1 // SPDX-License-Identifier: GPL-2.0 2 /* Copyright(c) 2017 - 2019 Pensando Systems, Inc */ 3 4 #include <linux/ethtool.h> 5 #include <linux/printk.h> 6 #include <linux/dynamic_debug.h> 7 #include <linux/netdevice.h> 8 #include <linux/etherdevice.h> 9 #include <linux/if_vlan.h> 10 #include <linux/rtnetlink.h> 11 #include <linux/interrupt.h> 12 #include <linux/pci.h> 13 #include <linux/cpumask.h> 14 #include <linux/crash_dump.h> 15 #include <linux/vmalloc.h> 16 17 #include "ionic.h" 18 #include "ionic_bus.h" 19 #include "ionic_lif.h" 20 #include "ionic_txrx.h" 21 #include "ionic_ethtool.h" 22 #include "ionic_debugfs.h" 23 24 /* queuetype support level */ 25 static const u8 ionic_qtype_versions[IONIC_QTYPE_MAX] = { 26 [IONIC_QTYPE_ADMINQ] = 0, /* 0 = Base version with CQ support */ 27 [IONIC_QTYPE_NOTIFYQ] = 0, /* 0 = Base version */ 28 [IONIC_QTYPE_RXQ] = 0, /* 0 = Base version with CQ+SG support */ 29 [IONIC_QTYPE_TXQ] = 1, /* 0 = Base version with CQ+SG support 30 * 1 = ... with Tx SG version 1 31 */ 32 }; 33 34 static void ionic_link_status_check(struct ionic_lif *lif); 35 static void ionic_lif_handle_fw_down(struct ionic_lif *lif); 36 static void ionic_lif_handle_fw_up(struct ionic_lif *lif); 37 static void ionic_lif_set_netdev_info(struct ionic_lif *lif); 38 39 static void ionic_txrx_deinit(struct ionic_lif *lif); 40 static int ionic_txrx_init(struct ionic_lif *lif); 41 static int ionic_start_queues(struct ionic_lif *lif); 42 static void ionic_stop_queues(struct ionic_lif *lif); 43 static void ionic_lif_queue_identify(struct ionic_lif *lif); 44 45 static void ionic_dim_work(struct work_struct *work) 46 { 47 struct dim *dim = container_of(work, struct dim, work); 48 struct dim_cq_moder cur_moder; 49 struct ionic_qcq *qcq; 50 u32 new_coal; 51 52 cur_moder = net_dim_get_rx_moderation(dim->mode, dim->profile_ix); 53 qcq = container_of(dim, struct ionic_qcq, dim); 54 new_coal = ionic_coal_usec_to_hw(qcq->q.lif->ionic, cur_moder.usec); 55 new_coal = new_coal ? new_coal : 1; 56 57 if (qcq->intr.dim_coal_hw != new_coal) { 58 unsigned int qi = qcq->cq.bound_q->index; 59 struct ionic_lif *lif = qcq->q.lif; 60 61 qcq->intr.dim_coal_hw = new_coal; 62 63 ionic_intr_coal_init(lif->ionic->idev.intr_ctrl, 64 lif->rxqcqs[qi]->intr.index, 65 qcq->intr.dim_coal_hw); 66 } 67 68 dim->state = DIM_START_MEASURE; 69 } 70 71 static void ionic_lif_deferred_work(struct work_struct *work) 72 { 73 struct ionic_lif *lif = container_of(work, struct ionic_lif, deferred.work); 74 struct ionic_deferred *def = &lif->deferred; 75 struct ionic_deferred_work *w = NULL; 76 77 do { 78 spin_lock_bh(&def->lock); 79 if (!list_empty(&def->list)) { 80 w = list_first_entry(&def->list, 81 struct ionic_deferred_work, list); 82 list_del(&w->list); 83 } 84 spin_unlock_bh(&def->lock); 85 86 if (!w) 87 break; 88 89 switch (w->type) { 90 case IONIC_DW_TYPE_RX_MODE: 91 ionic_lif_rx_mode(lif); 92 break; 93 case IONIC_DW_TYPE_LINK_STATUS: 94 ionic_link_status_check(lif); 95 break; 96 case IONIC_DW_TYPE_LIF_RESET: 97 if (w->fw_status) { 98 ionic_lif_handle_fw_up(lif); 99 } else { 100 ionic_lif_handle_fw_down(lif); 101 102 /* Fire off another watchdog to see 103 * if the FW is already back rather than 104 * waiting another whole cycle 105 */ 106 mod_timer(&lif->ionic->watchdog_timer, jiffies + 1); 107 } 108 break; 109 default: 110 break; 111 } 112 kfree(w); 113 w = NULL; 114 } while (true); 115 } 116 117 void ionic_lif_deferred_enqueue(struct ionic_deferred *def, 118 struct ionic_deferred_work *work) 119 { 120 spin_lock_bh(&def->lock); 121 list_add_tail(&work->list, &def->list); 122 spin_unlock_bh(&def->lock); 123 schedule_work(&def->work); 124 } 125 126 static void ionic_link_status_check(struct ionic_lif *lif) 127 { 128 struct net_device *netdev = lif->netdev; 129 u16 link_status; 130 bool link_up; 131 132 if (!test_bit(IONIC_LIF_F_LINK_CHECK_REQUESTED, lif->state)) 133 return; 134 135 /* Don't put carrier back up if we're in a broken state */ 136 if (test_bit(IONIC_LIF_F_BROKEN, lif->state)) { 137 clear_bit(IONIC_LIF_F_LINK_CHECK_REQUESTED, lif->state); 138 return; 139 } 140 141 link_status = le16_to_cpu(lif->info->status.link_status); 142 link_up = link_status == IONIC_PORT_OPER_STATUS_UP; 143 144 if (link_up) { 145 int err = 0; 146 147 if (netdev->flags & IFF_UP && netif_running(netdev)) { 148 mutex_lock(&lif->queue_lock); 149 err = ionic_start_queues(lif); 150 if (err && err != -EBUSY) { 151 netdev_err(lif->netdev, 152 "Failed to start queues: %d\n", err); 153 set_bit(IONIC_LIF_F_BROKEN, lif->state); 154 netif_carrier_off(lif->netdev); 155 } 156 mutex_unlock(&lif->queue_lock); 157 } 158 159 if (!err && !netif_carrier_ok(netdev)) { 160 ionic_port_identify(lif->ionic); 161 netdev_info(netdev, "Link up - %d Gbps\n", 162 le32_to_cpu(lif->info->status.link_speed) / 1000); 163 netif_carrier_on(netdev); 164 } 165 } else { 166 if (netif_carrier_ok(netdev)) { 167 netdev_info(netdev, "Link down\n"); 168 netif_carrier_off(netdev); 169 } 170 171 if (netdev->flags & IFF_UP && netif_running(netdev)) { 172 mutex_lock(&lif->queue_lock); 173 ionic_stop_queues(lif); 174 mutex_unlock(&lif->queue_lock); 175 } 176 } 177 178 clear_bit(IONIC_LIF_F_LINK_CHECK_REQUESTED, lif->state); 179 } 180 181 void ionic_link_status_check_request(struct ionic_lif *lif, bool can_sleep) 182 { 183 struct ionic_deferred_work *work; 184 185 /* we only need one request outstanding at a time */ 186 if (test_and_set_bit(IONIC_LIF_F_LINK_CHECK_REQUESTED, lif->state)) 187 return; 188 189 if (!can_sleep) { 190 work = kzalloc(sizeof(*work), GFP_ATOMIC); 191 if (!work) { 192 clear_bit(IONIC_LIF_F_LINK_CHECK_REQUESTED, lif->state); 193 return; 194 } 195 196 work->type = IONIC_DW_TYPE_LINK_STATUS; 197 ionic_lif_deferred_enqueue(&lif->deferred, work); 198 } else { 199 ionic_link_status_check(lif); 200 } 201 } 202 203 static irqreturn_t ionic_isr(int irq, void *data) 204 { 205 struct napi_struct *napi = data; 206 207 napi_schedule_irqoff(napi); 208 209 return IRQ_HANDLED; 210 } 211 212 static int ionic_request_irq(struct ionic_lif *lif, struct ionic_qcq *qcq) 213 { 214 struct ionic_intr_info *intr = &qcq->intr; 215 struct device *dev = lif->ionic->dev; 216 struct ionic_queue *q = &qcq->q; 217 const char *name; 218 219 if (lif->registered) 220 name = lif->netdev->name; 221 else 222 name = dev_name(dev); 223 224 snprintf(intr->name, sizeof(intr->name), 225 "%s-%s-%s", IONIC_DRV_NAME, name, q->name); 226 227 return devm_request_irq(dev, intr->vector, ionic_isr, 228 0, intr->name, &qcq->napi); 229 } 230 231 static int ionic_intr_alloc(struct ionic_lif *lif, struct ionic_intr_info *intr) 232 { 233 struct ionic *ionic = lif->ionic; 234 int index; 235 236 index = find_first_zero_bit(ionic->intrs, ionic->nintrs); 237 if (index == ionic->nintrs) { 238 netdev_warn(lif->netdev, "%s: no intr, index=%d nintrs=%d\n", 239 __func__, index, ionic->nintrs); 240 return -ENOSPC; 241 } 242 243 set_bit(index, ionic->intrs); 244 ionic_intr_init(&ionic->idev, intr, index); 245 246 return 0; 247 } 248 249 static void ionic_intr_free(struct ionic *ionic, int index) 250 { 251 if (index != IONIC_INTR_INDEX_NOT_ASSIGNED && index < ionic->nintrs) 252 clear_bit(index, ionic->intrs); 253 } 254 255 static int ionic_qcq_enable(struct ionic_qcq *qcq) 256 { 257 struct ionic_queue *q = &qcq->q; 258 struct ionic_lif *lif = q->lif; 259 struct ionic_dev *idev; 260 struct device *dev; 261 262 struct ionic_admin_ctx ctx = { 263 .work = COMPLETION_INITIALIZER_ONSTACK(ctx.work), 264 .cmd.q_control = { 265 .opcode = IONIC_CMD_Q_CONTROL, 266 .lif_index = cpu_to_le16(lif->index), 267 .type = q->type, 268 .index = cpu_to_le32(q->index), 269 .oper = IONIC_Q_ENABLE, 270 }, 271 }; 272 273 idev = &lif->ionic->idev; 274 dev = lif->ionic->dev; 275 276 dev_dbg(dev, "q_enable.index %d q_enable.qtype %d\n", 277 ctx.cmd.q_control.index, ctx.cmd.q_control.type); 278 279 if (qcq->flags & IONIC_QCQ_F_INTR) { 280 irq_set_affinity_hint(qcq->intr.vector, 281 &qcq->intr.affinity_mask); 282 napi_enable(&qcq->napi); 283 ionic_intr_clean(idev->intr_ctrl, qcq->intr.index); 284 ionic_intr_mask(idev->intr_ctrl, qcq->intr.index, 285 IONIC_INTR_MASK_CLEAR); 286 } 287 288 return ionic_adminq_post_wait(lif, &ctx); 289 } 290 291 static int ionic_qcq_disable(struct ionic_lif *lif, struct ionic_qcq *qcq, int fw_err) 292 { 293 struct ionic_queue *q; 294 295 struct ionic_admin_ctx ctx = { 296 .work = COMPLETION_INITIALIZER_ONSTACK(ctx.work), 297 .cmd.q_control = { 298 .opcode = IONIC_CMD_Q_CONTROL, 299 .oper = IONIC_Q_DISABLE, 300 }, 301 }; 302 303 if (!qcq) { 304 netdev_err(lif->netdev, "%s: bad qcq\n", __func__); 305 return -ENXIO; 306 } 307 308 q = &qcq->q; 309 310 if (qcq->flags & IONIC_QCQ_F_INTR) { 311 struct ionic_dev *idev = &lif->ionic->idev; 312 313 cancel_work_sync(&qcq->dim.work); 314 ionic_intr_mask(idev->intr_ctrl, qcq->intr.index, 315 IONIC_INTR_MASK_SET); 316 synchronize_irq(qcq->intr.vector); 317 irq_set_affinity_hint(qcq->intr.vector, NULL); 318 napi_disable(&qcq->napi); 319 } 320 321 /* If there was a previous fw communcation error, don't bother with 322 * sending the adminq command and just return the same error value. 323 */ 324 if (fw_err == -ETIMEDOUT || fw_err == -ENXIO) 325 return fw_err; 326 327 ctx.cmd.q_control.lif_index = cpu_to_le16(lif->index); 328 ctx.cmd.q_control.type = q->type; 329 ctx.cmd.q_control.index = cpu_to_le32(q->index); 330 dev_dbg(lif->ionic->dev, "q_disable.index %d q_disable.qtype %d\n", 331 ctx.cmd.q_control.index, ctx.cmd.q_control.type); 332 333 return ionic_adminq_post_wait(lif, &ctx); 334 } 335 336 static void ionic_lif_qcq_deinit(struct ionic_lif *lif, struct ionic_qcq *qcq) 337 { 338 struct ionic_dev *idev = &lif->ionic->idev; 339 340 if (!qcq) 341 return; 342 343 if (!(qcq->flags & IONIC_QCQ_F_INITED)) 344 return; 345 346 if (qcq->flags & IONIC_QCQ_F_INTR) { 347 ionic_intr_mask(idev->intr_ctrl, qcq->intr.index, 348 IONIC_INTR_MASK_SET); 349 netif_napi_del(&qcq->napi); 350 } 351 352 qcq->flags &= ~IONIC_QCQ_F_INITED; 353 } 354 355 static void ionic_qcq_intr_free(struct ionic_lif *lif, struct ionic_qcq *qcq) 356 { 357 if (!(qcq->flags & IONIC_QCQ_F_INTR) || qcq->intr.vector == 0) 358 return; 359 360 irq_set_affinity_hint(qcq->intr.vector, NULL); 361 devm_free_irq(lif->ionic->dev, qcq->intr.vector, &qcq->napi); 362 qcq->intr.vector = 0; 363 ionic_intr_free(lif->ionic, qcq->intr.index); 364 qcq->intr.index = IONIC_INTR_INDEX_NOT_ASSIGNED; 365 } 366 367 static void ionic_qcq_free(struct ionic_lif *lif, struct ionic_qcq *qcq) 368 { 369 struct device *dev = lif->ionic->dev; 370 371 if (!qcq) 372 return; 373 374 ionic_debugfs_del_qcq(qcq); 375 376 if (qcq->q_base) { 377 dma_free_coherent(dev, qcq->q_size, qcq->q_base, qcq->q_base_pa); 378 qcq->q_base = NULL; 379 qcq->q_base_pa = 0; 380 } 381 382 if (qcq->cq_base) { 383 dma_free_coherent(dev, qcq->cq_size, qcq->cq_base, qcq->cq_base_pa); 384 qcq->cq_base = NULL; 385 qcq->cq_base_pa = 0; 386 } 387 388 if (qcq->sg_base) { 389 dma_free_coherent(dev, qcq->sg_size, qcq->sg_base, qcq->sg_base_pa); 390 qcq->sg_base = NULL; 391 qcq->sg_base_pa = 0; 392 } 393 394 ionic_qcq_intr_free(lif, qcq); 395 396 if (qcq->cq.info) { 397 vfree(qcq->cq.info); 398 qcq->cq.info = NULL; 399 } 400 if (qcq->q.info) { 401 vfree(qcq->q.info); 402 qcq->q.info = NULL; 403 } 404 } 405 406 static void ionic_qcqs_free(struct ionic_lif *lif) 407 { 408 struct device *dev = lif->ionic->dev; 409 struct ionic_qcq *adminqcq; 410 unsigned long irqflags; 411 412 if (lif->notifyqcq) { 413 ionic_qcq_free(lif, lif->notifyqcq); 414 devm_kfree(dev, lif->notifyqcq); 415 lif->notifyqcq = NULL; 416 } 417 418 if (lif->adminqcq) { 419 spin_lock_irqsave(&lif->adminq_lock, irqflags); 420 adminqcq = READ_ONCE(lif->adminqcq); 421 lif->adminqcq = NULL; 422 spin_unlock_irqrestore(&lif->adminq_lock, irqflags); 423 if (adminqcq) { 424 ionic_qcq_free(lif, adminqcq); 425 devm_kfree(dev, adminqcq); 426 } 427 } 428 429 if (lif->rxqcqs) { 430 devm_kfree(dev, lif->rxqstats); 431 lif->rxqstats = NULL; 432 devm_kfree(dev, lif->rxqcqs); 433 lif->rxqcqs = NULL; 434 } 435 436 if (lif->txqcqs) { 437 devm_kfree(dev, lif->txqstats); 438 lif->txqstats = NULL; 439 devm_kfree(dev, lif->txqcqs); 440 lif->txqcqs = NULL; 441 } 442 } 443 444 static void ionic_link_qcq_interrupts(struct ionic_qcq *src_qcq, 445 struct ionic_qcq *n_qcq) 446 { 447 if (WARN_ON(n_qcq->flags & IONIC_QCQ_F_INTR)) { 448 ionic_intr_free(n_qcq->cq.lif->ionic, n_qcq->intr.index); 449 n_qcq->flags &= ~IONIC_QCQ_F_INTR; 450 } 451 452 n_qcq->intr.vector = src_qcq->intr.vector; 453 n_qcq->intr.index = src_qcq->intr.index; 454 } 455 456 static int ionic_alloc_qcq_interrupt(struct ionic_lif *lif, struct ionic_qcq *qcq) 457 { 458 int err; 459 460 if (!(qcq->flags & IONIC_QCQ_F_INTR)) { 461 qcq->intr.index = IONIC_INTR_INDEX_NOT_ASSIGNED; 462 return 0; 463 } 464 465 err = ionic_intr_alloc(lif, &qcq->intr); 466 if (err) { 467 netdev_warn(lif->netdev, "no intr for %s: %d\n", 468 qcq->q.name, err); 469 goto err_out; 470 } 471 472 err = ionic_bus_get_irq(lif->ionic, qcq->intr.index); 473 if (err < 0) { 474 netdev_warn(lif->netdev, "no vector for %s: %d\n", 475 qcq->q.name, err); 476 goto err_out_free_intr; 477 } 478 qcq->intr.vector = err; 479 ionic_intr_mask_assert(lif->ionic->idev.intr_ctrl, qcq->intr.index, 480 IONIC_INTR_MASK_SET); 481 482 err = ionic_request_irq(lif, qcq); 483 if (err) { 484 netdev_warn(lif->netdev, "irq request failed %d\n", err); 485 goto err_out_free_intr; 486 } 487 488 /* try to get the irq on the local numa node first */ 489 qcq->intr.cpu = cpumask_local_spread(qcq->intr.index, 490 dev_to_node(lif->ionic->dev)); 491 if (qcq->intr.cpu != -1) 492 cpumask_set_cpu(qcq->intr.cpu, &qcq->intr.affinity_mask); 493 494 netdev_dbg(lif->netdev, "%s: Interrupt index %d\n", qcq->q.name, qcq->intr.index); 495 return 0; 496 497 err_out_free_intr: 498 ionic_intr_free(lif->ionic, qcq->intr.index); 499 err_out: 500 return err; 501 } 502 503 static int ionic_qcq_alloc(struct ionic_lif *lif, unsigned int type, 504 unsigned int index, 505 const char *name, unsigned int flags, 506 unsigned int num_descs, unsigned int desc_size, 507 unsigned int cq_desc_size, 508 unsigned int sg_desc_size, 509 unsigned int pid, struct ionic_qcq **qcq) 510 { 511 struct ionic_dev *idev = &lif->ionic->idev; 512 struct device *dev = lif->ionic->dev; 513 void *q_base, *cq_base, *sg_base; 514 dma_addr_t cq_base_pa = 0; 515 dma_addr_t sg_base_pa = 0; 516 dma_addr_t q_base_pa = 0; 517 struct ionic_qcq *new; 518 int err; 519 520 *qcq = NULL; 521 522 new = devm_kzalloc(dev, sizeof(*new), GFP_KERNEL); 523 if (!new) { 524 netdev_err(lif->netdev, "Cannot allocate queue structure\n"); 525 err = -ENOMEM; 526 goto err_out; 527 } 528 529 new->q.dev = dev; 530 new->flags = flags; 531 532 new->q.info = vzalloc(num_descs * sizeof(*new->q.info)); 533 if (!new->q.info) { 534 netdev_err(lif->netdev, "Cannot allocate queue info\n"); 535 err = -ENOMEM; 536 goto err_out_free_qcq; 537 } 538 539 new->q.type = type; 540 new->q.max_sg_elems = lif->qtype_info[type].max_sg_elems; 541 542 err = ionic_q_init(lif, idev, &new->q, index, name, num_descs, 543 desc_size, sg_desc_size, pid); 544 if (err) { 545 netdev_err(lif->netdev, "Cannot initialize queue\n"); 546 goto err_out_free_q_info; 547 } 548 549 err = ionic_alloc_qcq_interrupt(lif, new); 550 if (err) 551 goto err_out; 552 553 new->cq.info = vzalloc(num_descs * sizeof(*new->cq.info)); 554 if (!new->cq.info) { 555 netdev_err(lif->netdev, "Cannot allocate completion queue info\n"); 556 err = -ENOMEM; 557 goto err_out_free_irq; 558 } 559 560 err = ionic_cq_init(lif, &new->cq, &new->intr, num_descs, cq_desc_size); 561 if (err) { 562 netdev_err(lif->netdev, "Cannot initialize completion queue\n"); 563 goto err_out_free_cq_info; 564 } 565 566 if (flags & IONIC_QCQ_F_NOTIFYQ) { 567 int q_size, cq_size; 568 569 /* q & cq need to be contiguous in case of notifyq */ 570 q_size = ALIGN(num_descs * desc_size, PAGE_SIZE); 571 cq_size = ALIGN(num_descs * cq_desc_size, PAGE_SIZE); 572 573 new->q_size = PAGE_SIZE + q_size + cq_size; 574 new->q_base = dma_alloc_coherent(dev, new->q_size, 575 &new->q_base_pa, GFP_KERNEL); 576 if (!new->q_base) { 577 netdev_err(lif->netdev, "Cannot allocate qcq DMA memory\n"); 578 err = -ENOMEM; 579 goto err_out_free_cq_info; 580 } 581 q_base = PTR_ALIGN(new->q_base, PAGE_SIZE); 582 q_base_pa = ALIGN(new->q_base_pa, PAGE_SIZE); 583 ionic_q_map(&new->q, q_base, q_base_pa); 584 585 cq_base = PTR_ALIGN(q_base + q_size, PAGE_SIZE); 586 cq_base_pa = ALIGN(new->q_base_pa + q_size, PAGE_SIZE); 587 ionic_cq_map(&new->cq, cq_base, cq_base_pa); 588 ionic_cq_bind(&new->cq, &new->q); 589 } else { 590 new->q_size = PAGE_SIZE + (num_descs * desc_size); 591 new->q_base = dma_alloc_coherent(dev, new->q_size, &new->q_base_pa, 592 GFP_KERNEL); 593 if (!new->q_base) { 594 netdev_err(lif->netdev, "Cannot allocate queue DMA memory\n"); 595 err = -ENOMEM; 596 goto err_out_free_cq_info; 597 } 598 q_base = PTR_ALIGN(new->q_base, PAGE_SIZE); 599 q_base_pa = ALIGN(new->q_base_pa, PAGE_SIZE); 600 ionic_q_map(&new->q, q_base, q_base_pa); 601 602 new->cq_size = PAGE_SIZE + (num_descs * cq_desc_size); 603 new->cq_base = dma_alloc_coherent(dev, new->cq_size, &new->cq_base_pa, 604 GFP_KERNEL); 605 if (!new->cq_base) { 606 netdev_err(lif->netdev, "Cannot allocate cq DMA memory\n"); 607 err = -ENOMEM; 608 goto err_out_free_q; 609 } 610 cq_base = PTR_ALIGN(new->cq_base, PAGE_SIZE); 611 cq_base_pa = ALIGN(new->cq_base_pa, PAGE_SIZE); 612 ionic_cq_map(&new->cq, cq_base, cq_base_pa); 613 ionic_cq_bind(&new->cq, &new->q); 614 } 615 616 if (flags & IONIC_QCQ_F_SG) { 617 new->sg_size = PAGE_SIZE + (num_descs * sg_desc_size); 618 new->sg_base = dma_alloc_coherent(dev, new->sg_size, &new->sg_base_pa, 619 GFP_KERNEL); 620 if (!new->sg_base) { 621 netdev_err(lif->netdev, "Cannot allocate sg DMA memory\n"); 622 err = -ENOMEM; 623 goto err_out_free_cq; 624 } 625 sg_base = PTR_ALIGN(new->sg_base, PAGE_SIZE); 626 sg_base_pa = ALIGN(new->sg_base_pa, PAGE_SIZE); 627 ionic_q_sg_map(&new->q, sg_base, sg_base_pa); 628 } 629 630 INIT_WORK(&new->dim.work, ionic_dim_work); 631 new->dim.mode = DIM_CQ_PERIOD_MODE_START_FROM_EQE; 632 633 *qcq = new; 634 635 return 0; 636 637 err_out_free_cq: 638 dma_free_coherent(dev, new->cq_size, new->cq_base, new->cq_base_pa); 639 err_out_free_q: 640 dma_free_coherent(dev, new->q_size, new->q_base, new->q_base_pa); 641 err_out_free_cq_info: 642 vfree(new->cq.info); 643 err_out_free_irq: 644 if (flags & IONIC_QCQ_F_INTR) { 645 devm_free_irq(dev, new->intr.vector, &new->napi); 646 ionic_intr_free(lif->ionic, new->intr.index); 647 } 648 err_out_free_q_info: 649 vfree(new->q.info); 650 err_out_free_qcq: 651 devm_kfree(dev, new); 652 err_out: 653 dev_err(dev, "qcq alloc of %s%d failed %d\n", name, index, err); 654 return err; 655 } 656 657 static int ionic_qcqs_alloc(struct ionic_lif *lif) 658 { 659 struct device *dev = lif->ionic->dev; 660 unsigned int flags; 661 int err; 662 663 flags = IONIC_QCQ_F_INTR; 664 err = ionic_qcq_alloc(lif, IONIC_QTYPE_ADMINQ, 0, "admin", flags, 665 IONIC_ADMINQ_LENGTH, 666 sizeof(struct ionic_admin_cmd), 667 sizeof(struct ionic_admin_comp), 668 0, lif->kern_pid, &lif->adminqcq); 669 if (err) 670 return err; 671 ionic_debugfs_add_qcq(lif, lif->adminqcq); 672 673 if (lif->ionic->nnqs_per_lif) { 674 flags = IONIC_QCQ_F_NOTIFYQ; 675 err = ionic_qcq_alloc(lif, IONIC_QTYPE_NOTIFYQ, 0, "notifyq", 676 flags, IONIC_NOTIFYQ_LENGTH, 677 sizeof(struct ionic_notifyq_cmd), 678 sizeof(union ionic_notifyq_comp), 679 0, lif->kern_pid, &lif->notifyqcq); 680 if (err) 681 goto err_out; 682 ionic_debugfs_add_qcq(lif, lif->notifyqcq); 683 684 /* Let the notifyq ride on the adminq interrupt */ 685 ionic_link_qcq_interrupts(lif->adminqcq, lif->notifyqcq); 686 } 687 688 err = -ENOMEM; 689 lif->txqcqs = devm_kcalloc(dev, lif->ionic->ntxqs_per_lif, 690 sizeof(*lif->txqcqs), GFP_KERNEL); 691 if (!lif->txqcqs) 692 goto err_out; 693 lif->rxqcqs = devm_kcalloc(dev, lif->ionic->nrxqs_per_lif, 694 sizeof(*lif->rxqcqs), GFP_KERNEL); 695 if (!lif->rxqcqs) 696 goto err_out; 697 698 lif->txqstats = devm_kcalloc(dev, lif->ionic->ntxqs_per_lif + 1, 699 sizeof(*lif->txqstats), GFP_KERNEL); 700 if (!lif->txqstats) 701 goto err_out; 702 lif->rxqstats = devm_kcalloc(dev, lif->ionic->nrxqs_per_lif + 1, 703 sizeof(*lif->rxqstats), GFP_KERNEL); 704 if (!lif->rxqstats) 705 goto err_out; 706 707 return 0; 708 709 err_out: 710 ionic_qcqs_free(lif); 711 return err; 712 } 713 714 static void ionic_qcq_sanitize(struct ionic_qcq *qcq) 715 { 716 qcq->q.tail_idx = 0; 717 qcq->q.head_idx = 0; 718 qcq->cq.tail_idx = 0; 719 qcq->cq.done_color = 1; 720 memset(qcq->q_base, 0, qcq->q_size); 721 memset(qcq->cq_base, 0, qcq->cq_size); 722 memset(qcq->sg_base, 0, qcq->sg_size); 723 } 724 725 static int ionic_lif_txq_init(struct ionic_lif *lif, struct ionic_qcq *qcq) 726 { 727 struct device *dev = lif->ionic->dev; 728 struct ionic_queue *q = &qcq->q; 729 struct ionic_cq *cq = &qcq->cq; 730 struct ionic_admin_ctx ctx = { 731 .work = COMPLETION_INITIALIZER_ONSTACK(ctx.work), 732 .cmd.q_init = { 733 .opcode = IONIC_CMD_Q_INIT, 734 .lif_index = cpu_to_le16(lif->index), 735 .type = q->type, 736 .ver = lif->qtype_info[q->type].version, 737 .index = cpu_to_le32(q->index), 738 .flags = cpu_to_le16(IONIC_QINIT_F_IRQ | 739 IONIC_QINIT_F_SG), 740 .pid = cpu_to_le16(q->pid), 741 .ring_size = ilog2(q->num_descs), 742 .ring_base = cpu_to_le64(q->base_pa), 743 .cq_ring_base = cpu_to_le64(cq->base_pa), 744 .sg_ring_base = cpu_to_le64(q->sg_base_pa), 745 .features = cpu_to_le64(q->features), 746 }, 747 }; 748 unsigned int intr_index; 749 int err; 750 751 intr_index = qcq->intr.index; 752 753 ctx.cmd.q_init.intr_index = cpu_to_le16(intr_index); 754 755 dev_dbg(dev, "txq_init.pid %d\n", ctx.cmd.q_init.pid); 756 dev_dbg(dev, "txq_init.index %d\n", ctx.cmd.q_init.index); 757 dev_dbg(dev, "txq_init.ring_base 0x%llx\n", ctx.cmd.q_init.ring_base); 758 dev_dbg(dev, "txq_init.ring_size %d\n", ctx.cmd.q_init.ring_size); 759 dev_dbg(dev, "txq_init.flags 0x%x\n", ctx.cmd.q_init.flags); 760 dev_dbg(dev, "txq_init.ver %d\n", ctx.cmd.q_init.ver); 761 dev_dbg(dev, "txq_init.intr_index %d\n", ctx.cmd.q_init.intr_index); 762 763 ionic_qcq_sanitize(qcq); 764 765 err = ionic_adminq_post_wait(lif, &ctx); 766 if (err) 767 return err; 768 769 q->hw_type = ctx.comp.q_init.hw_type; 770 q->hw_index = le32_to_cpu(ctx.comp.q_init.hw_index); 771 q->dbval = IONIC_DBELL_QID(q->hw_index); 772 773 dev_dbg(dev, "txq->hw_type %d\n", q->hw_type); 774 dev_dbg(dev, "txq->hw_index %d\n", q->hw_index); 775 776 if (test_bit(IONIC_LIF_F_SPLIT_INTR, lif->state)) 777 netif_napi_add(lif->netdev, &qcq->napi, ionic_tx_napi, 778 NAPI_POLL_WEIGHT); 779 780 qcq->flags |= IONIC_QCQ_F_INITED; 781 782 return 0; 783 } 784 785 static int ionic_lif_rxq_init(struct ionic_lif *lif, struct ionic_qcq *qcq) 786 { 787 struct device *dev = lif->ionic->dev; 788 struct ionic_queue *q = &qcq->q; 789 struct ionic_cq *cq = &qcq->cq; 790 struct ionic_admin_ctx ctx = { 791 .work = COMPLETION_INITIALIZER_ONSTACK(ctx.work), 792 .cmd.q_init = { 793 .opcode = IONIC_CMD_Q_INIT, 794 .lif_index = cpu_to_le16(lif->index), 795 .type = q->type, 796 .ver = lif->qtype_info[q->type].version, 797 .index = cpu_to_le32(q->index), 798 .flags = cpu_to_le16(IONIC_QINIT_F_IRQ | 799 IONIC_QINIT_F_SG), 800 .intr_index = cpu_to_le16(cq->bound_intr->index), 801 .pid = cpu_to_le16(q->pid), 802 .ring_size = ilog2(q->num_descs), 803 .ring_base = cpu_to_le64(q->base_pa), 804 .cq_ring_base = cpu_to_le64(cq->base_pa), 805 .sg_ring_base = cpu_to_le64(q->sg_base_pa), 806 .features = cpu_to_le64(q->features), 807 }, 808 }; 809 int err; 810 811 dev_dbg(dev, "rxq_init.pid %d\n", ctx.cmd.q_init.pid); 812 dev_dbg(dev, "rxq_init.index %d\n", ctx.cmd.q_init.index); 813 dev_dbg(dev, "rxq_init.ring_base 0x%llx\n", ctx.cmd.q_init.ring_base); 814 dev_dbg(dev, "rxq_init.ring_size %d\n", ctx.cmd.q_init.ring_size); 815 dev_dbg(dev, "rxq_init.flags 0x%x\n", ctx.cmd.q_init.flags); 816 dev_dbg(dev, "rxq_init.ver %d\n", ctx.cmd.q_init.ver); 817 dev_dbg(dev, "rxq_init.intr_index %d\n", ctx.cmd.q_init.intr_index); 818 819 ionic_qcq_sanitize(qcq); 820 821 err = ionic_adminq_post_wait(lif, &ctx); 822 if (err) 823 return err; 824 825 q->hw_type = ctx.comp.q_init.hw_type; 826 q->hw_index = le32_to_cpu(ctx.comp.q_init.hw_index); 827 q->dbval = IONIC_DBELL_QID(q->hw_index); 828 829 dev_dbg(dev, "rxq->hw_type %d\n", q->hw_type); 830 dev_dbg(dev, "rxq->hw_index %d\n", q->hw_index); 831 832 if (test_bit(IONIC_LIF_F_SPLIT_INTR, lif->state)) 833 netif_napi_add(lif->netdev, &qcq->napi, ionic_rx_napi, 834 NAPI_POLL_WEIGHT); 835 else 836 netif_napi_add(lif->netdev, &qcq->napi, ionic_txrx_napi, 837 NAPI_POLL_WEIGHT); 838 839 qcq->flags |= IONIC_QCQ_F_INITED; 840 841 return 0; 842 } 843 844 int ionic_lif_create_hwstamp_txq(struct ionic_lif *lif) 845 { 846 unsigned int num_desc, desc_sz, comp_sz, sg_desc_sz; 847 unsigned int txq_i, flags; 848 struct ionic_qcq *txq; 849 u64 features; 850 int err; 851 852 if (lif->hwstamp_txq) 853 return 0; 854 855 features = IONIC_Q_F_2X_CQ_DESC | IONIC_TXQ_F_HWSTAMP; 856 857 num_desc = IONIC_MIN_TXRX_DESC; 858 desc_sz = sizeof(struct ionic_txq_desc); 859 comp_sz = 2 * sizeof(struct ionic_txq_comp); 860 861 if (lif->qtype_info[IONIC_QTYPE_TXQ].version >= 1 && 862 lif->qtype_info[IONIC_QTYPE_TXQ].sg_desc_sz == sizeof(struct ionic_txq_sg_desc_v1)) 863 sg_desc_sz = sizeof(struct ionic_txq_sg_desc_v1); 864 else 865 sg_desc_sz = sizeof(struct ionic_txq_sg_desc); 866 867 txq_i = lif->ionic->ntxqs_per_lif; 868 flags = IONIC_QCQ_F_TX_STATS | IONIC_QCQ_F_SG; 869 870 err = ionic_qcq_alloc(lif, IONIC_QTYPE_TXQ, txq_i, "hwstamp_tx", flags, 871 num_desc, desc_sz, comp_sz, sg_desc_sz, 872 lif->kern_pid, &txq); 873 if (err) 874 goto err_qcq_alloc; 875 876 txq->q.features = features; 877 878 ionic_link_qcq_interrupts(lif->adminqcq, txq); 879 ionic_debugfs_add_qcq(lif, txq); 880 881 lif->hwstamp_txq = txq; 882 883 if (netif_running(lif->netdev)) { 884 err = ionic_lif_txq_init(lif, txq); 885 if (err) 886 goto err_qcq_init; 887 888 if (test_bit(IONIC_LIF_F_UP, lif->state)) { 889 err = ionic_qcq_enable(txq); 890 if (err) 891 goto err_qcq_enable; 892 } 893 } 894 895 return 0; 896 897 err_qcq_enable: 898 ionic_lif_qcq_deinit(lif, txq); 899 err_qcq_init: 900 lif->hwstamp_txq = NULL; 901 ionic_debugfs_del_qcq(txq); 902 ionic_qcq_free(lif, txq); 903 devm_kfree(lif->ionic->dev, txq); 904 err_qcq_alloc: 905 return err; 906 } 907 908 int ionic_lif_create_hwstamp_rxq(struct ionic_lif *lif) 909 { 910 unsigned int num_desc, desc_sz, comp_sz, sg_desc_sz; 911 unsigned int rxq_i, flags; 912 struct ionic_qcq *rxq; 913 u64 features; 914 int err; 915 916 if (lif->hwstamp_rxq) 917 return 0; 918 919 features = IONIC_Q_F_2X_CQ_DESC | IONIC_RXQ_F_HWSTAMP; 920 921 num_desc = IONIC_MIN_TXRX_DESC; 922 desc_sz = sizeof(struct ionic_rxq_desc); 923 comp_sz = 2 * sizeof(struct ionic_rxq_comp); 924 sg_desc_sz = sizeof(struct ionic_rxq_sg_desc); 925 926 rxq_i = lif->ionic->nrxqs_per_lif; 927 flags = IONIC_QCQ_F_RX_STATS | IONIC_QCQ_F_SG; 928 929 err = ionic_qcq_alloc(lif, IONIC_QTYPE_RXQ, rxq_i, "hwstamp_rx", flags, 930 num_desc, desc_sz, comp_sz, sg_desc_sz, 931 lif->kern_pid, &rxq); 932 if (err) 933 goto err_qcq_alloc; 934 935 rxq->q.features = features; 936 937 ionic_link_qcq_interrupts(lif->adminqcq, rxq); 938 ionic_debugfs_add_qcq(lif, rxq); 939 940 lif->hwstamp_rxq = rxq; 941 942 if (netif_running(lif->netdev)) { 943 err = ionic_lif_rxq_init(lif, rxq); 944 if (err) 945 goto err_qcq_init; 946 947 if (test_bit(IONIC_LIF_F_UP, lif->state)) { 948 ionic_rx_fill(&rxq->q); 949 err = ionic_qcq_enable(rxq); 950 if (err) 951 goto err_qcq_enable; 952 } 953 } 954 955 return 0; 956 957 err_qcq_enable: 958 ionic_lif_qcq_deinit(lif, rxq); 959 err_qcq_init: 960 lif->hwstamp_rxq = NULL; 961 ionic_debugfs_del_qcq(rxq); 962 ionic_qcq_free(lif, rxq); 963 devm_kfree(lif->ionic->dev, rxq); 964 err_qcq_alloc: 965 return err; 966 } 967 968 int ionic_lif_config_hwstamp_rxq_all(struct ionic_lif *lif, bool rx_all) 969 { 970 struct ionic_queue_params qparam; 971 972 ionic_init_queue_params(lif, &qparam); 973 974 if (rx_all) 975 qparam.rxq_features = IONIC_Q_F_2X_CQ_DESC | IONIC_RXQ_F_HWSTAMP; 976 else 977 qparam.rxq_features = 0; 978 979 /* if we're not running, just set the values and return */ 980 if (!netif_running(lif->netdev)) { 981 lif->rxq_features = qparam.rxq_features; 982 return 0; 983 } 984 985 return ionic_reconfigure_queues(lif, &qparam); 986 } 987 988 int ionic_lif_set_hwstamp_txmode(struct ionic_lif *lif, u16 txstamp_mode) 989 { 990 struct ionic_admin_ctx ctx = { 991 .work = COMPLETION_INITIALIZER_ONSTACK(ctx.work), 992 .cmd.lif_setattr = { 993 .opcode = IONIC_CMD_LIF_SETATTR, 994 .index = cpu_to_le16(lif->index), 995 .attr = IONIC_LIF_ATTR_TXSTAMP, 996 .txstamp_mode = cpu_to_le16(txstamp_mode), 997 }, 998 }; 999 1000 return ionic_adminq_post_wait(lif, &ctx); 1001 } 1002 1003 static void ionic_lif_del_hwstamp_rxfilt(struct ionic_lif *lif) 1004 { 1005 struct ionic_admin_ctx ctx = { 1006 .work = COMPLETION_INITIALIZER_ONSTACK(ctx.work), 1007 .cmd.rx_filter_del = { 1008 .opcode = IONIC_CMD_RX_FILTER_DEL, 1009 .lif_index = cpu_to_le16(lif->index), 1010 }, 1011 }; 1012 struct ionic_rx_filter *f; 1013 u32 filter_id; 1014 int err; 1015 1016 spin_lock_bh(&lif->rx_filters.lock); 1017 1018 f = ionic_rx_filter_rxsteer(lif); 1019 if (!f) { 1020 spin_unlock_bh(&lif->rx_filters.lock); 1021 return; 1022 } 1023 1024 filter_id = f->filter_id; 1025 ionic_rx_filter_free(lif, f); 1026 1027 spin_unlock_bh(&lif->rx_filters.lock); 1028 1029 netdev_dbg(lif->netdev, "rx_filter del RXSTEER (id %d)\n", filter_id); 1030 1031 ctx.cmd.rx_filter_del.filter_id = cpu_to_le32(filter_id); 1032 1033 err = ionic_adminq_post_wait(lif, &ctx); 1034 if (err && err != -EEXIST) 1035 netdev_dbg(lif->netdev, "failed to delete rx_filter RXSTEER (id %d)\n", filter_id); 1036 } 1037 1038 static int ionic_lif_add_hwstamp_rxfilt(struct ionic_lif *lif, u64 pkt_class) 1039 { 1040 struct ionic_admin_ctx ctx = { 1041 .work = COMPLETION_INITIALIZER_ONSTACK(ctx.work), 1042 .cmd.rx_filter_add = { 1043 .opcode = IONIC_CMD_RX_FILTER_ADD, 1044 .lif_index = cpu_to_le16(lif->index), 1045 .match = cpu_to_le16(IONIC_RX_FILTER_STEER_PKTCLASS), 1046 .pkt_class = cpu_to_le64(pkt_class), 1047 }, 1048 }; 1049 u8 qtype; 1050 u32 qid; 1051 int err; 1052 1053 if (!lif->hwstamp_rxq) 1054 return -EINVAL; 1055 1056 qtype = lif->hwstamp_rxq->q.type; 1057 ctx.cmd.rx_filter_add.qtype = qtype; 1058 1059 qid = lif->hwstamp_rxq->q.index; 1060 ctx.cmd.rx_filter_add.qid = cpu_to_le32(qid); 1061 1062 netdev_dbg(lif->netdev, "rx_filter add RXSTEER\n"); 1063 err = ionic_adminq_post_wait(lif, &ctx); 1064 if (err && err != -EEXIST) 1065 return err; 1066 1067 spin_lock_bh(&lif->rx_filters.lock); 1068 err = ionic_rx_filter_save(lif, 0, qid, 0, &ctx, IONIC_FILTER_STATE_SYNCED); 1069 spin_unlock_bh(&lif->rx_filters.lock); 1070 1071 return err; 1072 } 1073 1074 int ionic_lif_set_hwstamp_rxfilt(struct ionic_lif *lif, u64 pkt_class) 1075 { 1076 ionic_lif_del_hwstamp_rxfilt(lif); 1077 1078 if (!pkt_class) 1079 return 0; 1080 1081 return ionic_lif_add_hwstamp_rxfilt(lif, pkt_class); 1082 } 1083 1084 static bool ionic_notifyq_service(struct ionic_cq *cq, 1085 struct ionic_cq_info *cq_info) 1086 { 1087 union ionic_notifyq_comp *comp = cq_info->cq_desc; 1088 struct ionic_deferred_work *work; 1089 struct net_device *netdev; 1090 struct ionic_queue *q; 1091 struct ionic_lif *lif; 1092 u64 eid; 1093 1094 q = cq->bound_q; 1095 lif = q->info[0].cb_arg; 1096 netdev = lif->netdev; 1097 eid = le64_to_cpu(comp->event.eid); 1098 1099 /* Have we run out of new completions to process? */ 1100 if ((s64)(eid - lif->last_eid) <= 0) 1101 return false; 1102 1103 lif->last_eid = eid; 1104 1105 dev_dbg(lif->ionic->dev, "notifyq event:\n"); 1106 dynamic_hex_dump("event ", DUMP_PREFIX_OFFSET, 16, 1, 1107 comp, sizeof(*comp), true); 1108 1109 switch (le16_to_cpu(comp->event.ecode)) { 1110 case IONIC_EVENT_LINK_CHANGE: 1111 ionic_link_status_check_request(lif, CAN_NOT_SLEEP); 1112 break; 1113 case IONIC_EVENT_RESET: 1114 if (lif->ionic->idev.fw_status_ready && 1115 !test_bit(IONIC_LIF_F_FW_RESET, lif->state) && 1116 !test_and_set_bit(IONIC_LIF_F_FW_STOPPING, lif->state)) { 1117 work = kzalloc(sizeof(*work), GFP_ATOMIC); 1118 if (!work) { 1119 netdev_err(lif->netdev, "Reset event dropped\n"); 1120 clear_bit(IONIC_LIF_F_FW_STOPPING, lif->state); 1121 } else { 1122 work->type = IONIC_DW_TYPE_LIF_RESET; 1123 ionic_lif_deferred_enqueue(&lif->deferred, work); 1124 } 1125 } 1126 break; 1127 default: 1128 netdev_warn(netdev, "Notifyq event ecode=%d eid=%lld\n", 1129 comp->event.ecode, eid); 1130 break; 1131 } 1132 1133 return true; 1134 } 1135 1136 static bool ionic_adminq_service(struct ionic_cq *cq, 1137 struct ionic_cq_info *cq_info) 1138 { 1139 struct ionic_admin_comp *comp = cq_info->cq_desc; 1140 1141 if (!color_match(comp->color, cq->done_color)) 1142 return false; 1143 1144 ionic_q_service(cq->bound_q, cq_info, le16_to_cpu(comp->comp_index)); 1145 1146 return true; 1147 } 1148 1149 static int ionic_adminq_napi(struct napi_struct *napi, int budget) 1150 { 1151 struct ionic_intr_info *intr = napi_to_cq(napi)->bound_intr; 1152 struct ionic_lif *lif = napi_to_cq(napi)->lif; 1153 struct ionic_dev *idev = &lif->ionic->idev; 1154 unsigned long irqflags; 1155 unsigned int flags = 0; 1156 int rx_work = 0; 1157 int tx_work = 0; 1158 int n_work = 0; 1159 int a_work = 0; 1160 int work_done; 1161 int credits; 1162 1163 if (lif->notifyqcq && lif->notifyqcq->flags & IONIC_QCQ_F_INITED) 1164 n_work = ionic_cq_service(&lif->notifyqcq->cq, budget, 1165 ionic_notifyq_service, NULL, NULL); 1166 1167 spin_lock_irqsave(&lif->adminq_lock, irqflags); 1168 if (lif->adminqcq && lif->adminqcq->flags & IONIC_QCQ_F_INITED) 1169 a_work = ionic_cq_service(&lif->adminqcq->cq, budget, 1170 ionic_adminq_service, NULL, NULL); 1171 spin_unlock_irqrestore(&lif->adminq_lock, irqflags); 1172 1173 if (lif->hwstamp_rxq) 1174 rx_work = ionic_cq_service(&lif->hwstamp_rxq->cq, budget, 1175 ionic_rx_service, NULL, NULL); 1176 1177 if (lif->hwstamp_txq) 1178 tx_work = ionic_cq_service(&lif->hwstamp_txq->cq, budget, 1179 ionic_tx_service, NULL, NULL); 1180 1181 work_done = max(max(n_work, a_work), max(rx_work, tx_work)); 1182 if (work_done < budget && napi_complete_done(napi, work_done)) { 1183 flags |= IONIC_INTR_CRED_UNMASK; 1184 intr->rearm_count++; 1185 } 1186 1187 if (work_done || flags) { 1188 flags |= IONIC_INTR_CRED_RESET_COALESCE; 1189 credits = n_work + a_work + rx_work + tx_work; 1190 ionic_intr_credits(idev->intr_ctrl, intr->index, credits, flags); 1191 } 1192 1193 return work_done; 1194 } 1195 1196 void ionic_get_stats64(struct net_device *netdev, 1197 struct rtnl_link_stats64 *ns) 1198 { 1199 struct ionic_lif *lif = netdev_priv(netdev); 1200 struct ionic_lif_stats *ls; 1201 1202 memset(ns, 0, sizeof(*ns)); 1203 ls = &lif->info->stats; 1204 1205 ns->rx_packets = le64_to_cpu(ls->rx_ucast_packets) + 1206 le64_to_cpu(ls->rx_mcast_packets) + 1207 le64_to_cpu(ls->rx_bcast_packets); 1208 1209 ns->tx_packets = le64_to_cpu(ls->tx_ucast_packets) + 1210 le64_to_cpu(ls->tx_mcast_packets) + 1211 le64_to_cpu(ls->tx_bcast_packets); 1212 1213 ns->rx_bytes = le64_to_cpu(ls->rx_ucast_bytes) + 1214 le64_to_cpu(ls->rx_mcast_bytes) + 1215 le64_to_cpu(ls->rx_bcast_bytes); 1216 1217 ns->tx_bytes = le64_to_cpu(ls->tx_ucast_bytes) + 1218 le64_to_cpu(ls->tx_mcast_bytes) + 1219 le64_to_cpu(ls->tx_bcast_bytes); 1220 1221 ns->rx_dropped = le64_to_cpu(ls->rx_ucast_drop_packets) + 1222 le64_to_cpu(ls->rx_mcast_drop_packets) + 1223 le64_to_cpu(ls->rx_bcast_drop_packets); 1224 1225 ns->tx_dropped = le64_to_cpu(ls->tx_ucast_drop_packets) + 1226 le64_to_cpu(ls->tx_mcast_drop_packets) + 1227 le64_to_cpu(ls->tx_bcast_drop_packets); 1228 1229 ns->multicast = le64_to_cpu(ls->rx_mcast_packets); 1230 1231 ns->rx_over_errors = le64_to_cpu(ls->rx_queue_empty); 1232 1233 ns->rx_missed_errors = le64_to_cpu(ls->rx_dma_error) + 1234 le64_to_cpu(ls->rx_queue_disabled) + 1235 le64_to_cpu(ls->rx_desc_fetch_error) + 1236 le64_to_cpu(ls->rx_desc_data_error); 1237 1238 ns->tx_aborted_errors = le64_to_cpu(ls->tx_dma_error) + 1239 le64_to_cpu(ls->tx_queue_disabled) + 1240 le64_to_cpu(ls->tx_desc_fetch_error) + 1241 le64_to_cpu(ls->tx_desc_data_error); 1242 1243 ns->rx_errors = ns->rx_over_errors + 1244 ns->rx_missed_errors; 1245 1246 ns->tx_errors = ns->tx_aborted_errors; 1247 } 1248 1249 static int ionic_addr_add(struct net_device *netdev, const u8 *addr) 1250 { 1251 return ionic_lif_list_addr(netdev_priv(netdev), addr, ADD_ADDR); 1252 } 1253 1254 static int ionic_addr_del(struct net_device *netdev, const u8 *addr) 1255 { 1256 /* Don't delete our own address from the uc list */ 1257 if (ether_addr_equal(addr, netdev->dev_addr)) 1258 return 0; 1259 1260 return ionic_lif_list_addr(netdev_priv(netdev), addr, DEL_ADDR); 1261 } 1262 1263 void ionic_lif_rx_mode(struct ionic_lif *lif) 1264 { 1265 struct net_device *netdev = lif->netdev; 1266 unsigned int nfilters; 1267 unsigned int nd_flags; 1268 char buf[128]; 1269 u16 rx_mode; 1270 int i; 1271 #define REMAIN(__x) (sizeof(buf) - (__x)) 1272 1273 mutex_lock(&lif->config_lock); 1274 1275 /* grab the flags once for local use */ 1276 nd_flags = netdev->flags; 1277 1278 rx_mode = IONIC_RX_MODE_F_UNICAST; 1279 rx_mode |= (nd_flags & IFF_MULTICAST) ? IONIC_RX_MODE_F_MULTICAST : 0; 1280 rx_mode |= (nd_flags & IFF_BROADCAST) ? IONIC_RX_MODE_F_BROADCAST : 0; 1281 rx_mode |= (nd_flags & IFF_PROMISC) ? IONIC_RX_MODE_F_PROMISC : 0; 1282 rx_mode |= (nd_flags & IFF_ALLMULTI) ? IONIC_RX_MODE_F_ALLMULTI : 0; 1283 1284 /* sync the filters */ 1285 ionic_rx_filter_sync(lif); 1286 1287 /* check for overflow state 1288 * if so, we track that we overflowed and enable NIC PROMISC 1289 * else if the overflow is set and not needed 1290 * we remove our overflow flag and check the netdev flags 1291 * to see if we can disable NIC PROMISC 1292 */ 1293 nfilters = le32_to_cpu(lif->identity->eth.max_ucast_filters); 1294 1295 if (((lif->nucast + lif->nmcast) >= nfilters) || 1296 (lif->max_vlans && lif->nvlans >= lif->max_vlans)) { 1297 rx_mode |= IONIC_RX_MODE_F_PROMISC; 1298 rx_mode |= IONIC_RX_MODE_F_ALLMULTI; 1299 } else { 1300 if (!(nd_flags & IFF_PROMISC)) 1301 rx_mode &= ~IONIC_RX_MODE_F_PROMISC; 1302 if (!(nd_flags & IFF_ALLMULTI)) 1303 rx_mode &= ~IONIC_RX_MODE_F_ALLMULTI; 1304 } 1305 1306 i = scnprintf(buf, sizeof(buf), "rx_mode 0x%04x -> 0x%04x:", 1307 lif->rx_mode, rx_mode); 1308 if (rx_mode & IONIC_RX_MODE_F_UNICAST) 1309 i += scnprintf(&buf[i], REMAIN(i), " RX_MODE_F_UNICAST"); 1310 if (rx_mode & IONIC_RX_MODE_F_MULTICAST) 1311 i += scnprintf(&buf[i], REMAIN(i), " RX_MODE_F_MULTICAST"); 1312 if (rx_mode & IONIC_RX_MODE_F_BROADCAST) 1313 i += scnprintf(&buf[i], REMAIN(i), " RX_MODE_F_BROADCAST"); 1314 if (rx_mode & IONIC_RX_MODE_F_PROMISC) 1315 i += scnprintf(&buf[i], REMAIN(i), " RX_MODE_F_PROMISC"); 1316 if (rx_mode & IONIC_RX_MODE_F_ALLMULTI) 1317 i += scnprintf(&buf[i], REMAIN(i), " RX_MODE_F_ALLMULTI"); 1318 if (rx_mode & IONIC_RX_MODE_F_RDMA_SNIFFER) 1319 i += scnprintf(&buf[i], REMAIN(i), " RX_MODE_F_RDMA_SNIFFER"); 1320 netdev_dbg(netdev, "lif%d %s\n", lif->index, buf); 1321 1322 if (lif->rx_mode != rx_mode) { 1323 struct ionic_admin_ctx ctx = { 1324 .work = COMPLETION_INITIALIZER_ONSTACK(ctx.work), 1325 .cmd.rx_mode_set = { 1326 .opcode = IONIC_CMD_RX_MODE_SET, 1327 .lif_index = cpu_to_le16(lif->index), 1328 }, 1329 }; 1330 int err; 1331 1332 ctx.cmd.rx_mode_set.rx_mode = cpu_to_le16(rx_mode); 1333 err = ionic_adminq_post_wait(lif, &ctx); 1334 if (err) 1335 netdev_warn(netdev, "set rx_mode 0x%04x failed: %d\n", 1336 rx_mode, err); 1337 else 1338 lif->rx_mode = rx_mode; 1339 } 1340 1341 mutex_unlock(&lif->config_lock); 1342 } 1343 1344 static void ionic_ndo_set_rx_mode(struct net_device *netdev) 1345 { 1346 struct ionic_lif *lif = netdev_priv(netdev); 1347 struct ionic_deferred_work *work; 1348 1349 /* Sync the kernel filter list with the driver filter list */ 1350 __dev_uc_sync(netdev, ionic_addr_add, ionic_addr_del); 1351 __dev_mc_sync(netdev, ionic_addr_add, ionic_addr_del); 1352 1353 /* Shove off the rest of the rxmode work to the work task 1354 * which will include syncing the filters to the firmware. 1355 */ 1356 work = kzalloc(sizeof(*work), GFP_ATOMIC); 1357 if (!work) { 1358 netdev_err(lif->netdev, "rxmode change dropped\n"); 1359 return; 1360 } 1361 work->type = IONIC_DW_TYPE_RX_MODE; 1362 netdev_dbg(lif->netdev, "deferred: rx_mode\n"); 1363 ionic_lif_deferred_enqueue(&lif->deferred, work); 1364 } 1365 1366 static __le64 ionic_netdev_features_to_nic(netdev_features_t features) 1367 { 1368 u64 wanted = 0; 1369 1370 if (features & NETIF_F_HW_VLAN_CTAG_TX) 1371 wanted |= IONIC_ETH_HW_VLAN_TX_TAG; 1372 if (features & NETIF_F_HW_VLAN_CTAG_RX) 1373 wanted |= IONIC_ETH_HW_VLAN_RX_STRIP; 1374 if (features & NETIF_F_HW_VLAN_CTAG_FILTER) 1375 wanted |= IONIC_ETH_HW_VLAN_RX_FILTER; 1376 if (features & NETIF_F_RXHASH) 1377 wanted |= IONIC_ETH_HW_RX_HASH; 1378 if (features & NETIF_F_RXCSUM) 1379 wanted |= IONIC_ETH_HW_RX_CSUM; 1380 if (features & NETIF_F_SG) 1381 wanted |= IONIC_ETH_HW_TX_SG; 1382 if (features & NETIF_F_HW_CSUM) 1383 wanted |= IONIC_ETH_HW_TX_CSUM; 1384 if (features & NETIF_F_TSO) 1385 wanted |= IONIC_ETH_HW_TSO; 1386 if (features & NETIF_F_TSO6) 1387 wanted |= IONIC_ETH_HW_TSO_IPV6; 1388 if (features & NETIF_F_TSO_ECN) 1389 wanted |= IONIC_ETH_HW_TSO_ECN; 1390 if (features & NETIF_F_GSO_GRE) 1391 wanted |= IONIC_ETH_HW_TSO_GRE; 1392 if (features & NETIF_F_GSO_GRE_CSUM) 1393 wanted |= IONIC_ETH_HW_TSO_GRE_CSUM; 1394 if (features & NETIF_F_GSO_IPXIP4) 1395 wanted |= IONIC_ETH_HW_TSO_IPXIP4; 1396 if (features & NETIF_F_GSO_IPXIP6) 1397 wanted |= IONIC_ETH_HW_TSO_IPXIP6; 1398 if (features & NETIF_F_GSO_UDP_TUNNEL) 1399 wanted |= IONIC_ETH_HW_TSO_UDP; 1400 if (features & NETIF_F_GSO_UDP_TUNNEL_CSUM) 1401 wanted |= IONIC_ETH_HW_TSO_UDP_CSUM; 1402 1403 return cpu_to_le64(wanted); 1404 } 1405 1406 static int ionic_set_nic_features(struct ionic_lif *lif, 1407 netdev_features_t features) 1408 { 1409 struct device *dev = lif->ionic->dev; 1410 struct ionic_admin_ctx ctx = { 1411 .work = COMPLETION_INITIALIZER_ONSTACK(ctx.work), 1412 .cmd.lif_setattr = { 1413 .opcode = IONIC_CMD_LIF_SETATTR, 1414 .index = cpu_to_le16(lif->index), 1415 .attr = IONIC_LIF_ATTR_FEATURES, 1416 }, 1417 }; 1418 u64 vlan_flags = IONIC_ETH_HW_VLAN_TX_TAG | 1419 IONIC_ETH_HW_VLAN_RX_STRIP | 1420 IONIC_ETH_HW_VLAN_RX_FILTER; 1421 u64 old_hw_features; 1422 int err; 1423 1424 ctx.cmd.lif_setattr.features = ionic_netdev_features_to_nic(features); 1425 1426 if (lif->phc) 1427 ctx.cmd.lif_setattr.features |= cpu_to_le64(IONIC_ETH_HW_TIMESTAMP); 1428 1429 err = ionic_adminq_post_wait(lif, &ctx); 1430 if (err) 1431 return err; 1432 1433 old_hw_features = lif->hw_features; 1434 lif->hw_features = le64_to_cpu(ctx.cmd.lif_setattr.features & 1435 ctx.comp.lif_setattr.features); 1436 1437 if ((old_hw_features ^ lif->hw_features) & IONIC_ETH_HW_RX_HASH) 1438 ionic_lif_rss_config(lif, lif->rss_types, NULL, NULL); 1439 1440 if ((vlan_flags & le64_to_cpu(ctx.cmd.lif_setattr.features)) && 1441 !(vlan_flags & le64_to_cpu(ctx.comp.lif_setattr.features))) 1442 dev_info_once(lif->ionic->dev, "NIC is not supporting vlan offload, likely in SmartNIC mode\n"); 1443 1444 if (lif->hw_features & IONIC_ETH_HW_VLAN_TX_TAG) 1445 dev_dbg(dev, "feature ETH_HW_VLAN_TX_TAG\n"); 1446 if (lif->hw_features & IONIC_ETH_HW_VLAN_RX_STRIP) 1447 dev_dbg(dev, "feature ETH_HW_VLAN_RX_STRIP\n"); 1448 if (lif->hw_features & IONIC_ETH_HW_VLAN_RX_FILTER) 1449 dev_dbg(dev, "feature ETH_HW_VLAN_RX_FILTER\n"); 1450 if (lif->hw_features & IONIC_ETH_HW_RX_HASH) 1451 dev_dbg(dev, "feature ETH_HW_RX_HASH\n"); 1452 if (lif->hw_features & IONIC_ETH_HW_TX_SG) 1453 dev_dbg(dev, "feature ETH_HW_TX_SG\n"); 1454 if (lif->hw_features & IONIC_ETH_HW_TX_CSUM) 1455 dev_dbg(dev, "feature ETH_HW_TX_CSUM\n"); 1456 if (lif->hw_features & IONIC_ETH_HW_RX_CSUM) 1457 dev_dbg(dev, "feature ETH_HW_RX_CSUM\n"); 1458 if (lif->hw_features & IONIC_ETH_HW_TSO) 1459 dev_dbg(dev, "feature ETH_HW_TSO\n"); 1460 if (lif->hw_features & IONIC_ETH_HW_TSO_IPV6) 1461 dev_dbg(dev, "feature ETH_HW_TSO_IPV6\n"); 1462 if (lif->hw_features & IONIC_ETH_HW_TSO_ECN) 1463 dev_dbg(dev, "feature ETH_HW_TSO_ECN\n"); 1464 if (lif->hw_features & IONIC_ETH_HW_TSO_GRE) 1465 dev_dbg(dev, "feature ETH_HW_TSO_GRE\n"); 1466 if (lif->hw_features & IONIC_ETH_HW_TSO_GRE_CSUM) 1467 dev_dbg(dev, "feature ETH_HW_TSO_GRE_CSUM\n"); 1468 if (lif->hw_features & IONIC_ETH_HW_TSO_IPXIP4) 1469 dev_dbg(dev, "feature ETH_HW_TSO_IPXIP4\n"); 1470 if (lif->hw_features & IONIC_ETH_HW_TSO_IPXIP6) 1471 dev_dbg(dev, "feature ETH_HW_TSO_IPXIP6\n"); 1472 if (lif->hw_features & IONIC_ETH_HW_TSO_UDP) 1473 dev_dbg(dev, "feature ETH_HW_TSO_UDP\n"); 1474 if (lif->hw_features & IONIC_ETH_HW_TSO_UDP_CSUM) 1475 dev_dbg(dev, "feature ETH_HW_TSO_UDP_CSUM\n"); 1476 if (lif->hw_features & IONIC_ETH_HW_TIMESTAMP) 1477 dev_dbg(dev, "feature ETH_HW_TIMESTAMP\n"); 1478 1479 return 0; 1480 } 1481 1482 static int ionic_init_nic_features(struct ionic_lif *lif) 1483 { 1484 struct net_device *netdev = lif->netdev; 1485 netdev_features_t features; 1486 int err; 1487 1488 /* set up what we expect to support by default */ 1489 features = NETIF_F_HW_VLAN_CTAG_TX | 1490 NETIF_F_HW_VLAN_CTAG_RX | 1491 NETIF_F_HW_VLAN_CTAG_FILTER | 1492 NETIF_F_SG | 1493 NETIF_F_HW_CSUM | 1494 NETIF_F_RXCSUM | 1495 NETIF_F_TSO | 1496 NETIF_F_TSO6 | 1497 NETIF_F_TSO_ECN; 1498 1499 if (lif->nxqs > 1) 1500 features |= NETIF_F_RXHASH; 1501 1502 err = ionic_set_nic_features(lif, features); 1503 if (err) 1504 return err; 1505 1506 /* tell the netdev what we actually can support */ 1507 netdev->features |= NETIF_F_HIGHDMA; 1508 1509 if (lif->hw_features & IONIC_ETH_HW_VLAN_TX_TAG) 1510 netdev->hw_features |= NETIF_F_HW_VLAN_CTAG_TX; 1511 if (lif->hw_features & IONIC_ETH_HW_VLAN_RX_STRIP) 1512 netdev->hw_features |= NETIF_F_HW_VLAN_CTAG_RX; 1513 if (lif->hw_features & IONIC_ETH_HW_VLAN_RX_FILTER) 1514 netdev->hw_features |= NETIF_F_HW_VLAN_CTAG_FILTER; 1515 if (lif->hw_features & IONIC_ETH_HW_RX_HASH) 1516 netdev->hw_features |= NETIF_F_RXHASH; 1517 if (lif->hw_features & IONIC_ETH_HW_TX_SG) 1518 netdev->hw_features |= NETIF_F_SG; 1519 1520 if (lif->hw_features & IONIC_ETH_HW_TX_CSUM) 1521 netdev->hw_enc_features |= NETIF_F_HW_CSUM; 1522 if (lif->hw_features & IONIC_ETH_HW_RX_CSUM) 1523 netdev->hw_enc_features |= NETIF_F_RXCSUM; 1524 if (lif->hw_features & IONIC_ETH_HW_TSO) 1525 netdev->hw_enc_features |= NETIF_F_TSO; 1526 if (lif->hw_features & IONIC_ETH_HW_TSO_IPV6) 1527 netdev->hw_enc_features |= NETIF_F_TSO6; 1528 if (lif->hw_features & IONIC_ETH_HW_TSO_ECN) 1529 netdev->hw_enc_features |= NETIF_F_TSO_ECN; 1530 if (lif->hw_features & IONIC_ETH_HW_TSO_GRE) 1531 netdev->hw_enc_features |= NETIF_F_GSO_GRE; 1532 if (lif->hw_features & IONIC_ETH_HW_TSO_GRE_CSUM) 1533 netdev->hw_enc_features |= NETIF_F_GSO_GRE_CSUM; 1534 if (lif->hw_features & IONIC_ETH_HW_TSO_IPXIP4) 1535 netdev->hw_enc_features |= NETIF_F_GSO_IPXIP4; 1536 if (lif->hw_features & IONIC_ETH_HW_TSO_IPXIP6) 1537 netdev->hw_enc_features |= NETIF_F_GSO_IPXIP6; 1538 if (lif->hw_features & IONIC_ETH_HW_TSO_UDP) 1539 netdev->hw_enc_features |= NETIF_F_GSO_UDP_TUNNEL; 1540 if (lif->hw_features & IONIC_ETH_HW_TSO_UDP_CSUM) 1541 netdev->hw_enc_features |= NETIF_F_GSO_UDP_TUNNEL_CSUM; 1542 1543 netdev->hw_features |= netdev->hw_enc_features; 1544 netdev->features |= netdev->hw_features; 1545 netdev->vlan_features |= netdev->features & ~NETIF_F_VLAN_FEATURES; 1546 1547 netdev->priv_flags |= IFF_UNICAST_FLT | 1548 IFF_LIVE_ADDR_CHANGE; 1549 1550 return 0; 1551 } 1552 1553 static int ionic_set_features(struct net_device *netdev, 1554 netdev_features_t features) 1555 { 1556 struct ionic_lif *lif = netdev_priv(netdev); 1557 int err; 1558 1559 netdev_dbg(netdev, "%s: lif->features=0x%08llx new_features=0x%08llx\n", 1560 __func__, (u64)lif->netdev->features, (u64)features); 1561 1562 err = ionic_set_nic_features(lif, features); 1563 1564 return err; 1565 } 1566 1567 static int ionic_set_attr_mac(struct ionic_lif *lif, u8 *mac) 1568 { 1569 struct ionic_admin_ctx ctx = { 1570 .work = COMPLETION_INITIALIZER_ONSTACK(ctx.work), 1571 .cmd.lif_setattr = { 1572 .opcode = IONIC_CMD_LIF_SETATTR, 1573 .index = cpu_to_le16(lif->index), 1574 .attr = IONIC_LIF_ATTR_MAC, 1575 }, 1576 }; 1577 1578 ether_addr_copy(ctx.cmd.lif_setattr.mac, mac); 1579 return ionic_adminq_post_wait(lif, &ctx); 1580 } 1581 1582 static int ionic_get_attr_mac(struct ionic_lif *lif, u8 *mac_addr) 1583 { 1584 struct ionic_admin_ctx ctx = { 1585 .work = COMPLETION_INITIALIZER_ONSTACK(ctx.work), 1586 .cmd.lif_getattr = { 1587 .opcode = IONIC_CMD_LIF_GETATTR, 1588 .index = cpu_to_le16(lif->index), 1589 .attr = IONIC_LIF_ATTR_MAC, 1590 }, 1591 }; 1592 int err; 1593 1594 err = ionic_adminq_post_wait(lif, &ctx); 1595 if (err) 1596 return err; 1597 1598 ether_addr_copy(mac_addr, ctx.comp.lif_getattr.mac); 1599 return 0; 1600 } 1601 1602 static int ionic_program_mac(struct ionic_lif *lif, u8 *mac) 1603 { 1604 u8 get_mac[ETH_ALEN]; 1605 int err; 1606 1607 err = ionic_set_attr_mac(lif, mac); 1608 if (err) 1609 return err; 1610 1611 err = ionic_get_attr_mac(lif, get_mac); 1612 if (err) 1613 return err; 1614 1615 /* To deal with older firmware that silently ignores the set attr mac: 1616 * doesn't actually change the mac and doesn't return an error, so we 1617 * do the get attr to verify whether or not the set actually happened 1618 */ 1619 if (!ether_addr_equal(get_mac, mac)) 1620 return 1; 1621 1622 return 0; 1623 } 1624 1625 static int ionic_set_mac_address(struct net_device *netdev, void *sa) 1626 { 1627 struct ionic_lif *lif = netdev_priv(netdev); 1628 struct sockaddr *addr = sa; 1629 u8 *mac; 1630 int err; 1631 1632 mac = (u8 *)addr->sa_data; 1633 if (ether_addr_equal(netdev->dev_addr, mac)) 1634 return 0; 1635 1636 err = ionic_program_mac(lif, mac); 1637 if (err < 0) 1638 return err; 1639 1640 if (err > 0) 1641 netdev_dbg(netdev, "%s: SET and GET ATTR Mac are not equal-due to old FW running\n", 1642 __func__); 1643 1644 err = eth_prepare_mac_addr_change(netdev, addr); 1645 if (err) 1646 return err; 1647 1648 if (!is_zero_ether_addr(netdev->dev_addr)) { 1649 netdev_info(netdev, "deleting mac addr %pM\n", 1650 netdev->dev_addr); 1651 ionic_lif_addr_del(netdev_priv(netdev), netdev->dev_addr); 1652 } 1653 1654 eth_commit_mac_addr_change(netdev, addr); 1655 netdev_info(netdev, "updating mac addr %pM\n", mac); 1656 1657 return ionic_lif_addr_add(netdev_priv(netdev), mac); 1658 } 1659 1660 static void ionic_stop_queues_reconfig(struct ionic_lif *lif) 1661 { 1662 /* Stop and clean the queues before reconfiguration */ 1663 netif_device_detach(lif->netdev); 1664 ionic_stop_queues(lif); 1665 ionic_txrx_deinit(lif); 1666 } 1667 1668 static int ionic_start_queues_reconfig(struct ionic_lif *lif) 1669 { 1670 int err; 1671 1672 /* Re-init the queues after reconfiguration */ 1673 1674 /* The only way txrx_init can fail here is if communication 1675 * with FW is suddenly broken. There's not much we can do 1676 * at this point - error messages have already been printed, 1677 * so we can continue on and the user can eventually do a 1678 * DOWN and UP to try to reset and clear the issue. 1679 */ 1680 err = ionic_txrx_init(lif); 1681 ionic_link_status_check_request(lif, CAN_NOT_SLEEP); 1682 netif_device_attach(lif->netdev); 1683 1684 return err; 1685 } 1686 1687 static int ionic_change_mtu(struct net_device *netdev, int new_mtu) 1688 { 1689 struct ionic_lif *lif = netdev_priv(netdev); 1690 struct ionic_admin_ctx ctx = { 1691 .work = COMPLETION_INITIALIZER_ONSTACK(ctx.work), 1692 .cmd.lif_setattr = { 1693 .opcode = IONIC_CMD_LIF_SETATTR, 1694 .index = cpu_to_le16(lif->index), 1695 .attr = IONIC_LIF_ATTR_MTU, 1696 .mtu = cpu_to_le32(new_mtu), 1697 }, 1698 }; 1699 int err; 1700 1701 err = ionic_adminq_post_wait(lif, &ctx); 1702 if (err) 1703 return err; 1704 1705 /* if we're not running, nothing more to do */ 1706 if (!netif_running(netdev)) { 1707 netdev->mtu = new_mtu; 1708 return 0; 1709 } 1710 1711 mutex_lock(&lif->queue_lock); 1712 ionic_stop_queues_reconfig(lif); 1713 netdev->mtu = new_mtu; 1714 err = ionic_start_queues_reconfig(lif); 1715 mutex_unlock(&lif->queue_lock); 1716 1717 return err; 1718 } 1719 1720 static void ionic_tx_timeout_work(struct work_struct *ws) 1721 { 1722 struct ionic_lif *lif = container_of(ws, struct ionic_lif, tx_timeout_work); 1723 1724 if (test_bit(IONIC_LIF_F_FW_RESET, lif->state)) 1725 return; 1726 1727 /* if we were stopped before this scheduled job was launched, 1728 * don't bother the queues as they are already stopped. 1729 */ 1730 if (!netif_running(lif->netdev)) 1731 return; 1732 1733 mutex_lock(&lif->queue_lock); 1734 ionic_stop_queues_reconfig(lif); 1735 ionic_start_queues_reconfig(lif); 1736 mutex_unlock(&lif->queue_lock); 1737 } 1738 1739 static void ionic_tx_timeout(struct net_device *netdev, unsigned int txqueue) 1740 { 1741 struct ionic_lif *lif = netdev_priv(netdev); 1742 1743 netdev_info(lif->netdev, "Tx Timeout triggered - txq %d\n", txqueue); 1744 schedule_work(&lif->tx_timeout_work); 1745 } 1746 1747 static int ionic_vlan_rx_add_vid(struct net_device *netdev, __be16 proto, 1748 u16 vid) 1749 { 1750 struct ionic_lif *lif = netdev_priv(netdev); 1751 int err; 1752 1753 err = ionic_lif_vlan_add(lif, vid); 1754 if (err) 1755 return err; 1756 1757 ionic_lif_rx_mode(lif); 1758 1759 return 0; 1760 } 1761 1762 static int ionic_vlan_rx_kill_vid(struct net_device *netdev, __be16 proto, 1763 u16 vid) 1764 { 1765 struct ionic_lif *lif = netdev_priv(netdev); 1766 int err; 1767 1768 err = ionic_lif_vlan_del(lif, vid); 1769 if (err) 1770 return err; 1771 1772 ionic_lif_rx_mode(lif); 1773 1774 return 0; 1775 } 1776 1777 int ionic_lif_rss_config(struct ionic_lif *lif, const u16 types, 1778 const u8 *key, const u32 *indir) 1779 { 1780 struct ionic_admin_ctx ctx = { 1781 .work = COMPLETION_INITIALIZER_ONSTACK(ctx.work), 1782 .cmd.lif_setattr = { 1783 .opcode = IONIC_CMD_LIF_SETATTR, 1784 .attr = IONIC_LIF_ATTR_RSS, 1785 .rss.addr = cpu_to_le64(lif->rss_ind_tbl_pa), 1786 }, 1787 }; 1788 unsigned int i, tbl_sz; 1789 1790 if (lif->hw_features & IONIC_ETH_HW_RX_HASH) { 1791 lif->rss_types = types; 1792 ctx.cmd.lif_setattr.rss.types = cpu_to_le16(types); 1793 } 1794 1795 if (key) 1796 memcpy(lif->rss_hash_key, key, IONIC_RSS_HASH_KEY_SIZE); 1797 1798 if (indir) { 1799 tbl_sz = le16_to_cpu(lif->ionic->ident.lif.eth.rss_ind_tbl_sz); 1800 for (i = 0; i < tbl_sz; i++) 1801 lif->rss_ind_tbl[i] = indir[i]; 1802 } 1803 1804 memcpy(ctx.cmd.lif_setattr.rss.key, lif->rss_hash_key, 1805 IONIC_RSS_HASH_KEY_SIZE); 1806 1807 return ionic_adminq_post_wait(lif, &ctx); 1808 } 1809 1810 static int ionic_lif_rss_init(struct ionic_lif *lif) 1811 { 1812 unsigned int tbl_sz; 1813 unsigned int i; 1814 1815 lif->rss_types = IONIC_RSS_TYPE_IPV4 | 1816 IONIC_RSS_TYPE_IPV4_TCP | 1817 IONIC_RSS_TYPE_IPV4_UDP | 1818 IONIC_RSS_TYPE_IPV6 | 1819 IONIC_RSS_TYPE_IPV6_TCP | 1820 IONIC_RSS_TYPE_IPV6_UDP; 1821 1822 /* Fill indirection table with 'default' values */ 1823 tbl_sz = le16_to_cpu(lif->ionic->ident.lif.eth.rss_ind_tbl_sz); 1824 for (i = 0; i < tbl_sz; i++) 1825 lif->rss_ind_tbl[i] = ethtool_rxfh_indir_default(i, lif->nxqs); 1826 1827 return ionic_lif_rss_config(lif, lif->rss_types, NULL, NULL); 1828 } 1829 1830 static void ionic_lif_rss_deinit(struct ionic_lif *lif) 1831 { 1832 int tbl_sz; 1833 1834 tbl_sz = le16_to_cpu(lif->ionic->ident.lif.eth.rss_ind_tbl_sz); 1835 memset(lif->rss_ind_tbl, 0, tbl_sz); 1836 memset(lif->rss_hash_key, 0, IONIC_RSS_HASH_KEY_SIZE); 1837 1838 ionic_lif_rss_config(lif, 0x0, NULL, NULL); 1839 } 1840 1841 static void ionic_lif_quiesce(struct ionic_lif *lif) 1842 { 1843 struct ionic_admin_ctx ctx = { 1844 .work = COMPLETION_INITIALIZER_ONSTACK(ctx.work), 1845 .cmd.lif_setattr = { 1846 .opcode = IONIC_CMD_LIF_SETATTR, 1847 .index = cpu_to_le16(lif->index), 1848 .attr = IONIC_LIF_ATTR_STATE, 1849 .state = IONIC_LIF_QUIESCE, 1850 }, 1851 }; 1852 int err; 1853 1854 err = ionic_adminq_post_wait(lif, &ctx); 1855 if (err) 1856 netdev_dbg(lif->netdev, "lif quiesce failed %d\n", err); 1857 } 1858 1859 static void ionic_txrx_disable(struct ionic_lif *lif) 1860 { 1861 unsigned int i; 1862 int err = 0; 1863 1864 if (lif->txqcqs) { 1865 for (i = 0; i < lif->nxqs; i++) 1866 err = ionic_qcq_disable(lif, lif->txqcqs[i], err); 1867 } 1868 1869 if (lif->hwstamp_txq) 1870 err = ionic_qcq_disable(lif, lif->hwstamp_txq, err); 1871 1872 if (lif->rxqcqs) { 1873 for (i = 0; i < lif->nxqs; i++) 1874 err = ionic_qcq_disable(lif, lif->rxqcqs[i], err); 1875 } 1876 1877 if (lif->hwstamp_rxq) 1878 err = ionic_qcq_disable(lif, lif->hwstamp_rxq, err); 1879 1880 ionic_lif_quiesce(lif); 1881 } 1882 1883 static void ionic_txrx_deinit(struct ionic_lif *lif) 1884 { 1885 unsigned int i; 1886 1887 if (lif->txqcqs) { 1888 for (i = 0; i < lif->nxqs && lif->txqcqs[i]; i++) { 1889 ionic_lif_qcq_deinit(lif, lif->txqcqs[i]); 1890 ionic_tx_flush(&lif->txqcqs[i]->cq); 1891 ionic_tx_empty(&lif->txqcqs[i]->q); 1892 } 1893 } 1894 1895 if (lif->rxqcqs) { 1896 for (i = 0; i < lif->nxqs && lif->rxqcqs[i]; i++) { 1897 ionic_lif_qcq_deinit(lif, lif->rxqcqs[i]); 1898 ionic_rx_empty(&lif->rxqcqs[i]->q); 1899 } 1900 } 1901 lif->rx_mode = 0; 1902 1903 if (lif->hwstamp_txq) { 1904 ionic_lif_qcq_deinit(lif, lif->hwstamp_txq); 1905 ionic_tx_flush(&lif->hwstamp_txq->cq); 1906 ionic_tx_empty(&lif->hwstamp_txq->q); 1907 } 1908 1909 if (lif->hwstamp_rxq) { 1910 ionic_lif_qcq_deinit(lif, lif->hwstamp_rxq); 1911 ionic_rx_empty(&lif->hwstamp_rxq->q); 1912 } 1913 } 1914 1915 static void ionic_txrx_free(struct ionic_lif *lif) 1916 { 1917 unsigned int i; 1918 1919 if (lif->txqcqs) { 1920 for (i = 0; i < lif->ionic->ntxqs_per_lif && lif->txqcqs[i]; i++) { 1921 ionic_qcq_free(lif, lif->txqcqs[i]); 1922 devm_kfree(lif->ionic->dev, lif->txqcqs[i]); 1923 lif->txqcqs[i] = NULL; 1924 } 1925 } 1926 1927 if (lif->rxqcqs) { 1928 for (i = 0; i < lif->ionic->nrxqs_per_lif && lif->rxqcqs[i]; i++) { 1929 ionic_qcq_free(lif, lif->rxqcqs[i]); 1930 devm_kfree(lif->ionic->dev, lif->rxqcqs[i]); 1931 lif->rxqcqs[i] = NULL; 1932 } 1933 } 1934 1935 if (lif->hwstamp_txq) { 1936 ionic_qcq_free(lif, lif->hwstamp_txq); 1937 devm_kfree(lif->ionic->dev, lif->hwstamp_txq); 1938 lif->hwstamp_txq = NULL; 1939 } 1940 1941 if (lif->hwstamp_rxq) { 1942 ionic_qcq_free(lif, lif->hwstamp_rxq); 1943 devm_kfree(lif->ionic->dev, lif->hwstamp_rxq); 1944 lif->hwstamp_rxq = NULL; 1945 } 1946 } 1947 1948 static int ionic_txrx_alloc(struct ionic_lif *lif) 1949 { 1950 unsigned int comp_sz, desc_sz, num_desc, sg_desc_sz; 1951 unsigned int flags, i; 1952 int err = 0; 1953 1954 num_desc = lif->ntxq_descs; 1955 desc_sz = sizeof(struct ionic_txq_desc); 1956 comp_sz = sizeof(struct ionic_txq_comp); 1957 1958 if (lif->qtype_info[IONIC_QTYPE_TXQ].version >= 1 && 1959 lif->qtype_info[IONIC_QTYPE_TXQ].sg_desc_sz == 1960 sizeof(struct ionic_txq_sg_desc_v1)) 1961 sg_desc_sz = sizeof(struct ionic_txq_sg_desc_v1); 1962 else 1963 sg_desc_sz = sizeof(struct ionic_txq_sg_desc); 1964 1965 flags = IONIC_QCQ_F_TX_STATS | IONIC_QCQ_F_SG; 1966 if (test_bit(IONIC_LIF_F_SPLIT_INTR, lif->state)) 1967 flags |= IONIC_QCQ_F_INTR; 1968 for (i = 0; i < lif->nxqs; i++) { 1969 err = ionic_qcq_alloc(lif, IONIC_QTYPE_TXQ, i, "tx", flags, 1970 num_desc, desc_sz, comp_sz, sg_desc_sz, 1971 lif->kern_pid, &lif->txqcqs[i]); 1972 if (err) 1973 goto err_out; 1974 1975 if (flags & IONIC_QCQ_F_INTR) { 1976 ionic_intr_coal_init(lif->ionic->idev.intr_ctrl, 1977 lif->txqcqs[i]->intr.index, 1978 lif->tx_coalesce_hw); 1979 if (test_bit(IONIC_LIF_F_TX_DIM_INTR, lif->state)) 1980 lif->txqcqs[i]->intr.dim_coal_hw = lif->tx_coalesce_hw; 1981 } 1982 1983 ionic_debugfs_add_qcq(lif, lif->txqcqs[i]); 1984 } 1985 1986 flags = IONIC_QCQ_F_RX_STATS | IONIC_QCQ_F_SG | IONIC_QCQ_F_INTR; 1987 1988 num_desc = lif->nrxq_descs; 1989 desc_sz = sizeof(struct ionic_rxq_desc); 1990 comp_sz = sizeof(struct ionic_rxq_comp); 1991 sg_desc_sz = sizeof(struct ionic_rxq_sg_desc); 1992 1993 if (lif->rxq_features & IONIC_Q_F_2X_CQ_DESC) 1994 comp_sz *= 2; 1995 1996 for (i = 0; i < lif->nxqs; i++) { 1997 err = ionic_qcq_alloc(lif, IONIC_QTYPE_RXQ, i, "rx", flags, 1998 num_desc, desc_sz, comp_sz, sg_desc_sz, 1999 lif->kern_pid, &lif->rxqcqs[i]); 2000 if (err) 2001 goto err_out; 2002 2003 lif->rxqcqs[i]->q.features = lif->rxq_features; 2004 2005 ionic_intr_coal_init(lif->ionic->idev.intr_ctrl, 2006 lif->rxqcqs[i]->intr.index, 2007 lif->rx_coalesce_hw); 2008 if (test_bit(IONIC_LIF_F_RX_DIM_INTR, lif->state)) 2009 lif->rxqcqs[i]->intr.dim_coal_hw = lif->rx_coalesce_hw; 2010 2011 if (!test_bit(IONIC_LIF_F_SPLIT_INTR, lif->state)) 2012 ionic_link_qcq_interrupts(lif->rxqcqs[i], 2013 lif->txqcqs[i]); 2014 2015 ionic_debugfs_add_qcq(lif, lif->rxqcqs[i]); 2016 } 2017 2018 return 0; 2019 2020 err_out: 2021 ionic_txrx_free(lif); 2022 2023 return err; 2024 } 2025 2026 static int ionic_txrx_init(struct ionic_lif *lif) 2027 { 2028 unsigned int i; 2029 int err; 2030 2031 for (i = 0; i < lif->nxqs; i++) { 2032 err = ionic_lif_txq_init(lif, lif->txqcqs[i]); 2033 if (err) 2034 goto err_out; 2035 2036 err = ionic_lif_rxq_init(lif, lif->rxqcqs[i]); 2037 if (err) { 2038 ionic_lif_qcq_deinit(lif, lif->txqcqs[i]); 2039 goto err_out; 2040 } 2041 } 2042 2043 if (lif->netdev->features & NETIF_F_RXHASH) 2044 ionic_lif_rss_init(lif); 2045 2046 ionic_lif_rx_mode(lif); 2047 2048 return 0; 2049 2050 err_out: 2051 while (i--) { 2052 ionic_lif_qcq_deinit(lif, lif->txqcqs[i]); 2053 ionic_lif_qcq_deinit(lif, lif->rxqcqs[i]); 2054 } 2055 2056 return err; 2057 } 2058 2059 static int ionic_txrx_enable(struct ionic_lif *lif) 2060 { 2061 int derr = 0; 2062 int i, err; 2063 2064 for (i = 0; i < lif->nxqs; i++) { 2065 if (!(lif->rxqcqs[i] && lif->txqcqs[i])) { 2066 dev_err(lif->ionic->dev, "%s: bad qcq %d\n", __func__, i); 2067 err = -ENXIO; 2068 goto err_out; 2069 } 2070 2071 ionic_rx_fill(&lif->rxqcqs[i]->q); 2072 err = ionic_qcq_enable(lif->rxqcqs[i]); 2073 if (err) 2074 goto err_out; 2075 2076 err = ionic_qcq_enable(lif->txqcqs[i]); 2077 if (err) { 2078 derr = ionic_qcq_disable(lif, lif->rxqcqs[i], err); 2079 goto err_out; 2080 } 2081 } 2082 2083 if (lif->hwstamp_rxq) { 2084 ionic_rx_fill(&lif->hwstamp_rxq->q); 2085 err = ionic_qcq_enable(lif->hwstamp_rxq); 2086 if (err) 2087 goto err_out_hwstamp_rx; 2088 } 2089 2090 if (lif->hwstamp_txq) { 2091 err = ionic_qcq_enable(lif->hwstamp_txq); 2092 if (err) 2093 goto err_out_hwstamp_tx; 2094 } 2095 2096 return 0; 2097 2098 err_out_hwstamp_tx: 2099 if (lif->hwstamp_rxq) 2100 derr = ionic_qcq_disable(lif, lif->hwstamp_rxq, derr); 2101 err_out_hwstamp_rx: 2102 i = lif->nxqs; 2103 err_out: 2104 while (i--) { 2105 derr = ionic_qcq_disable(lif, lif->txqcqs[i], derr); 2106 derr = ionic_qcq_disable(lif, lif->rxqcqs[i], derr); 2107 } 2108 2109 return err; 2110 } 2111 2112 static int ionic_start_queues(struct ionic_lif *lif) 2113 { 2114 int err; 2115 2116 if (test_bit(IONIC_LIF_F_BROKEN, lif->state)) 2117 return -EIO; 2118 2119 if (test_bit(IONIC_LIF_F_FW_RESET, lif->state)) 2120 return -EBUSY; 2121 2122 if (test_and_set_bit(IONIC_LIF_F_UP, lif->state)) 2123 return 0; 2124 2125 err = ionic_txrx_enable(lif); 2126 if (err) { 2127 clear_bit(IONIC_LIF_F_UP, lif->state); 2128 return err; 2129 } 2130 netif_tx_wake_all_queues(lif->netdev); 2131 2132 return 0; 2133 } 2134 2135 static int ionic_open(struct net_device *netdev) 2136 { 2137 struct ionic_lif *lif = netdev_priv(netdev); 2138 int err; 2139 2140 /* If recovering from a broken state, clear the bit and we'll try again */ 2141 if (test_and_clear_bit(IONIC_LIF_F_BROKEN, lif->state)) 2142 netdev_info(netdev, "clearing broken state\n"); 2143 2144 mutex_lock(&lif->queue_lock); 2145 2146 err = ionic_txrx_alloc(lif); 2147 if (err) 2148 goto err_unlock; 2149 2150 err = ionic_txrx_init(lif); 2151 if (err) 2152 goto err_txrx_free; 2153 2154 err = netif_set_real_num_tx_queues(netdev, lif->nxqs); 2155 if (err) 2156 goto err_txrx_deinit; 2157 2158 err = netif_set_real_num_rx_queues(netdev, lif->nxqs); 2159 if (err) 2160 goto err_txrx_deinit; 2161 2162 /* don't start the queues until we have link */ 2163 if (netif_carrier_ok(netdev)) { 2164 err = ionic_start_queues(lif); 2165 if (err) 2166 goto err_txrx_deinit; 2167 } 2168 2169 /* If hardware timestamping is enabled, but the queues were freed by 2170 * ionic_stop, those need to be reallocated and initialized, too. 2171 */ 2172 ionic_lif_hwstamp_recreate_queues(lif); 2173 2174 mutex_unlock(&lif->queue_lock); 2175 2176 return 0; 2177 2178 err_txrx_deinit: 2179 ionic_txrx_deinit(lif); 2180 err_txrx_free: 2181 ionic_txrx_free(lif); 2182 err_unlock: 2183 mutex_unlock(&lif->queue_lock); 2184 return err; 2185 } 2186 2187 static void ionic_stop_queues(struct ionic_lif *lif) 2188 { 2189 if (!test_and_clear_bit(IONIC_LIF_F_UP, lif->state)) 2190 return; 2191 2192 netif_tx_disable(lif->netdev); 2193 ionic_txrx_disable(lif); 2194 } 2195 2196 static int ionic_stop(struct net_device *netdev) 2197 { 2198 struct ionic_lif *lif = netdev_priv(netdev); 2199 2200 if (test_bit(IONIC_LIF_F_FW_RESET, lif->state)) 2201 return 0; 2202 2203 mutex_lock(&lif->queue_lock); 2204 ionic_stop_queues(lif); 2205 ionic_txrx_deinit(lif); 2206 ionic_txrx_free(lif); 2207 mutex_unlock(&lif->queue_lock); 2208 2209 return 0; 2210 } 2211 2212 static int ionic_eth_ioctl(struct net_device *netdev, struct ifreq *ifr, int cmd) 2213 { 2214 struct ionic_lif *lif = netdev_priv(netdev); 2215 2216 switch (cmd) { 2217 case SIOCSHWTSTAMP: 2218 return ionic_lif_hwstamp_set(lif, ifr); 2219 case SIOCGHWTSTAMP: 2220 return ionic_lif_hwstamp_get(lif, ifr); 2221 default: 2222 return -EOPNOTSUPP; 2223 } 2224 } 2225 2226 static int ionic_update_cached_vf_config(struct ionic *ionic, int vf) 2227 { 2228 struct ionic_vf_getattr_comp comp = { 0 }; 2229 int err; 2230 u8 attr; 2231 2232 attr = IONIC_VF_ATTR_VLAN; 2233 err = ionic_dev_cmd_vf_getattr(ionic, vf, attr, &comp); 2234 if (err && comp.status != IONIC_RC_ENOSUPP) 2235 goto err_out; 2236 if (!err) 2237 ionic->vfs[vf].vlanid = comp.vlanid; 2238 2239 attr = IONIC_VF_ATTR_SPOOFCHK; 2240 err = ionic_dev_cmd_vf_getattr(ionic, vf, attr, &comp); 2241 if (err && comp.status != IONIC_RC_ENOSUPP) 2242 goto err_out; 2243 if (!err) 2244 ionic->vfs[vf].spoofchk = comp.spoofchk; 2245 2246 attr = IONIC_VF_ATTR_LINKSTATE; 2247 err = ionic_dev_cmd_vf_getattr(ionic, vf, attr, &comp); 2248 if (err && comp.status != IONIC_RC_ENOSUPP) 2249 goto err_out; 2250 if (!err) { 2251 switch (comp.linkstate) { 2252 case IONIC_VF_LINK_STATUS_UP: 2253 ionic->vfs[vf].linkstate = IFLA_VF_LINK_STATE_ENABLE; 2254 break; 2255 case IONIC_VF_LINK_STATUS_DOWN: 2256 ionic->vfs[vf].linkstate = IFLA_VF_LINK_STATE_DISABLE; 2257 break; 2258 case IONIC_VF_LINK_STATUS_AUTO: 2259 ionic->vfs[vf].linkstate = IFLA_VF_LINK_STATE_AUTO; 2260 break; 2261 default: 2262 dev_warn(ionic->dev, "Unexpected link state %u\n", comp.linkstate); 2263 break; 2264 } 2265 } 2266 2267 attr = IONIC_VF_ATTR_RATE; 2268 err = ionic_dev_cmd_vf_getattr(ionic, vf, attr, &comp); 2269 if (err && comp.status != IONIC_RC_ENOSUPP) 2270 goto err_out; 2271 if (!err) 2272 ionic->vfs[vf].maxrate = comp.maxrate; 2273 2274 attr = IONIC_VF_ATTR_TRUST; 2275 err = ionic_dev_cmd_vf_getattr(ionic, vf, attr, &comp); 2276 if (err && comp.status != IONIC_RC_ENOSUPP) 2277 goto err_out; 2278 if (!err) 2279 ionic->vfs[vf].trusted = comp.trust; 2280 2281 attr = IONIC_VF_ATTR_MAC; 2282 err = ionic_dev_cmd_vf_getattr(ionic, vf, attr, &comp); 2283 if (err && comp.status != IONIC_RC_ENOSUPP) 2284 goto err_out; 2285 if (!err) 2286 ether_addr_copy(ionic->vfs[vf].macaddr, comp.macaddr); 2287 2288 err_out: 2289 if (err) 2290 dev_err(ionic->dev, "Failed to get %s for VF %d\n", 2291 ionic_vf_attr_to_str(attr), vf); 2292 2293 return err; 2294 } 2295 2296 static int ionic_get_vf_config(struct net_device *netdev, 2297 int vf, struct ifla_vf_info *ivf) 2298 { 2299 struct ionic_lif *lif = netdev_priv(netdev); 2300 struct ionic *ionic = lif->ionic; 2301 int ret = 0; 2302 2303 if (!netif_device_present(netdev)) 2304 return -EBUSY; 2305 2306 down_read(&ionic->vf_op_lock); 2307 2308 if (vf >= pci_num_vf(ionic->pdev) || !ionic->vfs) { 2309 ret = -EINVAL; 2310 } else { 2311 ivf->vf = vf; 2312 ivf->qos = 0; 2313 2314 ret = ionic_update_cached_vf_config(ionic, vf); 2315 if (!ret) { 2316 ivf->vlan = le16_to_cpu(ionic->vfs[vf].vlanid); 2317 ivf->spoofchk = ionic->vfs[vf].spoofchk; 2318 ivf->linkstate = ionic->vfs[vf].linkstate; 2319 ivf->max_tx_rate = le32_to_cpu(ionic->vfs[vf].maxrate); 2320 ivf->trusted = ionic->vfs[vf].trusted; 2321 ether_addr_copy(ivf->mac, ionic->vfs[vf].macaddr); 2322 } 2323 } 2324 2325 up_read(&ionic->vf_op_lock); 2326 return ret; 2327 } 2328 2329 static int ionic_get_vf_stats(struct net_device *netdev, int vf, 2330 struct ifla_vf_stats *vf_stats) 2331 { 2332 struct ionic_lif *lif = netdev_priv(netdev); 2333 struct ionic *ionic = lif->ionic; 2334 struct ionic_lif_stats *vs; 2335 int ret = 0; 2336 2337 if (!netif_device_present(netdev)) 2338 return -EBUSY; 2339 2340 down_read(&ionic->vf_op_lock); 2341 2342 if (vf >= pci_num_vf(ionic->pdev) || !ionic->vfs) { 2343 ret = -EINVAL; 2344 } else { 2345 memset(vf_stats, 0, sizeof(*vf_stats)); 2346 vs = &ionic->vfs[vf].stats; 2347 2348 vf_stats->rx_packets = le64_to_cpu(vs->rx_ucast_packets); 2349 vf_stats->tx_packets = le64_to_cpu(vs->tx_ucast_packets); 2350 vf_stats->rx_bytes = le64_to_cpu(vs->rx_ucast_bytes); 2351 vf_stats->tx_bytes = le64_to_cpu(vs->tx_ucast_bytes); 2352 vf_stats->broadcast = le64_to_cpu(vs->rx_bcast_packets); 2353 vf_stats->multicast = le64_to_cpu(vs->rx_mcast_packets); 2354 vf_stats->rx_dropped = le64_to_cpu(vs->rx_ucast_drop_packets) + 2355 le64_to_cpu(vs->rx_mcast_drop_packets) + 2356 le64_to_cpu(vs->rx_bcast_drop_packets); 2357 vf_stats->tx_dropped = le64_to_cpu(vs->tx_ucast_drop_packets) + 2358 le64_to_cpu(vs->tx_mcast_drop_packets) + 2359 le64_to_cpu(vs->tx_bcast_drop_packets); 2360 } 2361 2362 up_read(&ionic->vf_op_lock); 2363 return ret; 2364 } 2365 2366 static int ionic_set_vf_mac(struct net_device *netdev, int vf, u8 *mac) 2367 { 2368 struct ionic_vf_setattr_cmd vfc = { .attr = IONIC_VF_ATTR_MAC }; 2369 struct ionic_lif *lif = netdev_priv(netdev); 2370 struct ionic *ionic = lif->ionic; 2371 int ret; 2372 2373 if (!(is_zero_ether_addr(mac) || is_valid_ether_addr(mac))) 2374 return -EINVAL; 2375 2376 if (!netif_device_present(netdev)) 2377 return -EBUSY; 2378 2379 down_write(&ionic->vf_op_lock); 2380 2381 if (vf >= pci_num_vf(ionic->pdev) || !ionic->vfs) { 2382 ret = -EINVAL; 2383 } else { 2384 ether_addr_copy(vfc.macaddr, mac); 2385 dev_dbg(ionic->dev, "%s: vf %d macaddr %pM\n", 2386 __func__, vf, vfc.macaddr); 2387 2388 ret = ionic_set_vf_config(ionic, vf, &vfc); 2389 if (!ret) 2390 ether_addr_copy(ionic->vfs[vf].macaddr, mac); 2391 } 2392 2393 up_write(&ionic->vf_op_lock); 2394 return ret; 2395 } 2396 2397 static int ionic_set_vf_vlan(struct net_device *netdev, int vf, u16 vlan, 2398 u8 qos, __be16 proto) 2399 { 2400 struct ionic_vf_setattr_cmd vfc = { .attr = IONIC_VF_ATTR_VLAN }; 2401 struct ionic_lif *lif = netdev_priv(netdev); 2402 struct ionic *ionic = lif->ionic; 2403 int ret; 2404 2405 /* until someday when we support qos */ 2406 if (qos) 2407 return -EINVAL; 2408 2409 if (vlan > 4095) 2410 return -EINVAL; 2411 2412 if (proto != htons(ETH_P_8021Q)) 2413 return -EPROTONOSUPPORT; 2414 2415 if (!netif_device_present(netdev)) 2416 return -EBUSY; 2417 2418 down_write(&ionic->vf_op_lock); 2419 2420 if (vf >= pci_num_vf(ionic->pdev) || !ionic->vfs) { 2421 ret = -EINVAL; 2422 } else { 2423 vfc.vlanid = cpu_to_le16(vlan); 2424 dev_dbg(ionic->dev, "%s: vf %d vlan %d\n", 2425 __func__, vf, le16_to_cpu(vfc.vlanid)); 2426 2427 ret = ionic_set_vf_config(ionic, vf, &vfc); 2428 if (!ret) 2429 ionic->vfs[vf].vlanid = cpu_to_le16(vlan); 2430 } 2431 2432 up_write(&ionic->vf_op_lock); 2433 return ret; 2434 } 2435 2436 static int ionic_set_vf_rate(struct net_device *netdev, int vf, 2437 int tx_min, int tx_max) 2438 { 2439 struct ionic_vf_setattr_cmd vfc = { .attr = IONIC_VF_ATTR_RATE }; 2440 struct ionic_lif *lif = netdev_priv(netdev); 2441 struct ionic *ionic = lif->ionic; 2442 int ret; 2443 2444 /* setting the min just seems silly */ 2445 if (tx_min) 2446 return -EINVAL; 2447 2448 if (!netif_device_present(netdev)) 2449 return -EBUSY; 2450 2451 down_write(&ionic->vf_op_lock); 2452 2453 if (vf >= pci_num_vf(ionic->pdev) || !ionic->vfs) { 2454 ret = -EINVAL; 2455 } else { 2456 vfc.maxrate = cpu_to_le32(tx_max); 2457 dev_dbg(ionic->dev, "%s: vf %d maxrate %d\n", 2458 __func__, vf, le32_to_cpu(vfc.maxrate)); 2459 2460 ret = ionic_set_vf_config(ionic, vf, &vfc); 2461 if (!ret) 2462 lif->ionic->vfs[vf].maxrate = cpu_to_le32(tx_max); 2463 } 2464 2465 up_write(&ionic->vf_op_lock); 2466 return ret; 2467 } 2468 2469 static int ionic_set_vf_spoofchk(struct net_device *netdev, int vf, bool set) 2470 { 2471 struct ionic_vf_setattr_cmd vfc = { .attr = IONIC_VF_ATTR_SPOOFCHK }; 2472 struct ionic_lif *lif = netdev_priv(netdev); 2473 struct ionic *ionic = lif->ionic; 2474 int ret; 2475 2476 if (!netif_device_present(netdev)) 2477 return -EBUSY; 2478 2479 down_write(&ionic->vf_op_lock); 2480 2481 if (vf >= pci_num_vf(ionic->pdev) || !ionic->vfs) { 2482 ret = -EINVAL; 2483 } else { 2484 vfc.spoofchk = set; 2485 dev_dbg(ionic->dev, "%s: vf %d spoof %d\n", 2486 __func__, vf, vfc.spoofchk); 2487 2488 ret = ionic_set_vf_config(ionic, vf, &vfc); 2489 if (!ret) 2490 ionic->vfs[vf].spoofchk = set; 2491 } 2492 2493 up_write(&ionic->vf_op_lock); 2494 return ret; 2495 } 2496 2497 static int ionic_set_vf_trust(struct net_device *netdev, int vf, bool set) 2498 { 2499 struct ionic_vf_setattr_cmd vfc = { .attr = IONIC_VF_ATTR_TRUST }; 2500 struct ionic_lif *lif = netdev_priv(netdev); 2501 struct ionic *ionic = lif->ionic; 2502 int ret; 2503 2504 if (!netif_device_present(netdev)) 2505 return -EBUSY; 2506 2507 down_write(&ionic->vf_op_lock); 2508 2509 if (vf >= pci_num_vf(ionic->pdev) || !ionic->vfs) { 2510 ret = -EINVAL; 2511 } else { 2512 vfc.trust = set; 2513 dev_dbg(ionic->dev, "%s: vf %d trust %d\n", 2514 __func__, vf, vfc.trust); 2515 2516 ret = ionic_set_vf_config(ionic, vf, &vfc); 2517 if (!ret) 2518 ionic->vfs[vf].trusted = set; 2519 } 2520 2521 up_write(&ionic->vf_op_lock); 2522 return ret; 2523 } 2524 2525 static int ionic_set_vf_link_state(struct net_device *netdev, int vf, int set) 2526 { 2527 struct ionic_vf_setattr_cmd vfc = { .attr = IONIC_VF_ATTR_LINKSTATE }; 2528 struct ionic_lif *lif = netdev_priv(netdev); 2529 struct ionic *ionic = lif->ionic; 2530 u8 vfls; 2531 int ret; 2532 2533 switch (set) { 2534 case IFLA_VF_LINK_STATE_ENABLE: 2535 vfls = IONIC_VF_LINK_STATUS_UP; 2536 break; 2537 case IFLA_VF_LINK_STATE_DISABLE: 2538 vfls = IONIC_VF_LINK_STATUS_DOWN; 2539 break; 2540 case IFLA_VF_LINK_STATE_AUTO: 2541 vfls = IONIC_VF_LINK_STATUS_AUTO; 2542 break; 2543 default: 2544 return -EINVAL; 2545 } 2546 2547 if (!netif_device_present(netdev)) 2548 return -EBUSY; 2549 2550 down_write(&ionic->vf_op_lock); 2551 2552 if (vf >= pci_num_vf(ionic->pdev) || !ionic->vfs) { 2553 ret = -EINVAL; 2554 } else { 2555 vfc.linkstate = vfls; 2556 dev_dbg(ionic->dev, "%s: vf %d linkstate %d\n", 2557 __func__, vf, vfc.linkstate); 2558 2559 ret = ionic_set_vf_config(ionic, vf, &vfc); 2560 if (!ret) 2561 ionic->vfs[vf].linkstate = set; 2562 } 2563 2564 up_write(&ionic->vf_op_lock); 2565 return ret; 2566 } 2567 2568 static const struct net_device_ops ionic_netdev_ops = { 2569 .ndo_open = ionic_open, 2570 .ndo_stop = ionic_stop, 2571 .ndo_eth_ioctl = ionic_eth_ioctl, 2572 .ndo_start_xmit = ionic_start_xmit, 2573 .ndo_get_stats64 = ionic_get_stats64, 2574 .ndo_set_rx_mode = ionic_ndo_set_rx_mode, 2575 .ndo_set_features = ionic_set_features, 2576 .ndo_set_mac_address = ionic_set_mac_address, 2577 .ndo_validate_addr = eth_validate_addr, 2578 .ndo_tx_timeout = ionic_tx_timeout, 2579 .ndo_change_mtu = ionic_change_mtu, 2580 .ndo_vlan_rx_add_vid = ionic_vlan_rx_add_vid, 2581 .ndo_vlan_rx_kill_vid = ionic_vlan_rx_kill_vid, 2582 .ndo_set_vf_vlan = ionic_set_vf_vlan, 2583 .ndo_set_vf_trust = ionic_set_vf_trust, 2584 .ndo_set_vf_mac = ionic_set_vf_mac, 2585 .ndo_set_vf_rate = ionic_set_vf_rate, 2586 .ndo_set_vf_spoofchk = ionic_set_vf_spoofchk, 2587 .ndo_get_vf_config = ionic_get_vf_config, 2588 .ndo_set_vf_link_state = ionic_set_vf_link_state, 2589 .ndo_get_vf_stats = ionic_get_vf_stats, 2590 }; 2591 2592 static void ionic_swap_queues(struct ionic_qcq *a, struct ionic_qcq *b) 2593 { 2594 /* only swapping the queues, not the napi, flags, or other stuff */ 2595 swap(a->q.features, b->q.features); 2596 swap(a->q.num_descs, b->q.num_descs); 2597 swap(a->q.desc_size, b->q.desc_size); 2598 swap(a->q.base, b->q.base); 2599 swap(a->q.base_pa, b->q.base_pa); 2600 swap(a->q.info, b->q.info); 2601 swap(a->q_base, b->q_base); 2602 swap(a->q_base_pa, b->q_base_pa); 2603 swap(a->q_size, b->q_size); 2604 2605 swap(a->q.sg_desc_size, b->q.sg_desc_size); 2606 swap(a->q.sg_base, b->q.sg_base); 2607 swap(a->q.sg_base_pa, b->q.sg_base_pa); 2608 swap(a->sg_base, b->sg_base); 2609 swap(a->sg_base_pa, b->sg_base_pa); 2610 swap(a->sg_size, b->sg_size); 2611 2612 swap(a->cq.num_descs, b->cq.num_descs); 2613 swap(a->cq.desc_size, b->cq.desc_size); 2614 swap(a->cq.base, b->cq.base); 2615 swap(a->cq.base_pa, b->cq.base_pa); 2616 swap(a->cq.info, b->cq.info); 2617 swap(a->cq_base, b->cq_base); 2618 swap(a->cq_base_pa, b->cq_base_pa); 2619 swap(a->cq_size, b->cq_size); 2620 2621 ionic_debugfs_del_qcq(a); 2622 ionic_debugfs_add_qcq(a->q.lif, a); 2623 } 2624 2625 int ionic_reconfigure_queues(struct ionic_lif *lif, 2626 struct ionic_queue_params *qparam) 2627 { 2628 unsigned int comp_sz, desc_sz, num_desc, sg_desc_sz; 2629 struct ionic_qcq **tx_qcqs = NULL; 2630 struct ionic_qcq **rx_qcqs = NULL; 2631 unsigned int flags, i; 2632 int err = 0; 2633 2634 /* allocate temporary qcq arrays to hold new queue structs */ 2635 if (qparam->nxqs != lif->nxqs || qparam->ntxq_descs != lif->ntxq_descs) { 2636 tx_qcqs = devm_kcalloc(lif->ionic->dev, lif->ionic->ntxqs_per_lif, 2637 sizeof(struct ionic_qcq *), GFP_KERNEL); 2638 if (!tx_qcqs) { 2639 err = -ENOMEM; 2640 goto err_out; 2641 } 2642 } 2643 if (qparam->nxqs != lif->nxqs || 2644 qparam->nrxq_descs != lif->nrxq_descs || 2645 qparam->rxq_features != lif->rxq_features) { 2646 rx_qcqs = devm_kcalloc(lif->ionic->dev, lif->ionic->nrxqs_per_lif, 2647 sizeof(struct ionic_qcq *), GFP_KERNEL); 2648 if (!rx_qcqs) { 2649 err = -ENOMEM; 2650 goto err_out; 2651 } 2652 } 2653 2654 /* allocate new desc_info and rings, but leave the interrupt setup 2655 * until later so as to not mess with the still-running queues 2656 */ 2657 if (tx_qcqs) { 2658 num_desc = qparam->ntxq_descs; 2659 desc_sz = sizeof(struct ionic_txq_desc); 2660 comp_sz = sizeof(struct ionic_txq_comp); 2661 2662 if (lif->qtype_info[IONIC_QTYPE_TXQ].version >= 1 && 2663 lif->qtype_info[IONIC_QTYPE_TXQ].sg_desc_sz == 2664 sizeof(struct ionic_txq_sg_desc_v1)) 2665 sg_desc_sz = sizeof(struct ionic_txq_sg_desc_v1); 2666 else 2667 sg_desc_sz = sizeof(struct ionic_txq_sg_desc); 2668 2669 for (i = 0; i < qparam->nxqs; i++) { 2670 flags = lif->txqcqs[i]->flags & ~IONIC_QCQ_F_INTR; 2671 err = ionic_qcq_alloc(lif, IONIC_QTYPE_TXQ, i, "tx", flags, 2672 num_desc, desc_sz, comp_sz, sg_desc_sz, 2673 lif->kern_pid, &tx_qcqs[i]); 2674 if (err) 2675 goto err_out; 2676 } 2677 } 2678 2679 if (rx_qcqs) { 2680 num_desc = qparam->nrxq_descs; 2681 desc_sz = sizeof(struct ionic_rxq_desc); 2682 comp_sz = sizeof(struct ionic_rxq_comp); 2683 sg_desc_sz = sizeof(struct ionic_rxq_sg_desc); 2684 2685 if (qparam->rxq_features & IONIC_Q_F_2X_CQ_DESC) 2686 comp_sz *= 2; 2687 2688 for (i = 0; i < qparam->nxqs; i++) { 2689 flags = lif->rxqcqs[i]->flags & ~IONIC_QCQ_F_INTR; 2690 err = ionic_qcq_alloc(lif, IONIC_QTYPE_RXQ, i, "rx", flags, 2691 num_desc, desc_sz, comp_sz, sg_desc_sz, 2692 lif->kern_pid, &rx_qcqs[i]); 2693 if (err) 2694 goto err_out; 2695 2696 rx_qcqs[i]->q.features = qparam->rxq_features; 2697 } 2698 } 2699 2700 /* stop and clean the queues */ 2701 ionic_stop_queues_reconfig(lif); 2702 2703 if (qparam->nxqs != lif->nxqs) { 2704 err = netif_set_real_num_tx_queues(lif->netdev, qparam->nxqs); 2705 if (err) 2706 goto err_out_reinit_unlock; 2707 err = netif_set_real_num_rx_queues(lif->netdev, qparam->nxqs); 2708 if (err) { 2709 netif_set_real_num_tx_queues(lif->netdev, lif->nxqs); 2710 goto err_out_reinit_unlock; 2711 } 2712 } 2713 2714 /* swap new desc_info and rings, keeping existing interrupt config */ 2715 if (tx_qcqs) { 2716 lif->ntxq_descs = qparam->ntxq_descs; 2717 for (i = 0; i < qparam->nxqs; i++) 2718 ionic_swap_queues(lif->txqcqs[i], tx_qcqs[i]); 2719 } 2720 2721 if (rx_qcqs) { 2722 lif->nrxq_descs = qparam->nrxq_descs; 2723 for (i = 0; i < qparam->nxqs; i++) 2724 ionic_swap_queues(lif->rxqcqs[i], rx_qcqs[i]); 2725 } 2726 2727 /* if we need to change the interrupt layout, this is the time */ 2728 if (qparam->intr_split != test_bit(IONIC_LIF_F_SPLIT_INTR, lif->state) || 2729 qparam->nxqs != lif->nxqs) { 2730 if (qparam->intr_split) { 2731 set_bit(IONIC_LIF_F_SPLIT_INTR, lif->state); 2732 } else { 2733 clear_bit(IONIC_LIF_F_SPLIT_INTR, lif->state); 2734 lif->tx_coalesce_usecs = lif->rx_coalesce_usecs; 2735 lif->tx_coalesce_hw = lif->rx_coalesce_hw; 2736 } 2737 2738 /* clear existing interrupt assignments */ 2739 for (i = 0; i < lif->ionic->ntxqs_per_lif; i++) { 2740 ionic_qcq_intr_free(lif, lif->txqcqs[i]); 2741 ionic_qcq_intr_free(lif, lif->rxqcqs[i]); 2742 } 2743 2744 /* re-assign the interrupts */ 2745 for (i = 0; i < qparam->nxqs; i++) { 2746 lif->rxqcqs[i]->flags |= IONIC_QCQ_F_INTR; 2747 err = ionic_alloc_qcq_interrupt(lif, lif->rxqcqs[i]); 2748 ionic_intr_coal_init(lif->ionic->idev.intr_ctrl, 2749 lif->rxqcqs[i]->intr.index, 2750 lif->rx_coalesce_hw); 2751 2752 if (qparam->intr_split) { 2753 lif->txqcqs[i]->flags |= IONIC_QCQ_F_INTR; 2754 err = ionic_alloc_qcq_interrupt(lif, lif->txqcqs[i]); 2755 ionic_intr_coal_init(lif->ionic->idev.intr_ctrl, 2756 lif->txqcqs[i]->intr.index, 2757 lif->tx_coalesce_hw); 2758 if (test_bit(IONIC_LIF_F_TX_DIM_INTR, lif->state)) 2759 lif->txqcqs[i]->intr.dim_coal_hw = lif->tx_coalesce_hw; 2760 } else { 2761 lif->txqcqs[i]->flags &= ~IONIC_QCQ_F_INTR; 2762 ionic_link_qcq_interrupts(lif->rxqcqs[i], lif->txqcqs[i]); 2763 } 2764 } 2765 } 2766 2767 /* now we can rework the debugfs mappings */ 2768 if (tx_qcqs) { 2769 for (i = 0; i < qparam->nxqs; i++) { 2770 ionic_debugfs_del_qcq(lif->txqcqs[i]); 2771 ionic_debugfs_add_qcq(lif, lif->txqcqs[i]); 2772 } 2773 } 2774 2775 if (rx_qcqs) { 2776 for (i = 0; i < qparam->nxqs; i++) { 2777 ionic_debugfs_del_qcq(lif->rxqcqs[i]); 2778 ionic_debugfs_add_qcq(lif, lif->rxqcqs[i]); 2779 } 2780 } 2781 2782 swap(lif->nxqs, qparam->nxqs); 2783 swap(lif->rxq_features, qparam->rxq_features); 2784 2785 err_out_reinit_unlock: 2786 /* re-init the queues, but don't lose an error code */ 2787 if (err) 2788 ionic_start_queues_reconfig(lif); 2789 else 2790 err = ionic_start_queues_reconfig(lif); 2791 2792 err_out: 2793 /* free old allocs without cleaning intr */ 2794 for (i = 0; i < qparam->nxqs; i++) { 2795 if (tx_qcqs && tx_qcqs[i]) { 2796 tx_qcqs[i]->flags &= ~IONIC_QCQ_F_INTR; 2797 ionic_qcq_free(lif, tx_qcqs[i]); 2798 devm_kfree(lif->ionic->dev, tx_qcqs[i]); 2799 tx_qcqs[i] = NULL; 2800 } 2801 if (rx_qcqs && rx_qcqs[i]) { 2802 rx_qcqs[i]->flags &= ~IONIC_QCQ_F_INTR; 2803 ionic_qcq_free(lif, rx_qcqs[i]); 2804 devm_kfree(lif->ionic->dev, rx_qcqs[i]); 2805 rx_qcqs[i] = NULL; 2806 } 2807 } 2808 2809 /* free q array */ 2810 if (rx_qcqs) { 2811 devm_kfree(lif->ionic->dev, rx_qcqs); 2812 rx_qcqs = NULL; 2813 } 2814 if (tx_qcqs) { 2815 devm_kfree(lif->ionic->dev, tx_qcqs); 2816 tx_qcqs = NULL; 2817 } 2818 2819 /* clean the unused dma and info allocations when new set is smaller 2820 * than the full array, but leave the qcq shells in place 2821 */ 2822 for (i = lif->nxqs; i < lif->ionic->ntxqs_per_lif; i++) { 2823 lif->txqcqs[i]->flags &= ~IONIC_QCQ_F_INTR; 2824 ionic_qcq_free(lif, lif->txqcqs[i]); 2825 2826 lif->rxqcqs[i]->flags &= ~IONIC_QCQ_F_INTR; 2827 ionic_qcq_free(lif, lif->rxqcqs[i]); 2828 } 2829 2830 if (err) 2831 netdev_info(lif->netdev, "%s: failed %d\n", __func__, err); 2832 2833 return err; 2834 } 2835 2836 int ionic_lif_alloc(struct ionic *ionic) 2837 { 2838 struct device *dev = ionic->dev; 2839 union ionic_lif_identity *lid; 2840 struct net_device *netdev; 2841 struct ionic_lif *lif; 2842 int tbl_sz; 2843 int err; 2844 2845 lid = kzalloc(sizeof(*lid), GFP_KERNEL); 2846 if (!lid) 2847 return -ENOMEM; 2848 2849 netdev = alloc_etherdev_mqs(sizeof(*lif), 2850 ionic->ntxqs_per_lif, ionic->ntxqs_per_lif); 2851 if (!netdev) { 2852 dev_err(dev, "Cannot allocate netdev, aborting\n"); 2853 err = -ENOMEM; 2854 goto err_out_free_lid; 2855 } 2856 2857 SET_NETDEV_DEV(netdev, dev); 2858 2859 lif = netdev_priv(netdev); 2860 lif->netdev = netdev; 2861 ionic->lif = lif; 2862 netdev->netdev_ops = &ionic_netdev_ops; 2863 ionic_ethtool_set_ops(netdev); 2864 2865 netdev->watchdog_timeo = 2 * HZ; 2866 netif_carrier_off(netdev); 2867 2868 lif->identity = lid; 2869 lif->lif_type = IONIC_LIF_TYPE_CLASSIC; 2870 err = ionic_lif_identify(ionic, lif->lif_type, lif->identity); 2871 if (err) { 2872 dev_err(ionic->dev, "Cannot identify type %d: %d\n", 2873 lif->lif_type, err); 2874 goto err_out_free_netdev; 2875 } 2876 lif->netdev->min_mtu = max_t(unsigned int, ETH_MIN_MTU, 2877 le32_to_cpu(lif->identity->eth.min_frame_size)); 2878 lif->netdev->max_mtu = 2879 le32_to_cpu(lif->identity->eth.max_frame_size) - ETH_HLEN - VLAN_HLEN; 2880 2881 lif->neqs = ionic->neqs_per_lif; 2882 lif->nxqs = ionic->ntxqs_per_lif; 2883 2884 lif->ionic = ionic; 2885 lif->index = 0; 2886 2887 if (is_kdump_kernel()) { 2888 lif->ntxq_descs = IONIC_MIN_TXRX_DESC; 2889 lif->nrxq_descs = IONIC_MIN_TXRX_DESC; 2890 } else { 2891 lif->ntxq_descs = IONIC_DEF_TXRX_DESC; 2892 lif->nrxq_descs = IONIC_DEF_TXRX_DESC; 2893 } 2894 2895 /* Convert the default coalesce value to actual hw resolution */ 2896 lif->rx_coalesce_usecs = IONIC_ITR_COAL_USEC_DEFAULT; 2897 lif->rx_coalesce_hw = ionic_coal_usec_to_hw(lif->ionic, 2898 lif->rx_coalesce_usecs); 2899 lif->tx_coalesce_usecs = lif->rx_coalesce_usecs; 2900 lif->tx_coalesce_hw = lif->rx_coalesce_hw; 2901 set_bit(IONIC_LIF_F_RX_DIM_INTR, lif->state); 2902 set_bit(IONIC_LIF_F_TX_DIM_INTR, lif->state); 2903 2904 snprintf(lif->name, sizeof(lif->name), "lif%u", lif->index); 2905 2906 mutex_init(&lif->queue_lock); 2907 mutex_init(&lif->config_lock); 2908 2909 spin_lock_init(&lif->adminq_lock); 2910 2911 spin_lock_init(&lif->deferred.lock); 2912 INIT_LIST_HEAD(&lif->deferred.list); 2913 INIT_WORK(&lif->deferred.work, ionic_lif_deferred_work); 2914 2915 /* allocate lif info */ 2916 lif->info_sz = ALIGN(sizeof(*lif->info), PAGE_SIZE); 2917 lif->info = dma_alloc_coherent(dev, lif->info_sz, 2918 &lif->info_pa, GFP_KERNEL); 2919 if (!lif->info) { 2920 dev_err(dev, "Failed to allocate lif info, aborting\n"); 2921 err = -ENOMEM; 2922 goto err_out_free_mutex; 2923 } 2924 2925 ionic_debugfs_add_lif(lif); 2926 2927 /* allocate control queues and txrx queue arrays */ 2928 ionic_lif_queue_identify(lif); 2929 err = ionic_qcqs_alloc(lif); 2930 if (err) 2931 goto err_out_free_lif_info; 2932 2933 /* allocate rss indirection table */ 2934 tbl_sz = le16_to_cpu(lif->ionic->ident.lif.eth.rss_ind_tbl_sz); 2935 lif->rss_ind_tbl_sz = sizeof(*lif->rss_ind_tbl) * tbl_sz; 2936 lif->rss_ind_tbl = dma_alloc_coherent(dev, lif->rss_ind_tbl_sz, 2937 &lif->rss_ind_tbl_pa, 2938 GFP_KERNEL); 2939 2940 if (!lif->rss_ind_tbl) { 2941 err = -ENOMEM; 2942 dev_err(dev, "Failed to allocate rss indirection table, aborting\n"); 2943 goto err_out_free_qcqs; 2944 } 2945 netdev_rss_key_fill(lif->rss_hash_key, IONIC_RSS_HASH_KEY_SIZE); 2946 2947 ionic_lif_alloc_phc(lif); 2948 2949 return 0; 2950 2951 err_out_free_qcqs: 2952 ionic_qcqs_free(lif); 2953 err_out_free_lif_info: 2954 dma_free_coherent(dev, lif->info_sz, lif->info, lif->info_pa); 2955 lif->info = NULL; 2956 lif->info_pa = 0; 2957 err_out_free_mutex: 2958 mutex_destroy(&lif->config_lock); 2959 mutex_destroy(&lif->queue_lock); 2960 err_out_free_netdev: 2961 free_netdev(lif->netdev); 2962 lif = NULL; 2963 err_out_free_lid: 2964 kfree(lid); 2965 2966 return err; 2967 } 2968 2969 static void ionic_lif_reset(struct ionic_lif *lif) 2970 { 2971 struct ionic_dev *idev = &lif->ionic->idev; 2972 2973 mutex_lock(&lif->ionic->dev_cmd_lock); 2974 ionic_dev_cmd_lif_reset(idev, lif->index); 2975 ionic_dev_cmd_wait(lif->ionic, DEVCMD_TIMEOUT); 2976 mutex_unlock(&lif->ionic->dev_cmd_lock); 2977 } 2978 2979 static void ionic_lif_handle_fw_down(struct ionic_lif *lif) 2980 { 2981 struct ionic *ionic = lif->ionic; 2982 2983 if (test_and_set_bit(IONIC_LIF_F_FW_RESET, lif->state)) 2984 return; 2985 2986 dev_info(ionic->dev, "FW Down: Stopping LIFs\n"); 2987 2988 netif_device_detach(lif->netdev); 2989 2990 mutex_lock(&lif->queue_lock); 2991 if (test_bit(IONIC_LIF_F_UP, lif->state)) { 2992 dev_info(ionic->dev, "Surprise FW stop, stopping queues\n"); 2993 ionic_stop_queues(lif); 2994 } 2995 2996 if (netif_running(lif->netdev)) { 2997 ionic_txrx_deinit(lif); 2998 ionic_txrx_free(lif); 2999 } 3000 ionic_lif_deinit(lif); 3001 ionic_reset(ionic); 3002 ionic_qcqs_free(lif); 3003 3004 mutex_unlock(&lif->queue_lock); 3005 3006 clear_bit(IONIC_LIF_F_FW_STOPPING, lif->state); 3007 dev_info(ionic->dev, "FW Down: LIFs stopped\n"); 3008 } 3009 3010 static void ionic_lif_handle_fw_up(struct ionic_lif *lif) 3011 { 3012 struct ionic *ionic = lif->ionic; 3013 int err; 3014 3015 if (!test_bit(IONIC_LIF_F_FW_RESET, lif->state)) 3016 return; 3017 3018 dev_info(ionic->dev, "FW Up: restarting LIFs\n"); 3019 3020 ionic_init_devinfo(ionic); 3021 err = ionic_identify(ionic); 3022 if (err) 3023 goto err_out; 3024 err = ionic_port_identify(ionic); 3025 if (err) 3026 goto err_out; 3027 err = ionic_port_init(ionic); 3028 if (err) 3029 goto err_out; 3030 3031 mutex_lock(&lif->queue_lock); 3032 3033 if (test_and_clear_bit(IONIC_LIF_F_BROKEN, lif->state)) 3034 dev_info(ionic->dev, "FW Up: clearing broken state\n"); 3035 3036 err = ionic_qcqs_alloc(lif); 3037 if (err) 3038 goto err_unlock; 3039 3040 err = ionic_lif_init(lif); 3041 if (err) 3042 goto err_qcqs_free; 3043 3044 if (lif->registered) 3045 ionic_lif_set_netdev_info(lif); 3046 3047 ionic_rx_filter_replay(lif); 3048 3049 if (netif_running(lif->netdev)) { 3050 err = ionic_txrx_alloc(lif); 3051 if (err) 3052 goto err_lifs_deinit; 3053 3054 err = ionic_txrx_init(lif); 3055 if (err) 3056 goto err_txrx_free; 3057 } 3058 3059 mutex_unlock(&lif->queue_lock); 3060 3061 clear_bit(IONIC_LIF_F_FW_RESET, lif->state); 3062 ionic_link_status_check_request(lif, CAN_SLEEP); 3063 netif_device_attach(lif->netdev); 3064 dev_info(ionic->dev, "FW Up: LIFs restarted\n"); 3065 3066 /* restore the hardware timestamping queues */ 3067 ionic_lif_hwstamp_replay(lif); 3068 3069 return; 3070 3071 err_txrx_free: 3072 ionic_txrx_free(lif); 3073 err_lifs_deinit: 3074 ionic_lif_deinit(lif); 3075 err_qcqs_free: 3076 ionic_qcqs_free(lif); 3077 err_unlock: 3078 mutex_unlock(&lif->queue_lock); 3079 err_out: 3080 dev_err(ionic->dev, "FW Up: LIFs restart failed - err %d\n", err); 3081 } 3082 3083 void ionic_lif_free(struct ionic_lif *lif) 3084 { 3085 struct device *dev = lif->ionic->dev; 3086 3087 ionic_lif_free_phc(lif); 3088 3089 /* free rss indirection table */ 3090 dma_free_coherent(dev, lif->rss_ind_tbl_sz, lif->rss_ind_tbl, 3091 lif->rss_ind_tbl_pa); 3092 lif->rss_ind_tbl = NULL; 3093 lif->rss_ind_tbl_pa = 0; 3094 3095 /* free queues */ 3096 ionic_qcqs_free(lif); 3097 if (!test_bit(IONIC_LIF_F_FW_RESET, lif->state)) 3098 ionic_lif_reset(lif); 3099 3100 /* free lif info */ 3101 kfree(lif->identity); 3102 dma_free_coherent(dev, lif->info_sz, lif->info, lif->info_pa); 3103 lif->info = NULL; 3104 lif->info_pa = 0; 3105 3106 /* unmap doorbell page */ 3107 ionic_bus_unmap_dbpage(lif->ionic, lif->kern_dbpage); 3108 lif->kern_dbpage = NULL; 3109 3110 mutex_destroy(&lif->config_lock); 3111 mutex_destroy(&lif->queue_lock); 3112 3113 /* free netdev & lif */ 3114 ionic_debugfs_del_lif(lif); 3115 free_netdev(lif->netdev); 3116 } 3117 3118 void ionic_lif_deinit(struct ionic_lif *lif) 3119 { 3120 if (!test_and_clear_bit(IONIC_LIF_F_INITED, lif->state)) 3121 return; 3122 3123 if (!test_bit(IONIC_LIF_F_FW_RESET, lif->state)) { 3124 cancel_work_sync(&lif->deferred.work); 3125 cancel_work_sync(&lif->tx_timeout_work); 3126 ionic_rx_filters_deinit(lif); 3127 if (lif->netdev->features & NETIF_F_RXHASH) 3128 ionic_lif_rss_deinit(lif); 3129 } 3130 3131 napi_disable(&lif->adminqcq->napi); 3132 ionic_lif_qcq_deinit(lif, lif->notifyqcq); 3133 ionic_lif_qcq_deinit(lif, lif->adminqcq); 3134 3135 ionic_lif_reset(lif); 3136 } 3137 3138 static int ionic_lif_adminq_init(struct ionic_lif *lif) 3139 { 3140 struct device *dev = lif->ionic->dev; 3141 struct ionic_q_init_comp comp; 3142 struct ionic_dev *idev; 3143 struct ionic_qcq *qcq; 3144 struct ionic_queue *q; 3145 int err; 3146 3147 idev = &lif->ionic->idev; 3148 qcq = lif->adminqcq; 3149 q = &qcq->q; 3150 3151 mutex_lock(&lif->ionic->dev_cmd_lock); 3152 ionic_dev_cmd_adminq_init(idev, qcq, lif->index, qcq->intr.index); 3153 err = ionic_dev_cmd_wait(lif->ionic, DEVCMD_TIMEOUT); 3154 ionic_dev_cmd_comp(idev, (union ionic_dev_cmd_comp *)&comp); 3155 mutex_unlock(&lif->ionic->dev_cmd_lock); 3156 if (err) { 3157 netdev_err(lif->netdev, "adminq init failed %d\n", err); 3158 return err; 3159 } 3160 3161 q->hw_type = comp.hw_type; 3162 q->hw_index = le32_to_cpu(comp.hw_index); 3163 q->dbval = IONIC_DBELL_QID(q->hw_index); 3164 3165 dev_dbg(dev, "adminq->hw_type %d\n", q->hw_type); 3166 dev_dbg(dev, "adminq->hw_index %d\n", q->hw_index); 3167 3168 netif_napi_add(lif->netdev, &qcq->napi, ionic_adminq_napi, 3169 NAPI_POLL_WEIGHT); 3170 3171 napi_enable(&qcq->napi); 3172 3173 if (qcq->flags & IONIC_QCQ_F_INTR) 3174 ionic_intr_mask(idev->intr_ctrl, qcq->intr.index, 3175 IONIC_INTR_MASK_CLEAR); 3176 3177 qcq->flags |= IONIC_QCQ_F_INITED; 3178 3179 return 0; 3180 } 3181 3182 static int ionic_lif_notifyq_init(struct ionic_lif *lif) 3183 { 3184 struct ionic_qcq *qcq = lif->notifyqcq; 3185 struct device *dev = lif->ionic->dev; 3186 struct ionic_queue *q = &qcq->q; 3187 int err; 3188 3189 struct ionic_admin_ctx ctx = { 3190 .work = COMPLETION_INITIALIZER_ONSTACK(ctx.work), 3191 .cmd.q_init = { 3192 .opcode = IONIC_CMD_Q_INIT, 3193 .lif_index = cpu_to_le16(lif->index), 3194 .type = q->type, 3195 .ver = lif->qtype_info[q->type].version, 3196 .index = cpu_to_le32(q->index), 3197 .flags = cpu_to_le16(IONIC_QINIT_F_IRQ | 3198 IONIC_QINIT_F_ENA), 3199 .intr_index = cpu_to_le16(lif->adminqcq->intr.index), 3200 .pid = cpu_to_le16(q->pid), 3201 .ring_size = ilog2(q->num_descs), 3202 .ring_base = cpu_to_le64(q->base_pa), 3203 } 3204 }; 3205 3206 dev_dbg(dev, "notifyq_init.pid %d\n", ctx.cmd.q_init.pid); 3207 dev_dbg(dev, "notifyq_init.index %d\n", ctx.cmd.q_init.index); 3208 dev_dbg(dev, "notifyq_init.ring_base 0x%llx\n", ctx.cmd.q_init.ring_base); 3209 dev_dbg(dev, "notifyq_init.ring_size %d\n", ctx.cmd.q_init.ring_size); 3210 3211 err = ionic_adminq_post_wait(lif, &ctx); 3212 if (err) 3213 return err; 3214 3215 lif->last_eid = 0; 3216 q->hw_type = ctx.comp.q_init.hw_type; 3217 q->hw_index = le32_to_cpu(ctx.comp.q_init.hw_index); 3218 q->dbval = IONIC_DBELL_QID(q->hw_index); 3219 3220 dev_dbg(dev, "notifyq->hw_type %d\n", q->hw_type); 3221 dev_dbg(dev, "notifyq->hw_index %d\n", q->hw_index); 3222 3223 /* preset the callback info */ 3224 q->info[0].cb_arg = lif; 3225 3226 qcq->flags |= IONIC_QCQ_F_INITED; 3227 3228 return 0; 3229 } 3230 3231 static int ionic_station_set(struct ionic_lif *lif) 3232 { 3233 struct net_device *netdev = lif->netdev; 3234 struct ionic_admin_ctx ctx = { 3235 .work = COMPLETION_INITIALIZER_ONSTACK(ctx.work), 3236 .cmd.lif_getattr = { 3237 .opcode = IONIC_CMD_LIF_GETATTR, 3238 .index = cpu_to_le16(lif->index), 3239 .attr = IONIC_LIF_ATTR_MAC, 3240 }, 3241 }; 3242 u8 mac_address[ETH_ALEN]; 3243 struct sockaddr addr; 3244 int err; 3245 3246 err = ionic_adminq_post_wait(lif, &ctx); 3247 if (err) 3248 return err; 3249 netdev_dbg(lif->netdev, "found initial MAC addr %pM\n", 3250 ctx.comp.lif_getattr.mac); 3251 ether_addr_copy(mac_address, ctx.comp.lif_getattr.mac); 3252 3253 if (is_zero_ether_addr(mac_address)) { 3254 eth_hw_addr_random(netdev); 3255 netdev_dbg(netdev, "Random Mac generated: %pM\n", netdev->dev_addr); 3256 ether_addr_copy(mac_address, netdev->dev_addr); 3257 3258 err = ionic_program_mac(lif, mac_address); 3259 if (err < 0) 3260 return err; 3261 3262 if (err > 0) { 3263 netdev_dbg(netdev, "%s:SET/GET ATTR Mac are not same-due to old FW running\n", 3264 __func__); 3265 return 0; 3266 } 3267 } 3268 3269 if (!is_zero_ether_addr(netdev->dev_addr)) { 3270 /* If the netdev mac is non-zero and doesn't match the default 3271 * device address, it was set by something earlier and we're 3272 * likely here again after a fw-upgrade reset. We need to be 3273 * sure the netdev mac is in our filter list. 3274 */ 3275 if (!ether_addr_equal(mac_address, netdev->dev_addr)) 3276 ionic_lif_addr_add(lif, netdev->dev_addr); 3277 } else { 3278 /* Update the netdev mac with the device's mac */ 3279 ether_addr_copy(addr.sa_data, mac_address); 3280 addr.sa_family = AF_INET; 3281 err = eth_prepare_mac_addr_change(netdev, &addr); 3282 if (err) { 3283 netdev_warn(lif->netdev, "ignoring bad MAC addr from NIC %pM - err %d\n", 3284 addr.sa_data, err); 3285 return 0; 3286 } 3287 3288 eth_commit_mac_addr_change(netdev, &addr); 3289 } 3290 3291 netdev_dbg(lif->netdev, "adding station MAC addr %pM\n", 3292 netdev->dev_addr); 3293 ionic_lif_addr_add(lif, netdev->dev_addr); 3294 3295 return 0; 3296 } 3297 3298 int ionic_lif_init(struct ionic_lif *lif) 3299 { 3300 struct ionic_dev *idev = &lif->ionic->idev; 3301 struct device *dev = lif->ionic->dev; 3302 struct ionic_lif_init_comp comp; 3303 int dbpage_num; 3304 int err; 3305 3306 mutex_lock(&lif->ionic->dev_cmd_lock); 3307 ionic_dev_cmd_lif_init(idev, lif->index, lif->info_pa); 3308 err = ionic_dev_cmd_wait(lif->ionic, DEVCMD_TIMEOUT); 3309 ionic_dev_cmd_comp(idev, (union ionic_dev_cmd_comp *)&comp); 3310 mutex_unlock(&lif->ionic->dev_cmd_lock); 3311 if (err) 3312 return err; 3313 3314 lif->hw_index = le16_to_cpu(comp.hw_index); 3315 3316 /* now that we have the hw_index we can figure out our doorbell page */ 3317 lif->dbid_count = le32_to_cpu(lif->ionic->ident.dev.ndbpgs_per_lif); 3318 if (!lif->dbid_count) { 3319 dev_err(dev, "No doorbell pages, aborting\n"); 3320 return -EINVAL; 3321 } 3322 3323 lif->kern_pid = 0; 3324 dbpage_num = ionic_db_page_num(lif, lif->kern_pid); 3325 lif->kern_dbpage = ionic_bus_map_dbpage(lif->ionic, dbpage_num); 3326 if (!lif->kern_dbpage) { 3327 dev_err(dev, "Cannot map dbpage, aborting\n"); 3328 return -ENOMEM; 3329 } 3330 3331 err = ionic_lif_adminq_init(lif); 3332 if (err) 3333 goto err_out_adminq_deinit; 3334 3335 if (lif->ionic->nnqs_per_lif) { 3336 err = ionic_lif_notifyq_init(lif); 3337 if (err) 3338 goto err_out_notifyq_deinit; 3339 } 3340 3341 err = ionic_init_nic_features(lif); 3342 if (err) 3343 goto err_out_notifyq_deinit; 3344 3345 if (!test_bit(IONIC_LIF_F_FW_RESET, lif->state)) { 3346 err = ionic_rx_filters_init(lif); 3347 if (err) 3348 goto err_out_notifyq_deinit; 3349 } 3350 3351 err = ionic_station_set(lif); 3352 if (err) 3353 goto err_out_notifyq_deinit; 3354 3355 lif->rx_copybreak = IONIC_RX_COPYBREAK_DEFAULT; 3356 3357 set_bit(IONIC_LIF_F_INITED, lif->state); 3358 3359 INIT_WORK(&lif->tx_timeout_work, ionic_tx_timeout_work); 3360 3361 return 0; 3362 3363 err_out_notifyq_deinit: 3364 napi_disable(&lif->adminqcq->napi); 3365 ionic_lif_qcq_deinit(lif, lif->notifyqcq); 3366 err_out_adminq_deinit: 3367 ionic_lif_qcq_deinit(lif, lif->adminqcq); 3368 ionic_lif_reset(lif); 3369 ionic_bus_unmap_dbpage(lif->ionic, lif->kern_dbpage); 3370 lif->kern_dbpage = NULL; 3371 3372 return err; 3373 } 3374 3375 static void ionic_lif_notify_work(struct work_struct *ws) 3376 { 3377 } 3378 3379 static void ionic_lif_set_netdev_info(struct ionic_lif *lif) 3380 { 3381 struct ionic_admin_ctx ctx = { 3382 .work = COMPLETION_INITIALIZER_ONSTACK(ctx.work), 3383 .cmd.lif_setattr = { 3384 .opcode = IONIC_CMD_LIF_SETATTR, 3385 .index = cpu_to_le16(lif->index), 3386 .attr = IONIC_LIF_ATTR_NAME, 3387 }, 3388 }; 3389 3390 strscpy(ctx.cmd.lif_setattr.name, lif->netdev->name, 3391 sizeof(ctx.cmd.lif_setattr.name)); 3392 3393 ionic_adminq_post_wait(lif, &ctx); 3394 } 3395 3396 static struct ionic_lif *ionic_netdev_lif(struct net_device *netdev) 3397 { 3398 if (!netdev || netdev->netdev_ops->ndo_start_xmit != ionic_start_xmit) 3399 return NULL; 3400 3401 return netdev_priv(netdev); 3402 } 3403 3404 static int ionic_lif_notify(struct notifier_block *nb, 3405 unsigned long event, void *info) 3406 { 3407 struct net_device *ndev = netdev_notifier_info_to_dev(info); 3408 struct ionic *ionic = container_of(nb, struct ionic, nb); 3409 struct ionic_lif *lif = ionic_netdev_lif(ndev); 3410 3411 if (!lif || lif->ionic != ionic) 3412 return NOTIFY_DONE; 3413 3414 switch (event) { 3415 case NETDEV_CHANGENAME: 3416 ionic_lif_set_netdev_info(lif); 3417 break; 3418 } 3419 3420 return NOTIFY_DONE; 3421 } 3422 3423 int ionic_lif_register(struct ionic_lif *lif) 3424 { 3425 int err; 3426 3427 ionic_lif_register_phc(lif); 3428 3429 INIT_WORK(&lif->ionic->nb_work, ionic_lif_notify_work); 3430 3431 lif->ionic->nb.notifier_call = ionic_lif_notify; 3432 3433 err = register_netdevice_notifier(&lif->ionic->nb); 3434 if (err) 3435 lif->ionic->nb.notifier_call = NULL; 3436 3437 /* only register LIF0 for now */ 3438 err = register_netdev(lif->netdev); 3439 if (err) { 3440 dev_err(lif->ionic->dev, "Cannot register net device, aborting\n"); 3441 ionic_lif_unregister_phc(lif); 3442 return err; 3443 } 3444 3445 ionic_link_status_check_request(lif, CAN_SLEEP); 3446 lif->registered = true; 3447 ionic_lif_set_netdev_info(lif); 3448 3449 return 0; 3450 } 3451 3452 void ionic_lif_unregister(struct ionic_lif *lif) 3453 { 3454 if (lif->ionic->nb.notifier_call) { 3455 unregister_netdevice_notifier(&lif->ionic->nb); 3456 cancel_work_sync(&lif->ionic->nb_work); 3457 lif->ionic->nb.notifier_call = NULL; 3458 } 3459 3460 if (lif->netdev->reg_state == NETREG_REGISTERED) 3461 unregister_netdev(lif->netdev); 3462 3463 ionic_lif_unregister_phc(lif); 3464 3465 lif->registered = false; 3466 } 3467 3468 static void ionic_lif_queue_identify(struct ionic_lif *lif) 3469 { 3470 union ionic_q_identity __iomem *q_ident; 3471 struct ionic *ionic = lif->ionic; 3472 struct ionic_dev *idev; 3473 int qtype; 3474 int err; 3475 3476 idev = &lif->ionic->idev; 3477 q_ident = (union ionic_q_identity __iomem *)&idev->dev_cmd_regs->data; 3478 3479 for (qtype = 0; qtype < ARRAY_SIZE(ionic_qtype_versions); qtype++) { 3480 struct ionic_qtype_info *qti = &lif->qtype_info[qtype]; 3481 3482 /* filter out the ones we know about */ 3483 switch (qtype) { 3484 case IONIC_QTYPE_ADMINQ: 3485 case IONIC_QTYPE_NOTIFYQ: 3486 case IONIC_QTYPE_RXQ: 3487 case IONIC_QTYPE_TXQ: 3488 break; 3489 default: 3490 continue; 3491 } 3492 3493 memset(qti, 0, sizeof(*qti)); 3494 3495 mutex_lock(&ionic->dev_cmd_lock); 3496 ionic_dev_cmd_queue_identify(idev, lif->lif_type, qtype, 3497 ionic_qtype_versions[qtype]); 3498 err = ionic_dev_cmd_wait(ionic, DEVCMD_TIMEOUT); 3499 if (!err) { 3500 qti->version = readb(&q_ident->version); 3501 qti->supported = readb(&q_ident->supported); 3502 qti->features = readq(&q_ident->features); 3503 qti->desc_sz = readw(&q_ident->desc_sz); 3504 qti->comp_sz = readw(&q_ident->comp_sz); 3505 qti->sg_desc_sz = readw(&q_ident->sg_desc_sz); 3506 qti->max_sg_elems = readw(&q_ident->max_sg_elems); 3507 qti->sg_desc_stride = readw(&q_ident->sg_desc_stride); 3508 } 3509 mutex_unlock(&ionic->dev_cmd_lock); 3510 3511 if (err == -EINVAL) { 3512 dev_err(ionic->dev, "qtype %d not supported\n", qtype); 3513 continue; 3514 } else if (err == -EIO) { 3515 dev_err(ionic->dev, "q_ident failed, not supported on older FW\n"); 3516 return; 3517 } else if (err) { 3518 dev_err(ionic->dev, "q_ident failed, qtype %d: %d\n", 3519 qtype, err); 3520 return; 3521 } 3522 3523 dev_dbg(ionic->dev, " qtype[%d].version = %d\n", 3524 qtype, qti->version); 3525 dev_dbg(ionic->dev, " qtype[%d].supported = 0x%02x\n", 3526 qtype, qti->supported); 3527 dev_dbg(ionic->dev, " qtype[%d].features = 0x%04llx\n", 3528 qtype, qti->features); 3529 dev_dbg(ionic->dev, " qtype[%d].desc_sz = %d\n", 3530 qtype, qti->desc_sz); 3531 dev_dbg(ionic->dev, " qtype[%d].comp_sz = %d\n", 3532 qtype, qti->comp_sz); 3533 dev_dbg(ionic->dev, " qtype[%d].sg_desc_sz = %d\n", 3534 qtype, qti->sg_desc_sz); 3535 dev_dbg(ionic->dev, " qtype[%d].max_sg_elems = %d\n", 3536 qtype, qti->max_sg_elems); 3537 dev_dbg(ionic->dev, " qtype[%d].sg_desc_stride = %d\n", 3538 qtype, qti->sg_desc_stride); 3539 } 3540 } 3541 3542 int ionic_lif_identify(struct ionic *ionic, u8 lif_type, 3543 union ionic_lif_identity *lid) 3544 { 3545 struct ionic_dev *idev = &ionic->idev; 3546 size_t sz; 3547 int err; 3548 3549 sz = min(sizeof(*lid), sizeof(idev->dev_cmd_regs->data)); 3550 3551 mutex_lock(&ionic->dev_cmd_lock); 3552 ionic_dev_cmd_lif_identify(idev, lif_type, IONIC_IDENTITY_VERSION_1); 3553 err = ionic_dev_cmd_wait(ionic, DEVCMD_TIMEOUT); 3554 memcpy_fromio(lid, &idev->dev_cmd_regs->data, sz); 3555 mutex_unlock(&ionic->dev_cmd_lock); 3556 if (err) 3557 return (err); 3558 3559 dev_dbg(ionic->dev, "capabilities 0x%llx\n", 3560 le64_to_cpu(lid->capabilities)); 3561 3562 dev_dbg(ionic->dev, "eth.max_ucast_filters %d\n", 3563 le32_to_cpu(lid->eth.max_ucast_filters)); 3564 dev_dbg(ionic->dev, "eth.max_mcast_filters %d\n", 3565 le32_to_cpu(lid->eth.max_mcast_filters)); 3566 dev_dbg(ionic->dev, "eth.features 0x%llx\n", 3567 le64_to_cpu(lid->eth.config.features)); 3568 dev_dbg(ionic->dev, "eth.queue_count[IONIC_QTYPE_ADMINQ] %d\n", 3569 le32_to_cpu(lid->eth.config.queue_count[IONIC_QTYPE_ADMINQ])); 3570 dev_dbg(ionic->dev, "eth.queue_count[IONIC_QTYPE_NOTIFYQ] %d\n", 3571 le32_to_cpu(lid->eth.config.queue_count[IONIC_QTYPE_NOTIFYQ])); 3572 dev_dbg(ionic->dev, "eth.queue_count[IONIC_QTYPE_RXQ] %d\n", 3573 le32_to_cpu(lid->eth.config.queue_count[IONIC_QTYPE_RXQ])); 3574 dev_dbg(ionic->dev, "eth.queue_count[IONIC_QTYPE_TXQ] %d\n", 3575 le32_to_cpu(lid->eth.config.queue_count[IONIC_QTYPE_TXQ])); 3576 dev_dbg(ionic->dev, "eth.config.name %s\n", lid->eth.config.name); 3577 dev_dbg(ionic->dev, "eth.config.mac %pM\n", lid->eth.config.mac); 3578 dev_dbg(ionic->dev, "eth.config.mtu %d\n", 3579 le32_to_cpu(lid->eth.config.mtu)); 3580 3581 return 0; 3582 } 3583 3584 int ionic_lif_size(struct ionic *ionic) 3585 { 3586 struct ionic_identity *ident = &ionic->ident; 3587 unsigned int nintrs, dev_nintrs; 3588 union ionic_lif_config *lc; 3589 unsigned int ntxqs_per_lif; 3590 unsigned int nrxqs_per_lif; 3591 unsigned int neqs_per_lif; 3592 unsigned int nnqs_per_lif; 3593 unsigned int nxqs, neqs; 3594 unsigned int min_intrs; 3595 int err; 3596 3597 /* retrieve basic values from FW */ 3598 lc = &ident->lif.eth.config; 3599 dev_nintrs = le32_to_cpu(ident->dev.nintrs); 3600 neqs_per_lif = le32_to_cpu(ident->lif.rdma.eq_qtype.qid_count); 3601 nnqs_per_lif = le32_to_cpu(lc->queue_count[IONIC_QTYPE_NOTIFYQ]); 3602 ntxqs_per_lif = le32_to_cpu(lc->queue_count[IONIC_QTYPE_TXQ]); 3603 nrxqs_per_lif = le32_to_cpu(lc->queue_count[IONIC_QTYPE_RXQ]); 3604 3605 /* limit values to play nice with kdump */ 3606 if (is_kdump_kernel()) { 3607 dev_nintrs = 2; 3608 neqs_per_lif = 0; 3609 nnqs_per_lif = 0; 3610 ntxqs_per_lif = 1; 3611 nrxqs_per_lif = 1; 3612 } 3613 3614 /* reserve last queue id for hardware timestamping */ 3615 if (lc->features & cpu_to_le64(IONIC_ETH_HW_TIMESTAMP)) { 3616 if (ntxqs_per_lif <= 1 || nrxqs_per_lif <= 1) { 3617 lc->features &= cpu_to_le64(~IONIC_ETH_HW_TIMESTAMP); 3618 } else { 3619 ntxqs_per_lif -= 1; 3620 nrxqs_per_lif -= 1; 3621 } 3622 } 3623 3624 nxqs = min(ntxqs_per_lif, nrxqs_per_lif); 3625 nxqs = min(nxqs, num_online_cpus()); 3626 neqs = min(neqs_per_lif, num_online_cpus()); 3627 3628 try_again: 3629 /* interrupt usage: 3630 * 1 for master lif adminq/notifyq 3631 * 1 for each CPU for master lif TxRx queue pairs 3632 * whatever's left is for RDMA queues 3633 */ 3634 nintrs = 1 + nxqs + neqs; 3635 min_intrs = 2; /* adminq + 1 TxRx queue pair */ 3636 3637 if (nintrs > dev_nintrs) 3638 goto try_fewer; 3639 3640 err = ionic_bus_alloc_irq_vectors(ionic, nintrs); 3641 if (err < 0 && err != -ENOSPC) { 3642 dev_err(ionic->dev, "Can't get intrs from OS: %d\n", err); 3643 return err; 3644 } 3645 if (err == -ENOSPC) 3646 goto try_fewer; 3647 3648 if (err != nintrs) { 3649 ionic_bus_free_irq_vectors(ionic); 3650 goto try_fewer; 3651 } 3652 3653 ionic->nnqs_per_lif = nnqs_per_lif; 3654 ionic->neqs_per_lif = neqs; 3655 ionic->ntxqs_per_lif = nxqs; 3656 ionic->nrxqs_per_lif = nxqs; 3657 ionic->nintrs = nintrs; 3658 3659 ionic_debugfs_add_sizes(ionic); 3660 3661 return 0; 3662 3663 try_fewer: 3664 if (nnqs_per_lif > 1) { 3665 nnqs_per_lif >>= 1; 3666 goto try_again; 3667 } 3668 if (neqs > 1) { 3669 neqs >>= 1; 3670 goto try_again; 3671 } 3672 if (nxqs > 1) { 3673 nxqs >>= 1; 3674 goto try_again; 3675 } 3676 dev_err(ionic->dev, "Can't get minimum %d intrs from OS\n", min_intrs); 3677 return -ENOSPC; 3678 } 3679