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1 /*
2  * An implementation of key value pair (KVP) functionality for Linux.
3  *
4  *
5  * Copyright (C) 2010, Novell, Inc.
6  * Author : K. Y. Srinivasan <ksrinivasan@novell.com>
7  *
8  * This program is free software; you can redistribute it and/or modify it
9  * under the terms of the GNU General Public License version 2 as published
10  * by the Free Software Foundation.
11  *
12  * This program is distributed in the hope that it will be useful, but
13  * WITHOUT ANY WARRANTY; without even the implied warranty of
14  * MERCHANTABILITY OR FITNESS FOR A PARTICULAR PURPOSE, GOOD TITLE or
15  * NON INFRINGEMENT.  See the GNU General Public License for more
16  * details.
17  *
18  * You should have received a copy of the GNU General Public License
19  * along with this program; if not, write to the Free Software
20  * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
21  *
22  */
23 #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
24
25 #include <linux/net.h>
26 #include <linux/nls.h>
27 #include <linux/connector.h>
28 #include <linux/workqueue.h>
29 #include <linux/hyperv.h>
30
31
32 /*
33  * Pre win8 version numbers used in ws2008 and ws 2008 r2 (win7)
34  */
35 #define WIN7_SRV_MAJOR   3
36 #define WIN7_SRV_MINOR   0
37 #define WIN7_SRV_MAJOR_MINOR     (WIN7_SRV_MAJOR << 16 | WIN7_SRV_MINOR)
38
39 #define WIN8_SRV_MAJOR   4
40 #define WIN8_SRV_MINOR   0
41 #define WIN8_SRV_MAJOR_MINOR     (WIN8_SRV_MAJOR << 16 | WIN8_SRV_MINOR)
42
43 /*
44  * Global state maintained for transaction that is being processed.
45  * Note that only one transaction can be active at any point in time.
46  *
47  * This state is set when we receive a request from the host; we
48  * cleanup this state when the transaction is completed - when we respond
49  * to the host with the key value.
50  */
51
52 static struct {
53         bool active; /* transaction status - active or not */
54         int recv_len; /* number of bytes received. */
55         struct hv_kvp_msg  *kvp_msg; /* current message */
56         struct vmbus_channel *recv_channel; /* chn we got the request */
57         u64 recv_req_id; /* request ID. */
58         void *kvp_context; /* for the channel callback */
59 } kvp_transaction;
60
61 /*
62  * Before we can accept KVP messages from the host, we need
63  * to handshake with the user level daemon. This state tracks
64  * if we are in the handshake phase.
65  */
66 static bool in_hand_shake = true;
67
68 /*
69  * This state maintains the version number registered by the daemon.
70  */
71 static int dm_reg_value;
72
73 static void kvp_send_key(struct work_struct *dummy);
74
75
76 static void kvp_respond_to_host(struct hv_kvp_msg *msg, int error);
77 static void kvp_work_func(struct work_struct *dummy);
78 static void kvp_register(int);
79
80 static DECLARE_DELAYED_WORK(kvp_work, kvp_work_func);
81 static DECLARE_WORK(kvp_sendkey_work, kvp_send_key);
82
83 static struct cb_id kvp_id = { CN_KVP_IDX, CN_KVP_VAL };
84 static const char kvp_name[] = "kvp_kernel_module";
85 static u8 *recv_buffer;
86 /*
87  * Register the kernel component with the user-level daemon.
88  * As part of this registration, pass the LIC version number.
89  * This number has no meaning, it satisfies the registration protocol.
90  */
91 #define HV_DRV_VERSION           "3.1"
92
93 static void
94 kvp_register(int reg_value)
95 {
96
97         struct cn_msg *msg;
98         struct hv_kvp_msg *kvp_msg;
99         char *version;
100
101         msg = kzalloc(sizeof(*msg) + sizeof(struct hv_kvp_msg), GFP_ATOMIC);
102
103         if (msg) {
104                 kvp_msg = (struct hv_kvp_msg *)msg->data;
105                 version = kvp_msg->body.kvp_register.version;
106                 msg->id.idx =  CN_KVP_IDX;
107                 msg->id.val = CN_KVP_VAL;
108
109                 kvp_msg->kvp_hdr.operation = reg_value;
110                 strcpy(version, HV_DRV_VERSION);
111                 msg->len = sizeof(struct hv_kvp_msg);
112                 cn_netlink_send(msg, 0, GFP_ATOMIC);
113                 kfree(msg);
114         }
115 }
116 static void
117 kvp_work_func(struct work_struct *dummy)
118 {
119         /*
120          * If the timer fires, the user-mode component has not responded;
121          * process the pending transaction.
122          */
123         kvp_respond_to_host(NULL, HV_E_FAIL);
124 }
125
126 static int kvp_handle_handshake(struct hv_kvp_msg *msg)
127 {
128         int ret = 1;
129
130         switch (msg->kvp_hdr.operation) {
131         case KVP_OP_REGISTER:
132                 dm_reg_value = KVP_OP_REGISTER;
133                 pr_info("KVP: IP injection functionality not available\n");
134                 pr_info("KVP: Upgrade the KVP daemon\n");
135                 break;
136         case KVP_OP_REGISTER1:
137                 dm_reg_value = KVP_OP_REGISTER1;
138                 break;
139         default:
140                 pr_info("KVP: incompatible daemon\n");
141                 pr_info("KVP: KVP version: %d, Daemon version: %d\n",
142                         KVP_OP_REGISTER1, msg->kvp_hdr.operation);
143                 ret = 0;
144         }
145
146         if (ret) {
147                 /*
148                  * We have a compatible daemon; complete the handshake.
149                  */
150                 pr_info("KVP: user-mode registering done.\n");
151                 kvp_register(dm_reg_value);
152                 kvp_transaction.active = false;
153                 if (kvp_transaction.kvp_context)
154                         hv_kvp_onchannelcallback(kvp_transaction.kvp_context);
155         }
156         return ret;
157 }
158
159
160 /*
161  * Callback when data is received from user mode.
162  */
163
164 static void
165 kvp_cn_callback(struct cn_msg *msg, struct netlink_skb_parms *nsp)
166 {
167         struct hv_kvp_msg *message;
168         struct hv_kvp_msg_enumerate *data;
169         int     error = 0;
170
171         message = (struct hv_kvp_msg *)msg->data;
172
173         /*
174          * If we are negotiating the version information
175          * with the daemon; handle that first.
176          */
177
178         if (in_hand_shake) {
179                 if (kvp_handle_handshake(message))
180                         in_hand_shake = false;
181                 return;
182         }
183
184         /*
185          * Based on the version of the daemon, we propagate errors from the
186          * daemon differently.
187          */
188
189         data = &message->body.kvp_enum_data;
190
191         switch (dm_reg_value) {
192         case KVP_OP_REGISTER:
193                 /*
194                  * Null string is used to pass back error condition.
195                  */
196                 if (data->data.key[0] == 0)
197                         error = HV_S_CONT;
198                 break;
199
200         case KVP_OP_REGISTER1:
201                 /*
202                  * We use the message header information from
203                  * the user level daemon to transmit errors.
204                  */
205                 error = message->error;
206                 break;
207         }
208
209         /*
210          * Complete the transaction by forwarding the key value
211          * to the host. But first, cancel the timeout.
212          */
213         if (cancel_delayed_work_sync(&kvp_work))
214                 kvp_respond_to_host(message, error);
215 }
216
217
218 static int process_ob_ipinfo(void *in_msg, void *out_msg, int op)
219 {
220         struct hv_kvp_msg *in = in_msg;
221         struct hv_kvp_ip_msg *out = out_msg;
222         int len;
223
224         switch (op) {
225         case KVP_OP_GET_IP_INFO:
226                 /*
227                  * Transform all parameters into utf16 encoding.
228                  */
229                 len = utf8s_to_utf16s((char *)in->body.kvp_ip_val.ip_addr,
230                                 strlen((char *)in->body.kvp_ip_val.ip_addr),
231                                 UTF16_HOST_ENDIAN,
232                                 (wchar_t *)out->kvp_ip_val.ip_addr,
233                                 MAX_IP_ADDR_SIZE);
234                 if (len < 0)
235                         return len;
236
237                 len = utf8s_to_utf16s((char *)in->body.kvp_ip_val.sub_net,
238                                 strlen((char *)in->body.kvp_ip_val.sub_net),
239                                 UTF16_HOST_ENDIAN,
240                                 (wchar_t *)out->kvp_ip_val.sub_net,
241                                 MAX_IP_ADDR_SIZE);
242                 if (len < 0)
243                         return len;
244
245                 len = utf8s_to_utf16s((char *)in->body.kvp_ip_val.gate_way,
246                                 strlen((char *)in->body.kvp_ip_val.gate_way),
247                                 UTF16_HOST_ENDIAN,
248                                 (wchar_t *)out->kvp_ip_val.gate_way,
249                                 MAX_GATEWAY_SIZE);
250                 if (len < 0)
251                         return len;
252
253                 len = utf8s_to_utf16s((char *)in->body.kvp_ip_val.dns_addr,
254                                 strlen((char *)in->body.kvp_ip_val.dns_addr),
255                                 UTF16_HOST_ENDIAN,
256                                 (wchar_t *)out->kvp_ip_val.dns_addr,
257                                 MAX_IP_ADDR_SIZE);
258                 if (len < 0)
259                         return len;
260
261                 len = utf8s_to_utf16s((char *)in->body.kvp_ip_val.adapter_id,
262                                 strlen((char *)in->body.kvp_ip_val.adapter_id),
263                                 UTF16_HOST_ENDIAN,
264                                 (wchar_t *)out->kvp_ip_val.adapter_id,
265                                 MAX_IP_ADDR_SIZE);
266                 if (len < 0)
267                         return len;
268
269                 out->kvp_ip_val.dhcp_enabled =
270                         in->body.kvp_ip_val.dhcp_enabled;
271                 out->kvp_ip_val.addr_family =
272                         in->body.kvp_ip_val.addr_family;
273         }
274
275         return 0;
276 }
277
278 static void process_ib_ipinfo(void *in_msg, void *out_msg, int op)
279 {
280         struct hv_kvp_ip_msg *in = in_msg;
281         struct hv_kvp_msg *out = out_msg;
282
283         switch (op) {
284         case KVP_OP_SET_IP_INFO:
285                 /*
286                  * Transform all parameters into utf8 encoding.
287                  */
288                 utf16s_to_utf8s((wchar_t *)in->kvp_ip_val.ip_addr,
289                                 MAX_IP_ADDR_SIZE,
290                                 UTF16_LITTLE_ENDIAN,
291                                 (__u8 *)out->body.kvp_ip_val.ip_addr,
292                                 MAX_IP_ADDR_SIZE);
293
294                 utf16s_to_utf8s((wchar_t *)in->kvp_ip_val.sub_net,
295                                 MAX_IP_ADDR_SIZE,
296                                 UTF16_LITTLE_ENDIAN,
297                                 (__u8 *)out->body.kvp_ip_val.sub_net,
298                                 MAX_IP_ADDR_SIZE);
299
300                 utf16s_to_utf8s((wchar_t *)in->kvp_ip_val.gate_way,
301                                 MAX_GATEWAY_SIZE,
302                                 UTF16_LITTLE_ENDIAN,
303                                 (__u8 *)out->body.kvp_ip_val.gate_way,
304                                 MAX_GATEWAY_SIZE);
305
306                 utf16s_to_utf8s((wchar_t *)in->kvp_ip_val.dns_addr,
307                                 MAX_IP_ADDR_SIZE,
308                                 UTF16_LITTLE_ENDIAN,
309                                 (__u8 *)out->body.kvp_ip_val.dns_addr,
310                                 MAX_IP_ADDR_SIZE);
311
312                 out->body.kvp_ip_val.dhcp_enabled = in->kvp_ip_val.dhcp_enabled;
313
314         default:
315                 utf16s_to_utf8s((wchar_t *)in->kvp_ip_val.adapter_id,
316                                 MAX_ADAPTER_ID_SIZE,
317                                 UTF16_LITTLE_ENDIAN,
318                                 (__u8 *)out->body.kvp_ip_val.adapter_id,
319                                 MAX_ADAPTER_ID_SIZE);
320
321                 out->body.kvp_ip_val.addr_family = in->kvp_ip_val.addr_family;
322         }
323 }
324
325
326
327
328 static void
329 kvp_send_key(struct work_struct *dummy)
330 {
331         struct cn_msg *msg;
332         struct hv_kvp_msg *message;
333         struct hv_kvp_msg *in_msg;
334         __u8 operation = kvp_transaction.kvp_msg->kvp_hdr.operation;
335         __u8 pool = kvp_transaction.kvp_msg->kvp_hdr.pool;
336         __u32 val32;
337         __u64 val64;
338
339         msg = kzalloc(sizeof(*msg) + sizeof(struct hv_kvp_msg) , GFP_ATOMIC);
340         if (!msg)
341                 return;
342
343         msg->id.idx =  CN_KVP_IDX;
344         msg->id.val = CN_KVP_VAL;
345
346         message = (struct hv_kvp_msg *)msg->data;
347         message->kvp_hdr.operation = operation;
348         message->kvp_hdr.pool = pool;
349         in_msg = kvp_transaction.kvp_msg;
350
351         /*
352          * The key/value strings sent from the host are encoded in
353          * in utf16; convert it to utf8 strings.
354          * The host assures us that the utf16 strings will not exceed
355          * the max lengths specified. We will however, reserve room
356          * for the string terminating character - in the utf16s_utf8s()
357          * function we limit the size of the buffer where the converted
358          * string is placed to HV_KVP_EXCHANGE_MAX_*_SIZE -1 to gaurantee
359          * that the strings can be properly terminated!
360          */
361
362         switch (message->kvp_hdr.operation) {
363         case KVP_OP_SET_IP_INFO:
364                 process_ib_ipinfo(in_msg, message, KVP_OP_SET_IP_INFO);
365                 break;
366         case KVP_OP_GET_IP_INFO:
367                 process_ib_ipinfo(in_msg, message, KVP_OP_GET_IP_INFO);
368                 break;
369         case KVP_OP_SET:
370                 switch (in_msg->body.kvp_set.data.value_type) {
371                 case REG_SZ:
372                         /*
373                          * The value is a string - utf16 encoding.
374                          */
375                         message->body.kvp_set.data.value_size =
376                                 utf16s_to_utf8s(
377                                 (wchar_t *)in_msg->body.kvp_set.data.value,
378                                 in_msg->body.kvp_set.data.value_size,
379                                 UTF16_LITTLE_ENDIAN,
380                                 message->body.kvp_set.data.value,
381                                 HV_KVP_EXCHANGE_MAX_VALUE_SIZE - 1) + 1;
382                                 break;
383
384                 case REG_U32:
385                         /*
386                          * The value is a 32 bit scalar.
387                          * We save this as a utf8 string.
388                          */
389                         val32 = in_msg->body.kvp_set.data.value_u32;
390                         message->body.kvp_set.data.value_size =
391                                 sprintf(message->body.kvp_set.data.value,
392                                         "%d", val32) + 1;
393                         break;
394
395                 case REG_U64:
396                         /*
397                          * The value is a 64 bit scalar.
398                          * We save this as a utf8 string.
399                          */
400                         val64 = in_msg->body.kvp_set.data.value_u64;
401                         message->body.kvp_set.data.value_size =
402                                 sprintf(message->body.kvp_set.data.value,
403                                         "%llu", val64) + 1;
404                         break;
405
406                 }
407         case KVP_OP_GET:
408                 message->body.kvp_set.data.key_size =
409                         utf16s_to_utf8s(
410                         (wchar_t *)in_msg->body.kvp_set.data.key,
411                         in_msg->body.kvp_set.data.key_size,
412                         UTF16_LITTLE_ENDIAN,
413                         message->body.kvp_set.data.key,
414                         HV_KVP_EXCHANGE_MAX_KEY_SIZE - 1) + 1;
415                         break;
416
417         case KVP_OP_DELETE:
418                 message->body.kvp_delete.key_size =
419                         utf16s_to_utf8s(
420                         (wchar_t *)in_msg->body.kvp_delete.key,
421                         in_msg->body.kvp_delete.key_size,
422                         UTF16_LITTLE_ENDIAN,
423                         message->body.kvp_delete.key,
424                         HV_KVP_EXCHANGE_MAX_KEY_SIZE - 1) + 1;
425                         break;
426
427         case KVP_OP_ENUMERATE:
428                 message->body.kvp_enum_data.index =
429                         in_msg->body.kvp_enum_data.index;
430                         break;
431         }
432
433         msg->len = sizeof(struct hv_kvp_msg);
434         cn_netlink_send(msg, 0, GFP_ATOMIC);
435         kfree(msg);
436
437         return;
438 }
439
440 /*
441  * Send a response back to the host.
442  */
443
444 static void
445 kvp_respond_to_host(struct hv_kvp_msg *msg_to_host, int error)
446 {
447         struct hv_kvp_msg  *kvp_msg;
448         struct hv_kvp_exchg_msg_value  *kvp_data;
449         char    *key_name;
450         char    *value;
451         struct icmsg_hdr *icmsghdrp;
452         int     keylen = 0;
453         int     valuelen = 0;
454         u32     buf_len;
455         struct vmbus_channel *channel;
456         u64     req_id;
457         int ret;
458
459         /*
460          * If a transaction is not active; log and return.
461          */
462
463         if (!kvp_transaction.active) {
464                 /*
465                  * This is a spurious call!
466                  */
467                 pr_warn("KVP: Transaction not active\n");
468                 return;
469         }
470         /*
471          * Copy the global state for completing the transaction. Note that
472          * only one transaction can be active at a time.
473          */
474
475         buf_len = kvp_transaction.recv_len;
476         channel = kvp_transaction.recv_channel;
477         req_id = kvp_transaction.recv_req_id;
478
479         kvp_transaction.active = false;
480
481         icmsghdrp = (struct icmsg_hdr *)
482                         &recv_buffer[sizeof(struct vmbuspipe_hdr)];
483
484         if (channel->onchannel_callback == NULL)
485                 /*
486                  * We have raced with util driver being unloaded;
487                  * silently return.
488                  */
489                 return;
490
491         icmsghdrp->status = error;
492
493         /*
494          * If the error parameter is set, terminate the host's enumeration
495          * on this pool.
496          */
497         if (error) {
498                 /*
499                  * Something failed or we have timedout;
500                  * terminate the current host-side iteration.
501                  */
502                 goto response_done;
503         }
504
505         kvp_msg = (struct hv_kvp_msg *)
506                         &recv_buffer[sizeof(struct vmbuspipe_hdr) +
507                         sizeof(struct icmsg_hdr)];
508
509         switch (kvp_transaction.kvp_msg->kvp_hdr.operation) {
510         case KVP_OP_GET_IP_INFO:
511                 ret = process_ob_ipinfo(msg_to_host,
512                                  (struct hv_kvp_ip_msg *)kvp_msg,
513                                  KVP_OP_GET_IP_INFO);
514                 if (ret < 0)
515                         icmsghdrp->status = HV_E_FAIL;
516
517                 goto response_done;
518         case KVP_OP_SET_IP_INFO:
519                 goto response_done;
520         case KVP_OP_GET:
521                 kvp_data = &kvp_msg->body.kvp_get.data;
522                 goto copy_value;
523
524         case KVP_OP_SET:
525         case KVP_OP_DELETE:
526                 goto response_done;
527
528         default:
529                 break;
530         }
531
532         kvp_data = &kvp_msg->body.kvp_enum_data.data;
533         key_name = msg_to_host->body.kvp_enum_data.data.key;
534
535         /*
536          * The windows host expects the key/value pair to be encoded
537          * in utf16. Ensure that the key/value size reported to the host
538          * will be less than or equal to the MAX size (including the
539          * terminating character).
540          */
541         keylen = utf8s_to_utf16s(key_name, strlen(key_name), UTF16_HOST_ENDIAN,
542                                 (wchar_t *) kvp_data->key,
543                                 (HV_KVP_EXCHANGE_MAX_KEY_SIZE / 2) - 2);
544         kvp_data->key_size = 2*(keylen + 1); /* utf16 encoding */
545
546 copy_value:
547         value = msg_to_host->body.kvp_enum_data.data.value;
548         valuelen = utf8s_to_utf16s(value, strlen(value), UTF16_HOST_ENDIAN,
549                                 (wchar_t *) kvp_data->value,
550                                 (HV_KVP_EXCHANGE_MAX_VALUE_SIZE / 2) - 2);
551         kvp_data->value_size = 2*(valuelen + 1); /* utf16 encoding */
552
553         /*
554          * If the utf8s to utf16s conversion failed; notify host
555          * of the error.
556          */
557         if ((keylen < 0) || (valuelen < 0))
558                 icmsghdrp->status = HV_E_FAIL;
559
560         kvp_data->value_type = REG_SZ; /* all our values are strings */
561
562 response_done:
563         icmsghdrp->icflags = ICMSGHDRFLAG_TRANSACTION | ICMSGHDRFLAG_RESPONSE;
564
565         vmbus_sendpacket(channel, recv_buffer, buf_len, req_id,
566                                 VM_PKT_DATA_INBAND, 0);
567
568 }
569
570 /*
571  * This callback is invoked when we get a KVP message from the host.
572  * The host ensures that only one KVP transaction can be active at a time.
573  * KVP implementation in Linux needs to forward the key to a user-mde
574  * component to retrive the corresponding value. Consequently, we cannot
575  * respond to the host in the conext of this callback. Since the host
576  * guarantees that at most only one transaction can be active at a time,
577  * we stash away the transaction state in a set of global variables.
578  */
579
580 void hv_kvp_onchannelcallback(void *context)
581 {
582         struct vmbus_channel *channel = context;
583         u32 recvlen;
584         u64 requestid;
585
586         struct hv_kvp_msg *kvp_msg;
587
588         struct icmsg_hdr *icmsghdrp;
589         struct icmsg_negotiate *negop = NULL;
590
591         if (kvp_transaction.active) {
592                 /*
593                  * We will defer processing this callback once
594                  * the current transaction is complete.
595                  */
596                 kvp_transaction.kvp_context = context;
597                 return;
598         }
599
600         vmbus_recvpacket(channel, recv_buffer, PAGE_SIZE * 2, &recvlen,
601                          &requestid);
602
603         if (recvlen > 0) {
604                 icmsghdrp = (struct icmsg_hdr *)&recv_buffer[
605                         sizeof(struct vmbuspipe_hdr)];
606
607                 if (icmsghdrp->icmsgtype == ICMSGTYPE_NEGOTIATE) {
608                         /*
609                          * We start with win8 version and if the host cannot
610                          * support that we use the previous version.
611                          */
612                         if (vmbus_prep_negotiate_resp(icmsghdrp, negop,
613                                  recv_buffer, UTIL_FW_MAJOR_MINOR,
614                                  WIN8_SRV_MAJOR_MINOR))
615                                 goto done;
616
617                         vmbus_prep_negotiate_resp(icmsghdrp, negop,
618                                  recv_buffer, UTIL_FW_MAJOR_MINOR,
619                                  WIN7_SRV_MAJOR_MINOR);
620
621                 } else {
622                         kvp_msg = (struct hv_kvp_msg *)&recv_buffer[
623                                 sizeof(struct vmbuspipe_hdr) +
624                                 sizeof(struct icmsg_hdr)];
625
626                         /*
627                          * Stash away this global state for completing the
628                          * transaction; note transactions are serialized.
629                          */
630
631                         kvp_transaction.recv_len = recvlen;
632                         kvp_transaction.recv_channel = channel;
633                         kvp_transaction.recv_req_id = requestid;
634                         kvp_transaction.active = true;
635                         kvp_transaction.kvp_msg = kvp_msg;
636
637                         /*
638                          * Get the information from the
639                          * user-mode component.
640                          * component. This transaction will be
641                          * completed when we get the value from
642                          * the user-mode component.
643                          * Set a timeout to deal with
644                          * user-mode not responding.
645                          */
646                         schedule_work(&kvp_sendkey_work);
647                         schedule_delayed_work(&kvp_work, 5*HZ);
648
649                         return;
650
651                 }
652 done:
653
654                 icmsghdrp->icflags = ICMSGHDRFLAG_TRANSACTION
655                         | ICMSGHDRFLAG_RESPONSE;
656
657                 vmbus_sendpacket(channel, recv_buffer,
658                                        recvlen, requestid,
659                                        VM_PKT_DATA_INBAND, 0);
660         }
661
662 }
663
664 int
665 hv_kvp_init(struct hv_util_service *srv)
666 {
667         int err;
668
669         err = cn_add_callback(&kvp_id, kvp_name, kvp_cn_callback);
670         if (err)
671                 return err;
672         recv_buffer = srv->recv_buffer;
673
674         /*
675          * When this driver loads, the user level daemon that
676          * processes the host requests may not yet be running.
677          * Defer processing channel callbacks until the daemon
678          * has registered.
679          */
680         kvp_transaction.active = true;
681
682         return 0;
683 }
684
685 void hv_kvp_deinit(void)
686 {
687         cn_del_callback(&kvp_id);
688         cancel_delayed_work_sync(&kvp_work);
689         cancel_work_sync(&kvp_sendkey_work);
690 }