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1 /* -*- Mode: C; tab-width: 4 -*-
2 *
3 * Copyright (c) 2002-2013 Apple Computer, Inc. All rights reserved.
4 *
5 * Licensed under the Apache License, Version 2.0 (the "License");
6 * you may not use this file except in compliance with the License.
7 * You may obtain a copy of the License at
8 *
9 * http://www.apache.org/licenses/LICENSE-2.0
10 *
11 * Unless required by applicable law or agreed to in writing, software
12 * distributed under the License is distributed on an "AS IS" BASIS,
13 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
14 * See the License for the specific language governing permissions and
15 * limitations under the License.
16
17 * To Do:
18 * Elimate all mDNSPlatformMemAllocate/mDNSPlatformMemFree from this code -- the core code
19 * is supposed to be malloc-free so that it runs in constant memory determined at compile-time.
20 * Any dynamic run-time requirements should be handled by the platform layer below or client layer above
21 */
22
23 #if APPLE_OSX_mDNSResponder
24 #include <TargetConditionals.h>
25 #endif
26 #include "uDNS.h"
27
28 #if (defined(_MSC_VER))
29 // Disable "assignment within conditional expression".
30 // Other compilers understand the convention that if you place the assignment expression within an extra pair
31 // of parentheses, this signals to the compiler that you really intended an assignment and no warning is necessary.
32 // The Microsoft compiler doesn't understand this convention, so in the absense of any other way to signal
33 // to the compiler that the assignment is intentional, we have to just turn this warning off completely.
34 #pragma warning(disable:4706)
35 #endif
36
37 // For domain enumeration and automatic browsing
38 // This is the user's DNS search list.
39 // In each of these domains we search for our special pointer records (lb._dns-sd._udp.<domain>, etc.)
40 // to discover recommended domains for domain enumeration (browse, default browse, registration,
41 // default registration) and possibly one or more recommended automatic browsing domains.
42 mDNSexport SearchListElem *SearchList = mDNSNULL;
43
44 // The value can be set to true by the Platform code e.g., MacOSX uses the plist mechanism
45 mDNSBool StrictUnicastOrdering = mDNSfalse;
46
47 // We keep track of the number of unicast DNS servers and log a message when we exceed 64.
48 // Currently the unicast queries maintain a 64 bit map to track the valid DNS servers for that
49 // question. Bit position is the index into the DNS server list. This is done so to try all
50 // the servers exactly once before giving up. If we could allocate memory in the core, then
51 // arbitrary limitation of 64 DNSServers can be removed.
52 mDNSu8 NumUnicastDNSServers = 0;
53 #define MAX_UNICAST_DNS_SERVERS 64
54
55 #define SetNextuDNSEvent(m, rr) { \
56 if ((m)->NextuDNSEvent - ((rr)->LastAPTime + (rr)->ThisAPInterval) >= 0) \
57 (m)->NextuDNSEvent = ((rr)->LastAPTime + (rr)->ThisAPInterval); \
58 }
59
60 #ifndef UNICAST_DISABLED
61
62 // ***************************************************************************
63 #if COMPILER_LIKES_PRAGMA_MARK
64 #pragma mark - General Utility Functions
65 #endif
66
67 // set retry timestamp for record with exponential backoff
68 mDNSlocal void SetRecordRetry(mDNS *const m, AuthRecord *rr, mDNSu32 random)
69 {
70 rr->LastAPTime = m->timenow;
71
72 if (rr->expire && rr->refreshCount < MAX_UPDATE_REFRESH_COUNT)
73 {
74 mDNSs32 remaining = rr->expire - m->timenow;
75 rr->refreshCount++;
76 if (remaining > MIN_UPDATE_REFRESH_TIME)
77 {
78 // Refresh at 70% + random (currently it is 0 to 10%)
79 rr->ThisAPInterval = 7 * (remaining/10) + (random ? random : mDNSRandom(remaining/10));
80 // Don't update more often than 5 minutes
81 if (rr->ThisAPInterval < MIN_UPDATE_REFRESH_TIME)
82 rr->ThisAPInterval = MIN_UPDATE_REFRESH_TIME;
83 LogInfo("SetRecordRetry refresh in %d of %d for %s",
84 rr->ThisAPInterval/mDNSPlatformOneSecond, (rr->expire - m->timenow)/mDNSPlatformOneSecond, ARDisplayString(m, rr));
85 }
86 else
87 {
88 rr->ThisAPInterval = MIN_UPDATE_REFRESH_TIME;
89 LogInfo("SetRecordRetry clamping to min refresh in %d of %d for %s",
90 rr->ThisAPInterval/mDNSPlatformOneSecond, (rr->expire - m->timenow)/mDNSPlatformOneSecond, ARDisplayString(m, rr));
91 }
92 return;
93 }
94
95 rr->expire = 0;
96
97 rr->ThisAPInterval = rr->ThisAPInterval * QuestionIntervalStep; // Same Retry logic as Unicast Queries
98 if (rr->ThisAPInterval < INIT_RECORD_REG_INTERVAL)
99 rr->ThisAPInterval = INIT_RECORD_REG_INTERVAL;
100 if (rr->ThisAPInterval > MAX_RECORD_REG_INTERVAL)
101 rr->ThisAPInterval = MAX_RECORD_REG_INTERVAL;
102
103 LogInfo("SetRecordRetry retry in %d ms for %s", rr->ThisAPInterval, ARDisplayString(m, rr));
104 }
105
106 // ***************************************************************************
107 #if COMPILER_LIKES_PRAGMA_MARK
108 #pragma mark - Name Server List Management
109 #endif
110
111 mDNSexport DNSServer *mDNS_AddDNSServer(mDNS *const m, const domainname *d, const mDNSInterfaceID interface, const mDNSs32 serviceID, const mDNSAddr *addr,
112 const mDNSIPPort port, mDNSu32 scoped, mDNSu32 timeout, mDNSBool cellIntf, mDNSu16 resGroupID, mDNSBool reqA,
113 mDNSBool reqAAAA, mDNSBool reqDO)
114 {
115 DNSServer **p = &m->DNSServers;
116 DNSServer *tmp = mDNSNULL;
117
118 if ((NumUnicastDNSServers + 1) > MAX_UNICAST_DNS_SERVERS)
119 {
120 LogMsg("mDNS_AddDNSServer: DNS server limit of %d reached, not adding this server", MAX_UNICAST_DNS_SERVERS);
121 return mDNSNULL;
122 }
123
124 if (!d)
125 d = (const domainname *)"";
126
127 LogInfo("mDNS_AddDNSServer(%d): Adding %#a for %##s, InterfaceID %p, serviceID %u, scoped %d, resGroupID %d req_A is %s req_AAAA is %s cell %s req_DO is %s",
128 NumUnicastDNSServers, addr, d->c, interface, serviceID, scoped, resGroupID, reqA ? "True" : "False", reqAAAA ? "True" : "False",
129 cellIntf ? "True" : "False", reqDO ? "True" : "False");
130
131 mDNS_CheckLock(m);
132
133 while (*p) // Check if we already have this {interface,address,port,domain} tuple registered + reqA/reqAAAA bits
134 {
135 if ((*p)->scoped == scoped && (*p)->interface == interface && (*p)->serviceID == serviceID && (*p)->teststate != DNSServer_Disabled &&
136 mDNSSameAddress(&(*p)->addr, addr) && mDNSSameIPPort((*p)->port, port) && SameDomainName(&(*p)->domain, d) &&
137 (*p)->req_A == reqA && (*p)->req_AAAA == reqAAAA)
138 {
139 if (!((*p)->flags & DNSServer_FlagDelete))
140 debugf("Note: DNS Server %#a:%d for domain %##s (%p) registered more than once", addr, mDNSVal16(port), d->c, interface);
141 tmp = *p;
142 *p = tmp->next;
143 tmp->next = mDNSNULL;
144 }
145 else
146 {
147 p=&(*p)->next;
148 }
149 }
150
151 // NumUnicastDNSServers is the count of active DNS servers i.e., ones that are not marked
152 // with DNSServer_FlagDelete. We should increment it:
153 //
154 // 1) When we add a new DNS server
155 // 2) When we resurrect a old DNS server that is marked with DNSServer_FlagDelete
156 //
157 // Don't increment when we resurrect a DNS server that is not marked with DNSServer_FlagDelete.
158 // We have already accounted for it when it was added for the first time. This case happens when
159 // we add DNS servers with the same address multiple times (mis-configuration).
160
161 if (!tmp || (tmp->flags & DNSServer_FlagDelete))
162 NumUnicastDNSServers++;
163
164
165 if (tmp)
166 {
167 tmp->flags &= ~DNSServer_FlagDelete;
168 *p = tmp; // move to end of list, to ensure ordering from platform layer
169 }
170 else
171 {
172 // allocate, add to list
173 *p = mDNSPlatformMemAllocate(sizeof(**p));
174 if (!*p)
175 {
176 LogMsg("Error: mDNS_AddDNSServer - malloc");
177 }
178 else
179 {
180 (*p)->scoped = scoped;
181 (*p)->interface = interface;
182 (*p)->serviceID = serviceID;
183 (*p)->addr = *addr;
184 (*p)->port = port;
185 (*p)->flags = DNSServer_FlagNew;
186 (*p)->teststate = /* DNSServer_Untested */ DNSServer_Passed;
187 (*p)->lasttest = m->timenow - INIT_UCAST_POLL_INTERVAL;
188 (*p)->timeout = timeout;
189 (*p)->cellIntf = cellIntf;
190 (*p)->req_A = reqA;
191 (*p)->req_AAAA = reqAAAA;
192 (*p)->req_DO = reqDO;
193 // We start off assuming that the DNS server is not DNSSEC aware and
194 // when we receive the first response to a DNSSEC question, we set
195 // it to true.
196 (*p)->DNSSECAware = mDNSfalse;
197 (*p)->retransDO = 0;
198 AssignDomainName(&(*p)->domain, d);
199 (*p)->next = mDNSNULL;
200 }
201 }
202 (*p)->penaltyTime = 0;
203 // We always update the ID (not just when we allocate a new instance) because we could
204 // be adding a new non-scoped resolver with a new ID and we want all the non-scoped
205 // resolvers belong to the same group.
206 (*p)->resGroupID = resGroupID;
207 return(*p);
208 }
209
210 // PenalizeDNSServer is called when the number of queries to the unicast
211 // DNS server exceeds MAX_UCAST_UNANSWERED_QUERIES or when we receive an
212 // error e.g., SERV_FAIL from DNS server.
213 mDNSexport void PenalizeDNSServer(mDNS *const m, DNSQuestion *q, mDNSOpaque16 responseFlags)
214 {
215 DNSServer *new;
216 DNSServer *orig = q->qDNSServer;
217
218 mDNS_CheckLock(m);
219
220 LogInfo("PenalizeDNSServer: Penalizing DNS server %#a question for question %p %##s (%s) SuppressUnusable %d",
221 (q->qDNSServer ? &q->qDNSServer->addr : mDNSNULL), q, q->qname.c, DNSTypeName(q->qtype), q->SuppressUnusable);
222
223 // If we get error from any DNS server, remember the error. If all of the servers,
224 // return the error, then return the first error.
225 if (mDNSOpaque16IsZero(q->responseFlags))
226 q->responseFlags = responseFlags;
227
228 // After we reset the qDNSServer to NULL, we could get more SERV_FAILS that might end up
229 // peanlizing again.
230 if (!q->qDNSServer) goto end;
231
232 // If strict ordering of unicast servers needs to be preserved, we just lookup
233 // the next best match server below
234 //
235 // If strict ordering is not required which is the default behavior, we penalize the server
236 // for DNSSERVER_PENALTY_TIME. We may also use additional logic e.g., don't penalize for PTR
237 // in the future.
238
239 if (!StrictUnicastOrdering)
240 {
241 LogInfo("PenalizeDNSServer: Strict Unicast Ordering is FALSE");
242 // We penalize the server so that new queries don't pick this server for DNSSERVER_PENALTY_TIME
243 // XXX Include other logic here to see if this server should really be penalized
244 //
245 if (q->qtype == kDNSType_PTR)
246 {
247 LogInfo("PenalizeDNSServer: Not Penalizing PTR question");
248 }
249 else
250 {
251 LogInfo("PenalizeDNSServer: Penalizing question type %d", q->qtype);
252 q->qDNSServer->penaltyTime = NonZeroTime(m->timenow + DNSSERVER_PENALTY_TIME);
253 }
254 }
255 else
256 {
257 LogInfo("PenalizeDNSServer: Strict Unicast Ordering is TRUE");
258 }
259
260 end:
261 new = GetServerForQuestion(m, q);
262
263 if (new == orig)
264 {
265 if (new)
266 {
267 LogMsg("PenalizeDNSServer: ERROR!! GetServerForQuestion returned the same server %#a:%d", &new->addr,
268 mDNSVal16(new->port));
269 q->ThisQInterval = 0; // Inactivate this question so that we dont bombard the network
270 }
271 else
272 {
273 // When we have no more DNS servers, we might end up calling PenalizeDNSServer multiple
274 // times when we receive SERVFAIL from delayed packets in the network e.g., DNS server
275 // is slow in responding and we have sent three queries. When we repeatedly call, it is
276 // okay to receive the same NULL DNS server. Next time we try to send the query, we will
277 // realize and re-initialize the DNS servers.
278 LogInfo("PenalizeDNSServer: GetServerForQuestion returned the same server NULL");
279 }
280 }
281 else
282 {
283 // The new DNSServer is set in DNSServerChangeForQuestion
284 DNSServerChangeForQuestion(m, q, new);
285
286 if (new)
287 {
288 LogInfo("PenalizeDNSServer: Server for %##s (%s) changed to %#a:%d (%##s)",
289 q->qname.c, DNSTypeName(q->qtype), &q->qDNSServer->addr, mDNSVal16(q->qDNSServer->port), q->qDNSServer->domain.c);
290 // We want to try the next server immediately. As the question may already have backed off, reset
291 // the interval. We do this only the first time when we try all the DNS servers. Once we reached the end of
292 // list and retrying all the servers again e.g., at least one server failed to respond in the previous try, we
293 // use the normal backoff which is done in uDNS_CheckCurrentQuestion when we send the packet out.
294 if (!q->triedAllServersOnce)
295 {
296 q->ThisQInterval = InitialQuestionInterval;
297 q->LastQTime = m->timenow - q->ThisQInterval;
298 SetNextQueryTime(m, q);
299 }
300 }
301 else
302 {
303 // We don't have any more DNS servers for this question. If some server in the list did not return
304 // any response, we need to keep retrying till we get a response. uDNS_CheckCurrentQuestion handles
305 // this case.
306 //
307 // If all servers responded with a negative response, We need to do two things. First, generate a
308 // negative response so that applications get a reply. We also need to reinitialize the DNS servers
309 // so that when the cache expires, we can restart the query. We defer this up until we generate
310 // a negative cache response in uDNS_CheckCurrentQuestion.
311 //
312 // Be careful not to touch the ThisQInterval here. For a normal question, when we answer the question
313 // in AnswerCurrentQuestionWithResourceRecord will set ThisQInterval to MaxQuestionInterval and hence
314 // the next query will not happen until cache expiry. If it is a long lived question,
315 // AnswerCurrentQuestionWithResourceRecord will not set it to MaxQuestionInterval. In that case,
316 // we want the normal backoff to work.
317 LogInfo("PenalizeDNSServer: Server for %p, %##s (%s) changed to NULL, Interval %d", q, q->qname.c, DNSTypeName(q->qtype), q->ThisQInterval);
318 }
319 q->unansweredQueries = 0;
320
321 }
322 }
323
324 // ***************************************************************************
325 #if COMPILER_LIKES_PRAGMA_MARK
326 #pragma mark - authorization management
327 #endif
328
329 mDNSlocal DomainAuthInfo *GetAuthInfoForName_direct(mDNS *m, const domainname *const name)
330 {
331 const domainname *n = name;
332 while (n->c[0])
333 {
334 DomainAuthInfo *ptr;
335 for (ptr = m->AuthInfoList; ptr; ptr = ptr->next)
336 if (SameDomainName(&ptr->domain, n))
337 {
338 debugf("GetAuthInfoForName %##s Matched %##s Key name %##s", name->c, ptr->domain.c, ptr->keyname.c);
339 return(ptr);
340 }
341 n = (const domainname *)(n->c + 1 + n->c[0]);
342 }
343 //LogInfo("GetAuthInfoForName none found for %##s", name->c);
344 return mDNSNULL;
345 }
346
347 // MUST be called with lock held
348 mDNSexport DomainAuthInfo *GetAuthInfoForName_internal(mDNS *m, const domainname *const name)
349 {
350 DomainAuthInfo **p = &m->AuthInfoList;
351
352 mDNS_CheckLock(m);
353
354 // First purge any dead keys from the list
355 while (*p)
356 {
357 if ((*p)->deltime && m->timenow - (*p)->deltime >= 0 && AutoTunnelUnregistered(*p))
358 {
359 DNSQuestion *q;
360 DomainAuthInfo *info = *p;
361 LogInfo("GetAuthInfoForName_internal deleting expired key %##s %##s", info->domain.c, info->keyname.c);
362 *p = info->next; // Cut DomainAuthInfo from list *before* scanning our question list updating AuthInfo pointers
363 for (q = m->Questions; q; q=q->next)
364 if (q->AuthInfo == info)
365 {
366 q->AuthInfo = GetAuthInfoForName_direct(m, &q->qname);
367 debugf("GetAuthInfoForName_internal updated q->AuthInfo from %##s to %##s for %##s (%s)",
368 info->domain.c, q->AuthInfo ? q->AuthInfo->domain.c : mDNSNULL, q->qname.c, DNSTypeName(q->qtype));
369 }
370
371 // Probably not essential, but just to be safe, zero out the secret key data
372 // so we don't leave it hanging around in memory
373 // (where it could potentially get exposed via some other bug)
374 mDNSPlatformMemZero(info, sizeof(*info));
375 mDNSPlatformMemFree(info);
376 }
377 else
378 p = &(*p)->next;
379 }
380
381 return(GetAuthInfoForName_direct(m, name));
382 }
383
384 mDNSexport DomainAuthInfo *GetAuthInfoForName(mDNS *m, const domainname *const name)
385 {
386 DomainAuthInfo *d;
387 mDNS_Lock(m);
388 d = GetAuthInfoForName_internal(m, name);
389 mDNS_Unlock(m);
390 return(d);
391 }
392
393 // MUST be called with the lock held
394 mDNSexport mStatus mDNS_SetSecretForDomain(mDNS *m, DomainAuthInfo *info,
395 const domainname *domain, const domainname *keyname, const char *b64keydata, const domainname *hostname, mDNSIPPort *port, mDNSBool autoTunnel)
396 {
397 DNSQuestion *q;
398 DomainAuthInfo **p = &m->AuthInfoList;
399 if (!info || !b64keydata) { LogMsg("mDNS_SetSecretForDomain: ERROR: info %p b64keydata %p", info, b64keydata); return(mStatus_BadParamErr); }
400
401 LogInfo("mDNS_SetSecretForDomain: domain %##s key %##s%s", domain->c, keyname->c, autoTunnel ? " AutoTunnel" : "");
402
403 info->AutoTunnel = autoTunnel;
404 AssignDomainName(&info->domain, domain);
405 AssignDomainName(&info->keyname, keyname);
406 if (hostname)
407 AssignDomainName(&info->hostname, hostname);
408 else
409 info->hostname.c[0] = 0;
410 if (port)
411 info->port = *port;
412 else
413 info->port = zeroIPPort;
414 mDNS_snprintf(info->b64keydata, sizeof(info->b64keydata), "%s", b64keydata);
415
416 if (DNSDigest_ConstructHMACKeyfromBase64(info, b64keydata) < 0)
417 {
418 LogMsg("mDNS_SetSecretForDomain: ERROR: Could not convert shared secret from base64: domain %##s key %##s %s", domain->c, keyname->c, mDNS_LoggingEnabled ? b64keydata : "");
419 return(mStatus_BadParamErr);
420 }
421
422 // Don't clear deltime until after we've ascertained that b64keydata is valid
423 info->deltime = 0;
424
425 while (*p && (*p) != info) p=&(*p)->next;
426 if (*p) {LogInfo("mDNS_SetSecretForDomain: Domain %##s Already in list", (*p)->domain.c); return(mStatus_AlreadyRegistered);}
427
428 // Caution: Only zero AutoTunnelHostRecord.namestorage AFTER we've determined that this is a NEW DomainAuthInfo
429 // being added to the list. Otherwise we risk smashing our AutoTunnel host records that are already active and in use.
430 info->AutoTunnelHostRecord.resrec.RecordType = kDNSRecordTypeUnregistered;
431 info->AutoTunnelHostRecord.namestorage.c[0] = 0;
432 info->AutoTunnelTarget.resrec.RecordType = kDNSRecordTypeUnregistered;
433 info->AutoTunnelDeviceInfo.resrec.RecordType = kDNSRecordTypeUnregistered;
434 info->AutoTunnelService.resrec.RecordType = kDNSRecordTypeUnregistered;
435 info->AutoTunnel6Record.resrec.RecordType = kDNSRecordTypeUnregistered;
436 info->AutoTunnelServiceStarted = mDNSfalse;
437 info->AutoTunnelInnerAddress = zerov6Addr;
438 info->next = mDNSNULL;
439 *p = info;
440
441 // Check to see if adding this new DomainAuthInfo has changed the credentials for any of our questions
442 for (q = m->Questions; q; q=q->next)
443 {
444 DomainAuthInfo *newinfo = GetAuthInfoForQuestion(m, q);
445 if (q->AuthInfo != newinfo)
446 {
447 debugf("mDNS_SetSecretForDomain updating q->AuthInfo from %##s to %##s for %##s (%s)",
448 q->AuthInfo ? q->AuthInfo->domain.c : mDNSNULL,
449 newinfo ? newinfo->domain.c : mDNSNULL, q->qname.c, DNSTypeName(q->qtype));
450 q->AuthInfo = newinfo;
451 }
452 }
453
454 return(mStatus_NoError);
455 }
456
457 // ***************************************************************************
458 #if COMPILER_LIKES_PRAGMA_MARK
459 #pragma mark -
460 #pragma mark - NAT Traversal
461 #endif
462
463 // Keep track of when to request/refresh the external address using NAT-PMP or UPnP/IGD,
464 // and do so when necessary
465 mDNSlocal mStatus uDNS_RequestAddress(mDNS *m)
466 {
467 mStatus err = mStatus_NoError;
468
469 if (!m->NATTraversals)
470 {
471 m->retryGetAddr = NonZeroTime(m->timenow + 0x78000000);
472 LogInfo("uDNS_RequestAddress: Setting retryGetAddr to future");
473 }
474 else if (m->timenow - m->retryGetAddr >= 0)
475 {
476 if (mDNSv4AddrIsRFC1918(&m->Router.ip.v4))
477 {
478 static NATAddrRequest req = {NATMAP_VERS, NATOp_AddrRequest};
479 static mDNSu8* start = (mDNSu8*)&req;
480 mDNSu8* end = start + sizeof(NATAddrRequest);
481 err = mDNSPlatformSendUDP(m, start, end, 0, mDNSNULL, &m->Router, NATPMPPort, mDNSfalse);
482 debugf("uDNS_RequestAddress: Sent NAT-PMP external address request %d", err);
483
484 #ifdef _LEGACY_NAT_TRAVERSAL_
485 if (mDNSIPPortIsZero(m->UPnPRouterPort) || mDNSIPPortIsZero(m->UPnPSOAPPort))
486 {
487 LNT_SendDiscoveryMsg(m);
488 debugf("uDNS_RequestAddress: LNT_SendDiscoveryMsg");
489 }
490 else
491 {
492 mStatus lnterr = LNT_GetExternalAddress(m);
493 if (lnterr)
494 LogMsg("uDNS_RequestAddress: LNT_GetExternalAddress returned error %d", lnterr);
495
496 err = err ? err : lnterr; // NAT-PMP error takes precedence
497 }
498 #endif // _LEGACY_NAT_TRAVERSAL_
499 }
500
501 // Always update the interval and retry time, so that even if we fail to send the
502 // packet, we won't spin in an infinite loop repeatedly failing to send the packet
503 if (m->retryIntervalGetAddr < NATMAP_INIT_RETRY)
504 {
505 m->retryIntervalGetAddr = NATMAP_INIT_RETRY;
506 }
507 else if (m->retryIntervalGetAddr < NATMAP_MAX_RETRY_INTERVAL / 2)
508 {
509 m->retryIntervalGetAddr *= 2;
510 }
511 else
512 {
513 m->retryIntervalGetAddr = NATMAP_MAX_RETRY_INTERVAL;
514 }
515
516 m->retryGetAddr = NonZeroTime(m->timenow + m->retryIntervalGetAddr);
517 }
518 else
519 {
520 debugf("uDNS_RequestAddress: Not time to send address request");
521 }
522
523 // Always update NextScheduledNATOp, even if we didn't change retryGetAddr, so we'll
524 // be called when we need to send the request(s)
525 if (m->NextScheduledNATOp - m->retryGetAddr > 0)
526 m->NextScheduledNATOp = m->retryGetAddr;
527
528 return err;
529 }
530
531 mDNSlocal mStatus uDNS_SendNATMsg(mDNS *m, NATTraversalInfo *info, mDNSBool usePCP)
532 {
533 mStatus err = mStatus_NoError;
534
535 if (!info)
536 {
537 LogMsg("uDNS_SendNATMsg called unexpectedly with NULL info");
538 return mStatus_BadParamErr;
539 }
540
541 // send msg if the router's address is private (which means it's non-zero)
542 if (mDNSv4AddrIsRFC1918(&m->Router.ip.v4))
543 {
544 if (!usePCP)
545 {
546 if (!info->sentNATPMP)
547 {
548 if (info->Protocol)
549 {
550 static NATPortMapRequest NATPortReq;
551 static const mDNSu8* end = (mDNSu8 *)&NATPortReq + sizeof(NATPortMapRequest);
552 mDNSu8 *p = (mDNSu8 *)&NATPortReq.NATReq_lease;
553
554 NATPortReq.vers = NATMAP_VERS;
555 NATPortReq.opcode = info->Protocol;
556 NATPortReq.unused = zeroID;
557 NATPortReq.intport = info->IntPort;
558 NATPortReq.extport = info->RequestedPort;
559 p[0] = (mDNSu8)((info->NATLease >> 24) & 0xFF);
560 p[1] = (mDNSu8)((info->NATLease >> 16) & 0xFF);
561 p[2] = (mDNSu8)((info->NATLease >> 8) & 0xFF);
562 p[3] = (mDNSu8)( info->NATLease & 0xFF);
563
564 err = mDNSPlatformSendUDP(m, (mDNSu8 *)&NATPortReq, end, 0, mDNSNULL, &m->Router, NATPMPPort, mDNSfalse);
565 debugf("uDNS_SendNATMsg: Sent NAT-PMP mapping request %d", err);
566 }
567
568 // In case the address request already went out for another NAT-T,
569 // set the NewAddress to the currently known global external address, so
570 // Address-only operations will get the callback immediately
571 info->NewAddress = m->ExtAddress;
572
573 // Remember that we just sent a NAT-PMP packet, so we won't resend one later.
574 // We do this because the NAT-PMP "Unsupported Version" response has no
575 // information about the (PCP) request that triggered it, so we must send
576 // NAT-PMP requests for all operations. Without this, we'll send n PCP
577 // requests for n operations, receive n NAT-PMP "Unsupported Version"
578 // responses, and send n NAT-PMP requests for each of those responses,
579 // resulting in (n + n^2) packets sent. We only want to send 2n packets:
580 // n PCP requests followed by n NAT-PMP requests.
581 info->sentNATPMP = mDNStrue;
582 }
583 }
584 else
585 {
586 PCPMapRequest req;
587 mDNSu8* start = (mDNSu8*)&req;
588 mDNSu8* end = start + sizeof(req);
589 mDNSu8* p = (mDNSu8*)&req.lifetime;
590
591 req.version = PCP_VERS;
592 req.opCode = PCPOp_Map;
593 req.reserved = zeroID;
594
595 p[0] = (mDNSu8)((info->NATLease >> 24) & 0xFF);
596 p[1] = (mDNSu8)((info->NATLease >> 16) & 0xFF);
597 p[2] = (mDNSu8)((info->NATLease >> 8) & 0xFF);
598 p[3] = (mDNSu8)( info->NATLease & 0xFF);
599
600 mDNSAddrMapIPv4toIPv6(&m->AdvertisedV4.ip.v4, &req.clientAddr);
601
602 req.nonce[0] = m->PCPNonce[0];
603 req.nonce[1] = m->PCPNonce[1];
604 req.nonce[2] = m->PCPNonce[2];
605
606 req.protocol = (info->Protocol == NATOp_MapUDP ? PCPProto_UDP : PCPProto_TCP);
607
608 req.reservedMapOp[0] = 0;
609 req.reservedMapOp[1] = 0;
610 req.reservedMapOp[2] = 0;
611
612 req.intPort = info->Protocol ? info->IntPort : DiscardPort;
613 req.extPort = info->RequestedPort;
614
615 // Since we only support IPv4, even if using the all-zeros address, map it, so
616 // the PCP gateway will give us an IPv4 address & not an IPv6 address.
617 mDNSAddrMapIPv4toIPv6(&info->NewAddress, &req.extAddress);
618
619 err = mDNSPlatformSendUDP(m, start, end, 0, mDNSNULL, &m->Router, NATPMPPort, mDNSfalse);
620 debugf("uDNS_SendNATMsg: Sent PCP Mapping request %d", err);
621
622 // Unset the sentNATPMP flag, so that we'll send a NAT-PMP packet if we
623 // receive a NAT-PMP "Unsupported Version" packet. This will result in every
624 // renewal, retransmission, etc. being tried first as PCP, then if a NAT-PMP
625 // "Unsupported Version" response is received, fall-back & send the request
626 // using NAT-PMP.
627 info->sentNATPMP = mDNSfalse;
628
629 #ifdef _LEGACY_NAT_TRAVERSAL_
630 if (mDNSIPPortIsZero(m->UPnPRouterPort) || mDNSIPPortIsZero(m->UPnPSOAPPort))
631 {
632 LNT_SendDiscoveryMsg(m);
633 debugf("uDNS_SendNATMsg: LNT_SendDiscoveryMsg");
634 }
635 else
636 {
637 mStatus lnterr = LNT_MapPort(m, info);
638 if (lnterr)
639 LogMsg("uDNS_SendNATMsg: LNT_MapPort returned error %d", lnterr);
640
641 err = err ? err : lnterr; // PCP error takes precedence
642 }
643 #endif // _LEGACY_NAT_TRAVERSAL_
644 }
645 }
646
647 return(err);
648 }
649
650 mDNSexport void RecreateNATMappings(mDNS *const m, const mDNSu32 waitTicks)
651 {
652 mDNSu32 when = NonZeroTime(m->timenow + waitTicks);
653 NATTraversalInfo *n;
654 for (n = m->NATTraversals; n; n=n->next)
655 {
656 n->ExpiryTime = 0; // Mark this mapping as expired
657 n->retryInterval = NATMAP_INIT_RETRY;
658 n->retryPortMap = when;
659 n->lastSuccessfulProtocol = NATTProtocolNone;
660 if (!n->Protocol) n->NewResult = mStatus_NoError;
661 #ifdef _LEGACY_NAT_TRAVERSAL_
662 if (n->tcpInfo.sock) { mDNSPlatformTCPCloseConnection(n->tcpInfo.sock); n->tcpInfo.sock = mDNSNULL; }
663 #endif // _LEGACY_NAT_TRAVERSAL_
664 }
665
666 m->PCPNonce[0] = mDNSRandom(-1);
667 m->PCPNonce[1] = mDNSRandom(-1);
668 m->PCPNonce[2] = mDNSRandom(-1);
669 m->retryIntervalGetAddr = 0;
670 m->retryGetAddr = when;
671
672 #ifdef _LEGACY_NAT_TRAVERSAL_
673 LNT_ClearState(m);
674 #endif // _LEGACY_NAT_TRAVERSAL_
675
676 m->NextScheduledNATOp = m->timenow; // Need to send packets immediately
677 }
678
679 mDNSexport void natTraversalHandleAddressReply(mDNS *const m, mDNSu16 err, mDNSv4Addr ExtAddr)
680 {
681 static mDNSu16 last_err = 0;
682 NATTraversalInfo *n;
683
684 if (err)
685 {
686 if (err != last_err) LogMsg("Error getting external address %d", err);
687 ExtAddr = zerov4Addr;
688 }
689 else
690 {
691 LogInfo("Received external IP address %.4a from NAT", &ExtAddr);
692 if (mDNSv4AddrIsRFC1918(&ExtAddr))
693 LogMsg("Double NAT (external NAT gateway address %.4a is also a private RFC 1918 address)", &ExtAddr);
694 if (mDNSIPv4AddressIsZero(ExtAddr))
695 err = NATErr_NetFail; // fake error to handle routers that pathologically report success with the zero address
696 }
697
698 // Globally remember the most recently discovered address, so it can be used in each
699 // new NATTraversal structure
700 m->ExtAddress = ExtAddr;
701
702 if (!err) // Success, back-off to maximum interval
703 m->retryIntervalGetAddr = NATMAP_MAX_RETRY_INTERVAL;
704 else if (!last_err) // Failure after success, retry quickly (then back-off exponentially)
705 m->retryIntervalGetAddr = NATMAP_INIT_RETRY;
706 // else back-off normally in case of pathological failures
707
708 m->retryGetAddr = m->timenow + m->retryIntervalGetAddr;
709 if (m->NextScheduledNATOp - m->retryGetAddr > 0)
710 m->NextScheduledNATOp = m->retryGetAddr;
711
712 last_err = err;
713
714 for (n = m->NATTraversals; n; n=n->next)
715 {
716 // We should change n->NewAddress only when n is one of:
717 // 1) a mapping operation that most recently succeeded using NAT-PMP or UPnP/IGD,
718 // because such an operation needs the update now. If the lastSuccessfulProtocol
719 // is currently none, then natTraversalHandlePortMapReplyWithAddress() will be
720 // called should NAT-PMP or UPnP/IGD succeed in the future.
721 // 2) an address-only operation that did not succeed via PCP, because when such an
722 // operation succeeds via PCP, it's for the TCP discard port just to learn the
723 // address. And that address may be different than the external address
724 // discovered via NAT-PMP or UPnP/IGD. If the lastSuccessfulProtocol
725 // is currently none, we must update the NewAddress as PCP may not succeed.
726 if (!mDNSSameIPv4Address(n->NewAddress, ExtAddr) &&
727 (n->Protocol ?
728 (n->lastSuccessfulProtocol == NATTProtocolNATPMP || n->lastSuccessfulProtocol == NATTProtocolUPNPIGD) :
729 (n->lastSuccessfulProtocol != NATTProtocolPCP)))
730 {
731 // Needs an update immediately
732 n->NewAddress = ExtAddr;
733 n->ExpiryTime = 0;
734 n->retryInterval = NATMAP_INIT_RETRY;
735 n->retryPortMap = m->timenow;
736 #ifdef _LEGACY_NAT_TRAVERSAL_
737 if (n->tcpInfo.sock) { mDNSPlatformTCPCloseConnection(n->tcpInfo.sock); n->tcpInfo.sock = mDNSNULL; }
738 #endif // _LEGACY_NAT_TRAVERSAL_
739
740 m->NextScheduledNATOp = m->timenow; // Need to send packets immediately
741 }
742 }
743 }
744
745 // Both places that call NATSetNextRenewalTime() update m->NextScheduledNATOp correctly afterwards
746 mDNSlocal void NATSetNextRenewalTime(mDNS *const m, NATTraversalInfo *n)
747 {
748 n->retryInterval = (n->ExpiryTime - m->timenow)/2;
749 if (n->retryInterval < NATMAP_MIN_RETRY_INTERVAL) // Min retry interval is 2 seconds
750 n->retryInterval = NATMAP_MIN_RETRY_INTERVAL;
751 n->retryPortMap = m->timenow + n->retryInterval;
752 }
753
754 mDNSlocal void natTraversalHandlePortMapReplyWithAddress(mDNS *const m, NATTraversalInfo *n, const mDNSInterfaceID InterfaceID, mDNSu16 err, mDNSv4Addr extaddr, mDNSIPPort extport, mDNSu32 lease, NATTProtocol protocol)
755 {
756 const char *prot = n->Protocol == 0 ? "Add" : n->Protocol == NATOp_MapUDP ? "UDP" : n->Protocol == NATOp_MapTCP ? "TCP" : "???";
757 (void)prot;
758 n->NewResult = err;
759 if (err || lease == 0 || mDNSIPPortIsZero(extport))
760 {
761 LogInfo("natTraversalHandlePortMapReplyWithAddress: %p Response %s Port %5d External %.4a:%d lease %d error %d",
762 n, prot, mDNSVal16(n->IntPort), &extaddr, mDNSVal16(extport), lease, err);
763 n->retryInterval = NATMAP_MAX_RETRY_INTERVAL;
764 n->retryPortMap = m->timenow + NATMAP_MAX_RETRY_INTERVAL;
765 // No need to set m->NextScheduledNATOp here, since we're only ever extending the m->retryPortMap time
766 if (err == NATErr_Refused) n->NewResult = mStatus_NATPortMappingDisabled;
767 else if (err > NATErr_None && err <= NATErr_Opcode) n->NewResult = mStatus_NATPortMappingUnsupported;
768 }
769 else
770 {
771 if (lease > 999999999UL / mDNSPlatformOneSecond)
772 lease = 999999999UL / mDNSPlatformOneSecond;
773 n->ExpiryTime = NonZeroTime(m->timenow + lease * mDNSPlatformOneSecond);
774
775 if (!mDNSSameIPv4Address(n->NewAddress, extaddr) || !mDNSSameIPPort(n->RequestedPort, extport))
776 LogInfo("natTraversalHandlePortMapReplyWithAddress: %p %s Response %s Port %5d External %.4a:%d changed to %.4a:%d lease %d",
777 n,
778 (n->lastSuccessfulProtocol == NATTProtocolNone ? "None " :
779 n->lastSuccessfulProtocol == NATTProtocolNATPMP ? "NAT-PMP " :
780 n->lastSuccessfulProtocol == NATTProtocolUPNPIGD ? "UPnP/IGD" :
781 n->lastSuccessfulProtocol == NATTProtocolPCP ? "PCP " :
782 /* else */ "Unknown " ),
783 prot, mDNSVal16(n->IntPort), &n->NewAddress, mDNSVal16(n->RequestedPort),
784 &extaddr, mDNSVal16(extport), lease);
785
786 n->InterfaceID = InterfaceID;
787 n->NewAddress = extaddr;
788 if (n->Protocol) n->RequestedPort = extport; // Don't report the (PCP) external port to address-only operations
789 n->lastSuccessfulProtocol = protocol;
790
791 NATSetNextRenewalTime(m, n); // Got our port mapping; now set timer to renew it at halfway point
792 m->NextScheduledNATOp = m->timenow; // May need to invoke client callback immediately
793 }
794 }
795
796 // To be called for NAT-PMP or UPnP/IGD mappings, to use currently discovered (global) address
797 mDNSexport void natTraversalHandlePortMapReply(mDNS *const m, NATTraversalInfo *n, const mDNSInterfaceID InterfaceID, mDNSu16 err, mDNSIPPort extport, mDNSu32 lease, NATTProtocol protocol)
798 {
799 natTraversalHandlePortMapReplyWithAddress(m, n, InterfaceID, err, m->ExtAddress, extport, lease, protocol);
800 }
801
802 // Must be called with the mDNS_Lock held
803 mDNSexport mStatus mDNS_StartNATOperation_internal(mDNS *const m, NATTraversalInfo *traversal)
804 {
805 NATTraversalInfo **n;
806
807 LogInfo("mDNS_StartNATOperation_internal %p Protocol %d IntPort %d RequestedPort %d NATLease %d", traversal,
808 traversal->Protocol, mDNSVal16(traversal->IntPort), mDNSVal16(traversal->RequestedPort), traversal->NATLease);
809
810 // Note: It important that new traversal requests are appended at the *end* of the list, not prepended at the start
811 for (n = &m->NATTraversals; *n; n=&(*n)->next)
812 {
813 if (traversal == *n)
814 {
815 LogMsg("Error! Tried to add a NAT traversal that's already in the active list: request %p Prot %d Int %d TTL %d",
816 traversal, traversal->Protocol, mDNSVal16(traversal->IntPort), traversal->NATLease);
817 #if ForceAlerts
818 *(long*)0 = 0;
819 #endif
820 return(mStatus_AlreadyRegistered);
821 }
822 if (traversal->Protocol && traversal->Protocol == (*n)->Protocol && mDNSSameIPPort(traversal->IntPort, (*n)->IntPort) &&
823 !mDNSSameIPPort(traversal->IntPort, SSHPort))
824 LogMsg("Warning: Created port mapping request %p Prot %d Int %d TTL %d "
825 "duplicates existing port mapping request %p Prot %d Int %d TTL %d",
826 traversal, traversal->Protocol, mDNSVal16(traversal->IntPort), traversal->NATLease,
827 *n, (*n)->Protocol, mDNSVal16((*n)->IntPort), (*n)->NATLease);
828 }
829
830 // Initialize necessary fields
831 traversal->next = mDNSNULL;
832 traversal->ExpiryTime = 0;
833 traversal->retryInterval = NATMAP_INIT_RETRY;
834 traversal->retryPortMap = m->timenow;
835 traversal->NewResult = mStatus_NoError;
836 traversal->lastSuccessfulProtocol = NATTProtocolNone;
837 traversal->sentNATPMP = mDNSfalse;
838 traversal->ExternalAddress = onesIPv4Addr;
839 traversal->NewAddress = zerov4Addr;
840 traversal->ExternalPort = zeroIPPort;
841 traversal->Lifetime = 0;
842 traversal->Result = mStatus_NoError;
843
844 // set default lease if necessary
845 if (!traversal->NATLease) traversal->NATLease = NATMAP_DEFAULT_LEASE;
846
847 #ifdef _LEGACY_NAT_TRAVERSAL_
848 mDNSPlatformMemZero(&traversal->tcpInfo, sizeof(traversal->tcpInfo));
849 #endif // _LEGACY_NAT_TRAVERSAL_
850
851 if (!m->NATTraversals) // If this is our first NAT request, kick off an address request too
852 {
853 m->retryGetAddr = m->timenow;
854 m->retryIntervalGetAddr = NATMAP_INIT_RETRY;
855 }
856
857 // If this is an address-only operation, initialize to the current global address,
858 // or (in non-PCP environments) we won't know the address until the next external
859 // address request/response.
860 if (!traversal->Protocol)
861 {
862 traversal->NewAddress = m->ExtAddress;
863 }
864
865 m->NextScheduledNATOp = m->timenow; // This will always trigger sending the packet ASAP, and generate client callback if necessary
866
867 *n = traversal; // Append new NATTraversalInfo to the end of our list
868
869 return(mStatus_NoError);
870 }
871
872 // Must be called with the mDNS_Lock held
873 mDNSexport mStatus mDNS_StopNATOperation_internal(mDNS *m, NATTraversalInfo *traversal)
874 {
875 mDNSBool unmap = mDNStrue;
876 NATTraversalInfo *p;
877 NATTraversalInfo **ptr = &m->NATTraversals;
878
879 while (*ptr && *ptr != traversal) ptr=&(*ptr)->next;
880 if (*ptr) *ptr = (*ptr)->next; // If we found it, cut this NATTraversalInfo struct from our list
881 else
882 {
883 LogMsg("mDNS_StopNATOperation_internal: NATTraversalInfo %p not found in list", traversal);
884 return(mStatus_BadReferenceErr);
885 }
886
887 LogInfo("mDNS_StopNATOperation_internal %p %d %d %d %d", traversal,
888 traversal->Protocol, mDNSVal16(traversal->IntPort), mDNSVal16(traversal->RequestedPort), traversal->NATLease);
889
890 if (m->CurrentNATTraversal == traversal)
891 m->CurrentNATTraversal = m->CurrentNATTraversal->next;
892
893 // If there is a match for the operation being stopped, don't send a deletion request (unmap)
894 for (p = m->NATTraversals; p; p=p->next)
895 {
896 if (traversal->Protocol ?
897 ((traversal->Protocol == p->Protocol && mDNSSameIPPort(traversal->IntPort, p->IntPort)) ||
898 (!p->Protocol && traversal->Protocol == NATOp_MapTCP && mDNSSameIPPort(traversal->IntPort, DiscardPort))) :
899 (!p->Protocol || (p->Protocol == NATOp_MapTCP && mDNSSameIPPort(p->IntPort, DiscardPort))))
900 {
901 LogInfo("Warning: Removed port mapping request %p Prot %d Int %d TTL %d "
902 "duplicates existing port mapping request %p Prot %d Int %d TTL %d",
903 traversal, traversal->Protocol, mDNSVal16(traversal->IntPort), traversal->NATLease,
904 p, p->Protocol, mDNSVal16( p->IntPort), p->NATLease);
905 unmap = mDNSfalse;
906 }
907 }
908
909 if (traversal->ExpiryTime && unmap)
910 {
911 traversal->NATLease = 0;
912 traversal->retryInterval = 0;
913
914 // In case we most recently sent NAT-PMP, we need to set sentNATPMP to false so
915 // that we'll send a NAT-PMP request to destroy the mapping. We do this because
916 // the NATTraversal struct has already been cut from the list, and the client
917 // layer will destroy the memory upon returning from this function, so we can't
918 // try PCP first and then fall-back to NAT-PMP. That is, if we most recently
919 // created/renewed the mapping using NAT-PMP, we need to destroy it using NAT-PMP
920 // now, because we won't get a chance later.
921 traversal->sentNATPMP = mDNSfalse;
922
923 // Both NAT-PMP & PCP RFCs state that the suggested port in deletion requests
924 // should be zero. And for PCP, the suggested external address should also be
925 // zero, specifically, the all-zeros IPv4-mapped address, since we would only
926 // would have requested an IPv4 address.
927 traversal->RequestedPort = zeroIPPort;
928 traversal->NewAddress = zerov4Addr;
929
930 uDNS_SendNATMsg(m, traversal, traversal->lastSuccessfulProtocol != NATTProtocolNATPMP);
931 }
932
933 // Even if we DIDN'T make a successful UPnP mapping yet, we might still have a partially-open TCP connection we need to clean up
934 #ifdef _LEGACY_NAT_TRAVERSAL_
935 {
936 mStatus err = LNT_UnmapPort(m, traversal);
937 if (err) LogMsg("Legacy NAT Traversal - unmap request failed with error %d", err);
938 }
939 #endif // _LEGACY_NAT_TRAVERSAL_
940
941 return(mStatus_NoError);
942 }
943
944 mDNSexport mStatus mDNS_StartNATOperation(mDNS *const m, NATTraversalInfo *traversal)
945 {
946 mStatus status;
947 mDNS_Lock(m);
948 status = mDNS_StartNATOperation_internal(m, traversal);
949 mDNS_Unlock(m);
950 return(status);
951 }
952
953 mDNSexport mStatus mDNS_StopNATOperation(mDNS *const m, NATTraversalInfo *traversal)
954 {
955 mStatus status;
956 mDNS_Lock(m);
957 status = mDNS_StopNATOperation_internal(m, traversal);
958 mDNS_Unlock(m);
959 return(status);
960 }
961
962 // ***************************************************************************
963 #if COMPILER_LIKES_PRAGMA_MARK
964 #pragma mark -
965 #pragma mark - Long-Lived Queries
966 #endif
967
968 // Lock must be held -- otherwise m->timenow is undefined
969 mDNSlocal void StartLLQPolling(mDNS *const m, DNSQuestion *q)
970 {
971 debugf("StartLLQPolling: %##s", q->qname.c);
972 q->state = LLQ_Poll;
973 q->ThisQInterval = INIT_UCAST_POLL_INTERVAL;
974 // We want to send our poll query ASAP, but the "+ 1" is because if we set the time to now,
975 // we risk causing spurious "SendQueries didn't send all its queries" log messages
976 q->LastQTime = m->timenow - q->ThisQInterval + 1;
977 SetNextQueryTime(m, q);
978 #if APPLE_OSX_mDNSResponder
979 UpdateAutoTunnelDomainStatuses(m);
980 #endif
981 }
982
983 mDNSlocal mDNSu8 *putLLQ(DNSMessage *const msg, mDNSu8 *ptr, const DNSQuestion *const question, const LLQOptData *const data)
984 {
985 AuthRecord rr;
986 ResourceRecord *opt = &rr.resrec;
987 rdataOPT *optRD;
988
989 //!!!KRS when we implement multiple llqs per message, we'll need to memmove anything past the question section
990 ptr = putQuestion(msg, ptr, msg->data + AbsoluteMaxDNSMessageData, &question->qname, question->qtype, question->qclass);
991 if (!ptr) { LogMsg("ERROR: putLLQ - putQuestion"); return mDNSNULL; }
992
993 // locate OptRR if it exists, set pointer to end
994 // !!!KRS implement me
995
996 // format opt rr (fields not specified are zero-valued)
997 mDNS_SetupResourceRecord(&rr, mDNSNULL, mDNSInterface_Any, kDNSType_OPT, kStandardTTL, kDNSRecordTypeKnownUnique, AuthRecordAny, mDNSNULL, mDNSNULL);
998 opt->rrclass = NormalMaxDNSMessageData;
999 opt->rdlength = sizeof(rdataOPT); // One option in this OPT record
1000 opt->rdestimate = sizeof(rdataOPT);
1001
1002 optRD = &rr.resrec.rdata->u.opt[0];
1003 optRD->opt = kDNSOpt_LLQ;
1004 optRD->u.llq = *data;
1005 ptr = PutResourceRecordTTLJumbo(msg, ptr, &msg->h.numAdditionals, opt, 0);
1006 if (!ptr) { LogMsg("ERROR: putLLQ - PutResourceRecordTTLJumbo"); return mDNSNULL; }
1007
1008 return ptr;
1009 }
1010
1011 // Normally we'd just request event packets be sent directly to m->LLQNAT.ExternalPort, except...
1012 // with LLQs over TLS/TCP we're doing a weird thing where instead of requesting packets be sent to ExternalAddress:ExternalPort
1013 // we're requesting that packets be sent to ExternalPort, but at the source address of our outgoing TCP connection.
1014 // Normally, after going through the NAT gateway, the source address of our outgoing TCP connection is the same as ExternalAddress,
1015 // so this is fine, except when the TCP connection ends up going over a VPN tunnel instead.
1016 // To work around this, if we find that the source address for our TCP connection is not a private address, we tell the Dot Mac
1017 // LLQ server to send events to us directly at port 5353 on that address, instead of at our mapped external NAT port.
1018
1019 mDNSlocal mDNSu16 GetLLQEventPort(const mDNS *const m, const mDNSAddr *const dst)
1020 {
1021 mDNSAddr src;
1022 mDNSPlatformSourceAddrForDest(&src, dst);
1023 //LogMsg("GetLLQEventPort: src %#a for dst %#a (%d)", &src, dst, mDNSv4AddrIsRFC1918(&src.ip.v4) ? mDNSVal16(m->LLQNAT.ExternalPort) : 0);
1024 return(mDNSv4AddrIsRFC1918(&src.ip.v4) ? mDNSVal16(m->LLQNAT.ExternalPort) : mDNSVal16(MulticastDNSPort));
1025 }
1026
1027 // Normally called with llq set.
1028 // May be called with llq NULL, when retransmitting a lost Challenge Response
1029 mDNSlocal void sendChallengeResponse(mDNS *const m, DNSQuestion *const q, const LLQOptData *llq)
1030 {
1031 mDNSu8 *responsePtr = m->omsg.data;
1032 LLQOptData llqBuf;
1033
1034 if (q->tcp) { LogMsg("sendChallengeResponse: ERROR!!: question %##s (%s) tcp non-NULL", q->qname.c, DNSTypeName(q->qtype)); return; }
1035
1036 if (PrivateQuery(q)) { LogMsg("sendChallengeResponse: ERROR!!: Private Query %##s (%s)", q->qname.c, DNSTypeName(q->qtype)); return; }
1037
1038 if (q->ntries++ == kLLQ_MAX_TRIES)
1039 {
1040 LogMsg("sendChallengeResponse: %d failed attempts for LLQ %##s", kLLQ_MAX_TRIES, q->qname.c);
1041 StartLLQPolling(m,q);
1042 return;
1043 }
1044
1045 if (!llq) // Retransmission: need to make a new LLQOptData
1046 {
1047 llqBuf.vers = kLLQ_Vers;
1048 llqBuf.llqOp = kLLQOp_Setup;
1049 llqBuf.err = LLQErr_NoError; // Don't need to tell server UDP notification port when sending over UDP
1050 llqBuf.id = q->id;
1051 llqBuf.llqlease = q->ReqLease;
1052 llq = &llqBuf;
1053 }
1054
1055 q->LastQTime = m->timenow;
1056 q->ThisQInterval = q->tcp ? 0 : (kLLQ_INIT_RESEND * q->ntries * mDNSPlatformOneSecond); // If using TCP, don't need to retransmit
1057 SetNextQueryTime(m, q);
1058
1059 // To simulate loss of challenge response packet, uncomment line below
1060 //if (q->ntries == 1) return;
1061
1062 InitializeDNSMessage(&m->omsg.h, q->TargetQID, uQueryFlags);
1063 responsePtr = putLLQ(&m->omsg, responsePtr, q, llq);
1064 if (responsePtr)
1065 {
1066 mStatus err = mDNSSendDNSMessage(m, &m->omsg, responsePtr, mDNSInterface_Any, q->LocalSocket, &q->servAddr, q->servPort, mDNSNULL, mDNSNULL, mDNSfalse);
1067 if (err) { LogMsg("sendChallengeResponse: mDNSSendDNSMessage%s failed: %d", q->tcp ? " (TCP)" : "", err); }
1068 }
1069 else StartLLQPolling(m,q);
1070 }
1071
1072 mDNSlocal void SetLLQTimer(mDNS *const m, DNSQuestion *const q, const LLQOptData *const llq)
1073 {
1074 mDNSs32 lease = (mDNSs32)llq->llqlease * mDNSPlatformOneSecond;
1075 q->ReqLease = llq->llqlease;
1076 q->LastQTime = m->timenow;
1077 q->expire = m->timenow + lease;
1078 q->ThisQInterval = lease/2 + mDNSRandom(lease/10);
1079 debugf("SetLLQTimer setting %##s (%s) to %d %d", q->qname.c, DNSTypeName(q->qtype), lease/mDNSPlatformOneSecond, q->ThisQInterval/mDNSPlatformOneSecond);
1080 SetNextQueryTime(m, q);
1081 }
1082
1083 mDNSlocal void recvSetupResponse(mDNS *const m, mDNSu8 rcode, DNSQuestion *const q, const LLQOptData *const llq)
1084 {
1085 if (rcode && rcode != kDNSFlag1_RC_NXDomain)
1086 { LogMsg("ERROR: recvSetupResponse %##s (%s) - rcode && rcode != kDNSFlag1_RC_NXDomain", q->qname.c, DNSTypeName(q->qtype)); return; }
1087
1088 if (llq->llqOp != kLLQOp_Setup)
1089 { LogMsg("ERROR: recvSetupResponse %##s (%s) - bad op %d", q->qname.c, DNSTypeName(q->qtype), llq->llqOp); return; }
1090
1091 if (llq->vers != kLLQ_Vers)
1092 { LogMsg("ERROR: recvSetupResponse %##s (%s) - bad vers %d", q->qname.c, DNSTypeName(q->qtype), llq->vers); return; }
1093
1094 if (q->state == LLQ_InitialRequest)
1095 {
1096 //LogInfo("Got LLQ_InitialRequest");
1097
1098 if (llq->err) { LogMsg("recvSetupResponse - received llq->err %d from server", llq->err); StartLLQPolling(m,q); return; }
1099
1100 if (q->ReqLease != llq->llqlease)
1101 debugf("recvSetupResponse: requested lease %lu, granted lease %lu", q->ReqLease, llq->llqlease);
1102
1103 // cache expiration in case we go to sleep before finishing setup
1104 q->ReqLease = llq->llqlease;
1105 q->expire = m->timenow + ((mDNSs32)llq->llqlease * mDNSPlatformOneSecond);
1106
1107 // update state
1108 q->state = LLQ_SecondaryRequest;
1109 q->id = llq->id;
1110 q->ntries = 0; // first attempt to send response
1111 sendChallengeResponse(m, q, llq);
1112 }
1113 else if (q->state == LLQ_SecondaryRequest)
1114 {
1115 //LogInfo("Got LLQ_SecondaryRequest");
1116
1117 // Fix this immediately if not sooner. Copy the id from the LLQOptData into our DNSQuestion struct. This is only
1118 // an issue for private LLQs, because we skip parts 2 and 3 of the handshake. This is related to a bigger
1119 // problem of the current implementation of TCP LLQ setup: we're not handling state transitions correctly
1120 // if the server sends back SERVFULL or STATIC.
1121 if (PrivateQuery(q))
1122 {
1123 LogInfo("Private LLQ_SecondaryRequest; copying id %08X%08X", llq->id.l[0], llq->id.l[1]);
1124 q->id = llq->id;
1125 }
1126
1127 if (llq->err) { LogMsg("ERROR: recvSetupResponse %##s (%s) code %d from server", q->qname.c, DNSTypeName(q->qtype), llq->err); StartLLQPolling(m,q); return; }
1128 if (!mDNSSameOpaque64(&q->id, &llq->id))
1129 { LogMsg("recvSetupResponse - ID changed. discarding"); return; } // this can happen rarely (on packet loss + reordering)
1130 q->state = LLQ_Established;
1131 q->ntries = 0;
1132 SetLLQTimer(m, q, llq);
1133 #if APPLE_OSX_mDNSResponder
1134 UpdateAutoTunnelDomainStatuses(m);
1135 #endif
1136 }
1137 }
1138
1139 mDNSexport uDNS_LLQType uDNS_recvLLQResponse(mDNS *const m, const DNSMessage *const msg, const mDNSu8 *const end,
1140 const mDNSAddr *const srcaddr, const mDNSIPPort srcport, DNSQuestion **matchQuestion)
1141 {
1142 DNSQuestion pktQ, *q;
1143 if (msg->h.numQuestions && getQuestion(msg, msg->data, end, 0, &pktQ))
1144 {
1145 const rdataOPT *opt = GetLLQOptData(m, msg, end);
1146
1147 for (q = m->Questions; q; q = q->next)
1148 {
1149 if (!mDNSOpaque16IsZero(q->TargetQID) && q->LongLived && q->qtype == pktQ.qtype && q->qnamehash == pktQ.qnamehash && SameDomainName(&q->qname, &pktQ.qname))
1150 {
1151 debugf("uDNS_recvLLQResponse found %##s (%s) %d %#a %#a %X %X %X %X %d",
1152 q->qname.c, DNSTypeName(q->qtype), q->state, srcaddr, &q->servAddr,
1153 opt ? opt->u.llq.id.l[0] : 0, opt ? opt->u.llq.id.l[1] : 0, q->id.l[0], q->id.l[1], opt ? opt->u.llq.llqOp : 0);
1154 if (q->state == LLQ_Poll) debugf("uDNS_LLQ_Events: q->state == LLQ_Poll msg->h.id %d q->TargetQID %d", mDNSVal16(msg->h.id), mDNSVal16(q->TargetQID));
1155 if (q->state == LLQ_Poll && mDNSSameOpaque16(msg->h.id, q->TargetQID))
1156 {
1157 m->rec.r.resrec.RecordType = 0; // Clear RecordType to show we're not still using it
1158
1159 // Don't reset the state to IntialRequest as we may write that to the dynamic store
1160 // and PrefPane might wrongly think that we are "Starting" instead of "Polling". If
1161 // we are in polling state because of PCP/NAT-PMP disabled or DoubleNAT, next LLQNATCallback
1162 // would kick us back to LLQInitialRequest. So, resetting the state here may not be useful.
1163 //
1164 // If we have a good NAT (neither PCP/NAT-PMP disabled nor Double-NAT), then we should not be
1165 // possibly in polling state. To be safe, we want to retry from the start in that case
1166 // as there may not be another LLQNATCallback
1167 //
1168 // NOTE: We can be in polling state if we cannot resolve the SOA record i.e, servAddr is set to
1169 // all ones. In that case, we would set it in LLQ_InitialRequest as it overrides the PCP/NAT-PMP or
1170 // Double-NAT state.
1171 if (!mDNSAddressIsOnes(&q->servAddr) && !mDNSIPPortIsZero(m->LLQNAT.ExternalPort) &&
1172 !m->LLQNAT.Result)
1173 {
1174 debugf("uDNS_recvLLQResponse got poll response; moving to LLQ_InitialRequest for %##s (%s)", q->qname.c, DNSTypeName(q->qtype));
1175 q->state = LLQ_InitialRequest;
1176 }
1177 q->servPort = zeroIPPort; // Clear servPort so that startLLQHandshake will retry the GetZoneData processing
1178 q->ThisQInterval = LLQ_POLL_INTERVAL + mDNSRandom(LLQ_POLL_INTERVAL/10); // Retry LLQ setup in approx 15 minutes
1179 q->LastQTime = m->timenow;
1180 SetNextQueryTime(m, q);
1181 *matchQuestion = q;
1182 return uDNS_LLQ_Entire; // uDNS_LLQ_Entire means flush stale records; assume a large effective TTL
1183 }
1184 // Note: In LLQ Event packets, the msg->h.id does not match our q->TargetQID, because in that case the msg->h.id nonce is selected by the server
1185 else if (opt && q->state == LLQ_Established && opt->u.llq.llqOp == kLLQOp_Event && mDNSSameOpaque64(&opt->u.llq.id, &q->id))
1186 {
1187 mDNSu8 *ackEnd;
1188 //debugf("Sending LLQ ack for %##s (%s)", q->qname.c, DNSTypeName(q->qtype));
1189 InitializeDNSMessage(&m->omsg.h, msg->h.id, ResponseFlags);
1190 ackEnd = putLLQ(&m->omsg, m->omsg.data, q, &opt->u.llq);
1191 if (ackEnd) mDNSSendDNSMessage(m, &m->omsg, ackEnd, mDNSInterface_Any, q->LocalSocket, srcaddr, srcport, mDNSNULL, mDNSNULL, mDNSfalse);
1192 m->rec.r.resrec.RecordType = 0; // Clear RecordType to show we're not still using it
1193 debugf("uDNS_LLQ_Events: q->state == LLQ_Established msg->h.id %d q->TargetQID %d", mDNSVal16(msg->h.id), mDNSVal16(q->TargetQID));
1194 *matchQuestion = q;
1195 return uDNS_LLQ_Events;
1196 }
1197 if (opt && mDNSSameOpaque16(msg->h.id, q->TargetQID))
1198 {
1199 if (q->state == LLQ_Established && opt->u.llq.llqOp == kLLQOp_Refresh && mDNSSameOpaque64(&opt->u.llq.id, &q->id) && msg->h.numAdditionals && !msg->h.numAnswers)
1200 {
1201 if (opt->u.llq.err != LLQErr_NoError) LogMsg("recvRefreshReply: received error %d from server", opt->u.llq.err);
1202 else
1203 {
1204 //LogInfo("Received refresh confirmation ntries %d for %##s (%s)", q->ntries, q->qname.c, DNSTypeName(q->qtype));
1205 // If we're waiting to go to sleep, then this LLQ deletion may have been the thing
1206 // we were waiting for, so schedule another check to see if we can sleep now.
1207 if (opt->u.llq.llqlease == 0 && m->SleepLimit) m->NextScheduledSPRetry = m->timenow;
1208 GrantCacheExtensions(m, q, opt->u.llq.llqlease);
1209 SetLLQTimer(m, q, &opt->u.llq);
1210 q->ntries = 0;
1211 }
1212 m->rec.r.resrec.RecordType = 0; // Clear RecordType to show we're not still using it
1213 *matchQuestion = q;
1214 return uDNS_LLQ_Ignore;
1215 }
1216 if (q->state < LLQ_Established && mDNSSameAddress(srcaddr, &q->servAddr))
1217 {
1218 LLQ_State oldstate = q->state;
1219 recvSetupResponse(m, msg->h.flags.b[1] & kDNSFlag1_RC_Mask, q, &opt->u.llq);
1220 m->rec.r.resrec.RecordType = 0; // Clear RecordType to show we're not still using it
1221 // We have a protocol anomaly here in the LLQ definition.
1222 // Both the challenge packet from the server and the ack+answers packet have opt->u.llq.llqOp == kLLQOp_Setup.
1223 // However, we need to treat them differently:
1224 // The challenge packet has no answers in it, and tells us nothing about whether our cache entries
1225 // are still valid, so this packet should not cause us to do anything that messes with our cache.
1226 // The ack+answers packet gives us the whole truth, so we should handle it by updating our cache
1227 // to match the answers in the packet, and only the answers in the packet.
1228 *matchQuestion = q;
1229 return (oldstate == LLQ_SecondaryRequest ? uDNS_LLQ_Entire : uDNS_LLQ_Ignore);
1230 }
1231 }
1232 }
1233 }
1234 m->rec.r.resrec.RecordType = 0; // Clear RecordType to show we're not still using it
1235 }
1236 *matchQuestion = mDNSNULL;
1237 return uDNS_LLQ_Not;
1238 }
1239
1240 // Stub definition of TCPSocket_struct so we can access flags field. (Rest of TCPSocket_struct is platform-dependent.)
1241 struct TCPSocket_struct { TCPSocketFlags flags; /* ... */ };
1242
1243 // tcpCallback is called to handle events (e.g. connection opening and data reception) on TCP connections for
1244 // Private DNS operations -- private queries, private LLQs, private record updates and private service updates
1245 mDNSlocal void tcpCallback(TCPSocket *sock, void *context, mDNSBool ConnectionEstablished, mStatus err)
1246 {
1247 tcpInfo_t *tcpInfo = (tcpInfo_t *)context;
1248 mDNSBool closed = mDNSfalse;
1249 mDNS *m = tcpInfo->m;
1250 DNSQuestion *const q = tcpInfo->question;
1251 tcpInfo_t **backpointer =
1252 q ? &q->tcp :
1253 tcpInfo->rr ? &tcpInfo->rr->tcp : mDNSNULL;
1254 if (backpointer && *backpointer != tcpInfo)
1255 LogMsg("tcpCallback: %d backpointer %p incorrect tcpInfo %p question %p rr %p",
1256 mDNSPlatformTCPGetFD(tcpInfo->sock), *backpointer, tcpInfo, q, tcpInfo->rr);
1257
1258 if (err) goto exit;
1259
1260 if (ConnectionEstablished)
1261 {
1262 mDNSu8 *end = ((mDNSu8*) &tcpInfo->request) + tcpInfo->requestLen;
1263 DomainAuthInfo *AuthInfo;
1264
1265 // Defensive coding for <rdar://problem/5546824> Crash in mDNSResponder at GetAuthInfoForName_internal + 366
1266 // Don't know yet what's causing this, but at least we can be cautious and try to avoid crashing if we find our pointers in an unexpected state
1267 if (tcpInfo->rr && tcpInfo->rr->resrec.name != &tcpInfo->rr->namestorage)
1268 LogMsg("tcpCallback: ERROR: tcpInfo->rr->resrec.name %p != &tcpInfo->rr->namestorage %p",
1269 tcpInfo->rr->resrec.name, &tcpInfo->rr->namestorage);
1270 if (tcpInfo->rr && tcpInfo->rr->resrec.name != &tcpInfo->rr->namestorage) return;
1271
1272 AuthInfo = tcpInfo->rr ? GetAuthInfoForName(m, tcpInfo->rr->resrec.name) : mDNSNULL;
1273
1274 // connection is established - send the message
1275 if (q && q->LongLived && q->state == LLQ_Established)
1276 {
1277 // Lease renewal over TCP, resulting from opening a TCP connection in sendLLQRefresh
1278 end = ((mDNSu8*) &tcpInfo->request) + tcpInfo->requestLen;
1279 }
1280 else if (q && q->LongLived && q->state != LLQ_Poll && !mDNSIPPortIsZero(m->LLQNAT.ExternalPort) && !mDNSIPPortIsZero(q->servPort))
1281 {
1282 // Notes:
1283 // If we have a NAT port mapping, ExternalPort is the external port
1284 // If we have a routable address so we don't need a port mapping, ExternalPort is the same as our own internal port
1285 // If we need a NAT port mapping but can't get one, then ExternalPort is zero
1286 LLQOptData llqData; // set llq rdata
1287 llqData.vers = kLLQ_Vers;
1288 llqData.llqOp = kLLQOp_Setup;
1289 llqData.err = GetLLQEventPort(m, &tcpInfo->Addr); // We're using TCP; tell server what UDP port to send notifications to
1290 LogInfo("tcpCallback: eventPort %d", llqData.err);
1291 llqData.id = zeroOpaque64;
1292 llqData.llqlease = kLLQ_DefLease;
1293 InitializeDNSMessage(&tcpInfo->request.h, q->TargetQID, uQueryFlags);
1294 end = putLLQ(&tcpInfo->request, tcpInfo->request.data, q, &llqData);
1295 if (!end) { LogMsg("ERROR: tcpCallback - putLLQ"); err = mStatus_UnknownErr; goto exit; }
1296 AuthInfo = q->AuthInfo; // Need to add TSIG to this message
1297 q->ntries = 0; // Reset ntries so that tcp/tls connection failures don't affect sendChallengeResponse failures
1298 }
1299 else if (q)
1300 {
1301 // LLQ Polling mode or non-LLQ uDNS over TCP
1302 InitializeDNSMessage(&tcpInfo->request.h, q->TargetQID, (DNSSECQuestion(q) ? DNSSecQFlags : uQueryFlags));
1303 end = putQuestion(&tcpInfo->request, tcpInfo->request.data, tcpInfo->request.data + AbsoluteMaxDNSMessageData, &q->qname, q->qtype, q->qclass);
1304 if (DNSSECQuestion(q) && q->qDNSServer && !q->qDNSServer->cellIntf)
1305 {
1306 if (q->ProxyQuestion)
1307 end = DNSProxySetAttributes(q, &tcpInfo->request.h, &tcpInfo->request, end, tcpInfo->request.data + AbsoluteMaxDNSMessageData);
1308 else
1309 end = putDNSSECOption(&tcpInfo->request, end, tcpInfo->request.data + AbsoluteMaxDNSMessageData);
1310 }
1311
1312 AuthInfo = q->AuthInfo; // Need to add TSIG to this message
1313 }
1314
1315 err = mDNSSendDNSMessage(m, &tcpInfo->request, end, mDNSInterface_Any, mDNSNULL, &tcpInfo->Addr, tcpInfo->Port, sock, AuthInfo, mDNSfalse);
1316 if (err) { debugf("ERROR: tcpCallback: mDNSSendDNSMessage - %d", err); err = mStatus_UnknownErr; goto exit; }
1317
1318 // Record time we sent this question
1319 if (q)
1320 {
1321 mDNS_Lock(m);
1322 q->LastQTime = m->timenow;
1323 if (q->ThisQInterval < (256 * mDNSPlatformOneSecond)) // Now we have a TCP connection open, make sure we wait at least 256 seconds before retrying
1324 q->ThisQInterval = (256 * mDNSPlatformOneSecond);
1325 SetNextQueryTime(m, q);
1326 mDNS_Unlock(m);
1327 }
1328 }
1329 else
1330 {
1331 long n;
1332 const mDNSBool Read_replylen = (tcpInfo->nread < 2); // Do we need to read the replylen field first?
1333 if (Read_replylen) // First read the two-byte length preceeding the DNS message
1334 {
1335 mDNSu8 *lenptr = (mDNSu8 *)&tcpInfo->replylen;
1336 n = mDNSPlatformReadTCP(sock, lenptr + tcpInfo->nread, 2 - tcpInfo->nread, &closed);
1337 if (n < 0)
1338 {
1339 LogMsg("ERROR: tcpCallback - attempt to read message length failed (%d)", n);
1340 err = mStatus_ConnFailed;
1341 goto exit;
1342 }
1343 else if (closed)
1344 {
1345 // It's perfectly fine for this socket to close after the first reply. The server might
1346 // be sending gratuitous replies using UDP and doesn't have a need to leave the TCP socket open.
1347 // We'll only log this event if we've never received a reply before.
1348 // BIND 9 appears to close an idle connection after 30 seconds.
1349 if (tcpInfo->numReplies == 0)
1350 {
1351 LogMsg("ERROR: socket closed prematurely tcpInfo->nread = %d", tcpInfo->nread);
1352 err = mStatus_ConnFailed;
1353 goto exit;
1354 }
1355 else
1356 {
1357 // Note that we may not be doing the best thing if an error occurs after we've sent a second request
1358 // over this tcp connection. That is, we only track whether we've received at least one response
1359 // which may have been to a previous request sent over this tcp connection.
1360 if (backpointer) *backpointer = mDNSNULL; // Clear client backpointer FIRST so we don't risk double-disposing our tcpInfo_t
1361 DisposeTCPConn(tcpInfo);
1362 return;
1363 }
1364 }
1365
1366 tcpInfo->nread += n;
1367 if (tcpInfo->nread < 2) goto exit;
1368
1369 tcpInfo->replylen = (mDNSu16)((mDNSu16)lenptr[0] << 8 | lenptr[1]);
1370 if (tcpInfo->replylen < sizeof(DNSMessageHeader))
1371 { LogMsg("ERROR: tcpCallback - length too short (%d bytes)", tcpInfo->replylen); err = mStatus_UnknownErr; goto exit; }
1372
1373 tcpInfo->reply = mDNSPlatformMemAllocate(tcpInfo->replylen);
1374 if (!tcpInfo->reply) { LogMsg("ERROR: tcpCallback - malloc failed"); err = mStatus_NoMemoryErr; goto exit; }
1375 }
1376
1377 n = mDNSPlatformReadTCP(sock, ((char *)tcpInfo->reply) + (tcpInfo->nread - 2), tcpInfo->replylen - (tcpInfo->nread - 2), &closed);
1378
1379 if (n < 0)
1380 {
1381 // If this is our only read for this invokation, and it fails, then that's bad.
1382 // But if we did successfully read some or all of the replylen field this time through,
1383 // and this is now our second read from the socket, then it's expected that sometimes
1384 // there may be no more data present, and that's perfectly okay.
1385 // Assuming failure of the second read is a problem is what caused this bug:
1386 // <rdar://problem/15043194> mDNSResponder fails to read DNS over TCP packet correctly
1387 if (!Read_replylen) { LogMsg("ERROR: tcpCallback - read returned %d", n); err = mStatus_ConnFailed; }
1388 goto exit;
1389 }
1390 else if (closed)
1391 {
1392 if (tcpInfo->numReplies == 0)
1393 {
1394 LogMsg("ERROR: socket closed prematurely tcpInfo->nread = %d", tcpInfo->nread);
1395 err = mStatus_ConnFailed;
1396 goto exit;
1397 }
1398 else
1399 {
1400 // Note that we may not be doing the best thing if an error occurs after we've sent a second request
1401 // over this tcp connection. That is, we only track whether we've received at least one response
1402 // which may have been to a previous request sent over this tcp connection.
1403 if (backpointer) *backpointer = mDNSNULL; // Clear client backpointer FIRST so we don't risk double-disposing our tcpInfo_t
1404 DisposeTCPConn(tcpInfo);
1405 return;
1406 }
1407 }
1408
1409 tcpInfo->nread += n;
1410
1411 if ((tcpInfo->nread - 2) == tcpInfo->replylen)
1412 {
1413 mDNSBool tls;
1414 DNSMessage *reply = tcpInfo->reply;
1415 mDNSu8 *end = (mDNSu8 *)tcpInfo->reply + tcpInfo->replylen;
1416 mDNSAddr Addr = tcpInfo->Addr;
1417 mDNSIPPort Port = tcpInfo->Port;
1418 mDNSIPPort srcPort = zeroIPPort;
1419 tcpInfo->numReplies++;
1420 tcpInfo->reply = mDNSNULL; // Detach reply buffer from tcpInfo_t, to make sure client callback can't cause it to be disposed
1421 tcpInfo->nread = 0;
1422 tcpInfo->replylen = 0;
1423
1424 // If we're going to dispose this connection, do it FIRST, before calling client callback
1425 // Note: Sleep code depends on us clearing *backpointer here -- it uses the clearing of rr->tcp
1426 // as the signal that the DNS deregistration operation with the server has completed, and the machine may now sleep
1427 // If we clear the tcp pointer in the question, mDNSCoreReceiveResponse cannot find a matching question. Hence
1428 // we store the minimal information i.e., the source port of the connection in the question itself.
1429 // Dereference sock before it is disposed in DisposeTCPConn below.
1430
1431 if (sock->flags & kTCPSocketFlags_UseTLS) tls = mDNStrue;
1432 else tls = mDNSfalse;
1433
1434 if (q && q->tcp) {srcPort = q->tcp->SrcPort; q->tcpSrcPort = srcPort;}
1435
1436 if (backpointer)
1437 if (!q || !q->LongLived || m->SleepState)
1438 { *backpointer = mDNSNULL; DisposeTCPConn(tcpInfo); }
1439
1440 mDNSCoreReceive(m, reply, end, &Addr, Port, tls ? (mDNSAddr *)1 : mDNSNULL, srcPort, 0);
1441 // USE CAUTION HERE: Invoking mDNSCoreReceive may have caused the environment to change, including canceling this operation itself
1442
1443 mDNSPlatformMemFree(reply);
1444 return;
1445 }
1446 }
1447
1448 exit:
1449
1450 if (err)
1451 {
1452 // Clear client backpointer FIRST -- that way if one of the callbacks cancels its operation
1453 // we won't end up double-disposing our tcpInfo_t
1454 if (backpointer) *backpointer = mDNSNULL;
1455
1456 mDNS_Lock(m); // Need to grab the lock to get m->timenow
1457
1458 if (q)
1459 {
1460 if (q->ThisQInterval == 0)
1461 {
1462 // We get here when we fail to establish a new TCP/TLS connection that would have been used for a new LLQ request or an LLQ renewal.
1463 // Note that ThisQInterval is also zero when sendChallengeResponse resends the LLQ request on an extant TCP/TLS connection.
1464 q->LastQTime = m->timenow;
1465 if (q->LongLived)
1466 {
1467 // We didn't get the chance to send our request packet before the TCP/TLS connection failed.
1468 // We want to retry quickly, but want to back off exponentially in case the server is having issues.
1469 // Since ThisQInterval was 0, we can't just multiply by QuestionIntervalStep, we must track the number
1470 // of TCP/TLS connection failures using ntries.
1471 mDNSu32 count = q->ntries + 1; // want to wait at least 1 second before retrying
1472
1473 q->ThisQInterval = InitialQuestionInterval;
1474
1475 for (; count; count--)
1476 q->ThisQInterval *= QuestionIntervalStep;
1477
1478 if (q->ThisQInterval > LLQ_POLL_INTERVAL)
1479 q->ThisQInterval = LLQ_POLL_INTERVAL;
1480 else
1481 q->ntries++;
1482
1483 LogMsg("tcpCallback: stream connection for LLQ %##s (%s) failed %d times, retrying in %d ms", q->qname.c, DNSTypeName(q->qtype), q->ntries, q->ThisQInterval);
1484 }
1485 else
1486 {
1487 q->ThisQInterval = MAX_UCAST_POLL_INTERVAL;
1488 LogMsg("tcpCallback: stream connection for %##s (%s) failed, retrying in %d ms", q->qname.c, DNSTypeName(q->qtype), q->ThisQInterval);
1489 }
1490 SetNextQueryTime(m, q);
1491 }
1492 else if (NextQSendTime(q) - m->timenow > (q->LongLived ? LLQ_POLL_INTERVAL : MAX_UCAST_POLL_INTERVAL))
1493 {
1494 // If we get an error and our next scheduled query for this question is more than the max interval from now,
1495 // reset the next query to ensure we wait no longer the maximum interval from now before trying again.
1496 q->LastQTime = m->timenow;
1497 q->ThisQInterval = q->LongLived ? LLQ_POLL_INTERVAL : MAX_UCAST_POLL_INTERVAL;
1498 SetNextQueryTime(m, q);
1499 LogMsg("tcpCallback: stream connection for %##s (%s) failed, retrying in %d ms", q->qname.c, DNSTypeName(q->qtype), q->ThisQInterval);
1500 }
1501
1502 // We're about to dispose of the TCP connection, so we must reset the state to retry over TCP/TLS
1503 // because sendChallengeResponse will send the query via UDP if we don't have a tcp pointer.
1504 // Resetting to LLQ_InitialRequest will cause uDNS_CheckCurrentQuestion to call startLLQHandshake, which
1505 // will attempt to establish a new tcp connection.
1506 if (q->LongLived && q->state == LLQ_SecondaryRequest)
1507 q->state = LLQ_InitialRequest;
1508
1509 // ConnFailed may happen if the server sends a TCP reset or TLS fails, in which case we want to retry establishing the LLQ
1510 // quickly rather than switching to polling mode. This case is handled by the above code to set q->ThisQInterval just above.
1511 // If the error isn't ConnFailed, then the LLQ is in bad shape, so we switch to polling mode.
1512 if (err != mStatus_ConnFailed)
1513 {
1514 if (q->LongLived && q->state != LLQ_Poll) StartLLQPolling(m, q);
1515 }
1516 }
1517
1518 mDNS_Unlock(m);
1519
1520 DisposeTCPConn(tcpInfo);
1521 }
1522 }
1523
1524 mDNSlocal tcpInfo_t *MakeTCPConn(mDNS *const m, const DNSMessage *const msg, const mDNSu8 *const end,
1525 TCPSocketFlags flags, const mDNSAddr *const Addr, const mDNSIPPort Port, domainname *hostname,
1526 DNSQuestion *const question, AuthRecord *const rr)
1527 {
1528 mStatus err;
1529 mDNSIPPort srcport = zeroIPPort;
1530 tcpInfo_t *info;
1531 mDNSBool useBackgroundTrafficClass;
1532
1533 useBackgroundTrafficClass = question ? question->UseBackgroundTrafficClass : mDNSfalse;
1534
1535 if ((flags & kTCPSocketFlags_UseTLS) && (!hostname || !hostname->c[0]))
1536 { LogMsg("MakeTCPConn: TLS connection being setup with NULL hostname"); return mDNSNULL; }
1537
1538 info = (tcpInfo_t *)mDNSPlatformMemAllocate(sizeof(tcpInfo_t));
1539 if (!info) { LogMsg("ERROR: MakeTCP - memallocate failed"); return(mDNSNULL); }
1540 mDNSPlatformMemZero(info, sizeof(tcpInfo_t));
1541
1542 info->m = m;
1543 info->sock = mDNSPlatformTCPSocket(m, flags, &srcport, useBackgroundTrafficClass);
1544 info->requestLen = 0;
1545 info->question = question;
1546 info->rr = rr;
1547 info->Addr = *Addr;
1548 info->Port = Port;
1549 info->reply = mDNSNULL;
1550 info->replylen = 0;
1551 info->nread = 0;
1552 info->numReplies = 0;
1553 info->SrcPort = srcport;
1554
1555 if (msg)
1556 {
1557 info->requestLen = (int) (end - ((mDNSu8*)msg));
1558 mDNSPlatformMemCopy(&info->request, msg, info->requestLen);
1559 }
1560
1561 if (!info->sock) { LogMsg("MakeTCPConn: unable to create TCP socket"); mDNSPlatformMemFree(info); return(mDNSNULL); }
1562 err = mDNSPlatformTCPConnect(info->sock, Addr, Port, hostname, (question ? question->InterfaceID : mDNSNULL), tcpCallback, info);
1563
1564 // Probably suboptimal here.
1565 // Instead of returning mDNSNULL here on failure, we should probably invoke the callback with an error code.
1566 // That way clients can put all the error handling and retry/recovery code in one place,
1567 // instead of having to handle immediate errors in one place and async errors in another.
1568 // Also: "err == mStatus_ConnEstablished" probably never happens.
1569
1570 // Don't need to log "connection failed" in customer builds -- it happens quite often during sleep, wake, configuration changes, etc.
1571 if (err == mStatus_ConnEstablished) { tcpCallback(info->sock, info, mDNStrue, mStatus_NoError); }
1572 else if (err != mStatus_ConnPending ) { LogInfo("MakeTCPConn: connection failed"); DisposeTCPConn(info); return(mDNSNULL); }
1573 return(info);
1574 }
1575
1576 mDNSexport void DisposeTCPConn(struct tcpInfo_t *tcp)
1577 {
1578 mDNSPlatformTCPCloseConnection(tcp->sock);
1579 if (tcp->reply) mDNSPlatformMemFree(tcp->reply);
1580 mDNSPlatformMemFree(tcp);
1581 }
1582
1583 // Lock must be held
1584 mDNSexport void startLLQHandshake(mDNS *m, DNSQuestion *q)
1585 {
1586 if (m->LLQNAT.clientContext != mDNSNULL) // LLQNAT just started, give it some time
1587 {
1588 LogInfo("startLLQHandshake: waiting for NAT status for %##s (%s)", q->qname.c, DNSTypeName(q->qtype));
1589 q->ThisQInterval = LLQ_POLL_INTERVAL + mDNSRandom(LLQ_POLL_INTERVAL/10); // Retry in approx 15 minutes
1590 q->LastQTime = m->timenow;
1591 SetNextQueryTime(m, q);
1592 return;
1593 }
1594
1595 // Either we don't have {PCP, NAT-PMP, UPnP/IGD} support (ExternalPort is zero) or behind a Double NAT that may or
1596 // may not have {PCP, NAT-PMP, UPnP/IGD} support (NATResult is non-zero)
1597 if (mDNSIPPortIsZero(m->LLQNAT.ExternalPort) || m->LLQNAT.Result)
1598 {
1599 LogInfo("startLLQHandshake: Cannot receive inbound packets; will poll for %##s (%s) External Port %d, NAT Result %d",
1600 q->qname.c, DNSTypeName(q->qtype), mDNSVal16(m->LLQNAT.ExternalPort), m->LLQNAT.Result);
1601 StartLLQPolling(m, q);
1602 return;
1603 }
1604
1605 if (mDNSIPPortIsZero(q->servPort))
1606 {
1607 debugf("startLLQHandshake: StartGetZoneData for %##s (%s)", q->qname.c, DNSTypeName(q->qtype));
1608 q->ThisQInterval = LLQ_POLL_INTERVAL + mDNSRandom(LLQ_POLL_INTERVAL/10); // Retry in approx 15 minutes
1609 q->LastQTime = m->timenow;
1610 SetNextQueryTime(m, q);
1611 q->servAddr = zeroAddr;
1612 // We know q->servPort is zero because of check above
1613 if (q->nta) CancelGetZoneData(m, q->nta);
1614 q->nta = StartGetZoneData(m, &q->qname, ZoneServiceLLQ, LLQGotZoneData, q);
1615 return;
1616 }
1617
1618 if (PrivateQuery(q))
1619 {
1620 if (q->tcp) LogInfo("startLLQHandshake: Disposing existing TCP connection for %##s (%s)", q->qname.c, DNSTypeName(q->qtype));
1621 if (q->tcp) { DisposeTCPConn(q->tcp); q->tcp = mDNSNULL; }
1622 if (!q->nta)
1623 {
1624 // Normally we lookup the zone data and then call this function. And we never free the zone data
1625 // for "PrivateQuery". But sometimes this can happen due to some race conditions. When we
1626 // switch networks, we might end up "Polling" the network e.g., we are behind a Double NAT.
1627 // When we poll, we free the zone information as we send the query to the server (See
1628 // PrivateQueryGotZoneData). The NAT callback (LLQNATCallback) may happen soon after that. If we
1629 // are still behind Double NAT, we would have returned early in this function. But we could
1630 // have switched to a network with no NATs and we should get the zone data again.
1631 LogInfo("startLLQHandshake: nta is NULL for %##s (%s)", q->qname.c, DNSTypeName(q->qtype));
1632 q->nta = StartGetZoneData(m, &q->qname, ZoneServiceLLQ, LLQGotZoneData, q);
1633 return;
1634 }
1635 else if (!q->nta->Host.c[0])
1636 {
1637 // This should not happen. If it happens, we print a log and MakeTCPConn will fail if it can't find a hostname
1638 LogMsg("startLLQHandshake: ERROR!!: nta non NULL for %##s (%s) but HostName %d NULL, LongLived %d", q->qname.c, DNSTypeName(q->qtype), q->nta->Host.c[0], q->LongLived);
1639 }
1640 q->tcp = MakeTCPConn(m, mDNSNULL, mDNSNULL, kTCPSocketFlags_UseTLS, &q->servAddr, q->servPort, &q->nta->Host, q, mDNSNULL);
1641 if (!q->tcp)
1642 q->ThisQInterval = mDNSPlatformOneSecond * 5; // If TCP failed (transient networking glitch) try again in five seconds
1643 else
1644 {
1645 q->state = LLQ_SecondaryRequest; // Right now, for private DNS, we skip the four-way LLQ handshake
1646 q->ReqLease = kLLQ_DefLease;
1647 q->ThisQInterval = 0;
1648 }
1649 q->LastQTime = m->timenow;
1650 SetNextQueryTime(m, q);
1651 }
1652 else
1653 {
1654 debugf("startLLQHandshake: m->AdvertisedV4 %#a%s Server %#a:%d%s %##s (%s)",
1655 &m->AdvertisedV4, mDNSv4AddrIsRFC1918(&m->AdvertisedV4.ip.v4) ? " (RFC 1918)" : "",
1656 &q->servAddr, mDNSVal16(q->servPort), mDNSAddrIsRFC1918(&q->servAddr) ? " (RFC 1918)" : "",
1657 q->qname.c, DNSTypeName(q->qtype));
1658
1659 if (q->ntries++ >= kLLQ_MAX_TRIES)
1660 {
1661 LogMsg("startLLQHandshake: %d failed attempts for LLQ %##s Polling.", kLLQ_MAX_TRIES, q->qname.c);
1662 StartLLQPolling(m, q);
1663 }
1664 else
1665 {
1666 mDNSu8 *end;
1667 LLQOptData llqData;
1668
1669 // set llq rdata
1670 llqData.vers = kLLQ_Vers;
1671 llqData.llqOp = kLLQOp_Setup;
1672 llqData.err = LLQErr_NoError; // Don't need to tell server UDP notification port when sending over UDP
1673 llqData.id = zeroOpaque64;
1674 llqData.llqlease = kLLQ_DefLease;
1675
1676 InitializeDNSMessage(&m->omsg.h, q->TargetQID, uQueryFlags);
1677 end = putLLQ(&m->omsg, m->omsg.data, q, &llqData);
1678 if (!end) { LogMsg("ERROR: startLLQHandshake - putLLQ"); StartLLQPolling(m,q); return; }
1679
1680 mDNSSendDNSMessage(m, &m->omsg, end, mDNSInterface_Any, q->LocalSocket, &q->servAddr, q->servPort, mDNSNULL, mDNSNULL, mDNSfalse);
1681
1682 // update question state
1683 q->state = LLQ_InitialRequest;
1684 q->ReqLease = kLLQ_DefLease;
1685 q->ThisQInterval = (kLLQ_INIT_RESEND * mDNSPlatformOneSecond);
1686 q->LastQTime = m->timenow;
1687 SetNextQueryTime(m, q);
1688 }
1689 }
1690 }
1691
1692 // forward declaration so GetServiceTarget can do reverse lookup if needed
1693 mDNSlocal void GetStaticHostname(mDNS *m);
1694
1695 mDNSexport const domainname *GetServiceTarget(mDNS *m, AuthRecord *const rr)
1696 {
1697 debugf("GetServiceTarget %##s", rr->resrec.name->c);
1698
1699 if (!rr->AutoTarget) // If not automatically tracking this host's current name, just return the existing target
1700 return(&rr->resrec.rdata->u.srv.target);
1701 else
1702 {
1703 #if APPLE_OSX_mDNSResponder
1704 DomainAuthInfo *AuthInfo = GetAuthInfoForName_internal(m, rr->resrec.name);
1705 if (AuthInfo && AuthInfo->AutoTunnel)
1706 {
1707 StartServerTunnel(m, AuthInfo);
1708 if (AuthInfo->AutoTunnelHostRecord.namestorage.c[0] == 0) return(mDNSNULL);
1709 debugf("GetServiceTarget: Returning %##s", AuthInfo->AutoTunnelHostRecord.namestorage.c);
1710 return(&AuthInfo->AutoTunnelHostRecord.namestorage);
1711 }
1712 else
1713 #endif // APPLE_OSX_mDNSResponder
1714 {
1715 const int srvcount = CountLabels(rr->resrec.name);
1716 HostnameInfo *besthi = mDNSNULL, *hi;
1717 int best = 0;
1718 for (hi = m->Hostnames; hi; hi = hi->next)
1719 if (hi->arv4.state == regState_Registered || hi->arv4.state == regState_Refresh ||
1720 hi->arv6.state == regState_Registered || hi->arv6.state == regState_Refresh)
1721 {
1722 int x, hostcount = CountLabels(&hi->fqdn);
1723 for (x = hostcount < srvcount ? hostcount : srvcount; x > 0 && x > best; x--)
1724 if (SameDomainName(SkipLeadingLabels(rr->resrec.name, srvcount - x), SkipLeadingLabels(&hi->fqdn, hostcount - x)))
1725 { best = x; besthi = hi; }
1726 }
1727
1728 if (besthi) return(&besthi->fqdn);
1729 }
1730 if (m->StaticHostname.c[0]) return(&m->StaticHostname);
1731 else GetStaticHostname(m); // asynchronously do reverse lookup for primary IPv4 address
1732 LogInfo("GetServiceTarget: Returning NULL for %s", ARDisplayString(m, rr));
1733 return(mDNSNULL);
1734 }
1735 }
1736
1737 mDNSlocal const domainname *PUBLIC_UPDATE_SERVICE_TYPE = (const domainname*)"\x0B_dns-update" "\x04_udp";
1738 mDNSlocal const domainname *PUBLIC_LLQ_SERVICE_TYPE = (const domainname*)"\x08_dns-llq" "\x04_udp";
1739
1740 mDNSlocal const domainname *PRIVATE_UPDATE_SERVICE_TYPE = (const domainname*)"\x0F_dns-update-tls" "\x04_tcp";
1741 mDNSlocal const domainname *PRIVATE_QUERY_SERVICE_TYPE = (const domainname*)"\x0E_dns-query-tls" "\x04_tcp";
1742 mDNSlocal const domainname *PRIVATE_LLQ_SERVICE_TYPE = (const domainname*)"\x0C_dns-llq-tls" "\x04_tcp";
1743
1744 #define ZoneDataSRV(X) ( \
1745 (X)->ZoneService == ZoneServiceUpdate ? ((X)->ZonePrivate ? PRIVATE_UPDATE_SERVICE_TYPE : PUBLIC_UPDATE_SERVICE_TYPE) : \
1746 (X)->ZoneService == ZoneServiceQuery ? ((X)->ZonePrivate ? PRIVATE_QUERY_SERVICE_TYPE : (const domainname*)"" ) : \
1747 (X)->ZoneService == ZoneServiceLLQ ? ((X)->ZonePrivate ? PRIVATE_LLQ_SERVICE_TYPE : PUBLIC_LLQ_SERVICE_TYPE ) : (const domainname*)"")
1748
1749 // Forward reference: GetZoneData_StartQuery references GetZoneData_QuestionCallback, and
1750 // GetZoneData_QuestionCallback calls GetZoneData_StartQuery
1751 mDNSlocal mStatus GetZoneData_StartQuery(mDNS *const m, ZoneData *zd, mDNSu16 qtype);
1752
1753 // GetZoneData_QuestionCallback is called from normal client callback context (core API calls allowed)
1754 mDNSlocal void GetZoneData_QuestionCallback(mDNS *const m, DNSQuestion *question, const ResourceRecord *const answer, QC_result AddRecord)
1755 {
1756 ZoneData *zd = (ZoneData*)question->QuestionContext;
1757
1758 debugf("GetZoneData_QuestionCallback: %s %s", AddRecord ? "Add" : "Rmv", RRDisplayString(m, answer));
1759
1760 if (!AddRecord) return; // Don't care about REMOVE events
1761 if (AddRecord == QC_addnocache && answer->rdlength == 0) return; // Don't care about transient failure indications
1762 if (answer->rrtype != question->qtype) return; // Don't care about CNAMEs
1763
1764 if (answer->rrtype == kDNSType_SOA)
1765 {
1766 debugf("GetZoneData GOT SOA %s", RRDisplayString(m, answer));
1767 mDNS_StopQuery(m, question);
1768 if (question->ThisQInterval != -1)
1769 LogMsg("GetZoneData_QuestionCallback: Question %##s (%s) ThisQInterval %d not -1", question->qname.c, DNSTypeName(question->qtype), question->ThisQInterval);
1770 if (answer->rdlength)
1771 {
1772 AssignDomainName(&zd->ZoneName, answer->name);
1773 zd->ZoneClass = answer->rrclass;
1774 AssignDomainName(&zd->question.qname, &zd->ZoneName);
1775 GetZoneData_StartQuery(m, zd, kDNSType_SRV);
1776 }
1777 else if (zd->CurrentSOA->c[0])
1778 {
1779 DomainAuthInfo *AuthInfo = GetAuthInfoForName(m, zd->CurrentSOA);
1780 if (AuthInfo && AuthInfo->AutoTunnel)
1781 {
1782 // To keep the load on the server down, we don't chop down on
1783 // SOA lookups for AutoTunnels
1784 LogInfo("GetZoneData_QuestionCallback: not chopping labels for %##s", zd->CurrentSOA->c);
1785 zd->ZoneDataCallback(m, mStatus_NoSuchNameErr, zd);
1786 }
1787 else
1788 {
1789 zd->CurrentSOA = (domainname *)(zd->CurrentSOA->c + zd->CurrentSOA->c[0]+1);
1790 AssignDomainName(&zd->question.qname, zd->CurrentSOA);
1791 GetZoneData_StartQuery(m, zd, kDNSType_SOA);
1792 }
1793 }
1794 else
1795 {
1796 LogInfo("GetZoneData recursed to root label of %##s without finding SOA", zd->ChildName.c);
1797 zd->ZoneDataCallback(m, mStatus_NoSuchNameErr, zd);
1798 }
1799 }
1800 else if (answer->rrtype == kDNSType_SRV)
1801 {
1802 debugf("GetZoneData GOT SRV %s", RRDisplayString(m, answer));
1803 mDNS_StopQuery(m, question);
1804 if (question->ThisQInterval != -1)
1805 LogMsg("GetZoneData_QuestionCallback: Question %##s (%s) ThisQInterval %d not -1", question->qname.c, DNSTypeName(question->qtype), question->ThisQInterval);
1806 // Right now we don't want to fail back to non-encrypted operations
1807 // If the AuthInfo has the AutoTunnel field set, then we want private or nothing
1808 // <rdar://problem/5687667> BTMM: Don't fallback to unencrypted operations when SRV lookup fails
1809 #if 0
1810 if (!answer->rdlength && zd->ZonePrivate && zd->ZoneService != ZoneServiceQuery)
1811 {
1812 zd->ZonePrivate = mDNSfalse; // Causes ZoneDataSRV() to yield a different SRV name when building the query
1813 GetZoneData_StartQuery(m, zd, kDNSType_SRV); // Try again, non-private this time
1814 }
1815 else
1816 #endif
1817 {
1818 if (answer->rdlength)
1819 {
1820 AssignDomainName(&zd->Host, &answer->rdata->u.srv.target);
1821 zd->Port = answer->rdata->u.srv.port;
1822 AssignDomainName(&zd->question.qname, &zd->Host);
1823 GetZoneData_StartQuery(m, zd, kDNSType_A);
1824 }
1825 else
1826 {
1827 zd->ZonePrivate = mDNSfalse;
1828 zd->Host.c[0] = 0;
1829 zd->Port = zeroIPPort;
1830 zd->Addr = zeroAddr;
1831 zd->ZoneDataCallback(m, mStatus_NoError, zd);
1832 }
1833 }
1834 }
1835 else if (answer->rrtype == kDNSType_A)
1836 {
1837 debugf("GetZoneData GOT A %s", RRDisplayString(m, answer));
1838 mDNS_StopQuery(m, question);
1839 if (question->ThisQInterval != -1)
1840 LogMsg("GetZoneData_QuestionCallback: Question %##s (%s) ThisQInterval %d not -1", question->qname.c, DNSTypeName(question->qtype), question->ThisQInterval);
1841 zd->Addr.type = mDNSAddrType_IPv4;
1842 zd->Addr.ip.v4 = (answer->rdlength == 4) ? answer->rdata->u.ipv4 : zerov4Addr;
1843 // In order to simulate firewalls blocking our outgoing TCP connections, returning immediate ICMP errors or TCP resets,
1844 // the code below will make us try to connect to loopback, resulting in an immediate "port unreachable" failure.
1845 // This helps us test to make sure we handle this case gracefully
1846 // <rdar://problem/5607082> BTMM: mDNSResponder taking 100 percent CPU after upgrading to 10.5.1
1847 #if 0
1848 zd->Addr.ip.v4.b[0] = 127;
1849 zd->Addr.ip.v4.b[1] = 0;
1850 zd->Addr.ip.v4.b[2] = 0;
1851 zd->Addr.ip.v4.b[3] = 1;
1852 #endif
1853 // The caller needs to free the memory when done with zone data
1854 zd->ZoneDataCallback(m, mStatus_NoError, zd);
1855 }
1856 }
1857
1858 // GetZoneData_StartQuery is called from normal client context (lock not held, or client callback)
1859 mDNSlocal mStatus GetZoneData_StartQuery(mDNS *const m, ZoneData *zd, mDNSu16 qtype)
1860 {
1861 if (qtype == kDNSType_SRV)
1862 {
1863 AssignDomainName(&zd->question.qname, ZoneDataSRV(zd));
1864 AppendDomainName(&zd->question.qname, &zd->ZoneName);
1865 debugf("lookupDNSPort %##s", zd->question.qname.c);
1866 }
1867
1868 // CancelGetZoneData can get called at any time. We should stop the question if it has not been
1869 // stopped already. A value of -1 for ThisQInterval indicates that the question is not active
1870 // yet.
1871 zd->question.ThisQInterval = -1;
1872 zd->question.InterfaceID = mDNSInterface_Any;
1873 zd->question.flags = 0;
1874 zd->question.Target = zeroAddr;
1875 //zd->question.qname.c[0] = 0; // Already set
1876 zd->question.qtype = qtype;
1877 zd->question.qclass = kDNSClass_IN;
1878 zd->question.LongLived = mDNSfalse;
1879 zd->question.ExpectUnique = mDNStrue;
1880 zd->question.ForceMCast = mDNSfalse;
1881 zd->question.ReturnIntermed = mDNStrue;
1882 zd->question.SuppressUnusable = mDNSfalse;
1883 zd->question.DenyOnCellInterface = mDNSfalse;
1884 zd->question.DenyOnExpInterface = mDNSfalse;
1885 zd->question.SearchListIndex = 0;
1886 zd->question.AppendSearchDomains = 0;
1887 zd->question.RetryWithSearchDomains = mDNSfalse;
1888 zd->question.TimeoutQuestion = 0;
1889 zd->question.WakeOnResolve = 0;
1890 zd->question.UseBackgroundTrafficClass = mDNSfalse;
1891 zd->question.ValidationRequired = 0;
1892 zd->question.ValidatingResponse = 0;
1893 zd->question.ProxyQuestion = 0;
1894 zd->question.qnameOrig = mDNSNULL;
1895 zd->question.AnonInfo = mDNSNULL;
1896 zd->question.pid = mDNSPlatformGetPID();
1897 zd->question.QuestionCallback = GetZoneData_QuestionCallback;
1898 zd->question.QuestionContext = zd;
1899
1900 //LogMsg("GetZoneData_StartQuery %##s (%s) %p", zd->question.qname.c, DNSTypeName(zd->question.qtype), zd->question.Private);
1901 return(mDNS_StartQuery(m, &zd->question));
1902 }
1903
1904 // StartGetZoneData is an internal routine (i.e. must be called with the lock already held)
1905 mDNSexport ZoneData *StartGetZoneData(mDNS *const m, const domainname *const name, const ZoneService target, ZoneDataCallback callback, void *ZoneDataContext)
1906 {
1907 DomainAuthInfo *AuthInfo = GetAuthInfoForName_internal(m, name);
1908 int initialskip = (AuthInfo && AuthInfo->AutoTunnel) ? DomainNameLength(name) - DomainNameLength(&AuthInfo->domain) : 0;
1909 ZoneData *zd = (ZoneData*)mDNSPlatformMemAllocate(sizeof(ZoneData));
1910 if (!zd) { LogMsg("ERROR: StartGetZoneData - mDNSPlatformMemAllocate failed"); return mDNSNULL; }
1911 mDNSPlatformMemZero(zd, sizeof(ZoneData));
1912 AssignDomainName(&zd->ChildName, name);
1913 zd->ZoneService = target;
1914 zd->CurrentSOA = (domainname *)(&zd->ChildName.c[initialskip]);
1915 zd->ZoneName.c[0] = 0;
1916 zd->ZoneClass = 0;
1917 zd->Host.c[0] = 0;
1918 zd->Port = zeroIPPort;
1919 zd->Addr = zeroAddr;
1920 zd->ZonePrivate = AuthInfo && AuthInfo->AutoTunnel ? mDNStrue : mDNSfalse;
1921 zd->ZoneDataCallback = callback;
1922 zd->ZoneDataContext = ZoneDataContext;
1923
1924 zd->question.QuestionContext = zd;
1925
1926 mDNS_DropLockBeforeCallback(); // GetZoneData_StartQuery expects to be called from a normal callback, so we emulate that here
1927 if (AuthInfo && AuthInfo->AutoTunnel && !mDNSIPPortIsZero(AuthInfo->port))
1928 {
1929 LogInfo("StartGetZoneData: Bypassing SOA, SRV query for %##s", AuthInfo->domain.c);
1930 // We bypass SOA and SRV queries if we know the hostname and port already from the configuration.
1931 // Today this is only true for AutoTunnel. As we bypass, we need to infer a few things:
1932 //
1933 // 1. Zone name is the same as the AuthInfo domain
1934 // 2. ZoneClass is kDNSClass_IN which should be a safe assumption
1935 //
1936 // If we want to make this bypass mechanism work for non-AutoTunnels also, (1) has to hold
1937 // good. Otherwise, it has to be configured also.
1938
1939 AssignDomainName(&zd->ZoneName, &AuthInfo->domain);
1940 zd->ZoneClass = kDNSClass_IN;
1941 AssignDomainName(&zd->Host, &AuthInfo->hostname);
1942 zd->Port = AuthInfo->port;
1943 AssignDomainName(&zd->question.qname, &zd->Host);
1944 GetZoneData_StartQuery(m, zd, kDNSType_A);
1945 }
1946 else
1947 {
1948 if (AuthInfo && AuthInfo->AutoTunnel) LogInfo("StartGetZoneData: Not Bypassing SOA, SRV query for %##s", AuthInfo->domain.c);
1949 AssignDomainName(&zd->question.qname, zd->CurrentSOA);
1950 GetZoneData_StartQuery(m, zd, kDNSType_SOA);
1951 }
1952 mDNS_ReclaimLockAfterCallback();
1953
1954 return zd;
1955 }
1956
1957 // Returns if the question is a GetZoneData question. These questions are special in
1958 // that they are created internally while resolving a private query or LLQs.
1959 mDNSexport mDNSBool IsGetZoneDataQuestion(DNSQuestion *q)
1960 {
1961 if (q->QuestionCallback == GetZoneData_QuestionCallback) return(mDNStrue);
1962 else return(mDNSfalse);
1963 }
1964
1965 // GetZoneData queries are a special case -- even if we have a key for them, we don't do them privately,
1966 // because that would result in an infinite loop (i.e. to do a private query we first need to get
1967 // the _dns-query-tls SRV record for the zone, and we can't do *that* privately because to do so
1968 // we'd need to already know the _dns-query-tls SRV record.
1969 // Also, as a general rule, we never do SOA queries privately
1970 mDNSexport DomainAuthInfo *GetAuthInfoForQuestion(mDNS *m, const DNSQuestion *const q) // Must be called with lock held
1971 {
1972 if (q->QuestionCallback == GetZoneData_QuestionCallback) return(mDNSNULL);
1973 if (q->qtype == kDNSType_SOA ) return(mDNSNULL);
1974 return(GetAuthInfoForName_internal(m, &q->qname));
1975 }
1976
1977 // ***************************************************************************
1978 #if COMPILER_LIKES_PRAGMA_MARK
1979 #pragma mark - host name and interface management
1980 #endif
1981
1982 mDNSlocal void SendRecordRegistration(mDNS *const m, AuthRecord *rr);
1983 mDNSlocal void SendRecordDeregistration(mDNS *m, AuthRecord *rr);
1984 mDNSlocal mDNSBool IsRecordMergeable(mDNS *const m, AuthRecord *rr, mDNSs32 time);
1985
1986 // When this function is called, service record is already deregistered. We just
1987 // have to deregister the PTR and TXT records.
1988 mDNSlocal void UpdateAllServiceRecords(mDNS *const m, AuthRecord *rr, mDNSBool reg)
1989 {
1990 AuthRecord *r, *srvRR;
1991
1992 if (rr->resrec.rrtype != kDNSType_SRV) { LogMsg("UpdateAllServiceRecords:ERROR!! ResourceRecord not a service record %s", ARDisplayString(m, rr)); return; }
1993
1994 if (reg && rr->state == regState_NoTarget) { LogMsg("UpdateAllServiceRecords:ERROR!! SRV record %s in noTarget state during registration", ARDisplayString(m, rr)); return; }
1995
1996 LogInfo("UpdateAllServiceRecords: ResourceRecord %s", ARDisplayString(m, rr));
1997
1998 for (r = m->ResourceRecords; r; r=r->next)
1999 {
2000 if (!AuthRecord_uDNS(r)) continue;
2001 srvRR = mDNSNULL;
2002 if (r->resrec.rrtype == kDNSType_PTR)
2003 srvRR = r->Additional1;
2004 else if (r->resrec.rrtype == kDNSType_TXT)
2005 srvRR = r->DependentOn;
2006 if (srvRR && srvRR->resrec.rrtype != kDNSType_SRV)
2007 LogMsg("UpdateAllServiceRecords: ERROR!! Resource record %s wrong, expecting SRV type", ARDisplayString(m, srvRR));
2008 if (srvRR == rr)
2009 {
2010 if (!reg)
2011 {
2012 LogInfo("UpdateAllServiceRecords: deregistering %s", ARDisplayString(m, r));
2013 r->SRVChanged = mDNStrue;
2014 r->ThisAPInterval = INIT_RECORD_REG_INTERVAL;
2015 r->LastAPTime = m->timenow - INIT_RECORD_REG_INTERVAL;
2016 r->state = regState_DeregPending;
2017 }
2018 else
2019 {
2020 // Clearing SRVchanged is a safety measure. If our pevious dereg never
2021 // came back and we had a target change, we are starting fresh
2022 r->SRVChanged = mDNSfalse;
2023 // if it is already registered or in the process of registering, then don't
2024 // bother re-registering. This happens today for non-BTMM domains where the
2025 // TXT and PTR get registered before SRV records because of the delay in
2026 // getting the port mapping. There is no point in re-registering the TXT
2027 // and PTR records.
2028 if ((r->state == regState_Registered) ||
2029 (r->state == regState_Pending && r->nta && !mDNSIPv4AddressIsZero(r->nta->Addr.ip.v4)))
2030 LogInfo("UpdateAllServiceRecords: not registering %s, state %d", ARDisplayString(m, r), r->state);
2031 else
2032 {
2033 LogInfo("UpdateAllServiceRecords: registering %s, state %d", ARDisplayString(m, r), r->state);
2034 ActivateUnicastRegistration(m, r);
2035 }
2036 }
2037 }
2038 }
2039 }
2040
2041 // Called in normal client context (lock not held)
2042 // Currently only supports SRV records for nat mapping
2043 mDNSlocal void CompleteRecordNatMap(mDNS *m, NATTraversalInfo *n)
2044 {
2045 const domainname *target;
2046 domainname *srvt;
2047 AuthRecord *rr = (AuthRecord *)n->clientContext;
2048 debugf("SRVNatMap complete %.4a IntPort %u ExternalPort %u NATLease %u", &n->ExternalAddress, mDNSVal16(n->IntPort), mDNSVal16(n->ExternalPort), n->NATLease);
2049
2050 if (!rr) { LogMsg("CompleteRecordNatMap called with unknown AuthRecord object"); return; }
2051 if (!n->NATLease) { LogMsg("CompleteRecordNatMap No NATLease for %s", ARDisplayString(m, rr)); return; }
2052
2053 if (rr->resrec.rrtype != kDNSType_SRV) {LogMsg("CompleteRecordNatMap: Not a service record %s", ARDisplayString(m, rr)); return; }
2054
2055 if (rr->resrec.RecordType == kDNSRecordTypeDeregistering) { LogInfo("CompleteRecordNatMap called for %s, Service deregistering", ARDisplayString(m, rr)); return; }
2056
2057 if (rr->state == regState_DeregPending) { LogInfo("CompleteRecordNatMap called for %s, record in DeregPending", ARDisplayString(m, rr)); return; }
2058
2059 // As we free the zone info after registering/deregistering with the server (See hndlRecordUpdateReply),
2060 // we need to restart the get zone data and nat mapping request to get the latest mapping result as we can't handle it
2061 // at this moment. Restart from the beginning.
2062 if (!rr->nta || mDNSIPv4AddressIsZero(rr->nta->Addr.ip.v4))
2063 {
2064 LogInfo("CompleteRecordNatMap called for %s but no zone information!", ARDisplayString(m, rr));
2065 // We need to clear out the NATinfo state so that it will result in re-acquiring the mapping
2066 // and hence this callback called again.
2067 if (rr->NATinfo.clientContext)
2068 {
2069 mDNS_StopNATOperation_internal(m, &rr->NATinfo);
2070 rr->NATinfo.clientContext = mDNSNULL;
2071 }
2072 rr->state = regState_Pending;
2073 rr->ThisAPInterval = INIT_RECORD_REG_INTERVAL;
2074 rr->LastAPTime = m->timenow - INIT_RECORD_REG_INTERVAL;
2075 return;
2076 }
2077
2078 mDNS_Lock(m);
2079 // Reevaluate the target always as Target could have changed while
2080 // we were getting the port mapping (See UpdateOneSRVRecord)
2081 target = GetServiceTarget(m, rr);
2082 srvt = GetRRDomainNameTarget(&rr->resrec);
2083 if (!target || target->c[0] == 0 || mDNSIPPortIsZero(n->ExternalPort))
2084 {
2085 if (target && target->c[0])
2086 LogInfo("CompleteRecordNatMap - Target %##s for ResourceRecord %##s, ExternalPort %d", target->c, rr->resrec.name->c, mDNSVal16(n->ExternalPort));
2087 else
2088 LogInfo("CompleteRecordNatMap - no target for %##s, ExternalPort %d", rr->resrec.name->c, mDNSVal16(n->ExternalPort));
2089 if (srvt) srvt->c[0] = 0;
2090 rr->state = regState_NoTarget;
2091 rr->resrec.rdlength = rr->resrec.rdestimate = 0;
2092 mDNS_Unlock(m);
2093 UpdateAllServiceRecords(m, rr, mDNSfalse);
2094 return;
2095 }
2096 LogInfo("CompleteRecordNatMap - Target %##s for ResourceRecord %##s, ExternalPort %d", target->c, rr->resrec.name->c, mDNSVal16(n->ExternalPort));
2097 // This function might get called multiple times during a network transition event. Previosuly, we could
2098 // have put the SRV record in NoTarget state above and deregistered all the other records. When this
2099 // function gets called again with a non-zero ExternalPort, we need to set the target and register the
2100 // other records again.
2101 if (srvt && !SameDomainName(srvt, target))
2102 {
2103 AssignDomainName(srvt, target);
2104 SetNewRData(&rr->resrec, mDNSNULL, 0); // Update rdlength, rdestimate, rdatahash
2105 }
2106
2107 // SRVChanged is set when when the target of the SRV record changes (See UpdateOneSRVRecord).
2108 // As a result of the target change, we might register just that SRV Record if it was
2109 // previously registered and we have a new target OR deregister SRV (and the associated
2110 // PTR/TXT records) if we don't have a target anymore. When we get a response from the server,
2111 // SRVChanged state tells that we registered/deregistered because of a target change
2112 // and hence handle accordingly e.g., if we deregistered, put the records in NoTarget state OR
2113 // if we registered then put it in Registered state.
2114 //
2115 // Here, we are registering all the records again from the beginning. Treat this as first time
2116 // registration rather than a temporary target change.
2117 rr->SRVChanged = mDNSfalse;
2118
2119 // We want IsRecordMergeable to check whether it is a record whose update can be
2120 // sent with others. We set the time before we call IsRecordMergeable, so that
2121 // it does not fail this record based on time. We are interested in other checks
2122 // at this time
2123 rr->state = regState_Pending;
2124 rr->ThisAPInterval = INIT_RECORD_REG_INTERVAL;
2125 rr->LastAPTime = m->timenow - INIT_RECORD_REG_INTERVAL;
2126 if (IsRecordMergeable(m, rr, m->timenow + MERGE_DELAY_TIME))
2127 // Delay the record registration by MERGE_DELAY_TIME so that we can merge them
2128 // into one update
2129 rr->LastAPTime += MERGE_DELAY_TIME;
2130 mDNS_Unlock(m);
2131 // We call this always even though it may not be necessary always e.g., normal registration
2132 // process where TXT and PTR gets registered followed by the SRV record after it gets
2133 // the port mapping. In that case, UpdateAllServiceRecords handles the optimization. The
2134 // update of TXT and PTR record is required if we entered noTargetState before as explained
2135 // above.
2136 UpdateAllServiceRecords(m, rr, mDNStrue);
2137 }
2138
2139 mDNSlocal void StartRecordNatMap(mDNS *m, AuthRecord *rr)
2140 {
2141 const mDNSu8 *p;
2142 mDNSu8 protocol;
2143
2144 if (rr->resrec.rrtype != kDNSType_SRV)
2145 {
2146 LogInfo("StartRecordNatMap: Resource Record %##s type %d, not supported", rr->resrec.name->c, rr->resrec.rrtype);
2147 return;
2148 }
2149 p = rr->resrec.name->c;
2150 //Assume <Service Instance>.<App Protocol>.<Transport protocol>.<Name>
2151 // Skip the first two labels to get to the transport protocol
2152 if (p[0]) p += 1 + p[0];
2153 if (p[0]) p += 1 + p[0];
2154 if (SameDomainLabel(p, (mDNSu8 *)"\x4" "_tcp")) protocol = NATOp_MapTCP;
2155 else if (SameDomainLabel(p, (mDNSu8 *)"\x4" "_udp")) protocol = NATOp_MapUDP;
2156 else { LogMsg("StartRecordNatMap: could not determine transport protocol of service %##s", rr->resrec.name->c); return; }
2157
2158 //LogMsg("StartRecordNatMap: clientContext %p IntPort %d srv.port %d %s",
2159 // rr->NATinfo.clientContext, mDNSVal16(rr->NATinfo.IntPort), mDNSVal16(rr->resrec.rdata->u.srv.port), ARDisplayString(m, rr));
2160 if (rr->NATinfo.clientContext) mDNS_StopNATOperation_internal(m, &rr->NATinfo);
2161 rr->NATinfo.Protocol = protocol;
2162
2163 // Shouldn't be trying to set IntPort here --
2164 // BuildUpdateMessage overwrites srs->RR_SRV.resrec.rdata->u.srv.port with external (mapped) port number
2165 rr->NATinfo.IntPort = rr->resrec.rdata->u.srv.port;
2166 rr->NATinfo.RequestedPort = rr->resrec.rdata->u.srv.port;
2167 rr->NATinfo.NATLease = 0; // Request default lease
2168 rr->NATinfo.clientCallback = CompleteRecordNatMap;
2169 rr->NATinfo.clientContext = rr;
2170 mDNS_StartNATOperation_internal(m, &rr->NATinfo);
2171 }
2172
2173 // Unlink an Auth Record from the m->ResourceRecords list.
2174 // When a resource record enters regState_NoTarget initially, mDNS_Register_internal
2175 // does not initialize completely e.g., it cannot check for duplicates etc. The resource
2176 // record is temporarily left in the ResourceRecords list so that we can initialize later
2177 // when the target is resolvable. Similarly, when host name changes, we enter regState_NoTarget
2178 // and we do the same.
2179
2180 // This UnlinkResourceRecord routine is very worrying. It bypasses all the normal cleanup performed
2181 // by mDNS_Deregister_internal and just unceremoniously cuts the record from the active list.
2182 // This is why re-regsitering this record was producing syslog messages like this:
2183 // "Error! Tried to add a NAT traversal that's already in the active list"
2184 // Right now UnlinkResourceRecord is fortunately only called by RegisterAllServiceRecords,
2185 // which then immediately calls mDNS_Register_internal to re-register the record, which probably
2186 // masked more serious problems. Any other use of UnlinkResourceRecord is likely to lead to crashes.
2187 // For now we'll workaround that specific problem by explicitly calling mDNS_StopNATOperation_internal,
2188 // but long-term we should either stop cancelling the record registration and then re-registering it,
2189 // or if we really do need to do this for some reason it should be done via the usual
2190 // mDNS_Deregister_internal path instead of just cutting the record from the list.
2191
2192 mDNSlocal mStatus UnlinkResourceRecord(mDNS *const m, AuthRecord *const rr)
2193 {
2194 AuthRecord **list = &m->ResourceRecords;
2195 while (*list && *list != rr) list = &(*list)->next;
2196 if (*list)
2197 {
2198 *list = rr->next;
2199 rr->next = mDNSNULL;
2200
2201 // Temporary workaround to cancel any active NAT mapping operation
2202 if (rr->NATinfo.clientContext)
2203 {
2204 mDNS_StopNATOperation_internal(m, &rr->NATinfo);
2205 rr->NATinfo.clientContext = mDNSNULL;
2206 if (rr->resrec.rrtype == kDNSType_SRV) rr->resrec.rdata->u.srv.port = rr->NATinfo.IntPort;
2207 }
2208
2209 return(mStatus_NoError);
2210 }
2211 LogMsg("UnlinkResourceRecord:ERROR!! - no such active record %##s", rr->resrec.name->c);
2212 return(mStatus_NoSuchRecord);
2213 }
2214
2215 // We need to go through mDNS_Register again as we did not complete the
2216 // full initialization last time e.g., duplicate checks.
2217 // After we register, we will be in regState_GetZoneData.
2218 mDNSlocal void RegisterAllServiceRecords(mDNS *const m, AuthRecord *rr)
2219 {
2220 LogInfo("RegisterAllServiceRecords: Service Record %##s", rr->resrec.name->c);
2221 // First Register the service record, we do this differently from other records because
2222 // when it entered NoTarget state, it did not go through complete initialization
2223 rr->SRVChanged = mDNSfalse;
2224 UnlinkResourceRecord(m, rr);
2225 mDNS_Register_internal(m, rr);
2226 // Register the other records
2227 UpdateAllServiceRecords(m, rr, mDNStrue);
2228 }
2229
2230 // Called with lock held
2231 mDNSlocal void UpdateOneSRVRecord(mDNS *m, AuthRecord *rr)
2232 {
2233 // Target change if:
2234 // We have a target and were previously waiting for one, or
2235 // We had a target and no longer do, or
2236 // The target has changed
2237
2238 domainname *curtarget = &rr->resrec.rdata->u.srv.target;
2239 const domainname *const nt = GetServiceTarget(m, rr);
2240 const domainname *const newtarget = nt ? nt : (domainname*)"";
2241 mDNSBool TargetChanged = (newtarget->c[0] && rr->state == regState_NoTarget) || !SameDomainName(curtarget, newtarget);
2242 mDNSBool HaveZoneData = rr->nta && !mDNSIPv4AddressIsZero(rr->nta->Addr.ip.v4);
2243
2244 // Nat state change if:
2245 // We were behind a NAT, and now we are behind a new NAT, or
2246 // We're not behind a NAT but our port was previously mapped to a different external port
2247 // We were not behind a NAT and now we are
2248
2249 mDNSIPPort port = rr->resrec.rdata->u.srv.port;
2250 mDNSBool NowNeedNATMAP = (rr->AutoTarget == Target_AutoHostAndNATMAP && !mDNSIPPortIsZero(port) && mDNSv4AddrIsRFC1918(&m->AdvertisedV4.ip.v4) && rr->nta && !mDNSAddrIsRFC1918(&rr->nta->Addr));
2251 mDNSBool WereBehindNAT = (rr->NATinfo.clientContext != mDNSNULL);
2252 mDNSBool PortWasMapped = (rr->NATinfo.clientContext && !mDNSSameIPPort(rr->NATinfo.RequestedPort, port)); // I think this is always false -- SC Sept 07
2253 mDNSBool NATChanged = (!WereBehindNAT && NowNeedNATMAP) || (!NowNeedNATMAP && PortWasMapped);
2254
2255 (void)HaveZoneData; //unused
2256
2257 LogInfo("UpdateOneSRVRecord: Resource Record %s TargetChanged %d, NewTarget %##s", ARDisplayString(m, rr), TargetChanged, nt->c);
2258
2259 debugf("UpdateOneSRVRecord: %##s newtarget %##s TargetChanged %d HaveZoneData %d port %d NowNeedNATMAP %d WereBehindNAT %d PortWasMapped %d NATChanged %d",
2260 rr->resrec.name->c, newtarget,
2261 TargetChanged, HaveZoneData, mDNSVal16(port), NowNeedNATMAP, WereBehindNAT, PortWasMapped, NATChanged);
2262
2263 mDNS_CheckLock(m);
2264
2265 if (!TargetChanged && !NATChanged) return;
2266
2267 // If we are deregistering the record, then ignore any NAT/Target change.
2268 if (rr->resrec.RecordType == kDNSRecordTypeDeregistering)
2269 {
2270 LogInfo("UpdateOneSRVRecord: Deregistering record, Ignoring TargetChanged %d, NATChanged %d for %##s, state %d", TargetChanged, NATChanged,
2271 rr->resrec.name->c, rr->state);
2272 return;
2273 }
2274
2275 if (newtarget)
2276 LogInfo("UpdateOneSRVRecord: TargetChanged %d, NATChanged %d for %##s, state %d, newtarget %##s", TargetChanged, NATChanged, rr->resrec.name->c, rr->state, newtarget->c);
2277 else
2278 LogInfo("UpdateOneSRVRecord: TargetChanged %d, NATChanged %d for %##s, state %d, null newtarget", TargetChanged, NATChanged, rr->resrec.name->c, rr->state);
2279 switch(rr->state)
2280 {
2281 case regState_NATMap:
2282 // In these states, the SRV has either not yet been registered (it will get up-to-date information when it is)
2283 // or is in the process of, or has already been, deregistered. This assumes that whenever we transition out
2284 // of this state, we need to look at the target again.
2285 return;
2286
2287 case regState_UpdatePending:
2288 // We are getting a Target change/NAT change while the SRV record is being updated ?
2289 // let us not do anything for now.
2290 return;
2291
2292 case regState_NATError:
2293 if (!NATChanged) return;
2294 // if nat changed, register if we have a target (below)
2295
2296 case regState_NoTarget:
2297 if (!newtarget->c[0])
2298 {
2299 LogInfo("UpdateOneSRVRecord: No target yet for Resource Record %s", ARDisplayString(m, rr));
2300 return;
2301 }
2302 RegisterAllServiceRecords(m, rr);
2303 return;
2304 case regState_DeregPending:
2305 // We are in DeregPending either because the service was deregistered from above or we handled
2306 // a NAT/Target change before and sent the deregistration below. There are a few race conditions
2307 // possible
2308 //
2309 // 1. We are handling a second NAT/Target change while the first dereg is in progress. It is possible
2310 // that first dereg never made it through because there was no network connectivity e.g., disconnecting
2311 // from network triggers this function due to a target change and later connecting to the network
2312 // retriggers this function but the deregistration never made it through yet. Just fall through.
2313 // If there is a target register otherwise deregister.
2314 //
2315 // 2. While we sent the dereg during a previous NAT/Target change, uDNS_DeregisterRecord gets
2316 // called as part of service deregistration. When the response comes back, we call
2317 // CompleteDeregistration rather than handle NAT/Target change because the record is in
2318 // kDNSRecordTypeDeregistering state.
2319 //
2320 // 3. If the upper layer deregisters the service, we check for kDNSRecordTypeDeregistering both
2321 // here in this function to avoid handling NAT/Target change and in hndlRecordUpdateReply to call
2322 // CompleteDeregistration instead of handling NAT/Target change. Hence, we are not concerned
2323 // about that case here.
2324 //
2325 // We just handle case (1) by falling through
2326 case regState_Pending:
2327 case regState_Refresh:
2328 case regState_Registered:
2329 // target or nat changed. deregister service. upon completion, we'll look for a new target
2330 rr->SRVChanged = mDNStrue;
2331 rr->ThisAPInterval = INIT_RECORD_REG_INTERVAL;
2332 rr->LastAPTime = m->timenow - INIT_RECORD_REG_INTERVAL;
2333 if (newtarget->c[0])
2334 {
2335 LogInfo("UpdateOneSRVRecord: SRV record changed for service %##s, registering with new target %##s",
2336 rr->resrec.name->c, newtarget->c);
2337 rr->state = regState_Pending;
2338 }
2339 else
2340 {
2341 LogInfo("UpdateOneSRVRecord: SRV record changed for service %##s de-registering", rr->resrec.name->c);
2342 rr->state = regState_DeregPending;
2343 UpdateAllServiceRecords(m, rr, mDNSfalse);
2344 }
2345 return;
2346 case regState_Unregistered:
2347 default: LogMsg("UpdateOneSRVRecord: Unknown state %d for %##s", rr->state, rr->resrec.name->c);
2348 }
2349 }
2350
2351 mDNSexport void UpdateAllSRVRecords(mDNS *m)
2352 {
2353 m->NextSRVUpdate = 0;
2354 LogInfo("UpdateAllSRVRecords %d", m->SleepState);
2355
2356 if (m->CurrentRecord)
2357 LogMsg("UpdateAllSRVRecords ERROR m->CurrentRecord already set %s", ARDisplayString(m, m->CurrentRecord));
2358 m->CurrentRecord = m->ResourceRecords;
2359 while (m->CurrentRecord)
2360 {
2361 AuthRecord *rptr = m->CurrentRecord;
2362 m->CurrentRecord = m->CurrentRecord->next;
2363 if (AuthRecord_uDNS(rptr) && rptr->resrec.rrtype == kDNSType_SRV)
2364 UpdateOneSRVRecord(m, rptr);
2365 }
2366 }
2367
2368 // Forward reference: AdvertiseHostname references HostnameCallback, and HostnameCallback calls AdvertiseHostname
2369 mDNSlocal void HostnameCallback(mDNS *const m, AuthRecord *const rr, mStatus result);
2370
2371 // Called in normal client context (lock not held)
2372 mDNSlocal void hostnameGetPublicAddressCallback(mDNS *m, NATTraversalInfo *n)
2373 {
2374 HostnameInfo *h = (HostnameInfo *)n->clientContext;
2375
2376 if (!h) { LogMsg("RegisterHostnameRecord: registration cancelled"); return; }
2377
2378 if (!n->Result)
2379 {
2380 if (mDNSIPv4AddressIsZero(n->ExternalAddress) || mDNSv4AddrIsRFC1918(&n->ExternalAddress)) return;
2381
2382 if (h->arv4.resrec.RecordType)
2383 {
2384 if (mDNSSameIPv4Address(h->arv4.resrec.rdata->u.ipv4, n->ExternalAddress)) return; // If address unchanged, do nothing
2385 LogInfo("Updating hostname %p %##s IPv4 from %.4a to %.4a (NAT gateway's external address)",n,
2386 h->arv4.resrec.name->c, &h->arv4.resrec.rdata->u.ipv4, &n->ExternalAddress);
2387 mDNS_Deregister(m, &h->arv4); // mStatus_MemFree callback will re-register with new address
2388 }
2389 else
2390 {
2391 LogInfo("Advertising hostname %##s IPv4 %.4a (NAT gateway's external address)", h->arv4.resrec.name->c, &n->ExternalAddress);
2392 h->arv4.resrec.RecordType = kDNSRecordTypeKnownUnique;
2393 h->arv4.resrec.rdata->u.ipv4 = n->ExternalAddress;
2394 mDNS_Register(m, &h->arv4);
2395 }
2396 }
2397 }
2398
2399 // register record or begin NAT traversal
2400 mDNSlocal void AdvertiseHostname(mDNS *m, HostnameInfo *h)
2401 {
2402 if (!mDNSIPv4AddressIsZero(m->AdvertisedV4.ip.v4) && h->arv4.resrec.RecordType == kDNSRecordTypeUnregistered)
2403 {
2404 mDNS_SetupResourceRecord(&h->arv4, mDNSNULL, mDNSInterface_Any, kDNSType_A, kHostNameTTL, kDNSRecordTypeUnregistered, AuthRecordAny, HostnameCallback, h);
2405 AssignDomainName(&h->arv4.namestorage, &h->fqdn);
2406 h->arv4.resrec.rdata->u.ipv4 = m->AdvertisedV4.ip.v4;
2407 h->arv4.state = regState_Unregistered;
2408 if (mDNSv4AddrIsRFC1918(&m->AdvertisedV4.ip.v4))
2409 {
2410 // If we already have a NAT query active, stop it and restart it to make sure we get another callback
2411 if (h->natinfo.clientContext) mDNS_StopNATOperation_internal(m, &h->natinfo);
2412 h->natinfo.Protocol = 0;
2413 h->natinfo.IntPort = zeroIPPort;
2414 h->natinfo.RequestedPort = zeroIPPort;
2415 h->natinfo.NATLease = 0;
2416 h->natinfo.clientCallback = hostnameGetPublicAddressCallback;
2417 h->natinfo.clientContext = h;
2418 mDNS_StartNATOperation_internal(m, &h->natinfo);
2419 }
2420 else
2421 {
2422 LogInfo("Advertising hostname %##s IPv4 %.4a", h->arv4.resrec.name->c, &m->AdvertisedV4.ip.v4);
2423 h->arv4.resrec.RecordType = kDNSRecordTypeKnownUnique;
2424 mDNS_Register_internal(m, &h->arv4);
2425 }
2426 }
2427
2428 if (!mDNSIPv6AddressIsZero(m->AdvertisedV6.ip.v6) && h->arv6.resrec.RecordType == kDNSRecordTypeUnregistered)
2429 {
2430 mDNS_SetupResourceRecord(&h->arv6, mDNSNULL, mDNSInterface_Any, kDNSType_AAAA, kHostNameTTL, kDNSRecordTypeKnownUnique, AuthRecordAny, HostnameCallback, h);
2431 AssignDomainName(&h->arv6.namestorage, &h->fqdn);
2432 h->arv6.resrec.rdata->u.ipv6 = m->AdvertisedV6.ip.v6;
2433 h->arv6.state = regState_Unregistered;
2434 LogInfo("Advertising hostname %##s IPv6 %.16a", h->arv6.resrec.name->c, &m->AdvertisedV6.ip.v6);
2435 mDNS_Register_internal(m, &h->arv6);
2436 }
2437 }
2438
2439 mDNSlocal void HostnameCallback(mDNS *const m, AuthRecord *const rr, mStatus result)
2440 {
2441 HostnameInfo *hi = (HostnameInfo *)rr->RecordContext;
2442
2443 if (result == mStatus_MemFree)
2444 {
2445 if (hi)
2446 {
2447 // If we're still in the Hostnames list, update to new address
2448 HostnameInfo *i;
2449 LogInfo("HostnameCallback: Got mStatus_MemFree for %p %p %s", hi, rr, ARDisplayString(m, rr));
2450 for (i = m->Hostnames; i; i = i->next)
2451 if (rr == &i->arv4 || rr == &i->arv6)
2452 { mDNS_Lock(m); AdvertiseHostname(m, i); mDNS_Unlock(m); return; }
2453
2454 // Else, we're not still in the Hostnames list, so free the memory
2455 if (hi->arv4.resrec.RecordType == kDNSRecordTypeUnregistered &&
2456 hi->arv6.resrec.RecordType == kDNSRecordTypeUnregistered)
2457 {
2458 if (hi->natinfo.clientContext) mDNS_StopNATOperation_internal(m, &hi->natinfo);
2459 hi->natinfo.clientContext = mDNSNULL;
2460 mDNSPlatformMemFree(hi); // free hi when both v4 and v6 AuthRecs deallocated
2461 }
2462 }
2463 return;
2464 }
2465
2466 if (result)
2467 {
2468 // don't unlink or free - we can retry when we get a new address/router
2469 if (rr->resrec.rrtype == kDNSType_A)
2470 LogMsg("HostnameCallback: Error %d for registration of %##s IP %.4a", result, rr->resrec.name->c, &rr->resrec.rdata->u.ipv4);
2471 else
2472 LogMsg("HostnameCallback: Error %d for registration of %##s IP %.16a", result, rr->resrec.name->c, &rr->resrec.rdata->u.ipv6);
2473 if (!hi) { mDNSPlatformMemFree(rr); return; }
2474 if (rr->state != regState_Unregistered) LogMsg("Error: HostnameCallback invoked with error code for record not in regState_Unregistered!");
2475
2476 if (hi->arv4.state == regState_Unregistered &&
2477 hi->arv6.state == regState_Unregistered)
2478 {
2479 // only deliver status if both v4 and v6 fail
2480 rr->RecordContext = (void *)hi->StatusContext;
2481 if (hi->StatusCallback)
2482 hi->StatusCallback(m, rr, result); // client may NOT make API calls here
2483 rr->RecordContext = (void *)hi;
2484 }
2485 return;
2486 }
2487
2488 // register any pending services that require a target
2489 mDNS_Lock(m);
2490 m->NextSRVUpdate = NonZeroTime(m->timenow);
2491 mDNS_Unlock(m);
2492
2493 // Deliver success to client
2494 if (!hi) { LogMsg("HostnameCallback invoked with orphaned address record"); return; }
2495 if (rr->resrec.rrtype == kDNSType_A)
2496 LogInfo("Registered hostname %##s IP %.4a", rr->resrec.name->c, &rr->resrec.rdata->u.ipv4);
2497 else
2498 LogInfo("Registered hostname %##s IP %.16a", rr->resrec.name->c, &rr->resrec.rdata->u.ipv6);
2499
2500 rr->RecordContext = (void *)hi->StatusContext;
2501 if (hi->StatusCallback)
2502 hi->StatusCallback(m, rr, result); // client may NOT make API calls here
2503 rr->RecordContext = (void *)hi;
2504 }
2505
2506 mDNSlocal void FoundStaticHostname(mDNS *const m, DNSQuestion *question, const ResourceRecord *const answer, QC_result AddRecord)
2507 {
2508 const domainname *pktname = &answer->rdata->u.name;
2509 domainname *storedname = &m->StaticHostname;
2510 HostnameInfo *h = m->Hostnames;
2511
2512 (void)question;
2513
2514 if (answer->rdlength != 0)
2515 LogInfo("FoundStaticHostname: question %##s -> answer %##s (%s)", question->qname.c, answer->rdata->u.name.c, AddRecord ? "ADD" : "RMV");
2516 else
2517 LogInfo("FoundStaticHostname: question %##s -> answer NULL (%s)", question->qname.c, AddRecord ? "ADD" : "RMV");
2518
2519 if (AddRecord && answer->rdlength != 0 && !SameDomainName(pktname, storedname))
2520 {
2521 AssignDomainName(storedname, pktname);
2522 while (h)
2523 {
2524 if (h->arv4.state == regState_Pending || h->arv4.state == regState_NATMap || h->arv6.state == regState_Pending)
2525 {
2526 // if we're in the process of registering a dynamic hostname, delay SRV update so we don't have to reregister services if the dynamic name succeeds
2527 m->NextSRVUpdate = NonZeroTime(m->timenow + 5 * mDNSPlatformOneSecond);
2528 debugf("FoundStaticHostname: NextSRVUpdate in %d %d", m->NextSRVUpdate - m->timenow, m->timenow);
2529 return;
2530 }
2531 h = h->next;
2532 }
2533 mDNS_Lock(m);
2534 m->NextSRVUpdate = NonZeroTime(m->timenow);
2535 mDNS_Unlock(m);
2536 }
2537 else if (!AddRecord && SameDomainName(pktname, storedname))
2538 {
2539 mDNS_Lock(m);
2540 storedname->c[0] = 0;
2541 m->NextSRVUpdate = NonZeroTime(m->timenow);
2542 mDNS_Unlock(m);
2543 }
2544 }
2545
2546 // Called with lock held
2547 mDNSlocal void GetStaticHostname(mDNS *m)
2548 {
2549 char buf[MAX_REVERSE_MAPPING_NAME_V4];
2550 DNSQuestion *q = &m->ReverseMap;
2551 mDNSu8 *ip = m->AdvertisedV4.ip.v4.b;
2552 mStatus err;
2553
2554 if (m->ReverseMap.ThisQInterval != -1) return; // already running
2555 if (mDNSIPv4AddressIsZero(m->AdvertisedV4.ip.v4)) return;
2556
2557 mDNSPlatformMemZero(q, sizeof(*q));
2558 // Note: This is reverse order compared to a normal dotted-decimal IP address, so we can't use our customary "%.4a" format code
2559 mDNS_snprintf(buf, sizeof(buf), "%d.%d.%d.%d.in-addr.arpa.", ip[3], ip[2], ip[1], ip[0]);
2560 if (!MakeDomainNameFromDNSNameString(&q->qname, buf)) { LogMsg("Error: GetStaticHostname - bad name %s", buf); return; }
2561
2562 q->InterfaceID = mDNSInterface_Any;
2563 q->flags = 0;
2564 q->Target = zeroAddr;
2565 q->qtype = kDNSType_PTR;
2566 q->qclass = kDNSClass_IN;
2567 q->LongLived = mDNSfalse;
2568 q->ExpectUnique = mDNSfalse;
2569 q->ForceMCast = mDNSfalse;
2570 q->ReturnIntermed = mDNStrue;
2571 q->SuppressUnusable = mDNSfalse;
2572 q->DenyOnCellInterface = mDNSfalse;
2573 q->DenyOnExpInterface = mDNSfalse;
2574 q->SearchListIndex = 0;
2575 q->AppendSearchDomains = 0;
2576 q->RetryWithSearchDomains = mDNSfalse;
2577 q->TimeoutQuestion = 0;
2578 q->WakeOnResolve = 0;
2579 q->UseBackgroundTrafficClass = mDNSfalse;
2580 q->ValidationRequired = 0;
2581 q->ValidatingResponse = 0;
2582 q->ProxyQuestion = 0;
2583 q->qnameOrig = mDNSNULL;
2584 q->AnonInfo = mDNSNULL;
2585 q->pid = mDNSPlatformGetPID();
2586 q->QuestionCallback = FoundStaticHostname;
2587 q->QuestionContext = mDNSNULL;
2588
2589 LogInfo("GetStaticHostname: %##s (%s)", q->qname.c, DNSTypeName(q->qtype));
2590 err = mDNS_StartQuery_internal(m, q);
2591 if (err) LogMsg("Error: GetStaticHostname - StartQuery returned error %d", err);
2592 }
2593
2594 mDNSexport void mDNS_AddDynDNSHostName(mDNS *m, const domainname *fqdn, mDNSRecordCallback *StatusCallback, const void *StatusContext)
2595 {
2596 HostnameInfo **ptr = &m->Hostnames;
2597
2598 LogInfo("mDNS_AddDynDNSHostName %##s", fqdn);
2599
2600 while (*ptr && !SameDomainName(fqdn, &(*ptr)->fqdn)) ptr = &(*ptr)->next;
2601 if (*ptr) { LogMsg("DynDNSHostName %##s already in list", fqdn->c); return; }
2602
2603 // allocate and format new address record
2604 *ptr = mDNSPlatformMemAllocate(sizeof(**ptr));
2605 if (!*ptr) { LogMsg("ERROR: mDNS_AddDynDNSHostName - malloc"); return; }
2606
2607 mDNSPlatformMemZero(*ptr, sizeof(**ptr));
2608 AssignDomainName(&(*ptr)->fqdn, fqdn);
2609 (*ptr)->arv4.state = regState_Unregistered;
2610 (*ptr)->arv6.state = regState_Unregistered;
2611 (*ptr)->StatusCallback = StatusCallback;
2612 (*ptr)->StatusContext = StatusContext;
2613
2614 AdvertiseHostname(m, *ptr);
2615 }
2616
2617 mDNSexport void mDNS_RemoveDynDNSHostName(mDNS *m, const domainname *fqdn)
2618 {
2619 HostnameInfo **ptr = &m->Hostnames;
2620
2621 LogInfo("mDNS_RemoveDynDNSHostName %##s", fqdn);
2622
2623 while (*ptr && !SameDomainName(fqdn, &(*ptr)->fqdn)) ptr = &(*ptr)->next;
2624 if (!*ptr) LogMsg("mDNS_RemoveDynDNSHostName: no such domainname %##s", fqdn->c);
2625 else
2626 {
2627 HostnameInfo *hi = *ptr;
2628 // We do it this way because, if we have no active v6 record, the "mDNS_Deregister_internal(m, &hi->arv4);"
2629 // below could free the memory, and we have to make sure we don't touch hi fields after that.
2630 mDNSBool f4 = hi->arv4.resrec.RecordType != kDNSRecordTypeUnregistered && hi->arv4.state != regState_Unregistered;
2631 mDNSBool f6 = hi->arv6.resrec.RecordType != kDNSRecordTypeUnregistered && hi->arv6.state != regState_Unregistered;
2632 if (f4) LogInfo("mDNS_RemoveDynDNSHostName removing v4 %##s", fqdn);
2633 if (f6) LogInfo("mDNS_RemoveDynDNSHostName removing v6 %##s", fqdn);
2634 *ptr = (*ptr)->next; // unlink
2635 if (f4) mDNS_Deregister_internal(m, &hi->arv4, mDNS_Dereg_normal);
2636 if (f6) mDNS_Deregister_internal(m, &hi->arv6, mDNS_Dereg_normal);
2637 // When both deregistrations complete we'll free the memory in the mStatus_MemFree callback
2638 }
2639 mDNS_CheckLock(m);
2640 m->NextSRVUpdate = NonZeroTime(m->timenow);
2641 }
2642
2643 // Currently called without holding the lock
2644 // Maybe we should change that?
2645 mDNSexport void mDNS_SetPrimaryInterfaceInfo(mDNS *m, const mDNSAddr *v4addr, const mDNSAddr *v6addr, const mDNSAddr *router)
2646 {
2647 mDNSBool v4Changed, v6Changed, RouterChanged;
2648
2649 if (m->mDNS_busy != m->mDNS_reentrancy)
2650 LogMsg("mDNS_SetPrimaryInterfaceInfo: mDNS_busy (%ld) != mDNS_reentrancy (%ld)", m->mDNS_busy, m->mDNS_reentrancy);
2651
2652 if (v4addr && v4addr->type != mDNSAddrType_IPv4) { LogMsg("mDNS_SetPrimaryInterfaceInfo v4 address - incorrect type. Discarding. %#a", v4addr); return; }
2653 if (v6addr && v6addr->type != mDNSAddrType_IPv6) { LogMsg("mDNS_SetPrimaryInterfaceInfo v6 address - incorrect type. Discarding. %#a", v6addr); return; }
2654 if (router && router->type != mDNSAddrType_IPv4) { LogMsg("mDNS_SetPrimaryInterfaceInfo passed non-v4 router. Discarding. %#a", router); return; }
2655
2656 mDNS_Lock(m);
2657
2658 v4Changed = !mDNSSameIPv4Address(m->AdvertisedV4.ip.v4, v4addr ? v4addr->ip.v4 : zerov4Addr);
2659 v6Changed = !mDNSSameIPv6Address(m->AdvertisedV6.ip.v6, v6addr ? v6addr->ip.v6 : zerov6Addr);
2660 RouterChanged = !mDNSSameIPv4Address(m->Router.ip.v4, router ? router->ip.v4 : zerov4Addr);
2661
2662 if (v4addr && (v4Changed || RouterChanged))
2663 debugf("mDNS_SetPrimaryInterfaceInfo: address changed from %#a to %#a", &m->AdvertisedV4, v4addr);
2664
2665 if (v4addr) m->AdvertisedV4 = *v4addr;else m->AdvertisedV4.ip.v4 = zerov4Addr;
2666 if (v6addr) m->AdvertisedV6 = *v6addr;else m->AdvertisedV6.ip.v6 = zerov6Addr;
2667 if (router) m->Router = *router;else m->Router.ip.v4 = zerov4Addr;
2668 // setting router to zero indicates that nat mappings must be reestablished when router is reset
2669
2670 if (v4Changed || RouterChanged || v6Changed)
2671 {
2672 HostnameInfo *i;
2673 LogInfo("mDNS_SetPrimaryInterfaceInfo: %s%s%s%#a %#a %#a",
2674 v4Changed ? "v4Changed " : "",
2675 RouterChanged ? "RouterChanged " : "",
2676 v6Changed ? "v6Changed " : "", v4addr, v6addr, router);
2677
2678 for (i = m->Hostnames; i; i = i->next)
2679 {
2680 LogInfo("mDNS_SetPrimaryInterfaceInfo updating host name registrations for %##s", i->fqdn.c);
2681
2682 if (i->arv4.resrec.RecordType > kDNSRecordTypeDeregistering &&
2683 !mDNSSameIPv4Address(i->arv4.resrec.rdata->u.ipv4, m->AdvertisedV4.ip.v4))
2684 {
2685 LogInfo("mDNS_SetPrimaryInterfaceInfo deregistering %s", ARDisplayString(m, &i->arv4));
2686 mDNS_Deregister_internal(m, &i->arv4, mDNS_Dereg_normal);
2687 }
2688
2689 if (i->arv6.resrec.RecordType > kDNSRecordTypeDeregistering &&
2690 !mDNSSameIPv6Address(i->arv6.resrec.rdata->u.ipv6, m->AdvertisedV6.ip.v6))
2691 {
2692 LogInfo("mDNS_SetPrimaryInterfaceInfo deregistering %s", ARDisplayString(m, &i->arv6));
2693 mDNS_Deregister_internal(m, &i->arv6, mDNS_Dereg_normal);
2694 }
2695
2696 // AdvertiseHostname will only register new address records.
2697 // For records still in the process of deregistering it will ignore them, and let the mStatus_MemFree callback handle them.
2698 AdvertiseHostname(m, i);
2699 }
2700
2701 if (v4Changed || RouterChanged)
2702 {
2703 // If we have a non-zero IPv4 address, we should try immediately to see if we have a NAT gateway
2704 // If we have no IPv4 address, we don't want to be in quite such a hurry to report failures to our clients
2705 // <rdar://problem/6935929> Sleeping server sometimes briefly disappears over Back to My Mac after it wakes up
2706 mDNSu32 waitSeconds = v4addr ? 0 : 5;
2707 NATTraversalInfo *n;
2708 m->ExtAddress = zerov4Addr;
2709 m->LastNATMapResultCode = NATErr_None;
2710
2711 RecreateNATMappings(m, mDNSPlatformOneSecond * waitSeconds);
2712
2713 for (n = m->NATTraversals; n; n=n->next)
2714 n->NewAddress = zerov4Addr;
2715
2716 LogInfo("mDNS_SetPrimaryInterfaceInfo:%s%s: recreating NAT mappings in %d seconds",
2717 v4Changed ? " v4Changed" : "",
2718 RouterChanged ? " RouterChanged" : "",
2719 waitSeconds);
2720 }
2721
2722 if (m->ReverseMap.ThisQInterval != -1) mDNS_StopQuery_internal(m, &m->ReverseMap);
2723 m->StaticHostname.c[0] = 0;
2724
2725 m->NextSRVUpdate = NonZeroTime(m->timenow);
2726
2727 #if APPLE_OSX_mDNSResponder
2728 if (RouterChanged) uuid_generate(m->asl_uuid);
2729 UpdateAutoTunnelDomainStatuses(m);
2730 #endif
2731 }
2732
2733 mDNS_Unlock(m);
2734 }
2735
2736 // ***************************************************************************
2737 #if COMPILER_LIKES_PRAGMA_MARK
2738 #pragma mark - Incoming Message Processing
2739 #endif
2740
2741 mDNSlocal mStatus ParseTSIGError(mDNS *const m, const DNSMessage *const msg, const mDNSu8 *const end, const domainname *const displayname)
2742 {
2743 const mDNSu8 *ptr;
2744 mStatus err = mStatus_NoError;
2745 int i;
2746
2747 ptr = LocateAdditionals(msg, end);
2748 if (!ptr) goto finish;
2749
2750 for (i = 0; i < msg->h.numAdditionals; i++)
2751 {
2752 ptr = GetLargeResourceRecord(m, msg, ptr, end, 0, kDNSRecordTypePacketAdd, &m->rec);
2753 if (!ptr) goto finish;
2754 if (m->rec.r.resrec.RecordType != kDNSRecordTypePacketNegative && m->rec.r.resrec.rrtype == kDNSType_TSIG)
2755 {
2756 mDNSu32 macsize;
2757 mDNSu8 *rd = m->rec.r.resrec.rdata->u.data;
2758 mDNSu8 *rdend = rd + m->rec.r.resrec.rdlength;
2759 int alglen = DomainNameLengthLimit(&m->rec.r.resrec.rdata->u.name, rdend);
2760 if (alglen > MAX_DOMAIN_NAME) goto finish;
2761 rd += alglen; // algorithm name
2762 if (rd + 6 > rdend) goto finish;
2763 rd += 6; // 48-bit timestamp
2764 if (rd + sizeof(mDNSOpaque16) > rdend) goto finish;
2765 rd += sizeof(mDNSOpaque16); // fudge
2766 if (rd + sizeof(mDNSOpaque16) > rdend) goto finish;
2767 macsize = mDNSVal16(*(mDNSOpaque16 *)rd);
2768 rd += sizeof(mDNSOpaque16); // MAC size
2769 if (rd + macsize > rdend) goto finish;
2770 rd += macsize;
2771 if (rd + sizeof(mDNSOpaque16) > rdend) goto finish;
2772 rd += sizeof(mDNSOpaque16); // orig id
2773 if (rd + sizeof(mDNSOpaque16) > rdend) goto finish;
2774 err = mDNSVal16(*(mDNSOpaque16 *)rd); // error code
2775
2776 if (err == TSIG_ErrBadSig) { LogMsg("%##s: bad signature", displayname->c); err = mStatus_BadSig; }
2777 else if (err == TSIG_ErrBadKey) { LogMsg("%##s: bad key", displayname->c); err = mStatus_BadKey; }
2778 else if (err == TSIG_ErrBadTime) { LogMsg("%##s: bad time", displayname->c); err = mStatus_BadTime; }
2779 else if (err) { LogMsg("%##s: unknown tsig error %d", displayname->c, err); err = mStatus_UnknownErr; }
2780 goto finish;
2781 }
2782 m->rec.r.resrec.RecordType = 0; // Clear RecordType to show we're not still using it
2783 }
2784
2785 finish:
2786 m->rec.r.resrec.RecordType = 0; // Clear RecordType to show we're not still using it
2787 return err;
2788 }
2789
2790 mDNSlocal mStatus checkUpdateResult(mDNS *const m, const domainname *const displayname, const mDNSu8 rcode, const DNSMessage *const msg, const mDNSu8 *const end)
2791 {
2792 (void)msg; // currently unused, needed for TSIG errors
2793 if (!rcode) return mStatus_NoError;
2794 else if (rcode == kDNSFlag1_RC_YXDomain)
2795 {
2796 debugf("name in use: %##s", displayname->c);
2797 return mStatus_NameConflict;
2798 }
2799 else if (rcode == kDNSFlag1_RC_Refused)
2800 {
2801 LogMsg("Update %##s refused", displayname->c);
2802 return mStatus_Refused;
2803 }
2804 else if (rcode == kDNSFlag1_RC_NXRRSet)
2805 {
2806 LogMsg("Reregister refused (NXRRSET): %##s", displayname->c);
2807 return mStatus_NoSuchRecord;
2808 }
2809 else if (rcode == kDNSFlag1_RC_NotAuth)
2810 {
2811 // TSIG errors should come with FormErr as per RFC 2845, but BIND 9 sends them with NotAuth so we look here too
2812 mStatus tsigerr = ParseTSIGError(m, msg, end, displayname);
2813 if (!tsigerr)
2814 {
2815 LogMsg("Permission denied (NOAUTH): %##s", displayname->c);
2816 return mStatus_UnknownErr;
2817 }
2818 else return tsigerr;
2819 }
2820 else if (rcode == kDNSFlag1_RC_FormErr)
2821 {
2822 mStatus tsigerr = ParseTSIGError(m, msg, end, displayname);
2823 if (!tsigerr)
2824 {
2825 LogMsg("Format Error: %##s", displayname->c);
2826 return mStatus_UnknownErr;
2827 }
2828 else return tsigerr;
2829 }
2830 else
2831 {
2832 LogMsg("Update %##s failed with rcode %d", displayname->c, rcode);
2833 return mStatus_UnknownErr;
2834 }
2835 }
2836
2837 // We add three Additional Records for unicast resource record registrations
2838 // which is a function of AuthInfo and AutoTunnel properties
2839 mDNSlocal mDNSu32 RRAdditionalSize(mDNS *const m, DomainAuthInfo *AuthInfo)
2840 {
2841 mDNSu32 leaseSize, hinfoSize, tsigSize;
2842 mDNSu32 rr_base_size = 10; // type (2) class (2) TTL (4) rdlength (2)
2843
2844 // OPT RR : Emptyname(.) + base size + rdataOPT
2845 leaseSize = 1 + rr_base_size + sizeof(rdataOPT);
2846
2847 // HINFO: Resource Record Name + base size + RDATA
2848 // HINFO is added only for autotunnels
2849 hinfoSize = 0;
2850 if (AuthInfo && AuthInfo->AutoTunnel)
2851 hinfoSize = (m->hostlabel.c[0] + 1) + DomainNameLength(&AuthInfo->domain) +
2852 rr_base_size + (2 + m->HIHardware.c[0] + m->HISoftware.c[0]);
2853
2854 //TSIG: Resource Record Name + base size + RDATA
2855 // RDATA:
2856 // Algorithm name: hmac-md5.sig-alg.reg.int (8+7+3+3 + 5 bytes for length = 26 bytes)
2857 // Time: 6 bytes
2858 // Fudge: 2 bytes
2859 // Mac Size: 2 bytes
2860 // Mac: 16 bytes
2861 // ID: 2 bytes
2862 // Error: 2 bytes
2863 // Len: 2 bytes
2864 // Total: 58 bytes
2865 tsigSize = 0;
2866 if (AuthInfo) tsigSize = DomainNameLength(&AuthInfo->keyname) + rr_base_size + 58;
2867
2868 return (leaseSize + hinfoSize + tsigSize);
2869 }
2870
2871 //Note: Make sure that RREstimatedSize is updated accordingly if anything that is done here
2872 //would modify rdlength/rdestimate
2873 mDNSlocal mDNSu8* BuildUpdateMessage(mDNS *const m, mDNSu8 *ptr, AuthRecord *rr, mDNSu8 *limit)
2874 {
2875 //If this record is deregistering, then just send the deletion record
2876 if (rr->state == regState_DeregPending)
2877 {
2878 rr->expire = 0; // Indicate that we have no active registration any more
2879 ptr = putDeletionRecordWithLimit(&m->omsg, ptr, &rr->resrec, limit);
2880 if (!ptr) goto exit;
2881 return ptr;
2882 }
2883
2884 // This is a common function to both sending an update in a group or individual
2885 // records separately. Hence, we change the state here.
2886 if (rr->state == regState_Registered) rr->state = regState_Refresh;
2887 if (rr->state != regState_Refresh && rr->state != regState_UpdatePending)
2888 rr->state = regState_Pending;
2889
2890 // For Advisory records like e.g., _services._dns-sd, which is shared, don't send goodbyes as multiple
2891 // host might be registering records and deregistering from one does not make sense
2892 if (rr->resrec.RecordType != kDNSRecordTypeAdvisory) rr->RequireGoodbye = mDNStrue;
2893
2894 if ((rr->resrec.rrtype == kDNSType_SRV) && (rr->AutoTarget == Target_AutoHostAndNATMAP) &&
2895 !mDNSIPPortIsZero(rr->NATinfo.ExternalPort))
2896 {
2897 rr->resrec.rdata->u.srv.port = rr->NATinfo.ExternalPort;
2898 }
2899
2900 if (rr->state == regState_UpdatePending)
2901 {
2902 // delete old RData
2903 SetNewRData(&rr->resrec, rr->OrigRData, rr->OrigRDLen);
2904 if (!(ptr = putDeletionRecordWithLimit(&m->omsg, ptr, &rr->resrec, limit))) goto exit; // delete old rdata
2905
2906 // add new RData
2907 SetNewRData(&rr->resrec, rr->InFlightRData, rr->InFlightRDLen);
2908 if (!(ptr = PutResourceRecordTTLWithLimit(&m->omsg, ptr, &m->omsg.h.mDNS_numUpdates, &rr->resrec, rr->resrec.rroriginalttl, limit))) goto exit;
2909 }
2910 else
2911 {
2912 if (rr->resrec.RecordType == kDNSRecordTypeKnownUnique || rr->resrec.RecordType == kDNSRecordTypeVerified)
2913 {
2914 // KnownUnique : Delete any previous value
2915 // For Unicast registrations, we don't verify that it is unique, but set to verified and hence we want to
2916 // delete any previous value
2917 ptr = putDeleteRRSetWithLimit(&m->omsg, ptr, rr->resrec.name, rr->resrec.rrtype, limit);
2918 if (!ptr) goto exit;
2919 }
2920 else if (rr->resrec.RecordType != kDNSRecordTypeShared)
2921 {
2922 // For now don't do this, until we have the logic for intelligent grouping of individual records into logical service record sets
2923 //ptr = putPrereqNameNotInUse(rr->resrec.name, &m->omsg, ptr, end);
2924 if (!ptr) goto exit;
2925 }
2926
2927 ptr = PutResourceRecordTTLWithLimit(&m->omsg, ptr, &m->omsg.h.mDNS_numUpdates, &rr->resrec, rr->resrec.rroriginalttl, limit);
2928 if (!ptr) goto exit;
2929 }
2930
2931 return ptr;
2932 exit:
2933 LogMsg("BuildUpdateMessage: Error formatting message for %s", ARDisplayString(m, rr));
2934 return mDNSNULL;
2935 }
2936
2937 // Called with lock held
2938 mDNSlocal void SendRecordRegistration(mDNS *const m, AuthRecord *rr)
2939 {
2940 mDNSu8 *ptr = m->omsg.data;
2941 mStatus err = mStatus_UnknownErr;
2942 mDNSu8 *limit;
2943 DomainAuthInfo *AuthInfo;
2944
2945 // For the ability to register large TXT records, we limit the single record registrations
2946 // to AbsoluteMaxDNSMessageData
2947 limit = ptr + AbsoluteMaxDNSMessageData;
2948
2949 AuthInfo = GetAuthInfoForName_internal(m, rr->resrec.name);
2950 limit -= RRAdditionalSize(m, AuthInfo);
2951
2952 mDNS_CheckLock(m);
2953
2954 if (!rr->nta || mDNSIPv4AddressIsZero(rr->nta->Addr.ip.v4))
2955 {
2956 // We never call this function when there is no zone information . Log a message if it ever happens.
2957 LogMsg("SendRecordRegistration: No Zone information, should not happen %s", ARDisplayString(m, rr));
2958 return;
2959 }
2960
2961 rr->updateid = mDNS_NewMessageID(m);
2962 InitializeDNSMessage(&m->omsg.h, rr->updateid, UpdateReqFlags);
2963
2964 // set zone
2965 ptr = putZone(&m->omsg, ptr, limit, rr->zone, mDNSOpaque16fromIntVal(rr->resrec.rrclass));
2966 if (!ptr) goto exit;
2967
2968 if (!(ptr = BuildUpdateMessage(m, ptr, rr, limit))) goto exit;
2969
2970 if (rr->uselease)
2971 {
2972 ptr = putUpdateLeaseWithLimit(&m->omsg, ptr, DEFAULT_UPDATE_LEASE, limit);
2973 if (!ptr) goto exit;
2974 }
2975 if (rr->Private)
2976 {
2977 LogInfo("SendRecordRegistration TCP %p %s", rr->tcp, ARDisplayString(m, rr));
2978 if (rr->tcp) LogInfo("SendRecordRegistration: Disposing existing TCP connection for %s", ARDisplayString(m, rr));
2979 if (rr->tcp) { DisposeTCPConn(rr->tcp); rr->tcp = mDNSNULL; }
2980 if (!rr->nta) { LogMsg("SendRecordRegistration:Private:ERROR!! nta is NULL for %s", ARDisplayString(m, rr)); return; }
2981 rr->tcp = MakeTCPConn(m, &m->omsg, ptr, kTCPSocketFlags_UseTLS, &rr->nta->Addr, rr->nta->Port, &rr->nta->Host, mDNSNULL, rr);
2982 }
2983 else
2984 {
2985 LogInfo("SendRecordRegistration UDP %s", ARDisplayString(m, rr));
2986 if (!rr->nta) { LogMsg("SendRecordRegistration:ERROR!! nta is NULL for %s", ARDisplayString(m, rr)); return; }
2987 err = mDNSSendDNSMessage(m, &m->omsg, ptr, mDNSInterface_Any, mDNSNULL, &rr->nta->Addr, rr->nta->Port, mDNSNULL, GetAuthInfoForName_internal(m, rr->resrec.name), mDNSfalse);
2988 if (err) debugf("ERROR: SendRecordRegistration - mDNSSendDNSMessage - %d", err);
2989 }
2990
2991 SetRecordRetry(m, rr, 0);
2992 return;
2993 exit:
2994 LogMsg("SendRecordRegistration: Error formatting message for %s, disabling further updates", ARDisplayString(m, rr));
2995 // Disable this record from future updates
2996 rr->state = regState_NoTarget;
2997 }
2998
2999 // Is the given record "rr" eligible for merging ?
3000 mDNSlocal mDNSBool IsRecordMergeable(mDNS *const m, AuthRecord *rr, mDNSs32 time)
3001 {
3002 DomainAuthInfo *info;
3003 (void) m; //unused
3004 // A record is eligible for merge, if the following properties are met.
3005 //
3006 // 1. uDNS Resource Record
3007 // 2. It is time to send them now
3008 // 3. It is in proper state
3009 // 4. Update zone has been resolved
3010 // 5. if DomainAuthInfo exists for the zone, it should not be soon deleted
3011 // 6. Zone information is present
3012 // 7. Update server is not zero
3013 // 8. It has a non-null zone
3014 // 9. It uses a lease option
3015 // 10. DontMerge is not set
3016 //
3017 // Following code is implemented as separate "if" statements instead of one "if" statement
3018 // is for better debugging purposes e.g., we know exactly what failed if debugging turned on.
3019
3020 if (!AuthRecord_uDNS(rr)) return mDNSfalse;
3021
3022 if (rr->LastAPTime + rr->ThisAPInterval - time > 0)
3023 { debugf("IsRecordMergeable: Time %d not reached for %s", rr->LastAPTime + rr->ThisAPInterval - m->timenow, ARDisplayString(m, rr)); return mDNSfalse; }
3024
3025 if (!rr->zone) return mDNSfalse;
3026
3027 info = GetAuthInfoForName_internal(m, rr->zone);
3028
3029 if (info && info->deltime && m->timenow - info->deltime >= 0) {debugf("IsRecordMergeable: Domain %##s will be deleted soon", info->domain.c); return mDNSfalse;}
3030
3031 if (rr->state != regState_DeregPending && rr->state != regState_Pending && rr->state != regState_Registered && rr->state != regState_Refresh && rr->state != regState_UpdatePending)
3032 { debugf("IsRecordMergeable: state %d not right %s", rr->state, ARDisplayString(m, rr)); return mDNSfalse; }
3033
3034 if (!rr->nta || mDNSIPv4AddressIsZero(rr->nta->Addr.ip.v4)) return mDNSfalse;
3035
3036 if (!rr->uselease) return mDNSfalse;
3037
3038 if (rr->mState == mergeState_DontMerge) {debugf("IsRecordMergeable Dontmerge true %s", ARDisplayString(m, rr)); return mDNSfalse;}
3039 debugf("IsRecordMergeable: Returning true for %s", ARDisplayString(m, rr));
3040 return mDNStrue;
3041 }
3042
3043 // Is the resource record "rr" eligible to merge to with "currentRR" ?
3044 mDNSlocal mDNSBool AreRecordsMergeable(mDNS *const m, AuthRecord *currentRR, AuthRecord *rr, mDNSs32 time)
3045 {
3046 // A record is eligible to merge with another record as long it is eligible for merge in itself
3047 // and it has the same zone information as the other record
3048 if (!IsRecordMergeable(m, rr, time)) return mDNSfalse;
3049
3050 if (!SameDomainName(currentRR->zone, rr->zone))
3051 { debugf("AreRecordMergeable zone mismatch current rr Zone %##s, rr zone %##s", currentRR->zone->c, rr->zone->c); return mDNSfalse; }
3052
3053 if (!mDNSSameIPv4Address(currentRR->nta->Addr.ip.v4, rr->nta->Addr.ip.v4)) return mDNSfalse;
3054
3055 if (!mDNSSameIPPort(currentRR->nta->Port, rr->nta->Port)) return mDNSfalse;
3056
3057 debugf("AreRecordsMergeable: Returning true for %s", ARDisplayString(m, rr));
3058 return mDNStrue;
3059 }
3060
3061 // If we can't build the message successfully because of problems in pre-computing
3062 // the space, we disable merging for all the current records
3063 mDNSlocal void RRMergeFailure(mDNS *const m)
3064 {
3065 AuthRecord *rr;
3066 for (rr = m->ResourceRecords; rr; rr = rr->next)
3067 {
3068 rr->mState = mergeState_DontMerge;
3069 rr->SendRNow = mDNSNULL;
3070 // Restarting the registration is much simpler than saving and restoring
3071 // the exact time
3072 ActivateUnicastRegistration(m, rr);
3073 }
3074 }
3075
3076 mDNSlocal void SendGroupRRMessage(mDNS *const m, AuthRecord *anchorRR, mDNSu8 *ptr, DomainAuthInfo *info)
3077 {
3078 mDNSu8 *limit;
3079 if (!anchorRR) {debugf("SendGroupRRMessage: Could not merge records"); return;}
3080
3081 if (info && info->AutoTunnel) limit = m->omsg.data + AbsoluteMaxDNSMessageData;
3082 else limit = m->omsg.data + NormalMaxDNSMessageData;
3083
3084 // This has to go in the additional section and hence need to be done last
3085 ptr = putUpdateLeaseWithLimit(&m->omsg, ptr, DEFAULT_UPDATE_LEASE, limit);
3086 if (!ptr)
3087 {
3088 LogMsg("SendGroupRRMessage: ERROR: Could not put lease option, failing the group registration");
3089 // if we can't put the lease, we need to undo the merge
3090 RRMergeFailure(m);
3091 return;
3092 }
3093 if (anchorRR->Private)
3094 {
3095 if (anchorRR->tcp) debugf("SendGroupRRMessage: Disposing existing TCP connection for %s", ARDisplayString(m, anchorRR));
3096 if (anchorRR->tcp) { DisposeTCPConn(anchorRR->tcp); anchorRR->tcp = mDNSNULL; }
3097 if (!anchorRR->nta) { LogMsg("SendGroupRRMessage:ERROR!! nta is NULL for %s", ARDisplayString(m, anchorRR)); return; }
3098 anchorRR->tcp = MakeTCPConn(m, &m->omsg, ptr, kTCPSocketFlags_UseTLS, &anchorRR->nta->Addr, anchorRR->nta->Port, &anchorRR->nta->Host, mDNSNULL, anchorRR);
3099 if (!anchorRR->tcp) LogInfo("SendGroupRRMessage: Cannot establish TCP connection for %s", ARDisplayString(m, anchorRR));
3100 else LogInfo("SendGroupRRMessage: Sent a group update ID: %d start %p, end %p, limit %p", mDNSVal16(m->omsg.h.id), m->omsg.data, ptr, limit);
3101 }
3102 else
3103 {
3104 mStatus err = mDNSSendDNSMessage(m, &m->omsg, ptr, mDNSInterface_Any, mDNSNULL, &anchorRR->nta->Addr, anchorRR->nta->Port, mDNSNULL, info, mDNSfalse);
3105 if (err) LogInfo("SendGroupRRMessage: Cannot send UDP message for %s", ARDisplayString(m, anchorRR));
3106 else LogInfo("SendGroupRRMessage: Sent a group UDP update ID: %d start %p, end %p, limit %p", mDNSVal16(m->omsg.h.id), m->omsg.data, ptr, limit);
3107 }
3108 return;
3109 }
3110
3111 // As we always include the zone information and the resource records contain zone name
3112 // at the end, it will get compressed. Hence, we subtract zoneSize and add two bytes for
3113 // the compression pointer
3114 mDNSlocal mDNSu32 RREstimatedSize(AuthRecord *rr, int zoneSize)
3115 {
3116 int rdlength;
3117
3118 // Note: Estimation of the record size has to mirror the logic in BuildUpdateMessage, otherwise estimation
3119 // would be wrong. Currently BuildUpdateMessage calls SetNewRData in UpdatePending case. Hence, we need
3120 // to account for that here. Otherwise, we might under estimate the size.
3121 if (rr->state == regState_UpdatePending)
3122 // old RData that will be deleted
3123 // new RData that will be added
3124 rdlength = rr->OrigRDLen + rr->InFlightRDLen;
3125 else
3126 rdlength = rr->resrec.rdestimate;
3127
3128 if (rr->state == regState_DeregPending)
3129 {
3130 debugf("RREstimatedSize: ResourceRecord %##s (%s), DomainNameLength %d, zoneSize %d, rdestimate %d",
3131 rr->resrec.name->c, DNSTypeName(rr->resrec.rrtype), DomainNameLength(rr->resrec.name), zoneSize, rdlength);
3132 return DomainNameLength(rr->resrec.name) - zoneSize + 2 + 10 + rdlength;
3133 }
3134
3135 // For SRV, TXT, AAAA etc. that are Unique/Verified, we also send a Deletion Record
3136 if (rr->resrec.RecordType == kDNSRecordTypeKnownUnique || rr->resrec.RecordType == kDNSRecordTypeVerified)
3137 {
3138 // Deletion Record: Resource Record Name + Base size (10) + 0
3139 // Record: Resource Record Name (Compressed = 2) + Base size (10) + rdestimate
3140
3141 debugf("RREstimatedSize: ResourceRecord %##s (%s), DomainNameLength %d, zoneSize %d, rdestimate %d",
3142 rr->resrec.name->c, DNSTypeName(rr->resrec.rrtype), DomainNameLength(rr->resrec.name), zoneSize, rdlength);
3143 return DomainNameLength(rr->resrec.name) - zoneSize + 2 + 10 + 2 + 10 + rdlength;
3144 }
3145 else
3146 {
3147 return DomainNameLength(rr->resrec.name) - zoneSize + 2 + 10 + rdlength;
3148 }
3149 }
3150
3151 mDNSlocal AuthRecord *MarkRRForSending(mDNS *const m)
3152 {
3153 AuthRecord *rr;
3154 AuthRecord *firstRR = mDNSNULL;
3155
3156 // Look for records that needs to be sent in the next two seconds (MERGE_DELAY_TIME is set to 1 second).
3157 // The logic is as follows.
3158 //
3159 // 1. Record 1 finishes getting zone data and its registration gets delayed by 1 second
3160 // 2. Record 2 comes 0.1 second later, finishes getting its zone data and its registration is also delayed by
3161 // 1 second which is now scheduled at 1.1 second
3162 //
3163 // By looking for 1 second into the future (m->timenow + MERGE_DELAY_TIME below does that) we have merged both
3164 // of the above records. Note that we can't look for records too much into the future as this will affect the
3165 // retry logic. The first retry is scheduled at 3 seconds. Hence, we should always look smaller than that.
3166 // Anything more than one second will affect the first retry to happen sooner.
3167 //
3168 // Note: As a side effect of looking one second into the future to facilitate merging, the retries happen
3169 // one second sooner.
3170 for (rr = m->ResourceRecords; rr; rr = rr->next)
3171 {
3172 if (!firstRR)
3173 {
3174 if (!IsRecordMergeable(m, rr, m->timenow + MERGE_DELAY_TIME)) continue;
3175 firstRR = rr;
3176 }
3177 else if (!AreRecordsMergeable(m, firstRR, rr, m->timenow + MERGE_DELAY_TIME)) continue;
3178
3179 if (rr->SendRNow) LogMsg("MarkRRForSending: Resourcerecord %s already marked for sending", ARDisplayString(m, rr));
3180 rr->SendRNow = uDNSInterfaceMark;
3181 }
3182
3183 // We parsed through all records and found something to send. The services/records might
3184 // get registered at different times but we want the refreshes to be all merged and sent
3185 // as one update. Hence, we accelerate some of the records so that they will sync up in
3186 // the future. Look at the records excluding the ones that we have already sent in the
3187 // previous pass. If it half way through its scheduled refresh/retransmit, merge them
3188 // into this packet.
3189 //
3190 // Note that we only look at Registered/Refresh state to keep it simple. As we don't know
3191 // whether the current update will fit into one or more packets, merging a resource record
3192 // (which is in a different state) that has been scheduled for retransmit would trigger
3193 // sending more packets.
3194 if (firstRR)
3195 {
3196 int acc = 0;
3197 for (rr = m->ResourceRecords; rr; rr = rr->next)
3198 {
3199 if ((rr->state != regState_Registered && rr->state != regState_Refresh) ||
3200 (rr->SendRNow == uDNSInterfaceMark) ||
3201 (!AreRecordsMergeable(m, firstRR, rr, m->timenow + rr->ThisAPInterval/2)))
3202 continue;
3203 rr->SendRNow = uDNSInterfaceMark;
3204 acc++;
3205 }
3206 if (acc) LogInfo("MarkRRForSending: Accelereated %d records", acc);
3207 }
3208 return firstRR;
3209 }
3210
3211 mDNSlocal mDNSBool SendGroupUpdates(mDNS *const m)
3212 {
3213 mDNSOpaque16 msgid;
3214 mDNSs32 spaceleft = 0;
3215 mDNSs32 zoneSize, rrSize;
3216 mDNSu8 *oldnext; // for debugging
3217 mDNSu8 *next = m->omsg.data;
3218 AuthRecord *rr;
3219 AuthRecord *anchorRR = mDNSNULL;
3220 int nrecords = 0;
3221 AuthRecord *startRR = m->ResourceRecords;
3222 mDNSu8 *limit = mDNSNULL;
3223 DomainAuthInfo *AuthInfo = mDNSNULL;
3224 mDNSBool sentallRecords = mDNStrue;
3225
3226
3227 // We try to fit as many ResourceRecords as possible in AbsoluteNormal/MaxDNSMessageData. Before we start
3228 // putting in resource records, we need to reserve space for a few things. Every group/packet should
3229 // have the following.
3230 //
3231 // 1) Needs space for the Zone information (which needs to be at the beginning)
3232 // 2) Additional section MUST have space for lease option, HINFO and TSIG option (which needs to
3233 // to be at the end)
3234 //
3235 // In future we need to reserve space for the pre-requisites which also goes at the beginning.
3236 // To accomodate pre-requisites in the future, first we walk the whole list marking records
3237 // that can be sent in this packet and computing the space needed for these records.
3238 // For TXT and SRV records, we delete the previous record if any by sending the same
3239 // resource record with ANY RDATA and zero rdlen. Hence, we need to have space for both of them.
3240
3241 while (startRR)
3242 {
3243 AuthInfo = mDNSNULL;
3244 anchorRR = mDNSNULL;
3245 nrecords = 0;
3246 zoneSize = 0;
3247 for (rr = startRR; rr; rr = rr->next)
3248 {
3249 if (rr->SendRNow != uDNSInterfaceMark) continue;
3250
3251 rr->SendRNow = mDNSNULL;
3252
3253 if (!anchorRR)
3254 {
3255 AuthInfo = GetAuthInfoForName_internal(m, rr->zone);
3256
3257 // Though we allow single record registrations for UDP to be AbsoluteMaxDNSMessageData (See
3258 // SendRecordRegistration) to handle large TXT records, to avoid fragmentation we limit UDP
3259 // message to NormalMaxDNSMessageData
3260 if (AuthInfo && AuthInfo->AutoTunnel) spaceleft = AbsoluteMaxDNSMessageData;
3261 else spaceleft = NormalMaxDNSMessageData;
3262
3263 next = m->omsg.data;
3264 spaceleft -= RRAdditionalSize(m, AuthInfo);
3265 if (spaceleft <= 0)
3266 {
3267 LogMsg("SendGroupUpdates: ERROR!!: spaceleft is zero at the beginning");
3268 RRMergeFailure(m);
3269 return mDNSfalse;
3270 }
3271 limit = next + spaceleft;
3272
3273 // Build the initial part of message before putting in the other records
3274 msgid = mDNS_NewMessageID(m);
3275 InitializeDNSMessage(&m->omsg.h, msgid, UpdateReqFlags);
3276
3277 // We need zone information at the beginning of the packet. Length: ZNAME, ZTYPE(2), ZCLASS(2)
3278 // zone has to be non-NULL for a record to be mergeable, hence it is safe to set/ examine zone
3279 //without checking for NULL.
3280 zoneSize = DomainNameLength(rr->zone) + 4;
3281 spaceleft -= zoneSize;
3282 if (spaceleft <= 0)
3283 {
3284 LogMsg("SendGroupUpdates: ERROR no space for zone information, disabling merge");
3285 RRMergeFailure(m);
3286 return mDNSfalse;
3287 }
3288 next = putZone(&m->omsg, next, limit, rr->zone, mDNSOpaque16fromIntVal(rr->resrec.rrclass));
3289 if (!next)
3290 {
3291 LogMsg("SendGroupUpdates: ERROR! Cannot put zone, disabling merge");
3292 RRMergeFailure(m);
3293 return mDNSfalse;
3294 }
3295 anchorRR = rr;
3296 }
3297
3298 rrSize = RREstimatedSize(rr, zoneSize - 4);
3299
3300 if ((spaceleft - rrSize) < 0)
3301 {
3302 // If we can't fit even a single message, skip it, it will be sent separately
3303 // in CheckRecordUpdates
3304 if (!nrecords)
3305 {
3306 LogInfo("SendGroupUpdates: Skipping message %s, spaceleft %d, rrSize %d", ARDisplayString(m, rr), spaceleft, rrSize);
3307 // Mark this as not sent so that the caller knows about it
3308 rr->SendRNow = uDNSInterfaceMark;
3309 // We need to remove the merge delay so that we can send it immediately
3310 rr->ThisAPInterval = INIT_RECORD_REG_INTERVAL;
3311 rr->LastAPTime = m->timenow - INIT_RECORD_REG_INTERVAL;
3312 rr = rr->next;
3313 anchorRR = mDNSNULL;
3314 sentallRecords = mDNSfalse;
3315 }
3316 else
3317 {
3318 LogInfo("SendGroupUpdates:1: Parsed %d records and sending using %s, spaceleft %d, rrSize %d", nrecords, ARDisplayString(m, anchorRR), spaceleft, rrSize);
3319 SendGroupRRMessage(m, anchorRR, next, AuthInfo);
3320 }
3321 break; // breaks out of for loop
3322 }
3323 spaceleft -= rrSize;
3324 oldnext = next;
3325 LogInfo("SendGroupUpdates: Building a message with resource record %s, next %p, state %d, ttl %d", ARDisplayString(m, rr), next, rr->state, rr->resrec.rroriginalttl);
3326 if (!(next = BuildUpdateMessage(m, next, rr, limit)))
3327 {
3328 // We calculated the space and if we can't fit in, we had some bug in the calculation,
3329 // disable merge completely.
3330 LogMsg("SendGroupUpdates: ptr NULL while building message with %s", ARDisplayString(m, rr));
3331 RRMergeFailure(m);
3332 return mDNSfalse;
3333 }
3334 // If our estimate was higher, adjust to the actual size
3335 if ((next - oldnext) > rrSize)
3336 LogMsg("SendGroupUpdates: ERROR!! Record size estimation is wrong for %s, Estimate %d, Actual %d, state %d", ARDisplayString(m, rr), rrSize, next - oldnext, rr->state);
3337 else { spaceleft += rrSize; spaceleft -= (next - oldnext); }
3338
3339 nrecords++;
3340 // We could have sent an update earlier with this "rr" as anchorRR for which we never got a response.
3341 // To preserve ordering, we blow away the previous connection before sending this.
3342 if (rr->tcp) { DisposeTCPConn(rr->tcp); rr->tcp = mDNSNULL;}
3343 rr->updateid = msgid;
3344
3345 // By setting the retry time interval here, we will not be looking at these records
3346 // again when we return to CheckGroupRecordUpdates.
3347 SetRecordRetry(m, rr, 0);
3348 }
3349 // Either we have parsed all the records or stopped at "rr" above due to lack of space
3350 startRR = rr;
3351 }
3352
3353 if (anchorRR)
3354 {
3355 LogInfo("SendGroupUpdates: Parsed %d records and sending using %s", nrecords, ARDisplayString(m, anchorRR));
3356 SendGroupRRMessage(m, anchorRR, next, AuthInfo);
3357 }
3358 return sentallRecords;
3359 }
3360
3361 // Merge the record registrations and send them as a group only if they
3362 // have same DomainAuthInfo and hence the same key to put the TSIG
3363 mDNSlocal void CheckGroupRecordUpdates(mDNS *const m)
3364 {
3365 AuthRecord *rr, *nextRR;
3366 // Keep sending as long as there is at least one record to be sent
3367 while (MarkRRForSending(m))
3368 {
3369 if (!SendGroupUpdates(m))
3370 {
3371 // if everything that was marked was not sent, send them out individually
3372 for (rr = m->ResourceRecords; rr; rr = nextRR)
3373 {
3374 // SendRecordRegistrtion might delete the rr from list, hence
3375 // dereference nextRR before calling the function
3376 nextRR = rr->next;
3377 if (rr->SendRNow == uDNSInterfaceMark)
3378 {
3379 // Any records marked for sending should be eligible to be sent out
3380 // immediately. Just being cautious
3381 if (rr->LastAPTime + rr->ThisAPInterval - m->timenow > 0)
3382 { LogMsg("CheckGroupRecordUpdates: ERROR!! Resourcerecord %s not ready", ARDisplayString(m, rr)); continue; }
3383 rr->SendRNow = mDNSNULL;
3384 SendRecordRegistration(m, rr);
3385 }
3386 }
3387 }
3388 }
3389
3390 debugf("CheckGroupRecordUpdates: No work, returning");
3391 return;
3392 }
3393
3394 mDNSlocal void hndlSRVChanged(mDNS *const m, AuthRecord *rr)
3395 {
3396 // Reevaluate the target always as NAT/Target could have changed while
3397 // we were registering/deeregistering
3398 domainname *dt;
3399 const domainname *target = GetServiceTarget(m, rr);
3400 if (!target || target->c[0] == 0)
3401 {
3402 // we don't have a target, if we just derregistered, then we don't have to do anything
3403 if (rr->state == regState_DeregPending)
3404 {
3405 LogInfo("hndlSRVChanged: SRVChanged, No Target, SRV Deregistered for %##s, state %d", rr->resrec.name->c,
3406 rr->state);
3407 rr->SRVChanged = mDNSfalse;
3408 dt = GetRRDomainNameTarget(&rr->resrec);
3409 if (dt) dt->c[0] = 0;
3410 rr->state = regState_NoTarget; // Wait for the next target change
3411 rr->resrec.rdlength = rr->resrec.rdestimate = 0;
3412 return;
3413 }
3414
3415 // we don't have a target, if we just registered, we need to deregister
3416 if (rr->state == regState_Pending)
3417 {
3418 LogInfo("hndlSRVChanged: SRVChanged, No Target, Deregistering again %##s, state %d", rr->resrec.name->c, rr->state);
3419 rr->ThisAPInterval = INIT_RECORD_REG_INTERVAL;
3420 rr->LastAPTime = m->timenow - INIT_RECORD_REG_INTERVAL;
3421 rr->state = regState_DeregPending;
3422 return;
3423 }
3424 LogInfo("hndlSRVChanged: Not in DeregPending or RegPending state %##s, state %d", rr->resrec.name->c, rr->state);
3425 }
3426 else
3427 {
3428 // If we were in registered state and SRV changed to NULL, we deregister and come back here
3429 // if we have a target, we need to register again.
3430 //
3431 // if we just registered check to see if it is same. If it is different just re-register the
3432 // SRV and its assoicated records
3433 //
3434 // UpdateOneSRVRecord takes care of re-registering all service records
3435 if ((rr->state == regState_DeregPending) ||
3436 (rr->state == regState_Pending && !SameDomainName(target, &rr->resrec.rdata->u.srv.target)))
3437 {
3438 dt = GetRRDomainNameTarget(&rr->resrec);
3439 if (dt) dt->c[0] = 0;
3440 rr->state = regState_NoTarget; // NoTarget will allow us to pick up new target OR nat traversal state
3441 rr->resrec.rdlength = rr->resrec.rdestimate = 0;
3442 LogInfo("hndlSRVChanged: SRVChanged, Valid Target %##s, Registering all records for %##s, state %d",
3443 target->c, rr->resrec.name->c, rr->state);
3444 rr->SRVChanged = mDNSfalse;
3445 UpdateOneSRVRecord(m, rr);
3446 return;
3447 }
3448 // Target did not change while this record was registering. Hence, we go to
3449 // Registered state - the state we started from.
3450 if (rr->state == regState_Pending) rr->state = regState_Registered;
3451 }
3452
3453 rr->SRVChanged = mDNSfalse;
3454 }
3455
3456 // Called with lock held
3457 mDNSlocal void hndlRecordUpdateReply(mDNS *m, AuthRecord *rr, mStatus err, mDNSu32 random)
3458 {
3459 mDNSBool InvokeCallback = mDNStrue;
3460 mDNSIPPort UpdatePort = zeroIPPort;
3461
3462 mDNS_CheckLock(m);
3463
3464 LogInfo("hndlRecordUpdateReply: err %d ID %d state %d %s(%p)", err, mDNSVal16(rr->updateid), rr->state, ARDisplayString(m, rr), rr);
3465
3466 rr->updateError = err;
3467 #if APPLE_OSX_mDNSResponder
3468 if (err == mStatus_BadSig || err == mStatus_BadKey || err == mStatus_BadTime) UpdateAutoTunnelDomainStatuses(m);
3469 #endif
3470
3471 SetRecordRetry(m, rr, random);
3472
3473 rr->updateid = zeroID; // Make sure that this is not considered as part of a group anymore
3474 // Later when need to send an update, we will get the zone data again. Thus we avoid
3475 // using stale information.
3476 //
3477 // Note: By clearing out the zone info here, it also helps better merging of records
3478 // in some cases. For example, when we get out regState_NoTarget state e.g., move out
3479 // of Double NAT, we want all the records to be in one update. Some BTMM records like
3480 // _autotunnel6 and host records are registered/deregistered when NAT state changes.
3481 // As they are re-registered the zone information is cleared out. To merge with other
3482 // records that might be possibly going out, clearing out the information here helps
3483 // as all of them try to get the zone data.
3484 if (rr->nta)
3485 {
3486 // We always expect the question to be stopped when we get a valid response from the server.
3487 // If the zone info tries to change during this time, updateid would be different and hence
3488 // this response should not have been accepted.
3489 if (rr->nta->question.ThisQInterval != -1)
3490 LogMsg("hndlRecordUpdateReply: ResourceRecord %s, zone info question %##s (%s) interval %d not -1",
3491 ARDisplayString(m, rr), rr->nta->question.qname.c, DNSTypeName(rr->nta->question.qtype), rr->nta->question.ThisQInterval);
3492 UpdatePort = rr->nta->Port;
3493 CancelGetZoneData(m, rr->nta);
3494 rr->nta = mDNSNULL;
3495 }
3496
3497 // If we are deregistering the record, then complete the deregistration. Ignore any NAT/SRV change
3498 // that could have happened during that time.
3499 if (rr->resrec.RecordType == kDNSRecordTypeDeregistering && rr->state == regState_DeregPending)
3500 {
3501 debugf("hndlRecordUpdateReply: Received reply for deregister record %##s type %d", rr->resrec.name->c, rr->resrec.rrtype);
3502 if (err) LogMsg("ERROR: Deregistration of record %##s type %d failed with error %d",
3503 rr->resrec.name->c, rr->resrec.rrtype, err);
3504 rr->state = regState_Unregistered;
3505 CompleteDeregistration(m, rr);
3506 return;
3507 }
3508
3509 // We are returning early without updating the state. When we come back from sleep we will re-register after
3510 // re-initializing all the state as though it is a first registration. If the record can't be registered e.g.,
3511 // no target, it will be deregistered. Hence, the updating to the right state should not matter when going
3512 // to sleep.
3513 if (m->SleepState)
3514 {
3515 // Need to set it to NoTarget state so that RecordReadyForSleep knows that
3516 // we are done
3517 if (rr->resrec.rrtype == kDNSType_SRV && rr->state == regState_DeregPending)
3518 rr->state = regState_NoTarget;
3519 return;
3520 }
3521
3522 if (rr->state == regState_UpdatePending)
3523 {
3524 if (err) LogMsg("Update record failed for %##s (err %d)", rr->resrec.name->c, err);
3525 rr->state = regState_Registered;
3526 // deallocate old RData
3527 if (rr->UpdateCallback) rr->UpdateCallback(m, rr, rr->OrigRData, rr->OrigRDLen);
3528 SetNewRData(&rr->resrec, rr->InFlightRData, rr->InFlightRDLen);
3529 rr->OrigRData = mDNSNULL;
3530 rr->InFlightRData = mDNSNULL;
3531 }
3532
3533 if (rr->SRVChanged)
3534 {
3535 if (rr->resrec.rrtype == kDNSType_SRV)
3536 hndlSRVChanged(m, rr);
3537 else
3538 {
3539 LogInfo("hndlRecordUpdateReply: Deregistered %##s (%s), state %d", rr->resrec.name->c, DNSTypeName(rr->resrec.rrtype), rr->state);
3540 rr->SRVChanged = mDNSfalse;
3541 if (rr->state != regState_DeregPending) LogMsg("hndlRecordUpdateReply: ResourceRecord %s not in DeregPending state %d", ARDisplayString(m, rr), rr->state);
3542 rr->state = regState_NoTarget; // Wait for the next target change
3543 }
3544 return;
3545 }
3546
3547 if (rr->state == regState_Pending || rr->state == regState_Refresh)
3548 {
3549 if (!err)
3550 {
3551 if (rr->state == regState_Refresh) InvokeCallback = mDNSfalse;
3552 rr->state = regState_Registered;
3553 }
3554 else
3555 {
3556 // Retry without lease only for non-Private domains
3557 LogMsg("hndlRecordUpdateReply: Registration of record %##s type %d failed with error %d", rr->resrec.name->c, rr->resrec.rrtype, err);
3558 if (!rr->Private && rr->uselease && err == mStatus_UnknownErr && mDNSSameIPPort(UpdatePort, UnicastDNSPort))
3559 {
3560 LogMsg("hndlRecordUpdateReply: Will retry update of record %##s without lease option", rr->resrec.name->c);
3561 rr->uselease = mDNSfalse;
3562 rr->ThisAPInterval = INIT_RECORD_REG_INTERVAL;
3563 rr->LastAPTime = m->timenow - INIT_RECORD_REG_INTERVAL;
3564 SetNextuDNSEvent(m, rr);
3565 return;
3566 }
3567 // Communicate the error to the application in the callback below
3568 }
3569 }
3570
3571 if (rr->QueuedRData && rr->state == regState_Registered)
3572 {
3573 rr->state = regState_UpdatePending;
3574 rr->InFlightRData = rr->QueuedRData;
3575 rr->InFlightRDLen = rr->QueuedRDLen;
3576 rr->OrigRData = rr->resrec.rdata;
3577 rr->OrigRDLen = rr->resrec.rdlength;
3578 rr->QueuedRData = mDNSNULL;
3579 rr->ThisAPInterval = INIT_RECORD_REG_INTERVAL;
3580 rr->LastAPTime = m->timenow - INIT_RECORD_REG_INTERVAL;
3581 SetNextuDNSEvent(m, rr);
3582 return;
3583 }
3584
3585 // Don't invoke the callback on error as this may not be useful to the client.
3586 // The client may potentially delete the resource record on error which we normally
3587 // delete during deregistration
3588 if (!err && InvokeCallback && rr->RecordCallback)
3589 {
3590 LogInfo("hndlRecordUpdateReply: Calling record callback on %##s", rr->resrec.name->c);
3591 mDNS_DropLockBeforeCallback();
3592 rr->RecordCallback(m, rr, err);
3593 mDNS_ReclaimLockAfterCallback();
3594 }
3595 // CAUTION: MUST NOT do anything more with rr after calling rr->Callback(), because the client's callback function
3596 // is allowed to do anything, including starting/stopping queries, registering/deregistering records, etc.
3597 }
3598
3599 mDNSlocal void uDNS_ReceiveNATPMPPacket(mDNS *m, const mDNSInterfaceID InterfaceID, mDNSu8 *pkt, mDNSu16 len)
3600 {
3601 NATTraversalInfo *ptr;
3602 NATAddrReply *AddrReply = (NATAddrReply *)pkt;
3603 NATPortMapReply *PortMapReply = (NATPortMapReply *)pkt;
3604 mDNSu32 nat_elapsed, our_elapsed;
3605
3606 // Minimum NAT-PMP packet is vers (1) opcode (1) + err (2) = 4 bytes
3607 if (len < 4) { LogMsg("NAT-PMP message too short (%d bytes)", len); return; }
3608
3609 // Read multi-byte error value (field is identical in a NATPortMapReply)
3610 AddrReply->err = (mDNSu16) ((mDNSu16)pkt[2] << 8 | pkt[3]);
3611
3612 if (AddrReply->err == NATErr_Vers)
3613 {
3614 NATTraversalInfo *n;
3615 LogInfo("NAT-PMP version unsupported message received");
3616 for (n = m->NATTraversals; n; n=n->next)
3617 {
3618 // Send a NAT-PMP request for this operation as needed
3619 // and update the state variables
3620 uDNS_SendNATMsg(m, n, mDNSfalse);
3621 }
3622
3623 m->NextScheduledNATOp = m->timenow;
3624
3625 return;
3626 }
3627
3628 // The minimum reasonable NAT-PMP packet length is vers (1) + opcode (1) + err (2) + upseconds (4) = 8 bytes
3629 // If it's not at least this long, bail before we byte-swap the upseconds field & overrun our buffer.
3630 // The retry timer will ensure we converge to correctness.
3631 if (len < 8)
3632 {
3633 LogMsg("NAT-PMP message too short (%d bytes) 0x%X 0x%X", len, AddrReply->opcode, AddrReply->err);
3634 return;
3635 }
3636
3637 // Read multi-byte upseconds value (field is identical in a NATPortMapReply)
3638 AddrReply->upseconds = (mDNSs32) ((mDNSs32)pkt[4] << 24 | (mDNSs32)pkt[5] << 16 | (mDNSs32)pkt[6] << 8 | pkt[7]);
3639
3640 nat_elapsed = AddrReply->upseconds - m->LastNATupseconds;
3641 our_elapsed = (m->timenow - m->LastNATReplyLocalTime) / mDNSPlatformOneSecond;
3642 debugf("uDNS_ReceiveNATPMPPacket %X upseconds %u nat_elapsed %d our_elapsed %d", AddrReply->opcode, AddrReply->upseconds, nat_elapsed, our_elapsed);
3643
3644 // We compute a conservative estimate of how much the NAT gateways's clock should have advanced
3645 // 1. We subtract 12.5% from our own measured elapsed time, to allow for NAT gateways that have an inacurate clock that runs slowly
3646 // 2. We add a two-second safety margin to allow for rounding errors: e.g.
3647 // -- if NAT gateway sends a packet at t=2.000 seconds, then one at t=7.999, that's approximately 6 real seconds,
3648 // but based on the values in the packet (2,7) the apparent difference according to the packet is only 5 seconds
3649 // -- if we're slow handling packets and/or we have coarse clock granularity,
3650 // we could receive the t=2 packet at our t=1.999 seconds, which we round down to 1
3651 // and the t=7.999 packet at our t=8.000 seconds, which we record as 8,
3652 // giving an apparent local time difference of 7 seconds
3653 // The two-second safety margin coves this possible calculation discrepancy
3654 if (AddrReply->upseconds < m->LastNATupseconds || nat_elapsed + 2 < our_elapsed - our_elapsed/8)
3655 { LogMsg("NAT-PMP epoch time check failed: assuming NAT gateway %#a rebooted", &m->Router); RecreateNATMappings(m, 0); }
3656
3657 m->LastNATupseconds = AddrReply->upseconds;
3658 m->LastNATReplyLocalTime = m->timenow;
3659 #ifdef _LEGACY_NAT_TRAVERSAL_
3660 LNT_ClearState(m);
3661 #endif // _LEGACY_NAT_TRAVERSAL_
3662
3663 if (AddrReply->opcode == NATOp_AddrResponse)
3664 {
3665 #if APPLE_OSX_mDNSResponder
3666 static char msgbuf[16];
3667 mDNS_snprintf(msgbuf, sizeof(msgbuf), "%d", AddrReply->err);
3668 mDNSASLLog((uuid_t *)&m->asl_uuid, "natt.natpmp.AddressRequest", AddrReply->err ? "failure" : "success", msgbuf, "");
3669 #endif
3670 if (!AddrReply->err && len < sizeof(NATAddrReply)) { LogMsg("NAT-PMP AddrResponse message too short (%d bytes)", len); return; }
3671 natTraversalHandleAddressReply(m, AddrReply->err, AddrReply->ExtAddr);
3672 }
3673 else if (AddrReply->opcode == NATOp_MapUDPResponse || AddrReply->opcode == NATOp_MapTCPResponse)
3674 {
3675 mDNSu8 Protocol = AddrReply->opcode & 0x7F;
3676 #if APPLE_OSX_mDNSResponder
3677 static char msgbuf[16];
3678 mDNS_snprintf(msgbuf, sizeof(msgbuf), "%s - %d", AddrReply->opcode == NATOp_MapUDPResponse ? "UDP" : "TCP", PortMapReply->err);
3679 mDNSASLLog((uuid_t *)&m->asl_uuid, "natt.natpmp.PortMapRequest", PortMapReply->err ? "failure" : "success", msgbuf, "");
3680 #endif
3681 if (!PortMapReply->err)
3682 {
3683 if (len < sizeof(NATPortMapReply)) { LogMsg("NAT-PMP PortMapReply message too short (%d bytes)", len); return; }
3684 PortMapReply->NATRep_lease = (mDNSu32) ((mDNSu32)pkt[12] << 24 | (mDNSu32)pkt[13] << 16 | (mDNSu32)pkt[14] << 8 | pkt[15]);
3685 }
3686
3687 // Since some NAT-PMP server implementations don't return the requested internal port in
3688 // the reply, we can't associate this reply with a particular NATTraversalInfo structure.
3689 // We globally keep track of the most recent error code for mappings.
3690 m->LastNATMapResultCode = PortMapReply->err;
3691
3692 for (ptr = m->NATTraversals; ptr; ptr=ptr->next)
3693 if (ptr->Protocol == Protocol && mDNSSameIPPort(ptr->IntPort, PortMapReply->intport))
3694 natTraversalHandlePortMapReply(m, ptr, InterfaceID, PortMapReply->err, PortMapReply->extport, PortMapReply->NATRep_lease, NATTProtocolNATPMP);
3695 }
3696 else { LogMsg("Received NAT-PMP response with unknown opcode 0x%X", AddrReply->opcode); return; }
3697
3698 // Don't need an SSDP socket if we get a NAT-PMP packet
3699 if (m->SSDPSocket) { debugf("uDNS_ReceiveNATPMPPacket destroying SSDPSocket %p", &m->SSDPSocket); mDNSPlatformUDPClose(m->SSDPSocket); m->SSDPSocket = mDNSNULL; }
3700 }
3701
3702 mDNSlocal void uDNS_ReceivePCPPacket(mDNS *m, const mDNSInterfaceID InterfaceID, mDNSu8 *pkt, mDNSu16 len)
3703 {
3704 NATTraversalInfo *ptr;
3705 PCPMapReply *reply = (PCPMapReply*)pkt;
3706 mDNSu32 client_delta, server_delta;
3707 mDNSBool checkEpochValidity = m->LastNATupseconds != 0;
3708 mDNSu8 strippedOpCode;
3709 mDNSv4Addr mappedAddress = zerov4Addr;
3710 mDNSu8 protocol = 0;
3711 mDNSIPPort intport = zeroIPPort;
3712 mDNSIPPort extport = zeroIPPort;
3713
3714 // Minimum PCP packet is 24 bytes
3715 if (len < 24)
3716 {
3717 LogMsg("uDNS_ReceivePCPPacket: message too short (%d bytes)", len);
3718 return;
3719 }
3720
3721 strippedOpCode = reply->opCode & 0x7f;
3722
3723 if ((reply->opCode & 0x80) == 0x00 || (strippedOpCode != PCPOp_Announce && strippedOpCode != PCPOp_Map))
3724 {
3725 LogMsg("uDNS_ReceivePCPPacket: unhandled opCode %u", reply->opCode);
3726 return;
3727 }
3728
3729 // Read multi-byte values
3730 reply->lifetime = (mDNSs32)((mDNSs32)pkt[4] << 24 | (mDNSs32)pkt[5] << 16 | (mDNSs32)pkt[ 6] << 8 | pkt[ 7]);
3731 reply->epoch = (mDNSs32)((mDNSs32)pkt[8] << 24 | (mDNSs32)pkt[9] << 16 | (mDNSs32)pkt[10] << 8 | pkt[11]);
3732
3733 client_delta = (m->timenow - m->LastNATReplyLocalTime) / mDNSPlatformOneSecond;
3734 server_delta = reply->epoch - m->LastNATupseconds;
3735 debugf("uDNS_ReceivePCPPacket: %X %X upseconds %u client_delta %d server_delta %d", reply->opCode, reply->result, reply->epoch, client_delta, server_delta);
3736
3737 // If seconds since the epoch is 0, use 1 so we'll check epoch validity next time
3738 m->LastNATupseconds = reply->epoch ? reply->epoch : 1;
3739 m->LastNATReplyLocalTime = m->timenow;
3740
3741 #ifdef _LEGACY_NAT_TRAVERSAL_
3742 LNT_ClearState(m);
3743 #endif // _LEGACY_NAT_TRAVERSAL_
3744
3745 // Don't need an SSDP socket if we get a PCP packet
3746 if (m->SSDPSocket) { debugf("uDNS_ReceivePCPPacket: destroying SSDPSocket %p", &m->SSDPSocket); mDNSPlatformUDPClose(m->SSDPSocket); m->SSDPSocket = mDNSNULL; }
3747
3748 if (checkEpochValidity && (client_delta + 2 < server_delta - server_delta / 16 || server_delta + 2 < client_delta - client_delta / 16))
3749 {
3750 // If this is an ANNOUNCE packet, wait a random interval up to 5 seconds
3751 // otherwise, refresh immediately
3752 mDNSu32 waitTicks = strippedOpCode ? 0 : mDNSRandom(PCP_WAITSECS_AFTER_EPOCH_INVALID * mDNSPlatformOneSecond);
3753 LogMsg("uDNS_ReceivePCPPacket: Epoch invalid, %#a likely rebooted, waiting %u ticks", &m->Router, waitTicks);
3754 RecreateNATMappings(m, waitTicks);
3755 // we can ignore the rest of this packet, as new requests are about to go out
3756 return;
3757 }
3758
3759 if (strippedOpCode == PCPOp_Announce)
3760 return;
3761
3762 // We globally keep track of the most recent error code for mappings.
3763 // This seems bad to do with PCP, but best not change it now.
3764 m->LastNATMapResultCode = reply->result;
3765
3766 if (!reply->result)
3767 {
3768 if (len < sizeof(PCPMapReply))
3769 {
3770 LogMsg("uDNS_ReceivePCPPacket: mapping response too short (%d bytes)", len);
3771 return;
3772 }
3773
3774 // Check the nonce
3775 if (reply->nonce[0] != m->PCPNonce[0] || reply->nonce[1] != m->PCPNonce[1] || reply->nonce[2] != m->PCPNonce[2])
3776 {
3777 LogMsg("uDNS_ReceivePCPPacket: invalid nonce, ignoring. received { %x %x %x } expected { %x %x %x }",
3778 reply->nonce[0], reply->nonce[1], reply->nonce[2],
3779 m->PCPNonce[0], m->PCPNonce[1], m->PCPNonce[2]);
3780 return;
3781 }
3782
3783 // Get the values
3784 protocol = reply->protocol;
3785 intport = reply->intPort;
3786 extport = reply->extPort;
3787
3788 // Get the external address, which should be mapped, since we only support IPv4
3789 if (!mDNSAddrIPv4FromMappedIPv6(&reply->extAddress, &mappedAddress))
3790 {
3791 LogMsg("uDNS_ReceivePCPPacket: unexpected external address: %.16a", &reply->extAddress);
3792 reply->result = NATErr_NetFail;
3793 // fall through to report the error
3794 }
3795 else if (mDNSIPv4AddressIsZero(mappedAddress))
3796 {
3797 // If this is the deletion case, we will have sent the zero IPv4-mapped address
3798 // in our request, and the server should reflect it in the response, so we
3799 // should not log about receiving a zero address. And in this case, we no
3800 // longer have a NATTraversal to report errors back to, so it's ok to set the
3801 // result here.
3802 // In other cases, a zero address is an error, and we will have a NATTraversal
3803 // to report back to, so set an error and fall through to report it.
3804 // CheckNATMappings will log the error.
3805 reply->result = NATErr_NetFail;
3806 }
3807 }
3808 else
3809 {
3810 LogInfo("uDNS_ReceivePCPPacket: error received from server. opcode %X result %X lifetime %X epoch %X",
3811 reply->opCode, reply->result, reply->lifetime, reply->epoch);
3812
3813 // If the packet is long enough, get the protocol & intport for matching to report
3814 // the error
3815 if (len >= sizeof(PCPMapReply))
3816 {
3817 protocol = reply->protocol;
3818 intport = reply->intPort;
3819 }
3820 }
3821
3822 for (ptr = m->NATTraversals; ptr; ptr=ptr->next)
3823 {
3824 mDNSu8 ptrProtocol = ((ptr->Protocol & NATOp_MapTCP) == NATOp_MapTCP ? PCPProto_TCP : PCPProto_UDP);
3825 if ((protocol == ptrProtocol && mDNSSameIPPort(ptr->IntPort, intport)) ||
3826 (!ptr->Protocol && protocol == PCPProto_TCP && mDNSSameIPPort(DiscardPort, intport)))
3827 {
3828 natTraversalHandlePortMapReplyWithAddress(m, ptr, InterfaceID, reply->result ? NATErr_NetFail : NATErr_None, mappedAddress, extport, reply->lifetime, NATTProtocolPCP);
3829 }
3830 }
3831 }
3832
3833 mDNSexport void uDNS_ReceiveNATPacket(mDNS *m, const mDNSInterfaceID InterfaceID, mDNSu8 *pkt, mDNSu16 len)
3834 {
3835 if (len == 0)
3836 LogMsg("uDNS_ReceiveNATPacket: zero length packet");
3837 else if (pkt[0] == PCP_VERS)
3838 uDNS_ReceivePCPPacket(m, InterfaceID, pkt, len);
3839 else if (pkt[0] == NATMAP_VERS)
3840 uDNS_ReceiveNATPMPPacket(m, InterfaceID, pkt, len);
3841 else
3842 LogMsg("uDNS_ReceiveNATPacket: packet with version %u (expected %u or %u)", pkt[0], PCP_VERS, NATMAP_VERS);
3843 }
3844
3845 // <rdar://problem/3925163> Shorten DNS-SD queries to avoid NAT bugs
3846 // <rdar://problem/4288449> Add check to avoid crashing NAT gateways that have buggy DNS relay code
3847 //
3848 // We know of bugs in home NAT gateways that cause them to crash if they receive certain DNS queries.
3849 // The DNS queries that make them crash are perfectly legal DNS queries, but even if they weren't,
3850 // the gateway shouldn't crash -- in today's world of viruses and network attacks, software has to
3851 // be written assuming that a malicious attacker could send them any packet, properly-formed or not.
3852 // Still, we don't want to be crashing people's home gateways, so we go out of our way to avoid
3853 // the queries that crash them.
3854 //
3855 // Some examples:
3856 //
3857 // 1. Any query where the name ends in ".in-addr.arpa." and the text before this is 32 or more bytes.
3858 // The query type does not need to be PTR -- the gateway will crash for any query type.
3859 // e.g. "ping long-name-crashes-the-buggy-router.in-addr.arpa" will crash one of these.
3860 //
3861 // 2. Any query that results in a large response with the TC bit set.
3862 //
3863 // 3. Any PTR query that doesn't begin with four decimal numbers.
3864 // These gateways appear to assume that the only possible PTR query is a reverse-mapping query
3865 // (e.g. "1.0.168.192.in-addr.arpa") and if they ever get a PTR query where the first four
3866 // labels are not all decimal numbers in the range 0-255, they handle that by crashing.
3867 // These gateways also ignore the remainder of the name following the four decimal numbers
3868 // -- whether or not it actually says in-addr.arpa, they just make up an answer anyway.
3869 //
3870 // The challenge therefore is to craft a query that will discern whether the DNS server
3871 // is one of these buggy ones, without crashing it. Furthermore we don't want our test
3872 // queries making it all the way to the root name servers, putting extra load on those
3873 // name servers and giving Apple a bad reputation. To this end we send this query:
3874 // dig -t ptr 1.0.0.127.dnsbugtest.1.0.0.127.in-addr.arpa.
3875 //
3876 // The text preceding the ".in-addr.arpa." is under 32 bytes, so it won't cause crash (1).
3877 // It will not yield a large response with the TC bit set, so it won't cause crash (2).
3878 // It starts with four decimal numbers, so it won't cause crash (3).
3879 // The name falls within the "1.0.0.127.in-addr.arpa." domain, the reverse-mapping name for the local
3880 // loopback address, and therefore the query will black-hole at the first properly-configured DNS server
3881 // it reaches, making it highly unlikely that this query will make it all the way to the root.
3882 //
3883 // Finally, the correct response to this query is NXDOMAIN or a similar error, but the
3884 // gateways that ignore the remainder of the name following the four decimal numbers
3885 // give themselves away by actually returning a result for this nonsense query.
3886
3887 mDNSlocal const domainname *DNSRelayTestQuestion = (const domainname*)
3888 "\x1" "1" "\x1" "0" "\x1" "0" "\x3" "127" "\xa" "dnsbugtest"
3889 "\x1" "1" "\x1" "0" "\x1" "0" "\x3" "127" "\x7" "in-addr" "\x4" "arpa";
3890
3891 // See comments above for DNSRelayTestQuestion
3892 // If this is the kind of query that has the risk of crashing buggy DNS servers, we do a test question first
3893 mDNSlocal mDNSBool NoTestQuery(DNSQuestion *q)
3894 {
3895 int i;
3896 mDNSu8 *p = q->qname.c;
3897 if (q->AuthInfo) return(mDNStrue); // Don't need a test query for private queries sent directly to authoritative server over TLS/TCP
3898 if (q->qtype != kDNSType_PTR) return(mDNStrue); // Don't need a test query for any non-PTR queries
3899 for (i=0; i<4; i++) // If qname does not begin with num.num.num.num, can't skip the test query
3900 {
3901 if (p[0] < 1 || p[0] > 3) return(mDNSfalse);
3902 if ( p[1] < '0' || p[1] > '9' ) return(mDNSfalse);
3903 if (p[0] >= 2 && (p[2] < '0' || p[2] > '9')) return(mDNSfalse);
3904 if (p[0] >= 3 && (p[3] < '0' || p[3] > '9')) return(mDNSfalse);
3905 p += 1 + p[0];
3906 }
3907 // If remainder of qname is ".in-addr.arpa.", this is a vanilla reverse-mapping query and
3908 // we can safely do it without needing a test query first, otherwise we need the test query.
3909 return(SameDomainName((domainname*)p, (const domainname*)"\x7" "in-addr" "\x4" "arpa"));
3910 }
3911
3912 // Returns mDNStrue if response was handled
3913 mDNSlocal mDNSBool uDNS_ReceiveTestQuestionResponse(mDNS *const m, DNSMessage *const msg, const mDNSu8 *const end,
3914 const mDNSAddr *const srcaddr, const mDNSIPPort srcport)
3915 {
3916 const mDNSu8 *ptr = msg->data;
3917 DNSQuestion pktq;
3918 DNSServer *s;
3919 mDNSu32 result = 0;
3920
3921 // 1. Find out if this is an answer to one of our test questions
3922 if (msg->h.numQuestions != 1) return(mDNSfalse);
3923 ptr = getQuestion(msg, ptr, end, mDNSInterface_Any, &pktq);
3924 if (!ptr) return(mDNSfalse);
3925 if (pktq.qtype != kDNSType_PTR || pktq.qclass != kDNSClass_IN) return(mDNSfalse);
3926 if (!SameDomainName(&pktq.qname, DNSRelayTestQuestion)) return(mDNSfalse);
3927
3928 // 2. If the DNS relay gave us a positive response, then it's got buggy firmware
3929 // else, if the DNS relay gave us an error or no-answer response, it passed our test
3930 if ((msg->h.flags.b[1] & kDNSFlag1_RC_Mask) == kDNSFlag1_RC_NoErr && msg->h.numAnswers > 0)
3931 result = DNSServer_Failed;
3932 else
3933 result = DNSServer_Passed;
3934
3935 // 3. Find occurrences of this server in our list, and mark them appropriately
3936 for (s = m->DNSServers; s; s = s->next)
3937 {
3938 mDNSBool matchaddr = (s->teststate != result && mDNSSameAddress(srcaddr, &s->addr) && mDNSSameIPPort(srcport, s->port));
3939 mDNSBool matchid = (s->teststate == DNSServer_Untested && mDNSSameOpaque16(msg->h.id, s->testid));
3940 if (matchaddr || matchid)
3941 {
3942 DNSQuestion *q;
3943 s->teststate = result;
3944 if (result == DNSServer_Passed)
3945 {
3946 LogInfo("DNS Server %#a:%d (%#a:%d) %d passed%s",
3947 &s->addr, mDNSVal16(s->port), srcaddr, mDNSVal16(srcport), mDNSVal16(s->testid),
3948 matchaddr ? "" : " NOTE: Reply did not come from address to which query was sent");
3949 }
3950 else
3951 {
3952 LogMsg("NOTE: Wide-Area Service Discovery disabled to avoid crashing defective DNS relay %#a:%d (%#a:%d) %d%s",
3953 &s->addr, mDNSVal16(s->port), srcaddr, mDNSVal16(srcport), mDNSVal16(s->testid),
3954 matchaddr ? "" : " NOTE: Reply did not come from address to which query was sent");
3955 }
3956
3957 // If this server has just changed state from DNSServer_Untested to DNSServer_Passed, then retrigger any waiting questions.
3958 // We use the NoTestQuery() test so that we only retrigger questions that were actually blocked waiting for this test to complete.
3959 if (result == DNSServer_Passed) // Unblock any questions that were waiting for this result
3960 for (q = m->Questions; q; q=q->next)
3961 if (q->qDNSServer == s && !NoTestQuery(q))
3962 {
3963 q->ThisQInterval = INIT_UCAST_POLL_INTERVAL / QuestionIntervalStep;
3964 q->unansweredQueries = 0;
3965 q->LastQTime = m->timenow - q->ThisQInterval;
3966 m->NextScheduledQuery = m->timenow;
3967 }
3968 }
3969 }
3970
3971 return(mDNStrue); // Return mDNStrue to tell uDNS_ReceiveMsg it doesn't need to process this packet further
3972 }
3973
3974 // Called from mDNSCoreReceive with the lock held
3975 mDNSexport void uDNS_ReceiveMsg(mDNS *const m, DNSMessage *const msg, const mDNSu8 *const end, const mDNSAddr *const srcaddr, const mDNSIPPort srcport)
3976 {
3977 DNSQuestion *qptr;
3978 mStatus err = mStatus_NoError;
3979
3980 mDNSu8 StdR = kDNSFlag0_QR_Response | kDNSFlag0_OP_StdQuery;
3981 mDNSu8 UpdateR = kDNSFlag0_QR_Response | kDNSFlag0_OP_Update;
3982 mDNSu8 QR_OP = (mDNSu8)(msg->h.flags.b[0] & kDNSFlag0_QROP_Mask);
3983 mDNSu8 rcode = (mDNSu8)(msg->h.flags.b[1] & kDNSFlag1_RC_Mask);
3984
3985 (void)srcport; // Unused
3986
3987 debugf("uDNS_ReceiveMsg from %#-15a with "
3988 "%2d Question%s %2d Answer%s %2d Authorit%s %2d Additional%s %d bytes",
3989 srcaddr,
3990 msg->h.numQuestions, msg->h.numQuestions == 1 ? ", " : "s,",
3991 msg->h.numAnswers, msg->h.numAnswers == 1 ? ", " : "s,",
3992 msg->h.numAuthorities, msg->h.numAuthorities == 1 ? "y, " : "ies,",
3993 msg->h.numAdditionals, msg->h.numAdditionals == 1 ? "" : "s", end - msg->data);
3994
3995 if (QR_OP == StdR)
3996 {
3997 //if (srcaddr && recvLLQResponse(m, msg, end, srcaddr, srcport)) return;
3998 if (uDNS_ReceiveTestQuestionResponse(m, msg, end, srcaddr, srcport)) return;
3999 for (qptr = m->Questions; qptr; qptr = qptr->next)
4000 if (msg->h.flags.b[0] & kDNSFlag0_TC && mDNSSameOpaque16(qptr->TargetQID, msg->h.id) && m->timenow - qptr->LastQTime < RESPONSE_WINDOW)
4001 {
4002 if (!srcaddr) LogMsg("uDNS_ReceiveMsg: TCP DNS response had TC bit set: ignoring");
4003 else
4004 {
4005 // Don't reuse TCP connections. We might have failed over to a different DNS server
4006 // while the first TCP connection is in progress. We need a new TCP connection to the
4007 // new DNS server. So, always try to establish a new connection.
4008 if (qptr->tcp) { DisposeTCPConn(qptr->tcp); qptr->tcp = mDNSNULL; }
4009 qptr->tcp = MakeTCPConn(m, mDNSNULL, mDNSNULL, kTCPSocketFlags_Zero, srcaddr, srcport, mDNSNULL, qptr, mDNSNULL);
4010 }
4011 }
4012 }
4013
4014 if (QR_OP == UpdateR)
4015 {
4016 mDNSu32 lease = GetPktLease(m, msg, end);
4017 mDNSs32 expire = m->timenow + (mDNSs32)lease * mDNSPlatformOneSecond;
4018 mDNSu32 random = mDNSRandom((mDNSs32)lease * mDNSPlatformOneSecond/10);
4019
4020 //rcode = kDNSFlag1_RC_ServFail; // Simulate server failure (rcode 2)
4021
4022 // Walk through all the records that matches the messageID. There could be multiple
4023 // records if we had sent them in a group
4024 if (m->CurrentRecord)
4025 LogMsg("uDNS_ReceiveMsg ERROR m->CurrentRecord already set %s", ARDisplayString(m, m->CurrentRecord));
4026 m->CurrentRecord = m->ResourceRecords;
4027 while (m->CurrentRecord)
4028 {
4029 AuthRecord *rptr = m->CurrentRecord;
4030 m->CurrentRecord = m->CurrentRecord->next;
4031 if (AuthRecord_uDNS(rptr) && mDNSSameOpaque16(rptr->updateid, msg->h.id))
4032 {
4033 err = checkUpdateResult(m, rptr->resrec.name, rcode, msg, end);
4034 if (!err && rptr->uselease && lease)
4035 if (rptr->expire - expire >= 0 || rptr->state != regState_UpdatePending)
4036 {
4037 rptr->expire = expire;
4038 rptr->refreshCount = 0;
4039 }
4040 // We pass the random value to make sure that if we update multiple
4041 // records, they all get the same random value
4042 hndlRecordUpdateReply(m, rptr, err, random);
4043 }
4044 }
4045 }
4046 debugf("Received unexpected response: ID %d matches no active records", mDNSVal16(msg->h.id));
4047 }
4048
4049 // ***************************************************************************
4050 #if COMPILER_LIKES_PRAGMA_MARK
4051 #pragma mark - Query Routines
4052 #endif
4053
4054 mDNSexport void sendLLQRefresh(mDNS *m, DNSQuestion *q)
4055 {
4056 mDNSu8 *end;
4057 LLQOptData llq;
4058 mDNSu8 *limit = m->omsg.data + AbsoluteMaxDNSMessageData;
4059
4060 if (q->ReqLease)
4061 if ((q->state == LLQ_Established && q->ntries >= kLLQ_MAX_TRIES) || q->expire - m->timenow < 0)
4062 {
4063 LogMsg("Unable to refresh LLQ %##s (%s) - will retry in %d seconds", q->qname.c, DNSTypeName(q->qtype), LLQ_POLL_INTERVAL / mDNSPlatformOneSecond);
4064 StartLLQPolling(m,q);
4065 return;
4066 }
4067
4068 llq.vers = kLLQ_Vers;
4069 llq.llqOp = kLLQOp_Refresh;
4070 llq.err = q->tcp ? GetLLQEventPort(m, &q->servAddr) : LLQErr_NoError; // If using TCP tell server what UDP port to send notifications to
4071 llq.id = q->id;
4072 llq.llqlease = q->ReqLease;
4073
4074 InitializeDNSMessage(&m->omsg.h, q->TargetQID, uQueryFlags);
4075 end = putLLQ(&m->omsg, m->omsg.data, q, &llq);
4076 if (!end) { LogMsg("sendLLQRefresh: putLLQ failed %##s (%s)", q->qname.c, DNSTypeName(q->qtype)); return; }
4077
4078 // Note that we (conditionally) add HINFO and TSIG here, since the question might be going away,
4079 // so we may not be able to reference it (most importantly it's AuthInfo) when we actually send the message
4080 end = putHINFO(m, &m->omsg, end, q->AuthInfo, limit);
4081 if (!end) { LogMsg("sendLLQRefresh: putHINFO failed %##s (%s)", q->qname.c, DNSTypeName(q->qtype)); return; }
4082
4083 if (PrivateQuery(q))
4084 {
4085 DNSDigest_SignMessageHostByteOrder(&m->omsg, &end, q->AuthInfo);
4086 if (!end) { LogMsg("sendLLQRefresh: DNSDigest_SignMessage failed %##s (%s)", q->qname.c, DNSTypeName(q->qtype)); return; }
4087 }
4088
4089 if (PrivateQuery(q) && !q->tcp)
4090 {
4091 LogInfo("sendLLQRefresh setting up new TLS session %##s (%s)", q->qname.c, DNSTypeName(q->qtype));
4092 if (!q->nta)
4093 {
4094 // Note: If a question is in LLQ_Established state, we never free the zone data for the
4095 // question (PrivateQuery). If we free, we reset the state to something other than LLQ_Established.
4096 // This function is called only if the query is in LLQ_Established state and hence nta should
4097 // never be NULL. In spite of that, we have seen q->nta being NULL in the field. Just refetch the
4098 // zone data in that case.
4099 q->nta = StartGetZoneData(m, &q->qname, ZoneServiceLLQ, LLQGotZoneData, q);
4100 return;
4101 // ThisQInterval is not adjusted when we return from here which means that we will get called back
4102 // again immediately. As q->servAddr and q->servPort are still valid and the nta->Host is initialized
4103 // without any additional discovery for PrivateQuery, things work.
4104 }
4105 q->tcp = MakeTCPConn(m, &m->omsg, end, kTCPSocketFlags_UseTLS, &q->servAddr, q->servPort, &q->nta->Host, q, mDNSNULL);
4106 }
4107 else
4108 {
4109 mStatus err;
4110
4111 // if AuthInfo and AuthInfo->AutoTunnel is set, we use the TCP socket but don't need to pass the AuthInfo as
4112 // we already protected the message above.
4113 LogInfo("sendLLQRefresh: using existing %s session %##s (%s)", PrivateQuery(q) ? "TLS" : "UDP",
4114 q->qname.c, DNSTypeName(q->qtype));
4115
4116 err = mDNSSendDNSMessage(m, &m->omsg, end, mDNSInterface_Any, q->LocalSocket, &q->servAddr, q->servPort, q->tcp ? q->tcp->sock : mDNSNULL, mDNSNULL, mDNSfalse);
4117 if (err)
4118 {
4119 LogMsg("sendLLQRefresh: mDNSSendDNSMessage%s failed: %d", q->tcp ? " (TCP)" : "", err);
4120 if (q->tcp) { DisposeTCPConn(q->tcp); q->tcp = mDNSNULL; }
4121 }
4122 }
4123
4124 q->ntries++;
4125
4126 debugf("sendLLQRefresh ntries %d %##s (%s)", q->ntries, q->qname.c, DNSTypeName(q->qtype));
4127
4128 q->LastQTime = m->timenow;
4129 SetNextQueryTime(m, q);
4130 }
4131
4132 mDNSexport void LLQGotZoneData(mDNS *const m, mStatus err, const ZoneData *zoneInfo)
4133 {
4134 DNSQuestion *q = (DNSQuestion *)zoneInfo->ZoneDataContext;
4135
4136 mDNS_Lock(m);
4137
4138 // If we get here it means that the GetZoneData operation has completed.
4139 // We hold on to the zone data if it is AutoTunnel as we use the hostname
4140 // in zoneInfo during the TLS connection setup.
4141 q->servAddr = zeroAddr;
4142 q->servPort = zeroIPPort;
4143
4144 if (!err && zoneInfo && !mDNSIPPortIsZero(zoneInfo->Port) && !mDNSAddressIsZero(&zoneInfo->Addr) && zoneInfo->Host.c[0])
4145 {
4146 q->servAddr = zoneInfo->Addr;
4147 q->servPort = zoneInfo->Port;
4148 if (!PrivateQuery(q))
4149 {
4150 // We don't need the zone data as we use it only for the Host information which we
4151 // don't need if we are not going to use TLS connections.
4152 if (q->nta)
4153 {
4154 if (q->nta != zoneInfo) LogMsg("LLQGotZoneData: nta (%p) != zoneInfo (%p) %##s (%s)", q->nta, zoneInfo, q->qname.c, DNSTypeName(q->qtype));
4155 CancelGetZoneData(m, q->nta);
4156 q->nta = mDNSNULL;
4157 }
4158 }
4159 q->ntries = 0;
4160 debugf("LLQGotZoneData %#a:%d", &q->servAddr, mDNSVal16(q->servPort));
4161 startLLQHandshake(m, q);
4162 }
4163 else
4164 {
4165 if (q->nta)
4166 {
4167 if (q->nta != zoneInfo) LogMsg("LLQGotZoneData: nta (%p) != zoneInfo (%p) %##s (%s)", q->nta, zoneInfo, q->qname.c, DNSTypeName(q->qtype));
4168 CancelGetZoneData(m, q->nta);
4169 q->nta = mDNSNULL;
4170 }
4171 StartLLQPolling(m,q);
4172 if (err == mStatus_NoSuchNameErr)
4173 {
4174 // this actually failed, so mark it by setting address to all ones
4175 q->servAddr.type = mDNSAddrType_IPv4;
4176 q->servAddr.ip.v4 = onesIPv4Addr;
4177 }
4178 }
4179
4180 mDNS_Unlock(m);
4181 }
4182
4183 // Called in normal callback context (i.e. mDNS_busy and mDNS_reentrancy are both 1)
4184 mDNSlocal void PrivateQueryGotZoneData(mDNS *const m, mStatus err, const ZoneData *zoneInfo)
4185 {
4186 DNSQuestion *q = (DNSQuestion *) zoneInfo->ZoneDataContext;
4187
4188 LogInfo("PrivateQueryGotZoneData %##s (%s) err %d Zone %##s Private %d", q->qname.c, DNSTypeName(q->qtype), err, zoneInfo->ZoneName.c, zoneInfo->ZonePrivate);
4189
4190 if (q->nta != zoneInfo) LogMsg("PrivateQueryGotZoneData:ERROR!!: nta (%p) != zoneInfo (%p) %##s (%s)", q->nta, zoneInfo, q->qname.c, DNSTypeName(q->qtype));
4191
4192 if (err || !zoneInfo || mDNSAddressIsZero(&zoneInfo->Addr) || mDNSIPPortIsZero(zoneInfo->Port) || !zoneInfo->Host.c[0])
4193 {
4194 LogInfo("PrivateQueryGotZoneData: ERROR!! %##s (%s) invoked with error code %d %p %#a:%d",
4195 q->qname.c, DNSTypeName(q->qtype), err, zoneInfo,
4196 zoneInfo ? &zoneInfo->Addr : mDNSNULL,
4197 zoneInfo ? mDNSVal16(zoneInfo->Port) : 0);
4198 CancelGetZoneData(m, q->nta);
4199 q->nta = mDNSNULL;
4200 return;
4201 }
4202
4203 if (!zoneInfo->ZonePrivate)
4204 {
4205 debugf("Private port lookup failed -- retrying without TLS -- %##s (%s)", q->qname.c, DNSTypeName(q->qtype));
4206 q->AuthInfo = mDNSNULL; // Clear AuthInfo so we try again non-private
4207 q->ThisQInterval = InitialQuestionInterval;
4208 q->LastQTime = m->timenow - q->ThisQInterval;
4209 CancelGetZoneData(m, q->nta);
4210 q->nta = mDNSNULL;
4211 mDNS_Lock(m);
4212 SetNextQueryTime(m, q);
4213 mDNS_Unlock(m);
4214 return;
4215 // Next call to uDNS_CheckCurrentQuestion() will do this as a non-private query
4216 }
4217
4218 if (!PrivateQuery(q))
4219 {
4220 LogMsg("PrivateQueryGotZoneData: ERROR!! Not a private query %##s (%s) AuthInfo %p", q->qname.c, DNSTypeName(q->qtype), q->AuthInfo);
4221 CancelGetZoneData(m, q->nta);
4222 q->nta = mDNSNULL;
4223 return;
4224 }
4225
4226 q->TargetQID = mDNS_NewMessageID(m);
4227 if (q->tcp) { DisposeTCPConn(q->tcp); q->tcp = mDNSNULL; }
4228 if (!q->nta) { LogMsg("PrivateQueryGotZoneData:ERROR!! nta is NULL for %##s (%s)", q->qname.c, DNSTypeName(q->qtype)); return; }
4229 q->tcp = MakeTCPConn(m, mDNSNULL, mDNSNULL, kTCPSocketFlags_UseTLS, &zoneInfo->Addr, zoneInfo->Port, &q->nta->Host, q, mDNSNULL);
4230 if (q->nta) { CancelGetZoneData(m, q->nta); q->nta = mDNSNULL; }
4231 }
4232
4233 // ***************************************************************************
4234 #if COMPILER_LIKES_PRAGMA_MARK
4235 #pragma mark - Dynamic Updates
4236 #endif
4237
4238 // Called in normal callback context (i.e. mDNS_busy and mDNS_reentrancy are both 1)
4239 mDNSexport void RecordRegistrationGotZoneData(mDNS *const m, mStatus err, const ZoneData *zoneData)
4240 {
4241 AuthRecord *newRR = (AuthRecord*)zoneData->ZoneDataContext;
4242 AuthRecord *ptr;
4243 int c1, c2;
4244
4245 if (newRR->nta != zoneData)
4246 LogMsg("RecordRegistrationGotZoneData: nta (%p) != zoneData (%p) %##s (%s)", newRR->nta, zoneData, newRR->resrec.name->c, DNSTypeName(newRR->resrec.rrtype));
4247
4248 if (m->mDNS_busy != m->mDNS_reentrancy)
4249 LogMsg("RecordRegistrationGotZoneData: mDNS_busy (%ld) != mDNS_reentrancy (%ld)", m->mDNS_busy, m->mDNS_reentrancy);
4250
4251 // make sure record is still in list (!!!)
4252 for (ptr = m->ResourceRecords; ptr; ptr = ptr->next) if (ptr == newRR) break;
4253 if (!ptr)
4254 {
4255 LogMsg("RecordRegistrationGotZoneData - RR no longer in list. Discarding.");
4256 CancelGetZoneData(m, newRR->nta);
4257 newRR->nta = mDNSNULL;
4258 return;
4259 }
4260
4261 // check error/result
4262 if (err)
4263 {
4264 if (err != mStatus_NoSuchNameErr) LogMsg("RecordRegistrationGotZoneData: error %d", err);
4265 CancelGetZoneData(m, newRR->nta);
4266 newRR->nta = mDNSNULL;
4267 return;
4268 }
4269
4270 if (!zoneData) { LogMsg("ERROR: RecordRegistrationGotZoneData invoked with NULL result and no error"); return; }
4271
4272 if (newRR->resrec.rrclass != zoneData->ZoneClass)
4273 {
4274 LogMsg("ERROR: New resource record's class (%d) does not match zone class (%d)", newRR->resrec.rrclass, zoneData->ZoneClass);
4275 CancelGetZoneData(m, newRR->nta);
4276 newRR->nta = mDNSNULL;
4277 return;
4278 }
4279
4280 // Don't try to do updates to the root name server.
4281 // We might be tempted also to block updates to any single-label name server (e.g. com, edu, net, etc.) but some
4282 // organizations use their own private pseudo-TLD, like ".home", etc, and we don't want to block that.
4283 if (zoneData->ZoneName.c[0] == 0)
4284 {
4285 LogInfo("RecordRegistrationGotZoneData: No name server found claiming responsibility for \"%##s\"!", newRR->resrec.name->c);
4286 CancelGetZoneData(m, newRR->nta);
4287 newRR->nta = mDNSNULL;
4288 return;
4289 }
4290
4291 // Store discovered zone data
4292 c1 = CountLabels(newRR->resrec.name);
4293 c2 = CountLabels(&zoneData->ZoneName);
4294 if (c2 > c1)
4295 {
4296 LogMsg("RecordRegistrationGotZoneData: Zone \"%##s\" is longer than \"%##s\"", zoneData->ZoneName.c, newRR->resrec.name->c);
4297 CancelGetZoneData(m, newRR->nta);
4298 newRR->nta = mDNSNULL;
4299 return;
4300 }
4301 newRR->zone = SkipLeadingLabels(newRR->resrec.name, c1-c2);
4302 if (!SameDomainName(newRR->zone, &zoneData->ZoneName))
4303 {
4304 LogMsg("RecordRegistrationGotZoneData: Zone \"%##s\" does not match \"%##s\" for \"%##s\"", newRR->zone->c, zoneData->ZoneName.c, newRR->resrec.name->c);
4305 CancelGetZoneData(m, newRR->nta);
4306 newRR->nta = mDNSNULL;
4307 return;
4308 }
4309
4310 if (mDNSIPPortIsZero(zoneData->Port) || mDNSAddressIsZero(&zoneData->Addr) || !zoneData->Host.c[0])
4311 {
4312 LogInfo("RecordRegistrationGotZoneData: No _dns-update._udp service found for \"%##s\"!", newRR->resrec.name->c);
4313 CancelGetZoneData(m, newRR->nta);
4314 newRR->nta = mDNSNULL;
4315 return;
4316 }
4317
4318 newRR->Private = zoneData->ZonePrivate;
4319 debugf("RecordRegistrationGotZoneData: Set zone information for %##s %##s to %#a:%d",
4320 newRR->resrec.name->c, zoneData->ZoneName.c, &zoneData->Addr, mDNSVal16(zoneData->Port));
4321
4322 // If we are deregistering, uDNS_DeregisterRecord will do that as it has the zone data now.
4323 if (newRR->state == regState_DeregPending)
4324 {
4325 mDNS_Lock(m);
4326 uDNS_DeregisterRecord(m, newRR);
4327 mDNS_Unlock(m);
4328 return;
4329 }
4330
4331 if (newRR->resrec.rrtype == kDNSType_SRV)
4332 {
4333 const domainname *target;
4334 // Reevaluate the target always as NAT/Target could have changed while
4335 // we were fetching zone data.
4336 mDNS_Lock(m);
4337 target = GetServiceTarget(m, newRR);
4338 mDNS_Unlock(m);
4339 if (!target || target->c[0] == 0)
4340 {
4341 domainname *t = GetRRDomainNameTarget(&newRR->resrec);
4342 LogInfo("RecordRegistrationGotZoneData - no target for %##s", newRR->resrec.name->c);
4343 if (t) t->c[0] = 0;
4344 newRR->resrec.rdlength = newRR->resrec.rdestimate = 0;
4345 newRR->state = regState_NoTarget;
4346 CancelGetZoneData(m, newRR->nta);
4347 newRR->nta = mDNSNULL;
4348 return;
4349 }
4350 }
4351 // If we have non-zero service port (always?)
4352 // and a private address, and update server is non-private
4353 // and this service is AutoTarget
4354 // then initiate a NAT mapping request. On completion it will do SendRecordRegistration() for us
4355 if (newRR->resrec.rrtype == kDNSType_SRV && !mDNSIPPortIsZero(newRR->resrec.rdata->u.srv.port) &&
4356 mDNSv4AddrIsRFC1918(&m->AdvertisedV4.ip.v4) && newRR->nta && !mDNSAddrIsRFC1918(&newRR->nta->Addr) &&
4357 newRR->AutoTarget == Target_AutoHostAndNATMAP)
4358 {
4359 DomainAuthInfo *AuthInfo;
4360 AuthInfo = GetAuthInfoForName(m, newRR->resrec.name);
4361 if (AuthInfo && AuthInfo->AutoTunnel)
4362 {
4363 domainname *t = GetRRDomainNameTarget(&newRR->resrec);
4364 LogMsg("RecordRegistrationGotZoneData: ERROR!! AutoTunnel has Target_AutoHostAndNATMAP for %s", ARDisplayString(m, newRR));
4365 if (t) t->c[0] = 0;
4366 newRR->resrec.rdlength = newRR->resrec.rdestimate = 0;
4367 newRR->state = regState_NoTarget;
4368 CancelGetZoneData(m, newRR->nta);
4369 newRR->nta = mDNSNULL;
4370 return;
4371 }
4372 // During network transitions, we are called multiple times in different states. Setup NAT
4373 // state just once for this record.
4374 if (!newRR->NATinfo.clientContext)
4375 {
4376 LogInfo("RecordRegistrationGotZoneData StartRecordNatMap %s", ARDisplayString(m, newRR));
4377 newRR->state = regState_NATMap;
4378 StartRecordNatMap(m, newRR);
4379 return;
4380 }
4381 else LogInfo("RecordRegistrationGotZoneData: StartRecordNatMap for %s, state %d, context %p", ARDisplayString(m, newRR), newRR->state, newRR->NATinfo.clientContext);
4382 }
4383 mDNS_Lock(m);
4384 // We want IsRecordMergeable to check whether it is a record whose update can be
4385 // sent with others. We set the time before we call IsRecordMergeable, so that
4386 // it does not fail this record based on time. We are interested in other checks
4387 // at this time. If a previous update resulted in error, then don't reset the
4388 // interval. Preserve the back-off so that we don't keep retrying aggressively.
4389 if (newRR->updateError == mStatus_NoError)
4390 {
4391 newRR->ThisAPInterval = INIT_RECORD_REG_INTERVAL;
4392 newRR->LastAPTime = m->timenow - INIT_RECORD_REG_INTERVAL;
4393 }
4394 if (IsRecordMergeable(m, newRR, m->timenow + MERGE_DELAY_TIME))
4395 {
4396 // Delay the record registration by MERGE_DELAY_TIME so that we can merge them
4397 // into one update
4398 LogInfo("RecordRegistrationGotZoneData: Delayed registration for %s", ARDisplayString(m, newRR));
4399 newRR->LastAPTime += MERGE_DELAY_TIME;
4400 }
4401 mDNS_Unlock(m);
4402 }
4403
4404 mDNSlocal void SendRecordDeregistration(mDNS *m, AuthRecord *rr)
4405 {
4406 mDNSu8 *ptr = m->omsg.data;
4407 mDNSu8 *limit;
4408 DomainAuthInfo *AuthInfo;
4409
4410 mDNS_CheckLock(m);
4411
4412 if (!rr->nta || mDNSIPv4AddressIsZero(rr->nta->Addr.ip.v4))
4413 {
4414 LogMsg("SendRecordDeRegistration: No zone info for Resource record %s RecordType %d", ARDisplayString(m, rr), rr->resrec.RecordType);
4415 return;
4416 }
4417
4418 limit = ptr + AbsoluteMaxDNSMessageData;
4419 AuthInfo = GetAuthInfoForName_internal(m, rr->resrec.name);
4420 limit -= RRAdditionalSize(m, AuthInfo);
4421
4422 rr->updateid = mDNS_NewMessageID(m);
4423 InitializeDNSMessage(&m->omsg.h, rr->updateid, UpdateReqFlags);
4424
4425 // set zone
4426 ptr = putZone(&m->omsg, ptr, limit, rr->zone, mDNSOpaque16fromIntVal(rr->resrec.rrclass));
4427 if (!ptr) goto exit;
4428
4429 ptr = BuildUpdateMessage(m, ptr, rr, limit);
4430
4431 if (!ptr) goto exit;
4432
4433 if (rr->Private)
4434 {
4435 LogInfo("SendRecordDeregistration TCP %p %s", rr->tcp, ARDisplayString(m, rr));
4436 if (rr->tcp) LogInfo("SendRecordDeregistration: Disposing existing TCP connection for %s", ARDisplayString(m, rr));
4437 if (rr->tcp) { DisposeTCPConn(rr->tcp); rr->tcp = mDNSNULL; }
4438 if (!rr->nta) { LogMsg("SendRecordDeregistration:Private:ERROR!! nta is NULL for %s", ARDisplayString(m, rr)); return; }
4439 rr->tcp = MakeTCPConn(m, &m->omsg, ptr, kTCPSocketFlags_UseTLS, &rr->nta->Addr, rr->nta->Port, &rr->nta->Host, mDNSNULL, rr);
4440 }
4441 else
4442 {
4443 mStatus err;
4444 LogInfo("SendRecordDeregistration UDP %s", ARDisplayString(m, rr));
4445 if (!rr->nta) { LogMsg("SendRecordDeregistration:ERROR!! nta is NULL for %s", ARDisplayString(m, rr)); return; }
4446 err = mDNSSendDNSMessage(m, &m->omsg, ptr, mDNSInterface_Any, mDNSNULL, &rr->nta->Addr, rr->nta->Port, mDNSNULL, GetAuthInfoForName_internal(m, rr->resrec.name), mDNSfalse);
4447 if (err) debugf("ERROR: SendRecordDeregistration - mDNSSendDNSMessage - %d", err);
4448 //if (rr->state == regState_DeregPending) CompleteDeregistration(m, rr); // Don't touch rr after this
4449 }
4450 SetRecordRetry(m, rr, 0);
4451 return;
4452 exit:
4453 LogMsg("SendRecordDeregistration: Error formatting message for %s", ARDisplayString(m, rr));
4454 }
4455
4456 mDNSexport mStatus uDNS_DeregisterRecord(mDNS *const m, AuthRecord *const rr)
4457 {
4458 DomainAuthInfo *info;
4459
4460 LogInfo("uDNS_DeregisterRecord: Resource Record %s, state %d", ARDisplayString(m, rr), rr->state);
4461
4462 switch (rr->state)
4463 {
4464 case regState_Refresh:
4465 case regState_Pending:
4466 case regState_UpdatePending:
4467 case regState_Registered: break;
4468 case regState_DeregPending: break;
4469
4470 case regState_NATError:
4471 case regState_NATMap:
4472 // A record could be in NoTarget to start with if the corresponding SRV record could not find a target.
4473 // It is also possible to reenter the NoTarget state when we move to a network with a NAT that has
4474 // no {PCP, NAT-PMP, UPnP/IGD} support. In that case before we entered NoTarget, we already deregistered with
4475 // the server.
4476 case regState_NoTarget:
4477 case regState_Unregistered:
4478 case regState_Zero:
4479 default:
4480 LogInfo("uDNS_DeregisterRecord: State %d for %##s type %s", rr->state, rr->resrec.name->c, DNSTypeName(rr->resrec.rrtype));
4481 // This function may be called during sleep when there are no sleep proxy servers
4482 if (rr->resrec.RecordType == kDNSRecordTypeDeregistering) CompleteDeregistration(m, rr);
4483 return mStatus_NoError;
4484 }
4485
4486 // if unsent rdata is queued, free it.
4487 //
4488 // The data may be queued in QueuedRData or InFlightRData.
4489 //
4490 // 1) If the record is in Registered state, we store it in InFlightRData and copy the same in "rdata"
4491 // *just* before sending the update to the server. Till we get the response, InFlightRData and "rdata"
4492 // in the resource record are same. We don't want to free in that case. It will be freed when "rdata"
4493 // is freed. If they are not same, the update has not been sent and we should free it here.
4494 //
4495 // 2) If the record is in UpdatePending state, we queue the update in QueuedRData. When the previous update
4496 // comes back from the server, we copy it from QueuedRData to InFlightRData and repeat (1). This implies
4497 // that QueuedRData can never be same as "rdata" in the resource record. As long as we have something
4498 // left in QueuedRData, we should free it here.
4499
4500 if (rr->InFlightRData && rr->UpdateCallback)
4501 {
4502 if (rr->InFlightRData != rr->resrec.rdata)
4503 {
4504 LogInfo("uDNS_DeregisterRecord: Freeing InFlightRData for %s", ARDisplayString(m, rr));
4505 rr->UpdateCallback(m, rr, rr->InFlightRData, rr->InFlightRDLen);
4506 rr->InFlightRData = mDNSNULL;
4507 }
4508 else
4509 LogInfo("uDNS_DeregisterRecord: InFlightRData same as rdata for %s", ARDisplayString(m, rr));
4510 }
4511
4512 if (rr->QueuedRData && rr->UpdateCallback)
4513 {
4514 if (rr->QueuedRData == rr->resrec.rdata)
4515 LogMsg("uDNS_DeregisterRecord: ERROR!! QueuedRData same as rdata for %s", ARDisplayString(m, rr));
4516 else
4517 {
4518 LogInfo("uDNS_DeregisterRecord: Freeing QueuedRData for %s", ARDisplayString(m, rr));
4519 rr->UpdateCallback(m, rr, rr->QueuedRData, rr->QueuedRDLen);
4520 rr->QueuedRData = mDNSNULL;
4521 }
4522 }
4523
4524 // If a current group registration is pending, we can't send this deregisration till that registration
4525 // has reached the server i.e., the ordering is important. Previously, if we did not send this
4526 // registration in a group, then the previous connection will be torn down as part of sending the
4527 // deregistration. If we send this in a group, we need to locate the resource record that was used
4528 // to send this registration and terminate that connection. This means all the updates on that might
4529 // be lost (assuming the response is not waiting for us at the socket) and the retry will send the
4530 // update again sometime in the near future.
4531 //
4532 // NOTE: SSL handshake failures normally free the TCP connection immediately. Hence, you may not
4533 // find the TCP below there. This case can happen only when tcp is trying to actively retransmit
4534 // the request or SSL negotiation taking time i.e resource record is actively trying to get the
4535 // message to the server. During that time a deregister has to happen.
4536
4537 if (!mDNSOpaque16IsZero(rr->updateid))
4538 {
4539 AuthRecord *anchorRR;
4540 mDNSBool found = mDNSfalse;
4541 for (anchorRR = m->ResourceRecords; anchorRR; anchorRR = anchorRR->next)
4542 {
4543 if (AuthRecord_uDNS(rr) && mDNSSameOpaque16(anchorRR->updateid, rr->updateid) && anchorRR->tcp)
4544 {
4545 LogInfo("uDNS_DeregisterRecord: Found Anchor RR %s terminated", ARDisplayString(m, anchorRR));
4546 if (found)
4547 LogMsg("uDNS_DeregisterRecord: ERROR: Another anchorRR %s found", ARDisplayString(m, anchorRR));
4548 DisposeTCPConn(anchorRR->tcp);
4549 anchorRR->tcp = mDNSNULL;
4550 found = mDNStrue;
4551 }
4552 }
4553 if (!found) LogInfo("uDNSDeregisterRecord: Cannot find the anchor Resource Record for %s, not an error", ARDisplayString(m, rr));
4554 }
4555
4556 // Retry logic for deregistration should be no different from sending registration the first time.
4557 // Currently ThisAPInterval most likely is set to the refresh interval
4558 rr->state = regState_DeregPending;
4559 rr->ThisAPInterval = INIT_RECORD_REG_INTERVAL;
4560 rr->LastAPTime = m->timenow - INIT_RECORD_REG_INTERVAL;
4561 info = GetAuthInfoForName_internal(m, rr->resrec.name);
4562 if (IsRecordMergeable(m, rr, m->timenow + MERGE_DELAY_TIME))
4563 {
4564 // Delay the record deregistration by MERGE_DELAY_TIME so that we can merge them
4565 // into one update. If the domain is being deleted, delay by 2 * MERGE_DELAY_TIME
4566 // so that we can merge all the AutoTunnel records and the service records in
4567 // one update (they get deregistered a little apart)
4568 if (info && info->deltime) rr->LastAPTime += (2 * MERGE_DELAY_TIME);
4569 else rr->LastAPTime += MERGE_DELAY_TIME;
4570 }
4571 // IsRecordMergeable could have returned false for several reasons e.g., DontMerge is set or
4572 // no zone information. Most likely it is the latter, CheckRecordUpdates will fetch the zone
4573 // data when it encounters this record.
4574
4575 if (m->NextuDNSEvent - (rr->LastAPTime + rr->ThisAPInterval) >= 0)
4576 m->NextuDNSEvent = (rr->LastAPTime + rr->ThisAPInterval);
4577
4578 return mStatus_NoError;
4579 }
4580
4581 mDNSexport mStatus uDNS_UpdateRecord(mDNS *m, AuthRecord *rr)
4582 {
4583 LogInfo("uDNS_UpdateRecord: Resource Record %##s, state %d", rr->resrec.name->c, rr->state);
4584 switch(rr->state)
4585 {
4586 case regState_DeregPending:
4587 case regState_Unregistered:
4588 // not actively registered
4589 goto unreg_error;
4590
4591 case regState_NATMap:
4592 case regState_NoTarget:
4593 // change rdata directly since it hasn't been sent yet
4594 if (rr->UpdateCallback) rr->UpdateCallback(m, rr, rr->resrec.rdata, rr->resrec.rdlength);
4595 SetNewRData(&rr->resrec, rr->NewRData, rr->newrdlength);
4596 rr->NewRData = mDNSNULL;
4597 return mStatus_NoError;
4598
4599 case regState_Pending:
4600 case regState_Refresh:
4601 case regState_UpdatePending:
4602 // registration in-flight. queue rdata and return
4603 if (rr->QueuedRData && rr->UpdateCallback)
4604 // if unsent rdata is already queued, free it before we replace it
4605 rr->UpdateCallback(m, rr, rr->QueuedRData, rr->QueuedRDLen);
4606 rr->QueuedRData = rr->NewRData;
4607 rr->QueuedRDLen = rr->newrdlength;
4608 rr->NewRData = mDNSNULL;
4609 return mStatus_NoError;
4610
4611 case regState_Registered:
4612 rr->OrigRData = rr->resrec.rdata;
4613 rr->OrigRDLen = rr->resrec.rdlength;
4614 rr->InFlightRData = rr->NewRData;
4615 rr->InFlightRDLen = rr->newrdlength;
4616 rr->NewRData = mDNSNULL;
4617 rr->state = regState_UpdatePending;
4618 rr->ThisAPInterval = INIT_RECORD_REG_INTERVAL;
4619 rr->LastAPTime = m->timenow - INIT_RECORD_REG_INTERVAL;
4620 SetNextuDNSEvent(m, rr);
4621 return mStatus_NoError;
4622
4623 case regState_NATError:
4624 LogMsg("ERROR: uDNS_UpdateRecord called for record %##s with bad state regState_NATError", rr->resrec.name->c);
4625 return mStatus_UnknownErr; // states for service records only
4626
4627 default: LogMsg("uDNS_UpdateRecord: Unknown state %d for %##s", rr->state, rr->resrec.name->c);
4628 }
4629
4630 unreg_error:
4631 LogMsg("uDNS_UpdateRecord: Requested update of record %##s type %d, in erroneous state %d",
4632 rr->resrec.name->c, rr->resrec.rrtype, rr->state);
4633 return mStatus_Invalid;
4634 }
4635
4636 // ***************************************************************************
4637 #if COMPILER_LIKES_PRAGMA_MARK
4638 #pragma mark - Periodic Execution Routines
4639 #endif
4640
4641 mDNSlocal void handle_unanswered_query(mDNS *const m)
4642 {
4643 DNSQuestion *q = m->CurrentQuestion;
4644
4645 if (q->unansweredQueries >= MAX_DNSSEC_UNANSWERED_QUERIES && DNSSECOptionalQuestion(q))
4646 {
4647 // If we are not receiving any responses for DNSSEC question, it could be due to
4648 // a broken middlebox or a DNS server that does not understand the EDNS0/DOK option that
4649 // silently drops the packets. Also as per RFC 5625 there are certain buggy DNS Proxies
4650 // that are known to drop these pkts. To handle this, we turn off sending the EDNS0/DOK
4651 // option if we have not received any responses indicating that the server or
4652 // the middlebox is DNSSEC aware. If we receive at least one response to a DNSSEC
4653 // question, we don't turn off validation. Also, we wait for MAX_DNSSEC_RETRANSMISSIONS
4654 // before turning off validation to accomodate packet loss.
4655 //
4656 // Note: req_DO affects only DNSSEC_VALIDATION_SECURE_OPTIONAL questions;
4657 // DNSSEC_VALIDATION_SECURE questions ignores req_DO.
4658
4659 if (q->qDNSServer && !q->qDNSServer->DNSSECAware && q->qDNSServer->req_DO)
4660 {
4661 q->qDNSServer->retransDO++;
4662 if (q->qDNSServer->retransDO == MAX_DNSSEC_RETRANSMISSIONS)
4663 {
4664 LogInfo("handle_unanswered_query: setting req_DO false for %#a", &q->qDNSServer->addr);
4665 q->qDNSServer->req_DO = mDNSfalse;
4666 }
4667 }
4668
4669 if (!q->qDNSServer->req_DO)
4670 {
4671 q->ValidationState = DNSSECValNotRequired;
4672 q->ValidationRequired = DNSSEC_VALIDATION_NONE;
4673
4674 if (q->ProxyQuestion)
4675 q->ProxyDNSSECOK = mDNSfalse;
4676 LogInfo("handle_unanswered_query: unanswered query for %##s (%s), so turned off validation for %#a",
4677 q->qname.c, DNSTypeName(q->qtype), &q->qDNSServer->addr);
4678 }
4679 }
4680 }
4681
4682 // The question to be checked is not passed in as an explicit parameter;
4683 // instead it is implicit that the question to be checked is m->CurrentQuestion.
4684 mDNSexport void uDNS_CheckCurrentQuestion(mDNS *const m)
4685 {
4686 DNSQuestion *q = m->CurrentQuestion;
4687 if (m->timenow - NextQSendTime(q) < 0) return;
4688
4689 if (q->LongLived)
4690 {
4691 switch (q->state)
4692 {
4693 case LLQ_InitialRequest: startLLQHandshake(m, q); break;
4694 case LLQ_SecondaryRequest:
4695 // For PrivateQueries, we need to start the handshake again as we don't do the Challenge/Response step
4696 if (PrivateQuery(q))
4697 startLLQHandshake(m, q);
4698 else
4699 sendChallengeResponse(m, q, mDNSNULL);
4700 break;
4701 case LLQ_Established: sendLLQRefresh(m, q); break;
4702 case LLQ_Poll: break; // Do nothing (handled below)
4703 }
4704 }
4705
4706 handle_unanswered_query(m);
4707 // We repeat the check above (rather than just making this the "else" case) because startLLQHandshake can change q->state to LLQ_Poll
4708 if (!(q->LongLived && q->state != LLQ_Poll))
4709 {
4710 if (q->unansweredQueries >= MAX_UCAST_UNANSWERED_QUERIES)
4711 {
4712 DNSServer *orig = q->qDNSServer;
4713 if (orig)
4714 LogInfo("uDNS_CheckCurrentQuestion: Sent %d unanswered queries for %##s (%s) to %#a:%d (%##s)",
4715 q->unansweredQueries, q->qname.c, DNSTypeName(q->qtype), &orig->addr, mDNSVal16(orig->port), orig->domain.c);
4716
4717 PenalizeDNSServer(m, q, zeroID);
4718 q->noServerResponse = 1;
4719 }
4720 // There are two cases here.
4721 //
4722 // 1. We have only one DNS server for this question. It is not responding even after we sent MAX_UCAST_UNANSWERED_QUERIES.
4723 // In that case, we need to keep retrying till we get a response. But we need to backoff as we retry. We set
4724 // noServerResponse in the block above and below we do not touch the question interval. When we come here, we
4725 // already waited for the response. We need to send another query right at this moment. We do that below by
4726 // reinitializing dns servers and reissuing the query.
4727 //
4728 // 2. We have more than one DNS server. If at least one server did not respond, we would have set noServerResponse
4729 // either now (the last server in the list) or before (non-last server in the list). In either case, if we have
4730 // reached the end of DNS server list, we need to try again from the beginning. Ideally we should try just the
4731 // servers that did not respond, but for simplicity we try all the servers. Once we reached the end of list, we
4732 // set triedAllServersOnce so that we don't try all the servers aggressively. See PenalizeDNSServer.
4733 if (!q->qDNSServer && q->noServerResponse)
4734 {
4735 DNSServer *new;
4736 DNSQuestion *qptr;
4737 q->triedAllServersOnce = 1;
4738 // Re-initialize all DNS servers for this question. If we have a DNSServer, DNSServerChangeForQuestion will
4739 // handle all the work including setting the new DNS server.
4740 SetValidDNSServers(m, q);
4741 new = GetServerForQuestion(m, q);
4742 if (new)
4743 {
4744 LogInfo("uDNS_checkCurrentQuestion: Retrying question %p %##s (%s) DNS Server %#a:%d ThisQInterval %d",
4745 q, q->qname.c, DNSTypeName(q->qtype), new ? &new->addr : mDNSNULL, mDNSVal16(new ? new->port : zeroIPPort), q->ThisQInterval);
4746 DNSServerChangeForQuestion(m, q, new);
4747 }
4748 for (qptr = q->next ; qptr; qptr = qptr->next)
4749 if (qptr->DuplicateOf == q) { qptr->validDNSServers = q->validDNSServers; qptr->qDNSServer = q->qDNSServer; }
4750 }
4751 if (q->qDNSServer && q->qDNSServer->teststate != DNSServer_Disabled)
4752 {
4753 mDNSu8 *end = m->omsg.data;
4754 mStatus err = mStatus_NoError;
4755 mDNSBool private = mDNSfalse;
4756
4757 InitializeDNSMessage(&m->omsg.h, q->TargetQID, (DNSSECQuestion(q) ? DNSSecQFlags : uQueryFlags));
4758
4759 if (q->qDNSServer->teststate != DNSServer_Untested || NoTestQuery(q))
4760 {
4761 end = putQuestion(&m->omsg, m->omsg.data, m->omsg.data + AbsoluteMaxDNSMessageData, &q->qname, q->qtype, q->qclass);
4762 if (DNSSECQuestion(q) && !q->qDNSServer->cellIntf)
4763 {
4764 if (q->ProxyQuestion)
4765 end = DNSProxySetAttributes(q, &m->omsg.h, &m->omsg, end, m->omsg.data + AbsoluteMaxDNSMessageData);
4766 else
4767 end = putDNSSECOption(&m->omsg, end, m->omsg.data + AbsoluteMaxDNSMessageData);
4768 }
4769 private = PrivateQuery(q);
4770 }
4771 else if (m->timenow - q->qDNSServer->lasttest >= INIT_UCAST_POLL_INTERVAL) // Make sure at least three seconds has elapsed since last test query
4772 {
4773 LogInfo("Sending DNS test query to %#a:%d", &q->qDNSServer->addr, mDNSVal16(q->qDNSServer->port));
4774 q->ThisQInterval = INIT_UCAST_POLL_INTERVAL / QuestionIntervalStep;
4775 q->qDNSServer->lasttest = m->timenow;
4776 end = putQuestion(&m->omsg, m->omsg.data, m->omsg.data + AbsoluteMaxDNSMessageData, DNSRelayTestQuestion, kDNSType_PTR, kDNSClass_IN);
4777 q->qDNSServer->testid = m->omsg.h.id;
4778 }
4779
4780 if (end > m->omsg.data && (q->qDNSServer->teststate != DNSServer_Failed || NoTestQuery(q)))
4781 {
4782 //LogMsg("uDNS_CheckCurrentQuestion %p %d %p %##s (%s)", q, NextQSendTime(q) - m->timenow, private, q->qname.c, DNSTypeName(q->qtype));
4783 if (private)
4784 {
4785 if (q->nta) CancelGetZoneData(m, q->nta);
4786 q->nta = StartGetZoneData(m, &q->qname, q->LongLived ? ZoneServiceLLQ : ZoneServiceQuery, PrivateQueryGotZoneData, q);
4787 if (q->state == LLQ_Poll) q->ThisQInterval = (LLQ_POLL_INTERVAL + mDNSRandom(LLQ_POLL_INTERVAL/10)) / QuestionIntervalStep;
4788 }
4789 else
4790 {
4791 debugf("uDNS_CheckCurrentQuestion sending %p %##s (%s) %#a:%d UnansweredQueries %d",
4792 q, q->qname.c, DNSTypeName(q->qtype),
4793 q->qDNSServer ? &q->qDNSServer->addr : mDNSNULL, mDNSVal16(q->qDNSServer ? q->qDNSServer->port : zeroIPPort), q->unansweredQueries);
4794 if (!q->LocalSocket)
4795 {
4796 q->LocalSocket = mDNSPlatformUDPSocket(m, zeroIPPort);
4797 if (q->LocalSocket)
4798 mDNSPlatformSetuDNSSocktOpt(q->LocalSocket, &q->qDNSServer->addr, q);
4799 }
4800 if (!q->LocalSocket) err = mStatus_NoMemoryErr; // If failed to make socket (should be very rare), we'll try again next time
4801 else err = mDNSSendDNSMessage(m, &m->omsg, end, q->qDNSServer->interface, q->LocalSocket, &q->qDNSServer->addr, q->qDNSServer->port, mDNSNULL, mDNSNULL, q->UseBackgroundTrafficClass);
4802 }
4803 }
4804
4805 if (err != mStatus_TransientErr) // if it is not a transient error backoff and DO NOT flood queries unnecessarily
4806 {
4807 q->ThisQInterval = q->ThisQInterval * QuestionIntervalStep; // Only increase interval if send succeeded
4808 q->unansweredQueries++;
4809 if (q->ThisQInterval > MAX_UCAST_POLL_INTERVAL)
4810 q->ThisQInterval = MAX_UCAST_POLL_INTERVAL;
4811 if (private && q->state != LLQ_Poll)
4812 {
4813 // We don't want to retransmit too soon. Hence, we always schedule our first
4814 // retransmisson at 3 seconds rather than one second
4815 if (q->ThisQInterval < (3 * mDNSPlatformOneSecond))
4816 q->ThisQInterval = q->ThisQInterval * QuestionIntervalStep;
4817 if (q->ThisQInterval > LLQ_POLL_INTERVAL)
4818 q->ThisQInterval = LLQ_POLL_INTERVAL;
4819 LogInfo("uDNS_CheckCurrentQuestion: private non polling question for %##s (%s) will be retried in %d ms", q->qname.c, DNSTypeName(q->qtype), q->ThisQInterval);
4820 }
4821 if (q->qDNSServer->cellIntf)
4822 {
4823 // We don't want to retransmit too soon. Schedule our first retransmisson at
4824 // MIN_UCAST_RETRANS_TIMEOUT seconds.
4825 if (q->ThisQInterval < MIN_UCAST_RETRANS_TIMEOUT)
4826 q->ThisQInterval = MIN_UCAST_RETRANS_TIMEOUT;
4827 }
4828 debugf("uDNS_CheckCurrentQuestion: Increased ThisQInterval to %d for %##s (%s), cell %d", q->ThisQInterval, q->qname.c, DNSTypeName(q->qtype), q->qDNSServer->cellIntf);
4829 }
4830 q->LastQTime = m->timenow;
4831 SetNextQueryTime(m, q);
4832 }
4833 else
4834 {
4835 // If we have no server for this query, or the only server is a disabled one, then we deliver
4836 // a transient failure indication to the client. This is important for things like iPhone
4837 // where we want to return timely feedback to the user when no network is available.
4838 // After calling MakeNegativeCacheRecord() we store the resulting record in the
4839 // cache so that it will be visible to other clients asking the same question.
4840 // (When we have a group of identical questions, only the active representative of the group gets
4841 // passed to uDNS_CheckCurrentQuestion -- we only want one set of query packets hitting the wire --
4842 // but we want *all* of the questions to get answer callbacks.)
4843 CacheRecord *rr;
4844 const mDNSu32 slot = HashSlot(&q->qname);
4845 CacheGroup *const cg = CacheGroupForName(m, slot, q->qnamehash, &q->qname);
4846
4847 if (!q->qDNSServer)
4848 {
4849 if (!mDNSOpaque64IsZero(&q->validDNSServers))
4850 LogMsg("uDNS_CheckCurrentQuestion: ERROR!!: valid DNSServer bits not zero 0x%x, 0x%x for question %##s (%s)",
4851 q->validDNSServers.l[1], q->validDNSServers.l[0], q->qname.c, DNSTypeName(q->qtype));
4852 // If we reached the end of list while picking DNS servers, then we don't want to deactivate the
4853 // question. Try after 60 seconds. We find this by looking for valid DNSServers for this question,
4854 // if we find any, then we must have tried them before we came here. This avoids maintaining
4855 // another state variable to see if we had valid DNS servers for this question.
4856 SetValidDNSServers(m, q);
4857 if (mDNSOpaque64IsZero(&q->validDNSServers))
4858 {
4859 LogInfo("uDNS_CheckCurrentQuestion: no DNS server for %##s (%s)", q->qname.c, DNSTypeName(q->qtype));
4860 q->ThisQInterval = 0;
4861 }
4862 else
4863 {
4864 DNSQuestion *qptr;
4865 // Pretend that we sent this question. As this is an ActiveQuestion, the NextScheduledQuery should
4866 // be set properly. Also, we need to properly backoff in cases where we don't set the question to
4867 // MaxQuestionInterval when we answer the question e.g., LongLived, we need to keep backing off
4868 q->ThisQInterval = q->ThisQInterval * QuestionIntervalStep;
4869 q->LastQTime = m->timenow;
4870 SetNextQueryTime(m, q);
4871 // Pick a new DNS server now. Otherwise, when the cache is 80% of its expiry, we will try
4872 // to send a query and come back to the same place here and log the above message.
4873 q->qDNSServer = GetServerForQuestion(m, q);
4874 for (qptr = q->next ; qptr; qptr = qptr->next)
4875 if (qptr->DuplicateOf == q) { qptr->validDNSServers = q->validDNSServers; qptr->qDNSServer = q->qDNSServer; }
4876 LogInfo("uDNS_checkCurrentQuestion: Tried all DNS servers, retry question %p SuppressUnusable %d %##s (%s) with DNS Server %#a:%d after 60 seconds, ThisQInterval %d",
4877 q, q->SuppressUnusable, q->qname.c, DNSTypeName(q->qtype),
4878 q->qDNSServer ? &q->qDNSServer->addr : mDNSNULL, mDNSVal16(q->qDNSServer ? q->qDNSServer->port : zeroIPPort), q->ThisQInterval);
4879 }
4880 }
4881 else
4882 {
4883 q->ThisQInterval = 0;
4884 LogMsg("uDNS_CheckCurrentQuestion DNS server %#a:%d for %##s is disabled", &q->qDNSServer->addr, mDNSVal16(q->qDNSServer->port), q->qname.c);
4885 }
4886
4887 if (cg)
4888 {
4889 for (rr = cg->members; rr; rr=rr->next)
4890 {
4891 if (SameNameRecordAnswersQuestion(&rr->resrec, q))
4892 {
4893 LogInfo("uDNS_CheckCurrentQuestion: Purged resourcerecord %s", CRDisplayString(m, rr));
4894 mDNS_PurgeCacheResourceRecord(m, rr);
4895 }
4896 }
4897 }
4898 // For some of the WAB queries that we generate form within the mDNSResponder, most of the home routers
4899 // don't understand and return ServFail/NXDomain. In those cases, we don't want to try too often. We try
4900 // every fifteen minutes in that case
4901 MakeNegativeCacheRecord(m, &m->rec.r, &q->qname, q->qnamehash, q->qtype, q->qclass, (DomainEnumQuery(&q->qname) ? 60 * 15 : 60), mDNSInterface_Any, q->qDNSServer);
4902 q->unansweredQueries = 0;
4903 if (!mDNSOpaque16IsZero(q->responseFlags))
4904 m->rec.r.responseFlags = q->responseFlags;
4905 // We're already using the m->CurrentQuestion pointer, so CacheRecordAdd can't use it to walk the question list.
4906 // To solve this problem we set rr->DelayDelivery to a nonzero value (which happens to be 'now') so that we
4907 // momentarily defer generating answer callbacks until mDNS_Execute time.
4908 CreateNewCacheEntry(m, slot, cg, NonZeroTime(m->timenow), mDNStrue, mDNSNULL);
4909 ScheduleNextCacheCheckTime(m, slot, NonZeroTime(m->timenow));
4910 m->rec.r.responseFlags = zeroID;
4911 m->rec.r.resrec.RecordType = 0; // Clear RecordType to show we're not still using it
4912 // MUST NOT touch m->CurrentQuestion (or q) after this -- client callback could have deleted it
4913 }
4914 }
4915 }
4916
4917 mDNSexport void CheckNATMappings(mDNS *m)
4918 {
4919 mStatus err = mStatus_NoError;
4920 mDNSBool rfc1918 = mDNSv4AddrIsRFC1918(&m->AdvertisedV4.ip.v4);
4921 mDNSBool HaveRoutable = !rfc1918 && !mDNSIPv4AddressIsZero(m->AdvertisedV4.ip.v4);
4922 m->NextScheduledNATOp = m->timenow + 0x3FFFFFFF;
4923
4924 if (HaveRoutable) m->ExtAddress = m->AdvertisedV4.ip.v4;
4925
4926 if (m->NATTraversals && rfc1918) // Do we need to open a socket to receive multicast announcements from router?
4927 {
4928 if (m->NATMcastRecvskt == mDNSNULL) // If we are behind a NAT and the socket hasn't been opened yet, open it
4929 {
4930 // we need to log a message if we can't get our socket, but only the first time (after success)
4931 static mDNSBool needLog = mDNStrue;
4932 m->NATMcastRecvskt = mDNSPlatformUDPSocket(m, NATPMPAnnouncementPort);
4933 if (!m->NATMcastRecvskt)
4934 {
4935 if (needLog)
4936 {
4937 LogMsg("CheckNATMappings: Failed to allocate port 5350 UDP multicast socket for PCP & NAT-PMP announcements");
4938 needLog = mDNSfalse;
4939 }
4940 }
4941 else
4942 needLog = mDNStrue;
4943 }
4944 }
4945 else // else, we don't want to listen for announcements, so close them if they're open
4946 {
4947 if (m->NATMcastRecvskt) { mDNSPlatformUDPClose(m->NATMcastRecvskt); m->NATMcastRecvskt = mDNSNULL; }
4948 if (m->SSDPSocket) { debugf("CheckNATMappings destroying SSDPSocket %p", &m->SSDPSocket); mDNSPlatformUDPClose(m->SSDPSocket); m->SSDPSocket = mDNSNULL; }
4949 }
4950
4951 uDNS_RequestAddress(m);
4952
4953 if (m->CurrentNATTraversal) LogMsg("WARNING m->CurrentNATTraversal already in use");
4954 m->CurrentNATTraversal = m->NATTraversals;
4955
4956 while (m->CurrentNATTraversal)
4957 {
4958 NATTraversalInfo *cur = m->CurrentNATTraversal;
4959 mDNSv4Addr EffectiveAddress = HaveRoutable ? m->AdvertisedV4.ip.v4 : cur->NewAddress;
4960 m->CurrentNATTraversal = m->CurrentNATTraversal->next;
4961
4962 if (HaveRoutable) // If not RFC 1918 address, our own address and port are effectively our external address and port
4963 {
4964 cur->ExpiryTime = 0;
4965 cur->NewResult = mStatus_NoError;
4966 }
4967 else // Check if it's time to send port mapping packet(s)
4968 {
4969 if (m->timenow - cur->retryPortMap >= 0) // Time to send a mapping request for this packet
4970 {
4971 if (cur->ExpiryTime && cur->ExpiryTime - m->timenow < 0) // Mapping has expired
4972 {
4973 cur->ExpiryTime = 0;
4974 cur->retryInterval = NATMAP_INIT_RETRY;
4975 }
4976
4977 err = uDNS_SendNATMsg(m, cur, mDNStrue); // Will also do UPnP discovery for us, if necessary
4978
4979 if (cur->ExpiryTime) // If have active mapping then set next renewal time halfway to expiry
4980 NATSetNextRenewalTime(m, cur);
4981 else // else no mapping; use exponential backoff sequence
4982 {
4983 if (cur->retryInterval < NATMAP_INIT_RETRY ) cur->retryInterval = NATMAP_INIT_RETRY;
4984 else if (cur->retryInterval < NATMAP_MAX_RETRY_INTERVAL / 2) cur->retryInterval *= 2;
4985 else cur->retryInterval = NATMAP_MAX_RETRY_INTERVAL;
4986 cur->retryPortMap = m->timenow + cur->retryInterval;
4987 }
4988 }
4989
4990 if (m->NextScheduledNATOp - cur->retryPortMap > 0)
4991 {
4992 m->NextScheduledNATOp = cur->retryPortMap;
4993 }
4994 }
4995
4996 // Notify the client if necessary. We invoke the callback if:
4997 // (1) We have an effective address,
4998 // or we've tried and failed a couple of times to discover it
4999 // AND
5000 // (2) the client requested the address only,
5001 // or the client won't need a mapping because we have a routable address,
5002 // or the client has an expiry time and therefore a successful mapping,
5003 // or we've tried and failed a couple of times (see "Time line" below)
5004 // AND
5005 // (3) we have new data to give the client that's changed since the last callback
5006 //
5007 // Time line is: Send, Wait 500ms, Send, Wait 1sec, Send, Wait 2sec, Send
5008 // At this point we've sent three requests without an answer, we've just sent our fourth request,
5009 // retryInterval is now 4 seconds, which is greater than NATMAP_INIT_RETRY * 8 (2 seconds),
5010 // so we return an error result to the caller.
5011 if (!mDNSIPv4AddressIsZero(EffectiveAddress) || cur->retryInterval > NATMAP_INIT_RETRY * 8)
5012 {
5013 const mStatus EffectiveResult = cur->NewResult ? cur->NewResult : mDNSv4AddrIsRFC1918(&EffectiveAddress) ? mStatus_DoubleNAT : mStatus_NoError;
5014 const mDNSIPPort ExternalPort = HaveRoutable ? cur->IntPort :
5015 !mDNSIPv4AddressIsZero(EffectiveAddress) && cur->ExpiryTime ? cur->RequestedPort : zeroIPPort;
5016
5017 if (!cur->Protocol || HaveRoutable || cur->ExpiryTime || cur->retryInterval > NATMAP_INIT_RETRY * 8)
5018 {
5019 if (!mDNSSameIPv4Address(cur->ExternalAddress, EffectiveAddress) ||
5020 !mDNSSameIPPort (cur->ExternalPort, ExternalPort) ||
5021 cur->Result != EffectiveResult)
5022 {
5023 //LogMsg("NAT callback %d %d %d", cur->Protocol, cur->ExpiryTime, cur->retryInterval);
5024 if (cur->Protocol && mDNSIPPortIsZero(ExternalPort) && !mDNSIPv4AddressIsZero(m->Router.ip.v4))
5025 {
5026 if (!EffectiveResult)
5027 LogInfo("CheckNATMapping: Failed to obtain NAT port mapping %p from router %#a external address %.4a internal port %5d interval %d error %d",
5028 cur, &m->Router, &EffectiveAddress, mDNSVal16(cur->IntPort), cur->retryInterval, EffectiveResult);
5029 else
5030 LogMsg("CheckNATMapping: Failed to obtain NAT port mapping %p from router %#a external address %.4a internal port %5d interval %d error %d",
5031 cur, &m->Router, &EffectiveAddress, mDNSVal16(cur->IntPort), cur->retryInterval, EffectiveResult);
5032 }
5033
5034 cur->ExternalAddress = EffectiveAddress;
5035 cur->ExternalPort = ExternalPort;
5036 cur->Lifetime = cur->ExpiryTime && !mDNSIPPortIsZero(ExternalPort) ?
5037 (cur->ExpiryTime - m->timenow + mDNSPlatformOneSecond/2) / mDNSPlatformOneSecond : 0;
5038 cur->Result = EffectiveResult;
5039 mDNS_DropLockBeforeCallback(); // Allow client to legally make mDNS API calls from the callback
5040 if (cur->clientCallback)
5041 cur->clientCallback(m, cur);
5042 mDNS_ReclaimLockAfterCallback(); // Decrement mDNS_reentrancy to block mDNS API calls again
5043 // MUST NOT touch cur after invoking the callback
5044 }
5045 }
5046 }
5047 }
5048 }
5049
5050 mDNSlocal mDNSs32 CheckRecordUpdates(mDNS *m)
5051 {
5052 AuthRecord *rr;
5053 mDNSs32 nextevent = m->timenow + 0x3FFFFFFF;
5054
5055 CheckGroupRecordUpdates(m);
5056
5057 for (rr = m->ResourceRecords; rr; rr = rr->next)
5058 {
5059 if (!AuthRecord_uDNS(rr)) continue;
5060 if (rr->state == regState_NoTarget) {debugf("CheckRecordUpdates: Record %##s in NoTarget", rr->resrec.name->c); continue;}
5061 // While we are waiting for the port mapping, we have nothing to do. The port mapping callback
5062 // will take care of this
5063 if (rr->state == regState_NATMap) {debugf("CheckRecordUpdates: Record %##s in NATMap", rr->resrec.name->c); continue;}
5064 if (rr->state == regState_Pending || rr->state == regState_DeregPending || rr->state == regState_UpdatePending ||
5065 rr->state == regState_Refresh || rr->state == regState_Registered)
5066 {
5067 if (rr->LastAPTime + rr->ThisAPInterval - m->timenow <= 0)
5068 {
5069 if (rr->tcp) { DisposeTCPConn(rr->tcp); rr->tcp = mDNSNULL; }
5070 if (!rr->nta || mDNSIPv4AddressIsZero(rr->nta->Addr.ip.v4))
5071 {
5072 // Zero out the updateid so that if we have a pending response from the server, it won't
5073 // be accepted as a valid response. If we accept the response, we might free the new "nta"
5074 if (rr->nta) { rr->updateid = zeroID; CancelGetZoneData(m, rr->nta); }
5075 rr->nta = StartGetZoneData(m, rr->resrec.name, ZoneServiceUpdate, RecordRegistrationGotZoneData, rr);
5076
5077 // We have just started the GetZoneData. We need to wait for it to finish. SetRecordRetry here
5078 // schedules the update timer to fire in the future.
5079 //
5080 // There are three cases.
5081 //
5082 // 1) When the updates are sent the first time, the first retry is intended to be at three seconds
5083 // in the future. But by calling SetRecordRetry here we set it to nine seconds. But it does not
5084 // matter because when the answer comes back, RecordRegistrationGotZoneData resets the interval
5085 // back to INIT_RECORD_REG_INTERVAL. This also gives enough time for the query.
5086 //
5087 // 2) In the case of update errors (updateError), this causes further backoff as
5088 // RecordRegistrationGotZoneData does not reset the timer. This is intentional as in the case of
5089 // errors, we don't want to update aggressively.
5090 //
5091 // 3) We might be refreshing the update. This is very similar to case (1). RecordRegistrationGotZoneData
5092 // resets it back to INIT_RECORD_REG_INTERVAL.
5093 //
5094 SetRecordRetry(m, rr, 0);
5095 }
5096 else if (rr->state == regState_DeregPending) SendRecordDeregistration(m, rr);
5097 else SendRecordRegistration(m, rr);
5098 }
5099 }
5100 if (nextevent - (rr->LastAPTime + rr->ThisAPInterval) > 0)
5101 nextevent = (rr->LastAPTime + rr->ThisAPInterval);
5102 }
5103 return nextevent;
5104 }
5105
5106 mDNSexport void uDNS_Tasks(mDNS *const m)
5107 {
5108 mDNSs32 nexte;
5109 DNSServer *d;
5110
5111 m->NextuDNSEvent = m->timenow + 0x3FFFFFFF;
5112
5113 nexte = CheckRecordUpdates(m);
5114 if (m->NextuDNSEvent - nexte > 0)
5115 m->NextuDNSEvent = nexte;
5116
5117 for (d = m->DNSServers; d; d=d->next)
5118 if (d->penaltyTime)
5119 {
5120 if (m->timenow - d->penaltyTime >= 0)
5121 {
5122 LogInfo("DNS server %#a:%d out of penalty box", &d->addr, mDNSVal16(d->port));
5123 d->penaltyTime = 0;
5124 }
5125 else
5126 if (m->NextuDNSEvent - d->penaltyTime > 0)
5127 m->NextuDNSEvent = d->penaltyTime;
5128 }
5129
5130 if (m->CurrentQuestion)
5131 LogMsg("uDNS_Tasks ERROR m->CurrentQuestion already set: %##s (%s)", m->CurrentQuestion->qname.c, DNSTypeName(m->CurrentQuestion->qtype));
5132 m->CurrentQuestion = m->Questions;
5133 while (m->CurrentQuestion && m->CurrentQuestion != m->NewQuestions)
5134 {
5135 DNSQuestion *const q = m->CurrentQuestion;
5136 if (ActiveQuestion(q) && !mDNSOpaque16IsZero(q->TargetQID))
5137 {
5138 uDNS_CheckCurrentQuestion(m);
5139 if (q == m->CurrentQuestion)
5140 if (m->NextuDNSEvent - NextQSendTime(q) > 0)
5141 m->NextuDNSEvent = NextQSendTime(q);
5142 }
5143 // If m->CurrentQuestion wasn't modified out from under us, advance it now
5144 // We can't do this at the start of the loop because uDNS_CheckCurrentQuestion()
5145 // depends on having m->CurrentQuestion point to the right question
5146 if (m->CurrentQuestion == q)
5147 m->CurrentQuestion = q->next;
5148 }
5149 m->CurrentQuestion = mDNSNULL;
5150 }
5151
5152 // ***************************************************************************
5153 #if COMPILER_LIKES_PRAGMA_MARK
5154 #pragma mark - Startup, Shutdown, and Sleep
5155 #endif
5156
5157 mDNSexport void SleepRecordRegistrations(mDNS *m)
5158 {
5159 AuthRecord *rr;
5160 for (rr = m->ResourceRecords; rr; rr=rr->next)
5161 {
5162 if (AuthRecord_uDNS(rr))
5163 {
5164 // Zero out the updateid so that if we have a pending response from the server, it won't
5165 // be accepted as a valid response.
5166 if (rr->nta) { rr->updateid = zeroID; CancelGetZoneData(m, rr->nta); rr->nta = mDNSNULL; }
5167
5168 if (rr->NATinfo.clientContext)
5169 {
5170 mDNS_StopNATOperation_internal(m, &rr->NATinfo);
5171 rr->NATinfo.clientContext = mDNSNULL;
5172 }
5173 // We are waiting to update the resource record. The original data of the record is
5174 // in OrigRData and the updated value is in InFlightRData. Free the old and the new
5175 // one will be registered when we come back.
5176 if (rr->state == regState_UpdatePending)
5177 {
5178 // act as if the update succeeded, since we're about to delete the name anyway
5179 rr->state = regState_Registered;
5180 // deallocate old RData
5181 if (rr->UpdateCallback) rr->UpdateCallback(m, rr, rr->OrigRData, rr->OrigRDLen);
5182 SetNewRData(&rr->resrec, rr->InFlightRData, rr->InFlightRDLen);
5183 rr->OrigRData = mDNSNULL;
5184 rr->InFlightRData = mDNSNULL;
5185 }
5186
5187 // If we have not begun the registration process i.e., never sent a registration packet,
5188 // then uDNS_DeregisterRecord will not send a deregistration
5189 uDNS_DeregisterRecord(m, rr);
5190
5191 // When we wake, we call ActivateUnicastRegistration which starts at StartGetZoneData
5192 }
5193 }
5194 }
5195
5196 mDNSexport void mDNS_AddSearchDomain(const domainname *const domain, mDNSInterfaceID InterfaceID)
5197 {
5198 SearchListElem **p;
5199 SearchListElem *tmp = mDNSNULL;
5200
5201 // Check to see if we already have this domain in our list
5202 for (p = &SearchList; *p; p = &(*p)->next)
5203 if (((*p)->InterfaceID == InterfaceID) && SameDomainName(&(*p)->domain, domain))
5204 {
5205 // If domain is already in list, and marked for deletion, unmark the delete
5206 // Be careful not to touch the other flags that may be present
5207 LogInfo("mDNS_AddSearchDomain already in list %##s", domain->c);
5208 if ((*p)->flag & SLE_DELETE) (*p)->flag &= ~SLE_DELETE;
5209 tmp = *p;
5210 *p = tmp->next;
5211 tmp->next = mDNSNULL;
5212 break;
5213 }
5214
5215
5216 // move to end of list so that we maintain the same order
5217 while (*p) p = &(*p)->next;
5218
5219 if (tmp) *p = tmp;
5220 else
5221 {
5222 // if domain not in list, add to list, mark as add (1)
5223 *p = mDNSPlatformMemAllocate(sizeof(SearchListElem));
5224 if (!*p) { LogMsg("ERROR: mDNS_AddSearchDomain - malloc"); return; }
5225 mDNSPlatformMemZero(*p, sizeof(SearchListElem));
5226 AssignDomainName(&(*p)->domain, domain);
5227 (*p)->next = mDNSNULL;
5228 (*p)->InterfaceID = InterfaceID;
5229 LogInfo("mDNS_AddSearchDomain created new %##s, InterfaceID %p", domain->c, InterfaceID);
5230 }
5231 }
5232
5233 mDNSlocal void FreeARElemCallback(mDNS *const m, AuthRecord *const rr, mStatus result)
5234 {
5235 (void)m; // unused
5236 if (result == mStatus_MemFree) mDNSPlatformMemFree(rr->RecordContext);
5237 }
5238
5239 mDNSlocal void FoundDomain(mDNS *const m, DNSQuestion *question, const ResourceRecord *const answer, QC_result AddRecord)
5240 {
5241 SearchListElem *slElem = question->QuestionContext;
5242 mStatus err;
5243 const char *name;
5244
5245 if (answer->rrtype != kDNSType_PTR) return;
5246 if (answer->RecordType == kDNSRecordTypePacketNegative) return;
5247 if (answer->InterfaceID == mDNSInterface_LocalOnly) return;
5248
5249 if (question == &slElem->BrowseQ) name = mDNS_DomainTypeNames[mDNS_DomainTypeBrowse];
5250 else if (question == &slElem->DefBrowseQ) name = mDNS_DomainTypeNames[mDNS_DomainTypeBrowseDefault];
5251 else if (question == &slElem->AutomaticBrowseQ) name = mDNS_DomainTypeNames[mDNS_DomainTypeBrowseAutomatic];
5252 else if (question == &slElem->RegisterQ) name = mDNS_DomainTypeNames[mDNS_DomainTypeRegistration];
5253 else if (question == &slElem->DefRegisterQ) name = mDNS_DomainTypeNames[mDNS_DomainTypeRegistrationDefault];
5254 else { LogMsg("FoundDomain - unknown question"); return; }
5255
5256 LogInfo("FoundDomain: %p %s %s Q %##s A %s", answer->InterfaceID, AddRecord ? "Add" : "Rmv", name, question->qname.c, RRDisplayString(m, answer));
5257
5258 if (AddRecord)
5259 {
5260 ARListElem *arElem = mDNSPlatformMemAllocate(sizeof(ARListElem));
5261 if (!arElem) { LogMsg("ERROR: FoundDomain out of memory"); return; }
5262 mDNS_SetupResourceRecord(&arElem->ar, mDNSNULL, mDNSInterface_LocalOnly, kDNSType_PTR, 7200, kDNSRecordTypeShared, AuthRecordLocalOnly, FreeARElemCallback, arElem);
5263 MakeDomainNameFromDNSNameString(&arElem->ar.namestorage, name);
5264 AppendDNSNameString (&arElem->ar.namestorage, "local");
5265 AssignDomainName(&arElem->ar.resrec.rdata->u.name, &answer->rdata->u.name);
5266 LogInfo("FoundDomain: Registering %s", ARDisplayString(m, &arElem->ar));
5267 err = mDNS_Register(m, &arElem->ar);
5268 if (err) { LogMsg("ERROR: FoundDomain - mDNS_Register returned %d", err); mDNSPlatformMemFree(arElem); return; }
5269 arElem->next = slElem->AuthRecs;
5270 slElem->AuthRecs = arElem;
5271 }
5272 else
5273 {
5274 ARListElem **ptr = &slElem->AuthRecs;
5275 while (*ptr)
5276 {
5277 if (SameDomainName(&(*ptr)->ar.resrec.rdata->u.name, &answer->rdata->u.name))
5278 {
5279 ARListElem *dereg = *ptr;
5280 *ptr = (*ptr)->next;
5281 LogInfo("FoundDomain: Deregistering %s", ARDisplayString(m, &dereg->ar));
5282 err = mDNS_Deregister(m, &dereg->ar);
5283 if (err) LogMsg("ERROR: FoundDomain - mDNS_Deregister returned %d", err);
5284 // Memory will be freed in the FreeARElemCallback
5285 }
5286 else
5287 ptr = &(*ptr)->next;
5288 }
5289 }
5290 }
5291
5292 #if APPLE_OSX_mDNSResponder && MACOSX_MDNS_MALLOC_DEBUGGING
5293 mDNSexport void udns_validatelists(void *const v)
5294 {
5295 mDNS *const m = v;
5296
5297 NATTraversalInfo *n;
5298 for (n = m->NATTraversals; n; n=n->next)
5299 if (n->next == (NATTraversalInfo *)~0 || n->clientCallback == (NATTraversalClientCallback) ~0)
5300 LogMemCorruption("m->NATTraversals: %p is garbage", n);
5301
5302 DNSServer *d;
5303 for (d = m->DNSServers; d; d=d->next)
5304 if (d->next == (DNSServer *)~0 || d->teststate > DNSServer_Disabled)
5305 LogMemCorruption("m->DNSServers: %p is garbage (%d)", d, d->teststate);
5306
5307 DomainAuthInfo *info;
5308 for (info = m->AuthInfoList; info; info = info->next)
5309 if (info->next == (DomainAuthInfo *)~0)
5310 LogMemCorruption("m->AuthInfoList: %p is garbage", info);
5311
5312 HostnameInfo *hi;
5313 for (hi = m->Hostnames; hi; hi = hi->next)
5314 if (hi->next == (HostnameInfo *)~0 || hi->StatusCallback == (mDNSRecordCallback*)~0)
5315 LogMemCorruption("m->Hostnames: %p is garbage", n);
5316
5317 SearchListElem *ptr;
5318 for (ptr = SearchList; ptr; ptr = ptr->next)
5319 if (ptr->next == (SearchListElem *)~0 || ptr->AuthRecs == (void*)~0)
5320 LogMemCorruption("SearchList: %p is garbage (%X)", ptr, ptr->AuthRecs);
5321 }
5322 #endif
5323
5324 // This should probably move to the UDS daemon -- the concept of legacy clients and automatic registration / automatic browsing
5325 // is really a UDS API issue, not something intrinsic to uDNS
5326
5327 mDNSlocal void uDNS_DeleteWABQueries(mDNS *const m, SearchListElem *ptr, int delete)
5328 {
5329 const char *name1 = mDNSNULL;
5330 const char *name2 = mDNSNULL;
5331 ARListElem **arList = &ptr->AuthRecs;
5332 domainname namestorage1, namestorage2;
5333 mStatus err;
5334
5335 // "delete" parameter indicates the type of query.
5336 switch (delete)
5337 {
5338 case UDNS_WAB_BROWSE_QUERY:
5339 mDNS_StopGetDomains(m, &ptr->BrowseQ);
5340 mDNS_StopGetDomains(m, &ptr->DefBrowseQ);
5341 name1 = mDNS_DomainTypeNames[mDNS_DomainTypeBrowse];
5342 name2 = mDNS_DomainTypeNames[mDNS_DomainTypeBrowseDefault];
5343 break;
5344 case UDNS_WAB_LBROWSE_QUERY:
5345 mDNS_StopGetDomains(m, &ptr->AutomaticBrowseQ);
5346 name1 = mDNS_DomainTypeNames[mDNS_DomainTypeBrowseAutomatic];
5347 break;
5348 case UDNS_WAB_REG_QUERY:
5349 mDNS_StopGetDomains(m, &ptr->RegisterQ);
5350 mDNS_StopGetDomains(m, &ptr->DefRegisterQ);
5351 name1 = mDNS_DomainTypeNames[mDNS_DomainTypeRegistration];
5352 name2 = mDNS_DomainTypeNames[mDNS_DomainTypeRegistrationDefault];
5353 break;
5354 default:
5355 LogMsg("uDNS_DeleteWABQueries: ERROR!! returning from default");
5356 return;
5357 }
5358 // When we get the results to the domain enumeration queries, we add a LocalOnly
5359 // entry. For example, if we issue a domain enumeration query for b._dns-sd._udp.xxxx.com,
5360 // and when we get a response, we add a LocalOnly entry b._dns-sd._udp.local whose RDATA
5361 // points to what we got in the response. Locate the appropriate LocalOnly entries and delete
5362 // them.
5363 if (name1)
5364 {
5365 MakeDomainNameFromDNSNameString(&namestorage1, name1);
5366 AppendDNSNameString(&namestorage1, "local");
5367 }
5368 if (name2)
5369 {
5370 MakeDomainNameFromDNSNameString(&namestorage2, name2);
5371 AppendDNSNameString(&namestorage2, "local");
5372 }
5373 while (*arList)
5374 {
5375 ARListElem *dereg = *arList;
5376 if ((name1 && SameDomainName(&dereg->ar.namestorage, &namestorage1)) ||
5377 (name2 && SameDomainName(&dereg->ar.namestorage, &namestorage2)))
5378 {
5379 LogInfo("uDNS_DeleteWABQueries: Deregistering PTR %##s -> %##s", dereg->ar.resrec.name->c, dereg->ar.resrec.rdata->u.name.c);
5380 *arList = dereg->next;
5381 err = mDNS_Deregister(m, &dereg->ar);
5382 if (err) LogMsg("uDNS_DeleteWABQueries:: ERROR!! mDNS_Deregister returned %d", err);
5383 // Memory will be freed in the FreeARElemCallback
5384 }
5385 else
5386 {
5387 LogInfo("uDNS_DeleteWABQueries: Skipping PTR %##s -> %##s", dereg->ar.resrec.name->c, dereg->ar.resrec.rdata->u.name.c);
5388 arList = &(*arList)->next;
5389 }
5390 }
5391 }
5392
5393 mDNSexport void uDNS_SetupWABQueries(mDNS *const m)
5394 {
5395 SearchListElem **p = &SearchList, *ptr;
5396 mStatus err;
5397 int action = 0;
5398
5399 // step 1: mark each element for removal
5400 for (ptr = SearchList; ptr; ptr = ptr->next)
5401 ptr->flag |= SLE_DELETE;
5402
5403 // Make sure we have the search domains from the platform layer so that if we start the WAB
5404 // queries below, we have the latest information.
5405 mDNS_Lock(m);
5406 if (!mDNSPlatformSetDNSConfig(m, mDNSfalse, mDNStrue, mDNSNULL, mDNSNULL, mDNSNULL, mDNSfalse))
5407 {
5408 // If the configuration did not change, clear the flag so that we don't free the searchlist.
5409 // We still have to start the domain enumeration queries as we may not have started them
5410 // before.
5411 for (ptr = SearchList; ptr; ptr = ptr->next)
5412 ptr->flag &= ~SLE_DELETE;
5413 LogInfo("uDNS_SetupWABQueries: No config change");
5414 }
5415 mDNS_Unlock(m);
5416
5417 if (m->WABBrowseQueriesCount)
5418 action |= UDNS_WAB_BROWSE_QUERY;
5419 if (m->WABLBrowseQueriesCount)
5420 action |= UDNS_WAB_LBROWSE_QUERY;
5421 if (m->WABRegQueriesCount)
5422 action |= UDNS_WAB_REG_QUERY;
5423
5424
5425 // delete elems marked for removal, do queries for elems marked add
5426 while (*p)
5427 {
5428 ptr = *p;
5429 LogInfo("uDNS_SetupWABQueries:action 0x%x: Flags 0x%x, AuthRecs %p, InterfaceID %p %##s", action, ptr->flag, ptr->AuthRecs, ptr->InterfaceID, ptr->domain.c);
5430 // If SLE_DELETE is set, stop all the queries, deregister all the records and free the memory.
5431 // Otherwise, check to see what the "action" requires. If a particular action bit is not set and
5432 // we have started the corresponding queries as indicated by the "flags", stop those queries and
5433 // deregister the records corresponding to them.
5434 if ((ptr->flag & SLE_DELETE) ||
5435 (!(action & UDNS_WAB_BROWSE_QUERY) && (ptr->flag & SLE_WAB_BROWSE_QUERY_STARTED)) ||
5436 (!(action & UDNS_WAB_LBROWSE_QUERY) && (ptr->flag & SLE_WAB_LBROWSE_QUERY_STARTED)) ||
5437 (!(action & UDNS_WAB_REG_QUERY) && (ptr->flag & SLE_WAB_REG_QUERY_STARTED)))
5438 {
5439 if (ptr->flag & SLE_DELETE)
5440 {
5441 ARListElem *arList = ptr->AuthRecs;
5442 ptr->AuthRecs = mDNSNULL;
5443 *p = ptr->next;
5444
5445 // If the user has "local" in their DNS searchlist, we ignore that for the purposes of domain enumeration queries
5446 // We suppressed the domain enumeration for scoped search domains below. When we enable that
5447 // enable this.
5448 if ((ptr->flag & SLE_WAB_BROWSE_QUERY_STARTED) &&
5449 !SameDomainName(&ptr->domain, &localdomain) && (ptr->InterfaceID == mDNSInterface_Any))
5450 {
5451 LogInfo("uDNS_SetupWABQueries: DELETE Browse for domain %##s", ptr->domain.c);
5452 mDNS_StopGetDomains(m, &ptr->BrowseQ);
5453 mDNS_StopGetDomains(m, &ptr->DefBrowseQ);
5454 }
5455 if ((ptr->flag & SLE_WAB_LBROWSE_QUERY_STARTED) &&
5456 !SameDomainName(&ptr->domain, &localdomain) && (ptr->InterfaceID == mDNSInterface_Any))
5457 {
5458 LogInfo("uDNS_SetupWABQueries: DELETE Legacy Browse for domain %##s", ptr->domain.c);
5459 mDNS_StopGetDomains(m, &ptr->AutomaticBrowseQ);
5460 }
5461 if ((ptr->flag & SLE_WAB_REG_QUERY_STARTED) &&
5462 !SameDomainName(&ptr->domain, &localdomain) && (ptr->InterfaceID == mDNSInterface_Any))
5463 {
5464 LogInfo("uDNS_SetupWABQueries: DELETE Registration for domain %##s", ptr->domain.c);
5465 mDNS_StopGetDomains(m, &ptr->RegisterQ);
5466 mDNS_StopGetDomains(m, &ptr->DefRegisterQ);
5467 }
5468
5469 mDNSPlatformMemFree(ptr);
5470
5471 // deregister records generated from answers to the query
5472 while (arList)
5473 {
5474 ARListElem *dereg = arList;
5475 arList = arList->next;
5476 LogInfo("uDNS_SetupWABQueries: DELETE Deregistering PTR %##s -> %##s", dereg->ar.resrec.name->c, dereg->ar.resrec.rdata->u.name.c);
5477 err = mDNS_Deregister(m, &dereg->ar);
5478 if (err) LogMsg("uDNS_SetupWABQueries:: ERROR!! mDNS_Deregister returned %d", err);
5479 // Memory will be freed in the FreeARElemCallback
5480 }
5481 continue;
5482 }
5483
5484 // If the user has "local" in their DNS searchlist, we ignore that for the purposes of domain enumeration queries
5485 // We suppressed the domain enumeration for scoped search domains below. When we enable that
5486 // enable this.
5487 if (!(action & UDNS_WAB_BROWSE_QUERY) && (ptr->flag & SLE_WAB_BROWSE_QUERY_STARTED) &&
5488 !SameDomainName(&ptr->domain, &localdomain) && (ptr->InterfaceID == mDNSInterface_Any))
5489 {
5490 LogInfo("uDNS_SetupWABQueries: Deleting Browse for domain %##s", ptr->domain.c);
5491 ptr->flag &= ~SLE_WAB_BROWSE_QUERY_STARTED;
5492 uDNS_DeleteWABQueries(m, ptr, UDNS_WAB_BROWSE_QUERY);
5493 }
5494
5495 if (!(action & UDNS_WAB_LBROWSE_QUERY) && (ptr->flag & SLE_WAB_LBROWSE_QUERY_STARTED) &&
5496 !SameDomainName(&ptr->domain, &localdomain) && (ptr->InterfaceID == mDNSInterface_Any))
5497 {
5498 LogInfo("uDNS_SetupWABQueries: Deleting Legacy Browse for domain %##s", ptr->domain.c);
5499 ptr->flag &= ~SLE_WAB_LBROWSE_QUERY_STARTED;
5500 uDNS_DeleteWABQueries(m, ptr, UDNS_WAB_LBROWSE_QUERY);
5501 }
5502
5503 if (!(action & UDNS_WAB_REG_QUERY) && (ptr->flag & SLE_WAB_REG_QUERY_STARTED) &&
5504 !SameDomainName(&ptr->domain, &localdomain) && (ptr->InterfaceID == mDNSInterface_Any))
5505 {
5506 LogInfo("uDNS_SetupWABQueries: Deleting Registration for domain %##s", ptr->domain.c);
5507 ptr->flag &= ~SLE_WAB_REG_QUERY_STARTED;
5508 uDNS_DeleteWABQueries(m, ptr, UDNS_WAB_REG_QUERY);
5509 }
5510
5511 // Fall through to handle the ADDs
5512 }
5513
5514 if ((action & UDNS_WAB_BROWSE_QUERY) && !(ptr->flag & SLE_WAB_BROWSE_QUERY_STARTED))
5515 {
5516 // If the user has "local" in their DNS searchlist, we ignore that for the purposes of domain enumeration queries.
5517 // Also, suppress the domain enumeration for scoped search domains for now until there is a need.
5518 if (!SameDomainName(&ptr->domain, &localdomain) && (ptr->InterfaceID == mDNSInterface_Any))
5519 {
5520 mStatus err1, err2;
5521 err1 = mDNS_GetDomains(m, &ptr->BrowseQ, mDNS_DomainTypeBrowse, &ptr->domain, ptr->InterfaceID, FoundDomain, ptr);
5522 if (err1)
5523 {
5524 LogMsg("uDNS_SetupWABQueries: GetDomains for domain %##s returned error(s):\n"
5525 "%d (mDNS_DomainTypeBrowse)\n", ptr->domain.c, err1);
5526 }
5527 else
5528 {
5529 LogInfo("uDNS_SetupWABQueries: Starting Browse for domain %##s", ptr->domain.c);
5530 }
5531 err2 = mDNS_GetDomains(m, &ptr->DefBrowseQ, mDNS_DomainTypeBrowseDefault, &ptr->domain, ptr->InterfaceID, FoundDomain, ptr);
5532 if (err2)
5533 {
5534 LogMsg("uDNS_SetupWABQueries: GetDomains for domain %##s returned error(s):\n"
5535 "%d (mDNS_DomainTypeBrowseDefault)\n", ptr->domain.c, err2);
5536 }
5537 else
5538 {
5539 LogInfo("uDNS_SetupWABQueries: Starting Default Browse for domain %##s", ptr->domain.c);
5540 }
5541 // For simplicity, we mark a single bit for denoting that both the browse queries have started.
5542 // It is not clear as to why one would fail to start and the other would succeed in starting up.
5543 // If that happens, we will try to stop both the queries and one of them won't be in the list and
5544 // it is not a hard error.
5545 if (!err1 || !err2)
5546 {
5547 ptr->flag |= SLE_WAB_BROWSE_QUERY_STARTED;
5548 }
5549 }
5550 }
5551 if ((action & UDNS_WAB_LBROWSE_QUERY) && !(ptr->flag & SLE_WAB_LBROWSE_QUERY_STARTED))
5552 {
5553 // If the user has "local" in their DNS searchlist, we ignore that for the purposes of domain enumeration queries.
5554 // Also, suppress the domain enumeration for scoped search domains for now until there is a need.
5555 if (!SameDomainName(&ptr->domain, &localdomain) && (ptr->InterfaceID == mDNSInterface_Any))
5556 {
5557 mStatus err1;
5558 err1 = mDNS_GetDomains(m, &ptr->AutomaticBrowseQ, mDNS_DomainTypeBrowseAutomatic, &ptr->domain, ptr->InterfaceID, FoundDomain, ptr);
5559 if (err1)
5560 {
5561 LogMsg("uDNS_SetupWABQueries: GetDomains for domain %##s returned error(s):\n"
5562 "%d (mDNS_DomainTypeBrowseAutomatic)\n",
5563 ptr->domain.c, err1);
5564 }
5565 else
5566 {
5567 ptr->flag |= SLE_WAB_LBROWSE_QUERY_STARTED;
5568 LogInfo("uDNS_SetupWABQueries: Starting Legacy Browse for domain %##s", ptr->domain.c);
5569 }
5570 }
5571 }
5572 if ((action & UDNS_WAB_REG_QUERY) && !(ptr->flag & SLE_WAB_REG_QUERY_STARTED))
5573 {
5574 // If the user has "local" in their DNS searchlist, we ignore that for the purposes of domain enumeration queries.
5575 // Also, suppress the domain enumeration for scoped search domains for now until there is a need.
5576 if (!SameDomainName(&ptr->domain, &localdomain) && (ptr->InterfaceID == mDNSInterface_Any))
5577 {
5578 mStatus err1, err2;
5579 err1 = mDNS_GetDomains(m, &ptr->RegisterQ, mDNS_DomainTypeRegistration, &ptr->domain, ptr->InterfaceID, FoundDomain, ptr);
5580 if (err1)
5581 {
5582 LogMsg("uDNS_SetupWABQueries: GetDomains for domain %##s returned error(s):\n"
5583 "%d (mDNS_DomainTypeRegistration)\n", ptr->domain.c, err1);
5584 }
5585 else
5586 {
5587 LogInfo("uDNS_SetupWABQueries: Starting Registration for domain %##s", ptr->domain.c);
5588 }
5589 err2 = mDNS_GetDomains(m, &ptr->DefRegisterQ, mDNS_DomainTypeRegistrationDefault, &ptr->domain, ptr->InterfaceID, FoundDomain, ptr);
5590 if (err2)
5591 {
5592 LogMsg("uDNS_SetupWABQueries: GetDomains for domain %##s returned error(s):\n"
5593 "%d (mDNS_DomainTypeRegistrationDefault)", ptr->domain.c, err2);
5594 }
5595 else
5596 {
5597 LogInfo("uDNS_SetupWABQueries: Starting Default Registration for domain %##s", ptr->domain.c);
5598 }
5599 if (!err1 || !err2)
5600 {
5601 ptr->flag |= SLE_WAB_REG_QUERY_STARTED;
5602 }
5603 }
5604 }
5605
5606 p = &ptr->next;
5607 }
5608 }
5609
5610 // mDNS_StartWABQueries is called once per API invocation where normally
5611 // one of the bits is set.
5612 mDNSexport void uDNS_StartWABQueries(mDNS *const m, int queryType)
5613 {
5614 if (queryType & UDNS_WAB_BROWSE_QUERY)
5615 {
5616 m->WABBrowseQueriesCount++;
5617 LogInfo("uDNS_StartWABQueries: Browse query count %d", m->WABBrowseQueriesCount);
5618 }
5619 if (queryType & UDNS_WAB_LBROWSE_QUERY)
5620 {
5621 m->WABLBrowseQueriesCount++;
5622 LogInfo("uDNS_StartWABQueries: Legacy Browse query count %d", m->WABLBrowseQueriesCount);
5623 }
5624 if (queryType & UDNS_WAB_REG_QUERY)
5625 {
5626 m->WABRegQueriesCount++;
5627 LogInfo("uDNS_StartWABQueries: Reg query count %d", m->WABRegQueriesCount);
5628 }
5629 uDNS_SetupWABQueries(m);
5630 }
5631
5632 // mDNS_StopWABQueries is called once per API invocation where normally
5633 // one of the bits is set.
5634 mDNSexport void uDNS_StopWABQueries(mDNS *const m, int queryType)
5635 {
5636 if (queryType & UDNS_WAB_BROWSE_QUERY)
5637 {
5638 m->WABBrowseQueriesCount--;
5639 LogInfo("uDNS_StopWABQueries: Browse query count %d", m->WABBrowseQueriesCount);
5640 }
5641 if (queryType & UDNS_WAB_LBROWSE_QUERY)
5642 {
5643 m->WABLBrowseQueriesCount--;
5644 LogInfo("uDNS_StopWABQueries: Legacy Browse query count %d", m->WABLBrowseQueriesCount);
5645 }
5646 if (queryType & UDNS_WAB_REG_QUERY)
5647 {
5648 m->WABRegQueriesCount--;
5649 LogInfo("uDNS_StopWABQueries: Reg query count %d", m->WABRegQueriesCount);
5650 }
5651 uDNS_SetupWABQueries(m);
5652 }
5653
5654 mDNSexport domainname *uDNS_GetNextSearchDomain(mDNS *const m, mDNSInterfaceID InterfaceID, mDNSs8 *searchIndex, mDNSBool ignoreDotLocal)
5655 {
5656 SearchListElem *p = SearchList;
5657 int count = *searchIndex;
5658 (void) m; // unused
5659
5660 if (count < 0) { LogMsg("uDNS_GetNextSearchDomain: count %d less than zero", count); return mDNSNULL; }
5661
5662 // Skip the domains that we already looked at before. Guard against "p"
5663 // being NULL. When search domains change we may not set the SearchListIndex
5664 // of the question to zero immediately e.g., domain enumeration query calls
5665 // uDNS_SetupWABQueries which reads in the new search domain but does not
5666 // restart the questions immediately. Questions are restarted as part of
5667 // network change and hence temporarily SearchListIndex may be out of range.
5668
5669 for (; count && p; count--)
5670 p = p->next;
5671
5672 while (p)
5673 {
5674 int labels = CountLabels(&p->domain);
5675 if (labels > 0)
5676 {
5677 const domainname *d = SkipLeadingLabels(&p->domain, labels - 1);
5678 if (SameDomainLabel(d->c, (const mDNSu8 *)"\x4" "arpa"))
5679 {
5680 LogInfo("uDNS_GetNextSearchDomain: skipping search domain %##s, InterfaceID %p", p->domain.c, p->InterfaceID);
5681 (*searchIndex)++;
5682 p = p->next;
5683 continue;
5684 }
5685 if (ignoreDotLocal && SameDomainLabel(d->c, (const mDNSu8 *)"\x5" "local"))
5686 {
5687 LogInfo("uDNS_GetNextSearchDomain: skipping local domain %##s, InterfaceID %p", p->domain.c, p->InterfaceID);
5688 (*searchIndex)++;
5689 p = p->next;
5690 continue;
5691 }
5692 }
5693 // Point to the next one in the list which we will look at next time.
5694 (*searchIndex)++;
5695 // When we are appending search domains in a ActiveDirectory domain, the question's InterfaceID
5696 // set to mDNSInterface_Unicast. Match the unscoped entries in that case.
5697 if (((InterfaceID == mDNSInterface_Unicast) && (p->InterfaceID == mDNSInterface_Any)) ||
5698 p->InterfaceID == InterfaceID)
5699 {
5700 LogInfo("uDNS_GetNextSearchDomain returning domain %##s, InterfaceID %p", p->domain.c, p->InterfaceID);
5701 return &p->domain;
5702 }
5703 LogInfo("uDNS_GetNextSearchDomain skipping domain %##s, InterfaceID %p", p->domain.c, p->InterfaceID);
5704 p = p->next;
5705 }
5706 return mDNSNULL;
5707 }
5708
5709 mDNSlocal void FlushAddressCacheRecords(mDNS *const m)
5710 {
5711 mDNSu32 slot;
5712 CacheGroup *cg;
5713 CacheRecord *cr;
5714 FORALL_CACHERECORDS(slot, cg, cr)
5715 {
5716 if (cr->resrec.InterfaceID) continue;
5717
5718 // If a resource record can answer A or AAAA, they need to be flushed so that we will
5719 // deliver an ADD or RMV
5720 if (RRTypeAnswersQuestionType(&cr->resrec, kDNSType_A) ||
5721 RRTypeAnswersQuestionType(&cr->resrec, kDNSType_AAAA))
5722 {
5723 LogInfo("FlushAddressCacheRecords: Purging Resourcerecord %s", CRDisplayString(m, cr));
5724 mDNS_PurgeCacheResourceRecord(m, cr);
5725 }
5726 }
5727 }
5728
5729 // Retry questions which has seach domains appended
5730 mDNSexport void RetrySearchDomainQuestions(mDNS *const m)
5731 {
5732 DNSQuestion *q;
5733 mDNSBool found = mDNSfalse;
5734
5735 // Check to see if there are any questions which needs search domains to be applied.
5736 // If there is none, search domains can't possibly affect them.
5737 for (q = m->Questions; q; q = q->next)
5738 {
5739 if (q->AppendSearchDomains)
5740 {
5741 found = mDNStrue;
5742 break;
5743 }
5744 }
5745 if (!found)
5746 {
5747 LogInfo("RetrySearchDomainQuestions: Questions with AppendSearchDomain not found");
5748 return;
5749 }
5750 LogInfo("RetrySearchDomainQuestions: Question with AppendSearchDomain found %##s (%s)", q->qname.c, DNSTypeName(q->qtype));
5751 // Purge all the A/AAAA cache records and restart the queries. mDNSCoreRestartAddressQueries
5752 // does this. When we restart the question, we first want to try the new search domains rather
5753 // than use the entries that is already in the cache. When we appended search domains, we might
5754 // have created cache entries which is no longer valid as there are new search domains now
5755 mDNSCoreRestartAddressQueries(m, mDNStrue, FlushAddressCacheRecords, mDNSNULL, mDNSNULL);
5756 }
5757
5758 // Construction of Default Browse domain list (i.e. when clients pass NULL) is as follows:
5759 // 1) query for b._dns-sd._udp.local on LocalOnly interface
5760 // (.local manually generated via explicit callback)
5761 // 2) for each search domain (from prefs pane), query for b._dns-sd._udp.<searchdomain>.
5762 // 3) for each result from (2), register LocalOnly PTR record b._dns-sd._udp.local. -> <result>
5763 // 4) result above should generate a callback from question in (1). result added to global list
5764 // 5) global list delivered to client via GetSearchDomainList()
5765 // 6) client calls to enumerate domains now go over LocalOnly interface
5766 // (!!!KRS may add outgoing interface in addition)
5767
5768 struct CompileTimeAssertionChecks_uDNS
5769 {
5770 // Check our structures are reasonable sizes. Including overly-large buffers, or embedding
5771 // other overly-large structures instead of having a pointer to them, can inadvertently
5772 // cause structure sizes (and therefore memory usage) to balloon unreasonably.
5773 char sizecheck_tcpInfo_t [(sizeof(tcpInfo_t) <= 9056) ? 1 : -1];
5774 char sizecheck_SearchListElem[(sizeof(SearchListElem) <= 5000) ? 1 : -1];
5775 };
5776
5777 #else // !UNICAST_DISABLED
5778
5779 mDNSexport const domainname *GetServiceTarget(mDNS *m, AuthRecord *const rr)
5780 {
5781 (void) m;
5782 (void) rr;
5783
5784 return mDNSNULL;
5785 }
5786
5787 mDNSexport DomainAuthInfo *GetAuthInfoForName_internal(mDNS *m, const domainname *const name)
5788 {
5789 (void) m;
5790 (void) name;
5791
5792 return mDNSNULL;
5793 }
5794
5795 mDNSexport DomainAuthInfo *GetAuthInfoForQuestion(mDNS *m, const DNSQuestion *const q)
5796 {
5797 (void) m;
5798 (void) q;
5799
5800 return mDNSNULL;
5801 }
5802
5803 mDNSexport void startLLQHandshake(mDNS *m, DNSQuestion *q)
5804 {
5805 (void) m;
5806 (void) q;
5807 }
5808
5809 mDNSexport void DisposeTCPConn(struct tcpInfo_t *tcp)
5810 {
5811 (void) tcp;
5812 }
5813
5814 mDNSexport mStatus mDNS_StartNATOperation_internal(mDNS *m, NATTraversalInfo *traversal)
5815 {
5816 (void) m;
5817 (void) traversal;
5818
5819 return mStatus_UnsupportedErr;
5820 }
5821
5822 mDNSexport mStatus mDNS_StopNATOperation_internal(mDNS *m, NATTraversalInfo *traversal)
5823 {
5824 (void) m;
5825 (void) traversal;
5826
5827 return mStatus_UnsupportedErr;
5828 }
5829
5830 mDNSexport void sendLLQRefresh(mDNS *m, DNSQuestion *q)
5831 {
5832 (void) m;
5833 (void) q;
5834 }
5835
5836 mDNSexport ZoneData *StartGetZoneData(mDNS *const m, const domainname *const name, const ZoneService target, ZoneDataCallback callback, void *ZoneDataContext)
5837 {
5838 (void) m;
5839 (void) name;
5840 (void) target;
5841 (void) callback;
5842 (void) ZoneDataContext;
5843
5844 return mDNSNULL;
5845 }
5846
5847 mDNSexport void RecordRegistrationGotZoneData(mDNS *const m, mStatus err, const ZoneData *zoneData)
5848 {
5849 (void) m;
5850 (void) err;
5851 (void) zoneData;
5852 }
5853
5854 mDNSexport uDNS_LLQType uDNS_recvLLQResponse(mDNS *const m, const DNSMessage *const msg, const mDNSu8 *const end,
5855 const mDNSAddr *const srcaddr, const mDNSIPPort srcport, DNSQuestion **matchQuestion)
5856 {
5857 (void) m;
5858 (void) msg;
5859 (void) end;
5860 (void) srcaddr;
5861 (void) srcport;
5862 (void) matchQuestion;
5863
5864 return uDNS_LLQ_Not;
5865 }
5866
5867 mDNSexport void PenalizeDNSServer(mDNS *const m, DNSQuestion *q, mDNSOpaque16 responseFlags)
5868 {
5869 (void) m;
5870 (void) q;
5871 (void) responseFlags;
5872 }
5873
5874 mDNSexport void mDNS_AddSearchDomain(const domainname *const domain, mDNSInterfaceID InterfaceID)
5875 {
5876 (void) domain;
5877 (void) InterfaceID;
5878 }
5879
5880 mDNSexport void RetrySearchDomainQuestions(mDNS *const m)
5881 {
5882 (void) m;
5883 }
5884
5885 mDNSexport mStatus mDNS_SetSecretForDomain(mDNS *m, DomainAuthInfo *info, const domainname *domain, const domainname *keyname, const char *b64keydata, const domainname *hostname, mDNSIPPort *port, mDNSBool autoTunnel)
5886 {
5887 (void) m;
5888 (void) info;
5889 (void) domain;
5890 (void) keyname;
5891 (void) b64keydata;
5892 (void) hostname;
5893 (void) port;
5894 (void) autoTunnel;
5895
5896 return mStatus_UnsupportedErr;
5897 }
5898
5899 mDNSexport domainname *uDNS_GetNextSearchDomain(mDNS *const m, mDNSInterfaceID InterfaceID, mDNSs8 *searchIndex, mDNSBool ignoreDotLocal)
5900 {
5901 (void) m;
5902 (void) InterfaceID;
5903 (void) searchIndex;
5904 (void) ignoreDotLocal;
5905
5906 return mDNSNULL;
5907 }
5908
5909 mDNSexport DomainAuthInfo *GetAuthInfoForName(mDNS *m, const domainname *const name)
5910 {
5911 (void) m;
5912 (void) name;
5913
5914 return mDNSNULL;
5915 }
5916
5917 mDNSexport mStatus mDNS_StartNATOperation(mDNS *const m, NATTraversalInfo *traversal)
5918 {
5919 (void) m;
5920 (void) traversal;
5921
5922 return mStatus_UnsupportedErr;
5923 }
5924
5925 mDNSexport mStatus mDNS_StopNATOperation(mDNS *const m, NATTraversalInfo *traversal)
5926 {
5927 (void) m;
5928 (void) traversal;
5929
5930 return mStatus_UnsupportedErr;
5931 }
5932
5933 mDNSexport DNSServer *mDNS_AddDNSServer(mDNS *const m, const domainname *d, const mDNSInterfaceID interface, const mDNSs32 serviceID, const mDNSAddr *addr,
5934 const mDNSIPPort port, mDNSu32 scoped, mDNSu32 timeout, mDNSBool cellIntf, mDNSu16 resGroupID, mDNSBool reqA,
5935 mDNSBool reqAAAA, mDNSBool reqDO)
5936 {
5937 (void) m;
5938 (void) d;
5939 (void) interface;
5940 (void) serviceID;
5941 (void) addr;
5942 (void) port;
5943 (void) scoped;
5944 (void) timeout;
5945 (void) cellIntf;
5946 (void) resGroupID;
5947 (void) reqA;
5948 (void) reqAAAA;
5949 (void) reqDO;
5950
5951 return mDNSNULL;
5952 }
5953
5954 mDNSexport void uDNS_SetupWABQueries(mDNS *const m)
5955 {
5956 (void) m;
5957 }
5958
5959 mDNSexport void uDNS_StartWABQueries(mDNS *const m, int queryType)
5960 {
5961 (void) m;
5962 (void) queryType;
5963 }
5964
5965 mDNSexport void uDNS_StopWABQueries(mDNS *const m, int queryType)
5966 {
5967 (void) m;
5968 (void) queryType;
5969 }
5970
5971 mDNSexport void mDNS_AddDynDNSHostName(mDNS *m, const domainname *fqdn, mDNSRecordCallback *StatusCallback, const void *StatusContext)
5972 {
5973 (void) m;
5974 (void) fqdn;
5975 (void) StatusCallback;
5976 (void) StatusContext;
5977 }
5978 mDNSexport void mDNS_SetPrimaryInterfaceInfo(mDNS *m, const mDNSAddr *v4addr, const mDNSAddr *v6addr, const mDNSAddr *router)
5979 {
5980 (void) m;
5981 (void) v4addr;
5982 (void) v6addr;
5983 (void) router;
5984 }
5985
5986 mDNSexport void mDNS_RemoveDynDNSHostName(mDNS *m, const domainname *fqdn)
5987 {
5988 (void) m;
5989 (void) fqdn;
5990 }
5991
5992 mDNSexport void RecreateNATMappings(mDNS *const m, const mDNSu32 waitTicks)
5993 {
5994 (void) m;
5995 (void) waitTicks;
5996 }
5997
5998 mDNSexport mDNSBool IsGetZoneDataQuestion(DNSQuestion *q)
5999 {
6000 (void)q;
6001
6002 return mDNSfalse;
6003 }
6004
6005 #endif // !UNICAST_DISABLED