1 // SPDX-License-Identifier: GPL-2.0-only 2 /* 3 * QLogic iSCSI Offload Driver 4 * Copyright (c) 2016 Cavium Inc. 5 */ 6 7 #include <linux/module.h> 8 #include <linux/pci.h> 9 #include <linux/kernel.h> 10 #include <linux/if_arp.h> 11 #include <scsi/iscsi_if.h> 12 #include <linux/inet.h> 13 #include <net/arp.h> 14 #include <linux/list.h> 15 #include <linux/kthread.h> 16 #include <linux/mm.h> 17 #include <linux/if_vlan.h> 18 #include <linux/cpu.h> 19 #include <linux/iscsi_boot_sysfs.h> 20 21 #include <scsi/scsi_cmnd.h> 22 #include <scsi/scsi_device.h> 23 #include <scsi/scsi_eh.h> 24 #include <scsi/scsi_host.h> 25 #include <scsi/scsi.h> 26 27 #include "qedi.h" 28 #include "qedi_gbl.h" 29 #include "qedi_iscsi.h" 30 31 static uint qedi_fw_debug; 32 module_param(qedi_fw_debug, uint, 0644); 33 MODULE_PARM_DESC(qedi_fw_debug, " Firmware debug level 0(default) to 3"); 34 35 uint qedi_dbg_log = QEDI_LOG_WARN | QEDI_LOG_SCSI_TM; 36 module_param(qedi_dbg_log, uint, 0644); 37 MODULE_PARM_DESC(qedi_dbg_log, " Default debug level"); 38 39 uint qedi_io_tracing; 40 module_param(qedi_io_tracing, uint, 0644); 41 MODULE_PARM_DESC(qedi_io_tracing, 42 " Enable logging of SCSI requests/completions into trace buffer. (default off)."); 43 44 uint qedi_ll2_buf_size = 0x400; 45 module_param(qedi_ll2_buf_size, uint, 0644); 46 MODULE_PARM_DESC(qedi_ll2_buf_size, 47 "parameter to set ping packet size, default - 0x400, Jumbo packets - 0x2400."); 48 49 const struct qed_iscsi_ops *qedi_ops; 50 static struct scsi_transport_template *qedi_scsi_transport; 51 static struct pci_driver qedi_pci_driver; 52 static DEFINE_PER_CPU(struct qedi_percpu_s, qedi_percpu); 53 static LIST_HEAD(qedi_udev_list); 54 /* Static function declaration */ 55 static int qedi_alloc_global_queues(struct qedi_ctx *qedi); 56 static void qedi_free_global_queues(struct qedi_ctx *qedi); 57 static struct qedi_cmd *qedi_get_cmd_from_tid(struct qedi_ctx *qedi, u32 tid); 58 static void qedi_reset_uio_rings(struct qedi_uio_dev *udev); 59 static void qedi_ll2_free_skbs(struct qedi_ctx *qedi); 60 static struct nvm_iscsi_block *qedi_get_nvram_block(struct qedi_ctx *qedi); 61 62 static int qedi_iscsi_event_cb(void *context, u8 fw_event_code, void *fw_handle) 63 { 64 struct qedi_ctx *qedi; 65 struct qedi_endpoint *qedi_ep; 66 struct iscsi_eqe_data *data; 67 int rval = 0; 68 69 if (!context || !fw_handle) { 70 QEDI_ERR(NULL, "Recv event with ctx NULL\n"); 71 return -EINVAL; 72 } 73 74 qedi = (struct qedi_ctx *)context; 75 QEDI_INFO(&qedi->dbg_ctx, QEDI_LOG_INFO, 76 "Recv Event %d fw_handle %p\n", fw_event_code, fw_handle); 77 78 data = (struct iscsi_eqe_data *)fw_handle; 79 QEDI_INFO(&qedi->dbg_ctx, QEDI_LOG_INFO, 80 "icid=0x%x conn_id=0x%x err-code=0x%x error-pdu-opcode-reserved=0x%x\n", 81 data->icid, data->conn_id, data->error_code, 82 data->error_pdu_opcode_reserved); 83 84 qedi_ep = qedi->ep_tbl[data->icid]; 85 86 if (!qedi_ep) { 87 QEDI_WARN(&qedi->dbg_ctx, 88 "Cannot process event, ep already disconnected, cid=0x%x\n", 89 data->icid); 90 WARN_ON(1); 91 return -ENODEV; 92 } 93 94 switch (fw_event_code) { 95 case ISCSI_EVENT_TYPE_ASYN_CONNECT_COMPLETE: 96 if (qedi_ep->state == EP_STATE_OFLDCONN_START) 97 qedi_ep->state = EP_STATE_OFLDCONN_COMPL; 98 99 wake_up_interruptible(&qedi_ep->tcp_ofld_wait); 100 break; 101 case ISCSI_EVENT_TYPE_ASYN_TERMINATE_DONE: 102 qedi_ep->state = EP_STATE_DISCONN_COMPL; 103 wake_up_interruptible(&qedi_ep->tcp_ofld_wait); 104 break; 105 case ISCSI_EVENT_TYPE_ISCSI_CONN_ERROR: 106 qedi_process_iscsi_error(qedi_ep, data); 107 break; 108 case ISCSI_EVENT_TYPE_ASYN_ABORT_RCVD: 109 case ISCSI_EVENT_TYPE_ASYN_SYN_RCVD: 110 case ISCSI_EVENT_TYPE_ASYN_MAX_RT_TIME: 111 case ISCSI_EVENT_TYPE_ASYN_MAX_RT_CNT: 112 case ISCSI_EVENT_TYPE_ASYN_MAX_KA_PROBES_CNT: 113 case ISCSI_EVENT_TYPE_ASYN_FIN_WAIT2: 114 case ISCSI_EVENT_TYPE_TCP_CONN_ERROR: 115 qedi_process_tcp_error(qedi_ep, data); 116 break; 117 default: 118 QEDI_ERR(&qedi->dbg_ctx, "Recv Unknown Event %u\n", 119 fw_event_code); 120 } 121 122 return rval; 123 } 124 125 static int qedi_uio_open(struct uio_info *uinfo, struct inode *inode) 126 { 127 struct qedi_uio_dev *udev = uinfo->priv; 128 struct qedi_ctx *qedi = udev->qedi; 129 130 if (!capable(CAP_NET_ADMIN)) 131 return -EPERM; 132 133 if (udev->uio_dev != -1) 134 return -EBUSY; 135 136 rtnl_lock(); 137 udev->uio_dev = iminor(inode); 138 qedi_reset_uio_rings(udev); 139 set_bit(UIO_DEV_OPENED, &qedi->flags); 140 rtnl_unlock(); 141 142 return 0; 143 } 144 145 static int qedi_uio_close(struct uio_info *uinfo, struct inode *inode) 146 { 147 struct qedi_uio_dev *udev = uinfo->priv; 148 struct qedi_ctx *qedi = udev->qedi; 149 150 udev->uio_dev = -1; 151 clear_bit(UIO_DEV_OPENED, &qedi->flags); 152 qedi_ll2_free_skbs(qedi); 153 return 0; 154 } 155 156 static void __qedi_free_uio_rings(struct qedi_uio_dev *udev) 157 { 158 if (udev->uctrl) { 159 free_page((unsigned long)udev->uctrl); 160 udev->uctrl = NULL; 161 } 162 163 if (udev->ll2_ring) { 164 free_page((unsigned long)udev->ll2_ring); 165 udev->ll2_ring = NULL; 166 } 167 168 if (udev->ll2_buf) { 169 free_pages((unsigned long)udev->ll2_buf, 2); 170 udev->ll2_buf = NULL; 171 } 172 } 173 174 static void __qedi_free_uio(struct qedi_uio_dev *udev) 175 { 176 uio_unregister_device(&udev->qedi_uinfo); 177 178 __qedi_free_uio_rings(udev); 179 180 pci_dev_put(udev->pdev); 181 kfree(udev); 182 } 183 184 static void qedi_free_uio(struct qedi_uio_dev *udev) 185 { 186 if (!udev) 187 return; 188 189 list_del_init(&udev->list); 190 __qedi_free_uio(udev); 191 } 192 193 static void qedi_reset_uio_rings(struct qedi_uio_dev *udev) 194 { 195 struct qedi_ctx *qedi = NULL; 196 struct qedi_uio_ctrl *uctrl = NULL; 197 198 qedi = udev->qedi; 199 uctrl = udev->uctrl; 200 201 spin_lock_bh(&qedi->ll2_lock); 202 uctrl->host_rx_cons = 0; 203 uctrl->hw_rx_prod = 0; 204 uctrl->hw_rx_bd_prod = 0; 205 uctrl->host_rx_bd_cons = 0; 206 207 memset(udev->ll2_ring, 0, udev->ll2_ring_size); 208 memset(udev->ll2_buf, 0, udev->ll2_buf_size); 209 spin_unlock_bh(&qedi->ll2_lock); 210 } 211 212 static int __qedi_alloc_uio_rings(struct qedi_uio_dev *udev) 213 { 214 int rc = 0; 215 216 if (udev->ll2_ring || udev->ll2_buf) 217 return rc; 218 219 /* Memory for control area. */ 220 udev->uctrl = (void *)get_zeroed_page(GFP_KERNEL); 221 if (!udev->uctrl) 222 return -ENOMEM; 223 224 /* Allocating memory for LL2 ring */ 225 udev->ll2_ring_size = QEDI_PAGE_SIZE; 226 udev->ll2_ring = (void *)get_zeroed_page(GFP_KERNEL | __GFP_COMP); 227 if (!udev->ll2_ring) { 228 rc = -ENOMEM; 229 goto exit_alloc_ring; 230 } 231 232 /* Allocating memory for Tx/Rx pkt buffer */ 233 udev->ll2_buf_size = TX_RX_RING * qedi_ll2_buf_size; 234 udev->ll2_buf_size = QEDI_PAGE_ALIGN(udev->ll2_buf_size); 235 udev->ll2_buf = (void *)__get_free_pages(GFP_KERNEL | __GFP_COMP | 236 __GFP_ZERO, 2); 237 if (!udev->ll2_buf) { 238 rc = -ENOMEM; 239 goto exit_alloc_buf; 240 } 241 return rc; 242 243 exit_alloc_buf: 244 free_page((unsigned long)udev->ll2_ring); 245 udev->ll2_ring = NULL; 246 exit_alloc_ring: 247 return rc; 248 } 249 250 static int qedi_alloc_uio_rings(struct qedi_ctx *qedi) 251 { 252 struct qedi_uio_dev *udev = NULL; 253 int rc = 0; 254 255 list_for_each_entry(udev, &qedi_udev_list, list) { 256 if (udev->pdev == qedi->pdev) { 257 udev->qedi = qedi; 258 if (__qedi_alloc_uio_rings(udev)) { 259 udev->qedi = NULL; 260 return -ENOMEM; 261 } 262 qedi->udev = udev; 263 return 0; 264 } 265 } 266 267 udev = kzalloc(sizeof(*udev), GFP_KERNEL); 268 if (!udev) { 269 rc = -ENOMEM; 270 goto err_udev; 271 } 272 273 udev->uio_dev = -1; 274 275 udev->qedi = qedi; 276 udev->pdev = qedi->pdev; 277 278 rc = __qedi_alloc_uio_rings(udev); 279 if (rc) 280 goto err_uctrl; 281 282 list_add(&udev->list, &qedi_udev_list); 283 284 pci_dev_get(udev->pdev); 285 qedi->udev = udev; 286 287 udev->tx_pkt = udev->ll2_buf; 288 udev->rx_pkt = udev->ll2_buf + qedi_ll2_buf_size; 289 return 0; 290 291 err_uctrl: 292 kfree(udev); 293 err_udev: 294 return -ENOMEM; 295 } 296 297 static int qedi_init_uio(struct qedi_ctx *qedi) 298 { 299 struct qedi_uio_dev *udev = qedi->udev; 300 struct uio_info *uinfo; 301 int ret = 0; 302 303 if (!udev) 304 return -ENOMEM; 305 306 uinfo = &udev->qedi_uinfo; 307 308 uinfo->mem[0].addr = (unsigned long)udev->uctrl; 309 uinfo->mem[0].size = sizeof(struct qedi_uio_ctrl); 310 uinfo->mem[0].memtype = UIO_MEM_LOGICAL; 311 312 uinfo->mem[1].addr = (unsigned long)udev->ll2_ring; 313 uinfo->mem[1].size = udev->ll2_ring_size; 314 uinfo->mem[1].memtype = UIO_MEM_LOGICAL; 315 316 uinfo->mem[2].addr = (unsigned long)udev->ll2_buf; 317 uinfo->mem[2].size = udev->ll2_buf_size; 318 uinfo->mem[2].memtype = UIO_MEM_LOGICAL; 319 320 uinfo->name = "qedi_uio"; 321 uinfo->version = QEDI_MODULE_VERSION; 322 uinfo->irq = UIO_IRQ_CUSTOM; 323 324 uinfo->open = qedi_uio_open; 325 uinfo->release = qedi_uio_close; 326 327 if (udev->uio_dev == -1) { 328 if (!uinfo->priv) { 329 uinfo->priv = udev; 330 331 ret = uio_register_device(&udev->pdev->dev, uinfo); 332 if (ret) { 333 QEDI_ERR(&qedi->dbg_ctx, 334 "UIO registration failed\n"); 335 } 336 } 337 } 338 339 return ret; 340 } 341 342 static int qedi_alloc_and_init_sb(struct qedi_ctx *qedi, 343 struct qed_sb_info *sb_info, u16 sb_id) 344 { 345 struct status_block_e4 *sb_virt; 346 dma_addr_t sb_phys; 347 int ret; 348 349 sb_virt = dma_alloc_coherent(&qedi->pdev->dev, 350 sizeof(struct status_block_e4), &sb_phys, 351 GFP_KERNEL); 352 if (!sb_virt) { 353 QEDI_ERR(&qedi->dbg_ctx, 354 "Status block allocation failed for id = %d.\n", 355 sb_id); 356 return -ENOMEM; 357 } 358 359 ret = qedi_ops->common->sb_init(qedi->cdev, sb_info, sb_virt, sb_phys, 360 sb_id, QED_SB_TYPE_STORAGE); 361 if (ret) { 362 QEDI_ERR(&qedi->dbg_ctx, 363 "Status block initialization failed for id = %d.\n", 364 sb_id); 365 return ret; 366 } 367 368 return 0; 369 } 370 371 static void qedi_free_sb(struct qedi_ctx *qedi) 372 { 373 struct qed_sb_info *sb_info; 374 int id; 375 376 for (id = 0; id < MIN_NUM_CPUS_MSIX(qedi); id++) { 377 sb_info = &qedi->sb_array[id]; 378 if (sb_info->sb_virt) 379 dma_free_coherent(&qedi->pdev->dev, 380 sizeof(*sb_info->sb_virt), 381 (void *)sb_info->sb_virt, 382 sb_info->sb_phys); 383 } 384 } 385 386 static void qedi_free_fp(struct qedi_ctx *qedi) 387 { 388 kfree(qedi->fp_array); 389 kfree(qedi->sb_array); 390 } 391 392 static void qedi_destroy_fp(struct qedi_ctx *qedi) 393 { 394 qedi_free_sb(qedi); 395 qedi_free_fp(qedi); 396 } 397 398 static int qedi_alloc_fp(struct qedi_ctx *qedi) 399 { 400 int ret = 0; 401 402 qedi->fp_array = kcalloc(MIN_NUM_CPUS_MSIX(qedi), 403 sizeof(struct qedi_fastpath), GFP_KERNEL); 404 if (!qedi->fp_array) { 405 QEDI_ERR(&qedi->dbg_ctx, 406 "fastpath fp array allocation failed.\n"); 407 return -ENOMEM; 408 } 409 410 qedi->sb_array = kcalloc(MIN_NUM_CPUS_MSIX(qedi), 411 sizeof(struct qed_sb_info), GFP_KERNEL); 412 if (!qedi->sb_array) { 413 QEDI_ERR(&qedi->dbg_ctx, 414 "fastpath sb array allocation failed.\n"); 415 ret = -ENOMEM; 416 goto free_fp; 417 } 418 419 return ret; 420 421 free_fp: 422 qedi_free_fp(qedi); 423 return ret; 424 } 425 426 static void qedi_int_fp(struct qedi_ctx *qedi) 427 { 428 struct qedi_fastpath *fp; 429 int id; 430 431 memset(qedi->fp_array, 0, MIN_NUM_CPUS_MSIX(qedi) * 432 sizeof(*qedi->fp_array)); 433 memset(qedi->sb_array, 0, MIN_NUM_CPUS_MSIX(qedi) * 434 sizeof(*qedi->sb_array)); 435 436 for (id = 0; id < MIN_NUM_CPUS_MSIX(qedi); id++) { 437 fp = &qedi->fp_array[id]; 438 fp->sb_info = &qedi->sb_array[id]; 439 fp->sb_id = id; 440 fp->qedi = qedi; 441 snprintf(fp->name, sizeof(fp->name), "%s-fp-%d", 442 "qedi", id); 443 444 /* fp_array[i] ---- irq cookie 445 * So init data which is needed in int ctx 446 */ 447 } 448 } 449 450 static int qedi_prepare_fp(struct qedi_ctx *qedi) 451 { 452 struct qedi_fastpath *fp; 453 int id, ret = 0; 454 455 ret = qedi_alloc_fp(qedi); 456 if (ret) 457 goto err; 458 459 qedi_int_fp(qedi); 460 461 for (id = 0; id < MIN_NUM_CPUS_MSIX(qedi); id++) { 462 fp = &qedi->fp_array[id]; 463 ret = qedi_alloc_and_init_sb(qedi, fp->sb_info, fp->sb_id); 464 if (ret) { 465 QEDI_ERR(&qedi->dbg_ctx, 466 "SB allocation and initialization failed.\n"); 467 ret = -EIO; 468 goto err_init; 469 } 470 } 471 472 return 0; 473 474 err_init: 475 qedi_free_sb(qedi); 476 qedi_free_fp(qedi); 477 err: 478 return ret; 479 } 480 481 static int qedi_setup_cid_que(struct qedi_ctx *qedi) 482 { 483 int i; 484 485 qedi->cid_que.cid_que_base = kmalloc_array(qedi->max_active_conns, 486 sizeof(u32), GFP_KERNEL); 487 if (!qedi->cid_que.cid_que_base) 488 return -ENOMEM; 489 490 qedi->cid_que.conn_cid_tbl = kmalloc_array(qedi->max_active_conns, 491 sizeof(struct qedi_conn *), 492 GFP_KERNEL); 493 if (!qedi->cid_que.conn_cid_tbl) { 494 kfree(qedi->cid_que.cid_que_base); 495 qedi->cid_que.cid_que_base = NULL; 496 return -ENOMEM; 497 } 498 499 qedi->cid_que.cid_que = (u32 *)qedi->cid_que.cid_que_base; 500 qedi->cid_que.cid_q_prod_idx = 0; 501 qedi->cid_que.cid_q_cons_idx = 0; 502 qedi->cid_que.cid_q_max_idx = qedi->max_active_conns; 503 qedi->cid_que.cid_free_cnt = qedi->max_active_conns; 504 505 for (i = 0; i < qedi->max_active_conns; i++) { 506 qedi->cid_que.cid_que[i] = i; 507 qedi->cid_que.conn_cid_tbl[i] = NULL; 508 } 509 510 return 0; 511 } 512 513 static void qedi_release_cid_que(struct qedi_ctx *qedi) 514 { 515 kfree(qedi->cid_que.cid_que_base); 516 qedi->cid_que.cid_que_base = NULL; 517 518 kfree(qedi->cid_que.conn_cid_tbl); 519 qedi->cid_que.conn_cid_tbl = NULL; 520 } 521 522 static int qedi_init_id_tbl(struct qedi_portid_tbl *id_tbl, u16 size, 523 u16 start_id, u16 next) 524 { 525 id_tbl->start = start_id; 526 id_tbl->max = size; 527 id_tbl->next = next; 528 spin_lock_init(&id_tbl->lock); 529 id_tbl->table = kcalloc(BITS_TO_LONGS(size), sizeof(long), GFP_KERNEL); 530 if (!id_tbl->table) 531 return -ENOMEM; 532 533 return 0; 534 } 535 536 static void qedi_free_id_tbl(struct qedi_portid_tbl *id_tbl) 537 { 538 kfree(id_tbl->table); 539 id_tbl->table = NULL; 540 } 541 542 int qedi_alloc_id(struct qedi_portid_tbl *id_tbl, u16 id) 543 { 544 int ret = -1; 545 546 id -= id_tbl->start; 547 if (id >= id_tbl->max) 548 return ret; 549 550 spin_lock(&id_tbl->lock); 551 if (!test_bit(id, id_tbl->table)) { 552 set_bit(id, id_tbl->table); 553 ret = 0; 554 } 555 spin_unlock(&id_tbl->lock); 556 return ret; 557 } 558 559 u16 qedi_alloc_new_id(struct qedi_portid_tbl *id_tbl) 560 { 561 u16 id; 562 563 spin_lock(&id_tbl->lock); 564 id = find_next_zero_bit(id_tbl->table, id_tbl->max, id_tbl->next); 565 if (id >= id_tbl->max) { 566 id = QEDI_LOCAL_PORT_INVALID; 567 if (id_tbl->next != 0) { 568 id = find_first_zero_bit(id_tbl->table, id_tbl->next); 569 if (id >= id_tbl->next) 570 id = QEDI_LOCAL_PORT_INVALID; 571 } 572 } 573 574 if (id < id_tbl->max) { 575 set_bit(id, id_tbl->table); 576 id_tbl->next = (id + 1) & (id_tbl->max - 1); 577 id += id_tbl->start; 578 } 579 580 spin_unlock(&id_tbl->lock); 581 582 return id; 583 } 584 585 void qedi_free_id(struct qedi_portid_tbl *id_tbl, u16 id) 586 { 587 if (id == QEDI_LOCAL_PORT_INVALID) 588 return; 589 590 id -= id_tbl->start; 591 if (id >= id_tbl->max) 592 return; 593 594 clear_bit(id, id_tbl->table); 595 } 596 597 static void qedi_cm_free_mem(struct qedi_ctx *qedi) 598 { 599 kfree(qedi->ep_tbl); 600 qedi->ep_tbl = NULL; 601 qedi_free_id_tbl(&qedi->lcl_port_tbl); 602 } 603 604 static int qedi_cm_alloc_mem(struct qedi_ctx *qedi) 605 { 606 u16 port_id; 607 608 qedi->ep_tbl = kzalloc((qedi->max_active_conns * 609 sizeof(struct qedi_endpoint *)), GFP_KERNEL); 610 if (!qedi->ep_tbl) 611 return -ENOMEM; 612 port_id = prandom_u32() % QEDI_LOCAL_PORT_RANGE; 613 if (qedi_init_id_tbl(&qedi->lcl_port_tbl, QEDI_LOCAL_PORT_RANGE, 614 QEDI_LOCAL_PORT_MIN, port_id)) { 615 qedi_cm_free_mem(qedi); 616 return -ENOMEM; 617 } 618 619 return 0; 620 } 621 622 static struct qedi_ctx *qedi_host_alloc(struct pci_dev *pdev) 623 { 624 struct Scsi_Host *shost; 625 struct qedi_ctx *qedi = NULL; 626 627 shost = iscsi_host_alloc(&qedi_host_template, 628 sizeof(struct qedi_ctx), 0); 629 if (!shost) { 630 QEDI_ERR(NULL, "Could not allocate shost\n"); 631 goto exit_setup_shost; 632 } 633 634 shost->max_id = QEDI_MAX_ISCSI_CONNS_PER_HBA; 635 shost->max_channel = 0; 636 shost->max_lun = ~0; 637 shost->max_cmd_len = 16; 638 shost->transportt = qedi_scsi_transport; 639 640 qedi = iscsi_host_priv(shost); 641 memset(qedi, 0, sizeof(*qedi)); 642 qedi->shost = shost; 643 qedi->dbg_ctx.host_no = shost->host_no; 644 qedi->pdev = pdev; 645 qedi->dbg_ctx.pdev = pdev; 646 qedi->max_active_conns = ISCSI_MAX_SESS_PER_HBA; 647 qedi->max_sqes = QEDI_SQ_SIZE; 648 649 shost->nr_hw_queues = MIN_NUM_CPUS_MSIX(qedi); 650 651 pci_set_drvdata(pdev, qedi); 652 653 exit_setup_shost: 654 return qedi; 655 } 656 657 static int qedi_ll2_rx(void *cookie, struct sk_buff *skb, u32 arg1, u32 arg2) 658 { 659 struct qedi_ctx *qedi = (struct qedi_ctx *)cookie; 660 struct qedi_uio_dev *udev; 661 struct qedi_uio_ctrl *uctrl; 662 struct skb_work_list *work; 663 struct ethhdr *eh; 664 665 if (!qedi) { 666 QEDI_ERR(NULL, "qedi is NULL\n"); 667 return -1; 668 } 669 670 if (!test_bit(UIO_DEV_OPENED, &qedi->flags)) { 671 QEDI_INFO(&qedi->dbg_ctx, QEDI_LOG_UIO, 672 "UIO DEV is not opened\n"); 673 kfree_skb(skb); 674 return 0; 675 } 676 677 eh = (struct ethhdr *)skb->data; 678 /* Undo VLAN encapsulation */ 679 if (eh->h_proto == htons(ETH_P_8021Q)) { 680 memmove((u8 *)eh + VLAN_HLEN, eh, ETH_ALEN * 2); 681 eh = (struct ethhdr *)skb_pull(skb, VLAN_HLEN); 682 skb_reset_mac_header(skb); 683 } 684 685 /* Filter out non FIP/FCoE frames here to free them faster */ 686 if (eh->h_proto != htons(ETH_P_ARP) && 687 eh->h_proto != htons(ETH_P_IP) && 688 eh->h_proto != htons(ETH_P_IPV6)) { 689 QEDI_INFO(&qedi->dbg_ctx, QEDI_LOG_LL2, 690 "Dropping frame ethertype [0x%x] len [0x%x].\n", 691 eh->h_proto, skb->len); 692 kfree_skb(skb); 693 return 0; 694 } 695 696 QEDI_INFO(&qedi->dbg_ctx, QEDI_LOG_LL2, 697 "Allowed frame ethertype [0x%x] len [0x%x].\n", 698 eh->h_proto, skb->len); 699 700 udev = qedi->udev; 701 uctrl = udev->uctrl; 702 703 work = kzalloc(sizeof(*work), GFP_ATOMIC); 704 if (!work) { 705 QEDI_WARN(&qedi->dbg_ctx, 706 "Could not allocate work so dropping frame.\n"); 707 kfree_skb(skb); 708 return 0; 709 } 710 711 INIT_LIST_HEAD(&work->list); 712 work->skb = skb; 713 714 if (skb_vlan_tag_present(skb)) 715 work->vlan_id = skb_vlan_tag_get(skb); 716 717 if (work->vlan_id) 718 __vlan_insert_tag(work->skb, htons(ETH_P_8021Q), work->vlan_id); 719 720 spin_lock_bh(&qedi->ll2_lock); 721 list_add_tail(&work->list, &qedi->ll2_skb_list); 722 spin_unlock_bh(&qedi->ll2_lock); 723 724 wake_up_process(qedi->ll2_recv_thread); 725 726 return 0; 727 } 728 729 /* map this skb to iscsiuio mmaped region */ 730 static int qedi_ll2_process_skb(struct qedi_ctx *qedi, struct sk_buff *skb, 731 u16 vlan_id) 732 { 733 struct qedi_uio_dev *udev = NULL; 734 struct qedi_uio_ctrl *uctrl = NULL; 735 struct qedi_rx_bd rxbd; 736 struct qedi_rx_bd *p_rxbd; 737 u32 rx_bd_prod; 738 void *pkt; 739 int len = 0; 740 u32 prod; 741 742 if (!qedi) { 743 QEDI_ERR(NULL, "qedi is NULL\n"); 744 return -1; 745 } 746 747 udev = qedi->udev; 748 uctrl = udev->uctrl; 749 750 ++uctrl->hw_rx_prod_cnt; 751 prod = (uctrl->hw_rx_prod + 1) % RX_RING; 752 753 pkt = udev->rx_pkt + (prod * qedi_ll2_buf_size); 754 len = min_t(u32, skb->len, (u32)qedi_ll2_buf_size); 755 memcpy(pkt, skb->data, len); 756 757 memset(&rxbd, 0, sizeof(rxbd)); 758 rxbd.rx_pkt_index = prod; 759 rxbd.rx_pkt_len = len; 760 rxbd.vlan_id = vlan_id; 761 762 uctrl->hw_rx_bd_prod = (uctrl->hw_rx_bd_prod + 1) % QEDI_NUM_RX_BD; 763 rx_bd_prod = uctrl->hw_rx_bd_prod; 764 p_rxbd = (struct qedi_rx_bd *)udev->ll2_ring; 765 p_rxbd += rx_bd_prod; 766 767 memcpy(p_rxbd, &rxbd, sizeof(rxbd)); 768 769 QEDI_INFO(&qedi->dbg_ctx, QEDI_LOG_LL2, 770 "hw_rx_prod [%d] prod [%d] hw_rx_bd_prod [%d] rx_pkt_idx [%d] rx_len [%d].\n", 771 uctrl->hw_rx_prod, prod, uctrl->hw_rx_bd_prod, 772 rxbd.rx_pkt_index, rxbd.rx_pkt_len); 773 QEDI_INFO(&qedi->dbg_ctx, QEDI_LOG_LL2, 774 "host_rx_cons [%d] hw_rx_bd_cons [%d].\n", 775 uctrl->host_rx_cons, uctrl->host_rx_bd_cons); 776 777 uctrl->hw_rx_prod = prod; 778 779 /* notify the iscsiuio about new packet */ 780 uio_event_notify(&udev->qedi_uinfo); 781 782 return 0; 783 } 784 785 static void qedi_ll2_free_skbs(struct qedi_ctx *qedi) 786 { 787 struct skb_work_list *work, *work_tmp; 788 789 spin_lock_bh(&qedi->ll2_lock); 790 list_for_each_entry_safe(work, work_tmp, &qedi->ll2_skb_list, list) { 791 list_del(&work->list); 792 if (work->skb) 793 kfree_skb(work->skb); 794 kfree(work); 795 } 796 spin_unlock_bh(&qedi->ll2_lock); 797 } 798 799 static int qedi_ll2_recv_thread(void *arg) 800 { 801 struct qedi_ctx *qedi = (struct qedi_ctx *)arg; 802 struct skb_work_list *work, *work_tmp; 803 804 set_user_nice(current, -20); 805 806 while (!kthread_should_stop()) { 807 spin_lock_bh(&qedi->ll2_lock); 808 list_for_each_entry_safe(work, work_tmp, &qedi->ll2_skb_list, 809 list) { 810 list_del(&work->list); 811 qedi_ll2_process_skb(qedi, work->skb, work->vlan_id); 812 kfree_skb(work->skb); 813 kfree(work); 814 } 815 set_current_state(TASK_INTERRUPTIBLE); 816 spin_unlock_bh(&qedi->ll2_lock); 817 schedule(); 818 } 819 820 __set_current_state(TASK_RUNNING); 821 return 0; 822 } 823 824 static int qedi_set_iscsi_pf_param(struct qedi_ctx *qedi) 825 { 826 u8 num_sq_pages; 827 u32 log_page_size; 828 int rval = 0; 829 830 831 num_sq_pages = (MAX_OUTSTANDING_TASKS_PER_CON * 8) / QEDI_PAGE_SIZE; 832 833 qedi->num_queues = MIN_NUM_CPUS_MSIX(qedi); 834 835 QEDI_INFO(&qedi->dbg_ctx, QEDI_LOG_INFO, 836 "Number of CQ count is %d\n", qedi->num_queues); 837 838 memset(&qedi->pf_params.iscsi_pf_params, 0, 839 sizeof(qedi->pf_params.iscsi_pf_params)); 840 841 qedi->p_cpuq = dma_alloc_coherent(&qedi->pdev->dev, 842 qedi->num_queues * sizeof(struct qedi_glbl_q_params), 843 &qedi->hw_p_cpuq, GFP_KERNEL); 844 if (!qedi->p_cpuq) { 845 QEDI_ERR(&qedi->dbg_ctx, "dma_alloc_coherent fail\n"); 846 rval = -1; 847 goto err_alloc_mem; 848 } 849 850 rval = qedi_alloc_global_queues(qedi); 851 if (rval) { 852 QEDI_ERR(&qedi->dbg_ctx, "Global queue allocation failed.\n"); 853 rval = -1; 854 goto err_alloc_mem; 855 } 856 857 qedi->pf_params.iscsi_pf_params.num_cons = QEDI_MAX_ISCSI_CONNS_PER_HBA; 858 qedi->pf_params.iscsi_pf_params.num_tasks = QEDI_MAX_ISCSI_TASK; 859 qedi->pf_params.iscsi_pf_params.half_way_close_timeout = 10; 860 qedi->pf_params.iscsi_pf_params.num_sq_pages_in_ring = num_sq_pages; 861 qedi->pf_params.iscsi_pf_params.num_r2tq_pages_in_ring = num_sq_pages; 862 qedi->pf_params.iscsi_pf_params.num_uhq_pages_in_ring = num_sq_pages; 863 qedi->pf_params.iscsi_pf_params.num_queues = qedi->num_queues; 864 qedi->pf_params.iscsi_pf_params.debug_mode = qedi_fw_debug; 865 qedi->pf_params.iscsi_pf_params.two_msl_timer = 4000; 866 qedi->pf_params.iscsi_pf_params.max_fin_rt = 2; 867 868 for (log_page_size = 0 ; log_page_size < 32 ; log_page_size++) { 869 if ((1 << log_page_size) == QEDI_PAGE_SIZE) 870 break; 871 } 872 qedi->pf_params.iscsi_pf_params.log_page_size = log_page_size; 873 874 qedi->pf_params.iscsi_pf_params.glbl_q_params_addr = 875 (u64)qedi->hw_p_cpuq; 876 877 /* RQ BDQ initializations. 878 * rq_num_entries: suggested value for Initiator is 16 (4KB RQ) 879 * rqe_log_size: 8 for 256B RQE 880 */ 881 qedi->pf_params.iscsi_pf_params.rqe_log_size = 8; 882 /* BDQ address and size */ 883 qedi->pf_params.iscsi_pf_params.bdq_pbl_base_addr[BDQ_ID_RQ] = 884 qedi->bdq_pbl_list_dma; 885 qedi->pf_params.iscsi_pf_params.bdq_pbl_num_entries[BDQ_ID_RQ] = 886 qedi->bdq_pbl_list_num_entries; 887 qedi->pf_params.iscsi_pf_params.rq_buffer_size = QEDI_BDQ_BUF_SIZE; 888 889 /* cq_num_entries: num_tasks + rq_num_entries */ 890 qedi->pf_params.iscsi_pf_params.cq_num_entries = 2048; 891 892 qedi->pf_params.iscsi_pf_params.gl_rq_pi = QEDI_PROTO_CQ_PROD_IDX; 893 qedi->pf_params.iscsi_pf_params.gl_cmd_pi = 1; 894 895 err_alloc_mem: 896 return rval; 897 } 898 899 /* Free DMA coherent memory for array of queue pointers we pass to qed */ 900 static void qedi_free_iscsi_pf_param(struct qedi_ctx *qedi) 901 { 902 size_t size = 0; 903 904 if (qedi->p_cpuq) { 905 size = qedi->num_queues * sizeof(struct qedi_glbl_q_params); 906 dma_free_coherent(&qedi->pdev->dev, size, qedi->p_cpuq, 907 qedi->hw_p_cpuq); 908 } 909 910 qedi_free_global_queues(qedi); 911 912 kfree(qedi->global_queues); 913 } 914 915 static void qedi_get_boot_tgt_info(struct nvm_iscsi_block *block, 916 struct qedi_boot_target *tgt, u8 index) 917 { 918 u32 ipv6_en; 919 920 ipv6_en = !!(block->generic.ctrl_flags & 921 NVM_ISCSI_CFG_GEN_IPV6_ENABLED); 922 923 snprintf(tgt->iscsi_name, sizeof(tgt->iscsi_name), "%s\n", 924 block->target[index].target_name.byte); 925 926 tgt->ipv6_en = ipv6_en; 927 928 if (ipv6_en) 929 snprintf(tgt->ip_addr, IPV6_LEN, "%pI6\n", 930 block->target[index].ipv6_addr.byte); 931 else 932 snprintf(tgt->ip_addr, IPV4_LEN, "%pI4\n", 933 block->target[index].ipv4_addr.byte); 934 } 935 936 static int qedi_find_boot_info(struct qedi_ctx *qedi, 937 struct qed_mfw_tlv_iscsi *iscsi, 938 struct nvm_iscsi_block *block) 939 { 940 struct qedi_boot_target *pri_tgt = NULL, *sec_tgt = NULL; 941 u32 pri_ctrl_flags = 0, sec_ctrl_flags = 0, found = 0; 942 struct iscsi_cls_session *cls_sess; 943 struct iscsi_cls_conn *cls_conn; 944 struct qedi_conn *qedi_conn; 945 struct iscsi_session *sess; 946 struct iscsi_conn *conn; 947 char ep_ip_addr[64]; 948 int i, ret = 0; 949 950 pri_ctrl_flags = !!(block->target[0].ctrl_flags & 951 NVM_ISCSI_CFG_TARGET_ENABLED); 952 if (pri_ctrl_flags) { 953 pri_tgt = kzalloc(sizeof(*pri_tgt), GFP_KERNEL); 954 if (!pri_tgt) 955 return -1; 956 qedi_get_boot_tgt_info(block, pri_tgt, 0); 957 } 958 959 sec_ctrl_flags = !!(block->target[1].ctrl_flags & 960 NVM_ISCSI_CFG_TARGET_ENABLED); 961 if (sec_ctrl_flags) { 962 sec_tgt = kzalloc(sizeof(*sec_tgt), GFP_KERNEL); 963 if (!sec_tgt) { 964 ret = -1; 965 goto free_tgt; 966 } 967 qedi_get_boot_tgt_info(block, sec_tgt, 1); 968 } 969 970 for (i = 0; i < qedi->max_active_conns; i++) { 971 qedi_conn = qedi_get_conn_from_id(qedi, i); 972 if (!qedi_conn) 973 continue; 974 975 if (qedi_conn->ep->ip_type == TCP_IPV4) 976 snprintf(ep_ip_addr, IPV4_LEN, "%pI4\n", 977 qedi_conn->ep->dst_addr); 978 else 979 snprintf(ep_ip_addr, IPV6_LEN, "%pI6\n", 980 qedi_conn->ep->dst_addr); 981 982 cls_conn = qedi_conn->cls_conn; 983 conn = cls_conn->dd_data; 984 cls_sess = iscsi_conn_to_session(cls_conn); 985 sess = cls_sess->dd_data; 986 987 if (!iscsi_is_session_online(cls_sess)) 988 continue; 989 990 if (pri_ctrl_flags) { 991 if (!strcmp(pri_tgt->iscsi_name, sess->targetname) && 992 !strcmp(pri_tgt->ip_addr, ep_ip_addr)) { 993 found = 1; 994 break; 995 } 996 } 997 998 if (sec_ctrl_flags) { 999 if (!strcmp(sec_tgt->iscsi_name, sess->targetname) && 1000 !strcmp(sec_tgt->ip_addr, ep_ip_addr)) { 1001 found = 1; 1002 break; 1003 } 1004 } 1005 } 1006 1007 if (found) { 1008 if (conn->hdrdgst_en) { 1009 iscsi->header_digest_set = true; 1010 iscsi->header_digest = 1; 1011 } 1012 1013 if (conn->datadgst_en) { 1014 iscsi->data_digest_set = true; 1015 iscsi->data_digest = 1; 1016 } 1017 iscsi->boot_taget_portal_set = true; 1018 iscsi->boot_taget_portal = sess->tpgt; 1019 1020 } else { 1021 ret = -1; 1022 } 1023 1024 if (sec_ctrl_flags) 1025 kfree(sec_tgt); 1026 free_tgt: 1027 if (pri_ctrl_flags) 1028 kfree(pri_tgt); 1029 1030 return ret; 1031 } 1032 1033 static void qedi_get_generic_tlv_data(void *dev, struct qed_generic_tlvs *data) 1034 { 1035 struct qedi_ctx *qedi; 1036 1037 if (!dev) { 1038 QEDI_INFO(NULL, QEDI_LOG_EVT, 1039 "dev is NULL so ignoring get_generic_tlv_data request.\n"); 1040 return; 1041 } 1042 qedi = (struct qedi_ctx *)dev; 1043 1044 memset(data, 0, sizeof(struct qed_generic_tlvs)); 1045 ether_addr_copy(data->mac[0], qedi->mac); 1046 } 1047 1048 /* 1049 * Protocol TLV handler 1050 */ 1051 static void qedi_get_protocol_tlv_data(void *dev, void *data) 1052 { 1053 struct qed_mfw_tlv_iscsi *iscsi = data; 1054 struct qed_iscsi_stats *fw_iscsi_stats; 1055 struct nvm_iscsi_block *block = NULL; 1056 u32 chap_en = 0, mchap_en = 0; 1057 struct qedi_ctx *qedi = dev; 1058 int rval = 0; 1059 1060 fw_iscsi_stats = kmalloc(sizeof(*fw_iscsi_stats), GFP_KERNEL); 1061 if (!fw_iscsi_stats) { 1062 QEDI_ERR(&qedi->dbg_ctx, 1063 "Could not allocate memory for fw_iscsi_stats.\n"); 1064 goto exit_get_data; 1065 } 1066 1067 mutex_lock(&qedi->stats_lock); 1068 /* Query firmware for offload stats */ 1069 qedi_ops->get_stats(qedi->cdev, fw_iscsi_stats); 1070 mutex_unlock(&qedi->stats_lock); 1071 1072 iscsi->rx_frames_set = true; 1073 iscsi->rx_frames = fw_iscsi_stats->iscsi_rx_packet_cnt; 1074 iscsi->rx_bytes_set = true; 1075 iscsi->rx_bytes = fw_iscsi_stats->iscsi_rx_bytes_cnt; 1076 iscsi->tx_frames_set = true; 1077 iscsi->tx_frames = fw_iscsi_stats->iscsi_tx_packet_cnt; 1078 iscsi->tx_bytes_set = true; 1079 iscsi->tx_bytes = fw_iscsi_stats->iscsi_tx_bytes_cnt; 1080 iscsi->frame_size_set = true; 1081 iscsi->frame_size = qedi->ll2_mtu; 1082 block = qedi_get_nvram_block(qedi); 1083 if (block) { 1084 chap_en = !!(block->generic.ctrl_flags & 1085 NVM_ISCSI_CFG_GEN_CHAP_ENABLED); 1086 mchap_en = !!(block->generic.ctrl_flags & 1087 NVM_ISCSI_CFG_GEN_CHAP_MUTUAL_ENABLED); 1088 1089 iscsi->auth_method_set = (chap_en || mchap_en) ? true : false; 1090 iscsi->auth_method = 1; 1091 if (chap_en) 1092 iscsi->auth_method = 2; 1093 if (mchap_en) 1094 iscsi->auth_method = 3; 1095 1096 iscsi->tx_desc_size_set = true; 1097 iscsi->tx_desc_size = QEDI_SQ_SIZE; 1098 iscsi->rx_desc_size_set = true; 1099 iscsi->rx_desc_size = QEDI_CQ_SIZE; 1100 1101 /* tpgt, hdr digest, data digest */ 1102 rval = qedi_find_boot_info(qedi, iscsi, block); 1103 if (rval) 1104 QEDI_INFO(&qedi->dbg_ctx, QEDI_LOG_INFO, 1105 "Boot target not set"); 1106 } 1107 1108 kfree(fw_iscsi_stats); 1109 exit_get_data: 1110 return; 1111 } 1112 1113 static void qedi_link_update(void *dev, struct qed_link_output *link) 1114 { 1115 struct qedi_ctx *qedi = (struct qedi_ctx *)dev; 1116 1117 if (link->link_up) { 1118 QEDI_INFO(&qedi->dbg_ctx, QEDI_LOG_INFO, "Link Up event.\n"); 1119 atomic_set(&qedi->link_state, QEDI_LINK_UP); 1120 } else { 1121 QEDI_INFO(&qedi->dbg_ctx, QEDI_LOG_INFO, 1122 "Link Down event.\n"); 1123 atomic_set(&qedi->link_state, QEDI_LINK_DOWN); 1124 } 1125 } 1126 1127 static struct qed_iscsi_cb_ops qedi_cb_ops = { 1128 { 1129 .link_update = qedi_link_update, 1130 .get_protocol_tlv_data = qedi_get_protocol_tlv_data, 1131 .get_generic_tlv_data = qedi_get_generic_tlv_data, 1132 } 1133 }; 1134 1135 static int qedi_queue_cqe(struct qedi_ctx *qedi, union iscsi_cqe *cqe, 1136 u16 que_idx, struct qedi_percpu_s *p) 1137 { 1138 struct qedi_work *qedi_work; 1139 struct qedi_conn *q_conn; 1140 struct iscsi_conn *conn; 1141 struct qedi_cmd *qedi_cmd; 1142 u32 iscsi_cid; 1143 int rc = 0; 1144 1145 iscsi_cid = cqe->cqe_common.conn_id; 1146 q_conn = qedi->cid_que.conn_cid_tbl[iscsi_cid]; 1147 if (!q_conn) { 1148 QEDI_WARN(&qedi->dbg_ctx, 1149 "Session no longer exists for cid=0x%x!!\n", 1150 iscsi_cid); 1151 return -1; 1152 } 1153 conn = q_conn->cls_conn->dd_data; 1154 1155 switch (cqe->cqe_common.cqe_type) { 1156 case ISCSI_CQE_TYPE_SOLICITED: 1157 case ISCSI_CQE_TYPE_SOLICITED_WITH_SENSE: 1158 qedi_cmd = qedi_get_cmd_from_tid(qedi, cqe->cqe_solicited.itid); 1159 if (!qedi_cmd) { 1160 rc = -1; 1161 break; 1162 } 1163 INIT_LIST_HEAD(&qedi_cmd->cqe_work.list); 1164 qedi_cmd->cqe_work.qedi = qedi; 1165 memcpy(&qedi_cmd->cqe_work.cqe, cqe, sizeof(union iscsi_cqe)); 1166 qedi_cmd->cqe_work.que_idx = que_idx; 1167 qedi_cmd->cqe_work.is_solicited = true; 1168 list_add_tail(&qedi_cmd->cqe_work.list, &p->work_list); 1169 break; 1170 case ISCSI_CQE_TYPE_UNSOLICITED: 1171 case ISCSI_CQE_TYPE_DUMMY: 1172 case ISCSI_CQE_TYPE_TASK_CLEANUP: 1173 qedi_work = kzalloc(sizeof(*qedi_work), GFP_ATOMIC); 1174 if (!qedi_work) { 1175 rc = -1; 1176 break; 1177 } 1178 INIT_LIST_HEAD(&qedi_work->list); 1179 qedi_work->qedi = qedi; 1180 memcpy(&qedi_work->cqe, cqe, sizeof(union iscsi_cqe)); 1181 qedi_work->que_idx = que_idx; 1182 qedi_work->is_solicited = false; 1183 list_add_tail(&qedi_work->list, &p->work_list); 1184 break; 1185 default: 1186 rc = -1; 1187 QEDI_ERR(&qedi->dbg_ctx, "FW Error cqe.\n"); 1188 } 1189 return rc; 1190 } 1191 1192 static bool qedi_process_completions(struct qedi_fastpath *fp) 1193 { 1194 struct qedi_ctx *qedi = fp->qedi; 1195 struct qed_sb_info *sb_info = fp->sb_info; 1196 struct status_block_e4 *sb = sb_info->sb_virt; 1197 struct qedi_percpu_s *p = NULL; 1198 struct global_queue *que; 1199 u16 prod_idx; 1200 unsigned long flags; 1201 union iscsi_cqe *cqe; 1202 int cpu; 1203 int ret; 1204 1205 /* Get the current firmware producer index */ 1206 prod_idx = sb->pi_array[QEDI_PROTO_CQ_PROD_IDX]; 1207 1208 if (prod_idx >= QEDI_CQ_SIZE) 1209 prod_idx = prod_idx % QEDI_CQ_SIZE; 1210 1211 que = qedi->global_queues[fp->sb_id]; 1212 QEDI_INFO(&qedi->dbg_ctx, QEDI_LOG_IO, 1213 "Before: global queue=%p prod_idx=%d cons_idx=%d, sb_id=%d\n", 1214 que, prod_idx, que->cq_cons_idx, fp->sb_id); 1215 1216 qedi->intr_cpu = fp->sb_id; 1217 cpu = smp_processor_id(); 1218 p = &per_cpu(qedi_percpu, cpu); 1219 1220 if (unlikely(!p->iothread)) 1221 WARN_ON(1); 1222 1223 spin_lock_irqsave(&p->p_work_lock, flags); 1224 while (que->cq_cons_idx != prod_idx) { 1225 cqe = &que->cq[que->cq_cons_idx]; 1226 1227 QEDI_INFO(&qedi->dbg_ctx, QEDI_LOG_IO, 1228 "cqe=%p prod_idx=%d cons_idx=%d.\n", 1229 cqe, prod_idx, que->cq_cons_idx); 1230 1231 ret = qedi_queue_cqe(qedi, cqe, fp->sb_id, p); 1232 if (ret) 1233 QEDI_WARN(&qedi->dbg_ctx, 1234 "Dropping CQE 0x%x for cid=0x%x.\n", 1235 que->cq_cons_idx, cqe->cqe_common.conn_id); 1236 1237 que->cq_cons_idx++; 1238 if (que->cq_cons_idx == QEDI_CQ_SIZE) 1239 que->cq_cons_idx = 0; 1240 } 1241 wake_up_process(p->iothread); 1242 spin_unlock_irqrestore(&p->p_work_lock, flags); 1243 1244 return true; 1245 } 1246 1247 static bool qedi_fp_has_work(struct qedi_fastpath *fp) 1248 { 1249 struct qedi_ctx *qedi = fp->qedi; 1250 struct global_queue *que; 1251 struct qed_sb_info *sb_info = fp->sb_info; 1252 struct status_block_e4 *sb = sb_info->sb_virt; 1253 u16 prod_idx; 1254 1255 barrier(); 1256 1257 /* Get the current firmware producer index */ 1258 prod_idx = sb->pi_array[QEDI_PROTO_CQ_PROD_IDX]; 1259 1260 /* Get the pointer to the global CQ this completion is on */ 1261 que = qedi->global_queues[fp->sb_id]; 1262 1263 /* prod idx wrap around uint16 */ 1264 if (prod_idx >= QEDI_CQ_SIZE) 1265 prod_idx = prod_idx % QEDI_CQ_SIZE; 1266 1267 return (que->cq_cons_idx != prod_idx); 1268 } 1269 1270 /* MSI-X fastpath handler code */ 1271 static irqreturn_t qedi_msix_handler(int irq, void *dev_id) 1272 { 1273 struct qedi_fastpath *fp = dev_id; 1274 struct qedi_ctx *qedi = fp->qedi; 1275 bool wake_io_thread = true; 1276 1277 qed_sb_ack(fp->sb_info, IGU_INT_DISABLE, 0); 1278 1279 process_again: 1280 wake_io_thread = qedi_process_completions(fp); 1281 if (wake_io_thread) { 1282 QEDI_INFO(&qedi->dbg_ctx, QEDI_LOG_DISC, 1283 "process already running\n"); 1284 } 1285 1286 if (qedi_fp_has_work(fp) == 0) 1287 qed_sb_update_sb_idx(fp->sb_info); 1288 1289 /* Check for more work */ 1290 rmb(); 1291 1292 if (qedi_fp_has_work(fp) == 0) 1293 qed_sb_ack(fp->sb_info, IGU_INT_ENABLE, 1); 1294 else 1295 goto process_again; 1296 1297 return IRQ_HANDLED; 1298 } 1299 1300 /* simd handler for MSI/INTa */ 1301 static void qedi_simd_int_handler(void *cookie) 1302 { 1303 /* Cookie is qedi_ctx struct */ 1304 struct qedi_ctx *qedi = (struct qedi_ctx *)cookie; 1305 1306 QEDI_WARN(&qedi->dbg_ctx, "qedi=%p.\n", qedi); 1307 } 1308 1309 #define QEDI_SIMD_HANDLER_NUM 0 1310 static void qedi_sync_free_irqs(struct qedi_ctx *qedi) 1311 { 1312 int i; 1313 u16 idx; 1314 1315 if (qedi->int_info.msix_cnt) { 1316 for (i = 0; i < qedi->int_info.used_cnt; i++) { 1317 idx = i * qedi->dev_info.common.num_hwfns + 1318 qedi_ops->common->get_affin_hwfn_idx(qedi->cdev); 1319 1320 QEDI_INFO(&qedi->dbg_ctx, QEDI_LOG_INFO, 1321 "Freeing IRQ #%d vector_idx=%d.\n", i, idx); 1322 1323 synchronize_irq(qedi->int_info.msix[idx].vector); 1324 irq_set_affinity_hint(qedi->int_info.msix[idx].vector, 1325 NULL); 1326 free_irq(qedi->int_info.msix[idx].vector, 1327 &qedi->fp_array[i]); 1328 } 1329 } else { 1330 qedi_ops->common->simd_handler_clean(qedi->cdev, 1331 QEDI_SIMD_HANDLER_NUM); 1332 } 1333 1334 qedi->int_info.used_cnt = 0; 1335 qedi_ops->common->set_fp_int(qedi->cdev, 0); 1336 } 1337 1338 static int qedi_request_msix_irq(struct qedi_ctx *qedi) 1339 { 1340 int i, rc, cpu; 1341 u16 idx; 1342 1343 cpu = cpumask_first(cpu_online_mask); 1344 for (i = 0; i < MIN_NUM_CPUS_MSIX(qedi); i++) { 1345 idx = i * qedi->dev_info.common.num_hwfns + 1346 qedi_ops->common->get_affin_hwfn_idx(qedi->cdev); 1347 1348 QEDI_INFO(&qedi->dbg_ctx, QEDI_LOG_INFO, 1349 "dev_info: num_hwfns=%d affin_hwfn_idx=%d.\n", 1350 qedi->dev_info.common.num_hwfns, 1351 qedi_ops->common->get_affin_hwfn_idx(qedi->cdev)); 1352 1353 rc = request_irq(qedi->int_info.msix[idx].vector, 1354 qedi_msix_handler, 0, "qedi", 1355 &qedi->fp_array[i]); 1356 if (rc) { 1357 QEDI_WARN(&qedi->dbg_ctx, "request_irq failed.\n"); 1358 qedi_sync_free_irqs(qedi); 1359 return rc; 1360 } 1361 qedi->int_info.used_cnt++; 1362 rc = irq_set_affinity_hint(qedi->int_info.msix[idx].vector, 1363 get_cpu_mask(cpu)); 1364 cpu = cpumask_next(cpu, cpu_online_mask); 1365 } 1366 1367 return 0; 1368 } 1369 1370 static int qedi_setup_int(struct qedi_ctx *qedi) 1371 { 1372 int rc = 0; 1373 1374 rc = qedi_ops->common->set_fp_int(qedi->cdev, num_online_cpus()); 1375 rc = qedi_ops->common->get_fp_int(qedi->cdev, &qedi->int_info); 1376 if (rc) 1377 goto exit_setup_int; 1378 1379 QEDI_INFO(&qedi->dbg_ctx, QEDI_LOG_DISC, 1380 "Number of msix_cnt = 0x%x num of cpus = 0x%x\n", 1381 qedi->int_info.msix_cnt, num_online_cpus()); 1382 1383 if (qedi->int_info.msix_cnt) { 1384 rc = qedi_request_msix_irq(qedi); 1385 goto exit_setup_int; 1386 } else { 1387 qedi_ops->common->simd_handler_config(qedi->cdev, &qedi, 1388 QEDI_SIMD_HANDLER_NUM, 1389 qedi_simd_int_handler); 1390 qedi->int_info.used_cnt = 1; 1391 } 1392 1393 exit_setup_int: 1394 return rc; 1395 } 1396 1397 static void qedi_free_nvm_iscsi_cfg(struct qedi_ctx *qedi) 1398 { 1399 if (qedi->iscsi_image) 1400 dma_free_coherent(&qedi->pdev->dev, 1401 sizeof(struct qedi_nvm_iscsi_image), 1402 qedi->iscsi_image, qedi->nvm_buf_dma); 1403 } 1404 1405 static int qedi_alloc_nvm_iscsi_cfg(struct qedi_ctx *qedi) 1406 { 1407 qedi->iscsi_image = dma_alloc_coherent(&qedi->pdev->dev, 1408 sizeof(struct qedi_nvm_iscsi_image), 1409 &qedi->nvm_buf_dma, GFP_KERNEL); 1410 if (!qedi->iscsi_image) { 1411 QEDI_ERR(&qedi->dbg_ctx, "Could not allocate NVM BUF.\n"); 1412 return -ENOMEM; 1413 } 1414 QEDI_INFO(&qedi->dbg_ctx, QEDI_LOG_INFO, 1415 "NVM BUF addr=0x%p dma=0x%llx.\n", qedi->iscsi_image, 1416 qedi->nvm_buf_dma); 1417 1418 return 0; 1419 } 1420 1421 static void qedi_free_bdq(struct qedi_ctx *qedi) 1422 { 1423 int i; 1424 1425 if (qedi->bdq_pbl_list) 1426 dma_free_coherent(&qedi->pdev->dev, QEDI_PAGE_SIZE, 1427 qedi->bdq_pbl_list, qedi->bdq_pbl_list_dma); 1428 1429 if (qedi->bdq_pbl) 1430 dma_free_coherent(&qedi->pdev->dev, qedi->bdq_pbl_mem_size, 1431 qedi->bdq_pbl, qedi->bdq_pbl_dma); 1432 1433 for (i = 0; i < QEDI_BDQ_NUM; i++) { 1434 if (qedi->bdq[i].buf_addr) { 1435 dma_free_coherent(&qedi->pdev->dev, QEDI_BDQ_BUF_SIZE, 1436 qedi->bdq[i].buf_addr, 1437 qedi->bdq[i].buf_dma); 1438 } 1439 } 1440 } 1441 1442 static void qedi_free_global_queues(struct qedi_ctx *qedi) 1443 { 1444 int i; 1445 struct global_queue **gl = qedi->global_queues; 1446 1447 for (i = 0; i < qedi->num_queues; i++) { 1448 if (!gl[i]) 1449 continue; 1450 1451 if (gl[i]->cq) 1452 dma_free_coherent(&qedi->pdev->dev, gl[i]->cq_mem_size, 1453 gl[i]->cq, gl[i]->cq_dma); 1454 if (gl[i]->cq_pbl) 1455 dma_free_coherent(&qedi->pdev->dev, gl[i]->cq_pbl_size, 1456 gl[i]->cq_pbl, gl[i]->cq_pbl_dma); 1457 1458 kfree(gl[i]); 1459 } 1460 qedi_free_bdq(qedi); 1461 qedi_free_nvm_iscsi_cfg(qedi); 1462 } 1463 1464 static int qedi_alloc_bdq(struct qedi_ctx *qedi) 1465 { 1466 int i; 1467 struct scsi_bd *pbl; 1468 u64 *list; 1469 dma_addr_t page; 1470 1471 /* Alloc dma memory for BDQ buffers */ 1472 for (i = 0; i < QEDI_BDQ_NUM; i++) { 1473 qedi->bdq[i].buf_addr = 1474 dma_alloc_coherent(&qedi->pdev->dev, 1475 QEDI_BDQ_BUF_SIZE, 1476 &qedi->bdq[i].buf_dma, 1477 GFP_KERNEL); 1478 if (!qedi->bdq[i].buf_addr) { 1479 QEDI_ERR(&qedi->dbg_ctx, 1480 "Could not allocate BDQ buffer %d.\n", i); 1481 return -ENOMEM; 1482 } 1483 } 1484 1485 /* Alloc dma memory for BDQ page buffer list */ 1486 qedi->bdq_pbl_mem_size = QEDI_BDQ_NUM * sizeof(struct scsi_bd); 1487 qedi->bdq_pbl_mem_size = ALIGN(qedi->bdq_pbl_mem_size, QEDI_PAGE_SIZE); 1488 qedi->rq_num_entries = qedi->bdq_pbl_mem_size / sizeof(struct scsi_bd); 1489 1490 QEDI_INFO(&qedi->dbg_ctx, QEDI_LOG_CONN, "rq_num_entries = %d.\n", 1491 qedi->rq_num_entries); 1492 1493 qedi->bdq_pbl = dma_alloc_coherent(&qedi->pdev->dev, 1494 qedi->bdq_pbl_mem_size, 1495 &qedi->bdq_pbl_dma, GFP_KERNEL); 1496 if (!qedi->bdq_pbl) { 1497 QEDI_ERR(&qedi->dbg_ctx, "Could not allocate BDQ PBL.\n"); 1498 return -ENOMEM; 1499 } 1500 1501 /* 1502 * Populate BDQ PBL with physical and virtual address of individual 1503 * BDQ buffers 1504 */ 1505 pbl = (struct scsi_bd *)qedi->bdq_pbl; 1506 for (i = 0; i < QEDI_BDQ_NUM; i++) { 1507 pbl->address.hi = 1508 cpu_to_le32(QEDI_U64_HI(qedi->bdq[i].buf_dma)); 1509 pbl->address.lo = 1510 cpu_to_le32(QEDI_U64_LO(qedi->bdq[i].buf_dma)); 1511 QEDI_INFO(&qedi->dbg_ctx, QEDI_LOG_CONN, 1512 "pbl [0x%p] pbl->address hi [0x%llx] lo [0x%llx], idx [%d]\n", 1513 pbl, pbl->address.hi, pbl->address.lo, i); 1514 pbl->opaque.iscsi_opaque.reserved_zero[0] = 0; 1515 pbl->opaque.iscsi_opaque.reserved_zero[1] = 0; 1516 pbl->opaque.iscsi_opaque.reserved_zero[2] = 0; 1517 pbl->opaque.iscsi_opaque.opaque = cpu_to_le16(i); 1518 pbl++; 1519 } 1520 1521 /* Allocate list of PBL pages */ 1522 qedi->bdq_pbl_list = dma_alloc_coherent(&qedi->pdev->dev, 1523 QEDI_PAGE_SIZE, 1524 &qedi->bdq_pbl_list_dma, 1525 GFP_KERNEL); 1526 if (!qedi->bdq_pbl_list) { 1527 QEDI_ERR(&qedi->dbg_ctx, 1528 "Could not allocate list of PBL pages.\n"); 1529 return -ENOMEM; 1530 } 1531 1532 /* 1533 * Now populate PBL list with pages that contain pointers to the 1534 * individual buffers. 1535 */ 1536 qedi->bdq_pbl_list_num_entries = qedi->bdq_pbl_mem_size / 1537 QEDI_PAGE_SIZE; 1538 list = (u64 *)qedi->bdq_pbl_list; 1539 page = qedi->bdq_pbl_list_dma; 1540 for (i = 0; i < qedi->bdq_pbl_list_num_entries; i++) { 1541 *list = qedi->bdq_pbl_dma; 1542 list++; 1543 page += QEDI_PAGE_SIZE; 1544 } 1545 1546 return 0; 1547 } 1548 1549 static int qedi_alloc_global_queues(struct qedi_ctx *qedi) 1550 { 1551 u32 *list; 1552 int i; 1553 int status = 0, rc; 1554 u32 *pbl; 1555 dma_addr_t page; 1556 int num_pages; 1557 1558 /* 1559 * Number of global queues (CQ / RQ). This should 1560 * be <= number of available MSIX vectors for the PF 1561 */ 1562 if (!qedi->num_queues) { 1563 QEDI_ERR(&qedi->dbg_ctx, "No MSI-X vectors available!\n"); 1564 return 1; 1565 } 1566 1567 /* Make sure we allocated the PBL that will contain the physical 1568 * addresses of our queues 1569 */ 1570 if (!qedi->p_cpuq) { 1571 status = 1; 1572 goto mem_alloc_failure; 1573 } 1574 1575 qedi->global_queues = kzalloc((sizeof(struct global_queue *) * 1576 qedi->num_queues), GFP_KERNEL); 1577 if (!qedi->global_queues) { 1578 QEDI_ERR(&qedi->dbg_ctx, 1579 "Unable to allocate global queues array ptr memory\n"); 1580 return -ENOMEM; 1581 } 1582 QEDI_INFO(&qedi->dbg_ctx, QEDI_LOG_DISC, 1583 "qedi->global_queues=%p.\n", qedi->global_queues); 1584 1585 /* Allocate DMA coherent buffers for BDQ */ 1586 rc = qedi_alloc_bdq(qedi); 1587 if (rc) 1588 goto mem_alloc_failure; 1589 1590 /* Allocate DMA coherent buffers for NVM_ISCSI_CFG */ 1591 rc = qedi_alloc_nvm_iscsi_cfg(qedi); 1592 if (rc) 1593 goto mem_alloc_failure; 1594 1595 /* Allocate a CQ and an associated PBL for each MSI-X 1596 * vector. 1597 */ 1598 for (i = 0; i < qedi->num_queues; i++) { 1599 qedi->global_queues[i] = 1600 kzalloc(sizeof(*qedi->global_queues[0]), 1601 GFP_KERNEL); 1602 if (!qedi->global_queues[i]) { 1603 QEDI_ERR(&qedi->dbg_ctx, 1604 "Unable to allocation global queue %d.\n", i); 1605 goto mem_alloc_failure; 1606 } 1607 1608 qedi->global_queues[i]->cq_mem_size = 1609 (QEDI_CQ_SIZE + 8) * sizeof(union iscsi_cqe); 1610 qedi->global_queues[i]->cq_mem_size = 1611 (qedi->global_queues[i]->cq_mem_size + 1612 (QEDI_PAGE_SIZE - 1)); 1613 1614 qedi->global_queues[i]->cq_pbl_size = 1615 (qedi->global_queues[i]->cq_mem_size / 1616 QEDI_PAGE_SIZE) * sizeof(void *); 1617 qedi->global_queues[i]->cq_pbl_size = 1618 (qedi->global_queues[i]->cq_pbl_size + 1619 (QEDI_PAGE_SIZE - 1)); 1620 1621 qedi->global_queues[i]->cq = dma_alloc_coherent(&qedi->pdev->dev, 1622 qedi->global_queues[i]->cq_mem_size, 1623 &qedi->global_queues[i]->cq_dma, 1624 GFP_KERNEL); 1625 1626 if (!qedi->global_queues[i]->cq) { 1627 QEDI_WARN(&qedi->dbg_ctx, 1628 "Could not allocate cq.\n"); 1629 status = -ENOMEM; 1630 goto mem_alloc_failure; 1631 } 1632 qedi->global_queues[i]->cq_pbl = dma_alloc_coherent(&qedi->pdev->dev, 1633 qedi->global_queues[i]->cq_pbl_size, 1634 &qedi->global_queues[i]->cq_pbl_dma, 1635 GFP_KERNEL); 1636 1637 if (!qedi->global_queues[i]->cq_pbl) { 1638 QEDI_WARN(&qedi->dbg_ctx, 1639 "Could not allocate cq PBL.\n"); 1640 status = -ENOMEM; 1641 goto mem_alloc_failure; 1642 } 1643 1644 /* Create PBL */ 1645 num_pages = qedi->global_queues[i]->cq_mem_size / 1646 QEDI_PAGE_SIZE; 1647 page = qedi->global_queues[i]->cq_dma; 1648 pbl = (u32 *)qedi->global_queues[i]->cq_pbl; 1649 1650 while (num_pages--) { 1651 *pbl = (u32)page; 1652 pbl++; 1653 *pbl = (u32)((u64)page >> 32); 1654 pbl++; 1655 page += QEDI_PAGE_SIZE; 1656 } 1657 } 1658 1659 list = (u32 *)qedi->p_cpuq; 1660 1661 /* 1662 * The list is built as follows: CQ#0 PBL pointer, RQ#0 PBL pointer, 1663 * CQ#1 PBL pointer, RQ#1 PBL pointer, etc. Each PBL pointer points 1664 * to the physical address which contains an array of pointers to the 1665 * physical addresses of the specific queue pages. 1666 */ 1667 for (i = 0; i < qedi->num_queues; i++) { 1668 *list = (u32)qedi->global_queues[i]->cq_pbl_dma; 1669 list++; 1670 *list = (u32)((u64)qedi->global_queues[i]->cq_pbl_dma >> 32); 1671 list++; 1672 1673 *list = (u32)0; 1674 list++; 1675 *list = (u32)((u64)0 >> 32); 1676 list++; 1677 } 1678 1679 return 0; 1680 1681 mem_alloc_failure: 1682 qedi_free_global_queues(qedi); 1683 return status; 1684 } 1685 1686 int qedi_alloc_sq(struct qedi_ctx *qedi, struct qedi_endpoint *ep) 1687 { 1688 int rval = 0; 1689 u32 *pbl; 1690 dma_addr_t page; 1691 int num_pages; 1692 1693 if (!ep) 1694 return -EIO; 1695 1696 /* Calculate appropriate queue and PBL sizes */ 1697 ep->sq_mem_size = QEDI_SQ_SIZE * sizeof(struct iscsi_wqe); 1698 ep->sq_mem_size += QEDI_PAGE_SIZE - 1; 1699 1700 ep->sq_pbl_size = (ep->sq_mem_size / QEDI_PAGE_SIZE) * sizeof(void *); 1701 ep->sq_pbl_size = ep->sq_pbl_size + QEDI_PAGE_SIZE; 1702 1703 ep->sq = dma_alloc_coherent(&qedi->pdev->dev, ep->sq_mem_size, 1704 &ep->sq_dma, GFP_KERNEL); 1705 if (!ep->sq) { 1706 QEDI_WARN(&qedi->dbg_ctx, 1707 "Could not allocate send queue.\n"); 1708 rval = -ENOMEM; 1709 goto out; 1710 } 1711 ep->sq_pbl = dma_alloc_coherent(&qedi->pdev->dev, ep->sq_pbl_size, 1712 &ep->sq_pbl_dma, GFP_KERNEL); 1713 if (!ep->sq_pbl) { 1714 QEDI_WARN(&qedi->dbg_ctx, 1715 "Could not allocate send queue PBL.\n"); 1716 rval = -ENOMEM; 1717 goto out_free_sq; 1718 } 1719 1720 /* Create PBL */ 1721 num_pages = ep->sq_mem_size / QEDI_PAGE_SIZE; 1722 page = ep->sq_dma; 1723 pbl = (u32 *)ep->sq_pbl; 1724 1725 while (num_pages--) { 1726 *pbl = (u32)page; 1727 pbl++; 1728 *pbl = (u32)((u64)page >> 32); 1729 pbl++; 1730 page += QEDI_PAGE_SIZE; 1731 } 1732 1733 return rval; 1734 1735 out_free_sq: 1736 dma_free_coherent(&qedi->pdev->dev, ep->sq_mem_size, ep->sq, 1737 ep->sq_dma); 1738 out: 1739 return rval; 1740 } 1741 1742 void qedi_free_sq(struct qedi_ctx *qedi, struct qedi_endpoint *ep) 1743 { 1744 if (ep->sq_pbl) 1745 dma_free_coherent(&qedi->pdev->dev, ep->sq_pbl_size, ep->sq_pbl, 1746 ep->sq_pbl_dma); 1747 if (ep->sq) 1748 dma_free_coherent(&qedi->pdev->dev, ep->sq_mem_size, ep->sq, 1749 ep->sq_dma); 1750 } 1751 1752 int qedi_get_task_idx(struct qedi_ctx *qedi) 1753 { 1754 s16 tmp_idx; 1755 1756 again: 1757 tmp_idx = find_first_zero_bit(qedi->task_idx_map, 1758 MAX_ISCSI_TASK_ENTRIES); 1759 1760 if (tmp_idx >= MAX_ISCSI_TASK_ENTRIES) { 1761 QEDI_ERR(&qedi->dbg_ctx, "FW task context pool is full.\n"); 1762 tmp_idx = -1; 1763 goto err_idx; 1764 } 1765 1766 if (test_and_set_bit(tmp_idx, qedi->task_idx_map)) 1767 goto again; 1768 1769 err_idx: 1770 return tmp_idx; 1771 } 1772 1773 void qedi_clear_task_idx(struct qedi_ctx *qedi, int idx) 1774 { 1775 if (!test_and_clear_bit(idx, qedi->task_idx_map)) 1776 QEDI_ERR(&qedi->dbg_ctx, 1777 "FW task context, already cleared, tid=0x%x\n", idx); 1778 } 1779 1780 void qedi_update_itt_map(struct qedi_ctx *qedi, u32 tid, u32 proto_itt, 1781 struct qedi_cmd *cmd) 1782 { 1783 qedi->itt_map[tid].itt = proto_itt; 1784 qedi->itt_map[tid].p_cmd = cmd; 1785 1786 QEDI_INFO(&qedi->dbg_ctx, QEDI_LOG_CONN, 1787 "update itt map tid=0x%x, with proto itt=0x%x\n", tid, 1788 qedi->itt_map[tid].itt); 1789 } 1790 1791 void qedi_get_task_tid(struct qedi_ctx *qedi, u32 itt, s16 *tid) 1792 { 1793 u16 i; 1794 1795 for (i = 0; i < MAX_ISCSI_TASK_ENTRIES; i++) { 1796 if (qedi->itt_map[i].itt == itt) { 1797 *tid = i; 1798 QEDI_INFO(&qedi->dbg_ctx, QEDI_LOG_CONN, 1799 "Ref itt=0x%x, found at tid=0x%x\n", 1800 itt, *tid); 1801 return; 1802 } 1803 } 1804 1805 WARN_ON(1); 1806 } 1807 1808 void qedi_get_proto_itt(struct qedi_ctx *qedi, u32 tid, u32 *proto_itt) 1809 { 1810 *proto_itt = qedi->itt_map[tid].itt; 1811 QEDI_INFO(&qedi->dbg_ctx, QEDI_LOG_CONN, 1812 "Get itt map tid [0x%x with proto itt[0x%x]", 1813 tid, *proto_itt); 1814 } 1815 1816 struct qedi_cmd *qedi_get_cmd_from_tid(struct qedi_ctx *qedi, u32 tid) 1817 { 1818 struct qedi_cmd *cmd = NULL; 1819 1820 if (tid >= MAX_ISCSI_TASK_ENTRIES) 1821 return NULL; 1822 1823 cmd = qedi->itt_map[tid].p_cmd; 1824 if (cmd->task_id != tid) 1825 return NULL; 1826 1827 qedi->itt_map[tid].p_cmd = NULL; 1828 1829 return cmd; 1830 } 1831 1832 static int qedi_alloc_itt(struct qedi_ctx *qedi) 1833 { 1834 qedi->itt_map = kcalloc(MAX_ISCSI_TASK_ENTRIES, 1835 sizeof(struct qedi_itt_map), GFP_KERNEL); 1836 if (!qedi->itt_map) { 1837 QEDI_ERR(&qedi->dbg_ctx, 1838 "Unable to allocate itt map array memory\n"); 1839 return -ENOMEM; 1840 } 1841 return 0; 1842 } 1843 1844 static void qedi_free_itt(struct qedi_ctx *qedi) 1845 { 1846 kfree(qedi->itt_map); 1847 } 1848 1849 static struct qed_ll2_cb_ops qedi_ll2_cb_ops = { 1850 .rx_cb = qedi_ll2_rx, 1851 .tx_cb = NULL, 1852 }; 1853 1854 static int qedi_percpu_io_thread(void *arg) 1855 { 1856 struct qedi_percpu_s *p = arg; 1857 struct qedi_work *work, *tmp; 1858 unsigned long flags; 1859 LIST_HEAD(work_list); 1860 1861 set_user_nice(current, -20); 1862 1863 while (!kthread_should_stop()) { 1864 spin_lock_irqsave(&p->p_work_lock, flags); 1865 while (!list_empty(&p->work_list)) { 1866 list_splice_init(&p->work_list, &work_list); 1867 spin_unlock_irqrestore(&p->p_work_lock, flags); 1868 1869 list_for_each_entry_safe(work, tmp, &work_list, list) { 1870 list_del_init(&work->list); 1871 qedi_fp_process_cqes(work); 1872 if (!work->is_solicited) 1873 kfree(work); 1874 } 1875 cond_resched(); 1876 spin_lock_irqsave(&p->p_work_lock, flags); 1877 } 1878 set_current_state(TASK_INTERRUPTIBLE); 1879 spin_unlock_irqrestore(&p->p_work_lock, flags); 1880 schedule(); 1881 } 1882 __set_current_state(TASK_RUNNING); 1883 1884 return 0; 1885 } 1886 1887 static int qedi_cpu_online(unsigned int cpu) 1888 { 1889 struct qedi_percpu_s *p = this_cpu_ptr(&qedi_percpu); 1890 struct task_struct *thread; 1891 1892 thread = kthread_create_on_node(qedi_percpu_io_thread, (void *)p, 1893 cpu_to_node(cpu), 1894 "qedi_thread/%d", cpu); 1895 if (IS_ERR(thread)) 1896 return PTR_ERR(thread); 1897 1898 kthread_bind(thread, cpu); 1899 p->iothread = thread; 1900 wake_up_process(thread); 1901 return 0; 1902 } 1903 1904 static int qedi_cpu_offline(unsigned int cpu) 1905 { 1906 struct qedi_percpu_s *p = this_cpu_ptr(&qedi_percpu); 1907 struct qedi_work *work, *tmp; 1908 struct task_struct *thread; 1909 1910 spin_lock_bh(&p->p_work_lock); 1911 thread = p->iothread; 1912 p->iothread = NULL; 1913 1914 list_for_each_entry_safe(work, tmp, &p->work_list, list) { 1915 list_del_init(&work->list); 1916 qedi_fp_process_cqes(work); 1917 if (!work->is_solicited) 1918 kfree(work); 1919 } 1920 1921 spin_unlock_bh(&p->p_work_lock); 1922 if (thread) 1923 kthread_stop(thread); 1924 return 0; 1925 } 1926 1927 void qedi_reset_host_mtu(struct qedi_ctx *qedi, u16 mtu) 1928 { 1929 struct qed_ll2_params params; 1930 1931 qedi_recover_all_conns(qedi); 1932 1933 qedi_ops->ll2->stop(qedi->cdev); 1934 qedi_ll2_free_skbs(qedi); 1935 1936 QEDI_INFO(&qedi->dbg_ctx, QEDI_LOG_INFO, "old MTU %u, new MTU %u\n", 1937 qedi->ll2_mtu, mtu); 1938 memset(¶ms, 0, sizeof(params)); 1939 qedi->ll2_mtu = mtu; 1940 params.mtu = qedi->ll2_mtu + IPV6_HDR_LEN + TCP_HDR_LEN; 1941 params.drop_ttl0_packets = 0; 1942 params.rx_vlan_stripping = 1; 1943 ether_addr_copy(params.ll2_mac_address, qedi->dev_info.common.hw_mac); 1944 qedi_ops->ll2->start(qedi->cdev, ¶ms); 1945 } 1946 1947 /** 1948 * qedi_get_nvram_block: - Scan through the iSCSI NVRAM block (while accounting 1949 * for gaps) for the matching absolute-pf-id of the QEDI device. 1950 */ 1951 static struct nvm_iscsi_block * 1952 qedi_get_nvram_block(struct qedi_ctx *qedi) 1953 { 1954 int i; 1955 u8 pf; 1956 u32 flags; 1957 struct nvm_iscsi_block *block; 1958 1959 pf = qedi->dev_info.common.abs_pf_id; 1960 block = &qedi->iscsi_image->iscsi_cfg.block[0]; 1961 for (i = 0; i < NUM_OF_ISCSI_PF_SUPPORTED; i++, block++) { 1962 flags = ((block->id) & NVM_ISCSI_CFG_BLK_CTRL_FLAG_MASK) >> 1963 NVM_ISCSI_CFG_BLK_CTRL_FLAG_OFFSET; 1964 if (flags & (NVM_ISCSI_CFG_BLK_CTRL_FLAG_IS_NOT_EMPTY | 1965 NVM_ISCSI_CFG_BLK_CTRL_FLAG_PF_MAPPED) && 1966 (pf == (block->id & NVM_ISCSI_CFG_BLK_MAPPED_PF_ID_MASK) 1967 >> NVM_ISCSI_CFG_BLK_MAPPED_PF_ID_OFFSET)) 1968 return block; 1969 } 1970 return NULL; 1971 } 1972 1973 static ssize_t qedi_show_boot_eth_info(void *data, int type, char *buf) 1974 { 1975 struct qedi_ctx *qedi = data; 1976 struct nvm_iscsi_initiator *initiator; 1977 int rc = 1; 1978 u32 ipv6_en, dhcp_en, ip_len; 1979 struct nvm_iscsi_block *block; 1980 char *fmt, *ip, *sub, *gw; 1981 1982 block = qedi_get_nvram_block(qedi); 1983 if (!block) 1984 return 0; 1985 1986 initiator = &block->initiator; 1987 ipv6_en = block->generic.ctrl_flags & 1988 NVM_ISCSI_CFG_GEN_IPV6_ENABLED; 1989 dhcp_en = block->generic.ctrl_flags & 1990 NVM_ISCSI_CFG_GEN_DHCP_TCPIP_CONFIG_ENABLED; 1991 /* Static IP assignments. */ 1992 fmt = ipv6_en ? "%pI6\n" : "%pI4\n"; 1993 ip = ipv6_en ? initiator->ipv6.addr.byte : initiator->ipv4.addr.byte; 1994 ip_len = ipv6_en ? IPV6_LEN : IPV4_LEN; 1995 sub = ipv6_en ? initiator->ipv6.subnet_mask.byte : 1996 initiator->ipv4.subnet_mask.byte; 1997 gw = ipv6_en ? initiator->ipv6.gateway.byte : 1998 initiator->ipv4.gateway.byte; 1999 /* DHCP IP adjustments. */ 2000 fmt = dhcp_en ? "%s\n" : fmt; 2001 if (dhcp_en) { 2002 ip = ipv6_en ? "0::0" : "0.0.0.0"; 2003 sub = ip; 2004 gw = ip; 2005 ip_len = ipv6_en ? 5 : 8; 2006 } 2007 2008 switch (type) { 2009 case ISCSI_BOOT_ETH_IP_ADDR: 2010 rc = snprintf(buf, ip_len, fmt, ip); 2011 break; 2012 case ISCSI_BOOT_ETH_SUBNET_MASK: 2013 rc = snprintf(buf, ip_len, fmt, sub); 2014 break; 2015 case ISCSI_BOOT_ETH_GATEWAY: 2016 rc = snprintf(buf, ip_len, fmt, gw); 2017 break; 2018 case ISCSI_BOOT_ETH_FLAGS: 2019 rc = snprintf(buf, 3, "%hhd\n", 2020 SYSFS_FLAG_FW_SEL_BOOT); 2021 break; 2022 case ISCSI_BOOT_ETH_INDEX: 2023 rc = snprintf(buf, 3, "0\n"); 2024 break; 2025 case ISCSI_BOOT_ETH_MAC: 2026 rc = sysfs_format_mac(buf, qedi->mac, ETH_ALEN); 2027 break; 2028 case ISCSI_BOOT_ETH_VLAN: 2029 rc = snprintf(buf, 12, "%d\n", 2030 GET_FIELD2(initiator->generic_cont0, 2031 NVM_ISCSI_CFG_INITIATOR_VLAN)); 2032 break; 2033 case ISCSI_BOOT_ETH_ORIGIN: 2034 if (dhcp_en) 2035 rc = snprintf(buf, 3, "3\n"); 2036 break; 2037 default: 2038 rc = 0; 2039 break; 2040 } 2041 2042 return rc; 2043 } 2044 2045 static umode_t qedi_eth_get_attr_visibility(void *data, int type) 2046 { 2047 int rc = 1; 2048 2049 switch (type) { 2050 case ISCSI_BOOT_ETH_FLAGS: 2051 case ISCSI_BOOT_ETH_MAC: 2052 case ISCSI_BOOT_ETH_INDEX: 2053 case ISCSI_BOOT_ETH_IP_ADDR: 2054 case ISCSI_BOOT_ETH_SUBNET_MASK: 2055 case ISCSI_BOOT_ETH_GATEWAY: 2056 case ISCSI_BOOT_ETH_ORIGIN: 2057 case ISCSI_BOOT_ETH_VLAN: 2058 rc = 0444; 2059 break; 2060 default: 2061 rc = 0; 2062 break; 2063 } 2064 return rc; 2065 } 2066 2067 static ssize_t qedi_show_boot_ini_info(void *data, int type, char *buf) 2068 { 2069 struct qedi_ctx *qedi = data; 2070 struct nvm_iscsi_initiator *initiator; 2071 int rc; 2072 struct nvm_iscsi_block *block; 2073 2074 block = qedi_get_nvram_block(qedi); 2075 if (!block) 2076 return 0; 2077 2078 initiator = &block->initiator; 2079 2080 switch (type) { 2081 case ISCSI_BOOT_INI_INITIATOR_NAME: 2082 rc = sprintf(buf, "%.*s\n", NVM_ISCSI_CFG_ISCSI_NAME_MAX_LEN, 2083 initiator->initiator_name.byte); 2084 break; 2085 default: 2086 rc = 0; 2087 break; 2088 } 2089 return rc; 2090 } 2091 2092 static umode_t qedi_ini_get_attr_visibility(void *data, int type) 2093 { 2094 int rc; 2095 2096 switch (type) { 2097 case ISCSI_BOOT_INI_INITIATOR_NAME: 2098 rc = 0444; 2099 break; 2100 default: 2101 rc = 0; 2102 break; 2103 } 2104 return rc; 2105 } 2106 2107 static ssize_t 2108 qedi_show_boot_tgt_info(struct qedi_ctx *qedi, int type, 2109 char *buf, enum qedi_nvm_tgts idx) 2110 { 2111 int rc = 1; 2112 u32 ctrl_flags, ipv6_en, chap_en, mchap_en, ip_len; 2113 struct nvm_iscsi_block *block; 2114 char *chap_name, *chap_secret; 2115 char *mchap_name, *mchap_secret; 2116 2117 block = qedi_get_nvram_block(qedi); 2118 if (!block) 2119 goto exit_show_tgt_info; 2120 2121 QEDI_INFO(&qedi->dbg_ctx, QEDI_LOG_EVT, 2122 "Port:%d, tgt_idx:%d\n", 2123 GET_FIELD2(block->id, NVM_ISCSI_CFG_BLK_MAPPED_PF_ID), idx); 2124 2125 ctrl_flags = block->target[idx].ctrl_flags & 2126 NVM_ISCSI_CFG_TARGET_ENABLED; 2127 2128 if (!ctrl_flags) { 2129 QEDI_INFO(&qedi->dbg_ctx, QEDI_LOG_EVT, 2130 "Target disabled\n"); 2131 goto exit_show_tgt_info; 2132 } 2133 2134 ipv6_en = block->generic.ctrl_flags & 2135 NVM_ISCSI_CFG_GEN_IPV6_ENABLED; 2136 ip_len = ipv6_en ? IPV6_LEN : IPV4_LEN; 2137 chap_en = block->generic.ctrl_flags & 2138 NVM_ISCSI_CFG_GEN_CHAP_ENABLED; 2139 chap_name = chap_en ? block->initiator.chap_name.byte : NULL; 2140 chap_secret = chap_en ? block->initiator.chap_password.byte : NULL; 2141 2142 mchap_en = block->generic.ctrl_flags & 2143 NVM_ISCSI_CFG_GEN_CHAP_MUTUAL_ENABLED; 2144 mchap_name = mchap_en ? block->target[idx].chap_name.byte : NULL; 2145 mchap_secret = mchap_en ? block->target[idx].chap_password.byte : NULL; 2146 2147 switch (type) { 2148 case ISCSI_BOOT_TGT_NAME: 2149 rc = sprintf(buf, "%.*s\n", NVM_ISCSI_CFG_ISCSI_NAME_MAX_LEN, 2150 block->target[idx].target_name.byte); 2151 break; 2152 case ISCSI_BOOT_TGT_IP_ADDR: 2153 if (ipv6_en) 2154 rc = snprintf(buf, ip_len, "%pI6\n", 2155 block->target[idx].ipv6_addr.byte); 2156 else 2157 rc = snprintf(buf, ip_len, "%pI4\n", 2158 block->target[idx].ipv4_addr.byte); 2159 break; 2160 case ISCSI_BOOT_TGT_PORT: 2161 rc = snprintf(buf, 12, "%d\n", 2162 GET_FIELD2(block->target[idx].generic_cont0, 2163 NVM_ISCSI_CFG_TARGET_TCP_PORT)); 2164 break; 2165 case ISCSI_BOOT_TGT_LUN: 2166 rc = snprintf(buf, 22, "%.*d\n", 2167 block->target[idx].lun.value[1], 2168 block->target[idx].lun.value[0]); 2169 break; 2170 case ISCSI_BOOT_TGT_CHAP_NAME: 2171 rc = sprintf(buf, "%.*s\n", NVM_ISCSI_CFG_CHAP_NAME_MAX_LEN, 2172 chap_name); 2173 break; 2174 case ISCSI_BOOT_TGT_CHAP_SECRET: 2175 rc = sprintf(buf, "%.*s\n", NVM_ISCSI_CFG_CHAP_NAME_MAX_LEN, 2176 chap_secret); 2177 break; 2178 case ISCSI_BOOT_TGT_REV_CHAP_NAME: 2179 rc = sprintf(buf, "%.*s\n", NVM_ISCSI_CFG_CHAP_NAME_MAX_LEN, 2180 mchap_name); 2181 break; 2182 case ISCSI_BOOT_TGT_REV_CHAP_SECRET: 2183 rc = sprintf(buf, "%.*s\n", NVM_ISCSI_CFG_CHAP_NAME_MAX_LEN, 2184 mchap_secret); 2185 break; 2186 case ISCSI_BOOT_TGT_FLAGS: 2187 rc = snprintf(buf, 3, "%hhd\n", SYSFS_FLAG_FW_SEL_BOOT); 2188 break; 2189 case ISCSI_BOOT_TGT_NIC_ASSOC: 2190 rc = snprintf(buf, 3, "0\n"); 2191 break; 2192 default: 2193 rc = 0; 2194 break; 2195 } 2196 2197 exit_show_tgt_info: 2198 return rc; 2199 } 2200 2201 static ssize_t qedi_show_boot_tgt_pri_info(void *data, int type, char *buf) 2202 { 2203 struct qedi_ctx *qedi = data; 2204 2205 return qedi_show_boot_tgt_info(qedi, type, buf, QEDI_NVM_TGT_PRI); 2206 } 2207 2208 static ssize_t qedi_show_boot_tgt_sec_info(void *data, int type, char *buf) 2209 { 2210 struct qedi_ctx *qedi = data; 2211 2212 return qedi_show_boot_tgt_info(qedi, type, buf, QEDI_NVM_TGT_SEC); 2213 } 2214 2215 static umode_t qedi_tgt_get_attr_visibility(void *data, int type) 2216 { 2217 int rc; 2218 2219 switch (type) { 2220 case ISCSI_BOOT_TGT_NAME: 2221 case ISCSI_BOOT_TGT_IP_ADDR: 2222 case ISCSI_BOOT_TGT_PORT: 2223 case ISCSI_BOOT_TGT_LUN: 2224 case ISCSI_BOOT_TGT_CHAP_NAME: 2225 case ISCSI_BOOT_TGT_CHAP_SECRET: 2226 case ISCSI_BOOT_TGT_REV_CHAP_NAME: 2227 case ISCSI_BOOT_TGT_REV_CHAP_SECRET: 2228 case ISCSI_BOOT_TGT_NIC_ASSOC: 2229 case ISCSI_BOOT_TGT_FLAGS: 2230 rc = 0444; 2231 break; 2232 default: 2233 rc = 0; 2234 break; 2235 } 2236 return rc; 2237 } 2238 2239 static void qedi_boot_release(void *data) 2240 { 2241 struct qedi_ctx *qedi = data; 2242 2243 scsi_host_put(qedi->shost); 2244 } 2245 2246 static int qedi_get_boot_info(struct qedi_ctx *qedi) 2247 { 2248 int ret = 1; 2249 2250 QEDI_INFO(&qedi->dbg_ctx, QEDI_LOG_INFO, 2251 "Get NVM iSCSI CFG image\n"); 2252 ret = qedi_ops->common->nvm_get_image(qedi->cdev, 2253 QED_NVM_IMAGE_ISCSI_CFG, 2254 (char *)qedi->iscsi_image, 2255 sizeof(struct qedi_nvm_iscsi_image)); 2256 if (ret) 2257 QEDI_ERR(&qedi->dbg_ctx, 2258 "Could not get NVM image. ret = %d\n", ret); 2259 2260 return ret; 2261 } 2262 2263 static int qedi_setup_boot_info(struct qedi_ctx *qedi) 2264 { 2265 struct iscsi_boot_kobj *boot_kobj; 2266 2267 if (qedi_get_boot_info(qedi)) 2268 return -EPERM; 2269 2270 qedi->boot_kset = iscsi_boot_create_host_kset(qedi->shost->host_no); 2271 if (!qedi->boot_kset) 2272 goto kset_free; 2273 2274 if (!scsi_host_get(qedi->shost)) 2275 goto kset_free; 2276 2277 boot_kobj = iscsi_boot_create_target(qedi->boot_kset, 0, qedi, 2278 qedi_show_boot_tgt_pri_info, 2279 qedi_tgt_get_attr_visibility, 2280 qedi_boot_release); 2281 if (!boot_kobj) 2282 goto put_host; 2283 2284 if (!scsi_host_get(qedi->shost)) 2285 goto kset_free; 2286 2287 boot_kobj = iscsi_boot_create_target(qedi->boot_kset, 1, qedi, 2288 qedi_show_boot_tgt_sec_info, 2289 qedi_tgt_get_attr_visibility, 2290 qedi_boot_release); 2291 if (!boot_kobj) 2292 goto put_host; 2293 2294 if (!scsi_host_get(qedi->shost)) 2295 goto kset_free; 2296 2297 boot_kobj = iscsi_boot_create_initiator(qedi->boot_kset, 0, qedi, 2298 qedi_show_boot_ini_info, 2299 qedi_ini_get_attr_visibility, 2300 qedi_boot_release); 2301 if (!boot_kobj) 2302 goto put_host; 2303 2304 if (!scsi_host_get(qedi->shost)) 2305 goto kset_free; 2306 2307 boot_kobj = iscsi_boot_create_ethernet(qedi->boot_kset, 0, qedi, 2308 qedi_show_boot_eth_info, 2309 qedi_eth_get_attr_visibility, 2310 qedi_boot_release); 2311 if (!boot_kobj) 2312 goto put_host; 2313 2314 return 0; 2315 2316 put_host: 2317 scsi_host_put(qedi->shost); 2318 kset_free: 2319 iscsi_boot_destroy_kset(qedi->boot_kset); 2320 return -ENOMEM; 2321 } 2322 2323 static void __qedi_remove(struct pci_dev *pdev, int mode) 2324 { 2325 struct qedi_ctx *qedi = pci_get_drvdata(pdev); 2326 int rval; 2327 2328 if (qedi->tmf_thread) { 2329 flush_workqueue(qedi->tmf_thread); 2330 destroy_workqueue(qedi->tmf_thread); 2331 qedi->tmf_thread = NULL; 2332 } 2333 2334 if (qedi->offload_thread) { 2335 flush_workqueue(qedi->offload_thread); 2336 destroy_workqueue(qedi->offload_thread); 2337 qedi->offload_thread = NULL; 2338 } 2339 2340 #ifdef CONFIG_DEBUG_FS 2341 qedi_dbg_host_exit(&qedi->dbg_ctx); 2342 #endif 2343 if (!test_bit(QEDI_IN_OFFLINE, &qedi->flags)) 2344 qedi_ops->common->set_power_state(qedi->cdev, PCI_D0); 2345 2346 qedi_sync_free_irqs(qedi); 2347 2348 if (!test_bit(QEDI_IN_OFFLINE, &qedi->flags)) { 2349 qedi_ops->stop(qedi->cdev); 2350 qedi_ops->ll2->stop(qedi->cdev); 2351 } 2352 2353 if (mode == QEDI_MODE_NORMAL) 2354 qedi_free_iscsi_pf_param(qedi); 2355 2356 rval = qedi_ops->common->update_drv_state(qedi->cdev, false); 2357 if (rval) 2358 QEDI_ERR(&qedi->dbg_ctx, "Failed to send drv state to MFW\n"); 2359 2360 if (!test_bit(QEDI_IN_OFFLINE, &qedi->flags)) { 2361 qedi_ops->common->slowpath_stop(qedi->cdev); 2362 qedi_ops->common->remove(qedi->cdev); 2363 } 2364 2365 qedi_destroy_fp(qedi); 2366 2367 if (mode == QEDI_MODE_NORMAL) { 2368 qedi_release_cid_que(qedi); 2369 qedi_cm_free_mem(qedi); 2370 qedi_free_uio(qedi->udev); 2371 qedi_free_itt(qedi); 2372 2373 iscsi_host_remove(qedi->shost); 2374 iscsi_host_free(qedi->shost); 2375 2376 if (qedi->ll2_recv_thread) { 2377 kthread_stop(qedi->ll2_recv_thread); 2378 qedi->ll2_recv_thread = NULL; 2379 } 2380 qedi_ll2_free_skbs(qedi); 2381 2382 if (qedi->boot_kset) 2383 iscsi_boot_destroy_kset(qedi->boot_kset); 2384 } 2385 } 2386 2387 static int __qedi_probe(struct pci_dev *pdev, int mode) 2388 { 2389 struct qedi_ctx *qedi; 2390 struct qed_ll2_params params; 2391 u32 dp_module = 0; 2392 u8 dp_level = 0; 2393 bool is_vf = false; 2394 char host_buf[16]; 2395 struct qed_link_params link_params; 2396 struct qed_slowpath_params sp_params; 2397 struct qed_probe_params qed_params; 2398 void *task_start, *task_end; 2399 int rc; 2400 u16 tmp; 2401 2402 if (mode != QEDI_MODE_RECOVERY) { 2403 qedi = qedi_host_alloc(pdev); 2404 if (!qedi) { 2405 rc = -ENOMEM; 2406 goto exit_probe; 2407 } 2408 } else { 2409 qedi = pci_get_drvdata(pdev); 2410 } 2411 2412 memset(&qed_params, 0, sizeof(qed_params)); 2413 qed_params.protocol = QED_PROTOCOL_ISCSI; 2414 qed_params.dp_module = dp_module; 2415 qed_params.dp_level = dp_level; 2416 qed_params.is_vf = is_vf; 2417 qedi->cdev = qedi_ops->common->probe(pdev, &qed_params); 2418 if (!qedi->cdev) { 2419 rc = -ENODEV; 2420 QEDI_ERR(&qedi->dbg_ctx, "Cannot initialize hardware\n"); 2421 goto free_host; 2422 } 2423 2424 atomic_set(&qedi->link_state, QEDI_LINK_DOWN); 2425 2426 rc = qedi_ops->fill_dev_info(qedi->cdev, &qedi->dev_info); 2427 if (rc) 2428 goto free_host; 2429 2430 QEDI_INFO(&qedi->dbg_ctx, QEDI_LOG_INFO, 2431 "dev_info: num_hwfns=%d affin_hwfn_idx=%d.\n", 2432 qedi->dev_info.common.num_hwfns, 2433 qedi_ops->common->get_affin_hwfn_idx(qedi->cdev)); 2434 2435 if (mode != QEDI_MODE_RECOVERY) { 2436 rc = qedi_set_iscsi_pf_param(qedi); 2437 if (rc) { 2438 rc = -ENOMEM; 2439 QEDI_ERR(&qedi->dbg_ctx, 2440 "Set iSCSI pf param fail\n"); 2441 goto free_host; 2442 } 2443 } 2444 2445 qedi_ops->common->update_pf_params(qedi->cdev, &qedi->pf_params); 2446 2447 rc = qedi_prepare_fp(qedi); 2448 if (rc) { 2449 QEDI_ERR(&qedi->dbg_ctx, "Cannot start slowpath.\n"); 2450 goto free_pf_params; 2451 } 2452 2453 /* Start the Slowpath-process */ 2454 memset(&sp_params, 0, sizeof(struct qed_slowpath_params)); 2455 sp_params.int_mode = QED_INT_MODE_MSIX; 2456 sp_params.drv_major = QEDI_DRIVER_MAJOR_VER; 2457 sp_params.drv_minor = QEDI_DRIVER_MINOR_VER; 2458 sp_params.drv_rev = QEDI_DRIVER_REV_VER; 2459 sp_params.drv_eng = QEDI_DRIVER_ENG_VER; 2460 strlcpy(sp_params.name, "qedi iSCSI", QED_DRV_VER_STR_SIZE); 2461 rc = qedi_ops->common->slowpath_start(qedi->cdev, &sp_params); 2462 if (rc) { 2463 QEDI_ERR(&qedi->dbg_ctx, "Cannot start slowpath\n"); 2464 goto stop_hw; 2465 } 2466 2467 /* update_pf_params needs to be called before and after slowpath 2468 * start 2469 */ 2470 qedi_ops->common->update_pf_params(qedi->cdev, &qedi->pf_params); 2471 2472 rc = qedi_setup_int(qedi); 2473 if (rc) 2474 goto stop_iscsi_func; 2475 2476 qedi_ops->common->set_power_state(qedi->cdev, PCI_D0); 2477 2478 /* Learn information crucial for qedi to progress */ 2479 rc = qedi_ops->fill_dev_info(qedi->cdev, &qedi->dev_info); 2480 if (rc) 2481 goto stop_iscsi_func; 2482 2483 /* Record BDQ producer doorbell addresses */ 2484 qedi->bdq_primary_prod = qedi->dev_info.primary_dbq_rq_addr; 2485 qedi->bdq_secondary_prod = qedi->dev_info.secondary_bdq_rq_addr; 2486 QEDI_INFO(&qedi->dbg_ctx, QEDI_LOG_DISC, 2487 "BDQ primary_prod=%p secondary_prod=%p.\n", 2488 qedi->bdq_primary_prod, 2489 qedi->bdq_secondary_prod); 2490 2491 /* 2492 * We need to write the number of BDs in the BDQ we've preallocated so 2493 * the f/w will do a prefetch and we'll get an unsolicited CQE when a 2494 * packet arrives. 2495 */ 2496 qedi->bdq_prod_idx = QEDI_BDQ_NUM; 2497 QEDI_INFO(&qedi->dbg_ctx, QEDI_LOG_DISC, 2498 "Writing %d to primary and secondary BDQ doorbell registers.\n", 2499 qedi->bdq_prod_idx); 2500 writew(qedi->bdq_prod_idx, qedi->bdq_primary_prod); 2501 tmp = readw(qedi->bdq_primary_prod); 2502 writew(qedi->bdq_prod_idx, qedi->bdq_secondary_prod); 2503 tmp = readw(qedi->bdq_secondary_prod); 2504 2505 ether_addr_copy(qedi->mac, qedi->dev_info.common.hw_mac); 2506 QEDI_INFO(&qedi->dbg_ctx, QEDI_LOG_DISC, "MAC address is %pM.\n", 2507 qedi->mac); 2508 2509 sprintf(host_buf, "host_%d", qedi->shost->host_no); 2510 qedi_ops->common->set_name(qedi->cdev, host_buf); 2511 2512 qedi_ops->register_ops(qedi->cdev, &qedi_cb_ops, qedi); 2513 2514 memset(¶ms, 0, sizeof(params)); 2515 params.mtu = DEF_PATH_MTU + IPV6_HDR_LEN + TCP_HDR_LEN; 2516 qedi->ll2_mtu = DEF_PATH_MTU; 2517 params.drop_ttl0_packets = 0; 2518 params.rx_vlan_stripping = 1; 2519 ether_addr_copy(params.ll2_mac_address, qedi->dev_info.common.hw_mac); 2520 2521 if (mode != QEDI_MODE_RECOVERY) { 2522 /* set up rx path */ 2523 INIT_LIST_HEAD(&qedi->ll2_skb_list); 2524 spin_lock_init(&qedi->ll2_lock); 2525 /* start qedi context */ 2526 spin_lock_init(&qedi->hba_lock); 2527 spin_lock_init(&qedi->task_idx_lock); 2528 mutex_init(&qedi->stats_lock); 2529 } 2530 qedi_ops->ll2->register_cb_ops(qedi->cdev, &qedi_ll2_cb_ops, qedi); 2531 qedi_ops->ll2->start(qedi->cdev, ¶ms); 2532 2533 if (mode != QEDI_MODE_RECOVERY) { 2534 qedi->ll2_recv_thread = kthread_run(qedi_ll2_recv_thread, 2535 (void *)qedi, 2536 "qedi_ll2_thread"); 2537 } 2538 2539 rc = qedi_ops->start(qedi->cdev, &qedi->tasks, 2540 qedi, qedi_iscsi_event_cb); 2541 if (rc) { 2542 rc = -ENODEV; 2543 QEDI_ERR(&qedi->dbg_ctx, "Cannot start iSCSI function\n"); 2544 goto stop_slowpath; 2545 } 2546 2547 task_start = qedi_get_task_mem(&qedi->tasks, 0); 2548 task_end = qedi_get_task_mem(&qedi->tasks, MAX_TID_BLOCKS_ISCSI - 1); 2549 QEDI_INFO(&qedi->dbg_ctx, QEDI_LOG_DISC, 2550 "Task context start=%p, end=%p block_size=%u.\n", 2551 task_start, task_end, qedi->tasks.size); 2552 2553 memset(&link_params, 0, sizeof(link_params)); 2554 link_params.link_up = true; 2555 rc = qedi_ops->common->set_link(qedi->cdev, &link_params); 2556 if (rc) { 2557 QEDI_WARN(&qedi->dbg_ctx, "Link set up failed.\n"); 2558 atomic_set(&qedi->link_state, QEDI_LINK_DOWN); 2559 } 2560 2561 #ifdef CONFIG_DEBUG_FS 2562 qedi_dbg_host_init(&qedi->dbg_ctx, qedi_debugfs_ops, 2563 qedi_dbg_fops); 2564 #endif 2565 QEDI_INFO(&qedi->dbg_ctx, QEDI_LOG_INFO, 2566 "QLogic FastLinQ iSCSI Module qedi %s, FW %d.%d.%d.%d\n", 2567 QEDI_MODULE_VERSION, FW_MAJOR_VERSION, FW_MINOR_VERSION, 2568 FW_REVISION_VERSION, FW_ENGINEERING_VERSION); 2569 2570 if (mode == QEDI_MODE_NORMAL) { 2571 if (iscsi_host_add(qedi->shost, &pdev->dev)) { 2572 QEDI_ERR(&qedi->dbg_ctx, 2573 "Could not add iscsi host\n"); 2574 rc = -ENOMEM; 2575 goto remove_host; 2576 } 2577 2578 /* Allocate uio buffers */ 2579 rc = qedi_alloc_uio_rings(qedi); 2580 if (rc) { 2581 QEDI_ERR(&qedi->dbg_ctx, 2582 "UIO alloc ring failed err=%d\n", rc); 2583 goto remove_host; 2584 } 2585 2586 rc = qedi_init_uio(qedi); 2587 if (rc) { 2588 QEDI_ERR(&qedi->dbg_ctx, 2589 "UIO init failed, err=%d\n", rc); 2590 goto free_uio; 2591 } 2592 2593 /* host the array on iscsi_conn */ 2594 rc = qedi_setup_cid_que(qedi); 2595 if (rc) { 2596 QEDI_ERR(&qedi->dbg_ctx, 2597 "Could not setup cid que\n"); 2598 goto free_uio; 2599 } 2600 2601 rc = qedi_cm_alloc_mem(qedi); 2602 if (rc) { 2603 QEDI_ERR(&qedi->dbg_ctx, 2604 "Could not alloc cm memory\n"); 2605 goto free_cid_que; 2606 } 2607 2608 rc = qedi_alloc_itt(qedi); 2609 if (rc) { 2610 QEDI_ERR(&qedi->dbg_ctx, 2611 "Could not alloc itt memory\n"); 2612 goto free_cid_que; 2613 } 2614 2615 sprintf(host_buf, "host_%d", qedi->shost->host_no); 2616 qedi->tmf_thread = create_singlethread_workqueue(host_buf); 2617 if (!qedi->tmf_thread) { 2618 QEDI_ERR(&qedi->dbg_ctx, 2619 "Unable to start tmf thread!\n"); 2620 rc = -ENODEV; 2621 goto free_cid_que; 2622 } 2623 2624 sprintf(host_buf, "qedi_ofld%d", qedi->shost->host_no); 2625 qedi->offload_thread = create_workqueue(host_buf); 2626 if (!qedi->offload_thread) { 2627 QEDI_ERR(&qedi->dbg_ctx, 2628 "Unable to start offload thread!\n"); 2629 rc = -ENODEV; 2630 goto free_cid_que; 2631 } 2632 2633 /* F/w needs 1st task context memory entry for performance */ 2634 set_bit(QEDI_RESERVE_TASK_ID, qedi->task_idx_map); 2635 atomic_set(&qedi->num_offloads, 0); 2636 2637 if (qedi_setup_boot_info(qedi)) 2638 QEDI_ERR(&qedi->dbg_ctx, 2639 "No iSCSI boot target configured\n"); 2640 2641 rc = qedi_ops->common->update_drv_state(qedi->cdev, true); 2642 if (rc) 2643 QEDI_ERR(&qedi->dbg_ctx, 2644 "Failed to send drv state to MFW\n"); 2645 2646 } 2647 2648 return 0; 2649 2650 free_cid_que: 2651 qedi_release_cid_que(qedi); 2652 free_uio: 2653 qedi_free_uio(qedi->udev); 2654 remove_host: 2655 #ifdef CONFIG_DEBUG_FS 2656 qedi_dbg_host_exit(&qedi->dbg_ctx); 2657 #endif 2658 iscsi_host_remove(qedi->shost); 2659 stop_iscsi_func: 2660 qedi_ops->stop(qedi->cdev); 2661 stop_slowpath: 2662 qedi_ops->common->slowpath_stop(qedi->cdev); 2663 stop_hw: 2664 qedi_ops->common->remove(qedi->cdev); 2665 free_pf_params: 2666 qedi_free_iscsi_pf_param(qedi); 2667 free_host: 2668 iscsi_host_free(qedi->shost); 2669 exit_probe: 2670 return rc; 2671 } 2672 2673 static int qedi_probe(struct pci_dev *pdev, const struct pci_device_id *id) 2674 { 2675 return __qedi_probe(pdev, QEDI_MODE_NORMAL); 2676 } 2677 2678 static void qedi_remove(struct pci_dev *pdev) 2679 { 2680 __qedi_remove(pdev, QEDI_MODE_NORMAL); 2681 } 2682 2683 static struct pci_device_id qedi_pci_tbl[] = { 2684 { PCI_DEVICE(PCI_VENDOR_ID_QLOGIC, 0x165E) }, 2685 { PCI_DEVICE(PCI_VENDOR_ID_QLOGIC, 0x8084) }, 2686 { 0 }, 2687 }; 2688 MODULE_DEVICE_TABLE(pci, qedi_pci_tbl); 2689 2690 static enum cpuhp_state qedi_cpuhp_state; 2691 2692 static struct pci_driver qedi_pci_driver = { 2693 .name = QEDI_MODULE_NAME, 2694 .id_table = qedi_pci_tbl, 2695 .probe = qedi_probe, 2696 .remove = qedi_remove, 2697 }; 2698 2699 static int __init qedi_init(void) 2700 { 2701 struct qedi_percpu_s *p; 2702 int cpu, rc = 0; 2703 2704 qedi_ops = qed_get_iscsi_ops(); 2705 if (!qedi_ops) { 2706 QEDI_ERR(NULL, "Failed to get qed iSCSI operations\n"); 2707 return -EINVAL; 2708 } 2709 2710 #ifdef CONFIG_DEBUG_FS 2711 qedi_dbg_init("qedi"); 2712 #endif 2713 2714 qedi_scsi_transport = iscsi_register_transport(&qedi_iscsi_transport); 2715 if (!qedi_scsi_transport) { 2716 QEDI_ERR(NULL, "Could not register qedi transport"); 2717 rc = -ENOMEM; 2718 goto exit_qedi_init_1; 2719 } 2720 2721 for_each_possible_cpu(cpu) { 2722 p = &per_cpu(qedi_percpu, cpu); 2723 INIT_LIST_HEAD(&p->work_list); 2724 spin_lock_init(&p->p_work_lock); 2725 p->iothread = NULL; 2726 } 2727 2728 rc = cpuhp_setup_state(CPUHP_AP_ONLINE_DYN, "scsi/qedi:online", 2729 qedi_cpu_online, qedi_cpu_offline); 2730 if (rc < 0) 2731 goto exit_qedi_init_2; 2732 qedi_cpuhp_state = rc; 2733 2734 rc = pci_register_driver(&qedi_pci_driver); 2735 if (rc) { 2736 QEDI_ERR(NULL, "Failed to register driver\n"); 2737 goto exit_qedi_hp; 2738 } 2739 2740 return 0; 2741 2742 exit_qedi_hp: 2743 cpuhp_remove_state(qedi_cpuhp_state); 2744 exit_qedi_init_2: 2745 iscsi_unregister_transport(&qedi_iscsi_transport); 2746 exit_qedi_init_1: 2747 #ifdef CONFIG_DEBUG_FS 2748 qedi_dbg_exit(); 2749 #endif 2750 qed_put_iscsi_ops(); 2751 return rc; 2752 } 2753 2754 static void __exit qedi_cleanup(void) 2755 { 2756 pci_unregister_driver(&qedi_pci_driver); 2757 cpuhp_remove_state(qedi_cpuhp_state); 2758 iscsi_unregister_transport(&qedi_iscsi_transport); 2759 2760 #ifdef CONFIG_DEBUG_FS 2761 qedi_dbg_exit(); 2762 #endif 2763 qed_put_iscsi_ops(); 2764 } 2765 2766 MODULE_DESCRIPTION("QLogic FastLinQ 4xxxx iSCSI Module"); 2767 MODULE_LICENSE("GPL"); 2768 MODULE_AUTHOR("QLogic Corporation"); 2769 MODULE_VERSION(QEDI_MODULE_VERSION); 2770 module_init(qedi_init); 2771 module_exit(qedi_cleanup); 2772