net/af_xdp: support unaligned umem chunks
[dpdk.git] / drivers / net / af_xdp / rte_eth_af_xdp.c
1 /* SPDX-License-Identifier: BSD-3-Clause
2  * Copyright(c) 2019 Intel Corporation.
3  */
4 #include <unistd.h>
5 #include <errno.h>
6 #include <stdlib.h>
7 #include <string.h>
8 #include <poll.h>
9 #include <netinet/in.h>
10 #include <net/if.h>
11 #include <sys/socket.h>
12 #include <sys/ioctl.h>
13 #include <linux/if_ether.h>
14 #include <linux/if_xdp.h>
15 #include <linux/if_link.h>
16 #include <linux/ethtool.h>
17 #include <linux/sockios.h>
18 #include "af_xdp_deps.h"
19 #include <bpf/xsk.h>
20
21 #include <rte_ethdev.h>
22 #include <rte_ethdev_driver.h>
23 #include <rte_ethdev_vdev.h>
24 #include <rte_kvargs.h>
25 #include <rte_bus_vdev.h>
26 #include <rte_string_fns.h>
27 #include <rte_branch_prediction.h>
28 #include <rte_common.h>
29 #include <rte_config.h>
30 #include <rte_dev.h>
31 #include <rte_eal.h>
32 #include <rte_ether.h>
33 #include <rte_lcore.h>
34 #include <rte_log.h>
35 #include <rte_memory.h>
36 #include <rte_memzone.h>
37 #include <rte_mbuf.h>
38 #include <rte_malloc.h>
39 #include <rte_ring.h>
40
41 #ifndef SOL_XDP
42 #define SOL_XDP 283
43 #endif
44
45 #ifndef AF_XDP
46 #define AF_XDP 44
47 #endif
48
49 #ifndef PF_XDP
50 #define PF_XDP AF_XDP
51 #endif
52
53 static int af_xdp_logtype;
54
55 #define AF_XDP_LOG(level, fmt, args...)                 \
56         rte_log(RTE_LOG_ ## level, af_xdp_logtype,      \
57                 "%s(): " fmt, __func__, ##args)
58
59 #define ETH_AF_XDP_FRAME_SIZE           2048
60 #define ETH_AF_XDP_NUM_BUFFERS          4096
61 #ifdef XDP_UMEM_UNALIGNED_CHUNK_FLAG
62 #define ETH_AF_XDP_MBUF_OVERHEAD        128 /* sizeof(struct rte_mbuf) */
63 #define ETH_AF_XDP_DATA_HEADROOM \
64         (ETH_AF_XDP_MBUF_OVERHEAD + RTE_PKTMBUF_HEADROOM)
65 #else
66 #define ETH_AF_XDP_DATA_HEADROOM        0
67 #endif
68 #define ETH_AF_XDP_DFLT_NUM_DESCS       XSK_RING_CONS__DEFAULT_NUM_DESCS
69 #define ETH_AF_XDP_DFLT_START_QUEUE_IDX 0
70 #define ETH_AF_XDP_DFLT_QUEUE_COUNT     1
71
72 #define ETH_AF_XDP_RX_BATCH_SIZE        32
73 #define ETH_AF_XDP_TX_BATCH_SIZE        32
74
75
76 struct xsk_umem_info {
77         struct xsk_ring_prod fq;
78         struct xsk_ring_cons cq;
79         struct xsk_umem *umem;
80         struct rte_ring *buf_ring;
81         const struct rte_memzone *mz;
82         struct rte_mempool *mb_pool;
83         void *buffer;
84 };
85
86 struct rx_stats {
87         uint64_t rx_pkts;
88         uint64_t rx_bytes;
89         uint64_t rx_dropped;
90 };
91
92 struct pkt_rx_queue {
93         struct xsk_ring_cons rx;
94         struct xsk_umem_info *umem;
95         struct xsk_socket *xsk;
96         struct rte_mempool *mb_pool;
97
98         struct rx_stats stats;
99
100         struct pkt_tx_queue *pair;
101         struct pollfd fds[1];
102         int xsk_queue_idx;
103 };
104
105 struct tx_stats {
106         uint64_t tx_pkts;
107         uint64_t tx_bytes;
108         uint64_t tx_dropped;
109 };
110
111 struct pkt_tx_queue {
112         struct xsk_ring_prod tx;
113         struct xsk_umem_info *umem;
114
115         struct tx_stats stats;
116
117         struct pkt_rx_queue *pair;
118         int xsk_queue_idx;
119 };
120
121 struct pmd_internals {
122         int if_index;
123         char if_name[IFNAMSIZ];
124         int start_queue_idx;
125         int queue_cnt;
126         int max_queue_cnt;
127         int combined_queue_cnt;
128
129         struct rte_ether_addr eth_addr;
130
131         struct pkt_rx_queue *rx_queues;
132         struct pkt_tx_queue *tx_queues;
133 };
134
135 #define ETH_AF_XDP_IFACE_ARG                    "iface"
136 #define ETH_AF_XDP_START_QUEUE_ARG              "start_queue"
137 #define ETH_AF_XDP_QUEUE_COUNT_ARG              "queue_count"
138
139 static const char * const valid_arguments[] = {
140         ETH_AF_XDP_IFACE_ARG,
141         ETH_AF_XDP_START_QUEUE_ARG,
142         ETH_AF_XDP_QUEUE_COUNT_ARG,
143         NULL
144 };
145
146 static const struct rte_eth_link pmd_link = {
147         .link_speed = ETH_SPEED_NUM_10G,
148         .link_duplex = ETH_LINK_FULL_DUPLEX,
149         .link_status = ETH_LINK_DOWN,
150         .link_autoneg = ETH_LINK_AUTONEG
151 };
152
153 #if defined(XDP_UMEM_UNALIGNED_CHUNK_FLAG)
154 static inline int
155 reserve_fill_queue_zc(struct xsk_umem_info *umem, uint16_t reserve_size,
156                       struct rte_mbuf **bufs)
157 {
158         struct xsk_ring_prod *fq = &umem->fq;
159         uint32_t idx;
160         uint16_t i;
161
162         if (unlikely(!xsk_ring_prod__reserve(fq, reserve_size, &idx))) {
163                 for (i = 0; i < reserve_size; i++)
164                         rte_pktmbuf_free(bufs[i]);
165                 AF_XDP_LOG(DEBUG, "Failed to reserve enough fq descs.\n");
166                 return -1;
167         }
168
169         for (i = 0; i < reserve_size; i++) {
170                 __u64 *fq_addr;
171                 uint64_t addr;
172
173                 fq_addr = xsk_ring_prod__fill_addr(fq, idx++);
174                 addr = (uint64_t)bufs[i] - (uint64_t)umem->buffer;
175                 *fq_addr = addr;
176         }
177
178         xsk_ring_prod__submit(fq, reserve_size);
179
180         return 0;
181 }
182 #else
183 static inline int
184 reserve_fill_queue_cp(struct xsk_umem_info *umem, uint16_t reserve_size,
185                       struct rte_mbuf **bufs __rte_unused)
186 {
187         struct xsk_ring_prod *fq = &umem->fq;
188         void *addrs[reserve_size];
189         uint32_t idx;
190         uint16_t i;
191
192         if (rte_ring_dequeue_bulk(umem->buf_ring, addrs, reserve_size, NULL)
193                     != reserve_size) {
194                 AF_XDP_LOG(DEBUG, "Failed to get enough buffers for fq.\n");
195                 return -1;
196         }
197
198         if (unlikely(!xsk_ring_prod__reserve(fq, reserve_size, &idx))) {
199                 AF_XDP_LOG(DEBUG, "Failed to reserve enough fq descs.\n");
200                 rte_ring_enqueue_bulk(umem->buf_ring, addrs,
201                                 reserve_size, NULL);
202                 return -1;
203         }
204
205         for (i = 0; i < reserve_size; i++) {
206                 __u64 *fq_addr;
207
208                 fq_addr = xsk_ring_prod__fill_addr(fq, idx++);
209                 *fq_addr = (uint64_t)addrs[i];
210         }
211
212         xsk_ring_prod__submit(fq, reserve_size);
213
214         return 0;
215 }
216 #endif
217
218 static inline int
219 reserve_fill_queue(struct xsk_umem_info *umem, uint16_t reserve_size,
220                    struct rte_mbuf **bufs)
221 {
222 #if defined(XDP_UMEM_UNALIGNED_CHUNK_FLAG)
223         return reserve_fill_queue_zc(umem, reserve_size, bufs);
224 #else
225         return reserve_fill_queue_cp(umem, reserve_size, bufs);
226 #endif
227 }
228
229 #if defined(XDP_UMEM_UNALIGNED_CHUNK_FLAG)
230 static uint16_t
231 af_xdp_rx_zc(void *queue, struct rte_mbuf **bufs, uint16_t nb_pkts)
232 {
233         struct pkt_rx_queue *rxq = queue;
234         struct xsk_ring_cons *rx = &rxq->rx;
235         struct xsk_umem_info *umem = rxq->umem;
236         uint32_t idx_rx = 0;
237         unsigned long rx_bytes = 0;
238         int rcvd, i;
239         struct rte_mbuf *fq_bufs[ETH_AF_XDP_RX_BATCH_SIZE];
240
241         /* allocate bufs for fill queue replenishment after rx */
242         if (rte_pktmbuf_alloc_bulk(umem->mb_pool, fq_bufs, nb_pkts)) {
243                 AF_XDP_LOG(DEBUG,
244                         "Failed to get enough buffers for fq.\n");
245                 return -1;
246         }
247
248         rcvd = xsk_ring_cons__peek(rx, nb_pkts, &idx_rx);
249
250         if (rcvd == 0) {
251 #if defined(XDP_USE_NEED_WAKEUP)
252                 if (xsk_ring_prod__needs_wakeup(&umem->fq))
253                         (void)poll(rxq->fds, 1, 1000);
254 #endif
255
256                 goto out;
257         }
258
259         for (i = 0; i < rcvd; i++) {
260                 const struct xdp_desc *desc;
261                 uint64_t addr;
262                 uint32_t len;
263                 uint64_t offset;
264
265                 desc = xsk_ring_cons__rx_desc(rx, idx_rx++);
266                 addr = desc->addr;
267                 len = desc->len;
268
269                 offset = xsk_umem__extract_offset(addr);
270                 addr = xsk_umem__extract_addr(addr);
271
272                 bufs[i] = (struct rte_mbuf *)
273                                 xsk_umem__get_data(umem->buffer, addr);
274                 bufs[i]->data_off = offset - sizeof(struct rte_mbuf);
275
276                 rte_pktmbuf_pkt_len(bufs[i]) = len;
277                 rte_pktmbuf_data_len(bufs[i]) = len;
278                 rx_bytes += len;
279         }
280
281         xsk_ring_cons__release(rx, rcvd);
282
283         (void)reserve_fill_queue(umem, rcvd, fq_bufs);
284
285         /* statistics */
286         rxq->stats.rx_pkts += rcvd;
287         rxq->stats.rx_bytes += rx_bytes;
288
289 out:
290         if (rcvd != nb_pkts)
291                 rte_mempool_put_bulk(umem->mb_pool, (void **)&fq_bufs[rcvd],
292                                      nb_pkts - rcvd);
293
294         return rcvd;
295 }
296 #else
297 static uint16_t
298 af_xdp_rx_cp(void *queue, struct rte_mbuf **bufs, uint16_t nb_pkts)
299 {
300         struct pkt_rx_queue *rxq = queue;
301         struct xsk_ring_cons *rx = &rxq->rx;
302         struct xsk_umem_info *umem = rxq->umem;
303         struct xsk_ring_prod *fq = &umem->fq;
304         uint32_t idx_rx = 0;
305         unsigned long rx_bytes = 0;
306         int rcvd, i;
307         uint32_t free_thresh = fq->size >> 1;
308         struct rte_mbuf *mbufs[ETH_AF_XDP_RX_BATCH_SIZE];
309
310         if (unlikely(rte_pktmbuf_alloc_bulk(rxq->mb_pool, mbufs, nb_pkts) != 0))
311                 return 0;
312
313         rcvd = xsk_ring_cons__peek(rx, nb_pkts, &idx_rx);
314         if (rcvd == 0) {
315 #if defined(XDP_USE_NEED_WAKEUP)
316                 if (xsk_ring_prod__needs_wakeup(fq))
317                         (void)poll(rxq->fds, 1, 1000);
318 #endif
319
320                 goto out;
321         }
322
323         if (xsk_prod_nb_free(fq, free_thresh) >= free_thresh)
324                 (void)reserve_fill_queue(umem, ETH_AF_XDP_RX_BATCH_SIZE, NULL);
325
326         for (i = 0; i < rcvd; i++) {
327                 const struct xdp_desc *desc;
328                 uint64_t addr;
329                 uint32_t len;
330                 void *pkt;
331
332                 desc = xsk_ring_cons__rx_desc(rx, idx_rx++);
333                 addr = desc->addr;
334                 len = desc->len;
335                 pkt = xsk_umem__get_data(rxq->umem->mz->addr, addr);
336
337                 rte_memcpy(rte_pktmbuf_mtod(mbufs[i], void *), pkt, len);
338                 rte_ring_enqueue(umem->buf_ring, (void *)addr);
339                 rte_pktmbuf_pkt_len(mbufs[i]) = len;
340                 rte_pktmbuf_data_len(mbufs[i]) = len;
341                 rx_bytes += len;
342                 bufs[i] = mbufs[i];
343         }
344
345         xsk_ring_cons__release(rx, rcvd);
346
347         /* statistics */
348         rxq->stats.rx_pkts += rcvd;
349         rxq->stats.rx_bytes += rx_bytes;
350
351 out:
352         if (rcvd != nb_pkts)
353                 rte_mempool_put_bulk(rxq->mb_pool, (void **)&mbufs[rcvd],
354                                      nb_pkts - rcvd);
355
356         return rcvd;
357 }
358 #endif
359
360 static uint16_t
361 eth_af_xdp_rx(void *queue, struct rte_mbuf **bufs, uint16_t nb_pkts)
362 {
363         nb_pkts = RTE_MIN(nb_pkts, ETH_AF_XDP_RX_BATCH_SIZE);
364
365 #if defined(XDP_UMEM_UNALIGNED_CHUNK_FLAG)
366         return af_xdp_rx_zc(queue, bufs, nb_pkts);
367 #else
368         return af_xdp_rx_cp(queue, bufs, nb_pkts);
369 #endif
370 }
371
372 static void
373 pull_umem_cq(struct xsk_umem_info *umem, int size)
374 {
375         struct xsk_ring_cons *cq = &umem->cq;
376         size_t i, n;
377         uint32_t idx_cq = 0;
378
379         n = xsk_ring_cons__peek(cq, size, &idx_cq);
380
381         for (i = 0; i < n; i++) {
382                 uint64_t addr;
383                 addr = *xsk_ring_cons__comp_addr(cq, idx_cq++);
384 #if defined(XDP_UMEM_UNALIGNED_CHUNK_FLAG)
385                 addr = xsk_umem__extract_addr(addr);
386                 rte_pktmbuf_free((struct rte_mbuf *)
387                                         xsk_umem__get_data(umem->buffer, addr));
388 #else
389                 rte_ring_enqueue(umem->buf_ring, (void *)addr);
390 #endif
391         }
392
393         xsk_ring_cons__release(cq, n);
394 }
395
396 static void
397 kick_tx(struct pkt_tx_queue *txq)
398 {
399         struct xsk_umem_info *umem = txq->umem;
400
401 #if defined(XDP_USE_NEED_WAKEUP)
402         if (xsk_ring_prod__needs_wakeup(&txq->tx))
403 #endif
404                 while (send(xsk_socket__fd(txq->pair->xsk), NULL,
405                             0, MSG_DONTWAIT) < 0) {
406                         /* some thing unexpected */
407                         if (errno != EBUSY && errno != EAGAIN && errno != EINTR)
408                                 break;
409
410                         /* pull from completion queue to leave more space */
411                         if (errno == EAGAIN)
412                                 pull_umem_cq(umem, ETH_AF_XDP_TX_BATCH_SIZE);
413                 }
414 #ifndef XDP_UMEM_UNALIGNED_CHUNK_FLAG
415         pull_umem_cq(umem, ETH_AF_XDP_TX_BATCH_SIZE);
416 #endif
417 }
418
419 #if defined(XDP_UMEM_UNALIGNED_CHUNK_FLAG)
420 static uint16_t
421 af_xdp_tx_zc(void *queue, struct rte_mbuf **bufs, uint16_t nb_pkts)
422 {
423         struct pkt_tx_queue *txq = queue;
424         struct xsk_umem_info *umem = txq->umem;
425         struct rte_mbuf *mbuf;
426         unsigned long tx_bytes = 0;
427         int i;
428         uint32_t idx_tx;
429         uint16_t count = 0;
430         struct xdp_desc *desc;
431         uint64_t addr, offset;
432
433         pull_umem_cq(umem, nb_pkts);
434
435         for (i = 0; i < nb_pkts; i++) {
436                 mbuf = bufs[i];
437
438                 if (mbuf->pool == umem->mb_pool) {
439                         if (!xsk_ring_prod__reserve(&txq->tx, 1, &idx_tx)) {
440                                 kick_tx(txq);
441                                 goto out;
442                         }
443                         desc = xsk_ring_prod__tx_desc(&txq->tx, idx_tx);
444                         desc->len = mbuf->pkt_len;
445                         addr = (uint64_t)mbuf - (uint64_t)umem->buffer;
446                         offset = rte_pktmbuf_mtod(mbuf, uint64_t) -
447                                         (uint64_t)mbuf;
448                         offset = offset << XSK_UNALIGNED_BUF_OFFSET_SHIFT;
449                         desc->addr = addr | offset;
450                         count++;
451                 } else {
452                         struct rte_mbuf *local_mbuf =
453                                         rte_pktmbuf_alloc(umem->mb_pool);
454                         void *pkt;
455
456                         if (local_mbuf == NULL)
457                                 goto out;
458
459                         if (!xsk_ring_prod__reserve(&txq->tx, 1, &idx_tx)) {
460                                 rte_pktmbuf_free(local_mbuf);
461                                 kick_tx(txq);
462                                 goto out;
463                         }
464
465                         desc = xsk_ring_prod__tx_desc(&txq->tx, idx_tx);
466                         desc->len = mbuf->pkt_len;
467
468                         addr = (uint64_t)local_mbuf - (uint64_t)umem->buffer;
469                         offset = rte_pktmbuf_mtod(local_mbuf, uint64_t) -
470                                         (uint64_t)local_mbuf;
471                         pkt = xsk_umem__get_data(umem->buffer, addr + offset);
472                         offset = offset << XSK_UNALIGNED_BUF_OFFSET_SHIFT;
473                         desc->addr = addr | offset;
474                         rte_memcpy(pkt, rte_pktmbuf_mtod(mbuf, void *),
475                                         desc->len);
476                         rte_pktmbuf_free(mbuf);
477                         count++;
478                 }
479
480                 tx_bytes += mbuf->pkt_len;
481         }
482
483 #if defined(XDP_USE_NEED_WAKEUP)
484         if (xsk_ring_prod__needs_wakeup(&txq->tx))
485 #endif
486                 kick_tx(txq);
487
488 out:
489         xsk_ring_prod__submit(&txq->tx, count);
490
491         txq->stats.tx_pkts += count;
492         txq->stats.tx_bytes += tx_bytes;
493         txq->stats.tx_dropped += nb_pkts - count;
494
495         return count;
496 }
497 #else
498 static uint16_t
499 af_xdp_tx_cp(void *queue, struct rte_mbuf **bufs, uint16_t nb_pkts)
500 {
501         struct pkt_tx_queue *txq = queue;
502         struct xsk_umem_info *umem = txq->umem;
503         struct rte_mbuf *mbuf;
504         void *addrs[ETH_AF_XDP_TX_BATCH_SIZE];
505         unsigned long tx_bytes = 0;
506         int i;
507         uint32_t idx_tx;
508
509         nb_pkts = RTE_MIN(nb_pkts, ETH_AF_XDP_TX_BATCH_SIZE);
510
511         pull_umem_cq(umem, nb_pkts);
512
513         nb_pkts = rte_ring_dequeue_bulk(umem->buf_ring, addrs,
514                                         nb_pkts, NULL);
515         if (nb_pkts == 0)
516                 return 0;
517
518         if (xsk_ring_prod__reserve(&txq->tx, nb_pkts, &idx_tx) != nb_pkts) {
519                 kick_tx(txq);
520                 rte_ring_enqueue_bulk(umem->buf_ring, addrs, nb_pkts, NULL);
521                 return 0;
522         }
523
524         for (i = 0; i < nb_pkts; i++) {
525                 struct xdp_desc *desc;
526                 void *pkt;
527
528                 desc = xsk_ring_prod__tx_desc(&txq->tx, idx_tx + i);
529                 mbuf = bufs[i];
530                 desc->len = mbuf->pkt_len;
531
532                 desc->addr = (uint64_t)addrs[i];
533                 pkt = xsk_umem__get_data(umem->mz->addr,
534                                          desc->addr);
535                 rte_memcpy(pkt, rte_pktmbuf_mtod(mbuf, void *), desc->len);
536                 tx_bytes += mbuf->pkt_len;
537                 rte_pktmbuf_free(mbuf);
538         }
539
540         xsk_ring_prod__submit(&txq->tx, nb_pkts);
541
542         kick_tx(txq);
543
544         txq->stats.tx_pkts += nb_pkts;
545         txq->stats.tx_bytes += tx_bytes;
546
547         return nb_pkts;
548 }
549 #endif
550
551 static uint16_t
552 eth_af_xdp_tx(void *queue, struct rte_mbuf **bufs, uint16_t nb_pkts)
553 {
554 #if defined(XDP_UMEM_UNALIGNED_CHUNK_FLAG)
555         return af_xdp_tx_zc(queue, bufs, nb_pkts);
556 #else
557         return af_xdp_tx_cp(queue, bufs, nb_pkts);
558 #endif
559 }
560
561 static int
562 eth_dev_start(struct rte_eth_dev *dev)
563 {
564         dev->data->dev_link.link_status = ETH_LINK_UP;
565
566         return 0;
567 }
568
569 /* This function gets called when the current port gets stopped. */
570 static void
571 eth_dev_stop(struct rte_eth_dev *dev)
572 {
573         dev->data->dev_link.link_status = ETH_LINK_DOWN;
574 }
575
576 static int
577 eth_dev_configure(struct rte_eth_dev *dev)
578 {
579         /* rx/tx must be paired */
580         if (dev->data->nb_rx_queues != dev->data->nb_tx_queues)
581                 return -EINVAL;
582
583         return 0;
584 }
585
586 static int
587 eth_dev_info(struct rte_eth_dev *dev, struct rte_eth_dev_info *dev_info)
588 {
589         struct pmd_internals *internals = dev->data->dev_private;
590
591         dev_info->if_index = internals->if_index;
592         dev_info->max_mac_addrs = 1;
593         dev_info->max_rx_pktlen = ETH_FRAME_LEN;
594         dev_info->max_rx_queues = internals->queue_cnt;
595         dev_info->max_tx_queues = internals->queue_cnt;
596
597         dev_info->min_mtu = RTE_ETHER_MIN_MTU;
598         dev_info->max_mtu = ETH_AF_XDP_FRAME_SIZE - ETH_AF_XDP_DATA_HEADROOM;
599
600         dev_info->default_rxportconf.nb_queues = 1;
601         dev_info->default_txportconf.nb_queues = 1;
602         dev_info->default_rxportconf.ring_size = ETH_AF_XDP_DFLT_NUM_DESCS;
603         dev_info->default_txportconf.ring_size = ETH_AF_XDP_DFLT_NUM_DESCS;
604
605         return 0;
606 }
607
608 static int
609 eth_stats_get(struct rte_eth_dev *dev, struct rte_eth_stats *stats)
610 {
611         struct pmd_internals *internals = dev->data->dev_private;
612         struct xdp_statistics xdp_stats;
613         struct pkt_rx_queue *rxq;
614         struct pkt_tx_queue *txq;
615         socklen_t optlen;
616         int i, ret;
617
618         for (i = 0; i < dev->data->nb_rx_queues; i++) {
619                 optlen = sizeof(struct xdp_statistics);
620                 rxq = &internals->rx_queues[i];
621                 txq = rxq->pair;
622                 stats->q_ipackets[i] = rxq->stats.rx_pkts;
623                 stats->q_ibytes[i] = rxq->stats.rx_bytes;
624
625                 stats->q_opackets[i] = txq->stats.tx_pkts;
626                 stats->q_obytes[i] = txq->stats.tx_bytes;
627
628                 stats->ipackets += stats->q_ipackets[i];
629                 stats->ibytes += stats->q_ibytes[i];
630                 stats->imissed += rxq->stats.rx_dropped;
631                 stats->oerrors += txq->stats.tx_dropped;
632                 ret = getsockopt(xsk_socket__fd(rxq->xsk), SOL_XDP,
633                                 XDP_STATISTICS, &xdp_stats, &optlen);
634                 if (ret != 0) {
635                         AF_XDP_LOG(ERR, "getsockopt() failed for XDP_STATISTICS.\n");
636                         return -1;
637                 }
638                 stats->imissed += xdp_stats.rx_dropped;
639
640                 stats->opackets += stats->q_opackets[i];
641                 stats->obytes += stats->q_obytes[i];
642         }
643
644         return 0;
645 }
646
647 static int
648 eth_stats_reset(struct rte_eth_dev *dev)
649 {
650         struct pmd_internals *internals = dev->data->dev_private;
651         int i;
652
653         for (i = 0; i < internals->queue_cnt; i++) {
654                 memset(&internals->rx_queues[i].stats, 0,
655                                         sizeof(struct rx_stats));
656                 memset(&internals->tx_queues[i].stats, 0,
657                                         sizeof(struct tx_stats));
658         }
659
660         return 0;
661 }
662
663 static void
664 remove_xdp_program(struct pmd_internals *internals)
665 {
666         uint32_t curr_prog_id = 0;
667
668         if (bpf_get_link_xdp_id(internals->if_index, &curr_prog_id,
669                                 XDP_FLAGS_UPDATE_IF_NOEXIST)) {
670                 AF_XDP_LOG(ERR, "bpf_get_link_xdp_id failed\n");
671                 return;
672         }
673         bpf_set_link_xdp_fd(internals->if_index, -1,
674                         XDP_FLAGS_UPDATE_IF_NOEXIST);
675 }
676
677 static void
678 xdp_umem_destroy(struct xsk_umem_info *umem)
679 {
680 #if defined(XDP_UMEM_UNALIGNED_CHUNK_FLAG)
681         rte_mempool_free(umem->mb_pool);
682         umem->mb_pool = NULL;
683 #else
684         rte_memzone_free(umem->mz);
685         umem->mz = NULL;
686
687         rte_ring_free(umem->buf_ring);
688         umem->buf_ring = NULL;
689 #endif
690
691         rte_free(umem);
692         umem = NULL;
693 }
694
695 static void
696 eth_dev_close(struct rte_eth_dev *dev)
697 {
698         struct pmd_internals *internals = dev->data->dev_private;
699         struct pkt_rx_queue *rxq;
700         int i;
701
702         AF_XDP_LOG(INFO, "Closing AF_XDP ethdev on numa socket %u\n",
703                 rte_socket_id());
704
705         for (i = 0; i < internals->queue_cnt; i++) {
706                 rxq = &internals->rx_queues[i];
707                 if (rxq->umem == NULL)
708                         break;
709                 xsk_socket__delete(rxq->xsk);
710                 (void)xsk_umem__delete(rxq->umem->umem);
711                 xdp_umem_destroy(rxq->umem);
712
713                 /* free pkt_tx_queue */
714                 rte_free(rxq->pair);
715                 rte_free(rxq);
716         }
717
718         /*
719          * MAC is not allocated dynamically, setting it to NULL would prevent
720          * from releasing it in rte_eth_dev_release_port.
721          */
722         dev->data->mac_addrs = NULL;
723
724         remove_xdp_program(internals);
725 }
726
727 static void
728 eth_queue_release(void *q __rte_unused)
729 {
730 }
731
732 static int
733 eth_link_update(struct rte_eth_dev *dev __rte_unused,
734                 int wait_to_complete __rte_unused)
735 {
736         return 0;
737 }
738
739 #if defined(XDP_UMEM_UNALIGNED_CHUNK_FLAG)
740 static inline uint64_t get_base_addr(struct rte_mempool *mp)
741 {
742         struct rte_mempool_memhdr *memhdr;
743
744         memhdr = STAILQ_FIRST(&mp->mem_list);
745         return (uint64_t)memhdr->addr & ~(getpagesize() - 1);
746 }
747
748 static struct
749 xsk_umem_info *xdp_umem_configure(struct pmd_internals *internals __rte_unused,
750                                   struct pkt_rx_queue *rxq)
751 {
752         struct xsk_umem_info *umem;
753         int ret;
754         struct xsk_umem_config usr_config = {
755                 .fill_size = ETH_AF_XDP_DFLT_NUM_DESCS,
756                 .comp_size = ETH_AF_XDP_DFLT_NUM_DESCS,
757                 .flags = XDP_UMEM_UNALIGNED_CHUNK_FLAG};
758         void *base_addr = NULL;
759         struct rte_mempool *mb_pool = rxq->mb_pool;
760
761         usr_config.frame_size = rte_pktmbuf_data_room_size(mb_pool) +
762                                         ETH_AF_XDP_MBUF_OVERHEAD +
763                                         mb_pool->private_data_size;
764         usr_config.frame_headroom = ETH_AF_XDP_DATA_HEADROOM +
765                                         mb_pool->private_data_size;
766
767         umem = rte_zmalloc_socket("umem", sizeof(*umem), 0, rte_socket_id());
768         if (umem == NULL) {
769                 AF_XDP_LOG(ERR, "Failed to allocate umem info");
770                 return NULL;
771         }
772
773         umem->mb_pool = mb_pool;
774         base_addr = (void *)get_base_addr(mb_pool);
775
776         ret = xsk_umem__create(&umem->umem, base_addr,
777                                mb_pool->populated_size * usr_config.frame_size,
778                                &umem->fq, &umem->cq,
779                                &usr_config);
780
781         if (ret) {
782                 AF_XDP_LOG(ERR, "Failed to create umem");
783                 goto err;
784         }
785         umem->buffer = base_addr;
786
787 #else
788 static struct
789 xsk_umem_info *xdp_umem_configure(struct pmd_internals *internals,
790                                   struct pkt_rx_queue *rxq)
791 {
792         struct xsk_umem_info *umem;
793         const struct rte_memzone *mz;
794         struct xsk_umem_config usr_config = {
795                 .fill_size = ETH_AF_XDP_DFLT_NUM_DESCS,
796                 .comp_size = ETH_AF_XDP_DFLT_NUM_DESCS,
797                 .frame_size = ETH_AF_XDP_FRAME_SIZE,
798                 .frame_headroom = ETH_AF_XDP_DATA_HEADROOM };
799         char ring_name[RTE_RING_NAMESIZE];
800         char mz_name[RTE_MEMZONE_NAMESIZE];
801         int ret;
802         uint64_t i;
803
804         umem = rte_zmalloc_socket("umem", sizeof(*umem), 0, rte_socket_id());
805         if (umem == NULL) {
806                 AF_XDP_LOG(ERR, "Failed to allocate umem info");
807                 return NULL;
808         }
809
810         snprintf(ring_name, sizeof(ring_name), "af_xdp_ring_%s_%u",
811                        internals->if_name, rxq->xsk_queue_idx);
812         umem->buf_ring = rte_ring_create(ring_name,
813                                          ETH_AF_XDP_NUM_BUFFERS,
814                                          rte_socket_id(),
815                                          0x0);
816         if (umem->buf_ring == NULL) {
817                 AF_XDP_LOG(ERR, "Failed to create rte_ring\n");
818                 goto err;
819         }
820
821         for (i = 0; i < ETH_AF_XDP_NUM_BUFFERS; i++)
822                 rte_ring_enqueue(umem->buf_ring,
823                                  (void *)(i * ETH_AF_XDP_FRAME_SIZE +
824                                           ETH_AF_XDP_DATA_HEADROOM));
825
826         snprintf(mz_name, sizeof(mz_name), "af_xdp_umem_%s_%u",
827                        internals->if_name, rxq->xsk_queue_idx);
828         mz = rte_memzone_reserve_aligned(mz_name,
829                         ETH_AF_XDP_NUM_BUFFERS * ETH_AF_XDP_FRAME_SIZE,
830                         rte_socket_id(), RTE_MEMZONE_IOVA_CONTIG,
831                         getpagesize());
832         if (mz == NULL) {
833                 AF_XDP_LOG(ERR, "Failed to reserve memzone for af_xdp umem.\n");
834                 goto err;
835         }
836
837         ret = xsk_umem__create(&umem->umem, mz->addr,
838                                ETH_AF_XDP_NUM_BUFFERS * ETH_AF_XDP_FRAME_SIZE,
839                                &umem->fq, &umem->cq,
840                                &usr_config);
841
842         if (ret) {
843                 AF_XDP_LOG(ERR, "Failed to create umem");
844                 goto err;
845         }
846         umem->mz = mz;
847
848 #endif
849         return umem;
850
851 err:
852         xdp_umem_destroy(umem);
853         return NULL;
854 }
855
856 static int
857 xsk_configure(struct pmd_internals *internals, struct pkt_rx_queue *rxq,
858               int ring_size)
859 {
860         struct xsk_socket_config cfg;
861         struct pkt_tx_queue *txq = rxq->pair;
862         int ret = 0;
863         int reserve_size = ETH_AF_XDP_DFLT_NUM_DESCS / 2;
864         struct rte_mbuf *fq_bufs[reserve_size];
865
866         rxq->umem = xdp_umem_configure(internals, rxq);
867         if (rxq->umem == NULL)
868                 return -ENOMEM;
869         txq->umem = rxq->umem;
870
871         cfg.rx_size = ring_size;
872         cfg.tx_size = ring_size;
873         cfg.libbpf_flags = 0;
874         cfg.xdp_flags = XDP_FLAGS_UPDATE_IF_NOEXIST;
875         cfg.bind_flags = 0;
876
877 #if defined(XDP_USE_NEED_WAKEUP)
878         cfg.bind_flags |= XDP_USE_NEED_WAKEUP;
879 #endif
880
881         ret = xsk_socket__create(&rxq->xsk, internals->if_name,
882                         rxq->xsk_queue_idx, rxq->umem->umem, &rxq->rx,
883                         &txq->tx, &cfg);
884         if (ret) {
885                 AF_XDP_LOG(ERR, "Failed to create xsk socket.\n");
886                 goto err;
887         }
888
889 #if defined(XDP_UMEM_UNALIGNED_CHUNK_FLAG)
890         if (rte_pktmbuf_alloc_bulk(rxq->umem->mb_pool, fq_bufs, reserve_size)) {
891                 AF_XDP_LOG(DEBUG, "Failed to get enough buffers for fq.\n");
892                 goto err;
893         }
894 #endif
895         ret = reserve_fill_queue(rxq->umem, reserve_size, fq_bufs);
896         if (ret) {
897                 xsk_socket__delete(rxq->xsk);
898                 AF_XDP_LOG(ERR, "Failed to reserve fill queue.\n");
899                 goto err;
900         }
901
902         return 0;
903
904 err:
905         xdp_umem_destroy(rxq->umem);
906
907         return ret;
908 }
909
910 static int
911 eth_rx_queue_setup(struct rte_eth_dev *dev,
912                    uint16_t rx_queue_id,
913                    uint16_t nb_rx_desc,
914                    unsigned int socket_id __rte_unused,
915                    const struct rte_eth_rxconf *rx_conf __rte_unused,
916                    struct rte_mempool *mb_pool)
917 {
918         struct pmd_internals *internals = dev->data->dev_private;
919         struct pkt_rx_queue *rxq;
920         int ret;
921
922         rxq = &internals->rx_queues[rx_queue_id];
923
924         AF_XDP_LOG(INFO, "Set up rx queue, rx queue id: %d, xsk queue id: %d\n",
925                    rx_queue_id, rxq->xsk_queue_idx);
926
927 #ifndef XDP_UMEM_UNALIGNED_CHUNK_FLAG
928         uint32_t buf_size, data_size;
929
930         /* Now get the space available for data in the mbuf */
931         buf_size = rte_pktmbuf_data_room_size(mb_pool) -
932                 RTE_PKTMBUF_HEADROOM;
933         data_size = ETH_AF_XDP_FRAME_SIZE - ETH_AF_XDP_DATA_HEADROOM;
934
935         if (data_size > buf_size) {
936                 AF_XDP_LOG(ERR, "%s: %d bytes will not fit in mbuf (%d bytes)\n",
937                         dev->device->name, data_size, buf_size);
938                 ret = -ENOMEM;
939                 goto err;
940         }
941 #endif
942
943         rxq->mb_pool = mb_pool;
944
945         if (xsk_configure(internals, rxq, nb_rx_desc)) {
946                 AF_XDP_LOG(ERR, "Failed to configure xdp socket\n");
947                 ret = -EINVAL;
948                 goto err;
949         }
950
951         rxq->fds[0].fd = xsk_socket__fd(rxq->xsk);
952         rxq->fds[0].events = POLLIN;
953
954         dev->data->rx_queues[rx_queue_id] = rxq;
955         return 0;
956
957 err:
958         return ret;
959 }
960
961 static int
962 eth_tx_queue_setup(struct rte_eth_dev *dev,
963                    uint16_t tx_queue_id,
964                    uint16_t nb_tx_desc __rte_unused,
965                    unsigned int socket_id __rte_unused,
966                    const struct rte_eth_txconf *tx_conf __rte_unused)
967 {
968         struct pmd_internals *internals = dev->data->dev_private;
969         struct pkt_tx_queue *txq;
970
971         txq = &internals->tx_queues[tx_queue_id];
972
973         dev->data->tx_queues[tx_queue_id] = txq;
974         return 0;
975 }
976
977 static int
978 eth_dev_mtu_set(struct rte_eth_dev *dev, uint16_t mtu)
979 {
980         struct pmd_internals *internals = dev->data->dev_private;
981         struct ifreq ifr = { .ifr_mtu = mtu };
982         int ret;
983         int s;
984
985         s = socket(PF_INET, SOCK_DGRAM, 0);
986         if (s < 0)
987                 return -EINVAL;
988
989         strlcpy(ifr.ifr_name, internals->if_name, IFNAMSIZ);
990         ret = ioctl(s, SIOCSIFMTU, &ifr);
991         close(s);
992
993         return (ret < 0) ? -errno : 0;
994 }
995
996 static int
997 eth_dev_change_flags(char *if_name, uint32_t flags, uint32_t mask)
998 {
999         struct ifreq ifr;
1000         int ret = 0;
1001         int s;
1002
1003         s = socket(PF_INET, SOCK_DGRAM, 0);
1004         if (s < 0)
1005                 return -errno;
1006
1007         strlcpy(ifr.ifr_name, if_name, IFNAMSIZ);
1008         if (ioctl(s, SIOCGIFFLAGS, &ifr) < 0) {
1009                 ret = -errno;
1010                 goto out;
1011         }
1012         ifr.ifr_flags &= mask;
1013         ifr.ifr_flags |= flags;
1014         if (ioctl(s, SIOCSIFFLAGS, &ifr) < 0) {
1015                 ret = -errno;
1016                 goto out;
1017         }
1018 out:
1019         close(s);
1020         return ret;
1021 }
1022
1023 static int
1024 eth_dev_promiscuous_enable(struct rte_eth_dev *dev)
1025 {
1026         struct pmd_internals *internals = dev->data->dev_private;
1027
1028         return eth_dev_change_flags(internals->if_name, IFF_PROMISC, ~0);
1029 }
1030
1031 static int
1032 eth_dev_promiscuous_disable(struct rte_eth_dev *dev)
1033 {
1034         struct pmd_internals *internals = dev->data->dev_private;
1035
1036         return eth_dev_change_flags(internals->if_name, 0, ~IFF_PROMISC);
1037 }
1038
1039 static const struct eth_dev_ops ops = {
1040         .dev_start = eth_dev_start,
1041         .dev_stop = eth_dev_stop,
1042         .dev_close = eth_dev_close,
1043         .dev_configure = eth_dev_configure,
1044         .dev_infos_get = eth_dev_info,
1045         .mtu_set = eth_dev_mtu_set,
1046         .promiscuous_enable = eth_dev_promiscuous_enable,
1047         .promiscuous_disable = eth_dev_promiscuous_disable,
1048         .rx_queue_setup = eth_rx_queue_setup,
1049         .tx_queue_setup = eth_tx_queue_setup,
1050         .rx_queue_release = eth_queue_release,
1051         .tx_queue_release = eth_queue_release,
1052         .link_update = eth_link_update,
1053         .stats_get = eth_stats_get,
1054         .stats_reset = eth_stats_reset,
1055 };
1056
1057 /** parse integer from integer argument */
1058 static int
1059 parse_integer_arg(const char *key __rte_unused,
1060                   const char *value, void *extra_args)
1061 {
1062         int *i = (int *)extra_args;
1063         char *end;
1064
1065         *i = strtol(value, &end, 10);
1066         if (*i < 0) {
1067                 AF_XDP_LOG(ERR, "Argument has to be positive.\n");
1068                 return -EINVAL;
1069         }
1070
1071         return 0;
1072 }
1073
1074 /** parse name argument */
1075 static int
1076 parse_name_arg(const char *key __rte_unused,
1077                const char *value, void *extra_args)
1078 {
1079         char *name = extra_args;
1080
1081         if (strnlen(value, IFNAMSIZ) > IFNAMSIZ - 1) {
1082                 AF_XDP_LOG(ERR, "Invalid name %s, should be less than %u bytes.\n",
1083                            value, IFNAMSIZ);
1084                 return -EINVAL;
1085         }
1086
1087         strlcpy(name, value, IFNAMSIZ);
1088
1089         return 0;
1090 }
1091
1092 static int
1093 xdp_get_channels_info(const char *if_name, int *max_queues,
1094                                 int *combined_queues)
1095 {
1096         struct ethtool_channels channels;
1097         struct ifreq ifr;
1098         int fd, ret;
1099
1100         fd = socket(AF_INET, SOCK_DGRAM, 0);
1101         if (fd < 0)
1102                 return -1;
1103
1104         channels.cmd = ETHTOOL_GCHANNELS;
1105         ifr.ifr_data = (void *)&channels;
1106         strncpy(ifr.ifr_name, if_name, IFNAMSIZ);
1107         ret = ioctl(fd, SIOCETHTOOL, &ifr);
1108         if (ret) {
1109                 if (errno == EOPNOTSUPP) {
1110                         ret = 0;
1111                 } else {
1112                         ret = -errno;
1113                         goto out;
1114                 }
1115         }
1116
1117         if (channels.max_combined == 0 || errno == EOPNOTSUPP) {
1118                 /* If the device says it has no channels, then all traffic
1119                  * is sent to a single stream, so max queues = 1.
1120                  */
1121                 *max_queues = 1;
1122                 *combined_queues = 1;
1123         } else {
1124                 *max_queues = channels.max_combined;
1125                 *combined_queues = channels.combined_count;
1126         }
1127
1128  out:
1129         close(fd);
1130         return ret;
1131 }
1132
1133 static int
1134 parse_parameters(struct rte_kvargs *kvlist, char *if_name, int *start_queue,
1135                         int *queue_cnt)
1136 {
1137         int ret;
1138
1139         ret = rte_kvargs_process(kvlist, ETH_AF_XDP_IFACE_ARG,
1140                                  &parse_name_arg, if_name);
1141         if (ret < 0)
1142                 goto free_kvlist;
1143
1144         ret = rte_kvargs_process(kvlist, ETH_AF_XDP_START_QUEUE_ARG,
1145                                  &parse_integer_arg, start_queue);
1146         if (ret < 0)
1147                 goto free_kvlist;
1148
1149         ret = rte_kvargs_process(kvlist, ETH_AF_XDP_QUEUE_COUNT_ARG,
1150                                  &parse_integer_arg, queue_cnt);
1151         if (ret < 0 || *queue_cnt <= 0) {
1152                 ret = -EINVAL;
1153                 goto free_kvlist;
1154         }
1155
1156 free_kvlist:
1157         rte_kvargs_free(kvlist);
1158         return ret;
1159 }
1160
1161 static int
1162 get_iface_info(const char *if_name,
1163                struct rte_ether_addr *eth_addr,
1164                int *if_index)
1165 {
1166         struct ifreq ifr;
1167         int sock = socket(AF_INET, SOCK_DGRAM, IPPROTO_IP);
1168
1169         if (sock < 0)
1170                 return -1;
1171
1172         strlcpy(ifr.ifr_name, if_name, IFNAMSIZ);
1173         if (ioctl(sock, SIOCGIFINDEX, &ifr))
1174                 goto error;
1175
1176         *if_index = ifr.ifr_ifindex;
1177
1178         if (ioctl(sock, SIOCGIFHWADDR, &ifr))
1179                 goto error;
1180
1181         rte_memcpy(eth_addr, ifr.ifr_hwaddr.sa_data, RTE_ETHER_ADDR_LEN);
1182
1183         close(sock);
1184         return 0;
1185
1186 error:
1187         close(sock);
1188         return -1;
1189 }
1190
1191 static struct rte_eth_dev *
1192 init_internals(struct rte_vdev_device *dev, const char *if_name,
1193                         int start_queue_idx, int queue_cnt)
1194 {
1195         const char *name = rte_vdev_device_name(dev);
1196         const unsigned int numa_node = dev->device.numa_node;
1197         struct pmd_internals *internals;
1198         struct rte_eth_dev *eth_dev;
1199         int ret;
1200         int i;
1201
1202         internals = rte_zmalloc_socket(name, sizeof(*internals), 0, numa_node);
1203         if (internals == NULL)
1204                 return NULL;
1205
1206         internals->start_queue_idx = start_queue_idx;
1207         internals->queue_cnt = queue_cnt;
1208         strlcpy(internals->if_name, if_name, IFNAMSIZ);
1209
1210         if (xdp_get_channels_info(if_name, &internals->max_queue_cnt,
1211                                   &internals->combined_queue_cnt)) {
1212                 AF_XDP_LOG(ERR, "Failed to get channel info of interface: %s\n",
1213                                 if_name);
1214                 goto err_free_internals;
1215         }
1216
1217         if (queue_cnt > internals->combined_queue_cnt) {
1218                 AF_XDP_LOG(ERR, "Specified queue count %d is larger than combined queue count %d.\n",
1219                                 queue_cnt, internals->combined_queue_cnt);
1220                 goto err_free_internals;
1221         }
1222
1223         internals->rx_queues = rte_zmalloc_socket(NULL,
1224                                         sizeof(struct pkt_rx_queue) * queue_cnt,
1225                                         0, numa_node);
1226         if (internals->rx_queues == NULL) {
1227                 AF_XDP_LOG(ERR, "Failed to allocate memory for rx queues.\n");
1228                 goto err_free_internals;
1229         }
1230
1231         internals->tx_queues = rte_zmalloc_socket(NULL,
1232                                         sizeof(struct pkt_tx_queue) * queue_cnt,
1233                                         0, numa_node);
1234         if (internals->tx_queues == NULL) {
1235                 AF_XDP_LOG(ERR, "Failed to allocate memory for tx queues.\n");
1236                 goto err_free_rx;
1237         }
1238         for (i = 0; i < queue_cnt; i++) {
1239                 internals->tx_queues[i].pair = &internals->rx_queues[i];
1240                 internals->rx_queues[i].pair = &internals->tx_queues[i];
1241                 internals->rx_queues[i].xsk_queue_idx = start_queue_idx + i;
1242                 internals->tx_queues[i].xsk_queue_idx = start_queue_idx + i;
1243         }
1244
1245         ret = get_iface_info(if_name, &internals->eth_addr,
1246                              &internals->if_index);
1247         if (ret)
1248                 goto err_free_tx;
1249
1250         eth_dev = rte_eth_vdev_allocate(dev, 0);
1251         if (eth_dev == NULL)
1252                 goto err_free_tx;
1253
1254         eth_dev->data->dev_private = internals;
1255         eth_dev->data->dev_link = pmd_link;
1256         eth_dev->data->mac_addrs = &internals->eth_addr;
1257         eth_dev->dev_ops = &ops;
1258         eth_dev->rx_pkt_burst = eth_af_xdp_rx;
1259         eth_dev->tx_pkt_burst = eth_af_xdp_tx;
1260         /* Let rte_eth_dev_close() release the port resources. */
1261         eth_dev->data->dev_flags |= RTE_ETH_DEV_CLOSE_REMOVE;
1262
1263 #if defined(XDP_UMEM_UNALIGNED_CHUNK_FLAG)
1264         AF_XDP_LOG(INFO, "Zero copy between umem and mbuf enabled.\n");
1265 #endif
1266
1267         return eth_dev;
1268
1269 err_free_tx:
1270         rte_free(internals->tx_queues);
1271 err_free_rx:
1272         rte_free(internals->rx_queues);
1273 err_free_internals:
1274         rte_free(internals);
1275         return NULL;
1276 }
1277
1278 static int
1279 rte_pmd_af_xdp_probe(struct rte_vdev_device *dev)
1280 {
1281         struct rte_kvargs *kvlist;
1282         char if_name[IFNAMSIZ] = {'\0'};
1283         int xsk_start_queue_idx = ETH_AF_XDP_DFLT_START_QUEUE_IDX;
1284         int xsk_queue_cnt = ETH_AF_XDP_DFLT_QUEUE_COUNT;
1285         struct rte_eth_dev *eth_dev = NULL;
1286         const char *name;
1287
1288         AF_XDP_LOG(INFO, "Initializing pmd_af_xdp for %s\n",
1289                 rte_vdev_device_name(dev));
1290
1291         name = rte_vdev_device_name(dev);
1292         if (rte_eal_process_type() == RTE_PROC_SECONDARY &&
1293                 strlen(rte_vdev_device_args(dev)) == 0) {
1294                 eth_dev = rte_eth_dev_attach_secondary(name);
1295                 if (eth_dev == NULL) {
1296                         AF_XDP_LOG(ERR, "Failed to probe %s\n", name);
1297                         return -EINVAL;
1298                 }
1299                 eth_dev->dev_ops = &ops;
1300                 rte_eth_dev_probing_finish(eth_dev);
1301                 return 0;
1302         }
1303
1304         kvlist = rte_kvargs_parse(rte_vdev_device_args(dev), valid_arguments);
1305         if (kvlist == NULL) {
1306                 AF_XDP_LOG(ERR, "Invalid kvargs key\n");
1307                 return -EINVAL;
1308         }
1309
1310         if (dev->device.numa_node == SOCKET_ID_ANY)
1311                 dev->device.numa_node = rte_socket_id();
1312
1313         if (parse_parameters(kvlist, if_name, &xsk_start_queue_idx,
1314                              &xsk_queue_cnt) < 0) {
1315                 AF_XDP_LOG(ERR, "Invalid kvargs value\n");
1316                 return -EINVAL;
1317         }
1318
1319         if (strlen(if_name) == 0) {
1320                 AF_XDP_LOG(ERR, "Network interface must be specified\n");
1321                 return -EINVAL;
1322         }
1323
1324         eth_dev = init_internals(dev, if_name, xsk_start_queue_idx,
1325                                         xsk_queue_cnt);
1326         if (eth_dev == NULL) {
1327                 AF_XDP_LOG(ERR, "Failed to init internals\n");
1328                 return -1;
1329         }
1330
1331         rte_eth_dev_probing_finish(eth_dev);
1332
1333         return 0;
1334 }
1335
1336 static int
1337 rte_pmd_af_xdp_remove(struct rte_vdev_device *dev)
1338 {
1339         struct rte_eth_dev *eth_dev = NULL;
1340
1341         AF_XDP_LOG(INFO, "Removing AF_XDP ethdev on numa socket %u\n",
1342                 rte_socket_id());
1343
1344         if (dev == NULL)
1345                 return -1;
1346
1347         /* find the ethdev entry */
1348         eth_dev = rte_eth_dev_allocated(rte_vdev_device_name(dev));
1349         if (eth_dev == NULL)
1350                 return 0;
1351
1352         eth_dev_close(eth_dev);
1353         rte_eth_dev_release_port(eth_dev);
1354
1355
1356         return 0;
1357 }
1358
1359 static struct rte_vdev_driver pmd_af_xdp_drv = {
1360         .probe = rte_pmd_af_xdp_probe,
1361         .remove = rte_pmd_af_xdp_remove,
1362 };
1363
1364 RTE_PMD_REGISTER_VDEV(net_af_xdp, pmd_af_xdp_drv);
1365 RTE_PMD_REGISTER_PARAM_STRING(net_af_xdp,
1366                               "iface=<string> "
1367                               "start_queue=<int> "
1368                               "queue_count=<int> ");
1369
1370 RTE_INIT(af_xdp_init_log)
1371 {
1372         af_xdp_logtype = rte_log_register("pmd.net.af_xdp");
1373         if (af_xdp_logtype >= 0)
1374                 rte_log_set_level(af_xdp_logtype, RTE_LOG_NOTICE);
1375 }