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ipv6: Fix finding best source address in ipv6_dev_get_saddr().
[mirror_ubuntu-jammy-kernel.git] / drivers / net / hyperv / netvsc_drv.c
CommitLineData
fceaf24a 1/*
fceaf24a
HJ
2 * Copyright (c) 2009, Microsoft Corporation.
3 *
4 * This program is free software; you can redistribute it and/or modify it
5 * under the terms and conditions of the GNU General Public License,
6 * version 2, as published by the Free Software Foundation.
7 *
8 * This program is distributed in the hope it will be useful, but WITHOUT
9 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
10 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
11 * more details.
12 *
13 * You should have received a copy of the GNU General Public License along with
adf8d3ff 14 * this program; if not, see <http://www.gnu.org/licenses/>.
fceaf24a
HJ
15 *
16 * Authors:
d0e94d17 17 * Haiyang Zhang <haiyangz@microsoft.com>
fceaf24a 18 * Hank Janssen <hjanssen@microsoft.com>
fceaf24a 19 */
eb335bc4
HJ
20#define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
21
fceaf24a 22#include <linux/init.h>
9079ce69 23#include <linux/atomic.h>
fceaf24a
HJ
24#include <linux/module.h>
25#include <linux/highmem.h>
26#include <linux/device.h>
fceaf24a 27#include <linux/io.h>
fceaf24a
HJ
28#include <linux/delay.h>
29#include <linux/netdevice.h>
30#include <linux/inetdevice.h>
31#include <linux/etherdevice.h>
32#include <linux/skbuff.h>
c802db11 33#include <linux/if_vlan.h>
fceaf24a 34#include <linux/in.h>
5a0e3ad6 35#include <linux/slab.h>
fceaf24a
HJ
36#include <net/arp.h>
37#include <net/route.h>
38#include <net/sock.h>
39#include <net/pkt_sched.h>
3f335ea2 40
5ca7252a 41#include "hyperv_net.h"
fceaf24a 42
fceaf24a 43
fa85a6c2 44#define RING_SIZE_MIN 64
99c8da0f 45static int ring_size = 128;
450d7a4b
SH
46module_param(ring_size, int, S_IRUGO);
47MODULE_PARM_DESC(ring_size, "Ring buffer size (# of pages)");
fceaf24a 48
e01ec219
KS
49static int max_num_vrss_chns = 8;
50
3f300ff4
SX
51static const u32 default_msg = NETIF_MSG_DRV | NETIF_MSG_PROBE |
52 NETIF_MSG_LINK | NETIF_MSG_IFUP |
53 NETIF_MSG_IFDOWN | NETIF_MSG_RX_ERR |
54 NETIF_MSG_TX_ERR;
55
56static int debug = -1;
57module_param(debug, int, S_IRUGO);
58MODULE_PARM_DESC(debug, "Debug level (0=none,...,16=all)");
59
d426b2e3
HZ
60static void do_set_multicast(struct work_struct *w)
61{
792df872
WM
62 struct net_device_context *ndevctx =
63 container_of(w, struct net_device_context, work);
d426b2e3
HZ
64 struct netvsc_device *nvdev;
65 struct rndis_device *rdev;
66
67 nvdev = hv_get_drvdata(ndevctx->device_ctx);
792df872
WM
68 if (nvdev == NULL || nvdev->ndev == NULL)
69 return;
d426b2e3
HZ
70
71 rdev = nvdev->extension;
72 if (rdev == NULL)
792df872 73 return;
d426b2e3 74
792df872 75 if (nvdev->ndev->flags & IFF_PROMISC)
d426b2e3
HZ
76 rndis_filter_set_packet_filter(rdev,
77 NDIS_PACKET_TYPE_PROMISCUOUS);
78 else
79 rndis_filter_set_packet_filter(rdev,
80 NDIS_PACKET_TYPE_BROADCAST |
81 NDIS_PACKET_TYPE_ALL_MULTICAST |
82 NDIS_PACKET_TYPE_DIRECTED);
d426b2e3
HZ
83}
84
4e9bfefa 85static void netvsc_set_multicast_list(struct net_device *net)
fceaf24a 86{
792df872 87 struct net_device_context *net_device_ctx = netdev_priv(net);
d426b2e3 88
792df872 89 schedule_work(&net_device_ctx->work);
fceaf24a
HJ
90}
91
fceaf24a
HJ
92static int netvsc_open(struct net_device *net)
93{
fceaf24a 94 struct net_device_context *net_device_ctx = netdev_priv(net);
6bad88da 95 struct hv_device *device_obj = net_device_ctx->device_ctx;
891de74d
HZ
96 struct netvsc_device *nvdev;
97 struct rndis_device *rdev;
02fafbc6 98 int ret = 0;
fceaf24a 99
891de74d
HZ
100 netif_carrier_off(net);
101
d515d0ff
HZ
102 /* Open up the device */
103 ret = rndis_filter_open(device_obj);
104 if (ret != 0) {
105 netdev_err(net, "unable to open device (ret %d).\n", ret);
106 return ret;
fceaf24a
HJ
107 }
108
5b54dac8 109 netif_tx_start_all_queues(net);
d515d0ff 110
891de74d
HZ
111 nvdev = hv_get_drvdata(device_obj);
112 rdev = nvdev->extension;
113 if (!rdev->link_state)
114 netif_carrier_on(net);
115
fceaf24a
HJ
116 return ret;
117}
118
fceaf24a
HJ
119static int netvsc_close(struct net_device *net)
120{
fceaf24a 121 struct net_device_context *net_device_ctx = netdev_priv(net);
6bad88da 122 struct hv_device *device_obj = net_device_ctx->device_ctx;
02fafbc6 123 int ret;
fceaf24a 124
0a282538 125 netif_tx_disable(net);
fceaf24a 126
792df872
WM
127 /* Make sure netvsc_set_multicast_list doesn't re-enable filter! */
128 cancel_work_sync(&net_device_ctx->work);
9c26aa0d 129 ret = rndis_filter_close(device_obj);
fceaf24a 130 if (ret != 0)
eb335bc4 131 netdev_err(net, "unable to close device (ret %d).\n", ret);
fceaf24a 132
fceaf24a
HJ
133 return ret;
134}
135
8a00251a
KS
136static void *init_ppi_data(struct rndis_message *msg, u32 ppi_size,
137 int pkt_type)
138{
139 struct rndis_packet *rndis_pkt;
140 struct rndis_per_packet_info *ppi;
141
142 rndis_pkt = &msg->msg.pkt;
143 rndis_pkt->data_offset += ppi_size;
144
145 ppi = (struct rndis_per_packet_info *)((void *)rndis_pkt +
146 rndis_pkt->per_pkt_info_offset + rndis_pkt->per_pkt_info_len);
147
148 ppi->size = ppi_size;
149 ppi->type = pkt_type;
150 ppi->ppi_offset = sizeof(struct rndis_per_packet_info);
151
152 rndis_pkt->per_pkt_info_len += ppi_size;
153
154 return ppi;
155}
156
5b54dac8
HZ
157union sub_key {
158 u64 k;
159 struct {
160 u8 pad[3];
161 u8 kb;
162 u32 ka;
163 };
164};
165
166/* Toeplitz hash function
167 * data: network byte order
168 * return: host byte order
169 */
f88e6714 170static u32 comp_hash(u8 *key, int klen, void *data, int dlen)
5b54dac8
HZ
171{
172 union sub_key subk;
173 int k_next = 4;
174 u8 dt;
175 int i, j;
176 u32 ret = 0;
177
178 subk.k = 0;
179 subk.ka = ntohl(*(u32 *)key);
180
181 for (i = 0; i < dlen; i++) {
182 subk.kb = key[k_next];
183 k_next = (k_next + 1) % klen;
f88e6714 184 dt = ((u8 *)data)[i];
5b54dac8
HZ
185 for (j = 0; j < 8; j++) {
186 if (dt & 0x80)
187 ret ^= subk.ka;
188 dt <<= 1;
189 subk.k <<= 1;
190 }
191 }
192
193 return ret;
194}
195
196static bool netvsc_set_hash(u32 *hash, struct sk_buff *skb)
197{
f88e6714 198 struct flow_keys flow;
5b54dac8 199 int data_len;
5b54dac8 200
06635a35
JP
201 if (!skb_flow_dissect_flow_keys(skb, &flow) ||
202 !(flow.basic.n_proto == htons(ETH_P_IP) ||
203 flow.basic.n_proto == htons(ETH_P_IPV6)))
5b54dac8
HZ
204 return false;
205
06635a35 206 if (flow.basic.ip_proto == IPPROTO_TCP)
f88e6714
HZ
207 data_len = 12;
208 else
209 data_len = 8;
5b54dac8 210
f88e6714 211 *hash = comp_hash(netvsc_hash_key, HASH_KEYLEN, &flow, data_len);
5b54dac8 212
f88e6714 213 return true;
5b54dac8
HZ
214}
215
216static u16 netvsc_select_queue(struct net_device *ndev, struct sk_buff *skb,
217 void *accel_priv, select_queue_fallback_t fallback)
218{
219 struct net_device_context *net_device_ctx = netdev_priv(ndev);
220 struct hv_device *hdev = net_device_ctx->device_ctx;
221 struct netvsc_device *nvsc_dev = hv_get_drvdata(hdev);
222 u32 hash;
223 u16 q_idx = 0;
224
225 if (nvsc_dev == NULL || ndev->real_num_tx_queues <= 1)
226 return 0;
227
307f0995 228 if (netvsc_set_hash(&hash, skb)) {
5b54dac8
HZ
229 q_idx = nvsc_dev->send_table[hash % VRSS_SEND_TAB_SIZE] %
230 ndev->real_num_tx_queues;
307f0995
HZ
231 skb_set_hash(skb, hash, PKT_HASH_TYPE_L3);
232 }
5b54dac8
HZ
233
234 return q_idx;
235}
236
ee90b812 237void netvsc_xmit_completion(void *context)
fceaf24a 238{
4193d4f4 239 struct hv_netvsc_packet *packet = (struct hv_netvsc_packet *)context;
02fafbc6 240 struct sk_buff *skb = (struct sk_buff *)
893f6627 241 (unsigned long)packet->send_completion_tid;
fceaf24a 242
cbacec76 243 if (skb)
b220f5f9 244 dev_kfree_skb_any(skb);
fceaf24a
HJ
245}
246
54a7357f
KS
247static u32 fill_pg_buf(struct page *page, u32 offset, u32 len,
248 struct hv_page_buffer *pb)
249{
250 int j = 0;
251
252 /* Deal with compund pages by ignoring unused part
253 * of the page.
254 */
255 page += (offset >> PAGE_SHIFT);
256 offset &= ~PAGE_MASK;
257
258 while (len > 0) {
259 unsigned long bytes;
260
261 bytes = PAGE_SIZE - offset;
262 if (bytes > len)
263 bytes = len;
264 pb[j].pfn = page_to_pfn(page);
265 pb[j].offset = offset;
266 pb[j].len = bytes;
267
268 offset += bytes;
269 len -= bytes;
270
271 if (offset == PAGE_SIZE && len) {
272 page++;
273 offset = 0;
274 j++;
275 }
276 }
277
278 return j + 1;
279}
280
8a00251a 281static u32 init_page_array(void *hdr, u32 len, struct sk_buff *skb,
aa0a34be 282 struct hv_netvsc_packet *packet)
54a7357f 283{
aa0a34be 284 struct hv_page_buffer *pb = packet->page_buf;
54a7357f
KS
285 u32 slots_used = 0;
286 char *data = skb->data;
287 int frags = skb_shinfo(skb)->nr_frags;
288 int i;
289
290 /* The packet is laid out thus:
aa0a34be 291 * 1. hdr: RNDIS header and PPI
54a7357f
KS
292 * 2. skb linear data
293 * 3. skb fragment data
294 */
295 if (hdr != NULL)
296 slots_used += fill_pg_buf(virt_to_page(hdr),
297 offset_in_page(hdr),
298 len, &pb[slots_used]);
299
aa0a34be
HZ
300 packet->rmsg_size = len;
301 packet->rmsg_pgcnt = slots_used;
302
54a7357f
KS
303 slots_used += fill_pg_buf(virt_to_page(data),
304 offset_in_page(data),
305 skb_headlen(skb), &pb[slots_used]);
306
307 for (i = 0; i < frags; i++) {
308 skb_frag_t *frag = skb_shinfo(skb)->frags + i;
309
310 slots_used += fill_pg_buf(skb_frag_page(frag),
311 frag->page_offset,
312 skb_frag_size(frag), &pb[slots_used]);
313 }
8a00251a 314 return slots_used;
54a7357f
KS
315}
316
317static int count_skb_frag_slots(struct sk_buff *skb)
318{
319 int i, frags = skb_shinfo(skb)->nr_frags;
320 int pages = 0;
321
322 for (i = 0; i < frags; i++) {
323 skb_frag_t *frag = skb_shinfo(skb)->frags + i;
324 unsigned long size = skb_frag_size(frag);
325 unsigned long offset = frag->page_offset;
326
327 /* Skip unused frames from start of page */
328 offset &= ~PAGE_MASK;
329 pages += PFN_UP(offset + size);
330 }
331 return pages;
332}
333
334static int netvsc_get_slots(struct sk_buff *skb)
335{
336 char *data = skb->data;
337 unsigned int offset = offset_in_page(data);
338 unsigned int len = skb_headlen(skb);
339 int slots;
340 int frag_slots;
341
342 slots = DIV_ROUND_UP(offset + len, PAGE_SIZE);
343 frag_slots = count_skb_frag_slots(skb);
344 return slots + frag_slots;
345}
346
08cd04bf
KS
347static u32 get_net_transport_info(struct sk_buff *skb, u32 *trans_off)
348{
349 u32 ret_val = TRANSPORT_INFO_NOT_IP;
350
351 if ((eth_hdr(skb)->h_proto != htons(ETH_P_IP)) &&
352 (eth_hdr(skb)->h_proto != htons(ETH_P_IPV6))) {
353 goto not_ip;
354 }
355
356 *trans_off = skb_transport_offset(skb);
357
358 if ((eth_hdr(skb)->h_proto == htons(ETH_P_IP))) {
359 struct iphdr *iphdr = ip_hdr(skb);
360
361 if (iphdr->protocol == IPPROTO_TCP)
362 ret_val = TRANSPORT_INFO_IPV4_TCP;
363 else if (iphdr->protocol == IPPROTO_UDP)
364 ret_val = TRANSPORT_INFO_IPV4_UDP;
365 } else {
366 if (ipv6_hdr(skb)->nexthdr == IPPROTO_TCP)
367 ret_val = TRANSPORT_INFO_IPV6_TCP;
368 else if (ipv6_hdr(skb)->nexthdr == IPPROTO_UDP)
369 ret_val = TRANSPORT_INFO_IPV6_UDP;
370 }
371
372not_ip:
373 return ret_val;
374}
375
02fafbc6 376static int netvsc_start_xmit(struct sk_buff *skb, struct net_device *net)
fceaf24a 377{
fceaf24a 378 struct net_device_context *net_device_ctx = netdev_priv(net);
981a1bd8 379 struct hv_netvsc_packet *packet = NULL;
02fafbc6 380 int ret;
8a00251a
KS
381 unsigned int num_data_pgs;
382 struct rndis_message *rndis_msg;
383 struct rndis_packet *rndis_pkt;
384 u32 rndis_msg_size;
385 bool isvlan;
e88f7e07 386 bool linear = false;
8a00251a 387 struct rndis_per_packet_info *ppi;
08cd04bf 388 struct ndis_tcp_ip_checksum_info *csum_info;
77bf5487 389 struct ndis_tcp_lso_info *lso_info;
08cd04bf
KS
390 int hdr_offset;
391 u32 net_trans_info;
307f0995 392 u32 hash;
e88f7e07 393 u32 skb_length;
b08cc791
KS
394 u32 pkt_sz;
395 struct hv_page_buffer page_buf[MAX_PAGE_BUFFER_COUNT];
7eafd9b4 396 struct netvsc_stats *tx_stats = this_cpu_ptr(net_device_ctx->tx_stats);
fceaf24a 397
54a7357f
KS
398 /* We will atmost need two pages to describe the rndis
399 * header. We can only transmit MAX_PAGE_BUFFER_COUNT number
e88f7e07
VK
400 * of pages in a single packet. If skb is scattered around
401 * more pages we try linearizing it.
54a7357f 402 */
e88f7e07
VK
403
404check_size:
405 skb_length = skb->len;
8a00251a 406 num_data_pgs = netvsc_get_slots(skb) + 2;
e88f7e07
VK
407 if (num_data_pgs > MAX_PAGE_BUFFER_COUNT && linear) {
408 net_alert_ratelimited("packet too big: %u pages (%u bytes)\n",
409 num_data_pgs, skb->len);
981a1bd8
VK
410 ret = -EFAULT;
411 goto drop;
e88f7e07
VK
412 } else if (num_data_pgs > MAX_PAGE_BUFFER_COUNT) {
413 if (skb_linearize(skb)) {
414 net_alert_ratelimited("failed to linearize skb\n");
415 ret = -ENOMEM;
416 goto drop;
417 }
418 linear = true;
419 goto check_size;
54a7357f 420 }
fceaf24a 421
72151422 422 pkt_sz = sizeof(struct hv_netvsc_packet) + RNDIS_AND_PPI_SIZE;
b08cc791 423
b56fc3c5
KS
424 ret = skb_cow_head(skb, pkt_sz);
425 if (ret) {
426 netdev_err(net, "unable to alloc hv_netvsc_packet\n");
427 ret = -ENOMEM;
428 goto drop;
fceaf24a 429 }
b56fc3c5
KS
430 /* Use the headroom for building up the packet */
431 packet = (struct hv_netvsc_packet *)skb->head;
fceaf24a 432
b08cc791 433 packet->status = 0;
7c3877f2
HZ
434 packet->xmit_more = skb->xmit_more;
435
1f5f3a75 436 packet->vlan_tci = skb->vlan_tci;
b08cc791 437 packet->page_buf = page_buf;
1f5f3a75 438
5b54dac8
HZ
439 packet->q_idx = skb_get_queue_mapping(skb);
440
8a00251a 441 packet->is_data_pkt = true;
4d447c9a 442 packet->total_data_buflen = skb->len;
fceaf24a 443
8a00251a 444 packet->rndis_msg = (struct rndis_message *)((unsigned long)packet +
b08cc791
KS
445 sizeof(struct hv_netvsc_packet));
446
72151422 447 memset(packet->rndis_msg, 0, RNDIS_AND_PPI_SIZE);
fceaf24a 448
454f18a9 449 /* Set the completion routine */
893f6627
HZ
450 packet->send_completion = netvsc_xmit_completion;
451 packet->send_completion_ctx = packet;
452 packet->send_completion_tid = (unsigned long)skb;
fceaf24a 453
8a00251a
KS
454 isvlan = packet->vlan_tci & VLAN_TAG_PRESENT;
455
456 /* Add the rndis header */
457 rndis_msg = packet->rndis_msg;
458 rndis_msg->ndis_msg_type = RNDIS_MSG_PACKET;
459 rndis_msg->msg_len = packet->total_data_buflen;
460 rndis_pkt = &rndis_msg->msg.pkt;
461 rndis_pkt->data_offset = sizeof(struct rndis_packet);
462 rndis_pkt->data_len = packet->total_data_buflen;
463 rndis_pkt->per_pkt_info_offset = sizeof(struct rndis_packet);
464
465 rndis_msg_size = RNDIS_MESSAGE_SIZE(struct rndis_packet);
466
307f0995
HZ
467 hash = skb_get_hash_raw(skb);
468 if (hash != 0 && net->real_num_tx_queues > 1) {
469 rndis_msg_size += NDIS_HASH_PPI_SIZE;
470 ppi = init_ppi_data(rndis_msg, NDIS_HASH_PPI_SIZE,
471 NBL_HASH_VALUE);
472 *(u32 *)((void *)ppi + ppi->ppi_offset) = hash;
473 }
474
8a00251a
KS
475 if (isvlan) {
476 struct ndis_pkt_8021q_info *vlan;
477
478 rndis_msg_size += NDIS_VLAN_PPI_SIZE;
479 ppi = init_ppi_data(rndis_msg, NDIS_VLAN_PPI_SIZE,
480 IEEE_8021Q_INFO);
481 vlan = (struct ndis_pkt_8021q_info *)((void *)ppi +
482 ppi->ppi_offset);
483 vlan->vlanid = packet->vlan_tci & VLAN_VID_MASK;
484 vlan->pri = (packet->vlan_tci & VLAN_PRIO_MASK) >>
485 VLAN_PRIO_SHIFT;
486 }
487
08cd04bf
KS
488 net_trans_info = get_net_transport_info(skb, &hdr_offset);
489 if (net_trans_info == TRANSPORT_INFO_NOT_IP)
490 goto do_send;
491
492 /*
493 * Setup the sendside checksum offload only if this is not a
494 * GSO packet.
495 */
496 if (skb_is_gso(skb))
77bf5487 497 goto do_lso;
08cd04bf 498
22041fb0
KS
499 if ((skb->ip_summed == CHECKSUM_NONE) ||
500 (skb->ip_summed == CHECKSUM_UNNECESSARY))
501 goto do_send;
502
08cd04bf
KS
503 rndis_msg_size += NDIS_CSUM_PPI_SIZE;
504 ppi = init_ppi_data(rndis_msg, NDIS_CSUM_PPI_SIZE,
505 TCPIP_CHKSUM_PKTINFO);
506
507 csum_info = (struct ndis_tcp_ip_checksum_info *)((void *)ppi +
508 ppi->ppi_offset);
509
510 if (net_trans_info & (INFO_IPV4 << 16))
511 csum_info->transmit.is_ipv4 = 1;
512 else
513 csum_info->transmit.is_ipv6 = 1;
514
515 if (net_trans_info & INFO_TCP) {
516 csum_info->transmit.tcp_checksum = 1;
517 csum_info->transmit.tcp_header_offset = hdr_offset;
518 } else if (net_trans_info & INFO_UDP) {
af9893a3
KS
519 /* UDP checksum offload is not supported on ws2008r2.
520 * Furthermore, on ws2012 and ws2012r2, there are some
521 * issues with udp checksum offload from Linux guests.
522 * (these are host issues).
523 * For now compute the checksum here.
524 */
525 struct udphdr *uh;
526 u16 udp_len;
527
528 ret = skb_cow_head(skb, 0);
529 if (ret)
530 goto drop;
531
532 uh = udp_hdr(skb);
533 udp_len = ntohs(uh->len);
534 uh->check = 0;
535 uh->check = csum_tcpudp_magic(ip_hdr(skb)->saddr,
536 ip_hdr(skb)->daddr,
537 udp_len, IPPROTO_UDP,
538 csum_partial(uh, udp_len, 0));
539 if (uh->check == 0)
540 uh->check = CSUM_MANGLED_0;
541
542 csum_info->transmit.udp_checksum = 0;
08cd04bf 543 }
77bf5487
KS
544 goto do_send;
545
546do_lso:
547 rndis_msg_size += NDIS_LSO_PPI_SIZE;
548 ppi = init_ppi_data(rndis_msg, NDIS_LSO_PPI_SIZE,
549 TCP_LARGESEND_PKTINFO);
550
551 lso_info = (struct ndis_tcp_lso_info *)((void *)ppi +
552 ppi->ppi_offset);
553
554 lso_info->lso_v2_transmit.type = NDIS_TCP_LARGE_SEND_OFFLOAD_V2_TYPE;
555 if (net_trans_info & (INFO_IPV4 << 16)) {
556 lso_info->lso_v2_transmit.ip_version =
557 NDIS_TCP_LARGE_SEND_OFFLOAD_IPV4;
558 ip_hdr(skb)->tot_len = 0;
559 ip_hdr(skb)->check = 0;
560 tcp_hdr(skb)->check =
561 ~csum_tcpudp_magic(ip_hdr(skb)->saddr,
562 ip_hdr(skb)->daddr, 0, IPPROTO_TCP, 0);
563 } else {
564 lso_info->lso_v2_transmit.ip_version =
565 NDIS_TCP_LARGE_SEND_OFFLOAD_IPV6;
566 ipv6_hdr(skb)->payload_len = 0;
567 tcp_hdr(skb)->check =
568 ~csum_ipv6_magic(&ipv6_hdr(skb)->saddr,
569 &ipv6_hdr(skb)->daddr, 0, IPPROTO_TCP, 0);
570 }
571 lso_info->lso_v2_transmit.tcp_header_offset = hdr_offset;
572 lso_info->lso_v2_transmit.mss = skb_shinfo(skb)->gso_size;
08cd04bf
KS
573
574do_send:
8a00251a
KS
575 /* Start filling in the page buffers with the rndis hdr */
576 rndis_msg->msg_len += rndis_msg_size;
942396b0 577 packet->total_data_buflen = rndis_msg->msg_len;
8a00251a 578 packet->page_buf_cnt = init_page_array(rndis_msg, rndis_msg_size,
aa0a34be 579 skb, packet);
8a00251a
KS
580
581 ret = netvsc_send(net_device_ctx->device_ctx, packet);
582
af9893a3 583drop:
02fafbc6 584 if (ret == 0) {
4b02b58b 585 u64_stats_update_begin(&tx_stats->syncp);
7eafd9b4 586 tx_stats->packets++;
587 tx_stats->bytes += skb_length;
4b02b58b 588 u64_stats_update_end(&tx_stats->syncp);
b220f5f9 589 } else {
33be96e4
HZ
590 if (ret != -EAGAIN) {
591 dev_kfree_skb_any(skb);
592 net->stats.tx_dropped++;
593 }
fceaf24a
HJ
594 }
595
33be96e4 596 return (ret == -EAGAIN) ? NETDEV_TX_BUSY : NETDEV_TX_OK;
fceaf24a
HJ
597}
598
3e189519 599/*
02fafbc6
GKH
600 * netvsc_linkstatus_callback - Link up/down notification
601 */
90ef117a 602void netvsc_linkstatus_callback(struct hv_device *device_obj,
3a494e71 603 struct rndis_message *resp)
fceaf24a 604{
3a494e71 605 struct rndis_indicate_status *indicate = &resp->msg.indicate_status;
2ddd5e5f 606 struct net_device *net;
c996edcf 607 struct net_device_context *ndev_ctx;
2ddd5e5f 608 struct netvsc_device *net_device;
891de74d 609 struct rndis_device *rdev;
2ddd5e5f
S
610
611 net_device = hv_get_drvdata(device_obj);
891de74d
HZ
612 rdev = net_device->extension;
613
3a494e71
HZ
614 switch (indicate->status) {
615 case RNDIS_STATUS_MEDIA_CONNECT:
616 rdev->link_state = false;
617 break;
618 case RNDIS_STATUS_MEDIA_DISCONNECT:
619 rdev->link_state = true;
620 break;
621 case RNDIS_STATUS_NETWORK_CHANGE:
622 rdev->link_change = true;
623 break;
624 default:
625 return;
626 }
891de74d 627
2ddd5e5f 628 net = net_device->ndev;
fceaf24a 629
891de74d 630 if (!net || net->reg_state != NETREG_REGISTERED)
fceaf24a 631 return;
fceaf24a 632
891de74d 633 ndev_ctx = netdev_priv(net);
3a494e71 634 if (!rdev->link_state) {
c4b6a2ea 635 schedule_delayed_work(&ndev_ctx->dwork, 0);
122a5f64 636 schedule_delayed_work(&ndev_ctx->dwork, msecs_to_jiffies(20));
02fafbc6 637 } else {
891de74d 638 schedule_delayed_work(&ndev_ctx->dwork, 0);
fceaf24a 639 }
fceaf24a
HJ
640}
641
3e189519
HJ
642/*
643 * netvsc_recv_callback - Callback when we receive a packet from the
644 * "wire" on the specified device.
02fafbc6 645 */
f79adf8f 646int netvsc_recv_callback(struct hv_device *device_obj,
e3d605ed
KS
647 struct hv_netvsc_packet *packet,
648 struct ndis_tcp_ip_checksum_info *csum_info)
fceaf24a 649{
6f4c4446 650 struct net_device *net;
7eafd9b4 651 struct net_device_context *net_device_ctx;
fceaf24a 652 struct sk_buff *skb;
7eafd9b4 653 struct netvsc_stats *rx_stats;
fceaf24a 654
6f4c4446 655 net = ((struct netvsc_device *)hv_get_drvdata(device_obj))->ndev;
a68f9614 656 if (!net || net->reg_state != NETREG_REGISTERED) {
63f6921d 657 packet->status = NVSP_STAT_FAIL;
fceaf24a
HJ
658 return 0;
659 }
7eafd9b4 660 net_device_ctx = netdev_priv(net);
661 rx_stats = this_cpu_ptr(net_device_ctx->rx_stats);
fceaf24a 662
9495c282 663 /* Allocate a skb - TODO direct I/O to pages? */
72a2f5bd 664 skb = netdev_alloc_skb_ip_align(net, packet->total_data_buflen);
9495c282
SH
665 if (unlikely(!skb)) {
666 ++net->stats.rx_dropped;
63f6921d 667 packet->status = NVSP_STAT_FAIL;
9495c282
SH
668 return 0;
669 }
fceaf24a 670
02fafbc6
GKH
671 /*
672 * Copy to skb. This copy is needed here since the memory pointed by
673 * hv_netvsc_packet cannot be deallocated
674 */
45326342
HZ
675 memcpy(skb_put(skb, packet->total_data_buflen), packet->data,
676 packet->total_data_buflen);
fceaf24a
HJ
677
678 skb->protocol = eth_type_trans(skb, net);
e3d605ed
KS
679 if (csum_info) {
680 /* We only look at the IP checksum here.
681 * Should we be dropping the packet if checksum
682 * failed? How do we deal with other checksums - TCP/UDP?
683 */
684 if (csum_info->receive.ip_checksum_succeeded)
685 skb->ip_summed = CHECKSUM_UNNECESSARY;
686 else
687 skb->ip_summed = CHECKSUM_NONE;
688 }
689
93725cbd
HZ
690 if (packet->vlan_tci & VLAN_TAG_PRESENT)
691 __vlan_hwaccel_put_tag(skb, htons(ETH_P_8021Q),
692 packet->vlan_tci);
fceaf24a 693
4baab261 694 skb_record_rx_queue(skb, packet->channel->
e565e803 695 offermsg.offer.sub_channel_index);
5b54dac8 696
4b02b58b 697 u64_stats_update_begin(&rx_stats->syncp);
7eafd9b4 698 rx_stats->packets++;
699 rx_stats->bytes += packet->total_data_buflen;
4b02b58b 700 u64_stats_update_end(&rx_stats->syncp);
9495c282 701
02fafbc6
GKH
702 /*
703 * Pass the skb back up. Network stack will deallocate the skb when it
9495c282
SH
704 * is done.
705 * TODO - use NAPI?
02fafbc6 706 */
9495c282 707 netif_rx(skb);
fceaf24a 708
fceaf24a
HJ
709 return 0;
710}
711
f82f4ad7
SH
712static void netvsc_get_drvinfo(struct net_device *net,
713 struct ethtool_drvinfo *info)
714{
7826d43f 715 strlcpy(info->driver, KBUILD_MODNAME, sizeof(info->driver));
7826d43f 716 strlcpy(info->fw_version, "N/A", sizeof(info->fw_version));
f82f4ad7
SH
717}
718
59995370
AS
719static void netvsc_get_channels(struct net_device *net,
720 struct ethtool_channels *channel)
721{
722 struct net_device_context *net_device_ctx = netdev_priv(net);
723 struct hv_device *dev = net_device_ctx->device_ctx;
724 struct netvsc_device *nvdev = hv_get_drvdata(dev);
725
726 if (nvdev) {
727 channel->max_combined = nvdev->max_chn;
728 channel->combined_count = nvdev->num_chn;
729 }
730}
731
4d447c9a
HZ
732static int netvsc_change_mtu(struct net_device *ndev, int mtu)
733{
734 struct net_device_context *ndevctx = netdev_priv(ndev);
735 struct hv_device *hdev = ndevctx->device_ctx;
736 struct netvsc_device *nvdev = hv_get_drvdata(hdev);
737 struct netvsc_device_info device_info;
738 int limit = ETH_DATA_LEN;
739
740 if (nvdev == NULL || nvdev->destroy)
741 return -ENODEV;
742
a1eabb01 743 if (nvdev->nvsp_version >= NVSP_PROTOCOL_VERSION_2)
4d3c9d37 744 limit = NETVSC_MTU - ETH_HLEN;
4d447c9a 745
f9cbce34 746 if (mtu < NETVSC_MTU_MIN || mtu > limit)
4d447c9a
HZ
747 return -EINVAL;
748
749 nvdev->start_remove = true;
792df872 750 cancel_work_sync(&ndevctx->work);
0a282538 751 netif_tx_disable(ndev);
4d447c9a
HZ
752 rndis_filter_device_remove(hdev);
753
754 ndev->mtu = mtu;
755
756 ndevctx->device_ctx = hdev;
757 hv_set_drvdata(hdev, ndev);
758 device_info.ring_size = ring_size;
e01ec219 759 device_info.max_num_vrss_chns = max_num_vrss_chns;
4d447c9a 760 rndis_filter_device_add(hdev, &device_info);
5b54dac8 761 netif_tx_wake_all_queues(ndev);
4d447c9a
HZ
762
763 return 0;
764}
765
7eafd9b4 766static struct rtnl_link_stats64 *netvsc_get_stats64(struct net_device *net,
767 struct rtnl_link_stats64 *t)
768{
769 struct net_device_context *ndev_ctx = netdev_priv(net);
770 int cpu;
771
772 for_each_possible_cpu(cpu) {
773 struct netvsc_stats *tx_stats = per_cpu_ptr(ndev_ctx->tx_stats,
774 cpu);
775 struct netvsc_stats *rx_stats = per_cpu_ptr(ndev_ctx->rx_stats,
776 cpu);
777 u64 tx_packets, tx_bytes, rx_packets, rx_bytes;
778 unsigned int start;
779
780 do {
4b02b58b 781 start = u64_stats_fetch_begin_irq(&tx_stats->syncp);
7eafd9b4 782 tx_packets = tx_stats->packets;
783 tx_bytes = tx_stats->bytes;
4b02b58b 784 } while (u64_stats_fetch_retry_irq(&tx_stats->syncp, start));
7eafd9b4 785
786 do {
4b02b58b 787 start = u64_stats_fetch_begin_irq(&rx_stats->syncp);
7eafd9b4 788 rx_packets = rx_stats->packets;
789 rx_bytes = rx_stats->bytes;
4b02b58b 790 } while (u64_stats_fetch_retry_irq(&rx_stats->syncp, start));
7eafd9b4 791
792 t->tx_bytes += tx_bytes;
793 t->tx_packets += tx_packets;
794 t->rx_bytes += rx_bytes;
795 t->rx_packets += rx_packets;
796 }
797
798 t->tx_dropped = net->stats.tx_dropped;
799 t->tx_errors = net->stats.tx_dropped;
800
801 t->rx_dropped = net->stats.rx_dropped;
802 t->rx_errors = net->stats.rx_errors;
803
804 return t;
805}
1ce09e89
HZ
806
807static int netvsc_set_mac_addr(struct net_device *ndev, void *p)
808{
809 struct net_device_context *ndevctx = netdev_priv(ndev);
810 struct hv_device *hdev = ndevctx->device_ctx;
811 struct sockaddr *addr = p;
9a4c831e 812 char save_adr[ETH_ALEN];
1ce09e89
HZ
813 unsigned char save_aatype;
814 int err;
815
816 memcpy(save_adr, ndev->dev_addr, ETH_ALEN);
817 save_aatype = ndev->addr_assign_type;
818
819 err = eth_mac_addr(ndev, p);
820 if (err != 0)
821 return err;
822
823 err = rndis_filter_set_device_mac(hdev, addr->sa_data);
824 if (err != 0) {
825 /* roll back to saved MAC */
826 memcpy(ndev->dev_addr, save_adr, ETH_ALEN);
827 ndev->addr_assign_type = save_aatype;
828 }
829
830 return err;
831}
832
316158fe
RW
833#ifdef CONFIG_NET_POLL_CONTROLLER
834static void netvsc_poll_controller(struct net_device *net)
835{
836 /* As netvsc_start_xmit() works synchronous we don't have to
837 * trigger anything here.
838 */
839}
840#endif
1ce09e89 841
f82f4ad7
SH
842static const struct ethtool_ops ethtool_ops = {
843 .get_drvinfo = netvsc_get_drvinfo,
f82f4ad7 844 .get_link = ethtool_op_get_link,
59995370 845 .get_channels = netvsc_get_channels,
f82f4ad7
SH
846};
847
df2fff28
GKH
848static const struct net_device_ops device_ops = {
849 .ndo_open = netvsc_open,
850 .ndo_stop = netvsc_close,
851 .ndo_start_xmit = netvsc_start_xmit,
afc4b13d 852 .ndo_set_rx_mode = netvsc_set_multicast_list,
4d447c9a 853 .ndo_change_mtu = netvsc_change_mtu,
b681b588 854 .ndo_validate_addr = eth_validate_addr,
1ce09e89 855 .ndo_set_mac_address = netvsc_set_mac_addr,
5b54dac8 856 .ndo_select_queue = netvsc_select_queue,
7eafd9b4 857 .ndo_get_stats64 = netvsc_get_stats64,
316158fe
RW
858#ifdef CONFIG_NET_POLL_CONTROLLER
859 .ndo_poll_controller = netvsc_poll_controller,
860#endif
df2fff28
GKH
861};
862
c996edcf
HZ
863/*
864 * Send GARP packet to network peers after migrations.
865 * After Quick Migration, the network is not immediately operational in the
866 * current context when receiving RNDIS_STATUS_MEDIA_CONNECT event. So, add
122a5f64 867 * another netif_notify_peers() into a delayed work, otherwise GARP packet
c996edcf 868 * will not be sent after quick migration, and cause network disconnection.
891de74d 869 * Also, we update the carrier status here.
c996edcf 870 */
891de74d 871static void netvsc_link_change(struct work_struct *w)
c996edcf
HZ
872{
873 struct net_device_context *ndev_ctx;
874 struct net_device *net;
2ddd5e5f 875 struct netvsc_device *net_device;
891de74d 876 struct rndis_device *rdev;
3a494e71
HZ
877 bool notify, refresh = false;
878 char *argv[] = { "/etc/init.d/network", "restart", NULL };
879 char *envp[] = { "HOME=/", "PATH=/sbin:/usr/sbin:/bin:/usr/bin", NULL };
891de74d
HZ
880
881 rtnl_lock();
c996edcf 882
122a5f64 883 ndev_ctx = container_of(w, struct net_device_context, dwork.work);
2ddd5e5f 884 net_device = hv_get_drvdata(ndev_ctx->device_ctx);
891de74d 885 rdev = net_device->extension;
2ddd5e5f 886 net = net_device->ndev;
891de74d
HZ
887
888 if (rdev->link_state) {
889 netif_carrier_off(net);
890 notify = false;
891 } else {
892 netif_carrier_on(net);
893 notify = true;
3a494e71
HZ
894 if (rdev->link_change) {
895 rdev->link_change = false;
896 refresh = true;
897 }
891de74d
HZ
898 }
899
900 rtnl_unlock();
901
3a494e71
HZ
902 if (refresh)
903 call_usermodehelper(argv[0], argv, envp, UMH_WAIT_EXEC);
904
891de74d
HZ
905 if (notify)
906 netdev_notify_peers(net);
c996edcf
HZ
907}
908
7eafd9b4 909static void netvsc_free_netdev(struct net_device *netdev)
910{
911 struct net_device_context *net_device_ctx = netdev_priv(netdev);
912
913 free_percpu(net_device_ctx->tx_stats);
914 free_percpu(net_device_ctx->rx_stats);
915 free_netdev(netdev);
916}
c996edcf 917
84946899
S
918static int netvsc_probe(struct hv_device *dev,
919 const struct hv_vmbus_device_id *dev_id)
df2fff28 920{
df2fff28
GKH
921 struct net_device *net = NULL;
922 struct net_device_context *net_device_ctx;
923 struct netvsc_device_info device_info;
5b54dac8 924 struct netvsc_device *nvdev;
df2fff28 925 int ret;
b08cc791 926 u32 max_needed_headroom;
df2fff28 927
5b54dac8
HZ
928 net = alloc_etherdev_mq(sizeof(struct net_device_context),
929 num_online_cpus());
df2fff28 930 if (!net)
51a805d0 931 return -ENOMEM;
df2fff28 932
b08cc791 933 max_needed_headroom = sizeof(struct hv_netvsc_packet) +
72151422 934 RNDIS_AND_PPI_SIZE;
b08cc791 935
1b07da51
HZ
936 netif_carrier_off(net);
937
df2fff28 938 net_device_ctx = netdev_priv(net);
9efd21e1 939 net_device_ctx->device_ctx = dev;
3f300ff4
SX
940 net_device_ctx->msg_enable = netif_msg_init(debug, default_msg);
941 if (netif_msg_probe(net_device_ctx))
942 netdev_dbg(net, "netvsc msg_enable: %d\n",
943 net_device_ctx->msg_enable);
944
7eafd9b4 945 net_device_ctx->tx_stats = netdev_alloc_pcpu_stats(struct netvsc_stats);
946 if (!net_device_ctx->tx_stats) {
947 free_netdev(net);
948 return -ENOMEM;
949 }
950 net_device_ctx->rx_stats = netdev_alloc_pcpu_stats(struct netvsc_stats);
951 if (!net_device_ctx->rx_stats) {
952 free_percpu(net_device_ctx->tx_stats);
953 free_netdev(net);
954 return -ENOMEM;
955 }
956
2ddd5e5f 957 hv_set_drvdata(dev, net);
891de74d 958 INIT_DELAYED_WORK(&net_device_ctx->dwork, netvsc_link_change);
792df872 959 INIT_WORK(&net_device_ctx->work, do_set_multicast);
df2fff28 960
df2fff28
GKH
961 net->netdev_ops = &device_ops;
962
77bf5487
KS
963 net->hw_features = NETIF_F_RXCSUM | NETIF_F_SG | NETIF_F_IP_CSUM |
964 NETIF_F_TSO;
08cd04bf 965 net->features = NETIF_F_HW_VLAN_CTAG_TX | NETIF_F_SG | NETIF_F_RXCSUM |
77bf5487 966 NETIF_F_IP_CSUM | NETIF_F_TSO;
6048718d 967
7ad24ea4 968 net->ethtool_ops = &ethtool_ops;
9efd21e1 969 SET_NETDEV_DEV(net, &dev->device);
df2fff28 970
b08cc791
KS
971 /*
972 * Request additional head room in the skb.
973 * We will use this space to build the rndis
974 * heaser and other state we need to maintain.
975 */
976 net->needed_headroom = max_needed_headroom;
977
692e084e
HZ
978 /* Notify the netvsc driver of the new device */
979 device_info.ring_size = ring_size;
e01ec219 980 device_info.max_num_vrss_chns = max_num_vrss_chns;
692e084e
HZ
981 ret = rndis_filter_device_add(dev, &device_info);
982 if (ret != 0) {
983 netdev_err(net, "unable to add netvsc device (ret %d)\n", ret);
7eafd9b4 984 netvsc_free_netdev(net);
2ddd5e5f 985 hv_set_drvdata(dev, NULL);
692e084e 986 return ret;
df2fff28 987 }
692e084e
HZ
988 memcpy(net->dev_addr, device_info.mac_adr, ETH_ALEN);
989
5b54dac8
HZ
990 nvdev = hv_get_drvdata(dev);
991 netif_set_real_num_tx_queues(net, nvdev->num_chn);
992 netif_set_real_num_rx_queues(net, nvdev->num_chn);
5b54dac8 993
a68f9614
HZ
994 ret = register_netdev(net);
995 if (ret != 0) {
996 pr_err("Unable to register netdev.\n");
997 rndis_filter_device_remove(dev);
7eafd9b4 998 netvsc_free_netdev(net);
1b07da51
HZ
999 } else {
1000 schedule_delayed_work(&net_device_ctx->dwork, 0);
a68f9614
HZ
1001 }
1002
df2fff28
GKH
1003 return ret;
1004}
1005
415b023a 1006static int netvsc_remove(struct hv_device *dev)
df2fff28 1007{
2ddd5e5f 1008 struct net_device *net;
122a5f64 1009 struct net_device_context *ndev_ctx;
2ddd5e5f
S
1010 struct netvsc_device *net_device;
1011
1012 net_device = hv_get_drvdata(dev);
1013 net = net_device->ndev;
df2fff28 1014
df2fff28 1015 if (net == NULL) {
415b023a 1016 dev_err(&dev->device, "No net device to remove\n");
df2fff28
GKH
1017 return 0;
1018 }
1019
4d447c9a
HZ
1020 net_device->start_remove = true;
1021
122a5f64
HZ
1022 ndev_ctx = netdev_priv(net);
1023 cancel_delayed_work_sync(&ndev_ctx->dwork);
792df872 1024 cancel_work_sync(&ndev_ctx->work);
122a5f64 1025
df2fff28 1026 /* Stop outbound asap */
0a282538 1027 netif_tx_disable(net);
df2fff28
GKH
1028
1029 unregister_netdev(net);
1030
1031 /*
1032 * Call to the vsc driver to let it know that the device is being
1033 * removed
1034 */
df06bcff 1035 rndis_filter_device_remove(dev);
df2fff28 1036
7eafd9b4 1037 netvsc_free_netdev(net);
df06bcff 1038 return 0;
df2fff28
GKH
1039}
1040
345c4cc3 1041static const struct hv_vmbus_device_id id_table[] = {
c45cf2d4 1042 /* Network guid */
8f505944 1043 { HV_NIC_GUID, },
c45cf2d4 1044 { },
345c4cc3
S
1045};
1046
1047MODULE_DEVICE_TABLE(vmbus, id_table);
1048
f1542a66 1049/* The one and only one */
fde0ef9b 1050static struct hv_driver netvsc_drv = {
d31b20fc 1051 .name = KBUILD_MODNAME,
345c4cc3 1052 .id_table = id_table,
fde0ef9b
S
1053 .probe = netvsc_probe,
1054 .remove = netvsc_remove,
d4890970 1055};
f1542a66 1056
a9869c94 1057static void __exit netvsc_drv_exit(void)
fceaf24a 1058{
768fa219 1059 vmbus_driver_unregister(&netvsc_drv);
fceaf24a
HJ
1060}
1061
1fde28cf 1062static int __init netvsc_drv_init(void)
df2fff28 1063{
fa85a6c2
HZ
1064 if (ring_size < RING_SIZE_MIN) {
1065 ring_size = RING_SIZE_MIN;
1066 pr_info("Increased ring_size to %d (min allowed)\n",
1067 ring_size);
1068 }
768fa219 1069 return vmbus_driver_register(&netvsc_drv);
df2fff28
GKH
1070}
1071
26c14cc1 1072MODULE_LICENSE("GPL");
7880fc54 1073MODULE_DESCRIPTION("Microsoft Hyper-V network driver");
fceaf24a 1074
1fde28cf 1075module_init(netvsc_drv_init);
a9869c94 1076module_exit(netvsc_drv_exit);