1 // SPDX-License-Identifier: GPL-2.0 2 /* XDP sockets 3 * 4 * AF_XDP sockets allows a channel between XDP programs and userspace 5 * applications. 6 * Copyright(c) 2018 Intel Corporation. 7 * 8 * Author(s): Björn Töpel <bjorn.topel@intel.com> 9 * Magnus Karlsson <magnus.karlsson@intel.com> 10 */ 11 12 #define pr_fmt(fmt) "AF_XDP: %s: " fmt, __func__ 13 14 #include <linux/if_xdp.h> 15 #include <linux/init.h> 16 #include <linux/sched/mm.h> 17 #include <linux/sched/signal.h> 18 #include <linux/sched/task.h> 19 #include <linux/socket.h> 20 #include <linux/file.h> 21 #include <linux/uaccess.h> 22 #include <linux/net.h> 23 #include <linux/netdevice.h> 24 #include <linux/rculist.h> 25 #include <linux/vmalloc.h> 26 #include <net/xdp_sock_drv.h> 27 #include <net/busy_poll.h> 28 #include <net/netdev_rx_queue.h> 29 #include <net/xdp.h> 30 31 #include "xsk_queue.h" 32 #include "xdp_umem.h" 33 #include "xsk.h" 34 35 #define TX_BATCH_SIZE 32 36 #define MAX_PER_SOCKET_BUDGET (TX_BATCH_SIZE) 37 38 void xsk_set_rx_need_wakeup(struct xsk_buff_pool *pool) 39 { 40 if (pool->cached_need_wakeup & XDP_WAKEUP_RX) 41 return; 42 43 pool->fq->ring->flags |= XDP_RING_NEED_WAKEUP; 44 pool->cached_need_wakeup |= XDP_WAKEUP_RX; 45 } 46 EXPORT_SYMBOL(xsk_set_rx_need_wakeup); 47 48 void xsk_set_tx_need_wakeup(struct xsk_buff_pool *pool) 49 { 50 struct xdp_sock *xs; 51 52 if (pool->cached_need_wakeup & XDP_WAKEUP_TX) 53 return; 54 55 rcu_read_lock(); 56 list_for_each_entry_rcu(xs, &pool->xsk_tx_list, tx_list) { 57 xs->tx->ring->flags |= XDP_RING_NEED_WAKEUP; 58 } 59 rcu_read_unlock(); 60 61 pool->cached_need_wakeup |= XDP_WAKEUP_TX; 62 } 63 EXPORT_SYMBOL(xsk_set_tx_need_wakeup); 64 65 void xsk_clear_rx_need_wakeup(struct xsk_buff_pool *pool) 66 { 67 if (!(pool->cached_need_wakeup & XDP_WAKEUP_RX)) 68 return; 69 70 pool->fq->ring->flags &= ~XDP_RING_NEED_WAKEUP; 71 pool->cached_need_wakeup &= ~XDP_WAKEUP_RX; 72 } 73 EXPORT_SYMBOL(xsk_clear_rx_need_wakeup); 74 75 void xsk_clear_tx_need_wakeup(struct xsk_buff_pool *pool) 76 { 77 struct xdp_sock *xs; 78 79 if (!(pool->cached_need_wakeup & XDP_WAKEUP_TX)) 80 return; 81 82 rcu_read_lock(); 83 list_for_each_entry_rcu(xs, &pool->xsk_tx_list, tx_list) { 84 xs->tx->ring->flags &= ~XDP_RING_NEED_WAKEUP; 85 } 86 rcu_read_unlock(); 87 88 pool->cached_need_wakeup &= ~XDP_WAKEUP_TX; 89 } 90 EXPORT_SYMBOL(xsk_clear_tx_need_wakeup); 91 92 bool xsk_uses_need_wakeup(struct xsk_buff_pool *pool) 93 { 94 return pool->uses_need_wakeup; 95 } 96 EXPORT_SYMBOL(xsk_uses_need_wakeup); 97 98 struct xsk_buff_pool *xsk_get_pool_from_qid(struct net_device *dev, 99 u16 queue_id) 100 { 101 if (queue_id < dev->real_num_rx_queues) 102 return dev->_rx[queue_id].pool; 103 if (queue_id < dev->real_num_tx_queues) 104 return dev->_tx[queue_id].pool; 105 106 return NULL; 107 } 108 EXPORT_SYMBOL(xsk_get_pool_from_qid); 109 110 void xsk_clear_pool_at_qid(struct net_device *dev, u16 queue_id) 111 { 112 if (queue_id < dev->num_rx_queues) 113 dev->_rx[queue_id].pool = NULL; 114 if (queue_id < dev->num_tx_queues) 115 dev->_tx[queue_id].pool = NULL; 116 } 117 118 /* The buffer pool is stored both in the _rx struct and the _tx struct as we do 119 * not know if the device has more tx queues than rx, or the opposite. 120 * This might also change during run time. 121 */ 122 int xsk_reg_pool_at_qid(struct net_device *dev, struct xsk_buff_pool *pool, 123 u16 queue_id) 124 { 125 if (queue_id >= max_t(unsigned int, 126 dev->real_num_rx_queues, 127 dev->real_num_tx_queues)) 128 return -EINVAL; 129 130 if (queue_id < dev->real_num_rx_queues) 131 dev->_rx[queue_id].pool = pool; 132 if (queue_id < dev->real_num_tx_queues) 133 dev->_tx[queue_id].pool = pool; 134 135 return 0; 136 } 137 138 static int __xsk_rcv_zc(struct xdp_sock *xs, struct xdp_buff_xsk *xskb, u32 len, 139 u32 flags) 140 { 141 u64 addr; 142 int err; 143 144 addr = xp_get_handle(xskb, xskb->pool); 145 err = xskq_prod_reserve_desc(xs->rx, addr, len, flags); 146 if (err) { 147 xs->rx_queue_full++; 148 return err; 149 } 150 151 xp_release(xskb); 152 return 0; 153 } 154 155 static int xsk_rcv_zc(struct xdp_sock *xs, struct xdp_buff *xdp, u32 len) 156 { 157 struct xdp_buff_xsk *xskb = container_of(xdp, struct xdp_buff_xsk, xdp); 158 u32 frags = xdp_buff_has_frags(xdp); 159 struct xdp_buff_xsk *pos, *tmp; 160 struct list_head *xskb_list; 161 u32 contd = 0; 162 int err; 163 164 if (frags) 165 contd = XDP_PKT_CONTD; 166 167 err = __xsk_rcv_zc(xs, xskb, len, contd); 168 if (err) 169 goto err; 170 if (likely(!frags)) 171 return 0; 172 173 xskb_list = &xskb->pool->xskb_list; 174 list_for_each_entry_safe(pos, tmp, xskb_list, list_node) { 175 if (list_is_singular(xskb_list)) 176 contd = 0; 177 len = pos->xdp.data_end - pos->xdp.data; 178 err = __xsk_rcv_zc(xs, pos, len, contd); 179 if (err) 180 goto err; 181 list_del(&pos->list_node); 182 } 183 184 return 0; 185 err: 186 xsk_buff_free(xdp); 187 return err; 188 } 189 190 static void *xsk_copy_xdp_start(struct xdp_buff *from) 191 { 192 if (unlikely(xdp_data_meta_unsupported(from))) 193 return from->data; 194 else 195 return from->data_meta; 196 } 197 198 static u32 xsk_copy_xdp(void *to, void **from, u32 to_len, 199 u32 *from_len, skb_frag_t **frag, u32 rem) 200 { 201 u32 copied = 0; 202 203 while (1) { 204 u32 copy_len = min_t(u32, *from_len, to_len); 205 206 memcpy(to, *from, copy_len); 207 copied += copy_len; 208 if (rem == copied) 209 return copied; 210 211 if (*from_len == copy_len) { 212 *from = skb_frag_address(*frag); 213 *from_len = skb_frag_size((*frag)++); 214 } else { 215 *from += copy_len; 216 *from_len -= copy_len; 217 } 218 if (to_len == copy_len) 219 return copied; 220 221 to_len -= copy_len; 222 to += copy_len; 223 } 224 } 225 226 static int __xsk_rcv(struct xdp_sock *xs, struct xdp_buff *xdp, u32 len) 227 { 228 u32 frame_size = xsk_pool_get_rx_frame_size(xs->pool); 229 void *copy_from = xsk_copy_xdp_start(xdp), *copy_to; 230 u32 from_len, meta_len, rem, num_desc; 231 struct xdp_buff_xsk *xskb; 232 struct xdp_buff *xsk_xdp; 233 skb_frag_t *frag; 234 235 from_len = xdp->data_end - copy_from; 236 meta_len = xdp->data - copy_from; 237 rem = len + meta_len; 238 239 if (len <= frame_size && !xdp_buff_has_frags(xdp)) { 240 int err; 241 242 xsk_xdp = xsk_buff_alloc(xs->pool); 243 if (!xsk_xdp) { 244 xs->rx_dropped++; 245 return -ENOMEM; 246 } 247 memcpy(xsk_xdp->data - meta_len, copy_from, rem); 248 xskb = container_of(xsk_xdp, struct xdp_buff_xsk, xdp); 249 err = __xsk_rcv_zc(xs, xskb, len, 0); 250 if (err) { 251 xsk_buff_free(xsk_xdp); 252 return err; 253 } 254 255 return 0; 256 } 257 258 num_desc = (len - 1) / frame_size + 1; 259 260 if (!xsk_buff_can_alloc(xs->pool, num_desc)) { 261 xs->rx_dropped++; 262 return -ENOMEM; 263 } 264 if (xskq_prod_nb_free(xs->rx, num_desc) < num_desc) { 265 xs->rx_queue_full++; 266 return -ENOBUFS; 267 } 268 269 if (xdp_buff_has_frags(xdp)) { 270 struct skb_shared_info *sinfo; 271 272 sinfo = xdp_get_shared_info_from_buff(xdp); 273 frag = &sinfo->frags[0]; 274 } 275 276 do { 277 u32 to_len = frame_size + meta_len; 278 u32 copied; 279 280 xsk_xdp = xsk_buff_alloc(xs->pool); 281 copy_to = xsk_xdp->data - meta_len; 282 283 copied = xsk_copy_xdp(copy_to, ©_from, to_len, &from_len, &frag, rem); 284 rem -= copied; 285 286 xskb = container_of(xsk_xdp, struct xdp_buff_xsk, xdp); 287 __xsk_rcv_zc(xs, xskb, copied - meta_len, rem ? XDP_PKT_CONTD : 0); 288 meta_len = 0; 289 } while (rem); 290 291 return 0; 292 } 293 294 static bool xsk_tx_writeable(struct xdp_sock *xs) 295 { 296 if (xskq_cons_present_entries(xs->tx) > xs->tx->nentries / 2) 297 return false; 298 299 return true; 300 } 301 302 static bool xsk_is_bound(struct xdp_sock *xs) 303 { 304 if (READ_ONCE(xs->state) == XSK_BOUND) { 305 /* Matches smp_wmb() in bind(). */ 306 smp_rmb(); 307 return true; 308 } 309 return false; 310 } 311 312 static int xsk_rcv_check(struct xdp_sock *xs, struct xdp_buff *xdp, u32 len) 313 { 314 if (!xsk_is_bound(xs)) 315 return -ENXIO; 316 317 if (xs->dev != xdp->rxq->dev || xs->queue_id != xdp->rxq->queue_index) 318 return -EINVAL; 319 320 if (len > xsk_pool_get_rx_frame_size(xs->pool) && !xs->sg) { 321 xs->rx_dropped++; 322 return -ENOSPC; 323 } 324 325 return 0; 326 } 327 328 static void xsk_flush(struct xdp_sock *xs) 329 { 330 xskq_prod_submit(xs->rx); 331 __xskq_cons_release(xs->pool->fq); 332 sock_def_readable(&xs->sk); 333 } 334 335 int xsk_generic_rcv(struct xdp_sock *xs, struct xdp_buff *xdp) 336 { 337 u32 len = xdp_get_buff_len(xdp); 338 int err; 339 340 spin_lock_bh(&xs->rx_lock); 341 err = xsk_rcv_check(xs, xdp, len); 342 if (!err) { 343 err = __xsk_rcv(xs, xdp, len); 344 xsk_flush(xs); 345 } 346 spin_unlock_bh(&xs->rx_lock); 347 return err; 348 } 349 350 static int xsk_rcv(struct xdp_sock *xs, struct xdp_buff *xdp) 351 { 352 u32 len = xdp_get_buff_len(xdp); 353 int err; 354 355 err = xsk_rcv_check(xs, xdp, len); 356 if (err) 357 return err; 358 359 if (xdp->rxq->mem.type == MEM_TYPE_XSK_BUFF_POOL) { 360 len = xdp->data_end - xdp->data; 361 return xsk_rcv_zc(xs, xdp, len); 362 } 363 364 err = __xsk_rcv(xs, xdp, len); 365 if (!err) 366 xdp_return_buff(xdp); 367 return err; 368 } 369 370 int __xsk_map_redirect(struct xdp_sock *xs, struct xdp_buff *xdp) 371 { 372 int err; 373 374 err = xsk_rcv(xs, xdp); 375 if (err) 376 return err; 377 378 if (!xs->flush_node.prev) { 379 struct list_head *flush_list = bpf_net_ctx_get_xskmap_flush_list(); 380 381 list_add(&xs->flush_node, flush_list); 382 } 383 384 return 0; 385 } 386 387 void __xsk_map_flush(struct list_head *flush_list) 388 { 389 struct xdp_sock *xs, *tmp; 390 391 list_for_each_entry_safe(xs, tmp, flush_list, flush_node) { 392 xsk_flush(xs); 393 __list_del_clearprev(&xs->flush_node); 394 } 395 } 396 397 void xsk_tx_completed(struct xsk_buff_pool *pool, u32 nb_entries) 398 { 399 xskq_prod_submit_n(pool->cq, nb_entries); 400 } 401 EXPORT_SYMBOL(xsk_tx_completed); 402 403 void xsk_tx_release(struct xsk_buff_pool *pool) 404 { 405 struct xdp_sock *xs; 406 407 rcu_read_lock(); 408 list_for_each_entry_rcu(xs, &pool->xsk_tx_list, tx_list) { 409 __xskq_cons_release(xs->tx); 410 if (xsk_tx_writeable(xs)) 411 xs->sk.sk_write_space(&xs->sk); 412 } 413 rcu_read_unlock(); 414 } 415 EXPORT_SYMBOL(xsk_tx_release); 416 417 bool xsk_tx_peek_desc(struct xsk_buff_pool *pool, struct xdp_desc *desc) 418 { 419 bool budget_exhausted = false; 420 struct xdp_sock *xs; 421 422 rcu_read_lock(); 423 again: 424 list_for_each_entry_rcu(xs, &pool->xsk_tx_list, tx_list) { 425 if (xs->tx_budget_spent >= MAX_PER_SOCKET_BUDGET) { 426 budget_exhausted = true; 427 continue; 428 } 429 430 if (!xskq_cons_peek_desc(xs->tx, desc, pool)) { 431 if (xskq_has_descs(xs->tx)) 432 xskq_cons_release(xs->tx); 433 continue; 434 } 435 436 xs->tx_budget_spent++; 437 438 /* This is the backpressure mechanism for the Tx path. 439 * Reserve space in the completion queue and only proceed 440 * if there is space in it. This avoids having to implement 441 * any buffering in the Tx path. 442 */ 443 if (xskq_prod_reserve_addr(pool->cq, desc->addr)) 444 goto out; 445 446 xskq_cons_release(xs->tx); 447 rcu_read_unlock(); 448 return true; 449 } 450 451 if (budget_exhausted) { 452 list_for_each_entry_rcu(xs, &pool->xsk_tx_list, tx_list) 453 xs->tx_budget_spent = 0; 454 455 budget_exhausted = false; 456 goto again; 457 } 458 459 out: 460 rcu_read_unlock(); 461 return false; 462 } 463 EXPORT_SYMBOL(xsk_tx_peek_desc); 464 465 static u32 xsk_tx_peek_release_fallback(struct xsk_buff_pool *pool, u32 max_entries) 466 { 467 struct xdp_desc *descs = pool->tx_descs; 468 u32 nb_pkts = 0; 469 470 while (nb_pkts < max_entries && xsk_tx_peek_desc(pool, &descs[nb_pkts])) 471 nb_pkts++; 472 473 xsk_tx_release(pool); 474 return nb_pkts; 475 } 476 477 u32 xsk_tx_peek_release_desc_batch(struct xsk_buff_pool *pool, u32 nb_pkts) 478 { 479 struct xdp_sock *xs; 480 481 rcu_read_lock(); 482 if (!list_is_singular(&pool->xsk_tx_list)) { 483 /* Fallback to the non-batched version */ 484 rcu_read_unlock(); 485 return xsk_tx_peek_release_fallback(pool, nb_pkts); 486 } 487 488 xs = list_first_or_null_rcu(&pool->xsk_tx_list, struct xdp_sock, tx_list); 489 if (!xs) { 490 nb_pkts = 0; 491 goto out; 492 } 493 494 nb_pkts = xskq_cons_nb_entries(xs->tx, nb_pkts); 495 496 /* This is the backpressure mechanism for the Tx path. Try to 497 * reserve space in the completion queue for all packets, but 498 * if there are fewer slots available, just process that many 499 * packets. This avoids having to implement any buffering in 500 * the Tx path. 501 */ 502 nb_pkts = xskq_prod_nb_free(pool->cq, nb_pkts); 503 if (!nb_pkts) 504 goto out; 505 506 nb_pkts = xskq_cons_read_desc_batch(xs->tx, pool, nb_pkts); 507 if (!nb_pkts) { 508 xs->tx->queue_empty_descs++; 509 goto out; 510 } 511 512 __xskq_cons_release(xs->tx); 513 xskq_prod_write_addr_batch(pool->cq, pool->tx_descs, nb_pkts); 514 xs->sk.sk_write_space(&xs->sk); 515 516 out: 517 rcu_read_unlock(); 518 return nb_pkts; 519 } 520 EXPORT_SYMBOL(xsk_tx_peek_release_desc_batch); 521 522 static int xsk_wakeup(struct xdp_sock *xs, u8 flags) 523 { 524 struct net_device *dev = xs->dev; 525 526 return dev->netdev_ops->ndo_xsk_wakeup(dev, xs->queue_id, flags); 527 } 528 529 static int xsk_cq_reserve_addr_locked(struct xsk_buff_pool *pool, u64 addr) 530 { 531 unsigned long flags; 532 int ret; 533 534 spin_lock_irqsave(&pool->cq_lock, flags); 535 ret = xskq_prod_reserve_addr(pool->cq, addr); 536 spin_unlock_irqrestore(&pool->cq_lock, flags); 537 538 return ret; 539 } 540 541 static void xsk_cq_submit_locked(struct xsk_buff_pool *pool, u32 n) 542 { 543 unsigned long flags; 544 545 spin_lock_irqsave(&pool->cq_lock, flags); 546 xskq_prod_submit_n(pool->cq, n); 547 spin_unlock_irqrestore(&pool->cq_lock, flags); 548 } 549 550 static void xsk_cq_cancel_locked(struct xsk_buff_pool *pool, u32 n) 551 { 552 unsigned long flags; 553 554 spin_lock_irqsave(&pool->cq_lock, flags); 555 xskq_prod_cancel_n(pool->cq, n); 556 spin_unlock_irqrestore(&pool->cq_lock, flags); 557 } 558 559 static u32 xsk_get_num_desc(struct sk_buff *skb) 560 { 561 return skb ? (long)skb_shinfo(skb)->destructor_arg : 0; 562 } 563 564 static void xsk_destruct_skb(struct sk_buff *skb) 565 { 566 struct xsk_tx_metadata_compl *compl = &skb_shinfo(skb)->xsk_meta; 567 568 if (compl->tx_timestamp) { 569 /* sw completion timestamp, not a real one */ 570 *compl->tx_timestamp = ktime_get_tai_fast_ns(); 571 } 572 573 xsk_cq_submit_locked(xdp_sk(skb->sk)->pool, xsk_get_num_desc(skb)); 574 sock_wfree(skb); 575 } 576 577 static void xsk_set_destructor_arg(struct sk_buff *skb) 578 { 579 long num = xsk_get_num_desc(xdp_sk(skb->sk)->skb) + 1; 580 581 skb_shinfo(skb)->destructor_arg = (void *)num; 582 } 583 584 static void xsk_consume_skb(struct sk_buff *skb) 585 { 586 struct xdp_sock *xs = xdp_sk(skb->sk); 587 588 skb->destructor = sock_wfree; 589 xsk_cq_cancel_locked(xs->pool, xsk_get_num_desc(skb)); 590 /* Free skb without triggering the perf drop trace */ 591 consume_skb(skb); 592 xs->skb = NULL; 593 } 594 595 static void xsk_drop_skb(struct sk_buff *skb) 596 { 597 xdp_sk(skb->sk)->tx->invalid_descs += xsk_get_num_desc(skb); 598 xsk_consume_skb(skb); 599 } 600 601 static struct sk_buff *xsk_build_skb_zerocopy(struct xdp_sock *xs, 602 struct xdp_desc *desc) 603 { 604 struct xsk_buff_pool *pool = xs->pool; 605 u32 hr, len, ts, offset, copy, copied; 606 struct sk_buff *skb = xs->skb; 607 struct page *page; 608 void *buffer; 609 int err, i; 610 u64 addr; 611 612 if (!skb) { 613 hr = max(NET_SKB_PAD, L1_CACHE_ALIGN(xs->dev->needed_headroom)); 614 615 skb = sock_alloc_send_skb(&xs->sk, hr, 1, &err); 616 if (unlikely(!skb)) 617 return ERR_PTR(err); 618 619 skb_reserve(skb, hr); 620 } 621 622 addr = desc->addr; 623 len = desc->len; 624 ts = pool->unaligned ? len : pool->chunk_size; 625 626 buffer = xsk_buff_raw_get_data(pool, addr); 627 offset = offset_in_page(buffer); 628 addr = buffer - pool->addrs; 629 630 for (copied = 0, i = skb_shinfo(skb)->nr_frags; copied < len; i++) { 631 if (unlikely(i >= MAX_SKB_FRAGS)) 632 return ERR_PTR(-EOVERFLOW); 633 634 page = pool->umem->pgs[addr >> PAGE_SHIFT]; 635 get_page(page); 636 637 copy = min_t(u32, PAGE_SIZE - offset, len - copied); 638 skb_fill_page_desc(skb, i, page, offset, copy); 639 640 copied += copy; 641 addr += copy; 642 offset = 0; 643 } 644 645 skb->len += len; 646 skb->data_len += len; 647 skb->truesize += ts; 648 649 refcount_add(ts, &xs->sk.sk_wmem_alloc); 650 651 return skb; 652 } 653 654 static struct sk_buff *xsk_build_skb(struct xdp_sock *xs, 655 struct xdp_desc *desc) 656 { 657 struct xsk_tx_metadata *meta = NULL; 658 struct net_device *dev = xs->dev; 659 struct sk_buff *skb = xs->skb; 660 bool first_frag = false; 661 int err; 662 663 if (dev->priv_flags & IFF_TX_SKB_NO_LINEAR) { 664 skb = xsk_build_skb_zerocopy(xs, desc); 665 if (IS_ERR(skb)) { 666 err = PTR_ERR(skb); 667 goto free_err; 668 } 669 } else { 670 u32 hr, tr, len; 671 void *buffer; 672 673 buffer = xsk_buff_raw_get_data(xs->pool, desc->addr); 674 len = desc->len; 675 676 if (!skb) { 677 first_frag = true; 678 679 hr = max(NET_SKB_PAD, L1_CACHE_ALIGN(dev->needed_headroom)); 680 tr = dev->needed_tailroom; 681 skb = sock_alloc_send_skb(&xs->sk, hr + len + tr, 1, &err); 682 if (unlikely(!skb)) 683 goto free_err; 684 685 skb_reserve(skb, hr); 686 skb_put(skb, len); 687 688 err = skb_store_bits(skb, 0, buffer, len); 689 if (unlikely(err)) 690 goto free_err; 691 } else { 692 int nr_frags = skb_shinfo(skb)->nr_frags; 693 struct page *page; 694 u8 *vaddr; 695 696 if (unlikely(nr_frags == (MAX_SKB_FRAGS - 1) && xp_mb_desc(desc))) { 697 err = -EOVERFLOW; 698 goto free_err; 699 } 700 701 page = alloc_page(xs->sk.sk_allocation); 702 if (unlikely(!page)) { 703 err = -EAGAIN; 704 goto free_err; 705 } 706 707 vaddr = kmap_local_page(page); 708 memcpy(vaddr, buffer, len); 709 kunmap_local(vaddr); 710 711 skb_add_rx_frag(skb, nr_frags, page, 0, len, PAGE_SIZE); 712 refcount_add(PAGE_SIZE, &xs->sk.sk_wmem_alloc); 713 } 714 715 if (first_frag && desc->options & XDP_TX_METADATA) { 716 if (unlikely(xs->pool->tx_metadata_len == 0)) { 717 err = -EINVAL; 718 goto free_err; 719 } 720 721 meta = buffer - xs->pool->tx_metadata_len; 722 if (unlikely(!xsk_buff_valid_tx_metadata(meta))) { 723 err = -EINVAL; 724 goto free_err; 725 } 726 727 if (meta->flags & XDP_TXMD_FLAGS_CHECKSUM) { 728 if (unlikely(meta->request.csum_start + 729 meta->request.csum_offset + 730 sizeof(__sum16) > len)) { 731 err = -EINVAL; 732 goto free_err; 733 } 734 735 skb->csum_start = hr + meta->request.csum_start; 736 skb->csum_offset = meta->request.csum_offset; 737 skb->ip_summed = CHECKSUM_PARTIAL; 738 739 if (unlikely(xs->pool->tx_sw_csum)) { 740 err = skb_checksum_help(skb); 741 if (err) 742 goto free_err; 743 } 744 } 745 746 if (meta->flags & XDP_TXMD_FLAGS_LAUNCH_TIME) 747 skb->skb_mstamp_ns = meta->request.launch_time; 748 } 749 } 750 751 skb->dev = dev; 752 skb->priority = READ_ONCE(xs->sk.sk_priority); 753 skb->mark = READ_ONCE(xs->sk.sk_mark); 754 skb->destructor = xsk_destruct_skb; 755 xsk_tx_metadata_to_compl(meta, &skb_shinfo(skb)->xsk_meta); 756 xsk_set_destructor_arg(skb); 757 758 return skb; 759 760 free_err: 761 if (first_frag && skb) 762 kfree_skb(skb); 763 764 if (err == -EOVERFLOW) { 765 /* Drop the packet */ 766 xsk_set_destructor_arg(xs->skb); 767 xsk_drop_skb(xs->skb); 768 xskq_cons_release(xs->tx); 769 } else { 770 /* Let application retry */ 771 xsk_cq_cancel_locked(xs->pool, 1); 772 } 773 774 return ERR_PTR(err); 775 } 776 777 static int __xsk_generic_xmit(struct sock *sk) 778 { 779 struct xdp_sock *xs = xdp_sk(sk); 780 u32 max_batch = TX_BATCH_SIZE; 781 bool sent_frame = false; 782 struct xdp_desc desc; 783 struct sk_buff *skb; 784 int err = 0; 785 786 mutex_lock(&xs->mutex); 787 788 /* Since we dropped the RCU read lock, the socket state might have changed. */ 789 if (unlikely(!xsk_is_bound(xs))) { 790 err = -ENXIO; 791 goto out; 792 } 793 794 if (xs->queue_id >= xs->dev->real_num_tx_queues) 795 goto out; 796 797 while (xskq_cons_peek_desc(xs->tx, &desc, xs->pool)) { 798 if (max_batch-- == 0) { 799 err = -EAGAIN; 800 goto out; 801 } 802 803 /* This is the backpressure mechanism for the Tx path. 804 * Reserve space in the completion queue and only proceed 805 * if there is space in it. This avoids having to implement 806 * any buffering in the Tx path. 807 */ 808 if (xsk_cq_reserve_addr_locked(xs->pool, desc.addr)) 809 goto out; 810 811 skb = xsk_build_skb(xs, &desc); 812 if (IS_ERR(skb)) { 813 err = PTR_ERR(skb); 814 if (err != -EOVERFLOW) 815 goto out; 816 err = 0; 817 continue; 818 } 819 820 xskq_cons_release(xs->tx); 821 822 if (xp_mb_desc(&desc)) { 823 xs->skb = skb; 824 continue; 825 } 826 827 err = __dev_direct_xmit(skb, xs->queue_id); 828 if (err == NETDEV_TX_BUSY) { 829 /* Tell user-space to retry the send */ 830 xskq_cons_cancel_n(xs->tx, xsk_get_num_desc(skb)); 831 xsk_consume_skb(skb); 832 err = -EAGAIN; 833 goto out; 834 } 835 836 /* Ignore NET_XMIT_CN as packet might have been sent */ 837 if (err == NET_XMIT_DROP) { 838 /* SKB completed but not sent */ 839 err = -EBUSY; 840 xs->skb = NULL; 841 goto out; 842 } 843 844 sent_frame = true; 845 xs->skb = NULL; 846 } 847 848 if (xskq_has_descs(xs->tx)) { 849 if (xs->skb) 850 xsk_drop_skb(xs->skb); 851 xskq_cons_release(xs->tx); 852 } 853 854 out: 855 if (sent_frame) 856 if (xsk_tx_writeable(xs)) 857 sk->sk_write_space(sk); 858 859 mutex_unlock(&xs->mutex); 860 return err; 861 } 862 863 static int xsk_generic_xmit(struct sock *sk) 864 { 865 int ret; 866 867 /* Drop the RCU lock since the SKB path might sleep. */ 868 rcu_read_unlock(); 869 ret = __xsk_generic_xmit(sk); 870 /* Reaquire RCU lock before going into common code. */ 871 rcu_read_lock(); 872 873 return ret; 874 } 875 876 static bool xsk_no_wakeup(struct sock *sk) 877 { 878 #ifdef CONFIG_NET_RX_BUSY_POLL 879 /* Prefer busy-polling, skip the wakeup. */ 880 return READ_ONCE(sk->sk_prefer_busy_poll) && READ_ONCE(sk->sk_ll_usec) && 881 napi_id_valid(READ_ONCE(sk->sk_napi_id)); 882 #else 883 return false; 884 #endif 885 } 886 887 static int xsk_check_common(struct xdp_sock *xs) 888 { 889 if (unlikely(!xsk_is_bound(xs))) 890 return -ENXIO; 891 if (unlikely(!(xs->dev->flags & IFF_UP))) 892 return -ENETDOWN; 893 894 return 0; 895 } 896 897 static int __xsk_sendmsg(struct socket *sock, struct msghdr *m, size_t total_len) 898 { 899 bool need_wait = !(m->msg_flags & MSG_DONTWAIT); 900 struct sock *sk = sock->sk; 901 struct xdp_sock *xs = xdp_sk(sk); 902 struct xsk_buff_pool *pool; 903 int err; 904 905 err = xsk_check_common(xs); 906 if (err) 907 return err; 908 if (unlikely(need_wait)) 909 return -EOPNOTSUPP; 910 if (unlikely(!xs->tx)) 911 return -ENOBUFS; 912 913 if (sk_can_busy_loop(sk)) 914 sk_busy_loop(sk, 1); /* only support non-blocking sockets */ 915 916 if (xs->zc && xsk_no_wakeup(sk)) 917 return 0; 918 919 pool = xs->pool; 920 if (pool->cached_need_wakeup & XDP_WAKEUP_TX) { 921 if (xs->zc) 922 return xsk_wakeup(xs, XDP_WAKEUP_TX); 923 return xsk_generic_xmit(sk); 924 } 925 return 0; 926 } 927 928 static int xsk_sendmsg(struct socket *sock, struct msghdr *m, size_t total_len) 929 { 930 int ret; 931 932 rcu_read_lock(); 933 ret = __xsk_sendmsg(sock, m, total_len); 934 rcu_read_unlock(); 935 936 return ret; 937 } 938 939 static int __xsk_recvmsg(struct socket *sock, struct msghdr *m, size_t len, int flags) 940 { 941 bool need_wait = !(flags & MSG_DONTWAIT); 942 struct sock *sk = sock->sk; 943 struct xdp_sock *xs = xdp_sk(sk); 944 int err; 945 946 err = xsk_check_common(xs); 947 if (err) 948 return err; 949 if (unlikely(!xs->rx)) 950 return -ENOBUFS; 951 if (unlikely(need_wait)) 952 return -EOPNOTSUPP; 953 954 if (sk_can_busy_loop(sk)) 955 sk_busy_loop(sk, 1); /* only support non-blocking sockets */ 956 957 if (xsk_no_wakeup(sk)) 958 return 0; 959 960 if (xs->pool->cached_need_wakeup & XDP_WAKEUP_RX && xs->zc) 961 return xsk_wakeup(xs, XDP_WAKEUP_RX); 962 return 0; 963 } 964 965 static int xsk_recvmsg(struct socket *sock, struct msghdr *m, size_t len, int flags) 966 { 967 int ret; 968 969 rcu_read_lock(); 970 ret = __xsk_recvmsg(sock, m, len, flags); 971 rcu_read_unlock(); 972 973 return ret; 974 } 975 976 static __poll_t xsk_poll(struct file *file, struct socket *sock, 977 struct poll_table_struct *wait) 978 { 979 __poll_t mask = 0; 980 struct sock *sk = sock->sk; 981 struct xdp_sock *xs = xdp_sk(sk); 982 struct xsk_buff_pool *pool; 983 984 sock_poll_wait(file, sock, wait); 985 986 rcu_read_lock(); 987 if (xsk_check_common(xs)) 988 goto out; 989 990 pool = xs->pool; 991 992 if (pool->cached_need_wakeup) { 993 if (xs->zc) 994 xsk_wakeup(xs, pool->cached_need_wakeup); 995 else if (xs->tx) 996 /* Poll needs to drive Tx also in copy mode */ 997 xsk_generic_xmit(sk); 998 } 999 1000 if (xs->rx && !xskq_prod_is_empty(xs->rx)) 1001 mask |= EPOLLIN | EPOLLRDNORM; 1002 if (xs->tx && xsk_tx_writeable(xs)) 1003 mask |= EPOLLOUT | EPOLLWRNORM; 1004 out: 1005 rcu_read_unlock(); 1006 return mask; 1007 } 1008 1009 static int xsk_init_queue(u32 entries, struct xsk_queue **queue, 1010 bool umem_queue) 1011 { 1012 struct xsk_queue *q; 1013 1014 if (entries == 0 || *queue || !is_power_of_2(entries)) 1015 return -EINVAL; 1016 1017 q = xskq_create(entries, umem_queue); 1018 if (!q) 1019 return -ENOMEM; 1020 1021 /* Make sure queue is ready before it can be seen by others */ 1022 smp_wmb(); 1023 WRITE_ONCE(*queue, q); 1024 return 0; 1025 } 1026 1027 static void xsk_unbind_dev(struct xdp_sock *xs) 1028 { 1029 struct net_device *dev = xs->dev; 1030 1031 if (xs->state != XSK_BOUND) 1032 return; 1033 WRITE_ONCE(xs->state, XSK_UNBOUND); 1034 1035 /* Wait for driver to stop using the xdp socket. */ 1036 xp_del_xsk(xs->pool, xs); 1037 synchronize_net(); 1038 dev_put(dev); 1039 } 1040 1041 static struct xsk_map *xsk_get_map_list_entry(struct xdp_sock *xs, 1042 struct xdp_sock __rcu ***map_entry) 1043 { 1044 struct xsk_map *map = NULL; 1045 struct xsk_map_node *node; 1046 1047 *map_entry = NULL; 1048 1049 spin_lock_bh(&xs->map_list_lock); 1050 node = list_first_entry_or_null(&xs->map_list, struct xsk_map_node, 1051 node); 1052 if (node) { 1053 bpf_map_inc(&node->map->map); 1054 map = node->map; 1055 *map_entry = node->map_entry; 1056 } 1057 spin_unlock_bh(&xs->map_list_lock); 1058 return map; 1059 } 1060 1061 static void xsk_delete_from_maps(struct xdp_sock *xs) 1062 { 1063 /* This function removes the current XDP socket from all the 1064 * maps it resides in. We need to take extra care here, due to 1065 * the two locks involved. Each map has a lock synchronizing 1066 * updates to the entries, and each socket has a lock that 1067 * synchronizes access to the list of maps (map_list). For 1068 * deadlock avoidance the locks need to be taken in the order 1069 * "map lock"->"socket map list lock". We start off by 1070 * accessing the socket map list, and take a reference to the 1071 * map to guarantee existence between the 1072 * xsk_get_map_list_entry() and xsk_map_try_sock_delete() 1073 * calls. Then we ask the map to remove the socket, which 1074 * tries to remove the socket from the map. Note that there 1075 * might be updates to the map between 1076 * xsk_get_map_list_entry() and xsk_map_try_sock_delete(). 1077 */ 1078 struct xdp_sock __rcu **map_entry = NULL; 1079 struct xsk_map *map; 1080 1081 while ((map = xsk_get_map_list_entry(xs, &map_entry))) { 1082 xsk_map_try_sock_delete(map, xs, map_entry); 1083 bpf_map_put(&map->map); 1084 } 1085 } 1086 1087 static int xsk_release(struct socket *sock) 1088 { 1089 struct sock *sk = sock->sk; 1090 struct xdp_sock *xs = xdp_sk(sk); 1091 struct net *net; 1092 1093 if (!sk) 1094 return 0; 1095 1096 net = sock_net(sk); 1097 1098 if (xs->skb) 1099 xsk_drop_skb(xs->skb); 1100 1101 mutex_lock(&net->xdp.lock); 1102 sk_del_node_init_rcu(sk); 1103 mutex_unlock(&net->xdp.lock); 1104 1105 sock_prot_inuse_add(net, sk->sk_prot, -1); 1106 1107 xsk_delete_from_maps(xs); 1108 mutex_lock(&xs->mutex); 1109 xsk_unbind_dev(xs); 1110 mutex_unlock(&xs->mutex); 1111 1112 xskq_destroy(xs->rx); 1113 xskq_destroy(xs->tx); 1114 xskq_destroy(xs->fq_tmp); 1115 xskq_destroy(xs->cq_tmp); 1116 1117 sock_orphan(sk); 1118 sock->sk = NULL; 1119 1120 sock_put(sk); 1121 1122 return 0; 1123 } 1124 1125 static struct socket *xsk_lookup_xsk_from_fd(int fd) 1126 { 1127 struct socket *sock; 1128 int err; 1129 1130 sock = sockfd_lookup(fd, &err); 1131 if (!sock) 1132 return ERR_PTR(-ENOTSOCK); 1133 1134 if (sock->sk->sk_family != PF_XDP) { 1135 sockfd_put(sock); 1136 return ERR_PTR(-ENOPROTOOPT); 1137 } 1138 1139 return sock; 1140 } 1141 1142 static bool xsk_validate_queues(struct xdp_sock *xs) 1143 { 1144 return xs->fq_tmp && xs->cq_tmp; 1145 } 1146 1147 static int xsk_bind(struct socket *sock, struct sockaddr *addr, int addr_len) 1148 { 1149 struct sockaddr_xdp *sxdp = (struct sockaddr_xdp *)addr; 1150 struct sock *sk = sock->sk; 1151 struct xdp_sock *xs = xdp_sk(sk); 1152 struct net_device *dev; 1153 int bound_dev_if; 1154 u32 flags, qid; 1155 int err = 0; 1156 1157 if (addr_len < sizeof(struct sockaddr_xdp)) 1158 return -EINVAL; 1159 if (sxdp->sxdp_family != AF_XDP) 1160 return -EINVAL; 1161 1162 flags = sxdp->sxdp_flags; 1163 if (flags & ~(XDP_SHARED_UMEM | XDP_COPY | XDP_ZEROCOPY | 1164 XDP_USE_NEED_WAKEUP | XDP_USE_SG)) 1165 return -EINVAL; 1166 1167 bound_dev_if = READ_ONCE(sk->sk_bound_dev_if); 1168 if (bound_dev_if && bound_dev_if != sxdp->sxdp_ifindex) 1169 return -EINVAL; 1170 1171 rtnl_lock(); 1172 mutex_lock(&xs->mutex); 1173 if (xs->state != XSK_READY) { 1174 err = -EBUSY; 1175 goto out_release; 1176 } 1177 1178 dev = dev_get_by_index(sock_net(sk), sxdp->sxdp_ifindex); 1179 if (!dev) { 1180 err = -ENODEV; 1181 goto out_release; 1182 } 1183 1184 netdev_lock_ops(dev); 1185 1186 if (!xs->rx && !xs->tx) { 1187 err = -EINVAL; 1188 goto out_unlock; 1189 } 1190 1191 qid = sxdp->sxdp_queue_id; 1192 1193 if (flags & XDP_SHARED_UMEM) { 1194 struct xdp_sock *umem_xs; 1195 struct socket *sock; 1196 1197 if ((flags & XDP_COPY) || (flags & XDP_ZEROCOPY) || 1198 (flags & XDP_USE_NEED_WAKEUP) || (flags & XDP_USE_SG)) { 1199 /* Cannot specify flags for shared sockets. */ 1200 err = -EINVAL; 1201 goto out_unlock; 1202 } 1203 1204 if (xs->umem) { 1205 /* We have already our own. */ 1206 err = -EINVAL; 1207 goto out_unlock; 1208 } 1209 1210 sock = xsk_lookup_xsk_from_fd(sxdp->sxdp_shared_umem_fd); 1211 if (IS_ERR(sock)) { 1212 err = PTR_ERR(sock); 1213 goto out_unlock; 1214 } 1215 1216 umem_xs = xdp_sk(sock->sk); 1217 if (!xsk_is_bound(umem_xs)) { 1218 err = -EBADF; 1219 sockfd_put(sock); 1220 goto out_unlock; 1221 } 1222 1223 if (umem_xs->queue_id != qid || umem_xs->dev != dev) { 1224 /* Share the umem with another socket on another qid 1225 * and/or device. 1226 */ 1227 xs->pool = xp_create_and_assign_umem(xs, 1228 umem_xs->umem); 1229 if (!xs->pool) { 1230 err = -ENOMEM; 1231 sockfd_put(sock); 1232 goto out_unlock; 1233 } 1234 1235 err = xp_assign_dev_shared(xs->pool, umem_xs, dev, 1236 qid); 1237 if (err) { 1238 xp_destroy(xs->pool); 1239 xs->pool = NULL; 1240 sockfd_put(sock); 1241 goto out_unlock; 1242 } 1243 } else { 1244 /* Share the buffer pool with the other socket. */ 1245 if (xs->fq_tmp || xs->cq_tmp) { 1246 /* Do not allow setting your own fq or cq. */ 1247 err = -EINVAL; 1248 sockfd_put(sock); 1249 goto out_unlock; 1250 } 1251 1252 xp_get_pool(umem_xs->pool); 1253 xs->pool = umem_xs->pool; 1254 1255 /* If underlying shared umem was created without Tx 1256 * ring, allocate Tx descs array that Tx batching API 1257 * utilizes 1258 */ 1259 if (xs->tx && !xs->pool->tx_descs) { 1260 err = xp_alloc_tx_descs(xs->pool, xs); 1261 if (err) { 1262 xp_put_pool(xs->pool); 1263 xs->pool = NULL; 1264 sockfd_put(sock); 1265 goto out_unlock; 1266 } 1267 } 1268 } 1269 1270 xdp_get_umem(umem_xs->umem); 1271 WRITE_ONCE(xs->umem, umem_xs->umem); 1272 sockfd_put(sock); 1273 } else if (!xs->umem || !xsk_validate_queues(xs)) { 1274 err = -EINVAL; 1275 goto out_unlock; 1276 } else { 1277 /* This xsk has its own umem. */ 1278 xs->pool = xp_create_and_assign_umem(xs, xs->umem); 1279 if (!xs->pool) { 1280 err = -ENOMEM; 1281 goto out_unlock; 1282 } 1283 1284 err = xp_assign_dev(xs->pool, dev, qid, flags); 1285 if (err) { 1286 xp_destroy(xs->pool); 1287 xs->pool = NULL; 1288 goto out_unlock; 1289 } 1290 } 1291 1292 /* FQ and CQ are now owned by the buffer pool and cleaned up with it. */ 1293 xs->fq_tmp = NULL; 1294 xs->cq_tmp = NULL; 1295 1296 xs->dev = dev; 1297 xs->zc = xs->umem->zc; 1298 xs->sg = !!(xs->umem->flags & XDP_UMEM_SG_FLAG); 1299 xs->queue_id = qid; 1300 xp_add_xsk(xs->pool, xs); 1301 1302 if (xs->zc && qid < dev->real_num_rx_queues) { 1303 struct netdev_rx_queue *rxq; 1304 1305 rxq = __netif_get_rx_queue(dev, qid); 1306 if (rxq->napi) 1307 __sk_mark_napi_id_once(sk, rxq->napi->napi_id); 1308 } 1309 1310 out_unlock: 1311 if (err) { 1312 dev_put(dev); 1313 } else { 1314 /* Matches smp_rmb() in bind() for shared umem 1315 * sockets, and xsk_is_bound(). 1316 */ 1317 smp_wmb(); 1318 WRITE_ONCE(xs->state, XSK_BOUND); 1319 } 1320 netdev_unlock_ops(dev); 1321 out_release: 1322 mutex_unlock(&xs->mutex); 1323 rtnl_unlock(); 1324 return err; 1325 } 1326 1327 struct xdp_umem_reg_v1 { 1328 __u64 addr; /* Start of packet data area */ 1329 __u64 len; /* Length of packet data area */ 1330 __u32 chunk_size; 1331 __u32 headroom; 1332 }; 1333 1334 static int xsk_setsockopt(struct socket *sock, int level, int optname, 1335 sockptr_t optval, unsigned int optlen) 1336 { 1337 struct sock *sk = sock->sk; 1338 struct xdp_sock *xs = xdp_sk(sk); 1339 int err; 1340 1341 if (level != SOL_XDP) 1342 return -ENOPROTOOPT; 1343 1344 switch (optname) { 1345 case XDP_RX_RING: 1346 case XDP_TX_RING: 1347 { 1348 struct xsk_queue **q; 1349 int entries; 1350 1351 if (optlen < sizeof(entries)) 1352 return -EINVAL; 1353 if (copy_from_sockptr(&entries, optval, sizeof(entries))) 1354 return -EFAULT; 1355 1356 mutex_lock(&xs->mutex); 1357 if (xs->state != XSK_READY) { 1358 mutex_unlock(&xs->mutex); 1359 return -EBUSY; 1360 } 1361 q = (optname == XDP_TX_RING) ? &xs->tx : &xs->rx; 1362 err = xsk_init_queue(entries, q, false); 1363 if (!err && optname == XDP_TX_RING) 1364 /* Tx needs to be explicitly woken up the first time */ 1365 xs->tx->ring->flags |= XDP_RING_NEED_WAKEUP; 1366 mutex_unlock(&xs->mutex); 1367 return err; 1368 } 1369 case XDP_UMEM_REG: 1370 { 1371 size_t mr_size = sizeof(struct xdp_umem_reg); 1372 struct xdp_umem_reg mr = {}; 1373 struct xdp_umem *umem; 1374 1375 if (optlen < sizeof(struct xdp_umem_reg_v1)) 1376 return -EINVAL; 1377 else if (optlen < sizeof(mr)) 1378 mr_size = sizeof(struct xdp_umem_reg_v1); 1379 1380 BUILD_BUG_ON(sizeof(struct xdp_umem_reg_v1) >= sizeof(struct xdp_umem_reg)); 1381 1382 /* Make sure the last field of the struct doesn't have 1383 * uninitialized padding. All padding has to be explicit 1384 * and has to be set to zero by the userspace to make 1385 * struct xdp_umem_reg extensible in the future. 1386 */ 1387 BUILD_BUG_ON(offsetof(struct xdp_umem_reg, tx_metadata_len) + 1388 sizeof_field(struct xdp_umem_reg, tx_metadata_len) != 1389 sizeof(struct xdp_umem_reg)); 1390 1391 if (copy_from_sockptr(&mr, optval, mr_size)) 1392 return -EFAULT; 1393 1394 mutex_lock(&xs->mutex); 1395 if (xs->state != XSK_READY || xs->umem) { 1396 mutex_unlock(&xs->mutex); 1397 return -EBUSY; 1398 } 1399 1400 umem = xdp_umem_create(&mr); 1401 if (IS_ERR(umem)) { 1402 mutex_unlock(&xs->mutex); 1403 return PTR_ERR(umem); 1404 } 1405 1406 /* Make sure umem is ready before it can be seen by others */ 1407 smp_wmb(); 1408 WRITE_ONCE(xs->umem, umem); 1409 mutex_unlock(&xs->mutex); 1410 return 0; 1411 } 1412 case XDP_UMEM_FILL_RING: 1413 case XDP_UMEM_COMPLETION_RING: 1414 { 1415 struct xsk_queue **q; 1416 int entries; 1417 1418 if (optlen < sizeof(entries)) 1419 return -EINVAL; 1420 if (copy_from_sockptr(&entries, optval, sizeof(entries))) 1421 return -EFAULT; 1422 1423 mutex_lock(&xs->mutex); 1424 if (xs->state != XSK_READY) { 1425 mutex_unlock(&xs->mutex); 1426 return -EBUSY; 1427 } 1428 1429 q = (optname == XDP_UMEM_FILL_RING) ? &xs->fq_tmp : 1430 &xs->cq_tmp; 1431 err = xsk_init_queue(entries, q, true); 1432 mutex_unlock(&xs->mutex); 1433 return err; 1434 } 1435 default: 1436 break; 1437 } 1438 1439 return -ENOPROTOOPT; 1440 } 1441 1442 static void xsk_enter_rxtx_offsets(struct xdp_ring_offset_v1 *ring) 1443 { 1444 ring->producer = offsetof(struct xdp_rxtx_ring, ptrs.producer); 1445 ring->consumer = offsetof(struct xdp_rxtx_ring, ptrs.consumer); 1446 ring->desc = offsetof(struct xdp_rxtx_ring, desc); 1447 } 1448 1449 static void xsk_enter_umem_offsets(struct xdp_ring_offset_v1 *ring) 1450 { 1451 ring->producer = offsetof(struct xdp_umem_ring, ptrs.producer); 1452 ring->consumer = offsetof(struct xdp_umem_ring, ptrs.consumer); 1453 ring->desc = offsetof(struct xdp_umem_ring, desc); 1454 } 1455 1456 struct xdp_statistics_v1 { 1457 __u64 rx_dropped; 1458 __u64 rx_invalid_descs; 1459 __u64 tx_invalid_descs; 1460 }; 1461 1462 static int xsk_getsockopt(struct socket *sock, int level, int optname, 1463 char __user *optval, int __user *optlen) 1464 { 1465 struct sock *sk = sock->sk; 1466 struct xdp_sock *xs = xdp_sk(sk); 1467 int len; 1468 1469 if (level != SOL_XDP) 1470 return -ENOPROTOOPT; 1471 1472 if (get_user(len, optlen)) 1473 return -EFAULT; 1474 if (len < 0) 1475 return -EINVAL; 1476 1477 switch (optname) { 1478 case XDP_STATISTICS: 1479 { 1480 struct xdp_statistics stats = {}; 1481 bool extra_stats = true; 1482 size_t stats_size; 1483 1484 if (len < sizeof(struct xdp_statistics_v1)) { 1485 return -EINVAL; 1486 } else if (len < sizeof(stats)) { 1487 extra_stats = false; 1488 stats_size = sizeof(struct xdp_statistics_v1); 1489 } else { 1490 stats_size = sizeof(stats); 1491 } 1492 1493 mutex_lock(&xs->mutex); 1494 stats.rx_dropped = xs->rx_dropped; 1495 if (extra_stats) { 1496 stats.rx_ring_full = xs->rx_queue_full; 1497 stats.rx_fill_ring_empty_descs = 1498 xs->pool ? xskq_nb_queue_empty_descs(xs->pool->fq) : 0; 1499 stats.tx_ring_empty_descs = xskq_nb_queue_empty_descs(xs->tx); 1500 } else { 1501 stats.rx_dropped += xs->rx_queue_full; 1502 } 1503 stats.rx_invalid_descs = xskq_nb_invalid_descs(xs->rx); 1504 stats.tx_invalid_descs = xskq_nb_invalid_descs(xs->tx); 1505 mutex_unlock(&xs->mutex); 1506 1507 if (copy_to_user(optval, &stats, stats_size)) 1508 return -EFAULT; 1509 if (put_user(stats_size, optlen)) 1510 return -EFAULT; 1511 1512 return 0; 1513 } 1514 case XDP_MMAP_OFFSETS: 1515 { 1516 struct xdp_mmap_offsets off; 1517 struct xdp_mmap_offsets_v1 off_v1; 1518 bool flags_supported = true; 1519 void *to_copy; 1520 1521 if (len < sizeof(off_v1)) 1522 return -EINVAL; 1523 else if (len < sizeof(off)) 1524 flags_supported = false; 1525 1526 if (flags_supported) { 1527 /* xdp_ring_offset is identical to xdp_ring_offset_v1 1528 * except for the flags field added to the end. 1529 */ 1530 xsk_enter_rxtx_offsets((struct xdp_ring_offset_v1 *) 1531 &off.rx); 1532 xsk_enter_rxtx_offsets((struct xdp_ring_offset_v1 *) 1533 &off.tx); 1534 xsk_enter_umem_offsets((struct xdp_ring_offset_v1 *) 1535 &off.fr); 1536 xsk_enter_umem_offsets((struct xdp_ring_offset_v1 *) 1537 &off.cr); 1538 off.rx.flags = offsetof(struct xdp_rxtx_ring, 1539 ptrs.flags); 1540 off.tx.flags = offsetof(struct xdp_rxtx_ring, 1541 ptrs.flags); 1542 off.fr.flags = offsetof(struct xdp_umem_ring, 1543 ptrs.flags); 1544 off.cr.flags = offsetof(struct xdp_umem_ring, 1545 ptrs.flags); 1546 1547 len = sizeof(off); 1548 to_copy = &off; 1549 } else { 1550 xsk_enter_rxtx_offsets(&off_v1.rx); 1551 xsk_enter_rxtx_offsets(&off_v1.tx); 1552 xsk_enter_umem_offsets(&off_v1.fr); 1553 xsk_enter_umem_offsets(&off_v1.cr); 1554 1555 len = sizeof(off_v1); 1556 to_copy = &off_v1; 1557 } 1558 1559 if (copy_to_user(optval, to_copy, len)) 1560 return -EFAULT; 1561 if (put_user(len, optlen)) 1562 return -EFAULT; 1563 1564 return 0; 1565 } 1566 case XDP_OPTIONS: 1567 { 1568 struct xdp_options opts = {}; 1569 1570 if (len < sizeof(opts)) 1571 return -EINVAL; 1572 1573 mutex_lock(&xs->mutex); 1574 if (xs->zc) 1575 opts.flags |= XDP_OPTIONS_ZEROCOPY; 1576 mutex_unlock(&xs->mutex); 1577 1578 len = sizeof(opts); 1579 if (copy_to_user(optval, &opts, len)) 1580 return -EFAULT; 1581 if (put_user(len, optlen)) 1582 return -EFAULT; 1583 1584 return 0; 1585 } 1586 default: 1587 break; 1588 } 1589 1590 return -EOPNOTSUPP; 1591 } 1592 1593 static int xsk_mmap(struct file *file, struct socket *sock, 1594 struct vm_area_struct *vma) 1595 { 1596 loff_t offset = (loff_t)vma->vm_pgoff << PAGE_SHIFT; 1597 unsigned long size = vma->vm_end - vma->vm_start; 1598 struct xdp_sock *xs = xdp_sk(sock->sk); 1599 int state = READ_ONCE(xs->state); 1600 struct xsk_queue *q = NULL; 1601 1602 if (state != XSK_READY && state != XSK_BOUND) 1603 return -EBUSY; 1604 1605 if (offset == XDP_PGOFF_RX_RING) { 1606 q = READ_ONCE(xs->rx); 1607 } else if (offset == XDP_PGOFF_TX_RING) { 1608 q = READ_ONCE(xs->tx); 1609 } else { 1610 /* Matches the smp_wmb() in XDP_UMEM_REG */ 1611 smp_rmb(); 1612 if (offset == XDP_UMEM_PGOFF_FILL_RING) 1613 q = state == XSK_READY ? READ_ONCE(xs->fq_tmp) : 1614 READ_ONCE(xs->pool->fq); 1615 else if (offset == XDP_UMEM_PGOFF_COMPLETION_RING) 1616 q = state == XSK_READY ? READ_ONCE(xs->cq_tmp) : 1617 READ_ONCE(xs->pool->cq); 1618 } 1619 1620 if (!q) 1621 return -EINVAL; 1622 1623 /* Matches the smp_wmb() in xsk_init_queue */ 1624 smp_rmb(); 1625 if (size > q->ring_vmalloc_size) 1626 return -EINVAL; 1627 1628 return remap_vmalloc_range(vma, q->ring, 0); 1629 } 1630 1631 static int xsk_notifier(struct notifier_block *this, 1632 unsigned long msg, void *ptr) 1633 { 1634 struct net_device *dev = netdev_notifier_info_to_dev(ptr); 1635 struct net *net = dev_net(dev); 1636 struct sock *sk; 1637 1638 switch (msg) { 1639 case NETDEV_UNREGISTER: 1640 mutex_lock(&net->xdp.lock); 1641 sk_for_each(sk, &net->xdp.list) { 1642 struct xdp_sock *xs = xdp_sk(sk); 1643 1644 mutex_lock(&xs->mutex); 1645 if (xs->dev == dev) { 1646 sk->sk_err = ENETDOWN; 1647 if (!sock_flag(sk, SOCK_DEAD)) 1648 sk_error_report(sk); 1649 1650 xsk_unbind_dev(xs); 1651 1652 /* Clear device references. */ 1653 xp_clear_dev(xs->pool); 1654 } 1655 mutex_unlock(&xs->mutex); 1656 } 1657 mutex_unlock(&net->xdp.lock); 1658 break; 1659 } 1660 return NOTIFY_DONE; 1661 } 1662 1663 static struct proto xsk_proto = { 1664 .name = "XDP", 1665 .owner = THIS_MODULE, 1666 .obj_size = sizeof(struct xdp_sock), 1667 }; 1668 1669 static const struct proto_ops xsk_proto_ops = { 1670 .family = PF_XDP, 1671 .owner = THIS_MODULE, 1672 .release = xsk_release, 1673 .bind = xsk_bind, 1674 .connect = sock_no_connect, 1675 .socketpair = sock_no_socketpair, 1676 .accept = sock_no_accept, 1677 .getname = sock_no_getname, 1678 .poll = xsk_poll, 1679 .ioctl = sock_no_ioctl, 1680 .listen = sock_no_listen, 1681 .shutdown = sock_no_shutdown, 1682 .setsockopt = xsk_setsockopt, 1683 .getsockopt = xsk_getsockopt, 1684 .sendmsg = xsk_sendmsg, 1685 .recvmsg = xsk_recvmsg, 1686 .mmap = xsk_mmap, 1687 }; 1688 1689 static void xsk_destruct(struct sock *sk) 1690 { 1691 struct xdp_sock *xs = xdp_sk(sk); 1692 1693 if (!sock_flag(sk, SOCK_DEAD)) 1694 return; 1695 1696 if (!xp_put_pool(xs->pool)) 1697 xdp_put_umem(xs->umem, !xs->pool); 1698 } 1699 1700 static int xsk_create(struct net *net, struct socket *sock, int protocol, 1701 int kern) 1702 { 1703 struct xdp_sock *xs; 1704 struct sock *sk; 1705 1706 if (!ns_capable(net->user_ns, CAP_NET_RAW)) 1707 return -EPERM; 1708 if (sock->type != SOCK_RAW) 1709 return -ESOCKTNOSUPPORT; 1710 1711 if (protocol) 1712 return -EPROTONOSUPPORT; 1713 1714 sock->state = SS_UNCONNECTED; 1715 1716 sk = sk_alloc(net, PF_XDP, GFP_KERNEL, &xsk_proto, kern); 1717 if (!sk) 1718 return -ENOBUFS; 1719 1720 sock->ops = &xsk_proto_ops; 1721 1722 sock_init_data(sock, sk); 1723 1724 sk->sk_family = PF_XDP; 1725 1726 sk->sk_destruct = xsk_destruct; 1727 1728 sock_set_flag(sk, SOCK_RCU_FREE); 1729 1730 xs = xdp_sk(sk); 1731 xs->state = XSK_READY; 1732 mutex_init(&xs->mutex); 1733 spin_lock_init(&xs->rx_lock); 1734 1735 INIT_LIST_HEAD(&xs->map_list); 1736 spin_lock_init(&xs->map_list_lock); 1737 1738 mutex_lock(&net->xdp.lock); 1739 sk_add_node_rcu(sk, &net->xdp.list); 1740 mutex_unlock(&net->xdp.lock); 1741 1742 sock_prot_inuse_add(net, &xsk_proto, 1); 1743 1744 return 0; 1745 } 1746 1747 static const struct net_proto_family xsk_family_ops = { 1748 .family = PF_XDP, 1749 .create = xsk_create, 1750 .owner = THIS_MODULE, 1751 }; 1752 1753 static struct notifier_block xsk_netdev_notifier = { 1754 .notifier_call = xsk_notifier, 1755 }; 1756 1757 static int __net_init xsk_net_init(struct net *net) 1758 { 1759 mutex_init(&net->xdp.lock); 1760 INIT_HLIST_HEAD(&net->xdp.list); 1761 return 0; 1762 } 1763 1764 static void __net_exit xsk_net_exit(struct net *net) 1765 { 1766 WARN_ON_ONCE(!hlist_empty(&net->xdp.list)); 1767 } 1768 1769 static struct pernet_operations xsk_net_ops = { 1770 .init = xsk_net_init, 1771 .exit = xsk_net_exit, 1772 }; 1773 1774 static int __init xsk_init(void) 1775 { 1776 int err; 1777 1778 err = proto_register(&xsk_proto, 0 /* no slab */); 1779 if (err) 1780 goto out; 1781 1782 err = sock_register(&xsk_family_ops); 1783 if (err) 1784 goto out_proto; 1785 1786 err = register_pernet_subsys(&xsk_net_ops); 1787 if (err) 1788 goto out_sk; 1789 1790 err = register_netdevice_notifier(&xsk_netdev_notifier); 1791 if (err) 1792 goto out_pernet; 1793 1794 return 0; 1795 1796 out_pernet: 1797 unregister_pernet_subsys(&xsk_net_ops); 1798 out_sk: 1799 sock_unregister(PF_XDP); 1800 out_proto: 1801 proto_unregister(&xsk_proto); 1802 out: 1803 return err; 1804 } 1805 1806 fs_initcall(xsk_init); 1807