1 /* 2 * Network-device interface management. 3 * 4 * Copyright (c) 2004-2005, Keir Fraser 5 * 6 * This program is free software; you can redistribute it and/or 7 * modify it under the terms of the GNU General Public License version 2 8 * as published by the Free Software Foundation; or, when distributed 9 * separately from the Linux kernel or incorporated into other 10 * software packages, subject to the following license: 11 * 12 * Permission is hereby granted, free of charge, to any person obtaining a copy 13 * of this source file (the "Software"), to deal in the Software without 14 * restriction, including without limitation the rights to use, copy, modify, 15 * merge, publish, distribute, sublicense, and/or sell copies of the Software, 16 * and to permit persons to whom the Software is furnished to do so, subject to 17 * the following conditions: 18 * 19 * The above copyright notice and this permission notice shall be included in 20 * all copies or substantial portions of the Software. 21 * 22 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR 23 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, 24 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE 25 * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER 26 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING 27 * FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS 28 * IN THE SOFTWARE. 29 */ 30 31 #include "common.h" 32 33 #include <linux/kthread.h> 34 #include <linux/ethtool.h> 35 #include <linux/rtnetlink.h> 36 #include <linux/if_vlan.h> 37 #include <linux/vmalloc.h> 38 39 #include <xen/events.h> 40 #include <asm/xen/hypercall.h> 41 #include <xen/balloon.h> 42 43 #define XENVIF_QUEUE_LENGTH 32 44 #define XENVIF_NAPI_WEIGHT 64 45 46 /* Number of bytes allowed on the internal guest Rx queue. */ 47 #define XENVIF_RX_QUEUE_BYTES (XEN_NETIF_RX_RING_SIZE/2 * PAGE_SIZE) 48 49 /* This function is used to set SKBTX_DEV_ZEROCOPY as well as 50 * increasing the inflight counter. We need to increase the inflight 51 * counter because core driver calls into xenvif_zerocopy_callback 52 * which calls xenvif_skb_zerocopy_complete. 53 */ 54 void xenvif_skb_zerocopy_prepare(struct xenvif_queue *queue, 55 struct sk_buff *skb) 56 { 57 skb_shinfo(skb)->tx_flags |= SKBTX_DEV_ZEROCOPY; 58 atomic_inc(&queue->inflight_packets); 59 } 60 61 void xenvif_skb_zerocopy_complete(struct xenvif_queue *queue) 62 { 63 atomic_dec(&queue->inflight_packets); 64 65 /* Wake the dealloc thread _after_ decrementing inflight_packets so 66 * that if kthread_stop() has already been called, the dealloc thread 67 * does not wait forever with nothing to wake it. 68 */ 69 wake_up(&queue->dealloc_wq); 70 } 71 72 int xenvif_schedulable(struct xenvif *vif) 73 { 74 return netif_running(vif->dev) && 75 test_bit(VIF_STATUS_CONNECTED, &vif->status) && 76 !vif->disabled; 77 } 78 79 static irqreturn_t xenvif_tx_interrupt(int irq, void *dev_id) 80 { 81 struct xenvif_queue *queue = dev_id; 82 83 if (RING_HAS_UNCONSUMED_REQUESTS(&queue->tx)) 84 napi_schedule(&queue->napi); 85 86 return IRQ_HANDLED; 87 } 88 89 static int xenvif_poll(struct napi_struct *napi, int budget) 90 { 91 struct xenvif_queue *queue = 92 container_of(napi, struct xenvif_queue, napi); 93 int work_done; 94 95 /* This vif is rogue, we pretend we've there is nothing to do 96 * for this vif to deschedule it from NAPI. But this interface 97 * will be turned off in thread context later. 98 */ 99 if (unlikely(queue->vif->disabled)) { 100 napi_complete(napi); 101 return 0; 102 } 103 104 work_done = xenvif_tx_action(queue, budget); 105 106 if (work_done < budget) { 107 napi_complete(napi); 108 xenvif_napi_schedule_or_enable_events(queue); 109 } 110 111 return work_done; 112 } 113 114 static irqreturn_t xenvif_rx_interrupt(int irq, void *dev_id) 115 { 116 struct xenvif_queue *queue = dev_id; 117 118 xenvif_kick_thread(queue); 119 120 return IRQ_HANDLED; 121 } 122 123 irqreturn_t xenvif_interrupt(int irq, void *dev_id) 124 { 125 xenvif_tx_interrupt(irq, dev_id); 126 xenvif_rx_interrupt(irq, dev_id); 127 128 return IRQ_HANDLED; 129 } 130 131 int xenvif_queue_stopped(struct xenvif_queue *queue) 132 { 133 struct net_device *dev = queue->vif->dev; 134 unsigned int id = queue->id; 135 return netif_tx_queue_stopped(netdev_get_tx_queue(dev, id)); 136 } 137 138 void xenvif_wake_queue(struct xenvif_queue *queue) 139 { 140 struct net_device *dev = queue->vif->dev; 141 unsigned int id = queue->id; 142 netif_tx_wake_queue(netdev_get_tx_queue(dev, id)); 143 } 144 145 static u16 xenvif_select_queue(struct net_device *dev, struct sk_buff *skb, 146 void *accel_priv, 147 select_queue_fallback_t fallback) 148 { 149 struct xenvif *vif = netdev_priv(dev); 150 unsigned int size = vif->hash.size; 151 152 if (vif->hash.alg == XEN_NETIF_CTRL_HASH_ALGORITHM_NONE) { 153 u16 index = fallback(dev, skb) % dev->real_num_tx_queues; 154 155 /* Make sure there is no hash information in the socket 156 * buffer otherwise it would be incorrectly forwarded 157 * to the frontend. 158 */ 159 skb_clear_hash(skb); 160 161 return index; 162 } 163 164 xenvif_set_skb_hash(vif, skb); 165 166 if (size == 0) 167 return skb_get_hash_raw(skb) % dev->real_num_tx_queues; 168 169 return vif->hash.mapping[skb_get_hash_raw(skb) % size]; 170 } 171 172 static int xenvif_start_xmit(struct sk_buff *skb, struct net_device *dev) 173 { 174 struct xenvif *vif = netdev_priv(dev); 175 struct xenvif_queue *queue = NULL; 176 unsigned int num_queues = vif->num_queues; 177 u16 index; 178 struct xenvif_rx_cb *cb; 179 180 BUG_ON(skb->dev != dev); 181 182 /* Drop the packet if queues are not set up */ 183 if (num_queues < 1) 184 goto drop; 185 186 /* Obtain the queue to be used to transmit this packet */ 187 index = skb_get_queue_mapping(skb); 188 if (index >= num_queues) { 189 pr_warn_ratelimited("Invalid queue %hu for packet on interface %s\n.", 190 index, vif->dev->name); 191 index %= num_queues; 192 } 193 queue = &vif->queues[index]; 194 195 /* Drop the packet if queue is not ready */ 196 if (queue->task == NULL || 197 queue->dealloc_task == NULL || 198 !xenvif_schedulable(vif)) 199 goto drop; 200 201 if (vif->multicast_control && skb->pkt_type == PACKET_MULTICAST) { 202 struct ethhdr *eth = (struct ethhdr *)skb->data; 203 204 if (!xenvif_mcast_match(vif, eth->h_dest)) 205 goto drop; 206 } 207 208 cb = XENVIF_RX_CB(skb); 209 cb->expires = jiffies + vif->drain_timeout; 210 211 xenvif_rx_queue_tail(queue, skb); 212 xenvif_kick_thread(queue); 213 214 return NETDEV_TX_OK; 215 216 drop: 217 vif->dev->stats.tx_dropped++; 218 dev_kfree_skb(skb); 219 return NETDEV_TX_OK; 220 } 221 222 static struct net_device_stats *xenvif_get_stats(struct net_device *dev) 223 { 224 struct xenvif *vif = netdev_priv(dev); 225 struct xenvif_queue *queue = NULL; 226 unsigned int num_queues = vif->num_queues; 227 unsigned long rx_bytes = 0; 228 unsigned long rx_packets = 0; 229 unsigned long tx_bytes = 0; 230 unsigned long tx_packets = 0; 231 unsigned int index; 232 233 if (vif->queues == NULL) 234 goto out; 235 236 /* Aggregate tx and rx stats from each queue */ 237 for (index = 0; index < num_queues; ++index) { 238 queue = &vif->queues[index]; 239 rx_bytes += queue->stats.rx_bytes; 240 rx_packets += queue->stats.rx_packets; 241 tx_bytes += queue->stats.tx_bytes; 242 tx_packets += queue->stats.tx_packets; 243 } 244 245 out: 246 vif->dev->stats.rx_bytes = rx_bytes; 247 vif->dev->stats.rx_packets = rx_packets; 248 vif->dev->stats.tx_bytes = tx_bytes; 249 vif->dev->stats.tx_packets = tx_packets; 250 251 return &vif->dev->stats; 252 } 253 254 static void xenvif_up(struct xenvif *vif) 255 { 256 struct xenvif_queue *queue = NULL; 257 unsigned int num_queues = vif->num_queues; 258 unsigned int queue_index; 259 260 for (queue_index = 0; queue_index < num_queues; ++queue_index) { 261 queue = &vif->queues[queue_index]; 262 napi_enable(&queue->napi); 263 enable_irq(queue->tx_irq); 264 if (queue->tx_irq != queue->rx_irq) 265 enable_irq(queue->rx_irq); 266 xenvif_napi_schedule_or_enable_events(queue); 267 } 268 } 269 270 static void xenvif_down(struct xenvif *vif) 271 { 272 struct xenvif_queue *queue = NULL; 273 unsigned int num_queues = vif->num_queues; 274 unsigned int queue_index; 275 276 for (queue_index = 0; queue_index < num_queues; ++queue_index) { 277 queue = &vif->queues[queue_index]; 278 disable_irq(queue->tx_irq); 279 if (queue->tx_irq != queue->rx_irq) 280 disable_irq(queue->rx_irq); 281 napi_disable(&queue->napi); 282 del_timer_sync(&queue->credit_timeout); 283 } 284 } 285 286 static int xenvif_open(struct net_device *dev) 287 { 288 struct xenvif *vif = netdev_priv(dev); 289 if (test_bit(VIF_STATUS_CONNECTED, &vif->status)) 290 xenvif_up(vif); 291 netif_tx_start_all_queues(dev); 292 return 0; 293 } 294 295 static int xenvif_close(struct net_device *dev) 296 { 297 struct xenvif *vif = netdev_priv(dev); 298 if (test_bit(VIF_STATUS_CONNECTED, &vif->status)) 299 xenvif_down(vif); 300 netif_tx_stop_all_queues(dev); 301 return 0; 302 } 303 304 static int xenvif_change_mtu(struct net_device *dev, int mtu) 305 { 306 struct xenvif *vif = netdev_priv(dev); 307 int max = vif->can_sg ? 65535 - VLAN_ETH_HLEN : ETH_DATA_LEN; 308 309 if (mtu > max) 310 return -EINVAL; 311 dev->mtu = mtu; 312 return 0; 313 } 314 315 static netdev_features_t xenvif_fix_features(struct net_device *dev, 316 netdev_features_t features) 317 { 318 struct xenvif *vif = netdev_priv(dev); 319 320 if (!vif->can_sg) 321 features &= ~NETIF_F_SG; 322 if (~(vif->gso_mask | vif->gso_prefix_mask) & GSO_BIT(TCPV4)) 323 features &= ~NETIF_F_TSO; 324 if (~(vif->gso_mask | vif->gso_prefix_mask) & GSO_BIT(TCPV6)) 325 features &= ~NETIF_F_TSO6; 326 if (!vif->ip_csum) 327 features &= ~NETIF_F_IP_CSUM; 328 if (!vif->ipv6_csum) 329 features &= ~NETIF_F_IPV6_CSUM; 330 331 return features; 332 } 333 334 static const struct xenvif_stat { 335 char name[ETH_GSTRING_LEN]; 336 u16 offset; 337 } xenvif_stats[] = { 338 { 339 "rx_gso_checksum_fixup", 340 offsetof(struct xenvif_stats, rx_gso_checksum_fixup) 341 }, 342 /* If (sent != success + fail), there are probably packets never 343 * freed up properly! 344 */ 345 { 346 "tx_zerocopy_sent", 347 offsetof(struct xenvif_stats, tx_zerocopy_sent), 348 }, 349 { 350 "tx_zerocopy_success", 351 offsetof(struct xenvif_stats, tx_zerocopy_success), 352 }, 353 { 354 "tx_zerocopy_fail", 355 offsetof(struct xenvif_stats, tx_zerocopy_fail) 356 }, 357 /* Number of packets exceeding MAX_SKB_FRAG slots. You should use 358 * a guest with the same MAX_SKB_FRAG 359 */ 360 { 361 "tx_frag_overflow", 362 offsetof(struct xenvif_stats, tx_frag_overflow) 363 }, 364 }; 365 366 static int xenvif_get_sset_count(struct net_device *dev, int string_set) 367 { 368 switch (string_set) { 369 case ETH_SS_STATS: 370 return ARRAY_SIZE(xenvif_stats); 371 default: 372 return -EINVAL; 373 } 374 } 375 376 static void xenvif_get_ethtool_stats(struct net_device *dev, 377 struct ethtool_stats *stats, u64 * data) 378 { 379 struct xenvif *vif = netdev_priv(dev); 380 unsigned int num_queues = vif->num_queues; 381 int i; 382 unsigned int queue_index; 383 384 for (i = 0; i < ARRAY_SIZE(xenvif_stats); i++) { 385 unsigned long accum = 0; 386 for (queue_index = 0; queue_index < num_queues; ++queue_index) { 387 void *vif_stats = &vif->queues[queue_index].stats; 388 accum += *(unsigned long *)(vif_stats + xenvif_stats[i].offset); 389 } 390 data[i] = accum; 391 } 392 } 393 394 static void xenvif_get_strings(struct net_device *dev, u32 stringset, u8 * data) 395 { 396 int i; 397 398 switch (stringset) { 399 case ETH_SS_STATS: 400 for (i = 0; i < ARRAY_SIZE(xenvif_stats); i++) 401 memcpy(data + i * ETH_GSTRING_LEN, 402 xenvif_stats[i].name, ETH_GSTRING_LEN); 403 break; 404 } 405 } 406 407 static const struct ethtool_ops xenvif_ethtool_ops = { 408 .get_link = ethtool_op_get_link, 409 410 .get_sset_count = xenvif_get_sset_count, 411 .get_ethtool_stats = xenvif_get_ethtool_stats, 412 .get_strings = xenvif_get_strings, 413 }; 414 415 static const struct net_device_ops xenvif_netdev_ops = { 416 .ndo_select_queue = xenvif_select_queue, 417 .ndo_start_xmit = xenvif_start_xmit, 418 .ndo_get_stats = xenvif_get_stats, 419 .ndo_open = xenvif_open, 420 .ndo_stop = xenvif_close, 421 .ndo_change_mtu = xenvif_change_mtu, 422 .ndo_fix_features = xenvif_fix_features, 423 .ndo_set_mac_address = eth_mac_addr, 424 .ndo_validate_addr = eth_validate_addr, 425 }; 426 427 struct xenvif *xenvif_alloc(struct device *parent, domid_t domid, 428 unsigned int handle) 429 { 430 int err; 431 struct net_device *dev; 432 struct xenvif *vif; 433 char name[IFNAMSIZ] = {}; 434 435 snprintf(name, IFNAMSIZ - 1, "vif%u.%u", domid, handle); 436 /* Allocate a netdev with the max. supported number of queues. 437 * When the guest selects the desired number, it will be updated 438 * via netif_set_real_num_*_queues(). 439 */ 440 dev = alloc_netdev_mq(sizeof(struct xenvif), name, NET_NAME_UNKNOWN, 441 ether_setup, xenvif_max_queues); 442 if (dev == NULL) { 443 pr_warn("Could not allocate netdev for %s\n", name); 444 return ERR_PTR(-ENOMEM); 445 } 446 447 SET_NETDEV_DEV(dev, parent); 448 449 vif = netdev_priv(dev); 450 451 vif->domid = domid; 452 vif->handle = handle; 453 vif->can_sg = 1; 454 vif->ip_csum = 1; 455 vif->dev = dev; 456 vif->disabled = false; 457 vif->drain_timeout = msecs_to_jiffies(rx_drain_timeout_msecs); 458 vif->stall_timeout = msecs_to_jiffies(rx_stall_timeout_msecs); 459 460 /* Start out with no queues. */ 461 vif->queues = NULL; 462 vif->num_queues = 0; 463 464 spin_lock_init(&vif->lock); 465 INIT_LIST_HEAD(&vif->fe_mcast_addr); 466 467 dev->netdev_ops = &xenvif_netdev_ops; 468 dev->hw_features = NETIF_F_SG | 469 NETIF_F_IP_CSUM | NETIF_F_IPV6_CSUM | 470 NETIF_F_TSO | NETIF_F_TSO6; 471 dev->features = dev->hw_features | NETIF_F_RXCSUM; 472 dev->ethtool_ops = &xenvif_ethtool_ops; 473 474 dev->tx_queue_len = XENVIF_QUEUE_LENGTH; 475 476 /* 477 * Initialise a dummy MAC address. We choose the numerically 478 * largest non-broadcast address to prevent the address getting 479 * stolen by an Ethernet bridge for STP purposes. 480 * (FE:FF:FF:FF:FF:FF) 481 */ 482 eth_broadcast_addr(dev->dev_addr); 483 dev->dev_addr[0] &= ~0x01; 484 485 netif_carrier_off(dev); 486 487 err = register_netdev(dev); 488 if (err) { 489 netdev_warn(dev, "Could not register device: err=%d\n", err); 490 free_netdev(dev); 491 return ERR_PTR(err); 492 } 493 494 netdev_dbg(dev, "Successfully created xenvif\n"); 495 496 __module_get(THIS_MODULE); 497 498 return vif; 499 } 500 501 int xenvif_init_queue(struct xenvif_queue *queue) 502 { 503 int err, i; 504 505 queue->credit_bytes = queue->remaining_credit = ~0UL; 506 queue->credit_usec = 0UL; 507 init_timer(&queue->credit_timeout); 508 queue->credit_timeout.function = xenvif_tx_credit_callback; 509 queue->credit_window_start = get_jiffies_64(); 510 511 queue->rx_queue_max = XENVIF_RX_QUEUE_BYTES; 512 513 skb_queue_head_init(&queue->rx_queue); 514 skb_queue_head_init(&queue->tx_queue); 515 516 queue->pending_cons = 0; 517 queue->pending_prod = MAX_PENDING_REQS; 518 for (i = 0; i < MAX_PENDING_REQS; ++i) 519 queue->pending_ring[i] = i; 520 521 spin_lock_init(&queue->callback_lock); 522 spin_lock_init(&queue->response_lock); 523 524 /* If ballooning is disabled, this will consume real memory, so you 525 * better enable it. The long term solution would be to use just a 526 * bunch of valid page descriptors, without dependency on ballooning 527 */ 528 err = gnttab_alloc_pages(MAX_PENDING_REQS, 529 queue->mmap_pages); 530 if (err) { 531 netdev_err(queue->vif->dev, "Could not reserve mmap_pages\n"); 532 return -ENOMEM; 533 } 534 535 for (i = 0; i < MAX_PENDING_REQS; i++) { 536 queue->pending_tx_info[i].callback_struct = (struct ubuf_info) 537 { .callback = xenvif_zerocopy_callback, 538 .ctx = NULL, 539 .desc = i }; 540 queue->grant_tx_handle[i] = NETBACK_INVALID_HANDLE; 541 } 542 543 return 0; 544 } 545 546 void xenvif_carrier_on(struct xenvif *vif) 547 { 548 rtnl_lock(); 549 if (!vif->can_sg && vif->dev->mtu > ETH_DATA_LEN) 550 dev_set_mtu(vif->dev, ETH_DATA_LEN); 551 netdev_update_features(vif->dev); 552 set_bit(VIF_STATUS_CONNECTED, &vif->status); 553 if (netif_running(vif->dev)) 554 xenvif_up(vif); 555 rtnl_unlock(); 556 } 557 558 int xenvif_connect_ctrl(struct xenvif *vif, grant_ref_t ring_ref, 559 unsigned int evtchn) 560 { 561 struct net_device *dev = vif->dev; 562 void *addr; 563 struct xen_netif_ctrl_sring *shared; 564 int err; 565 566 err = xenbus_map_ring_valloc(xenvif_to_xenbus_device(vif), 567 &ring_ref, 1, &addr); 568 if (err) 569 goto err; 570 571 shared = (struct xen_netif_ctrl_sring *)addr; 572 BACK_RING_INIT(&vif->ctrl, shared, XEN_PAGE_SIZE); 573 574 err = bind_interdomain_evtchn_to_irq(vif->domid, evtchn); 575 if (err < 0) 576 goto err_unmap; 577 578 vif->ctrl_irq = err; 579 580 xenvif_init_hash(vif); 581 582 err = request_threaded_irq(vif->ctrl_irq, NULL, xenvif_ctrl_irq_fn, 583 IRQF_ONESHOT, "xen-netback-ctrl", vif); 584 if (err) { 585 pr_warn("Could not setup irq handler for %s\n", dev->name); 586 goto err_deinit; 587 } 588 589 return 0; 590 591 err_deinit: 592 xenvif_deinit_hash(vif); 593 unbind_from_irqhandler(vif->ctrl_irq, vif); 594 vif->ctrl_irq = 0; 595 596 err_unmap: 597 xenbus_unmap_ring_vfree(xenvif_to_xenbus_device(vif), 598 vif->ctrl.sring); 599 vif->ctrl.sring = NULL; 600 601 err: 602 return err; 603 } 604 605 int xenvif_connect_data(struct xenvif_queue *queue, 606 unsigned long tx_ring_ref, 607 unsigned long rx_ring_ref, 608 unsigned int tx_evtchn, 609 unsigned int rx_evtchn) 610 { 611 struct task_struct *task; 612 int err = -ENOMEM; 613 614 BUG_ON(queue->tx_irq); 615 BUG_ON(queue->task); 616 BUG_ON(queue->dealloc_task); 617 618 err = xenvif_map_frontend_data_rings(queue, tx_ring_ref, 619 rx_ring_ref); 620 if (err < 0) 621 goto err; 622 623 init_waitqueue_head(&queue->wq); 624 init_waitqueue_head(&queue->dealloc_wq); 625 atomic_set(&queue->inflight_packets, 0); 626 627 netif_napi_add(queue->vif->dev, &queue->napi, xenvif_poll, 628 XENVIF_NAPI_WEIGHT); 629 630 if (tx_evtchn == rx_evtchn) { 631 /* feature-split-event-channels == 0 */ 632 err = bind_interdomain_evtchn_to_irqhandler( 633 queue->vif->domid, tx_evtchn, xenvif_interrupt, 0, 634 queue->name, queue); 635 if (err < 0) 636 goto err_unmap; 637 queue->tx_irq = queue->rx_irq = err; 638 disable_irq(queue->tx_irq); 639 } else { 640 /* feature-split-event-channels == 1 */ 641 snprintf(queue->tx_irq_name, sizeof(queue->tx_irq_name), 642 "%s-tx", queue->name); 643 err = bind_interdomain_evtchn_to_irqhandler( 644 queue->vif->domid, tx_evtchn, xenvif_tx_interrupt, 0, 645 queue->tx_irq_name, queue); 646 if (err < 0) 647 goto err_unmap; 648 queue->tx_irq = err; 649 disable_irq(queue->tx_irq); 650 651 snprintf(queue->rx_irq_name, sizeof(queue->rx_irq_name), 652 "%s-rx", queue->name); 653 err = bind_interdomain_evtchn_to_irqhandler( 654 queue->vif->domid, rx_evtchn, xenvif_rx_interrupt, 0, 655 queue->rx_irq_name, queue); 656 if (err < 0) 657 goto err_tx_unbind; 658 queue->rx_irq = err; 659 disable_irq(queue->rx_irq); 660 } 661 662 queue->stalled = true; 663 664 task = kthread_create(xenvif_kthread_guest_rx, 665 (void *)queue, "%s-guest-rx", queue->name); 666 if (IS_ERR(task)) { 667 pr_warn("Could not allocate kthread for %s\n", queue->name); 668 err = PTR_ERR(task); 669 goto err_rx_unbind; 670 } 671 queue->task = task; 672 get_task_struct(task); 673 674 task = kthread_create(xenvif_dealloc_kthread, 675 (void *)queue, "%s-dealloc", queue->name); 676 if (IS_ERR(task)) { 677 pr_warn("Could not allocate kthread for %s\n", queue->name); 678 err = PTR_ERR(task); 679 goto err_rx_unbind; 680 } 681 queue->dealloc_task = task; 682 683 wake_up_process(queue->task); 684 wake_up_process(queue->dealloc_task); 685 686 return 0; 687 688 err_rx_unbind: 689 unbind_from_irqhandler(queue->rx_irq, queue); 690 queue->rx_irq = 0; 691 err_tx_unbind: 692 unbind_from_irqhandler(queue->tx_irq, queue); 693 queue->tx_irq = 0; 694 err_unmap: 695 xenvif_unmap_frontend_data_rings(queue); 696 netif_napi_del(&queue->napi); 697 err: 698 module_put(THIS_MODULE); 699 return err; 700 } 701 702 void xenvif_carrier_off(struct xenvif *vif) 703 { 704 struct net_device *dev = vif->dev; 705 706 rtnl_lock(); 707 if (test_and_clear_bit(VIF_STATUS_CONNECTED, &vif->status)) { 708 netif_carrier_off(dev); /* discard queued packets */ 709 if (netif_running(dev)) 710 xenvif_down(vif); 711 } 712 rtnl_unlock(); 713 } 714 715 void xenvif_disconnect_data(struct xenvif *vif) 716 { 717 struct xenvif_queue *queue = NULL; 718 unsigned int num_queues = vif->num_queues; 719 unsigned int queue_index; 720 721 xenvif_carrier_off(vif); 722 723 for (queue_index = 0; queue_index < num_queues; ++queue_index) { 724 queue = &vif->queues[queue_index]; 725 726 netif_napi_del(&queue->napi); 727 728 if (queue->task) { 729 kthread_stop(queue->task); 730 put_task_struct(queue->task); 731 queue->task = NULL; 732 } 733 734 if (queue->dealloc_task) { 735 kthread_stop(queue->dealloc_task); 736 queue->dealloc_task = NULL; 737 } 738 739 if (queue->tx_irq) { 740 if (queue->tx_irq == queue->rx_irq) 741 unbind_from_irqhandler(queue->tx_irq, queue); 742 else { 743 unbind_from_irqhandler(queue->tx_irq, queue); 744 unbind_from_irqhandler(queue->rx_irq, queue); 745 } 746 queue->tx_irq = 0; 747 } 748 749 xenvif_unmap_frontend_data_rings(queue); 750 } 751 752 xenvif_mcast_addr_list_free(vif); 753 } 754 755 void xenvif_disconnect_ctrl(struct xenvif *vif) 756 { 757 if (vif->ctrl_irq) { 758 xenvif_deinit_hash(vif); 759 unbind_from_irqhandler(vif->ctrl_irq, vif); 760 vif->ctrl_irq = 0; 761 } 762 763 if (vif->ctrl.sring) { 764 xenbus_unmap_ring_vfree(xenvif_to_xenbus_device(vif), 765 vif->ctrl.sring); 766 vif->ctrl.sring = NULL; 767 } 768 } 769 770 /* Reverse the relevant parts of xenvif_init_queue(). 771 * Used for queue teardown from xenvif_free(), and on the 772 * error handling paths in xenbus.c:connect(). 773 */ 774 void xenvif_deinit_queue(struct xenvif_queue *queue) 775 { 776 gnttab_free_pages(MAX_PENDING_REQS, queue->mmap_pages); 777 } 778 779 void xenvif_free(struct xenvif *vif) 780 { 781 struct xenvif_queue *queues = vif->queues; 782 unsigned int num_queues = vif->num_queues; 783 unsigned int queue_index; 784 785 unregister_netdev(vif->dev); 786 free_netdev(vif->dev); 787 788 for (queue_index = 0; queue_index < num_queues; ++queue_index) 789 xenvif_deinit_queue(&queues[queue_index]); 790 vfree(queues); 791 792 module_put(THIS_MODULE); 793 } 794