2 * Copyright (c) 2009, Microsoft Corporation.
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.
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
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.
18 * Haiyang Zhang <haiyangz@microsoft.com>
19 * Hank Janssen <hjanssen@microsoft.com>
21 #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
23 #include <linux/kernel.h>
24 #include <linux/interrupt.h>
25 #include <linux/sched.h>
26 #include <linux/wait.h>
28 #include <linux/slab.h>
29 #include <linux/list.h>
30 #include <linux/module.h>
31 #include <linux/completion.h>
32 #include <linux/delay.h>
33 #include <linux/hyperv.h>
34 #include <asm/mshyperv.h>
36 #include "hyperv_vmbus.h"
38 static void init_vp_index(struct vmbus_channel
*channel
, u16 dev_type
);
40 static const struct vmbus_device vmbus_devs
[] = {
48 { .dev_type
= HV_SCSI
,
72 { .dev_type
= HV_PCIE
,
77 /* Synthetic Frame Buffer */
83 /* Synthetic Keyboard */
90 { .dev_type
= HV_MOUSE
,
104 .perf_device
= false,
110 .perf_device
= false,
114 { .dev_type
= HV_SHUTDOWN
,
116 .perf_device
= false,
120 { .dev_type
= HV_FCOPY
,
122 .perf_device
= false,
126 { .dev_type
= HV_BACKUP
,
128 .perf_device
= false,
134 .perf_device
= false,
138 { .dev_type
= HV_UNKNOWN
,
139 .perf_device
= false,
143 static const struct {
145 } vmbus_unsupported_devs
[] = {
152 * The rescinded channel may be blocked waiting for a response from the host;
155 static void vmbus_rescind_cleanup(struct vmbus_channel
*channel
)
157 struct vmbus_channel_msginfo
*msginfo
;
161 spin_lock_irqsave(&vmbus_connection
.channelmsg_lock
, flags
);
162 channel
->rescind
= true;
163 list_for_each_entry(msginfo
, &vmbus_connection
.chn_msg_list
,
166 if (msginfo
->waiting_channel
== channel
) {
167 complete(&msginfo
->waitevent
);
171 spin_unlock_irqrestore(&vmbus_connection
.channelmsg_lock
, flags
);
174 static bool is_unsupported_vmbus_devs(const uuid_le
*guid
)
178 for (i
= 0; i
< ARRAY_SIZE(vmbus_unsupported_devs
); i
++)
179 if (!uuid_le_cmp(*guid
, vmbus_unsupported_devs
[i
].guid
))
184 static u16
hv_get_dev_type(const struct vmbus_channel
*channel
)
186 const uuid_le
*guid
= &channel
->offermsg
.offer
.if_type
;
189 if (is_hvsock_channel(channel
) || is_unsupported_vmbus_devs(guid
))
192 for (i
= HV_IDE
; i
< HV_UNKNOWN
; i
++) {
193 if (!uuid_le_cmp(*guid
, vmbus_devs
[i
].guid
))
196 pr_info("Unknown GUID: %pUl\n", guid
);
201 * vmbus_prep_negotiate_resp() - Create default response for Hyper-V Negotiate message
202 * @icmsghdrp: Pointer to msg header structure
203 * @icmsg_negotiate: Pointer to negotiate message structure
204 * @buf: Raw buffer channel data
206 * @icmsghdrp is of type &struct icmsg_hdr.
207 * Set up and fill in default negotiate response message.
209 * The fw_version and fw_vercnt specifies the framework version that
212 * The srv_version and srv_vercnt specifies the service
213 * versions we can support.
215 * Versions are given in decreasing order.
217 * nego_fw_version and nego_srv_version store the selected protocol versions.
219 * Mainly used by Hyper-V drivers.
221 bool vmbus_prep_negotiate_resp(struct icmsg_hdr
*icmsghdrp
,
222 u8
*buf
, const int *fw_version
, int fw_vercnt
,
223 const int *srv_version
, int srv_vercnt
,
224 int *nego_fw_version
, int *nego_srv_version
)
226 int icframe_major
, icframe_minor
;
227 int icmsg_major
, icmsg_minor
;
228 int fw_major
, fw_minor
;
229 int srv_major
, srv_minor
;
231 bool found_match
= false;
232 struct icmsg_negotiate
*negop
;
234 icmsghdrp
->icmsgsize
= 0x10;
235 negop
= (struct icmsg_negotiate
*)&buf
[
236 sizeof(struct vmbuspipe_hdr
) +
237 sizeof(struct icmsg_hdr
)];
239 icframe_major
= negop
->icframe_vercnt
;
242 icmsg_major
= negop
->icmsg_vercnt
;
246 * Select the framework version number we will
250 for (i
= 0; i
< fw_vercnt
; i
++) {
251 fw_major
= (fw_version
[i
] >> 16);
252 fw_minor
= (fw_version
[i
] & 0xFFFF);
254 for (j
= 0; j
< negop
->icframe_vercnt
; j
++) {
255 if ((negop
->icversion_data
[j
].major
== fw_major
) &&
256 (negop
->icversion_data
[j
].minor
== fw_minor
)) {
257 icframe_major
= negop
->icversion_data
[j
].major
;
258 icframe_minor
= negop
->icversion_data
[j
].minor
;
273 for (i
= 0; i
< srv_vercnt
; i
++) {
274 srv_major
= (srv_version
[i
] >> 16);
275 srv_minor
= (srv_version
[i
] & 0xFFFF);
277 for (j
= negop
->icframe_vercnt
;
278 (j
< negop
->icframe_vercnt
+ negop
->icmsg_vercnt
);
281 if ((negop
->icversion_data
[j
].major
== srv_major
) &&
282 (negop
->icversion_data
[j
].minor
== srv_minor
)) {
284 icmsg_major
= negop
->icversion_data
[j
].major
;
285 icmsg_minor
= negop
->icversion_data
[j
].minor
;
296 * Respond with the framework and service
297 * version numbers we can support.
302 negop
->icframe_vercnt
= 0;
303 negop
->icmsg_vercnt
= 0;
305 negop
->icframe_vercnt
= 1;
306 negop
->icmsg_vercnt
= 1;
310 *nego_fw_version
= (icframe_major
<< 16) | icframe_minor
;
312 if (nego_srv_version
)
313 *nego_srv_version
= (icmsg_major
<< 16) | icmsg_minor
;
315 negop
->icversion_data
[0].major
= icframe_major
;
316 negop
->icversion_data
[0].minor
= icframe_minor
;
317 negop
->icversion_data
[1].major
= icmsg_major
;
318 negop
->icversion_data
[1].minor
= icmsg_minor
;
322 EXPORT_SYMBOL_GPL(vmbus_prep_negotiate_resp
);
325 * alloc_channel - Allocate and initialize a vmbus channel object
327 static struct vmbus_channel
*alloc_channel(void)
329 struct vmbus_channel
*channel
;
331 channel
= kzalloc(sizeof(*channel
), GFP_ATOMIC
);
335 spin_lock_init(&channel
->lock
);
336 init_completion(&channel
->rescind_event
);
338 INIT_LIST_HEAD(&channel
->sc_list
);
339 INIT_LIST_HEAD(&channel
->percpu_list
);
341 tasklet_init(&channel
->callback_event
,
342 vmbus_on_event
, (unsigned long)channel
);
348 * free_channel - Release the resources used by the vmbus channel object
350 static void free_channel(struct vmbus_channel
*channel
)
352 tasklet_kill(&channel
->callback_event
);
354 kobject_put(&channel
->kobj
);
357 static void percpu_channel_enq(void *arg
)
359 struct vmbus_channel
*channel
= arg
;
360 struct hv_per_cpu_context
*hv_cpu
361 = this_cpu_ptr(hv_context
.cpu_context
);
363 list_add_tail_rcu(&channel
->percpu_list
, &hv_cpu
->chan_list
);
366 static void percpu_channel_deq(void *arg
)
368 struct vmbus_channel
*channel
= arg
;
370 list_del_rcu(&channel
->percpu_list
);
374 static void vmbus_release_relid(u32 relid
)
376 struct vmbus_channel_relid_released msg
;
379 memset(&msg
, 0, sizeof(struct vmbus_channel_relid_released
));
380 msg
.child_relid
= relid
;
381 msg
.header
.msgtype
= CHANNELMSG_RELID_RELEASED
;
382 ret
= vmbus_post_msg(&msg
, sizeof(struct vmbus_channel_relid_released
),
385 trace_vmbus_release_relid(&msg
, ret
);
388 void hv_process_channel_removal(u32 relid
)
391 struct vmbus_channel
*primary_channel
, *channel
;
393 BUG_ON(!mutex_is_locked(&vmbus_connection
.channel_mutex
));
396 * Make sure channel is valid as we may have raced.
398 channel
= relid2channel(relid
);
402 BUG_ON(!channel
->rescind
);
403 if (channel
->target_cpu
!= get_cpu()) {
405 smp_call_function_single(channel
->target_cpu
,
406 percpu_channel_deq
, channel
, true);
408 percpu_channel_deq(channel
);
412 if (channel
->primary_channel
== NULL
) {
413 list_del(&channel
->listentry
);
415 primary_channel
= channel
;
417 primary_channel
= channel
->primary_channel
;
418 spin_lock_irqsave(&primary_channel
->lock
, flags
);
419 list_del(&channel
->sc_list
);
420 primary_channel
->num_sc
--;
421 spin_unlock_irqrestore(&primary_channel
->lock
, flags
);
425 * We need to free the bit for init_vp_index() to work in the case
426 * of sub-channel, when we reload drivers like hv_netvsc.
428 if (channel
->affinity_policy
== HV_LOCALIZED
)
429 cpumask_clear_cpu(channel
->target_cpu
,
430 &primary_channel
->alloced_cpus_in_node
);
432 vmbus_release_relid(relid
);
434 free_channel(channel
);
437 void vmbus_free_channels(void)
439 struct vmbus_channel
*channel
, *tmp
;
441 list_for_each_entry_safe(channel
, tmp
, &vmbus_connection
.chn_list
,
443 /* hv_process_channel_removal() needs this */
444 channel
->rescind
= true;
446 vmbus_device_unregister(channel
->device_obj
);
451 * vmbus_process_offer - Process the offer by creating a channel/device
452 * associated with this offer
454 static void vmbus_process_offer(struct vmbus_channel
*newchannel
)
456 struct vmbus_channel
*channel
;
462 /* Make sure this is a new offer */
463 mutex_lock(&vmbus_connection
.channel_mutex
);
466 * Now that we have acquired the channel_mutex,
467 * we can release the potentially racing rescind thread.
469 atomic_dec(&vmbus_connection
.offer_in_progress
);
471 list_for_each_entry(channel
, &vmbus_connection
.chn_list
, listentry
) {
472 if (!uuid_le_cmp(channel
->offermsg
.offer
.if_type
,
473 newchannel
->offermsg
.offer
.if_type
) &&
474 !uuid_le_cmp(channel
->offermsg
.offer
.if_instance
,
475 newchannel
->offermsg
.offer
.if_instance
)) {
482 list_add_tail(&newchannel
->listentry
,
483 &vmbus_connection
.chn_list
);
485 mutex_unlock(&vmbus_connection
.channel_mutex
);
489 * Check to see if this is a sub-channel.
491 if (newchannel
->offermsg
.offer
.sub_channel_index
!= 0) {
493 * Process the sub-channel.
495 newchannel
->primary_channel
= channel
;
496 spin_lock_irqsave(&channel
->lock
, flags
);
497 list_add_tail(&newchannel
->sc_list
, &channel
->sc_list
);
499 spin_unlock_irqrestore(&channel
->lock
, flags
);
505 dev_type
= hv_get_dev_type(newchannel
);
507 init_vp_index(newchannel
, dev_type
);
509 if (newchannel
->target_cpu
!= get_cpu()) {
511 smp_call_function_single(newchannel
->target_cpu
,
515 percpu_channel_enq(newchannel
);
520 * This state is used to indicate a successful open
521 * so that when we do close the channel normally, we
522 * can cleanup properly
524 newchannel
->state
= CHANNEL_OPEN_STATE
;
527 struct hv_device
*dev
528 = newchannel
->primary_channel
->device_obj
;
530 if (vmbus_add_channel_kobj(dev
, newchannel
))
533 if (channel
->sc_creation_callback
!= NULL
)
534 channel
->sc_creation_callback(newchannel
);
535 newchannel
->probe_done
= true;
540 * Start the process of binding this offer to the driver
541 * We need to set the DeviceObject field before calling
542 * vmbus_child_dev_add()
544 newchannel
->device_obj
= vmbus_device_create(
545 &newchannel
->offermsg
.offer
.if_type
,
546 &newchannel
->offermsg
.offer
.if_instance
,
548 if (!newchannel
->device_obj
)
551 newchannel
->device_obj
->device_id
= dev_type
;
553 * Add the new device to the bus. This will kick off device-driver
554 * binding which eventually invokes the device driver's AddDevice()
557 ret
= vmbus_device_register(newchannel
->device_obj
);
560 pr_err("unable to add child device object (relid %d)\n",
561 newchannel
->offermsg
.child_relid
);
562 kfree(newchannel
->device_obj
);
566 newchannel
->probe_done
= true;
570 mutex_lock(&vmbus_connection
.channel_mutex
);
571 list_del(&newchannel
->listentry
);
572 mutex_unlock(&vmbus_connection
.channel_mutex
);
574 if (newchannel
->target_cpu
!= get_cpu()) {
576 smp_call_function_single(newchannel
->target_cpu
,
577 percpu_channel_deq
, newchannel
, true);
579 percpu_channel_deq(newchannel
);
583 vmbus_release_relid(newchannel
->offermsg
.child_relid
);
586 free_channel(newchannel
);
590 * We use this state to statically distribute the channel interrupt load.
592 static int next_numa_node_id
;
595 * Starting with Win8, we can statically distribute the incoming
596 * channel interrupt load by binding a channel to VCPU.
597 * We distribute the interrupt loads to one or more NUMA nodes based on
598 * the channel's affinity_policy.
600 * For pre-win8 hosts or non-performance critical channels we assign the
601 * first CPU in the first NUMA node.
603 static void init_vp_index(struct vmbus_channel
*channel
, u16 dev_type
)
606 bool perf_chn
= vmbus_devs
[dev_type
].perf_device
;
607 struct vmbus_channel
*primary
= channel
->primary_channel
;
609 struct cpumask available_mask
;
610 struct cpumask
*alloced_mask
;
612 if ((vmbus_proto_version
== VERSION_WS2008
) ||
613 (vmbus_proto_version
== VERSION_WIN7
) || (!perf_chn
)) {
615 * Prior to win8, all channel interrupts are
616 * delivered on cpu 0.
617 * Also if the channel is not a performance critical
618 * channel, bind it to cpu 0.
620 channel
->numa_node
= 0;
621 channel
->target_cpu
= 0;
622 channel
->target_vp
= hv_cpu_number_to_vp_number(0);
627 * Based on the channel affinity policy, we will assign the NUMA
631 if ((channel
->affinity_policy
== HV_BALANCED
) || (!primary
)) {
633 next_node
= next_numa_node_id
++;
634 if (next_node
== nr_node_ids
) {
635 next_node
= next_numa_node_id
= 0;
638 if (cpumask_empty(cpumask_of_node(next_node
)))
642 channel
->numa_node
= next_node
;
645 alloced_mask
= &hv_context
.hv_numa_map
[primary
->numa_node
];
647 if (cpumask_weight(alloced_mask
) ==
648 cpumask_weight(cpumask_of_node(primary
->numa_node
))) {
650 * We have cycled through all the CPUs in the node;
651 * reset the alloced map.
653 cpumask_clear(alloced_mask
);
656 cpumask_xor(&available_mask
, alloced_mask
,
657 cpumask_of_node(primary
->numa_node
));
661 if (primary
->affinity_policy
== HV_LOCALIZED
) {
663 * Normally Hyper-V host doesn't create more subchannels
664 * than there are VCPUs on the node but it is possible when not
665 * all present VCPUs on the node are initialized by guest.
666 * Clear the alloced_cpus_in_node to start over.
668 if (cpumask_equal(&primary
->alloced_cpus_in_node
,
669 cpumask_of_node(primary
->numa_node
)))
670 cpumask_clear(&primary
->alloced_cpus_in_node
);
674 cur_cpu
= cpumask_next(cur_cpu
, &available_mask
);
675 if (cur_cpu
>= nr_cpu_ids
) {
677 cpumask_copy(&available_mask
,
678 cpumask_of_node(primary
->numa_node
));
682 if (primary
->affinity_policy
== HV_LOCALIZED
) {
684 * NOTE: in the case of sub-channel, we clear the
685 * sub-channel related bit(s) in
686 * primary->alloced_cpus_in_node in
687 * hv_process_channel_removal(), so when we
688 * reload drivers like hv_netvsc in SMP guest, here
689 * we're able to re-allocate
690 * bit from primary->alloced_cpus_in_node.
692 if (!cpumask_test_cpu(cur_cpu
,
693 &primary
->alloced_cpus_in_node
)) {
694 cpumask_set_cpu(cur_cpu
,
695 &primary
->alloced_cpus_in_node
);
696 cpumask_set_cpu(cur_cpu
, alloced_mask
);
700 cpumask_set_cpu(cur_cpu
, alloced_mask
);
705 channel
->target_cpu
= cur_cpu
;
706 channel
->target_vp
= hv_cpu_number_to_vp_number(cur_cpu
);
709 static void vmbus_wait_for_unload(void)
713 struct hv_message
*msg
;
714 struct vmbus_channel_message_header
*hdr
;
718 * CHANNELMSG_UNLOAD_RESPONSE is always delivered to the CPU which was
719 * used for initial contact or to CPU0 depending on host version. When
720 * we're crashing on a different CPU let's hope that IRQ handler on
721 * the cpu which receives CHANNELMSG_UNLOAD_RESPONSE is still
722 * functional and vmbus_unload_response() will complete
723 * vmbus_connection.unload_event. If not, the last thing we can do is
724 * read message pages for all CPUs directly.
727 if (completion_done(&vmbus_connection
.unload_event
))
730 for_each_online_cpu(cpu
) {
731 struct hv_per_cpu_context
*hv_cpu
732 = per_cpu_ptr(hv_context
.cpu_context
, cpu
);
734 page_addr
= hv_cpu
->synic_message_page
;
735 msg
= (struct hv_message
*)page_addr
736 + VMBUS_MESSAGE_SINT
;
738 message_type
= READ_ONCE(msg
->header
.message_type
);
739 if (message_type
== HVMSG_NONE
)
742 hdr
= (struct vmbus_channel_message_header
*)
745 if (hdr
->msgtype
== CHANNELMSG_UNLOAD_RESPONSE
)
746 complete(&vmbus_connection
.unload_event
);
748 vmbus_signal_eom(msg
, message_type
);
755 * We're crashing and already got the UNLOAD_RESPONSE, cleanup all
756 * maybe-pending messages on all CPUs to be able to receive new
757 * messages after we reconnect.
759 for_each_online_cpu(cpu
) {
760 struct hv_per_cpu_context
*hv_cpu
761 = per_cpu_ptr(hv_context
.cpu_context
, cpu
);
763 page_addr
= hv_cpu
->synic_message_page
;
764 msg
= (struct hv_message
*)page_addr
+ VMBUS_MESSAGE_SINT
;
765 msg
->header
.message_type
= HVMSG_NONE
;
770 * vmbus_unload_response - Handler for the unload response.
772 static void vmbus_unload_response(struct vmbus_channel_message_header
*hdr
)
775 * This is a global event; just wakeup the waiting thread.
776 * Once we successfully unload, we can cleanup the monitor state.
778 complete(&vmbus_connection
.unload_event
);
781 void vmbus_initiate_unload(bool crash
)
783 struct vmbus_channel_message_header hdr
;
785 /* Pre-Win2012R2 hosts don't support reconnect */
786 if (vmbus_proto_version
< VERSION_WIN8_1
)
789 init_completion(&vmbus_connection
.unload_event
);
790 memset(&hdr
, 0, sizeof(struct vmbus_channel_message_header
));
791 hdr
.msgtype
= CHANNELMSG_UNLOAD
;
792 vmbus_post_msg(&hdr
, sizeof(struct vmbus_channel_message_header
),
796 * vmbus_initiate_unload() is also called on crash and the crash can be
797 * happening in an interrupt context, where scheduling is impossible.
800 wait_for_completion(&vmbus_connection
.unload_event
);
802 vmbus_wait_for_unload();
806 * vmbus_onoffer - Handler for channel offers from vmbus in parent partition.
809 static void vmbus_onoffer(struct vmbus_channel_message_header
*hdr
)
811 struct vmbus_channel_offer_channel
*offer
;
812 struct vmbus_channel
*newchannel
;
814 offer
= (struct vmbus_channel_offer_channel
*)hdr
;
816 trace_vmbus_onoffer(offer
);
818 /* Allocate the channel object and save this offer. */
819 newchannel
= alloc_channel();
821 vmbus_release_relid(offer
->child_relid
);
822 atomic_dec(&vmbus_connection
.offer_in_progress
);
823 pr_err("Unable to allocate channel object\n");
828 * Setup state for signalling the host.
830 newchannel
->sig_event
= VMBUS_EVENT_CONNECTION_ID
;
832 if (vmbus_proto_version
!= VERSION_WS2008
) {
833 newchannel
->is_dedicated_interrupt
=
834 (offer
->is_dedicated_interrupt
!= 0);
835 newchannel
->sig_event
= offer
->connection_id
;
838 memcpy(&newchannel
->offermsg
, offer
,
839 sizeof(struct vmbus_channel_offer_channel
));
840 newchannel
->monitor_grp
= (u8
)offer
->monitorid
/ 32;
841 newchannel
->monitor_bit
= (u8
)offer
->monitorid
% 32;
843 vmbus_process_offer(newchannel
);
847 * vmbus_onoffer_rescind - Rescind offer handler.
849 * We queue a work item to process this offer synchronously
851 static void vmbus_onoffer_rescind(struct vmbus_channel_message_header
*hdr
)
853 struct vmbus_channel_rescind_offer
*rescind
;
854 struct vmbus_channel
*channel
;
857 rescind
= (struct vmbus_channel_rescind_offer
*)hdr
;
859 trace_vmbus_onoffer_rescind(rescind
);
862 * The offer msg and the corresponding rescind msg
863 * from the host are guranteed to be ordered -
864 * offer comes in first and then the rescind.
865 * Since we process these events in work elements,
866 * and with preemption, we may end up processing
867 * the events out of order. Given that we handle these
868 * work elements on the same CPU, this is possible only
869 * in the case of preemption. In any case wait here
870 * until the offer processing has moved beyond the
871 * point where the channel is discoverable.
874 while (atomic_read(&vmbus_connection
.offer_in_progress
) != 0) {
876 * We wait here until any channel offer is currently
882 mutex_lock(&vmbus_connection
.channel_mutex
);
883 channel
= relid2channel(rescind
->child_relid
);
884 mutex_unlock(&vmbus_connection
.channel_mutex
);
886 if (channel
== NULL
) {
888 * We failed in processing the offer message;
889 * we would have cleaned up the relid in that
896 * Before setting channel->rescind in vmbus_rescind_cleanup(), we
897 * should make sure the channel callback is not running any more.
899 vmbus_reset_channel_cb(channel
);
902 * Now wait for offer handling to complete.
904 vmbus_rescind_cleanup(channel
);
905 while (READ_ONCE(channel
->probe_done
) == false) {
907 * We wait here until any channel offer is currently
914 * At this point, the rescind handling can proceed safely.
917 if (channel
->device_obj
) {
918 if (channel
->chn_rescind_callback
) {
919 channel
->chn_rescind_callback(channel
);
923 * We will have to unregister this device from the
926 dev
= get_device(&channel
->device_obj
->device
);
928 vmbus_device_unregister(channel
->device_obj
);
932 if (channel
->primary_channel
!= NULL
) {
934 * Sub-channel is being rescinded. Following is the channel
935 * close sequence when initiated from the driveri (refer to
936 * vmbus_close() for details):
937 * 1. Close all sub-channels first
938 * 2. Then close the primary channel.
940 mutex_lock(&vmbus_connection
.channel_mutex
);
941 if (channel
->state
== CHANNEL_OPEN_STATE
) {
943 * The channel is currently not open;
944 * it is safe for us to cleanup the channel.
946 hv_process_channel_removal(rescind
->child_relid
);
948 complete(&channel
->rescind_event
);
950 mutex_unlock(&vmbus_connection
.channel_mutex
);
954 void vmbus_hvsock_device_unregister(struct vmbus_channel
*channel
)
956 BUG_ON(!is_hvsock_channel(channel
));
958 /* We always get a rescind msg when a connection is closed. */
959 while (!READ_ONCE(channel
->probe_done
) || !READ_ONCE(channel
->rescind
))
962 vmbus_device_unregister(channel
->device_obj
);
964 EXPORT_SYMBOL_GPL(vmbus_hvsock_device_unregister
);
968 * vmbus_onoffers_delivered -
969 * This is invoked when all offers have been delivered.
971 * Nothing to do here.
973 static void vmbus_onoffers_delivered(
974 struct vmbus_channel_message_header
*hdr
)
979 * vmbus_onopen_result - Open result handler.
981 * This is invoked when we received a response to our channel open request.
982 * Find the matching request, copy the response and signal the requesting
985 static void vmbus_onopen_result(struct vmbus_channel_message_header
*hdr
)
987 struct vmbus_channel_open_result
*result
;
988 struct vmbus_channel_msginfo
*msginfo
;
989 struct vmbus_channel_message_header
*requestheader
;
990 struct vmbus_channel_open_channel
*openmsg
;
993 result
= (struct vmbus_channel_open_result
*)hdr
;
995 trace_vmbus_onopen_result(result
);
998 * Find the open msg, copy the result and signal/unblock the wait event
1000 spin_lock_irqsave(&vmbus_connection
.channelmsg_lock
, flags
);
1002 list_for_each_entry(msginfo
, &vmbus_connection
.chn_msg_list
,
1005 (struct vmbus_channel_message_header
*)msginfo
->msg
;
1007 if (requestheader
->msgtype
== CHANNELMSG_OPENCHANNEL
) {
1009 (struct vmbus_channel_open_channel
*)msginfo
->msg
;
1010 if (openmsg
->child_relid
== result
->child_relid
&&
1011 openmsg
->openid
== result
->openid
) {
1012 memcpy(&msginfo
->response
.open_result
,
1015 struct vmbus_channel_open_result
));
1016 complete(&msginfo
->waitevent
);
1021 spin_unlock_irqrestore(&vmbus_connection
.channelmsg_lock
, flags
);
1025 * vmbus_ongpadl_created - GPADL created handler.
1027 * This is invoked when we received a response to our gpadl create request.
1028 * Find the matching request, copy the response and signal the requesting
1031 static void vmbus_ongpadl_created(struct vmbus_channel_message_header
*hdr
)
1033 struct vmbus_channel_gpadl_created
*gpadlcreated
;
1034 struct vmbus_channel_msginfo
*msginfo
;
1035 struct vmbus_channel_message_header
*requestheader
;
1036 struct vmbus_channel_gpadl_header
*gpadlheader
;
1037 unsigned long flags
;
1039 gpadlcreated
= (struct vmbus_channel_gpadl_created
*)hdr
;
1041 trace_vmbus_ongpadl_created(gpadlcreated
);
1044 * Find the establish msg, copy the result and signal/unblock the wait
1047 spin_lock_irqsave(&vmbus_connection
.channelmsg_lock
, flags
);
1049 list_for_each_entry(msginfo
, &vmbus_connection
.chn_msg_list
,
1052 (struct vmbus_channel_message_header
*)msginfo
->msg
;
1054 if (requestheader
->msgtype
== CHANNELMSG_GPADL_HEADER
) {
1056 (struct vmbus_channel_gpadl_header
*)requestheader
;
1058 if ((gpadlcreated
->child_relid
==
1059 gpadlheader
->child_relid
) &&
1060 (gpadlcreated
->gpadl
== gpadlheader
->gpadl
)) {
1061 memcpy(&msginfo
->response
.gpadl_created
,
1064 struct vmbus_channel_gpadl_created
));
1065 complete(&msginfo
->waitevent
);
1070 spin_unlock_irqrestore(&vmbus_connection
.channelmsg_lock
, flags
);
1074 * vmbus_ongpadl_torndown - GPADL torndown handler.
1076 * This is invoked when we received a response to our gpadl teardown request.
1077 * Find the matching request, copy the response and signal the requesting
1080 static void vmbus_ongpadl_torndown(
1081 struct vmbus_channel_message_header
*hdr
)
1083 struct vmbus_channel_gpadl_torndown
*gpadl_torndown
;
1084 struct vmbus_channel_msginfo
*msginfo
;
1085 struct vmbus_channel_message_header
*requestheader
;
1086 struct vmbus_channel_gpadl_teardown
*gpadl_teardown
;
1087 unsigned long flags
;
1089 gpadl_torndown
= (struct vmbus_channel_gpadl_torndown
*)hdr
;
1091 trace_vmbus_ongpadl_torndown(gpadl_torndown
);
1094 * Find the open msg, copy the result and signal/unblock the wait event
1096 spin_lock_irqsave(&vmbus_connection
.channelmsg_lock
, flags
);
1098 list_for_each_entry(msginfo
, &vmbus_connection
.chn_msg_list
,
1101 (struct vmbus_channel_message_header
*)msginfo
->msg
;
1103 if (requestheader
->msgtype
== CHANNELMSG_GPADL_TEARDOWN
) {
1105 (struct vmbus_channel_gpadl_teardown
*)requestheader
;
1107 if (gpadl_torndown
->gpadl
== gpadl_teardown
->gpadl
) {
1108 memcpy(&msginfo
->response
.gpadl_torndown
,
1111 struct vmbus_channel_gpadl_torndown
));
1112 complete(&msginfo
->waitevent
);
1117 spin_unlock_irqrestore(&vmbus_connection
.channelmsg_lock
, flags
);
1121 * vmbus_onversion_response - Version response handler
1123 * This is invoked when we received a response to our initiate contact request.
1124 * Find the matching request, copy the response and signal the requesting
1127 static void vmbus_onversion_response(
1128 struct vmbus_channel_message_header
*hdr
)
1130 struct vmbus_channel_msginfo
*msginfo
;
1131 struct vmbus_channel_message_header
*requestheader
;
1132 struct vmbus_channel_version_response
*version_response
;
1133 unsigned long flags
;
1135 version_response
= (struct vmbus_channel_version_response
*)hdr
;
1137 trace_vmbus_onversion_response(version_response
);
1139 spin_lock_irqsave(&vmbus_connection
.channelmsg_lock
, flags
);
1141 list_for_each_entry(msginfo
, &vmbus_connection
.chn_msg_list
,
1144 (struct vmbus_channel_message_header
*)msginfo
->msg
;
1146 if (requestheader
->msgtype
==
1147 CHANNELMSG_INITIATE_CONTACT
) {
1148 memcpy(&msginfo
->response
.version_response
,
1150 sizeof(struct vmbus_channel_version_response
));
1151 complete(&msginfo
->waitevent
);
1154 spin_unlock_irqrestore(&vmbus_connection
.channelmsg_lock
, flags
);
1157 /* Channel message dispatch table */
1158 const struct vmbus_channel_message_table_entry
1159 channel_message_table
[CHANNELMSG_COUNT
] = {
1160 { CHANNELMSG_INVALID
, 0, NULL
},
1161 { CHANNELMSG_OFFERCHANNEL
, 0, vmbus_onoffer
},
1162 { CHANNELMSG_RESCIND_CHANNELOFFER
, 0, vmbus_onoffer_rescind
},
1163 { CHANNELMSG_REQUESTOFFERS
, 0, NULL
},
1164 { CHANNELMSG_ALLOFFERS_DELIVERED
, 1, vmbus_onoffers_delivered
},
1165 { CHANNELMSG_OPENCHANNEL
, 0, NULL
},
1166 { CHANNELMSG_OPENCHANNEL_RESULT
, 1, vmbus_onopen_result
},
1167 { CHANNELMSG_CLOSECHANNEL
, 0, NULL
},
1168 { CHANNELMSG_GPADL_HEADER
, 0, NULL
},
1169 { CHANNELMSG_GPADL_BODY
, 0, NULL
},
1170 { CHANNELMSG_GPADL_CREATED
, 1, vmbus_ongpadl_created
},
1171 { CHANNELMSG_GPADL_TEARDOWN
, 0, NULL
},
1172 { CHANNELMSG_GPADL_TORNDOWN
, 1, vmbus_ongpadl_torndown
},
1173 { CHANNELMSG_RELID_RELEASED
, 0, NULL
},
1174 { CHANNELMSG_INITIATE_CONTACT
, 0, NULL
},
1175 { CHANNELMSG_VERSION_RESPONSE
, 1, vmbus_onversion_response
},
1176 { CHANNELMSG_UNLOAD
, 0, NULL
},
1177 { CHANNELMSG_UNLOAD_RESPONSE
, 1, vmbus_unload_response
},
1178 { CHANNELMSG_18
, 0, NULL
},
1179 { CHANNELMSG_19
, 0, NULL
},
1180 { CHANNELMSG_20
, 0, NULL
},
1181 { CHANNELMSG_TL_CONNECT_REQUEST
, 0, NULL
},
1185 * vmbus_onmessage - Handler for channel protocol messages.
1187 * This is invoked in the vmbus worker thread context.
1189 void vmbus_onmessage(void *context
)
1191 struct hv_message
*msg
= context
;
1192 struct vmbus_channel_message_header
*hdr
;
1195 hdr
= (struct vmbus_channel_message_header
*)msg
->u
.payload
;
1196 size
= msg
->header
.payload_size
;
1198 trace_vmbus_on_message(hdr
);
1200 if (hdr
->msgtype
>= CHANNELMSG_COUNT
) {
1201 pr_err("Received invalid channel message type %d size %d\n",
1202 hdr
->msgtype
, size
);
1203 print_hex_dump_bytes("", DUMP_PREFIX_NONE
,
1204 (unsigned char *)msg
->u
.payload
, size
);
1208 if (channel_message_table
[hdr
->msgtype
].message_handler
)
1209 channel_message_table
[hdr
->msgtype
].message_handler(hdr
);
1211 pr_err("Unhandled channel message type %d\n", hdr
->msgtype
);
1215 * vmbus_request_offers - Send a request to get all our pending offers.
1217 int vmbus_request_offers(void)
1219 struct vmbus_channel_message_header
*msg
;
1220 struct vmbus_channel_msginfo
*msginfo
;
1223 msginfo
= kmalloc(sizeof(*msginfo
) +
1224 sizeof(struct vmbus_channel_message_header
),
1229 msg
= (struct vmbus_channel_message_header
*)msginfo
->msg
;
1231 msg
->msgtype
= CHANNELMSG_REQUESTOFFERS
;
1233 ret
= vmbus_post_msg(msg
, sizeof(struct vmbus_channel_message_header
),
1236 trace_vmbus_request_offers(ret
);
1239 pr_err("Unable to request offers - %d\n", ret
);
1251 * Retrieve the (sub) channel on which to send an outgoing request.
1252 * When a primary channel has multiple sub-channels, we try to
1253 * distribute the load equally amongst all available channels.
1255 struct vmbus_channel
*vmbus_get_outgoing_channel(struct vmbus_channel
*primary
)
1257 struct list_head
*cur
, *tmp
;
1259 struct vmbus_channel
*cur_channel
;
1260 struct vmbus_channel
*outgoing_channel
= primary
;
1264 if (list_empty(&primary
->sc_list
))
1265 return outgoing_channel
;
1267 next_channel
= primary
->next_oc
++;
1269 if (next_channel
> (primary
->num_sc
)) {
1270 primary
->next_oc
= 0;
1271 return outgoing_channel
;
1274 cur_cpu
= hv_cpu_number_to_vp_number(smp_processor_id());
1275 list_for_each_safe(cur
, tmp
, &primary
->sc_list
) {
1276 cur_channel
= list_entry(cur
, struct vmbus_channel
, sc_list
);
1277 if (cur_channel
->state
!= CHANNEL_OPENED_STATE
)
1280 if (cur_channel
->target_vp
== cur_cpu
)
1283 if (i
== next_channel
)
1289 return outgoing_channel
;
1291 EXPORT_SYMBOL_GPL(vmbus_get_outgoing_channel
);
1293 static void invoke_sc_cb(struct vmbus_channel
*primary_channel
)
1295 struct list_head
*cur
, *tmp
;
1296 struct vmbus_channel
*cur_channel
;
1298 if (primary_channel
->sc_creation_callback
== NULL
)
1301 list_for_each_safe(cur
, tmp
, &primary_channel
->sc_list
) {
1302 cur_channel
= list_entry(cur
, struct vmbus_channel
, sc_list
);
1304 primary_channel
->sc_creation_callback(cur_channel
);
1308 void vmbus_set_sc_create_callback(struct vmbus_channel
*primary_channel
,
1309 void (*sc_cr_cb
)(struct vmbus_channel
*new_sc
))
1311 primary_channel
->sc_creation_callback
= sc_cr_cb
;
1313 EXPORT_SYMBOL_GPL(vmbus_set_sc_create_callback
);
1315 bool vmbus_are_subchannels_present(struct vmbus_channel
*primary
)
1319 ret
= !list_empty(&primary
->sc_list
);
1323 * Invoke the callback on sub-channel creation.
1324 * This will present a uniform interface to the
1327 invoke_sc_cb(primary
);
1332 EXPORT_SYMBOL_GPL(vmbus_are_subchannels_present
);
1334 void vmbus_set_chn_rescind_callback(struct vmbus_channel
*channel
,
1335 void (*chn_rescind_cb
)(struct vmbus_channel
*))
1337 channel
->chn_rescind_callback
= chn_rescind_cb
;
1339 EXPORT_SYMBOL_GPL(vmbus_set_chn_rescind_callback
);