1 /*
2 * Hyper-V guest/hypervisor interaction
3 *
4 * Copyright (c) 2015-2018 Virtuozzo International GmbH.
5 *
6 * This work is licensed under the terms of the GNU GPL, version 2 or later.
7 * See the COPYING file in the top-level directory.
8 */
9
10 #include "qemu/osdep.h"
11 #include "qemu/main-loop.h"
12 #include "qemu/module.h"
13 #include "qapi/error.h"
14 #include "system/address-spaces.h"
15 #include "system/memory.h"
16 #include "exec/target_page.h"
17 #include "linux/kvm.h"
18 #include "system/kvm.h"
19 #include "qemu/bitops.h"
20 #include "qemu/error-report.h"
21 #include "qemu/lockable.h"
22 #include "qemu/queue.h"
23 #include "qemu/rcu.h"
24 #include "qemu/rcu_queue.h"
25 #include "hw/hyperv/hyperv.h"
26 #include "qom/object.h"
27 #include "target/i386/kvm/hyperv-proto.h"
28 #include "exec/target_page.h"
29
30 struct SynICState {
31 DeviceState parent_obj;
32
33 CPUState *cs;
34
35 bool sctl_enabled;
36 hwaddr msg_page_addr;
37 hwaddr event_page_addr;
38 MemoryRegion msg_page_mr;
39 MemoryRegion event_page_mr;
40 struct hyperv_message_page *msg_page;
41 struct hyperv_event_flags_page *event_page;
42
43 QemuMutex sint_routes_mutex;
44 QLIST_HEAD(, HvSintRoute) sint_routes;
45 };
46
47 #define TYPE_SYNIC "hyperv-synic"
OBJECT_DECLARE_SIMPLE_TYPE(SynICState,SYNIC)48 OBJECT_DECLARE_SIMPLE_TYPE(SynICState, SYNIC)
49
50 static bool synic_enabled;
51
52 bool hyperv_is_synic_enabled(void)
53 {
54 return synic_enabled;
55 }
56
get_synic(CPUState * cs)57 static SynICState *get_synic(CPUState *cs)
58 {
59 return SYNIC(object_resolve_path_component(OBJECT(cs), "synic"));
60 }
61
synic_update(SynICState * synic,bool sctl_enable,hwaddr msg_page_addr,hwaddr event_page_addr)62 static void synic_update(SynICState *synic, bool sctl_enable,
63 hwaddr msg_page_addr, hwaddr event_page_addr)
64 {
65
66 synic->sctl_enabled = sctl_enable;
67 if (synic->msg_page_addr != msg_page_addr) {
68 if (synic->msg_page_addr) {
69 memory_region_del_subregion(get_system_memory(),
70 &synic->msg_page_mr);
71 }
72 if (msg_page_addr) {
73 memory_region_add_subregion(get_system_memory(), msg_page_addr,
74 &synic->msg_page_mr);
75 }
76 synic->msg_page_addr = msg_page_addr;
77 }
78 if (synic->event_page_addr != event_page_addr) {
79 if (synic->event_page_addr) {
80 memory_region_del_subregion(get_system_memory(),
81 &synic->event_page_mr);
82 }
83 if (event_page_addr) {
84 memory_region_add_subregion(get_system_memory(), event_page_addr,
85 &synic->event_page_mr);
86 }
87 synic->event_page_addr = event_page_addr;
88 }
89 }
90
hyperv_synic_update(CPUState * cs,bool sctl_enable,hwaddr msg_page_addr,hwaddr event_page_addr)91 void hyperv_synic_update(CPUState *cs, bool sctl_enable,
92 hwaddr msg_page_addr, hwaddr event_page_addr)
93 {
94 SynICState *synic = get_synic(cs);
95
96 if (!synic) {
97 return;
98 }
99
100 synic_update(synic, sctl_enable, msg_page_addr, event_page_addr);
101 }
102
synic_realize(DeviceState * dev,Error ** errp)103 static void synic_realize(DeviceState *dev, Error **errp)
104 {
105 Object *obj = OBJECT(dev);
106 SynICState *synic = SYNIC(dev);
107 char *msgp_name, *eventp_name;
108 uint32_t vp_index;
109
110 /* memory region names have to be globally unique */
111 vp_index = hyperv_vp_index(synic->cs);
112 msgp_name = g_strdup_printf("synic-%u-msg-page", vp_index);
113 eventp_name = g_strdup_printf("synic-%u-event-page", vp_index);
114
115 memory_region_init_ram(&synic->msg_page_mr, obj, msgp_name,
116 sizeof(*synic->msg_page), &error_abort);
117 memory_region_init_ram(&synic->event_page_mr, obj, eventp_name,
118 sizeof(*synic->event_page), &error_abort);
119 synic->msg_page = memory_region_get_ram_ptr(&synic->msg_page_mr);
120 synic->event_page = memory_region_get_ram_ptr(&synic->event_page_mr);
121 qemu_mutex_init(&synic->sint_routes_mutex);
122 QLIST_INIT(&synic->sint_routes);
123
124 g_free(msgp_name);
125 g_free(eventp_name);
126 }
127
synic_reset(DeviceState * dev)128 static void synic_reset(DeviceState *dev)
129 {
130 SynICState *synic = SYNIC(dev);
131 memset(synic->msg_page, 0, sizeof(*synic->msg_page));
132 memset(synic->event_page, 0, sizeof(*synic->event_page));
133 synic_update(synic, false, 0, 0);
134 assert(QLIST_EMPTY(&synic->sint_routes));
135 }
136
synic_class_init(ObjectClass * klass,const void * data)137 static void synic_class_init(ObjectClass *klass, const void *data)
138 {
139 DeviceClass *dc = DEVICE_CLASS(klass);
140
141 dc->realize = synic_realize;
142 device_class_set_legacy_reset(dc, synic_reset);
143 dc->user_creatable = false;
144 }
145
hyperv_synic_add(CPUState * cs)146 void hyperv_synic_add(CPUState *cs)
147 {
148 Object *obj;
149 SynICState *synic;
150
151 obj = object_new(TYPE_SYNIC);
152 synic = SYNIC(obj);
153 synic->cs = cs;
154 object_property_add_child(OBJECT(cs), "synic", obj);
155 object_unref(obj);
156 qdev_realize(DEVICE(obj), NULL, &error_abort);
157 synic_enabled = true;
158 }
159
hyperv_synic_reset(CPUState * cs)160 void hyperv_synic_reset(CPUState *cs)
161 {
162 SynICState *synic = get_synic(cs);
163
164 if (synic) {
165 device_cold_reset(DEVICE(synic));
166 }
167 }
168
169 static const TypeInfo synic_type_info = {
170 .name = TYPE_SYNIC,
171 .parent = TYPE_DEVICE,
172 .instance_size = sizeof(SynICState),
173 .class_init = synic_class_init,
174 };
175
synic_register_types(void)176 static void synic_register_types(void)
177 {
178 type_register_static(&synic_type_info);
179 }
180
181 type_init(synic_register_types)
182
183 /*
184 * KVM has its own message producers (SynIC timers). To guarantee
185 * serialization with both KVM vcpu and the guest cpu, the messages are first
186 * staged in an intermediate area and then posted to the SynIC message page in
187 * the vcpu thread.
188 */
189 typedef struct HvSintStagedMessage {
190 /* message content staged by hyperv_post_msg */
191 struct hyperv_message msg;
192 /* callback + data (r/o) to complete the processing in a BH */
193 HvSintMsgCb cb;
194 void *cb_data;
195 /* message posting status filled by cpu_post_msg */
196 int status;
197 /* passing the buck: */
198 enum {
199 /* initial state */
200 HV_STAGED_MSG_FREE,
201 /*
202 * hyperv_post_msg (e.g. in main loop) grabs the staged area (FREE ->
203 * BUSY), copies msg, and schedules cpu_post_msg on the assigned cpu
204 */
205 HV_STAGED_MSG_BUSY,
206 /*
207 * cpu_post_msg (vcpu thread) tries to copy staged msg to msg slot,
208 * notify the guest, records the status, marks the posting done (BUSY
209 * -> POSTED), and schedules sint_msg_bh BH
210 */
211 HV_STAGED_MSG_POSTED,
212 /*
213 * sint_msg_bh (BH) verifies that the posting is done, runs the
214 * callback, and starts over (POSTED -> FREE)
215 */
216 } state;
217 } HvSintStagedMessage;
218
219 struct HvSintRoute {
220 uint32_t sint;
221 SynICState *synic;
222 int gsi;
223 EventNotifier sint_set_notifier;
224 EventNotifier sint_ack_notifier;
225
226 HvSintStagedMessage *staged_msg;
227
228 unsigned refcount;
229 QLIST_ENTRY(HvSintRoute) link;
230 };
231
hyperv_find_vcpu(uint32_t vp_index)232 static CPUState *hyperv_find_vcpu(uint32_t vp_index)
233 {
234 CPUState *cs = qemu_get_cpu(vp_index);
235 assert(hyperv_vp_index(cs) == vp_index);
236 return cs;
237 }
238
239 /*
240 * BH to complete the processing of a staged message.
241 */
sint_msg_bh(void * opaque)242 static void sint_msg_bh(void *opaque)
243 {
244 HvSintRoute *sint_route = opaque;
245 HvSintStagedMessage *staged_msg = sint_route->staged_msg;
246
247 if (qatomic_read(&staged_msg->state) != HV_STAGED_MSG_POSTED) {
248 /* status nor ready yet (spurious ack from guest?), ignore */
249 return;
250 }
251
252 staged_msg->cb(staged_msg->cb_data, staged_msg->status);
253 staged_msg->status = 0;
254
255 /* staged message processing finished, ready to start over */
256 qatomic_set(&staged_msg->state, HV_STAGED_MSG_FREE);
257 /* drop the reference taken in hyperv_post_msg */
258 hyperv_sint_route_unref(sint_route);
259 }
260
261 /*
262 * Worker to transfer the message from the staging area into the SynIC message
263 * page in vcpu context.
264 */
cpu_post_msg(CPUState * cs,run_on_cpu_data data)265 static void cpu_post_msg(CPUState *cs, run_on_cpu_data data)
266 {
267 HvSintRoute *sint_route = data.host_ptr;
268 HvSintStagedMessage *staged_msg = sint_route->staged_msg;
269 SynICState *synic = sint_route->synic;
270 struct hyperv_message *dst_msg;
271 bool wait_for_sint_ack = false;
272
273 assert(staged_msg->state == HV_STAGED_MSG_BUSY);
274
275 if (!synic->msg_page_addr) {
276 staged_msg->status = -ENXIO;
277 goto posted;
278 }
279
280 dst_msg = &synic->msg_page->slot[sint_route->sint];
281
282 if (dst_msg->header.message_type != HV_MESSAGE_NONE) {
283 dst_msg->header.message_flags |= HV_MESSAGE_FLAG_PENDING;
284 staged_msg->status = -EAGAIN;
285 wait_for_sint_ack = true;
286 } else {
287 memcpy(dst_msg, &staged_msg->msg, sizeof(*dst_msg));
288 staged_msg->status = hyperv_sint_route_set_sint(sint_route);
289 }
290
291 memory_region_set_dirty(&synic->msg_page_mr, 0, sizeof(*synic->msg_page));
292
293 posted:
294 qatomic_set(&staged_msg->state, HV_STAGED_MSG_POSTED);
295 /*
296 * Notify the msg originator of the progress made; if the slot was busy we
297 * set msg_pending flag in it so it will be the guest who will do EOM and
298 * trigger the notification from KVM via sint_ack_notifier
299 */
300 if (!wait_for_sint_ack) {
301 aio_bh_schedule_oneshot(qemu_get_aio_context(), sint_msg_bh,
302 sint_route);
303 }
304 }
305
306 /*
307 * Post a Hyper-V message to the staging area, for delivery to guest in the
308 * vcpu thread.
309 */
hyperv_post_msg(HvSintRoute * sint_route,struct hyperv_message * src_msg)310 int hyperv_post_msg(HvSintRoute *sint_route, struct hyperv_message *src_msg)
311 {
312 HvSintStagedMessage *staged_msg = sint_route->staged_msg;
313
314 assert(staged_msg);
315
316 /* grab the staging area */
317 if (qatomic_cmpxchg(&staged_msg->state, HV_STAGED_MSG_FREE,
318 HV_STAGED_MSG_BUSY) != HV_STAGED_MSG_FREE) {
319 return -EAGAIN;
320 }
321
322 memcpy(&staged_msg->msg, src_msg, sizeof(*src_msg));
323
324 /* hold a reference on sint_route until the callback is finished */
325 hyperv_sint_route_ref(sint_route);
326
327 /* schedule message posting attempt in vcpu thread */
328 async_run_on_cpu(sint_route->synic->cs, cpu_post_msg,
329 RUN_ON_CPU_HOST_PTR(sint_route));
330 return 0;
331 }
332
sint_ack_handler(EventNotifier * notifier)333 static void sint_ack_handler(EventNotifier *notifier)
334 {
335 HvSintRoute *sint_route = container_of(notifier, HvSintRoute,
336 sint_ack_notifier);
337 event_notifier_test_and_clear(notifier);
338
339 /*
340 * the guest consumed the previous message so complete the current one with
341 * -EAGAIN and let the msg originator retry
342 */
343 aio_bh_schedule_oneshot(qemu_get_aio_context(), sint_msg_bh, sint_route);
344 }
345
346 /*
347 * Set given event flag for a given sint on a given vcpu, and signal the sint.
348 */
hyperv_set_event_flag(HvSintRoute * sint_route,unsigned eventno)349 int hyperv_set_event_flag(HvSintRoute *sint_route, unsigned eventno)
350 {
351 int ret;
352 SynICState *synic = sint_route->synic;
353 unsigned long *flags, set_mask;
354 unsigned set_idx;
355
356 if (eventno > HV_EVENT_FLAGS_COUNT) {
357 return -EINVAL;
358 }
359 if (!synic->sctl_enabled || !synic->event_page_addr) {
360 return -ENXIO;
361 }
362
363 set_idx = BIT_WORD(eventno);
364 set_mask = BIT_MASK(eventno);
365 flags = synic->event_page->slot[sint_route->sint].flags;
366
367 if ((qatomic_fetch_or(&flags[set_idx], set_mask) & set_mask) != set_mask) {
368 memory_region_set_dirty(&synic->event_page_mr, 0,
369 sizeof(*synic->event_page));
370 ret = hyperv_sint_route_set_sint(sint_route);
371 } else {
372 ret = 0;
373 }
374 return ret;
375 }
376
kvm_irqchip_add_hv_sint_route(KVMState * s,uint32_t vcpu,uint32_t sint)377 static int kvm_irqchip_add_hv_sint_route(KVMState *s, uint32_t vcpu, uint32_t sint)
378 {
379 struct kvm_irq_routing_entry kroute = {};
380 int virq;
381
382 if (!kvm_gsi_routing_enabled()) {
383 return -ENOSYS;
384 }
385 virq = kvm_irqchip_get_virq(s);
386 if (virq < 0) {
387 return virq;
388 }
389
390 kroute.gsi = virq;
391 kroute.type = KVM_IRQ_ROUTING_HV_SINT;
392 kroute.flags = 0;
393 kroute.u.hv_sint.vcpu = vcpu;
394 kroute.u.hv_sint.sint = sint;
395
396 kvm_add_routing_entry(s, &kroute);
397 kvm_irqchip_commit_routes(s);
398
399 return virq;
400 }
401
hyperv_sint_route_new(uint32_t vp_index,uint32_t sint,HvSintMsgCb cb,void * cb_data)402 HvSintRoute *hyperv_sint_route_new(uint32_t vp_index, uint32_t sint,
403 HvSintMsgCb cb, void *cb_data)
404 {
405 HvSintRoute *sint_route = NULL;
406 EventNotifier *ack_notifier = NULL;
407 int r, gsi;
408 CPUState *cs;
409 SynICState *synic;
410 bool ack_event_initialized = false;
411
412 cs = hyperv_find_vcpu(vp_index);
413 if (!cs) {
414 return NULL;
415 }
416
417 synic = get_synic(cs);
418 if (!synic) {
419 return NULL;
420 }
421
422 sint_route = g_new0(HvSintRoute, 1);
423 if (!sint_route) {
424 return NULL;
425 }
426
427 sint_route->synic = synic;
428 sint_route->sint = sint;
429 sint_route->refcount = 1;
430
431 ack_notifier = cb ? &sint_route->sint_ack_notifier : NULL;
432 if (ack_notifier) {
433 sint_route->staged_msg = g_new0(HvSintStagedMessage, 1);
434 if (!sint_route->staged_msg) {
435 goto cleanup_err_sint;
436 }
437 sint_route->staged_msg->cb = cb;
438 sint_route->staged_msg->cb_data = cb_data;
439
440 r = event_notifier_init(ack_notifier, false);
441 if (r) {
442 goto cleanup_err_sint;
443 }
444 event_notifier_set_handler(ack_notifier, sint_ack_handler);
445 ack_event_initialized = true;
446 }
447
448 /* See if we are done or we need to setup a GSI for this SintRoute */
449 if (!synic->sctl_enabled) {
450 goto cleanup;
451 }
452
453 /* We need to setup a GSI for this SintRoute */
454 r = event_notifier_init(&sint_route->sint_set_notifier, false);
455 if (r) {
456 goto cleanup_err_sint;
457 }
458
459 gsi = kvm_irqchip_add_hv_sint_route(kvm_state, vp_index, sint);
460 if (gsi < 0) {
461 goto cleanup_err_sint_notifier;
462 }
463
464 r = kvm_irqchip_add_irqfd_notifier_gsi(kvm_state,
465 &sint_route->sint_set_notifier,
466 ack_notifier, gsi);
467 if (r) {
468 goto cleanup_err_irqfd;
469 }
470 sint_route->gsi = gsi;
471 cleanup:
472 qemu_mutex_lock(&synic->sint_routes_mutex);
473 QLIST_INSERT_HEAD(&synic->sint_routes, sint_route, link);
474 qemu_mutex_unlock(&synic->sint_routes_mutex);
475 return sint_route;
476
477 cleanup_err_irqfd:
478 kvm_irqchip_release_virq(kvm_state, gsi);
479
480 cleanup_err_sint_notifier:
481 event_notifier_cleanup(&sint_route->sint_set_notifier);
482
483 cleanup_err_sint:
484 if (ack_notifier) {
485 if (ack_event_initialized) {
486 event_notifier_set_handler(ack_notifier, NULL);
487 event_notifier_cleanup(ack_notifier);
488 }
489
490 g_free(sint_route->staged_msg);
491 }
492
493 g_free(sint_route);
494 return NULL;
495 }
496
hyperv_sint_route_ref(HvSintRoute * sint_route)497 void hyperv_sint_route_ref(HvSintRoute *sint_route)
498 {
499 sint_route->refcount++;
500 }
501
hyperv_sint_route_unref(HvSintRoute * sint_route)502 void hyperv_sint_route_unref(HvSintRoute *sint_route)
503 {
504 SynICState *synic;
505
506 if (!sint_route) {
507 return;
508 }
509
510 assert(sint_route->refcount > 0);
511
512 if (--sint_route->refcount) {
513 return;
514 }
515
516 synic = sint_route->synic;
517 qemu_mutex_lock(&synic->sint_routes_mutex);
518 QLIST_REMOVE(sint_route, link);
519 qemu_mutex_unlock(&synic->sint_routes_mutex);
520
521 if (sint_route->gsi) {
522 kvm_irqchip_remove_irqfd_notifier_gsi(kvm_state,
523 &sint_route->sint_set_notifier,
524 sint_route->gsi);
525 kvm_irqchip_release_virq(kvm_state, sint_route->gsi);
526 event_notifier_cleanup(&sint_route->sint_set_notifier);
527 }
528
529 if (sint_route->staged_msg) {
530 event_notifier_set_handler(&sint_route->sint_ack_notifier, NULL);
531 event_notifier_cleanup(&sint_route->sint_ack_notifier);
532 g_free(sint_route->staged_msg);
533 }
534 g_free(sint_route);
535 }
536
hyperv_sint_route_set_sint(HvSintRoute * sint_route)537 int hyperv_sint_route_set_sint(HvSintRoute *sint_route)
538 {
539 if (!sint_route->gsi) {
540 return 0;
541 }
542
543 return event_notifier_set(&sint_route->sint_set_notifier);
544 }
545
546 typedef struct MsgHandler {
547 struct rcu_head rcu;
548 QLIST_ENTRY(MsgHandler) link;
549 uint32_t conn_id;
550 HvMsgHandler handler;
551 void *data;
552 } MsgHandler;
553
554 typedef struct EventFlagHandler {
555 struct rcu_head rcu;
556 QLIST_ENTRY(EventFlagHandler) link;
557 uint32_t conn_id;
558 EventNotifier *notifier;
559 } EventFlagHandler;
560
561 static QLIST_HEAD(, MsgHandler) msg_handlers;
562 static QLIST_HEAD(, EventFlagHandler) event_flag_handlers;
563 static QemuMutex handlers_mutex;
564
hv_init(void)565 static void __attribute__((constructor)) hv_init(void)
566 {
567 QLIST_INIT(&msg_handlers);
568 QLIST_INIT(&event_flag_handlers);
569 qemu_mutex_init(&handlers_mutex);
570 }
571
hyperv_set_msg_handler(uint32_t conn_id,HvMsgHandler handler,void * data)572 int hyperv_set_msg_handler(uint32_t conn_id, HvMsgHandler handler, void *data)
573 {
574 int ret;
575 MsgHandler *mh;
576
577 QEMU_LOCK_GUARD(&handlers_mutex);
578 QLIST_FOREACH(mh, &msg_handlers, link) {
579 if (mh->conn_id == conn_id) {
580 if (handler) {
581 ret = -EEXIST;
582 } else {
583 QLIST_REMOVE_RCU(mh, link);
584 g_free_rcu(mh, rcu);
585 ret = 0;
586 }
587 return ret;
588 }
589 }
590
591 if (handler) {
592 mh = g_new(MsgHandler, 1);
593 mh->conn_id = conn_id;
594 mh->handler = handler;
595 mh->data = data;
596 QLIST_INSERT_HEAD_RCU(&msg_handlers, mh, link);
597 ret = 0;
598 } else {
599 ret = -ENOENT;
600 }
601
602 return ret;
603 }
604
hyperv_hcall_post_message(uint64_t param,bool fast)605 uint16_t hyperv_hcall_post_message(uint64_t param, bool fast)
606 {
607 uint16_t ret;
608 hwaddr len;
609 struct hyperv_post_message_input *msg;
610 MsgHandler *mh;
611
612 if (fast) {
613 return HV_STATUS_INVALID_HYPERCALL_CODE;
614 }
615 if (param & (__alignof__(*msg) - 1)) {
616 return HV_STATUS_INVALID_ALIGNMENT;
617 }
618
619 len = sizeof(*msg);
620 msg = cpu_physical_memory_map(param, &len, 0);
621 if (len < sizeof(*msg)) {
622 ret = HV_STATUS_INSUFFICIENT_MEMORY;
623 goto unmap;
624 }
625 if (msg->payload_size > sizeof(msg->payload)) {
626 ret = HV_STATUS_INVALID_HYPERCALL_INPUT;
627 goto unmap;
628 }
629
630 ret = HV_STATUS_INVALID_CONNECTION_ID;
631 WITH_RCU_READ_LOCK_GUARD() {
632 QLIST_FOREACH_RCU(mh, &msg_handlers, link) {
633 if (mh->conn_id == (msg->connection_id & HV_CONNECTION_ID_MASK)) {
634 ret = mh->handler(msg, mh->data);
635 break;
636 }
637 }
638 }
639
640 unmap:
641 cpu_physical_memory_unmap(msg, len, 0, 0);
642 return ret;
643 }
644
set_event_flag_handler(uint32_t conn_id,EventNotifier * notifier)645 static int set_event_flag_handler(uint32_t conn_id, EventNotifier *notifier)
646 {
647 int ret;
648 EventFlagHandler *handler;
649
650 QEMU_LOCK_GUARD(&handlers_mutex);
651 QLIST_FOREACH(handler, &event_flag_handlers, link) {
652 if (handler->conn_id == conn_id) {
653 if (notifier) {
654 ret = -EEXIST;
655 } else {
656 QLIST_REMOVE_RCU(handler, link);
657 g_free_rcu(handler, rcu);
658 ret = 0;
659 }
660 return ret;
661 }
662 }
663
664 if (notifier) {
665 handler = g_new(EventFlagHandler, 1);
666 handler->conn_id = conn_id;
667 handler->notifier = notifier;
668 QLIST_INSERT_HEAD_RCU(&event_flag_handlers, handler, link);
669 ret = 0;
670 } else {
671 ret = -ENOENT;
672 }
673
674 return ret;
675 }
676
677 static bool process_event_flags_userspace;
678
hyperv_set_event_flag_handler(uint32_t conn_id,EventNotifier * notifier)679 int hyperv_set_event_flag_handler(uint32_t conn_id, EventNotifier *notifier)
680 {
681 if (!process_event_flags_userspace &&
682 !kvm_check_extension(kvm_state, KVM_CAP_HYPERV_EVENTFD)) {
683 process_event_flags_userspace = true;
684
685 warn_report("Hyper-V event signaling is not supported by this kernel; "
686 "using slower userspace hypercall processing");
687 }
688
689 if (!process_event_flags_userspace) {
690 struct kvm_hyperv_eventfd hvevfd = {
691 .conn_id = conn_id,
692 .fd = notifier ? event_notifier_get_fd(notifier) : -1,
693 .flags = notifier ? 0 : KVM_HYPERV_EVENTFD_DEASSIGN,
694 };
695
696 return kvm_vm_ioctl(kvm_state, KVM_HYPERV_EVENTFD, &hvevfd);
697 }
698 return set_event_flag_handler(conn_id, notifier);
699 }
700
hyperv_hcall_signal_event(uint64_t param,bool fast)701 uint16_t hyperv_hcall_signal_event(uint64_t param, bool fast)
702 {
703 EventFlagHandler *handler;
704
705 if (unlikely(!fast)) {
706 hwaddr addr = param;
707
708 if (addr & (__alignof__(addr) - 1)) {
709 return HV_STATUS_INVALID_ALIGNMENT;
710 }
711
712 param = ldq_phys(&address_space_memory, addr);
713 }
714
715 /*
716 * Per spec, bits 32-47 contain the extra "flag number". However, we
717 * have no use for it, and in all known usecases it is zero, so just
718 * report lookup failure if it isn't.
719 */
720 if (param & 0xffff00000000ULL) {
721 return HV_STATUS_INVALID_PORT_ID;
722 }
723 /* remaining bits are reserved-zero */
724 if (param & ~HV_CONNECTION_ID_MASK) {
725 return HV_STATUS_INVALID_HYPERCALL_INPUT;
726 }
727
728 RCU_READ_LOCK_GUARD();
729 QLIST_FOREACH_RCU(handler, &event_flag_handlers, link) {
730 if (handler->conn_id == param) {
731 event_notifier_set(handler->notifier);
732 return 0;
733 }
734 }
735 return HV_STATUS_INVALID_CONNECTION_ID;
736 }
737
738 static HvSynDbgHandler hv_syndbg_handler;
739 static void *hv_syndbg_context;
740
hyperv_set_syndbg_handler(HvSynDbgHandler handler,void * context)741 void hyperv_set_syndbg_handler(HvSynDbgHandler handler, void *context)
742 {
743 assert(!hv_syndbg_handler);
744 hv_syndbg_handler = handler;
745 hv_syndbg_context = context;
746 }
747
hyperv_hcall_reset_dbg_session(uint64_t outgpa)748 uint16_t hyperv_hcall_reset_dbg_session(uint64_t outgpa)
749 {
750 uint16_t ret;
751 HvSynDbgMsg msg;
752 struct hyperv_reset_debug_session_output *reset_dbg_session = NULL;
753 hwaddr len;
754
755 if (!hv_syndbg_handler) {
756 ret = HV_STATUS_INVALID_HYPERCALL_CODE;
757 goto cleanup;
758 }
759
760 len = sizeof(*reset_dbg_session);
761 reset_dbg_session = cpu_physical_memory_map(outgpa, &len, 1);
762 if (!reset_dbg_session || len < sizeof(*reset_dbg_session)) {
763 ret = HV_STATUS_INSUFFICIENT_MEMORY;
764 goto cleanup;
765 }
766
767 msg.type = HV_SYNDBG_MSG_CONNECTION_INFO;
768 ret = hv_syndbg_handler(hv_syndbg_context, &msg);
769 if (ret) {
770 goto cleanup;
771 }
772
773 reset_dbg_session->host_ip = msg.u.connection_info.host_ip;
774 reset_dbg_session->host_port = msg.u.connection_info.host_port;
775 /* The following fields are only used as validation for KDVM */
776 memset(&reset_dbg_session->host_mac, 0,
777 sizeof(reset_dbg_session->host_mac));
778 reset_dbg_session->target_ip = msg.u.connection_info.host_ip;
779 reset_dbg_session->target_port = msg.u.connection_info.host_port;
780 memset(&reset_dbg_session->target_mac, 0,
781 sizeof(reset_dbg_session->target_mac));
782 cleanup:
783 if (reset_dbg_session) {
784 cpu_physical_memory_unmap(reset_dbg_session,
785 sizeof(*reset_dbg_session), 1, len);
786 }
787
788 return ret;
789 }
790
hyperv_hcall_retreive_dbg_data(uint64_t ingpa,uint64_t outgpa,bool fast)791 uint16_t hyperv_hcall_retreive_dbg_data(uint64_t ingpa, uint64_t outgpa,
792 bool fast)
793 {
794 uint16_t ret;
795 struct hyperv_retrieve_debug_data_input *debug_data_in = NULL;
796 struct hyperv_retrieve_debug_data_output *debug_data_out = NULL;
797 hwaddr in_len, out_len;
798 HvSynDbgMsg msg;
799
800 if (fast || !hv_syndbg_handler) {
801 ret = HV_STATUS_INVALID_HYPERCALL_CODE;
802 goto cleanup;
803 }
804
805 in_len = sizeof(*debug_data_in);
806 debug_data_in = cpu_physical_memory_map(ingpa, &in_len, 0);
807 if (!debug_data_in || in_len < sizeof(*debug_data_in)) {
808 ret = HV_STATUS_INSUFFICIENT_MEMORY;
809 goto cleanup;
810 }
811
812 out_len = sizeof(*debug_data_out);
813 debug_data_out = cpu_physical_memory_map(outgpa, &out_len, 1);
814 if (!debug_data_out || out_len < sizeof(*debug_data_out)) {
815 ret = HV_STATUS_INSUFFICIENT_MEMORY;
816 goto cleanup;
817 }
818
819 msg.type = HV_SYNDBG_MSG_RECV;
820 msg.u.recv.buf_gpa = outgpa + sizeof(*debug_data_out);
821 msg.u.recv.count = TARGET_PAGE_SIZE - sizeof(*debug_data_out);
822 msg.u.recv.options = debug_data_in->options;
823 msg.u.recv.timeout = debug_data_in->timeout;
824 msg.u.recv.is_raw = true;
825 ret = hv_syndbg_handler(hv_syndbg_context, &msg);
826 if (ret == HV_STATUS_NO_DATA) {
827 debug_data_out->retrieved_count = 0;
828 debug_data_out->remaining_count = debug_data_in->count;
829 goto cleanup;
830 } else if (ret != HV_STATUS_SUCCESS) {
831 goto cleanup;
832 }
833
834 debug_data_out->retrieved_count = msg.u.recv.retrieved_count;
835 debug_data_out->remaining_count =
836 debug_data_in->count - msg.u.recv.retrieved_count;
837 cleanup:
838 if (debug_data_out) {
839 cpu_physical_memory_unmap(debug_data_out, sizeof(*debug_data_out), 1,
840 out_len);
841 }
842
843 if (debug_data_in) {
844 cpu_physical_memory_unmap(debug_data_in, sizeof(*debug_data_in), 0,
845 in_len);
846 }
847
848 return ret;
849 }
850
hyperv_hcall_post_dbg_data(uint64_t ingpa,uint64_t outgpa,bool fast)851 uint16_t hyperv_hcall_post_dbg_data(uint64_t ingpa, uint64_t outgpa, bool fast)
852 {
853 uint16_t ret;
854 struct hyperv_post_debug_data_input *post_data_in = NULL;
855 struct hyperv_post_debug_data_output *post_data_out = NULL;
856 hwaddr in_len, out_len;
857 HvSynDbgMsg msg;
858
859 if (fast || !hv_syndbg_handler) {
860 ret = HV_STATUS_INVALID_HYPERCALL_CODE;
861 goto cleanup;
862 }
863
864 in_len = sizeof(*post_data_in);
865 post_data_in = cpu_physical_memory_map(ingpa, &in_len, 0);
866 if (!post_data_in || in_len < sizeof(*post_data_in)) {
867 ret = HV_STATUS_INSUFFICIENT_MEMORY;
868 goto cleanup;
869 }
870
871 if (post_data_in->count > TARGET_PAGE_SIZE - sizeof(*post_data_in)) {
872 ret = HV_STATUS_INVALID_PARAMETER;
873 goto cleanup;
874 }
875
876 out_len = sizeof(*post_data_out);
877 post_data_out = cpu_physical_memory_map(outgpa, &out_len, 1);
878 if (!post_data_out || out_len < sizeof(*post_data_out)) {
879 ret = HV_STATUS_INSUFFICIENT_MEMORY;
880 goto cleanup;
881 }
882
883 msg.type = HV_SYNDBG_MSG_SEND;
884 msg.u.send.buf_gpa = ingpa + sizeof(*post_data_in);
885 msg.u.send.count = post_data_in->count;
886 msg.u.send.is_raw = true;
887 ret = hv_syndbg_handler(hv_syndbg_context, &msg);
888 if (ret != HV_STATUS_SUCCESS) {
889 goto cleanup;
890 }
891
892 post_data_out->pending_count = msg.u.send.pending_count;
893 ret = post_data_out->pending_count ? HV_STATUS_INSUFFICIENT_BUFFERS :
894 HV_STATUS_SUCCESS;
895 cleanup:
896 if (post_data_out) {
897 cpu_physical_memory_unmap(post_data_out,
898 sizeof(*post_data_out), 1, out_len);
899 }
900
901 if (post_data_in) {
902 cpu_physical_memory_unmap(post_data_in,
903 sizeof(*post_data_in), 0, in_len);
904 }
905
906 return ret;
907 }
908
hyperv_syndbg_send(uint64_t ingpa,uint32_t count)909 uint32_t hyperv_syndbg_send(uint64_t ingpa, uint32_t count)
910 {
911 HvSynDbgMsg msg;
912
913 if (!hv_syndbg_handler) {
914 return HV_SYNDBG_STATUS_INVALID;
915 }
916
917 msg.type = HV_SYNDBG_MSG_SEND;
918 msg.u.send.buf_gpa = ingpa;
919 msg.u.send.count = count;
920 msg.u.send.is_raw = false;
921 if (hv_syndbg_handler(hv_syndbg_context, &msg)) {
922 return HV_SYNDBG_STATUS_INVALID;
923 }
924
925 return HV_SYNDBG_STATUS_SEND_SUCCESS;
926 }
927
hyperv_syndbg_recv(uint64_t ingpa,uint32_t count)928 uint32_t hyperv_syndbg_recv(uint64_t ingpa, uint32_t count)
929 {
930 uint16_t ret;
931 HvSynDbgMsg msg;
932
933 if (!hv_syndbg_handler) {
934 return HV_SYNDBG_STATUS_INVALID;
935 }
936
937 msg.type = HV_SYNDBG_MSG_RECV;
938 msg.u.recv.buf_gpa = ingpa;
939 msg.u.recv.count = count;
940 msg.u.recv.options = 0;
941 msg.u.recv.timeout = 0;
942 msg.u.recv.is_raw = false;
943 ret = hv_syndbg_handler(hv_syndbg_context, &msg);
944 if (ret != HV_STATUS_SUCCESS) {
945 return 0;
946 }
947
948 return HV_SYNDBG_STATUS_SET_SIZE(HV_SYNDBG_STATUS_RECV_SUCCESS,
949 msg.u.recv.retrieved_count);
950 }
951
hyperv_syndbg_set_pending_page(uint64_t ingpa)952 void hyperv_syndbg_set_pending_page(uint64_t ingpa)
953 {
954 HvSynDbgMsg msg;
955
956 if (!hv_syndbg_handler) {
957 return;
958 }
959
960 msg.type = HV_SYNDBG_MSG_SET_PENDING_PAGE;
961 msg.u.pending_page.buf_gpa = ingpa;
962 hv_syndbg_handler(hv_syndbg_context, &msg);
963 }
964
hyperv_syndbg_query_options(void)965 uint64_t hyperv_syndbg_query_options(void)
966 {
967 HvSynDbgMsg msg;
968
969 if (!hv_syndbg_handler) {
970 return 0;
971 }
972
973 msg.type = HV_SYNDBG_MSG_QUERY_OPTIONS;
974 if (hv_syndbg_handler(hv_syndbg_context, &msg) != HV_STATUS_SUCCESS) {
975 return 0;
976 }
977
978 return msg.u.query_options.options;
979 }
980
981 static bool vmbus_recommended_features_enabled;
982
hyperv_are_vmbus_recommended_features_enabled(void)983 bool hyperv_are_vmbus_recommended_features_enabled(void)
984 {
985 return vmbus_recommended_features_enabled;
986 }
987
hyperv_set_vmbus_recommended_features_enabled(void)988 void hyperv_set_vmbus_recommended_features_enabled(void)
989 {
990 vmbus_recommended_features_enabled = true;
991 }
992