xref: /openbmc/linux/drivers/net/hyperv/netvsc.c (revision 23c2b932)
1 /*
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
14  * this program; if not, see <http://www.gnu.org/licenses/>.
15  *
16  * Authors:
17  *   Haiyang Zhang <haiyangz@microsoft.com>
18  *   Hank Janssen  <hjanssen@microsoft.com>
19  */
20 #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
21 
22 #include <linux/kernel.h>
23 #include <linux/sched.h>
24 #include <linux/wait.h>
25 #include <linux/mm.h>
26 #include <linux/delay.h>
27 #include <linux/io.h>
28 #include <linux/slab.h>
29 #include <linux/netdevice.h>
30 #include <linux/if_ether.h>
31 #include <linux/vmalloc.h>
32 #include <asm/sync_bitops.h>
33 
34 #include "hyperv_net.h"
35 
36 /*
37  * Switch the data path from the synthetic interface to the VF
38  * interface.
39  */
40 void netvsc_switch_datapath(struct net_device *ndev, bool vf)
41 {
42 	struct net_device_context *net_device_ctx = netdev_priv(ndev);
43 	struct hv_device *dev = net_device_ctx->device_ctx;
44 	struct netvsc_device *nv_dev = net_device_ctx->nvdev;
45 	struct nvsp_message *init_pkt = &nv_dev->channel_init_pkt;
46 
47 	memset(init_pkt, 0, sizeof(struct nvsp_message));
48 	init_pkt->hdr.msg_type = NVSP_MSG4_TYPE_SWITCH_DATA_PATH;
49 	if (vf)
50 		init_pkt->msg.v4_msg.active_dp.active_datapath =
51 			NVSP_DATAPATH_VF;
52 	else
53 		init_pkt->msg.v4_msg.active_dp.active_datapath =
54 			NVSP_DATAPATH_SYNTHETIC;
55 
56 	vmbus_sendpacket(dev->channel, init_pkt,
57 			       sizeof(struct nvsp_message),
58 			       (unsigned long)init_pkt,
59 			       VM_PKT_DATA_INBAND, 0);
60 }
61 
62 
63 static struct netvsc_device *alloc_net_device(void)
64 {
65 	struct netvsc_device *net_device;
66 
67 	net_device = kzalloc(sizeof(struct netvsc_device), GFP_KERNEL);
68 	if (!net_device)
69 		return NULL;
70 
71 	net_device->cb_buffer = kzalloc(NETVSC_PACKET_SIZE, GFP_KERNEL);
72 	if (!net_device->cb_buffer) {
73 		kfree(net_device);
74 		return NULL;
75 	}
76 
77 	init_waitqueue_head(&net_device->wait_drain);
78 	net_device->destroy = false;
79 	atomic_set(&net_device->open_cnt, 0);
80 	atomic_set(&net_device->vf_use_cnt, 0);
81 	net_device->max_pkt = RNDIS_MAX_PKT_DEFAULT;
82 	net_device->pkt_align = RNDIS_PKT_ALIGN_DEFAULT;
83 
84 	net_device->vf_netdev = NULL;
85 	net_device->vf_inject = false;
86 
87 	return net_device;
88 }
89 
90 static void free_netvsc_device(struct netvsc_device *nvdev)
91 {
92 	kfree(nvdev->cb_buffer);
93 	kfree(nvdev);
94 }
95 
96 static struct netvsc_device *get_outbound_net_device(struct hv_device *device)
97 {
98 	struct net_device *ndev = hv_get_drvdata(device);
99 	struct net_device_context *net_device_ctx = netdev_priv(ndev);
100 	struct netvsc_device *net_device = net_device_ctx->nvdev;
101 
102 	if (net_device && net_device->destroy)
103 		net_device = NULL;
104 
105 	return net_device;
106 }
107 
108 static struct netvsc_device *get_inbound_net_device(struct hv_device *device)
109 {
110 	struct net_device *ndev = hv_get_drvdata(device);
111 	struct net_device_context *net_device_ctx = netdev_priv(ndev);
112 	struct netvsc_device *net_device = net_device_ctx->nvdev;
113 
114 	if (!net_device)
115 		goto get_in_err;
116 
117 	if (net_device->destroy &&
118 		atomic_read(&net_device->num_outstanding_sends) == 0)
119 		net_device = NULL;
120 
121 get_in_err:
122 	return net_device;
123 }
124 
125 
126 static int netvsc_destroy_buf(struct hv_device *device)
127 {
128 	struct nvsp_message *revoke_packet;
129 	int ret = 0;
130 	struct net_device *ndev = hv_get_drvdata(device);
131 	struct net_device_context *net_device_ctx = netdev_priv(ndev);
132 	struct netvsc_device *net_device = net_device_ctx->nvdev;
133 
134 	/*
135 	 * If we got a section count, it means we received a
136 	 * SendReceiveBufferComplete msg (ie sent
137 	 * NvspMessage1TypeSendReceiveBuffer msg) therefore, we need
138 	 * to send a revoke msg here
139 	 */
140 	if (net_device->recv_section_cnt) {
141 		/* Send the revoke receive buffer */
142 		revoke_packet = &net_device->revoke_packet;
143 		memset(revoke_packet, 0, sizeof(struct nvsp_message));
144 
145 		revoke_packet->hdr.msg_type =
146 			NVSP_MSG1_TYPE_REVOKE_RECV_BUF;
147 		revoke_packet->msg.v1_msg.
148 		revoke_recv_buf.id = NETVSC_RECEIVE_BUFFER_ID;
149 
150 		ret = vmbus_sendpacket(device->channel,
151 				       revoke_packet,
152 				       sizeof(struct nvsp_message),
153 				       (unsigned long)revoke_packet,
154 				       VM_PKT_DATA_INBAND, 0);
155 		/*
156 		 * If we failed here, we might as well return and
157 		 * have a leak rather than continue and a bugchk
158 		 */
159 		if (ret != 0) {
160 			netdev_err(ndev, "unable to send "
161 				"revoke receive buffer to netvsp\n");
162 			return ret;
163 		}
164 	}
165 
166 	/* Teardown the gpadl on the vsp end */
167 	if (net_device->recv_buf_gpadl_handle) {
168 		ret = vmbus_teardown_gpadl(device->channel,
169 					   net_device->recv_buf_gpadl_handle);
170 
171 		/* If we failed here, we might as well return and have a leak
172 		 * rather than continue and a bugchk
173 		 */
174 		if (ret != 0) {
175 			netdev_err(ndev,
176 				   "unable to teardown receive buffer's gpadl\n");
177 			return ret;
178 		}
179 		net_device->recv_buf_gpadl_handle = 0;
180 	}
181 
182 	if (net_device->recv_buf) {
183 		/* Free up the receive buffer */
184 		vfree(net_device->recv_buf);
185 		net_device->recv_buf = NULL;
186 	}
187 
188 	if (net_device->recv_section) {
189 		net_device->recv_section_cnt = 0;
190 		kfree(net_device->recv_section);
191 		net_device->recv_section = NULL;
192 	}
193 
194 	/* Deal with the send buffer we may have setup.
195 	 * If we got a  send section size, it means we received a
196 	 * NVSP_MSG1_TYPE_SEND_SEND_BUF_COMPLETE msg (ie sent
197 	 * NVSP_MSG1_TYPE_SEND_SEND_BUF msg) therefore, we need
198 	 * to send a revoke msg here
199 	 */
200 	if (net_device->send_section_size) {
201 		/* Send the revoke receive buffer */
202 		revoke_packet = &net_device->revoke_packet;
203 		memset(revoke_packet, 0, sizeof(struct nvsp_message));
204 
205 		revoke_packet->hdr.msg_type =
206 			NVSP_MSG1_TYPE_REVOKE_SEND_BUF;
207 		revoke_packet->msg.v1_msg.revoke_send_buf.id =
208 			NETVSC_SEND_BUFFER_ID;
209 
210 		ret = vmbus_sendpacket(device->channel,
211 				       revoke_packet,
212 				       sizeof(struct nvsp_message),
213 				       (unsigned long)revoke_packet,
214 				       VM_PKT_DATA_INBAND, 0);
215 		/* If we failed here, we might as well return and
216 		 * have a leak rather than continue and a bugchk
217 		 */
218 		if (ret != 0) {
219 			netdev_err(ndev, "unable to send "
220 				   "revoke send buffer to netvsp\n");
221 			return ret;
222 		}
223 	}
224 	/* Teardown the gpadl on the vsp end */
225 	if (net_device->send_buf_gpadl_handle) {
226 		ret = vmbus_teardown_gpadl(device->channel,
227 					   net_device->send_buf_gpadl_handle);
228 
229 		/* If we failed here, we might as well return and have a leak
230 		 * rather than continue and a bugchk
231 		 */
232 		if (ret != 0) {
233 			netdev_err(ndev,
234 				   "unable to teardown send buffer's gpadl\n");
235 			return ret;
236 		}
237 		net_device->send_buf_gpadl_handle = 0;
238 	}
239 	if (net_device->send_buf) {
240 		/* Free up the send buffer */
241 		vfree(net_device->send_buf);
242 		net_device->send_buf = NULL;
243 	}
244 	kfree(net_device->send_section_map);
245 
246 	return ret;
247 }
248 
249 static int netvsc_init_buf(struct hv_device *device)
250 {
251 	int ret = 0;
252 	unsigned long t;
253 	struct netvsc_device *net_device;
254 	struct nvsp_message *init_packet;
255 	struct net_device *ndev;
256 	int node;
257 
258 	net_device = get_outbound_net_device(device);
259 	if (!net_device)
260 		return -ENODEV;
261 	ndev = hv_get_drvdata(device);
262 
263 	node = cpu_to_node(device->channel->target_cpu);
264 	net_device->recv_buf = vzalloc_node(net_device->recv_buf_size, node);
265 	if (!net_device->recv_buf)
266 		net_device->recv_buf = vzalloc(net_device->recv_buf_size);
267 
268 	if (!net_device->recv_buf) {
269 		netdev_err(ndev, "unable to allocate receive "
270 			"buffer of size %d\n", net_device->recv_buf_size);
271 		ret = -ENOMEM;
272 		goto cleanup;
273 	}
274 
275 	/*
276 	 * Establish the gpadl handle for this buffer on this
277 	 * channel.  Note: This call uses the vmbus connection rather
278 	 * than the channel to establish the gpadl handle.
279 	 */
280 	ret = vmbus_establish_gpadl(device->channel, net_device->recv_buf,
281 				    net_device->recv_buf_size,
282 				    &net_device->recv_buf_gpadl_handle);
283 	if (ret != 0) {
284 		netdev_err(ndev,
285 			"unable to establish receive buffer's gpadl\n");
286 		goto cleanup;
287 	}
288 
289 
290 	/* Notify the NetVsp of the gpadl handle */
291 	init_packet = &net_device->channel_init_pkt;
292 
293 	memset(init_packet, 0, sizeof(struct nvsp_message));
294 
295 	init_packet->hdr.msg_type = NVSP_MSG1_TYPE_SEND_RECV_BUF;
296 	init_packet->msg.v1_msg.send_recv_buf.
297 		gpadl_handle = net_device->recv_buf_gpadl_handle;
298 	init_packet->msg.v1_msg.
299 		send_recv_buf.id = NETVSC_RECEIVE_BUFFER_ID;
300 
301 	/* Send the gpadl notification request */
302 	ret = vmbus_sendpacket(device->channel, init_packet,
303 			       sizeof(struct nvsp_message),
304 			       (unsigned long)init_packet,
305 			       VM_PKT_DATA_INBAND,
306 			       VMBUS_DATA_PACKET_FLAG_COMPLETION_REQUESTED);
307 	if (ret != 0) {
308 		netdev_err(ndev,
309 			"unable to send receive buffer's gpadl to netvsp\n");
310 		goto cleanup;
311 	}
312 
313 	t = wait_for_completion_timeout(&net_device->channel_init_wait, 5*HZ);
314 	BUG_ON(t == 0);
315 
316 
317 	/* Check the response */
318 	if (init_packet->msg.v1_msg.
319 	    send_recv_buf_complete.status != NVSP_STAT_SUCCESS) {
320 		netdev_err(ndev, "Unable to complete receive buffer "
321 			   "initialization with NetVsp - status %d\n",
322 			   init_packet->msg.v1_msg.
323 			   send_recv_buf_complete.status);
324 		ret = -EINVAL;
325 		goto cleanup;
326 	}
327 
328 	/* Parse the response */
329 
330 	net_device->recv_section_cnt = init_packet->msg.
331 		v1_msg.send_recv_buf_complete.num_sections;
332 
333 	net_device->recv_section = kmemdup(
334 		init_packet->msg.v1_msg.send_recv_buf_complete.sections,
335 		net_device->recv_section_cnt *
336 		sizeof(struct nvsp_1_receive_buffer_section),
337 		GFP_KERNEL);
338 	if (net_device->recv_section == NULL) {
339 		ret = -EINVAL;
340 		goto cleanup;
341 	}
342 
343 	/*
344 	 * For 1st release, there should only be 1 section that represents the
345 	 * entire receive buffer
346 	 */
347 	if (net_device->recv_section_cnt != 1 ||
348 	    net_device->recv_section->offset != 0) {
349 		ret = -EINVAL;
350 		goto cleanup;
351 	}
352 
353 	/* Now setup the send buffer.
354 	 */
355 	net_device->send_buf = vzalloc_node(net_device->send_buf_size, node);
356 	if (!net_device->send_buf)
357 		net_device->send_buf = vzalloc(net_device->send_buf_size);
358 	if (!net_device->send_buf) {
359 		netdev_err(ndev, "unable to allocate send "
360 			   "buffer of size %d\n", net_device->send_buf_size);
361 		ret = -ENOMEM;
362 		goto cleanup;
363 	}
364 
365 	/* Establish the gpadl handle for this buffer on this
366 	 * channel.  Note: This call uses the vmbus connection rather
367 	 * than the channel to establish the gpadl handle.
368 	 */
369 	ret = vmbus_establish_gpadl(device->channel, net_device->send_buf,
370 				    net_device->send_buf_size,
371 				    &net_device->send_buf_gpadl_handle);
372 	if (ret != 0) {
373 		netdev_err(ndev,
374 			   "unable to establish send buffer's gpadl\n");
375 		goto cleanup;
376 	}
377 
378 	/* Notify the NetVsp of the gpadl handle */
379 	init_packet = &net_device->channel_init_pkt;
380 	memset(init_packet, 0, sizeof(struct nvsp_message));
381 	init_packet->hdr.msg_type = NVSP_MSG1_TYPE_SEND_SEND_BUF;
382 	init_packet->msg.v1_msg.send_send_buf.gpadl_handle =
383 		net_device->send_buf_gpadl_handle;
384 	init_packet->msg.v1_msg.send_send_buf.id = NETVSC_SEND_BUFFER_ID;
385 
386 	/* Send the gpadl notification request */
387 	ret = vmbus_sendpacket(device->channel, init_packet,
388 			       sizeof(struct nvsp_message),
389 			       (unsigned long)init_packet,
390 			       VM_PKT_DATA_INBAND,
391 			       VMBUS_DATA_PACKET_FLAG_COMPLETION_REQUESTED);
392 	if (ret != 0) {
393 		netdev_err(ndev,
394 			   "unable to send send buffer's gpadl to netvsp\n");
395 		goto cleanup;
396 	}
397 
398 	t = wait_for_completion_timeout(&net_device->channel_init_wait, 5*HZ);
399 	BUG_ON(t == 0);
400 
401 	/* Check the response */
402 	if (init_packet->msg.v1_msg.
403 	    send_send_buf_complete.status != NVSP_STAT_SUCCESS) {
404 		netdev_err(ndev, "Unable to complete send buffer "
405 			   "initialization with NetVsp - status %d\n",
406 			   init_packet->msg.v1_msg.
407 			   send_send_buf_complete.status);
408 		ret = -EINVAL;
409 		goto cleanup;
410 	}
411 
412 	/* Parse the response */
413 	net_device->send_section_size = init_packet->msg.
414 				v1_msg.send_send_buf_complete.section_size;
415 
416 	/* Section count is simply the size divided by the section size.
417 	 */
418 	net_device->send_section_cnt =
419 		net_device->send_buf_size/net_device->send_section_size;
420 
421 	dev_info(&device->device, "Send section size: %d, Section count:%d\n",
422 		 net_device->send_section_size, net_device->send_section_cnt);
423 
424 	/* Setup state for managing the send buffer. */
425 	net_device->map_words = DIV_ROUND_UP(net_device->send_section_cnt,
426 					     BITS_PER_LONG);
427 
428 	net_device->send_section_map =
429 		kzalloc(net_device->map_words * sizeof(ulong), GFP_KERNEL);
430 	if (net_device->send_section_map == NULL) {
431 		ret = -ENOMEM;
432 		goto cleanup;
433 	}
434 
435 	goto exit;
436 
437 cleanup:
438 	netvsc_destroy_buf(device);
439 
440 exit:
441 	return ret;
442 }
443 
444 
445 /* Negotiate NVSP protocol version */
446 static int negotiate_nvsp_ver(struct hv_device *device,
447 			      struct netvsc_device *net_device,
448 			      struct nvsp_message *init_packet,
449 			      u32 nvsp_ver)
450 {
451 	struct net_device *ndev = hv_get_drvdata(device);
452 	int ret;
453 	unsigned long t;
454 
455 	memset(init_packet, 0, sizeof(struct nvsp_message));
456 	init_packet->hdr.msg_type = NVSP_MSG_TYPE_INIT;
457 	init_packet->msg.init_msg.init.min_protocol_ver = nvsp_ver;
458 	init_packet->msg.init_msg.init.max_protocol_ver = nvsp_ver;
459 
460 	/* Send the init request */
461 	ret = vmbus_sendpacket(device->channel, init_packet,
462 			       sizeof(struct nvsp_message),
463 			       (unsigned long)init_packet,
464 			       VM_PKT_DATA_INBAND,
465 			       VMBUS_DATA_PACKET_FLAG_COMPLETION_REQUESTED);
466 
467 	if (ret != 0)
468 		return ret;
469 
470 	t = wait_for_completion_timeout(&net_device->channel_init_wait, 5*HZ);
471 
472 	if (t == 0)
473 		return -ETIMEDOUT;
474 
475 	if (init_packet->msg.init_msg.init_complete.status !=
476 	    NVSP_STAT_SUCCESS)
477 		return -EINVAL;
478 
479 	if (nvsp_ver == NVSP_PROTOCOL_VERSION_1)
480 		return 0;
481 
482 	/* NVSPv2 or later: Send NDIS config */
483 	memset(init_packet, 0, sizeof(struct nvsp_message));
484 	init_packet->hdr.msg_type = NVSP_MSG2_TYPE_SEND_NDIS_CONFIG;
485 	init_packet->msg.v2_msg.send_ndis_config.mtu = ndev->mtu + ETH_HLEN;
486 	init_packet->msg.v2_msg.send_ndis_config.capability.ieee8021q = 1;
487 
488 	if (nvsp_ver >= NVSP_PROTOCOL_VERSION_5)
489 		init_packet->msg.v2_msg.send_ndis_config.capability.sriov = 1;
490 
491 	ret = vmbus_sendpacket(device->channel, init_packet,
492 				sizeof(struct nvsp_message),
493 				(unsigned long)init_packet,
494 				VM_PKT_DATA_INBAND, 0);
495 
496 	return ret;
497 }
498 
499 static int netvsc_connect_vsp(struct hv_device *device)
500 {
501 	int ret;
502 	struct netvsc_device *net_device;
503 	struct nvsp_message *init_packet;
504 	int ndis_version;
505 	u32 ver_list[] = { NVSP_PROTOCOL_VERSION_1, NVSP_PROTOCOL_VERSION_2,
506 		NVSP_PROTOCOL_VERSION_4, NVSP_PROTOCOL_VERSION_5 };
507 	int i, num_ver = 4; /* number of different NVSP versions */
508 
509 	net_device = get_outbound_net_device(device);
510 	if (!net_device)
511 		return -ENODEV;
512 
513 	init_packet = &net_device->channel_init_pkt;
514 
515 	/* Negotiate the latest NVSP protocol supported */
516 	for (i = num_ver - 1; i >= 0; i--)
517 		if (negotiate_nvsp_ver(device, net_device, init_packet,
518 				       ver_list[i])  == 0) {
519 			net_device->nvsp_version = ver_list[i];
520 			break;
521 		}
522 
523 	if (i < 0) {
524 		ret = -EPROTO;
525 		goto cleanup;
526 	}
527 
528 	pr_debug("Negotiated NVSP version:%x\n", net_device->nvsp_version);
529 
530 	/* Send the ndis version */
531 	memset(init_packet, 0, sizeof(struct nvsp_message));
532 
533 	if (net_device->nvsp_version <= NVSP_PROTOCOL_VERSION_4)
534 		ndis_version = 0x00060001;
535 	else
536 		ndis_version = 0x0006001e;
537 
538 	init_packet->hdr.msg_type = NVSP_MSG1_TYPE_SEND_NDIS_VER;
539 	init_packet->msg.v1_msg.
540 		send_ndis_ver.ndis_major_ver =
541 				(ndis_version & 0xFFFF0000) >> 16;
542 	init_packet->msg.v1_msg.
543 		send_ndis_ver.ndis_minor_ver =
544 				ndis_version & 0xFFFF;
545 
546 	/* Send the init request */
547 	ret = vmbus_sendpacket(device->channel, init_packet,
548 				sizeof(struct nvsp_message),
549 				(unsigned long)init_packet,
550 				VM_PKT_DATA_INBAND, 0);
551 	if (ret != 0)
552 		goto cleanup;
553 
554 	/* Post the big receive buffer to NetVSP */
555 	if (net_device->nvsp_version <= NVSP_PROTOCOL_VERSION_2)
556 		net_device->recv_buf_size = NETVSC_RECEIVE_BUFFER_SIZE_LEGACY;
557 	else
558 		net_device->recv_buf_size = NETVSC_RECEIVE_BUFFER_SIZE;
559 	net_device->send_buf_size = NETVSC_SEND_BUFFER_SIZE;
560 
561 	ret = netvsc_init_buf(device);
562 
563 cleanup:
564 	return ret;
565 }
566 
567 static void netvsc_disconnect_vsp(struct hv_device *device)
568 {
569 	netvsc_destroy_buf(device);
570 }
571 
572 /*
573  * netvsc_device_remove - Callback when the root bus device is removed
574  */
575 int netvsc_device_remove(struct hv_device *device)
576 {
577 	struct net_device *ndev = hv_get_drvdata(device);
578 	struct net_device_context *net_device_ctx = netdev_priv(ndev);
579 	struct netvsc_device *net_device = net_device_ctx->nvdev;
580 
581 	netvsc_disconnect_vsp(device);
582 
583 	net_device_ctx->nvdev = NULL;
584 
585 	/*
586 	 * At this point, no one should be accessing net_device
587 	 * except in here
588 	 */
589 	dev_notice(&device->device, "net device safe to remove\n");
590 
591 	/* Now, we can close the channel safely */
592 	vmbus_close(device->channel);
593 
594 	/* Release all resources */
595 	vfree(net_device->sub_cb_buf);
596 	free_netvsc_device(net_device);
597 	return 0;
598 }
599 
600 
601 #define RING_AVAIL_PERCENT_HIWATER 20
602 #define RING_AVAIL_PERCENT_LOWATER 10
603 
604 /*
605  * Get the percentage of available bytes to write in the ring.
606  * The return value is in range from 0 to 100.
607  */
608 static inline u32 hv_ringbuf_avail_percent(
609 		struct hv_ring_buffer_info *ring_info)
610 {
611 	u32 avail_read, avail_write;
612 
613 	hv_get_ringbuffer_availbytes(ring_info, &avail_read, &avail_write);
614 
615 	return avail_write * 100 / ring_info->ring_datasize;
616 }
617 
618 static inline void netvsc_free_send_slot(struct netvsc_device *net_device,
619 					 u32 index)
620 {
621 	sync_change_bit(index, net_device->send_section_map);
622 }
623 
624 static void netvsc_send_completion(struct netvsc_device *net_device,
625 				   struct vmbus_channel *incoming_channel,
626 				   struct hv_device *device,
627 				   struct vmpacket_descriptor *packet)
628 {
629 	struct nvsp_message *nvsp_packet;
630 	struct hv_netvsc_packet *nvsc_packet;
631 	struct net_device *ndev = hv_get_drvdata(device);
632 	struct net_device_context *net_device_ctx = netdev_priv(ndev);
633 	u32 send_index;
634 	struct sk_buff *skb;
635 
636 	nvsp_packet = (struct nvsp_message *)((unsigned long)packet +
637 			(packet->offset8 << 3));
638 
639 	if ((nvsp_packet->hdr.msg_type == NVSP_MSG_TYPE_INIT_COMPLETE) ||
640 	    (nvsp_packet->hdr.msg_type ==
641 	     NVSP_MSG1_TYPE_SEND_RECV_BUF_COMPLETE) ||
642 	    (nvsp_packet->hdr.msg_type ==
643 	     NVSP_MSG1_TYPE_SEND_SEND_BUF_COMPLETE) ||
644 	    (nvsp_packet->hdr.msg_type ==
645 	     NVSP_MSG5_TYPE_SUBCHANNEL)) {
646 		/* Copy the response back */
647 		memcpy(&net_device->channel_init_pkt, nvsp_packet,
648 		       sizeof(struct nvsp_message));
649 		complete(&net_device->channel_init_wait);
650 	} else if (nvsp_packet->hdr.msg_type ==
651 		   NVSP_MSG1_TYPE_SEND_RNDIS_PKT_COMPLETE) {
652 		int num_outstanding_sends;
653 		u16 q_idx = 0;
654 		struct vmbus_channel *channel = device->channel;
655 		int queue_sends;
656 
657 		/* Get the send context */
658 		skb = (struct sk_buff *)(unsigned long)packet->trans_id;
659 
660 		/* Notify the layer above us */
661 		if (skb) {
662 			nvsc_packet = (struct hv_netvsc_packet *) skb->cb;
663 			send_index = nvsc_packet->send_buf_index;
664 			if (send_index != NETVSC_INVALID_INDEX)
665 				netvsc_free_send_slot(net_device, send_index);
666 			q_idx = nvsc_packet->q_idx;
667 			channel = incoming_channel;
668 			dev_kfree_skb_any(skb);
669 		}
670 
671 		num_outstanding_sends =
672 			atomic_dec_return(&net_device->num_outstanding_sends);
673 		queue_sends = atomic_dec_return(&net_device->
674 						queue_sends[q_idx]);
675 
676 		if (net_device->destroy && num_outstanding_sends == 0)
677 			wake_up(&net_device->wait_drain);
678 
679 		if (netif_tx_queue_stopped(netdev_get_tx_queue(ndev, q_idx)) &&
680 		    !net_device_ctx->start_remove &&
681 		    (hv_ringbuf_avail_percent(&channel->outbound) >
682 		     RING_AVAIL_PERCENT_HIWATER || queue_sends < 1))
683 				netif_tx_wake_queue(netdev_get_tx_queue(
684 						    ndev, q_idx));
685 	} else {
686 		netdev_err(ndev, "Unknown send completion packet type- "
687 			   "%d received!!\n", nvsp_packet->hdr.msg_type);
688 	}
689 
690 }
691 
692 static u32 netvsc_get_next_send_section(struct netvsc_device *net_device)
693 {
694 	unsigned long index;
695 	u32 max_words = net_device->map_words;
696 	unsigned long *map_addr = (unsigned long *)net_device->send_section_map;
697 	u32 section_cnt = net_device->send_section_cnt;
698 	int ret_val = NETVSC_INVALID_INDEX;
699 	int i;
700 	int prev_val;
701 
702 	for (i = 0; i < max_words; i++) {
703 		if (!~(map_addr[i]))
704 			continue;
705 		index = ffz(map_addr[i]);
706 		prev_val = sync_test_and_set_bit(index, &map_addr[i]);
707 		if (prev_val)
708 			continue;
709 		if ((index + (i * BITS_PER_LONG)) >= section_cnt)
710 			break;
711 		ret_val = (index + (i * BITS_PER_LONG));
712 		break;
713 	}
714 	return ret_val;
715 }
716 
717 static u32 netvsc_copy_to_send_buf(struct netvsc_device *net_device,
718 				   unsigned int section_index,
719 				   u32 pend_size,
720 				   struct hv_netvsc_packet *packet,
721 				   struct rndis_message *rndis_msg,
722 				   struct hv_page_buffer **pb,
723 				   struct sk_buff *skb)
724 {
725 	char *start = net_device->send_buf;
726 	char *dest = start + (section_index * net_device->send_section_size)
727 		     + pend_size;
728 	int i;
729 	bool is_data_pkt = (skb != NULL) ? true : false;
730 	bool xmit_more = (skb != NULL) ? skb->xmit_more : false;
731 	u32 msg_size = 0;
732 	u32 padding = 0;
733 	u32 remain = packet->total_data_buflen % net_device->pkt_align;
734 	u32 page_count = packet->cp_partial ? packet->rmsg_pgcnt :
735 		packet->page_buf_cnt;
736 
737 	/* Add padding */
738 	if (is_data_pkt && xmit_more && remain &&
739 	    !packet->cp_partial) {
740 		padding = net_device->pkt_align - remain;
741 		rndis_msg->msg_len += padding;
742 		packet->total_data_buflen += padding;
743 	}
744 
745 	for (i = 0; i < page_count; i++) {
746 		char *src = phys_to_virt((*pb)[i].pfn << PAGE_SHIFT);
747 		u32 offset = (*pb)[i].offset;
748 		u32 len = (*pb)[i].len;
749 
750 		memcpy(dest, (src + offset), len);
751 		msg_size += len;
752 		dest += len;
753 	}
754 
755 	if (padding) {
756 		memset(dest, 0, padding);
757 		msg_size += padding;
758 	}
759 
760 	return msg_size;
761 }
762 
763 static inline int netvsc_send_pkt(
764 	struct hv_device *device,
765 	struct hv_netvsc_packet *packet,
766 	struct netvsc_device *net_device,
767 	struct hv_page_buffer **pb,
768 	struct sk_buff *skb)
769 {
770 	struct nvsp_message nvmsg;
771 	u16 q_idx = packet->q_idx;
772 	struct vmbus_channel *out_channel = net_device->chn_table[q_idx];
773 	struct net_device *ndev = hv_get_drvdata(device);
774 	u64 req_id;
775 	int ret;
776 	struct hv_page_buffer *pgbuf;
777 	u32 ring_avail = hv_ringbuf_avail_percent(&out_channel->outbound);
778 	bool xmit_more = (skb != NULL) ? skb->xmit_more : false;
779 
780 	nvmsg.hdr.msg_type = NVSP_MSG1_TYPE_SEND_RNDIS_PKT;
781 	if (skb != NULL) {
782 		/* 0 is RMC_DATA; */
783 		nvmsg.msg.v1_msg.send_rndis_pkt.channel_type = 0;
784 	} else {
785 		/* 1 is RMC_CONTROL; */
786 		nvmsg.msg.v1_msg.send_rndis_pkt.channel_type = 1;
787 	}
788 
789 	nvmsg.msg.v1_msg.send_rndis_pkt.send_buf_section_index =
790 		packet->send_buf_index;
791 	if (packet->send_buf_index == NETVSC_INVALID_INDEX)
792 		nvmsg.msg.v1_msg.send_rndis_pkt.send_buf_section_size = 0;
793 	else
794 		nvmsg.msg.v1_msg.send_rndis_pkt.send_buf_section_size =
795 			packet->total_data_buflen;
796 
797 	req_id = (ulong)skb;
798 
799 	if (out_channel->rescind)
800 		return -ENODEV;
801 
802 	/*
803 	 * It is possible that once we successfully place this packet
804 	 * on the ringbuffer, we may stop the queue. In that case, we want
805 	 * to notify the host independent of the xmit_more flag. We don't
806 	 * need to be precise here; in the worst case we may signal the host
807 	 * unnecessarily.
808 	 */
809 	if (ring_avail < (RING_AVAIL_PERCENT_LOWATER + 1))
810 		xmit_more = false;
811 
812 	if (packet->page_buf_cnt) {
813 		pgbuf = packet->cp_partial ? (*pb) +
814 			packet->rmsg_pgcnt : (*pb);
815 		ret = vmbus_sendpacket_pagebuffer_ctl(out_channel,
816 						      pgbuf,
817 						      packet->page_buf_cnt,
818 						      &nvmsg,
819 						      sizeof(struct nvsp_message),
820 						      req_id,
821 						      VMBUS_DATA_PACKET_FLAG_COMPLETION_REQUESTED,
822 						      !xmit_more);
823 	} else {
824 		ret = vmbus_sendpacket_ctl(out_channel, &nvmsg,
825 					   sizeof(struct nvsp_message),
826 					   req_id,
827 					   VM_PKT_DATA_INBAND,
828 					   VMBUS_DATA_PACKET_FLAG_COMPLETION_REQUESTED,
829 					   !xmit_more);
830 	}
831 
832 	if (ret == 0) {
833 		atomic_inc(&net_device->num_outstanding_sends);
834 		atomic_inc(&net_device->queue_sends[q_idx]);
835 
836 		if (ring_avail < RING_AVAIL_PERCENT_LOWATER) {
837 			netif_tx_stop_queue(netdev_get_tx_queue(ndev, q_idx));
838 
839 			if (atomic_read(&net_device->
840 				queue_sends[q_idx]) < 1)
841 				netif_tx_wake_queue(netdev_get_tx_queue(
842 						    ndev, q_idx));
843 		}
844 	} else if (ret == -EAGAIN) {
845 		netif_tx_stop_queue(netdev_get_tx_queue(
846 				    ndev, q_idx));
847 		if (atomic_read(&net_device->queue_sends[q_idx]) < 1) {
848 			netif_tx_wake_queue(netdev_get_tx_queue(
849 					    ndev, q_idx));
850 			ret = -ENOSPC;
851 		}
852 	} else {
853 		netdev_err(ndev, "Unable to send packet %p ret %d\n",
854 			   packet, ret);
855 	}
856 
857 	return ret;
858 }
859 
860 /* Move packet out of multi send data (msd), and clear msd */
861 static inline void move_pkt_msd(struct hv_netvsc_packet **msd_send,
862 				struct sk_buff **msd_skb,
863 				struct multi_send_data *msdp)
864 {
865 	*msd_skb = msdp->skb;
866 	*msd_send = msdp->pkt;
867 	msdp->skb = NULL;
868 	msdp->pkt = NULL;
869 	msdp->count = 0;
870 }
871 
872 int netvsc_send(struct hv_device *device,
873 		struct hv_netvsc_packet *packet,
874 		struct rndis_message *rndis_msg,
875 		struct hv_page_buffer **pb,
876 		struct sk_buff *skb)
877 {
878 	struct netvsc_device *net_device;
879 	int ret = 0, m_ret = 0;
880 	struct vmbus_channel *out_channel;
881 	u16 q_idx = packet->q_idx;
882 	u32 pktlen = packet->total_data_buflen, msd_len = 0;
883 	unsigned int section_index = NETVSC_INVALID_INDEX;
884 	struct multi_send_data *msdp;
885 	struct hv_netvsc_packet *msd_send = NULL, *cur_send = NULL;
886 	struct sk_buff *msd_skb = NULL;
887 	bool try_batch;
888 	bool xmit_more = (skb != NULL) ? skb->xmit_more : false;
889 
890 	net_device = get_outbound_net_device(device);
891 	if (!net_device)
892 		return -ENODEV;
893 
894 	out_channel = net_device->chn_table[q_idx];
895 
896 	packet->send_buf_index = NETVSC_INVALID_INDEX;
897 	packet->cp_partial = false;
898 
899 	/* Send control message directly without accessing msd (Multi-Send
900 	 * Data) field which may be changed during data packet processing.
901 	 */
902 	if (!skb) {
903 		cur_send = packet;
904 		goto send_now;
905 	}
906 
907 	msdp = &net_device->msd[q_idx];
908 
909 	/* batch packets in send buffer if possible */
910 	if (msdp->pkt)
911 		msd_len = msdp->pkt->total_data_buflen;
912 
913 	try_batch = (skb != NULL) && msd_len > 0 && msdp->count <
914 		    net_device->max_pkt;
915 
916 	if (try_batch && msd_len + pktlen + net_device->pkt_align <
917 	    net_device->send_section_size) {
918 		section_index = msdp->pkt->send_buf_index;
919 
920 	} else if (try_batch && msd_len + packet->rmsg_size <
921 		   net_device->send_section_size) {
922 		section_index = msdp->pkt->send_buf_index;
923 		packet->cp_partial = true;
924 
925 	} else if ((skb != NULL) && pktlen + net_device->pkt_align <
926 		   net_device->send_section_size) {
927 		section_index = netvsc_get_next_send_section(net_device);
928 		if (section_index != NETVSC_INVALID_INDEX) {
929 			move_pkt_msd(&msd_send, &msd_skb, msdp);
930 			msd_len = 0;
931 		}
932 	}
933 
934 	if (section_index != NETVSC_INVALID_INDEX) {
935 		netvsc_copy_to_send_buf(net_device,
936 					section_index, msd_len,
937 					packet, rndis_msg, pb, skb);
938 
939 		packet->send_buf_index = section_index;
940 
941 		if (packet->cp_partial) {
942 			packet->page_buf_cnt -= packet->rmsg_pgcnt;
943 			packet->total_data_buflen = msd_len + packet->rmsg_size;
944 		} else {
945 			packet->page_buf_cnt = 0;
946 			packet->total_data_buflen += msd_len;
947 		}
948 
949 		if (msdp->skb)
950 			dev_kfree_skb_any(msdp->skb);
951 
952 		if (xmit_more && !packet->cp_partial) {
953 			msdp->skb = skb;
954 			msdp->pkt = packet;
955 			msdp->count++;
956 		} else {
957 			cur_send = packet;
958 			msdp->skb = NULL;
959 			msdp->pkt = NULL;
960 			msdp->count = 0;
961 		}
962 	} else {
963 		move_pkt_msd(&msd_send, &msd_skb, msdp);
964 		cur_send = packet;
965 	}
966 
967 	if (msd_send) {
968 		m_ret = netvsc_send_pkt(device, msd_send, net_device,
969 					NULL, msd_skb);
970 
971 		if (m_ret != 0) {
972 			netvsc_free_send_slot(net_device,
973 					      msd_send->send_buf_index);
974 			dev_kfree_skb_any(msd_skb);
975 		}
976 	}
977 
978 send_now:
979 	if (cur_send)
980 		ret = netvsc_send_pkt(device, cur_send, net_device, pb, skb);
981 
982 	if (ret != 0 && section_index != NETVSC_INVALID_INDEX)
983 		netvsc_free_send_slot(net_device, section_index);
984 
985 	return ret;
986 }
987 
988 static void netvsc_send_recv_completion(struct hv_device *device,
989 					struct vmbus_channel *channel,
990 					struct netvsc_device *net_device,
991 					u64 transaction_id, u32 status)
992 {
993 	struct nvsp_message recvcompMessage;
994 	int retries = 0;
995 	int ret;
996 	struct net_device *ndev = hv_get_drvdata(device);
997 
998 	recvcompMessage.hdr.msg_type =
999 				NVSP_MSG1_TYPE_SEND_RNDIS_PKT_COMPLETE;
1000 
1001 	recvcompMessage.msg.v1_msg.send_rndis_pkt_complete.status = status;
1002 
1003 retry_send_cmplt:
1004 	/* Send the completion */
1005 	ret = vmbus_sendpacket(channel, &recvcompMessage,
1006 			       sizeof(struct nvsp_message), transaction_id,
1007 			       VM_PKT_COMP, 0);
1008 	if (ret == 0) {
1009 		/* success */
1010 		/* no-op */
1011 	} else if (ret == -EAGAIN) {
1012 		/* no more room...wait a bit and attempt to retry 3 times */
1013 		retries++;
1014 		netdev_err(ndev, "unable to send receive completion pkt"
1015 			" (tid %llx)...retrying %d\n", transaction_id, retries);
1016 
1017 		if (retries < 4) {
1018 			udelay(100);
1019 			goto retry_send_cmplt;
1020 		} else {
1021 			netdev_err(ndev, "unable to send receive "
1022 				"completion pkt (tid %llx)...give up retrying\n",
1023 				transaction_id);
1024 		}
1025 	} else {
1026 		netdev_err(ndev, "unable to send receive "
1027 			"completion pkt - %llx\n", transaction_id);
1028 	}
1029 }
1030 
1031 static void netvsc_receive(struct netvsc_device *net_device,
1032 			struct vmbus_channel *channel,
1033 			struct hv_device *device,
1034 			struct vmpacket_descriptor *packet)
1035 {
1036 	struct vmtransfer_page_packet_header *vmxferpage_packet;
1037 	struct nvsp_message *nvsp_packet;
1038 	struct hv_netvsc_packet nv_pkt;
1039 	struct hv_netvsc_packet *netvsc_packet = &nv_pkt;
1040 	u32 status = NVSP_STAT_SUCCESS;
1041 	int i;
1042 	int count = 0;
1043 	struct net_device *ndev = hv_get_drvdata(device);
1044 	void *data;
1045 
1046 	/*
1047 	 * All inbound packets other than send completion should be xfer page
1048 	 * packet
1049 	 */
1050 	if (packet->type != VM_PKT_DATA_USING_XFER_PAGES) {
1051 		netdev_err(ndev, "Unknown packet type received - %d\n",
1052 			   packet->type);
1053 		return;
1054 	}
1055 
1056 	nvsp_packet = (struct nvsp_message *)((unsigned long)packet +
1057 			(packet->offset8 << 3));
1058 
1059 	/* Make sure this is a valid nvsp packet */
1060 	if (nvsp_packet->hdr.msg_type !=
1061 	    NVSP_MSG1_TYPE_SEND_RNDIS_PKT) {
1062 		netdev_err(ndev, "Unknown nvsp packet type received-"
1063 			" %d\n", nvsp_packet->hdr.msg_type);
1064 		return;
1065 	}
1066 
1067 	vmxferpage_packet = (struct vmtransfer_page_packet_header *)packet;
1068 
1069 	if (vmxferpage_packet->xfer_pageset_id != NETVSC_RECEIVE_BUFFER_ID) {
1070 		netdev_err(ndev, "Invalid xfer page set id - "
1071 			   "expecting %x got %x\n", NETVSC_RECEIVE_BUFFER_ID,
1072 			   vmxferpage_packet->xfer_pageset_id);
1073 		return;
1074 	}
1075 
1076 	count = vmxferpage_packet->range_cnt;
1077 
1078 	/* Each range represents 1 RNDIS pkt that contains 1 ethernet frame */
1079 	for (i = 0; i < count; i++) {
1080 		/* Initialize the netvsc packet */
1081 		data = (void *)((unsigned long)net_device->
1082 			recv_buf + vmxferpage_packet->ranges[i].byte_offset);
1083 		netvsc_packet->total_data_buflen =
1084 					vmxferpage_packet->ranges[i].byte_count;
1085 
1086 		/* Pass it to the upper layer */
1087 		status = rndis_filter_receive(device, netvsc_packet, &data,
1088 					      channel);
1089 
1090 	}
1091 
1092 	netvsc_send_recv_completion(device, channel, net_device,
1093 				    vmxferpage_packet->d.trans_id, status);
1094 }
1095 
1096 
1097 static void netvsc_send_table(struct hv_device *hdev,
1098 			      struct nvsp_message *nvmsg)
1099 {
1100 	struct netvsc_device *nvscdev;
1101 	struct net_device *ndev = hv_get_drvdata(hdev);
1102 	int i;
1103 	u32 count, *tab;
1104 
1105 	nvscdev = get_outbound_net_device(hdev);
1106 	if (!nvscdev)
1107 		return;
1108 
1109 	count = nvmsg->msg.v5_msg.send_table.count;
1110 	if (count != VRSS_SEND_TAB_SIZE) {
1111 		netdev_err(ndev, "Received wrong send-table size:%u\n", count);
1112 		return;
1113 	}
1114 
1115 	tab = (u32 *)((unsigned long)&nvmsg->msg.v5_msg.send_table +
1116 		      nvmsg->msg.v5_msg.send_table.offset);
1117 
1118 	for (i = 0; i < count; i++)
1119 		nvscdev->send_table[i] = tab[i];
1120 }
1121 
1122 static void netvsc_send_vf(struct netvsc_device *nvdev,
1123 			   struct nvsp_message *nvmsg)
1124 {
1125 	nvdev->vf_alloc = nvmsg->msg.v4_msg.vf_assoc.allocated;
1126 	nvdev->vf_serial = nvmsg->msg.v4_msg.vf_assoc.serial;
1127 }
1128 
1129 static inline void netvsc_receive_inband(struct hv_device *hdev,
1130 					 struct netvsc_device *nvdev,
1131 					 struct nvsp_message *nvmsg)
1132 {
1133 	switch (nvmsg->hdr.msg_type) {
1134 	case NVSP_MSG5_TYPE_SEND_INDIRECTION_TABLE:
1135 		netvsc_send_table(hdev, nvmsg);
1136 		break;
1137 
1138 	case NVSP_MSG4_TYPE_SEND_VF_ASSOCIATION:
1139 		netvsc_send_vf(nvdev, nvmsg);
1140 		break;
1141 	}
1142 }
1143 
1144 void netvsc_channel_cb(void *context)
1145 {
1146 	int ret;
1147 	struct vmbus_channel *channel = (struct vmbus_channel *)context;
1148 	struct hv_device *device;
1149 	struct netvsc_device *net_device;
1150 	u32 bytes_recvd;
1151 	u64 request_id;
1152 	struct vmpacket_descriptor *desc;
1153 	unsigned char *buffer;
1154 	int bufferlen = NETVSC_PACKET_SIZE;
1155 	struct net_device *ndev;
1156 	struct nvsp_message *nvmsg;
1157 
1158 	if (channel->primary_channel != NULL)
1159 		device = channel->primary_channel->device_obj;
1160 	else
1161 		device = channel->device_obj;
1162 
1163 	net_device = get_inbound_net_device(device);
1164 	if (!net_device)
1165 		return;
1166 	ndev = hv_get_drvdata(device);
1167 	buffer = get_per_channel_state(channel);
1168 
1169 	do {
1170 		ret = vmbus_recvpacket_raw(channel, buffer, bufferlen,
1171 					   &bytes_recvd, &request_id);
1172 		if (ret == 0) {
1173 			if (bytes_recvd > 0) {
1174 				desc = (struct vmpacket_descriptor *)buffer;
1175 				nvmsg = (struct nvsp_message *)((unsigned long)
1176 					 desc + (desc->offset8 << 3));
1177 				switch (desc->type) {
1178 				case VM_PKT_COMP:
1179 					netvsc_send_completion(net_device,
1180 								channel,
1181 								device, desc);
1182 					break;
1183 
1184 				case VM_PKT_DATA_USING_XFER_PAGES:
1185 					netvsc_receive(net_device, channel,
1186 						       device, desc);
1187 					break;
1188 
1189 				case VM_PKT_DATA_INBAND:
1190 					netvsc_receive_inband(device,
1191 							      net_device,
1192 							      nvmsg);
1193 					break;
1194 
1195 				default:
1196 					netdev_err(ndev,
1197 						   "unhandled packet type %d, "
1198 						   "tid %llx len %d\n",
1199 						   desc->type, request_id,
1200 						   bytes_recvd);
1201 					break;
1202 				}
1203 
1204 			} else {
1205 				/*
1206 				 * We are done for this pass.
1207 				 */
1208 				break;
1209 			}
1210 
1211 		} else if (ret == -ENOBUFS) {
1212 			if (bufferlen > NETVSC_PACKET_SIZE)
1213 				kfree(buffer);
1214 			/* Handle large packet */
1215 			buffer = kmalloc(bytes_recvd, GFP_ATOMIC);
1216 			if (buffer == NULL) {
1217 				/* Try again next time around */
1218 				netdev_err(ndev,
1219 					   "unable to allocate buffer of size "
1220 					   "(%d)!!\n", bytes_recvd);
1221 				break;
1222 			}
1223 
1224 			bufferlen = bytes_recvd;
1225 		}
1226 	} while (1);
1227 
1228 	if (bufferlen > NETVSC_PACKET_SIZE)
1229 		kfree(buffer);
1230 	return;
1231 }
1232 
1233 /*
1234  * netvsc_device_add - Callback when the device belonging to this
1235  * driver is added
1236  */
1237 int netvsc_device_add(struct hv_device *device, void *additional_info)
1238 {
1239 	int i, ret = 0;
1240 	int ring_size =
1241 	((struct netvsc_device_info *)additional_info)->ring_size;
1242 	struct netvsc_device *net_device;
1243 	struct net_device *ndev = hv_get_drvdata(device);
1244 	struct net_device_context *net_device_ctx = netdev_priv(ndev);
1245 
1246 	net_device = alloc_net_device();
1247 	if (!net_device)
1248 		return -ENOMEM;
1249 
1250 	net_device->ring_size = ring_size;
1251 
1252 	/* Initialize the NetVSC channel extension */
1253 	init_completion(&net_device->channel_init_wait);
1254 
1255 	set_per_channel_state(device->channel, net_device->cb_buffer);
1256 
1257 	/* Open the channel */
1258 	ret = vmbus_open(device->channel, ring_size * PAGE_SIZE,
1259 			 ring_size * PAGE_SIZE, NULL, 0,
1260 			 netvsc_channel_cb, device->channel);
1261 
1262 	if (ret != 0) {
1263 		netdev_err(ndev, "unable to open channel: %d\n", ret);
1264 		goto cleanup;
1265 	}
1266 
1267 	/* Channel is opened */
1268 	pr_info("hv_netvsc channel opened successfully\n");
1269 
1270 	/* If we're reopening the device we may have multiple queues, fill the
1271 	 * chn_table with the default channel to use it before subchannels are
1272 	 * opened.
1273 	 */
1274 	for (i = 0; i < VRSS_CHANNEL_MAX; i++)
1275 		net_device->chn_table[i] = device->channel;
1276 
1277 	/* Writing nvdev pointer unlocks netvsc_send(), make sure chn_table is
1278 	 * populated.
1279 	 */
1280 	wmb();
1281 
1282 	net_device_ctx->nvdev = net_device;
1283 
1284 	/* Connect with the NetVsp */
1285 	ret = netvsc_connect_vsp(device);
1286 	if (ret != 0) {
1287 		netdev_err(ndev,
1288 			"unable to connect to NetVSP - %d\n", ret);
1289 		goto close;
1290 	}
1291 
1292 	return ret;
1293 
1294 close:
1295 	/* Now, we can close the channel safely */
1296 	vmbus_close(device->channel);
1297 
1298 cleanup:
1299 	free_netvsc_device(net_device);
1300 
1301 	return ret;
1302 }
1303