net/mlx4_core: drop useless LIST_HEAD
[linux-2.6-block.git] / drivers / hv / channel_mgmt.c
CommitLineData
3e7ee490 1/*
3e7ee490
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
14 * this program; if not, write to the Free Software Foundation, Inc., 59 Temple
15 * Place - Suite 330, Boston, MA 02111-1307 USA.
16 *
17 * Authors:
18 * Haiyang Zhang <haiyangz@microsoft.com>
19 * Hank Janssen <hjanssen@microsoft.com>
3e7ee490 20 */
0a46618d
HJ
21#define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
22
a0086dc5 23#include <linux/kernel.h>
638fea33 24#include <linux/interrupt.h>
0c3b7b2f
S
25#include <linux/sched.h>
26#include <linux/wait.h>
a0086dc5 27#include <linux/mm.h>
5a0e3ad6 28#include <linux/slab.h>
53af545b 29#include <linux/list.h>
c88c4e4c 30#include <linux/module.h>
8b5d6d3b 31#include <linux/completion.h>
41571916 32#include <linux/delay.h>
46a97191 33#include <linux/hyperv.h>
e810e48c 34#include <asm/mshyperv.h>
3f335ea2 35
0f2a6619 36#include "hyperv_vmbus.h"
3e7ee490 37
7047f17d
S
38static void init_vp_index(struct vmbus_channel *channel, u16 dev_type);
39
40static const struct vmbus_device vmbus_devs[] = {
41 /* IDE */
42 { .dev_type = HV_IDE,
43 HV_IDE_GUID,
44 .perf_device = true,
45 },
46
47 /* SCSI */
48 { .dev_type = HV_SCSI,
49 HV_SCSI_GUID,
50 .perf_device = true,
51 },
52
53 /* Fibre Channel */
54 { .dev_type = HV_FC,
55 HV_SYNTHFC_GUID,
56 .perf_device = true,
57 },
58
59 /* Synthetic NIC */
60 { .dev_type = HV_NIC,
61 HV_NIC_GUID,
62 .perf_device = true,
63 },
64
65 /* Network Direct */
66 { .dev_type = HV_ND,
67 HV_ND_GUID,
68 .perf_device = true,
69 },
70
71 /* PCIE */
72 { .dev_type = HV_PCIE,
73 HV_PCIE_GUID,
238064f1 74 .perf_device = false,
7047f17d
S
75 },
76
77 /* Synthetic Frame Buffer */
78 { .dev_type = HV_FB,
79 HV_SYNTHVID_GUID,
80 .perf_device = false,
81 },
82
83 /* Synthetic Keyboard */
84 { .dev_type = HV_KBD,
85 HV_KBD_GUID,
86 .perf_device = false,
87 },
88
89 /* Synthetic MOUSE */
90 { .dev_type = HV_MOUSE,
91 HV_MOUSE_GUID,
92 .perf_device = false,
93 },
94
95 /* KVP */
96 { .dev_type = HV_KVP,
97 HV_KVP_GUID,
98 .perf_device = false,
99 },
100
101 /* Time Synch */
102 { .dev_type = HV_TS,
103 HV_TS_GUID,
104 .perf_device = false,
105 },
106
107 /* Heartbeat */
108 { .dev_type = HV_HB,
109 HV_HEART_BEAT_GUID,
110 .perf_device = false,
111 },
112
113 /* Shutdown */
114 { .dev_type = HV_SHUTDOWN,
115 HV_SHUTDOWN_GUID,
116 .perf_device = false,
117 },
118
119 /* File copy */
120 { .dev_type = HV_FCOPY,
121 HV_FCOPY_GUID,
122 .perf_device = false,
123 },
124
125 /* Backup */
126 { .dev_type = HV_BACKUP,
127 HV_VSS_GUID,
128 .perf_device = false,
129 },
130
131 /* Dynamic Memory */
132 { .dev_type = HV_DM,
133 HV_DM_GUID,
134 .perf_device = false,
135 },
136
137 /* Unknown GUID */
f45be72c 138 { .dev_type = HV_UNKNOWN,
7047f17d
S
139 .perf_device = false,
140 },
141};
142
0f98829a
DC
143static const struct {
144 uuid_le guid;
145} vmbus_unsupported_devs[] = {
146 { HV_AVMA1_GUID },
147 { HV_AVMA2_GUID },
148 { HV_RDV_GUID },
149};
150
ccb61f8a
S
151/*
152 * The rescinded channel may be blocked waiting for a response from the host;
153 * take care of that.
154 */
155static void vmbus_rescind_cleanup(struct vmbus_channel *channel)
156{
157 struct vmbus_channel_msginfo *msginfo;
158 unsigned long flags;
159
160
161 spin_lock_irqsave(&vmbus_connection.channelmsg_lock, flags);
192b2d78 162 channel->rescind = true;
ccb61f8a
S
163 list_for_each_entry(msginfo, &vmbus_connection.chn_msg_list,
164 msglistentry) {
165
166 if (msginfo->waiting_channel == channel) {
167 complete(&msginfo->waitevent);
168 break;
169 }
170 }
171 spin_unlock_irqrestore(&vmbus_connection.channelmsg_lock, flags);
172}
173
0f98829a
DC
174static bool is_unsupported_vmbus_devs(const uuid_le *guid)
175{
176 int i;
177
178 for (i = 0; i < ARRAY_SIZE(vmbus_unsupported_devs); i++)
179 if (!uuid_le_cmp(*guid, vmbus_unsupported_devs[i].guid))
180 return true;
181 return false;
182}
183
184static u16 hv_get_dev_type(const struct vmbus_channel *channel)
7047f17d 185{
0f98829a 186 const uuid_le *guid = &channel->offermsg.offer.if_type;
7047f17d
S
187 u16 i;
188
0f98829a 189 if (is_hvsock_channel(channel) || is_unsupported_vmbus_devs(guid))
f45be72c 190 return HV_UNKNOWN;
0f98829a 191
f45be72c 192 for (i = HV_IDE; i < HV_UNKNOWN; i++) {
7047f17d
S
193 if (!uuid_le_cmp(*guid, vmbus_devs[i].guid))
194 return i;
195 }
196 pr_info("Unknown GUID: %pUl\n", guid);
197 return i;
198}
f38e7dd7 199
c88c4e4c 200/**
fe857bb4 201 * vmbus_prep_negotiate_resp() - Create default response for Negotiate message
c88c4e4c 202 * @icmsghdrp: Pointer to msg header structure
c88c4e4c 203 * @buf: Raw buffer channel data
fe857bb4
DC
204 * @fw_version: The framework versions we can support.
205 * @fw_vercnt: The size of @fw_version.
206 * @srv_version: The service versions we can support.
207 * @srv_vercnt: The size of @srv_version.
208 * @nego_fw_version: The selected framework version.
209 * @nego_srv_version: The selected service version.
c88c4e4c 210 *
fe857bb4 211 * Note: Versions are given in decreasing order.
c88c4e4c 212 *
fe857bb4 213 * Set up and fill in default negotiate response message.
c88c4e4c
HJ
214 * Mainly used by Hyper-V drivers.
215 */
6741335b 216bool vmbus_prep_negotiate_resp(struct icmsg_hdr *icmsghdrp,
a1656454
AN
217 u8 *buf, const int *fw_version, int fw_vercnt,
218 const int *srv_version, int srv_vercnt,
219 int *nego_fw_version, int *nego_srv_version)
c88c4e4c 220{
6741335b
S
221 int icframe_major, icframe_minor;
222 int icmsg_major, icmsg_minor;
223 int fw_major, fw_minor;
224 int srv_major, srv_minor;
a1656454 225 int i, j;
6741335b 226 bool found_match = false;
a1656454 227 struct icmsg_negotiate *negop;
c836d0ab 228
a3605300 229 icmsghdrp->icmsgsize = 0x10;
a3605300
S
230 negop = (struct icmsg_negotiate *)&buf[
231 sizeof(struct vmbuspipe_hdr) +
232 sizeof(struct icmsg_hdr)];
c88c4e4c 233
6741335b
S
234 icframe_major = negop->icframe_vercnt;
235 icframe_minor = 0;
236
237 icmsg_major = negop->icmsg_vercnt;
238 icmsg_minor = 0;
c836d0ab
S
239
240 /*
241 * Select the framework version number we will
242 * support.
243 */
244
a1656454
AN
245 for (i = 0; i < fw_vercnt; i++) {
246 fw_major = (fw_version[i] >> 16);
247 fw_minor = (fw_version[i] & 0xFFFF);
248
249 for (j = 0; j < negop->icframe_vercnt; j++) {
250 if ((negop->icversion_data[j].major == fw_major) &&
251 (negop->icversion_data[j].minor == fw_minor)) {
252 icframe_major = negop->icversion_data[j].major;
253 icframe_minor = negop->icversion_data[j].minor;
254 found_match = true;
255 break;
256 }
6741335b 257 }
a1656454
AN
258
259 if (found_match)
260 break;
c836d0ab
S
261 }
262
6741335b
S
263 if (!found_match)
264 goto fw_error;
265
266 found_match = false;
267
a1656454
AN
268 for (i = 0; i < srv_vercnt; i++) {
269 srv_major = (srv_version[i] >> 16);
270 srv_minor = (srv_version[i] & 0xFFFF);
271
272 for (j = negop->icframe_vercnt;
273 (j < negop->icframe_vercnt + negop->icmsg_vercnt);
274 j++) {
275
276 if ((negop->icversion_data[j].major == srv_major) &&
277 (negop->icversion_data[j].minor == srv_minor)) {
278
279 icmsg_major = negop->icversion_data[j].major;
280 icmsg_minor = negop->icversion_data[j].minor;
281 found_match = true;
282 break;
283 }
6741335b 284 }
a1656454
AN
285
286 if (found_match)
287 break;
c88c4e4c 288 }
a3605300 289
c836d0ab 290 /*
6741335b 291 * Respond with the framework and service
c836d0ab
S
292 * version numbers we can support.
293 */
6741335b
S
294
295fw_error:
296 if (!found_match) {
297 negop->icframe_vercnt = 0;
298 negop->icmsg_vercnt = 0;
299 } else {
300 negop->icframe_vercnt = 1;
301 negop->icmsg_vercnt = 1;
302 }
303
a1656454
AN
304 if (nego_fw_version)
305 *nego_fw_version = (icframe_major << 16) | icframe_minor;
306
307 if (nego_srv_version)
308 *nego_srv_version = (icmsg_major << 16) | icmsg_minor;
309
6741335b
S
310 negop->icversion_data[0].major = icframe_major;
311 negop->icversion_data[0].minor = icframe_minor;
312 negop->icversion_data[1].major = icmsg_major;
313 negop->icversion_data[1].minor = icmsg_minor;
314 return found_match;
c88c4e4c 315}
a3605300 316
da0e9631 317EXPORT_SYMBOL_GPL(vmbus_prep_negotiate_resp);
c88c4e4c 318
3e189519 319/*
e98cb276 320 * alloc_channel - Allocate and initialize a vmbus channel object
bd60c33e 321 */
50fe56d2 322static struct vmbus_channel *alloc_channel(void)
3e7ee490 323{
aded7165 324 struct vmbus_channel *channel;
3e7ee490 325
aded7165 326 channel = kzalloc(sizeof(*channel), GFP_ATOMIC);
3e7ee490 327 if (!channel)
3e7ee490 328 return NULL;
3e7ee490 329
67fae053 330 spin_lock_init(&channel->lock);
7fa32e5e 331 init_completion(&channel->rescind_event);
e68d2971
S
332
333 INIT_LIST_HEAD(&channel->sc_list);
3a28fa35 334 INIT_LIST_HEAD(&channel->percpu_list);
3e7ee490 335
631e63a9
SH
336 tasklet_init(&channel->callback_event,
337 vmbus_on_event, (unsigned long)channel);
338
3e7ee490
HJ
339 return channel;
340}
341
3e189519 342/*
e98cb276 343 * free_channel - Release the resources used by the vmbus channel object
bd60c33e 344 */
9f3e28e3 345static void free_channel(struct vmbus_channel *channel)
3e7ee490 346{
631e63a9 347 tasklet_kill(&channel->callback_event);
8200f208 348
c2e5df61 349 kobject_put(&channel->kobj);
3e7ee490
HJ
350}
351
3a28fa35
S
352static void percpu_channel_enq(void *arg)
353{
354 struct vmbus_channel *channel = arg;
37cdd991
SH
355 struct hv_per_cpu_context *hv_cpu
356 = this_cpu_ptr(hv_context.cpu_context);
3a28fa35 357
8200f208 358 list_add_tail_rcu(&channel->percpu_list, &hv_cpu->chan_list);
3a28fa35 359}
8b5d6d3b 360
3a28fa35
S
361static void percpu_channel_deq(void *arg)
362{
363 struct vmbus_channel *channel = arg;
364
8200f208 365 list_del_rcu(&channel->percpu_list);
3a28fa35 366}
8b5d6d3b 367
ed6cfcc5 368
f52078cf 369static void vmbus_release_relid(u32 relid)
4b2f9abe 370{
ed6cfcc5 371 struct vmbus_channel_relid_released msg;
259cc665 372 int ret;
4b2f9abe 373
c8705979 374 memset(&msg, 0, sizeof(struct vmbus_channel_relid_released));
ed6cfcc5 375 msg.child_relid = relid;
c8705979 376 msg.header.msgtype = CHANNELMSG_RELID_RELEASED;
259cc665
VK
377 ret = vmbus_post_msg(&msg, sizeof(struct vmbus_channel_relid_released),
378 true);
379
380 trace_vmbus_release_relid(&msg, ret);
f52078cf 381}
c8705979 382
800b9329 383void hv_process_channel_removal(struct vmbus_channel *channel)
f52078cf 384{
800b9329 385 struct vmbus_channel *primary_channel;
f52078cf 386 unsigned long flags;
f52078cf 387
85d9aa70 388 BUG_ON(!mutex_is_locked(&vmbus_connection.channel_mutex));
192b2d78 389 BUG_ON(!channel->rescind);
800b9329 390
2115b561
S
391 if (channel->target_cpu != get_cpu()) {
392 put_cpu();
3a28fa35
S
393 smp_call_function_single(channel->target_cpu,
394 percpu_channel_deq, channel, true);
2115b561 395 } else {
3a28fa35 396 percpu_channel_deq(channel);
2115b561
S
397 put_cpu();
398 }
3a28fa35 399
e68d2971 400 if (channel->primary_channel == NULL) {
e68d2971 401 list_del(&channel->listentry);
ca1c4b74
DC
402
403 primary_channel = channel;
e68d2971
S
404 } else {
405 primary_channel = channel->primary_channel;
67fae053 406 spin_lock_irqsave(&primary_channel->lock, flags);
565ce642 407 list_del(&channel->sc_list);
357e836a 408 primary_channel->num_sc--;
67fae053 409 spin_unlock_irqrestore(&primary_channel->lock, flags);
e68d2971 410 }
ca1c4b74
DC
411
412 /*
413 * We need to free the bit for init_vp_index() to work in the case
414 * of sub-channel, when we reload drivers like hv_netvsc.
415 */
509879bd
S
416 if (channel->affinity_policy == HV_LOCALIZED)
417 cpumask_clear_cpu(channel->target_cpu,
418 &primary_channel->alloced_cpus_in_node);
ca1c4b74 419
800b9329 420 vmbus_release_relid(channel->offermsg.child_relid);
638fea33 421
c8705979 422 free_channel(channel);
4b2f9abe 423}
8b5d6d3b 424
93e5bd06
S
425void vmbus_free_channels(void)
426{
813c5b79
DC
427 struct vmbus_channel *channel, *tmp;
428
429 list_for_each_entry_safe(channel, tmp, &vmbus_connection.chn_list,
430 listentry) {
34c6801e 431 /* hv_process_channel_removal() needs this */
813c5b79 432 channel->rescind = true;
93e5bd06 433
93e5bd06 434 vmbus_device_unregister(channel->device_obj);
93e5bd06
S
435 }
436}
437
37c2578c
DC
438/* Note: the function can run concurrently for primary/sub channels. */
439static void vmbus_add_channel_work(struct work_struct *work)
3e7ee490 440{
37c2578c
DC
441 struct vmbus_channel *newchannel =
442 container_of(work, struct vmbus_channel, add_channel_work);
443 struct vmbus_channel *primary_channel = newchannel->primary_channel;
0f5e44ca 444 unsigned long flags;
7047f17d 445 u16 dev_type;
85d9aa70 446 int ret;
3e7ee490 447
0f98829a 448 dev_type = hv_get_dev_type(newchannel);
7047f17d
S
449
450 init_vp_index(newchannel, dev_type);
f38e7dd7 451
8dfd3326
VK
452 if (newchannel->target_cpu != get_cpu()) {
453 put_cpu();
454 smp_call_function_single(newchannel->target_cpu,
455 percpu_channel_enq,
456 newchannel, true);
457 } else {
458 percpu_channel_enq(newchannel);
459 put_cpu();
3e7ee490
HJ
460 }
461
42dceebe
S
462 /*
463 * This state is used to indicate a successful open
464 * so that when we do close the channel normally, we
37c2578c 465 * can cleanup properly.
42dceebe
S
466 */
467 newchannel->state = CHANNEL_OPEN_STATE;
468
37c2578c
DC
469 if (primary_channel != NULL) {
470 /* newchannel is a sub-channel. */
471 struct hv_device *dev = primary_channel->device_obj;
c2e5df61 472
50229128 473 if (vmbus_add_channel_kobj(dev, newchannel))
37c2578c
DC
474 goto err_deq_chan;
475
476 if (primary_channel->sc_creation_callback != NULL)
477 primary_channel->sc_creation_callback(newchannel);
c2e5df61 478
192b2d78 479 newchannel->probe_done = true;
8dfd3326
VK
480 return;
481 }
482
bd60c33e 483 /*
37c2578c 484 * Start the process of binding the primary channel to the driver
bd60c33e 485 */
f2c73011 486 newchannel->device_obj = vmbus_device_create(
767dff68
HZ
487 &newchannel->offermsg.offer.if_type,
488 &newchannel->offermsg.offer.if_instance,
188963ec 489 newchannel);
9c3a6f7e 490 if (!newchannel->device_obj)
5b1e5b53 491 goto err_deq_chan;
3e7ee490 492
7047f17d 493 newchannel->device_obj->device_id = dev_type;
454f18a9
BP
494 /*
495 * Add the new device to the bus. This will kick off device-driver
496 * binding which eventually invokes the device driver's AddDevice()
497 * method.
498 */
85d9aa70 499 ret = vmbus_device_register(newchannel->device_obj);
85d9aa70
DC
500
501 if (ret != 0) {
d43e2fe7
DC
502 pr_err("unable to add child device object (relid %d)\n",
503 newchannel->offermsg.child_relid);
504 kfree(newchannel->device_obj);
505 goto err_deq_chan;
506 }
54a66265 507
6f3d791f 508 newchannel->probe_done = true;
9c3a6f7e 509 return;
2dd37cb8 510
5b1e5b53 511err_deq_chan:
d6f591e3 512 mutex_lock(&vmbus_connection.channel_mutex);
37c2578c
DC
513
514 /*
515 * We need to set the flag, otherwise
516 * vmbus_onoffer_rescind() can be blocked.
517 */
518 newchannel->probe_done = true;
519
520 if (primary_channel == NULL) {
521 list_del(&newchannel->listentry);
522 } else {
523 spin_lock_irqsave(&primary_channel->lock, flags);
524 list_del(&newchannel->sc_list);
525 spin_unlock_irqrestore(&primary_channel->lock, flags);
526 }
527
d6f591e3 528 mutex_unlock(&vmbus_connection.channel_mutex);
5b1e5b53
S
529
530 if (newchannel->target_cpu != get_cpu()) {
531 put_cpu();
532 smp_call_function_single(newchannel->target_cpu,
37c2578c
DC
533 percpu_channel_deq,
534 newchannel, true);
5b1e5b53
S
535 } else {
536 percpu_channel_deq(newchannel);
537 put_cpu();
538 }
638fea33
DC
539
540 vmbus_release_relid(newchannel->offermsg.child_relid);
5b1e5b53 541
9c3a6f7e 542 free_channel(newchannel);
3e7ee490
HJ
543}
544
37c2578c
DC
545/*
546 * vmbus_process_offer - Process the offer by creating a channel/device
547 * associated with this offer
548 */
549static void vmbus_process_offer(struct vmbus_channel *newchannel)
550{
551 struct vmbus_channel *channel;
552 struct workqueue_struct *wq;
553 unsigned long flags;
554 bool fnew = true;
555
556 mutex_lock(&vmbus_connection.channel_mutex);
557
558 /*
559 * Now that we have acquired the channel_mutex,
560 * we can release the potentially racing rescind thread.
561 */
562 atomic_dec(&vmbus_connection.offer_in_progress);
563
564 list_for_each_entry(channel, &vmbus_connection.chn_list, listentry) {
565 if (!uuid_le_cmp(channel->offermsg.offer.if_type,
566 newchannel->offermsg.offer.if_type) &&
567 !uuid_le_cmp(channel->offermsg.offer.if_instance,
568 newchannel->offermsg.offer.if_instance)) {
569 fnew = false;
570 break;
571 }
572 }
573
574 if (fnew)
575 list_add_tail(&newchannel->listentry,
576 &vmbus_connection.chn_list);
577 else {
578 /*
579 * Check to see if this is a valid sub-channel.
580 */
581 if (newchannel->offermsg.offer.sub_channel_index == 0) {
582 mutex_unlock(&vmbus_connection.channel_mutex);
583 /*
584 * Don't call free_channel(), because newchannel->kobj
585 * is not initialized yet.
586 */
587 kfree(newchannel);
588 WARN_ON_ONCE(1);
589 return;
590 }
591 /*
592 * Process the sub-channel.
593 */
594 newchannel->primary_channel = channel;
595 spin_lock_irqsave(&channel->lock, flags);
596 list_add_tail(&newchannel->sc_list, &channel->sc_list);
597 spin_unlock_irqrestore(&channel->lock, flags);
598 }
599
600 mutex_unlock(&vmbus_connection.channel_mutex);
601
602 /*
603 * vmbus_process_offer() mustn't call channel->sc_creation_callback()
604 * directly for sub-channels, because sc_creation_callback() ->
605 * vmbus_open() may never get the host's response to the
606 * OPEN_CHANNEL message (the host may rescind a channel at any time,
607 * e.g. in the case of hot removing a NIC), and vmbus_onoffer_rescind()
608 * may not wake up the vmbus_open() as it's blocked due to a non-zero
609 * vmbus_connection.offer_in_progress, and finally we have a deadlock.
610 *
611 * The above is also true for primary channels, if the related device
612 * drivers use sync probing mode by default.
613 *
614 * And, usually the handling of primary channels and sub-channels can
615 * depend on each other, so we should offload them to different
616 * workqueues to avoid possible deadlock, e.g. in sync-probing mode,
617 * NIC1's netvsc_subchan_work() can race with NIC2's netvsc_probe() ->
618 * rtnl_lock(), and causes deadlock: the former gets the rtnl_lock
619 * and waits for all the sub-channels to appear, but the latter
620 * can't get the rtnl_lock and this blocks the handling of
621 * sub-channels.
622 */
623 INIT_WORK(&newchannel->add_channel_work, vmbus_add_channel_work);
624 wq = fnew ? vmbus_connection.handle_primary_chan_wq :
625 vmbus_connection.handle_sub_chan_wq;
626 queue_work(wq, &newchannel->add_channel_work);
627}
628
a119845f
S
629/*
630 * We use this state to statically distribute the channel interrupt load.
631 */
1f656ff3 632static int next_numa_node_id;
37c2578c
DC
633/*
634 * init_vp_index() accesses global variables like next_numa_node_id, and
635 * it can run concurrently for primary channels and sub-channels: see
636 * vmbus_process_offer(), so we need the lock to protect the global
637 * variables.
638 */
639static DEFINE_SPINLOCK(bind_channel_to_cpu_lock);
a119845f
S
640
641/*
642 * Starting with Win8, we can statically distribute the incoming
1f656ff3 643 * channel interrupt load by binding a channel to VCPU.
ce767047
HZ
644 * We distribute the interrupt loads to one or more NUMA nodes based on
645 * the channel's affinity_policy.
1f656ff3
S
646 *
647 * For pre-win8 hosts or non-performance critical channels we assign the
648 * first CPU in the first NUMA node.
a119845f 649 */
7047f17d 650static void init_vp_index(struct vmbus_channel *channel, u16 dev_type)
a119845f
S
651{
652 u32 cur_cpu;
7047f17d 653 bool perf_chn = vmbus_devs[dev_type].perf_device;
1f656ff3
S
654 struct vmbus_channel *primary = channel->primary_channel;
655 int next_node;
25355252 656 cpumask_var_t available_mask;
9f01ec53 657 struct cpumask *alloced_mask;
a119845f 658
a119845f 659 if ((vmbus_proto_version == VERSION_WS2008) ||
25355252
DC
660 (vmbus_proto_version == VERSION_WIN7) || (!perf_chn) ||
661 !alloc_cpumask_var(&available_mask, GFP_KERNEL)) {
a119845f
S
662 /*
663 * Prior to win8, all channel interrupts are
664 * delivered on cpu 0.
665 * Also if the channel is not a performance critical
666 * channel, bind it to cpu 0.
25355252 667 * In case alloc_cpumask_var() fails, bind it to cpu 0.
a119845f 668 */
1f656ff3 669 channel->numa_node = 0;
d3ba720d 670 channel->target_cpu = 0;
7415aea6 671 channel->target_vp = hv_cpu_number_to_vp_number(0);
d3ba720d 672 return;
a119845f 673 }
ce59fec8 674
37c2578c
DC
675 spin_lock(&bind_channel_to_cpu_lock);
676
ce59fec8 677 /*
509879bd
S
678 * Based on the channel affinity policy, we will assign the NUMA
679 * nodes.
ce59fec8 680 */
509879bd
S
681
682 if ((channel->affinity_policy == HV_BALANCED) || (!primary)) {
1f656ff3
S
683 while (true) {
684 next_node = next_numa_node_id++;
509879bd 685 if (next_node == nr_node_ids) {
1f656ff3 686 next_node = next_numa_node_id = 0;
509879bd
S
687 continue;
688 }
1f656ff3
S
689 if (cpumask_empty(cpumask_of_node(next_node)))
690 continue;
691 break;
692 }
693 channel->numa_node = next_node;
694 primary = channel;
695 }
9f01ec53 696 alloced_mask = &hv_context.hv_numa_map[primary->numa_node];
1f656ff3 697
9f01ec53 698 if (cpumask_weight(alloced_mask) ==
1f656ff3 699 cpumask_weight(cpumask_of_node(primary->numa_node))) {
ce59fec8 700 /*
1f656ff3
S
701 * We have cycled through all the CPUs in the node;
702 * reset the alloced map.
ce59fec8 703 */
9f01ec53 704 cpumask_clear(alloced_mask);
ce59fec8
VK
705 }
706
25355252 707 cpumask_xor(available_mask, alloced_mask,
1f656ff3
S
708 cpumask_of_node(primary->numa_node));
709
3b71107d 710 cur_cpu = -1;
79fd8e70 711
509879bd
S
712 if (primary->affinity_policy == HV_LOCALIZED) {
713 /*
714 * Normally Hyper-V host doesn't create more subchannels
715 * than there are VCPUs on the node but it is possible when not
716 * all present VCPUs on the node are initialized by guest.
717 * Clear the alloced_cpus_in_node to start over.
718 */
719 if (cpumask_equal(&primary->alloced_cpus_in_node,
720 cpumask_of_node(primary->numa_node)))
721 cpumask_clear(&primary->alloced_cpus_in_node);
722 }
79fd8e70 723
3b71107d 724 while (true) {
25355252 725 cur_cpu = cpumask_next(cur_cpu, available_mask);
3b71107d
DC
726 if (cur_cpu >= nr_cpu_ids) {
727 cur_cpu = -1;
25355252 728 cpumask_copy(available_mask,
3b71107d
DC
729 cpumask_of_node(primary->numa_node));
730 continue;
731 }
732
509879bd
S
733 if (primary->affinity_policy == HV_LOCALIZED) {
734 /*
735 * NOTE: in the case of sub-channel, we clear the
736 * sub-channel related bit(s) in
737 * primary->alloced_cpus_in_node in
738 * hv_process_channel_removal(), so when we
739 * reload drivers like hv_netvsc in SMP guest, here
740 * we're able to re-allocate
741 * bit from primary->alloced_cpus_in_node.
742 */
743 if (!cpumask_test_cpu(cur_cpu,
744 &primary->alloced_cpus_in_node)) {
745 cpumask_set_cpu(cur_cpu,
746 &primary->alloced_cpus_in_node);
747 cpumask_set_cpu(cur_cpu, alloced_mask);
748 break;
749 }
750 } else {
3b71107d
DC
751 cpumask_set_cpu(cur_cpu, alloced_mask);
752 break;
753 }
754 }
1f656ff3 755
d3ba720d 756 channel->target_cpu = cur_cpu;
7415aea6 757 channel->target_vp = hv_cpu_number_to_vp_number(cur_cpu);
25355252 758
37c2578c
DC
759 spin_unlock(&bind_channel_to_cpu_lock);
760
25355252 761 free_cpumask_var(available_mask);
a119845f
S
762}
763
41571916
VK
764static void vmbus_wait_for_unload(void)
765{
cd95aad5
VK
766 int cpu;
767 void *page_addr;
768 struct hv_message *msg;
41571916 769 struct vmbus_channel_message_header *hdr;
cd95aad5 770 u32 message_type;
41571916 771
cd95aad5
VK
772 /*
773 * CHANNELMSG_UNLOAD_RESPONSE is always delivered to the CPU which was
774 * used for initial contact or to CPU0 depending on host version. When
775 * we're crashing on a different CPU let's hope that IRQ handler on
776 * the cpu which receives CHANNELMSG_UNLOAD_RESPONSE is still
777 * functional and vmbus_unload_response() will complete
778 * vmbus_connection.unload_event. If not, the last thing we can do is
779 * read message pages for all CPUs directly.
780 */
41571916 781 while (1) {
cd95aad5
VK
782 if (completion_done(&vmbus_connection.unload_event))
783 break;
41571916 784
cd95aad5 785 for_each_online_cpu(cpu) {
37cdd991
SH
786 struct hv_per_cpu_context *hv_cpu
787 = per_cpu_ptr(hv_context.cpu_context, cpu);
788
789 page_addr = hv_cpu->synic_message_page;
790 msg = (struct hv_message *)page_addr
791 + VMBUS_MESSAGE_SINT;
41571916 792
cd95aad5
VK
793 message_type = READ_ONCE(msg->header.message_type);
794 if (message_type == HVMSG_NONE)
795 continue;
41571916 796
cd95aad5
VK
797 hdr = (struct vmbus_channel_message_header *)
798 msg->u.payload;
799
800 if (hdr->msgtype == CHANNELMSG_UNLOAD_RESPONSE)
801 complete(&vmbus_connection.unload_event);
802
803 vmbus_signal_eom(msg, message_type);
804 }
805
806 mdelay(10);
807 }
808
809 /*
810 * We're crashing and already got the UNLOAD_RESPONSE, cleanup all
811 * maybe-pending messages on all CPUs to be able to receive new
812 * messages after we reconnect.
813 */
814 for_each_online_cpu(cpu) {
37cdd991
SH
815 struct hv_per_cpu_context *hv_cpu
816 = per_cpu_ptr(hv_context.cpu_context, cpu);
817
818 page_addr = hv_cpu->synic_message_page;
cd95aad5
VK
819 msg = (struct hv_message *)page_addr + VMBUS_MESSAGE_SINT;
820 msg->header.message_type = HVMSG_NONE;
41571916
VK
821 }
822}
823
2db84eff
S
824/*
825 * vmbus_unload_response - Handler for the unload response.
826 */
827static void vmbus_unload_response(struct vmbus_channel_message_header *hdr)
828{
829 /*
830 * This is a global event; just wakeup the waiting thread.
831 * Once we successfully unload, we can cleanup the monitor state.
832 */
833 complete(&vmbus_connection.unload_event);
834}
835
75ff3a8a 836void vmbus_initiate_unload(bool crash)
2db84eff
S
837{
838 struct vmbus_channel_message_header hdr;
839
4a54243f
VK
840 /* Pre-Win2012R2 hosts don't support reconnect */
841 if (vmbus_proto_version < VERSION_WIN8_1)
842 return;
843
2db84eff
S
844 init_completion(&vmbus_connection.unload_event);
845 memset(&hdr, 0, sizeof(struct vmbus_channel_message_header));
846 hdr.msgtype = CHANNELMSG_UNLOAD;
c0bb0392
VK
847 vmbus_post_msg(&hdr, sizeof(struct vmbus_channel_message_header),
848 !crash);
2db84eff 849
41571916
VK
850 /*
851 * vmbus_initiate_unload() is also called on crash and the crash can be
852 * happening in an interrupt context, where scheduling is impossible.
853 */
75ff3a8a 854 if (!crash)
41571916
VK
855 wait_for_completion(&vmbus_connection.unload_event);
856 else
857 vmbus_wait_for_unload();
2db84eff
S
858}
859
3e189519 860/*
e98cb276 861 * vmbus_onoffer - Handler for channel offers from vmbus in parent partition.
bd60c33e 862 *
bd60c33e 863 */
e98cb276 864static void vmbus_onoffer(struct vmbus_channel_message_header *hdr)
3e7ee490 865{
bd60c33e 866 struct vmbus_channel_offer_channel *offer;
188963ec 867 struct vmbus_channel *newchannel;
3e7ee490 868
bd60c33e 869 offer = (struct vmbus_channel_offer_channel *)hdr;
3e7ee490 870
03b81e66
VK
871 trace_vmbus_onoffer(offer);
872
454f18a9 873 /* Allocate the channel object and save this offer. */
e98cb276 874 newchannel = alloc_channel();
188963ec 875 if (!newchannel) {
9a547602 876 vmbus_release_relid(offer->child_relid);
54a66265 877 atomic_dec(&vmbus_connection.offer_in_progress);
0a46618d 878 pr_err("Unable to allocate channel object\n");
3e7ee490
HJ
879 return;
880 }
881
b3bf60c7
S
882 /*
883 * Setup state for signalling the host.
884 */
05784171 885 newchannel->sig_event = VMBUS_EVENT_CONNECTION_ID;
b3bf60c7
S
886
887 if (vmbus_proto_version != VERSION_WS2008) {
888 newchannel->is_dedicated_interrupt =
889 (offer->is_dedicated_interrupt != 0);
05784171 890 newchannel->sig_event = offer->connection_id;
b3bf60c7
S
891 }
892
c50f7fb2 893 memcpy(&newchannel->offermsg, offer,
bd60c33e 894 sizeof(struct vmbus_channel_offer_channel));
c50f7fb2
HZ
895 newchannel->monitor_grp = (u8)offer->monitorid / 32;
896 newchannel->monitor_bit = (u8)offer->monitorid % 32;
3e7ee490 897
2dd37cb8 898 vmbus_process_offer(newchannel);
3e7ee490
HJ
899}
900
3e189519 901/*
e98cb276 902 * vmbus_onoffer_rescind - Rescind offer handler.
bd60c33e
GKH
903 *
904 * We queue a work item to process this offer synchronously
905 */
e98cb276 906static void vmbus_onoffer_rescind(struct vmbus_channel_message_header *hdr)
3e7ee490 907{
bd60c33e 908 struct vmbus_channel_rescind_offer *rescind;
aded7165 909 struct vmbus_channel *channel;
d43e2fe7 910 struct device *dev;
3e7ee490 911
bd60c33e 912 rescind = (struct vmbus_channel_rescind_offer *)hdr;
85d9aa70 913
5175167c
VK
914 trace_vmbus_onoffer_rescind(rescind);
915
54a66265
S
916 /*
917 * The offer msg and the corresponding rescind msg
918 * from the host are guranteed to be ordered -
919 * offer comes in first and then the rescind.
920 * Since we process these events in work elements,
921 * and with preemption, we may end up processing
922 * the events out of order. Given that we handle these
923 * work elements on the same CPU, this is possible only
924 * in the case of preemption. In any case wait here
925 * until the offer processing has moved beyond the
926 * point where the channel is discoverable.
927 */
928
929 while (atomic_read(&vmbus_connection.offer_in_progress) != 0) {
930 /*
931 * We wait here until any channel offer is currently
932 * being processed.
933 */
934 msleep(1);
935 }
936
85d9aa70 937 mutex_lock(&vmbus_connection.channel_mutex);
d43e2fe7 938 channel = relid2channel(rescind->child_relid);
54a66265 939 mutex_unlock(&vmbus_connection.channel_mutex);
98e08702 940
2dd37cb8 941 if (channel == NULL) {
f52078cf 942 /*
54a66265
S
943 * We failed in processing the offer message;
944 * we would have cleaned up the relid in that
945 * failure path.
f52078cf 946 */
54a66265 947 return;
2dd37cb8 948 }
3e7ee490 949
d3b26dd7
DC
950 /*
951 * Before setting channel->rescind in vmbus_rescind_cleanup(), we
952 * should make sure the channel callback is not running any more.
953 */
954 vmbus_reset_channel_cb(channel);
955
6f3d791f
S
956 /*
957 * Now wait for offer handling to complete.
958 */
7fa32e5e 959 vmbus_rescind_cleanup(channel);
6f3d791f
S
960 while (READ_ONCE(channel->probe_done) == false) {
961 /*
962 * We wait here until any channel offer is currently
963 * being processed.
964 */
965 msleep(1);
966 }
967
968 /*
969 * At this point, the rescind handling can proceed safely.
970 */
971
d43e2fe7 972 if (channel->device_obj) {
499e8401
DC
973 if (channel->chn_rescind_callback) {
974 channel->chn_rescind_callback(channel);
54a66265 975 return;
499e8401 976 }
d43e2fe7
DC
977 /*
978 * We will have to unregister this device from the
979 * driver core.
980 */
981 dev = get_device(&channel->device_obj->device);
982 if (dev) {
983 vmbus_device_unregister(channel->device_obj);
984 put_device(dev);
985 }
2dd37cb8 986 }
54a66265
S
987 if (channel->primary_channel != NULL) {
988 /*
989 * Sub-channel is being rescinded. Following is the channel
990 * close sequence when initiated from the driveri (refer to
991 * vmbus_close() for details):
992 * 1. Close all sub-channels first
993 * 2. Then close the primary channel.
994 */
192b2d78 995 mutex_lock(&vmbus_connection.channel_mutex);
54a66265
S
996 if (channel->state == CHANNEL_OPEN_STATE) {
997 /*
998 * The channel is currently not open;
999 * it is safe for us to cleanup the channel.
1000 */
800b9329 1001 hv_process_channel_removal(channel);
7fa32e5e
S
1002 } else {
1003 complete(&channel->rescind_event);
54a66265 1004 }
192b2d78 1005 mutex_unlock(&vmbus_connection.channel_mutex);
54a66265 1006 }
85d9aa70
DC
1007}
1008
1009void vmbus_hvsock_device_unregister(struct vmbus_channel *channel)
1010{
85d9aa70
DC
1011 BUG_ON(!is_hvsock_channel(channel));
1012
9d35593b
DC
1013 /* We always get a rescind msg when a connection is closed. */
1014 while (!READ_ONCE(channel->probe_done) || !READ_ONCE(channel->rescind))
1015 msleep(1);
1016
85d9aa70 1017 vmbus_device_unregister(channel->device_obj);
3e7ee490 1018}
85d9aa70
DC
1019EXPORT_SYMBOL_GPL(vmbus_hvsock_device_unregister);
1020
3e7ee490 1021
3e189519 1022/*
e98cb276
HZ
1023 * vmbus_onoffers_delivered -
1024 * This is invoked when all offers have been delivered.
bd60c33e
GKH
1025 *
1026 * Nothing to do here.
1027 */
e98cb276 1028static void vmbus_onoffers_delivered(
bd60c33e 1029 struct vmbus_channel_message_header *hdr)
3e7ee490 1030{
3e7ee490
HJ
1031}
1032
3e189519 1033/*
e98cb276 1034 * vmbus_onopen_result - Open result handler.
bd60c33e
GKH
1035 *
1036 * This is invoked when we received a response to our channel open request.
1037 * Find the matching request, copy the response and signal the requesting
1038 * thread.
1039 */
e98cb276 1040static void vmbus_onopen_result(struct vmbus_channel_message_header *hdr)
3e7ee490 1041{
bd60c33e 1042 struct vmbus_channel_open_result *result;
188963ec
HZ
1043 struct vmbus_channel_msginfo *msginfo;
1044 struct vmbus_channel_message_header *requestheader;
1045 struct vmbus_channel_open_channel *openmsg;
dd0813b6 1046 unsigned long flags;
3e7ee490 1047
bd60c33e 1048 result = (struct vmbus_channel_open_result *)hdr;
3e7ee490 1049
9f23ce1a
VK
1050 trace_vmbus_onopen_result(result);
1051
bd60c33e
GKH
1052 /*
1053 * Find the open msg, copy the result and signal/unblock the wait event
1054 */
15b2f647 1055 spin_lock_irqsave(&vmbus_connection.channelmsg_lock, flags);
3e7ee490 1056
ebb61e5f
HJ
1057 list_for_each_entry(msginfo, &vmbus_connection.chn_msg_list,
1058 msglistentry) {
188963ec 1059 requestheader =
c50f7fb2 1060 (struct vmbus_channel_message_header *)msginfo->msg;
188963ec 1061
c50f7fb2 1062 if (requestheader->msgtype == CHANNELMSG_OPENCHANNEL) {
188963ec 1063 openmsg =
c50f7fb2
HZ
1064 (struct vmbus_channel_open_channel *)msginfo->msg;
1065 if (openmsg->child_relid == result->child_relid &&
1066 openmsg->openid == result->openid) {
1067 memcpy(&msginfo->response.open_result,
bd60c33e 1068 result,
9568a193
S
1069 sizeof(
1070 struct vmbus_channel_open_result));
1071 complete(&msginfo->waitevent);
3e7ee490
HJ
1072 break;
1073 }
1074 }
1075 }
15b2f647 1076 spin_unlock_irqrestore(&vmbus_connection.channelmsg_lock, flags);
3e7ee490
HJ
1077}
1078
3e189519 1079/*
e98cb276 1080 * vmbus_ongpadl_created - GPADL created handler.
bd60c33e
GKH
1081 *
1082 * This is invoked when we received a response to our gpadl create request.
1083 * Find the matching request, copy the response and signal the requesting
1084 * thread.
1085 */
e98cb276 1086static void vmbus_ongpadl_created(struct vmbus_channel_message_header *hdr)
3e7ee490 1087{
188963ec 1088 struct vmbus_channel_gpadl_created *gpadlcreated;
188963ec
HZ
1089 struct vmbus_channel_msginfo *msginfo;
1090 struct vmbus_channel_message_header *requestheader;
1091 struct vmbus_channel_gpadl_header *gpadlheader;
dd0813b6 1092 unsigned long flags;
3e7ee490 1093
188963ec 1094 gpadlcreated = (struct vmbus_channel_gpadl_created *)hdr;
3e7ee490 1095
a13bf0ea
VK
1096 trace_vmbus_ongpadl_created(gpadlcreated);
1097
bd60c33e
GKH
1098 /*
1099 * Find the establish msg, copy the result and signal/unblock the wait
1100 * event
1101 */
15b2f647 1102 spin_lock_irqsave(&vmbus_connection.channelmsg_lock, flags);
3e7ee490 1103
ebb61e5f
HJ
1104 list_for_each_entry(msginfo, &vmbus_connection.chn_msg_list,
1105 msglistentry) {
188963ec 1106 requestheader =
c50f7fb2 1107 (struct vmbus_channel_message_header *)msginfo->msg;
188963ec 1108
c50f7fb2 1109 if (requestheader->msgtype == CHANNELMSG_GPADL_HEADER) {
188963ec
HZ
1110 gpadlheader =
1111 (struct vmbus_channel_gpadl_header *)requestheader;
1112
c50f7fb2
HZ
1113 if ((gpadlcreated->child_relid ==
1114 gpadlheader->child_relid) &&
1115 (gpadlcreated->gpadl == gpadlheader->gpadl)) {
1116 memcpy(&msginfo->response.gpadl_created,
188963ec 1117 gpadlcreated,
9568a193
S
1118 sizeof(
1119 struct vmbus_channel_gpadl_created));
1120 complete(&msginfo->waitevent);
3e7ee490
HJ
1121 break;
1122 }
1123 }
1124 }
15b2f647 1125 spin_unlock_irqrestore(&vmbus_connection.channelmsg_lock, flags);
3e7ee490
HJ
1126}
1127
3e189519 1128/*
e98cb276 1129 * vmbus_ongpadl_torndown - GPADL torndown handler.
bd60c33e
GKH
1130 *
1131 * This is invoked when we received a response to our gpadl teardown request.
1132 * Find the matching request, copy the response and signal the requesting
1133 * thread.
1134 */
e98cb276 1135static void vmbus_ongpadl_torndown(
bd60c33e 1136 struct vmbus_channel_message_header *hdr)
3e7ee490 1137{
188963ec 1138 struct vmbus_channel_gpadl_torndown *gpadl_torndown;
188963ec
HZ
1139 struct vmbus_channel_msginfo *msginfo;
1140 struct vmbus_channel_message_header *requestheader;
1141 struct vmbus_channel_gpadl_teardown *gpadl_teardown;
dd0813b6 1142 unsigned long flags;
3e7ee490 1143
188963ec 1144 gpadl_torndown = (struct vmbus_channel_gpadl_torndown *)hdr;
bd60c33e 1145
602a8c52
VK
1146 trace_vmbus_ongpadl_torndown(gpadl_torndown);
1147
bd60c33e
GKH
1148 /*
1149 * Find the open msg, copy the result and signal/unblock the wait event
1150 */
15b2f647 1151 spin_lock_irqsave(&vmbus_connection.channelmsg_lock, flags);
3e7ee490 1152
ebb61e5f
HJ
1153 list_for_each_entry(msginfo, &vmbus_connection.chn_msg_list,
1154 msglistentry) {
188963ec 1155 requestheader =
c50f7fb2 1156 (struct vmbus_channel_message_header *)msginfo->msg;
3e7ee490 1157
c50f7fb2 1158 if (requestheader->msgtype == CHANNELMSG_GPADL_TEARDOWN) {
188963ec
HZ
1159 gpadl_teardown =
1160 (struct vmbus_channel_gpadl_teardown *)requestheader;
3e7ee490 1161
c50f7fb2
HZ
1162 if (gpadl_torndown->gpadl == gpadl_teardown->gpadl) {
1163 memcpy(&msginfo->response.gpadl_torndown,
188963ec 1164 gpadl_torndown,
9568a193
S
1165 sizeof(
1166 struct vmbus_channel_gpadl_torndown));
1167 complete(&msginfo->waitevent);
3e7ee490
HJ
1168 break;
1169 }
1170 }
1171 }
15b2f647 1172 spin_unlock_irqrestore(&vmbus_connection.channelmsg_lock, flags);
3e7ee490
HJ
1173}
1174
3e189519 1175/*
e98cb276 1176 * vmbus_onversion_response - Version response handler
bd60c33e
GKH
1177 *
1178 * This is invoked when we received a response to our initiate contact request.
1179 * Find the matching request, copy the response and signal the requesting
1180 * thread.
1181 */
e98cb276 1182static void vmbus_onversion_response(
bd60c33e 1183 struct vmbus_channel_message_header *hdr)
3e7ee490 1184{
188963ec
HZ
1185 struct vmbus_channel_msginfo *msginfo;
1186 struct vmbus_channel_message_header *requestheader;
188963ec 1187 struct vmbus_channel_version_response *version_response;
dd0813b6 1188 unsigned long flags;
3e7ee490 1189
188963ec 1190 version_response = (struct vmbus_channel_version_response *)hdr;
c7924fb0
VK
1191
1192 trace_vmbus_onversion_response(version_response);
1193
15b2f647 1194 spin_lock_irqsave(&vmbus_connection.channelmsg_lock, flags);
3e7ee490 1195
ebb61e5f
HJ
1196 list_for_each_entry(msginfo, &vmbus_connection.chn_msg_list,
1197 msglistentry) {
188963ec 1198 requestheader =
c50f7fb2 1199 (struct vmbus_channel_message_header *)msginfo->msg;
3e7ee490 1200
c50f7fb2
HZ
1201 if (requestheader->msgtype ==
1202 CHANNELMSG_INITIATE_CONTACT) {
c50f7fb2 1203 memcpy(&msginfo->response.version_response,
188963ec 1204 version_response,
bd60c33e 1205 sizeof(struct vmbus_channel_version_response));
9568a193 1206 complete(&msginfo->waitevent);
3e7ee490
HJ
1207 }
1208 }
15b2f647 1209 spin_unlock_irqrestore(&vmbus_connection.channelmsg_lock, flags);
3e7ee490
HJ
1210}
1211
c8212f04 1212/* Channel message dispatch table */
e6242fa0
SH
1213const struct vmbus_channel_message_table_entry
1214channel_message_table[CHANNELMSG_COUNT] = {
1215 { CHANNELMSG_INVALID, 0, NULL },
1216 { CHANNELMSG_OFFERCHANNEL, 0, vmbus_onoffer },
1217 { CHANNELMSG_RESCIND_CHANNELOFFER, 0, vmbus_onoffer_rescind },
1218 { CHANNELMSG_REQUESTOFFERS, 0, NULL },
1219 { CHANNELMSG_ALLOFFERS_DELIVERED, 1, vmbus_onoffers_delivered },
1220 { CHANNELMSG_OPENCHANNEL, 0, NULL },
1221 { CHANNELMSG_OPENCHANNEL_RESULT, 1, vmbus_onopen_result },
1222 { CHANNELMSG_CLOSECHANNEL, 0, NULL },
1223 { CHANNELMSG_GPADL_HEADER, 0, NULL },
1224 { CHANNELMSG_GPADL_BODY, 0, NULL },
1225 { CHANNELMSG_GPADL_CREATED, 1, vmbus_ongpadl_created },
1226 { CHANNELMSG_GPADL_TEARDOWN, 0, NULL },
1227 { CHANNELMSG_GPADL_TORNDOWN, 1, vmbus_ongpadl_torndown },
1228 { CHANNELMSG_RELID_RELEASED, 0, NULL },
1229 { CHANNELMSG_INITIATE_CONTACT, 0, NULL },
1230 { CHANNELMSG_VERSION_RESPONSE, 1, vmbus_onversion_response },
1231 { CHANNELMSG_UNLOAD, 0, NULL },
1232 { CHANNELMSG_UNLOAD_RESPONSE, 1, vmbus_unload_response },
1233 { CHANNELMSG_18, 0, NULL },
1234 { CHANNELMSG_19, 0, NULL },
1235 { CHANNELMSG_20, 0, NULL },
1236 { CHANNELMSG_TL_CONNECT_REQUEST, 0, NULL },
c8212f04
GKH
1237};
1238
3e189519 1239/*
e98cb276 1240 * vmbus_onmessage - Handler for channel protocol messages.
bd60c33e
GKH
1241 *
1242 * This is invoked in the vmbus worker thread context.
1243 */
e98cb276 1244void vmbus_onmessage(void *context)
3e7ee490 1245{
188963ec 1246 struct hv_message *msg = context;
82250213 1247 struct vmbus_channel_message_header *hdr;
3e7ee490
HJ
1248 int size;
1249
f6feebe0
HZ
1250 hdr = (struct vmbus_channel_message_header *)msg->u.payload;
1251 size = msg->header.payload_size;
3e7ee490 1252
716fa52f
VK
1253 trace_vmbus_on_message(hdr);
1254
c50f7fb2 1255 if (hdr->msgtype >= CHANNELMSG_COUNT) {
0a46618d 1256 pr_err("Received invalid channel message type %d size %d\n",
c50f7fb2 1257 hdr->msgtype, size);
04f50c4d 1258 print_hex_dump_bytes("", DUMP_PREFIX_NONE,
f6feebe0 1259 (unsigned char *)msg->u.payload, size);
3e7ee490
HJ
1260 return;
1261 }
1262
b7c6b02f
S
1263 if (channel_message_table[hdr->msgtype].message_handler)
1264 channel_message_table[hdr->msgtype].message_handler(hdr);
3e7ee490 1265 else
0a46618d 1266 pr_err("Unhandled channel message type %d\n", hdr->msgtype);
3e7ee490
HJ
1267}
1268
3e189519 1269/*
e98cb276 1270 * vmbus_request_offers - Send a request to get all our pending offers.
bd60c33e 1271 */
e98cb276 1272int vmbus_request_offers(void)
3e7ee490 1273{
82250213 1274 struct vmbus_channel_message_header *msg;
188963ec 1275 struct vmbus_channel_msginfo *msginfo;
51e5181d 1276 int ret;
3e7ee490 1277
188963ec 1278 msginfo = kmalloc(sizeof(*msginfo) +
bd60c33e
GKH
1279 sizeof(struct vmbus_channel_message_header),
1280 GFP_KERNEL);
188963ec 1281 if (!msginfo)
75910f23 1282 return -ENOMEM;
3e7ee490 1283
c50f7fb2 1284 msg = (struct vmbus_channel_message_header *)msginfo->msg;
3e7ee490 1285
c50f7fb2 1286 msg->msgtype = CHANNELMSG_REQUESTOFFERS;
3e7ee490 1287
c0bb0392
VK
1288 ret = vmbus_post_msg(msg, sizeof(struct vmbus_channel_message_header),
1289 true);
d6706e63
VK
1290
1291 trace_vmbus_request_offers(ret);
1292
bd60c33e 1293 if (ret != 0) {
0a46618d 1294 pr_err("Unable to request offers - %d\n", ret);
3e7ee490 1295
0c3b7b2f
S
1296 goto cleanup;
1297 }
3e7ee490 1298
0c3b7b2f 1299cleanup:
dd9b15dc 1300 kfree(msginfo);
3e7ee490 1301
3e7ee490
HJ
1302 return ret;
1303}
1304
e68d2971
S
1305/*
1306 * Retrieve the (sub) channel on which to send an outgoing request.
a13e8bbe
S
1307 * When a primary channel has multiple sub-channels, we try to
1308 * distribute the load equally amongst all available channels.
e68d2971
S
1309 */
1310struct vmbus_channel *vmbus_get_outgoing_channel(struct vmbus_channel *primary)
1311{
1312 struct list_head *cur, *tmp;
87712bf8 1313 int cur_cpu;
e68d2971
S
1314 struct vmbus_channel *cur_channel;
1315 struct vmbus_channel *outgoing_channel = primary;
a13e8bbe
S
1316 int next_channel;
1317 int i = 1;
e68d2971
S
1318
1319 if (list_empty(&primary->sc_list))
1320 return outgoing_channel;
1321
a13e8bbe
S
1322 next_channel = primary->next_oc++;
1323
1324 if (next_channel > (primary->num_sc)) {
1325 primary->next_oc = 0;
1326 return outgoing_channel;
1327 }
1328
7415aea6 1329 cur_cpu = hv_cpu_number_to_vp_number(smp_processor_id());
e68d2971
S
1330 list_for_each_safe(cur, tmp, &primary->sc_list) {
1331 cur_channel = list_entry(cur, struct vmbus_channel, sc_list);
1332 if (cur_channel->state != CHANNEL_OPENED_STATE)
1333 continue;
1334
1335 if (cur_channel->target_vp == cur_cpu)
1336 return cur_channel;
1337
a13e8bbe
S
1338 if (i == next_channel)
1339 return cur_channel;
e68d2971 1340
a13e8bbe 1341 i++;
e68d2971
S
1342 }
1343
1344 return outgoing_channel;
1345}
1346EXPORT_SYMBOL_GPL(vmbus_get_outgoing_channel);
1347
1348static void invoke_sc_cb(struct vmbus_channel *primary_channel)
1349{
1350 struct list_head *cur, *tmp;
1351 struct vmbus_channel *cur_channel;
1352
1353 if (primary_channel->sc_creation_callback == NULL)
1354 return;
1355
1356 list_for_each_safe(cur, tmp, &primary_channel->sc_list) {
1357 cur_channel = list_entry(cur, struct vmbus_channel, sc_list);
1358
1359 primary_channel->sc_creation_callback(cur_channel);
1360 }
1361}
1362
1363void vmbus_set_sc_create_callback(struct vmbus_channel *primary_channel,
1364 void (*sc_cr_cb)(struct vmbus_channel *new_sc))
1365{
1366 primary_channel->sc_creation_callback = sc_cr_cb;
1367}
1368EXPORT_SYMBOL_GPL(vmbus_set_sc_create_callback);
1369
1370bool vmbus_are_subchannels_present(struct vmbus_channel *primary)
1371{
1372 bool ret;
1373
1374 ret = !list_empty(&primary->sc_list);
1375
1376 if (ret) {
1377 /*
1378 * Invoke the callback on sub-channel creation.
1379 * This will present a uniform interface to the
1380 * clients.
1381 */
1382 invoke_sc_cb(primary);
1383 }
1384
1385 return ret;
1386}
1387EXPORT_SYMBOL_GPL(vmbus_are_subchannels_present);
499e8401
DC
1388
1389void vmbus_set_chn_rescind_callback(struct vmbus_channel *channel,
1390 void (*chn_rescind_cb)(struct vmbus_channel *))
1391{
1392 channel->chn_rescind_callback = chn_rescind_cb;
1393}
1394EXPORT_SYMBOL_GPL(vmbus_set_chn_rescind_callback);