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1 /*
2 * VMware VMCI Driver
3 *
4 * Copyright (C) 2012 VMware, Inc. All rights reserved.
5 *
6 * This program is free software; you can redistribute it and/or modify it
7 * under the terms of the GNU General Public License as published by the
8 * Free Software Foundation version 2 and no later version.
9 *
10 * This program is distributed in the hope that it will be useful, but
11 * WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY
12 * or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
13 * for more details.
14 */
15
16 #include <linux/vmw_vmci_defs.h>
17 #include <linux/vmw_vmci_api.h>
18 #include <linux/moduleparam.h>
19 #include <linux/miscdevice.h>
20 #include <linux/interrupt.h>
21 #include <linux/highmem.h>
22 #include <linux/atomic.h>
23 #include <linux/kernel.h>
24 #include <linux/module.h>
25 #include <linux/mutex.h>
26 #include <linux/sched.h>
27 #include <linux/slab.h>
28 #include <linux/file.h>
29 #include <linux/init.h>
30 #include <linux/poll.h>
31 #include <linux/pci.h>
32 #include <linux/smp.h>
33 #include <linux/fs.h>
34 #include <linux/io.h>
35
36 #include "vmci_handle_array.h"
37 #include "vmci_queue_pair.h"
38 #include "vmci_datagram.h"
39 #include "vmci_doorbell.h"
40 #include "vmci_resource.h"
41 #include "vmci_context.h"
42 #include "vmci_driver.h"
43 #include "vmci_event.h"
44
45 #define VMCI_UTIL_NUM_RESOURCES 1
46
47 enum {
48 VMCI_NOTIFY_RESOURCE_QUEUE_PAIR = 0,
49 VMCI_NOTIFY_RESOURCE_DOOR_BELL = 1,
50 };
51
52 enum {
53 VMCI_NOTIFY_RESOURCE_ACTION_NOTIFY = 0,
54 VMCI_NOTIFY_RESOURCE_ACTION_CREATE = 1,
55 VMCI_NOTIFY_RESOURCE_ACTION_DESTROY = 2,
56 };
57
58 /*
59 * VMCI driver initialization. This block can also be used to
60 * pass initial group membership etc.
61 */
62 struct vmci_init_blk {
63 u32 cid;
64 u32 flags;
65 };
66
67 /* VMCIqueue_pairAllocInfo_VMToVM */
68 struct vmci_qp_alloc_info_vmvm {
69 struct vmci_handle handle;
70 u32 peer;
71 u32 flags;
72 u64 produce_size;
73 u64 consume_size;
74 u64 produce_page_file; /* User VA. */
75 u64 consume_page_file; /* User VA. */
76 u64 produce_page_file_size; /* Size of the file name array. */
77 u64 consume_page_file_size; /* Size of the file name array. */
78 s32 result;
79 u32 _pad;
80 };
81
82 /* VMCISetNotifyInfo: Used to pass notify flag's address to the host driver. */
83 struct vmci_set_notify_info {
84 u64 notify_uva;
85 s32 result;
86 u32 _pad;
87 };
88
89 /*
90 * Per-instance host state
91 */
92 struct vmci_host_dev {
93 struct vmci_ctx *context;
94 int user_version;
95 enum vmci_obj_type ct_type;
96 struct mutex lock; /* Mutex lock for vmci context access */
97 };
98
99 static struct vmci_ctx *host_context;
100 static bool vmci_host_device_initialized;
101 static atomic_t vmci_host_active_users = ATOMIC_INIT(0);
102
103 /*
104 * Determines whether the VMCI host personality is
105 * available. Since the core functionality of the host driver is
106 * always present, all guests could possibly use the host
107 * personality. However, to minimize the deviation from the
108 * pre-unified driver state of affairs, we only consider the host
109 * device active if there is no active guest device or if there
110 * are VMX'en with active VMCI contexts using the host device.
111 */
112 bool vmci_host_code_active(void)
113 {
114 return vmci_host_device_initialized &&
115 (!vmci_guest_code_active() ||
116 atomic_read(&vmci_host_active_users) > 0);
117 }
118
119 /*
120 * Called on open of /dev/vmci.
121 */
122 static int vmci_host_open(struct inode *inode, struct file *filp)
123 {
124 struct vmci_host_dev *vmci_host_dev;
125
126 vmci_host_dev = kzalloc(sizeof(struct vmci_host_dev), GFP_KERNEL);
127 if (vmci_host_dev == NULL)
128 return -ENOMEM;
129
130 vmci_host_dev->ct_type = VMCIOBJ_NOT_SET;
131 mutex_init(&vmci_host_dev->lock);
132 filp->private_data = vmci_host_dev;
133
134 return 0;
135 }
136
137 /*
138 * Called on close of /dev/vmci, most often when the process
139 * exits.
140 */
141 static int vmci_host_close(struct inode *inode, struct file *filp)
142 {
143 struct vmci_host_dev *vmci_host_dev = filp->private_data;
144
145 if (vmci_host_dev->ct_type == VMCIOBJ_CONTEXT) {
146 vmci_ctx_destroy(vmci_host_dev->context);
147 vmci_host_dev->context = NULL;
148
149 /*
150 * The number of active contexts is used to track whether any
151 * VMX'en are using the host personality. It is incremented when
152 * a context is created through the IOCTL_VMCI_INIT_CONTEXT
153 * ioctl.
154 */
155 atomic_dec(&vmci_host_active_users);
156 }
157 vmci_host_dev->ct_type = VMCIOBJ_NOT_SET;
158
159 kfree(vmci_host_dev);
160 filp->private_data = NULL;
161 return 0;
162 }
163
164 /*
165 * This is used to wake up the VMX when a VMCI call arrives, or
166 * to wake up select() or poll() at the next clock tick.
167 */
168 static unsigned int vmci_host_poll(struct file *filp, poll_table *wait)
169 {
170 struct vmci_host_dev *vmci_host_dev = filp->private_data;
171 struct vmci_ctx *context = vmci_host_dev->context;
172 unsigned int mask = 0;
173
174 if (vmci_host_dev->ct_type == VMCIOBJ_CONTEXT) {
175 /* Check for VMCI calls to this VM context. */
176 if (wait)
177 poll_wait(filp, &context->host_context.wait_queue,
178 wait);
179
180 spin_lock(&context->lock);
181 if (context->pending_datagrams > 0 ||
182 vmci_handle_arr_get_size(
183 context->pending_doorbell_array) > 0) {
184 mask = POLLIN;
185 }
186 spin_unlock(&context->lock);
187 }
188 return mask;
189 }
190
191 /*
192 * Copies the handles of a handle array into a user buffer, and
193 * returns the new length in userBufferSize. If the copy to the
194 * user buffer fails, the functions still returns VMCI_SUCCESS,
195 * but retval != 0.
196 */
197 static int drv_cp_harray_to_user(void __user *user_buf_uva,
198 u64 *user_buf_size,
199 struct vmci_handle_arr *handle_array,
200 int *retval)
201 {
202 u32 array_size = 0;
203 struct vmci_handle *handles;
204
205 if (handle_array)
206 array_size = vmci_handle_arr_get_size(handle_array);
207
208 if (array_size * sizeof(*handles) > *user_buf_size)
209 return VMCI_ERROR_MORE_DATA;
210
211 *user_buf_size = array_size * sizeof(*handles);
212 if (*user_buf_size)
213 *retval = copy_to_user(user_buf_uva,
214 vmci_handle_arr_get_handles
215 (handle_array), *user_buf_size);
216
217 return VMCI_SUCCESS;
218 }
219
220 /*
221 * Sets up a given context for notify to work. Maps the notify
222 * boolean in user VA into kernel space.
223 */
224 static int vmci_host_setup_notify(struct vmci_ctx *context,
225 unsigned long uva)
226 {
227 int retval;
228
229 if (context->notify_page) {
230 pr_devel("%s: Notify mechanism is already set up\n", __func__);
231 return VMCI_ERROR_DUPLICATE_ENTRY;
232 }
233
234 /*
235 * We are using 'bool' internally, but let's make sure we explicit
236 * about the size.
237 */
238 BUILD_BUG_ON(sizeof(bool) != sizeof(u8));
239 if (!access_ok(VERIFY_WRITE, (void __user *)uva, sizeof(u8)))
240 return VMCI_ERROR_GENERIC;
241
242 /*
243 * Lock physical page backing a given user VA.
244 */
245 retval = get_user_pages_fast(uva, 1, 1, &context->notify_page);
246 if (retval != 1) {
247 context->notify_page = NULL;
248 return VMCI_ERROR_GENERIC;
249 }
250
251 /*
252 * Map the locked page and set up notify pointer.
253 */
254 context->notify = kmap(context->notify_page) + (uva & (PAGE_SIZE - 1));
255 vmci_ctx_check_signal_notify(context);
256
257 return VMCI_SUCCESS;
258 }
259
260 static int vmci_host_get_version(struct vmci_host_dev *vmci_host_dev,
261 unsigned int cmd, void __user *uptr)
262 {
263 if (cmd == IOCTL_VMCI_VERSION2) {
264 int __user *vptr = uptr;
265 if (get_user(vmci_host_dev->user_version, vptr))
266 return -EFAULT;
267 }
268
269 /*
270 * The basic logic here is:
271 *
272 * If the user sends in a version of 0 tell it our version.
273 * If the user didn't send in a version, tell it our version.
274 * If the user sent in an old version, tell it -its- version.
275 * If the user sent in an newer version, tell it our version.
276 *
277 * The rationale behind telling the caller its version is that
278 * Workstation 6.5 required that VMX and VMCI kernel module were
279 * version sync'd. All new VMX users will be programmed to
280 * handle the VMCI kernel module version.
281 */
282
283 if (vmci_host_dev->user_version > 0 &&
284 vmci_host_dev->user_version < VMCI_VERSION_HOSTQP) {
285 return vmci_host_dev->user_version;
286 }
287
288 return VMCI_VERSION;
289 }
290
291 #define vmci_ioctl_err(fmt, ...) \
292 pr_devel("%s: " fmt, ioctl_name, ##__VA_ARGS__)
293
294 static int vmci_host_do_init_context(struct vmci_host_dev *vmci_host_dev,
295 const char *ioctl_name,
296 void __user *uptr)
297 {
298 struct vmci_init_blk init_block;
299 const struct cred *cred;
300 int retval;
301
302 if (copy_from_user(&init_block, uptr, sizeof(init_block))) {
303 vmci_ioctl_err("error reading init block\n");
304 return -EFAULT;
305 }
306
307 mutex_lock(&vmci_host_dev->lock);
308
309 if (vmci_host_dev->ct_type != VMCIOBJ_NOT_SET) {
310 vmci_ioctl_err("received VMCI init on initialized handle\n");
311 retval = -EINVAL;
312 goto out;
313 }
314
315 if (init_block.flags & ~VMCI_PRIVILEGE_FLAG_RESTRICTED) {
316 vmci_ioctl_err("unsupported VMCI restriction flag\n");
317 retval = -EINVAL;
318 goto out;
319 }
320
321 cred = get_current_cred();
322 vmci_host_dev->context = vmci_ctx_create(init_block.cid,
323 init_block.flags, 0,
324 vmci_host_dev->user_version,
325 cred);
326 put_cred(cred);
327 if (IS_ERR(vmci_host_dev->context)) {
328 retval = PTR_ERR(vmci_host_dev->context);
329 vmci_ioctl_err("error initializing context\n");
330 goto out;
331 }
332
333 /*
334 * Copy cid to userlevel, we do this to allow the VMX
335 * to enforce its policy on cid generation.
336 */
337 init_block.cid = vmci_ctx_get_id(vmci_host_dev->context);
338 if (copy_to_user(uptr, &init_block, sizeof(init_block))) {
339 vmci_ctx_destroy(vmci_host_dev->context);
340 vmci_host_dev->context = NULL;
341 vmci_ioctl_err("error writing init block\n");
342 retval = -EFAULT;
343 goto out;
344 }
345
346 vmci_host_dev->ct_type = VMCIOBJ_CONTEXT;
347 atomic_inc(&vmci_host_active_users);
348
349 retval = 0;
350
351 out:
352 mutex_unlock(&vmci_host_dev->lock);
353 return retval;
354 }
355
356 static int vmci_host_do_send_datagram(struct vmci_host_dev *vmci_host_dev,
357 const char *ioctl_name,
358 void __user *uptr)
359 {
360 struct vmci_datagram_snd_rcv_info send_info;
361 struct vmci_datagram *dg = NULL;
362 u32 cid;
363
364 if (vmci_host_dev->ct_type != VMCIOBJ_CONTEXT) {
365 vmci_ioctl_err("only valid for contexts\n");
366 return -EINVAL;
367 }
368
369 if (copy_from_user(&send_info, uptr, sizeof(send_info)))
370 return -EFAULT;
371
372 if (send_info.len > VMCI_MAX_DG_SIZE) {
373 vmci_ioctl_err("datagram is too big (size=%d)\n",
374 send_info.len);
375 return -EINVAL;
376 }
377
378 if (send_info.len < sizeof(*dg)) {
379 vmci_ioctl_err("datagram is too small (size=%d)\n",
380 send_info.len);
381 return -EINVAL;
382 }
383
384 dg = memdup_user((void __user *)(uintptr_t)send_info.addr,
385 send_info.len);
386 if (IS_ERR(dg)) {
387 vmci_ioctl_err(
388 "cannot allocate memory to dispatch datagram\n");
389 return PTR_ERR(dg);
390 }
391
392 if (VMCI_DG_SIZE(dg) != send_info.len) {
393 vmci_ioctl_err("datagram size mismatch\n");
394 kfree(dg);
395 return -EINVAL;
396 }
397
398 pr_devel("Datagram dst (handle=0x%x:0x%x) src (handle=0x%x:0x%x), payload (size=%llu bytes)\n",
399 dg->dst.context, dg->dst.resource,
400 dg->src.context, dg->src.resource,
401 (unsigned long long)dg->payload_size);
402
403 /* Get source context id. */
404 cid = vmci_ctx_get_id(vmci_host_dev->context);
405 send_info.result = vmci_datagram_dispatch(cid, dg, true);
406 kfree(dg);
407
408 return copy_to_user(uptr, &send_info, sizeof(send_info)) ? -EFAULT : 0;
409 }
410
411 static int vmci_host_do_receive_datagram(struct vmci_host_dev *vmci_host_dev,
412 const char *ioctl_name,
413 void __user *uptr)
414 {
415 struct vmci_datagram_snd_rcv_info recv_info;
416 struct vmci_datagram *dg = NULL;
417 int retval;
418 size_t size;
419
420 if (vmci_host_dev->ct_type != VMCIOBJ_CONTEXT) {
421 vmci_ioctl_err("only valid for contexts\n");
422 return -EINVAL;
423 }
424
425 if (copy_from_user(&recv_info, uptr, sizeof(recv_info)))
426 return -EFAULT;
427
428 size = recv_info.len;
429 recv_info.result = vmci_ctx_dequeue_datagram(vmci_host_dev->context,
430 &size, &dg);
431
432 if (recv_info.result >= VMCI_SUCCESS) {
433 void __user *ubuf = (void __user *)(uintptr_t)recv_info.addr;
434 retval = copy_to_user(ubuf, dg, VMCI_DG_SIZE(dg));
435 kfree(dg);
436 if (retval != 0)
437 return -EFAULT;
438 }
439
440 return copy_to_user(uptr, &recv_info, sizeof(recv_info)) ? -EFAULT : 0;
441 }
442
443 static int vmci_host_do_alloc_queuepair(struct vmci_host_dev *vmci_host_dev,
444 const char *ioctl_name,
445 void __user *uptr)
446 {
447 struct vmci_handle handle;
448 int vmci_status;
449 int __user *retptr;
450 u32 cid;
451
452 if (vmci_host_dev->ct_type != VMCIOBJ_CONTEXT) {
453 vmci_ioctl_err("only valid for contexts\n");
454 return -EINVAL;
455 }
456
457 cid = vmci_ctx_get_id(vmci_host_dev->context);
458
459 if (vmci_host_dev->user_version < VMCI_VERSION_NOVMVM) {
460 struct vmci_qp_alloc_info_vmvm alloc_info;
461 struct vmci_qp_alloc_info_vmvm __user *info = uptr;
462
463 if (copy_from_user(&alloc_info, uptr, sizeof(alloc_info)))
464 return -EFAULT;
465
466 handle = alloc_info.handle;
467 retptr = &info->result;
468
469 vmci_status = vmci_qp_broker_alloc(alloc_info.handle,
470 alloc_info.peer,
471 alloc_info.flags,
472 VMCI_NO_PRIVILEGE_FLAGS,
473 alloc_info.produce_size,
474 alloc_info.consume_size,
475 NULL,
476 vmci_host_dev->context);
477
478 if (vmci_status == VMCI_SUCCESS)
479 vmci_status = VMCI_SUCCESS_QUEUEPAIR_CREATE;
480 } else {
481 struct vmci_qp_alloc_info alloc_info;
482 struct vmci_qp_alloc_info __user *info = uptr;
483 struct vmci_qp_page_store page_store;
484
485 if (copy_from_user(&alloc_info, uptr, sizeof(alloc_info)))
486 return -EFAULT;
487
488 handle = alloc_info.handle;
489 retptr = &info->result;
490
491 page_store.pages = alloc_info.ppn_va;
492 page_store.len = alloc_info.num_ppns;
493
494 vmci_status = vmci_qp_broker_alloc(alloc_info.handle,
495 alloc_info.peer,
496 alloc_info.flags,
497 VMCI_NO_PRIVILEGE_FLAGS,
498 alloc_info.produce_size,
499 alloc_info.consume_size,
500 &page_store,
501 vmci_host_dev->context);
502 }
503
504 if (put_user(vmci_status, retptr)) {
505 if (vmci_status >= VMCI_SUCCESS) {
506 vmci_status = vmci_qp_broker_detach(handle,
507 vmci_host_dev->context);
508 }
509 return -EFAULT;
510 }
511
512 return 0;
513 }
514
515 static int vmci_host_do_queuepair_setva(struct vmci_host_dev *vmci_host_dev,
516 const char *ioctl_name,
517 void __user *uptr)
518 {
519 struct vmci_qp_set_va_info set_va_info;
520 struct vmci_qp_set_va_info __user *info = uptr;
521 s32 result;
522
523 if (vmci_host_dev->ct_type != VMCIOBJ_CONTEXT) {
524 vmci_ioctl_err("only valid for contexts\n");
525 return -EINVAL;
526 }
527
528 if (vmci_host_dev->user_version < VMCI_VERSION_NOVMVM) {
529 vmci_ioctl_err("is not allowed\n");
530 return -EINVAL;
531 }
532
533 if (copy_from_user(&set_va_info, uptr, sizeof(set_va_info)))
534 return -EFAULT;
535
536 if (set_va_info.va) {
537 /*
538 * VMX is passing down a new VA for the queue
539 * pair mapping.
540 */
541 result = vmci_qp_broker_map(set_va_info.handle,
542 vmci_host_dev->context,
543 set_va_info.va);
544 } else {
545 /*
546 * The queue pair is about to be unmapped by
547 * the VMX.
548 */
549 result = vmci_qp_broker_unmap(set_va_info.handle,
550 vmci_host_dev->context, 0);
551 }
552
553 return put_user(result, &info->result) ? -EFAULT : 0;
554 }
555
556 static int vmci_host_do_queuepair_setpf(struct vmci_host_dev *vmci_host_dev,
557 const char *ioctl_name,
558 void __user *uptr)
559 {
560 struct vmci_qp_page_file_info page_file_info;
561 struct vmci_qp_page_file_info __user *info = uptr;
562 s32 result;
563
564 if (vmci_host_dev->user_version < VMCI_VERSION_HOSTQP ||
565 vmci_host_dev->user_version >= VMCI_VERSION_NOVMVM) {
566 vmci_ioctl_err("not supported on this VMX (version=%d)\n",
567 vmci_host_dev->user_version);
568 return -EINVAL;
569 }
570
571 if (vmci_host_dev->ct_type != VMCIOBJ_CONTEXT) {
572 vmci_ioctl_err("only valid for contexts\n");
573 return -EINVAL;
574 }
575
576 if (copy_from_user(&page_file_info, uptr, sizeof(*info)))
577 return -EFAULT;
578
579 /*
580 * Communicate success pre-emptively to the caller. Note that the
581 * basic premise is that it is incumbent upon the caller not to look at
582 * the info.result field until after the ioctl() returns. And then,
583 * only if the ioctl() result indicates no error. We send up the
584 * SUCCESS status before calling SetPageStore() store because failing
585 * to copy up the result code means unwinding the SetPageStore().
586 *
587 * It turns out the logic to unwind a SetPageStore() opens a can of
588 * worms. For example, if a host had created the queue_pair and a
589 * guest attaches and SetPageStore() is successful but writing success
590 * fails, then ... the host has to be stopped from writing (anymore)
591 * data into the queue_pair. That means an additional test in the
592 * VMCI_Enqueue() code path. Ugh.
593 */
594
595 if (put_user(VMCI_SUCCESS, &info->result)) {
596 /*
597 * In this case, we can't write a result field of the
598 * caller's info block. So, we don't even try to
599 * SetPageStore().
600 */
601 return -EFAULT;
602 }
603
604 result = vmci_qp_broker_set_page_store(page_file_info.handle,
605 page_file_info.produce_va,
606 page_file_info.consume_va,
607 vmci_host_dev->context);
608 if (result < VMCI_SUCCESS) {
609 if (put_user(result, &info->result)) {
610 /*
611 * Note that in this case the SetPageStore()
612 * call failed but we were unable to
613 * communicate that to the caller (because the
614 * copy_to_user() call failed). So, if we
615 * simply return an error (in this case
616 * -EFAULT) then the caller will know that the
617 * SetPageStore failed even though we couldn't
618 * put the result code in the result field and
619 * indicate exactly why it failed.
620 *
621 * That says nothing about the issue where we
622 * were once able to write to the caller's info
623 * memory and now can't. Something more
624 * serious is probably going on than the fact
625 * that SetPageStore() didn't work.
626 */
627 return -EFAULT;
628 }
629 }
630
631 return 0;
632 }
633
634 static int vmci_host_do_qp_detach(struct vmci_host_dev *vmci_host_dev,
635 const char *ioctl_name,
636 void __user *uptr)
637 {
638 struct vmci_qp_dtch_info detach_info;
639 struct vmci_qp_dtch_info __user *info = uptr;
640 s32 result;
641
642 if (vmci_host_dev->ct_type != VMCIOBJ_CONTEXT) {
643 vmci_ioctl_err("only valid for contexts\n");
644 return -EINVAL;
645 }
646
647 if (copy_from_user(&detach_info, uptr, sizeof(detach_info)))
648 return -EFAULT;
649
650 result = vmci_qp_broker_detach(detach_info.handle,
651 vmci_host_dev->context);
652 if (result == VMCI_SUCCESS &&
653 vmci_host_dev->user_version < VMCI_VERSION_NOVMVM) {
654 result = VMCI_SUCCESS_LAST_DETACH;
655 }
656
657 return put_user(result, &info->result) ? -EFAULT : 0;
658 }
659
660 static int vmci_host_do_ctx_add_notify(struct vmci_host_dev *vmci_host_dev,
661 const char *ioctl_name,
662 void __user *uptr)
663 {
664 struct vmci_ctx_info ar_info;
665 struct vmci_ctx_info __user *info = uptr;
666 s32 result;
667 u32 cid;
668
669 if (vmci_host_dev->ct_type != VMCIOBJ_CONTEXT) {
670 vmci_ioctl_err("only valid for contexts\n");
671 return -EINVAL;
672 }
673
674 if (copy_from_user(&ar_info, uptr, sizeof(ar_info)))
675 return -EFAULT;
676
677 cid = vmci_ctx_get_id(vmci_host_dev->context);
678 result = vmci_ctx_add_notification(cid, ar_info.remote_cid);
679
680 return put_user(result, &info->result) ? -EFAULT : 0;
681 }
682
683 static int vmci_host_do_ctx_remove_notify(struct vmci_host_dev *vmci_host_dev,
684 const char *ioctl_name,
685 void __user *uptr)
686 {
687 struct vmci_ctx_info ar_info;
688 struct vmci_ctx_info __user *info = uptr;
689 u32 cid;
690 int result;
691
692 if (vmci_host_dev->ct_type != VMCIOBJ_CONTEXT) {
693 vmci_ioctl_err("only valid for contexts\n");
694 return -EINVAL;
695 }
696
697 if (copy_from_user(&ar_info, uptr, sizeof(ar_info)))
698 return -EFAULT;
699
700 cid = vmci_ctx_get_id(vmci_host_dev->context);
701 result = vmci_ctx_remove_notification(cid,
702 ar_info.remote_cid);
703
704 return put_user(result, &info->result) ? -EFAULT : 0;
705 }
706
707 static int vmci_host_do_ctx_get_cpt_state(struct vmci_host_dev *vmci_host_dev,
708 const char *ioctl_name,
709 void __user *uptr)
710 {
711 struct vmci_ctx_chkpt_buf_info get_info;
712 u32 cid;
713 void *cpt_buf;
714 int retval;
715
716 if (vmci_host_dev->ct_type != VMCIOBJ_CONTEXT) {
717 vmci_ioctl_err("only valid for contexts\n");
718 return -EINVAL;
719 }
720
721 if (copy_from_user(&get_info, uptr, sizeof(get_info)))
722 return -EFAULT;
723
724 cid = vmci_ctx_get_id(vmci_host_dev->context);
725 get_info.result = vmci_ctx_get_chkpt_state(cid, get_info.cpt_type,
726 &get_info.buf_size, &cpt_buf);
727 if (get_info.result == VMCI_SUCCESS && get_info.buf_size) {
728 void __user *ubuf = (void __user *)(uintptr_t)get_info.cpt_buf;
729 retval = copy_to_user(ubuf, cpt_buf, get_info.buf_size);
730 kfree(cpt_buf);
731
732 if (retval)
733 return -EFAULT;
734 }
735
736 return copy_to_user(uptr, &get_info, sizeof(get_info)) ? -EFAULT : 0;
737 }
738
739 static int vmci_host_do_ctx_set_cpt_state(struct vmci_host_dev *vmci_host_dev,
740 const char *ioctl_name,
741 void __user *uptr)
742 {
743 struct vmci_ctx_chkpt_buf_info set_info;
744 u32 cid;
745 void *cpt_buf;
746 int retval;
747
748 if (vmci_host_dev->ct_type != VMCIOBJ_CONTEXT) {
749 vmci_ioctl_err("only valid for contexts\n");
750 return -EINVAL;
751 }
752
753 if (copy_from_user(&set_info, uptr, sizeof(set_info)))
754 return -EFAULT;
755
756 cpt_buf = kmalloc(set_info.buf_size, GFP_KERNEL);
757 if (!cpt_buf) {
758 vmci_ioctl_err(
759 "cannot allocate memory to set cpt state (type=%d)\n",
760 set_info.cpt_type);
761 return -ENOMEM;
762 }
763
764 if (copy_from_user(cpt_buf, (void __user *)(uintptr_t)set_info.cpt_buf,
765 set_info.buf_size)) {
766 retval = -EFAULT;
767 goto out;
768 }
769
770 cid = vmci_ctx_get_id(vmci_host_dev->context);
771 set_info.result = vmci_ctx_set_chkpt_state(cid, set_info.cpt_type,
772 set_info.buf_size, cpt_buf);
773
774 retval = copy_to_user(uptr, &set_info, sizeof(set_info)) ? -EFAULT : 0;
775
776 out:
777 kfree(cpt_buf);
778 return retval;
779 }
780
781 static int vmci_host_do_get_context_id(struct vmci_host_dev *vmci_host_dev,
782 const char *ioctl_name,
783 void __user *uptr)
784 {
785 u32 __user *u32ptr = uptr;
786
787 return put_user(VMCI_HOST_CONTEXT_ID, u32ptr) ? -EFAULT : 0;
788 }
789
790 static int vmci_host_do_set_notify(struct vmci_host_dev *vmci_host_dev,
791 const char *ioctl_name,
792 void __user *uptr)
793 {
794 struct vmci_set_notify_info notify_info;
795
796 if (vmci_host_dev->ct_type != VMCIOBJ_CONTEXT) {
797 vmci_ioctl_err("only valid for contexts\n");
798 return -EINVAL;
799 }
800
801 if (copy_from_user(&notify_info, uptr, sizeof(notify_info)))
802 return -EFAULT;
803
804 if (notify_info.notify_uva) {
805 notify_info.result =
806 vmci_host_setup_notify(vmci_host_dev->context,
807 notify_info.notify_uva);
808 } else {
809 vmci_ctx_unset_notify(vmci_host_dev->context);
810 notify_info.result = VMCI_SUCCESS;
811 }
812
813 return copy_to_user(uptr, &notify_info, sizeof(notify_info)) ?
814 -EFAULT : 0;
815 }
816
817 static int vmci_host_do_notify_resource(struct vmci_host_dev *vmci_host_dev,
818 const char *ioctl_name,
819 void __user *uptr)
820 {
821 struct vmci_dbell_notify_resource_info info;
822 u32 cid;
823
824 if (vmci_host_dev->user_version < VMCI_VERSION_NOTIFY) {
825 vmci_ioctl_err("invalid for current VMX versions\n");
826 return -EINVAL;
827 }
828
829 if (vmci_host_dev->ct_type != VMCIOBJ_CONTEXT) {
830 vmci_ioctl_err("only valid for contexts\n");
831 return -EINVAL;
832 }
833
834 if (copy_from_user(&info, uptr, sizeof(info)))
835 return -EFAULT;
836
837 cid = vmci_ctx_get_id(vmci_host_dev->context);
838
839 switch (info.action) {
840 case VMCI_NOTIFY_RESOURCE_ACTION_NOTIFY:
841 if (info.resource == VMCI_NOTIFY_RESOURCE_DOOR_BELL) {
842 u32 flags = VMCI_NO_PRIVILEGE_FLAGS;
843 info.result = vmci_ctx_notify_dbell(cid, info.handle,
844 flags);
845 } else {
846 info.result = VMCI_ERROR_UNAVAILABLE;
847 }
848 break;
849
850 case VMCI_NOTIFY_RESOURCE_ACTION_CREATE:
851 info.result = vmci_ctx_dbell_create(cid, info.handle);
852 break;
853
854 case VMCI_NOTIFY_RESOURCE_ACTION_DESTROY:
855 info.result = vmci_ctx_dbell_destroy(cid, info.handle);
856 break;
857
858 default:
859 vmci_ioctl_err("got unknown action (action=%d)\n",
860 info.action);
861 info.result = VMCI_ERROR_INVALID_ARGS;
862 }
863
864 return copy_to_user(uptr, &info, sizeof(info)) ? -EFAULT : 0;
865 }
866
867 static int vmci_host_do_recv_notifications(struct vmci_host_dev *vmci_host_dev,
868 const char *ioctl_name,
869 void __user *uptr)
870 {
871 struct vmci_ctx_notify_recv_info info;
872 struct vmci_handle_arr *db_handle_array;
873 struct vmci_handle_arr *qp_handle_array;
874 void __user *ubuf;
875 u32 cid;
876 int retval = 0;
877
878 if (vmci_host_dev->ct_type != VMCIOBJ_CONTEXT) {
879 vmci_ioctl_err("only valid for contexts\n");
880 return -EINVAL;
881 }
882
883 if (vmci_host_dev->user_version < VMCI_VERSION_NOTIFY) {
884 vmci_ioctl_err("not supported for the current vmx version\n");
885 return -EINVAL;
886 }
887
888 if (copy_from_user(&info, uptr, sizeof(info)))
889 return -EFAULT;
890
891 if ((info.db_handle_buf_size && !info.db_handle_buf_uva) ||
892 (info.qp_handle_buf_size && !info.qp_handle_buf_uva)) {
893 return -EINVAL;
894 }
895
896 cid = vmci_ctx_get_id(vmci_host_dev->context);
897
898 info.result = vmci_ctx_rcv_notifications_get(cid,
899 &db_handle_array, &qp_handle_array);
900 if (info.result != VMCI_SUCCESS)
901 return copy_to_user(uptr, &info, sizeof(info)) ? -EFAULT : 0;
902
903 ubuf = (void __user *)(uintptr_t)info.db_handle_buf_uva;
904 info.result = drv_cp_harray_to_user(ubuf, &info.db_handle_buf_size,
905 db_handle_array, &retval);
906 if (info.result == VMCI_SUCCESS && !retval) {
907 ubuf = (void __user *)(uintptr_t)info.qp_handle_buf_uva;
908 info.result = drv_cp_harray_to_user(ubuf,
909 &info.qp_handle_buf_size,
910 qp_handle_array, &retval);
911 }
912
913 if (!retval && copy_to_user(uptr, &info, sizeof(info)))
914 retval = -EFAULT;
915
916 vmci_ctx_rcv_notifications_release(cid,
917 db_handle_array, qp_handle_array,
918 info.result == VMCI_SUCCESS && !retval);
919
920 return retval;
921 }
922
923 static long vmci_host_unlocked_ioctl(struct file *filp,
924 unsigned int iocmd, unsigned long ioarg)
925 {
926 #define VMCI_DO_IOCTL(ioctl_name, ioctl_fn) do { \
927 char *name = __stringify(IOCTL_VMCI_ ## ioctl_name); \
928 return vmci_host_do_ ## ioctl_fn( \
929 vmci_host_dev, name, uptr); \
930 } while (0)
931
932 struct vmci_host_dev *vmci_host_dev = filp->private_data;
933 void __user *uptr = (void __user *)ioarg;
934
935 switch (iocmd) {
936 case IOCTL_VMCI_INIT_CONTEXT:
937 VMCI_DO_IOCTL(INIT_CONTEXT, init_context);
938 case IOCTL_VMCI_DATAGRAM_SEND:
939 VMCI_DO_IOCTL(DATAGRAM_SEND, send_datagram);
940 case IOCTL_VMCI_DATAGRAM_RECEIVE:
941 VMCI_DO_IOCTL(DATAGRAM_RECEIVE, receive_datagram);
942 case IOCTL_VMCI_QUEUEPAIR_ALLOC:
943 VMCI_DO_IOCTL(QUEUEPAIR_ALLOC, alloc_queuepair);
944 case IOCTL_VMCI_QUEUEPAIR_SETVA:
945 VMCI_DO_IOCTL(QUEUEPAIR_SETVA, queuepair_setva);
946 case IOCTL_VMCI_QUEUEPAIR_SETPAGEFILE:
947 VMCI_DO_IOCTL(QUEUEPAIR_SETPAGEFILE, queuepair_setpf);
948 case IOCTL_VMCI_QUEUEPAIR_DETACH:
949 VMCI_DO_IOCTL(QUEUEPAIR_DETACH, qp_detach);
950 case IOCTL_VMCI_CTX_ADD_NOTIFICATION:
951 VMCI_DO_IOCTL(CTX_ADD_NOTIFICATION, ctx_add_notify);
952 case IOCTL_VMCI_CTX_REMOVE_NOTIFICATION:
953 VMCI_DO_IOCTL(CTX_REMOVE_NOTIFICATION, ctx_remove_notify);
954 case IOCTL_VMCI_CTX_GET_CPT_STATE:
955 VMCI_DO_IOCTL(CTX_GET_CPT_STATE, ctx_get_cpt_state);
956 case IOCTL_VMCI_CTX_SET_CPT_STATE:
957 VMCI_DO_IOCTL(CTX_SET_CPT_STATE, ctx_set_cpt_state);
958 case IOCTL_VMCI_GET_CONTEXT_ID:
959 VMCI_DO_IOCTL(GET_CONTEXT_ID, get_context_id);
960 case IOCTL_VMCI_SET_NOTIFY:
961 VMCI_DO_IOCTL(SET_NOTIFY, set_notify);
962 case IOCTL_VMCI_NOTIFY_RESOURCE:
963 VMCI_DO_IOCTL(NOTIFY_RESOURCE, notify_resource);
964 case IOCTL_VMCI_NOTIFICATIONS_RECEIVE:
965 VMCI_DO_IOCTL(NOTIFICATIONS_RECEIVE, recv_notifications);
966
967 case IOCTL_VMCI_VERSION:
968 case IOCTL_VMCI_VERSION2:
969 return vmci_host_get_version(vmci_host_dev, iocmd, uptr);
970
971 default:
972 pr_devel("%s: Unknown ioctl (iocmd=%d)\n", __func__, iocmd);
973 return -EINVAL;
974 }
975
976 #undef VMCI_DO_IOCTL
977 }
978
979 static const struct file_operations vmuser_fops = {
980 .owner = THIS_MODULE,
981 .open = vmci_host_open,
982 .release = vmci_host_close,
983 .poll = vmci_host_poll,
984 .unlocked_ioctl = vmci_host_unlocked_ioctl,
985 .compat_ioctl = vmci_host_unlocked_ioctl,
986 };
987
988 static struct miscdevice vmci_host_miscdev = {
989 .name = "vmci",
990 .minor = MISC_DYNAMIC_MINOR,
991 .fops = &vmuser_fops,
992 };
993
994 int __init vmci_host_init(void)
995 {
996 int error;
997
998 host_context = vmci_ctx_create(VMCI_HOST_CONTEXT_ID,
999 VMCI_DEFAULT_PROC_PRIVILEGE_FLAGS,
1000 -1, VMCI_VERSION, NULL);
1001 if (IS_ERR(host_context)) {
1002 error = PTR_ERR(host_context);
1003 pr_warn("Failed to initialize VMCIContext (error%d)\n",
1004 error);
1005 return error;
1006 }
1007
1008 error = misc_register(&vmci_host_miscdev);
1009 if (error) {
1010 pr_warn("Module registration error (name=%s, major=%d, minor=%d, err=%d)\n",
1011 vmci_host_miscdev.name,
1012 MISC_MAJOR, vmci_host_miscdev.minor,
1013 error);
1014 pr_warn("Unable to initialize host personality\n");
1015 vmci_ctx_destroy(host_context);
1016 return error;
1017 }
1018
1019 pr_info("VMCI host device registered (name=%s, major=%d, minor=%d)\n",
1020 vmci_host_miscdev.name, MISC_MAJOR, vmci_host_miscdev.minor);
1021
1022 vmci_host_device_initialized = true;
1023 return 0;
1024 }
1025
1026 void __exit vmci_host_exit(void)
1027 {
1028 vmci_host_device_initialized = false;
1029
1030 misc_deregister(&vmci_host_miscdev);
1031 vmci_ctx_destroy(host_context);
1032 vmci_qp_broker_exit();
1033
1034 pr_debug("VMCI host driver module unloaded\n");
1035 }