC); 6315 if (!elsiocb) 6316 return 1; 6317 6318 if (phba->sli_rev == LPFC_SLI_REV4) { 6319 wqe = &elsiocb->wqe; 6320 bf_set(wqe_ctxt_tag, &wqe->generic.wqe_com, 6321 get_job_ulpcontext(phba, oldiocb)); /* Xri / rx_id */ 6322 ulp_context = get_job_ulpcontext(phba, elsiocb); 6323 bf_set(wqe_rcvoxid, &wqe->xmit_els_rsp.wqe_com, 6324 get_job_rcvoxid(phba, oldiocb)); 6325 } else { 6326 icmd = &elsiocb->iocb; 6327 oldcmd = &oldiocb->iocb; 6328 icmd->ulpContext = oldcmd->ulpContext; /* Xri / rx_id */ 6329 ulp_context = elsiocb->iocb.ulpContext; 6330 icmd->unsli3.rcvsli3.ox_id = 6331 oldcmd->unsli3.rcvsli3.ox_id; 6332 } 6333 6334 /* Xmit RNID ACC response tag <ulpIoTag> */ 6335 lpfc_printf_vlog(vport, KERN_INFO, LOG_ELS, 6336 "0132 Xmit RNID ACC response tag x%x xri x%x\n", 6337 elsiocb->iotag, ulp_context); 6338 pcmd = (uint8_t *)elsiocb->cmd_dmabuf->virt; 6339 *((uint32_t *) (pcmd)) = ELS_CMD_ACC; 6340 pcmd += sizeof(uint32_t); 6341 6342 memset(pcmd, 0, sizeof(RNID)); 6343 rn = (RNID *) (pcmd); 6344 rn->Format = format; 6345 rn->CommonLen = (2 * sizeof(struct lpfc_name)); 6346 memcpy(&rn->portName, &vport->fc_portname, sizeof(struct lpfc_name)); 6347 memcpy(&rn->nodeName, &vport->fc_nodename, sizeof(struct lpfc_name)); 6348 switch (format) { 6349 case 0: 6350 rn->SpecificLen = 0; 6351 break; 6352 case RNID_TOPOLOGY_DISC: 6353 rn->SpecificLen = sizeof(RNID_TOP_DISC); 6354 memcpy(&rn->un.topologyDisc.portName, 6355 &vport->fc_portname, sizeof(struct lpfc_name)); 6356 rn->un.topologyDisc.unitType = RNID_HBA; 6357 rn->un.topologyDisc.physPort = 0; 6358 rn->un.topologyDisc.attachedNodes = 0; 6359 break; 6360 default: 6361 rn->CommonLen = 0; 6362 rn->SpecificLen = 0; 6363 break; 6364 } 6365 6366 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_RSP, 6367 "Issue ACC RNID: did:x%x flg:x%x refcnt %d", 6368 ndlp->nlp_DID, ndlp->nlp_flag, kref_read(&ndlp->kref)); 6369 6370 phba->fc_stat.elsXmitACC++; 6371 elsiocb->cmd_cmpl = lpfc_cmpl_els_rsp; 6372 elsiocb->ndlp = lpfc_nlp_get(ndlp); 6373 if (!elsiocb->ndlp) { 6374 lpfc_els_free_iocb(phba, elsiocb); 6375 return 1; 6376 } 6377 6378 rc = lpfc_sli_issue_iocb(phba, LPFC_ELS_RING, elsiocb, 0); 6379 if (rc == IOCB_ERROR) { 6380 lpfc_els_free_iocb(phba, elsiocb); 6381 lpfc_nlp_put(ndlp); 6382 return 1; 6383 } 6384 6385 return 0; 6386 } 6387 6388 /** 6389 * lpfc_els_clear_rrq - Clear the rq that this rrq describes. 6390 * @vport: pointer to a virtual N_Port data structure. 6391 * @iocb: pointer to the lpfc command iocb data structure. 6392 * @ndlp: pointer to a node-list data structure. 6393 * 6394 * Return 6395 **/ 6396 static void 6397 lpfc_els_clear_rrq(struct lpfc_vport *vport, 6398 struct lpfc_iocbq *iocb, struct lpfc_nodelist *ndlp) 6399 { 6400 struct lpfc_hba *phba = vport->phba; 6401 uint8_t *pcmd; 6402 struct RRQ *rrq; 6403 uint16_t rxid; 6404 uint16_t xri; 6405 struct lpfc_node_rrq *prrq; 6406 6407 6408 pcmd = (uint8_t *)iocb->cmd_dmabuf->virt; 6409 pcmd += sizeof(uint32_t); 6410 rrq = (struct RRQ *)pcmd; 6411 rrq->rrq_exchg = be32_to_cpu(rrq->rrq_exchg); 6412 rxid = bf_get(rrq_rxid, rrq); 6413 6414 lpfc_printf_vlog(vport, KERN_INFO, LOG_ELS, 6415 "2883 Clear RRQ for SID:x%x OXID:x%x RXID:x%x" 6416 " x%x x%x\n", 6417 be32_to_cpu(bf_get(rrq_did, rrq)), 6418 bf_get(rrq_oxid, rrq), 6419 rxid, 6420 get_wqe_reqtag(iocb), 6421 get_job_ulpcontext(phba, iocb)); 6422 6423 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_RSP, 6424 "Clear RRQ: did:x%x flg:x%x exchg:x%.08x", 6425 ndlp->nlp_DID, ndlp->nlp_flag, rrq->rrq_exchg); 6426 if (vport->fc_myDID == be32_to_cpu(bf_get(rrq_did, rrq))) 6427 xri = bf_get(rrq_oxid, rrq); 6428 else 6429 xri = rxid; 6430 prrq = lpfc_get_active_rrq(vport, xri, ndlp->nlp_DID); 6431 if (prrq) 6432 lpfc_clr_rrq_active(phba, xri, prrq); 6433 return; 6434 } 6435 6436 /** 6437 * lpfc_els_rsp_echo_acc - Issue echo acc response 6438 * @vport: pointer to a virtual N_Port data structure. 6439 * @data: pointer to echo data to return in the accept. 6440 * @oldiocb: pointer to the original lpfc command iocb data structure. 6441 * @ndlp: pointer to a node-list data structure. 6442 * 6443 * Return code 6444 * 0 - Successfully issued acc echo response 6445 * 1 - Failed to issue acc echo response 6446 **/ 6447 static int 6448 lpfc_els_rsp_echo_acc(struct lpfc_vport *vport, uint8_t *data, 6449 struct lpfc_iocbq *oldiocb, struct lpfc_nodelist *ndlp) 6450 { 6451 struct lpfc_hba *phba = vport->phba; 6452 IOCB_t *icmd, *oldcmd; 6453 union lpfc_wqe128 *wqe; 6454 struct lpfc_iocbq *elsiocb; 6455 uint8_t *pcmd; 6456 uint16_t cmdsize; 6457 int rc; 6458 u32 ulp_context; 6459 6460 if (phba->sli_rev == LPFC_SLI_REV4) 6461 cmdsize = oldiocb->wcqe_cmpl.total_data_placed; 6462 else 6463 cmdsize = oldiocb->iocb.unsli3.rcvsli3.acc_len; 6464 6465 /* The accumulated length can exceed the BPL_SIZE. For 6466 * now, use this as the limit 6467 */ 6468 if (cmdsize > LPFC_BPL_SIZE) 6469 cmdsize = LPFC_BPL_SIZE; 6470 elsiocb = lpfc_prep_els_iocb(vport, 0, cmdsize, oldiocb->retry, ndlp, 6471 ndlp->nlp_DID, ELS_CMD_ACC); 6472 if (!elsiocb) 6473 return 1; 6474 6475 if (phba->sli_rev == LPFC_SLI_REV4) { 6476 wqe = &elsiocb->wqe; 6477 bf_set(wqe_ctxt_tag, &wqe->generic.wqe_com, 6478 get_job_ulpcontext(phba, oldiocb)); /* Xri / rx_id */ 6479 ulp_context = get_job_ulpcontext(phba, elsiocb); 6480 bf_set(wqe_rcvoxid, &wqe->xmit_els_rsp.wqe_com, 6481 get_job_rcvoxid(phba, oldiocb)); 6482 } else { 6483 icmd = &elsiocb->iocb; 6484 oldcmd = &oldiocb->iocb; 6485 icmd->ulpContext = oldcmd->ulpContext; /* Xri / rx_id */ 6486 ulp_context = elsiocb->iocb.ulpContext; 6487 icmd->unsli3.rcvsli3.ox_id = 6488 oldcmd->unsli3.rcvsli3.ox_id; 6489 } 6490 6491 /* Xmit ECHO ACC response tag <ulpIoTag> */ 6492 lpfc_printf_vlog(vport, KERN_INFO, LOG_ELS, 6493 "2876 Xmit ECHO ACC response tag x%x xri x%x\n", 6494 elsiocb->iotag, ulp_context); 6495 pcmd = (uint8_t *)elsiocb->cmd_dmabuf->virt; 6496 *((uint32_t *) (pcmd)) = ELS_CMD_ACC; 6497 pcmd += sizeof(uint32_t); 6498 memcpy(pcmd, data, cmdsize - sizeof(uint32_t)); 6499 6500 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_RSP, 6501 "Issue ACC ECHO: did:x%x flg:x%x refcnt %d", 6502 ndlp->nlp_DID, ndlp->nlp_flag, kref_read(&ndlp->kref)); 6503 6504 phba->fc_stat.elsXmitACC++; 6505 elsiocb->cmd_cmpl = lpfc_cmpl_els_rsp; 6506 elsiocb->ndlp = lpfc_nlp_get(ndlp); 6507 if (!elsiocb->ndlp) { 6508 lpfc_els_free_iocb(phba, elsiocb); 6509 return 1; 6510 } 6511 6512 rc = lpfc_sli_issue_iocb(phba, LPFC_ELS_RING, elsiocb, 0); 6513 if (rc == IOCB_ERROR) { 6514 lpfc_els_free_iocb(phba, elsiocb); 6515 lpfc_nlp_put(ndlp); 6516 return 1; 6517 } 6518 6519 return 0; 6520 } 6521 6522 /** 6523 * lpfc_els_disc_adisc - Issue remaining adisc iocbs to npr nodes of a vport 6524 * @vport: pointer to a host virtual N_Port data structure. 6525 * 6526 * This routine issues Address Discover (ADISC) ELS commands to those 6527 * N_Ports which are in node port recovery state and ADISC has not been issued 6528 * for the @vport. Each time an ELS ADISC IOCB is issued by invoking the 6529 * lpfc_issue_els_adisc() routine, the per @vport number of discover count 6530 * (num_disc_nodes) shall be incremented. If the num_disc_nodes reaches a 6531 * pre-configured threshold (cfg_discovery_threads), the @vport fc_flag will 6532 * be marked with FC_NLP_MORE bit and the process of issuing remaining ADISC 6533 * IOCBs quit for later pick up. On the other hand, after walking through 6534 * all the ndlps with the @vport and there is none ADISC IOCB issued, the 6535 * @vport fc_flag shall be cleared with FC_NLP_MORE bit indicating there is 6536 * no more ADISC need to be sent. 6537 * 6538 * Return code 6539 * The number of N_Ports with adisc issued. 6540 **/ 6541 int 6542 lpfc_els_disc_adisc(struct lpfc_vport *vport) 6543 { 6544 struct lpfc_nodelist *ndlp, *next_ndlp; 6545 int sentadisc = 0; 6546 6547 /* go thru NPR nodes and issue any remaining ELS ADISCs */ 6548 list_for_each_entry_safe(ndlp, next_ndlp, &vport->fc_nodes, nlp_listp) { 6549 6550 if (ndlp->nlp_state != NLP_STE_NPR_NODE || 6551 !(ndlp->nlp_flag & NLP_NPR_ADISC)) 6552 continue; 6553 6554 spin_lock_irq(&ndlp->lock); 6555 ndlp->nlp_flag &= ~NLP_NPR_ADISC; 6556 spin_unlock_irq(&ndlp->lock); 6557 6558 if (!(ndlp->nlp_flag & NLP_NPR_2B_DISC)) { 6559 /* This node was marked for ADISC but was not picked 6560 * for discovery. This is possible if the node was 6561 * missing in gidft response. 6562 * 6563 * At time of marking node for ADISC, we skipped unreg 6564 * from backend 6565 */ 6566 lpfc_nlp_unreg_node(vport, ndlp); 6567 lpfc_unreg_rpi(vport, ndlp); 6568 continue; 6569 } 6570 6571 ndlp->nlp_prev_state = ndlp->nlp_state; 6572 lpfc_nlp_set_state(vport, ndlp, NLP_STE_ADISC_ISSUE); 6573 lpfc_issue_els_adisc(vport, ndlp, 0); 6574 sentadisc++; 6575 vport->num_disc_nodes++; 6576 if (vport->num_disc_nodes >= 6577 vport->cfg_discovery_threads) { 6578 set_bit(FC_NLP_MORE, &vport->fc_flag); 6579 break; 6580 } 6581 6582 } 6583 if (sentadisc == 0) 6584 clear_bit(FC_NLP_MORE, &vport->fc_flag); 6585 return sentadisc; 6586 } 6587 6588 /** 6589 * lpfc_els_disc_plogi - Issue plogi for all npr nodes of a vport before adisc 6590 * @vport: pointer to a host virtual N_Port data structure. 6591 * 6592 * This routine issues Port Login (PLOGI) ELS commands to all the N_Ports 6593 * which are in node port recovery state, with a @vport. Each time an ELS 6594 * ADISC PLOGI IOCB is issued by invoking the lpfc_issue_els_plogi() routine, 6595 * the per @vport number of discover count (num_disc_nodes) shall be 6596 * incremented. If the num_disc_nodes reaches a pre-configured threshold 6597 * (cfg_discovery_threads), the @vport fc_flag will be marked with FC_NLP_MORE 6598 * bit set and quit the process of issuing remaining ADISC PLOGIN IOCBs for 6599 * later pick up. On the other hand, after walking through all the ndlps with 6600 * the @vport and there is none ADISC PLOGI IOCB issued, the @vport fc_flag 6601 * shall be cleared with the FC_NLP_MORE bit indicating there is no more ADISC 6602 * PLOGI need to be sent. 6603 * 6604 * Return code 6605 * The number of N_Ports with plogi issued. 6606 **/ 6607 int 6608 lpfc_els_disc_plogi(struct lpfc_vport *vport) 6609 { 6610 struct lpfc_nodelist *ndlp, *next_ndlp; 6611 int sentplogi = 0; 6612 6613 /* go thru NPR nodes and issue any remaining ELS PLOGIs */ 6614 list_for_each_entry_safe(ndlp, next_ndlp, &vport->fc_nodes, nlp_listp) { 6615 if (ndlp->nlp_state == NLP_STE_NPR_NODE && 6616 (ndlp->nlp_flag & NLP_NPR_2B_DISC) != 0 && 6617 (ndlp->nlp_flag & NLP_DELAY_TMO) == 0 && 6618 (ndlp->nlp_flag & NLP_NPR_ADISC) == 0) { 6619 ndlp->nlp_prev_state = ndlp->nlp_state; 6620 lpfc_nlp_set_state(vport, ndlp, NLP_STE_PLOGI_ISSUE); 6621 lpfc_issue_els_plogi(vport, ndlp->nlp_DID, 0); 6622 sentplogi++; 6623 vport->num_disc_nodes++; 6624 if (vport->num_disc_nodes >= 6625 vport->cfg_discovery_threads) { 6626 set_bit(FC_NLP_MORE, &vport->fc_flag); 6627 break; 6628 } 6629 } 6630 } 6631 6632 lpfc_printf_vlog(vport, KERN_INFO, LOG_DISCOVERY, 6633 "6452 Discover PLOGI %d flag x%lx\n", 6634 sentplogi, vport->fc_flag); 6635 6636 if (sentplogi) 6637 lpfc_set_disctmo(vport); 6638 else 6639 clear_bit(FC_NLP_MORE, &vport->fc_flag); 6640 return sentplogi; 6641 } 6642 6643 static uint32_t 6644 lpfc_rdp_res_link_service(struct fc_rdp_link_service_desc *desc, 6645 uint32_t word0) 6646 { 6647 6648 desc->tag = cpu_to_be32(RDP_LINK_SERVICE_DESC_TAG); 6649 desc->payload.els_req = word0; 6650 desc->length = cpu_to_be32(sizeof(desc->payload)); 6651 6652 return sizeof(struct fc_rdp_link_service_desc); 6653 } 6654 6655 static uint32_t 6656 lpfc_rdp_res_sfp_desc(struct fc_rdp_sfp_desc *desc, 6657 uint8_t *page_a0, uint8_t *page_a2) 6658 { 6659 uint16_t wavelength; 6660 uint16_t temperature; 6661 uint16_t rx_power; 6662 uint16_t tx_bias; 6663 uint16_t tx_power; 6664 uint16_t vcc; 6665 uint16_t flag = 0; 6666 struct sff_trasnceiver_codes_byte4 *trasn_code_byte4; 6667 struct sff_trasnceiver_codes_byte5 *trasn_code_byte5; 6668 6669 desc->tag = cpu_to_be32(RDP_SFP_DESC_TAG); 6670 6671 trasn_code_byte4 = (struct sff_trasnceiver_codes_byte4 *) 6672 &page_a0[SSF_TRANSCEIVER_CODE_B4]; 6673 trasn_code_byte5 = (struct sff_trasnceiver_codes_byte5 *) 6674 &page_a0[SSF_TRANSCEIVER_CODE_B5]; 6675 6676 if ((trasn_code_byte4->fc_sw_laser) || 6677 (trasn_code_byte5->fc_sw_laser_sl) || 6678 (trasn_code_byte5->fc_sw_laser_sn)) { /* check if its short WL */ 6679 flag |= (SFP_FLAG_PT_SWLASER << SFP_FLAG_PT_SHIFT); 6680 } else if (trasn_code_byte4->fc_lw_laser) { 6681 wavelength = (page_a0[SSF_WAVELENGTH_B1] << 8) | 6682 page_a0[SSF_WAVELENGTH_B0]; 6683 if (wavelength == SFP_WAVELENGTH_LC1310) 6684 flag |= SFP_FLAG_PT_LWLASER_LC1310 << SFP_FLAG_PT_SHIFT; 6685 if (wavelength == SFP_WAVELENGTH_LL1550) 6686 flag |= SFP_FLAG_PT_LWLASER_LL1550 << SFP_FLAG_PT_SHIFT; 6687 } 6688 /* check if its SFP+ */ 6689 flag |= ((page_a0[SSF_IDENTIFIER] == SFF_PG0_IDENT_SFP) ? 6690 SFP_FLAG_CT_SFP_PLUS : SFP_FLAG_CT_UNKNOWN) 6691 << SFP_FLAG_CT_SHIFT; 6692 6693 /* check if its OPTICAL */ 6694 flag |= ((page_a0[SSF_CONNECTOR] == SFF_PG0_CONNECTOR_LC) ? 6695 SFP_FLAG_IS_OPTICAL_PORT : 0) 6696 << SFP_FLAG_IS_OPTICAL_SHIFT; 6697 6698 temperature = (page_a2[SFF_TEMPERATURE_B1] << 8 | 6699 page_a2[SFF_TEMPERATURE_B0]); 6700 vcc = (page_a2[SFF_VCC_B1] << 8 | 6701 page_a2[SFF_VCC_B0]); 6702 tx_power = (page_a2[SFF_TXPOWER_B1] << 8 | 6703 page_a2[SFF_TXPOWER_B0]); 6704 tx_bias = (page_a2[SFF_TX_BIAS_CURRENT_B1] << 8 | 6705 page_a2[SFF_TX_BIAS_CURRENT_B0]); 6706 rx_power = (page_a2[SFF_RXPOWER_B1] << 8 | 6707 page_a2[SFF_RXPOWER_B0]); 6708 desc->sfp_info.temperature = cpu_to_be16(temperature); 6709 desc->sfp_info.rx_power = cpu_to_be16(rx_power); 6710 desc->sfp_info.tx_bias = cpu_to_be16(tx_bias); 6711 desc->sfp_info.tx_power = cpu_to_be16(tx_power); 6712 desc->sfp_info.vcc = cpu_to_be16(vcc); 6713 6714 desc->sfp_info.flags = cpu_to_be16(flag); 6715 desc->length = cpu_to_be32(sizeof(desc->sfp_info)); 6716 6717 return sizeof(struct fc_rdp_sfp_desc); 6718 } 6719 6720 static uint32_t 6721 lpfc_rdp_res_link_error(struct fc_rdp_link_error_status_desc *desc, 6722 READ_LNK_VAR *stat) 6723 { 6724 uint32_t type; 6725 6726 desc->tag = cpu_to_be32(RDP_LINK_ERROR_STATUS_DESC_TAG); 6727 6728 type = VN_PT_PHY_PF_PORT << VN_PT_PHY_SHIFT; 6729 6730 desc->info.port_type = cpu_to_be32(type); 6731 6732 desc->info.link_status.link_failure_cnt = 6733 cpu_to_be32(stat->linkFailureCnt); 6734 desc->info.link_status.loss_of_synch_cnt = 6735 cpu_to_be32(stat->lossSyncCnt); 6736 desc->info.link_status.loss_of_signal_cnt = 6737 cpu_to_be32(stat->lossSignalCnt); 6738 desc->info.link_status.primitive_seq_proto_err = 6739 cpu_to_be32(stat->primSeqErrCnt); 6740 desc->info.link_status.invalid_trans_word = 6741 cpu_to_be32(stat->invalidXmitWord); 6742 desc->info.link_status.invalid_crc_cnt = cpu_to_be32(stat->crcCnt); 6743 6744 desc->length = cpu_to_be32(sizeof(desc->info)); 6745 6746 return sizeof(struct fc_rdp_link_error_status_desc); 6747 } 6748 6749 static uint32_t 6750 lpfc_rdp_res_bbc_desc(struct fc_rdp_bbc_desc *desc, READ_LNK_VAR *stat, 6751 struct lpfc_vport *vport) 6752 { 6753 uint32_t bbCredit; 6754 6755 desc->tag = cpu_to_be32(RDP_BBC_DESC_TAG); 6756 6757 bbCredit = vport->fc_sparam.cmn.bbCreditLsb | 6758 (vport->fc_sparam.cmn.bbCreditMsb << 8); 6759 desc->bbc_info.port_bbc = cpu_to_be32(bbCredit); 6760 if (vport->phba->fc_topology != LPFC_TOPOLOGY_LOOP) { 6761 bbCredit = vport->phba->fc_fabparam.cmn.bbCreditLsb | 6762 (vport->phba->fc_fabparam.cmn.bbCreditMsb << 8); 6763 desc->bbc_info.attached_port_bbc = cpu_to_be32(bbCredit); 6764 } else { 6765 desc->bbc_info.attached_port_bbc = 0; 6766 } 6767 6768 desc->bbc_info.rtt = 0; 6769 desc->length = cpu_to_be32(sizeof(desc->bbc_info)); 6770 6771 return sizeof(struct fc_rdp_bbc_desc); 6772 } 6773 6774 static uint32_t 6775 lpfc_rdp_res_oed_temp_desc(struct lpfc_hba *phba, 6776 struct fc_rdp_oed_sfp_desc *desc, uint8_t *page_a2) 6777 { 6778 uint32_t flags = 0; 6779 6780 desc->tag = cpu_to_be32(RDP_OED_DESC_TAG); 6781 6782 desc->oed_info.hi_alarm = page_a2[SSF_TEMP_HIGH_ALARM]; 6783 desc->oed_info.lo_alarm = page_a2[SSF_TEMP_LOW_ALARM]; 6784 desc->oed_info.hi_warning = page_a2[SSF_TEMP_HIGH_WARNING]; 6785 desc->oed_info.lo_warning = page_a2[SSF_TEMP_LOW_WARNING]; 6786 6787 if (phba->sfp_alarm & LPFC_TRANSGRESSION_HIGH_TEMPERATURE) 6788 flags |= RDP_OET_HIGH_ALARM; 6789 if (phba->sfp_alarm & LPFC_TRANSGRESSION_LOW_TEMPERATURE) 6790 flags |= RDP_OET_LOW_ALARM; 6791 if (phba->sfp_warning & LPFC_TRANSGRESSION_HIGH_TEMPERATURE) 6792 flags |= RDP_OET_HIGH_WARNING; 6793 if (phba->sfp_warning & LPFC_TRANSGRESSION_LOW_TEMPERATURE) 6794 flags |= RDP_OET_LOW_WARNING; 6795 6796 flags |= ((0xf & RDP_OED_TEMPERATURE) << RDP_OED_TYPE_SHIFT); 6797 desc->oed_info.function_flags = cpu_to_be32(flags); 6798 desc->length = cpu_to_be32(sizeof(desc->oed_info)); 6799 return sizeof(struct fc_rdp_oed_sfp_desc); 6800 } 6801 6802 static uint32_t 6803 lpfc_rdp_res_oed_voltage_desc(struct lpfc_hba *phba, 6804 struct fc_rdp_oed_sfp_desc *desc, 6805 uint8_t *page_a2) 6806 { 6807 uint32_t flags = 0; 6808 6809 desc->tag = cpu_to_be32(RDP_OED_DESC_TAG); 6810 6811 desc->oed_info.hi_alarm = page_a2[SSF_VOLTAGE_HIGH_ALARM]; 6812 desc->oed_info.lo_alarm = page_a2[SSF_VOLTAGE_LOW_ALARM]; 6813 desc->oed_info.hi_warning = page_a2[SSF_VOLTAGE_HIGH_WARNING]; 6814 desc->oed_info.lo_warning = page_a2[SSF_VOLTAGE_LOW_WARNING]; 6815 6816 if (phba->sfp_alarm & LPFC_TRANSGRESSION_HIGH_VOLTAGE) 6817 flags |= RDP_OET_HIGH_ALARM; 6818 if (phba->sfp_alarm & LPFC_TRANSGRESSION_LOW_VOLTAGE) 6819 flags |= RDP_OET_LOW_ALARM; 6820 if (phba->sfp_warning & LPFC_TRANSGRESSION_HIGH_VOLTAGE) 6821 flags |= RDP_OET_HIGH_WARNING; 6822 if (phba->sfp_warning & LPFC_TRANSGRESSION_LOW_VOLTAGE) 6823 flags |= RDP_OET_LOW_WARNING; 6824 6825 flags |= ((0xf & RDP_OED_VOLTAGE) << RDP_OED_TYPE_SHIFT); 6826 desc->oed_info.function_flags = cpu_to_be32(flags); 6827 desc->length = cpu_to_be32(sizeof(desc->oed_info)); 6828 return sizeof(struct fc_rdp_oed_sfp_desc); 6829 } 6830 6831 static uint32_t 6832 lpfc_rdp_res_oed_txbias_desc(struct lpfc_hba *phba, 6833 struct fc_rdp_oed_sfp_desc *desc, 6834 uint8_t *page_a2) 6835 { 6836 uint32_t flags = 0; 6837 6838 desc->tag = cpu_to_be32(RDP_OED_DESC_TAG); 6839 6840 desc->oed_info.hi_alarm = page_a2[SSF_BIAS_HIGH_ALARM]; 6841 desc->oed_info.lo_alarm = page_a2[SSF_BIAS_LOW_ALARM]; 6842 desc->oed_info.hi_warning = page_a2[SSF_BIAS_HIGH_WARNING]; 6843 desc->oed_info.lo_warning = page_a2[SSF_BIAS_LOW_WARNING]; 6844 6845 if (phba->sfp_alarm & LPFC_TRANSGRESSION_HIGH_TXBIAS) 6846 flags |= RDP_OET_HIGH_ALARM; 6847 if (phba->sfp_alarm & LPFC_TRANSGRESSION_LOW_TXBIAS) 6848 flags |= RDP_OET_LOW_ALARM; 6849 if (phba->sfp_warning & LPFC_TRANSGRESSION_HIGH_TXBIAS) 6850 flags |= RDP_OET_HIGH_WARNING; 6851 if (phba->sfp_warning & LPFC_TRANSGRESSION_LOW_TXBIAS) 6852 flags |= RDP_OET_LOW_WARNING; 6853 6854 flags |= ((0xf & RDP_OED_TXBIAS) << RDP_OED_TYPE_SHIFT); 6855 desc->oed_info.function_flags = cpu_to_be32(flags); 6856 desc->length = cpu_to_be32(sizeof(desc->oed_info)); 6857 return sizeof(struct fc_rdp_oed_sfp_desc); 6858 } 6859 6860 static uint32_t 6861 lpfc_rdp_res_oed_txpower_desc(struct lpfc_hba *phba, 6862 struct fc_rdp_oed_sfp_desc *desc, 6863 uint8_t *page_a2) 6864 { 6865 uint32_t flags = 0; 6866 6867 desc->tag = cpu_to_be32(RDP_OED_DESC_TAG); 6868 6869 desc->oed_info.hi_alarm = page_a2[SSF_TXPOWER_HIGH_ALARM]; 6870 desc->oed_info.lo_alarm = page_a2[SSF_TXPOWER_LOW_ALARM]; 6871 desc->oed_info.hi_warning = page_a2[SSF_TXPOWER_HIGH_WARNING]; 6872 desc->oed_info.lo_warning = page_a2[SSF_TXPOWER_LOW_WARNING]; 6873 6874 if (phba->sfp_alarm & LPFC_TRANSGRESSION_HIGH_TXPOWER) 6875 flags |= RDP_OET_HIGH_ALARM; 6876 if (phba->sfp_alarm & LPFC_TRANSGRESSION_LOW_TXPOWER) 6877 flags |= RDP_OET_LOW_ALARM; 6878 if (phba->sfp_warning & LPFC_TRANSGRESSION_HIGH_TXPOWER) 6879 flags |= RDP_OET_HIGH_WARNING; 6880 if (phba->sfp_warning & LPFC_TRANSGRESSION_LOW_TXPOWER) 6881 flags |= RDP_OET_LOW_WARNING; 6882 6883 flags |= ((0xf & RDP_OED_TXPOWER) << RDP_OED_TYPE_SHIFT); 6884 desc->oed_info.function_flags = cpu_to_be32(flags); 6885 desc->length = cpu_to_be32(sizeof(desc->oed_info)); 6886 return sizeof(struct fc_rdp_oed_sfp_desc); 6887 } 6888 6889 6890 static uint32_t 6891 lpfc_rdp_res_oed_rxpower_desc(struct lpfc_hba *phba, 6892 struct fc_rdp_oed_sfp_desc *desc, 6893 uint8_t *page_a2) 6894 { 6895 uint32_t flags = 0; 6896 6897 desc->tag = cpu_to_be32(RDP_OED_DESC_TAG); 6898 6899 desc->oed_info.hi_alarm = page_a2[SSF_RXPOWER_HIGH_ALARM]; 6900 desc->oed_info.lo_alarm = page_a2[SSF_RXPOWER_LOW_ALARM]; 6901 desc->oed_info.hi_warning = page_a2[SSF_RXPOWER_HIGH_WARNING]; 6902 desc->oed_info.lo_warning = page_a2[SSF_RXPOWER_LOW_WARNING]; 6903 6904 if (phba->sfp_alarm & LPFC_TRANSGRESSION_HIGH_RXPOWER) 6905 flags |= RDP_OET_HIGH_ALARM; 6906 if (phba->sfp_alarm & LPFC_TRANSGRESSION_LOW_RXPOWER) 6907 flags |= RDP_OET_LOW_ALARM; 6908 if (phba->sfp_warning & LPFC_TRANSGRESSION_HIGH_RXPOWER) 6909 flags |= RDP_OET_HIGH_WARNING; 6910 if (phba->sfp_warning & LPFC_TRANSGRESSION_LOW_RXPOWER) 6911 flags |= RDP_OET_LOW_WARNING; 6912 6913 flags |= ((0xf & RDP_OED_RXPOWER) << RDP_OED_TYPE_SHIFT); 6914 desc->oed_info.function_flags = cpu_to_be32(flags); 6915 desc->length = cpu_to_be32(sizeof(desc->oed_info)); 6916 return sizeof(struct fc_rdp_oed_sfp_desc); 6917 } 6918 6919 static uint32_t 6920 lpfc_rdp_res_opd_desc(struct fc_rdp_opd_sfp_desc *desc, 6921 uint8_t *page_a0, struct lpfc_vport *vport) 6922 { 6923 desc->tag = cpu_to_be32(RDP_OPD_DESC_TAG); 6924 memcpy(desc->opd_info.vendor_name, &page_a0[SSF_VENDOR_NAME], 16); 6925 memcpy(desc->opd_info.model_number, &page_a0[SSF_VENDOR_PN], 16); 6926 memcpy(desc->opd_info.serial_number, &page_a0[SSF_VENDOR_SN], 16); 6927 memcpy(desc->opd_info.revision, &page_a0[SSF_VENDOR_REV], 4); 6928 memcpy(desc->opd_info.date, &page_a0[SSF_DATE_CODE], 8); 6929 desc->length = cpu_to_be32(sizeof(desc->opd_info)); 6930 return sizeof(struct fc_rdp_opd_sfp_desc); 6931 } 6932 6933 static uint32_t 6934 lpfc_rdp_res_fec_desc(struct fc_fec_rdp_desc *desc, READ_LNK_VAR *stat) 6935 { 6936 if (bf_get(lpfc_read_link_stat_gec2, stat) == 0) 6937 return 0; 6938 desc->tag = cpu_to_be32(RDP_FEC_DESC_TAG); 6939 6940 desc->info.CorrectedBlocks = 6941 cpu_to_be32(stat->fecCorrBlkCount); 6942 desc->info.UncorrectableBlocks = 6943 cpu_to_be32(stat->fecUncorrBlkCount); 6944 6945 desc->length = cpu_to_be32(sizeof(desc->info)); 6946 6947 return sizeof(struct fc_fec_rdp_desc); 6948 } 6949 6950 static uint32_t 6951 lpfc_rdp_res_speed(struct fc_rdp_port_speed_desc *desc, struct lpfc_hba *phba) 6952 { 6953 uint16_t rdp_cap = 0; 6954 uint16_t rdp_speed; 6955 6956 desc->tag = cpu_to_be32(RDP_PORT_SPEED_DESC_TAG); 6957 6958 switch (phba->fc_linkspeed) { 6959 case LPFC_LINK_SPEED_1GHZ: 6960 rdp_speed = RDP_PS_1GB; 6961 break; 6962 case LPFC_LINK_SPEED_2GHZ: 6963 rdp_speed = RDP_PS_2GB; 6964 break; 6965 case LPFC_LINK_SPEED_4GHZ: 6966 rdp_speed = RDP_PS_4GB; 6967 break; 6968 case LPFC_LINK_SPEED_8GHZ: 6969 rdp_speed = RDP_PS_8GB; 6970 break; 6971 case LPFC_LINK_SPEED_10GHZ: 6972 rdp_speed = RDP_PS_10GB; 6973 break; 6974 case LPFC_LINK_SPEED_16GHZ: 6975 rdp_speed = RDP_PS_16GB; 6976 break; 6977 case LPFC_LINK_SPEED_32GHZ: 6978 rdp_speed = RDP_PS_32GB; 6979 break; 6980 case LPFC_LINK_SPEED_64GHZ: 6981 rdp_speed = RDP_PS_64GB; 6982 break; 6983 case LPFC_LINK_SPEED_128GHZ: 6984 rdp_speed = RDP_PS_128GB; 6985 break; 6986 case LPFC_LINK_SPEED_256GHZ: 6987 rdp_speed = RDP_PS_256GB; 6988 break; 6989 default: 6990 rdp_speed = RDP_PS_UNKNOWN; 6991 break; 6992 } 6993 6994 desc->info.port_speed.speed = cpu_to_be16(rdp_speed); 6995 6996 if (phba->lmt & LMT_256Gb) 6997 rdp_cap |= RDP_PS_256GB; 6998 if (phba->lmt & LMT_128Gb) 6999 rdp_cap |= RDP_PS_128GB; 7000 if (phba->lmt & LMT_64Gb) 7001 rdp_cap |= RDP_PS_64GB; 7002 if (phba->lmt & LMT_32Gb) 7003 rdp_cap |= RDP_PS_32GB; 7004 if (phba->lmt & LMT_16Gb) 7005 rdp_cap |= RDP_PS_16GB; 7006 if (phba->lmt & LMT_10Gb) 7007 rdp_cap |= RDP_PS_10GB; 7008 if (phba->lmt & LMT_8Gb) 7009 rdp_cap |= RDP_PS_8GB; 7010 if (phba->lmt & LMT_4Gb) 7011 rdp_cap |= RDP_PS_4GB; 7012 if (phba->lmt & LMT_2Gb) 7013 rdp_cap |= RDP_PS_2GB; 7014 if (phba->lmt & LMT_1Gb) 7015 rdp_cap |= RDP_PS_1GB; 7016 7017 if (rdp_cap == 0) 7018 rdp_cap = RDP_CAP_UNKNOWN; 7019 if (phba->cfg_link_speed != LPFC_USER_LINK_SPEED_AUTO) 7020 rdp_cap |= RDP_CAP_USER_CONFIGURED; 7021 7022 desc->info.port_speed.capabilities = cpu_to_be16(rdp_cap); 7023 desc->length = cpu_to_be32(sizeof(desc->info)); 7024 return sizeof(struct fc_rdp_port_speed_desc); 7025 } 7026 7027 static uint32_t 7028 lpfc_rdp_res_diag_port_names(struct fc_rdp_port_name_desc *desc, 7029 struct lpfc_vport *vport) 7030 { 7031 7032 desc->tag = cpu_to_be32(RDP_PORT_NAMES_DESC_TAG); 7033 7034 memcpy(desc->port_names.wwnn, &vport->fc_nodename, 7035 sizeof(desc->port_names.wwnn)); 7036 7037 memcpy(desc->port_names.wwpn, &vport->fc_portname, 7038 sizeof(desc->port_names.wwpn)); 7039 7040 desc->length = cpu_to_be32(sizeof(desc->port_names)); 7041 return sizeof(struct fc_rdp_port_name_desc); 7042 } 7043 7044 static uint32_t 7045 lpfc_rdp_res_attach_port_names(struct fc_rdp_port_name_desc *desc, 7046 struct lpfc_vport *vport, struct lpfc_nodelist *ndlp) 7047 { 7048 7049 desc->tag = cpu_to_be32(RDP_PORT_NAMES_DESC_TAG); 7050 if (test_bit(FC_FABRIC, &vport->fc_flag)) { 7051 memcpy(desc->port_names.wwnn, &vport->fabric_nodename, 7052 sizeof(desc->port_names.wwnn)); 7053 7054 memcpy(desc->port_names.wwpn, &vport->fabric_portname, 7055 sizeof(desc->port_names.wwpn)); 7056 } else { /* Point to Point */ 7057 memcpy(desc->port_names.wwnn, &ndlp->nlp_nodename, 7058 sizeof(desc->port_names.wwnn)); 7059 7060 memcpy(desc->port_names.wwpn, &ndlp->nlp_portname, 7061 sizeof(desc->port_names.wwpn)); 7062 } 7063 7064 desc->length = cpu_to_be32(sizeof(desc->port_names)); 7065 return sizeof(struct fc_rdp_port_name_desc); 7066 } 7067 7068 static void 7069 lpfc_els_rdp_cmpl(struct lpfc_hba *phba, struct lpfc_rdp_context *rdp_context, 7070 int status) 7071 { 7072 struct lpfc_nodelist *ndlp = rdp_context->ndlp; 7073 struct lpfc_vport *vport = ndlp->vport; 7074 struct lpfc_iocbq *elsiocb; 7075 struct ulp_bde64 *bpl; 7076 IOCB_t *icmd; 7077 union lpfc_wqe128 *wqe; 7078 uint8_t *pcmd; 7079 struct ls_rjt *stat; 7080 struct fc_rdp_res_frame *rdp_res; 7081 uint32_t cmdsize, len; 7082 uint16_t *flag_ptr; 7083 int rc; 7084 u32 ulp_context; 7085 7086 if (status != SUCCESS) 7087 goto error; 7088 7089 /* This will change once we know the true size of the RDP payload */ 7090 cmdsize = sizeof(struct fc_rdp_res_frame); 7091 7092 elsiocb = lpfc_prep_els_iocb(vport, 0, cmdsize, 7093 lpfc_max_els_tries, rdp_context->ndlp, 7094 rdp_context->ndlp->nlp_DID, ELS_CMD_ACC); 7095 if (!elsiocb) 7096 goto free_rdp_context; 7097 7098 ulp_context = get_job_ulpcontext(phba, elsiocb); 7099 if (phba->sli_rev == LPFC_SLI_REV4) { 7100 wqe = &elsiocb->wqe; 7101 /* ox-id of the frame */ 7102 bf_set(wqe_rcvoxid, &wqe->xmit_els_rsp.wqe_com, 7103 rdp_context->ox_id); 7104 bf_set(wqe_ctxt_tag, &wqe->xmit_els_rsp.wqe_com, 7105 rdp_context->rx_id); 7106 } else { 7107 icmd = &elsiocb->iocb; 7108 icmd->ulpContext = rdp_context->rx_id; 7109 icmd->unsli3.rcvsli3.ox_id = rdp_context->ox_id; 7110 } 7111 7112 lpfc_printf_vlog(vport, KERN_INFO, LOG_ELS, 7113 "2171 Xmit RDP response tag x%x xri x%x, " 7114 "did x%x, nlp_flag x%x, nlp_state x%x, rpi x%x", 7115 elsiocb->iotag, ulp_context, 7116 ndlp->nlp_DID, ndlp->nlp_flag, ndlp->nlp_state, 7117 ndlp->nlp_rpi); 7118 rdp_res = (struct fc_rdp_res_frame *)elsiocb->cmd_dmabuf->virt; 7119 pcmd = (uint8_t *)elsiocb->cmd_dmabuf->virt; 7120 memset(pcmd, 0, sizeof(struct fc_rdp_res_frame)); 7121 *((uint32_t *) (pcmd)) = ELS_CMD_ACC; 7122 7123 /* Update Alarm and Warning */ 7124 flag_ptr = (uint16_t *)(rdp_context->page_a2 + SSF_ALARM_FLAGS); 7125 phba->sfp_alarm |= *flag_ptr; 7126 flag_ptr = (uint16_t *)(rdp_context->page_a2 + SSF_WARNING_FLAGS); 7127 phba->sfp_warning |= *flag_ptr; 7128 7129 /* For RDP payload */ 7130 len = 8; 7131 len += lpfc_rdp_res_link_service((struct fc_rdp_link_service_desc *) 7132 (len + pcmd), ELS_CMD_RDP); 7133 7134 len += lpfc_rdp_res_sfp_desc((struct fc_rdp_sfp_desc *)(len + pcmd), 7135 rdp_context->page_a0, rdp_context->page_a2); 7136 len += lpfc_rdp_res_speed((struct fc_rdp_port_speed_desc *)(len + pcmd), 7137 phba); 7138 len += lpfc_rdp_res_link_error((struct fc_rdp_link_error_status_desc *) 7139 (len + pcmd), &rdp_context->link_stat); 7140 len += lpfc_rdp_res_diag_port_names((struct fc_rdp_port_name_desc *) 7141 (len + pcmd), vport); 7142 len += lpfc_rdp_res_attach_port_names((struct fc_rdp_port_name_desc *) 7143 (len + pcmd), vport, ndlp); 7144 len += lpfc_rdp_res_fec_desc((struct fc_fec_rdp_desc *)(len + pcmd), 7145 &rdp_context->link_stat); 7146 len += lpfc_rdp_res_bbc_desc((struct fc_rdp_bbc_desc *)(len + pcmd), 7147 &rdp_context->link_stat, vport); 7148 len += lpfc_rdp_res_oed_temp_desc(phba, 7149 (struct fc_rdp_oed_sfp_desc *)(len + pcmd), 7150 rdp_context->page_a2); 7151 len += lpfc_rdp_res_oed_voltage_desc(phba, 7152 (struct fc_rdp_oed_sfp_desc *)(len + pcmd), 7153 rdp_context->page_a2); 7154 len += lpfc_rdp_res_oed_txbias_desc(phba, 7155 (struct fc_rdp_oed_sfp_desc *)(len + pcmd), 7156 rdp_context->page_a2); 7157 len += lpfc_rdp_res_oed_txpower_desc(phba, 7158 (struct fc_rdp_oed_sfp_desc *)(len + pcmd), 7159 rdp_context->page_a2); 7160 len += lpfc_rdp_res_oed_rxpower_desc(phba, 7161 (struct fc_rdp_oed_sfp_desc *)(len + pcmd), 7162 rdp_context->page_a2); 7163 len += lpfc_rdp_res_opd_desc((struct fc_rdp_opd_sfp_desc *)(len + pcmd), 7164 rdp_context->page_a0, vport); 7165 7166 rdp_res->length = cpu_to_be32(len - 8); 7167 elsiocb->cmd_cmpl = lpfc_cmpl_els_rsp; 7168 7169 /* Now that we know the true size of the payload, update the BPL */ 7170 bpl = (struct ulp_bde64 *)elsiocb->bpl_dmabuf->virt; 7171 bpl->tus.f.bdeSize = len; 7172 bpl->tus.f.bdeFlags = 0; 7173 bpl->tus.w = le32_to_cpu(bpl->tus.w); 7174 7175 phba->fc_stat.elsXmitACC++; 7176 elsiocb->ndlp = lpfc_nlp_get(ndlp); 7177 if (!elsiocb->ndlp) { 7178 lpfc_els_free_iocb(phba, elsiocb); 7179 goto free_rdp_context; 7180 } 7181 7182 rc = lpfc_sli_issue_iocb(phba, LPFC_ELS_RING, elsiocb, 0); 7183 if (rc == IOCB_ERROR) { 7184 lpfc_els_free_iocb(phba, elsiocb); 7185 lpfc_nlp_put(ndlp); 7186 } 7187 7188 goto free_rdp_context; 7189 7190 error: 7191 cmdsize = 2 * sizeof(uint32_t); 7192 elsiocb = lpfc_prep_els_iocb(vport, 0, cmdsize, lpfc_max_els_tries, 7193 ndlp, ndlp->nlp_DID, ELS_CMD_LS_RJT); 7194 if (!elsiocb) 7195 goto free_rdp_context; 7196 7197 if (phba->sli_rev == LPFC_SLI_REV4) { 7198 wqe = &elsiocb->wqe; 7199 /* ox-id of the frame */ 7200 bf_set(wqe_rcvoxid, &wqe->xmit_els_rsp.wqe_com, 7201 rdp_context->ox_id); 7202 bf_set(wqe_ctxt_tag, 7203 &wqe->xmit_els_rsp.wqe_com, 7204 rdp_context->rx_id); 7205 } else { 7206 icmd = &elsiocb->iocb; 7207 icmd->ulpContext = rdp_context->rx_id; 7208 icmd->unsli3.rcvsli3.ox_id = rdp_context->ox_id; 7209 } 7210 7211 pcmd = (uint8_t *)elsiocb->cmd_dmabuf->virt; 7212 7213 *((uint32_t *) (pcmd)) = ELS_CMD_LS_RJT; 7214 stat = (struct ls_rjt *)(pcmd + sizeof(uint32_t)); 7215 stat->un.b.lsRjtRsnCode = LSRJT_UNABLE_TPC; 7216 7217 phba->fc_stat.elsXmitLSRJT++; 7218 elsiocb->cmd_cmpl = lpfc_cmpl_els_rsp; 7219 elsiocb->ndlp = lpfc_nlp_get(ndlp); 7220 if (!elsiocb->ndlp) { 7221 lpfc_els_free_iocb(phba, elsiocb); 7222 goto free_rdp_context; 7223 } 7224 7225 rc = lpfc_sli_issue_iocb(phba, LPFC_ELS_RING, elsiocb, 0); 7226 if (rc == IOCB_ERROR) { 7227 lpfc_els_free_iocb(phba, elsiocb); 7228 lpfc_nlp_put(ndlp); 7229 } 7230 7231 free_rdp_context: 7232 /* This reference put is for the original unsolicited RDP. If the 7233 * prep failed, there is no reference to remove. 7234 */ 7235 lpfc_nlp_put(ndlp); 7236 kfree(rdp_context); 7237 } 7238 7239 static int 7240 lpfc_get_rdp_info(struct lpfc_hba *phba, struct lpfc_rdp_context *rdp_context) 7241 { 7242 LPFC_MBOXQ_t *mbox = NULL; 7243 int rc; 7244 7245 mbox = mempool_alloc(phba->mbox_mem_pool, GFP_KERNEL); 7246 if (!mbox) { 7247 lpfc_printf_log(phba, KERN_WARNING, LOG_MBOX | LOG_ELS, 7248 "7105 failed to allocate mailbox memory"); 7249 return 1; 7250 } 7251 7252 if (lpfc_sli4_dump_page_a0(phba, mbox)) 7253 goto rdp_fail; 7254 mbox->vport = rdp_context->ndlp->vport; 7255 mbox->mbox_cmpl = lpfc_mbx_cmpl_rdp_page_a0; 7256 mbox->ctx_u.rdp = rdp_context; 7257 rc = lpfc_sli_issue_mbox(phba, mbox, MBX_NOWAIT); 7258 if (rc == MBX_NOT_FINISHED) { 7259 lpfc_mbox_rsrc_cleanup(phba, mbox, MBOX_THD_UNLOCKED); 7260 return 1; 7261 } 7262 7263 return 0; 7264 7265 rdp_fail: 7266 mempool_free(mbox, phba->mbox_mem_pool); 7267 return 1; 7268 } 7269 7270 int lpfc_get_sfp_info_wait(struct lpfc_hba *phba, 7271 struct lpfc_rdp_context *rdp_context) 7272 { 7273 LPFC_MBOXQ_t *mbox = NULL; 7274 int rc; 7275 struct lpfc_dmabuf *mp; 7276 struct lpfc_dmabuf *mpsave; 7277 void *virt; 7278 MAILBOX_t *mb; 7279 7280 mbox = mempool_alloc(phba->mbox_mem_pool, GFP_KERNEL); 7281 if (!mbox) { 7282 lpfc_printf_log(phba, KERN_WARNING, LOG_MBOX | LOG_ELS, 7283 "7205 failed to allocate mailbox memory"); 7284 return 1; 7285 } 7286 7287 if (lpfc_sli4_dump_page_a0(phba, mbox)) 7288 goto sfp_fail; 7289 mp = mbox->ctx_buf; 7290 mpsave = mp; 7291 virt = mp->virt; 7292 if (phba->sli_rev < LPFC_SLI_REV4) { 7293 mb = &mbox->u.mb; 7294 mb->un.varDmp.cv = 1; 7295 mb->un.varDmp.co = 1; 7296 mb->un.varWords[2] = 0; 7297 mb->un.varWords[3] = DMP_SFF_PAGE_A0_SIZE / 4; 7298 mb->un.varWords[4] = 0; 7299 mb->un.varWords[5] = 0; 7300 mb->un.varWords[6] = 0; 7301 mb->un.varWords[7] = 0; 7302 mb->un.varWords[8] = 0; 7303 mb->un.varWords[9] = 0; 7304 mb->un.varWords[10] = 0; 7305 mbox->in_ext_byte_len = DMP_SFF_PAGE_A0_SIZE; 7306 mbox->out_ext_byte_len = DMP_SFF_PAGE_A0_SIZE; 7307 mbox->mbox_offset_word = 5; 7308 mbox->ext_buf = virt; 7309 } else { 7310 bf_set(lpfc_mbx_memory_dump_type3_length, 7311 &mbox->u.mqe.un.mem_dump_type3, DMP_SFF_PAGE_A0_SIZE); 7312 mbox->u.mqe.un.mem_dump_type3.addr_lo = putPaddrLow(mp->phys); 7313 mbox->u.mqe.un.mem_dump_type3.addr_hi = putPaddrHigh(mp->phys); 7314 } 7315 mbox->vport = phba->pport; 7316 rc = lpfc_sli_issue_mbox_wait(phba, mbox, LPFC_MBOX_SLI4_CONFIG_TMO); 7317 if (rc == MBX_NOT_FINISHED) { 7318 rc = 1; 7319 goto error; 7320 } 7321 if (rc == MBX_TIMEOUT) 7322 goto error; 7323 if (phba->sli_rev == LPFC_SLI_REV4) 7324 mp = mbox->ctx_buf; 7325 else 7326 mp = mpsave; 7327 7328 if (bf_get(lpfc_mqe_status, &mbox->u.mqe)) { 7329 rc = 1; 7330 goto error; 7331 } 7332 7333 lpfc_sli_bemem_bcopy(mp->virt, &rdp_context->page_a0, 7334 DMP_SFF_PAGE_A0_SIZE); 7335 7336 memset(mbox, 0, sizeof(*mbox)); 7337 memset(mp->virt, 0, DMP_SFF_PAGE_A2_SIZE); 7338 INIT_LIST_HEAD(&mp->list); 7339 7340 /* save address for completion */ 7341 mbox->ctx_buf = mp; 7342 mbox->vport = phba->pport; 7343 7344 bf_set(lpfc_mqe_command, &mbox->u.mqe, MBX_DUMP_MEMORY); 7345 bf_set(lpfc_mbx_memory_dump_type3_type, 7346 &mbox->u.mqe.un.mem_dump_type3, DMP_LMSD); 7347 bf_set(lpfc_mbx_memory_dump_type3_link, 7348 &mbox->u.mqe.un.mem_dump_type3, phba->sli4_hba.physical_port); 7349 bf_set(lpfc_mbx_memory_dump_type3_page_no, 7350 &mbox->u.mqe.un.mem_dump_type3, DMP_PAGE_A2); 7351 if (phba->sli_rev < LPFC_SLI_REV4) { 7352 mb = &mbox->u.mb; 7353 mb->un.varDmp.cv = 1; 7354 mb->un.varDmp.co = 1; 7355 mb->un.varWords[2] = 0; 7356 mb->un.varWords[3] = DMP_SFF_PAGE_A2_SIZE / 4; 7357 mb->un.varWords[4] = 0; 7358 mb->un.varWords[5] = 0; 7359 mb->un.varWords[6] = 0; 7360 mb->un.varWords[7] = 0; 7361 mb->un.varWords[8] = 0; 7362 mb->un.varWords[9] = 0; 7363 mb->un.varWords[10] = 0; 7364 mbox->in_ext_byte_len = DMP_SFF_PAGE_A2_SIZE; 7365 mbox->out_ext_byte_len = DMP_SFF_PAGE_A2_SIZE; 7366 mbox->mbox_offset_word = 5; 7367 mbox->ext_buf = virt; 7368 } else { 7369 bf_set(lpfc_mbx_memory_dump_type3_length, 7370 &mbox->u.mqe.un.mem_dump_type3, DMP_SFF_PAGE_A2_SIZE); 7371 mbox->u.mqe.un.mem_dump_type3.addr_lo = putPaddrLow(mp->phys); 7372 mbox->u.mqe.un.mem_dump_type3.addr_hi = putPaddrHigh(mp->phys); 7373 } 7374 7375 rc = lpfc_sli_issue_mbox_wait(phba, mbox, LPFC_MBOX_SLI4_CONFIG_TMO); 7376 7377 if (rc == MBX_TIMEOUT) 7378 goto error; 7379 if (bf_get(lpfc_mqe_status, &mbox->u.mqe)) { 7380 rc = 1; 7381 goto error; 7382 } 7383 rc = 0; 7384 7385 lpfc_sli_bemem_bcopy(mp->virt, &rdp_context->page_a2, 7386 DMP_SFF_PAGE_A2_SIZE); 7387 7388 error: 7389 if (mbox->mbox_flag & LPFC_MBX_WAKE) { 7390 mbox->ctx_buf = mpsave; 7391 lpfc_mbox_rsrc_cleanup(phba, mbox, MBOX_THD_UNLOCKED); 7392 } 7393 7394 return rc; 7395 7396 sfp_fail: 7397 mempool_free(mbox, phba->mbox_mem_pool); 7398 return 1; 7399 } 7400 7401 /* 7402 * lpfc_els_rcv_rdp - Process an unsolicited RDP ELS. 7403 * @vport: pointer to a host virtual N_Port data structure. 7404 * @cmdiocb: pointer to lpfc command iocb data structure. 7405 * @ndlp: pointer to a node-list data structure. 7406 * 7407 * This routine processes an unsolicited RDP(Read Diagnostic Parameters) 7408 * IOCB. First, the payload of the unsolicited RDP is checked. 7409 * Then it will (1) send MBX_DUMP_MEMORY, Embedded DMP_LMSD sub command TYPE-3 7410 * for Page A0, (2) send MBX_DUMP_MEMORY, DMP_LMSD for Page A2, 7411 * (3) send MBX_READ_LNK_STAT to get link stat, (4) Call lpfc_els_rdp_cmpl 7412 * gather all data and send RDP response. 7413 * 7414 * Return code 7415 * 0 - Sent the acc response 7416 * 1 - Sent the reject response. 7417 */ 7418 static int 7419 lpfc_els_rcv_rdp(struct lpfc_vport *vport, struct lpfc_iocbq *cmdiocb, 7420 struct lpfc_nodelist *ndlp) 7421 { 7422 struct lpfc_hba *phba = vport->phba; 7423 struct lpfc_dmabuf *pcmd; 7424 uint8_t rjt_err, rjt_expl = LSEXP_NOTHING_MORE; 7425 struct fc_rdp_req_frame *rdp_req; 7426 struct lpfc_rdp_context *rdp_context; 7427 union lpfc_wqe128 *cmd = NULL; 7428 struct ls_rjt stat; 7429 7430 if (phba->sli_rev < LPFC_SLI_REV4 || 7431 bf_get(lpfc_sli_intf_if_type, &phba->sli4_hba.sli_intf) < 7432 LPFC_SLI_INTF_IF_TYPE_2) { 7433 rjt_err = LSRJT_UNABLE_TPC; 7434 rjt_expl = LSEXP_REQ_UNSUPPORTED; 7435 goto error; 7436 } 7437 7438 if (phba->sli_rev < LPFC_SLI_REV4 || 7439 test_bit(HBA_FCOE_MODE, &phba->hba_flag)) { 7440 rjt_err = LSRJT_UNABLE_TPC; 7441 rjt_expl = LSEXP_REQ_UNSUPPORTED; 7442 goto error; 7443 } 7444 7445 pcmd = cmdiocb->cmd_dmabuf; 7446 rdp_req = (struct fc_rdp_req_frame *) pcmd->virt; 7447 7448 lpfc_printf_vlog(vport, KERN_INFO, LOG_ELS, 7449 "2422 ELS RDP Request " 7450 "dec len %d tag x%x port_id %d len %d\n", 7451 be32_to_cpu(rdp_req->rdp_des_length), 7452 be32_to_cpu(rdp_req->nport_id_desc.tag), 7453 be32_to_cpu(rdp_req->nport_id_desc.nport_id), 7454 be32_to_cpu(rdp_req->nport_id_desc.length)); 7455 7456 if (sizeof(struct fc_rdp_nport_desc) != 7457 be32_to_cpu(rdp_req->rdp_des_length)) 7458 goto rjt_logerr; 7459 if (RDP_N_PORT_DESC_TAG != be32_to_cpu(rdp_req->nport_id_desc.tag)) 7460 goto rjt_logerr; 7461 if (RDP_NPORT_ID_SIZE != 7462 be32_to_cpu(rdp_req->nport_id_desc.length)) 7463 goto rjt_logerr; 7464 rdp_context = kzalloc(sizeof(struct lpfc_rdp_context), GFP_KERNEL); 7465 if (!rdp_context) { 7466 rjt_err = LSRJT_UNABLE_TPC; 7467 goto error; 7468 } 7469 7470 cmd = &cmdiocb->wqe; 7471 rdp_context->ndlp = lpfc_nlp_get(ndlp); 7472 if (!rdp_context->ndlp) { 7473 kfree(rdp_context); 7474 rjt_err = LSRJT_UNABLE_TPC; 7475 goto error; 7476 } 7477 rdp_context->ox_id = bf_get(wqe_rcvoxid, 7478 &cmd->xmit_els_rsp.wqe_com); 7479 rdp_context->rx_id = bf_get(wqe_ctxt_tag, 7480 &cmd->xmit_els_rsp.wqe_com); 7481 rdp_context->cmpl = lpfc_els_rdp_cmpl; 7482 if (lpfc_get_rdp_info(phba, rdp_context)) { 7483 lpfc_printf_vlog(ndlp->vport, KERN_WARNING, LOG_ELS, 7484 "2423 Unable to send mailbox"); 7485 kfree(rdp_context); 7486 rjt_err = LSRJT_UNABLE_TPC; 7487 lpfc_nlp_put(ndlp); 7488 goto error; 7489 } 7490 7491 return 0; 7492 7493 rjt_logerr: 7494 rjt_err = LSRJT_LOGICAL_ERR; 7495 7496 error: 7497 memset(&stat, 0, sizeof(stat)); 7498 stat.un.b.lsRjtRsnCode = rjt_err; 7499 stat.un.b.lsRjtRsnCodeExp = rjt_expl; 7500 lpfc_els_rsp_reject(vport, stat.un.lsRjtError, cmdiocb, ndlp, NULL); 7501 return 1; 7502 } 7503 7504 7505 static void 7506 lpfc_els_lcb_rsp(struct lpfc_hba *phba, LPFC_MBOXQ_t *pmb) 7507 { 7508 MAILBOX_t *mb; 7509 IOCB_t *icmd; 7510 union lpfc_wqe128 *wqe; 7511 uint8_t *pcmd; 7512 struct lpfc_iocbq *elsiocb; 7513 struct lpfc_nodelist *ndlp; 7514 struct ls_rjt *stat; 7515 union lpfc_sli4_cfg_shdr *shdr; 7516 struct lpfc_lcb_context *lcb_context; 7517 struct fc_lcb_res_frame *lcb_res; 7518 uint32_t cmdsize, shdr_status, shdr_add_status; 7519 int rc; 7520 7521 mb = &pmb->u.mb; 7522 lcb_context = pmb->ctx_u.lcb; 7523 ndlp = lcb_context->ndlp; 7524 memset(&pmb->ctx_u, 0, sizeof(pmb->ctx_u)); 7525 pmb->ctx_buf = NULL; 7526 7527 shdr = (union lpfc_sli4_cfg_shdr *) 7528 &pmb->u.mqe.un.beacon_config.header.cfg_shdr; 7529 shdr_status = bf_get(lpfc_mbox_hdr_status, &shdr->response); 7530 shdr_add_status = bf_get(lpfc_mbox_hdr_add_status, &shdr->response); 7531 7532 lpfc_printf_log(phba, KERN_INFO, LOG_MBOX, 7533 "0194 SET_BEACON_CONFIG mailbox " 7534 "completed with status x%x add_status x%x," 7535 " mbx status x%x\n", 7536 shdr_status, shdr_add_status, mb->mbxStatus); 7537 7538 if ((mb->mbxStatus != MBX_SUCCESS) || shdr_status || 7539 (shdr_add_status == ADD_STATUS_OPERATION_ALREADY_ACTIVE) || 7540 (shdr_add_status == ADD_STATUS_INVALID_REQUEST)) { 7541 mempool_free(pmb, phba->mbox_mem_pool); 7542 goto error; 7543 } 7544 7545 mempool_free(pmb, phba->mbox_mem_pool); 7546 cmdsize = sizeof(struct fc_lcb_res_frame); 7547 elsiocb = lpfc_prep_els_iocb(phba->pport, 0, cmdsize, 7548 lpfc_max_els_tries, ndlp, 7549 ndlp->nlp_DID, ELS_CMD_ACC); 7550 7551 /* Decrement the ndlp reference count from previous mbox command */ 7552 lpfc_nlp_put(ndlp); 7553 7554 if (!elsiocb) 7555 goto free_lcb_context; 7556 7557 lcb_res = (struct fc_lcb_res_frame *)elsiocb->cmd_dmabuf->virt; 7558 7559 memset(lcb_res, 0, sizeof(struct fc_lcb_res_frame)); 7560 7561 if (phba->sli_rev == LPFC_SLI_REV4) { 7562 wqe = &elsiocb->wqe; 7563 bf_set(wqe_ctxt_tag, &wqe->generic.wqe_com, lcb_context->rx_id); 7564 bf_set(wqe_rcvoxid, &wqe->xmit_els_rsp.wqe_com, 7565 lcb_context->ox_id); 7566 } else { 7567 icmd = &elsiocb->iocb; 7568 icmd->ulpContext = lcb_context->rx_id; 7569 icmd->unsli3.rcvsli3.ox_id = lcb_context->ox_id; 7570 } 7571 7572 pcmd = (uint8_t *)elsiocb->cmd_dmabuf->virt; 7573 *((uint32_t *)(pcmd)) = ELS_CMD_ACC; 7574 lcb_res->lcb_sub_command = lcb_context->sub_command; 7575 lcb_res->lcb_type = lcb_context->type; 7576 lcb_res->capability = lcb_context->capability; 7577 lcb_res->lcb_frequency = lcb_context->frequency; 7578 lcb_res->lcb_duration = lcb_context->duration; 7579 elsiocb->cmd_cmpl = lpfc_cmpl_els_rsp; 7580 phba->fc_stat.elsXmitACC++; 7581 7582 elsiocb->ndlp = lpfc_nlp_get(ndlp); 7583 if (!elsiocb->ndlp) { 7584 lpfc_els_free_iocb(phba, elsiocb); 7585 goto out; 7586 } 7587 7588 rc = lpfc_sli_issue_iocb(phba, LPFC_ELS_RING, elsiocb, 0); 7589 if (rc == IOCB_ERROR) { 7590 lpfc_els_free_iocb(phba, elsiocb); 7591 lpfc_nlp_put(ndlp); 7592 } 7593 out: 7594 kfree(lcb_context); 7595 return; 7596 7597 error: 7598 cmdsize = sizeof(struct fc_lcb_res_frame); 7599 elsiocb = lpfc_prep_els_iocb(phba->pport, 0, cmdsize, 7600 lpfc_max_els_tries, ndlp, 7601 ndlp->nlp_DID, ELS_CMD_LS_RJT); 7602 lpfc_nlp_put(ndlp); 7603 if (!elsiocb) 7604 goto free_lcb_context; 7605 7606 if (phba->sli_rev == LPFC_SLI_REV4) { 7607 wqe = &elsiocb->wqe; 7608 bf_set(wqe_ctxt_tag, &wqe->generic.wqe_com, lcb_context->rx_id); 7609 bf_set(wqe_rcvoxid, &wqe->xmit_els_rsp.wqe_com, 7610 lcb_context->ox_id); 7611 } else { 7612 icmd = &elsiocb->iocb; 7613 icmd->ulpContext = lcb_context->rx_id; 7614 icmd->unsli3.rcvsli3.ox_id = lcb_context->ox_id; 7615 } 7616 7617 pcmd = (uint8_t *)elsiocb->cmd_dmabuf->virt; 7618 7619 *((uint32_t *)(pcmd)) = ELS_CMD_LS_RJT; 7620 stat = (struct ls_rjt *)(pcmd + sizeof(uint32_t)); 7621 stat->un.b.lsRjtRsnCode = LSRJT_UNABLE_TPC; 7622 7623 if (shdr_add_status == ADD_STATUS_OPERATION_ALREADY_ACTIVE) 7624 stat->un.b.lsRjtRsnCodeExp = LSEXP_CMD_IN_PROGRESS; 7625 7626 elsiocb->cmd_cmpl = lpfc_cmpl_els_rsp; 7627 phba->fc_stat.elsXmitLSRJT++; 7628 elsiocb->ndlp = lpfc_nlp_get(ndlp); 7629 if (!elsiocb->ndlp) { 7630 lpfc_els_free_iocb(phba, elsiocb); 7631 goto free_lcb_context; 7632 } 7633 7634 rc = lpfc_sli_issue_iocb(phba, LPFC_ELS_RING, elsiocb, 0); 7635 if (rc == IOCB_ERROR) { 7636 lpfc_els_free_iocb(phba, elsiocb); 7637 lpfc_nlp_put(ndlp); 7638 } 7639 free_lcb_context: 7640 kfree(lcb_context); 7641 } 7642 7643 static int 7644 lpfc_sli4_set_beacon(struct lpfc_vport *vport, 7645 struct lpfc_lcb_context *lcb_context, 7646 uint32_t beacon_state) 7647 { 7648 struct lpfc_hba *phba = vport->phba; 7649 union lpfc_sli4_cfg_shdr *cfg_shdr; 7650 LPFC_MBOXQ_t *mbox = NULL; 7651 uint32_t len; 7652 int rc; 7653 7654 mbox = mempool_alloc(phba->mbox_mem_pool, GFP_KERNEL); 7655 if (!mbox) 7656 return 1; 7657 7658 cfg_shdr = &mbox->u.mqe.un.sli4_config.header.cfg_shdr; 7659 len = sizeof(struct lpfc_mbx_set_beacon_config) - 7660 sizeof(struct lpfc_sli4_cfg_mhdr); 7661 lpfc_sli4_config(phba, mbox, LPFC_MBOX_SUBSYSTEM_COMMON, 7662 LPFC_MBOX_OPCODE_SET_BEACON_CONFIG, len, 7663 LPFC_SLI4_MBX_EMBED); 7664 mbox->ctx_u.lcb = lcb_context; 7665 mbox->vport = phba->pport; 7666 mbox->mbox_cmpl = lpfc_els_lcb_rsp; 7667 bf_set(lpfc_mbx_set_beacon_port_num, &mbox->u.mqe.un.beacon_config, 7668 phba->sli4_hba.physical_port); 7669 bf_set(lpfc_mbx_set_beacon_state, &mbox->u.mqe.un.beacon_config, 7670 beacon_state); 7671 mbox->u.mqe.un.beacon_config.word5 = 0; /* Reserved */ 7672 7673 /* 7674 * Check bv1s bit before issuing the mailbox 7675 * if bv1s == 1, LCB V1 supported 7676 * else, LCB V0 supported 7677 */ 7678 7679 if (phba->sli4_hba.pc_sli4_params.bv1s) { 7680 /* COMMON_SET_BEACON_CONFIG_V1 */ 7681 cfg_shdr->request.word9 = BEACON_VERSION_V1; 7682 lcb_context->capability |= LCB_CAPABILITY_DURATION; 7683 bf_set(lpfc_mbx_set_beacon_port_type, 7684 &mbox->u.mqe.un.beacon_config, 0); 7685 bf_set(lpfc_mbx_set_beacon_duration_v1, 7686 &mbox->u.mqe.un.beacon_config, 7687 be16_to_cpu(lcb_context->duration)); 7688 } else { 7689 /* COMMON_SET_BEACON_CONFIG_V0 */ 7690 if (be16_to_cpu(lcb_context->duration) != 0) { 7691 mempool_free(mbox, phba->mbox_mem_pool); 7692 return 1; 7693 } 7694 cfg_shdr->request.word9 = BEACON_VERSION_V0; 7695 lcb_context->capability &= ~(LCB_CAPABILITY_DURATION); 7696 bf_set(lpfc_mbx_set_beacon_state, 7697 &mbox->u.mqe.un.beacon_config, beacon_state); 7698 bf_set(lpfc_mbx_set_beacon_port_type, 7699 &mbox->u.mqe.un.beacon_config, 1); 7700 bf_set(lpfc_mbx_set_beacon_duration, 7701 &mbox->u.mqe.un.beacon_config, 7702 be16_to_cpu(lcb_context->duration)); 7703 } 7704 7705 rc = lpfc_sli_issue_mbox(phba, mbox, MBX_NOWAIT); 7706 if (rc == MBX_NOT_FINISHED) { 7707 mempool_free(mbox, phba->mbox_mem_pool); 7708 return 1; 7709 } 7710 7711 return 0; 7712 } 7713 7714 7715 /** 7716 * lpfc_els_rcv_lcb - Process an unsolicited LCB 7717 * @vport: pointer to a host virtual N_Port data structure. 7718 * @cmdiocb: pointer to lpfc command iocb data structure. 7719 * @ndlp: pointer to a node-list data structure. 7720 * 7721 * This routine processes an unsolicited LCB(LINK CABLE BEACON) IOCB. 7722 * First, the payload of the unsolicited LCB is checked. 7723 * Then based on Subcommand beacon will either turn on or off. 7724 * 7725 * Return code 7726 * 0 - Sent the acc response 7727 * 1 - Sent the reject response. 7728 **/ 7729 static int 7730 lpfc_els_rcv_lcb(struct lpfc_vport *vport, struct lpfc_iocbq *cmdiocb, 7731 struct lpfc_nodelist *ndlp) 7732 { 7733 struct lpfc_hba *phba = vport->phba; 7734 struct lpfc_dmabuf *pcmd; 7735 uint8_t *lp; 7736 struct fc_lcb_request_frame *beacon; 7737 struct lpfc_lcb_context *lcb_context; 7738 u8 state, rjt_err = 0; 7739 struct ls_rjt stat; 7740 7741 pcmd = cmdiocb->cmd_dmabuf; 7742 lp = (uint8_t *)pcmd->virt; 7743 beacon = (struct fc_lcb_request_frame *)pcmd->virt; 7744 7745 lpfc_printf_vlog(vport, KERN_INFO, LOG_ELS, 7746 "0192 ELS LCB Data x%x x%x x%x x%x sub x%x " 7747 "type x%x frequency %x duration x%x\n", 7748 lp[0], lp[1], lp[2], 7749 beacon->lcb_command, 7750 beacon->lcb_sub_command, 7751 beacon->lcb_type, 7752 beacon->lcb_frequency, 7753 be16_to_cpu(beacon->lcb_duration)); 7754 7755 if (beacon->lcb_sub_command != LPFC_LCB_ON && 7756 beacon->lcb_sub_command != LPFC_LCB_OFF) { 7757 rjt_err = LSRJT_CMD_UNSUPPORTED; 7758 goto rjt; 7759 } 7760 7761 if (phba->sli_rev < LPFC_SLI_REV4 || 7762 test_bit(HBA_FCOE_MODE, &phba->hba_flag) || 7763 (bf_get(lpfc_sli_intf_if_type, &phba->sli4_hba.sli_intf) < 7764 LPFC_SLI_INTF_IF_TYPE_2)) { 7765 rjt_err = LSRJT_CMD_UNSUPPORTED; 7766 goto rjt; 7767 } 7768 7769 lcb_context = kmalloc(sizeof(*lcb_context), GFP_KERNEL); 7770 if (!lcb_context) { 7771 rjt_err = LSRJT_UNABLE_TPC; 7772 goto rjt; 7773 } 7774 7775 state = (beacon->lcb_sub_command == LPFC_LCB_ON) ? 1 : 0; 7776 lcb_context->sub_command = beacon->lcb_sub_command; 7777 lcb_context->capability = 0; 7778 lcb_context->type = beacon->lcb_type; 7779 lcb_context->frequency = beacon->lcb_frequency; 7780 lcb_context->duration = beacon->lcb_duration; 7781 lcb_context->ox_id = get_job_rcvoxid(phba, cmdiocb); 7782 lcb_context->rx_id = get_job_ulpcontext(phba, cmdiocb); 7783 lcb_context->ndlp = lpfc_nlp_get(ndlp); 7784 if (!lcb_context->ndlp) { 7785 rjt_err = LSRJT_UNABLE_TPC; 7786 goto rjt_free; 7787 } 7788 7789 if (lpfc_sli4_set_beacon(vport, lcb_context, state)) { 7790 lpfc_printf_vlog(ndlp->vport, KERN_ERR, LOG_TRACE_EVENT, 7791 "0193 failed to send mail box"); 7792 lpfc_nlp_put(ndlp); 7793 rjt_err = LSRJT_UNABLE_TPC; 7794 goto rjt_free; 7795 } 7796 return 0; 7797 7798 rjt_free: 7799 kfree(lcb_context); 7800 rjt: 7801 memset(&stat, 0, sizeof(stat)); 7802 stat.un.b.lsRjtRsnCode = rjt_err; 7803 lpfc_els_rsp_reject(vport, stat.un.lsRjtError, cmdiocb, ndlp, NULL); 7804 return 1; 7805 } 7806 7807 7808 /** 7809 * lpfc_els_flush_rscn - Clean up any rscn activities with a vport 7810 * @vport: pointer to a host virtual N_Port data structure. 7811 * 7812 * This routine cleans up any Registration State Change Notification 7813 * (RSCN) activity with a @vport. Note that the fc_rscn_flush flag of the 7814 * @vport together with the host_lock is used to prevent multiple thread 7815 * trying to access the RSCN array on a same @vport at the same time. 7816 **/ 7817 void 7818 lpfc_els_flush_rscn(struct lpfc_vport *vport) 7819 { 7820 struct Scsi_Host *shost = lpfc_shost_from_vport(vport); 7821 struct lpfc_hba *phba = vport->phba; 7822 int i; 7823 7824 spin_lock_irq(shost->host_lock); 7825 if (vport->fc_rscn_flush) { 7826 /* Another thread is walking fc_rscn_id_list on this vport */ 7827 spin_unlock_irq(shost->host_lock); 7828 return; 7829 } 7830 /* Indicate we are walking lpfc_els_flush_rscn on this vport */ 7831 vport->fc_rscn_flush = 1; 7832 spin_unlock_irq(shost->host_lock); 7833 7834 for (i = 0; i < vport->fc_rscn_id_cnt; i++) { 7835 lpfc_in_buf_free(phba, vport->fc_rscn_id_list[i]); 7836 vport->fc_rscn_id_list[i] = NULL; 7837 } 7838 clear_bit(FC_RSCN_MODE, &vport->fc_flag); 7839 clear_bit(FC_RSCN_DISCOVERY, &vport->fc_flag); 7840 spin_lock_irq(shost->host_lock); 7841 vport->fc_rscn_id_cnt = 0; 7842 spin_unlock_irq(shost->host_lock); 7843 lpfc_can_disctmo(vport); 7844 /* Indicate we are done walking this fc_rscn_id_list */ 7845 vport->fc_rscn_flush = 0; 7846 } 7847 7848 /** 7849 * lpfc_rscn_payload_check - Check whether there is a pending rscn to a did 7850 * @vport: pointer to a host virtual N_Port data structure. 7851 * @did: remote destination port identifier. 7852 * 7853 * This routine checks whether there is any pending Registration State 7854 * Configuration Notification (RSCN) to a @did on @vport. 7855 * 7856 * Return code 7857 * None zero - The @did matched with a pending rscn 7858 * 0 - not able to match @did with a pending rscn 7859 **/ 7860 int 7861 lpfc_rscn_payload_check(struct lpfc_vport *vport, uint32_t did) 7862 { 7863 D_ID ns_did; 7864 D_ID rscn_did; 7865 uint32_t *lp; 7866 uint32_t payload_len, i; 7867 struct Scsi_Host *shost = lpfc_shost_from_vport(vport); 7868 7869 ns_did.un.word = did; 7870 7871 /* Never match fabric nodes for RSCNs */ 7872 if ((did & Fabric_DID_MASK) == Fabric_DID_MASK) 7873 return 0; 7874 7875 /* If we are doing a FULL RSCN rediscovery, match everything */ 7876 if (test_bit(FC_RSCN_DISCOVERY, &vport->fc_flag)) 7877 return did; 7878 7879 spin_lock_irq(shost->host_lock); 7880 if (vport->fc_rscn_flush) { 7881 /* Another thread is walking fc_rscn_id_list on this vport */ 7882 spin_unlock_irq(shost->host_lock); 7883 return 0; 7884 } 7885 /* Indicate we are walking fc_rscn_id_list on this vport */ 7886 vport->fc_rscn_flush = 1; 7887 spin_unlock_irq(shost->host_lock); 7888 for (i = 0; i < vport->fc_rscn_id_cnt; i++) { 7889 lp = vport->fc_rscn_id_list[i]->virt; 7890 payload_len = be32_to_cpu(*lp++ & ~ELS_CMD_MASK); 7891 payload_len -= sizeof(uint32_t); /* take off word 0 */ 7892 while (payload_len) { 7893 rscn_did.un.word = be32_to_cpu(*lp++); 7894 payload_len -= sizeof(uint32_t); 7895 switch (rscn_did.un.b.resv & RSCN_ADDRESS_FORMAT_MASK) { 7896 case RSCN_ADDRESS_FORMAT_PORT: 7897 if ((ns_did.un.b.domain == rscn_did.un.b.domain) 7898 && (ns_did.un.b.area == rscn_did.un.b.area) 7899 && (ns_did.un.b.id == rscn_did.un.b.id)) 7900 goto return_did_out; 7901 break; 7902 case RSCN_ADDRESS_FORMAT_AREA: 7903 if ((ns_did.un.b.domain == rscn_did.un.b.domain) 7904 && (ns_did.un.b.area == rscn_did.un.b.area)) 7905 goto return_did_out; 7906 break; 7907 case RSCN_ADDRESS_FORMAT_DOMAIN: 7908 if (ns_did.un.b.domain == rscn_did.un.b.domain) 7909 goto return_did_out; 7910 break; 7911 case RSCN_ADDRESS_FORMAT_FABRIC: 7912 goto return_did_out; 7913 } 7914 } 7915 } 7916 /* Indicate we are done with walking fc_rscn_id_list on this vport */ 7917 vport->fc_rscn_flush = 0; 7918 return 0; 7919 return_did_out: 7920 /* Indicate we are done with walking fc_rscn_id_list on this vport */ 7921 vport->fc_rscn_flush = 0; 7922 return did; 7923 } 7924 7925 /** 7926 * lpfc_rscn_recovery_check - Send recovery event to vport nodes matching rscn 7927 * @vport: pointer to a host virtual N_Port data structure. 7928 * 7929 * This routine sends recovery (NLP_EVT_DEVICE_RECOVERY) event to the 7930 * state machine for a @vport's nodes that are with pending RSCN (Registration 7931 * State Change Notification). 7932 * 7933 * Return code 7934 * 0 - Successful (currently alway return 0) 7935 **/ 7936 static int 7937 lpfc_rscn_recovery_check(struct lpfc_vport *vport) 7938 { 7939 struct lpfc_nodelist *ndlp = NULL, *n; 7940 7941 /* Move all affected nodes by pending RSCNs to NPR state. */ 7942 list_for_each_entry_safe(ndlp, n, &vport->fc_nodes, nlp_listp) { 7943 if ((ndlp->nlp_state == NLP_STE_UNUSED_NODE) || 7944 !lpfc_rscn_payload_check(vport, ndlp->nlp_DID)) 7945 continue; 7946 7947 /* NVME Target mode does not do RSCN Recovery. */ 7948 if (vport->phba->nvmet_support) 7949 continue; 7950 7951 /* If we are in the process of doing discovery on this 7952 * NPort, let it continue on its own. 7953 */ 7954 switch (ndlp->nlp_state) { 7955 case NLP_STE_PLOGI_ISSUE: 7956 case NLP_STE_ADISC_ISSUE: 7957 case NLP_STE_REG_LOGIN_ISSUE: 7958 case NLP_STE_PRLI_ISSUE: 7959 case NLP_STE_LOGO_ISSUE: 7960 continue; 7961 } 7962 7963 lpfc_disc_state_machine(vport, ndlp, NULL, 7964 NLP_EVT_DEVICE_RECOVERY); 7965 lpfc_cancel_retry_delay_tmo(vport, ndlp); 7966 } 7967 return 0; 7968 } 7969 7970 /** 7971 * lpfc_send_rscn_event - Send an RSCN event to management application 7972 * @vport: pointer to a host virtual N_Port data structure. 7973 * @cmdiocb: pointer to lpfc command iocb data structure. 7974 * 7975 * lpfc_send_rscn_event sends an RSCN netlink event to management 7976 * applications. 7977 */ 7978 static void 7979 lpfc_send_rscn_event(struct lpfc_vport *vport, 7980 struct lpfc_iocbq *cmdiocb) 7981 { 7982 struct lpfc_dmabuf *pcmd; 7983 struct Scsi_Host *shost = lpfc_shost_from_vport(vport); 7984 uint32_t *payload_ptr; 7985 uint32_t payload_len; 7986 struct lpfc_rscn_event_header *rscn_event_data; 7987 7988 pcmd = cmdiocb->cmd_dmabuf; 7989 payload_ptr = (uint32_t *) pcmd->virt; 7990 payload_len = be32_to_cpu(*payload_ptr & ~ELS_CMD_MASK); 7991 7992 rscn_event_data = kmalloc(sizeof(struct lpfc_rscn_event_header) + 7993 payload_len, GFP_KERNEL); 7994 if (!rscn_event_data) { 7995 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT, 7996 "0147 Failed to allocate memory for RSCN event\n"); 7997 return; 7998 } 7999 rscn_event_data->event_type = FC_REG_RSCN_EVENT; 8000 rscn_event_data->payload_length = payload_len; 8001 memcpy(rscn_event_data->rscn_payload, payload_ptr, 8002 payload_len); 8003 8004 fc_host_post_vendor_event(shost, 8005 fc_get_event_number(), 8006 sizeof(struct lpfc_rscn_event_header) + payload_len, 8007 (char *)rscn_event_data, 8008 LPFC_NL_VENDOR_ID); 8009 8010 kfree(rscn_event_data); 8011 } 8012 8013 /** 8014 * lpfc_els_rcv_rscn - Process an unsolicited rscn iocb 8015 * @vport: pointer to a host virtual N_Port data structure. 8016 * @cmdiocb: pointer to lpfc command iocb data structure. 8017 * @ndlp: pointer to a node-list data structure. 8018 * 8019 * This routine processes an unsolicited RSCN (Registration State Change 8020 * Notification) IOCB. First, the payload of the unsolicited RSCN is walked 8021 * to invoke fc_host_post_event() routine to the FC transport layer. If the 8022 * discover state machine is about to begin discovery, it just accepts the 8023 * RSCN and the discovery process will satisfy the RSCN. If this RSCN only 8024 * contains N_Port IDs for other vports on this HBA, it just accepts the 8025 * RSCN and ignore processing it. If the state machine is in the recovery 8026 * state, the fc_rscn_id_list of this @vport is walked and the 8027 * lpfc_rscn_recovery_check() routine is invoked to send recovery event for 8028 * all nodes that match RSCN payload. Otherwise, the lpfc_els_handle_rscn() 8029 * routine is invoked to handle the RSCN event. 8030 * 8031 * Return code 8032 * 0 - Just sent the acc response 8033 * 1 - Sent the acc response and waited for name server completion 8034 **/ 8035 static int 8036 lpfc_els_rcv_rscn(struct lpfc_vport *vport, struct lpfc_iocbq *cmdiocb, 8037 struct lpfc_nodelist *ndlp) 8038 { 8039 struct Scsi_Host *shost = lpfc_shost_from_vport(vport); 8040 struct lpfc_hba *phba = vport->phba; 8041 struct lpfc_dmabuf *pcmd; 8042 uint32_t *lp, *datap; 8043 uint32_t payload_len, length, nportid, *cmd; 8044 int rscn_cnt; 8045 int rscn_id = 0, hba_id = 0; 8046 int i, tmo; 8047 8048 pcmd = cmdiocb->cmd_dmabuf; 8049 lp = (uint32_t *) pcmd->virt; 8050 8051 payload_len = be32_to_cpu(*lp++ & ~ELS_CMD_MASK); 8052 payload_len -= sizeof(uint32_t); /* take off word 0 */ 8053 /* RSCN received */ 8054 lpfc_printf_vlog(vport, KERN_INFO, LOG_DISCOVERY, 8055 "0214 RSCN received Data: x%lx x%x x%x x%x\n", 8056 vport->fc_flag, payload_len, *lp, 8057 vport->fc_rscn_id_cnt); 8058 8059 /* Send an RSCN event to the management application */ 8060 lpfc_send_rscn_event(vport, cmdiocb); 8061 8062 for (i = 0; i < payload_len/sizeof(uint32_t); i++) 8063 fc_host_post_event(shost, fc_get_event_number(), 8064 FCH_EVT_RSCN, lp[i]); 8065 8066 /* Check if RSCN is coming from a direct-connected remote NPort */ 8067 if (test_bit(FC_PT2PT, &vport->fc_flag)) { 8068 /* If so, just ACC it, no other action needed for now */ 8069 lpfc_printf_vlog(vport, KERN_INFO, LOG_ELS, 8070 "2024 pt2pt RSCN %08x Data: x%lx x%x\n", 8071 *lp, vport->fc_flag, payload_len); 8072 lpfc_els_rsp_acc(vport, ELS_CMD_ACC, cmdiocb, ndlp, NULL); 8073 8074 /* Check to see if we need to NVME rescan this target 8075 * remoteport. 8076 */ 8077 if (ndlp->nlp_fc4_type & NLP_FC4_NVME && 8078 ndlp->nlp_type & (NLP_NVME_TARGET | NLP_NVME_DISCOVERY)) 8079 lpfc_nvme_rescan_port(vport, ndlp); 8080 return 0; 8081 } 8082 8083 /* If we are about to begin discovery, just ACC the RSCN. 8084 * Discovery processing will satisfy it. 8085 */ 8086 if (vport->port_state <= LPFC_NS_QRY) { 8087 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_UNSOL, 8088 "RCV RSCN ignore: did:x%x/ste:x%x flg:x%x", 8089 ndlp->nlp_DID, vport->port_state, ndlp->nlp_flag); 8090 8091 lpfc_els_rsp_acc(vport, ELS_CMD_ACC, cmdiocb, ndlp, NULL); 8092 return 0; 8093 } 8094 8095 /* If this RSCN just contains NPortIDs for other vports on this HBA, 8096 * just ACC and ignore it. 8097 */ 8098 if ((phba->sli3_options & LPFC_SLI3_NPIV_ENABLED) && 8099 !(vport->cfg_peer_port_login)) { 8100 i = payload_len; 8101 datap = lp; 8102 while (i > 0) { 8103 nportid = *datap++; 8104 nportid = ((be32_to_cpu(nportid)) & Mask_DID); 8105 i -= sizeof(uint32_t); 8106 rscn_id++; 8107 if (lpfc_find_vport_by_did(phba, nportid)) 8108 hba_id++; 8109 } 8110 if (rscn_id == hba_id) { 8111 /* ALL NPortIDs in RSCN are on HBA */ 8112 lpfc_printf_vlog(vport, KERN_INFO, LOG_DISCOVERY, 8113 "0219 Ignore RSCN " 8114 "Data: x%lx x%x x%x x%x\n", 8115 vport->fc_flag, payload_len, 8116 *lp, vport->fc_rscn_id_cnt); 8117 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_UNSOL, 8118 "RCV RSCN vport: did:x%x/ste:x%x flg:x%x", 8119 ndlp->nlp_DID, vport->port_state, 8120 ndlp->nlp_flag); 8121 8122 lpfc_els_rsp_acc(vport, ELS_CMD_ACC, cmdiocb, 8123 ndlp, NULL); 8124 /* Restart disctmo if its already running */ 8125 if (test_bit(FC_DISC_TMO, &vport->fc_flag)) { 8126 tmo = ((phba->fc_ratov * 3) + 3); 8127 mod_timer(&vport->fc_disctmo, 8128 jiffies + 8129 msecs_to_jiffies(1000 * tmo)); 8130 } 8131 return 0; 8132 } 8133 } 8134 8135 spin_lock_irq(shost->host_lock); 8136 if (vport->fc_rscn_flush) { 8137 /* Another thread is walking fc_rscn_id_list on this vport */ 8138 spin_unlock_irq(shost->host_lock); 8139 set_bit(FC_RSCN_DISCOVERY, &vport->fc_flag); 8140 /* Send back ACC */ 8141 lpfc_els_rsp_acc(vport, ELS_CMD_ACC, cmdiocb, ndlp, NULL); 8142 return 0; 8143 } 8144 /* Indicate we are walking fc_rscn_id_list on this vport */ 8145 vport->fc_rscn_flush = 1; 8146 spin_unlock_irq(shost->host_lock); 8147 /* Get the array count after successfully have the token */ 8148 rscn_cnt = vport->fc_rscn_id_cnt; 8149 /* If we are already processing an RSCN, save the received 8150 * RSCN payload buffer, cmdiocb->cmd_dmabuf to process later. 8151 */ 8152 if (test_bit(FC_RSCN_MODE, &vport->fc_flag) || 8153 test_bit(FC_NDISC_ACTIVE, &vport->fc_flag)) { 8154 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_UNSOL, 8155 "RCV RSCN defer: did:x%x/ste:x%x flg:x%x", 8156 ndlp->nlp_DID, vport->port_state, ndlp->nlp_flag); 8157 8158 set_bit(FC_RSCN_DEFERRED, &vport->fc_flag); 8159 8160 /* Restart disctmo if its already running */ 8161 if (test_bit(FC_DISC_TMO, &vport->fc_flag)) { 8162 tmo = ((phba->fc_ratov * 3) + 3); 8163 mod_timer(&vport->fc_disctmo, 8164 jiffies + msecs_to_jiffies(1000 * tmo)); 8165 } 8166 if ((rscn_cnt < FC_MAX_HOLD_RSCN) && 8167 !test_bit(FC_RSCN_DISCOVERY, &vport->fc_flag)) { 8168 set_bit(FC_RSCN_MODE, &vport->fc_flag); 8169 if (rscn_cnt) { 8170 cmd = vport->fc_rscn_id_list[rscn_cnt-1]->virt; 8171 length = be32_to_cpu(*cmd & ~ELS_CMD_MASK); 8172 } 8173 if ((rscn_cnt) && 8174 (payload_len + length <= LPFC_BPL_SIZE)) { 8175 *cmd &= ELS_CMD_MASK; 8176 *cmd |= cpu_to_be32(payload_len + length); 8177 memcpy(((uint8_t *)cmd) + length, lp, 8178 payload_len); 8179 } else { 8180 vport->fc_rscn_id_list[rscn_cnt] = pcmd; 8181 vport->fc_rscn_id_cnt++; 8182 /* If we zero, cmdiocb->cmd_dmabuf, the calling 8183 * routine will not try to free it. 8184 */ 8185 cmdiocb->cmd_dmabuf = NULL; 8186 } 8187 /* Deferred RSCN */ 8188 lpfc_printf_vlog(vport, KERN_INFO, LOG_DISCOVERY, 8189 "0235 Deferred RSCN " 8190 "Data: x%x x%lx x%x\n", 8191 vport->fc_rscn_id_cnt, vport->fc_flag, 8192 vport->port_state); 8193 } else { 8194 set_bit(FC_RSCN_DISCOVERY, &vport->fc_flag); 8195 /* ReDiscovery RSCN */ 8196 lpfc_printf_vlog(vport, KERN_INFO, LOG_DISCOVERY, 8197 "0234 ReDiscovery RSCN " 8198 "Data: x%x x%lx x%x\n", 8199 vport->fc_rscn_id_cnt, vport->fc_flag, 8200 vport->port_state); 8201 } 8202 /* Indicate we are done walking fc_rscn_id_list on this vport */ 8203 vport->fc_rscn_flush = 0; 8204 /* Send back ACC */ 8205 lpfc_els_rsp_acc(vport, ELS_CMD_ACC, cmdiocb, ndlp, NULL); 8206 /* send RECOVERY event for ALL nodes that match RSCN payload */ 8207 lpfc_rscn_recovery_check(vport); 8208 return 0; 8209 } 8210 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_UNSOL, 8211 "RCV RSCN: did:x%x/ste:x%x flg:x%x", 8212 ndlp->nlp_DID, vport->port_state, ndlp->nlp_flag); 8213 8214 set_bit(FC_RSCN_MODE, &vport->fc_flag); 8215 vport->fc_rscn_id_list[vport->fc_rscn_id_cnt++] = pcmd; 8216 /* Indicate we are done walking fc_rscn_id_list on this vport */ 8217 vport->fc_rscn_flush = 0; 8218 /* 8219 * If we zero, cmdiocb->cmd_dmabuf, the calling routine will 8220 * not try to free it. 8221 */ 8222 cmdiocb->cmd_dmabuf = NULL; 8223 lpfc_set_disctmo(vport); 8224 /* Send back ACC */ 8225 lpfc_els_rsp_acc(vport, ELS_CMD_ACC, cmdiocb, ndlp, NULL); 8226 /* send RECOVERY event for ALL nodes that match RSCN payload */ 8227 lpfc_rscn_recovery_check(vport); 8228 return lpfc_els_handle_rscn(vport); 8229 } 8230 8231 /** 8232 * lpfc_els_handle_rscn - Handle rscn for a vport 8233 * @vport: pointer to a host virtual N_Port data structure. 8234 * 8235 * This routine handles the Registration State Configuration Notification 8236 * (RSCN) for a @vport. If login to NameServer does not exist, a new ndlp shall 8237 * be created and a Port Login (PLOGI) to the NameServer is issued. Otherwise, 8238 * if the ndlp to NameServer exists, a Common Transport (CT) command to the 8239 * NameServer shall be issued. If CT command to the NameServer fails to be 8240 * issued, the lpfc_els_flush_rscn() routine shall be invoked to clean up any 8241 * RSCN activities with the @vport. 8242 * 8243 * Return code 8244 * 0 - Cleaned up rscn on the @vport 8245 * 1 - Wait for plogi to name server before proceed 8246 **/ 8247 int 8248 lpfc_els_handle_rscn(struct lpfc_vport *vport) 8249 { 8250 struct lpfc_nodelist *ndlp; 8251 struct lpfc_hba *phba = vport->phba; 8252 8253 /* Ignore RSCN if the port is being torn down. */ 8254 if (test_bit(FC_UNLOADING, &vport->load_flag)) { 8255 lpfc_els_flush_rscn(vport); 8256 return 0; 8257 } 8258 8259 /* Start timer for RSCN processing */ 8260 lpfc_set_disctmo(vport); 8261 8262 /* RSCN processed */ 8263 lpfc_printf_vlog(vport, KERN_INFO, LOG_DISCOVERY, 8264 "0215 RSCN processed Data: x%lx x%x x%x x%x x%x x%x\n", 8265 vport->fc_flag, 0, vport->fc_rscn_id_cnt, 8266 vport->port_state, vport->num_disc_nodes, 8267 vport->gidft_inp); 8268 8269 /* To process RSCN, first compare RSCN data with NameServer */ 8270 vport->fc_ns_retry = 0; 8271 vport->num_disc_nodes = 0; 8272 8273 ndlp = lpfc_findnode_did(vport, NameServer_DID); 8274 if (ndlp && ndlp->nlp_state == NLP_STE_UNMAPPED_NODE) { 8275 /* Good ndlp, issue CT Request to NameServer. Need to 8276 * know how many gidfts were issued. If none, then just 8277 * flush the RSCN. Otherwise, the outstanding requests 8278 * need to complete. 8279 */ 8280 if (phba->cfg_ns_query == LPFC_NS_QUERY_GID_FT) { 8281 if (lpfc_issue_gidft(vport) > 0) 8282 return 1; 8283 } else if (phba->cfg_ns_query == LPFC_NS_QUERY_GID_PT) { 8284 if (lpfc_issue_gidpt(vport) > 0) 8285 return 1; 8286 } else { 8287 return 1; 8288 } 8289 } else { 8290 /* Nameserver login in question. Revalidate. */ 8291 if (ndlp) { 8292 ndlp->nlp_prev_state = NLP_STE_UNUSED_NODE; 8293 lpfc_nlp_set_state(vport, ndlp, NLP_STE_PLOGI_ISSUE); 8294 } else { 8295 ndlp = lpfc_nlp_init(vport, NameServer_DID); 8296 if (!ndlp) { 8297 lpfc_els_flush_rscn(vport); 8298 return 0; 8299 } 8300 ndlp->nlp_prev_state = ndlp->nlp_state; 8301 lpfc_nlp_set_state(vport, ndlp, NLP_STE_PLOGI_ISSUE); 8302 } 8303 ndlp->nlp_type |= NLP_FABRIC; 8304 lpfc_issue_els_plogi(vport, NameServer_DID, 0); 8305 /* Wait for NameServer login cmpl before we can 8306 * continue 8307 */ 8308 return 1; 8309 } 8310 8311 lpfc_els_flush_rscn(vport); 8312 return 0; 8313 } 8314 8315 /** 8316 * lpfc_els_rcv_flogi - Process an unsolicited flogi iocb 8317 * @vport: pointer to a host virtual N_Port data structure. 8318 * @cmdiocb: pointer to lpfc command iocb data structure. 8319 * @ndlp: pointer to a node-list data structure. 8320 * 8321 * This routine processes Fabric Login (FLOGI) IOCB received as an ELS 8322 * unsolicited event. An unsolicited FLOGI can be received in a point-to- 8323 * point topology. As an unsolicited FLOGI should not be received in a loop 8324 * mode, any unsolicited FLOGI received in loop mode shall be ignored. The 8325 * lpfc_check_sparm() routine is invoked to check the parameters in the 8326 * unsolicited FLOGI. If parameters validation failed, the routine 8327 * lpfc_els_rsp_reject() shall be called with reject reason code set to 8328 * LSEXP_SPARM_OPTIONS to reject the FLOGI. Otherwise, the Port WWN in the 8329 * FLOGI shall be compared with the Port WWN of the @vport to determine who 8330 * will initiate PLOGI. The higher lexicographical value party shall has 8331 * higher priority (as the winning port) and will initiate PLOGI and 8332 * communicate Port_IDs (Addresses) for both nodes in PLOGI. The result 8333 * of this will be marked in the @vport fc_flag field with FC_PT2PT_PLOGI 8334 * and then the lpfc_els_rsp_acc() routine is invoked to accept the FLOGI. 8335 * 8336 * Return code 8337 * 0 - Successfully processed the unsolicited flogi 8338 * 1 - Failed to process the unsolicited flogi 8339 **/ 8340 static int 8341 lpfc_els_rcv_flogi(struct lpfc_vport *vport, struct lpfc_iocbq *cmdiocb, 8342 struct lpfc_nodelist *ndlp) 8343 { 8344 struct Scsi_Host *shost = lpfc_shost_from_vport(vport); 8345 struct lpfc_hba *phba = vport->phba; 8346 struct lpfc_dmabuf *pcmd = cmdiocb->cmd_dmabuf; 8347 uint32_t *lp = (uint32_t *) pcmd->virt; 8348 union lpfc_wqe128 *wqe = &cmdiocb->wqe; 8349 struct serv_parm *sp; 8350 LPFC_MBOXQ_t *mbox; 8351 uint32_t cmd, did; 8352 int rc; 8353 unsigned long fc_flag = 0; 8354 uint32_t port_state = 0; 8355 8356 /* Clear external loopback plug detected flag */ 8357 phba->link_flag &= ~LS_EXTERNAL_LOOPBACK; 8358 8359 cmd = *lp++; 8360 sp = (struct serv_parm *) lp; 8361 8362 /* FLOGI received */ 8363 8364 lpfc_set_disctmo(vport); 8365 8366 if (phba->fc_topology == LPFC_TOPOLOGY_LOOP) { 8367 /* We should never receive a FLOGI in loop mode, ignore it */ 8368 did = bf_get(wqe_els_did, &wqe->xmit_els_rsp.wqe_dest); 8369 8370 /* An FLOGI ELS command <elsCmd> was received from DID <did> in 8371 Loop Mode */ 8372 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT, 8373 "0113 An FLOGI ELS command x%x was " 8374 "received from DID x%x in Loop Mode\n", 8375 cmd, did); 8376 return 1; 8377 } 8378 8379 (void) lpfc_check_sparm(vport, ndlp, sp, CLASS3, 1); 8380 8381 /* 8382 * If our portname is greater than the remote portname, 8383 * then we initiate Nport login. 8384 */ 8385 8386 rc = memcmp(&vport->fc_portname, &sp->portName, 8387 sizeof(struct lpfc_name)); 8388 8389 if (!rc) { 8390 if (phba->sli_rev < LPFC_SLI_REV4) { 8391 mbox = mempool_alloc(phba->mbox_mem_pool, 8392 GFP_KERNEL); 8393 if (!mbox) 8394 return 1; 8395 lpfc_linkdown(phba); 8396 lpfc_init_link(phba, mbox, 8397 phba->cfg_topology, 8398 phba->cfg_link_speed); 8399 mbox->u.mb.un.varInitLnk.lipsr_AL_PA = 0; 8400 mbox->mbox_cmpl = lpfc_sli_def_mbox_cmpl; 8401 mbox->vport = vport; 8402 rc = lpfc_sli_issue_mbox(phba, mbox, 8403 MBX_NOWAIT); 8404 lpfc_set_loopback_flag(phba); 8405 if (rc == MBX_NOT_FINISHED) 8406 mempool_free(mbox, phba->mbox_mem_pool); 8407 return 1; 8408 } 8409 8410 /* External loopback plug insertion detected */ 8411 phba->link_flag |= LS_EXTERNAL_LOOPBACK; 8412 8413 lpfc_printf_vlog(vport, KERN_INFO, LOG_ELS | LOG_LIBDFC, 8414 "1119 External Loopback plug detected\n"); 8415 8416 /* abort the flogi coming back to ourselves 8417 * due to external loopback on the port. 8418 */ 8419 lpfc_els_abort_flogi(phba); 8420 return 0; 8421 8422 } else if (rc > 0) { /* greater than */ 8423 set_bit(FC_PT2PT_PLOGI, &vport->fc_flag); 8424 8425 /* If we have the high WWPN we can assign our own 8426 * myDID; otherwise, we have to WAIT for a PLOGI 8427 * from the remote NPort to find out what it 8428 * will be. 8429 */ 8430 vport->fc_myDID = PT2PT_LocalID; 8431 } else { 8432 vport->fc_myDID = PT2PT_RemoteID; 8433 } 8434 8435 /* 8436 * The vport state should go to LPFC_FLOGI only 8437 * AFTER we issue a FLOGI, not receive one. 8438 */ 8439 spin_lock_irq(shost->host_lock); 8440 fc_flag = vport->fc_flag; 8441 port_state = vport->port_state; 8442 /* Acking an unsol FLOGI. Count 1 for link bounce 8443 * work-around. 8444 */ 8445 vport->rcv_flogi_cnt++; 8446 spin_unlock_irq(shost->host_lock); 8447 set_bit(FC_PT2PT, &vport->fc_flag); 8448 clear_bit(FC_FABRIC, &vport->fc_flag); 8449 clear_bit(FC_PUBLIC_LOOP, &vport->fc_flag); 8450 lpfc_printf_vlog(vport, KERN_INFO, LOG_ELS, 8451 "3311 Rcv Flogi PS x%x new PS x%x " 8452 "fc_flag x%lx new fc_flag x%lx\n", 8453 port_state, vport->port_state, 8454 fc_flag, vport->fc_flag); 8455 8456 /* 8457 * We temporarily set fc_myDID to make it look like we are 8458 * a Fabric. This is done just so we end up with the right 8459 * did / sid on the FLOGI ACC rsp. 8460 */ 8461 did = vport->fc_myDID; 8462 vport->fc_myDID = Fabric_DID; 8463 8464 memcpy(&phba->fc_fabparam, sp, sizeof(struct serv_parm)); 8465 8466 /* Defer ACC response until AFTER we issue a FLOGI */ 8467 if (!test_bit(HBA_FLOGI_ISSUED, &phba->hba_flag)) { 8468 phba->defer_flogi_acc.rx_id = bf_get(wqe_ctxt_tag, 8469 &wqe->xmit_els_rsp.wqe_com); 8470 phba->defer_flogi_acc.ox_id = bf_get(wqe_rcvoxid, 8471 &wqe->xmit_els_rsp.wqe_com); 8472 8473 vport->fc_myDID = did; 8474 8475 lpfc_printf_vlog(vport, KERN_INFO, LOG_ELS, 8476 "3344 Deferring FLOGI ACC: rx_id: x%x," 8477 " ox_id: x%x, hba_flag x%lx\n", 8478 phba->defer_flogi_acc.rx_id, 8479 phba->defer_flogi_acc.ox_id, phba->hba_flag); 8480 8481 phba->defer_flogi_acc.flag = true; 8482 8483 /* This nlp_get is paired with nlp_puts that reset the 8484 * defer_flogi_acc.flag back to false. We need to retain 8485 * a kref on the ndlp until the deferred FLOGI ACC is 8486 * processed or cancelled. 8487 */ 8488 phba->defer_flogi_acc.ndlp = lpfc_nlp_get(ndlp); 8489 return 0; 8490 } 8491 8492 /* Send back ACC */ 8493 lpfc_els_rsp_acc(vport, ELS_CMD_FLOGI, cmdiocb, ndlp, NULL); 8494 8495 /* Now lets put fc_myDID back to what its supposed to be */ 8496 vport->fc_myDID = did; 8497 8498 return 0; 8499 } 8500 8501 /** 8502 * lpfc_els_rcv_rnid - Process an unsolicited rnid iocb 8503 * @vport: pointer to a host virtual N_Port data structure. 8504 * @cmdiocb: pointer to lpfc command iocb data structure. 8505 * @ndlp: pointer to a node-list data structure. 8506 * 8507 * This routine processes Request Node Identification Data (RNID) IOCB 8508 * received as an ELS unsolicited event. Only when the RNID specified format 8509 * 0x0 or 0xDF (Topology Discovery Specific Node Identification Data) 8510 * present, this routine will invoke the lpfc_els_rsp_rnid_acc() routine to 8511 * Accept (ACC) the RNID ELS command. All the other RNID formats are 8512 * rejected by invoking the lpfc_els_rsp_reject() routine. 8513 * 8514 * Return code 8515 * 0 - Successfully processed rnid iocb (currently always return 0) 8516 **/ 8517 static int 8518 lpfc_els_rcv_rnid(struct lpfc_vport *vport, struct lpfc_iocbq *cmdiocb, 8519 struct lpfc_nodelist *ndlp) 8520 { 8521 struct lpfc_dmabuf *pcmd; 8522 uint32_t *lp; 8523 RNID *rn; 8524 struct ls_rjt stat; 8525 8526 pcmd = cmdiocb->cmd_dmabuf; 8527 lp = (uint32_t *) pcmd->virt; 8528 8529 lp++; 8530 rn = (RNID *) lp; 8531 8532 /* RNID received */ 8533 8534 switch (rn->Format) { 8535 case 0: 8536 case RNID_TOPOLOGY_DISC: 8537 /* Send back ACC */ 8538 lpfc_els_rsp_rnid_acc(vport, rn->Format, cmdiocb, ndlp); 8539 break; 8540 default: 8541 /* Reject this request because format not supported */ 8542 stat.un.b.lsRjtRsvd0 = 0; 8543 stat.un.b.lsRjtRsnCode = LSRJT_UNABLE_TPC; 8544 stat.un.b.lsRjtRsnCodeExp = LSEXP_CANT_GIVE_DATA; 8545 stat.un.b.vendorUnique = 0; 8546 lpfc_els_rsp_reject(vport, stat.un.lsRjtError, cmdiocb, ndlp, 8547 NULL); 8548 } 8549 return 0; 8550 } 8551 8552 /** 8553 * lpfc_els_rcv_echo - Process an unsolicited echo iocb 8554 * @vport: pointer to a host virtual N_Port data structure. 8555 * @cmdiocb: pointer to lpfc command iocb data structure. 8556 * @ndlp: pointer to a node-list data structure. 8557 * 8558 * Return code 8559 * 0 - Successfully processed echo iocb (currently always return 0) 8560 **/ 8561 static int 8562 lpfc_els_rcv_echo(struct lpfc_vport *vport, struct lpfc_iocbq *cmdiocb, 8563 struct lpfc_nodelist *ndlp) 8564 { 8565 uint8_t *pcmd; 8566 8567 pcmd = (uint8_t *)cmdiocb->cmd_dmabuf->virt; 8568 8569 /* skip over first word of echo command to find echo data */ 8570 pcmd += sizeof(uint32_t); 8571 8572 lpfc_els_rsp_echo_acc(vport, pcmd, cmdiocb, ndlp); 8573 return 0; 8574 } 8575 8576 /** 8577 * lpfc_els_rcv_lirr - Process an unsolicited lirr iocb 8578 * @vport: pointer to a host virtual N_Port data structure. 8579 * @cmdiocb: pointer to lpfc command iocb data structure. 8580 * @ndlp: pointer to a node-list data structure. 8581 * 8582 * This routine processes a Link Incident Report Registration(LIRR) IOCB 8583 * received as an ELS unsolicited event. Currently, this function just invokes 8584 * the lpfc_els_rsp_reject() routine to reject the LIRR IOCB unconditionally. 8585 * 8586 * Return code 8587 * 0 - Successfully processed lirr iocb (currently always return 0) 8588 **/ 8589 static int 8590 lpfc_els_rcv_lirr(struct lpfc_vport *vport, struct lpfc_iocbq *cmdiocb, 8591 struct lpfc_nodelist *ndlp) 8592 { 8593 struct ls_rjt stat; 8594 8595 /* For now, unconditionally reject this command */ 8596 stat.un.b.lsRjtRsvd0 = 0; 8597 stat.un.b.lsRjtRsnCode = LSRJT_UNABLE_TPC; 8598 stat.un.b.lsRjtRsnCodeExp = LSEXP_CANT_GIVE_DATA; 8599 stat.un.b.vendorUnique = 0; 8600 lpfc_els_rsp_reject(vport, stat.un.lsRjtError, cmdiocb, ndlp, NULL); 8601 return 0; 8602 } 8603 8604 /** 8605 * lpfc_els_rcv_rrq - Process an unsolicited rrq iocb 8606 * @vport: pointer to a host virtual N_Port data structure. 8607 * @cmdiocb: pointer to lpfc command iocb data structure. 8608 * @ndlp: pointer to a node-list data structure. 8609 * 8610 * This routine processes a Reinstate Recovery Qualifier (RRQ) IOCB 8611 * received as an ELS unsolicited event. A request to RRQ shall only 8612 * be accepted if the Originator Nx_Port N_Port_ID or the Responder 8613 * Nx_Port N_Port_ID of the target Exchange is the same as the 8614 * N_Port_ID of the Nx_Port that makes the request. If the RRQ is 8615 * not accepted, an LS_RJT with reason code "Unable to perform 8616 * command request" and reason code explanation "Invalid Originator 8617 * S_ID" shall be returned. For now, we just unconditionally accept 8618 * RRQ from the target. 8619 **/ 8620 static void 8621 lpfc_els_rcv_rrq(struct lpfc_vport *vport, struct lpfc_iocbq *cmdiocb, 8622 struct lpfc_nodelist *ndlp) 8623 { 8624 lpfc_els_rsp_acc(vport, ELS_CMD_ACC, cmdiocb, ndlp, NULL); 8625 if (vport->phba->sli_rev == LPFC_SLI_REV4) 8626 lpfc_els_clear_rrq(vport, cmdiocb, ndlp); 8627 } 8628 8629 /** 8630 * lpfc_els_rsp_rls_acc - Completion callbk func for MBX_READ_LNK_STAT mbox cmd 8631 * @phba: pointer to lpfc hba data structure. 8632 * @pmb: pointer to the driver internal queue element for mailbox command. 8633 * 8634 * This routine is the completion callback function for the MBX_READ_LNK_STAT 8635 * mailbox command. This callback function is to actually send the Accept 8636 * (ACC) response to a Read Link Status (RLS) unsolicited IOCB event. It 8637 * collects the link statistics from the completion of the MBX_READ_LNK_STAT 8638 * mailbox command, constructs the RLS response with the link statistics 8639 * collected, and then invokes the lpfc_sli_issue_iocb() routine to send ACC 8640 * response to the RLS. 8641 * 8642 * Note that the ndlp reference count will be incremented by 1 for holding the 8643 * ndlp and the reference to ndlp will be stored into the ndlp field of 8644 * the IOCB for the completion callback function to the RLS Accept Response 8645 * ELS IOCB command. 8646 * 8647 **/ 8648 static void 8649 lpfc_els_rsp_rls_acc(struct lpfc_hba *phba, LPFC_MBOXQ_t *pmb) 8650 { 8651 int rc = 0; 8652 MAILBOX_t *mb; 8653 IOCB_t *icmd; 8654 union lpfc_wqe128 *wqe; 8655 struct RLS_RSP *rls_rsp; 8656 uint8_t *pcmd; 8657 struct lpfc_iocbq *elsiocb; 8658 struct lpfc_nodelist *ndlp; 8659 uint16_t oxid; 8660 uint16_t rxid; 8661 uint32_t cmdsize; 8662 u32 ulp_context; 8663 8664 mb = &pmb->u.mb; 8665 8666 ndlp = pmb->ctx_ndlp; 8667 rxid = (uint16_t)(pmb->ctx_u.ox_rx_id & 0xffff); 8668 oxid = (uint16_t)((pmb->ctx_u.ox_rx_id >> 16) & 0xffff); 8669 memset(&pmb->ctx_u, 0, sizeof(pmb->ctx_u)); 8670 pmb->ctx_ndlp = NULL; 8671 8672 if (mb->mbxStatus) { 8673 mempool_free(pmb, phba->mbox_mem_pool); 8674 return; 8675 } 8676 8677 cmdsize = sizeof(struct RLS_RSP) + sizeof(uint32_t); 8678 elsiocb = lpfc_prep_els_iocb(phba->pport, 0, cmdsize, 8679 lpfc_max_els_tries, ndlp, 8680 ndlp->nlp_DID, ELS_CMD_ACC); 8681 8682 /* Decrement the ndlp reference count from previous mbox command */ 8683 lpfc_nlp_put(ndlp); 8684 8685 if (!elsiocb) { 8686 mempool_free(pmb, phba->mbox_mem_pool); 8687 return; 8688 } 8689 8690 ulp_context = get_job_ulpcontext(phba, elsiocb); 8691 if (phba->sli_rev == LPFC_SLI_REV4) { 8692 wqe = &elsiocb->wqe; 8693 /* Xri / rx_id */ 8694 bf_set(wqe_ctxt_tag, &wqe->generic.wqe_com, rxid); 8695 bf_set(wqe_rcvoxid, &wqe->xmit_els_rsp.wqe_com, oxid); 8696 } else { 8697 icmd = &elsiocb->iocb; 8698 icmd->ulpContext = rxid; 8699 icmd->unsli3.rcvsli3.ox_id = oxid; 8700 } 8701 8702 pcmd = (uint8_t *)elsiocb->cmd_dmabuf->virt; 8703 *((uint32_t *) (pcmd)) = ELS_CMD_ACC; 8704 pcmd += sizeof(uint32_t); /* Skip past command */ 8705 rls_rsp = (struct RLS_RSP *)pcmd; 8706 8707 rls_rsp->linkFailureCnt = cpu_to_be32(mb->un.varRdLnk.linkFailureCnt); 8708 rls_rsp->lossSyncCnt = cpu_to_be32(mb->un.varRdLnk.lossSyncCnt); 8709 rls_rsp->lossSignalCnt = cpu_to_be32(mb->un.varRdLnk.lossSignalCnt); 8710 rls_rsp->primSeqErrCnt = cpu_to_be32(mb->un.varRdLnk.primSeqErrCnt); 8711 rls_rsp->invalidXmitWord = cpu_to_be32(mb->un.varRdLnk.invalidXmitWord); 8712 rls_rsp->crcCnt = cpu_to_be32(mb->un.varRdLnk.crcCnt); 8713 mempool_free(pmb, phba->mbox_mem_pool); 8714 /* Xmit ELS RLS ACC response tag <ulpIoTag> */ 8715 lpfc_printf_vlog(ndlp->vport, KERN_INFO, LOG_ELS, 8716 "2874 Xmit ELS RLS ACC response tag x%x xri x%x, " 8717 "did x%x, nlp_flag x%x, nlp_state x%x, rpi x%x\n", 8718 elsiocb->iotag, ulp_context, 8719 ndlp->nlp_DID, ndlp->nlp_flag, ndlp->nlp_state, 8720 ndlp->nlp_rpi); 8721 elsiocb->cmd_cmpl = lpfc_cmpl_els_rsp; 8722 phba->fc_stat.elsXmitACC++; 8723 elsiocb->ndlp = lpfc_nlp_get(ndlp); 8724 if (!elsiocb->ndlp) { 8725 lpfc_els_free_iocb(phba, elsiocb); 8726 return; 8727 } 8728 8729 rc = lpfc_sli_issue_iocb(phba, LPFC_ELS_RING, elsiocb, 0); 8730 if (rc == IOCB_ERROR) { 8731 lpfc_els_free_iocb(phba, elsiocb); 8732 lpfc_nlp_put(ndlp); 8733 } 8734 return; 8735 } 8736 8737 /** 8738 * lpfc_els_rcv_rls - Process an unsolicited rls iocb 8739 * @vport: pointer to a host virtual N_Port data structure. 8740 * @cmdiocb: pointer to lpfc command iocb data structure. 8741 * @ndlp: pointer to a node-list data structure. 8742 * 8743 * This routine processes Read Link Status (RLS) IOCB received as an 8744 * ELS unsolicited event. It first checks the remote port state. If the 8745 * remote port is not in NLP_STE_UNMAPPED_NODE state or NLP_STE_MAPPED_NODE 8746 * state, it invokes the lpfc_els_rsl_reject() routine to send the reject 8747 * response. Otherwise, it issue the MBX_READ_LNK_STAT mailbox command 8748 * for reading the HBA link statistics. It is for the callback function, 8749 * lpfc_els_rsp_rls_acc(), set to the MBX_READ_LNK_STAT mailbox command 8750 * to actually sending out RPL Accept (ACC) response. 8751 * 8752 * Return codes 8753 * 0 - Successfully processed rls iocb (currently always return 0) 8754 **/ 8755 static int 8756 lpfc_els_rcv_rls(struct lpfc_vport *vport, struct lpfc_iocbq *cmdiocb, 8757 struct lpfc_nodelist *ndlp) 8758 { 8759 struct lpfc_hba *phba = vport->phba; 8760 LPFC_MBOXQ_t *mbox; 8761 struct ls_rjt stat; 8762 u32 ctx = get_job_ulpcontext(phba, cmdiocb); 8763 u32 ox_id = get_job_rcvoxid(phba, cmdiocb); 8764 8765 if ((ndlp->nlp_state != NLP_STE_UNMAPPED_NODE) && 8766 (ndlp->nlp_state != NLP_STE_MAPPED_NODE)) 8767 /* reject the unsolicited RLS request and done with it */ 8768 goto reject_out; 8769 8770 mbox = mempool_alloc(phba->mbox_mem_pool, GFP_ATOMIC); 8771 if (mbox) { 8772 lpfc_read_lnk_stat(phba, mbox); 8773 mbox->ctx_u.ox_rx_id = ox_id << 16 | ctx; 8774 mbox->ctx_ndlp = lpfc_nlp_get(ndlp); 8775 if (!mbox->ctx_ndlp) 8776 goto node_err; 8777 mbox->vport = vport; 8778 mbox->mbox_cmpl = lpfc_els_rsp_rls_acc; 8779 if (lpfc_sli_issue_mbox(phba, mbox, MBX_NOWAIT) 8780 != MBX_NOT_FINISHED) 8781 /* Mbox completion will send ELS Response */ 8782 return 0; 8783 /* Decrement reference count used for the failed mbox 8784 * command. 8785 */ 8786 lpfc_nlp_put(ndlp); 8787 node_err: 8788 mempool_free(mbox, phba->mbox_mem_pool); 8789 } 8790 reject_out: 8791 /* issue rejection response */ 8792 stat.un.b.lsRjtRsvd0 = 0; 8793 stat.un.b.lsRjtRsnCode = LSRJT_UNABLE_TPC; 8794 stat.un.b.lsRjtRsnCodeExp = LSEXP_CANT_GIVE_DATA; 8795 stat.un.b.vendorUnique = 0; 8796 lpfc_els_rsp_reject(vport, stat.un.lsRjtError, cmdiocb, ndlp, NULL); 8797 return 0; 8798 } 8799 8800 /** 8801 * lpfc_els_rcv_rtv - Process an unsolicited rtv iocb 8802 * @vport: pointer to a host virtual N_Port data structure. 8803 * @cmdiocb: pointer to lpfc command iocb data structure. 8804 * @ndlp: pointer to a node-list data structure. 8805 * 8806 * This routine processes Read Timout Value (RTV) IOCB received as an 8807 * ELS unsolicited event. It first checks the remote port state. If the 8808 * remote port is not in NLP_STE_UNMAPPED_NODE state or NLP_STE_MAPPED_NODE 8809 * state, it invokes the lpfc_els_rsl_reject() routine to send the reject 8810 * response. Otherwise, it sends the Accept(ACC) response to a Read Timeout 8811 * Value (RTV) unsolicited IOCB event. 8812 * 8813 * Note that the ndlp reference count will be incremented by 1 for holding the 8814 * ndlp and the reference to ndlp will be stored into the ndlp field of 8815 * the IOCB for the completion callback function to the RTV Accept Response 8816 * ELS IOCB command. 8817 * 8818 * Return codes 8819 * 0 - Successfully processed rtv iocb (currently always return 0) 8820 **/ 8821 static int 8822 lpfc_els_rcv_rtv(struct lpfc_vport *vport, struct lpfc_iocbq *cmdiocb, 8823 struct lpfc_nodelist *ndlp) 8824 { 8825 int rc = 0; 8826 IOCB_t *icmd; 8827 union lpfc_wqe128 *wqe; 8828 struct lpfc_hba *phba = vport->phba; 8829 struct ls_rjt stat; 8830 struct RTV_RSP *rtv_rsp; 8831 uint8_t *pcmd; 8832 struct lpfc_iocbq *elsiocb; 8833 uint32_t cmdsize; 8834 u32 ulp_context; 8835 8836 if ((ndlp->nlp_state != NLP_STE_UNMAPPED_NODE) && 8837 (ndlp->nlp_state != NLP_STE_MAPPED_NODE)) 8838 /* reject the unsolicited RTV request and done with it */ 8839 goto reject_out; 8840 8841 cmdsize = sizeof(struct RTV_RSP) + sizeof(uint32_t); 8842 elsiocb = lpfc_prep_els_iocb(phba->pport, 0, cmdsize, 8843 lpfc_max_els_tries, ndlp, 8844 ndlp->nlp_DID, ELS_CMD_ACC); 8845 8846 if (!elsiocb) 8847 return 1; 8848 8849 pcmd = (uint8_t *)elsiocb->cmd_dmabuf->virt; 8850 *((uint32_t *) (pcmd)) = ELS_CMD_ACC; 8851 pcmd += sizeof(uint32_t); /* Skip past command */ 8852 8853 ulp_context = get_job_ulpcontext(phba, elsiocb); 8854 /* use the command's xri in the response */ 8855 if (phba->sli_rev == LPFC_SLI_REV4) { 8856 wqe = &elsiocb->wqe; 8857 bf_set(wqe_ctxt_tag, &wqe->generic.wqe_com, 8858 get_job_ulpcontext(phba, cmdiocb)); 8859 bf_set(wqe_rcvoxid, &wqe->xmit_els_rsp.wqe_com, 8860 get_job_rcvoxid(phba, cmdiocb)); 8861 } else { 8862 icmd = &elsiocb->iocb; 8863 icmd->ulpContext = get_job_ulpcontext(phba, cmdiocb); 8864 icmd->unsli3.rcvsli3.ox_id = get_job_rcvoxid(phba, cmdiocb); 8865 } 8866 8867 rtv_rsp = (struct RTV_RSP *)pcmd; 8868 8869 /* populate RTV payload */ 8870 rtv_rsp->ratov = cpu_to_be32(phba->fc_ratov * 1000); /* report msecs */ 8871 rtv_rsp->edtov = cpu_to_be32(phba->fc_edtov); 8872 bf_set(qtov_edtovres, rtv_rsp, phba->fc_edtovResol ? 1 : 0); 8873 bf_set(qtov_rttov, rtv_rsp, 0); /* Field is for FC ONLY */ 8874 rtv_rsp->qtov = cpu_to_be32(rtv_rsp->qtov); 8875 8876 /* Xmit ELS RLS ACC response tag <ulpIoTag> */ 8877 lpfc_printf_vlog(ndlp->vport, KERN_INFO, LOG_ELS, 8878 "2875 Xmit ELS RTV ACC response tag x%x xri x%x, " 8879 "did x%x, nlp_flag x%x, nlp_state x%x, rpi x%x, " 8880 "Data: x%x x%x x%x\n", 8881 elsiocb->iotag, ulp_context, 8882 ndlp->nlp_DID, ndlp->nlp_flag, ndlp->nlp_state, 8883 ndlp->nlp_rpi, 8884 rtv_rsp->ratov, rtv_rsp->edtov, rtv_rsp->qtov); 8885 elsiocb->cmd_cmpl = lpfc_cmpl_els_rsp; 8886 phba->fc_stat.elsXmitACC++; 8887 elsiocb->ndlp = lpfc_nlp_get(ndlp); 8888 if (!elsiocb->ndlp) { 8889 lpfc_els_free_iocb(phba, elsiocb); 8890 return 0; 8891 } 8892 8893 rc = lpfc_sli_issue_iocb(phba, LPFC_ELS_RING, elsiocb, 0); 8894 if (rc == IOCB_ERROR) { 8895 lpfc_els_free_iocb(phba, elsiocb); 8896 lpfc_nlp_put(ndlp); 8897 } 8898 return 0; 8899 8900 reject_out: 8901 /* issue rejection response */ 8902 stat.un.b.lsRjtRsvd0 = 0; 8903 stat.un.b.lsRjtRsnCode = LSRJT_UNABLE_TPC; 8904 stat.un.b.lsRjtRsnCodeExp = LSEXP_CANT_GIVE_DATA; 8905 stat.un.b.vendorUnique = 0; 8906 lpfc_els_rsp_reject(vport, stat.un.lsRjtError, cmdiocb, ndlp, NULL); 8907 return 0; 8908 } 8909 8910 /* lpfc_issue_els_rrq - Process an unsolicited rrq iocb 8911 * @vport: pointer to a host virtual N_Port data structure. 8912 * @ndlp: pointer to a node-list data structure. 8913 * @did: DID of the target. 8914 * @rrq: Pointer to the rrq struct. 8915 * 8916 * Build a ELS RRQ command and send it to the target. If the issue_iocb is 8917 * successful, the completion handler will clear the RRQ. 8918 * 8919 * Return codes 8920 * 0 - Successfully sent rrq els iocb. 8921 * 1 - Failed to send rrq els iocb. 8922 **/ 8923 static int 8924 lpfc_issue_els_rrq(struct lpfc_vport *vport, struct lpfc_nodelist *ndlp, 8925 uint32_t did, struct lpfc_node_rrq *rrq) 8926 { 8927 struct lpfc_hba *phba = vport->phba; 8928 struct RRQ *els_rrq; 8929 struct lpfc_iocbq *elsiocb; 8930 uint8_t *pcmd; 8931 uint16_t cmdsize; 8932 int ret; 8933 8934 if (!ndlp) 8935 return 1; 8936 8937 /* If ndlp is not NULL, we will bump the reference count on it */ 8938 cmdsize = (sizeof(uint32_t) + sizeof(struct RRQ)); 8939 elsiocb = lpfc_prep_els_iocb(vport, 1, cmdsize, 0, ndlp, did, 8940 ELS_CMD_RRQ); 8941 if (!elsiocb) 8942 return 1; 8943 8944 pcmd = (uint8_t *)elsiocb->cmd_dmabuf->virt; 8945 8946 /* For RRQ request, remainder of payload is Exchange IDs */ 8947 *((uint32_t *) (pcmd)) = ELS_CMD_RRQ; 8948 pcmd += sizeof(uint32_t); 8949 els_rrq = (struct RRQ *) pcmd; 8950 8951 bf_set(rrq_oxid, els_rrq, phba->sli4_hba.xri_ids[rrq->xritag]); 8952 bf_set(rrq_rxid, els_rrq, rrq->rxid); 8953 bf_set(rrq_did, els_rrq, vport->fc_myDID); 8954 els_rrq->rrq = cpu_to_be32(els_rrq->rrq); 8955 els_rrq->rrq_exchg = cpu_to_be32(els_rrq->rrq_exchg); 8956 8957 8958 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_CMD, 8959 "Issue RRQ: did:x%x", 8960 did, rrq->xritag, rrq->rxid); 8961 elsiocb->context_un.rrq = rrq; 8962 elsiocb->cmd_cmpl = lpfc_cmpl_els_rrq; 8963 8964 elsiocb->ndlp = lpfc_nlp_get(ndlp); 8965 if (!elsiocb->ndlp) 8966 goto io_err; 8967 8968 ret = lpfc_sli_issue_iocb(phba, LPFC_ELS_RING, elsiocb, 0); 8969 if (ret == IOCB_ERROR) { 8970 lpfc_nlp_put(ndlp); 8971 goto io_err; 8972 } 8973 return 0; 8974 8975 io_err: 8976 lpfc_els_free_iocb(phba, elsiocb); 8977 return 1; 8978 } 8979 8980 /** 8981 * lpfc_send_rrq - Sends ELS RRQ if needed. 8982 * @phba: pointer to lpfc hba data structure. 8983 * @rrq: pointer to the active rrq. 8984 * 8985 * This routine will call the lpfc_issue_els_rrq if the rrq is 8986 * still active for the xri. If this function returns a failure then 8987 * the caller needs to clean up the RRQ by calling lpfc_clr_active_rrq. 8988 * 8989 * Returns 0 Success. 8990 * 1 Failure. 8991 **/ 8992 int 8993 lpfc_send_rrq(struct lpfc_hba *phba, struct lpfc_node_rrq *rrq) 8994 { 8995 struct lpfc_nodelist *ndlp = lpfc_findnode_did(rrq->vport, 8996 rrq->nlp_DID); 8997 if (!ndlp) 8998 return 1; 8999 9000 if (lpfc_test_rrq_active(phba, ndlp, rrq->xritag)) 9001 return lpfc_issue_els_rrq(rrq->vport, ndlp, 9002 rrq->nlp_DID, rrq); 9003 else 9004 return 1; 9005 } 9006 9007 /** 9008 * lpfc_els_rsp_rpl_acc - Issue an accept rpl els command 9009 * @vport: pointer to a host virtual N_Port data structure. 9010 * @cmdsize: size of the ELS command. 9011 * @oldiocb: pointer to the original lpfc command iocb data structure. 9012 * @ndlp: pointer to a node-list data structure. 9013 * 9014 * This routine issuees an Accept (ACC) Read Port List (RPL) ELS command. 9015 * It is to be called by the lpfc_els_rcv_rpl() routine to accept the RPL. 9016 * 9017 * Note that the ndlp reference count will be incremented by 1 for holding the 9018 * ndlp and the reference to ndlp will be stored into the ndlp field of 9019 * the IOCB for the completion callback function to the RPL Accept Response 9020 * ELS command. 9021 * 9022 * Return code 9023 * 0 - Successfully issued ACC RPL ELS command 9024 * 1 - Failed to issue ACC RPL ELS command 9025 **/ 9026 static int 9027 lpfc_els_rsp_rpl_acc(struct lpfc_vport *vport, uint16_t cmdsize, 9028 struct lpfc_iocbq *oldiocb, struct lpfc_nodelist *ndlp) 9029 { 9030 int rc = 0; 9031 struct lpfc_hba *phba = vport->phba; 9032 IOCB_t *icmd; 9033 union lpfc_wqe128 *wqe; 9034 RPL_RSP rpl_rsp; 9035 struct lpfc_iocbq *elsiocb; 9036 uint8_t *pcmd; 9037 u32 ulp_context; 9038 9039 elsiocb = lpfc_prep_els_iocb(vport, 0, cmdsize, oldiocb->retry, ndlp, 9040 ndlp->nlp_DID, ELS_CMD_ACC); 9041 9042 if (!elsiocb) 9043 return 1; 9044 9045 ulp_context = get_job_ulpcontext(phba, elsiocb); 9046 if (phba->sli_rev == LPFC_SLI_REV4) { 9047 wqe = &elsiocb->wqe; 9048 /* Xri / rx_id */ 9049 bf_set(wqe_ctxt_tag, &wqe->generic.wqe_com, 9050 get_job_ulpcontext(phba, oldiocb)); 9051 bf_set(wqe_rcvoxid, &wqe->xmit_els_rsp.wqe_com, 9052 get_job_rcvoxid(phba, oldiocb)); 9053 } else { 9054 icmd = &elsiocb->iocb; 9055 icmd->ulpContext = get_job_ulpcontext(phba, oldiocb); 9056 icmd->unsli3.rcvsli3.ox_id = get_job_rcvoxid(phba, oldiocb); 9057 } 9058 9059 pcmd = elsiocb->cmd_dmabuf->virt; 9060 *((uint32_t *) (pcmd)) = ELS_CMD_ACC; 9061 pcmd += sizeof(uint16_t); 9062 *((uint16_t *)(pcmd)) = be16_to_cpu(cmdsize); 9063 pcmd += sizeof(uint16_t); 9064 9065 /* Setup the RPL ACC payload */ 9066 rpl_rsp.listLen = be32_to_cpu(1); 9067 rpl_rsp.index = 0; 9068 rpl_rsp.port_num_blk.portNum = 0; 9069 rpl_rsp.port_num_blk.portID = be32_to_cpu(vport->fc_myDID); 9070 memcpy(&rpl_rsp.port_num_blk.portName, &vport->fc_portname, 9071 sizeof(struct lpfc_name)); 9072 memcpy(pcmd, &rpl_rsp, cmdsize - sizeof(uint32_t)); 9073 /* Xmit ELS RPL ACC response tag <ulpIoTag> */ 9074 lpfc_printf_vlog(vport, KERN_INFO, LOG_ELS, 9075 "0120 Xmit ELS RPL ACC response tag x%x " 9076 "xri x%x, did x%x, nlp_flag x%x, nlp_state x%x, " 9077 "rpi x%x\n", 9078 elsiocb->iotag, ulp_context, 9079 ndlp->nlp_DID, ndlp->nlp_flag, ndlp->nlp_state, 9080 ndlp->nlp_rpi); 9081 elsiocb->cmd_cmpl = lpfc_cmpl_els_rsp; 9082 phba->fc_stat.elsXmitACC++; 9083 elsiocb->ndlp = lpfc_nlp_get(ndlp); 9084 if (!elsiocb->ndlp) { 9085 lpfc_els_free_iocb(phba, elsiocb); 9086 return 1; 9087 } 9088 9089 rc = lpfc_sli_issue_iocb(phba, LPFC_ELS_RING, elsiocb, 0); 9090 if (rc == IOCB_ERROR) { 9091 lpfc_els_free_iocb(phba, elsiocb); 9092 lpfc_nlp_put(ndlp); 9093 return 1; 9094 } 9095 9096 return 0; 9097 } 9098 9099 /** 9100 * lpfc_els_rcv_rpl - Process an unsolicited rpl iocb 9101 * @vport: pointer to a host virtual N_Port data structure. 9102 * @cmdiocb: pointer to lpfc command iocb data structure. 9103 * @ndlp: pointer to a node-list data structure. 9104 * 9105 * This routine processes Read Port List (RPL) IOCB received as an ELS 9106 * unsolicited event. It first checks the remote port state. If the remote 9107 * port is not in NLP_STE_UNMAPPED_NODE and NLP_STE_MAPPED_NODE states, it 9108 * invokes the lpfc_els_rsp_reject() routine to send reject response. 9109 * Otherwise, this routine then invokes the lpfc_els_rsp_rpl_acc() routine 9110 * to accept the RPL. 9111 * 9112 * Return code 9113 * 0 - Successfully processed rpl iocb (currently always return 0) 9114 **/ 9115 static int 9116 lpfc_els_rcv_rpl(struct lpfc_vport *vport, struct lpfc_iocbq *cmdiocb, 9117 struct lpfc_nodelist *ndlp) 9118 { 9119 struct lpfc_dmabuf *pcmd; 9120 uint32_t *lp; 9121 uint32_t maxsize; 9122 uint16_t cmdsize; 9123 RPL *rpl; 9124 struct ls_rjt stat; 9125 9126 if ((ndlp->nlp_state != NLP_STE_UNMAPPED_NODE) && 9127 (ndlp->nlp_state != NLP_STE_MAPPED_NODE)) { 9128 /* issue rejection response */ 9129 stat.un.b.lsRjtRsvd0 = 0; 9130 stat.un.b.lsRjtRsnCode = LSRJT_UNABLE_TPC; 9131 stat.un.b.lsRjtRsnCodeExp = LSEXP_CANT_GIVE_DATA; 9132 stat.un.b.vendorUnique = 0; 9133 lpfc_els_rsp_reject(vport, stat.un.lsRjtError, cmdiocb, ndlp, 9134 NULL); 9135 /* rejected the unsolicited RPL request and done with it */ 9136 return 0; 9137 } 9138 9139 pcmd = cmdiocb->cmd_dmabuf; 9140 lp = (uint32_t *) pcmd->virt; 9141 rpl = (RPL *) (lp + 1); 9142 maxsize = be32_to_cpu(rpl->maxsize); 9143 9144 /* We support only one port */ 9145 if ((rpl->index == 0) && 9146 ((maxsize == 0) || 9147 ((maxsize * sizeof(uint32_t)) >= sizeof(RPL_RSP)))) { 9148 cmdsize = sizeof(uint32_t) + sizeof(RPL_RSP); 9149 } else { 9150 cmdsize = sizeof(uint32_t) + maxsize * sizeof(uint32_t); 9151 } 9152 lpfc_els_rsp_rpl_acc(vport, cmdsize, cmdiocb, ndlp); 9153 9154 return 0; 9155 } 9156 9157 /** 9158 * lpfc_els_rcv_farp - Process an unsolicited farp request els command 9159 * @vport: pointer to a virtual N_Port data structure. 9160 * @cmdiocb: pointer to lpfc command iocb data structure. 9161 * @ndlp: pointer to a node-list data structure. 9162 * 9163 * This routine processes Fibre Channel Address Resolution Protocol 9164 * (FARP) Request IOCB received as an ELS unsolicited event. Currently, 9165 * the lpfc driver only supports matching on WWPN or WWNN for FARP. As such, 9166 * FARP_MATCH_PORT flag and FARP_MATCH_NODE flag are checked against the 9167 * Match Flag in the FARP request IOCB: if FARP_MATCH_PORT flag is set, the 9168 * remote PortName is compared against the FC PortName stored in the @vport 9169 * data structure; if FARP_MATCH_NODE flag is set, the remote NodeName is 9170 * compared against the FC NodeName stored in the @vport data structure. 9171 * If any of these matches and the FARP_REQUEST_FARPR flag is set in the 9172 * FARP request IOCB Response Flag, the lpfc_issue_els_farpr() routine is 9173 * invoked to send out FARP Response to the remote node. Before sending the 9174 * FARP Response, however, the FARP_REQUEST_PLOGI flag is check in the FARP 9175 * request IOCB Response Flag and, if it is set, the lpfc_issue_els_plogi() 9176 * routine is invoked to log into the remote port first. 9177 * 9178 * Return code 9179 * 0 - Either the FARP Match Mode not supported or successfully processed 9180 **/ 9181 static int 9182 lpfc_els_rcv_farp(struct lpfc_vport *vport, struct lpfc_iocbq *cmdiocb, 9183 struct lpfc_nodelist *ndlp) 9184 { 9185 struct lpfc_dmabuf *pcmd; 9186 uint32_t *lp; 9187 FARP *fp; 9188 uint32_t cnt, did; 9189 9190 did = get_job_els_rsp64_did(vport->phba, cmdiocb); 9191 pcmd = cmdiocb->cmd_dmabuf; 9192 lp = (uint32_t *) pcmd->virt; 9193 9194 lp++; 9195 fp = (FARP *) lp; 9196 /* FARP-REQ received from DID <did> */ 9197 lpfc_printf_vlog(vport, KERN_INFO, LOG_ELS, 9198 "0601 FARP-REQ received from DID x%x\n", did); 9199 /* We will only support match on WWPN or WWNN */ 9200 if (fp->Mflags & ~(FARP_MATCH_NODE | FARP_MATCH_PORT)) { 9201 return 0; 9202 } 9203 9204 cnt = 0; 9205 /* If this FARP command is searching for my portname */ 9206 if (fp->Mflags & FARP_MATCH_PORT) { 9207 if (memcmp(&fp->RportName, &vport->fc_portname, 9208 sizeof(struct lpfc_name)) == 0) 9209 cnt = 1; 9210 } 9211 9212 /* If this FARP command is searching for my nodename */ 9213 if (fp->Mflags & FARP_MATCH_NODE) { 9214 if (memcmp(&fp->RnodeName, &vport->fc_nodename, 9215 sizeof(struct lpfc_name)) == 0) 9216 cnt = 1; 9217 } 9218 9219 if (cnt) { 9220 if ((ndlp->nlp_state == NLP_STE_UNMAPPED_NODE) || 9221 (ndlp->nlp_state == NLP_STE_MAPPED_NODE)) { 9222 /* Log back into the node before sending the FARP. */ 9223 if (fp->Rflags & FARP_REQUEST_PLOGI) { 9224 ndlp->nlp_prev_state = ndlp->nlp_state; 9225 lpfc_nlp_set_state(vport, ndlp, 9226 NLP_STE_PLOGI_ISSUE); 9227 lpfc_issue_els_plogi(vport, ndlp->nlp_DID, 0); 9228 } 9229 9230 /* Send a FARP response to that node */ 9231 if (fp->Rflags & FARP_REQUEST_FARPR) 9232 lpfc_issue_els_farpr(vport, did, 0); 9233 } 9234 } 9235 return 0; 9236 } 9237 9238 /** 9239 * lpfc_els_rcv_farpr - Process an unsolicited farp response iocb 9240 * @vport: pointer to a host virtual N_Port data structure. 9241 * @cmdiocb: pointer to lpfc command iocb data structure. 9242 * @ndlp: pointer to a node-list data structure. 9243 * 9244 * This routine processes Fibre Channel Address Resolution Protocol 9245 * Response (FARPR) IOCB received as an ELS unsolicited event. It simply 9246 * invokes the lpfc_els_rsp_acc() routine to the remote node to accept 9247 * the FARP response request. 9248 * 9249 * Return code 9250 * 0 - Successfully processed FARPR IOCB (currently always return 0) 9251 **/ 9252 static int 9253 lpfc_els_rcv_farpr(struct lpfc_vport *vport, struct lpfc_iocbq *cmdiocb, 9254 struct lpfc_nodelist *ndlp) 9255 { 9256 uint32_t did; 9257 9258 did = get_job_els_rsp64_did(vport->phba, cmdiocb); 9259 9260 /* FARP-RSP received from DID <did> */ 9261 lpfc_printf_vlog(vport, KERN_INFO, LOG_ELS, 9262 "0600 FARP-RSP received from DID x%x\n", did); 9263 /* ACCEPT the Farp resp request */ 9264 lpfc_els_rsp_acc(vport, ELS_CMD_ACC, cmdiocb, ndlp, NULL); 9265 9266 return 0; 9267 } 9268 9269 /** 9270 * lpfc_els_rcv_fan - Process an unsolicited fan iocb command 9271 * @vport: pointer to a host virtual N_Port data structure. 9272 * @cmdiocb: pointer to lpfc command iocb data structure. 9273 * @fan_ndlp: pointer to a node-list data structure. 9274 * 9275 * This routine processes a Fabric Address Notification (FAN) IOCB 9276 * command received as an ELS unsolicited event. The FAN ELS command will 9277 * only be processed on a physical port (i.e., the @vport represents the 9278 * physical port). The fabric NodeName and PortName from the FAN IOCB are 9279 * compared against those in the phba data structure. If any of those is 9280 * different, the lpfc_initial_flogi() routine is invoked to initialize 9281 * Fabric Login (FLOGI) to the fabric to start the discover over. Otherwise, 9282 * if both of those are identical, the lpfc_issue_fabric_reglogin() routine 9283 * is invoked to register login to the fabric. 9284 * 9285 * Return code 9286 * 0 - Successfully processed fan iocb (currently always return 0). 9287 **/ 9288 static int 9289 lpfc_els_rcv_fan(struct lpfc_vport *vport, struct lpfc_iocbq *cmdiocb, 9290 struct lpfc_nodelist *fan_ndlp) 9291 { 9292 struct lpfc_hba *phba = vport->phba; 9293 uint32_t *lp; 9294 FAN *fp; 9295 9296 lpfc_printf_vlog(vport, KERN_INFO, LOG_ELS, "0265 FAN received\n"); 9297 lp = (uint32_t *)cmdiocb->cmd_dmabuf->virt; 9298 fp = (FAN *) ++lp; 9299 /* FAN received; Fan does not have a reply sequence */ 9300 if ((vport == phba->pport) && 9301 (vport->port_state == LPFC_LOCAL_CFG_LINK)) { 9302 if ((memcmp(&phba->fc_fabparam.nodeName, &fp->FnodeName, 9303 sizeof(struct lpfc_name))) || 9304 (memcmp(&phba->fc_fabparam.portName, &fp->FportName, 9305 sizeof(struct lpfc_name)))) { 9306 /* This port has switched fabrics. FLOGI is required */ 9307 lpfc_issue_init_vfi(vport); 9308 } else { 9309 /* FAN verified - skip FLOGI */ 9310 vport->fc_myDID = vport->fc_prevDID; 9311 if (phba->sli_rev < LPFC_SLI_REV4) 9312 lpfc_issue_fabric_reglogin(vport); 9313 else { 9314 lpfc_printf_vlog(vport, KERN_INFO, LOG_ELS, 9315 "3138 Need register VFI: (x%x/%x)\n", 9316 vport->fc_prevDID, vport->fc_myDID); 9317 lpfc_issue_reg_vfi(vport); 9318 } 9319 } 9320 } 9321 return 0; 9322 } 9323 9324 /** 9325 * lpfc_els_rcv_edc - Process an unsolicited EDC iocb 9326 * @vport: pointer to a host virtual N_Port data structure. 9327 * @cmdiocb: pointer to lpfc command iocb data structure. 9328 * @ndlp: pointer to a node-list data structure. 9329 * 9330 * Return code 9331 * 0 - Successfully processed echo iocb (currently always return 0) 9332 **/ 9333 static int 9334 lpfc_els_rcv_edc(struct lpfc_vport *vport, struct lpfc_iocbq *cmdiocb, 9335 struct lpfc_nodelist *ndlp) 9336 { 9337 struct lpfc_hba *phba = vport->phba; 9338 struct fc_els_edc *edc_req; 9339 struct fc_tlv_desc *tlv; 9340 uint8_t *payload; 9341 uint32_t *ptr, dtag; 9342 const char *dtag_nm; 9343 int desc_cnt = 0, bytes_remain; 9344 struct fc_diag_lnkflt_desc *plnkflt; 9345 9346 payload = cmdiocb->cmd_dmabuf->virt; 9347 9348 edc_req = (struct fc_els_edc *)payload; 9349 bytes_remain = be32_to_cpu(edc_req->desc_len); 9350 9351 ptr = (uint32_t *)payload; 9352 lpfc_printf_vlog(vport, KERN_INFO, 9353 LOG_ELS | LOG_CGN_MGMT | LOG_LDS_EVENT, 9354 "3319 Rcv EDC payload len %d: x%x x%x x%x\n", 9355 bytes_remain, be32_to_cpu(*ptr), 9356 be32_to_cpu(*(ptr + 1)), be32_to_cpu(*(ptr + 2))); 9357 9358 /* No signal support unless there is a congestion descriptor */ 9359 phba->cgn_reg_signal = EDC_CG_SIG_NOTSUPPORTED; 9360 phba->cgn_sig_freq = 0; 9361 phba->cgn_reg_fpin = LPFC_CGN_FPIN_ALARM | LPFC_CGN_FPIN_WARN; 9362 9363 if (bytes_remain <= 0) 9364 goto out; 9365 9366 tlv = edc_req->desc; 9367 9368 /* 9369 * cycle through EDC diagnostic descriptors to find the 9370 * congestion signaling capability descriptor 9371 */ 9372 while (bytes_remain) { 9373 if (bytes_remain < FC_TLV_DESC_HDR_SZ) { 9374 lpfc_printf_log(phba, KERN_WARNING, 9375 LOG_ELS | LOG_CGN_MGMT | LOG_LDS_EVENT, 9376 "6464 Truncated TLV hdr on " 9377 "Diagnostic descriptor[%d]\n", 9378 desc_cnt); 9379 goto out; 9380 } 9381 9382 dtag = be32_to_cpu(tlv->desc_tag); 9383 switch (dtag) { 9384 case ELS_DTAG_LNK_FAULT_CAP: 9385 if (bytes_remain < FC_TLV_DESC_SZ_FROM_LENGTH(tlv) || 9386 FC_TLV_DESC_SZ_FROM_LENGTH(tlv) != 9387 sizeof(struct fc_diag_lnkflt_desc)) { 9388 lpfc_printf_log(phba, KERN_WARNING, 9389 LOG_ELS | LOG_CGN_MGMT | LOG_LDS_EVENT, 9390 "6465 Truncated Link Fault Diagnostic " 9391 "descriptor[%d]: %d vs 0x%zx 0x%zx\n", 9392 desc_cnt, bytes_remain, 9393 FC_TLV_DESC_SZ_FROM_LENGTH(tlv), 9394 sizeof(struct fc_diag_lnkflt_desc)); 9395 goto out; 9396 } 9397 plnkflt = (struct fc_diag_lnkflt_desc *)tlv; 9398 lpfc_printf_log(phba, KERN_INFO, 9399 LOG_ELS | LOG_LDS_EVENT, 9400 "4626 Link Fault Desc Data: x%08x len x%x " 9401 "da x%x dd x%x interval x%x\n", 9402 be32_to_cpu(plnkflt->desc_tag), 9403 be32_to_cpu(plnkflt->desc_len), 9404 be32_to_cpu( 9405 plnkflt->degrade_activate_threshold), 9406 be32_to_cpu( 9407 plnkflt->degrade_deactivate_threshold), 9408 be32_to_cpu(plnkflt->fec_degrade_interval)); 9409 break; 9410 case ELS_DTAG_CG_SIGNAL_CAP: 9411 if (bytes_remain < FC_TLV_DESC_SZ_FROM_LENGTH(tlv) || 9412 FC_TLV_DESC_SZ_FROM_LENGTH(tlv) != 9413 sizeof(struct fc_diag_cg_sig_desc)) { 9414 lpfc_printf_log( 9415 phba, KERN_WARNING, LOG_CGN_MGMT, 9416 "6466 Truncated cgn signal Diagnostic " 9417 "descriptor[%d]: %d vs 0x%zx 0x%zx\n", 9418 desc_cnt, bytes_remain, 9419 FC_TLV_DESC_SZ_FROM_LENGTH(tlv), 9420 sizeof(struct fc_diag_cg_sig_desc)); 9421 goto out; 9422 } 9423 9424 phba->cgn_reg_fpin = phba->cgn_init_reg_fpin; 9425 phba->cgn_reg_signal = phba->cgn_init_reg_signal; 9426 9427 /* We start negotiation with lpfc_fabric_cgn_frequency. 9428 * When we process the EDC, we will settle on the 9429 * higher frequency. 9430 */ 9431 phba->cgn_sig_freq = lpfc_fabric_cgn_frequency; 9432 9433 lpfc_least_capable_settings( 9434 phba, (struct fc_diag_cg_sig_desc *)tlv); 9435 break; 9436 default: 9437 dtag_nm = lpfc_get_tlv_dtag_nm(dtag); 9438 lpfc_printf_log(phba, KERN_WARNING, 9439 LOG_ELS | LOG_CGN_MGMT | LOG_LDS_EVENT, 9440 "6467 unknown Diagnostic " 9441 "Descriptor[%d]: tag x%x (%s)\n", 9442 desc_cnt, dtag, dtag_nm); 9443 } 9444 bytes_remain -= FC_TLV_DESC_SZ_FROM_LENGTH(tlv); 9445 tlv = fc_tlv_next_desc(tlv); 9446 desc_cnt++; 9447 } 9448 out: 9449 /* Need to send back an ACC */ 9450 lpfc_issue_els_edc_rsp(vport, cmdiocb, ndlp); 9451 9452 lpfc_config_cgn_signal(phba); 9453 return 0; 9454 } 9455 9456 /** 9457 * lpfc_els_timeout - Handler funciton to the els timer 9458 * @t: timer context used to obtain the vport. 9459 * 9460 * This routine is invoked by the ELS timer after timeout. It posts the ELS 9461 * timer timeout event by setting the WORKER_ELS_TMO bit to the work port 9462 * event bitmap and then invokes the lpfc_worker_wake_up() routine to wake 9463 * up the worker thread. It is for the worker thread to invoke the routine 9464 * lpfc_els_timeout_handler() to work on the posted event WORKER_ELS_TMO. 9465 **/ 9466 void 9467 lpfc_els_timeout(struct timer_list *t) 9468 { 9469 struct lpfc_vport *vport = from_timer(vport, t, els_tmofunc); 9470 struct lpfc_hba *phba = vport->phba; 9471 uint32_t tmo_posted; 9472 unsigned long iflag; 9473 9474 spin_lock_irqsave(&vport->work_port_lock, iflag); 9475 tmo_posted = vport->work_port_events & WORKER_ELS_TMO; 9476 if (!tmo_posted && !test_bit(FC_UNLOADING, &vport->load_flag)) 9477 vport->work_port_events |= WORKER_ELS_TMO; 9478 spin_unlock_irqrestore(&vport->work_port_lock, iflag); 9479 9480 if (!tmo_posted && !test_bit(FC_UNLOADING, &vport->load_flag)) 9481 lpfc_worker_wake_up(phba); 9482 return; 9483 } 9484 9485 9486 /** 9487 * lpfc_els_timeout_handler - Process an els timeout event 9488 * @vport: pointer to a virtual N_Port data structure. 9489 * 9490 * This routine is the actual handler function that processes an ELS timeout 9491 * event. It walks the ELS ring to get and abort all the IOCBs (except the 9492 * ABORT/CLOSE/FARP/FARPR/FDISC), which are associated with the @vport by 9493 * invoking the lpfc_sli_issue_abort_iotag() routine. 9494 **/ 9495 void 9496 lpfc_els_timeout_handler(struct lpfc_vport *vport) 9497 { 9498 struct lpfc_hba *phba = vport->phba; 9499 struct lpfc_sli_ring *pring; 9500 struct lpfc_iocbq *tmp_iocb, *piocb; 9501 IOCB_t *cmd = NULL; 9502 struct lpfc_dmabuf *pcmd; 9503 uint32_t els_command = 0; 9504 uint32_t timeout; 9505 uint32_t remote_ID = 0xffffffff; 9506 LIST_HEAD(abort_list); 9507 u32 ulp_command = 0, ulp_context = 0, did = 0, iotag = 0; 9508 9509 9510 timeout = (uint32_t)(phba->fc_ratov << 1); 9511 9512 pring = lpfc_phba_elsring(phba); 9513 if (unlikely(!pring)) 9514 return; 9515 9516 if (test_bit(FC_UNLOADING, &phba->pport->load_flag)) 9517 return; 9518 9519 spin_lock_irq(&phba->hbalock); 9520 if (phba->sli_rev == LPFC_SLI_REV4) 9521 spin_lock(&pring->ring_lock); 9522 9523 list_for_each_entry_safe(piocb, tmp_iocb, &pring->txcmplq, list) { 9524 ulp_command = get_job_cmnd(phba, piocb); 9525 ulp_context = get_job_ulpcontext(phba, piocb); 9526 did = get_job_els_rsp64_did(phba, piocb); 9527 9528 if (phba->sli_rev == LPFC_SLI_REV4) { 9529 iotag = get_wqe_reqtag(piocb); 9530 } else { 9531 cmd = &piocb->iocb; 9532 iotag = cmd->ulpIoTag; 9533 } 9534 9535 if ((piocb->cmd_flag & LPFC_IO_LIBDFC) != 0 || 9536 ulp_command == CMD_ABORT_XRI_CX || 9537 ulp_command == CMD_ABORT_XRI_CN || 9538 ulp_command == CMD_CLOSE_XRI_CN) 9539 continue; 9540 9541 if (piocb->vport != vport) 9542 continue; 9543 9544 pcmd = piocb->cmd_dmabuf; 9545 if (pcmd) 9546 els_command = *(uint32_t *) (pcmd->virt); 9547 9548 if (els_command == ELS_CMD_FARP || 9549 els_command == ELS_CMD_FARPR || 9550 els_command == ELS_CMD_FDISC) 9551 continue; 9552 9553 if (piocb->drvrTimeout > 0) { 9554 if (piocb->drvrTimeout >= timeout) 9555 piocb->drvrTimeout -= timeout; 9556 else 9557 piocb->drvrTimeout = 0; 9558 continue; 9559 } 9560 9561 remote_ID = 0xffffffff; 9562 if (ulp_command != CMD_GEN_REQUEST64_CR) { 9563 remote_ID = did; 9564 } else { 9565 struct lpfc_nodelist *ndlp; 9566 ndlp = __lpfc_findnode_rpi(vport, ulp_context); 9567 if (ndlp) 9568 remote_ID = ndlp->nlp_DID; 9569 } 9570 list_add_tail(&piocb->dlist, &abort_list); 9571 } 9572 if (phba->sli_rev == LPFC_SLI_REV4) 9573 spin_unlock(&pring->ring_lock); 9574 spin_unlock_irq(&phba->hbalock); 9575 9576 list_for_each_entry_safe(piocb, tmp_iocb, &abort_list, dlist) { 9577 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT, 9578 "0127 ELS timeout Data: x%x x%x x%x " 9579 "x%x\n", els_command, 9580 remote_ID, ulp_command, iotag); 9581 9582 spin_lock_irq(&phba->hbalock); 9583 list_del_init(&piocb->dlist); 9584 lpfc_sli_issue_abort_iotag(phba, pring, piocb, NULL); 9585 spin_unlock_irq(&phba->hbalock); 9586 } 9587 9588 /* Make sure HBA is alive */ 9589 lpfc_issue_hb_tmo(phba); 9590 9591 if (!list_empty(&pring->txcmplq)) 9592 if (!test_bit(FC_UNLOADING, &phba->pport->load_flag)) 9593 mod_timer(&vport->els_tmofunc, 9594 jiffies + msecs_to_jiffies(1000 * timeout)); 9595 } 9596 9597 /** 9598 * lpfc_els_flush_cmd - Clean up the outstanding els commands to a vport 9599 * @vport: pointer to a host virtual N_Port data structure. 9600 * 9601 * This routine is used to clean up all the outstanding ELS commands on a 9602 * @vport. It first aborts the @vport by invoking lpfc_fabric_abort_vport() 9603 * routine. After that, it walks the ELS transmit queue to remove all the 9604 * IOCBs with the @vport other than the QUE_RING and ABORT/CLOSE IOCBs. For 9605 * the IOCBs with a non-NULL completion callback function, the callback 9606 * function will be invoked with the status set to IOSTAT_LOCAL_REJECT and 9607 * un.ulpWord[4] set to IOERR_SLI_ABORTED. For IOCBs with a NULL completion 9608 * callback function, the IOCB will simply be released. Finally, it walks 9609 * the ELS transmit completion queue to issue an abort IOCB to any transmit 9610 * completion queue IOCB that is associated with the @vport and is not 9611 * an IOCB from libdfc (i.e., the management plane IOCBs that are not 9612 * part of the discovery state machine) out to HBA by invoking the 9613 * lpfc_sli_issue_abort_iotag() routine. Note that this function issues the 9614 * abort IOCB to any transmit completion queueed IOCB, it does not guarantee 9615 * the IOCBs are aborted when this function returns. 9616 **/ 9617 void 9618 lpfc_els_flush_cmd(struct lpfc_vport *vport) 9619 { 9620 LIST_HEAD(abort_list); 9621 LIST_HEAD(cancel_list); 9622 struct lpfc_hba *phba = vport->phba; 9623 struct lpfc_sli_ring *pring; 9624 struct lpfc_iocbq *tmp_iocb, *piocb; 9625 u32 ulp_command; 9626 unsigned long iflags = 0; 9627 bool mbx_tmo_err; 9628 9629 lpfc_fabric_abort_vport(vport); 9630 9631 /* 9632 * For SLI3, only the hbalock is required. But SLI4 needs to coordinate 9633 * with the ring insert operation. Because lpfc_sli_issue_abort_iotag 9634 * ultimately grabs the ring_lock, the driver must splice the list into 9635 * a working list and release the locks before calling the abort. 9636 */ 9637 spin_lock_irqsave(&phba->hbalock, iflags); 9638 pring = lpfc_phba_elsring(phba); 9639 9640 /* Bail out if we've no ELS wq, like in PCI error recovery case. */ 9641 if (unlikely(!pring)) { 9642 spin_unlock_irqrestore(&phba->hbalock, iflags); 9643 return; 9644 } 9645 9646 if (phba->sli_rev == LPFC_SLI_REV4) 9647 spin_lock(&pring->ring_lock); 9648 9649 mbx_tmo_err = test_bit(MBX_TMO_ERR, &phba->bit_flags); 9650 /* First we need to issue aborts to outstanding cmds on txcmpl */ 9651 list_for_each_entry_safe(piocb, tmp_iocb, &pring->txcmplq, list) { 9652 if (piocb->cmd_flag & LPFC_IO_LIBDFC && !mbx_tmo_err) 9653 continue; 9654 9655 if (piocb->vport != vport) 9656 continue; 9657 9658 if (piocb->cmd_flag & LPFC_DRIVER_ABORTED && !mbx_tmo_err) 9659 continue; 9660 9661 /* On the ELS ring we can have ELS_REQUESTs or 9662 * GEN_REQUESTs waiting for a response. 9663 */ 9664 ulp_command = get_job_cmnd(phba, piocb); 9665 if (ulp_command == CMD_ELS_REQUEST64_CR) { 9666 list_add_tail(&piocb->dlist, &abort_list); 9667 9668 /* If the link is down when flushing ELS commands 9669 * the firmware will not complete them till after 9670 * the link comes back up. This may confuse 9671 * discovery for the new link up, so we need to 9672 * change the compl routine to just clean up the iocb 9673 * and avoid any retry logic. 9674 */ 9675 if (phba->link_state == LPFC_LINK_DOWN) 9676 piocb->cmd_cmpl = lpfc_cmpl_els_link_down; 9677 } else if (ulp_command == CMD_GEN_REQUEST64_CR || 9678 mbx_tmo_err) 9679 list_add_tail(&piocb->dlist, &abort_list); 9680 } 9681 9682 if (phba->sli_rev == LPFC_SLI_REV4) 9683 spin_unlock(&pring->ring_lock); 9684 spin_unlock_irqrestore(&phba->hbalock, iflags); 9685 9686 /* Abort each txcmpl iocb on aborted list and remove the dlist links. */ 9687 list_for_each_entry_safe(piocb, tmp_iocb, &abort_list, dlist) { 9688 spin_lock_irqsave(&phba->hbalock, iflags); 9689 list_del_init(&piocb->dlist); 9690 if (mbx_tmo_err || !(phba->sli.sli_flag & LPFC_SLI_ACTIVE)) 9691 list_move_tail(&piocb->list, &cancel_list); 9692 else 9693 lpfc_sli_issue_abort_iotag(phba, pring, piocb, NULL); 9694 9695 spin_unlock_irqrestore(&phba->hbalock, iflags); 9696 } 9697 if (!list_empty(&cancel_list)) 9698 lpfc_sli_cancel_iocbs(phba, &cancel_list, IOSTAT_LOCAL_REJECT, 9699 IOERR_SLI_ABORTED); 9700 else 9701 /* Make sure HBA is alive */ 9702 lpfc_issue_hb_tmo(phba); 9703 9704 if (!list_empty(&abort_list)) 9705 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT, 9706 "3387 abort list for txq not empty\n"); 9707 INIT_LIST_HEAD(&abort_list); 9708 9709 spin_lock_irqsave(&phba->hbalock, iflags); 9710 if (phba->sli_rev == LPFC_SLI_REV4) 9711 spin_lock(&pring->ring_lock); 9712 9713 /* No need to abort the txq list, 9714 * just queue them up for lpfc_sli_cancel_iocbs 9715 */ 9716 list_for_each_entry_safe(piocb, tmp_iocb, &pring->txq, list) { 9717 ulp_command = get_job_cmnd(phba, piocb); 9718 9719 if (piocb->cmd_flag & LPFC_IO_LIBDFC) 9720 continue; 9721 9722 /* Do not flush out the QUE_RING and ABORT/CLOSE iocbs */ 9723 if (ulp_command == CMD_QUE_RING_BUF_CN || 9724 ulp_command == CMD_QUE_RING_BUF64_CN || 9725 ulp_command == CMD_CLOSE_XRI_CN || 9726 ulp_command == CMD_ABORT_XRI_CN || 9727 ulp_command == CMD_ABORT_XRI_CX) 9728 continue; 9729 9730 if (piocb->vport != vport) 9731 continue; 9732 9733 list_del_init(&piocb->list); 9734 list_add_tail(&piocb->list, &abort_list); 9735 } 9736 9737 /* The same holds true for any FLOGI/FDISC on the fabric_iocb_list */ 9738 if (vport == phba->pport) { 9739 list_for_each_entry_safe(piocb, tmp_iocb, 9740 &phba->fabric_iocb_list, list) { 9741 list_del_init(&piocb->list); 9742 list_add_tail(&piocb->list, &abort_list); 9743 } 9744 } 9745 9746 if (phba->sli_rev == LPFC_SLI_REV4) 9747 spin_unlock(&pring->ring_lock); 9748 spin_unlock_irqrestore(&phba->hbalock, iflags); 9749 9750 /* Cancel all the IOCBs from the completions list */ 9751 lpfc_sli_cancel_iocbs(phba, &abort_list, 9752 IOSTAT_LOCAL_REJECT, IOERR_SLI_ABORTED); 9753 9754 return; 9755 } 9756 9757 /** 9758 * lpfc_els_flush_all_cmd - Clean up all the outstanding els commands to a HBA 9759 * @phba: pointer to lpfc hba data structure. 9760 * 9761 * This routine is used to clean up all the outstanding ELS commands on a 9762 * @phba. It first aborts the @phba by invoking the lpfc_fabric_abort_hba() 9763 * routine. After that, it walks the ELS transmit queue to remove all the 9764 * IOCBs to the @phba other than the QUE_RING and ABORT/CLOSE IOCBs. For 9765 * the IOCBs with the completion callback function associated, the callback 9766 * function will be invoked with the status set to IOSTAT_LOCAL_REJECT and 9767 * un.ulpWord[4] set to IOERR_SLI_ABORTED. For IOCBs without the completion 9768 * callback function associated, the IOCB will simply be released. Finally, 9769 * it walks the ELS transmit completion queue to issue an abort IOCB to any 9770 * transmit completion queue IOCB that is not an IOCB from libdfc (i.e., the 9771 * management plane IOCBs that are not part of the discovery state machine) 9772 * out to HBA by invoking the lpfc_sli_issue_abort_iotag() routine. 9773 **/ 9774 void 9775 lpfc_els_flush_all_cmd(struct lpfc_hba *phba) 9776 { 9777 struct lpfc_vport *vport; 9778 9779 spin_lock_irq(&phba->port_list_lock); 9780 list_for_each_entry(vport, &phba->port_list, listentry) 9781 lpfc_els_flush_cmd(vport); 9782 spin_unlock_irq(&phba->port_list_lock); 9783 9784 return; 9785 } 9786 9787 /** 9788 * lpfc_send_els_failure_event - Posts an ELS command failure event 9789 * @phba: Pointer to hba context object. 9790 * @cmdiocbp: Pointer to command iocb which reported error. 9791 * @rspiocbp: Pointer to response iocb which reported error. 9792 * 9793 * This function sends an event when there is an ELS command 9794 * failure. 9795 **/ 9796 void 9797 lpfc_send_els_failure_event(struct lpfc_hba *phba, 9798 struct lpfc_iocbq *cmdiocbp, 9799 struct lpfc_iocbq *rspiocbp) 9800 { 9801 struct lpfc_vport *vport = cmdiocbp->vport; 9802 struct Scsi_Host *shost = lpfc_shost_from_vport(vport); 9803 struct lpfc_lsrjt_event lsrjt_event; 9804 struct lpfc_fabric_event_header fabric_event; 9805 struct ls_rjt stat; 9806 struct lpfc_nodelist *ndlp; 9807 uint32_t *pcmd; 9808 u32 ulp_status, ulp_word4; 9809 9810 ndlp = cmdiocbp->ndlp; 9811 if (!ndlp) 9812 return; 9813 9814 ulp_status = get_job_ulpstatus(phba, rspiocbp); 9815 ulp_word4 = get_job_word4(phba, rspiocbp); 9816 9817 if (ulp_status == IOSTAT_LS_RJT) { 9818 lsrjt_event.header.event_type = FC_REG_ELS_EVENT; 9819 lsrjt_event.header.subcategory = LPFC_EVENT_LSRJT_RCV; 9820 memcpy(lsrjt_event.header.wwpn, &ndlp->nlp_portname, 9821 sizeof(struct lpfc_name)); 9822 memcpy(lsrjt_event.header.wwnn, &ndlp->nlp_nodename, 9823 sizeof(struct lpfc_name)); 9824 pcmd = (uint32_t *)cmdiocbp->cmd_dmabuf->virt; 9825 lsrjt_event.command = (pcmd != NULL) ? *pcmd : 0; 9826 stat.un.ls_rjt_error_be = cpu_to_be32(ulp_word4); 9827 lsrjt_event.reason_code = stat.un.b.lsRjtRsnCode; 9828 lsrjt_event.explanation = stat.un.b.lsRjtRsnCodeExp; 9829 fc_host_post_vendor_event(shost, 9830 fc_get_event_number(), 9831 sizeof(lsrjt_event), 9832 (char *)&lsrjt_event, 9833 LPFC_NL_VENDOR_ID); 9834 return; 9835 } 9836 if (ulp_status == IOSTAT_NPORT_BSY || 9837 ulp_status == IOSTAT_FABRIC_BSY) { 9838 fabric_event.event_type = FC_REG_FABRIC_EVENT; 9839 if (ulp_status == IOSTAT_NPORT_BSY) 9840 fabric_event.subcategory = LPFC_EVENT_PORT_BUSY; 9841 else 9842 fabric_event.subcategory = LPFC_EVENT_FABRIC_BUSY; 9843 memcpy(fabric_event.wwpn, &ndlp->nlp_portname, 9844 sizeof(struct lpfc_name)); 9845 memcpy(fabric_event.wwnn, &ndlp->nlp_nodename, 9846 sizeof(struct lpfc_name)); 9847 fc_host_post_vendor_event(shost, 9848 fc_get_event_number(), 9849 sizeof(fabric_event), 9850 (char *)&fabric_event, 9851 LPFC_NL_VENDOR_ID); 9852 return; 9853 } 9854 9855 } 9856 9857 /** 9858 * lpfc_send_els_event - Posts unsolicited els event 9859 * @vport: Pointer to vport object. 9860 * @ndlp: Pointer FC node object. 9861 * @payload: ELS command code type. 9862 * 9863 * This function posts an event when there is an incoming 9864 * unsolicited ELS command. 9865 **/ 9866 static void 9867 lpfc_send_els_event(struct lpfc_vport *vport, 9868 struct lpfc_nodelist *ndlp, 9869 uint32_t *payload) 9870 { 9871 struct lpfc_els_event_header *els_data = NULL; 9872 struct lpfc_logo_event *logo_data = NULL; 9873 struct Scsi_Host *shost = lpfc_shost_from_vport(vport); 9874 9875 if (*payload == ELS_CMD_LOGO) { 9876 logo_data = kmalloc(sizeof(struct lpfc_logo_event), GFP_KERNEL); 9877 if (!logo_data) { 9878 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT, 9879 "0148 Failed to allocate memory " 9880 "for LOGO event\n"); 9881 return; 9882 } 9883 els_data = &logo_data->header; 9884 } else { 9885 els_data = kmalloc(sizeof(struct lpfc_els_event_header), 9886 GFP_KERNEL); 9887 if (!els_data) { 9888 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT, 9889 "0149 Failed to allocate memory " 9890 "for ELS event\n"); 9891 return; 9892 } 9893 } 9894 els_data->event_type = FC_REG_ELS_EVENT; 9895 switch (*payload) { 9896 case ELS_CMD_PLOGI: 9897 els_data->subcategory = LPFC_EVENT_PLOGI_RCV; 9898 break; 9899 case ELS_CMD_PRLO: 9900 els_data->subcategory = LPFC_EVENT_PRLO_RCV; 9901 break; 9902 case ELS_CMD_ADISC: 9903 els_data->subcategory = LPFC_EVENT_ADISC_RCV; 9904 break; 9905 case ELS_CMD_LOGO: 9906 els_data->subcategory = LPFC_EVENT_LOGO_RCV; 9907 /* Copy the WWPN in the LOGO payload */ 9908 memcpy(logo_data->logo_wwpn, &payload[2], 9909 sizeof(struct lpfc_name)); 9910 break; 9911 default: 9912 kfree(els_data); 9913 return; 9914 } 9915 memcpy(els_data->wwpn, &ndlp->nlp_portname, sizeof(struct lpfc_name)); 9916 memcpy(els_data->wwnn, &ndlp->nlp_nodename, sizeof(struct lpfc_name)); 9917 if (*payload == ELS_CMD_LOGO) { 9918 fc_host_post_vendor_event(shost, 9919 fc_get_event_number(), 9920 sizeof(struct lpfc_logo_event), 9921 (char *)logo_data, 9922 LPFC_NL_VENDOR_ID); 9923 kfree(logo_data); 9924 } else { 9925 fc_host_post_vendor_event(shost, 9926 fc_get_event_number(), 9927 sizeof(struct lpfc_els_event_header), 9928 (char *)els_data, 9929 LPFC_NL_VENDOR_ID); 9930 kfree(els_data); 9931 } 9932 9933 return; 9934 } 9935 9936 9937 DECLARE_ENUM2STR_LOOKUP(lpfc_get_fpin_li_event_nm, fc_fpin_li_event_types, 9938 FC_FPIN_LI_EVT_TYPES_INIT); 9939 9940 DECLARE_ENUM2STR_LOOKUP(lpfc_get_fpin_deli_event_nm, fc_fpin_deli_event_types, 9941 FC_FPIN_DELI_EVT_TYPES_INIT); 9942 9943 DECLARE_ENUM2STR_LOOKUP(lpfc_get_fpin_congn_event_nm, fc_fpin_congn_event_types, 9944 FC_FPIN_CONGN_EVT_TYPES_INIT); 9945 9946 DECLARE_ENUM2STR_LOOKUP(lpfc_get_fpin_congn_severity_nm, 9947 fc_fpin_congn_severity_types, 9948 FC_FPIN_CONGN_SEVERITY_INIT); 9949 9950 9951 /** 9952 * lpfc_display_fpin_wwpn - Display WWPNs accessible by the attached port 9953 * @phba: Pointer to phba object. 9954 * @wwnlist: Pointer to list of WWPNs in FPIN payload 9955 * @cnt: count of WWPNs in FPIN payload 9956 * 9957 * This routine is called by LI and PC descriptors. 9958 * Limit the number of WWPNs displayed to 6 log messages, 6 per log message 9959 */ 9960 static void 9961 lpfc_display_fpin_wwpn(struct lpfc_hba *phba, __be64 *wwnlist, u32 cnt) 9962 { 9963 char buf[LPFC_FPIN_WWPN_LINE_SZ]; 9964 __be64 wwn; 9965 u64 wwpn; 9966 int i, len; 9967 int line = 0; 9968 int wcnt = 0; 9969 bool endit = false; 9970 9971 len = scnprintf(buf, LPFC_FPIN_WWPN_LINE_SZ, "Accessible WWPNs:"); 9972 for (i = 0; i < cnt; i++) { 9973 /* Are we on the last WWPN */ 9974 if (i == (cnt - 1)) 9975 endit = true; 9976 9977 /* Extract the next WWPN from the payload */ 9978 wwn = *wwnlist++; 9979 wwpn = be64_to_cpu(wwn); 9980 len += scnprintf(buf + len, LPFC_FPIN_WWPN_LINE_SZ - len, 9981 " %016llx", wwpn); 9982 9983 /* Log a message if we are on the last WWPN 9984 * or if we hit the max allowed per message. 9985 */ 9986 wcnt++; 9987 if (wcnt == LPFC_FPIN_WWPN_LINE_CNT || endit) { 9988 buf[len] = 0; 9989 lpfc_printf_log(phba, KERN_INFO, LOG_ELS, 9990 "4686 %s\n", buf); 9991 9992 /* Check if we reached the last WWPN */ 9993 if (endit) 9994 return; 9995 9996 /* Limit the number of log message displayed per FPIN */ 9997 line++; 9998 if (line == LPFC_FPIN_WWPN_NUM_LINE) { 9999 lpfc_printf_log(phba, KERN_INFO, LOG_ELS, 10000 "4687 %d WWPNs Truncated\n", 10001 cnt - i - 1); 10002 return; 10003 } 10004 10005 /* Start over with next log message */ 10006 wcnt = 0; 10007 len = scnprintf(buf, LPFC_FPIN_WWPN_LINE_SZ, 10008 "Additional WWPNs:"); 10009 } 10010 } 10011 } 10012 10013 /** 10014 * lpfc_els_rcv_fpin_li - Process an FPIN Link Integrity Event. 10015 * @phba: Pointer to phba object. 10016 * @tlv: Pointer to the Link Integrity Notification Descriptor. 10017 * 10018 * This function processes a Link Integrity FPIN event by logging a message. 10019 **/ 10020 static void 10021 lpfc_els_rcv_fpin_li(struct lpfc_hba *phba, struct fc_tlv_desc *tlv) 10022 { 10023 struct fc_fn_li_desc *li = (struct fc_fn_li_desc *)tlv; 10024 const char *li_evt_str; 10025 u32 li_evt, cnt; 10026 10027 li_evt = be16_to_cpu(li->event_type); 10028 li_evt_str = lpfc_get_fpin_li_event_nm(li_evt); 10029 cnt = be32_to_cpu(li->pname_count); 10030 10031 lpfc_printf_log(phba, KERN_INFO, LOG_ELS, 10032 "4680 FPIN Link Integrity %s (x%x) " 10033 "Detecting PN x%016llx Attached PN x%016llx " 10034 "Duration %d mSecs Count %d Port Cnt %d\n", 10035 li_evt_str, li_evt, 10036 be64_to_cpu(li->detecting_wwpn), 10037 be64_to_cpu(li->attached_wwpn), 10038 be32_to_cpu(li->event_threshold), 10039 be32_to_cpu(li->event_count), cnt); 10040 10041 lpfc_display_fpin_wwpn(phba, (__be64 *)&li->pname_list, cnt); 10042 } 10043 10044 /** 10045 * lpfc_els_rcv_fpin_del - Process an FPIN Delivery Event. 10046 * @phba: Pointer to hba object. 10047 * @tlv: Pointer to the Delivery Notification Descriptor TLV 10048 * 10049 * This function processes a Delivery FPIN event by logging a message. 10050 **/ 10051 static void 10052 lpfc_els_rcv_fpin_del(struct lpfc_hba *phba, struct fc_tlv_desc *tlv) 10053 { 10054 struct fc_fn_deli_desc *del = (struct fc_fn_deli_desc *)tlv; 10055 const char *del_rsn_str; 10056 u32 del_rsn; 10057 __be32 *frame; 10058 10059 del_rsn = be16_to_cpu(del->deli_reason_code); 10060 del_rsn_str = lpfc_get_fpin_deli_event_nm(del_rsn); 10061 10062 /* Skip over desc_tag/desc_len header to payload */ 10063 frame = (__be32 *)(del + 1); 10064 10065 lpfc_printf_log(phba, KERN_INFO, LOG_ELS, 10066 "4681 FPIN Delivery %s (x%x) " 10067 "Detecting PN x%016llx Attached PN x%016llx " 10068 "DiscHdr0 x%08x " 10069 "DiscHdr1 x%08x DiscHdr2 x%08x DiscHdr3 x%08x " 10070 "DiscHdr4 x%08x DiscHdr5 x%08x\n", 10071 del_rsn_str, del_rsn, 10072 be64_to_cpu(del->detecting_wwpn), 10073 be64_to_cpu(del->attached_wwpn), 10074 be32_to_cpu(frame[0]), 10075 be32_to_cpu(frame[1]), 10076 be32_to_cpu(frame[2]), 10077 be32_to_cpu(frame[3]), 10078 be32_to_cpu(frame[4]), 10079 be32_to_cpu(frame[5])); 10080 } 10081 10082 /** 10083 * lpfc_els_rcv_fpin_peer_cgn - Process a FPIN Peer Congestion Event. 10084 * @phba: Pointer to hba object. 10085 * @tlv: Pointer to the Peer Congestion Notification Descriptor TLV 10086 * 10087 * This function processes a Peer Congestion FPIN event by logging a message. 10088 **/ 10089 static void 10090 lpfc_els_rcv_fpin_peer_cgn(struct lpfc_hba *phba, struct fc_tlv_desc *tlv) 10091 { 10092 struct fc_fn_peer_congn_desc *pc = (struct fc_fn_peer_congn_desc *)tlv; 10093 const char *pc_evt_str; 10094 u32 pc_evt, cnt; 10095 10096 pc_evt = be16_to_cpu(pc->event_type); 10097 pc_evt_str = lpfc_get_fpin_congn_event_nm(pc_evt); 10098 cnt = be32_to_cpu(pc->pname_count); 10099 10100 /* Capture FPIN frequency */ 10101 phba->cgn_fpin_frequency = be32_to_cpu(pc->event_period); 10102 10103 lpfc_printf_log(phba, KERN_INFO, LOG_CGN_MGMT | LOG_ELS, 10104 "4684 FPIN Peer Congestion %s (x%x) " 10105 "Duration %d mSecs " 10106 "Detecting PN x%016llx Attached PN x%016llx " 10107 "Impacted Port Cnt %d\n", 10108 pc_evt_str, pc_evt, 10109 be32_to_cpu(pc->event_period), 10110 be64_to_cpu(pc->detecting_wwpn), 10111 be64_to_cpu(pc->attached_wwpn), 10112 cnt); 10113 10114 lpfc_display_fpin_wwpn(phba, (__be64 *)&pc->pname_list, cnt); 10115 } 10116 10117 /** 10118 * lpfc_els_rcv_fpin_cgn - Process an FPIN Congestion notification 10119 * @phba: Pointer to hba object. 10120 * @tlv: Pointer to the Congestion Notification Descriptor TLV 10121 * 10122 * This function processes an FPIN Congestion Notifiction. The notification 10123 * could be an Alarm or Warning. This routine feeds that data into driver's 10124 * running congestion algorithm. It also processes the FPIN by 10125 * logging a message. It returns 1 to indicate deliver this message 10126 * to the upper layer or 0 to indicate don't deliver it. 10127 **/ 10128 static int 10129 lpfc_els_rcv_fpin_cgn(struct lpfc_hba *phba, struct fc_tlv_desc *tlv) 10130 { 10131 struct lpfc_cgn_info *cp; 10132 struct fc_fn_congn_desc *cgn = (struct fc_fn_congn_desc *)tlv; 10133 const char *cgn_evt_str; 10134 u32 cgn_evt; 10135 const char *cgn_sev_str; 10136 u32 cgn_sev; 10137 uint16_t value; 10138 u32 crc; 10139 bool nm_log = false; 10140 int rc = 1; 10141 10142 cgn_evt = be16_to_cpu(cgn->event_type); 10143 cgn_evt_str = lpfc_get_fpin_congn_event_nm(cgn_evt); 10144 cgn_sev = cgn->severity; 10145 cgn_sev_str = lpfc_get_fpin_congn_severity_nm(cgn_sev); 10146 10147 /* The driver only takes action on a Credit Stall or Oversubscription 10148 * event type to engage the IO algorithm. The driver prints an 10149 * unmaskable message only for Lost Credit and Credit Stall. 10150 * TODO: Still need to have definition of host action on clear, 10151 * lost credit and device specific event types. 10152 */ 10153 switch (cgn_evt) { 10154 case FPIN_CONGN_LOST_CREDIT: 10155 nm_log = true; 10156 break; 10157 case FPIN_CONGN_CREDIT_STALL: 10158 nm_log = true; 10159 fallthrough; 10160 case FPIN_CONGN_OVERSUBSCRIPTION: 10161 if (cgn_evt == FPIN_CONGN_OVERSUBSCRIPTION) 10162 nm_log = false; 10163 switch (cgn_sev) { 10164 case FPIN_CONGN_SEVERITY_ERROR: 10165 /* Take action here for an Alarm event */ 10166 if (phba->cmf_active_mode != LPFC_CFG_OFF) { 10167 if (phba->cgn_reg_fpin & LPFC_CGN_FPIN_ALARM) { 10168 /* Track of alarm cnt for SYNC_WQE */ 10169 atomic_inc(&phba->cgn_sync_alarm_cnt); 10170 } 10171 /* Track alarm cnt for cgn_info regardless 10172 * of whether CMF is configured for Signals 10173 * or FPINs. 10174 */ 10175 atomic_inc(&phba->cgn_fabric_alarm_cnt); 10176 goto cleanup; 10177 } 10178 break; 10179 case FPIN_CONGN_SEVERITY_WARNING: 10180 /* Take action here for a Warning event */ 10181 if (phba->cmf_active_mode != LPFC_CFG_OFF) { 10182 if (phba->cgn_reg_fpin & LPFC_CGN_FPIN_WARN) { 10183 /* Track of warning cnt for SYNC_WQE */ 10184 atomic_inc(&phba->cgn_sync_warn_cnt); 10185 } 10186 /* Track warning cnt and freq for cgn_info 10187 * regardless of whether CMF is configured for 10188 * Signals or FPINs. 10189 */ 10190 atomic_inc(&phba->cgn_fabric_warn_cnt); 10191 cleanup: 10192 /* Save frequency in ms */ 10193 phba->cgn_fpin_frequency = 10194 be32_to_cpu(cgn->event_period); 10195 value = phba->cgn_fpin_frequency; 10196 if (phba->cgn_i) { 10197 cp = (struct lpfc_cgn_info *) 10198 phba->cgn_i->virt; 10199 cp->cgn_alarm_freq = 10200 cpu_to_le16(value); 10201 cp->cgn_warn_freq = 10202 cpu_to_le16(value); 10203 crc = lpfc_cgn_calc_crc32 10204 (cp, 10205 LPFC_CGN_INFO_SZ, 10206 LPFC_CGN_CRC32_SEED); 10207 cp->cgn_info_crc = cpu_to_le32(crc); 10208 } 10209 10210 /* Don't deliver to upper layer since 10211 * driver took action on this tlv. 10212 */ 10213 rc = 0; 10214 } 10215 break; 10216 } 10217 break; 10218 } 10219 10220 /* Change the log level to unmaskable for the following event types. */ 10221 lpfc_printf_log(phba, (nm_log ? KERN_WARNING : KERN_INFO), 10222 LOG_CGN_MGMT | LOG_ELS, 10223 "4683 FPIN CONGESTION %s type %s (x%x) Event " 10224 "Duration %d mSecs\n", 10225 cgn_sev_str, cgn_evt_str, cgn_evt, 10226 be32_to_cpu(cgn->event_period)); 10227 return rc; 10228 } 10229 10230 void 10231 lpfc_els_rcv_fpin(struct lpfc_vport *vport, void *p, u32 fpin_length) 10232 { 10233 struct lpfc_hba *phba = vport->phba; 10234 struct fc_els_fpin *fpin = (struct fc_els_fpin *)p; 10235 struct fc_tlv_desc *tlv, *first_tlv, *current_tlv; 10236 const char *dtag_nm; 10237 int desc_cnt = 0, bytes_remain, cnt; 10238 u32 dtag, deliver = 0; 10239 int len; 10240 10241 /* FPINs handled only if we are in the right discovery state */ 10242 if (vport->port_state < LPFC_DISC_AUTH) 10243 return; 10244 10245 /* make sure there is the full fpin header */ 10246 if (fpin_length < sizeof(struct fc_els_fpin)) 10247 return; 10248 10249 /* Sanity check descriptor length. The desc_len value does not 10250 * include space for the ELS command and the desc_len fields. 10251 */ 10252 len = be32_to_cpu(fpin->desc_len); 10253 if (fpin_length < len + sizeof(struct fc_els_fpin)) { 10254 lpfc_printf_log(phba, KERN_WARNING, LOG_CGN_MGMT, 10255 "4671 Bad ELS FPIN length %d: %d\n", 10256 len, fpin_length); 10257 return; 10258 } 10259 10260 tlv = (struct fc_tlv_desc *)&fpin->fpin_desc[0]; 10261 first_tlv = tlv; 10262 bytes_remain = fpin_length - offsetof(struct fc_els_fpin, fpin_desc); 10263 bytes_remain = min_t(u32, bytes_remain, be32_to_cpu(fpin->desc_len)); 10264 10265 /* process each descriptor separately */ 10266 while (bytes_remain >= FC_TLV_DESC_HDR_SZ && 10267 bytes_remain >= FC_TLV_DESC_SZ_FROM_LENGTH(tlv)) { 10268 dtag = be32_to_cpu(tlv->desc_tag); 10269 switch (dtag) { 10270 case ELS_DTAG_LNK_INTEGRITY: 10271 lpfc_els_rcv_fpin_li(phba, tlv); 10272 deliver = 1; 10273 break; 10274 case ELS_DTAG_DELIVERY: 10275 lpfc_els_rcv_fpin_del(phba, tlv); 10276 deliver = 1; 10277 break; 10278 case ELS_DTAG_PEER_CONGEST: 10279 lpfc_els_rcv_fpin_peer_cgn(phba, tlv); 10280 deliver = 1; 10281 break; 10282 case ELS_DTAG_CONGESTION: 10283 deliver = lpfc_els_rcv_fpin_cgn(phba, tlv); 10284 break; 10285 default: 10286 dtag_nm = lpfc_get_tlv_dtag_nm(dtag); 10287 lpfc_printf_log(phba, KERN_WARNING, LOG_CGN_MGMT, 10288 "4678 unknown FPIN descriptor[%d]: " 10289 "tag x%x (%s)\n", 10290 desc_cnt, dtag, dtag_nm); 10291 10292 /* If descriptor is bad, drop the rest of the data */ 10293 return; 10294 } 10295 lpfc_cgn_update_stat(phba, dtag); 10296 cnt = be32_to_cpu(tlv->desc_len); 10297 10298 /* Sanity check descriptor length. The desc_len value does not 10299 * include space for the desc_tag and the desc_len fields. 10300 */ 10301 len -= (cnt + sizeof(struct fc_tlv_desc)); 10302 if (len < 0) { 10303 dtag_nm = lpfc_get_tlv_dtag_nm(dtag); 10304 lpfc_printf_log(phba, KERN_WARNING, LOG_CGN_MGMT, 10305 "4672 Bad FPIN descriptor TLV length " 10306 "%d: %d %d %s\n", 10307 cnt, len, fpin_length, dtag_nm); 10308 return; 10309 } 10310 10311 current_tlv = tlv; 10312 bytes_remain -= FC_TLV_DESC_SZ_FROM_LENGTH(tlv); 10313 tlv = fc_tlv_next_desc(tlv); 10314 10315 /* Format payload such that the FPIN delivered to the 10316 * upper layer is a single descriptor FPIN. 10317 */ 10318 if (desc_cnt) 10319 memcpy(first_tlv, current_tlv, 10320 (cnt + sizeof(struct fc_els_fpin))); 10321 10322 /* Adjust the length so that it only reflects a 10323 * single descriptor FPIN. 10324 */ 10325 fpin_length = cnt + sizeof(struct fc_els_fpin); 10326 fpin->desc_len = cpu_to_be32(fpin_length); 10327 fpin_length += sizeof(struct fc_els_fpin); /* the entire FPIN */ 10328 10329 /* Send every descriptor individually to the upper layer */ 10330 if (deliver) 10331 fc_host_fpin_rcv(lpfc_shost_from_vport(vport), 10332 fpin_length, (char *)fpin, 0); 10333 desc_cnt++; 10334 } 10335 } 10336 10337 /** 10338 * lpfc_els_unsol_buffer - Process an unsolicited event data buffer 10339 * @phba: pointer to lpfc hba data structure. 10340 * @pring: pointer to a SLI ring. 10341 * @vport: pointer to a host virtual N_Port data structure. 10342 * @elsiocb: pointer to lpfc els command iocb data structure. 10343 * 10344 * This routine is used for processing the IOCB associated with a unsolicited 10345 * event. It first determines whether there is an existing ndlp that matches 10346 * the DID from the unsolicited IOCB. If not, it will create a new one with 10347 * the DID from the unsolicited IOCB. The ELS command from the unsolicited 10348 * IOCB is then used to invoke the proper routine and to set up proper state 10349 * of the discovery state machine. 10350 **/ 10351 static void 10352 lpfc_els_unsol_buffer(struct lpfc_hba *phba, struct lpfc_sli_ring *pring, 10353 struct lpfc_vport *vport, struct lpfc_iocbq *elsiocb) 10354 { 10355 struct lpfc_nodelist *ndlp; 10356 struct ls_rjt stat; 10357 u32 *payload, payload_len; 10358 u32 cmd = 0, did = 0, newnode, status = 0; 10359 uint8_t rjt_exp, rjt_err = 0, init_link = 0; 10360 struct lpfc_wcqe_complete *wcqe_cmpl = NULL; 10361 LPFC_MBOXQ_t *mbox; 10362 10363 if (!vport || !elsiocb->cmd_dmabuf) 10364 goto dropit; 10365 10366 newnode = 0; 10367 wcqe_cmpl = &elsiocb->wcqe_cmpl; 10368 payload = elsiocb->cmd_dmabuf->virt; 10369 if (phba->sli_rev == LPFC_SLI_REV4) 10370 payload_len = wcqe_cmpl->total_data_placed; 10371 else 10372 payload_len = elsiocb->iocb.unsli3.rcvsli3.acc_len; 10373 status = get_job_ulpstatus(phba, elsiocb); 10374 cmd = *payload; 10375 if ((phba->sli3_options & LPFC_SLI3_HBQ_ENABLED) == 0) 10376 lpfc_sli3_post_buffer(phba, pring, 1); 10377 10378 did = get_job_els_rsp64_did(phba, elsiocb); 10379 if (status) { 10380 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_UNSOL, 10381 "RCV Unsol ELS: status:x%x/x%x did:x%x", 10382 status, get_job_word4(phba, elsiocb), did); 10383 goto dropit; 10384 } 10385 10386 /* Check to see if link went down during discovery */ 10387 if (lpfc_els_chk_latt(vport)) 10388 goto dropit; 10389 10390 /* Ignore traffic received during vport shutdown. */ 10391 if (test_bit(FC_UNLOADING, &vport->load_flag)) 10392 goto dropit; 10393 10394 /* If NPort discovery is delayed drop incoming ELS */ 10395 if (test_bit(FC_DISC_DELAYED, &vport->fc_flag) && 10396 cmd != ELS_CMD_PLOGI) 10397 goto dropit; 10398 10399 ndlp = lpfc_findnode_did(vport, did); 10400 if (!ndlp) { 10401 /* Cannot find existing Fabric ndlp, so allocate a new one */ 10402 ndlp = lpfc_nlp_init(vport, did); 10403 if (!ndlp) 10404 goto dropit; 10405 lpfc_nlp_set_state(vport, ndlp, NLP_STE_NPR_NODE); 10406 newnode = 1; 10407 if ((did & Fabric_DID_MASK) == Fabric_DID_MASK) 10408 ndlp->nlp_type |= NLP_FABRIC; 10409 } else if (ndlp->nlp_state == NLP_STE_UNUSED_NODE) { 10410 lpfc_nlp_set_state(vport, ndlp, NLP_STE_NPR_NODE); 10411 newnode = 1; 10412 } 10413 10414 phba->fc_stat.elsRcvFrame++; 10415 10416 /* 10417 * Do not process any unsolicited ELS commands 10418 * if the ndlp is in DEV_LOSS 10419 */ 10420 spin_lock_irq(&ndlp->lock); 10421 if (ndlp->nlp_flag & NLP_IN_DEV_LOSS) { 10422 spin_unlock_irq(&ndlp->lock); 10423 if (newnode) 10424 lpfc_nlp_put(ndlp); 10425 goto dropit; 10426 } 10427 spin_unlock_irq(&ndlp->lock); 10428 10429 elsiocb->ndlp = lpfc_nlp_get(ndlp); 10430 if (!elsiocb->ndlp) 10431 goto dropit; 10432 elsiocb->vport = vport; 10433 10434 if ((cmd & ELS_CMD_MASK) == ELS_CMD_RSCN) { 10435 cmd &= ELS_CMD_MASK; 10436 } 10437 /* ELS command <elsCmd> received from NPORT <did> */ 10438 lpfc_printf_vlog(vport, KERN_INFO, LOG_ELS, 10439 "0112 ELS command x%x received from NPORT x%x " 10440 "refcnt %d Data: x%x x%lx x%x x%x\n", 10441 cmd, did, kref_read(&ndlp->kref), vport->port_state, 10442 vport->fc_flag, vport->fc_myDID, vport->fc_prevDID); 10443 10444 /* reject till our FLOGI completes or PLOGI assigned DID via PT2PT */ 10445 if ((vport->port_state < LPFC_FABRIC_CFG_LINK) && 10446 (cmd != ELS_CMD_FLOGI) && 10447 !((cmd == ELS_CMD_PLOGI) && test_bit(FC_PT2PT, &vport->fc_flag))) { 10448 rjt_err = LSRJT_LOGICAL_BSY; 10449 rjt_exp = LSEXP_NOTHING_MORE; 10450 goto lsrjt; 10451 } 10452 10453 switch (cmd) { 10454 case ELS_CMD_PLOGI: 10455 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_UNSOL, 10456 "RCV PLOGI: did:x%x/ste:x%x flg:x%x", 10457 did, vport->port_state, ndlp->nlp_flag); 10458 10459 phba->fc_stat.elsRcvPLOGI++; 10460 ndlp = lpfc_plogi_confirm_nport(phba, payload, ndlp); 10461 if (phba->sli_rev == LPFC_SLI_REV4 && 10462 test_bit(FC_PT2PT, &phba->pport->fc_flag)) { 10463 vport->fc_prevDID = vport->fc_myDID; 10464 /* Our DID needs to be updated before registering 10465 * the vfi. This is done in lpfc_rcv_plogi but 10466 * that is called after the reg_vfi. 10467 */ 10468 vport->fc_myDID = 10469 bf_get(els_rsp64_sid, 10470 &elsiocb->wqe.xmit_els_rsp); 10471 lpfc_printf_vlog(vport, KERN_INFO, LOG_ELS, 10472 "3312 Remote port assigned DID x%x " 10473 "%x\n", vport->fc_myDID, 10474 vport->fc_prevDID); 10475 } 10476 10477 lpfc_send_els_event(vport, ndlp, payload); 10478 10479 /* If Nport discovery is delayed, reject PLOGIs */ 10480 if (test_bit(FC_DISC_DELAYED, &vport->fc_flag)) { 10481 rjt_err = LSRJT_UNABLE_TPC; 10482 rjt_exp = LSEXP_NOTHING_MORE; 10483 break; 10484 } 10485 10486 if (vport->port_state < LPFC_DISC_AUTH) { 10487 if (!test_bit(FC_PT2PT, &phba->pport->fc_flag) || 10488 test_bit(FC_PT2PT_PLOGI, &phba->pport->fc_flag)) { 10489 rjt_err = LSRJT_UNABLE_TPC; 10490 rjt_exp = LSEXP_NOTHING_MORE; 10491 break; 10492 } 10493 } 10494 10495 spin_lock_irq(&ndlp->lock); 10496 ndlp->nlp_flag &= ~NLP_TARGET_REMOVE; 10497 spin_unlock_irq(&ndlp->lock); 10498 10499 lpfc_disc_state_machine(vport, ndlp, elsiocb, 10500 NLP_EVT_RCV_PLOGI); 10501 10502 break; 10503 case ELS_CMD_FLOGI: 10504 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_UNSOL, 10505 "RCV FLOGI: did:x%x/ste:x%x flg:x%x", 10506 did, vport->port_state, ndlp->nlp_flag); 10507 10508 phba->fc_stat.elsRcvFLOGI++; 10509 10510 /* If the driver believes fabric discovery is done and is ready, 10511 * bounce the link. There is some descrepancy. 10512 */ 10513 if (vport->port_state >= LPFC_LOCAL_CFG_LINK && 10514 test_bit(FC_PT2PT, &vport->fc_flag) && 10515 vport->rcv_flogi_cnt >= 1) { 10516 rjt_err = LSRJT_LOGICAL_BSY; 10517 rjt_exp = LSEXP_NOTHING_MORE; 10518 init_link++; 10519 goto lsrjt; 10520 } 10521 10522 lpfc_els_rcv_flogi(vport, elsiocb, ndlp); 10523 /* retain node if our response is deferred */ 10524 if (phba->defer_flogi_acc.flag) 10525 break; 10526 if (newnode) 10527 lpfc_disc_state_machine(vport, ndlp, NULL, 10528 NLP_EVT_DEVICE_RM); 10529 break; 10530 case ELS_CMD_LOGO: 10531 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_UNSOL, 10532 "RCV LOGO: did:x%x/ste:x%x flg:x%x", 10533 did, vport->port_state, ndlp->nlp_flag); 10534 10535 phba->fc_stat.elsRcvLOGO++; 10536 lpfc_send_els_event(vport, ndlp, payload); 10537 if (vport->port_state < LPFC_DISC_AUTH) { 10538 rjt_err = LSRJT_UNABLE_TPC; 10539 rjt_exp = LSEXP_NOTHING_MORE; 10540 break; 10541 } 10542 lpfc_disc_state_machine(vport, ndlp, elsiocb, NLP_EVT_RCV_LOGO); 10543 if (newnode) 10544 lpfc_disc_state_machine(vport, ndlp, NULL, 10545 NLP_EVT_DEVICE_RM); 10546 break; 10547 case ELS_CMD_PRLO: 10548 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_UNSOL, 10549 "RCV PRLO: did:x%x/ste:x%x flg:x%x", 10550 did, vport->port_state, ndlp->nlp_flag); 10551 10552 phba->fc_stat.elsRcvPRLO++; 10553 lpfc_send_els_event(vport, ndlp, payload); 10554 if (vport->port_state < LPFC_DISC_AUTH) { 10555 rjt_err = LSRJT_UNABLE_TPC; 10556 rjt_exp = LSEXP_NOTHING_MORE; 10557 break; 10558 } 10559 lpfc_disc_state_machine(vport, ndlp, elsiocb, NLP_EVT_RCV_PRLO); 10560 break; 10561 case ELS_CMD_LCB: 10562 phba->fc_stat.elsRcvLCB++; 10563 lpfc_els_rcv_lcb(vport, elsiocb, ndlp); 10564 break; 10565 case ELS_CMD_RDP: 10566 phba->fc_stat.elsRcvRDP++; 10567 lpfc_els_rcv_rdp(vport, elsiocb, ndlp); 10568 break; 10569 case ELS_CMD_RSCN: 10570 phba->fc_stat.elsRcvRSCN++; 10571 lpfc_els_rcv_rscn(vport, elsiocb, ndlp); 10572 if (newnode) 10573 lpfc_disc_state_machine(vport, ndlp, NULL, 10574 NLP_EVT_DEVICE_RM); 10575 break; 10576 case ELS_CMD_ADISC: 10577 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_UNSOL, 10578 "RCV ADISC: did:x%x/ste:x%x flg:x%x", 10579 did, vport->port_state, ndlp->nlp_flag); 10580 10581 lpfc_send_els_event(vport, ndlp, payload); 10582 phba->fc_stat.elsRcvADISC++; 10583 if (vport->port_state < LPFC_DISC_AUTH) { 10584 rjt_err = LSRJT_UNABLE_TPC; 10585 rjt_exp = LSEXP_NOTHING_MORE; 10586 break; 10587 } 10588 lpfc_disc_state_machine(vport, ndlp, elsiocb, 10589 NLP_EVT_RCV_ADISC); 10590 break; 10591 case ELS_CMD_PDISC: 10592 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_UNSOL, 10593 "RCV PDISC: did:x%x/ste:x%x flg:x%x", 10594 did, vport->port_state, ndlp->nlp_flag); 10595 10596 phba->fc_stat.elsRcvPDISC++; 10597 if (vport->port_state < LPFC_DISC_AUTH) { 10598 rjt_err = LSRJT_UNABLE_TPC; 10599 rjt_exp = LSEXP_NOTHING_MORE; 10600 break; 10601 } 10602 lpfc_disc_state_machine(vport, ndlp, elsiocb, 10603 NLP_EVT_RCV_PDISC); 10604 break; 10605 case ELS_CMD_FARPR: 10606 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_UNSOL, 10607 "RCV FARPR: did:x%x/ste:x%x flg:x%x", 10608 did, vport->port_state, ndlp->nlp_flag); 10609 10610 phba->fc_stat.elsRcvFARPR++; 10611 lpfc_els_rcv_farpr(vport, elsiocb, ndlp); 10612 break; 10613 case ELS_CMD_FARP: 10614 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_UNSOL, 10615 "RCV FARP: did:x%x/ste:x%x flg:x%x", 10616 did, vport->port_state, ndlp->nlp_flag); 10617 10618 phba->fc_stat.elsRcvFARP++; 10619 lpfc_els_rcv_farp(vport, elsiocb, ndlp); 10620 break; 10621 case ELS_CMD_FAN: 10622 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_UNSOL, 10623 "RCV FAN: did:x%x/ste:x%x flg:x%x", 10624 did, vport->port_state, ndlp->nlp_flag); 10625 10626 phba->fc_stat.elsRcvFAN++; 10627 lpfc_els_rcv_fan(vport, elsiocb, ndlp); 10628 break; 10629 case ELS_CMD_PRLI: 10630 case ELS_CMD_NVMEPRLI: 10631 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_UNSOL, 10632 "RCV PRLI: did:x%x/ste:x%x flg:x%x", 10633 did, vport->port_state, ndlp->nlp_flag); 10634 10635 phba->fc_stat.elsRcvPRLI++; 10636 if ((vport->port_state < LPFC_DISC_AUTH) && 10637 test_bit(FC_FABRIC, &vport->fc_flag)) { 10638 rjt_err = LSRJT_UNABLE_TPC; 10639 rjt_exp = LSEXP_NOTHING_MORE; 10640 break; 10641 } 10642 lpfc_disc_state_machine(vport, ndlp, elsiocb, NLP_EVT_RCV_PRLI); 10643 break; 10644 case ELS_CMD_LIRR: 10645 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_UNSOL, 10646 "RCV LIRR: did:x%x/ste:x%x flg:x%x", 10647 did, vport->port_state, ndlp->nlp_flag); 10648 10649 phba->fc_stat.elsRcvLIRR++; 10650 lpfc_els_rcv_lirr(vport, elsiocb, ndlp); 10651 if (newnode) 10652 lpfc_disc_state_machine(vport, ndlp, NULL, 10653 NLP_EVT_DEVICE_RM); 10654 break; 10655 case ELS_CMD_RLS: 10656 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_UNSOL, 10657 "RCV RLS: did:x%x/ste:x%x flg:x%x", 10658 did, vport->port_state, ndlp->nlp_flag); 10659 10660 phba->fc_stat.elsRcvRLS++; 10661 lpfc_els_rcv_rls(vport, elsiocb, ndlp); 10662 if (newnode) 10663 lpfc_disc_state_machine(vport, ndlp, NULL, 10664 NLP_EVT_DEVICE_RM); 10665 break; 10666 case ELS_CMD_RPL: 10667 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_UNSOL, 10668 "RCV RPL: did:x%x/ste:x%x flg:x%x", 10669 did, vport->port_state, ndlp->nlp_flag); 10670 10671 phba->fc_stat.elsRcvRPL++; 10672 lpfc_els_rcv_rpl(vport, elsiocb, ndlp); 10673 if (newnode) 10674 lpfc_disc_state_machine(vport, ndlp, NULL, 10675 NLP_EVT_DEVICE_RM); 10676 break; 10677 case ELS_CMD_RNID: 10678 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_UNSOL, 10679 "RCV RNID: did:x%x/ste:x%x flg:x%x", 10680 did, vport->port_state, ndlp->nlp_flag); 10681 10682 phba->fc_stat.elsRcvRNID++; 10683 lpfc_els_rcv_rnid(vport, elsiocb, ndlp); 10684 if (newnode) 10685 lpfc_disc_state_machine(vport, ndlp, NULL, 10686 NLP_EVT_DEVICE_RM); 10687 break; 10688 case ELS_CMD_RTV: 10689 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_UNSOL, 10690 "RCV RTV: did:x%x/ste:x%x flg:x%x", 10691 did, vport->port_state, ndlp->nlp_flag); 10692 phba->fc_stat.elsRcvRTV++; 10693 lpfc_els_rcv_rtv(vport, elsiocb, ndlp); 10694 if (newnode) 10695 lpfc_disc_state_machine(vport, ndlp, NULL, 10696 NLP_EVT_DEVICE_RM); 10697 break; 10698 case ELS_CMD_RRQ: 10699 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_UNSOL, 10700 "RCV RRQ: did:x%x/ste:x%x flg:x%x", 10701 did, vport->port_state, ndlp->nlp_flag); 10702 10703 phba->fc_stat.elsRcvRRQ++; 10704 lpfc_els_rcv_rrq(vport, elsiocb, ndlp); 10705 if (newnode) 10706 lpfc_disc_state_machine(vport, ndlp, NULL, 10707 NLP_EVT_DEVICE_RM); 10708 break; 10709 case ELS_CMD_ECHO: 10710 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_UNSOL, 10711 "RCV ECHO: did:x%x/ste:x%x flg:x%x", 10712 did, vport->port_state, ndlp->nlp_flag); 10713 10714 phba->fc_stat.elsRcvECHO++; 10715 lpfc_els_rcv_echo(vport, elsiocb, ndlp); 10716 if (newnode) 10717 lpfc_disc_state_machine(vport, ndlp, NULL, 10718 NLP_EVT_DEVICE_RM); 10719 break; 10720 case ELS_CMD_REC: 10721 /* receive this due to exchange closed */ 10722 rjt_err = LSRJT_UNABLE_TPC; 10723 rjt_exp = LSEXP_INVALID_OX_RX; 10724 break; 10725 case ELS_CMD_FPIN: 10726 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_UNSOL, 10727 "RCV FPIN: did:x%x/ste:x%x flg:x%x", 10728 did, vport->port_state, ndlp->nlp_flag); 10729 10730 lpfc_els_rcv_fpin(vport, (struct fc_els_fpin *)payload, 10731 payload_len); 10732 10733 /* There are no replies, so no rjt codes */ 10734 break; 10735 case ELS_CMD_EDC: 10736 lpfc_els_rcv_edc(vport, elsiocb, ndlp); 10737 break; 10738 case ELS_CMD_RDF: 10739 phba->fc_stat.elsRcvRDF++; 10740 /* Accept RDF only from fabric controller */ 10741 if (did != Fabric_Cntl_DID) { 10742 lpfc_printf_vlog(vport, KERN_WARNING, LOG_ELS, 10743 "1115 Received RDF from invalid DID " 10744 "x%x\n", did); 10745 rjt_err = LSRJT_PROTOCOL_ERR; 10746 rjt_exp = LSEXP_NOTHING_MORE; 10747 goto lsrjt; 10748 } 10749 10750 lpfc_els_rcv_rdf(vport, elsiocb, ndlp); 10751 break; 10752 default: 10753 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_UNSOL, 10754 "RCV ELS cmd: cmd:x%x did:x%x/ste:x%x", 10755 cmd, did, vport->port_state); 10756 10757 /* Unsupported ELS command, reject */ 10758 rjt_err = LSRJT_CMD_UNSUPPORTED; 10759 rjt_exp = LSEXP_NOTHING_MORE; 10760 10761 /* Unknown ELS command <elsCmd> received from NPORT <did> */ 10762 lpfc_printf_vlog(vport, KERN_ERR, LOG_ELS, 10763 "0115 Unknown ELS command x%x " 10764 "received from NPORT x%x\n", cmd, did); 10765 if (newnode) 10766 lpfc_disc_state_machine(vport, ndlp, NULL, 10767 NLP_EVT_DEVICE_RM); 10768 break; 10769 } 10770 10771 lsrjt: 10772 /* check if need to LS_RJT received ELS cmd */ 10773 if (rjt_err) { 10774 memset(&stat, 0, sizeof(stat)); 10775 stat.un.b.lsRjtRsnCode = rjt_err; 10776 stat.un.b.lsRjtRsnCodeExp = rjt_exp; 10777 lpfc_els_rsp_reject(vport, stat.un.lsRjtError, elsiocb, ndlp, 10778 NULL); 10779 /* Remove the reference from above for new nodes. */ 10780 if (newnode) 10781 lpfc_disc_state_machine(vport, ndlp, NULL, 10782 NLP_EVT_DEVICE_RM); 10783 } 10784 10785 /* Release the reference on this elsiocb, not the ndlp. */ 10786 lpfc_nlp_put(elsiocb->ndlp); 10787 elsiocb->ndlp = NULL; 10788 10789 /* Special case. Driver received an unsolicited command that 10790 * unsupportable given the driver's current state. Reset the 10791 * link and start over. 10792 */ 10793 if (init_link) { 10794 mbox = mempool_alloc(phba->mbox_mem_pool, GFP_KERNEL); 10795 if (!mbox) 10796 return; 10797 lpfc_linkdown(phba); 10798 lpfc_init_link(phba, mbox, 10799 phba->cfg_topology, 10800 phba->cfg_link_speed); 10801 mbox->u.mb.un.varInitLnk.lipsr_AL_PA = 0; 10802 mbox->mbox_cmpl = lpfc_sli_def_mbox_cmpl; 10803 mbox->vport = vport; 10804 if (lpfc_sli_issue_mbox(phba, mbox, MBX_NOWAIT) == 10805 MBX_NOT_FINISHED) 10806 mempool_free(mbox, phba->mbox_mem_pool); 10807 } 10808 10809 return; 10810 10811 dropit: 10812 if (vport && !test_bit(FC_UNLOADING, &vport->load_flag)) 10813 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT, 10814 "0111 Dropping received ELS cmd " 10815 "Data: x%x x%x x%x x%x\n", 10816 cmd, status, get_job_word4(phba, elsiocb), did); 10817 10818 phba->fc_stat.elsRcvDrop++; 10819 } 10820 10821 /** 10822 * lpfc_els_unsol_event - Process an unsolicited event from an els sli ring 10823 * @phba: pointer to lpfc hba data structure. 10824 * @pring: pointer to a SLI ring. 10825 * @elsiocb: pointer to lpfc els iocb data structure. 10826 * 10827 * This routine is used to process an unsolicited event received from a SLI 10828 * (Service Level Interface) ring. The actual processing of the data buffer 10829 * associated with the unsolicited event is done by invoking the routine 10830 * lpfc_els_unsol_buffer() after properly set up the iocb buffer from the 10831 * SLI ring on which the unsolicited event was received. 10832 **/ 10833 void 10834 lpfc_els_unsol_event(struct lpfc_hba *phba, struct lpfc_sli_ring *pring, 10835 struct lpfc_iocbq *elsiocb) 10836 { 10837 struct lpfc_vport *vport = elsiocb->vport; 10838 u32 ulp_command, status, parameter, bde_count = 0; 10839 IOCB_t *icmd; 10840 struct lpfc_wcqe_complete *wcqe_cmpl = NULL; 10841 struct lpfc_dmabuf *bdeBuf1 = elsiocb->cmd_dmabuf; 10842 struct lpfc_dmabuf *bdeBuf2 = elsiocb->bpl_dmabuf; 10843 dma_addr_t paddr; 10844 10845 elsiocb->cmd_dmabuf = NULL; 10846 elsiocb->rsp_dmabuf = NULL; 10847 elsiocb->bpl_dmabuf = NULL; 10848 10849 wcqe_cmpl = &elsiocb->wcqe_cmpl; 10850 ulp_command = get_job_cmnd(phba, elsiocb); 10851 status = get_job_ulpstatus(phba, elsiocb); 10852 parameter = get_job_word4(phba, elsiocb); 10853 if (phba->sli_rev == LPFC_SLI_REV4) 10854 bde_count = wcqe_cmpl->word3; 10855 else 10856 bde_count = elsiocb->iocb.ulpBdeCount; 10857 10858 if (status == IOSTAT_NEED_BUFFER) { 10859 lpfc_sli_hbqbuf_add_hbqs(phba, LPFC_ELS_HBQ); 10860 } else if (status == IOSTAT_LOCAL_REJECT && 10861 (parameter & IOERR_PARAM_MASK) == 10862 IOERR_RCV_BUFFER_WAITING) { 10863 phba->fc_stat.NoRcvBuf++; 10864 /* Not enough posted buffers; Try posting more buffers */ 10865 if (!(phba->sli3_options & LPFC_SLI3_HBQ_ENABLED)) 10866 lpfc_sli3_post_buffer(phba, pring, 0); 10867 return; 10868 } 10869 10870 if (phba->sli_rev == LPFC_SLI_REV3) { 10871 icmd = &elsiocb->iocb; 10872 if ((phba->sli3_options & LPFC_SLI3_NPIV_ENABLED) && 10873 (ulp_command == CMD_IOCB_RCV_ELS64_CX || 10874 ulp_command == CMD_IOCB_RCV_SEQ64_CX)) { 10875 if (icmd->unsli3.rcvsli3.vpi == 0xffff) 10876 vport = phba->pport; 10877 else 10878 vport = lpfc_find_vport_by_vpid(phba, 10879 icmd->unsli3.rcvsli3.vpi); 10880 } 10881 } 10882 10883 /* If there are no BDEs associated 10884 * with this IOCB, there is nothing to do. 10885 */ 10886 if (bde_count == 0) 10887 return; 10888 10889 /* Account for SLI2 or SLI3 and later unsolicited buffering */ 10890 if (phba->sli3_options & LPFC_SLI3_HBQ_ENABLED) { 10891 elsiocb->cmd_dmabuf = bdeBuf1; 10892 if (bde_count == 2) 10893 elsiocb->bpl_dmabuf = bdeBuf2; 10894 } else { 10895 icmd = &elsiocb->iocb; 10896 paddr = getPaddr(icmd->un.cont64[0].addrHigh, 10897 icmd->un.cont64[0].addrLow); 10898 elsiocb->cmd_dmabuf = lpfc_sli_ringpostbuf_get(phba, pring, 10899 paddr); 10900 if (bde_count == 2) { 10901 paddr = getPaddr(icmd->un.cont64[1].addrHigh, 10902 icmd->un.cont64[1].addrLow); 10903 elsiocb->bpl_dmabuf = lpfc_sli_ringpostbuf_get(phba, 10904 pring, 10905 paddr); 10906 } 10907 } 10908 10909 lpfc_els_unsol_buffer(phba, pring, vport, elsiocb); 10910 /* 10911 * The different unsolicited event handlers would tell us 10912 * if they are done with "mp" by setting cmd_dmabuf to NULL. 10913 */ 10914 if (elsiocb->cmd_dmabuf) { 10915 lpfc_in_buf_free(phba, elsiocb->cmd_dmabuf); 10916 elsiocb->cmd_dmabuf = NULL; 10917 } 10918 10919 if (elsiocb->bpl_dmabuf) { 10920 lpfc_in_buf_free(phba, elsiocb->bpl_dmabuf); 10921 elsiocb->bpl_dmabuf = NULL; 10922 } 10923 10924 } 10925 10926 static void 10927 lpfc_start_fdmi(struct lpfc_vport *vport) 10928 { 10929 struct lpfc_nodelist *ndlp; 10930 10931 /* If this is the first time, allocate an ndlp and initialize 10932 * it. Otherwise, make sure the node is enabled and then do the 10933 * login. 10934 */ 10935 ndlp = lpfc_findnode_did(vport, FDMI_DID); 10936 if (!ndlp) { 10937 ndlp = lpfc_nlp_init(vport, FDMI_DID); 10938 if (ndlp) { 10939 ndlp->nlp_type |= NLP_FABRIC; 10940 } else { 10941 return; 10942 } 10943 } 10944 10945 lpfc_nlp_set_state(vport, ndlp, NLP_STE_PLOGI_ISSUE); 10946 lpfc_issue_els_plogi(vport, ndlp->nlp_DID, 0); 10947 } 10948 10949 /** 10950 * lpfc_do_scr_ns_plogi - Issue a plogi to the name server for scr 10951 * @phba: pointer to lpfc hba data structure. 10952 * @vport: pointer to a virtual N_Port data structure. 10953 * 10954 * This routine issues a Port Login (PLOGI) to the Name Server with 10955 * State Change Request (SCR) for a @vport. This routine will create an 10956 * ndlp for the Name Server associated to the @vport if such node does 10957 * not already exist. The PLOGI to Name Server is issued by invoking the 10958 * lpfc_issue_els_plogi() routine. If Fabric-Device Management Interface 10959 * (FDMI) is configured to the @vport, a FDMI node will be created and 10960 * the PLOGI to FDMI is issued by invoking lpfc_issue_els_plogi() routine. 10961 **/ 10962 void 10963 lpfc_do_scr_ns_plogi(struct lpfc_hba *phba, struct lpfc_vport *vport) 10964 { 10965 struct lpfc_nodelist *ndlp; 10966 10967 /* 10968 * If lpfc_delay_discovery parameter is set and the clean address 10969 * bit is cleared and fc fabric parameters chenged, delay FC NPort 10970 * discovery. 10971 */ 10972 if (test_bit(FC_DISC_DELAYED, &vport->fc_flag)) { 10973 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT, 10974 "3334 Delay fc port discovery for %d secs\n", 10975 phba->fc_ratov); 10976 mod_timer(&vport->delayed_disc_tmo, 10977 jiffies + msecs_to_jiffies(1000 * phba->fc_ratov)); 10978 return; 10979 } 10980 10981 ndlp = lpfc_findnode_did(vport, NameServer_DID); 10982 if (!ndlp) { 10983 ndlp = lpfc_nlp_init(vport, NameServer_DID); 10984 if (!ndlp) { 10985 if (phba->fc_topology == LPFC_TOPOLOGY_LOOP) { 10986 lpfc_disc_start(vport); 10987 return; 10988 } 10989 lpfc_vport_set_state(vport, FC_VPORT_FAILED); 10990 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT, 10991 "0251 NameServer login: no memory\n"); 10992 return; 10993 } 10994 } 10995 10996 ndlp->nlp_type |= NLP_FABRIC; 10997 10998 lpfc_nlp_set_state(vport, ndlp, NLP_STE_PLOGI_ISSUE); 10999 11000 if (lpfc_issue_els_plogi(vport, ndlp->nlp_DID, 0)) { 11001 lpfc_vport_set_state(vport, FC_VPORT_FAILED); 11002 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT, 11003 "0252 Cannot issue NameServer login\n"); 11004 return; 11005 } 11006 11007 if ((phba->cfg_enable_SmartSAN || 11008 phba->cfg_fdmi_on == LPFC_FDMI_SUPPORT) && 11009 test_bit(FC_ALLOW_FDMI, &vport->load_flag)) 11010 lpfc_start_fdmi(vport); 11011 } 11012 11013 /** 11014 * lpfc_cmpl_reg_new_vport - Completion callback function to register new vport 11015 * @phba: pointer to lpfc hba data structure. 11016 * @pmb: pointer to the driver internal queue element for mailbox command. 11017 * 11018 * This routine is the completion callback function to register new vport 11019 * mailbox command. If the new vport mailbox command completes successfully, 11020 * the fabric registration login shall be performed on physical port (the 11021 * new vport created is actually a physical port, with VPI 0) or the port 11022 * login to Name Server for State Change Request (SCR) will be performed 11023 * on virtual port (real virtual port, with VPI greater than 0). 11024 **/ 11025 static void 11026 lpfc_cmpl_reg_new_vport(struct lpfc_hba *phba, LPFC_MBOXQ_t *pmb) 11027 { 11028 struct lpfc_vport *vport = pmb->vport; 11029 struct Scsi_Host *shost = lpfc_shost_from_vport(vport); 11030 struct lpfc_nodelist *ndlp = pmb->ctx_ndlp; 11031 MAILBOX_t *mb = &pmb->u.mb; 11032 int rc; 11033 11034 clear_bit(FC_VPORT_NEEDS_REG_VPI, &vport->fc_flag); 11035 11036 if (mb->mbxStatus) { 11037 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT, 11038 "0915 Register VPI failed : Status: x%x" 11039 " upd bit: x%x \n", mb->mbxStatus, 11040 mb->un.varRegVpi.upd); 11041 if (phba->sli_rev == LPFC_SLI_REV4 && 11042 mb->un.varRegVpi.upd) 11043 goto mbox_err_exit ; 11044 11045 switch (mb->mbxStatus) { 11046 case 0x11: /* unsupported feature */ 11047 case 0x9603: /* max_vpi exceeded */ 11048 case 0x9602: /* Link event since CLEAR_LA */ 11049 /* giving up on vport registration */ 11050 lpfc_vport_set_state(vport, FC_VPORT_FAILED); 11051 clear_bit(FC_FABRIC, &vport->fc_flag); 11052 clear_bit(FC_PUBLIC_LOOP, &vport->fc_flag); 11053 lpfc_can_disctmo(vport); 11054 break; 11055 /* If reg_vpi fail with invalid VPI status, re-init VPI */ 11056 case 0x20: 11057 set_bit(FC_VPORT_NEEDS_REG_VPI, &vport->fc_flag); 11058 lpfc_init_vpi(phba, pmb, vport->vpi); 11059 pmb->vport = vport; 11060 pmb->mbox_cmpl = lpfc_init_vpi_cmpl; 11061 rc = lpfc_sli_issue_mbox(phba, pmb, 11062 MBX_NOWAIT); 11063 if (rc == MBX_NOT_FINISHED) { 11064 lpfc_printf_vlog(vport, KERN_ERR, 11065 LOG_TRACE_EVENT, 11066 "2732 Failed to issue INIT_VPI" 11067 " mailbox command\n"); 11068 } else { 11069 lpfc_nlp_put(ndlp); 11070 return; 11071 } 11072 fallthrough; 11073 default: 11074 /* Try to recover from this error */ 11075 if (phba->sli_rev == LPFC_SLI_REV4) 11076 lpfc_sli4_unreg_all_rpis(vport); 11077 lpfc_mbx_unreg_vpi(vport); 11078 set_bit(FC_VPORT_NEEDS_REG_VPI, &vport->fc_flag); 11079 if (mb->mbxStatus == MBX_NOT_FINISHED) 11080 break; 11081 if ((vport->port_type == LPFC_PHYSICAL_PORT) && 11082 !test_bit(FC_LOGO_RCVD_DID_CHNG, &vport->fc_flag)) { 11083 if (phba->sli_rev == LPFC_SLI_REV4) 11084 lpfc_issue_init_vfi(vport); 11085 else 11086 lpfc_initial_flogi(vport); 11087 } else { 11088 lpfc_initial_fdisc(vport); 11089 } 11090 break; 11091 } 11092 } else { 11093 spin_lock_irq(shost->host_lock); 11094 vport->vpi_state |= LPFC_VPI_REGISTERED; 11095 spin_unlock_irq(shost->host_lock); 11096 if (vport == phba->pport) { 11097 if (phba->sli_rev < LPFC_SLI_REV4) 11098 lpfc_issue_fabric_reglogin(vport); 11099 else { 11100 /* 11101 * If the physical port is instantiated using 11102 * FDISC, do not start vport discovery. 11103 */ 11104 if (vport->port_state != LPFC_FDISC) 11105 lpfc_start_fdiscs(phba); 11106 lpfc_do_scr_ns_plogi(phba, vport); 11107 } 11108 } else { 11109 lpfc_do_scr_ns_plogi(phba, vport); 11110 } 11111 } 11112 mbox_err_exit: 11113 /* Now, we decrement the ndlp reference count held for this 11114 * callback function 11115 */ 11116 lpfc_nlp_put(ndlp); 11117 11118 mempool_free(pmb, phba->mbox_mem_pool); 11119 11120 /* reinitialize the VMID datastructure before returning. 11121 * this is specifically for vport 11122 */ 11123 if (lpfc_is_vmid_enabled(phba)) 11124 lpfc_reinit_vmid(vport); 11125 vport->vmid_flag = vport->phba->pport->vmid_flag; 11126 11127 return; 11128 } 11129 11130 /** 11131 * lpfc_register_new_vport - Register a new vport with a HBA 11132 * @phba: pointer to lpfc hba data structure. 11133 * @vport: pointer to a host virtual N_Port data structure. 11134 * @ndlp: pointer to a node-list data structure. 11135 * 11136 * This routine registers the @vport as a new virtual port with a HBA. 11137 * It is done through a registering vpi mailbox command. 11138 **/ 11139 void 11140 lpfc_register_new_vport(struct lpfc_hba *phba, struct lpfc_vport *vport, 11141 struct lpfc_nodelist *ndlp) 11142 { 11143 LPFC_MBOXQ_t *mbox; 11144 11145 mbox = mempool_alloc(phba->mbox_mem_pool, GFP_KERNEL); 11146 if (mbox) { 11147 lpfc_reg_vpi(vport, mbox); 11148 mbox->vport = vport; 11149 mbox->ctx_ndlp = lpfc_nlp_get(ndlp); 11150 if (!mbox->ctx_ndlp) { 11151 mempool_free(mbox, phba->mbox_mem_pool); 11152 goto mbox_err_exit; 11153 } 11154 11155 mbox->mbox_cmpl = lpfc_cmpl_reg_new_vport; 11156 if (lpfc_sli_issue_mbox(phba, mbox, MBX_NOWAIT) 11157 == MBX_NOT_FINISHED) { 11158 /* mailbox command not success, decrement ndlp 11159 * reference count for this command 11160 */ 11161 lpfc_nlp_put(ndlp); 11162 mempool_free(mbox, phba->mbox_mem_pool); 11163 11164 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT, 11165 "0253 Register VPI: Can't send mbox\n"); 11166 goto mbox_err_exit; 11167 } 11168 } else { 11169 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT, 11170 "0254 Register VPI: no memory\n"); 11171 goto mbox_err_exit; 11172 } 11173 return; 11174 11175 mbox_err_exit: 11176 lpfc_vport_set_state(vport, FC_VPORT_FAILED); 11177 clear_bit(FC_VPORT_NEEDS_REG_VPI, &vport->fc_flag); 11178 return; 11179 } 11180 11181 /** 11182 * lpfc_cancel_all_vport_retry_delay_timer - Cancel all vport retry delay timer 11183 * @phba: pointer to lpfc hba data structure. 11184 * 11185 * This routine cancels the retry delay timers to all the vports. 11186 **/ 11187 void 11188 lpfc_cancel_all_vport_retry_delay_timer(struct lpfc_hba *phba) 11189 { 11190 struct lpfc_vport **vports; 11191 struct lpfc_nodelist *ndlp; 11192 uint32_t link_state; 11193 int i; 11194 11195 /* Treat this failure as linkdown for all vports */ 11196 link_state = phba->link_state; 11197 lpfc_linkdown(phba); 11198 phba->link_state = link_state; 11199 11200 vports = lpfc_create_vport_work_array(phba); 11201 11202 if (vports) { 11203 for (i = 0; i <= phba->max_vports && vports[i] != NULL; i++) { 11204 ndlp = lpfc_findnode_did(vports[i], Fabric_DID); 11205 if (ndlp) 11206 lpfc_cancel_retry_delay_tmo(vports[i], ndlp); 11207 lpfc_els_flush_cmd(vports[i]); 11208 } 11209 lpfc_destroy_vport_work_array(phba, vports); 11210 } 11211 } 11212 11213 /** 11214 * lpfc_retry_pport_discovery - Start timer to retry FLOGI. 11215 * @phba: pointer to lpfc hba data structure. 11216 * 11217 * This routine abort all pending discovery commands and 11218 * start a timer to retry FLOGI for the physical port 11219 * discovery. 11220 **/ 11221 void 11222 lpfc_retry_pport_discovery(struct lpfc_hba *phba) 11223 { 11224 struct lpfc_nodelist *ndlp; 11225 11226 /* Cancel the all vports retry delay retry timers */ 11227 lpfc_cancel_all_vport_retry_delay_timer(phba); 11228 11229 /* If fabric require FLOGI, then re-instantiate physical login */ 11230 ndlp = lpfc_findnode_did(phba->pport, Fabric_DID); 11231 if (!ndlp) 11232 return; 11233 11234 mod_timer(&ndlp->nlp_delayfunc, jiffies + msecs_to_jiffies(1000)); 11235 spin_lock_irq(&ndlp->lock); 11236 ndlp->nlp_flag |= NLP_DELAY_TMO; 11237 spin_unlock_irq(&ndlp->lock); 11238 ndlp->nlp_last_elscmd = ELS_CMD_FLOGI; 11239 phba->pport->port_state = LPFC_FLOGI; 11240 return; 11241 } 11242 11243 /** 11244 * lpfc_fabric_login_reqd - Check if FLOGI required. 11245 * @phba: pointer to lpfc hba data structure. 11246 * @cmdiocb: pointer to FDISC command iocb. 11247 * @rspiocb: pointer to FDISC response iocb. 11248 * 11249 * This routine checks if a FLOGI is reguired for FDISC 11250 * to succeed. 11251 **/ 11252 static int 11253 lpfc_fabric_login_reqd(struct lpfc_hba *phba, 11254 struct lpfc_iocbq *cmdiocb, 11255 struct lpfc_iocbq *rspiocb) 11256 { 11257 u32 ulp_status = get_job_ulpstatus(phba, rspiocb); 11258 u32 ulp_word4 = get_job_word4(phba, rspiocb); 11259 11260 if (ulp_status != IOSTAT_FABRIC_RJT || 11261 ulp_word4 != RJT_LOGIN_REQUIRED) 11262 return 0; 11263 else 11264 return 1; 11265 } 11266 11267 /** 11268 * lpfc_cmpl_els_fdisc - Completion function for fdisc iocb command 11269 * @phba: pointer to lpfc hba data structure. 11270 * @cmdiocb: pointer to lpfc command iocb data structure. 11271 * @rspiocb: pointer to lpfc response iocb data structure. 11272 * 11273 * This routine is the completion callback function to a Fabric Discover 11274 * (FDISC) ELS command. Since all the FDISC ELS commands are issued 11275 * single threaded, each FDISC completion callback function will reset 11276 * the discovery timer for all vports such that the timers will not get 11277 * unnecessary timeout. The function checks the FDISC IOCB status. If error 11278 * detected, the vport will be set to FC_VPORT_FAILED state. Otherwise,the 11279 * vport will set to FC_VPORT_ACTIVE state. It then checks whether the DID 11280 * assigned to the vport has been changed with the completion of the FDISC 11281 * command. If so, both RPI (Remote Port Index) and VPI (Virtual Port Index) 11282 * are unregistered from the HBA, and then the lpfc_register_new_vport() 11283 * routine is invoked to register new vport with the HBA. Otherwise, the 11284 * lpfc_do_scr_ns_plogi() routine is invoked to issue a PLOGI to the Name 11285 * Server for State Change Request (SCR). 11286 **/ 11287 static void 11288 lpfc_cmpl_els_fdisc(struct lpfc_hba *phba, struct lpfc_iocbq *cmdiocb, 11289 struct lpfc_iocbq *rspiocb) 11290 { 11291 struct lpfc_vport *vport = cmdiocb->vport; 11292 struct lpfc_nodelist *ndlp = cmdiocb->ndlp; 11293 struct lpfc_nodelist *np; 11294 struct lpfc_nodelist *next_np; 11295 struct lpfc_iocbq *piocb; 11296 struct lpfc_dmabuf *pcmd = cmdiocb->cmd_dmabuf, *prsp; 11297 struct serv_parm *sp; 11298 uint8_t fabric_param_changed; 11299 u32 ulp_status, ulp_word4; 11300 11301 ulp_status = get_job_ulpstatus(phba, rspiocb); 11302 ulp_word4 = get_job_word4(phba, rspiocb); 11303 11304 lpfc_printf_vlog(vport, KERN_INFO, LOG_ELS, 11305 "0123 FDISC completes. x%x/x%x prevDID: x%x\n", 11306 ulp_status, ulp_word4, 11307 vport->fc_prevDID); 11308 /* Since all FDISCs are being single threaded, we 11309 * must reset the discovery timer for ALL vports 11310 * waiting to send FDISC when one completes. 11311 */ 11312 list_for_each_entry(piocb, &phba->fabric_iocb_list, list) { 11313 lpfc_set_disctmo(piocb->vport); 11314 } 11315 11316 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_CMD, 11317 "FDISC cmpl: status:x%x/x%x prevdid:x%x", 11318 ulp_status, ulp_word4, vport->fc_prevDID); 11319 11320 if (ulp_status) { 11321 11322 if (lpfc_fabric_login_reqd(phba, cmdiocb, rspiocb)) { 11323 lpfc_retry_pport_discovery(phba); 11324 goto out; 11325 } 11326 11327 /* Check for retry */ 11328 if (lpfc_els_retry(phba, cmdiocb, rspiocb)) 11329 goto out; 11330 /* FDISC failed */ 11331 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT, 11332 "0126 FDISC failed. (x%x/x%x)\n", 11333 ulp_status, ulp_word4); 11334 goto fdisc_failed; 11335 } 11336 11337 lpfc_check_nlp_post_devloss(vport, ndlp); 11338 11339 clear_bit(FC_VPORT_CVL_RCVD, &vport->fc_flag); 11340 clear_bit(FC_VPORT_LOGO_RCVD, &vport->fc_flag); 11341 set_bit(FC_FABRIC, &vport->fc_flag); 11342 if (vport->phba->fc_topology == LPFC_TOPOLOGY_LOOP) 11343 set_bit(FC_PUBLIC_LOOP, &vport->fc_flag); 11344 11345 vport->fc_myDID = ulp_word4 & Mask_DID; 11346 lpfc_vport_set_state(vport, FC_VPORT_ACTIVE); 11347 prsp = list_get_first(&pcmd->list, struct lpfc_dmabuf, list); 11348 if (!prsp) 11349 goto out; 11350 if (!lpfc_is_els_acc_rsp(prsp)) 11351 goto out; 11352 11353 sp = prsp->virt + sizeof(uint32_t); 11354 fabric_param_changed = lpfc_check_clean_addr_bit(vport, sp); 11355 memcpy(&vport->fabric_portname, &sp->portName, 11356 sizeof(struct lpfc_name)); 11357 memcpy(&vport->fabric_nodename, &sp->nodeName, 11358 sizeof(struct lpfc_name)); 11359 if (fabric_param_changed && 11360 !test_bit(FC_VPORT_NEEDS_REG_VPI, &vport->fc_flag)) { 11361 /* If our NportID changed, we need to ensure all 11362 * remaining NPORTs get unreg_login'ed so we can 11363 * issue unreg_vpi. 11364 */ 11365 list_for_each_entry_safe(np, next_np, 11366 &vport->fc_nodes, nlp_listp) { 11367 if ((np->nlp_state != NLP_STE_NPR_NODE) || 11368 !(np->nlp_flag & NLP_NPR_ADISC)) 11369 continue; 11370 spin_lock_irq(&ndlp->lock); 11371 np->nlp_flag &= ~NLP_NPR_ADISC; 11372 spin_unlock_irq(&ndlp->lock); 11373 lpfc_unreg_rpi(vport, np); 11374 } 11375 lpfc_cleanup_pending_mbox(vport); 11376 11377 if (phba->sli_rev == LPFC_SLI_REV4) 11378 lpfc_sli4_unreg_all_rpis(vport); 11379 11380 lpfc_mbx_unreg_vpi(vport); 11381 set_bit(FC_VPORT_NEEDS_REG_VPI, &vport->fc_flag); 11382 if (phba->sli_rev == LPFC_SLI_REV4) 11383 set_bit(FC_VPORT_NEEDS_INIT_VPI, &vport->fc_flag); 11384 else 11385 set_bit(FC_LOGO_RCVD_DID_CHNG, &vport->fc_flag); 11386 } else if ((phba->sli_rev == LPFC_SLI_REV4) && 11387 !test_bit(FC_VPORT_NEEDS_REG_VPI, &vport->fc_flag)) { 11388 /* 11389 * Driver needs to re-reg VPI in order for f/w 11390 * to update the MAC address. 11391 */ 11392 lpfc_register_new_vport(phba, vport, ndlp); 11393 lpfc_nlp_set_state(vport, ndlp, NLP_STE_UNMAPPED_NODE); 11394 goto out; 11395 } 11396 11397 if (test_bit(FC_VPORT_NEEDS_INIT_VPI, &vport->fc_flag)) 11398 lpfc_issue_init_vpi(vport); 11399 else if (test_bit(FC_VPORT_NEEDS_REG_VPI, &vport->fc_flag)) 11400 lpfc_register_new_vport(phba, vport, ndlp); 11401 else 11402 lpfc_do_scr_ns_plogi(phba, vport); 11403 11404 /* The FDISC completed successfully. Move the fabric ndlp to 11405 * UNMAPPED state and register with the transport. 11406 */ 11407 lpfc_nlp_set_state(vport, ndlp, NLP_STE_UNMAPPED_NODE); 11408 goto out; 11409 11410 fdisc_failed: 11411 if (vport->fc_vport && 11412 (vport->fc_vport->vport_state != FC_VPORT_NO_FABRIC_RSCS)) 11413 lpfc_vport_set_state(vport, FC_VPORT_FAILED); 11414 /* Cancel discovery timer */ 11415 lpfc_can_disctmo(vport); 11416 out: 11417 lpfc_els_free_iocb(phba, cmdiocb); 11418 lpfc_nlp_put(ndlp); 11419 } 11420 11421 /** 11422 * lpfc_issue_els_fdisc - Issue a fdisc iocb command 11423 * @vport: pointer to a virtual N_Port data structure. 11424 * @ndlp: pointer to a node-list data structure. 11425 * @retry: number of retries to the command IOCB. 11426 * 11427 * This routine prepares and issues a Fabric Discover (FDISC) IOCB to 11428 * a remote node (@ndlp) off a @vport. It uses the lpfc_issue_fabric_iocb() 11429 * routine to issue the IOCB, which makes sure only one outstanding fabric 11430 * IOCB will be sent off HBA at any given time. 11431 * 11432 * Note that the ndlp reference count will be incremented by 1 for holding the 11433 * ndlp and the reference to ndlp will be stored into the ndlp field of 11434 * the IOCB for the completion callback function to the FDISC ELS command. 11435 * 11436 * Return code 11437 * 0 - Successfully issued fdisc iocb command 11438 * 1 - Failed to issue fdisc iocb command 11439 **/ 11440 static int 11441 lpfc_issue_els_fdisc(struct lpfc_vport *vport, struct lpfc_nodelist *ndlp, 11442 uint8_t retry) 11443 { 11444 struct lpfc_hba *phba = vport->phba; 11445 IOCB_t *icmd; 11446 union lpfc_wqe128 *wqe = NULL; 11447 struct lpfc_iocbq *elsiocb; 11448 struct serv_parm *sp; 11449 uint8_t *pcmd; 11450 uint16_t cmdsize; 11451 int did = ndlp->nlp_DID; 11452 int rc; 11453 11454 vport->port_state = LPFC_FDISC; 11455 vport->fc_myDID = 0; 11456 cmdsize = (sizeof(uint32_t) + sizeof(struct serv_parm)); 11457 elsiocb = lpfc_prep_els_iocb(vport, 1, cmdsize, retry, ndlp, did, 11458 ELS_CMD_FDISC); 11459 if (!elsiocb) { 11460 lpfc_vport_set_state(vport, FC_VPORT_FAILED); 11461 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT, 11462 "0255 Issue FDISC: no IOCB\n"); 11463 return 1; 11464 } 11465 11466 if (phba->sli_rev == LPFC_SLI_REV4) { 11467 wqe = &elsiocb->wqe; 11468 bf_set(els_req64_sid, &wqe->els_req, 0); 11469 bf_set(els_req64_sp, &wqe->els_req, 1); 11470 } else { 11471 icmd = &elsiocb->iocb; 11472 icmd->un.elsreq64.myID = 0; 11473 icmd->un.elsreq64.fl = 1; 11474 icmd->ulpCt_h = 1; 11475 icmd->ulpCt_l = 0; 11476 } 11477 11478 pcmd = (uint8_t *)elsiocb->cmd_dmabuf->virt; 11479 *((uint32_t *) (pcmd)) = ELS_CMD_FDISC; 11480 pcmd += sizeof(uint32_t); /* CSP Word 1 */ 11481 memcpy(pcmd, &vport->phba->pport->fc_sparam, sizeof(struct serv_parm)); 11482 sp = (struct serv_parm *) pcmd; 11483 /* Setup CSPs accordingly for Fabric */ 11484 sp->cmn.e_d_tov = 0; 11485 sp->cmn.w2.r_a_tov = 0; 11486 sp->cmn.virtual_fabric_support = 0; 11487 sp->cls1.classValid = 0; 11488 sp->cls2.seqDelivery = 1; 11489 sp->cls3.seqDelivery = 1; 11490 11491 pcmd += sizeof(uint32_t); /* CSP Word 2 */ 11492 pcmd += sizeof(uint32_t); /* CSP Word 3 */ 11493 pcmd += sizeof(uint32_t); /* CSP Word 4 */ 11494 pcmd += sizeof(uint32_t); /* Port Name */ 11495 memcpy(pcmd, &vport->fc_portname, 8); 11496 pcmd += sizeof(uint32_t); /* Node Name */ 11497 pcmd += sizeof(uint32_t); /* Node Name */ 11498 memcpy(pcmd, &vport->fc_nodename, 8); 11499 sp->cmn.valid_vendor_ver_level = 0; 11500 memset(sp->un.vendorVersion, 0, sizeof(sp->un.vendorVersion)); 11501 lpfc_set_disctmo(vport); 11502 11503 phba->fc_stat.elsXmitFDISC++; 11504 elsiocb->cmd_cmpl = lpfc_cmpl_els_fdisc; 11505 11506 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_CMD, 11507 "Issue FDISC: did:x%x", 11508 did, 0, 0); 11509 11510 elsiocb->ndlp = lpfc_nlp_get(ndlp); 11511 if (!elsiocb->ndlp) 11512 goto err_out; 11513 11514 rc = lpfc_issue_fabric_iocb(phba, elsiocb); 11515 if (rc == IOCB_ERROR) { 11516 lpfc_nlp_put(ndlp); 11517 goto err_out; 11518 } 11519 11520 lpfc_vport_set_state(vport, FC_VPORT_INITIALIZING); 11521 return 0; 11522 11523 err_out: 11524 lpfc_els_free_iocb(phba, elsiocb); 11525 lpfc_vport_set_state(vport, FC_VPORT_FAILED); 11526 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT, 11527 "0256 Issue FDISC: Cannot send IOCB\n"); 11528 return 1; 11529 } 11530 11531 /** 11532 * lpfc_cmpl_els_npiv_logo - Completion function with vport logo 11533 * @phba: pointer to lpfc hba data structure. 11534 * @cmdiocb: pointer to lpfc command iocb data structure. 11535 * @rspiocb: pointer to lpfc response iocb data structure. 11536 * 11537 * This routine is the completion callback function to the issuing of a LOGO 11538 * ELS command off a vport. It frees the command IOCB and then decrement the 11539 * reference count held on ndlp for this completion function, indicating that 11540 * the reference to the ndlp is no long needed. Note that the 11541 * lpfc_els_free_iocb() routine decrements the ndlp reference held for this 11542 * callback function and an additional explicit ndlp reference decrementation 11543 * will trigger the actual release of the ndlp. 11544 **/ 11545 static void 11546 lpfc_cmpl_els_npiv_logo(struct lpfc_hba *phba, struct lpfc_iocbq *cmdiocb, 11547 struct lpfc_iocbq *rspiocb) 11548 { 11549 struct lpfc_vport *vport = cmdiocb->vport; 11550 IOCB_t *irsp; 11551 struct lpfc_nodelist *ndlp; 11552 u32 ulp_status, ulp_word4, did, tmo; 11553 11554 ndlp = cmdiocb->ndlp; 11555 11556 ulp_status = get_job_ulpstatus(phba, rspiocb); 11557 ulp_word4 = get_job_word4(phba, rspiocb); 11558 11559 if (phba->sli_rev == LPFC_SLI_REV4) { 11560 did = get_job_els_rsp64_did(phba, cmdiocb); 11561 tmo = get_wqe_tmo(cmdiocb); 11562 } else { 11563 irsp = &rspiocb->iocb; 11564 did = get_job_els_rsp64_did(phba, rspiocb); 11565 tmo = irsp->ulpTimeout; 11566 } 11567 11568 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_CMD, 11569 "LOGO npiv cmpl: status:x%x/x%x did:x%x", 11570 ulp_status, ulp_word4, did); 11571 11572 /* NPIV LOGO completes to NPort <nlp_DID> */ 11573 lpfc_printf_vlog(vport, KERN_INFO, LOG_ELS, 11574 "2928 NPIV LOGO completes to NPort x%x " 11575 "Data: x%x x%x x%x x%x x%x x%x x%x\n", 11576 ndlp->nlp_DID, ulp_status, ulp_word4, 11577 tmo, vport->num_disc_nodes, 11578 kref_read(&ndlp->kref), ndlp->nlp_flag, 11579 ndlp->fc4_xpt_flags); 11580 11581 if (ulp_status == IOSTAT_SUCCESS) { 11582 clear_bit(FC_NDISC_ACTIVE, &vport->fc_flag); 11583 clear_bit(FC_FABRIC, &vport->fc_flag); 11584 lpfc_can_disctmo(vport); 11585 } 11586 11587 if (ndlp->save_flags & NLP_WAIT_FOR_LOGO) { 11588 /* Wake up lpfc_vport_delete if waiting...*/ 11589 if (ndlp->logo_waitq) 11590 wake_up(ndlp->logo_waitq); 11591 spin_lock_irq(&ndlp->lock); 11592 ndlp->nlp_flag &= ~(NLP_ISSUE_LOGO | NLP_LOGO_SND); 11593 ndlp->save_flags &= ~NLP_WAIT_FOR_LOGO; 11594 spin_unlock_irq(&ndlp->lock); 11595 } 11596 11597 /* Safe to release resources now. */ 11598 lpfc_els_free_iocb(phba, cmdiocb); 11599 lpfc_nlp_put(ndlp); 11600 } 11601 11602 /** 11603 * lpfc_issue_els_npiv_logo - Issue a logo off a vport 11604 * @vport: pointer to a virtual N_Port data structure. 11605 * @ndlp: pointer to a node-list data structure. 11606 * 11607 * This routine issues a LOGO ELS command to an @ndlp off a @vport. 11608 * 11609 * Note that the ndlp reference count will be incremented by 1 for holding the 11610 * ndlp and the reference to ndlp will be stored into the ndlp field of 11611 * the IOCB for the completion callback function to the LOGO ELS command. 11612 * 11613 * Return codes 11614 * 0 - Successfully issued logo off the @vport 11615 * 1 - Failed to issue logo off the @vport 11616 **/ 11617 int 11618 lpfc_issue_els_npiv_logo(struct lpfc_vport *vport, struct lpfc_nodelist *ndlp) 11619 { 11620 int rc = 0; 11621 struct lpfc_hba *phba = vport->phba; 11622 struct lpfc_iocbq *elsiocb; 11623 uint8_t *pcmd; 11624 uint16_t cmdsize; 11625 11626 cmdsize = 2 * sizeof(uint32_t) + sizeof(struct lpfc_name); 11627 elsiocb = lpfc_prep_els_iocb(vport, 1, cmdsize, 0, ndlp, ndlp->nlp_DID, 11628 ELS_CMD_LOGO); 11629 if (!elsiocb) 11630 return 1; 11631 11632 pcmd = (uint8_t *)elsiocb->cmd_dmabuf->virt; 11633 *((uint32_t *) (pcmd)) = ELS_CMD_LOGO; 11634 pcmd += sizeof(uint32_t); 11635 11636 /* Fill in LOGO payload */ 11637 *((uint32_t *) (pcmd)) = be32_to_cpu(vport->fc_myDID); 11638 pcmd += sizeof(uint32_t); 11639 memcpy(pcmd, &vport->fc_portname, sizeof(struct lpfc_name)); 11640 11641 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_CMD, 11642 "Issue LOGO npiv did:x%x flg:x%x", 11643 ndlp->nlp_DID, ndlp->nlp_flag, 0); 11644 11645 elsiocb->cmd_cmpl = lpfc_cmpl_els_npiv_logo; 11646 spin_lock_irq(&ndlp->lock); 11647 ndlp->nlp_flag |= NLP_LOGO_SND; 11648 spin_unlock_irq(&ndlp->lock); 11649 elsiocb->ndlp = lpfc_nlp_get(ndlp); 11650 if (!elsiocb->ndlp) { 11651 lpfc_els_free_iocb(phba, elsiocb); 11652 goto err; 11653 } 11654 11655 rc = lpfc_sli_issue_iocb(phba, LPFC_ELS_RING, elsiocb, 0); 11656 if (rc == IOCB_ERROR) { 11657 lpfc_els_free_iocb(phba, elsiocb); 11658 lpfc_nlp_put(ndlp); 11659 goto err; 11660 } 11661 return 0; 11662 11663 err: 11664 spin_lock_irq(&ndlp->lock); 11665 ndlp->nlp_flag &= ~NLP_LOGO_SND; 11666 spin_unlock_irq(&ndlp->lock); 11667 return 1; 11668 } 11669 11670 /** 11671 * lpfc_fabric_block_timeout - Handler function to the fabric block timer 11672 * @t: timer context used to obtain the lpfc hba. 11673 * 11674 * This routine is invoked by the fabric iocb block timer after 11675 * timeout. It posts the fabric iocb block timeout event by setting the 11676 * WORKER_FABRIC_BLOCK_TMO bit to work port event bitmap and then invokes 11677 * lpfc_worker_wake_up() routine to wake up the worker thread. It is for 11678 * the worker thread to invoke the lpfc_unblock_fabric_iocbs() on the 11679 * posted event WORKER_FABRIC_BLOCK_TMO. 11680 **/ 11681 void 11682 lpfc_fabric_block_timeout(struct timer_list *t) 11683 { 11684 struct lpfc_hba *phba = from_timer(phba, t, fabric_block_timer); 11685 unsigned long iflags; 11686 uint32_t tmo_posted; 11687 11688 spin_lock_irqsave(&phba->pport->work_port_lock, iflags); 11689 tmo_posted = phba->pport->work_port_events & WORKER_FABRIC_BLOCK_TMO; 11690 if (!tmo_posted) 11691 phba->pport->work_port_events |= WORKER_FABRIC_BLOCK_TMO; 11692 spin_unlock_irqrestore(&phba->pport->work_port_lock, iflags); 11693 11694 if (!tmo_posted) 11695 lpfc_worker_wake_up(phba); 11696 return; 11697 } 11698 11699 /** 11700 * lpfc_resume_fabric_iocbs - Issue a fabric iocb from driver internal list 11701 * @phba: pointer to lpfc hba data structure. 11702 * 11703 * This routine issues one fabric iocb from the driver internal list to 11704 * the HBA. It first checks whether it's ready to issue one fabric iocb to 11705 * the HBA (whether there is no outstanding fabric iocb). If so, it shall 11706 * remove one pending fabric iocb from the driver internal list and invokes 11707 * lpfc_sli_issue_iocb() routine to send the fabric iocb to the HBA. 11708 **/ 11709 static void 11710 lpfc_resume_fabric_iocbs(struct lpfc_hba *phba) 11711 { 11712 struct lpfc_iocbq *iocb; 11713 unsigned long iflags; 11714 int ret; 11715 11716 repeat: 11717 iocb = NULL; 11718 spin_lock_irqsave(&phba->hbalock, iflags); 11719 /* Post any pending iocb to the SLI layer */ 11720 if (atomic_read(&phba->fabric_iocb_count) == 0) { 11721 list_remove_head(&phba->fabric_iocb_list, iocb, typeof(*iocb), 11722 list); 11723 if (iocb) 11724 /* Increment fabric iocb count to hold the position */ 11725 atomic_inc(&phba->fabric_iocb_count); 11726 } 11727 spin_unlock_irqrestore(&phba->hbalock, iflags); 11728 if (iocb) { 11729 iocb->fabric_cmd_cmpl = iocb->cmd_cmpl; 11730 iocb->cmd_cmpl = lpfc_cmpl_fabric_iocb; 11731 iocb->cmd_flag |= LPFC_IO_FABRIC; 11732 11733 lpfc_debugfs_disc_trc(iocb->vport, LPFC_DISC_TRC_ELS_CMD, 11734 "Fabric sched1: ste:x%x", 11735 iocb->vport->port_state, 0, 0); 11736 11737 ret = lpfc_sli_issue_iocb(phba, LPFC_ELS_RING, iocb, 0); 11738 11739 if (ret == IOCB_ERROR) { 11740 iocb->cmd_cmpl = iocb->fabric_cmd_cmpl; 11741 iocb->fabric_cmd_cmpl = NULL; 11742 iocb->cmd_flag &= ~LPFC_IO_FABRIC; 11743 set_job_ulpstatus(iocb, IOSTAT_LOCAL_REJECT); 11744 iocb->wcqe_cmpl.parameter = IOERR_SLI_ABORTED; 11745 iocb->cmd_cmpl(phba, iocb, iocb); 11746 11747 atomic_dec(&phba->fabric_iocb_count); 11748 goto repeat; 11749 } 11750 } 11751 } 11752 11753 /** 11754 * lpfc_unblock_fabric_iocbs - Unblock issuing fabric iocb command 11755 * @phba: pointer to lpfc hba data structure. 11756 * 11757 * This routine unblocks the issuing fabric iocb command. The function 11758 * will clear the fabric iocb block bit and then invoke the routine 11759 * lpfc_resume_fabric_iocbs() to issue one of the pending fabric iocb 11760 * from the driver internal fabric iocb list. 11761 **/ 11762 void 11763 lpfc_unblock_fabric_iocbs(struct lpfc_hba *phba) 11764 { 11765 clear_bit(FABRIC_COMANDS_BLOCKED, &phba->bit_flags); 11766 11767 lpfc_resume_fabric_iocbs(phba); 11768 return; 11769 } 11770 11771 /** 11772 * lpfc_block_fabric_iocbs - Block issuing fabric iocb command 11773 * @phba: pointer to lpfc hba data structure. 11774 * 11775 * This routine blocks the issuing fabric iocb for a specified amount of 11776 * time (currently 100 ms). This is done by set the fabric iocb block bit 11777 * and set up a timeout timer for 100ms. When the block bit is set, no more 11778 * fabric iocb will be issued out of the HBA. 11779 **/ 11780 static void 11781 lpfc_block_fabric_iocbs(struct lpfc_hba *phba) 11782 { 11783 int blocked; 11784 11785 blocked = test_and_set_bit(FABRIC_COMANDS_BLOCKED, &phba->bit_flags); 11786 /* Start a timer to unblock fabric iocbs after 100ms */ 11787 if (!blocked) 11788 mod_timer(&phba->fabric_block_timer, 11789 jiffies + msecs_to_jiffies(100)); 11790 11791 return; 11792 } 11793 11794 /** 11795 * lpfc_cmpl_fabric_iocb - Completion callback function for fabric iocb 11796 * @phba: pointer to lpfc hba data structure. 11797 * @cmdiocb: pointer to lpfc command iocb data structure. 11798 * @rspiocb: pointer to lpfc response iocb data structure. 11799 * 11800 * This routine is the callback function that is put to the fabric iocb's 11801 * callback function pointer (iocb->cmd_cmpl). The original iocb's callback 11802 * function pointer has been stored in iocb->fabric_cmd_cmpl. This callback 11803 * function first restores and invokes the original iocb's callback function 11804 * and then invokes the lpfc_resume_fabric_iocbs() routine to issue the next 11805 * fabric bound iocb from the driver internal fabric iocb list onto the wire. 11806 **/ 11807 static void 11808 lpfc_cmpl_fabric_iocb(struct lpfc_hba *phba, struct lpfc_iocbq *cmdiocb, 11809 struct lpfc_iocbq *rspiocb) 11810 { 11811 struct ls_rjt stat; 11812 u32 ulp_status = get_job_ulpstatus(phba, rspiocb); 11813 u32 ulp_word4 = get_job_word4(phba, rspiocb); 11814 11815 WARN_ON((cmdiocb->cmd_flag & LPFC_IO_FABRIC) != LPFC_IO_FABRIC); 11816 11817 switch (ulp_status) { 11818 case IOSTAT_NPORT_RJT: 11819 case IOSTAT_FABRIC_RJT: 11820 if (ulp_word4 & RJT_UNAVAIL_TEMP) 11821 lpfc_block_fabric_iocbs(phba); 11822 break; 11823 11824 case IOSTAT_NPORT_BSY: 11825 case IOSTAT_FABRIC_BSY: 11826 lpfc_block_fabric_iocbs(phba); 11827 break; 11828 11829 case IOSTAT_LS_RJT: 11830 stat.un.ls_rjt_error_be = 11831 cpu_to_be32(ulp_word4); 11832 if ((stat.un.b.lsRjtRsnCode == LSRJT_UNABLE_TPC) || 11833 (stat.un.b.lsRjtRsnCode == LSRJT_LOGICAL_BSY)) 11834 lpfc_block_fabric_iocbs(phba); 11835 break; 11836 } 11837 11838 BUG_ON(atomic_read(&phba->fabric_iocb_count) == 0); 11839 11840 cmdiocb->cmd_cmpl = cmdiocb->fabric_cmd_cmpl; 11841 cmdiocb->fabric_cmd_cmpl = NULL; 11842 cmdiocb->cmd_flag &= ~LPFC_IO_FABRIC; 11843 cmdiocb->cmd_cmpl(phba, cmdiocb, rspiocb); 11844 11845 atomic_dec(&phba->fabric_iocb_count); 11846 if (!test_bit(FABRIC_COMANDS_BLOCKED, &phba->bit_flags)) { 11847 /* Post any pending iocbs to HBA */ 11848 lpfc_resume_fabric_iocbs(phba); 11849 } 11850 } 11851 11852 /** 11853 * lpfc_issue_fabric_iocb - Issue a fabric iocb command 11854 * @phba: pointer to lpfc hba data structure. 11855 * @iocb: pointer to lpfc command iocb data structure. 11856 * 11857 * This routine is used as the top-level API for issuing a fabric iocb command 11858 * such as FLOGI and FDISC. To accommodate certain switch fabric, this driver 11859 * function makes sure that only one fabric bound iocb will be outstanding at 11860 * any given time. As such, this function will first check to see whether there 11861 * is already an outstanding fabric iocb on the wire. If so, it will put the 11862 * newly issued iocb onto the driver internal fabric iocb list, waiting to be 11863 * issued later. Otherwise, it will issue the iocb on the wire and update the 11864 * fabric iocb count it indicate that there is one fabric iocb on the wire. 11865 * 11866 * Note, this implementation has a potential sending out fabric IOCBs out of 11867 * order. The problem is caused by the construction of the "ready" boolen does 11868 * not include the condition that the internal fabric IOCB list is empty. As 11869 * such, it is possible a fabric IOCB issued by this routine might be "jump" 11870 * ahead of the fabric IOCBs in the internal list. 11871 * 11872 * Return code 11873 * IOCB_SUCCESS - either fabric iocb put on the list or issued successfully 11874 * IOCB_ERROR - failed to issue fabric iocb 11875 **/ 11876 static int 11877 lpfc_issue_fabric_iocb(struct lpfc_hba *phba, struct lpfc_iocbq *iocb) 11878 { 11879 unsigned long iflags; 11880 int ready; 11881 int ret; 11882 11883 BUG_ON(atomic_read(&phba->fabric_iocb_count) > 1); 11884 11885 spin_lock_irqsave(&phba->hbalock, iflags); 11886 ready = atomic_read(&phba->fabric_iocb_count) == 0 && 11887 !test_bit(FABRIC_COMANDS_BLOCKED, &phba->bit_flags); 11888 11889 if (ready) 11890 /* Increment fabric iocb count to hold the position */ 11891 atomic_inc(&phba->fabric_iocb_count); 11892 spin_unlock_irqrestore(&phba->hbalock, iflags); 11893 if (ready) { 11894 iocb->fabric_cmd_cmpl = iocb->cmd_cmpl; 11895 iocb->cmd_cmpl = lpfc_cmpl_fabric_iocb; 11896 iocb->cmd_flag |= LPFC_IO_FABRIC; 11897 11898 lpfc_debugfs_disc_trc(iocb->vport, LPFC_DISC_TRC_ELS_CMD, 11899 "Fabric sched2: ste:x%x", 11900 iocb->vport->port_state, 0, 0); 11901 11902 ret = lpfc_sli_issue_iocb(phba, LPFC_ELS_RING, iocb, 0); 11903 11904 if (ret == IOCB_ERROR) { 11905 iocb->cmd_cmpl = iocb->fabric_cmd_cmpl; 11906 iocb->fabric_cmd_cmpl = NULL; 11907 iocb->cmd_flag &= ~LPFC_IO_FABRIC; 11908 atomic_dec(&phba->fabric_iocb_count); 11909 } 11910 } else { 11911 spin_lock_irqsave(&phba->hbalock, iflags); 11912 list_add_tail(&iocb->list, &phba->fabric_iocb_list); 11913 spin_unlock_irqrestore(&phba->hbalock, iflags); 11914 ret = IOCB_SUCCESS; 11915 } 11916 return ret; 11917 } 11918 11919 /** 11920 * lpfc_fabric_abort_vport - Abort a vport's iocbs from driver fabric iocb list 11921 * @vport: pointer to a virtual N_Port data structure. 11922 * 11923 * This routine aborts all the IOCBs associated with a @vport from the 11924 * driver internal fabric IOCB list. The list contains fabric IOCBs to be 11925 * issued to the ELS IOCB ring. This abort function walks the fabric IOCB 11926 * list, removes each IOCB associated with the @vport off the list, set the 11927 * status field to IOSTAT_LOCAL_REJECT, and invokes the callback function 11928 * associated with the IOCB. 11929 **/ 11930 static void lpfc_fabric_abort_vport(struct lpfc_vport *vport) 11931 { 11932 LIST_HEAD(completions); 11933 struct lpfc_hba *phba = vport->phba; 11934 struct lpfc_iocbq *tmp_iocb, *piocb; 11935 11936 spin_lock_irq(&phba->hbalock); 11937 list_for_each_entry_safe(piocb, tmp_iocb, &phba->fabric_iocb_list, 11938 list) { 11939 11940 if (piocb->vport != vport) 11941 continue; 11942 11943 list_move_tail(&piocb->list, &completions); 11944 } 11945 spin_unlock_irq(&phba->hbalock); 11946 11947 /* Cancel all the IOCBs from the completions list */ 11948 lpfc_sli_cancel_iocbs(phba, &completions, IOSTAT_LOCAL_REJECT, 11949 IOERR_SLI_ABORTED); 11950 } 11951 11952 /** 11953 * lpfc_fabric_abort_nport - Abort a ndlp's iocbs from driver fabric iocb list 11954 * @ndlp: pointer to a node-list data structure. 11955 * 11956 * This routine aborts all the IOCBs associated with an @ndlp from the 11957 * driver internal fabric IOCB list. The list contains fabric IOCBs to be 11958 * issued to the ELS IOCB ring. This abort function walks the fabric IOCB 11959 * list, removes each IOCB associated with the @ndlp off the list, set the 11960 * status field to IOSTAT_LOCAL_REJECT, and invokes the callback function 11961 * associated with the IOCB. 11962 **/ 11963 void lpfc_fabric_abort_nport(struct lpfc_nodelist *ndlp) 11964 { 11965 LIST_HEAD(completions); 11966 struct lpfc_hba *phba = ndlp->phba; 11967 struct lpfc_iocbq *tmp_iocb, *piocb; 11968 struct lpfc_sli_ring *pring; 11969 11970 pring = lpfc_phba_elsring(phba); 11971 11972 if (unlikely(!pring)) 11973 return; 11974 11975 spin_lock_irq(&phba->hbalock); 11976 list_for_each_entry_safe(piocb, tmp_iocb, &phba->fabric_iocb_list, 11977 list) { 11978 if ((lpfc_check_sli_ndlp(phba, pring, piocb, ndlp))) { 11979 11980 list_move_tail(&piocb->list, &completions); 11981 } 11982 } 11983 spin_unlock_irq(&phba->hbalock); 11984 11985 /* Cancel all the IOCBs from the completions list */ 11986 lpfc_sli_cancel_iocbs(phba, &completions, IOSTAT_LOCAL_REJECT, 11987 IOERR_SLI_ABORTED); 11988 } 11989 11990 /** 11991 * lpfc_fabric_abort_hba - Abort all iocbs on driver fabric iocb list 11992 * @phba: pointer to lpfc hba data structure. 11993 * 11994 * This routine aborts all the IOCBs currently on the driver internal 11995 * fabric IOCB list. The list contains fabric IOCBs to be issued to the ELS 11996 * IOCB ring. This function takes the entire IOCB list off the fabric IOCB 11997 * list, removes IOCBs off the list, set the status field to 11998 * IOSTAT_LOCAL_REJECT, and invokes the callback function associated with 11999 * the IOCB. 12000 **/ 12001 void lpfc_fabric_abort_hba(struct lpfc_hba *phba) 12002 { 12003 LIST_HEAD(completions); 12004 12005 spin_lock_irq(&phba->hbalock); 12006 list_splice_init(&phba->fabric_iocb_list, &completions); 12007 spin_unlock_irq(&phba->hbalock); 12008 12009 /* Cancel all the IOCBs from the completions list */ 12010 lpfc_sli_cancel_iocbs(phba, &completions, IOSTAT_LOCAL_REJECT, 12011 IOERR_SLI_ABORTED); 12012 } 12013 12014 /** 12015 * lpfc_sli4_vport_delete_els_xri_aborted -Remove all ndlp references for vport 12016 * @vport: pointer to lpfc vport data structure. 12017 * 12018 * This routine is invoked by the vport cleanup for deletions and the cleanup 12019 * for an ndlp on removal. 12020 **/ 12021 void 12022 lpfc_sli4_vport_delete_els_xri_aborted(struct lpfc_vport *vport) 12023 { 12024 struct lpfc_hba *phba = vport->phba; 12025 struct lpfc_sglq *sglq_entry = NULL, *sglq_next = NULL; 12026 struct lpfc_nodelist *ndlp = NULL; 12027 unsigned long iflag = 0; 12028 12029 spin_lock_irqsave(&phba->sli4_hba.sgl_list_lock, iflag); 12030 list_for_each_entry_safe(sglq_entry, sglq_next, 12031 &phba->sli4_hba.lpfc_abts_els_sgl_list, list) { 12032 if (sglq_entry->ndlp && sglq_entry->ndlp->vport == vport) { 12033 lpfc_nlp_put(sglq_entry->ndlp); 12034 ndlp = sglq_entry->ndlp; 12035 sglq_entry->ndlp = NULL; 12036 12037 /* If the xri on the abts_els_sgl list is for the Fport 12038 * node and the vport is unloading, the xri aborted wcqe 12039 * likely isn't coming back. Just release the sgl. 12040 */ 12041 if (test_bit(FC_UNLOADING, &vport->load_flag) && 12042 ndlp->nlp_DID == Fabric_DID) { 12043 list_del(&sglq_entry->list); 12044 sglq_entry->state = SGL_FREED; 12045 list_add_tail(&sglq_entry->list, 12046 &phba->sli4_hba.lpfc_els_sgl_list); 12047 } 12048 } 12049 } 12050 spin_unlock_irqrestore(&phba->sli4_hba.sgl_list_lock, iflag); 12051 return; 12052 } 12053 12054 /** 12055 * lpfc_sli4_els_xri_aborted - Slow-path process of els xri abort 12056 * @phba: pointer to lpfc hba data structure. 12057 * @axri: pointer to the els xri abort wcqe structure. 12058 * 12059 * This routine is invoked by the worker thread to process a SLI4 slow-path 12060 * ELS aborted xri. 12061 **/ 12062 void 12063 lpfc_sli4_els_xri_aborted(struct lpfc_hba *phba, 12064 struct sli4_wcqe_xri_aborted *axri) 12065 { 12066 uint16_t xri = bf_get(lpfc_wcqe_xa_xri, axri); 12067 uint16_t rxid = bf_get(lpfc_wcqe_xa_remote_xid, axri); 12068 uint16_t lxri = 0; 12069 12070 struct lpfc_sglq *sglq_entry = NULL, *sglq_next = NULL; 12071 unsigned long iflag = 0; 12072 struct lpfc_nodelist *ndlp; 12073 struct lpfc_sli_ring *pring; 12074 12075 pring = lpfc_phba_elsring(phba); 12076 12077 spin_lock_irqsave(&phba->sli4_hba.sgl_list_lock, iflag); 12078 list_for_each_entry_safe(sglq_entry, sglq_next, 12079 &phba->sli4_hba.lpfc_abts_els_sgl_list, list) { 12080 if (sglq_entry->sli4_xritag == xri) { 12081 list_del(&sglq_entry->list); 12082 ndlp = sglq_entry->ndlp; 12083 sglq_entry->ndlp = NULL; 12084 list_add_tail(&sglq_entry->list, 12085 &phba->sli4_hba.lpfc_els_sgl_list); 12086 sglq_entry->state = SGL_FREED; 12087 spin_unlock_irqrestore(&phba->sli4_hba.sgl_list_lock, 12088 iflag); 12089 12090 if (ndlp) { 12091 lpfc_set_rrq_active(phba, ndlp, 12092 sglq_entry->sli4_lxritag, 12093 rxid, 1); 12094 lpfc_nlp_put(ndlp); 12095 } 12096 12097 /* Check if TXQ queue needs to be serviced */ 12098 if (pring && !list_empty(&pring->txq)) 12099 lpfc_worker_wake_up(phba); 12100 return; 12101 } 12102 } 12103 spin_unlock_irqrestore(&phba->sli4_hba.sgl_list_lock, iflag); 12104 lxri = lpfc_sli4_xri_inrange(phba, xri); 12105 if (lxri == NO_XRI) 12106 return; 12107 12108 spin_lock_irqsave(&phba->hbalock, iflag); 12109 sglq_entry = __lpfc_get_active_sglq(phba, lxri); 12110 if (!sglq_entry || (sglq_entry->sli4_xritag != xri)) { 12111 spin_unlock_irqrestore(&phba->hbalock, iflag); 12112 return; 12113 } 12114 sglq_entry->state = SGL_XRI_ABORTED; 12115 spin_unlock_irqrestore(&phba->hbalock, iflag); 12116 return; 12117 } 12118 12119 /* lpfc_sli_abts_recover_port - Recover a port that failed a BLS_ABORT req. 12120 * @vport: pointer to virtual port object. 12121 * @ndlp: nodelist pointer for the impacted node. 12122 * 12123 * The driver calls this routine in response to an SLI4 XRI ABORT CQE 12124 * or an SLI3 ASYNC_STATUS_CN event from the port. For either event, 12125 * the driver is required to send a LOGO to the remote node before it 12126 * attempts to recover its login to the remote node. 12127 */ 12128 void 12129 lpfc_sli_abts_recover_port(struct lpfc_vport *vport, 12130 struct lpfc_nodelist *ndlp) 12131 { 12132 struct Scsi_Host *shost; 12133 struct lpfc_hba *phba; 12134 unsigned long flags = 0; 12135 12136 shost = lpfc_shost_from_vport(vport); 12137 phba = vport->phba; 12138 if (ndlp->nlp_state != NLP_STE_MAPPED_NODE) { 12139 lpfc_printf_log(phba, KERN_INFO, 12140 LOG_SLI, "3093 No rport recovery needed. " 12141 "rport in state 0x%x\n", ndlp->nlp_state); 12142 return; 12143 } 12144 lpfc_printf_log(phba, KERN_ERR, LOG_TRACE_EVENT, 12145 "3094 Start rport recovery on shost id 0x%x " 12146 "fc_id 0x%06x vpi 0x%x rpi 0x%x state 0x%x " 12147 "flags 0x%x\n", 12148 shost->host_no, ndlp->nlp_DID, 12149 vport->vpi, ndlp->nlp_rpi, ndlp->nlp_state, 12150 ndlp->nlp_flag); 12151 /* 12152 * The rport is not responding. Remove the FCP-2 flag to prevent 12153 * an ADISC in the follow-up recovery code. 12154 */ 12155 spin_lock_irqsave(&ndlp->lock, flags); 12156 ndlp->nlp_fcp_info &= ~NLP_FCP_2_DEVICE; 12157 ndlp->nlp_flag |= NLP_ISSUE_LOGO; 12158 spin_unlock_irqrestore(&ndlp->lock, flags); 12159 lpfc_unreg_rpi(vport, ndlp); 12160 } 12161 12162 static void lpfc_init_cs_ctl_bitmap(struct lpfc_vport *vport) 12163 { 12164 bitmap_zero(vport->vmid_priority_range, LPFC_VMID_MAX_PRIORITY_RANGE); 12165 } 12166 12167 static void 12168 lpfc_vmid_set_cs_ctl_range(struct lpfc_vport *vport, u32 min, u32 max) 12169 { 12170 u32 i; 12171 12172 if ((min > max) || (max > LPFC_VMID_MAX_PRIORITY_RANGE)) 12173 return; 12174 12175 for (i = min; i <= max; i++) 12176 set_bit(i, vport->vmid_priority_range); 12177 } 12178 12179 static void lpfc_vmid_put_cs_ctl(struct lpfc_vport *vport, u32 ctcl_vmid) 12180 { 12181 set_bit(ctcl_vmid, vport->vmid_priority_range); 12182 } 12183 12184 u32 lpfc_vmid_get_cs_ctl(struct lpfc_vport *vport) 12185 { 12186 u32 i; 12187 12188 i = find_first_bit(vport->vmid_priority_range, 12189 LPFC_VMID_MAX_PRIORITY_RANGE); 12190 12191 if (i == LPFC_VMID_MAX_PRIORITY_RANGE) 12192 return 0; 12193 12194 clear_bit(i, vport->vmid_priority_range); 12195 return i; 12196 } 12197 12198 #define MAX_PRIORITY_DESC 255 12199 12200 static void 12201 lpfc_cmpl_els_qfpa(struct lpfc_hba *phba, struct lpfc_iocbq *cmdiocb, 12202 struct lpfc_iocbq *rspiocb) 12203 { 12204 struct lpfc_vport *vport = cmdiocb->vport; 12205 struct priority_range_desc *desc; 12206 struct lpfc_dmabuf *prsp = NULL; 12207 struct lpfc_vmid_priority_range *vmid_range = NULL; 12208 u32 *data; 12209 struct lpfc_dmabuf *dmabuf = cmdiocb->cmd_dmabuf; 12210 u32 ulp_status = get_job_ulpstatus(phba, rspiocb); 12211 u32 ulp_word4 = get_job_word4(phba, rspiocb); 12212 u8 *pcmd, max_desc; 12213 u32 len, i; 12214 struct lpfc_nodelist *ndlp = cmdiocb->ndlp; 12215 12216 prsp = list_get_first(&dmabuf->list, struct lpfc_dmabuf, list); 12217 if (!prsp) 12218 goto out; 12219 12220 pcmd = prsp->virt; 12221 data = (u32 *)pcmd; 12222 if (data[0] == ELS_CMD_LS_RJT) { 12223 lpfc_printf_vlog(vport, KERN_WARNING, LOG_SLI, 12224 "3277 QFPA LS_RJT x%x x%x\n", 12225 data[0], data[1]); 12226 goto out; 12227 } 12228 if (ulp_status) { 12229 lpfc_printf_vlog(vport, KERN_ERR, LOG_SLI, 12230 "6529 QFPA failed with status x%x x%x\n", 12231 ulp_status, ulp_word4); 12232 goto out; 12233 } 12234 12235 if (!vport->qfpa_res) { 12236 max_desc = FCELSSIZE / sizeof(*vport->qfpa_res); 12237 vport->qfpa_res = kcalloc(max_desc, sizeof(*vport->qfpa_res), 12238 GFP_KERNEL); 12239 if (!vport->qfpa_res) 12240 goto out; 12241 } 12242 12243 len = *((u32 *)(pcmd + 4)); 12244 len = be32_to_cpu(len); 12245 memcpy(vport->qfpa_res, pcmd, len + 8); 12246 len = len / LPFC_PRIORITY_RANGE_DESC_SIZE; 12247 12248 desc = (struct priority_range_desc *)(pcmd + 8); 12249 vmid_range = vport->vmid_priority.vmid_range; 12250 if (!vmid_range) { 12251 vmid_range = kcalloc(MAX_PRIORITY_DESC, sizeof(*vmid_range), 12252 GFP_KERNEL); 12253 if (!vmid_range) { 12254 kfree(vport->qfpa_res); 12255 goto out; 12256 } 12257 vport->vmid_priority.vmid_range = vmid_range; 12258 } 12259 vport->vmid_priority.num_descriptors = len; 12260 12261 for (i = 0; i < len; i++, vmid_range++, desc++) { 12262 lpfc_printf_vlog(vport, KERN_DEBUG, LOG_ELS, 12263 "6539 vmid values low=%d, high=%d, qos=%d, " 12264 "local ve id=%d\n", desc->lo_range, 12265 desc->hi_range, desc->qos_priority, 12266 desc->local_ve_id); 12267 12268 vmid_range->low = desc->lo_range << 1; 12269 if (desc->local_ve_id == QFPA_ODD_ONLY) 12270 vmid_range->low++; 12271 if (desc->qos_priority) 12272 vport->vmid_flag |= LPFC_VMID_QOS_ENABLED; 12273 vmid_range->qos = desc->qos_priority; 12274 12275 vmid_range->high = desc->hi_range << 1; 12276 if ((desc->local_ve_id == QFPA_ODD_ONLY) || 12277 (desc->local_ve_id == QFPA_EVEN_ODD)) 12278 vmid_range->high++; 12279 } 12280 lpfc_init_cs_ctl_bitmap(vport); 12281 for (i = 0; i < vport->vmid_priority.num_descriptors; i++) { 12282 lpfc_vmid_set_cs_ctl_range(vport, 12283 vport->vmid_priority.vmid_range[i].low, 12284 vport->vmid_priority.vmid_range[i].high); 12285 } 12286 12287 vport->vmid_flag |= LPFC_VMID_QFPA_CMPL; 12288 out: 12289 lpfc_els_free_iocb(phba, cmdiocb); 12290 lpfc_nlp_put(ndlp); 12291 } 12292 12293 int lpfc_issue_els_qfpa(struct lpfc_vport *vport) 12294 { 12295 struct lpfc_hba *phba = vport->phba; 12296 struct lpfc_nodelist *ndlp; 12297 struct lpfc_iocbq *elsiocb; 12298 u8 *pcmd; 12299 int ret; 12300 12301 ndlp = lpfc_findnode_did(phba->pport, Fabric_DID); 12302 if (!ndlp || ndlp->nlp_state != NLP_STE_UNMAPPED_NODE) 12303 return -ENXIO; 12304 12305 elsiocb = lpfc_prep_els_iocb(vport, 1, LPFC_QFPA_SIZE, 2, ndlp, 12306 ndlp->nlp_DID, ELS_CMD_QFPA); 12307 if (!elsiocb) 12308 return -ENOMEM; 12309 12310 pcmd = (u8 *)elsiocb->cmd_dmabuf->virt; 12311 12312 *((u32 *)(pcmd)) = ELS_CMD_QFPA; 12313 pcmd += 4; 12314 12315 elsiocb->cmd_cmpl = lpfc_cmpl_els_qfpa; 12316 12317 elsiocb->ndlp = lpfc_nlp_get(ndlp); 12318 if (!elsiocb->ndlp) { 12319 lpfc_els_free_iocb(vport->phba, elsiocb); 12320 return -ENXIO; 12321 } 12322 12323 ret = lpfc_sli_issue_iocb(phba, LPFC_ELS_RING, elsiocb, 2); 12324 if (ret != IOCB_SUCCESS) { 12325 lpfc_els_free_iocb(phba, elsiocb); 12326 lpfc_nlp_put(ndlp); 12327 return -EIO; 12328 } 12329 vport->vmid_flag &= ~LPFC_VMID_QOS_ENABLED; 12330 return 0; 12331 } 12332 12333 int 12334 lpfc_vmid_uvem(struct lpfc_vport *vport, 12335 struct lpfc_vmid *vmid, bool instantiated) 12336 { 12337 struct lpfc_vem_id_desc *vem_id_desc; 12338 struct lpfc_nodelist *ndlp; 12339 struct lpfc_iocbq *elsiocb; 12340 struct instantiated_ve_desc *inst_desc; 12341 struct lpfc_vmid_context *vmid_context; 12342 u8 *pcmd; 12343 u32 *len; 12344 int ret = 0; 12345 12346 ndlp = lpfc_findnode_did(vport, Fabric_DID); 12347 if (!ndlp || ndlp->nlp_state != NLP_STE_UNMAPPED_NODE) 12348 return -ENXIO; 12349 12350 vmid_context = kmalloc(sizeof(*vmid_context), GFP_KERNEL); 12351 if (!vmid_context) 12352 return -ENOMEM; 12353 elsiocb = lpfc_prep_els_iocb(vport, 1, LPFC_UVEM_SIZE, 2, 12354 ndlp, Fabric_DID, ELS_CMD_UVEM); 12355 if (!elsiocb) 12356 goto out; 12357 12358 lpfc_printf_vlog(vport, KERN_DEBUG, LOG_ELS, 12359 "3427 Host vmid %s %d\n", 12360 vmid->host_vmid, instantiated); 12361 vmid_context->vmp = vmid; 12362 vmid_context->nlp = ndlp; 12363 vmid_context->instantiated = instantiated; 12364 elsiocb->vmid_tag.vmid_context = vmid_context; 12365 pcmd = (u8 *)elsiocb->cmd_dmabuf->virt; 12366 12367 if (!memchr_inv(vport->lpfc_vmid_host_uuid, 0, 12368 sizeof(vport->lpfc_vmid_host_uuid))) 12369 memcpy(vport->lpfc_vmid_host_uuid, vmid->host_vmid, 12370 sizeof(vport->lpfc_vmid_host_uuid)); 12371 12372 *((u32 *)(pcmd)) = ELS_CMD_UVEM; 12373 len = (u32 *)(pcmd + 4); 12374 *len = cpu_to_be32(LPFC_UVEM_SIZE - 8); 12375 12376 vem_id_desc = (struct lpfc_vem_id_desc *)(pcmd + 8); 12377 vem_id_desc->tag = be32_to_cpu(VEM_ID_DESC_TAG); 12378 vem_id_desc->length = be32_to_cpu(LPFC_UVEM_VEM_ID_DESC_SIZE); 12379 memcpy(vem_id_desc->vem_id, vport->lpfc_vmid_host_uuid, 12380 sizeof(vem_id_desc->vem_id)); 12381 12382 inst_desc = (struct instantiated_ve_desc *)(pcmd + 32); 12383 inst_desc->tag = be32_to_cpu(INSTANTIATED_VE_DESC_TAG); 12384 inst_desc->length = be32_to_cpu(LPFC_UVEM_VE_MAP_DESC_SIZE); 12385 memcpy(inst_desc->global_vem_id, vmid->host_vmid, 12386 sizeof(inst_desc->global_vem_id)); 12387 12388 bf_set(lpfc_instantiated_nport_id, inst_desc, vport->fc_myDID); 12389 bf_set(lpfc_instantiated_local_id, inst_desc, 12390 vmid->un.cs_ctl_vmid); 12391 if (instantiated) { 12392 inst_desc->tag = be32_to_cpu(INSTANTIATED_VE_DESC_TAG); 12393 } else { 12394 inst_desc->tag = be32_to_cpu(DEINSTANTIATED_VE_DESC_TAG); 12395 lpfc_vmid_put_cs_ctl(vport, vmid->un.cs_ctl_vmid); 12396 } 12397 inst_desc->word6 = cpu_to_be32(inst_desc->word6); 12398 12399 elsiocb->cmd_cmpl = lpfc_cmpl_els_uvem; 12400 12401 elsiocb->ndlp = lpfc_nlp_get(ndlp); 12402 if (!elsiocb->ndlp) { 12403 lpfc_els_free_iocb(vport->phba, elsiocb); 12404 goto out; 12405 } 12406 12407 ret = lpfc_sli_issue_iocb(vport->phba, LPFC_ELS_RING, elsiocb, 0); 12408 if (ret != IOCB_SUCCESS) { 12409 lpfc_els_free_iocb(vport->phba, elsiocb); 12410 lpfc_nlp_put(ndlp); 12411 goto out; 12412 } 12413 12414 return 0; 12415 out: 12416 kfree(vmid_context); 12417 return -EIO; 12418 } 12419 12420 static void 12421 lpfc_cmpl_els_uvem(struct lpfc_hba *phba, struct lpfc_iocbq *icmdiocb, 12422 struct lpfc_iocbq *rspiocb) 12423 { 12424 struct lpfc_vport *vport = icmdiocb->vport; 12425 struct lpfc_dmabuf *prsp = NULL; 12426 struct lpfc_vmid_context *vmid_context = 12427 icmdiocb->vmid_tag.vmid_context; 12428 struct lpfc_nodelist *ndlp = icmdiocb->ndlp; 12429 u8 *pcmd; 12430 u32 *data; 12431 u32 ulp_status = get_job_ulpstatus(phba, rspiocb); 12432 u32 ulp_word4 = get_job_word4(phba, rspiocb); 12433 struct lpfc_dmabuf *dmabuf = icmdiocb->cmd_dmabuf; 12434 struct lpfc_vmid *vmid; 12435 12436 vmid = vmid_context->vmp; 12437 if (!ndlp || ndlp->nlp_state != NLP_STE_UNMAPPED_NODE) 12438 ndlp = NULL; 12439 12440 prsp = list_get_first(&dmabuf->list, struct lpfc_dmabuf, list); 12441 if (!prsp) 12442 goto out; 12443 pcmd = prsp->virt; 12444 data = (u32 *)pcmd; 12445 if (data[0] == ELS_CMD_LS_RJT) { 12446 lpfc_printf_vlog(vport, KERN_WARNING, LOG_SLI, 12447 "4532 UVEM LS_RJT %x %x\n", data[0], data[1]); 12448 goto out; 12449 } 12450 if (ulp_status) { 12451 lpfc_printf_vlog(vport, KERN_WARNING, LOG_SLI, 12452 "4533 UVEM error status %x: %x\n", 12453 ulp_status, ulp_word4); 12454 goto out; 12455 } 12456 spin_lock(&phba->hbalock); 12457 /* Set IN USE flag */ 12458 vport->vmid_flag |= LPFC_VMID_IN_USE; 12459 phba->pport->vmid_flag |= LPFC_VMID_IN_USE; 12460 spin_unlock(&phba->hbalock); 12461 12462 if (vmid_context->instantiated) { 12463 write_lock(&vport->vmid_lock); 12464 vmid->flag |= LPFC_VMID_REGISTERED; 12465 vmid->flag &= ~LPFC_VMID_REQ_REGISTER; 12466 write_unlock(&vport->vmid_lock); 12467 } 12468 12469 out: 12470 kfree(vmid_context); 12471 lpfc_els_free_iocb(phba, icmdiocb); 12472 lpfc_nlp_put(ndlp); 12473 } 12474