net/cnxk: support IPsec anti replay in cn9k
[dpdk.git] / drivers / net / af_packet / rte_eth_af_packet.c
1 /* SPDX-License-Identifier: BSD-3-Clause
2  * Copyright(c) 2014 John W. Linville <linville@tuxdriver.com>
3  * Originally based upon librte_pmd_pcap code:
4  * Copyright(c) 2010-2015 Intel Corporation.
5  * Copyright(c) 2014 6WIND S.A.
6  * All rights reserved.
7  */
8
9 #include <rte_string_fns.h>
10 #include <rte_mbuf.h>
11 #include <ethdev_driver.h>
12 #include <ethdev_vdev.h>
13 #include <rte_malloc.h>
14 #include <rte_kvargs.h>
15 #include <rte_bus_vdev.h>
16
17 #include <errno.h>
18 #include <linux/if_ether.h>
19 #include <linux/if_packet.h>
20 #include <arpa/inet.h>
21 #include <net/if.h>
22 #include <net/if_arp.h>
23 #include <sys/types.h>
24 #include <sys/socket.h>
25 #include <sys/ioctl.h>
26 #include <string.h>
27 #include <sys/mman.h>
28 #include <unistd.h>
29 #include <poll.h>
30
31 #define ETH_AF_PACKET_IFACE_ARG         "iface"
32 #define ETH_AF_PACKET_NUM_Q_ARG         "qpairs"
33 #define ETH_AF_PACKET_BLOCKSIZE_ARG     "blocksz"
34 #define ETH_AF_PACKET_FRAMESIZE_ARG     "framesz"
35 #define ETH_AF_PACKET_FRAMECOUNT_ARG    "framecnt"
36 #define ETH_AF_PACKET_QDISC_BYPASS_ARG  "qdisc_bypass"
37
38 #define DFLT_FRAME_SIZE         (1 << 11)
39 #define DFLT_FRAME_COUNT        (1 << 9)
40
41 struct pkt_rx_queue {
42         int sockfd;
43
44         struct iovec *rd;
45         uint8_t *map;
46         unsigned int framecount;
47         unsigned int framenum;
48
49         struct rte_mempool *mb_pool;
50         uint16_t in_port;
51         uint8_t vlan_strip;
52
53         volatile unsigned long rx_pkts;
54         volatile unsigned long rx_bytes;
55 };
56
57 struct pkt_tx_queue {
58         int sockfd;
59         unsigned int frame_data_size;
60
61         struct iovec *rd;
62         uint8_t *map;
63         unsigned int framecount;
64         unsigned int framenum;
65
66         volatile unsigned long tx_pkts;
67         volatile unsigned long err_pkts;
68         volatile unsigned long tx_bytes;
69 };
70
71 struct pmd_internals {
72         unsigned nb_queues;
73
74         int if_index;
75         char *if_name;
76         struct rte_ether_addr eth_addr;
77
78         struct tpacket_req req;
79
80         struct pkt_rx_queue *rx_queue;
81         struct pkt_tx_queue *tx_queue;
82         uint8_t vlan_strip;
83 };
84
85 static const char *valid_arguments[] = {
86         ETH_AF_PACKET_IFACE_ARG,
87         ETH_AF_PACKET_NUM_Q_ARG,
88         ETH_AF_PACKET_BLOCKSIZE_ARG,
89         ETH_AF_PACKET_FRAMESIZE_ARG,
90         ETH_AF_PACKET_FRAMECOUNT_ARG,
91         ETH_AF_PACKET_QDISC_BYPASS_ARG,
92         NULL
93 };
94
95 static struct rte_eth_link pmd_link = {
96         .link_speed = ETH_SPEED_NUM_10G,
97         .link_duplex = ETH_LINK_FULL_DUPLEX,
98         .link_status = ETH_LINK_DOWN,
99         .link_autoneg = ETH_LINK_FIXED,
100 };
101
102 RTE_LOG_REGISTER_DEFAULT(af_packet_logtype, NOTICE);
103
104 #define PMD_LOG(level, fmt, args...) \
105         rte_log(RTE_LOG_ ## level, af_packet_logtype, \
106                 "%s(): " fmt "\n", __func__, ##args)
107
108 #define PMD_LOG_ERRNO(level, fmt, args...) \
109         rte_log(RTE_LOG_ ## level, af_packet_logtype, \
110                 "%s(): " fmt ":%s\n", __func__, ##args, strerror(errno))
111
112 static uint16_t
113 eth_af_packet_rx(void *queue, struct rte_mbuf **bufs, uint16_t nb_pkts)
114 {
115         unsigned i;
116         struct tpacket2_hdr *ppd;
117         struct rte_mbuf *mbuf;
118         uint8_t *pbuf;
119         struct pkt_rx_queue *pkt_q = queue;
120         uint16_t num_rx = 0;
121         unsigned long num_rx_bytes = 0;
122         unsigned int framecount, framenum;
123
124         if (unlikely(nb_pkts == 0))
125                 return 0;
126
127         /*
128          * Reads the given number of packets from the AF_PACKET socket one by
129          * one and copies the packet data into a newly allocated mbuf.
130          */
131         framecount = pkt_q->framecount;
132         framenum = pkt_q->framenum;
133         for (i = 0; i < nb_pkts; i++) {
134                 /* point at the next incoming frame */
135                 ppd = (struct tpacket2_hdr *) pkt_q->rd[framenum].iov_base;
136                 if ((ppd->tp_status & TP_STATUS_USER) == 0)
137                         break;
138
139                 /* allocate the next mbuf */
140                 mbuf = rte_pktmbuf_alloc(pkt_q->mb_pool);
141                 if (unlikely(mbuf == NULL))
142                         break;
143
144                 /* packet will fit in the mbuf, go ahead and receive it */
145                 rte_pktmbuf_pkt_len(mbuf) = rte_pktmbuf_data_len(mbuf) = ppd->tp_snaplen;
146                 pbuf = (uint8_t *) ppd + ppd->tp_mac;
147                 memcpy(rte_pktmbuf_mtod(mbuf, void *), pbuf, rte_pktmbuf_data_len(mbuf));
148
149                 /* check for vlan info */
150                 if (ppd->tp_status & TP_STATUS_VLAN_VALID) {
151                         mbuf->vlan_tci = ppd->tp_vlan_tci;
152                         mbuf->ol_flags |= (PKT_RX_VLAN | PKT_RX_VLAN_STRIPPED);
153
154                         if (!pkt_q->vlan_strip && rte_vlan_insert(&mbuf))
155                                 PMD_LOG(ERR, "Failed to reinsert VLAN tag");
156                 }
157
158                 /* release incoming frame and advance ring buffer */
159                 ppd->tp_status = TP_STATUS_KERNEL;
160                 if (++framenum >= framecount)
161                         framenum = 0;
162                 mbuf->port = pkt_q->in_port;
163
164                 /* account for the receive frame */
165                 bufs[i] = mbuf;
166                 num_rx++;
167                 num_rx_bytes += mbuf->pkt_len;
168         }
169         pkt_q->framenum = framenum;
170         pkt_q->rx_pkts += num_rx;
171         pkt_q->rx_bytes += num_rx_bytes;
172         return num_rx;
173 }
174
175 /*
176  * Check if there is an available frame in the ring
177  */
178 static inline bool
179 tx_ring_status_available(uint32_t tp_status)
180 {
181         /*
182          * We eliminate the timestamp status from the packet status.
183          * This should only matter if timestamping is enabled on the socket,
184          * but there is a bug in the kernel which is fixed in newer releases.
185          *
186          * See the following kernel commit for reference:
187          *     commit 171c3b151118a2fe0fc1e2a9d1b5a1570cfe82d2
188          *     net: packetmmap: fix only tx timestamp on request
189          */
190         tp_status &= ~(TP_STATUS_TS_SOFTWARE | TP_STATUS_TS_RAW_HARDWARE);
191
192         return tp_status == TP_STATUS_AVAILABLE;
193 }
194
195 /*
196  * Callback to handle sending packets through a real NIC.
197  */
198 static uint16_t
199 eth_af_packet_tx(void *queue, struct rte_mbuf **bufs, uint16_t nb_pkts)
200 {
201         struct tpacket2_hdr *ppd;
202         struct rte_mbuf *mbuf;
203         uint8_t *pbuf;
204         unsigned int framecount, framenum;
205         struct pollfd pfd;
206         struct pkt_tx_queue *pkt_q = queue;
207         uint16_t num_tx = 0;
208         unsigned long num_tx_bytes = 0;
209         int i;
210
211         if (unlikely(nb_pkts == 0))
212                 return 0;
213
214         memset(&pfd, 0, sizeof(pfd));
215         pfd.fd = pkt_q->sockfd;
216         pfd.events = POLLOUT;
217         pfd.revents = 0;
218
219         framecount = pkt_q->framecount;
220         framenum = pkt_q->framenum;
221         ppd = (struct tpacket2_hdr *) pkt_q->rd[framenum].iov_base;
222         for (i = 0; i < nb_pkts; i++) {
223                 mbuf = *bufs++;
224
225                 /* drop oversized packets */
226                 if (mbuf->pkt_len > pkt_q->frame_data_size) {
227                         rte_pktmbuf_free(mbuf);
228                         continue;
229                 }
230
231                 /* insert vlan info if necessary */
232                 if (mbuf->ol_flags & PKT_TX_VLAN_PKT) {
233                         if (rte_vlan_insert(&mbuf)) {
234                                 rte_pktmbuf_free(mbuf);
235                                 continue;
236                         }
237                 }
238
239                 /* point at the next incoming frame */
240                 if (!tx_ring_status_available(ppd->tp_status) &&
241                     poll(&pfd, 1, -1) < 0)
242                         break;
243
244                 /* copy the tx frame data */
245                 pbuf = (uint8_t *) ppd + TPACKET2_HDRLEN -
246                         sizeof(struct sockaddr_ll);
247
248                 struct rte_mbuf *tmp_mbuf = mbuf;
249                 while (tmp_mbuf) {
250                         uint16_t data_len = rte_pktmbuf_data_len(tmp_mbuf);
251                         memcpy(pbuf, rte_pktmbuf_mtod(tmp_mbuf, void*), data_len);
252                         pbuf += data_len;
253                         tmp_mbuf = tmp_mbuf->next;
254                 }
255
256                 ppd->tp_len = mbuf->pkt_len;
257                 ppd->tp_snaplen = mbuf->pkt_len;
258
259                 /* release incoming frame and advance ring buffer */
260                 ppd->tp_status = TP_STATUS_SEND_REQUEST;
261                 if (++framenum >= framecount)
262                         framenum = 0;
263                 ppd = (struct tpacket2_hdr *) pkt_q->rd[framenum].iov_base;
264
265                 num_tx++;
266                 num_tx_bytes += mbuf->pkt_len;
267                 rte_pktmbuf_free(mbuf);
268         }
269
270         /* kick-off transmits */
271         if (sendto(pkt_q->sockfd, NULL, 0, MSG_DONTWAIT, NULL, 0) == -1 &&
272                         errno != ENOBUFS && errno != EAGAIN) {
273                 /*
274                  * In case of a ENOBUFS/EAGAIN error all of the enqueued
275                  * packets will be considered successful even though only some
276                  * are sent.
277                  */
278
279                 num_tx = 0;
280                 num_tx_bytes = 0;
281         }
282
283         pkt_q->framenum = framenum;
284         pkt_q->tx_pkts += num_tx;
285         pkt_q->err_pkts += i - num_tx;
286         pkt_q->tx_bytes += num_tx_bytes;
287         return i;
288 }
289
290 static int
291 eth_dev_start(struct rte_eth_dev *dev)
292 {
293         dev->data->dev_link.link_status = ETH_LINK_UP;
294         return 0;
295 }
296
297 /*
298  * This function gets called when the current port gets stopped.
299  */
300 static int
301 eth_dev_stop(struct rte_eth_dev *dev)
302 {
303         unsigned i;
304         int sockfd;
305         struct pmd_internals *internals = dev->data->dev_private;
306
307         for (i = 0; i < internals->nb_queues; i++) {
308                 sockfd = internals->rx_queue[i].sockfd;
309                 if (sockfd != -1)
310                         close(sockfd);
311
312                 /* Prevent use after free in case tx fd == rx fd */
313                 if (sockfd != internals->tx_queue[i].sockfd) {
314                         sockfd = internals->tx_queue[i].sockfd;
315                         if (sockfd != -1)
316                                 close(sockfd);
317                 }
318
319                 internals->rx_queue[i].sockfd = -1;
320                 internals->tx_queue[i].sockfd = -1;
321         }
322
323         dev->data->dev_link.link_status = ETH_LINK_DOWN;
324         return 0;
325 }
326
327 static int
328 eth_dev_configure(struct rte_eth_dev *dev __rte_unused)
329 {
330         struct rte_eth_conf *dev_conf = &dev->data->dev_conf;
331         const struct rte_eth_rxmode *rxmode = &dev_conf->rxmode;
332         struct pmd_internals *internals = dev->data->dev_private;
333
334         internals->vlan_strip = !!(rxmode->offloads & DEV_RX_OFFLOAD_VLAN_STRIP);
335         return 0;
336 }
337
338 static int
339 eth_dev_info(struct rte_eth_dev *dev, struct rte_eth_dev_info *dev_info)
340 {
341         struct pmd_internals *internals = dev->data->dev_private;
342
343         dev_info->if_index = internals->if_index;
344         dev_info->max_mac_addrs = 1;
345         dev_info->max_rx_pktlen = (uint32_t)ETH_FRAME_LEN;
346         dev_info->max_rx_queues = (uint16_t)internals->nb_queues;
347         dev_info->max_tx_queues = (uint16_t)internals->nb_queues;
348         dev_info->min_rx_bufsize = 0;
349         dev_info->tx_offload_capa = DEV_TX_OFFLOAD_MULTI_SEGS |
350                 DEV_TX_OFFLOAD_VLAN_INSERT;
351         dev_info->rx_offload_capa = DEV_RX_OFFLOAD_VLAN_STRIP;
352
353         return 0;
354 }
355
356 static int
357 eth_stats_get(struct rte_eth_dev *dev, struct rte_eth_stats *igb_stats)
358 {
359         unsigned i, imax;
360         unsigned long rx_total = 0, tx_total = 0, tx_err_total = 0;
361         unsigned long rx_bytes_total = 0, tx_bytes_total = 0;
362         const struct pmd_internals *internal = dev->data->dev_private;
363
364         imax = (internal->nb_queues < RTE_ETHDEV_QUEUE_STAT_CNTRS ?
365                 internal->nb_queues : RTE_ETHDEV_QUEUE_STAT_CNTRS);
366         for (i = 0; i < imax; i++) {
367                 igb_stats->q_ipackets[i] = internal->rx_queue[i].rx_pkts;
368                 igb_stats->q_ibytes[i] = internal->rx_queue[i].rx_bytes;
369                 rx_total += igb_stats->q_ipackets[i];
370                 rx_bytes_total += igb_stats->q_ibytes[i];
371         }
372
373         imax = (internal->nb_queues < RTE_ETHDEV_QUEUE_STAT_CNTRS ?
374                 internal->nb_queues : RTE_ETHDEV_QUEUE_STAT_CNTRS);
375         for (i = 0; i < imax; i++) {
376                 igb_stats->q_opackets[i] = internal->tx_queue[i].tx_pkts;
377                 igb_stats->q_obytes[i] = internal->tx_queue[i].tx_bytes;
378                 tx_total += igb_stats->q_opackets[i];
379                 tx_err_total += internal->tx_queue[i].err_pkts;
380                 tx_bytes_total += igb_stats->q_obytes[i];
381         }
382
383         igb_stats->ipackets = rx_total;
384         igb_stats->ibytes = rx_bytes_total;
385         igb_stats->opackets = tx_total;
386         igb_stats->oerrors = tx_err_total;
387         igb_stats->obytes = tx_bytes_total;
388         return 0;
389 }
390
391 static int
392 eth_stats_reset(struct rte_eth_dev *dev)
393 {
394         unsigned i;
395         struct pmd_internals *internal = dev->data->dev_private;
396
397         for (i = 0; i < internal->nb_queues; i++) {
398                 internal->rx_queue[i].rx_pkts = 0;
399                 internal->rx_queue[i].rx_bytes = 0;
400         }
401
402         for (i = 0; i < internal->nb_queues; i++) {
403                 internal->tx_queue[i].tx_pkts = 0;
404                 internal->tx_queue[i].err_pkts = 0;
405                 internal->tx_queue[i].tx_bytes = 0;
406         }
407
408         return 0;
409 }
410
411 static int
412 eth_dev_close(struct rte_eth_dev *dev)
413 {
414         struct pmd_internals *internals;
415         struct tpacket_req *req;
416         unsigned int q;
417
418         if (rte_eal_process_type() != RTE_PROC_PRIMARY)
419                 return 0;
420
421         PMD_LOG(INFO, "Closing AF_PACKET ethdev on NUMA socket %u",
422                 rte_socket_id());
423
424         internals = dev->data->dev_private;
425         req = &internals->req;
426         for (q = 0; q < internals->nb_queues; q++) {
427                 munmap(internals->rx_queue[q].map,
428                         2 * req->tp_block_size * req->tp_block_nr);
429                 rte_free(internals->rx_queue[q].rd);
430                 rte_free(internals->tx_queue[q].rd);
431         }
432         free(internals->if_name);
433         rte_free(internals->rx_queue);
434         rte_free(internals->tx_queue);
435
436         /* mac_addrs must not be freed alone because part of dev_private */
437         dev->data->mac_addrs = NULL;
438         return 0;
439 }
440
441 static void
442 eth_queue_release(void *q __rte_unused)
443 {
444 }
445
446 static int
447 eth_link_update(struct rte_eth_dev *dev __rte_unused,
448                 int wait_to_complete __rte_unused)
449 {
450         return 0;
451 }
452
453 static int
454 eth_rx_queue_setup(struct rte_eth_dev *dev,
455                    uint16_t rx_queue_id,
456                    uint16_t nb_rx_desc __rte_unused,
457                    unsigned int socket_id __rte_unused,
458                    const struct rte_eth_rxconf *rx_conf __rte_unused,
459                    struct rte_mempool *mb_pool)
460 {
461         struct pmd_internals *internals = dev->data->dev_private;
462         struct pkt_rx_queue *pkt_q = &internals->rx_queue[rx_queue_id];
463         unsigned int buf_size, data_size;
464
465         pkt_q->mb_pool = mb_pool;
466
467         /* Now get the space available for data in the mbuf */
468         buf_size = rte_pktmbuf_data_room_size(pkt_q->mb_pool) -
469                 RTE_PKTMBUF_HEADROOM;
470         data_size = internals->req.tp_frame_size;
471         data_size -= TPACKET2_HDRLEN - sizeof(struct sockaddr_ll);
472
473         if (data_size > buf_size) {
474                 PMD_LOG(ERR,
475                         "%s: %d bytes will not fit in mbuf (%d bytes)",
476                         dev->device->name, data_size, buf_size);
477                 return -ENOMEM;
478         }
479
480         dev->data->rx_queues[rx_queue_id] = pkt_q;
481         pkt_q->in_port = dev->data->port_id;
482         pkt_q->vlan_strip = internals->vlan_strip;
483
484         return 0;
485 }
486
487 static int
488 eth_tx_queue_setup(struct rte_eth_dev *dev,
489                    uint16_t tx_queue_id,
490                    uint16_t nb_tx_desc __rte_unused,
491                    unsigned int socket_id __rte_unused,
492                    const struct rte_eth_txconf *tx_conf __rte_unused)
493 {
494
495         struct pmd_internals *internals = dev->data->dev_private;
496
497         dev->data->tx_queues[tx_queue_id] = &internals->tx_queue[tx_queue_id];
498         return 0;
499 }
500
501 static int
502 eth_dev_mtu_set(struct rte_eth_dev *dev, uint16_t mtu)
503 {
504         struct pmd_internals *internals = dev->data->dev_private;
505         struct ifreq ifr = { .ifr_mtu = mtu };
506         int ret;
507         int s;
508         unsigned int data_size = internals->req.tp_frame_size -
509                                  TPACKET2_HDRLEN;
510
511         if (mtu > data_size)
512                 return -EINVAL;
513
514         s = socket(PF_INET, SOCK_DGRAM, 0);
515         if (s < 0)
516                 return -EINVAL;
517
518         strlcpy(ifr.ifr_name, internals->if_name, IFNAMSIZ);
519         ret = ioctl(s, SIOCSIFMTU, &ifr);
520         close(s);
521
522         if (ret < 0)
523                 return -EINVAL;
524
525         return 0;
526 }
527
528 static int
529 eth_dev_macaddr_set(struct rte_eth_dev *dev, struct rte_ether_addr *addr)
530 {
531         struct pmd_internals *internals = dev->data->dev_private;
532         struct ifreq ifr = { };
533         int sockfd = internals->rx_queue[0].sockfd;
534         int ret;
535
536         if (sockfd == -1) {
537                 PMD_LOG(ERR, "receive socket not found");
538                 return -EINVAL;
539         }
540
541         strlcpy(ifr.ifr_name, internals->if_name, IFNAMSIZ);
542         ifr.ifr_hwaddr.sa_family = ARPHRD_ETHER;
543         memcpy(ifr.ifr_hwaddr.sa_data, addr, sizeof(*addr));
544         ret = ioctl(sockfd, SIOCSIFHWADDR, &ifr);
545
546         if (ret < 0) {
547                 PMD_LOG_ERRNO(ERR, "ioctl(SIOCSIFHWADDR) failed");
548                 return -EINVAL;
549         }
550
551         return 0;
552 }
553
554 static int
555 eth_dev_change_flags(char *if_name, uint32_t flags, uint32_t mask)
556 {
557         struct ifreq ifr;
558         int ret = 0;
559         int s;
560
561         s = socket(PF_INET, SOCK_DGRAM, 0);
562         if (s < 0)
563                 return -errno;
564
565         strlcpy(ifr.ifr_name, if_name, IFNAMSIZ);
566         if (ioctl(s, SIOCGIFFLAGS, &ifr) < 0) {
567                 ret = -errno;
568                 goto out;
569         }
570         ifr.ifr_flags &= mask;
571         ifr.ifr_flags |= flags;
572         if (ioctl(s, SIOCSIFFLAGS, &ifr) < 0) {
573                 ret = -errno;
574                 goto out;
575         }
576 out:
577         close(s);
578         return ret;
579 }
580
581 static int
582 eth_dev_promiscuous_enable(struct rte_eth_dev *dev)
583 {
584         struct pmd_internals *internals = dev->data->dev_private;
585
586         return eth_dev_change_flags(internals->if_name, IFF_PROMISC, ~0);
587 }
588
589 static int
590 eth_dev_promiscuous_disable(struct rte_eth_dev *dev)
591 {
592         struct pmd_internals *internals = dev->data->dev_private;
593
594         return eth_dev_change_flags(internals->if_name, 0, ~IFF_PROMISC);
595 }
596
597 static const struct eth_dev_ops ops = {
598         .dev_start = eth_dev_start,
599         .dev_stop = eth_dev_stop,
600         .dev_close = eth_dev_close,
601         .dev_configure = eth_dev_configure,
602         .dev_infos_get = eth_dev_info,
603         .mac_addr_set = eth_dev_macaddr_set,
604         .mtu_set = eth_dev_mtu_set,
605         .promiscuous_enable = eth_dev_promiscuous_enable,
606         .promiscuous_disable = eth_dev_promiscuous_disable,
607         .rx_queue_setup = eth_rx_queue_setup,
608         .tx_queue_setup = eth_tx_queue_setup,
609         .rx_queue_release = eth_queue_release,
610         .tx_queue_release = eth_queue_release,
611         .link_update = eth_link_update,
612         .stats_get = eth_stats_get,
613         .stats_reset = eth_stats_reset,
614 };
615
616 /*
617  * Opens an AF_PACKET socket
618  */
619 static int
620 open_packet_iface(const char *key __rte_unused,
621                   const char *value __rte_unused,
622                   void *extra_args)
623 {
624         int *sockfd = extra_args;
625
626         /* Open an AF_PACKET socket... */
627         *sockfd = socket(AF_PACKET, SOCK_RAW, htons(ETH_P_ALL));
628         if (*sockfd == -1) {
629                 PMD_LOG(ERR, "Could not open AF_PACKET socket");
630                 return -1;
631         }
632
633         return 0;
634 }
635
636 static int
637 rte_pmd_init_internals(struct rte_vdev_device *dev,
638                        const int sockfd,
639                        const unsigned nb_queues,
640                        unsigned int blocksize,
641                        unsigned int blockcnt,
642                        unsigned int framesize,
643                        unsigned int framecnt,
644                        unsigned int qdisc_bypass,
645                        struct pmd_internals **internals,
646                        struct rte_eth_dev **eth_dev,
647                        struct rte_kvargs *kvlist)
648 {
649         const char *name = rte_vdev_device_name(dev);
650         const unsigned int numa_node = dev->device.numa_node;
651         struct rte_eth_dev_data *data = NULL;
652         struct rte_kvargs_pair *pair = NULL;
653         struct ifreq ifr;
654         size_t ifnamelen;
655         unsigned k_idx;
656         struct sockaddr_ll sockaddr;
657         struct tpacket_req *req;
658         struct pkt_rx_queue *rx_queue;
659         struct pkt_tx_queue *tx_queue;
660         int rc, tpver, discard;
661         int qsockfd = -1;
662         unsigned int i, q, rdsize;
663 #if defined(PACKET_FANOUT)
664         int fanout_arg;
665 #endif
666
667         for (k_idx = 0; k_idx < kvlist->count; k_idx++) {
668                 pair = &kvlist->pairs[k_idx];
669                 if (strstr(pair->key, ETH_AF_PACKET_IFACE_ARG) != NULL)
670                         break;
671         }
672         if (pair == NULL) {
673                 PMD_LOG(ERR,
674                         "%s: no interface specified for AF_PACKET ethdev",
675                         name);
676                 return -1;
677         }
678
679         PMD_LOG(INFO,
680                 "%s: creating AF_PACKET-backed ethdev on numa socket %u",
681                 name, numa_node);
682
683         *internals = rte_zmalloc_socket(name, sizeof(**internals),
684                                         0, numa_node);
685         if (*internals == NULL)
686                 return -1;
687
688
689         (*internals)->rx_queue = rte_calloc_socket("af_packet_rx",
690                                                 nb_queues,
691                                                 sizeof(struct pkt_rx_queue),
692                                                 0, numa_node);
693         (*internals)->tx_queue = rte_calloc_socket("af_packet_tx",
694                                                 nb_queues,
695                                                 sizeof(struct pkt_tx_queue),
696                                                 0, numa_node);
697         if (!(*internals)->rx_queue || !(*internals)->tx_queue) {
698                 goto free_internals;
699         }
700
701         for (q = 0; q < nb_queues; q++) {
702                 (*internals)->rx_queue[q].map = MAP_FAILED;
703                 (*internals)->tx_queue[q].map = MAP_FAILED;
704                 (*internals)->rx_queue[q].sockfd = -1;
705                 (*internals)->tx_queue[q].sockfd = -1;
706         }
707
708         req = &((*internals)->req);
709
710         req->tp_block_size = blocksize;
711         req->tp_block_nr = blockcnt;
712         req->tp_frame_size = framesize;
713         req->tp_frame_nr = framecnt;
714
715         ifnamelen = strlen(pair->value);
716         if (ifnamelen < sizeof(ifr.ifr_name)) {
717                 memcpy(ifr.ifr_name, pair->value, ifnamelen);
718                 ifr.ifr_name[ifnamelen] = '\0';
719         } else {
720                 PMD_LOG(ERR,
721                         "%s: I/F name too long (%s)",
722                         name, pair->value);
723                 goto free_internals;
724         }
725         if (ioctl(sockfd, SIOCGIFINDEX, &ifr) == -1) {
726                 PMD_LOG_ERRNO(ERR, "%s: ioctl failed (SIOCGIFINDEX)", name);
727                 goto free_internals;
728         }
729         (*internals)->if_name = strdup(pair->value);
730         if ((*internals)->if_name == NULL)
731                 goto free_internals;
732         (*internals)->if_index = ifr.ifr_ifindex;
733
734         if (ioctl(sockfd, SIOCGIFHWADDR, &ifr) == -1) {
735                 PMD_LOG_ERRNO(ERR, "%s: ioctl failed (SIOCGIFHWADDR)", name);
736                 goto free_internals;
737         }
738         memcpy(&(*internals)->eth_addr, ifr.ifr_hwaddr.sa_data, ETH_ALEN);
739
740         memset(&sockaddr, 0, sizeof(sockaddr));
741         sockaddr.sll_family = AF_PACKET;
742         sockaddr.sll_protocol = htons(ETH_P_ALL);
743         sockaddr.sll_ifindex = (*internals)->if_index;
744
745 #if defined(PACKET_FANOUT)
746         fanout_arg = (getpid() ^ (*internals)->if_index) & 0xffff;
747         fanout_arg |= (PACKET_FANOUT_HASH | PACKET_FANOUT_FLAG_DEFRAG) << 16;
748 #if defined(PACKET_FANOUT_FLAG_ROLLOVER)
749         fanout_arg |= PACKET_FANOUT_FLAG_ROLLOVER << 16;
750 #endif
751 #endif
752
753         for (q = 0; q < nb_queues; q++) {
754                 /* Open an AF_PACKET socket for this queue... */
755                 qsockfd = socket(AF_PACKET, SOCK_RAW, htons(ETH_P_ALL));
756                 if (qsockfd == -1) {
757                         PMD_LOG_ERRNO(ERR,
758                                 "%s: could not open AF_PACKET socket",
759                                 name);
760                         goto error;
761                 }
762
763                 tpver = TPACKET_V2;
764                 rc = setsockopt(qsockfd, SOL_PACKET, PACKET_VERSION,
765                                 &tpver, sizeof(tpver));
766                 if (rc == -1) {
767                         PMD_LOG_ERRNO(ERR,
768                                 "%s: could not set PACKET_VERSION on AF_PACKET socket for %s",
769                                 name, pair->value);
770                         goto error;
771                 }
772
773                 discard = 1;
774                 rc = setsockopt(qsockfd, SOL_PACKET, PACKET_LOSS,
775                                 &discard, sizeof(discard));
776                 if (rc == -1) {
777                         PMD_LOG_ERRNO(ERR,
778                                 "%s: could not set PACKET_LOSS on AF_PACKET socket for %s",
779                                 name, pair->value);
780                         goto error;
781                 }
782
783                 if (qdisc_bypass) {
784 #if defined(PACKET_QDISC_BYPASS)
785                         rc = setsockopt(qsockfd, SOL_PACKET, PACKET_QDISC_BYPASS,
786                                         &qdisc_bypass, sizeof(qdisc_bypass));
787                         if (rc == -1) {
788                                 PMD_LOG_ERRNO(ERR,
789                                         "%s: could not set PACKET_QDISC_BYPASS on AF_PACKET socket for %s",
790                                         name, pair->value);
791                                 goto error;
792                         }
793 #endif
794                 }
795
796                 rc = setsockopt(qsockfd, SOL_PACKET, PACKET_RX_RING, req, sizeof(*req));
797                 if (rc == -1) {
798                         PMD_LOG_ERRNO(ERR,
799                                 "%s: could not set PACKET_RX_RING on AF_PACKET socket for %s",
800                                 name, pair->value);
801                         goto error;
802                 }
803
804                 rc = setsockopt(qsockfd, SOL_PACKET, PACKET_TX_RING, req, sizeof(*req));
805                 if (rc == -1) {
806                         PMD_LOG_ERRNO(ERR,
807                                 "%s: could not set PACKET_TX_RING on AF_PACKET "
808                                 "socket for %s", name, pair->value);
809                         goto error;
810                 }
811
812                 rx_queue = &((*internals)->rx_queue[q]);
813                 rx_queue->framecount = req->tp_frame_nr;
814
815                 rx_queue->map = mmap(NULL, 2 * req->tp_block_size * req->tp_block_nr,
816                                     PROT_READ | PROT_WRITE, MAP_SHARED | MAP_LOCKED,
817                                     qsockfd, 0);
818                 if (rx_queue->map == MAP_FAILED) {
819                         PMD_LOG_ERRNO(ERR,
820                                 "%s: call to mmap failed on AF_PACKET socket for %s",
821                                 name, pair->value);
822                         goto error;
823                 }
824
825                 /* rdsize is same for both Tx and Rx */
826                 rdsize = req->tp_frame_nr * sizeof(*(rx_queue->rd));
827
828                 rx_queue->rd = rte_zmalloc_socket(name, rdsize, 0, numa_node);
829                 if (rx_queue->rd == NULL)
830                         goto error;
831                 for (i = 0; i < req->tp_frame_nr; ++i) {
832                         rx_queue->rd[i].iov_base = rx_queue->map + (i * framesize);
833                         rx_queue->rd[i].iov_len = req->tp_frame_size;
834                 }
835                 rx_queue->sockfd = qsockfd;
836
837                 tx_queue = &((*internals)->tx_queue[q]);
838                 tx_queue->framecount = req->tp_frame_nr;
839                 tx_queue->frame_data_size = req->tp_frame_size;
840                 tx_queue->frame_data_size -= TPACKET2_HDRLEN -
841                         sizeof(struct sockaddr_ll);
842
843                 tx_queue->map = rx_queue->map + req->tp_block_size * req->tp_block_nr;
844
845                 tx_queue->rd = rte_zmalloc_socket(name, rdsize, 0, numa_node);
846                 if (tx_queue->rd == NULL)
847                         goto error;
848                 for (i = 0; i < req->tp_frame_nr; ++i) {
849                         tx_queue->rd[i].iov_base = tx_queue->map + (i * framesize);
850                         tx_queue->rd[i].iov_len = req->tp_frame_size;
851                 }
852                 tx_queue->sockfd = qsockfd;
853
854                 rc = bind(qsockfd, (const struct sockaddr*)&sockaddr, sizeof(sockaddr));
855                 if (rc == -1) {
856                         PMD_LOG_ERRNO(ERR,
857                                 "%s: could not bind AF_PACKET socket to %s",
858                                 name, pair->value);
859                         goto error;
860                 }
861
862 #if defined(PACKET_FANOUT)
863                 rc = setsockopt(qsockfd, SOL_PACKET, PACKET_FANOUT,
864                                 &fanout_arg, sizeof(fanout_arg));
865                 if (rc == -1) {
866                         PMD_LOG_ERRNO(ERR,
867                                 "%s: could not set PACKET_FANOUT on AF_PACKET socket for %s",
868                                 name, pair->value);
869                         goto error;
870                 }
871 #endif
872         }
873
874         /* reserve an ethdev entry */
875         *eth_dev = rte_eth_vdev_allocate(dev, 0);
876         if (*eth_dev == NULL)
877                 goto error;
878
879         /*
880          * now put it all together
881          * - store queue data in internals,
882          * - store numa_node in eth_dev
883          * - point eth_dev_data to internals
884          * - and point eth_dev structure to new eth_dev_data structure
885          */
886
887         (*internals)->nb_queues = nb_queues;
888
889         data = (*eth_dev)->data;
890         data->dev_private = *internals;
891         data->nb_rx_queues = (uint16_t)nb_queues;
892         data->nb_tx_queues = (uint16_t)nb_queues;
893         data->dev_link = pmd_link;
894         data->mac_addrs = &(*internals)->eth_addr;
895         data->dev_flags |= RTE_ETH_DEV_AUTOFILL_QUEUE_XSTATS;
896
897         (*eth_dev)->dev_ops = &ops;
898
899         return 0;
900
901 error:
902         if (qsockfd != -1)
903                 close(qsockfd);
904         for (q = 0; q < nb_queues; q++) {
905                 if ((*internals)->rx_queue[q].map != MAP_FAILED)
906                         munmap((*internals)->rx_queue[q].map,
907                                2 * req->tp_block_size * req->tp_block_nr);
908
909                 rte_free((*internals)->rx_queue[q].rd);
910                 rte_free((*internals)->tx_queue[q].rd);
911                 if (((*internals)->rx_queue[q].sockfd >= 0) &&
912                         ((*internals)->rx_queue[q].sockfd != qsockfd))
913                         close((*internals)->rx_queue[q].sockfd);
914         }
915 free_internals:
916         rte_free((*internals)->rx_queue);
917         rte_free((*internals)->tx_queue);
918         free((*internals)->if_name);
919         rte_free(*internals);
920         return -1;
921 }
922
923 static int
924 rte_eth_from_packet(struct rte_vdev_device *dev,
925                     int const *sockfd,
926                     struct rte_kvargs *kvlist)
927 {
928         const char *name = rte_vdev_device_name(dev);
929         struct pmd_internals *internals = NULL;
930         struct rte_eth_dev *eth_dev = NULL;
931         struct rte_kvargs_pair *pair = NULL;
932         unsigned k_idx;
933         unsigned int blockcount;
934         unsigned int blocksize;
935         unsigned int framesize = DFLT_FRAME_SIZE;
936         unsigned int framecount = DFLT_FRAME_COUNT;
937         unsigned int qpairs = 1;
938         unsigned int qdisc_bypass = 1;
939
940         /* do some parameter checking */
941         if (*sockfd < 0)
942                 return -1;
943
944         blocksize = getpagesize();
945
946         /*
947          * Walk arguments for configurable settings
948          */
949         for (k_idx = 0; k_idx < kvlist->count; k_idx++) {
950                 pair = &kvlist->pairs[k_idx];
951                 if (strstr(pair->key, ETH_AF_PACKET_NUM_Q_ARG) != NULL) {
952                         qpairs = atoi(pair->value);
953                         if (qpairs < 1) {
954                                 PMD_LOG(ERR,
955                                         "%s: invalid qpairs value",
956                                         name);
957                                 return -1;
958                         }
959                         continue;
960                 }
961                 if (strstr(pair->key, ETH_AF_PACKET_BLOCKSIZE_ARG) != NULL) {
962                         blocksize = atoi(pair->value);
963                         if (!blocksize) {
964                                 PMD_LOG(ERR,
965                                         "%s: invalid blocksize value",
966                                         name);
967                                 return -1;
968                         }
969                         continue;
970                 }
971                 if (strstr(pair->key, ETH_AF_PACKET_FRAMESIZE_ARG) != NULL) {
972                         framesize = atoi(pair->value);
973                         if (!framesize) {
974                                 PMD_LOG(ERR,
975                                         "%s: invalid framesize value",
976                                         name);
977                                 return -1;
978                         }
979                         continue;
980                 }
981                 if (strstr(pair->key, ETH_AF_PACKET_FRAMECOUNT_ARG) != NULL) {
982                         framecount = atoi(pair->value);
983                         if (!framecount) {
984                                 PMD_LOG(ERR,
985                                         "%s: invalid framecount value",
986                                         name);
987                                 return -1;
988                         }
989                         continue;
990                 }
991                 if (strstr(pair->key, ETH_AF_PACKET_QDISC_BYPASS_ARG) != NULL) {
992                         qdisc_bypass = atoi(pair->value);
993                         if (qdisc_bypass > 1) {
994                                 PMD_LOG(ERR,
995                                         "%s: invalid bypass value",
996                                         name);
997                                 return -1;
998                         }
999                         continue;
1000                 }
1001         }
1002
1003         if (framesize > blocksize) {
1004                 PMD_LOG(ERR,
1005                         "%s: AF_PACKET MMAP frame size exceeds block size!",
1006                         name);
1007                 return -1;
1008         }
1009
1010         blockcount = framecount / (blocksize / framesize);
1011         if (!blockcount) {
1012                 PMD_LOG(ERR,
1013                         "%s: invalid AF_PACKET MMAP parameters", name);
1014                 return -1;
1015         }
1016
1017         PMD_LOG(INFO, "%s: AF_PACKET MMAP parameters:", name);
1018         PMD_LOG(INFO, "%s:\tblock size %d", name, blocksize);
1019         PMD_LOG(INFO, "%s:\tblock count %d", name, blockcount);
1020         PMD_LOG(INFO, "%s:\tframe size %d", name, framesize);
1021         PMD_LOG(INFO, "%s:\tframe count %d", name, framecount);
1022
1023         if (rte_pmd_init_internals(dev, *sockfd, qpairs,
1024                                    blocksize, blockcount,
1025                                    framesize, framecount,
1026                                    qdisc_bypass,
1027                                    &internals, &eth_dev,
1028                                    kvlist) < 0)
1029                 return -1;
1030
1031         eth_dev->rx_pkt_burst = eth_af_packet_rx;
1032         eth_dev->tx_pkt_burst = eth_af_packet_tx;
1033
1034         rte_eth_dev_probing_finish(eth_dev);
1035         return 0;
1036 }
1037
1038 static int
1039 rte_pmd_af_packet_probe(struct rte_vdev_device *dev)
1040 {
1041         int ret = 0;
1042         struct rte_kvargs *kvlist;
1043         int sockfd = -1;
1044         struct rte_eth_dev *eth_dev;
1045         const char *name = rte_vdev_device_name(dev);
1046
1047         PMD_LOG(INFO, "Initializing pmd_af_packet for %s", name);
1048
1049         if (rte_eal_process_type() == RTE_PROC_SECONDARY) {
1050                 eth_dev = rte_eth_dev_attach_secondary(name);
1051                 if (!eth_dev) {
1052                         PMD_LOG(ERR, "Failed to probe %s", name);
1053                         return -1;
1054                 }
1055                 /* TODO: request info from primary to set up Rx and Tx */
1056                 eth_dev->dev_ops = &ops;
1057                 eth_dev->device = &dev->device;
1058                 rte_eth_dev_probing_finish(eth_dev);
1059                 return 0;
1060         }
1061
1062         kvlist = rte_kvargs_parse(rte_vdev_device_args(dev), valid_arguments);
1063         if (kvlist == NULL) {
1064                 ret = -1;
1065                 goto exit;
1066         }
1067
1068         /*
1069          * If iface argument is passed we open the NICs and use them for
1070          * reading / writing
1071          */
1072         if (rte_kvargs_count(kvlist, ETH_AF_PACKET_IFACE_ARG) == 1) {
1073
1074                 ret = rte_kvargs_process(kvlist, ETH_AF_PACKET_IFACE_ARG,
1075                                          &open_packet_iface, &sockfd);
1076                 if (ret < 0)
1077                         goto exit;
1078         }
1079
1080         if (dev->device.numa_node == SOCKET_ID_ANY)
1081                 dev->device.numa_node = rte_socket_id();
1082
1083         ret = rte_eth_from_packet(dev, &sockfd, kvlist);
1084         close(sockfd); /* no longer needed */
1085
1086 exit:
1087         rte_kvargs_free(kvlist);
1088         return ret;
1089 }
1090
1091 static int
1092 rte_pmd_af_packet_remove(struct rte_vdev_device *dev)
1093 {
1094         struct rte_eth_dev *eth_dev;
1095
1096         if (dev == NULL)
1097                 return -1;
1098
1099         /* find the ethdev entry */
1100         eth_dev = rte_eth_dev_allocated(rte_vdev_device_name(dev));
1101         if (eth_dev == NULL)
1102                 return 0; /* port already released */
1103
1104         eth_dev_close(eth_dev);
1105         rte_eth_dev_release_port(eth_dev);
1106
1107         return 0;
1108 }
1109
1110 static struct rte_vdev_driver pmd_af_packet_drv = {
1111         .probe = rte_pmd_af_packet_probe,
1112         .remove = rte_pmd_af_packet_remove,
1113 };
1114
1115 RTE_PMD_REGISTER_VDEV(net_af_packet, pmd_af_packet_drv);
1116 RTE_PMD_REGISTER_ALIAS(net_af_packet, eth_af_packet);
1117 RTE_PMD_REGISTER_PARAM_STRING(net_af_packet,
1118         "iface=<string> "
1119         "qpairs=<int> "
1120         "blocksz=<int> "
1121         "framesz=<int> "
1122         "framecnt=<int> "
1123         "qdisc_bypass=<0|1>");