1 // SPDX-License-Identifier: GPL-2.0-or-later 2 /* A network driver using virtio. 3 * 4 * Copyright 2007 Rusty Russell <rusty@rustcorp.com.au> IBM Corporation 5 */ 6 //#define DEBUG 7 #include <linux/netdevice.h> 8 #include <linux/etherdevice.h> 9 #include <linux/ethtool.h> 10 #include <linux/module.h> 11 #include <linux/virtio.h> 12 #include <linux/virtio_net.h> 13 #include <linux/bpf.h> 14 #include <linux/bpf_trace.h> 15 #include <linux/scatterlist.h> 16 #include <linux/if_vlan.h> 17 #include <linux/slab.h> 18 #include <linux/cpu.h> 19 #include <linux/average.h> 20 #include <linux/filter.h> 21 #include <linux/kernel.h> 22 #include <net/route.h> 23 #include <net/xdp.h> 24 #include <net/net_failover.h> 25 26 static int napi_weight = NAPI_POLL_WEIGHT; 27 module_param(napi_weight, int, 0444); 28 29 static bool csum = true, gso = true, napi_tx = true; 30 module_param(csum, bool, 0444); 31 module_param(gso, bool, 0444); 32 module_param(napi_tx, bool, 0644); 33 34 /* FIXME: MTU in config. */ 35 #define GOOD_PACKET_LEN (ETH_HLEN + VLAN_HLEN + ETH_DATA_LEN) 36 #define GOOD_COPY_LEN 128 37 38 #define VIRTNET_RX_PAD (NET_IP_ALIGN + NET_SKB_PAD) 39 40 /* Amount of XDP headroom to prepend to packets for use by xdp_adjust_head */ 41 #define VIRTIO_XDP_HEADROOM 256 42 43 /* Separating two types of XDP xmit */ 44 #define VIRTIO_XDP_TX BIT(0) 45 #define VIRTIO_XDP_REDIR BIT(1) 46 47 #define VIRTIO_XDP_FLAG BIT(0) 48 49 /* RX packet size EWMA. The average packet size is used to determine the packet 50 * buffer size when refilling RX rings. As the entire RX ring may be refilled 51 * at once, the weight is chosen so that the EWMA will be insensitive to short- 52 * term, transient changes in packet size. 53 */ 54 DECLARE_EWMA(pkt_len, 0, 64) 55 56 #define VIRTNET_DRIVER_VERSION "1.0.0" 57 58 static const unsigned long guest_offloads[] = { 59 VIRTIO_NET_F_GUEST_TSO4, 60 VIRTIO_NET_F_GUEST_TSO6, 61 VIRTIO_NET_F_GUEST_ECN, 62 VIRTIO_NET_F_GUEST_UFO, 63 VIRTIO_NET_F_GUEST_CSUM 64 }; 65 66 #define GUEST_OFFLOAD_GRO_HW_MASK ((1ULL << VIRTIO_NET_F_GUEST_TSO4) | \ 67 (1ULL << VIRTIO_NET_F_GUEST_TSO6) | \ 68 (1ULL << VIRTIO_NET_F_GUEST_ECN) | \ 69 (1ULL << VIRTIO_NET_F_GUEST_UFO)) 70 71 struct virtnet_stat_desc { 72 char desc[ETH_GSTRING_LEN]; 73 size_t offset; 74 }; 75 76 struct virtnet_sq_stats { 77 struct u64_stats_sync syncp; 78 u64 packets; 79 u64 bytes; 80 u64 xdp_tx; 81 u64 xdp_tx_drops; 82 u64 kicks; 83 u64 tx_timeouts; 84 }; 85 86 struct virtnet_rq_stats { 87 struct u64_stats_sync syncp; 88 u64 packets; 89 u64 bytes; 90 u64 drops; 91 u64 xdp_packets; 92 u64 xdp_tx; 93 u64 xdp_redirects; 94 u64 xdp_drops; 95 u64 kicks; 96 }; 97 98 #define VIRTNET_SQ_STAT(m) offsetof(struct virtnet_sq_stats, m) 99 #define VIRTNET_RQ_STAT(m) offsetof(struct virtnet_rq_stats, m) 100 101 static const struct virtnet_stat_desc virtnet_sq_stats_desc[] = { 102 { "packets", VIRTNET_SQ_STAT(packets) }, 103 { "bytes", VIRTNET_SQ_STAT(bytes) }, 104 { "xdp_tx", VIRTNET_SQ_STAT(xdp_tx) }, 105 { "xdp_tx_drops", VIRTNET_SQ_STAT(xdp_tx_drops) }, 106 { "kicks", VIRTNET_SQ_STAT(kicks) }, 107 { "tx_timeouts", VIRTNET_SQ_STAT(tx_timeouts) }, 108 }; 109 110 static const struct virtnet_stat_desc virtnet_rq_stats_desc[] = { 111 { "packets", VIRTNET_RQ_STAT(packets) }, 112 { "bytes", VIRTNET_RQ_STAT(bytes) }, 113 { "drops", VIRTNET_RQ_STAT(drops) }, 114 { "xdp_packets", VIRTNET_RQ_STAT(xdp_packets) }, 115 { "xdp_tx", VIRTNET_RQ_STAT(xdp_tx) }, 116 { "xdp_redirects", VIRTNET_RQ_STAT(xdp_redirects) }, 117 { "xdp_drops", VIRTNET_RQ_STAT(xdp_drops) }, 118 { "kicks", VIRTNET_RQ_STAT(kicks) }, 119 }; 120 121 #define VIRTNET_SQ_STATS_LEN ARRAY_SIZE(virtnet_sq_stats_desc) 122 #define VIRTNET_RQ_STATS_LEN ARRAY_SIZE(virtnet_rq_stats_desc) 123 124 /* Internal representation of a send virtqueue */ 125 struct send_queue { 126 /* Virtqueue associated with this send _queue */ 127 struct virtqueue *vq; 128 129 /* TX: fragments + linear part + virtio header */ 130 struct scatterlist sg[MAX_SKB_FRAGS + 2]; 131 132 /* Name of the send queue: output.$index */ 133 char name[40]; 134 135 struct virtnet_sq_stats stats; 136 137 struct napi_struct napi; 138 }; 139 140 /* Internal representation of a receive virtqueue */ 141 struct receive_queue { 142 /* Virtqueue associated with this receive_queue */ 143 struct virtqueue *vq; 144 145 struct napi_struct napi; 146 147 struct bpf_prog __rcu *xdp_prog; 148 149 struct virtnet_rq_stats stats; 150 151 /* Chain pages by the private ptr. */ 152 struct page *pages; 153 154 /* Average packet length for mergeable receive buffers. */ 155 struct ewma_pkt_len mrg_avg_pkt_len; 156 157 /* Page frag for packet buffer allocation. */ 158 struct page_frag alloc_frag; 159 160 /* RX: fragments + linear part + virtio header */ 161 struct scatterlist sg[MAX_SKB_FRAGS + 2]; 162 163 /* Min single buffer size for mergeable buffers case. */ 164 unsigned int min_buf_len; 165 166 /* Name of this receive queue: input.$index */ 167 char name[40]; 168 169 struct xdp_rxq_info xdp_rxq; 170 }; 171 172 /* This structure can contain rss message with maximum settings for indirection table and keysize 173 * Note, that default structure that describes RSS configuration virtio_net_rss_config 174 * contains same info but can't handle table values. 175 * In any case, structure would be passed to virtio hw through sg_buf split by parts 176 * because table sizes may be differ according to the device configuration. 177 */ 178 #define VIRTIO_NET_RSS_MAX_KEY_SIZE 40 179 #define VIRTIO_NET_RSS_MAX_TABLE_LEN 128 180 struct virtio_net_ctrl_rss { 181 u32 hash_types; 182 u16 indirection_table_mask; 183 u16 unclassified_queue; 184 u16 indirection_table[VIRTIO_NET_RSS_MAX_TABLE_LEN]; 185 u16 max_tx_vq; 186 u8 hash_key_length; 187 u8 key[VIRTIO_NET_RSS_MAX_KEY_SIZE]; 188 }; 189 190 /* Control VQ buffers: protected by the rtnl lock */ 191 struct control_buf { 192 struct virtio_net_ctrl_hdr hdr; 193 virtio_net_ctrl_ack status; 194 struct virtio_net_ctrl_mq mq; 195 u8 promisc; 196 u8 allmulti; 197 __virtio16 vid; 198 __virtio64 offloads; 199 struct virtio_net_ctrl_rss rss; 200 }; 201 202 struct virtnet_info { 203 struct virtio_device *vdev; 204 struct virtqueue *cvq; 205 struct net_device *dev; 206 struct send_queue *sq; 207 struct receive_queue *rq; 208 unsigned int status; 209 210 /* Max # of queue pairs supported by the device */ 211 u16 max_queue_pairs; 212 213 /* # of queue pairs currently used by the driver */ 214 u16 curr_queue_pairs; 215 216 /* # of XDP queue pairs currently used by the driver */ 217 u16 xdp_queue_pairs; 218 219 /* xdp_queue_pairs may be 0, when xdp is already loaded. So add this. */ 220 bool xdp_enabled; 221 222 /* I like... big packets and I cannot lie! */ 223 bool big_packets; 224 225 /* Host will merge rx buffers for big packets (shake it! shake it!) */ 226 bool mergeable_rx_bufs; 227 228 /* Host supports rss and/or hash report */ 229 bool has_rss; 230 bool has_rss_hash_report; 231 u8 rss_key_size; 232 u16 rss_indir_table_size; 233 u32 rss_hash_types_supported; 234 u32 rss_hash_types_saved; 235 236 /* Has control virtqueue */ 237 bool has_cvq; 238 239 /* Host can handle any s/g split between our header and packet data */ 240 bool any_header_sg; 241 242 /* Packet virtio header size */ 243 u8 hdr_len; 244 245 /* Work struct for delayed refilling if we run low on memory. */ 246 struct delayed_work refill; 247 248 /* Is delayed refill enabled? */ 249 bool refill_enabled; 250 251 /* The lock to synchronize the access to refill_enabled */ 252 spinlock_t refill_lock; 253 254 /* Work struct for config space updates */ 255 struct work_struct config_work; 256 257 /* Does the affinity hint is set for virtqueues? */ 258 bool affinity_hint_set; 259 260 /* CPU hotplug instances for online & dead */ 261 struct hlist_node node; 262 struct hlist_node node_dead; 263 264 struct control_buf *ctrl; 265 266 /* Ethtool settings */ 267 u8 duplex; 268 u32 speed; 269 270 unsigned long guest_offloads; 271 unsigned long guest_offloads_capable; 272 273 /* failover when STANDBY feature enabled */ 274 struct failover *failover; 275 }; 276 277 struct padded_vnet_hdr { 278 struct virtio_net_hdr_v1_hash hdr; 279 /* 280 * hdr is in a separate sg buffer, and data sg buffer shares same page 281 * with this header sg. This padding makes next sg 16 byte aligned 282 * after the header. 283 */ 284 char padding[12]; 285 }; 286 287 static bool is_xdp_frame(void *ptr) 288 { 289 return (unsigned long)ptr & VIRTIO_XDP_FLAG; 290 } 291 292 static void *xdp_to_ptr(struct xdp_frame *ptr) 293 { 294 return (void *)((unsigned long)ptr | VIRTIO_XDP_FLAG); 295 } 296 297 static struct xdp_frame *ptr_to_xdp(void *ptr) 298 { 299 return (struct xdp_frame *)((unsigned long)ptr & ~VIRTIO_XDP_FLAG); 300 } 301 302 /* Converting between virtqueue no. and kernel tx/rx queue no. 303 * 0:rx0 1:tx0 2:rx1 3:tx1 ... 2N:rxN 2N+1:txN 2N+2:cvq 304 */ 305 static int vq2txq(struct virtqueue *vq) 306 { 307 return (vq->index - 1) / 2; 308 } 309 310 static int txq2vq(int txq) 311 { 312 return txq * 2 + 1; 313 } 314 315 static int vq2rxq(struct virtqueue *vq) 316 { 317 return vq->index / 2; 318 } 319 320 static int rxq2vq(int rxq) 321 { 322 return rxq * 2; 323 } 324 325 static inline struct virtio_net_hdr_mrg_rxbuf *skb_vnet_hdr(struct sk_buff *skb) 326 { 327 return (struct virtio_net_hdr_mrg_rxbuf *)skb->cb; 328 } 329 330 /* 331 * private is used to chain pages for big packets, put the whole 332 * most recent used list in the beginning for reuse 333 */ 334 static void give_pages(struct receive_queue *rq, struct page *page) 335 { 336 struct page *end; 337 338 /* Find end of list, sew whole thing into vi->rq.pages. */ 339 for (end = page; end->private; end = (struct page *)end->private); 340 end->private = (unsigned long)rq->pages; 341 rq->pages = page; 342 } 343 344 static struct page *get_a_page(struct receive_queue *rq, gfp_t gfp_mask) 345 { 346 struct page *p = rq->pages; 347 348 if (p) { 349 rq->pages = (struct page *)p->private; 350 /* clear private here, it is used to chain pages */ 351 p->private = 0; 352 } else 353 p = alloc_page(gfp_mask); 354 return p; 355 } 356 357 static void enable_delayed_refill(struct virtnet_info *vi) 358 { 359 spin_lock_bh(&vi->refill_lock); 360 vi->refill_enabled = true; 361 spin_unlock_bh(&vi->refill_lock); 362 } 363 364 static void disable_delayed_refill(struct virtnet_info *vi) 365 { 366 spin_lock_bh(&vi->refill_lock); 367 vi->refill_enabled = false; 368 spin_unlock_bh(&vi->refill_lock); 369 } 370 371 static void virtqueue_napi_schedule(struct napi_struct *napi, 372 struct virtqueue *vq) 373 { 374 if (napi_schedule_prep(napi)) { 375 virtqueue_disable_cb(vq); 376 __napi_schedule(napi); 377 } 378 } 379 380 static void virtqueue_napi_complete(struct napi_struct *napi, 381 struct virtqueue *vq, int processed) 382 { 383 int opaque; 384 385 opaque = virtqueue_enable_cb_prepare(vq); 386 if (napi_complete_done(napi, processed)) { 387 if (unlikely(virtqueue_poll(vq, opaque))) 388 virtqueue_napi_schedule(napi, vq); 389 } else { 390 virtqueue_disable_cb(vq); 391 } 392 } 393 394 static void skb_xmit_done(struct virtqueue *vq) 395 { 396 struct virtnet_info *vi = vq->vdev->priv; 397 struct napi_struct *napi = &vi->sq[vq2txq(vq)].napi; 398 399 /* Suppress further interrupts. */ 400 virtqueue_disable_cb(vq); 401 402 if (napi->weight) 403 virtqueue_napi_schedule(napi, vq); 404 else 405 /* We were probably waiting for more output buffers. */ 406 netif_wake_subqueue(vi->dev, vq2txq(vq)); 407 } 408 409 #define MRG_CTX_HEADER_SHIFT 22 410 static void *mergeable_len_to_ctx(unsigned int truesize, 411 unsigned int headroom) 412 { 413 return (void *)(unsigned long)((headroom << MRG_CTX_HEADER_SHIFT) | truesize); 414 } 415 416 static unsigned int mergeable_ctx_to_headroom(void *mrg_ctx) 417 { 418 return (unsigned long)mrg_ctx >> MRG_CTX_HEADER_SHIFT; 419 } 420 421 static unsigned int mergeable_ctx_to_truesize(void *mrg_ctx) 422 { 423 return (unsigned long)mrg_ctx & ((1 << MRG_CTX_HEADER_SHIFT) - 1); 424 } 425 426 /* Called from bottom half context */ 427 static struct sk_buff *page_to_skb(struct virtnet_info *vi, 428 struct receive_queue *rq, 429 struct page *page, unsigned int offset, 430 unsigned int len, unsigned int truesize, 431 bool hdr_valid, unsigned int metasize, 432 unsigned int headroom) 433 { 434 struct sk_buff *skb; 435 struct virtio_net_hdr_mrg_rxbuf *hdr; 436 unsigned int copy, hdr_len, hdr_padded_len; 437 struct page *page_to_free = NULL; 438 int tailroom, shinfo_size; 439 char *p, *hdr_p, *buf; 440 441 p = page_address(page) + offset; 442 hdr_p = p; 443 444 hdr_len = vi->hdr_len; 445 if (vi->mergeable_rx_bufs) 446 hdr_padded_len = hdr_len; 447 else 448 hdr_padded_len = sizeof(struct padded_vnet_hdr); 449 450 /* If headroom is not 0, there is an offset between the beginning of the 451 * data and the allocated space, otherwise the data and the allocated 452 * space are aligned. 453 * 454 * Buffers with headroom use PAGE_SIZE as alloc size, see 455 * add_recvbuf_mergeable() + get_mergeable_buf_len() 456 */ 457 truesize = headroom ? PAGE_SIZE : truesize; 458 tailroom = truesize - headroom; 459 buf = p - headroom; 460 461 len -= hdr_len; 462 offset += hdr_padded_len; 463 p += hdr_padded_len; 464 tailroom -= hdr_padded_len + len; 465 466 shinfo_size = SKB_DATA_ALIGN(sizeof(struct skb_shared_info)); 467 468 /* copy small packet so we can reuse these pages */ 469 if (!NET_IP_ALIGN && len > GOOD_COPY_LEN && tailroom >= shinfo_size) { 470 skb = build_skb(buf, truesize); 471 if (unlikely(!skb)) 472 return NULL; 473 474 skb_reserve(skb, p - buf); 475 skb_put(skb, len); 476 477 page = (struct page *)page->private; 478 if (page) 479 give_pages(rq, page); 480 goto ok; 481 } 482 483 /* copy small packet so we can reuse these pages for small data */ 484 skb = napi_alloc_skb(&rq->napi, GOOD_COPY_LEN); 485 if (unlikely(!skb)) 486 return NULL; 487 488 /* Copy all frame if it fits skb->head, otherwise 489 * we let virtio_net_hdr_to_skb() and GRO pull headers as needed. 490 */ 491 if (len <= skb_tailroom(skb)) 492 copy = len; 493 else 494 copy = ETH_HLEN + metasize; 495 skb_put_data(skb, p, copy); 496 497 len -= copy; 498 offset += copy; 499 500 if (vi->mergeable_rx_bufs) { 501 if (len) 502 skb_add_rx_frag(skb, 0, page, offset, len, truesize); 503 else 504 page_to_free = page; 505 goto ok; 506 } 507 508 /* 509 * Verify that we can indeed put this data into a skb. 510 * This is here to handle cases when the device erroneously 511 * tries to receive more than is possible. This is usually 512 * the case of a broken device. 513 */ 514 if (unlikely(len > MAX_SKB_FRAGS * PAGE_SIZE)) { 515 net_dbg_ratelimited("%s: too much data\n", skb->dev->name); 516 dev_kfree_skb(skb); 517 return NULL; 518 } 519 BUG_ON(offset >= PAGE_SIZE); 520 while (len) { 521 unsigned int frag_size = min((unsigned)PAGE_SIZE - offset, len); 522 skb_add_rx_frag(skb, skb_shinfo(skb)->nr_frags, page, offset, 523 frag_size, truesize); 524 len -= frag_size; 525 page = (struct page *)page->private; 526 offset = 0; 527 } 528 529 if (page) 530 give_pages(rq, page); 531 532 ok: 533 /* hdr_valid means no XDP, so we can copy the vnet header */ 534 if (hdr_valid) { 535 hdr = skb_vnet_hdr(skb); 536 memcpy(hdr, hdr_p, hdr_len); 537 } 538 if (page_to_free) 539 put_page(page_to_free); 540 541 if (metasize) { 542 __skb_pull(skb, metasize); 543 skb_metadata_set(skb, metasize); 544 } 545 546 return skb; 547 } 548 549 static int __virtnet_xdp_xmit_one(struct virtnet_info *vi, 550 struct send_queue *sq, 551 struct xdp_frame *xdpf) 552 { 553 struct virtio_net_hdr_mrg_rxbuf *hdr; 554 int err; 555 556 if (unlikely(xdpf->headroom < vi->hdr_len)) 557 return -EOVERFLOW; 558 559 /* Make room for virtqueue hdr (also change xdpf->headroom?) */ 560 xdpf->data -= vi->hdr_len; 561 /* Zero header and leave csum up to XDP layers */ 562 hdr = xdpf->data; 563 memset(hdr, 0, vi->hdr_len); 564 xdpf->len += vi->hdr_len; 565 566 sg_init_one(sq->sg, xdpf->data, xdpf->len); 567 568 err = virtqueue_add_outbuf(sq->vq, sq->sg, 1, xdp_to_ptr(xdpf), 569 GFP_ATOMIC); 570 if (unlikely(err)) 571 return -ENOSPC; /* Caller handle free/refcnt */ 572 573 return 0; 574 } 575 576 /* when vi->curr_queue_pairs > nr_cpu_ids, the txq/sq is only used for xdp tx on 577 * the current cpu, so it does not need to be locked. 578 * 579 * Here we use marco instead of inline functions because we have to deal with 580 * three issues at the same time: 1. the choice of sq. 2. judge and execute the 581 * lock/unlock of txq 3. make sparse happy. It is difficult for two inline 582 * functions to perfectly solve these three problems at the same time. 583 */ 584 #define virtnet_xdp_get_sq(vi) ({ \ 585 int cpu = smp_processor_id(); \ 586 struct netdev_queue *txq; \ 587 typeof(vi) v = (vi); \ 588 unsigned int qp; \ 589 \ 590 if (v->curr_queue_pairs > nr_cpu_ids) { \ 591 qp = v->curr_queue_pairs - v->xdp_queue_pairs; \ 592 qp += cpu; \ 593 txq = netdev_get_tx_queue(v->dev, qp); \ 594 __netif_tx_acquire(txq); \ 595 } else { \ 596 qp = cpu % v->curr_queue_pairs; \ 597 txq = netdev_get_tx_queue(v->dev, qp); \ 598 __netif_tx_lock(txq, cpu); \ 599 } \ 600 v->sq + qp; \ 601 }) 602 603 #define virtnet_xdp_put_sq(vi, q) { \ 604 struct netdev_queue *txq; \ 605 typeof(vi) v = (vi); \ 606 \ 607 txq = netdev_get_tx_queue(v->dev, (q) - v->sq); \ 608 if (v->curr_queue_pairs > nr_cpu_ids) \ 609 __netif_tx_release(txq); \ 610 else \ 611 __netif_tx_unlock(txq); \ 612 } 613 614 static int virtnet_xdp_xmit(struct net_device *dev, 615 int n, struct xdp_frame **frames, u32 flags) 616 { 617 struct virtnet_info *vi = netdev_priv(dev); 618 struct receive_queue *rq = vi->rq; 619 struct bpf_prog *xdp_prog; 620 struct send_queue *sq; 621 unsigned int len; 622 int packets = 0; 623 int bytes = 0; 624 int nxmit = 0; 625 int kicks = 0; 626 void *ptr; 627 int ret; 628 int i; 629 630 /* Only allow ndo_xdp_xmit if XDP is loaded on dev, as this 631 * indicate XDP resources have been successfully allocated. 632 */ 633 xdp_prog = rcu_access_pointer(rq->xdp_prog); 634 if (!xdp_prog) 635 return -ENXIO; 636 637 sq = virtnet_xdp_get_sq(vi); 638 639 if (unlikely(flags & ~XDP_XMIT_FLAGS_MASK)) { 640 ret = -EINVAL; 641 goto out; 642 } 643 644 /* Free up any pending old buffers before queueing new ones. */ 645 while ((ptr = virtqueue_get_buf(sq->vq, &len)) != NULL) { 646 if (likely(is_xdp_frame(ptr))) { 647 struct xdp_frame *frame = ptr_to_xdp(ptr); 648 649 bytes += frame->len; 650 xdp_return_frame(frame); 651 } else { 652 struct sk_buff *skb = ptr; 653 654 bytes += skb->len; 655 napi_consume_skb(skb, false); 656 } 657 packets++; 658 } 659 660 for (i = 0; i < n; i++) { 661 struct xdp_frame *xdpf = frames[i]; 662 663 if (__virtnet_xdp_xmit_one(vi, sq, xdpf)) 664 break; 665 nxmit++; 666 } 667 ret = nxmit; 668 669 if (flags & XDP_XMIT_FLUSH) { 670 if (virtqueue_kick_prepare(sq->vq) && virtqueue_notify(sq->vq)) 671 kicks = 1; 672 } 673 out: 674 u64_stats_update_begin(&sq->stats.syncp); 675 sq->stats.bytes += bytes; 676 sq->stats.packets += packets; 677 sq->stats.xdp_tx += n; 678 sq->stats.xdp_tx_drops += n - nxmit; 679 sq->stats.kicks += kicks; 680 u64_stats_update_end(&sq->stats.syncp); 681 682 virtnet_xdp_put_sq(vi, sq); 683 return ret; 684 } 685 686 static unsigned int virtnet_get_headroom(struct virtnet_info *vi) 687 { 688 return vi->xdp_enabled ? VIRTIO_XDP_HEADROOM : 0; 689 } 690 691 /* We copy the packet for XDP in the following cases: 692 * 693 * 1) Packet is scattered across multiple rx buffers. 694 * 2) Headroom space is insufficient. 695 * 696 * This is inefficient but it's a temporary condition that 697 * we hit right after XDP is enabled and until queue is refilled 698 * with large buffers with sufficient headroom - so it should affect 699 * at most queue size packets. 700 * Afterwards, the conditions to enable 701 * XDP should preclude the underlying device from sending packets 702 * across multiple buffers (num_buf > 1), and we make sure buffers 703 * have enough headroom. 704 */ 705 static struct page *xdp_linearize_page(struct receive_queue *rq, 706 u16 *num_buf, 707 struct page *p, 708 int offset, 709 int page_off, 710 unsigned int *len) 711 { 712 struct page *page = alloc_page(GFP_ATOMIC); 713 714 if (!page) 715 return NULL; 716 717 memcpy(page_address(page) + page_off, page_address(p) + offset, *len); 718 page_off += *len; 719 720 while (--*num_buf) { 721 int tailroom = SKB_DATA_ALIGN(sizeof(struct skb_shared_info)); 722 unsigned int buflen; 723 void *buf; 724 int off; 725 726 buf = virtqueue_get_buf(rq->vq, &buflen); 727 if (unlikely(!buf)) 728 goto err_buf; 729 730 p = virt_to_head_page(buf); 731 off = buf - page_address(p); 732 733 /* guard against a misconfigured or uncooperative backend that 734 * is sending packet larger than the MTU. 735 */ 736 if ((page_off + buflen + tailroom) > PAGE_SIZE) { 737 put_page(p); 738 goto err_buf; 739 } 740 741 memcpy(page_address(page) + page_off, 742 page_address(p) + off, buflen); 743 page_off += buflen; 744 put_page(p); 745 } 746 747 /* Headroom does not contribute to packet length */ 748 *len = page_off - VIRTIO_XDP_HEADROOM; 749 return page; 750 err_buf: 751 __free_pages(page, 0); 752 return NULL; 753 } 754 755 static struct sk_buff *receive_small(struct net_device *dev, 756 struct virtnet_info *vi, 757 struct receive_queue *rq, 758 void *buf, void *ctx, 759 unsigned int len, 760 unsigned int *xdp_xmit, 761 struct virtnet_rq_stats *stats) 762 { 763 struct sk_buff *skb; 764 struct bpf_prog *xdp_prog; 765 unsigned int xdp_headroom = (unsigned long)ctx; 766 unsigned int header_offset = VIRTNET_RX_PAD + xdp_headroom; 767 unsigned int headroom = vi->hdr_len + header_offset; 768 unsigned int buflen = SKB_DATA_ALIGN(GOOD_PACKET_LEN + headroom) + 769 SKB_DATA_ALIGN(sizeof(struct skb_shared_info)); 770 struct page *page = virt_to_head_page(buf); 771 unsigned int delta = 0; 772 struct page *xdp_page; 773 int err; 774 unsigned int metasize = 0; 775 776 len -= vi->hdr_len; 777 stats->bytes += len; 778 779 if (unlikely(len > GOOD_PACKET_LEN)) { 780 pr_debug("%s: rx error: len %u exceeds max size %d\n", 781 dev->name, len, GOOD_PACKET_LEN); 782 dev->stats.rx_length_errors++; 783 goto err; 784 } 785 786 if (likely(!vi->xdp_enabled)) { 787 xdp_prog = NULL; 788 goto skip_xdp; 789 } 790 791 rcu_read_lock(); 792 xdp_prog = rcu_dereference(rq->xdp_prog); 793 if (xdp_prog) { 794 struct virtio_net_hdr_mrg_rxbuf *hdr = buf + header_offset; 795 struct xdp_frame *xdpf; 796 struct xdp_buff xdp; 797 void *orig_data; 798 u32 act; 799 800 if (unlikely(hdr->hdr.gso_type)) 801 goto err_xdp; 802 803 if (unlikely(xdp_headroom < virtnet_get_headroom(vi))) { 804 int offset = buf - page_address(page) + header_offset; 805 unsigned int tlen = len + vi->hdr_len; 806 u16 num_buf = 1; 807 808 xdp_headroom = virtnet_get_headroom(vi); 809 header_offset = VIRTNET_RX_PAD + xdp_headroom; 810 headroom = vi->hdr_len + header_offset; 811 buflen = SKB_DATA_ALIGN(GOOD_PACKET_LEN + headroom) + 812 SKB_DATA_ALIGN(sizeof(struct skb_shared_info)); 813 xdp_page = xdp_linearize_page(rq, &num_buf, page, 814 offset, header_offset, 815 &tlen); 816 if (!xdp_page) 817 goto err_xdp; 818 819 buf = page_address(xdp_page); 820 put_page(page); 821 page = xdp_page; 822 } 823 824 xdp_init_buff(&xdp, buflen, &rq->xdp_rxq); 825 xdp_prepare_buff(&xdp, buf + VIRTNET_RX_PAD + vi->hdr_len, 826 xdp_headroom, len, true); 827 orig_data = xdp.data; 828 act = bpf_prog_run_xdp(xdp_prog, &xdp); 829 stats->xdp_packets++; 830 831 switch (act) { 832 case XDP_PASS: 833 /* Recalculate length in case bpf program changed it */ 834 delta = orig_data - xdp.data; 835 len = xdp.data_end - xdp.data; 836 metasize = xdp.data - xdp.data_meta; 837 break; 838 case XDP_TX: 839 stats->xdp_tx++; 840 xdpf = xdp_convert_buff_to_frame(&xdp); 841 if (unlikely(!xdpf)) 842 goto err_xdp; 843 err = virtnet_xdp_xmit(dev, 1, &xdpf, 0); 844 if (unlikely(!err)) { 845 xdp_return_frame_rx_napi(xdpf); 846 } else if (unlikely(err < 0)) { 847 trace_xdp_exception(vi->dev, xdp_prog, act); 848 goto err_xdp; 849 } 850 *xdp_xmit |= VIRTIO_XDP_TX; 851 rcu_read_unlock(); 852 goto xdp_xmit; 853 case XDP_REDIRECT: 854 stats->xdp_redirects++; 855 err = xdp_do_redirect(dev, &xdp, xdp_prog); 856 if (err) 857 goto err_xdp; 858 *xdp_xmit |= VIRTIO_XDP_REDIR; 859 rcu_read_unlock(); 860 goto xdp_xmit; 861 default: 862 bpf_warn_invalid_xdp_action(vi->dev, xdp_prog, act); 863 fallthrough; 864 case XDP_ABORTED: 865 trace_xdp_exception(vi->dev, xdp_prog, act); 866 goto err_xdp; 867 case XDP_DROP: 868 goto err_xdp; 869 } 870 } 871 rcu_read_unlock(); 872 873 skip_xdp: 874 skb = build_skb(buf, buflen); 875 if (!skb) 876 goto err; 877 skb_reserve(skb, headroom - delta); 878 skb_put(skb, len); 879 if (!xdp_prog) { 880 buf += header_offset; 881 memcpy(skb_vnet_hdr(skb), buf, vi->hdr_len); 882 } /* keep zeroed vnet hdr since XDP is loaded */ 883 884 if (metasize) 885 skb_metadata_set(skb, metasize); 886 887 return skb; 888 889 err_xdp: 890 rcu_read_unlock(); 891 stats->xdp_drops++; 892 err: 893 stats->drops++; 894 put_page(page); 895 xdp_xmit: 896 return NULL; 897 } 898 899 static struct sk_buff *receive_big(struct net_device *dev, 900 struct virtnet_info *vi, 901 struct receive_queue *rq, 902 void *buf, 903 unsigned int len, 904 struct virtnet_rq_stats *stats) 905 { 906 struct page *page = buf; 907 struct sk_buff *skb = 908 page_to_skb(vi, rq, page, 0, len, PAGE_SIZE, true, 0, 0); 909 910 stats->bytes += len - vi->hdr_len; 911 if (unlikely(!skb)) 912 goto err; 913 914 return skb; 915 916 err: 917 stats->drops++; 918 give_pages(rq, page); 919 return NULL; 920 } 921 922 static struct sk_buff *receive_mergeable(struct net_device *dev, 923 struct virtnet_info *vi, 924 struct receive_queue *rq, 925 void *buf, 926 void *ctx, 927 unsigned int len, 928 unsigned int *xdp_xmit, 929 struct virtnet_rq_stats *stats) 930 { 931 struct virtio_net_hdr_mrg_rxbuf *hdr = buf; 932 u16 num_buf = virtio16_to_cpu(vi->vdev, hdr->num_buffers); 933 struct page *page = virt_to_head_page(buf); 934 int offset = buf - page_address(page); 935 struct sk_buff *head_skb, *curr_skb; 936 struct bpf_prog *xdp_prog; 937 unsigned int truesize = mergeable_ctx_to_truesize(ctx); 938 unsigned int headroom = mergeable_ctx_to_headroom(ctx); 939 unsigned int metasize = 0; 940 unsigned int frame_sz; 941 int err; 942 943 head_skb = NULL; 944 stats->bytes += len - vi->hdr_len; 945 946 if (unlikely(len > truesize)) { 947 pr_debug("%s: rx error: len %u exceeds truesize %lu\n", 948 dev->name, len, (unsigned long)ctx); 949 dev->stats.rx_length_errors++; 950 goto err_skb; 951 } 952 953 if (likely(!vi->xdp_enabled)) { 954 xdp_prog = NULL; 955 goto skip_xdp; 956 } 957 958 rcu_read_lock(); 959 xdp_prog = rcu_dereference(rq->xdp_prog); 960 if (xdp_prog) { 961 struct xdp_frame *xdpf; 962 struct page *xdp_page; 963 struct xdp_buff xdp; 964 void *data; 965 u32 act; 966 967 /* Transient failure which in theory could occur if 968 * in-flight packets from before XDP was enabled reach 969 * the receive path after XDP is loaded. 970 */ 971 if (unlikely(hdr->hdr.gso_type)) 972 goto err_xdp; 973 974 /* Buffers with headroom use PAGE_SIZE as alloc size, 975 * see add_recvbuf_mergeable() + get_mergeable_buf_len() 976 */ 977 frame_sz = headroom ? PAGE_SIZE : truesize; 978 979 /* This happens when rx buffer size is underestimated 980 * or headroom is not enough because of the buffer 981 * was refilled before XDP is set. This should only 982 * happen for the first several packets, so we don't 983 * care much about its performance. 984 */ 985 if (unlikely(num_buf > 1 || 986 headroom < virtnet_get_headroom(vi))) { 987 /* linearize data for XDP */ 988 xdp_page = xdp_linearize_page(rq, &num_buf, 989 page, offset, 990 VIRTIO_XDP_HEADROOM, 991 &len); 992 frame_sz = PAGE_SIZE; 993 994 if (!xdp_page) 995 goto err_xdp; 996 offset = VIRTIO_XDP_HEADROOM; 997 } else { 998 xdp_page = page; 999 } 1000 1001 /* Allow consuming headroom but reserve enough space to push 1002 * the descriptor on if we get an XDP_TX return code. 1003 */ 1004 data = page_address(xdp_page) + offset; 1005 xdp_init_buff(&xdp, frame_sz - vi->hdr_len, &rq->xdp_rxq); 1006 xdp_prepare_buff(&xdp, data - VIRTIO_XDP_HEADROOM + vi->hdr_len, 1007 VIRTIO_XDP_HEADROOM, len - vi->hdr_len, true); 1008 1009 act = bpf_prog_run_xdp(xdp_prog, &xdp); 1010 stats->xdp_packets++; 1011 1012 switch (act) { 1013 case XDP_PASS: 1014 metasize = xdp.data - xdp.data_meta; 1015 1016 /* recalculate offset to account for any header 1017 * adjustments and minus the metasize to copy the 1018 * metadata in page_to_skb(). Note other cases do not 1019 * build an skb and avoid using offset 1020 */ 1021 offset = xdp.data - page_address(xdp_page) - 1022 vi->hdr_len - metasize; 1023 1024 /* recalculate len if xdp.data, xdp.data_end or 1025 * xdp.data_meta were adjusted 1026 */ 1027 len = xdp.data_end - xdp.data + vi->hdr_len + metasize; 1028 1029 /* recalculate headroom if xdp.data or xdp_data_meta 1030 * were adjusted, note that offset should always point 1031 * to the start of the reserved bytes for virtio_net 1032 * header which are followed by xdp.data, that means 1033 * that offset is equal to the headroom (when buf is 1034 * starting at the beginning of the page, otherwise 1035 * there is a base offset inside the page) but it's used 1036 * with a different starting point (buf start) than 1037 * xdp.data (buf start + vnet hdr size). If xdp.data or 1038 * data_meta were adjusted by the xdp prog then the 1039 * headroom size has changed and so has the offset, we 1040 * can use data_hard_start, which points at buf start + 1041 * vnet hdr size, to calculate the new headroom and use 1042 * it later to compute buf start in page_to_skb() 1043 */ 1044 headroom = xdp.data - xdp.data_hard_start - metasize; 1045 1046 /* We can only create skb based on xdp_page. */ 1047 if (unlikely(xdp_page != page)) { 1048 rcu_read_unlock(); 1049 put_page(page); 1050 head_skb = page_to_skb(vi, rq, xdp_page, offset, 1051 len, PAGE_SIZE, false, 1052 metasize, 1053 headroom); 1054 return head_skb; 1055 } 1056 break; 1057 case XDP_TX: 1058 stats->xdp_tx++; 1059 xdpf = xdp_convert_buff_to_frame(&xdp); 1060 if (unlikely(!xdpf)) 1061 goto err_xdp; 1062 err = virtnet_xdp_xmit(dev, 1, &xdpf, 0); 1063 if (unlikely(!err)) { 1064 xdp_return_frame_rx_napi(xdpf); 1065 } else if (unlikely(err < 0)) { 1066 trace_xdp_exception(vi->dev, xdp_prog, act); 1067 if (unlikely(xdp_page != page)) 1068 put_page(xdp_page); 1069 goto err_xdp; 1070 } 1071 *xdp_xmit |= VIRTIO_XDP_TX; 1072 if (unlikely(xdp_page != page)) 1073 put_page(page); 1074 rcu_read_unlock(); 1075 goto xdp_xmit; 1076 case XDP_REDIRECT: 1077 stats->xdp_redirects++; 1078 err = xdp_do_redirect(dev, &xdp, xdp_prog); 1079 if (err) { 1080 if (unlikely(xdp_page != page)) 1081 put_page(xdp_page); 1082 goto err_xdp; 1083 } 1084 *xdp_xmit |= VIRTIO_XDP_REDIR; 1085 if (unlikely(xdp_page != page)) 1086 put_page(page); 1087 rcu_read_unlock(); 1088 goto xdp_xmit; 1089 default: 1090 bpf_warn_invalid_xdp_action(vi->dev, xdp_prog, act); 1091 fallthrough; 1092 case XDP_ABORTED: 1093 trace_xdp_exception(vi->dev, xdp_prog, act); 1094 fallthrough; 1095 case XDP_DROP: 1096 if (unlikely(xdp_page != page)) 1097 __free_pages(xdp_page, 0); 1098 goto err_xdp; 1099 } 1100 } 1101 rcu_read_unlock(); 1102 1103 skip_xdp: 1104 head_skb = page_to_skb(vi, rq, page, offset, len, truesize, !xdp_prog, 1105 metasize, headroom); 1106 curr_skb = head_skb; 1107 1108 if (unlikely(!curr_skb)) 1109 goto err_skb; 1110 while (--num_buf) { 1111 int num_skb_frags; 1112 1113 buf = virtqueue_get_buf_ctx(rq->vq, &len, &ctx); 1114 if (unlikely(!buf)) { 1115 pr_debug("%s: rx error: %d buffers out of %d missing\n", 1116 dev->name, num_buf, 1117 virtio16_to_cpu(vi->vdev, 1118 hdr->num_buffers)); 1119 dev->stats.rx_length_errors++; 1120 goto err_buf; 1121 } 1122 1123 stats->bytes += len; 1124 page = virt_to_head_page(buf); 1125 1126 truesize = mergeable_ctx_to_truesize(ctx); 1127 if (unlikely(len > truesize)) { 1128 pr_debug("%s: rx error: len %u exceeds truesize %lu\n", 1129 dev->name, len, (unsigned long)ctx); 1130 dev->stats.rx_length_errors++; 1131 goto err_skb; 1132 } 1133 1134 num_skb_frags = skb_shinfo(curr_skb)->nr_frags; 1135 if (unlikely(num_skb_frags == MAX_SKB_FRAGS)) { 1136 struct sk_buff *nskb = alloc_skb(0, GFP_ATOMIC); 1137 1138 if (unlikely(!nskb)) 1139 goto err_skb; 1140 if (curr_skb == head_skb) 1141 skb_shinfo(curr_skb)->frag_list = nskb; 1142 else 1143 curr_skb->next = nskb; 1144 curr_skb = nskb; 1145 head_skb->truesize += nskb->truesize; 1146 num_skb_frags = 0; 1147 } 1148 if (curr_skb != head_skb) { 1149 head_skb->data_len += len; 1150 head_skb->len += len; 1151 head_skb->truesize += truesize; 1152 } 1153 offset = buf - page_address(page); 1154 if (skb_can_coalesce(curr_skb, num_skb_frags, page, offset)) { 1155 put_page(page); 1156 skb_coalesce_rx_frag(curr_skb, num_skb_frags - 1, 1157 len, truesize); 1158 } else { 1159 skb_add_rx_frag(curr_skb, num_skb_frags, page, 1160 offset, len, truesize); 1161 } 1162 } 1163 1164 ewma_pkt_len_add(&rq->mrg_avg_pkt_len, head_skb->len); 1165 return head_skb; 1166 1167 err_xdp: 1168 rcu_read_unlock(); 1169 stats->xdp_drops++; 1170 err_skb: 1171 put_page(page); 1172 while (num_buf-- > 1) { 1173 buf = virtqueue_get_buf(rq->vq, &len); 1174 if (unlikely(!buf)) { 1175 pr_debug("%s: rx error: %d buffers missing\n", 1176 dev->name, num_buf); 1177 dev->stats.rx_length_errors++; 1178 break; 1179 } 1180 stats->bytes += len; 1181 page = virt_to_head_page(buf); 1182 put_page(page); 1183 } 1184 err_buf: 1185 stats->drops++; 1186 dev_kfree_skb(head_skb); 1187 xdp_xmit: 1188 return NULL; 1189 } 1190 1191 static void virtio_skb_set_hash(const struct virtio_net_hdr_v1_hash *hdr_hash, 1192 struct sk_buff *skb) 1193 { 1194 enum pkt_hash_types rss_hash_type; 1195 1196 if (!hdr_hash || !skb) 1197 return; 1198 1199 switch ((int)hdr_hash->hash_report) { 1200 case VIRTIO_NET_HASH_REPORT_TCPv4: 1201 case VIRTIO_NET_HASH_REPORT_UDPv4: 1202 case VIRTIO_NET_HASH_REPORT_TCPv6: 1203 case VIRTIO_NET_HASH_REPORT_UDPv6: 1204 case VIRTIO_NET_HASH_REPORT_TCPv6_EX: 1205 case VIRTIO_NET_HASH_REPORT_UDPv6_EX: 1206 rss_hash_type = PKT_HASH_TYPE_L4; 1207 break; 1208 case VIRTIO_NET_HASH_REPORT_IPv4: 1209 case VIRTIO_NET_HASH_REPORT_IPv6: 1210 case VIRTIO_NET_HASH_REPORT_IPv6_EX: 1211 rss_hash_type = PKT_HASH_TYPE_L3; 1212 break; 1213 case VIRTIO_NET_HASH_REPORT_NONE: 1214 default: 1215 rss_hash_type = PKT_HASH_TYPE_NONE; 1216 } 1217 skb_set_hash(skb, (unsigned int)hdr_hash->hash_value, rss_hash_type); 1218 } 1219 1220 static void receive_buf(struct virtnet_info *vi, struct receive_queue *rq, 1221 void *buf, unsigned int len, void **ctx, 1222 unsigned int *xdp_xmit, 1223 struct virtnet_rq_stats *stats) 1224 { 1225 struct net_device *dev = vi->dev; 1226 struct sk_buff *skb; 1227 struct virtio_net_hdr_mrg_rxbuf *hdr; 1228 1229 if (unlikely(len < vi->hdr_len + ETH_HLEN)) { 1230 pr_debug("%s: short packet %i\n", dev->name, len); 1231 dev->stats.rx_length_errors++; 1232 if (vi->mergeable_rx_bufs) { 1233 put_page(virt_to_head_page(buf)); 1234 } else if (vi->big_packets) { 1235 give_pages(rq, buf); 1236 } else { 1237 put_page(virt_to_head_page(buf)); 1238 } 1239 return; 1240 } 1241 1242 if (vi->mergeable_rx_bufs) 1243 skb = receive_mergeable(dev, vi, rq, buf, ctx, len, xdp_xmit, 1244 stats); 1245 else if (vi->big_packets) 1246 skb = receive_big(dev, vi, rq, buf, len, stats); 1247 else 1248 skb = receive_small(dev, vi, rq, buf, ctx, len, xdp_xmit, stats); 1249 1250 if (unlikely(!skb)) 1251 return; 1252 1253 hdr = skb_vnet_hdr(skb); 1254 if (dev->features & NETIF_F_RXHASH && vi->has_rss_hash_report) 1255 virtio_skb_set_hash((const struct virtio_net_hdr_v1_hash *)hdr, skb); 1256 1257 if (hdr->hdr.flags & VIRTIO_NET_HDR_F_DATA_VALID) 1258 skb->ip_summed = CHECKSUM_UNNECESSARY; 1259 1260 if (virtio_net_hdr_to_skb(skb, &hdr->hdr, 1261 virtio_is_little_endian(vi->vdev))) { 1262 net_warn_ratelimited("%s: bad gso: type: %u, size: %u\n", 1263 dev->name, hdr->hdr.gso_type, 1264 hdr->hdr.gso_size); 1265 goto frame_err; 1266 } 1267 1268 skb_record_rx_queue(skb, vq2rxq(rq->vq)); 1269 skb->protocol = eth_type_trans(skb, dev); 1270 pr_debug("Receiving skb proto 0x%04x len %i type %i\n", 1271 ntohs(skb->protocol), skb->len, skb->pkt_type); 1272 1273 napi_gro_receive(&rq->napi, skb); 1274 return; 1275 1276 frame_err: 1277 dev->stats.rx_frame_errors++; 1278 dev_kfree_skb(skb); 1279 } 1280 1281 /* Unlike mergeable buffers, all buffers are allocated to the 1282 * same size, except for the headroom. For this reason we do 1283 * not need to use mergeable_len_to_ctx here - it is enough 1284 * to store the headroom as the context ignoring the truesize. 1285 */ 1286 static int add_recvbuf_small(struct virtnet_info *vi, struct receive_queue *rq, 1287 gfp_t gfp) 1288 { 1289 struct page_frag *alloc_frag = &rq->alloc_frag; 1290 char *buf; 1291 unsigned int xdp_headroom = virtnet_get_headroom(vi); 1292 void *ctx = (void *)(unsigned long)xdp_headroom; 1293 int len = vi->hdr_len + VIRTNET_RX_PAD + GOOD_PACKET_LEN + xdp_headroom; 1294 int err; 1295 1296 len = SKB_DATA_ALIGN(len) + 1297 SKB_DATA_ALIGN(sizeof(struct skb_shared_info)); 1298 if (unlikely(!skb_page_frag_refill(len, alloc_frag, gfp))) 1299 return -ENOMEM; 1300 1301 buf = (char *)page_address(alloc_frag->page) + alloc_frag->offset; 1302 get_page(alloc_frag->page); 1303 alloc_frag->offset += len; 1304 sg_init_one(rq->sg, buf + VIRTNET_RX_PAD + xdp_headroom, 1305 vi->hdr_len + GOOD_PACKET_LEN); 1306 err = virtqueue_add_inbuf_ctx(rq->vq, rq->sg, 1, buf, ctx, gfp); 1307 if (err < 0) 1308 put_page(virt_to_head_page(buf)); 1309 return err; 1310 } 1311 1312 static int add_recvbuf_big(struct virtnet_info *vi, struct receive_queue *rq, 1313 gfp_t gfp) 1314 { 1315 struct page *first, *list = NULL; 1316 char *p; 1317 int i, err, offset; 1318 1319 sg_init_table(rq->sg, MAX_SKB_FRAGS + 2); 1320 1321 /* page in rq->sg[MAX_SKB_FRAGS + 1] is list tail */ 1322 for (i = MAX_SKB_FRAGS + 1; i > 1; --i) { 1323 first = get_a_page(rq, gfp); 1324 if (!first) { 1325 if (list) 1326 give_pages(rq, list); 1327 return -ENOMEM; 1328 } 1329 sg_set_buf(&rq->sg[i], page_address(first), PAGE_SIZE); 1330 1331 /* chain new page in list head to match sg */ 1332 first->private = (unsigned long)list; 1333 list = first; 1334 } 1335 1336 first = get_a_page(rq, gfp); 1337 if (!first) { 1338 give_pages(rq, list); 1339 return -ENOMEM; 1340 } 1341 p = page_address(first); 1342 1343 /* rq->sg[0], rq->sg[1] share the same page */ 1344 /* a separated rq->sg[0] for header - required in case !any_header_sg */ 1345 sg_set_buf(&rq->sg[0], p, vi->hdr_len); 1346 1347 /* rq->sg[1] for data packet, from offset */ 1348 offset = sizeof(struct padded_vnet_hdr); 1349 sg_set_buf(&rq->sg[1], p + offset, PAGE_SIZE - offset); 1350 1351 /* chain first in list head */ 1352 first->private = (unsigned long)list; 1353 err = virtqueue_add_inbuf(rq->vq, rq->sg, MAX_SKB_FRAGS + 2, 1354 first, gfp); 1355 if (err < 0) 1356 give_pages(rq, first); 1357 1358 return err; 1359 } 1360 1361 static unsigned int get_mergeable_buf_len(struct receive_queue *rq, 1362 struct ewma_pkt_len *avg_pkt_len, 1363 unsigned int room) 1364 { 1365 struct virtnet_info *vi = rq->vq->vdev->priv; 1366 const size_t hdr_len = vi->hdr_len; 1367 unsigned int len; 1368 1369 if (room) 1370 return PAGE_SIZE - room; 1371 1372 len = hdr_len + clamp_t(unsigned int, ewma_pkt_len_read(avg_pkt_len), 1373 rq->min_buf_len, PAGE_SIZE - hdr_len); 1374 1375 return ALIGN(len, L1_CACHE_BYTES); 1376 } 1377 1378 static int add_recvbuf_mergeable(struct virtnet_info *vi, 1379 struct receive_queue *rq, gfp_t gfp) 1380 { 1381 struct page_frag *alloc_frag = &rq->alloc_frag; 1382 unsigned int headroom = virtnet_get_headroom(vi); 1383 unsigned int tailroom = headroom ? sizeof(struct skb_shared_info) : 0; 1384 unsigned int room = SKB_DATA_ALIGN(headroom + tailroom); 1385 char *buf; 1386 void *ctx; 1387 int err; 1388 unsigned int len, hole; 1389 1390 /* Extra tailroom is needed to satisfy XDP's assumption. This 1391 * means rx frags coalescing won't work, but consider we've 1392 * disabled GSO for XDP, it won't be a big issue. 1393 */ 1394 len = get_mergeable_buf_len(rq, &rq->mrg_avg_pkt_len, room); 1395 if (unlikely(!skb_page_frag_refill(len + room, alloc_frag, gfp))) 1396 return -ENOMEM; 1397 1398 buf = (char *)page_address(alloc_frag->page) + alloc_frag->offset; 1399 buf += headroom; /* advance address leaving hole at front of pkt */ 1400 get_page(alloc_frag->page); 1401 alloc_frag->offset += len + room; 1402 hole = alloc_frag->size - alloc_frag->offset; 1403 if (hole < len + room) { 1404 /* To avoid internal fragmentation, if there is very likely not 1405 * enough space for another buffer, add the remaining space to 1406 * the current buffer. 1407 */ 1408 len += hole; 1409 alloc_frag->offset += hole; 1410 } 1411 1412 sg_init_one(rq->sg, buf, len); 1413 ctx = mergeable_len_to_ctx(len, headroom); 1414 err = virtqueue_add_inbuf_ctx(rq->vq, rq->sg, 1, buf, ctx, gfp); 1415 if (err < 0) 1416 put_page(virt_to_head_page(buf)); 1417 1418 return err; 1419 } 1420 1421 /* 1422 * Returns false if we couldn't fill entirely (OOM). 1423 * 1424 * Normally run in the receive path, but can also be run from ndo_open 1425 * before we're receiving packets, or from refill_work which is 1426 * careful to disable receiving (using napi_disable). 1427 */ 1428 static bool try_fill_recv(struct virtnet_info *vi, struct receive_queue *rq, 1429 gfp_t gfp) 1430 { 1431 int err; 1432 bool oom; 1433 1434 do { 1435 if (vi->mergeable_rx_bufs) 1436 err = add_recvbuf_mergeable(vi, rq, gfp); 1437 else if (vi->big_packets) 1438 err = add_recvbuf_big(vi, rq, gfp); 1439 else 1440 err = add_recvbuf_small(vi, rq, gfp); 1441 1442 oom = err == -ENOMEM; 1443 if (err) 1444 break; 1445 } while (rq->vq->num_free); 1446 if (virtqueue_kick_prepare(rq->vq) && virtqueue_notify(rq->vq)) { 1447 unsigned long flags; 1448 1449 flags = u64_stats_update_begin_irqsave(&rq->stats.syncp); 1450 rq->stats.kicks++; 1451 u64_stats_update_end_irqrestore(&rq->stats.syncp, flags); 1452 } 1453 1454 return !oom; 1455 } 1456 1457 static void skb_recv_done(struct virtqueue *rvq) 1458 { 1459 struct virtnet_info *vi = rvq->vdev->priv; 1460 struct receive_queue *rq = &vi->rq[vq2rxq(rvq)]; 1461 1462 virtqueue_napi_schedule(&rq->napi, rvq); 1463 } 1464 1465 static void virtnet_napi_enable(struct virtqueue *vq, struct napi_struct *napi) 1466 { 1467 napi_enable(napi); 1468 1469 /* If all buffers were filled by other side before we napi_enabled, we 1470 * won't get another interrupt, so process any outstanding packets now. 1471 * Call local_bh_enable after to trigger softIRQ processing. 1472 */ 1473 local_bh_disable(); 1474 virtqueue_napi_schedule(napi, vq); 1475 local_bh_enable(); 1476 } 1477 1478 static void virtnet_napi_tx_enable(struct virtnet_info *vi, 1479 struct virtqueue *vq, 1480 struct napi_struct *napi) 1481 { 1482 if (!napi->weight) 1483 return; 1484 1485 /* Tx napi touches cachelines on the cpu handling tx interrupts. Only 1486 * enable the feature if this is likely affine with the transmit path. 1487 */ 1488 if (!vi->affinity_hint_set) { 1489 napi->weight = 0; 1490 return; 1491 } 1492 1493 return virtnet_napi_enable(vq, napi); 1494 } 1495 1496 static void virtnet_napi_tx_disable(struct napi_struct *napi) 1497 { 1498 if (napi->weight) 1499 napi_disable(napi); 1500 } 1501 1502 static void refill_work(struct work_struct *work) 1503 { 1504 struct virtnet_info *vi = 1505 container_of(work, struct virtnet_info, refill.work); 1506 bool still_empty; 1507 int i; 1508 1509 for (i = 0; i < vi->curr_queue_pairs; i++) { 1510 struct receive_queue *rq = &vi->rq[i]; 1511 1512 napi_disable(&rq->napi); 1513 still_empty = !try_fill_recv(vi, rq, GFP_KERNEL); 1514 virtnet_napi_enable(rq->vq, &rq->napi); 1515 1516 /* In theory, this can happen: if we don't get any buffers in 1517 * we will *never* try to fill again. 1518 */ 1519 if (still_empty) 1520 schedule_delayed_work(&vi->refill, HZ/2); 1521 } 1522 } 1523 1524 static int virtnet_receive(struct receive_queue *rq, int budget, 1525 unsigned int *xdp_xmit) 1526 { 1527 struct virtnet_info *vi = rq->vq->vdev->priv; 1528 struct virtnet_rq_stats stats = {}; 1529 unsigned int len; 1530 void *buf; 1531 int i; 1532 1533 if (!vi->big_packets || vi->mergeable_rx_bufs) { 1534 void *ctx; 1535 1536 while (stats.packets < budget && 1537 (buf = virtqueue_get_buf_ctx(rq->vq, &len, &ctx))) { 1538 receive_buf(vi, rq, buf, len, ctx, xdp_xmit, &stats); 1539 stats.packets++; 1540 } 1541 } else { 1542 while (stats.packets < budget && 1543 (buf = virtqueue_get_buf(rq->vq, &len)) != NULL) { 1544 receive_buf(vi, rq, buf, len, NULL, xdp_xmit, &stats); 1545 stats.packets++; 1546 } 1547 } 1548 1549 if (rq->vq->num_free > min((unsigned int)budget, virtqueue_get_vring_size(rq->vq)) / 2) { 1550 if (!try_fill_recv(vi, rq, GFP_ATOMIC)) { 1551 spin_lock(&vi->refill_lock); 1552 if (vi->refill_enabled) 1553 schedule_delayed_work(&vi->refill, 0); 1554 spin_unlock(&vi->refill_lock); 1555 } 1556 } 1557 1558 u64_stats_update_begin(&rq->stats.syncp); 1559 for (i = 0; i < VIRTNET_RQ_STATS_LEN; i++) { 1560 size_t offset = virtnet_rq_stats_desc[i].offset; 1561 u64 *item; 1562 1563 item = (u64 *)((u8 *)&rq->stats + offset); 1564 *item += *(u64 *)((u8 *)&stats + offset); 1565 } 1566 u64_stats_update_end(&rq->stats.syncp); 1567 1568 return stats.packets; 1569 } 1570 1571 static void free_old_xmit_skbs(struct send_queue *sq, bool in_napi) 1572 { 1573 unsigned int len; 1574 unsigned int packets = 0; 1575 unsigned int bytes = 0; 1576 void *ptr; 1577 1578 while ((ptr = virtqueue_get_buf(sq->vq, &len)) != NULL) { 1579 if (likely(!is_xdp_frame(ptr))) { 1580 struct sk_buff *skb = ptr; 1581 1582 pr_debug("Sent skb %p\n", skb); 1583 1584 bytes += skb->len; 1585 napi_consume_skb(skb, in_napi); 1586 } else { 1587 struct xdp_frame *frame = ptr_to_xdp(ptr); 1588 1589 bytes += frame->len; 1590 xdp_return_frame(frame); 1591 } 1592 packets++; 1593 } 1594 1595 /* Avoid overhead when no packets have been processed 1596 * happens when called speculatively from start_xmit. 1597 */ 1598 if (!packets) 1599 return; 1600 1601 u64_stats_update_begin(&sq->stats.syncp); 1602 sq->stats.bytes += bytes; 1603 sq->stats.packets += packets; 1604 u64_stats_update_end(&sq->stats.syncp); 1605 } 1606 1607 static bool is_xdp_raw_buffer_queue(struct virtnet_info *vi, int q) 1608 { 1609 if (q < (vi->curr_queue_pairs - vi->xdp_queue_pairs)) 1610 return false; 1611 else if (q < vi->curr_queue_pairs) 1612 return true; 1613 else 1614 return false; 1615 } 1616 1617 static void virtnet_poll_cleantx(struct receive_queue *rq) 1618 { 1619 struct virtnet_info *vi = rq->vq->vdev->priv; 1620 unsigned int index = vq2rxq(rq->vq); 1621 struct send_queue *sq = &vi->sq[index]; 1622 struct netdev_queue *txq = netdev_get_tx_queue(vi->dev, index); 1623 1624 if (!sq->napi.weight || is_xdp_raw_buffer_queue(vi, index)) 1625 return; 1626 1627 if (__netif_tx_trylock(txq)) { 1628 do { 1629 virtqueue_disable_cb(sq->vq); 1630 free_old_xmit_skbs(sq, true); 1631 } while (unlikely(!virtqueue_enable_cb_delayed(sq->vq))); 1632 1633 if (sq->vq->num_free >= 2 + MAX_SKB_FRAGS) 1634 netif_tx_wake_queue(txq); 1635 1636 __netif_tx_unlock(txq); 1637 } 1638 } 1639 1640 static int virtnet_poll(struct napi_struct *napi, int budget) 1641 { 1642 struct receive_queue *rq = 1643 container_of(napi, struct receive_queue, napi); 1644 struct virtnet_info *vi = rq->vq->vdev->priv; 1645 struct send_queue *sq; 1646 unsigned int received; 1647 unsigned int xdp_xmit = 0; 1648 1649 virtnet_poll_cleantx(rq); 1650 1651 received = virtnet_receive(rq, budget, &xdp_xmit); 1652 1653 /* Out of packets? */ 1654 if (received < budget) 1655 virtqueue_napi_complete(napi, rq->vq, received); 1656 1657 if (xdp_xmit & VIRTIO_XDP_REDIR) 1658 xdp_do_flush(); 1659 1660 if (xdp_xmit & VIRTIO_XDP_TX) { 1661 sq = virtnet_xdp_get_sq(vi); 1662 if (virtqueue_kick_prepare(sq->vq) && virtqueue_notify(sq->vq)) { 1663 u64_stats_update_begin(&sq->stats.syncp); 1664 sq->stats.kicks++; 1665 u64_stats_update_end(&sq->stats.syncp); 1666 } 1667 virtnet_xdp_put_sq(vi, sq); 1668 } 1669 1670 return received; 1671 } 1672 1673 static int virtnet_open(struct net_device *dev) 1674 { 1675 struct virtnet_info *vi = netdev_priv(dev); 1676 int i, err; 1677 1678 enable_delayed_refill(vi); 1679 1680 for (i = 0; i < vi->max_queue_pairs; i++) { 1681 if (i < vi->curr_queue_pairs) 1682 /* Make sure we have some buffers: if oom use wq. */ 1683 if (!try_fill_recv(vi, &vi->rq[i], GFP_KERNEL)) 1684 schedule_delayed_work(&vi->refill, 0); 1685 1686 err = xdp_rxq_info_reg(&vi->rq[i].xdp_rxq, dev, i, vi->rq[i].napi.napi_id); 1687 if (err < 0) 1688 return err; 1689 1690 err = xdp_rxq_info_reg_mem_model(&vi->rq[i].xdp_rxq, 1691 MEM_TYPE_PAGE_SHARED, NULL); 1692 if (err < 0) { 1693 xdp_rxq_info_unreg(&vi->rq[i].xdp_rxq); 1694 return err; 1695 } 1696 1697 virtnet_napi_enable(vi->rq[i].vq, &vi->rq[i].napi); 1698 virtnet_napi_tx_enable(vi, vi->sq[i].vq, &vi->sq[i].napi); 1699 } 1700 1701 return 0; 1702 } 1703 1704 static int virtnet_poll_tx(struct napi_struct *napi, int budget) 1705 { 1706 struct send_queue *sq = container_of(napi, struct send_queue, napi); 1707 struct virtnet_info *vi = sq->vq->vdev->priv; 1708 unsigned int index = vq2txq(sq->vq); 1709 struct netdev_queue *txq; 1710 int opaque; 1711 bool done; 1712 1713 if (unlikely(is_xdp_raw_buffer_queue(vi, index))) { 1714 /* We don't need to enable cb for XDP */ 1715 napi_complete_done(napi, 0); 1716 return 0; 1717 } 1718 1719 txq = netdev_get_tx_queue(vi->dev, index); 1720 __netif_tx_lock(txq, raw_smp_processor_id()); 1721 virtqueue_disable_cb(sq->vq); 1722 free_old_xmit_skbs(sq, true); 1723 1724 if (sq->vq->num_free >= 2 + MAX_SKB_FRAGS) 1725 netif_tx_wake_queue(txq); 1726 1727 opaque = virtqueue_enable_cb_prepare(sq->vq); 1728 1729 done = napi_complete_done(napi, 0); 1730 1731 if (!done) 1732 virtqueue_disable_cb(sq->vq); 1733 1734 __netif_tx_unlock(txq); 1735 1736 if (done) { 1737 if (unlikely(virtqueue_poll(sq->vq, opaque))) { 1738 if (napi_schedule_prep(napi)) { 1739 __netif_tx_lock(txq, raw_smp_processor_id()); 1740 virtqueue_disable_cb(sq->vq); 1741 __netif_tx_unlock(txq); 1742 __napi_schedule(napi); 1743 } 1744 } 1745 } 1746 1747 return 0; 1748 } 1749 1750 static int xmit_skb(struct send_queue *sq, struct sk_buff *skb) 1751 { 1752 struct virtio_net_hdr_mrg_rxbuf *hdr; 1753 const unsigned char *dest = ((struct ethhdr *)skb->data)->h_dest; 1754 struct virtnet_info *vi = sq->vq->vdev->priv; 1755 int num_sg; 1756 unsigned hdr_len = vi->hdr_len; 1757 bool can_push; 1758 1759 pr_debug("%s: xmit %p %pM\n", vi->dev->name, skb, dest); 1760 1761 can_push = vi->any_header_sg && 1762 !((unsigned long)skb->data & (__alignof__(*hdr) - 1)) && 1763 !skb_header_cloned(skb) && skb_headroom(skb) >= hdr_len; 1764 /* Even if we can, don't push here yet as this would skew 1765 * csum_start offset below. */ 1766 if (can_push) 1767 hdr = (struct virtio_net_hdr_mrg_rxbuf *)(skb->data - hdr_len); 1768 else 1769 hdr = skb_vnet_hdr(skb); 1770 1771 if (virtio_net_hdr_from_skb(skb, &hdr->hdr, 1772 virtio_is_little_endian(vi->vdev), false, 1773 0)) 1774 return -EPROTO; 1775 1776 if (vi->mergeable_rx_bufs) 1777 hdr->num_buffers = 0; 1778 1779 sg_init_table(sq->sg, skb_shinfo(skb)->nr_frags + (can_push ? 1 : 2)); 1780 if (can_push) { 1781 __skb_push(skb, hdr_len); 1782 num_sg = skb_to_sgvec(skb, sq->sg, 0, skb->len); 1783 if (unlikely(num_sg < 0)) 1784 return num_sg; 1785 /* Pull header back to avoid skew in tx bytes calculations. */ 1786 __skb_pull(skb, hdr_len); 1787 } else { 1788 sg_set_buf(sq->sg, hdr, hdr_len); 1789 num_sg = skb_to_sgvec(skb, sq->sg + 1, 0, skb->len); 1790 if (unlikely(num_sg < 0)) 1791 return num_sg; 1792 num_sg++; 1793 } 1794 return virtqueue_add_outbuf(sq->vq, sq->sg, num_sg, skb, GFP_ATOMIC); 1795 } 1796 1797 static netdev_tx_t start_xmit(struct sk_buff *skb, struct net_device *dev) 1798 { 1799 struct virtnet_info *vi = netdev_priv(dev); 1800 int qnum = skb_get_queue_mapping(skb); 1801 struct send_queue *sq = &vi->sq[qnum]; 1802 int err; 1803 struct netdev_queue *txq = netdev_get_tx_queue(dev, qnum); 1804 bool kick = !netdev_xmit_more(); 1805 bool use_napi = sq->napi.weight; 1806 1807 /* Free up any pending old buffers before queueing new ones. */ 1808 do { 1809 if (use_napi) 1810 virtqueue_disable_cb(sq->vq); 1811 1812 free_old_xmit_skbs(sq, false); 1813 1814 } while (use_napi && kick && 1815 unlikely(!virtqueue_enable_cb_delayed(sq->vq))); 1816 1817 /* timestamp packet in software */ 1818 skb_tx_timestamp(skb); 1819 1820 /* Try to transmit */ 1821 err = xmit_skb(sq, skb); 1822 1823 /* This should not happen! */ 1824 if (unlikely(err)) { 1825 dev->stats.tx_fifo_errors++; 1826 if (net_ratelimit()) 1827 dev_warn(&dev->dev, 1828 "Unexpected TXQ (%d) queue failure: %d\n", 1829 qnum, err); 1830 dev->stats.tx_dropped++; 1831 dev_kfree_skb_any(skb); 1832 return NETDEV_TX_OK; 1833 } 1834 1835 /* Don't wait up for transmitted skbs to be freed. */ 1836 if (!use_napi) { 1837 skb_orphan(skb); 1838 nf_reset_ct(skb); 1839 } 1840 1841 /* If running out of space, stop queue to avoid getting packets that we 1842 * are then unable to transmit. 1843 * An alternative would be to force queuing layer to requeue the skb by 1844 * returning NETDEV_TX_BUSY. However, NETDEV_TX_BUSY should not be 1845 * returned in a normal path of operation: it means that driver is not 1846 * maintaining the TX queue stop/start state properly, and causes 1847 * the stack to do a non-trivial amount of useless work. 1848 * Since most packets only take 1 or 2 ring slots, stopping the queue 1849 * early means 16 slots are typically wasted. 1850 */ 1851 if (sq->vq->num_free < 2+MAX_SKB_FRAGS) { 1852 netif_stop_subqueue(dev, qnum); 1853 if (!use_napi && 1854 unlikely(!virtqueue_enable_cb_delayed(sq->vq))) { 1855 /* More just got used, free them then recheck. */ 1856 free_old_xmit_skbs(sq, false); 1857 if (sq->vq->num_free >= 2+MAX_SKB_FRAGS) { 1858 netif_start_subqueue(dev, qnum); 1859 virtqueue_disable_cb(sq->vq); 1860 } 1861 } 1862 } 1863 1864 if (kick || netif_xmit_stopped(txq)) { 1865 if (virtqueue_kick_prepare(sq->vq) && virtqueue_notify(sq->vq)) { 1866 u64_stats_update_begin(&sq->stats.syncp); 1867 sq->stats.kicks++; 1868 u64_stats_update_end(&sq->stats.syncp); 1869 } 1870 } 1871 1872 return NETDEV_TX_OK; 1873 } 1874 1875 /* 1876 * Send command via the control virtqueue and check status. Commands 1877 * supported by the hypervisor, as indicated by feature bits, should 1878 * never fail unless improperly formatted. 1879 */ 1880 static bool virtnet_send_command(struct virtnet_info *vi, u8 class, u8 cmd, 1881 struct scatterlist *out) 1882 { 1883 struct scatterlist *sgs[4], hdr, stat; 1884 unsigned out_num = 0, tmp; 1885 int ret; 1886 1887 /* Caller should know better */ 1888 BUG_ON(!virtio_has_feature(vi->vdev, VIRTIO_NET_F_CTRL_VQ)); 1889 1890 vi->ctrl->status = ~0; 1891 vi->ctrl->hdr.class = class; 1892 vi->ctrl->hdr.cmd = cmd; 1893 /* Add header */ 1894 sg_init_one(&hdr, &vi->ctrl->hdr, sizeof(vi->ctrl->hdr)); 1895 sgs[out_num++] = &hdr; 1896 1897 if (out) 1898 sgs[out_num++] = out; 1899 1900 /* Add return status. */ 1901 sg_init_one(&stat, &vi->ctrl->status, sizeof(vi->ctrl->status)); 1902 sgs[out_num] = &stat; 1903 1904 BUG_ON(out_num + 1 > ARRAY_SIZE(sgs)); 1905 ret = virtqueue_add_sgs(vi->cvq, sgs, out_num, 1, vi, GFP_ATOMIC); 1906 if (ret < 0) { 1907 dev_warn(&vi->vdev->dev, 1908 "Failed to add sgs for command vq: %d\n.", ret); 1909 return false; 1910 } 1911 1912 if (unlikely(!virtqueue_kick(vi->cvq))) 1913 return vi->ctrl->status == VIRTIO_NET_OK; 1914 1915 /* Spin for a response, the kick causes an ioport write, trapping 1916 * into the hypervisor, so the request should be handled immediately. 1917 */ 1918 while (!virtqueue_get_buf(vi->cvq, &tmp) && 1919 !virtqueue_is_broken(vi->cvq)) 1920 cpu_relax(); 1921 1922 return vi->ctrl->status == VIRTIO_NET_OK; 1923 } 1924 1925 static int virtnet_set_mac_address(struct net_device *dev, void *p) 1926 { 1927 struct virtnet_info *vi = netdev_priv(dev); 1928 struct virtio_device *vdev = vi->vdev; 1929 int ret; 1930 struct sockaddr *addr; 1931 struct scatterlist sg; 1932 1933 if (virtio_has_feature(vi->vdev, VIRTIO_NET_F_STANDBY)) 1934 return -EOPNOTSUPP; 1935 1936 addr = kmemdup(p, sizeof(*addr), GFP_KERNEL); 1937 if (!addr) 1938 return -ENOMEM; 1939 1940 ret = eth_prepare_mac_addr_change(dev, addr); 1941 if (ret) 1942 goto out; 1943 1944 if (virtio_has_feature(vdev, VIRTIO_NET_F_CTRL_MAC_ADDR)) { 1945 sg_init_one(&sg, addr->sa_data, dev->addr_len); 1946 if (!virtnet_send_command(vi, VIRTIO_NET_CTRL_MAC, 1947 VIRTIO_NET_CTRL_MAC_ADDR_SET, &sg)) { 1948 dev_warn(&vdev->dev, 1949 "Failed to set mac address by vq command.\n"); 1950 ret = -EINVAL; 1951 goto out; 1952 } 1953 } else if (virtio_has_feature(vdev, VIRTIO_NET_F_MAC) && 1954 !virtio_has_feature(vdev, VIRTIO_F_VERSION_1)) { 1955 unsigned int i; 1956 1957 /* Naturally, this has an atomicity problem. */ 1958 for (i = 0; i < dev->addr_len; i++) 1959 virtio_cwrite8(vdev, 1960 offsetof(struct virtio_net_config, mac) + 1961 i, addr->sa_data[i]); 1962 } 1963 1964 eth_commit_mac_addr_change(dev, p); 1965 ret = 0; 1966 1967 out: 1968 kfree(addr); 1969 return ret; 1970 } 1971 1972 static void virtnet_stats(struct net_device *dev, 1973 struct rtnl_link_stats64 *tot) 1974 { 1975 struct virtnet_info *vi = netdev_priv(dev); 1976 unsigned int start; 1977 int i; 1978 1979 for (i = 0; i < vi->max_queue_pairs; i++) { 1980 u64 tpackets, tbytes, terrors, rpackets, rbytes, rdrops; 1981 struct receive_queue *rq = &vi->rq[i]; 1982 struct send_queue *sq = &vi->sq[i]; 1983 1984 do { 1985 start = u64_stats_fetch_begin_irq(&sq->stats.syncp); 1986 tpackets = sq->stats.packets; 1987 tbytes = sq->stats.bytes; 1988 terrors = sq->stats.tx_timeouts; 1989 } while (u64_stats_fetch_retry_irq(&sq->stats.syncp, start)); 1990 1991 do { 1992 start = u64_stats_fetch_begin_irq(&rq->stats.syncp); 1993 rpackets = rq->stats.packets; 1994 rbytes = rq->stats.bytes; 1995 rdrops = rq->stats.drops; 1996 } while (u64_stats_fetch_retry_irq(&rq->stats.syncp, start)); 1997 1998 tot->rx_packets += rpackets; 1999 tot->tx_packets += tpackets; 2000 tot->rx_bytes += rbytes; 2001 tot->tx_bytes += tbytes; 2002 tot->rx_dropped += rdrops; 2003 tot->tx_errors += terrors; 2004 } 2005 2006 tot->tx_dropped = dev->stats.tx_dropped; 2007 tot->tx_fifo_errors = dev->stats.tx_fifo_errors; 2008 tot->rx_length_errors = dev->stats.rx_length_errors; 2009 tot->rx_frame_errors = dev->stats.rx_frame_errors; 2010 } 2011 2012 static void virtnet_ack_link_announce(struct virtnet_info *vi) 2013 { 2014 rtnl_lock(); 2015 if (!virtnet_send_command(vi, VIRTIO_NET_CTRL_ANNOUNCE, 2016 VIRTIO_NET_CTRL_ANNOUNCE_ACK, NULL)) 2017 dev_warn(&vi->dev->dev, "Failed to ack link announce.\n"); 2018 rtnl_unlock(); 2019 } 2020 2021 static int _virtnet_set_queues(struct virtnet_info *vi, u16 queue_pairs) 2022 { 2023 struct scatterlist sg; 2024 struct net_device *dev = vi->dev; 2025 2026 if (!vi->has_cvq || !virtio_has_feature(vi->vdev, VIRTIO_NET_F_MQ)) 2027 return 0; 2028 2029 vi->ctrl->mq.virtqueue_pairs = cpu_to_virtio16(vi->vdev, queue_pairs); 2030 sg_init_one(&sg, &vi->ctrl->mq, sizeof(vi->ctrl->mq)); 2031 2032 if (!virtnet_send_command(vi, VIRTIO_NET_CTRL_MQ, 2033 VIRTIO_NET_CTRL_MQ_VQ_PAIRS_SET, &sg)) { 2034 dev_warn(&dev->dev, "Fail to set num of queue pairs to %d\n", 2035 queue_pairs); 2036 return -EINVAL; 2037 } else { 2038 vi->curr_queue_pairs = queue_pairs; 2039 /* virtnet_open() will refill when device is going to up. */ 2040 if (dev->flags & IFF_UP) 2041 schedule_delayed_work(&vi->refill, 0); 2042 } 2043 2044 return 0; 2045 } 2046 2047 static int virtnet_set_queues(struct virtnet_info *vi, u16 queue_pairs) 2048 { 2049 int err; 2050 2051 rtnl_lock(); 2052 err = _virtnet_set_queues(vi, queue_pairs); 2053 rtnl_unlock(); 2054 return err; 2055 } 2056 2057 static int virtnet_close(struct net_device *dev) 2058 { 2059 struct virtnet_info *vi = netdev_priv(dev); 2060 int i; 2061 2062 /* Make sure NAPI doesn't schedule refill work */ 2063 disable_delayed_refill(vi); 2064 /* Make sure refill_work doesn't re-enable napi! */ 2065 cancel_delayed_work_sync(&vi->refill); 2066 2067 for (i = 0; i < vi->max_queue_pairs; i++) { 2068 xdp_rxq_info_unreg(&vi->rq[i].xdp_rxq); 2069 napi_disable(&vi->rq[i].napi); 2070 virtnet_napi_tx_disable(&vi->sq[i].napi); 2071 } 2072 2073 return 0; 2074 } 2075 2076 static void virtnet_set_rx_mode(struct net_device *dev) 2077 { 2078 struct virtnet_info *vi = netdev_priv(dev); 2079 struct scatterlist sg[2]; 2080 struct virtio_net_ctrl_mac *mac_data; 2081 struct netdev_hw_addr *ha; 2082 int uc_count; 2083 int mc_count; 2084 void *buf; 2085 int i; 2086 2087 /* We can't dynamically set ndo_set_rx_mode, so return gracefully */ 2088 if (!virtio_has_feature(vi->vdev, VIRTIO_NET_F_CTRL_RX)) 2089 return; 2090 2091 vi->ctrl->promisc = ((dev->flags & IFF_PROMISC) != 0); 2092 vi->ctrl->allmulti = ((dev->flags & IFF_ALLMULTI) != 0); 2093 2094 sg_init_one(sg, &vi->ctrl->promisc, sizeof(vi->ctrl->promisc)); 2095 2096 if (!virtnet_send_command(vi, VIRTIO_NET_CTRL_RX, 2097 VIRTIO_NET_CTRL_RX_PROMISC, sg)) 2098 dev_warn(&dev->dev, "Failed to %sable promisc mode.\n", 2099 vi->ctrl->promisc ? "en" : "dis"); 2100 2101 sg_init_one(sg, &vi->ctrl->allmulti, sizeof(vi->ctrl->allmulti)); 2102 2103 if (!virtnet_send_command(vi, VIRTIO_NET_CTRL_RX, 2104 VIRTIO_NET_CTRL_RX_ALLMULTI, sg)) 2105 dev_warn(&dev->dev, "Failed to %sable allmulti mode.\n", 2106 vi->ctrl->allmulti ? "en" : "dis"); 2107 2108 uc_count = netdev_uc_count(dev); 2109 mc_count = netdev_mc_count(dev); 2110 /* MAC filter - use one buffer for both lists */ 2111 buf = kzalloc(((uc_count + mc_count) * ETH_ALEN) + 2112 (2 * sizeof(mac_data->entries)), GFP_ATOMIC); 2113 mac_data = buf; 2114 if (!buf) 2115 return; 2116 2117 sg_init_table(sg, 2); 2118 2119 /* Store the unicast list and count in the front of the buffer */ 2120 mac_data->entries = cpu_to_virtio32(vi->vdev, uc_count); 2121 i = 0; 2122 netdev_for_each_uc_addr(ha, dev) 2123 memcpy(&mac_data->macs[i++][0], ha->addr, ETH_ALEN); 2124 2125 sg_set_buf(&sg[0], mac_data, 2126 sizeof(mac_data->entries) + (uc_count * ETH_ALEN)); 2127 2128 /* multicast list and count fill the end */ 2129 mac_data = (void *)&mac_data->macs[uc_count][0]; 2130 2131 mac_data->entries = cpu_to_virtio32(vi->vdev, mc_count); 2132 i = 0; 2133 netdev_for_each_mc_addr(ha, dev) 2134 memcpy(&mac_data->macs[i++][0], ha->addr, ETH_ALEN); 2135 2136 sg_set_buf(&sg[1], mac_data, 2137 sizeof(mac_data->entries) + (mc_count * ETH_ALEN)); 2138 2139 if (!virtnet_send_command(vi, VIRTIO_NET_CTRL_MAC, 2140 VIRTIO_NET_CTRL_MAC_TABLE_SET, sg)) 2141 dev_warn(&dev->dev, "Failed to set MAC filter table.\n"); 2142 2143 kfree(buf); 2144 } 2145 2146 static int virtnet_vlan_rx_add_vid(struct net_device *dev, 2147 __be16 proto, u16 vid) 2148 { 2149 struct virtnet_info *vi = netdev_priv(dev); 2150 struct scatterlist sg; 2151 2152 vi->ctrl->vid = cpu_to_virtio16(vi->vdev, vid); 2153 sg_init_one(&sg, &vi->ctrl->vid, sizeof(vi->ctrl->vid)); 2154 2155 if (!virtnet_send_command(vi, VIRTIO_NET_CTRL_VLAN, 2156 VIRTIO_NET_CTRL_VLAN_ADD, &sg)) 2157 dev_warn(&dev->dev, "Failed to add VLAN ID %d.\n", vid); 2158 return 0; 2159 } 2160 2161 static int virtnet_vlan_rx_kill_vid(struct net_device *dev, 2162 __be16 proto, u16 vid) 2163 { 2164 struct virtnet_info *vi = netdev_priv(dev); 2165 struct scatterlist sg; 2166 2167 vi->ctrl->vid = cpu_to_virtio16(vi->vdev, vid); 2168 sg_init_one(&sg, &vi->ctrl->vid, sizeof(vi->ctrl->vid)); 2169 2170 if (!virtnet_send_command(vi, VIRTIO_NET_CTRL_VLAN, 2171 VIRTIO_NET_CTRL_VLAN_DEL, &sg)) 2172 dev_warn(&dev->dev, "Failed to kill VLAN ID %d.\n", vid); 2173 return 0; 2174 } 2175 2176 static void virtnet_clean_affinity(struct virtnet_info *vi) 2177 { 2178 int i; 2179 2180 if (vi->affinity_hint_set) { 2181 for (i = 0; i < vi->max_queue_pairs; i++) { 2182 virtqueue_set_affinity(vi->rq[i].vq, NULL); 2183 virtqueue_set_affinity(vi->sq[i].vq, NULL); 2184 } 2185 2186 vi->affinity_hint_set = false; 2187 } 2188 } 2189 2190 static void virtnet_set_affinity(struct virtnet_info *vi) 2191 { 2192 cpumask_var_t mask; 2193 int stragglers; 2194 int group_size; 2195 int i, j, cpu; 2196 int num_cpu; 2197 int stride; 2198 2199 if (!zalloc_cpumask_var(&mask, GFP_KERNEL)) { 2200 virtnet_clean_affinity(vi); 2201 return; 2202 } 2203 2204 num_cpu = num_online_cpus(); 2205 stride = max_t(int, num_cpu / vi->curr_queue_pairs, 1); 2206 stragglers = num_cpu >= vi->curr_queue_pairs ? 2207 num_cpu % vi->curr_queue_pairs : 2208 0; 2209 cpu = cpumask_first(cpu_online_mask); 2210 2211 for (i = 0; i < vi->curr_queue_pairs; i++) { 2212 group_size = stride + (i < stragglers ? 1 : 0); 2213 2214 for (j = 0; j < group_size; j++) { 2215 cpumask_set_cpu(cpu, mask); 2216 cpu = cpumask_next_wrap(cpu, cpu_online_mask, 2217 nr_cpu_ids, false); 2218 } 2219 virtqueue_set_affinity(vi->rq[i].vq, mask); 2220 virtqueue_set_affinity(vi->sq[i].vq, mask); 2221 __netif_set_xps_queue(vi->dev, cpumask_bits(mask), i, XPS_CPUS); 2222 cpumask_clear(mask); 2223 } 2224 2225 vi->affinity_hint_set = true; 2226 free_cpumask_var(mask); 2227 } 2228 2229 static int virtnet_cpu_online(unsigned int cpu, struct hlist_node *node) 2230 { 2231 struct virtnet_info *vi = hlist_entry_safe(node, struct virtnet_info, 2232 node); 2233 virtnet_set_affinity(vi); 2234 return 0; 2235 } 2236 2237 static int virtnet_cpu_dead(unsigned int cpu, struct hlist_node *node) 2238 { 2239 struct virtnet_info *vi = hlist_entry_safe(node, struct virtnet_info, 2240 node_dead); 2241 virtnet_set_affinity(vi); 2242 return 0; 2243 } 2244 2245 static int virtnet_cpu_down_prep(unsigned int cpu, struct hlist_node *node) 2246 { 2247 struct virtnet_info *vi = hlist_entry_safe(node, struct virtnet_info, 2248 node); 2249 2250 virtnet_clean_affinity(vi); 2251 return 0; 2252 } 2253 2254 static enum cpuhp_state virtionet_online; 2255 2256 static int virtnet_cpu_notif_add(struct virtnet_info *vi) 2257 { 2258 int ret; 2259 2260 ret = cpuhp_state_add_instance_nocalls(virtionet_online, &vi->node); 2261 if (ret) 2262 return ret; 2263 ret = cpuhp_state_add_instance_nocalls(CPUHP_VIRT_NET_DEAD, 2264 &vi->node_dead); 2265 if (!ret) 2266 return ret; 2267 cpuhp_state_remove_instance_nocalls(virtionet_online, &vi->node); 2268 return ret; 2269 } 2270 2271 static void virtnet_cpu_notif_remove(struct virtnet_info *vi) 2272 { 2273 cpuhp_state_remove_instance_nocalls(virtionet_online, &vi->node); 2274 cpuhp_state_remove_instance_nocalls(CPUHP_VIRT_NET_DEAD, 2275 &vi->node_dead); 2276 } 2277 2278 static void virtnet_get_ringparam(struct net_device *dev, 2279 struct ethtool_ringparam *ring, 2280 struct kernel_ethtool_ringparam *kernel_ring, 2281 struct netlink_ext_ack *extack) 2282 { 2283 struct virtnet_info *vi = netdev_priv(dev); 2284 2285 ring->rx_max_pending = virtqueue_get_vring_size(vi->rq[0].vq); 2286 ring->tx_max_pending = virtqueue_get_vring_size(vi->sq[0].vq); 2287 ring->rx_pending = ring->rx_max_pending; 2288 ring->tx_pending = ring->tx_max_pending; 2289 } 2290 2291 static bool virtnet_commit_rss_command(struct virtnet_info *vi) 2292 { 2293 struct net_device *dev = vi->dev; 2294 struct scatterlist sgs[4]; 2295 unsigned int sg_buf_size; 2296 2297 /* prepare sgs */ 2298 sg_init_table(sgs, 4); 2299 2300 sg_buf_size = offsetof(struct virtio_net_ctrl_rss, indirection_table); 2301 sg_set_buf(&sgs[0], &vi->ctrl->rss, sg_buf_size); 2302 2303 sg_buf_size = sizeof(uint16_t) * (vi->ctrl->rss.indirection_table_mask + 1); 2304 sg_set_buf(&sgs[1], vi->ctrl->rss.indirection_table, sg_buf_size); 2305 2306 sg_buf_size = offsetof(struct virtio_net_ctrl_rss, key) 2307 - offsetof(struct virtio_net_ctrl_rss, max_tx_vq); 2308 sg_set_buf(&sgs[2], &vi->ctrl->rss.max_tx_vq, sg_buf_size); 2309 2310 sg_buf_size = vi->rss_key_size; 2311 sg_set_buf(&sgs[3], vi->ctrl->rss.key, sg_buf_size); 2312 2313 if (!virtnet_send_command(vi, VIRTIO_NET_CTRL_MQ, 2314 vi->has_rss ? VIRTIO_NET_CTRL_MQ_RSS_CONFIG 2315 : VIRTIO_NET_CTRL_MQ_HASH_CONFIG, sgs)) { 2316 dev_warn(&dev->dev, "VIRTIONET issue with committing RSS sgs\n"); 2317 return false; 2318 } 2319 return true; 2320 } 2321 2322 static void virtnet_init_default_rss(struct virtnet_info *vi) 2323 { 2324 u32 indir_val = 0; 2325 int i = 0; 2326 2327 vi->ctrl->rss.hash_types = vi->rss_hash_types_supported; 2328 vi->rss_hash_types_saved = vi->rss_hash_types_supported; 2329 vi->ctrl->rss.indirection_table_mask = vi->rss_indir_table_size 2330 ? vi->rss_indir_table_size - 1 : 0; 2331 vi->ctrl->rss.unclassified_queue = 0; 2332 2333 for (; i < vi->rss_indir_table_size; ++i) { 2334 indir_val = ethtool_rxfh_indir_default(i, vi->curr_queue_pairs); 2335 vi->ctrl->rss.indirection_table[i] = indir_val; 2336 } 2337 2338 vi->ctrl->rss.max_tx_vq = vi->curr_queue_pairs; 2339 vi->ctrl->rss.hash_key_length = vi->rss_key_size; 2340 2341 netdev_rss_key_fill(vi->ctrl->rss.key, vi->rss_key_size); 2342 } 2343 2344 static void virtnet_get_hashflow(const struct virtnet_info *vi, struct ethtool_rxnfc *info) 2345 { 2346 info->data = 0; 2347 switch (info->flow_type) { 2348 case TCP_V4_FLOW: 2349 if (vi->rss_hash_types_saved & VIRTIO_NET_RSS_HASH_TYPE_TCPv4) { 2350 info->data = RXH_IP_SRC | RXH_IP_DST | 2351 RXH_L4_B_0_1 | RXH_L4_B_2_3; 2352 } else if (vi->rss_hash_types_saved & VIRTIO_NET_RSS_HASH_TYPE_IPv4) { 2353 info->data = RXH_IP_SRC | RXH_IP_DST; 2354 } 2355 break; 2356 case TCP_V6_FLOW: 2357 if (vi->rss_hash_types_saved & VIRTIO_NET_RSS_HASH_TYPE_TCPv6) { 2358 info->data = RXH_IP_SRC | RXH_IP_DST | 2359 RXH_L4_B_0_1 | RXH_L4_B_2_3; 2360 } else if (vi->rss_hash_types_saved & VIRTIO_NET_RSS_HASH_TYPE_IPv6) { 2361 info->data = RXH_IP_SRC | RXH_IP_DST; 2362 } 2363 break; 2364 case UDP_V4_FLOW: 2365 if (vi->rss_hash_types_saved & VIRTIO_NET_RSS_HASH_TYPE_UDPv4) { 2366 info->data = RXH_IP_SRC | RXH_IP_DST | 2367 RXH_L4_B_0_1 | RXH_L4_B_2_3; 2368 } else if (vi->rss_hash_types_saved & VIRTIO_NET_RSS_HASH_TYPE_IPv4) { 2369 info->data = RXH_IP_SRC | RXH_IP_DST; 2370 } 2371 break; 2372 case UDP_V6_FLOW: 2373 if (vi->rss_hash_types_saved & VIRTIO_NET_RSS_HASH_TYPE_UDPv6) { 2374 info->data = RXH_IP_SRC | RXH_IP_DST | 2375 RXH_L4_B_0_1 | RXH_L4_B_2_3; 2376 } else if (vi->rss_hash_types_saved & VIRTIO_NET_RSS_HASH_TYPE_IPv6) { 2377 info->data = RXH_IP_SRC | RXH_IP_DST; 2378 } 2379 break; 2380 case IPV4_FLOW: 2381 if (vi->rss_hash_types_saved & VIRTIO_NET_RSS_HASH_TYPE_IPv4) 2382 info->data = RXH_IP_SRC | RXH_IP_DST; 2383 2384 break; 2385 case IPV6_FLOW: 2386 if (vi->rss_hash_types_saved & VIRTIO_NET_RSS_HASH_TYPE_IPv6) 2387 info->data = RXH_IP_SRC | RXH_IP_DST; 2388 2389 break; 2390 default: 2391 info->data = 0; 2392 break; 2393 } 2394 } 2395 2396 static bool virtnet_set_hashflow(struct virtnet_info *vi, struct ethtool_rxnfc *info) 2397 { 2398 u32 new_hashtypes = vi->rss_hash_types_saved; 2399 bool is_disable = info->data & RXH_DISCARD; 2400 bool is_l4 = info->data == (RXH_IP_SRC | RXH_IP_DST | RXH_L4_B_0_1 | RXH_L4_B_2_3); 2401 2402 /* supports only 'sd', 'sdfn' and 'r' */ 2403 if (!((info->data == (RXH_IP_SRC | RXH_IP_DST)) | is_l4 | is_disable)) 2404 return false; 2405 2406 switch (info->flow_type) { 2407 case TCP_V4_FLOW: 2408 new_hashtypes &= ~(VIRTIO_NET_RSS_HASH_TYPE_IPv4 | VIRTIO_NET_RSS_HASH_TYPE_TCPv4); 2409 if (!is_disable) 2410 new_hashtypes |= VIRTIO_NET_RSS_HASH_TYPE_IPv4 2411 | (is_l4 ? VIRTIO_NET_RSS_HASH_TYPE_TCPv4 : 0); 2412 break; 2413 case UDP_V4_FLOW: 2414 new_hashtypes &= ~(VIRTIO_NET_RSS_HASH_TYPE_IPv4 | VIRTIO_NET_RSS_HASH_TYPE_UDPv4); 2415 if (!is_disable) 2416 new_hashtypes |= VIRTIO_NET_RSS_HASH_TYPE_IPv4 2417 | (is_l4 ? VIRTIO_NET_RSS_HASH_TYPE_UDPv4 : 0); 2418 break; 2419 case IPV4_FLOW: 2420 new_hashtypes &= ~VIRTIO_NET_RSS_HASH_TYPE_IPv4; 2421 if (!is_disable) 2422 new_hashtypes = VIRTIO_NET_RSS_HASH_TYPE_IPv4; 2423 break; 2424 case TCP_V6_FLOW: 2425 new_hashtypes &= ~(VIRTIO_NET_RSS_HASH_TYPE_IPv6 | VIRTIO_NET_RSS_HASH_TYPE_TCPv6); 2426 if (!is_disable) 2427 new_hashtypes |= VIRTIO_NET_RSS_HASH_TYPE_IPv6 2428 | (is_l4 ? VIRTIO_NET_RSS_HASH_TYPE_TCPv6 : 0); 2429 break; 2430 case UDP_V6_FLOW: 2431 new_hashtypes &= ~(VIRTIO_NET_RSS_HASH_TYPE_IPv6 | VIRTIO_NET_RSS_HASH_TYPE_UDPv6); 2432 if (!is_disable) 2433 new_hashtypes |= VIRTIO_NET_RSS_HASH_TYPE_IPv6 2434 | (is_l4 ? VIRTIO_NET_RSS_HASH_TYPE_UDPv6 : 0); 2435 break; 2436 case IPV6_FLOW: 2437 new_hashtypes &= ~VIRTIO_NET_RSS_HASH_TYPE_IPv6; 2438 if (!is_disable) 2439 new_hashtypes = VIRTIO_NET_RSS_HASH_TYPE_IPv6; 2440 break; 2441 default: 2442 /* unsupported flow */ 2443 return false; 2444 } 2445 2446 /* if unsupported hashtype was set */ 2447 if (new_hashtypes != (new_hashtypes & vi->rss_hash_types_supported)) 2448 return false; 2449 2450 if (new_hashtypes != vi->rss_hash_types_saved) { 2451 vi->rss_hash_types_saved = new_hashtypes; 2452 vi->ctrl->rss.hash_types = vi->rss_hash_types_saved; 2453 if (vi->dev->features & NETIF_F_RXHASH) 2454 return virtnet_commit_rss_command(vi); 2455 } 2456 2457 return true; 2458 } 2459 2460 static void virtnet_get_drvinfo(struct net_device *dev, 2461 struct ethtool_drvinfo *info) 2462 { 2463 struct virtnet_info *vi = netdev_priv(dev); 2464 struct virtio_device *vdev = vi->vdev; 2465 2466 strlcpy(info->driver, KBUILD_MODNAME, sizeof(info->driver)); 2467 strlcpy(info->version, VIRTNET_DRIVER_VERSION, sizeof(info->version)); 2468 strlcpy(info->bus_info, virtio_bus_name(vdev), sizeof(info->bus_info)); 2469 2470 } 2471 2472 /* TODO: Eliminate OOO packets during switching */ 2473 static int virtnet_set_channels(struct net_device *dev, 2474 struct ethtool_channels *channels) 2475 { 2476 struct virtnet_info *vi = netdev_priv(dev); 2477 u16 queue_pairs = channels->combined_count; 2478 int err; 2479 2480 /* We don't support separate rx/tx channels. 2481 * We don't allow setting 'other' channels. 2482 */ 2483 if (channels->rx_count || channels->tx_count || channels->other_count) 2484 return -EINVAL; 2485 2486 if (queue_pairs > vi->max_queue_pairs || queue_pairs == 0) 2487 return -EINVAL; 2488 2489 /* For now we don't support modifying channels while XDP is loaded 2490 * also when XDP is loaded all RX queues have XDP programs so we only 2491 * need to check a single RX queue. 2492 */ 2493 if (vi->rq[0].xdp_prog) 2494 return -EINVAL; 2495 2496 cpus_read_lock(); 2497 err = _virtnet_set_queues(vi, queue_pairs); 2498 if (err) { 2499 cpus_read_unlock(); 2500 goto err; 2501 } 2502 virtnet_set_affinity(vi); 2503 cpus_read_unlock(); 2504 2505 netif_set_real_num_tx_queues(dev, queue_pairs); 2506 netif_set_real_num_rx_queues(dev, queue_pairs); 2507 err: 2508 return err; 2509 } 2510 2511 static void virtnet_get_strings(struct net_device *dev, u32 stringset, u8 *data) 2512 { 2513 struct virtnet_info *vi = netdev_priv(dev); 2514 unsigned int i, j; 2515 u8 *p = data; 2516 2517 switch (stringset) { 2518 case ETH_SS_STATS: 2519 for (i = 0; i < vi->curr_queue_pairs; i++) { 2520 for (j = 0; j < VIRTNET_RQ_STATS_LEN; j++) 2521 ethtool_sprintf(&p, "rx_queue_%u_%s", i, 2522 virtnet_rq_stats_desc[j].desc); 2523 } 2524 2525 for (i = 0; i < vi->curr_queue_pairs; i++) { 2526 for (j = 0; j < VIRTNET_SQ_STATS_LEN; j++) 2527 ethtool_sprintf(&p, "tx_queue_%u_%s", i, 2528 virtnet_sq_stats_desc[j].desc); 2529 } 2530 break; 2531 } 2532 } 2533 2534 static int virtnet_get_sset_count(struct net_device *dev, int sset) 2535 { 2536 struct virtnet_info *vi = netdev_priv(dev); 2537 2538 switch (sset) { 2539 case ETH_SS_STATS: 2540 return vi->curr_queue_pairs * (VIRTNET_RQ_STATS_LEN + 2541 VIRTNET_SQ_STATS_LEN); 2542 default: 2543 return -EOPNOTSUPP; 2544 } 2545 } 2546 2547 static void virtnet_get_ethtool_stats(struct net_device *dev, 2548 struct ethtool_stats *stats, u64 *data) 2549 { 2550 struct virtnet_info *vi = netdev_priv(dev); 2551 unsigned int idx = 0, start, i, j; 2552 const u8 *stats_base; 2553 size_t offset; 2554 2555 for (i = 0; i < vi->curr_queue_pairs; i++) { 2556 struct receive_queue *rq = &vi->rq[i]; 2557 2558 stats_base = (u8 *)&rq->stats; 2559 do { 2560 start = u64_stats_fetch_begin_irq(&rq->stats.syncp); 2561 for (j = 0; j < VIRTNET_RQ_STATS_LEN; j++) { 2562 offset = virtnet_rq_stats_desc[j].offset; 2563 data[idx + j] = *(u64 *)(stats_base + offset); 2564 } 2565 } while (u64_stats_fetch_retry_irq(&rq->stats.syncp, start)); 2566 idx += VIRTNET_RQ_STATS_LEN; 2567 } 2568 2569 for (i = 0; i < vi->curr_queue_pairs; i++) { 2570 struct send_queue *sq = &vi->sq[i]; 2571 2572 stats_base = (u8 *)&sq->stats; 2573 do { 2574 start = u64_stats_fetch_begin_irq(&sq->stats.syncp); 2575 for (j = 0; j < VIRTNET_SQ_STATS_LEN; j++) { 2576 offset = virtnet_sq_stats_desc[j].offset; 2577 data[idx + j] = *(u64 *)(stats_base + offset); 2578 } 2579 } while (u64_stats_fetch_retry_irq(&sq->stats.syncp, start)); 2580 idx += VIRTNET_SQ_STATS_LEN; 2581 } 2582 } 2583 2584 static void virtnet_get_channels(struct net_device *dev, 2585 struct ethtool_channels *channels) 2586 { 2587 struct virtnet_info *vi = netdev_priv(dev); 2588 2589 channels->combined_count = vi->curr_queue_pairs; 2590 channels->max_combined = vi->max_queue_pairs; 2591 channels->max_other = 0; 2592 channels->rx_count = 0; 2593 channels->tx_count = 0; 2594 channels->other_count = 0; 2595 } 2596 2597 static int virtnet_set_link_ksettings(struct net_device *dev, 2598 const struct ethtool_link_ksettings *cmd) 2599 { 2600 struct virtnet_info *vi = netdev_priv(dev); 2601 2602 return ethtool_virtdev_set_link_ksettings(dev, cmd, 2603 &vi->speed, &vi->duplex); 2604 } 2605 2606 static int virtnet_get_link_ksettings(struct net_device *dev, 2607 struct ethtool_link_ksettings *cmd) 2608 { 2609 struct virtnet_info *vi = netdev_priv(dev); 2610 2611 cmd->base.speed = vi->speed; 2612 cmd->base.duplex = vi->duplex; 2613 cmd->base.port = PORT_OTHER; 2614 2615 return 0; 2616 } 2617 2618 static int virtnet_set_coalesce(struct net_device *dev, 2619 struct ethtool_coalesce *ec, 2620 struct kernel_ethtool_coalesce *kernel_coal, 2621 struct netlink_ext_ack *extack) 2622 { 2623 struct virtnet_info *vi = netdev_priv(dev); 2624 int i, napi_weight; 2625 2626 if (ec->tx_max_coalesced_frames > 1 || 2627 ec->rx_max_coalesced_frames != 1) 2628 return -EINVAL; 2629 2630 napi_weight = ec->tx_max_coalesced_frames ? NAPI_POLL_WEIGHT : 0; 2631 if (napi_weight ^ vi->sq[0].napi.weight) { 2632 if (dev->flags & IFF_UP) 2633 return -EBUSY; 2634 for (i = 0; i < vi->max_queue_pairs; i++) 2635 vi->sq[i].napi.weight = napi_weight; 2636 } 2637 2638 return 0; 2639 } 2640 2641 static int virtnet_get_coalesce(struct net_device *dev, 2642 struct ethtool_coalesce *ec, 2643 struct kernel_ethtool_coalesce *kernel_coal, 2644 struct netlink_ext_ack *extack) 2645 { 2646 struct ethtool_coalesce ec_default = { 2647 .cmd = ETHTOOL_GCOALESCE, 2648 .rx_max_coalesced_frames = 1, 2649 }; 2650 struct virtnet_info *vi = netdev_priv(dev); 2651 2652 memcpy(ec, &ec_default, sizeof(ec_default)); 2653 2654 if (vi->sq[0].napi.weight) 2655 ec->tx_max_coalesced_frames = 1; 2656 2657 return 0; 2658 } 2659 2660 static void virtnet_init_settings(struct net_device *dev) 2661 { 2662 struct virtnet_info *vi = netdev_priv(dev); 2663 2664 vi->speed = SPEED_UNKNOWN; 2665 vi->duplex = DUPLEX_UNKNOWN; 2666 } 2667 2668 static void virtnet_update_settings(struct virtnet_info *vi) 2669 { 2670 u32 speed; 2671 u8 duplex; 2672 2673 if (!virtio_has_feature(vi->vdev, VIRTIO_NET_F_SPEED_DUPLEX)) 2674 return; 2675 2676 virtio_cread_le(vi->vdev, struct virtio_net_config, speed, &speed); 2677 2678 if (ethtool_validate_speed(speed)) 2679 vi->speed = speed; 2680 2681 virtio_cread_le(vi->vdev, struct virtio_net_config, duplex, &duplex); 2682 2683 if (ethtool_validate_duplex(duplex)) 2684 vi->duplex = duplex; 2685 } 2686 2687 static u32 virtnet_get_rxfh_key_size(struct net_device *dev) 2688 { 2689 return ((struct virtnet_info *)netdev_priv(dev))->rss_key_size; 2690 } 2691 2692 static u32 virtnet_get_rxfh_indir_size(struct net_device *dev) 2693 { 2694 return ((struct virtnet_info *)netdev_priv(dev))->rss_indir_table_size; 2695 } 2696 2697 static int virtnet_get_rxfh(struct net_device *dev, u32 *indir, u8 *key, u8 *hfunc) 2698 { 2699 struct virtnet_info *vi = netdev_priv(dev); 2700 int i; 2701 2702 if (indir) { 2703 for (i = 0; i < vi->rss_indir_table_size; ++i) 2704 indir[i] = vi->ctrl->rss.indirection_table[i]; 2705 } 2706 2707 if (key) 2708 memcpy(key, vi->ctrl->rss.key, vi->rss_key_size); 2709 2710 if (hfunc) 2711 *hfunc = ETH_RSS_HASH_TOP; 2712 2713 return 0; 2714 } 2715 2716 static int virtnet_set_rxfh(struct net_device *dev, const u32 *indir, const u8 *key, const u8 hfunc) 2717 { 2718 struct virtnet_info *vi = netdev_priv(dev); 2719 int i; 2720 2721 if (hfunc != ETH_RSS_HASH_NO_CHANGE && hfunc != ETH_RSS_HASH_TOP) 2722 return -EOPNOTSUPP; 2723 2724 if (indir) { 2725 for (i = 0; i < vi->rss_indir_table_size; ++i) 2726 vi->ctrl->rss.indirection_table[i] = indir[i]; 2727 } 2728 if (key) 2729 memcpy(vi->ctrl->rss.key, key, vi->rss_key_size); 2730 2731 virtnet_commit_rss_command(vi); 2732 2733 return 0; 2734 } 2735 2736 static int virtnet_get_rxnfc(struct net_device *dev, struct ethtool_rxnfc *info, u32 *rule_locs) 2737 { 2738 struct virtnet_info *vi = netdev_priv(dev); 2739 int rc = 0; 2740 2741 switch (info->cmd) { 2742 case ETHTOOL_GRXRINGS: 2743 info->data = vi->curr_queue_pairs; 2744 break; 2745 case ETHTOOL_GRXFH: 2746 virtnet_get_hashflow(vi, info); 2747 break; 2748 default: 2749 rc = -EOPNOTSUPP; 2750 } 2751 2752 return rc; 2753 } 2754 2755 static int virtnet_set_rxnfc(struct net_device *dev, struct ethtool_rxnfc *info) 2756 { 2757 struct virtnet_info *vi = netdev_priv(dev); 2758 int rc = 0; 2759 2760 switch (info->cmd) { 2761 case ETHTOOL_SRXFH: 2762 if (!virtnet_set_hashflow(vi, info)) 2763 rc = -EINVAL; 2764 2765 break; 2766 default: 2767 rc = -EOPNOTSUPP; 2768 } 2769 2770 return rc; 2771 } 2772 2773 static const struct ethtool_ops virtnet_ethtool_ops = { 2774 .supported_coalesce_params = ETHTOOL_COALESCE_MAX_FRAMES, 2775 .get_drvinfo = virtnet_get_drvinfo, 2776 .get_link = ethtool_op_get_link, 2777 .get_ringparam = virtnet_get_ringparam, 2778 .get_strings = virtnet_get_strings, 2779 .get_sset_count = virtnet_get_sset_count, 2780 .get_ethtool_stats = virtnet_get_ethtool_stats, 2781 .set_channels = virtnet_set_channels, 2782 .get_channels = virtnet_get_channels, 2783 .get_ts_info = ethtool_op_get_ts_info, 2784 .get_link_ksettings = virtnet_get_link_ksettings, 2785 .set_link_ksettings = virtnet_set_link_ksettings, 2786 .set_coalesce = virtnet_set_coalesce, 2787 .get_coalesce = virtnet_get_coalesce, 2788 .get_rxfh_key_size = virtnet_get_rxfh_key_size, 2789 .get_rxfh_indir_size = virtnet_get_rxfh_indir_size, 2790 .get_rxfh = virtnet_get_rxfh, 2791 .set_rxfh = virtnet_set_rxfh, 2792 .get_rxnfc = virtnet_get_rxnfc, 2793 .set_rxnfc = virtnet_set_rxnfc, 2794 }; 2795 2796 static void virtnet_freeze_down(struct virtio_device *vdev) 2797 { 2798 struct virtnet_info *vi = vdev->priv; 2799 2800 /* Make sure no work handler is accessing the device */ 2801 flush_work(&vi->config_work); 2802 2803 netif_tx_lock_bh(vi->dev); 2804 netif_device_detach(vi->dev); 2805 netif_tx_unlock_bh(vi->dev); 2806 if (netif_running(vi->dev)) 2807 virtnet_close(vi->dev); 2808 } 2809 2810 static int init_vqs(struct virtnet_info *vi); 2811 2812 static int virtnet_restore_up(struct virtio_device *vdev) 2813 { 2814 struct virtnet_info *vi = vdev->priv; 2815 int err; 2816 2817 err = init_vqs(vi); 2818 if (err) 2819 return err; 2820 2821 virtio_device_ready(vdev); 2822 2823 enable_delayed_refill(vi); 2824 2825 if (netif_running(vi->dev)) { 2826 err = virtnet_open(vi->dev); 2827 if (err) 2828 return err; 2829 } 2830 2831 netif_tx_lock_bh(vi->dev); 2832 netif_device_attach(vi->dev); 2833 netif_tx_unlock_bh(vi->dev); 2834 return err; 2835 } 2836 2837 static int virtnet_set_guest_offloads(struct virtnet_info *vi, u64 offloads) 2838 { 2839 struct scatterlist sg; 2840 vi->ctrl->offloads = cpu_to_virtio64(vi->vdev, offloads); 2841 2842 sg_init_one(&sg, &vi->ctrl->offloads, sizeof(vi->ctrl->offloads)); 2843 2844 if (!virtnet_send_command(vi, VIRTIO_NET_CTRL_GUEST_OFFLOADS, 2845 VIRTIO_NET_CTRL_GUEST_OFFLOADS_SET, &sg)) { 2846 dev_warn(&vi->dev->dev, "Fail to set guest offload.\n"); 2847 return -EINVAL; 2848 } 2849 2850 return 0; 2851 } 2852 2853 static int virtnet_clear_guest_offloads(struct virtnet_info *vi) 2854 { 2855 u64 offloads = 0; 2856 2857 if (!vi->guest_offloads) 2858 return 0; 2859 2860 return virtnet_set_guest_offloads(vi, offloads); 2861 } 2862 2863 static int virtnet_restore_guest_offloads(struct virtnet_info *vi) 2864 { 2865 u64 offloads = vi->guest_offloads; 2866 2867 if (!vi->guest_offloads) 2868 return 0; 2869 2870 return virtnet_set_guest_offloads(vi, offloads); 2871 } 2872 2873 static int virtnet_xdp_set(struct net_device *dev, struct bpf_prog *prog, 2874 struct netlink_ext_ack *extack) 2875 { 2876 unsigned long int max_sz = PAGE_SIZE - sizeof(struct padded_vnet_hdr); 2877 struct virtnet_info *vi = netdev_priv(dev); 2878 struct bpf_prog *old_prog; 2879 u16 xdp_qp = 0, curr_qp; 2880 int i, err; 2881 2882 if (!virtio_has_feature(vi->vdev, VIRTIO_NET_F_CTRL_GUEST_OFFLOADS) 2883 && (virtio_has_feature(vi->vdev, VIRTIO_NET_F_GUEST_TSO4) || 2884 virtio_has_feature(vi->vdev, VIRTIO_NET_F_GUEST_TSO6) || 2885 virtio_has_feature(vi->vdev, VIRTIO_NET_F_GUEST_ECN) || 2886 virtio_has_feature(vi->vdev, VIRTIO_NET_F_GUEST_UFO) || 2887 virtio_has_feature(vi->vdev, VIRTIO_NET_F_GUEST_CSUM))) { 2888 NL_SET_ERR_MSG_MOD(extack, "Can't set XDP while host is implementing GRO_HW/CSUM, disable GRO_HW/CSUM first"); 2889 return -EOPNOTSUPP; 2890 } 2891 2892 if (vi->mergeable_rx_bufs && !vi->any_header_sg) { 2893 NL_SET_ERR_MSG_MOD(extack, "XDP expects header/data in single page, any_header_sg required"); 2894 return -EINVAL; 2895 } 2896 2897 if (dev->mtu > max_sz) { 2898 NL_SET_ERR_MSG_MOD(extack, "MTU too large to enable XDP"); 2899 netdev_warn(dev, "XDP requires MTU less than %lu\n", max_sz); 2900 return -EINVAL; 2901 } 2902 2903 curr_qp = vi->curr_queue_pairs - vi->xdp_queue_pairs; 2904 if (prog) 2905 xdp_qp = nr_cpu_ids; 2906 2907 /* XDP requires extra queues for XDP_TX */ 2908 if (curr_qp + xdp_qp > vi->max_queue_pairs) { 2909 netdev_warn_once(dev, "XDP request %i queues but max is %i. XDP_TX and XDP_REDIRECT will operate in a slower locked tx mode.\n", 2910 curr_qp + xdp_qp, vi->max_queue_pairs); 2911 xdp_qp = 0; 2912 } 2913 2914 old_prog = rtnl_dereference(vi->rq[0].xdp_prog); 2915 if (!prog && !old_prog) 2916 return 0; 2917 2918 if (prog) 2919 bpf_prog_add(prog, vi->max_queue_pairs - 1); 2920 2921 /* Make sure NAPI is not using any XDP TX queues for RX. */ 2922 if (netif_running(dev)) { 2923 for (i = 0; i < vi->max_queue_pairs; i++) { 2924 napi_disable(&vi->rq[i].napi); 2925 virtnet_napi_tx_disable(&vi->sq[i].napi); 2926 } 2927 } 2928 2929 if (!prog) { 2930 for (i = 0; i < vi->max_queue_pairs; i++) { 2931 rcu_assign_pointer(vi->rq[i].xdp_prog, prog); 2932 if (i == 0) 2933 virtnet_restore_guest_offloads(vi); 2934 } 2935 synchronize_net(); 2936 } 2937 2938 err = _virtnet_set_queues(vi, curr_qp + xdp_qp); 2939 if (err) 2940 goto err; 2941 netif_set_real_num_rx_queues(dev, curr_qp + xdp_qp); 2942 vi->xdp_queue_pairs = xdp_qp; 2943 2944 if (prog) { 2945 vi->xdp_enabled = true; 2946 for (i = 0; i < vi->max_queue_pairs; i++) { 2947 rcu_assign_pointer(vi->rq[i].xdp_prog, prog); 2948 if (i == 0 && !old_prog) 2949 virtnet_clear_guest_offloads(vi); 2950 } 2951 } else { 2952 vi->xdp_enabled = false; 2953 } 2954 2955 for (i = 0; i < vi->max_queue_pairs; i++) { 2956 if (old_prog) 2957 bpf_prog_put(old_prog); 2958 if (netif_running(dev)) { 2959 virtnet_napi_enable(vi->rq[i].vq, &vi->rq[i].napi); 2960 virtnet_napi_tx_enable(vi, vi->sq[i].vq, 2961 &vi->sq[i].napi); 2962 } 2963 } 2964 2965 return 0; 2966 2967 err: 2968 if (!prog) { 2969 virtnet_clear_guest_offloads(vi); 2970 for (i = 0; i < vi->max_queue_pairs; i++) 2971 rcu_assign_pointer(vi->rq[i].xdp_prog, old_prog); 2972 } 2973 2974 if (netif_running(dev)) { 2975 for (i = 0; i < vi->max_queue_pairs; i++) { 2976 virtnet_napi_enable(vi->rq[i].vq, &vi->rq[i].napi); 2977 virtnet_napi_tx_enable(vi, vi->sq[i].vq, 2978 &vi->sq[i].napi); 2979 } 2980 } 2981 if (prog) 2982 bpf_prog_sub(prog, vi->max_queue_pairs - 1); 2983 return err; 2984 } 2985 2986 static int virtnet_xdp(struct net_device *dev, struct netdev_bpf *xdp) 2987 { 2988 switch (xdp->command) { 2989 case XDP_SETUP_PROG: 2990 return virtnet_xdp_set(dev, xdp->prog, xdp->extack); 2991 default: 2992 return -EINVAL; 2993 } 2994 } 2995 2996 static int virtnet_get_phys_port_name(struct net_device *dev, char *buf, 2997 size_t len) 2998 { 2999 struct virtnet_info *vi = netdev_priv(dev); 3000 int ret; 3001 3002 if (!virtio_has_feature(vi->vdev, VIRTIO_NET_F_STANDBY)) 3003 return -EOPNOTSUPP; 3004 3005 ret = snprintf(buf, len, "sby"); 3006 if (ret >= len) 3007 return -EOPNOTSUPP; 3008 3009 return 0; 3010 } 3011 3012 static int virtnet_set_features(struct net_device *dev, 3013 netdev_features_t features) 3014 { 3015 struct virtnet_info *vi = netdev_priv(dev); 3016 u64 offloads; 3017 int err; 3018 3019 if ((dev->features ^ features) & NETIF_F_GRO_HW) { 3020 if (vi->xdp_enabled) 3021 return -EBUSY; 3022 3023 if (features & NETIF_F_GRO_HW) 3024 offloads = vi->guest_offloads_capable; 3025 else 3026 offloads = vi->guest_offloads_capable & 3027 ~GUEST_OFFLOAD_GRO_HW_MASK; 3028 3029 err = virtnet_set_guest_offloads(vi, offloads); 3030 if (err) 3031 return err; 3032 vi->guest_offloads = offloads; 3033 } 3034 3035 if ((dev->features ^ features) & NETIF_F_RXHASH) { 3036 if (features & NETIF_F_RXHASH) 3037 vi->ctrl->rss.hash_types = vi->rss_hash_types_saved; 3038 else 3039 vi->ctrl->rss.hash_types = VIRTIO_NET_HASH_REPORT_NONE; 3040 3041 if (!virtnet_commit_rss_command(vi)) 3042 return -EINVAL; 3043 } 3044 3045 return 0; 3046 } 3047 3048 static void virtnet_tx_timeout(struct net_device *dev, unsigned int txqueue) 3049 { 3050 struct virtnet_info *priv = netdev_priv(dev); 3051 struct send_queue *sq = &priv->sq[txqueue]; 3052 struct netdev_queue *txq = netdev_get_tx_queue(dev, txqueue); 3053 3054 u64_stats_update_begin(&sq->stats.syncp); 3055 sq->stats.tx_timeouts++; 3056 u64_stats_update_end(&sq->stats.syncp); 3057 3058 netdev_err(dev, "TX timeout on queue: %u, sq: %s, vq: 0x%x, name: %s, %u usecs ago\n", 3059 txqueue, sq->name, sq->vq->index, sq->vq->name, 3060 jiffies_to_usecs(jiffies - READ_ONCE(txq->trans_start))); 3061 } 3062 3063 static const struct net_device_ops virtnet_netdev = { 3064 .ndo_open = virtnet_open, 3065 .ndo_stop = virtnet_close, 3066 .ndo_start_xmit = start_xmit, 3067 .ndo_validate_addr = eth_validate_addr, 3068 .ndo_set_mac_address = virtnet_set_mac_address, 3069 .ndo_set_rx_mode = virtnet_set_rx_mode, 3070 .ndo_get_stats64 = virtnet_stats, 3071 .ndo_vlan_rx_add_vid = virtnet_vlan_rx_add_vid, 3072 .ndo_vlan_rx_kill_vid = virtnet_vlan_rx_kill_vid, 3073 .ndo_bpf = virtnet_xdp, 3074 .ndo_xdp_xmit = virtnet_xdp_xmit, 3075 .ndo_features_check = passthru_features_check, 3076 .ndo_get_phys_port_name = virtnet_get_phys_port_name, 3077 .ndo_set_features = virtnet_set_features, 3078 .ndo_tx_timeout = virtnet_tx_timeout, 3079 }; 3080 3081 static void virtnet_config_changed_work(struct work_struct *work) 3082 { 3083 struct virtnet_info *vi = 3084 container_of(work, struct virtnet_info, config_work); 3085 u16 v; 3086 3087 if (virtio_cread_feature(vi->vdev, VIRTIO_NET_F_STATUS, 3088 struct virtio_net_config, status, &v) < 0) 3089 return; 3090 3091 if (v & VIRTIO_NET_S_ANNOUNCE) { 3092 netdev_notify_peers(vi->dev); 3093 virtnet_ack_link_announce(vi); 3094 } 3095 3096 /* Ignore unknown (future) status bits */ 3097 v &= VIRTIO_NET_S_LINK_UP; 3098 3099 if (vi->status == v) 3100 return; 3101 3102 vi->status = v; 3103 3104 if (vi->status & VIRTIO_NET_S_LINK_UP) { 3105 virtnet_update_settings(vi); 3106 netif_carrier_on(vi->dev); 3107 netif_tx_wake_all_queues(vi->dev); 3108 } else { 3109 netif_carrier_off(vi->dev); 3110 netif_tx_stop_all_queues(vi->dev); 3111 } 3112 } 3113 3114 static void virtnet_config_changed(struct virtio_device *vdev) 3115 { 3116 struct virtnet_info *vi = vdev->priv; 3117 3118 schedule_work(&vi->config_work); 3119 } 3120 3121 static void virtnet_free_queues(struct virtnet_info *vi) 3122 { 3123 int i; 3124 3125 for (i = 0; i < vi->max_queue_pairs; i++) { 3126 __netif_napi_del(&vi->rq[i].napi); 3127 __netif_napi_del(&vi->sq[i].napi); 3128 } 3129 3130 /* We called __netif_napi_del(), 3131 * we need to respect an RCU grace period before freeing vi->rq 3132 */ 3133 synchronize_net(); 3134 3135 kfree(vi->rq); 3136 kfree(vi->sq); 3137 kfree(vi->ctrl); 3138 } 3139 3140 static void _free_receive_bufs(struct virtnet_info *vi) 3141 { 3142 struct bpf_prog *old_prog; 3143 int i; 3144 3145 for (i = 0; i < vi->max_queue_pairs; i++) { 3146 while (vi->rq[i].pages) 3147 __free_pages(get_a_page(&vi->rq[i], GFP_KERNEL), 0); 3148 3149 old_prog = rtnl_dereference(vi->rq[i].xdp_prog); 3150 RCU_INIT_POINTER(vi->rq[i].xdp_prog, NULL); 3151 if (old_prog) 3152 bpf_prog_put(old_prog); 3153 } 3154 } 3155 3156 static void free_receive_bufs(struct virtnet_info *vi) 3157 { 3158 rtnl_lock(); 3159 _free_receive_bufs(vi); 3160 rtnl_unlock(); 3161 } 3162 3163 static void free_receive_page_frags(struct virtnet_info *vi) 3164 { 3165 int i; 3166 for (i = 0; i < vi->max_queue_pairs; i++) 3167 if (vi->rq[i].alloc_frag.page) 3168 put_page(vi->rq[i].alloc_frag.page); 3169 } 3170 3171 static void free_unused_bufs(struct virtnet_info *vi) 3172 { 3173 void *buf; 3174 int i; 3175 3176 for (i = 0; i < vi->max_queue_pairs; i++) { 3177 struct virtqueue *vq = vi->sq[i].vq; 3178 while ((buf = virtqueue_detach_unused_buf(vq)) != NULL) { 3179 if (!is_xdp_frame(buf)) 3180 dev_kfree_skb(buf); 3181 else 3182 xdp_return_frame(ptr_to_xdp(buf)); 3183 } 3184 } 3185 3186 for (i = 0; i < vi->max_queue_pairs; i++) { 3187 struct virtqueue *vq = vi->rq[i].vq; 3188 3189 while ((buf = virtqueue_detach_unused_buf(vq)) != NULL) { 3190 if (vi->mergeable_rx_bufs) { 3191 put_page(virt_to_head_page(buf)); 3192 } else if (vi->big_packets) { 3193 give_pages(&vi->rq[i], buf); 3194 } else { 3195 put_page(virt_to_head_page(buf)); 3196 } 3197 } 3198 } 3199 } 3200 3201 static void virtnet_del_vqs(struct virtnet_info *vi) 3202 { 3203 struct virtio_device *vdev = vi->vdev; 3204 3205 virtnet_clean_affinity(vi); 3206 3207 vdev->config->del_vqs(vdev); 3208 3209 virtnet_free_queues(vi); 3210 } 3211 3212 /* How large should a single buffer be so a queue full of these can fit at 3213 * least one full packet? 3214 * Logic below assumes the mergeable buffer header is used. 3215 */ 3216 static unsigned int mergeable_min_buf_len(struct virtnet_info *vi, struct virtqueue *vq) 3217 { 3218 const unsigned int hdr_len = vi->hdr_len; 3219 unsigned int rq_size = virtqueue_get_vring_size(vq); 3220 unsigned int packet_len = vi->big_packets ? IP_MAX_MTU : vi->dev->max_mtu; 3221 unsigned int buf_len = hdr_len + ETH_HLEN + VLAN_HLEN + packet_len; 3222 unsigned int min_buf_len = DIV_ROUND_UP(buf_len, rq_size); 3223 3224 return max(max(min_buf_len, hdr_len) - hdr_len, 3225 (unsigned int)GOOD_PACKET_LEN); 3226 } 3227 3228 static int virtnet_find_vqs(struct virtnet_info *vi) 3229 { 3230 vq_callback_t **callbacks; 3231 struct virtqueue **vqs; 3232 int ret = -ENOMEM; 3233 int i, total_vqs; 3234 const char **names; 3235 bool *ctx; 3236 3237 /* We expect 1 RX virtqueue followed by 1 TX virtqueue, followed by 3238 * possible N-1 RX/TX queue pairs used in multiqueue mode, followed by 3239 * possible control vq. 3240 */ 3241 total_vqs = vi->max_queue_pairs * 2 + 3242 virtio_has_feature(vi->vdev, VIRTIO_NET_F_CTRL_VQ); 3243 3244 /* Allocate space for find_vqs parameters */ 3245 vqs = kcalloc(total_vqs, sizeof(*vqs), GFP_KERNEL); 3246 if (!vqs) 3247 goto err_vq; 3248 callbacks = kmalloc_array(total_vqs, sizeof(*callbacks), GFP_KERNEL); 3249 if (!callbacks) 3250 goto err_callback; 3251 names = kmalloc_array(total_vqs, sizeof(*names), GFP_KERNEL); 3252 if (!names) 3253 goto err_names; 3254 if (!vi->big_packets || vi->mergeable_rx_bufs) { 3255 ctx = kcalloc(total_vqs, sizeof(*ctx), GFP_KERNEL); 3256 if (!ctx) 3257 goto err_ctx; 3258 } else { 3259 ctx = NULL; 3260 } 3261 3262 /* Parameters for control virtqueue, if any */ 3263 if (vi->has_cvq) { 3264 callbacks[total_vqs - 1] = NULL; 3265 names[total_vqs - 1] = "control"; 3266 } 3267 3268 /* Allocate/initialize parameters for send/receive virtqueues */ 3269 for (i = 0; i < vi->max_queue_pairs; i++) { 3270 callbacks[rxq2vq(i)] = skb_recv_done; 3271 callbacks[txq2vq(i)] = skb_xmit_done; 3272 sprintf(vi->rq[i].name, "input.%d", i); 3273 sprintf(vi->sq[i].name, "output.%d", i); 3274 names[rxq2vq(i)] = vi->rq[i].name; 3275 names[txq2vq(i)] = vi->sq[i].name; 3276 if (ctx) 3277 ctx[rxq2vq(i)] = true; 3278 } 3279 3280 ret = virtio_find_vqs_ctx(vi->vdev, total_vqs, vqs, callbacks, 3281 names, ctx, NULL); 3282 if (ret) 3283 goto err_find; 3284 3285 if (vi->has_cvq) { 3286 vi->cvq = vqs[total_vqs - 1]; 3287 if (virtio_has_feature(vi->vdev, VIRTIO_NET_F_CTRL_VLAN)) 3288 vi->dev->features |= NETIF_F_HW_VLAN_CTAG_FILTER; 3289 } 3290 3291 for (i = 0; i < vi->max_queue_pairs; i++) { 3292 vi->rq[i].vq = vqs[rxq2vq(i)]; 3293 vi->rq[i].min_buf_len = mergeable_min_buf_len(vi, vi->rq[i].vq); 3294 vi->sq[i].vq = vqs[txq2vq(i)]; 3295 } 3296 3297 /* run here: ret == 0. */ 3298 3299 3300 err_find: 3301 kfree(ctx); 3302 err_ctx: 3303 kfree(names); 3304 err_names: 3305 kfree(callbacks); 3306 err_callback: 3307 kfree(vqs); 3308 err_vq: 3309 return ret; 3310 } 3311 3312 static int virtnet_alloc_queues(struct virtnet_info *vi) 3313 { 3314 int i; 3315 3316 if (vi->has_cvq) { 3317 vi->ctrl = kzalloc(sizeof(*vi->ctrl), GFP_KERNEL); 3318 if (!vi->ctrl) 3319 goto err_ctrl; 3320 } else { 3321 vi->ctrl = NULL; 3322 } 3323 vi->sq = kcalloc(vi->max_queue_pairs, sizeof(*vi->sq), GFP_KERNEL); 3324 if (!vi->sq) 3325 goto err_sq; 3326 vi->rq = kcalloc(vi->max_queue_pairs, sizeof(*vi->rq), GFP_KERNEL); 3327 if (!vi->rq) 3328 goto err_rq; 3329 3330 INIT_DELAYED_WORK(&vi->refill, refill_work); 3331 for (i = 0; i < vi->max_queue_pairs; i++) { 3332 vi->rq[i].pages = NULL; 3333 netif_napi_add_weight(vi->dev, &vi->rq[i].napi, virtnet_poll, 3334 napi_weight); 3335 netif_napi_add_tx_weight(vi->dev, &vi->sq[i].napi, 3336 virtnet_poll_tx, 3337 napi_tx ? napi_weight : 0); 3338 3339 sg_init_table(vi->rq[i].sg, ARRAY_SIZE(vi->rq[i].sg)); 3340 ewma_pkt_len_init(&vi->rq[i].mrg_avg_pkt_len); 3341 sg_init_table(vi->sq[i].sg, ARRAY_SIZE(vi->sq[i].sg)); 3342 3343 u64_stats_init(&vi->rq[i].stats.syncp); 3344 u64_stats_init(&vi->sq[i].stats.syncp); 3345 } 3346 3347 return 0; 3348 3349 err_rq: 3350 kfree(vi->sq); 3351 err_sq: 3352 kfree(vi->ctrl); 3353 err_ctrl: 3354 return -ENOMEM; 3355 } 3356 3357 static int init_vqs(struct virtnet_info *vi) 3358 { 3359 int ret; 3360 3361 /* Allocate send & receive queues */ 3362 ret = virtnet_alloc_queues(vi); 3363 if (ret) 3364 goto err; 3365 3366 ret = virtnet_find_vqs(vi); 3367 if (ret) 3368 goto err_free; 3369 3370 cpus_read_lock(); 3371 virtnet_set_affinity(vi); 3372 cpus_read_unlock(); 3373 3374 return 0; 3375 3376 err_free: 3377 virtnet_free_queues(vi); 3378 err: 3379 return ret; 3380 } 3381 3382 #ifdef CONFIG_SYSFS 3383 static ssize_t mergeable_rx_buffer_size_show(struct netdev_rx_queue *queue, 3384 char *buf) 3385 { 3386 struct virtnet_info *vi = netdev_priv(queue->dev); 3387 unsigned int queue_index = get_netdev_rx_queue_index(queue); 3388 unsigned int headroom = virtnet_get_headroom(vi); 3389 unsigned int tailroom = headroom ? sizeof(struct skb_shared_info) : 0; 3390 struct ewma_pkt_len *avg; 3391 3392 BUG_ON(queue_index >= vi->max_queue_pairs); 3393 avg = &vi->rq[queue_index].mrg_avg_pkt_len; 3394 return sprintf(buf, "%u\n", 3395 get_mergeable_buf_len(&vi->rq[queue_index], avg, 3396 SKB_DATA_ALIGN(headroom + tailroom))); 3397 } 3398 3399 static struct rx_queue_attribute mergeable_rx_buffer_size_attribute = 3400 __ATTR_RO(mergeable_rx_buffer_size); 3401 3402 static struct attribute *virtio_net_mrg_rx_attrs[] = { 3403 &mergeable_rx_buffer_size_attribute.attr, 3404 NULL 3405 }; 3406 3407 static const struct attribute_group virtio_net_mrg_rx_group = { 3408 .name = "virtio_net", 3409 .attrs = virtio_net_mrg_rx_attrs 3410 }; 3411 #endif 3412 3413 static bool virtnet_fail_on_feature(struct virtio_device *vdev, 3414 unsigned int fbit, 3415 const char *fname, const char *dname) 3416 { 3417 if (!virtio_has_feature(vdev, fbit)) 3418 return false; 3419 3420 dev_err(&vdev->dev, "device advertises feature %s but not %s", 3421 fname, dname); 3422 3423 return true; 3424 } 3425 3426 #define VIRTNET_FAIL_ON(vdev, fbit, dbit) \ 3427 virtnet_fail_on_feature(vdev, fbit, #fbit, dbit) 3428 3429 static bool virtnet_validate_features(struct virtio_device *vdev) 3430 { 3431 if (!virtio_has_feature(vdev, VIRTIO_NET_F_CTRL_VQ) && 3432 (VIRTNET_FAIL_ON(vdev, VIRTIO_NET_F_CTRL_RX, 3433 "VIRTIO_NET_F_CTRL_VQ") || 3434 VIRTNET_FAIL_ON(vdev, VIRTIO_NET_F_CTRL_VLAN, 3435 "VIRTIO_NET_F_CTRL_VQ") || 3436 VIRTNET_FAIL_ON(vdev, VIRTIO_NET_F_GUEST_ANNOUNCE, 3437 "VIRTIO_NET_F_CTRL_VQ") || 3438 VIRTNET_FAIL_ON(vdev, VIRTIO_NET_F_MQ, "VIRTIO_NET_F_CTRL_VQ") || 3439 VIRTNET_FAIL_ON(vdev, VIRTIO_NET_F_CTRL_MAC_ADDR, 3440 "VIRTIO_NET_F_CTRL_VQ") || 3441 VIRTNET_FAIL_ON(vdev, VIRTIO_NET_F_RSS, 3442 "VIRTIO_NET_F_CTRL_VQ") || 3443 VIRTNET_FAIL_ON(vdev, VIRTIO_NET_F_HASH_REPORT, 3444 "VIRTIO_NET_F_CTRL_VQ"))) { 3445 return false; 3446 } 3447 3448 return true; 3449 } 3450 3451 #define MIN_MTU ETH_MIN_MTU 3452 #define MAX_MTU ETH_MAX_MTU 3453 3454 static int virtnet_validate(struct virtio_device *vdev) 3455 { 3456 if (!vdev->config->get) { 3457 dev_err(&vdev->dev, "%s failure: config access disabled\n", 3458 __func__); 3459 return -EINVAL; 3460 } 3461 3462 if (!virtnet_validate_features(vdev)) 3463 return -EINVAL; 3464 3465 if (virtio_has_feature(vdev, VIRTIO_NET_F_MTU)) { 3466 int mtu = virtio_cread16(vdev, 3467 offsetof(struct virtio_net_config, 3468 mtu)); 3469 if (mtu < MIN_MTU) 3470 __virtio_clear_bit(vdev, VIRTIO_NET_F_MTU); 3471 } 3472 3473 return 0; 3474 } 3475 3476 static int virtnet_probe(struct virtio_device *vdev) 3477 { 3478 int i, err = -ENOMEM; 3479 struct net_device *dev; 3480 struct virtnet_info *vi; 3481 u16 max_queue_pairs; 3482 int mtu; 3483 3484 /* Find if host supports multiqueue/rss virtio_net device */ 3485 max_queue_pairs = 1; 3486 if (virtio_has_feature(vdev, VIRTIO_NET_F_MQ) || virtio_has_feature(vdev, VIRTIO_NET_F_RSS)) 3487 max_queue_pairs = 3488 virtio_cread16(vdev, offsetof(struct virtio_net_config, max_virtqueue_pairs)); 3489 3490 /* We need at least 2 queue's */ 3491 if (max_queue_pairs < VIRTIO_NET_CTRL_MQ_VQ_PAIRS_MIN || 3492 max_queue_pairs > VIRTIO_NET_CTRL_MQ_VQ_PAIRS_MAX || 3493 !virtio_has_feature(vdev, VIRTIO_NET_F_CTRL_VQ)) 3494 max_queue_pairs = 1; 3495 3496 /* Allocate ourselves a network device with room for our info */ 3497 dev = alloc_etherdev_mq(sizeof(struct virtnet_info), max_queue_pairs); 3498 if (!dev) 3499 return -ENOMEM; 3500 3501 /* Set up network device as normal. */ 3502 dev->priv_flags |= IFF_UNICAST_FLT | IFF_LIVE_ADDR_CHANGE | 3503 IFF_TX_SKB_NO_LINEAR; 3504 dev->netdev_ops = &virtnet_netdev; 3505 dev->features = NETIF_F_HIGHDMA; 3506 3507 dev->ethtool_ops = &virtnet_ethtool_ops; 3508 SET_NETDEV_DEV(dev, &vdev->dev); 3509 3510 /* Do we support "hardware" checksums? */ 3511 if (virtio_has_feature(vdev, VIRTIO_NET_F_CSUM)) { 3512 /* This opens up the world of extra features. */ 3513 dev->hw_features |= NETIF_F_HW_CSUM | NETIF_F_SG; 3514 if (csum) 3515 dev->features |= NETIF_F_HW_CSUM | NETIF_F_SG; 3516 3517 if (virtio_has_feature(vdev, VIRTIO_NET_F_GSO)) { 3518 dev->hw_features |= NETIF_F_TSO 3519 | NETIF_F_TSO_ECN | NETIF_F_TSO6; 3520 } 3521 /* Individual feature bits: what can host handle? */ 3522 if (virtio_has_feature(vdev, VIRTIO_NET_F_HOST_TSO4)) 3523 dev->hw_features |= NETIF_F_TSO; 3524 if (virtio_has_feature(vdev, VIRTIO_NET_F_HOST_TSO6)) 3525 dev->hw_features |= NETIF_F_TSO6; 3526 if (virtio_has_feature(vdev, VIRTIO_NET_F_HOST_ECN)) 3527 dev->hw_features |= NETIF_F_TSO_ECN; 3528 3529 dev->features |= NETIF_F_GSO_ROBUST; 3530 3531 if (gso) 3532 dev->features |= dev->hw_features & NETIF_F_ALL_TSO; 3533 /* (!csum && gso) case will be fixed by register_netdev() */ 3534 } 3535 if (virtio_has_feature(vdev, VIRTIO_NET_F_GUEST_CSUM)) 3536 dev->features |= NETIF_F_RXCSUM; 3537 if (virtio_has_feature(vdev, VIRTIO_NET_F_GUEST_TSO4) || 3538 virtio_has_feature(vdev, VIRTIO_NET_F_GUEST_TSO6)) 3539 dev->features |= NETIF_F_GRO_HW; 3540 if (virtio_has_feature(vdev, VIRTIO_NET_F_CTRL_GUEST_OFFLOADS)) 3541 dev->hw_features |= NETIF_F_GRO_HW; 3542 3543 dev->vlan_features = dev->features; 3544 3545 /* MTU range: 68 - 65535 */ 3546 dev->min_mtu = MIN_MTU; 3547 dev->max_mtu = MAX_MTU; 3548 3549 /* Configuration may specify what MAC to use. Otherwise random. */ 3550 if (virtio_has_feature(vdev, VIRTIO_NET_F_MAC)) { 3551 u8 addr[ETH_ALEN]; 3552 3553 virtio_cread_bytes(vdev, 3554 offsetof(struct virtio_net_config, mac), 3555 addr, ETH_ALEN); 3556 eth_hw_addr_set(dev, addr); 3557 } else { 3558 eth_hw_addr_random(dev); 3559 } 3560 3561 /* Set up our device-specific information */ 3562 vi = netdev_priv(dev); 3563 vi->dev = dev; 3564 vi->vdev = vdev; 3565 vdev->priv = vi; 3566 3567 INIT_WORK(&vi->config_work, virtnet_config_changed_work); 3568 spin_lock_init(&vi->refill_lock); 3569 3570 /* If we can receive ANY GSO packets, we must allocate large ones. */ 3571 if (virtio_has_feature(vdev, VIRTIO_NET_F_GUEST_TSO4) || 3572 virtio_has_feature(vdev, VIRTIO_NET_F_GUEST_TSO6) || 3573 virtio_has_feature(vdev, VIRTIO_NET_F_GUEST_ECN) || 3574 virtio_has_feature(vdev, VIRTIO_NET_F_GUEST_UFO)) 3575 vi->big_packets = true; 3576 3577 if (virtio_has_feature(vdev, VIRTIO_NET_F_MRG_RXBUF)) 3578 vi->mergeable_rx_bufs = true; 3579 3580 if (virtio_has_feature(vdev, VIRTIO_NET_F_HASH_REPORT)) 3581 vi->has_rss_hash_report = true; 3582 3583 if (virtio_has_feature(vdev, VIRTIO_NET_F_RSS)) 3584 vi->has_rss = true; 3585 3586 if (vi->has_rss || vi->has_rss_hash_report) { 3587 vi->rss_indir_table_size = 3588 virtio_cread16(vdev, offsetof(struct virtio_net_config, 3589 rss_max_indirection_table_length)); 3590 vi->rss_key_size = 3591 virtio_cread8(vdev, offsetof(struct virtio_net_config, rss_max_key_size)); 3592 3593 vi->rss_hash_types_supported = 3594 virtio_cread32(vdev, offsetof(struct virtio_net_config, supported_hash_types)); 3595 vi->rss_hash_types_supported &= 3596 ~(VIRTIO_NET_RSS_HASH_TYPE_IP_EX | 3597 VIRTIO_NET_RSS_HASH_TYPE_TCP_EX | 3598 VIRTIO_NET_RSS_HASH_TYPE_UDP_EX); 3599 3600 dev->hw_features |= NETIF_F_RXHASH; 3601 } 3602 3603 if (vi->has_rss_hash_report) 3604 vi->hdr_len = sizeof(struct virtio_net_hdr_v1_hash); 3605 else if (virtio_has_feature(vdev, VIRTIO_NET_F_MRG_RXBUF) || 3606 virtio_has_feature(vdev, VIRTIO_F_VERSION_1)) 3607 vi->hdr_len = sizeof(struct virtio_net_hdr_mrg_rxbuf); 3608 else 3609 vi->hdr_len = sizeof(struct virtio_net_hdr); 3610 3611 if (virtio_has_feature(vdev, VIRTIO_F_ANY_LAYOUT) || 3612 virtio_has_feature(vdev, VIRTIO_F_VERSION_1)) 3613 vi->any_header_sg = true; 3614 3615 if (virtio_has_feature(vdev, VIRTIO_NET_F_CTRL_VQ)) 3616 vi->has_cvq = true; 3617 3618 if (virtio_has_feature(vdev, VIRTIO_NET_F_MTU)) { 3619 mtu = virtio_cread16(vdev, 3620 offsetof(struct virtio_net_config, 3621 mtu)); 3622 if (mtu < dev->min_mtu) { 3623 /* Should never trigger: MTU was previously validated 3624 * in virtnet_validate. 3625 */ 3626 dev_err(&vdev->dev, 3627 "device MTU appears to have changed it is now %d < %d", 3628 mtu, dev->min_mtu); 3629 err = -EINVAL; 3630 goto free; 3631 } 3632 3633 dev->mtu = mtu; 3634 dev->max_mtu = mtu; 3635 3636 /* TODO: size buffers correctly in this case. */ 3637 if (dev->mtu > ETH_DATA_LEN) 3638 vi->big_packets = true; 3639 } 3640 3641 if (vi->any_header_sg) 3642 dev->needed_headroom = vi->hdr_len; 3643 3644 /* Enable multiqueue by default */ 3645 if (num_online_cpus() >= max_queue_pairs) 3646 vi->curr_queue_pairs = max_queue_pairs; 3647 else 3648 vi->curr_queue_pairs = num_online_cpus(); 3649 vi->max_queue_pairs = max_queue_pairs; 3650 3651 /* Allocate/initialize the rx/tx queues, and invoke find_vqs */ 3652 err = init_vqs(vi); 3653 if (err) 3654 goto free; 3655 3656 #ifdef CONFIG_SYSFS 3657 if (vi->mergeable_rx_bufs) 3658 dev->sysfs_rx_queue_group = &virtio_net_mrg_rx_group; 3659 #endif 3660 netif_set_real_num_tx_queues(dev, vi->curr_queue_pairs); 3661 netif_set_real_num_rx_queues(dev, vi->curr_queue_pairs); 3662 3663 virtnet_init_settings(dev); 3664 3665 if (virtio_has_feature(vdev, VIRTIO_NET_F_STANDBY)) { 3666 vi->failover = net_failover_create(vi->dev); 3667 if (IS_ERR(vi->failover)) { 3668 err = PTR_ERR(vi->failover); 3669 goto free_vqs; 3670 } 3671 } 3672 3673 if (vi->has_rss || vi->has_rss_hash_report) 3674 virtnet_init_default_rss(vi); 3675 3676 /* serialize netdev register + virtio_device_ready() with ndo_open() */ 3677 rtnl_lock(); 3678 3679 err = register_netdevice(dev); 3680 if (err) { 3681 pr_debug("virtio_net: registering device failed\n"); 3682 rtnl_unlock(); 3683 goto free_failover; 3684 } 3685 3686 virtio_device_ready(vdev); 3687 3688 rtnl_unlock(); 3689 3690 err = virtnet_cpu_notif_add(vi); 3691 if (err) { 3692 pr_debug("virtio_net: registering cpu notifier failed\n"); 3693 goto free_unregister_netdev; 3694 } 3695 3696 virtnet_set_queues(vi, vi->curr_queue_pairs); 3697 3698 /* Assume link up if device can't report link status, 3699 otherwise get link status from config. */ 3700 netif_carrier_off(dev); 3701 if (virtio_has_feature(vi->vdev, VIRTIO_NET_F_STATUS)) { 3702 schedule_work(&vi->config_work); 3703 } else { 3704 vi->status = VIRTIO_NET_S_LINK_UP; 3705 virtnet_update_settings(vi); 3706 netif_carrier_on(dev); 3707 } 3708 3709 for (i = 0; i < ARRAY_SIZE(guest_offloads); i++) 3710 if (virtio_has_feature(vi->vdev, guest_offloads[i])) 3711 set_bit(guest_offloads[i], &vi->guest_offloads); 3712 vi->guest_offloads_capable = vi->guest_offloads; 3713 3714 pr_debug("virtnet: registered device %s with %d RX and TX vq's\n", 3715 dev->name, max_queue_pairs); 3716 3717 return 0; 3718 3719 free_unregister_netdev: 3720 virtio_reset_device(vdev); 3721 3722 unregister_netdev(dev); 3723 free_failover: 3724 net_failover_destroy(vi->failover); 3725 free_vqs: 3726 cancel_delayed_work_sync(&vi->refill); 3727 free_receive_page_frags(vi); 3728 virtnet_del_vqs(vi); 3729 free: 3730 free_netdev(dev); 3731 return err; 3732 } 3733 3734 static void remove_vq_common(struct virtnet_info *vi) 3735 { 3736 virtio_reset_device(vi->vdev); 3737 3738 /* Free unused buffers in both send and recv, if any. */ 3739 free_unused_bufs(vi); 3740 3741 free_receive_bufs(vi); 3742 3743 free_receive_page_frags(vi); 3744 3745 virtnet_del_vqs(vi); 3746 } 3747 3748 static void virtnet_remove(struct virtio_device *vdev) 3749 { 3750 struct virtnet_info *vi = vdev->priv; 3751 3752 virtnet_cpu_notif_remove(vi); 3753 3754 /* Make sure no work handler is accessing the device. */ 3755 flush_work(&vi->config_work); 3756 3757 unregister_netdev(vi->dev); 3758 3759 net_failover_destroy(vi->failover); 3760 3761 remove_vq_common(vi); 3762 3763 free_netdev(vi->dev); 3764 } 3765 3766 static __maybe_unused int virtnet_freeze(struct virtio_device *vdev) 3767 { 3768 struct virtnet_info *vi = vdev->priv; 3769 3770 virtnet_cpu_notif_remove(vi); 3771 virtnet_freeze_down(vdev); 3772 remove_vq_common(vi); 3773 3774 return 0; 3775 } 3776 3777 static __maybe_unused int virtnet_restore(struct virtio_device *vdev) 3778 { 3779 struct virtnet_info *vi = vdev->priv; 3780 int err; 3781 3782 err = virtnet_restore_up(vdev); 3783 if (err) 3784 return err; 3785 virtnet_set_queues(vi, vi->curr_queue_pairs); 3786 3787 err = virtnet_cpu_notif_add(vi); 3788 if (err) { 3789 virtnet_freeze_down(vdev); 3790 remove_vq_common(vi); 3791 return err; 3792 } 3793 3794 return 0; 3795 } 3796 3797 static struct virtio_device_id id_table[] = { 3798 { VIRTIO_ID_NET, VIRTIO_DEV_ANY_ID }, 3799 { 0 }, 3800 }; 3801 3802 #define VIRTNET_FEATURES \ 3803 VIRTIO_NET_F_CSUM, VIRTIO_NET_F_GUEST_CSUM, \ 3804 VIRTIO_NET_F_MAC, \ 3805 VIRTIO_NET_F_HOST_TSO4, VIRTIO_NET_F_HOST_UFO, VIRTIO_NET_F_HOST_TSO6, \ 3806 VIRTIO_NET_F_HOST_ECN, VIRTIO_NET_F_GUEST_TSO4, VIRTIO_NET_F_GUEST_TSO6, \ 3807 VIRTIO_NET_F_GUEST_ECN, VIRTIO_NET_F_GUEST_UFO, \ 3808 VIRTIO_NET_F_MRG_RXBUF, VIRTIO_NET_F_STATUS, VIRTIO_NET_F_CTRL_VQ, \ 3809 VIRTIO_NET_F_CTRL_RX, VIRTIO_NET_F_CTRL_VLAN, \ 3810 VIRTIO_NET_F_GUEST_ANNOUNCE, VIRTIO_NET_F_MQ, \ 3811 VIRTIO_NET_F_CTRL_MAC_ADDR, \ 3812 VIRTIO_NET_F_MTU, VIRTIO_NET_F_CTRL_GUEST_OFFLOADS, \ 3813 VIRTIO_NET_F_SPEED_DUPLEX, VIRTIO_NET_F_STANDBY, \ 3814 VIRTIO_NET_F_RSS, VIRTIO_NET_F_HASH_REPORT 3815 3816 static unsigned int features[] = { 3817 VIRTNET_FEATURES, 3818 }; 3819 3820 static unsigned int features_legacy[] = { 3821 VIRTNET_FEATURES, 3822 VIRTIO_NET_F_GSO, 3823 VIRTIO_F_ANY_LAYOUT, 3824 }; 3825 3826 static struct virtio_driver virtio_net_driver = { 3827 .feature_table = features, 3828 .feature_table_size = ARRAY_SIZE(features), 3829 .feature_table_legacy = features_legacy, 3830 .feature_table_size_legacy = ARRAY_SIZE(features_legacy), 3831 .driver.name = KBUILD_MODNAME, 3832 .driver.owner = THIS_MODULE, 3833 .id_table = id_table, 3834 .validate = virtnet_validate, 3835 .probe = virtnet_probe, 3836 .remove = virtnet_remove, 3837 .config_changed = virtnet_config_changed, 3838 #ifdef CONFIG_PM_SLEEP 3839 .freeze = virtnet_freeze, 3840 .restore = virtnet_restore, 3841 #endif 3842 }; 3843 3844 static __init int virtio_net_driver_init(void) 3845 { 3846 int ret; 3847 3848 ret = cpuhp_setup_state_multi(CPUHP_AP_ONLINE_DYN, "virtio/net:online", 3849 virtnet_cpu_online, 3850 virtnet_cpu_down_prep); 3851 if (ret < 0) 3852 goto out; 3853 virtionet_online = ret; 3854 ret = cpuhp_setup_state_multi(CPUHP_VIRT_NET_DEAD, "virtio/net:dead", 3855 NULL, virtnet_cpu_dead); 3856 if (ret) 3857 goto err_dead; 3858 ret = register_virtio_driver(&virtio_net_driver); 3859 if (ret) 3860 goto err_virtio; 3861 return 0; 3862 err_virtio: 3863 cpuhp_remove_multi_state(CPUHP_VIRT_NET_DEAD); 3864 err_dead: 3865 cpuhp_remove_multi_state(virtionet_online); 3866 out: 3867 return ret; 3868 } 3869 module_init(virtio_net_driver_init); 3870 3871 static __exit void virtio_net_driver_exit(void) 3872 { 3873 unregister_virtio_driver(&virtio_net_driver); 3874 cpuhp_remove_multi_state(CPUHP_VIRT_NET_DEAD); 3875 cpuhp_remove_multi_state(virtionet_online); 3876 } 3877 module_exit(virtio_net_driver_exit); 3878 3879 MODULE_DEVICE_TABLE(virtio, id_table); 3880 MODULE_DESCRIPTION("Virtio network driver"); 3881 MODULE_LICENSE("GPL"); 3882