New upstream version 18.11-rc1
[deb_dpdk.git] / drivers / net / netvsc / hn_ethdev.c
1 /* SPDX-License-Identifier: BSD-3-Clause
2  * Copyright(c) 2016-2018 Microsoft Corporation
3  * Copyright(c) 2013-2016 Brocade Communications Systems, Inc.
4  * All rights reserved.
5  */
6
7 #include <stdint.h>
8 #include <string.h>
9 #include <stdio.h>
10 #include <errno.h>
11 #include <unistd.h>
12
13 #include <rte_ethdev.h>
14 #include <rte_memcpy.h>
15 #include <rte_string_fns.h>
16 #include <rte_memzone.h>
17 #include <rte_devargs.h>
18 #include <rte_malloc.h>
19 #include <rte_kvargs.h>
20 #include <rte_atomic.h>
21 #include <rte_branch_prediction.h>
22 #include <rte_ether.h>
23 #include <rte_ethdev_driver.h>
24 #include <rte_cycles.h>
25 #include <rte_errno.h>
26 #include <rte_memory.h>
27 #include <rte_eal.h>
28 #include <rte_dev.h>
29 #include <rte_bus_vmbus.h>
30
31 #include "hn_logs.h"
32 #include "hn_var.h"
33 #include "hn_rndis.h"
34 #include "hn_nvs.h"
35 #include "ndis.h"
36
37 #define HN_TX_OFFLOAD_CAPS (DEV_TX_OFFLOAD_IPV4_CKSUM | \
38                             DEV_TX_OFFLOAD_TCP_CKSUM  | \
39                             DEV_TX_OFFLOAD_UDP_CKSUM  | \
40                             DEV_TX_OFFLOAD_TCP_TSO    | \
41                             DEV_TX_OFFLOAD_MULTI_SEGS | \
42                             DEV_TX_OFFLOAD_VLAN_INSERT)
43
44 #define HN_RX_OFFLOAD_CAPS (DEV_RX_OFFLOAD_CHECKSUM | \
45                             DEV_RX_OFFLOAD_VLAN_STRIP)
46
47 int hn_logtype_init;
48 int hn_logtype_driver;
49
50 struct hn_xstats_name_off {
51         char name[RTE_ETH_XSTATS_NAME_SIZE];
52         unsigned int offset;
53 };
54
55 static const struct hn_xstats_name_off hn_stat_strings[] = {
56         { "good_packets",           offsetof(struct hn_stats, packets) },
57         { "good_bytes",             offsetof(struct hn_stats, bytes) },
58         { "errors",                 offsetof(struct hn_stats, errors) },
59         { "ring full",              offsetof(struct hn_stats, ring_full) },
60         { "multicast_packets",      offsetof(struct hn_stats, multicast) },
61         { "broadcast_packets",      offsetof(struct hn_stats, broadcast) },
62         { "undersize_packets",      offsetof(struct hn_stats, size_bins[0]) },
63         { "size_64_packets",        offsetof(struct hn_stats, size_bins[1]) },
64         { "size_65_127_packets",    offsetof(struct hn_stats, size_bins[2]) },
65         { "size_128_255_packets",   offsetof(struct hn_stats, size_bins[3]) },
66         { "size_256_511_packets",   offsetof(struct hn_stats, size_bins[4]) },
67         { "size_512_1023_packets",  offsetof(struct hn_stats, size_bins[5]) },
68         { "size_1024_1518_packets", offsetof(struct hn_stats, size_bins[6]) },
69         { "size_1519_max_packets",  offsetof(struct hn_stats, size_bins[7]) },
70 };
71
72 static struct rte_eth_dev *
73 eth_dev_vmbus_allocate(struct rte_vmbus_device *dev, size_t private_data_size)
74 {
75         struct rte_eth_dev *eth_dev;
76         const char *name;
77
78         if (!dev)
79                 return NULL;
80
81         name = dev->device.name;
82
83         if (rte_eal_process_type() == RTE_PROC_PRIMARY) {
84                 eth_dev = rte_eth_dev_allocate(name);
85                 if (!eth_dev) {
86                         PMD_DRV_LOG(NOTICE, "can not allocate rte ethdev");
87                         return NULL;
88                 }
89
90                 if (private_data_size) {
91                         eth_dev->data->dev_private =
92                                 rte_zmalloc_socket(name, private_data_size,
93                                                      RTE_CACHE_LINE_SIZE, dev->device.numa_node);
94                         if (!eth_dev->data->dev_private) {
95                                 PMD_DRV_LOG(NOTICE, "can not allocate driver data");
96                                 rte_eth_dev_release_port(eth_dev);
97                                 return NULL;
98                         }
99                 }
100         } else {
101                 eth_dev = rte_eth_dev_attach_secondary(name);
102                 if (!eth_dev) {
103                         PMD_DRV_LOG(NOTICE, "can not attach secondary");
104                         return NULL;
105                 }
106         }
107
108         eth_dev->device = &dev->device;
109
110         /* interrupt is simulated */
111         dev->intr_handle.type = RTE_INTR_HANDLE_EXT;
112         eth_dev->data->dev_flags |= RTE_ETH_DEV_INTR_LSC;
113         eth_dev->intr_handle = &dev->intr_handle;
114
115         return eth_dev;
116 }
117
118 static void
119 eth_dev_vmbus_release(struct rte_eth_dev *eth_dev)
120 {
121         /* mac_addrs must not be freed alone because part of dev_private */
122         eth_dev->data->mac_addrs = NULL;
123         /* free ether device */
124         rte_eth_dev_release_port(eth_dev);
125
126         eth_dev->device = NULL;
127         eth_dev->intr_handle = NULL;
128 }
129
130 /* handle "latency=X" from devargs */
131 static int hn_set_latency(const char *key, const char *value, void *opaque)
132 {
133         struct hn_data *hv = opaque;
134         char *endp = NULL;
135         unsigned long lat;
136
137         errno = 0;
138         lat = strtoul(value, &endp, 0);
139
140         if (*value == '\0' || *endp != '\0') {
141                 PMD_DRV_LOG(ERR, "invalid parameter %s=%s", key, value);
142                 return -EINVAL;
143         }
144
145         PMD_DRV_LOG(DEBUG, "set latency %lu usec", lat);
146
147         hv->latency = lat * 1000;       /* usec to nsec */
148         return 0;
149 }
150
151 /* Parse device arguments */
152 static int hn_parse_args(const struct rte_eth_dev *dev)
153 {
154         struct hn_data *hv = dev->data->dev_private;
155         struct rte_devargs *devargs = dev->device->devargs;
156         static const char * const valid_keys[] = {
157                 "latency",
158                 NULL
159         };
160         struct rte_kvargs *kvlist;
161         int ret;
162
163         if (!devargs)
164                 return 0;
165
166         PMD_INIT_LOG(DEBUG, "device args %s %s",
167                      devargs->name, devargs->args);
168
169         kvlist = rte_kvargs_parse(devargs->args, valid_keys);
170         if (!kvlist) {
171                 PMD_DRV_LOG(NOTICE, "invalid parameters");
172                 return -EINVAL;
173         }
174
175         ret = rte_kvargs_process(kvlist, "latency", hn_set_latency, hv);
176         if (ret)
177                 PMD_DRV_LOG(ERR, "Unable to process latency arg\n");
178
179         rte_kvargs_free(kvlist);
180         return ret;
181 }
182
183 /* Update link status.
184  * Note: the DPDK definition of "wait_to_complete"
185  *   means block this call until link is up.
186  *   which is not worth supporting.
187  */
188 int
189 hn_dev_link_update(struct rte_eth_dev *dev,
190                    int wait_to_complete)
191 {
192         struct hn_data *hv = dev->data->dev_private;
193         struct rte_eth_link link, old;
194         int error;
195
196         old = dev->data->dev_link;
197
198         error = hn_rndis_get_linkstatus(hv);
199         if (error)
200                 return error;
201
202         hn_rndis_get_linkspeed(hv);
203
204         hn_vf_link_update(dev, wait_to_complete);
205
206         link = (struct rte_eth_link) {
207                 .link_duplex = ETH_LINK_FULL_DUPLEX,
208                 .link_autoneg = ETH_LINK_SPEED_FIXED,
209                 .link_speed = hv->link_speed / 10000,
210         };
211
212         if (hv->link_status == NDIS_MEDIA_STATE_CONNECTED)
213                 link.link_status = ETH_LINK_UP;
214         else
215                 link.link_status = ETH_LINK_DOWN;
216
217         if (old.link_status == link.link_status)
218                 return 0;
219
220         PMD_INIT_LOG(DEBUG, "Port %d is %s", dev->data->port_id,
221                      (link.link_status == ETH_LINK_UP) ? "up" : "down");
222
223         return rte_eth_linkstatus_set(dev, &link);
224 }
225
226 static void hn_dev_info_get(struct rte_eth_dev *dev,
227                             struct rte_eth_dev_info *dev_info)
228 {
229         struct hn_data *hv = dev->data->dev_private;
230
231         dev_info->speed_capa = ETH_LINK_SPEED_10G;
232         dev_info->min_rx_bufsize = HN_MIN_RX_BUF_SIZE;
233         dev_info->max_rx_pktlen  = HN_MAX_XFER_LEN;
234         dev_info->max_mac_addrs  = 1;
235
236         dev_info->hash_key_size = NDIS_HASH_KEYSIZE_TOEPLITZ;
237         dev_info->flow_type_rss_offloads =
238                 ETH_RSS_IPV4 | ETH_RSS_IPV6 | ETH_RSS_TCP | ETH_RSS_UDP;
239
240         dev_info->max_rx_queues = hv->max_queues;
241         dev_info->max_tx_queues = hv->max_queues;
242
243         hn_rndis_get_offload(hv, dev_info);
244         hn_vf_info_get(hv, dev_info);
245 }
246
247 static void
248 hn_dev_promiscuous_enable(struct rte_eth_dev *dev)
249 {
250         struct hn_data *hv = dev->data->dev_private;
251
252         hn_rndis_set_rxfilter(hv, NDIS_PACKET_TYPE_PROMISCUOUS);
253         hn_vf_promiscuous_enable(dev);
254 }
255
256 static void
257 hn_dev_promiscuous_disable(struct rte_eth_dev *dev)
258 {
259         struct hn_data *hv = dev->data->dev_private;
260         uint32_t filter;
261
262         filter = NDIS_PACKET_TYPE_DIRECTED | NDIS_PACKET_TYPE_BROADCAST;
263         if (dev->data->all_multicast)
264                 filter |= NDIS_PACKET_TYPE_ALL_MULTICAST;
265         hn_rndis_set_rxfilter(hv, filter);
266         hn_vf_promiscuous_disable(dev);
267 }
268
269 static void
270 hn_dev_allmulticast_enable(struct rte_eth_dev *dev)
271 {
272         struct hn_data *hv = dev->data->dev_private;
273
274         hn_rndis_set_rxfilter(hv, NDIS_PACKET_TYPE_DIRECTED |
275                               NDIS_PACKET_TYPE_ALL_MULTICAST |
276                         NDIS_PACKET_TYPE_BROADCAST);
277         hn_vf_allmulticast_enable(dev);
278 }
279
280 static void
281 hn_dev_allmulticast_disable(struct rte_eth_dev *dev)
282 {
283         struct hn_data *hv = dev->data->dev_private;
284
285         hn_rndis_set_rxfilter(hv, NDIS_PACKET_TYPE_DIRECTED |
286                              NDIS_PACKET_TYPE_BROADCAST);
287         hn_vf_allmulticast_disable(dev);
288 }
289
290 static int
291 hn_dev_mc_addr_list(struct rte_eth_dev *dev,
292                      struct ether_addr *mc_addr_set,
293                      uint32_t nb_mc_addr)
294 {
295         /* No filtering on the synthetic path, but can do it on VF */
296         return hn_vf_mc_addr_list(dev, mc_addr_set, nb_mc_addr);
297 }
298
299 /* Setup shared rx/tx queue data */
300 static int hn_subchan_configure(struct hn_data *hv,
301                                 uint32_t subchan)
302 {
303         struct vmbus_channel *primary = hn_primary_chan(hv);
304         int err;
305         unsigned int retry = 0;
306
307         PMD_DRV_LOG(DEBUG,
308                     "open %u subchannels", subchan);
309
310         /* Send create sub channels command */
311         err = hn_nvs_alloc_subchans(hv, &subchan);
312         if (err)
313                 return  err;
314
315         while (subchan > 0) {
316                 struct vmbus_channel *new_sc;
317                 uint16_t chn_index;
318
319                 err = rte_vmbus_subchan_open(primary, &new_sc);
320                 if (err == -ENOENT && ++retry < 1000) {
321                         /* This can happen if not ready yet */
322                         rte_delay_ms(10);
323                         continue;
324                 }
325
326                 if (err) {
327                         PMD_DRV_LOG(ERR,
328                                     "open subchannel failed: %d", err);
329                         return err;
330                 }
331
332                 rte_vmbus_set_latency(hv->vmbus, new_sc, hv->latency);
333
334                 retry = 0;
335                 chn_index = rte_vmbus_sub_channel_index(new_sc);
336                 if (chn_index == 0 || chn_index > hv->max_queues) {
337                         PMD_DRV_LOG(ERR,
338                                     "Invalid subchannel offermsg channel %u",
339                                     chn_index);
340                         return -EIO;
341                 }
342
343                 PMD_DRV_LOG(DEBUG, "new sub channel %u", chn_index);
344                 hv->channels[chn_index] = new_sc;
345                 --subchan;
346         }
347
348         return err;
349 }
350
351 static int hn_dev_configure(struct rte_eth_dev *dev)
352 {
353         const struct rte_eth_conf *dev_conf = &dev->data->dev_conf;
354         const struct rte_eth_rxmode *rxmode = &dev_conf->rxmode;
355         const struct rte_eth_txmode *txmode = &dev_conf->txmode;
356
357         const struct rte_eth_rss_conf *rss_conf =
358                 &dev_conf->rx_adv_conf.rss_conf;
359         struct hn_data *hv = dev->data->dev_private;
360         uint64_t unsupported;
361         int err, subchan;
362
363         PMD_INIT_FUNC_TRACE();
364
365         unsupported = txmode->offloads & ~HN_TX_OFFLOAD_CAPS;
366         if (unsupported) {
367                 PMD_DRV_LOG(NOTICE,
368                             "unsupported TX offload: %#" PRIx64,
369                             unsupported);
370                 return -EINVAL;
371         }
372
373         unsupported = rxmode->offloads & ~HN_RX_OFFLOAD_CAPS;
374         if (unsupported) {
375                 PMD_DRV_LOG(NOTICE,
376                             "unsupported RX offload: %#" PRIx64,
377                             rxmode->offloads);
378                 return -EINVAL;
379         }
380
381         err = hn_rndis_conf_offload(hv, txmode->offloads,
382                                     rxmode->offloads);
383         if (err) {
384                 PMD_DRV_LOG(NOTICE,
385                             "offload configure failed");
386                 return err;
387         }
388
389         hv->num_queues = RTE_MAX(dev->data->nb_rx_queues,
390                                  dev->data->nb_tx_queues);
391         subchan = hv->num_queues - 1;
392         if (subchan > 0) {
393                 err = hn_subchan_configure(hv, subchan);
394                 if (err) {
395                         PMD_DRV_LOG(NOTICE,
396                                     "subchannel configuration failed");
397                         return err;
398                 }
399
400                 err = hn_rndis_conf_rss(hv, rss_conf);
401                 if (err) {
402                         PMD_DRV_LOG(NOTICE,
403                                     "rss configuration failed");
404                         return err;
405                 }
406         }
407
408         return hn_vf_configure(dev, dev_conf);
409 }
410
411 static int hn_dev_stats_get(struct rte_eth_dev *dev,
412                             struct rte_eth_stats *stats)
413 {
414         unsigned int i;
415
416         hn_vf_stats_get(dev, stats);
417
418         for (i = 0; i < dev->data->nb_tx_queues; i++) {
419                 const struct hn_tx_queue *txq = dev->data->tx_queues[i];
420
421                 if (!txq)
422                         continue;
423
424                 stats->opackets += txq->stats.packets;
425                 stats->obytes += txq->stats.bytes;
426                 stats->oerrors += txq->stats.errors;
427
428                 if (i < RTE_ETHDEV_QUEUE_STAT_CNTRS) {
429                         stats->q_opackets[i] = txq->stats.packets;
430                         stats->q_obytes[i] = txq->stats.bytes;
431                 }
432         }
433
434         for (i = 0; i < dev->data->nb_rx_queues; i++) {
435                 const struct hn_rx_queue *rxq = dev->data->rx_queues[i];
436
437                 if (!rxq)
438                         continue;
439
440                 stats->ipackets += rxq->stats.packets;
441                 stats->ibytes += rxq->stats.bytes;
442                 stats->ierrors += rxq->stats.errors;
443                 stats->imissed += rxq->stats.ring_full;
444
445                 if (i < RTE_ETHDEV_QUEUE_STAT_CNTRS) {
446                         stats->q_ipackets[i] = rxq->stats.packets;
447                         stats->q_ibytes[i] = rxq->stats.bytes;
448                 }
449         }
450
451         stats->rx_nombuf = dev->data->rx_mbuf_alloc_failed;
452         return 0;
453 }
454
455 static void
456 hn_dev_stats_reset(struct rte_eth_dev *dev)
457 {
458         unsigned int i;
459
460         PMD_INIT_FUNC_TRACE();
461
462         for (i = 0; i < dev->data->nb_tx_queues; i++) {
463                 struct hn_tx_queue *txq = dev->data->tx_queues[i];
464
465                 if (!txq)
466                         continue;
467                 memset(&txq->stats, 0, sizeof(struct hn_stats));
468         }
469
470         for (i = 0; i < dev->data->nb_rx_queues; i++) {
471                 struct hn_rx_queue *rxq = dev->data->rx_queues[i];
472
473                 if (!rxq)
474                         continue;
475
476                 memset(&rxq->stats, 0, sizeof(struct hn_stats));
477         }
478 }
479
480 static void
481 hn_dev_xstats_reset(struct rte_eth_dev *dev)
482 {
483         hn_dev_stats_reset(dev);
484         hn_vf_xstats_reset(dev);
485 }
486
487 static int
488 hn_dev_xstats_count(struct rte_eth_dev *dev)
489 {
490         int ret, count;
491
492         count = dev->data->nb_tx_queues * RTE_DIM(hn_stat_strings);
493         count += dev->data->nb_rx_queues * RTE_DIM(hn_stat_strings);
494
495         ret = hn_vf_xstats_get_names(dev, NULL, 0);
496         if (ret < 0)
497                 return ret;
498
499         return count + ret;
500 }
501
502 static int
503 hn_dev_xstats_get_names(struct rte_eth_dev *dev,
504                         struct rte_eth_xstat_name *xstats_names,
505                         unsigned int limit)
506 {
507         unsigned int i, t, count = 0;
508         int ret;
509
510         if (!xstats_names)
511                 return hn_dev_xstats_count(dev);
512
513         /* Note: limit checked in rte_eth_xstats_names() */
514         for (i = 0; i < dev->data->nb_tx_queues; i++) {
515                 const struct hn_tx_queue *txq = dev->data->tx_queues[i];
516
517                 if (!txq)
518                         continue;
519
520                 if (count >= limit)
521                         break;
522
523                 for (t = 0; t < RTE_DIM(hn_stat_strings); t++)
524                         snprintf(xstats_names[count++].name,
525                                  RTE_ETH_XSTATS_NAME_SIZE,
526                                  "tx_q%u_%s", i, hn_stat_strings[t].name);
527         }
528
529         for (i = 0; i < dev->data->nb_rx_queues; i++)  {
530                 const struct hn_rx_queue *rxq = dev->data->rx_queues[i];
531
532                 if (!rxq)
533                         continue;
534
535                 if (count >= limit)
536                         break;
537
538                 for (t = 0; t < RTE_DIM(hn_stat_strings); t++)
539                         snprintf(xstats_names[count++].name,
540                                  RTE_ETH_XSTATS_NAME_SIZE,
541                                  "rx_q%u_%s", i,
542                                  hn_stat_strings[t].name);
543         }
544
545         ret = hn_vf_xstats_get_names(dev, xstats_names + count,
546                                      limit - count);
547         if (ret < 0)
548                 return ret;
549
550         return count + ret;
551 }
552
553 static int
554 hn_dev_xstats_get(struct rte_eth_dev *dev,
555                   struct rte_eth_xstat *xstats,
556                   unsigned int n)
557 {
558         unsigned int i, t, count = 0;
559         const unsigned int nstats = hn_dev_xstats_count(dev);
560         const char *stats;
561         int ret;
562
563         PMD_INIT_FUNC_TRACE();
564
565         if (n < nstats)
566                 return nstats;
567
568         for (i = 0; i < dev->data->nb_tx_queues; i++) {
569                 const struct hn_tx_queue *txq = dev->data->tx_queues[i];
570
571                 if (!txq)
572                         continue;
573
574                 stats = (const char *)&txq->stats;
575                 for (t = 0; t < RTE_DIM(hn_stat_strings); t++)
576                         xstats[count++].value = *(const uint64_t *)
577                                 (stats + hn_stat_strings[t].offset);
578         }
579
580         for (i = 0; i < dev->data->nb_rx_queues; i++) {
581                 const struct hn_rx_queue *rxq = dev->data->rx_queues[i];
582
583                 if (!rxq)
584                         continue;
585
586                 stats = (const char *)&rxq->stats;
587                 for (t = 0; t < RTE_DIM(hn_stat_strings); t++)
588                         xstats[count++].value = *(const uint64_t *)
589                                 (stats + hn_stat_strings[t].offset);
590         }
591
592         ret = hn_vf_xstats_get(dev, xstats + count, n - count);
593         if (ret < 0)
594                 return ret;
595
596         return count + ret;
597 }
598
599 static int
600 hn_dev_start(struct rte_eth_dev *dev)
601 {
602         struct hn_data *hv = dev->data->dev_private;
603         int error;
604
605         PMD_INIT_FUNC_TRACE();
606
607         error = hn_rndis_set_rxfilter(hv,
608                                       NDIS_PACKET_TYPE_BROADCAST |
609                                       NDIS_PACKET_TYPE_ALL_MULTICAST |
610                                       NDIS_PACKET_TYPE_DIRECTED);
611         if (error)
612                 return error;
613
614         error = hn_vf_start(dev);
615         if (error)
616                 hn_rndis_set_rxfilter(hv, 0);
617
618         return error;
619 }
620
621 static void
622 hn_dev_stop(struct rte_eth_dev *dev)
623 {
624         struct hn_data *hv = dev->data->dev_private;
625
626         PMD_INIT_FUNC_TRACE();
627
628         hn_rndis_set_rxfilter(hv, 0);
629         hn_vf_stop(dev);
630 }
631
632 static void
633 hn_dev_close(struct rte_eth_dev *dev __rte_unused)
634 {
635         PMD_INIT_LOG(DEBUG, "close");
636
637         hn_vf_close(dev);
638 }
639
640 static const struct eth_dev_ops hn_eth_dev_ops = {
641         .dev_configure          = hn_dev_configure,
642         .dev_start              = hn_dev_start,
643         .dev_stop               = hn_dev_stop,
644         .dev_close              = hn_dev_close,
645         .dev_infos_get          = hn_dev_info_get,
646         .dev_supported_ptypes_get = hn_vf_supported_ptypes,
647         .promiscuous_enable     = hn_dev_promiscuous_enable,
648         .promiscuous_disable    = hn_dev_promiscuous_disable,
649         .allmulticast_enable    = hn_dev_allmulticast_enable,
650         .allmulticast_disable   = hn_dev_allmulticast_disable,
651         .set_mc_addr_list       = hn_dev_mc_addr_list,
652         .tx_queue_setup         = hn_dev_tx_queue_setup,
653         .tx_queue_release       = hn_dev_tx_queue_release,
654         .tx_done_cleanup        = hn_dev_tx_done_cleanup,
655         .rx_queue_setup         = hn_dev_rx_queue_setup,
656         .rx_queue_release       = hn_dev_rx_queue_release,
657         .link_update            = hn_dev_link_update,
658         .stats_get              = hn_dev_stats_get,
659         .stats_reset            = hn_dev_stats_reset,
660         .xstats_get             = hn_dev_xstats_get,
661         .xstats_get_names       = hn_dev_xstats_get_names,
662         .xstats_reset           = hn_dev_xstats_reset,
663 };
664
665 /*
666  * Setup connection between PMD and kernel.
667  */
668 static int
669 hn_attach(struct hn_data *hv, unsigned int mtu)
670 {
671         int error;
672
673         /* Attach NVS */
674         error = hn_nvs_attach(hv, mtu);
675         if (error)
676                 goto failed_nvs;
677
678         /* Attach RNDIS */
679         error = hn_rndis_attach(hv);
680         if (error)
681                 goto failed_rndis;
682
683         /*
684          * NOTE:
685          * Under certain conditions on certain versions of Hyper-V,
686          * the RNDIS rxfilter is _not_ zero on the hypervisor side
687          * after the successful RNDIS initialization.
688          */
689         hn_rndis_set_rxfilter(hv, NDIS_PACKET_TYPE_NONE);
690         return 0;
691 failed_rndis:
692         hn_nvs_detach(hv);
693 failed_nvs:
694         return error;
695 }
696
697 static void
698 hn_detach(struct hn_data *hv)
699 {
700         hn_nvs_detach(hv);
701         hn_rndis_detach(hv);
702 }
703
704 static int
705 eth_hn_dev_init(struct rte_eth_dev *eth_dev)
706 {
707         struct hn_data *hv = eth_dev->data->dev_private;
708         struct rte_device *device = eth_dev->device;
709         struct rte_vmbus_device *vmbus;
710         unsigned int rxr_cnt;
711         int err, max_chan;
712
713         PMD_INIT_FUNC_TRACE();
714
715         vmbus = container_of(device, struct rte_vmbus_device, device);
716         eth_dev->dev_ops = &hn_eth_dev_ops;
717         eth_dev->tx_pkt_burst = &hn_xmit_pkts;
718         eth_dev->rx_pkt_burst = &hn_recv_pkts;
719
720         /*
721          * for secondary processes, we don't initialize any further as primary
722          * has already done this work.
723          */
724         if (rte_eal_process_type() != RTE_PROC_PRIMARY)
725                 return 0;
726
727         /* Since Hyper-V only supports one MAC address, just use local data */
728         eth_dev->data->mac_addrs = &hv->mac_addr;
729
730         hv->vmbus = vmbus;
731         hv->rxbuf_res = &vmbus->resource[HV_RECV_BUF_MAP];
732         hv->chim_res  = &vmbus->resource[HV_SEND_BUF_MAP];
733         hv->port_id = eth_dev->data->port_id;
734         hv->latency = HN_CHAN_LATENCY_NS;
735
736         err = hn_parse_args(eth_dev);
737         if (err)
738                 return err;
739
740         strlcpy(hv->owner.name, eth_dev->device->name,
741                 RTE_ETH_MAX_OWNER_NAME_LEN);
742         err = rte_eth_dev_owner_new(&hv->owner.id);
743         if (err) {
744                 PMD_INIT_LOG(ERR, "Can not get owner id");
745                 return err;
746         }
747
748         /* Initialize primary channel input for control operations */
749         err = rte_vmbus_chan_open(vmbus, &hv->channels[0]);
750         if (err)
751                 return err;
752
753         rte_vmbus_set_latency(hv->vmbus, hv->channels[0], hv->latency);
754
755         hv->primary = hn_rx_queue_alloc(hv, 0,
756                                         eth_dev->device->numa_node);
757
758         if (!hv->primary)
759                 return -ENOMEM;
760
761         err = hn_attach(hv, ETHER_MTU);
762         if  (err)
763                 goto failed;
764
765         err = hn_tx_pool_init(eth_dev);
766         if (err)
767                 goto failed;
768
769         err = hn_rndis_get_eaddr(hv, hv->mac_addr.addr_bytes);
770         if (err)
771                 goto failed;
772
773         max_chan = rte_vmbus_max_channels(vmbus);
774         PMD_INIT_LOG(DEBUG, "VMBus max channels %d", max_chan);
775         if (max_chan <= 0)
776                 goto failed;
777
778         if (hn_rndis_query_rsscaps(hv, &rxr_cnt) != 0)
779                 rxr_cnt = 1;
780
781         hv->max_queues = RTE_MIN(rxr_cnt, (unsigned int)max_chan);
782
783         /* If VF was reported but not added, do it now */
784         if (hv->vf_present && !hv->vf_dev) {
785                 PMD_INIT_LOG(DEBUG, "Adding VF device");
786
787                 err = hn_vf_add(eth_dev, hv);
788                 if (err)
789                         goto failed;
790         }
791
792         return 0;
793
794 failed:
795         PMD_INIT_LOG(NOTICE, "device init failed");
796
797         hn_detach(hv);
798         return err;
799 }
800
801 static int
802 eth_hn_dev_uninit(struct rte_eth_dev *eth_dev)
803 {
804         struct hn_data *hv = eth_dev->data->dev_private;
805
806         PMD_INIT_FUNC_TRACE();
807
808         if (rte_eal_process_type() != RTE_PROC_PRIMARY)
809                 return 0;
810
811         hn_dev_stop(eth_dev);
812         hn_dev_close(eth_dev);
813
814         eth_dev->dev_ops = NULL;
815         eth_dev->tx_pkt_burst = NULL;
816         eth_dev->rx_pkt_burst = NULL;
817
818         hn_detach(hv);
819         rte_vmbus_chan_close(hv->primary->chan);
820         rte_free(hv->primary);
821         rte_eth_dev_owner_delete(hv->owner.id);
822
823         return 0;
824 }
825
826 static int eth_hn_probe(struct rte_vmbus_driver *drv __rte_unused,
827                         struct rte_vmbus_device *dev)
828 {
829         struct rte_eth_dev *eth_dev;
830         int ret;
831
832         PMD_INIT_FUNC_TRACE();
833
834         eth_dev = eth_dev_vmbus_allocate(dev, sizeof(struct hn_data));
835         if (!eth_dev)
836                 return -ENOMEM;
837
838         ret = eth_hn_dev_init(eth_dev);
839         if (ret)
840                 eth_dev_vmbus_release(eth_dev);
841         else
842                 rte_eth_dev_probing_finish(eth_dev);
843
844         return ret;
845 }
846
847 static int eth_hn_remove(struct rte_vmbus_device *dev)
848 {
849         struct rte_eth_dev *eth_dev;
850         int ret;
851
852         PMD_INIT_FUNC_TRACE();
853
854         eth_dev = rte_eth_dev_allocated(dev->device.name);
855         if (!eth_dev)
856                 return -ENODEV;
857
858         ret = eth_hn_dev_uninit(eth_dev);
859         if (ret)
860                 return ret;
861
862         eth_dev_vmbus_release(eth_dev);
863         return 0;
864 }
865
866 /* Network device GUID */
867 static const rte_uuid_t hn_net_ids[] = {
868         /*  f8615163-df3e-46c5-913f-f2d2f965ed0e */
869         RTE_UUID_INIT(0xf8615163, 0xdf3e, 0x46c5, 0x913f, 0xf2d2f965ed0eULL),
870         { 0 }
871 };
872
873 static struct rte_vmbus_driver rte_netvsc_pmd = {
874         .id_table = hn_net_ids,
875         .probe = eth_hn_probe,
876         .remove = eth_hn_remove,
877 };
878
879 RTE_PMD_REGISTER_VMBUS(net_netvsc, rte_netvsc_pmd);
880 RTE_PMD_REGISTER_KMOD_DEP(net_netvsc, "* uio_hv_generic");
881
882 RTE_INIT(hn_init_log);
883 static void
884 hn_init_log(void)
885 {
886         hn_logtype_init = rte_log_register("pmd.net.netvsc.init");
887         if (hn_logtype_init >= 0)
888                 rte_log_set_level(hn_logtype_init, RTE_LOG_NOTICE);
889         hn_logtype_driver = rte_log_register("pmd.net.netvsc.driver");
890         if (hn_logtype_driver >= 0)
891                 rte_log_set_level(hn_logtype_driver, RTE_LOG_NOTICE);
892 }