netvsc.c 37.0 KB
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/*
 * Copyright (c) 2009, Microsoft Corporation.
 *
 * This program is free software; you can redistribute it and/or modify it
 * under the terms and conditions of the GNU General Public License,
 * version 2, as published by the Free Software Foundation.
 *
 * This program is distributed in the hope it will be useful, but WITHOUT
 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
 * FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public License for
 * more details.
 *
 * 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 19
 *   Hank Janssen  <hjanssen@microsoft.com>
 */
20 21
#define pr_fmt(fmt) KBUILD_MODNAME ": " fmt

22
#include <linux/kernel.h>
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#include <linux/sched.h>
#include <linux/wait.h>
25
#include <linux/mm.h>
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#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 38 39
/*
 * Switch the data path from the synthetic interface to the VF
 * interface.
 */
40
void netvsc_switch_datapath(struct net_device *ndev, bool vf)
41
{
42 43
	struct net_device_context *net_device_ctx = netdev_priv(ndev);
	struct hv_device *dev = net_device_ctx->device_ctx;
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	struct netvsc_device *nv_dev = net_device_ctx->nvdev;
	struct nvsp_message *init_pkt = &nv_dev->channel_init_pkt;
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	memset(init_pkt, 0, sizeof(struct nvsp_message));
	init_pkt->hdr.msg_type = NVSP_MSG4_TYPE_SWITCH_DATA_PATH;
	if (vf)
		init_pkt->msg.v4_msg.active_dp.active_datapath =
			NVSP_DATAPATH_VF;
	else
		init_pkt->msg.v4_msg.active_dp.active_datapath =
			NVSP_DATAPATH_SYNTHETIC;

	vmbus_sendpacket(dev->channel, init_pkt,
			       sizeof(struct nvsp_message),
			       (unsigned long)init_pkt,
			       VM_PKT_DATA_INBAND, 0);
}

62
static struct netvsc_device *alloc_net_device(void)
63
{
64
	struct netvsc_device *net_device;
65

66 67
	net_device = kzalloc(sizeof(struct netvsc_device), GFP_KERNEL);
	if (!net_device)
68 69
		return NULL;

70 71
	net_device->chan_table[0].mrc.buf
		= vzalloc(NETVSC_RECVSLOT_MAX * sizeof(struct recv_comp_data));
72

73
	init_waitqueue_head(&net_device->wait_drain);
74
	net_device->destroy = false;
75
	atomic_set(&net_device->open_cnt, 0);
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	net_device->max_pkt = RNDIS_MAX_PKT_DEFAULT;
	net_device->pkt_align = RNDIS_PKT_ALIGN_DEFAULT;
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	init_completion(&net_device->channel_init_wait);
79

80
	return net_device;
81 82
}

83 84
static void free_netvsc_device(struct netvsc_device *nvdev)
{
85 86 87
	int i;

	for (i = 0; i < VRSS_CHANNEL_MAX; i++)
88
		vfree(nvdev->chan_table[i].mrc.buf);
89

90 91 92
	kfree(nvdev);
}

93

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static inline bool netvsc_channel_idle(const struct netvsc_device *net_device,
				       u16 q_idx)
{
	const struct netvsc_channel *nvchan = &net_device->chan_table[q_idx];
98

99 100
	return atomic_read(&net_device->num_outstanding_recvs) == 0 &&
		atomic_read(&nvchan->queue_sends) == 0;
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}

103
static struct netvsc_device *get_outbound_net_device(struct hv_device *device)
104
{
105
	struct netvsc_device *net_device = hv_device_to_netvsc_device(device);
106

107
	if (net_device && net_device->destroy)
108
		net_device = NULL;
109

110
	return net_device;
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}

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static void netvsc_destroy_buf(struct hv_device *device)
114 115
{
	struct nvsp_message *revoke_packet;
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	struct net_device *ndev = hv_get_drvdata(device);
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	struct netvsc_device *net_device = net_device_to_netvsc_device(ndev);
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	int ret;
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	/*
	 * If we got a section count, it means we received a
	 * SendReceiveBufferComplete msg (ie sent
	 * NvspMessage1TypeSendReceiveBuffer msg) therefore, we need
	 * to send a revoke msg here
	 */
	if (net_device->recv_section_cnt) {
		/* Send the revoke receive buffer */
		revoke_packet = &net_device->revoke_packet;
		memset(revoke_packet, 0, sizeof(struct nvsp_message));

		revoke_packet->hdr.msg_type =
			NVSP_MSG1_TYPE_REVOKE_RECV_BUF;
		revoke_packet->msg.v1_msg.
		revoke_recv_buf.id = NETVSC_RECEIVE_BUFFER_ID;

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		ret = vmbus_sendpacket(device->channel,
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				       revoke_packet,
				       sizeof(struct nvsp_message),
				       (unsigned long)revoke_packet,
				       VM_PKT_DATA_INBAND, 0);
		/*
		 * If we failed here, we might as well return and
		 * have a leak rather than continue and a bugchk
		 */
		if (ret != 0) {
146
			netdev_err(ndev, "unable to send "
147
				"revoke receive buffer to netvsp\n");
148
			return;
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		}
	}

	/* Teardown the gpadl on the vsp end */
	if (net_device->recv_buf_gpadl_handle) {
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		ret = vmbus_teardown_gpadl(device->channel,
					   net_device->recv_buf_gpadl_handle);
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		/* If we failed here, we might as well return and have a leak
		 * rather than continue and a bugchk
		 */
		if (ret != 0) {
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			netdev_err(ndev,
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				   "unable to teardown receive buffer's gpadl\n");
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			return;
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		}
		net_device->recv_buf_gpadl_handle = 0;
	}

	if (net_device->recv_buf) {
		/* Free up the receive buffer */
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		vfree(net_device->recv_buf);
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		net_device->recv_buf = NULL;
	}

	if (net_device->recv_section) {
		net_device->recv_section_cnt = 0;
		kfree(net_device->recv_section);
		net_device->recv_section = NULL;
	}

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	/* Deal with the send buffer we may have setup.
	 * If we got a  send section size, it means we received a
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	 * NVSP_MSG1_TYPE_SEND_SEND_BUF_COMPLETE msg (ie sent
	 * NVSP_MSG1_TYPE_SEND_SEND_BUF msg) therefore, we need
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	 * to send a revoke msg here
	 */
	if (net_device->send_section_size) {
		/* Send the revoke receive buffer */
		revoke_packet = &net_device->revoke_packet;
		memset(revoke_packet, 0, sizeof(struct nvsp_message));

		revoke_packet->hdr.msg_type =
			NVSP_MSG1_TYPE_REVOKE_SEND_BUF;
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		revoke_packet->msg.v1_msg.revoke_send_buf.id =
			NETVSC_SEND_BUFFER_ID;
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196
		ret = vmbus_sendpacket(device->channel,
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				       revoke_packet,
				       sizeof(struct nvsp_message),
				       (unsigned long)revoke_packet,
				       VM_PKT_DATA_INBAND, 0);
		/* If we failed here, we might as well return and
		 * have a leak rather than continue and a bugchk
		 */
		if (ret != 0) {
			netdev_err(ndev, "unable to send "
				   "revoke send buffer to netvsp\n");
207
			return;
208 209 210 211
		}
	}
	/* Teardown the gpadl on the vsp end */
	if (net_device->send_buf_gpadl_handle) {
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		ret = vmbus_teardown_gpadl(device->channel,
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					   net_device->send_buf_gpadl_handle);

		/* If we failed here, we might as well return and have a leak
		 * rather than continue and a bugchk
		 */
		if (ret != 0) {
			netdev_err(ndev,
				   "unable to teardown send buffer's gpadl\n");
221
			return;
222
		}
223
		net_device->send_buf_gpadl_handle = 0;
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	}
	if (net_device->send_buf) {
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		/* Free up the send buffer */
227
		vfree(net_device->send_buf);
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		net_device->send_buf = NULL;
	}
	kfree(net_device->send_section_map);
231 232
}

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static int netvsc_init_buf(struct hv_device *device)
234
{
235
	int ret = 0;
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	struct netvsc_device *net_device;
	struct nvsp_message *init_packet;
238
	struct net_device *ndev;
239
	int node;
240

241
	net_device = get_outbound_net_device(device);
242
	if (!net_device)
243
		return -ENODEV;
244
	ndev = hv_get_drvdata(device);
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	node = cpu_to_node(device->channel->target_cpu);
	net_device->recv_buf = vzalloc_node(net_device->recv_buf_size, node);
	if (!net_device->recv_buf)
		net_device->recv_buf = vzalloc(net_device->recv_buf_size);

251
	if (!net_device->recv_buf) {
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		netdev_err(ndev, "unable to allocate receive "
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			"buffer of size %d\n", net_device->recv_buf_size);
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		ret = -ENOMEM;
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		goto cleanup;
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	}

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	/*
	 * Establish the gpadl handle for this buffer on this
	 * channel.  Note: This call uses the vmbus connection rather
	 * than the channel to establish the gpadl handle.
	 */
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	ret = vmbus_establish_gpadl(device->channel, net_device->recv_buf,
				    net_device->recv_buf_size,
				    &net_device->recv_buf_gpadl_handle);
266
	if (ret != 0) {
267
		netdev_err(ndev,
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			"unable to establish receive buffer's gpadl\n");
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		goto cleanup;
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	}

272
	/* Notify the NetVsp of the gpadl handle */
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	init_packet = &net_device->channel_init_pkt;
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275
	memset(init_packet, 0, sizeof(struct nvsp_message));
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	init_packet->hdr.msg_type = NVSP_MSG1_TYPE_SEND_RECV_BUF;
	init_packet->msg.v1_msg.send_recv_buf.
		gpadl_handle = net_device->recv_buf_gpadl_handle;
	init_packet->msg.v1_msg.
		send_recv_buf.id = NETVSC_RECEIVE_BUFFER_ID;
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	/* Send the gpadl notification request */
284
	ret = vmbus_sendpacket(device->channel, init_packet,
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			       sizeof(struct nvsp_message),
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			       (unsigned long)init_packet,
287
			       VM_PKT_DATA_INBAND,
288
			       VMBUS_DATA_PACKET_FLAG_COMPLETION_REQUESTED);
289
	if (ret != 0) {
290
		netdev_err(ndev,
291
			"unable to send receive buffer's gpadl to netvsp\n");
292
		goto cleanup;
293 294
	}

295
	wait_for_completion(&net_device->channel_init_wait);
296

297
	/* Check the response */
298 299
	if (init_packet->msg.v1_msg.
	    send_recv_buf_complete.status != NVSP_STAT_SUCCESS) {
300
		netdev_err(ndev, "Unable to complete receive buffer "
301
			   "initialization with NetVsp - status %d\n",
302 303
			   init_packet->msg.v1_msg.
			   send_recv_buf_complete.status);
304
		ret = -EINVAL;
305
		goto cleanup;
306 307
	}

308
	/* Parse the response */
309

310 311
	net_device->recv_section_cnt = init_packet->msg.
		v1_msg.send_recv_buf_complete.num_sections;
312

313 314 315 316 317
	net_device->recv_section = kmemdup(
		init_packet->msg.v1_msg.send_recv_buf_complete.sections,
		net_device->recv_section_cnt *
		sizeof(struct nvsp_1_receive_buffer_section),
		GFP_KERNEL);
318
	if (net_device->recv_section == NULL) {
319
		ret = -EINVAL;
320
		goto cleanup;
321 322
	}

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	/*
	 * For 1st release, there should only be 1 section that represents the
	 * entire receive buffer
	 */
327 328
	if (net_device->recv_section_cnt != 1 ||
	    net_device->recv_section->offset != 0) {
329
		ret = -EINVAL;
330
		goto cleanup;
331 332
	}

333 334
	/* Now setup the send buffer.
	 */
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	net_device->send_buf = vzalloc_node(net_device->send_buf_size, node);
	if (!net_device->send_buf)
		net_device->send_buf = vzalloc(net_device->send_buf_size);
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	if (!net_device->send_buf) {
		netdev_err(ndev, "unable to allocate send "
			   "buffer of size %d\n", net_device->send_buf_size);
		ret = -ENOMEM;
		goto cleanup;
	}

	/* Establish the gpadl handle for this buffer on this
	 * channel.  Note: This call uses the vmbus connection rather
	 * than the channel to establish the gpadl handle.
	 */
	ret = vmbus_establish_gpadl(device->channel, net_device->send_buf,
				    net_device->send_buf_size,
				    &net_device->send_buf_gpadl_handle);
	if (ret != 0) {
		netdev_err(ndev,
			   "unable to establish send buffer's gpadl\n");
		goto cleanup;
	}

	/* Notify the NetVsp of the gpadl handle */
	init_packet = &net_device->channel_init_pkt;
	memset(init_packet, 0, sizeof(struct nvsp_message));
	init_packet->hdr.msg_type = NVSP_MSG1_TYPE_SEND_SEND_BUF;
362
	init_packet->msg.v1_msg.send_send_buf.gpadl_handle =
363
		net_device->send_buf_gpadl_handle;
364
	init_packet->msg.v1_msg.send_send_buf.id = NETVSC_SEND_BUFFER_ID;
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	/* Send the gpadl notification request */
	ret = vmbus_sendpacket(device->channel, init_packet,
			       sizeof(struct nvsp_message),
			       (unsigned long)init_packet,
			       VM_PKT_DATA_INBAND,
			       VMBUS_DATA_PACKET_FLAG_COMPLETION_REQUESTED);
	if (ret != 0) {
		netdev_err(ndev,
			   "unable to send send buffer's gpadl to netvsp\n");
		goto cleanup;
	}

378
	wait_for_completion(&net_device->channel_init_wait);
379 380 381 382 383 384 385

	/* Check the response */
	if (init_packet->msg.v1_msg.
	    send_send_buf_complete.status != NVSP_STAT_SUCCESS) {
		netdev_err(ndev, "Unable to complete send buffer "
			   "initialization with NetVsp - status %d\n",
			   init_packet->msg.v1_msg.
386
			   send_send_buf_complete.status);
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		ret = -EINVAL;
		goto cleanup;
	}

	/* Parse the response */
	net_device->send_section_size = init_packet->msg.
				v1_msg.send_send_buf_complete.section_size;

	/* Section count is simply the size divided by the section size.
	 */
	net_device->send_section_cnt =
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Stephen Hemminger 已提交
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		net_device->send_buf_size / net_device->send_section_size;
399

400 401
	netdev_dbg(ndev, "Send section size: %d, Section count:%d\n",
		   net_device->send_section_size, net_device->send_section_cnt);
402 403 404 405 406

	/* Setup state for managing the send buffer. */
	net_device->map_words = DIV_ROUND_UP(net_device->send_section_cnt,
					     BITS_PER_LONG);

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	net_device->send_section_map = kcalloc(net_device->map_words,
					       sizeof(ulong), GFP_KERNEL);
409 410
	if (net_device->send_section_map == NULL) {
		ret = -ENOMEM;
411
		goto cleanup;
412
	}
413

414
	goto exit;
415

416
cleanup:
417
	netvsc_destroy_buf(device);
418

419
exit:
420 421 422
	return ret;
}

423 424 425 426 427
/* Negotiate NVSP protocol version */
static int negotiate_nvsp_ver(struct hv_device *device,
			      struct netvsc_device *net_device,
			      struct nvsp_message *init_packet,
			      u32 nvsp_ver)
428
{
429
	struct net_device *ndev = hv_get_drvdata(device);
430
	int ret;
431

432
	memset(init_packet, 0, sizeof(struct nvsp_message));
433
	init_packet->hdr.msg_type = NVSP_MSG_TYPE_INIT;
434 435
	init_packet->msg.init_msg.init.min_protocol_ver = nvsp_ver;
	init_packet->msg.init_msg.init.max_protocol_ver = nvsp_ver;
436

437
	/* Send the init request */
438
	ret = vmbus_sendpacket(device->channel, init_packet,
439
			       sizeof(struct nvsp_message),
440
			       (unsigned long)init_packet,
441
			       VM_PKT_DATA_INBAND,
442
			       VMBUS_DATA_PACKET_FLAG_COMPLETION_REQUESTED);
443

444
	if (ret != 0)
445
		return ret;
446

447
	wait_for_completion(&net_device->channel_init_wait);
448

449
	if (init_packet->msg.init_msg.init_complete.status !=
450 451
	    NVSP_STAT_SUCCESS)
		return -EINVAL;
452

453
	if (nvsp_ver == NVSP_PROTOCOL_VERSION_1)
454 455
		return 0;

456
	/* NVSPv2 or later: Send NDIS config */
457 458
	memset(init_packet, 0, sizeof(struct nvsp_message));
	init_packet->hdr.msg_type = NVSP_MSG2_TYPE_SEND_NDIS_CONFIG;
459
	init_packet->msg.v2_msg.send_ndis_config.mtu = ndev->mtu + ETH_HLEN;
460
	init_packet->msg.v2_msg.send_ndis_config.capability.ieee8021q = 1;
461

462
	if (nvsp_ver >= NVSP_PROTOCOL_VERSION_5) {
463 464
		init_packet->msg.v2_msg.send_ndis_config.capability.sriov = 1;

465 466 467 468
		/* Teaming bit is needed to receive link speed updates */
		init_packet->msg.v2_msg.send_ndis_config.capability.teaming = 1;
	}

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	ret = vmbus_sendpacket(device->channel, init_packet,
				sizeof(struct nvsp_message),
				(unsigned long)init_packet,
				VM_PKT_DATA_INBAND, 0);

	return ret;
}

static int netvsc_connect_vsp(struct hv_device *device)
{
	int ret;
	struct netvsc_device *net_device;
	struct nvsp_message *init_packet;
	int ndis_version;
483 484
	const u32 ver_list[] = {
		NVSP_PROTOCOL_VERSION_1, NVSP_PROTOCOL_VERSION_2,
485
		NVSP_PROTOCOL_VERSION_4, NVSP_PROTOCOL_VERSION_5 };
486
	int i;
487 488 489 490 491 492 493 494

	net_device = get_outbound_net_device(device);
	if (!net_device)
		return -ENODEV;

	init_packet = &net_device->channel_init_pkt;

	/* Negotiate the latest NVSP protocol supported */
495
	for (i = ARRAY_SIZE(ver_list) - 1; i >= 0; i--)
496 497 498 499 500 501 502
		if (negotiate_nvsp_ver(device, net_device, init_packet,
				       ver_list[i])  == 0) {
			net_device->nvsp_version = ver_list[i];
			break;
		}

	if (i < 0) {
503
		ret = -EPROTO;
504
		goto cleanup;
505
	}
506 507 508

	pr_debug("Negotiated NVSP version:%x\n", net_device->nvsp_version);

509
	/* Send the ndis version */
510
	memset(init_packet, 0, sizeof(struct nvsp_message));
511

512
	if (net_device->nvsp_version <= NVSP_PROTOCOL_VERSION_4)
513
		ndis_version = 0x00060001;
514 515
	else
		ndis_version = 0x0006001e;
516

517 518 519
	init_packet->hdr.msg_type = NVSP_MSG1_TYPE_SEND_NDIS_VER;
	init_packet->msg.v1_msg.
		send_ndis_ver.ndis_major_ver =
520
				(ndis_version & 0xFFFF0000) >> 16;
521 522
	init_packet->msg.v1_msg.
		send_ndis_ver.ndis_minor_ver =
523
				ndis_version & 0xFFFF;
524

525
	/* Send the init request */
526
	ret = vmbus_sendpacket(device->channel, init_packet,
527 528 529
				sizeof(struct nvsp_message),
				(unsigned long)init_packet,
				VM_PKT_DATA_INBAND, 0);
530
	if (ret != 0)
531
		goto cleanup;
532 533

	/* Post the big receive buffer to NetVSP */
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	if (net_device->nvsp_version <= NVSP_PROTOCOL_VERSION_2)
		net_device->recv_buf_size = NETVSC_RECEIVE_BUFFER_SIZE_LEGACY;
	else
		net_device->recv_buf_size = NETVSC_RECEIVE_BUFFER_SIZE;
538
	net_device->send_buf_size = NETVSC_SEND_BUFFER_SIZE;
539

540
	ret = netvsc_init_buf(device);
541

542
cleanup:
543 544 545
	return ret;
}

546
static void netvsc_disconnect_vsp(struct hv_device *device)
547
{
548
	netvsc_destroy_buf(device);
549 550
}

551
/*
552
 * netvsc_device_remove - Callback when the root bus device is removed
553
 */
554
void netvsc_device_remove(struct hv_device *device)
555
{
556 557 558
	struct net_device *ndev = hv_get_drvdata(device);
	struct net_device_context *net_device_ctx = netdev_priv(ndev);
	struct netvsc_device *net_device = net_device_ctx->nvdev;
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stephen hemminger 已提交
559
	int i;
560

561
	netvsc_disconnect_vsp(device);
562

563
	net_device_ctx->nvdev = NULL;
564

565 566 567 568
	/*
	 * At this point, no one should be accessing net_device
	 * except in here
	 */
569
	netdev_dbg(ndev, "net device safe to remove\n");
570

571
	/* Now, we can close the channel safely */
572
	vmbus_close(device->channel);
573

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stephen hemminger 已提交
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	for (i = 0; i < VRSS_CHANNEL_MAX; i++)
		napi_disable(&net_device->chan_table[0].napi);

577
	/* Release all resources */
578
	free_netvsc_device(net_device);
579 580
}

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#define RING_AVAIL_PERCENT_HIWATER 20
#define RING_AVAIL_PERCENT_LOWATER 10

/*
 * Get the percentage of available bytes to write in the ring.
 * The return value is in range from 0 to 100.
 */
static inline u32 hv_ringbuf_avail_percent(
		struct hv_ring_buffer_info *ring_info)
{
	u32 avail_read, avail_write;

	hv_get_ringbuffer_availbytes(ring_info, &avail_read, &avail_write);

	return avail_write * 100 / ring_info->ring_datasize;
}

598 599 600 601 602 603
static inline void netvsc_free_send_slot(struct netvsc_device *net_device,
					 u32 index)
{
	sync_change_bit(index, net_device->send_section_map);
}

604 605 606
static void netvsc_send_tx_complete(struct netvsc_device *net_device,
				    struct vmbus_channel *incoming_channel,
				    struct hv_device *device,
607
				    const struct vmpacket_descriptor *desc)
608
{
609
	struct sk_buff *skb = (struct sk_buff *)(unsigned long)desc->trans_id;
610 611 612 613 614 615 616 617
	struct net_device *ndev = hv_get_drvdata(device);
	struct net_device_context *net_device_ctx = netdev_priv(ndev);
	struct vmbus_channel *channel = device->channel;
	u16 q_idx = 0;
	int queue_sends;

	/* Notify the layer above us */
	if (likely(skb)) {
618
		const struct hv_netvsc_packet *packet
619
			= (struct hv_netvsc_packet *)skb->cb;
620 621
		u32 send_index = packet->send_buf_index;
		struct netvsc_stats *tx_stats;
622 623 624

		if (send_index != NETVSC_INVALID_INDEX)
			netvsc_free_send_slot(net_device, send_index);
625
		q_idx = packet->q_idx;
626 627
		channel = incoming_channel;

628
		tx_stats = &net_device->chan_table[q_idx].tx_stats;
629 630 631 632 633 634

		u64_stats_update_begin(&tx_stats->syncp);
		tx_stats->packets += packet->total_packets;
		tx_stats->bytes += packet->total_bytes;
		u64_stats_update_end(&tx_stats->syncp);

S
Stephen Hemminger 已提交
635
		dev_consume_skb_any(skb);
636 637
	}

638 639
	queue_sends =
		atomic_dec_return(&net_device->chan_table[q_idx].queue_sends);
640

641
	if (net_device->destroy && queue_sends == 0)
642 643 644 645 646 647 648 649 650
		wake_up(&net_device->wait_drain);

	if (netif_tx_queue_stopped(netdev_get_tx_queue(ndev, q_idx)) &&
	    !net_device_ctx->start_remove &&
	    (hv_ringbuf_avail_percent(&channel->outbound) > RING_AVAIL_PERCENT_HIWATER ||
	     queue_sends < 1))
		netif_tx_wake_queue(netdev_get_tx_queue(ndev, q_idx));
}

651
static void netvsc_send_completion(struct netvsc_device *net_device,
652
				   struct vmbus_channel *incoming_channel,
653
				   struct hv_device *device,
654
				   const struct vmpacket_descriptor *desc)
655
{
656
	struct nvsp_message *nvsp_packet = hv_pkt_data(desc);
657
	struct net_device *ndev = hv_get_drvdata(device);
658

659 660 661 662 663
	switch (nvsp_packet->hdr.msg_type) {
	case NVSP_MSG_TYPE_INIT_COMPLETE:
	case NVSP_MSG1_TYPE_SEND_RECV_BUF_COMPLETE:
	case NVSP_MSG1_TYPE_SEND_SEND_BUF_COMPLETE:
	case NVSP_MSG5_TYPE_SUBCHANNEL:
664
		/* Copy the response back */
665
		memcpy(&net_device->channel_init_pkt, nvsp_packet,
666
		       sizeof(struct nvsp_message));
667
		complete(&net_device->channel_init_wait);
668 669 670 671
		break;

	case NVSP_MSG1_TYPE_SEND_RNDIS_PKT_COMPLETE:
		netvsc_send_tx_complete(net_device, incoming_channel,
672
					device, desc);
673
		break;
674

675 676 677 678
	default:
		netdev_err(ndev,
			   "Unknown send completion type %d received!!\n",
			   nvsp_packet->hdr.msg_type);
679 680 681
	}
}

682 683
static u32 netvsc_get_next_send_section(struct netvsc_device *net_device)
{
684 685 686 687 688 689
	unsigned long *map_addr = net_device->send_section_map;
	unsigned int i;

	for_each_clear_bit(i, map_addr, net_device->map_words) {
		if (sync_test_and_set_bit(i, map_addr) == 0)
			return i;
690
	}
691 692

	return NETVSC_INVALID_INDEX;
693 694
}

L
Lad, Prabhakar 已提交
695 696
static u32 netvsc_copy_to_send_buf(struct netvsc_device *net_device,
				   unsigned int section_index,
697
				   u32 pend_size,
698
				   struct hv_netvsc_packet *packet,
699
				   struct rndis_message *rndis_msg,
700 701
				   struct hv_page_buffer **pb,
				   struct sk_buff *skb)
702 703
{
	char *start = net_device->send_buf;
704 705
	char *dest = start + (section_index * net_device->send_section_size)
		     + pend_size;
706 707
	int i;
	u32 msg_size = 0;
708 709
	u32 padding = 0;
	u32 remain = packet->total_data_buflen % net_device->pkt_align;
710 711
	u32 page_count = packet->cp_partial ? packet->rmsg_pgcnt :
		packet->page_buf_cnt;
712 713

	/* Add padding */
714
	if (skb && skb->xmit_more && remain &&
715
	    !packet->cp_partial) {
716
		padding = net_device->pkt_align - remain;
717
		rndis_msg->msg_len += padding;
718 719
		packet->total_data_buflen += padding;
	}
720

721
	for (i = 0; i < page_count; i++) {
722 723 724
		char *src = phys_to_virt((*pb)[i].pfn << PAGE_SHIFT);
		u32 offset = (*pb)[i].offset;
		u32 len = (*pb)[i].len;
725 726 727 728 729

		memcpy(dest, (src + offset), len);
		msg_size += len;
		dest += len;
	}
730 731 732 733 734 735

	if (padding) {
		memset(dest, 0, padding);
		msg_size += padding;
	}

736 737 738
	return msg_size;
}

739
static inline int netvsc_send_pkt(
740
	struct hv_device *device,
741
	struct hv_netvsc_packet *packet,
742
	struct netvsc_device *net_device,
743 744
	struct hv_page_buffer **pb,
	struct sk_buff *skb)
745
{
746
	struct nvsp_message nvmsg;
747 748 749
	struct netvsc_channel *nvchan
		= &net_device->chan_table[packet->q_idx];
	struct vmbus_channel *out_channel = nvchan->channel;
750
	struct net_device *ndev = hv_get_drvdata(device);
751
	struct netdev_queue *txq = netdev_get_tx_queue(ndev, packet->q_idx);
752 753
	u64 req_id;
	int ret;
754
	struct hv_page_buffer *pgbuf;
755
	u32 ring_avail = hv_ringbuf_avail_percent(&out_channel->outbound);
756

757
	nvmsg.hdr.msg_type = NVSP_MSG1_TYPE_SEND_RNDIS_PKT;
758
	if (skb != NULL) {
759
		/* 0 is RMC_DATA; */
760
		nvmsg.msg.v1_msg.send_rndis_pkt.channel_type = 0;
761 762
	} else {
		/* 1 is RMC_CONTROL; */
763
		nvmsg.msg.v1_msg.send_rndis_pkt.channel_type = 1;
764
	}
765

766 767 768 769 770 771 772
	nvmsg.msg.v1_msg.send_rndis_pkt.send_buf_section_index =
		packet->send_buf_index;
	if (packet->send_buf_index == NETVSC_INVALID_INDEX)
		nvmsg.msg.v1_msg.send_rndis_pkt.send_buf_section_size = 0;
	else
		nvmsg.msg.v1_msg.send_rndis_pkt.send_buf_section_size =
			packet->total_data_buflen;
773

774
	req_id = (ulong)skb;
775

776 777 778
	if (out_channel->rescind)
		return -ENODEV;

779
	if (packet->page_buf_cnt) {
780 781
		pgbuf = packet->cp_partial ? (*pb) +
			packet->rmsg_pgcnt : (*pb);
782 783 784 785 786 787
		ret = vmbus_sendpacket_pagebuffer_ctl(out_channel,
						      pgbuf,
						      packet->page_buf_cnt,
						      &nvmsg,
						      sizeof(struct nvsp_message),
						      req_id,
788
						      VMBUS_DATA_PACKET_FLAG_COMPLETION_REQUESTED);
789
	} else {
790 791 792 793
		ret = vmbus_sendpacket_ctl(out_channel, &nvmsg,
					   sizeof(struct nvsp_message),
					   req_id,
					   VM_PKT_DATA_INBAND,
794
					   VMBUS_DATA_PACKET_FLAG_COMPLETION_REQUESTED);
795 796
	}

797
	if (ret == 0) {
798
		atomic_inc_return(&nvchan->queue_sends);
799

800
		if (ring_avail < RING_AVAIL_PERCENT_LOWATER)
801
			netif_tx_stop_queue(txq);
802
	} else if (ret == -EAGAIN) {
803 804 805
		netif_tx_stop_queue(txq);
		if (atomic_read(&nvchan->queue_sends) < 1) {
			netif_tx_wake_queue(txq);
806 807
			ret = -ENOSPC;
		}
808
	} else {
809
		netdev_err(ndev, "Unable to send packet %p ret %d\n",
810
			   packet, ret);
811
	}
812

813 814 815
	return ret;
}

816 817 818 819 820 821 822 823 824 825 826 827
/* Move packet out of multi send data (msd), and clear msd */
static inline void move_pkt_msd(struct hv_netvsc_packet **msd_send,
				struct sk_buff **msd_skb,
				struct multi_send_data *msdp)
{
	*msd_skb = msdp->skb;
	*msd_send = msdp->pkt;
	msdp->skb = NULL;
	msdp->pkt = NULL;
	msdp->count = 0;
}

828
int netvsc_send(struct hv_device *device,
829
		struct hv_netvsc_packet *packet,
830
		struct rndis_message *rndis_msg,
831 832
		struct hv_page_buffer **pb,
		struct sk_buff *skb)
833 834
{
	struct netvsc_device *net_device;
835
	int ret = 0;
836
	struct netvsc_channel *nvchan;
837 838 839 840
	u32 pktlen = packet->total_data_buflen, msd_len = 0;
	unsigned int section_index = NETVSC_INVALID_INDEX;
	struct multi_send_data *msdp;
	struct hv_netvsc_packet *msd_send = NULL, *cur_send = NULL;
841
	struct sk_buff *msd_skb = NULL;
842
	bool try_batch;
843
	bool xmit_more = (skb != NULL) ? skb->xmit_more : false;
844 845 846 847 848

	net_device = get_outbound_net_device(device);
	if (!net_device)
		return -ENODEV;

849 850 851 852 853 854 855
	/* We may race with netvsc_connect_vsp()/netvsc_init_buf() and get
	 * here before the negotiation with the host is finished and
	 * send_section_map may not be allocated yet.
	 */
	if (!net_device->send_section_map)
		return -EAGAIN;

856
	nvchan = &net_device->chan_table[packet->q_idx];
857
	packet->send_buf_index = NETVSC_INVALID_INDEX;
858
	packet->cp_partial = false;
859

860 861 862 863 864 865 866 867
	/* Send control message directly without accessing msd (Multi-Send
	 * Data) field which may be changed during data packet processing.
	 */
	if (!skb) {
		cur_send = packet;
		goto send_now;
	}

868
	/* batch packets in send buffer if possible */
869
	msdp = &nvchan->msd;
870 871 872
	if (msdp->pkt)
		msd_len = msdp->pkt->total_data_buflen;

873
	try_batch = (skb != NULL) && msd_len > 0 && msdp->count <
874 875 876
		    net_device->max_pkt;

	if (try_batch && msd_len + pktlen + net_device->pkt_align <
877 878 879
	    net_device->send_section_size) {
		section_index = msdp->pkt->send_buf_index;

880 881 882 883 884
	} else if (try_batch && msd_len + packet->rmsg_size <
		   net_device->send_section_size) {
		section_index = msdp->pkt->send_buf_index;
		packet->cp_partial = true;

885
	} else if ((skb != NULL) && pktlen + net_device->pkt_align <
886 887 888
		   net_device->send_section_size) {
		section_index = netvsc_get_next_send_section(net_device);
		if (section_index != NETVSC_INVALID_INDEX) {
889 890
			move_pkt_msd(&msd_send, &msd_skb, msdp);
			msd_len = 0;
891 892 893 894 895 896
		}
	}

	if (section_index != NETVSC_INVALID_INDEX) {
		netvsc_copy_to_send_buf(net_device,
					section_index, msd_len,
897
					packet, rndis_msg, pb, skb);
898

899
		packet->send_buf_index = section_index;
900 901 902 903 904 905 906 907

		if (packet->cp_partial) {
			packet->page_buf_cnt -= packet->rmsg_pgcnt;
			packet->total_data_buflen = msd_len + packet->rmsg_size;
		} else {
			packet->page_buf_cnt = 0;
			packet->total_data_buflen += msd_len;
		}
908

909 910 911 912 913
		if (msdp->pkt) {
			packet->total_packets += msdp->pkt->total_packets;
			packet->total_bytes += msdp->pkt->total_bytes;
		}

914
		if (msdp->skb)
S
Stephen Hemminger 已提交
915
			dev_consume_skb_any(msdp->skb);
916

917
		if (xmit_more && !packet->cp_partial) {
918
			msdp->skb = skb;
919 920 921 922
			msdp->pkt = packet;
			msdp->count++;
		} else {
			cur_send = packet;
923
			msdp->skb = NULL;
924 925 926 927
			msdp->pkt = NULL;
			msdp->count = 0;
		}
	} else {
928
		move_pkt_msd(&msd_send, &msd_skb, msdp);
929 930 931 932
		cur_send = packet;
	}

	if (msd_send) {
933 934
		int m_ret = netvsc_send_pkt(device, msd_send, net_device,
					    NULL, msd_skb);
935 936 937 938

		if (m_ret != 0) {
			netvsc_free_send_slot(net_device,
					      msd_send->send_buf_index);
939
			dev_kfree_skb_any(msd_skb);
940 941 942
		}
	}

943
send_now:
944
	if (cur_send)
945
		ret = netvsc_send_pkt(device, cur_send, net_device, pb, skb);
946

947 948
	if (ret != 0 && section_index != NETVSC_INVALID_INDEX)
		netvsc_free_send_slot(net_device, section_index);
949

950 951 952
	return ret;
}

953 954
static int netvsc_send_recv_completion(struct vmbus_channel *channel,
				       u64 transaction_id, u32 status)
955 956 957 958 959 960 961
{
	struct nvsp_message recvcompMessage;
	int ret;

	recvcompMessage.hdr.msg_type =
				NVSP_MSG1_TYPE_SEND_RNDIS_PKT_COMPLETE;

962
	recvcompMessage.msg.v1_msg.send_rndis_pkt_complete.status = status;
963 964

	/* Send the completion */
965
	ret = vmbus_sendpacket(channel, &recvcompMessage,
966 967 968 969 970 971 972 973 974
			       sizeof(struct nvsp_message_header) + sizeof(u32),
			       transaction_id, VM_PKT_COMP, 0);

	return ret;
}

static inline void count_recv_comp_slot(struct netvsc_device *nvdev, u16 q_idx,
					u32 *filled, u32 *avail)
{
975 976 977
	struct multi_recv_comp *mrc = &nvdev->chan_table[q_idx].mrc;
	u32 first = mrc->first;
	u32 next = mrc->next;
978 979 980 981 982 983 984 985 986 987 988

	*filled = (first > next) ? NETVSC_RECVSLOT_MAX - first + next :
		  next - first;

	*avail = NETVSC_RECVSLOT_MAX - *filled - 1;
}

/* Read the first filled slot, no change to index */
static inline struct recv_comp_data *read_recv_comp_slot(struct netvsc_device
							 *nvdev, u16 q_idx)
{
989
	struct multi_recv_comp *mrc = &nvdev->chan_table[q_idx].mrc;
990 991
	u32 filled, avail;

992
	if (unlikely(!mrc->buf))
993 994 995 996 997 998
		return NULL;

	count_recv_comp_slot(nvdev, q_idx, &filled, &avail);
	if (!filled)
		return NULL;

999
	return mrc->buf + mrc->first * sizeof(struct recv_comp_data);
1000 1001 1002 1003 1004
}

/* Put the first filled slot back to available pool */
static inline void put_recv_comp_slot(struct netvsc_device *nvdev, u16 q_idx)
{
1005
	struct multi_recv_comp *mrc = &nvdev->chan_table[q_idx].mrc;
1006 1007
	int num_recv;

1008
	mrc->first = (mrc->first + 1) % NETVSC_RECVSLOT_MAX;
1009 1010 1011 1012 1013 1014 1015 1016 1017 1018 1019 1020 1021 1022 1023 1024 1025 1026 1027 1028 1029 1030 1031 1032 1033

	num_recv = atomic_dec_return(&nvdev->num_outstanding_recvs);

	if (nvdev->destroy && num_recv == 0)
		wake_up(&nvdev->wait_drain);
}

/* Check and send pending recv completions */
static void netvsc_chk_recv_comp(struct netvsc_device *nvdev,
				 struct vmbus_channel *channel, u16 q_idx)
{
	struct recv_comp_data *rcd;
	int ret;

	while (true) {
		rcd = read_recv_comp_slot(nvdev, q_idx);
		if (!rcd)
			break;

		ret = netvsc_send_recv_completion(channel, rcd->tid,
						  rcd->status);
		if (ret)
			break;

		put_recv_comp_slot(nvdev, q_idx);
1034 1035 1036
	}
}

1037 1038 1039 1040 1041 1042
#define NETVSC_RCD_WATERMARK 80

/* Get next available slot */
static inline struct recv_comp_data *get_recv_comp_slot(
	struct netvsc_device *nvdev, struct vmbus_channel *channel, u16 q_idx)
{
1043
	struct multi_recv_comp *mrc = &nvdev->chan_table[q_idx].mrc;
1044 1045 1046
	u32 filled, avail, next;
	struct recv_comp_data *rcd;

1047
	if (unlikely(!nvdev->recv_section))
1048 1049
		return NULL;

1050
	if (unlikely(!mrc->buf))
1051 1052 1053 1054 1055 1056 1057 1058 1059 1060
		return NULL;

	if (atomic_read(&nvdev->num_outstanding_recvs) >
	    nvdev->recv_section->num_sub_allocs * NETVSC_RCD_WATERMARK / 100)
		netvsc_chk_recv_comp(nvdev, channel, q_idx);

	count_recv_comp_slot(nvdev, q_idx, &filled, &avail);
	if (!avail)
		return NULL;

1061 1062 1063
	next = mrc->next;
	rcd = mrc->buf + next * sizeof(struct recv_comp_data);
	mrc->next = (next + 1) % NETVSC_RECVSLOT_MAX;
1064 1065 1066 1067 1068 1069

	atomic_inc(&nvdev->num_outstanding_recvs);

	return rcd;
}

S
stephen hemminger 已提交
1070
static int netvsc_receive(struct net_device *ndev,
1071 1072 1073 1074
		   struct netvsc_device *net_device,
		   struct net_device_context *net_device_ctx,
		   struct hv_device *device,
		   struct vmbus_channel *channel,
1075
		   const struct vmpacket_descriptor *desc,
1076
		   struct nvsp_message *nvsp)
1077
{
1078 1079
	const struct vmtransfer_page_packet_header *vmxferpage_packet
		= container_of(desc, const struct vmtransfer_page_packet_header, d);
S
stephen hemminger 已提交
1080
	u16 q_idx = channel->offermsg.offer.sub_channel_index;
1081
	char *recv_buf = net_device->recv_buf;
1082
	u32 status = NVSP_STAT_SUCCESS;
1083 1084
	int i;
	int count = 0;
1085
	int ret;
1086

1087
	/* Make sure this is a valid nvsp packet */
1088 1089 1090 1091
	if (unlikely(nvsp->hdr.msg_type != NVSP_MSG1_TYPE_SEND_RNDIS_PKT)) {
		netif_err(net_device_ctx, rx_err, ndev,
			  "Unknown nvsp packet type received %u\n",
			  nvsp->hdr.msg_type);
S
stephen hemminger 已提交
1092
		return 0;
1093 1094
	}

1095 1096 1097 1098 1099
	if (unlikely(vmxferpage_packet->xfer_pageset_id != NETVSC_RECEIVE_BUFFER_ID)) {
		netif_err(net_device_ctx, rx_err, ndev,
			  "Invalid xfer page set id - expecting %x got %x\n",
			  NETVSC_RECEIVE_BUFFER_ID,
			  vmxferpage_packet->xfer_pageset_id);
S
stephen hemminger 已提交
1100
		return 0;
1101 1102
	}

1103
	count = vmxferpage_packet->range_cnt;
1104

1105
	/* Each range represents 1 RNDIS pkt that contains 1 ethernet frame */
1106
	for (i = 0; i < count; i++) {
1107 1108 1109
		void *data = recv_buf
			+ vmxferpage_packet->ranges[i].byte_offset;
		u32 buflen = vmxferpage_packet->ranges[i].byte_count;
1110

1111
		/* Pass it to the upper layer */
1112 1113
		status = rndis_filter_receive(ndev, net_device, device,
					      channel, data, buflen);
1114 1115
	}

S
stephen hemminger 已提交
1116 1117 1118 1119 1120 1121 1122 1123 1124 1125 1126 1127
	if (net_device->chan_table[q_idx].mrc.buf) {
		struct recv_comp_data *rcd;

		rcd = get_recv_comp_slot(net_device, channel, q_idx);
		if (rcd) {
			rcd->tid = vmxferpage_packet->d.trans_id;
			rcd->status = status;
		} else {
			netdev_err(ndev, "Recv_comp full buf q:%hd, tid:%llx\n",
				   q_idx, vmxferpage_packet->d.trans_id);
		}
	} else {
1128 1129 1130 1131 1132 1133 1134
		ret = netvsc_send_recv_completion(channel,
						  vmxferpage_packet->d.trans_id,
						  status);
		if (ret)
			netdev_err(ndev, "Recv_comp q:%hd, tid:%llx, err:%d\n",
				   q_idx, vmxferpage_packet->d.trans_id, ret);
	}
S
stephen hemminger 已提交
1135
	return count;
1136 1137
}

1138
static void netvsc_send_table(struct hv_device *hdev,
1139
			      struct nvsp_message *nvmsg)
1140 1141
{
	struct netvsc_device *nvscdev;
1142
	struct net_device *ndev = hv_get_drvdata(hdev);
1143 1144 1145 1146 1147 1148 1149 1150 1151 1152 1153 1154 1155 1156 1157 1158 1159 1160 1161 1162
	int i;
	u32 count, *tab;

	nvscdev = get_outbound_net_device(hdev);
	if (!nvscdev)
		return;

	count = nvmsg->msg.v5_msg.send_table.count;
	if (count != VRSS_SEND_TAB_SIZE) {
		netdev_err(ndev, "Received wrong send-table size:%u\n", count);
		return;
	}

	tab = (u32 *)((unsigned long)&nvmsg->msg.v5_msg.send_table +
		      nvmsg->msg.v5_msg.send_table.offset);

	for (i = 0; i < count; i++)
		nvscdev->send_table[i] = tab[i];
}

1163
static void netvsc_send_vf(struct net_device_context *net_device_ctx,
1164 1165
			   struct nvsp_message *nvmsg)
{
1166 1167
	net_device_ctx->vf_alloc = nvmsg->msg.v4_msg.vf_assoc.allocated;
	net_device_ctx->vf_serial = nvmsg->msg.v4_msg.vf_assoc.serial;
1168 1169 1170
}

static inline void netvsc_receive_inband(struct hv_device *hdev,
1171 1172
				 struct net_device_context *net_device_ctx,
				 struct nvsp_message *nvmsg)
1173 1174 1175 1176 1177 1178 1179
{
	switch (nvmsg->hdr.msg_type) {
	case NVSP_MSG5_TYPE_SEND_INDIRECTION_TABLE:
		netvsc_send_table(hdev, nvmsg);
		break;

	case NVSP_MSG4_TYPE_SEND_VF_ASSOCIATION:
1180
		netvsc_send_vf(net_device_ctx, nvmsg);
1181 1182 1183 1184
		break;
	}
}

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static int netvsc_process_raw_pkt(struct hv_device *device,
				  struct vmbus_channel *channel,
				  struct netvsc_device *net_device,
				  struct net_device *ndev,
				  u64 request_id,
				  const struct vmpacket_descriptor *desc)
1191
{
1192
	struct net_device_context *net_device_ctx = netdev_priv(ndev);
1193
	struct nvsp_message *nvmsg = hv_pkt_data(desc);
1194 1195 1196 1197 1198 1199 1200

	switch (desc->type) {
	case VM_PKT_COMP:
		netvsc_send_completion(net_device, channel, device, desc);
		break;

	case VM_PKT_DATA_USING_XFER_PAGES:
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		return netvsc_receive(ndev, net_device, net_device_ctx,
				      device, channel, desc, nvmsg);
1203 1204 1205
		break;

	case VM_PKT_DATA_INBAND:
1206
		netvsc_receive_inband(device, net_device_ctx, nvmsg);
1207 1208 1209 1210 1211 1212 1213
		break;

	default:
		netdev_err(ndev, "unhandled packet type %d, tid %llx\n",
			   desc->type, request_id);
		break;
	}
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1214 1215 1216 1217 1218 1219 1220 1221 1222 1223 1224 1225 1226 1227 1228 1229 1230 1231 1232 1233 1234 1235 1236 1237 1238 1239 1240 1241 1242 1243 1244 1245 1246 1247 1248 1249 1250 1251 1252 1253 1254 1255 1256 1257 1258 1259 1260 1261

	return 0;
}

static struct hv_device *netvsc_channel_to_device(struct vmbus_channel *channel)
{
	struct vmbus_channel *primary = channel->primary_channel;

	return primary ? primary->device_obj : channel->device_obj;
}

int netvsc_poll(struct napi_struct *napi, int budget)
{
	struct netvsc_channel *nvchan
		= container_of(napi, struct netvsc_channel, napi);
	struct vmbus_channel *channel = nvchan->channel;
	struct hv_device *device = netvsc_channel_to_device(channel);
	u16 q_idx = channel->offermsg.offer.sub_channel_index;
	struct net_device *ndev = hv_get_drvdata(device);
	struct netvsc_device *net_device = net_device_to_netvsc_device(ndev);
	const struct vmpacket_descriptor *desc;
	int work_done = 0;

	desc = hv_pkt_iter_first(channel);
	while (desc) {
		int count;

		count = netvsc_process_raw_pkt(device, channel, net_device,
					       ndev, desc->trans_id, desc);
		work_done += count;
		desc = __hv_pkt_iter_next(channel, desc);

		/* If receive packet budget is exhausted, reschedule */
		if (work_done >= budget) {
			work_done = budget;
			break;
		}
	}
	hv_pkt_iter_close(channel);

	/* If ring is empty and NAPI is not doing polling */
	if (work_done < budget &&
	    napi_complete_done(napi, work_done) &&
	    hv_end_read(&channel->inbound) != 0)
		napi_reschedule(napi);

	netvsc_chk_recv_comp(net_device, channel, q_idx);
	return work_done;
1262 1263
}

1264
void netvsc_channel_cb(void *context)
1265
{
1266
	struct vmbus_channel *channel = context;
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1267
	struct hv_device *device = netvsc_channel_to_device(channel);
1268
	u16 q_idx = channel->offermsg.offer.sub_channel_index;
1269
	struct netvsc_device *net_device;
1270
	struct net_device *ndev;
1271

1272 1273
	ndev = hv_get_drvdata(device);
	if (unlikely(!ndev))
1274
		return;
1275

1276 1277 1278 1279
	net_device = net_device_to_netvsc_device(ndev);
	if (unlikely(net_device->destroy) &&
	    netvsc_channel_idle(net_device, q_idx))
		return;
1280

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	/* disable interupts from host */
	hv_begin_read(&channel->inbound);
	napi_schedule(&net_device->chan_table[q_idx].napi);
1284
}
1285

1286 1287 1288 1289
/*
 * netvsc_device_add - Callback when the device belonging to this
 * driver is added
 */
1290 1291
int netvsc_device_add(struct hv_device *device,
		      const struct netvsc_device_info *device_info)
1292
{
1293
	int i, ret = 0;
1294
	int ring_size = device_info->ring_size;
1295
	struct netvsc_device *net_device;
1296 1297
	struct net_device *ndev = hv_get_drvdata(device);
	struct net_device_context *net_device_ctx = netdev_priv(ndev);
1298

1299
	net_device = alloc_net_device();
1300 1301
	if (!net_device)
		return -ENOMEM;
1302

1303 1304
	net_device->ring_size = ring_size;

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	/* Because the device uses NAPI, all the interrupt batching and
	 * control is done via Net softirq, not the channel handling
	 */
	set_channel_read_mode(device->channel, HV_CALL_ISR);

1310
	/* Open the channel */
1311 1312
	ret = vmbus_open(device->channel, ring_size * PAGE_SIZE,
			 ring_size * PAGE_SIZE, NULL, 0,
1313
			 netvsc_channel_cb, device->channel);
1314 1315

	if (ret != 0) {
1316
		netdev_err(ndev, "unable to open channel: %d\n", ret);
1317 1318 1319 1320
		goto cleanup;
	}

	/* Channel is opened */
1321
	netdev_dbg(ndev, "hv_netvsc channel opened successfully\n");
1322

1323 1324 1325 1326
	/* If we're reopening the device we may have multiple queues, fill the
	 * chn_table with the default channel to use it before subchannels are
	 * opened.
	 */
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	for (i = 0; i < VRSS_CHANNEL_MAX; i++) {
		struct netvsc_channel *nvchan = &net_device->chan_table[i];

		nvchan->channel = device->channel;
		netif_napi_add(ndev, &nvchan->napi,
			       netvsc_poll, NAPI_POLL_WEIGHT);
	}

	/* Enable NAPI handler for init callbacks */
	napi_enable(&net_device->chan_table[0].napi);
1337 1338 1339 1340 1341 1342 1343

	/* Writing nvdev pointer unlocks netvsc_send(), make sure chn_table is
	 * populated.
	 */
	wmb();

	net_device_ctx->nvdev = net_device;
1344

1345 1346 1347
	/* Connect with the NetVsp */
	ret = netvsc_connect_vsp(device);
	if (ret != 0) {
1348
		netdev_err(ndev,
1349
			"unable to connect to NetVSP - %d\n", ret);
1350 1351 1352 1353 1354 1355
		goto close;
	}

	return ret;

close:
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1356 1357
	napi_disable(&net_device->chan_table[0].napi);

1358 1359 1360 1361
	/* Now, we can close the channel safely */
	vmbus_close(device->channel);

cleanup:
1362
	free_netvsc_device(net_device);
1363 1364 1365

	return ret;
}