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1 /*
2  *  Copyright (c) 2016, The OpenThread Authors.
3  *  All rights reserved.
4  *
5  *  Redistribution and use in source and binary forms, with or without
6  *  modification, are permitted provided that the following conditions are met:
7  *  1. Redistributions of source code must retain the above copyright
8  *     notice, this list of conditions and the following disclaimer.
9  *  2. Redistributions in binary form must reproduce the above copyright
10  *     notice, this list of conditions and the following disclaimer in the
11  *     documentation and/or other materials provided with the distribution.
12  *  3. Neither the name of the copyright holder nor the
13  *     names of its contributors may be used to endorse or promote products
14  *     derived from this software without specific prior written permission.
15  *
16  *  THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
17  *  AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
18  *  IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
19  *  ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE
20  *  LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
21  *  CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
22  *  SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
23  *  INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
24  *  CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
25  *  ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
26  *  POSSIBILITY OF SUCH DAMAGE.
27  */
28 
29 /**
30  * @file
31  *   This file implements Thread's EID-to-RLOC mapping and caching.
32  */
33 
34 #include "address_resolver.hpp"
35 
36 #include "coap/coap_message.hpp"
37 #include "common/as_core_type.hpp"
38 #include "common/code_utils.hpp"
39 #include "common/debug.hpp"
40 #include "common/encoding.hpp"
41 #include "common/locator_getters.hpp"
42 #include "common/log.hpp"
43 #include "common/time.hpp"
44 #include "instance/instance.hpp"
45 #include "mac/mac_types.hpp"
46 #include "thread/mesh_forwarder.hpp"
47 #include "thread/mle_router.hpp"
48 #include "thread/thread_netif.hpp"
49 #include "thread/uri_paths.hpp"
50 
51 namespace ot {
52 
53 RegisterLogModule("AddrResolver");
54 
AddressResolver(Instance & aInstance)55 AddressResolver::AddressResolver(Instance &aInstance)
56     : InstanceLocator(aInstance)
57 #if OPENTHREAD_FTD
58     , mCacheEntryPool(aInstance)
59     , mIcmpHandler(&AddressResolver::HandleIcmpReceive, this)
60 #endif
61 {
62 #if OPENTHREAD_FTD
63     IgnoreError(Get<Ip6::Icmp>().RegisterHandler(mIcmpHandler));
64 #endif
65 }
66 
67 #if OPENTHREAD_FTD
68 
Clear(void)69 void AddressResolver::Clear(void)
70 {
71     CacheEntryList *lists[] = {&mCachedList, &mSnoopedList, &mQueryList, &mQueryRetryList};
72 
73     for (CacheEntryList *list : lists)
74     {
75         CacheEntry *entry;
76 
77         while ((entry = list->Pop()) != nullptr)
78         {
79             if (list == &mQueryList)
80             {
81                 Get<MeshForwarder>().HandleResolved(entry->GetTarget(), kErrorDrop);
82             }
83 
84             mCacheEntryPool.Free(*entry);
85         }
86     }
87 }
88 
GetNextCacheEntry(EntryInfo & aInfo,Iterator & aIterator) const89 Error AddressResolver::GetNextCacheEntry(EntryInfo &aInfo, Iterator &aIterator) const
90 {
91     Error                 error = kErrorNone;
92     const CacheEntryList *list  = aIterator.GetList();
93     const CacheEntry     *entry = aIterator.GetEntry();
94 
95     while (entry == nullptr)
96     {
97         if (list == nullptr)
98         {
99             list = &mCachedList;
100         }
101         else if (list == &mCachedList)
102         {
103             list = &mSnoopedList;
104         }
105         else if (list == &mSnoopedList)
106         {
107             list = &mQueryList;
108         }
109         else if (list == &mQueryList)
110         {
111             list = &mQueryRetryList;
112         }
113         else
114         {
115             ExitNow(error = kErrorNotFound);
116         }
117 
118         entry = list->GetHead();
119     }
120 
121     // Update the iterator then populate the `aInfo`.
122 
123     aIterator.SetEntry(entry->GetNext());
124     aIterator.SetList(list);
125 
126     aInfo.Clear();
127     aInfo.mTarget = entry->GetTarget();
128     aInfo.mRloc16 = entry->GetRloc16();
129 
130     if (list == &mCachedList)
131     {
132         aInfo.mState          = MapEnum(EntryInfo::kStateCached);
133         aInfo.mCanEvict       = true;
134         aInfo.mValidLastTrans = entry->IsLastTransactionTimeValid();
135 
136         VerifyOrExit(entry->IsLastTransactionTimeValid());
137 
138         aInfo.mLastTransTime = entry->GetLastTransactionTime();
139         AsCoreType(&aInfo.mMeshLocalEid).SetPrefix(Get<Mle::MleRouter>().GetMeshLocalPrefix());
140         AsCoreType(&aInfo.mMeshLocalEid).SetIid(entry->GetMeshLocalIid());
141 
142         ExitNow();
143     }
144 
145     if (list == &mSnoopedList)
146     {
147         aInfo.mState = MapEnum(EntryInfo::kStateSnooped);
148     }
149     else if (list == &mQueryList)
150     {
151         aInfo.mState = MapEnum(EntryInfo::kStateQuery);
152     }
153     else
154     {
155         aInfo.mState    = MapEnum(EntryInfo::kStateRetryQuery);
156         aInfo.mRampDown = entry->IsInRampDown();
157     }
158 
159     aInfo.mCanEvict   = entry->CanEvict();
160     aInfo.mTimeout    = entry->GetTimeout();
161     aInfo.mRetryDelay = entry->GetRetryDelay();
162 
163 exit:
164     return error;
165 }
166 
RemoveEntriesForRouterId(uint8_t aRouterId)167 void AddressResolver::RemoveEntriesForRouterId(uint8_t aRouterId)
168 {
169     Remove(Mle::Rloc16FromRouterId(aRouterId), /* aMatchRouterId */ true);
170 }
171 
RemoveEntriesForRloc16(uint16_t aRloc16)172 void AddressResolver::RemoveEntriesForRloc16(uint16_t aRloc16) { Remove(aRloc16, /* aMatchRouterId */ false); }
173 
GetEntryAfter(CacheEntry * aPrev,CacheEntryList & aList)174 AddressResolver::CacheEntry *AddressResolver::GetEntryAfter(CacheEntry *aPrev, CacheEntryList &aList)
175 {
176     return (aPrev == nullptr) ? aList.GetHead() : aPrev->GetNext();
177 }
178 
Remove(Mac::ShortAddress aRloc16,bool aMatchRouterId)179 void AddressResolver::Remove(Mac::ShortAddress aRloc16, bool aMatchRouterId)
180 {
181     CacheEntryList *lists[] = {&mCachedList, &mSnoopedList};
182 
183     for (CacheEntryList *list : lists)
184     {
185         CacheEntry *prev = nullptr;
186         CacheEntry *entry;
187 
188         while ((entry = GetEntryAfter(prev, *list)) != nullptr)
189         {
190             if ((aMatchRouterId && Mle::RouterIdMatch(entry->GetRloc16(), aRloc16)) ||
191                 (!aMatchRouterId && (entry->GetRloc16() == aRloc16)))
192             {
193                 RemoveCacheEntry(*entry, *list, prev, aMatchRouterId ? kReasonRemovingRouterId : kReasonRemovingRloc16);
194                 mCacheEntryPool.Free(*entry);
195 
196                 // If the entry is removed from list, we keep the same
197                 // `prev` pointer.
198             }
199             else
200             {
201                 prev = entry;
202             }
203         }
204     }
205 }
206 
FindCacheEntry(const Ip6::Address & aEid,CacheEntryList * & aList,CacheEntry * & aPrevEntry)207 AddressResolver::CacheEntry *AddressResolver::FindCacheEntry(const Ip6::Address &aEid,
208                                                              CacheEntryList    *&aList,
209                                                              CacheEntry        *&aPrevEntry)
210 {
211     CacheEntry     *entry   = nullptr;
212     CacheEntryList *lists[] = {&mCachedList, &mSnoopedList, &mQueryList, &mQueryRetryList};
213 
214     for (CacheEntryList *list : lists)
215     {
216         aList = list;
217         entry = aList->FindMatching(aEid, aPrevEntry);
218         VerifyOrExit(entry == nullptr);
219     }
220 
221 exit:
222     return entry;
223 }
224 
RemoveEntryForAddress(const Ip6::Address & aEid)225 void AddressResolver::RemoveEntryForAddress(const Ip6::Address &aEid) { Remove(aEid, kReasonRemovingEid); }
226 
Remove(const Ip6::Address & aEid,Reason aReason)227 void AddressResolver::Remove(const Ip6::Address &aEid, Reason aReason)
228 {
229     CacheEntry     *entry;
230     CacheEntry     *prev;
231     CacheEntryList *list;
232 
233     entry = FindCacheEntry(aEid, list, prev);
234     VerifyOrExit(entry != nullptr);
235 
236     RemoveCacheEntry(*entry, *list, prev, aReason);
237     mCacheEntryPool.Free(*entry);
238 
239 exit:
240     return;
241 }
242 
ReplaceEntriesForRloc16(uint16_t aOldRloc16,uint16_t aNewRloc16)243 void AddressResolver::ReplaceEntriesForRloc16(uint16_t aOldRloc16, uint16_t aNewRloc16)
244 {
245     CacheEntryList *lists[] = {&mCachedList, &mSnoopedList};
246 
247     for (CacheEntryList *list : lists)
248     {
249         for (CacheEntry &entry : *list)
250         {
251             if (entry.GetRloc16() == aOldRloc16)
252             {
253                 entry.SetRloc16(aNewRloc16);
254             }
255         }
256     }
257 }
258 
NewCacheEntry(bool aSnoopedEntry)259 AddressResolver::CacheEntry *AddressResolver::NewCacheEntry(bool aSnoopedEntry)
260 {
261     CacheEntry     *newEntry  = nullptr;
262     CacheEntry     *prevEntry = nullptr;
263     CacheEntryList *lists[]   = {&mSnoopedList, &mQueryRetryList, &mQueryList, &mCachedList};
264 
265     // The following order is used when trying to allocate a new cache
266     // entry: First the cache pool is checked, followed by the list
267     // of snooped entries, then query-retry list (entries in delay
268     // retry timeout wait due to a prior query failing to get a
269     // response), then the query list (entries actively querying and
270     // waiting for address notification response), and finally the
271     // cached (in-use) list. Within each list the oldest entry is
272     // reclaimed first (the list's tail). We also make sure the entry
273     // can be evicted (e.g., first time query entries can not be
274     // evicted till timeout).
275 
276     newEntry = mCacheEntryPool.Allocate();
277     VerifyOrExit(newEntry == nullptr);
278 
279     for (CacheEntryList *list : lists)
280     {
281         CacheEntry *prev;
282         CacheEntry *entry;
283         uint16_t    numNonEvictable = 0;
284 
285         for (prev = nullptr; (entry = GetEntryAfter(prev, *list)) != nullptr; prev = entry)
286         {
287             if ((list != &mCachedList) && !entry->CanEvict())
288             {
289                 numNonEvictable++;
290                 continue;
291             }
292 
293             newEntry  = entry;
294             prevEntry = prev;
295         }
296 
297         if (newEntry != nullptr)
298         {
299             RemoveCacheEntry(*newEntry, *list, prevEntry, kReasonEvictingForNewEntry);
300             ExitNow();
301         }
302 
303         if (aSnoopedEntry && (list == &mSnoopedList))
304         {
305             // Check if the new entry is being requested for "snoop
306             // optimization" (i.e., inspection of a received message).
307             // When a new snooped entry is added, we do not allow it
308             // to be evicted for a short timeout. This allows some
309             // delay for a response message to use the entry (if entry
310             // is used it will be moved to the cached list). If a
311             // snooped entry is not used after the timeout, we allow
312             // it to be evicted. To ensure snooped entries do not
313             // overwrite other cached entries, we limit the number of
314             // snooped entries that are in timeout mode and cannot be
315             // evicted by `kMaxNonEvictableSnoopedEntries`.
316 
317             VerifyOrExit(numNonEvictable < kMaxNonEvictableSnoopedEntries);
318         }
319     }
320 
321 exit:
322     return newEntry;
323 }
324 
RemoveCacheEntry(CacheEntry & aEntry,CacheEntryList & aList,CacheEntry * aPrevEntry,Reason aReason)325 void AddressResolver::RemoveCacheEntry(CacheEntry     &aEntry,
326                                        CacheEntryList &aList,
327                                        CacheEntry     *aPrevEntry,
328                                        Reason          aReason)
329 {
330     aList.PopAfter(aPrevEntry);
331 
332     if (&aList == &mQueryList)
333     {
334         Get<MeshForwarder>().HandleResolved(aEntry.GetTarget(), kErrorDrop);
335     }
336 
337     LogCacheEntryChange(kEntryRemoved, aReason, aEntry, &aList);
338 }
339 
UpdateCacheEntry(const Ip6::Address & aEid,Mac::ShortAddress aRloc16)340 Error AddressResolver::UpdateCacheEntry(const Ip6::Address &aEid, Mac::ShortAddress aRloc16)
341 {
342     // This method updates an existing cache entry for the EID (if any).
343     // Returns `kErrorNone` if entry is found and successfully updated,
344     // `kErrorNotFound` if no matching entry.
345 
346     Error           error = kErrorNone;
347     CacheEntryList *list;
348     CacheEntry     *entry;
349     CacheEntry     *prev;
350 
351     entry = FindCacheEntry(aEid, list, prev);
352     VerifyOrExit(entry != nullptr, error = kErrorNotFound);
353 
354     if ((list == &mCachedList) || (list == &mSnoopedList))
355     {
356         VerifyOrExit(entry->GetRloc16() != aRloc16);
357         entry->SetRloc16(aRloc16);
358     }
359     else
360     {
361         // Entry is in `mQueryList` or `mQueryRetryList`. Remove it
362         // from its current list, update it, and then add it to the
363         // `mCachedList`.
364 
365         list->PopAfter(prev);
366 
367         entry->SetRloc16(aRloc16);
368         entry->MarkLastTransactionTimeAsInvalid();
369         mCachedList.Push(*entry);
370 
371         Get<MeshForwarder>().HandleResolved(aEid, kErrorNone);
372     }
373 
374     LogCacheEntryChange(kEntryUpdated, kReasonSnoop, *entry);
375 
376 exit:
377     return error;
378 }
379 
UpdateSnoopedCacheEntry(const Ip6::Address & aEid,Mac::ShortAddress aRloc16,Mac::ShortAddress aDest)380 void AddressResolver::UpdateSnoopedCacheEntry(const Ip6::Address &aEid,
381                                               Mac::ShortAddress   aRloc16,
382                                               Mac::ShortAddress   aDest)
383 {
384     uint16_t          numNonEvictable = 0;
385     CacheEntry       *entry;
386     Mac::ShortAddress macAddress;
387 
388     VerifyOrExit(Get<Mle::MleRouter>().IsFullThreadDevice());
389 
390 #if OPENTHREAD_CONFIG_TMF_ALLOW_ADDRESS_RESOLUTION_USING_NET_DATA_SERVICES
391     VerifyOrExit(ResolveUsingNetDataServices(aEid, macAddress) != kErrorNone);
392 #endif
393 
394     VerifyOrExit(UpdateCacheEntry(aEid, aRloc16) != kErrorNone);
395 
396     // Skip if the `aRloc16` (i.e., the source of the snooped message)
397     // is this device or an MTD (minimal) child of the device itself.
398 
399     macAddress = Get<Mac::Mac>().GetShortAddress();
400     VerifyOrExit((aRloc16 != macAddress) && !Get<Mle::MleRouter>().IsMinimalChild(aRloc16));
401 
402     // Ensure that the destination of the snooped message is this device
403     // or a minimal child of this device.
404 
405     VerifyOrExit((aDest == macAddress) || Get<Mle::MleRouter>().IsMinimalChild(aDest));
406 
407     entry = NewCacheEntry(/* aSnoopedEntry */ true);
408     VerifyOrExit(entry != nullptr);
409 
410     for (CacheEntry &snooped : mSnoopedList)
411     {
412         if (!snooped.CanEvict())
413         {
414             numNonEvictable++;
415         }
416     }
417 
418     entry->SetTarget(aEid);
419     entry->SetRloc16(aRloc16);
420 
421     if (numNonEvictable < kMaxNonEvictableSnoopedEntries)
422     {
423         entry->SetCanEvict(false);
424         entry->SetTimeout(kSnoopBlockEvictionTimeout);
425 
426         Get<TimeTicker>().RegisterReceiver(TimeTicker::kAddressResolver);
427     }
428     else
429     {
430         entry->SetCanEvict(true);
431         entry->SetTimeout(0);
432     }
433 
434     mSnoopedList.Push(*entry);
435 
436     LogCacheEntryChange(kEntryAdded, kReasonSnoop, *entry);
437 
438 exit:
439     return;
440 }
441 
RestartAddressQueries(void)442 void AddressResolver::RestartAddressQueries(void)
443 {
444     CacheEntry *tail;
445 
446     // We move all entries from `mQueryRetryList` at the tail of
447     // `mQueryList` and then (re)send Address Query for all entries in
448     // the updated `mQueryList`.
449 
450     tail = mQueryList.GetTail();
451 
452     if (tail == nullptr)
453     {
454         mQueryList.SetHead(mQueryRetryList.GetHead());
455     }
456     else
457     {
458         tail->SetNext(mQueryRetryList.GetHead());
459     }
460 
461     mQueryRetryList.Clear();
462 
463     for (CacheEntry &entry : mQueryList)
464     {
465         IgnoreError(SendAddressQuery(entry.GetTarget()));
466 
467         entry.SetTimeout(kAddressQueryTimeout);
468         entry.SetRetryDelay(kAddressQueryInitialRetryDelay);
469         entry.SetCanEvict(false);
470     }
471 }
472 
LookUp(const Ip6::Address & aEid)473 Mac::ShortAddress AddressResolver::LookUp(const Ip6::Address &aEid)
474 {
475     Mac::ShortAddress rloc16 = Mac::kShortAddrInvalid;
476 
477     IgnoreError(Resolve(aEid, rloc16, /* aAllowAddressQuery */ false));
478     return rloc16;
479 }
480 
Resolve(const Ip6::Address & aEid,Mac::ShortAddress & aRloc16,bool aAllowAddressQuery)481 Error AddressResolver::Resolve(const Ip6::Address &aEid, Mac::ShortAddress &aRloc16, bool aAllowAddressQuery)
482 {
483     Error           error = kErrorNone;
484     CacheEntry     *entry;
485     CacheEntry     *prev = nullptr;
486     CacheEntryList *list;
487 
488 #if OPENTHREAD_CONFIG_TMF_ALLOW_ADDRESS_RESOLUTION_USING_NET_DATA_SERVICES
489     VerifyOrExit(ResolveUsingNetDataServices(aEid, aRloc16) != kErrorNone);
490 #endif
491 
492     entry = FindCacheEntry(aEid, list, prev);
493 
494     if ((entry != nullptr) && ((list == &mCachedList) || (list == &mSnoopedList)))
495     {
496         list->PopAfter(prev);
497 
498         if (Get<RouterTable>().GetNextHop(entry->GetRloc16()) == Mle::kInvalidRloc16)
499         {
500             // If the `entry->GetRloc16()` is unreachable (there is no valid
501             // next hop towards it), we clear the entry so to start a new
502             // address query.
503 
504             mCacheEntryPool.Free(*entry);
505             entry = nullptr;
506         }
507         else
508         {
509             // Push the entry at the head of cached list.
510 
511             if (list == &mSnoopedList)
512             {
513                 entry->MarkLastTransactionTimeAsInvalid();
514             }
515 
516             mCachedList.Push(*entry);
517             aRloc16 = entry->GetRloc16();
518             ExitNow();
519         }
520     }
521 
522     if (entry == nullptr)
523     {
524         // If the entry is not present in any of the lists, try to
525         // allocate a new entry and perform address query. We do not
526         // allow first-time address query entries to be evicted till
527         // timeout.
528 
529         VerifyOrExit(aAllowAddressQuery, error = kErrorNotFound);
530 
531         entry = NewCacheEntry(/* aSnoopedEntry */ false);
532         VerifyOrExit(entry != nullptr, error = kErrorNoBufs);
533 
534         entry->SetTarget(aEid);
535         entry->SetRloc16(Mac::kShortAddrInvalid);
536         entry->SetRetryDelay(kAddressQueryInitialRetryDelay);
537         entry->SetCanEvict(false);
538         list = nullptr;
539     }
540 
541     // Note that if `aAllowAddressQuery` is `false` then the `entry`
542     // is definitely already in a list, i.e., we cannot not get here
543     // with `aAllowAddressQuery` being `false` and `entry` being a
544     // newly allocated one, due to the `VerifyOrExit` check that
545     // `aAllowAddressQuery` is `true` before allocating a new cache
546     // entry.
547     VerifyOrExit(aAllowAddressQuery, error = kErrorNotFound);
548 
549     if (list == &mQueryList)
550     {
551         ExitNow(error = kErrorAddressQuery);
552     }
553 
554     if (list == &mQueryRetryList)
555     {
556         // Allow an entry in query-retry mode to resend an Address
557         // Query again only if it is in ramp down mode, i.e., the
558         // retry delay timeout is expired.
559 
560         VerifyOrExit(entry->IsInRampDown(), error = kErrorDrop);
561         mQueryRetryList.PopAfter(prev);
562     }
563 
564     entry->SetTimeout(kAddressQueryTimeout);
565 
566     error = SendAddressQuery(aEid);
567     VerifyOrExit(error == kErrorNone, mCacheEntryPool.Free(*entry));
568 
569     if (list == nullptr)
570     {
571         LogCacheEntryChange(kEntryAdded, kReasonQueryRequest, *entry);
572     }
573 
574     mQueryList.Push(*entry);
575     error = kErrorAddressQuery;
576 
577 exit:
578     return error;
579 }
580 
581 #if OPENTHREAD_CONFIG_TMF_ALLOW_ADDRESS_RESOLUTION_USING_NET_DATA_SERVICES
582 
ResolveUsingNetDataServices(const Ip6::Address & aEid,Mac::ShortAddress & aRloc16)583 Error AddressResolver::ResolveUsingNetDataServices(const Ip6::Address &aEid, Mac::ShortAddress &aRloc16)
584 {
585     // Tries to resolve `aEid` Network Data DNS/SRP Unicast address
586     // service entries.  Returns `kErrorNone` and updates `aRloc16`
587     // if successful, otherwise returns `kErrorNotFound`.
588 
589     Error                                     error = kErrorNotFound;
590     NetworkData::Service::Manager::Iterator   iterator;
591     NetworkData::Service::DnsSrpUnicast::Info unicastInfo;
592 
593     VerifyOrExit(Get<Mle::Mle>().GetDeviceMode().GetNetworkDataType() == NetworkData::kFullSet);
594 
595     while (Get<NetworkData::Service::Manager>().GetNextDnsSrpUnicastInfo(iterator, unicastInfo) == kErrorNone)
596     {
597         if (unicastInfo.mOrigin != NetworkData::Service::DnsSrpUnicast::kFromServerData)
598         {
599             continue;
600         }
601 
602         if (aEid == unicastInfo.mSockAddr.GetAddress())
603         {
604             aRloc16 = unicastInfo.mRloc16;
605             error   = kErrorNone;
606             ExitNow();
607         }
608     }
609 
610 exit:
611     return error;
612 }
613 
614 #endif // OPENTHREAD_CONFIG_TMF_ALLOW_ADDRESS_RESOLUTION_USING_NET_DATA_SERVICES
615 
SendAddressQuery(const Ip6::Address & aEid)616 Error AddressResolver::SendAddressQuery(const Ip6::Address &aEid)
617 {
618     Error            error;
619     Coap::Message   *message;
620     Tmf::MessageInfo messageInfo(GetInstance());
621 
622     message = Get<Tmf::Agent>().NewPriorityNonConfirmablePostMessage(kUriAddressQuery);
623     VerifyOrExit(message != nullptr, error = kErrorNoBufs);
624 
625     SuccessOrExit(error = Tlv::Append<ThreadTargetTlv>(*message, aEid));
626 
627     messageInfo.SetSockAddrToRlocPeerAddrToRealmLocalAllRoutersMulticast();
628 
629     SuccessOrExit(error = Get<Tmf::Agent>().SendMessage(*message, messageInfo));
630 
631     LogInfo("Sent %s for %s", UriToString<kUriAddressQuery>(), aEid.ToString().AsCString());
632 
633 exit:
634 
635     Get<TimeTicker>().RegisterReceiver(TimeTicker::kAddressResolver);
636     FreeMessageOnError(message, error);
637 
638 #if OPENTHREAD_CONFIG_BACKBONE_ROUTER_DUA_NDPROXYING_ENABLE
639     if (Get<BackboneRouter::Local>().IsPrimary() && Get<BackboneRouter::Leader>().IsDomainUnicast(aEid))
640     {
641         uint16_t selfRloc16 = Get<Mle::MleRouter>().GetRloc16();
642 
643         LogInfo("Extending %s to %s for target %s, rloc16=%04x(self)", UriToString<kUriAddressQuery>(),
644                 UriToString<kUriBackboneQuery>(), aEid.ToString().AsCString(), selfRloc16);
645         IgnoreError(Get<BackboneRouter::Manager>().SendBackboneQuery(aEid, selfRloc16));
646     }
647 #endif
648 
649     return error;
650 }
651 
652 template <>
HandleTmf(Coap::Message & aMessage,const Ip6::MessageInfo & aMessageInfo)653 void AddressResolver::HandleTmf<kUriAddressNotify>(Coap::Message &aMessage, const Ip6::MessageInfo &aMessageInfo)
654 {
655     Ip6::Address             target;
656     Ip6::InterfaceIdentifier meshLocalIid;
657     uint16_t                 rloc16;
658     uint32_t                 lastTransactionTime;
659     CacheEntryList          *list;
660     CacheEntry              *entry;
661     CacheEntry              *prev;
662 
663     VerifyOrExit(aMessage.IsConfirmablePostRequest());
664 
665     SuccessOrExit(Tlv::Find<ThreadTargetTlv>(aMessage, target));
666     SuccessOrExit(Tlv::Find<ThreadMeshLocalEidTlv>(aMessage, meshLocalIid));
667     SuccessOrExit(Tlv::Find<ThreadRloc16Tlv>(aMessage, rloc16));
668 
669     switch (Tlv::Find<ThreadLastTransactionTimeTlv>(aMessage, lastTransactionTime))
670     {
671     case kErrorNone:
672         break;
673     case kErrorNotFound:
674         lastTransactionTime = 0;
675         break;
676     default:
677         ExitNow();
678     }
679 
680     LogInfo("Received %s from 0x%04x for %s to 0x%04x", UriToString<kUriAddressNotify>(),
681             aMessageInfo.GetPeerAddr().GetIid().GetLocator(), target.ToString().AsCString(), rloc16);
682 
683     entry = FindCacheEntry(target, list, prev);
684     VerifyOrExit(entry != nullptr);
685 
686     if (list == &mCachedList)
687     {
688         if (entry->IsLastTransactionTimeValid())
689         {
690             // Receiving multiple Address Notification for an EID from
691             // different mesh-local IIDs indicates address is in use
692             // by more than one device. Try to resolve the duplicate
693             // address by sending an Address Error message.
694 
695             VerifyOrExit(entry->GetMeshLocalIid() == meshLocalIid, SendAddressError(target, meshLocalIid, nullptr));
696 
697             VerifyOrExit(lastTransactionTime < entry->GetLastTransactionTime());
698         }
699     }
700 
701     entry->SetRloc16(rloc16);
702     entry->SetMeshLocalIid(meshLocalIid);
703     entry->SetLastTransactionTime(lastTransactionTime);
704 
705     list->PopAfter(prev);
706     mCachedList.Push(*entry);
707 
708     LogCacheEntryChange(kEntryUpdated, kReasonReceivedNotification, *entry);
709 
710     if (Get<Tmf::Agent>().SendEmptyAck(aMessage, aMessageInfo) == kErrorNone)
711     {
712         LogInfo("Sent %s ack", UriToString<kUriAddressNotify>());
713     }
714 
715     Get<MeshForwarder>().HandleResolved(target, kErrorNone);
716 
717 exit:
718     return;
719 }
720 
SendAddressError(const Ip6::Address & aTarget,const Ip6::InterfaceIdentifier & aMeshLocalIid,const Ip6::Address * aDestination)721 void AddressResolver::SendAddressError(const Ip6::Address             &aTarget,
722                                        const Ip6::InterfaceIdentifier &aMeshLocalIid,
723                                        const Ip6::Address             *aDestination)
724 {
725     Error            error;
726     Coap::Message   *message;
727     Tmf::MessageInfo messageInfo(GetInstance());
728 
729     VerifyOrExit((message = Get<Tmf::Agent>().NewMessage()) != nullptr, error = kErrorNoBufs);
730 
731     message->Init(aDestination == nullptr ? Coap::kTypeNonConfirmable : Coap::kTypeConfirmable, Coap::kCodePost);
732     SuccessOrExit(error = message->AppendUriPathOptions(PathForUri(kUriAddressError)));
733     SuccessOrExit(error = message->SetPayloadMarker());
734 
735     SuccessOrExit(error = Tlv::Append<ThreadTargetTlv>(*message, aTarget));
736     SuccessOrExit(error = Tlv::Append<ThreadMeshLocalEidTlv>(*message, aMeshLocalIid));
737 
738     if (aDestination == nullptr)
739     {
740         messageInfo.SetSockAddrToRlocPeerAddrToRealmLocalAllRoutersMulticast();
741     }
742     else
743     {
744         messageInfo.SetSockAddrToRlocPeerAddrTo(*aDestination);
745     }
746 
747     SuccessOrExit(error = Get<Tmf::Agent>().SendMessage(*message, messageInfo));
748 
749     LogInfo("Sent %s for target %s", UriToString<kUriAddressError>(), aTarget.ToString().AsCString());
750 
751 exit:
752 
753     if (error != kErrorNone)
754     {
755         FreeMessage(message);
756         LogInfo("Failed to send %s: %s", UriToString<kUriAddressError>(), ErrorToString(error));
757     }
758 }
759 
760 #endif // OPENTHREAD_FTD
761 
762 template <>
HandleTmf(Coap::Message & aMessage,const Ip6::MessageInfo & aMessageInfo)763 void AddressResolver::HandleTmf<kUriAddressError>(Coap::Message &aMessage, const Ip6::MessageInfo &aMessageInfo)
764 {
765     Error                    error = kErrorNone;
766     Ip6::Address             target;
767     Ip6::InterfaceIdentifier meshLocalIid;
768 #if OPENTHREAD_FTD
769     Mac::ExtAddress extAddr;
770     Ip6::Address    destination;
771 #endif
772 
773     VerifyOrExit(aMessage.IsPostRequest(), error = kErrorDrop);
774 
775     LogInfo("Received %s", UriToString<kUriAddressError>());
776 
777     if (aMessage.IsConfirmable() && !aMessageInfo.GetSockAddr().IsMulticast())
778     {
779         if (Get<Tmf::Agent>().SendEmptyAck(aMessage, aMessageInfo) == kErrorNone)
780         {
781             LogInfo("Sent %s ack", UriToString<kUriAddressError>());
782         }
783     }
784 
785     SuccessOrExit(error = Tlv::Find<ThreadTargetTlv>(aMessage, target));
786     SuccessOrExit(error = Tlv::Find<ThreadMeshLocalEidTlv>(aMessage, meshLocalIid));
787 
788     for (Ip6::Netif::UnicastAddress &address : Get<ThreadNetif>().GetUnicastAddresses())
789     {
790         if (address.GetAddress() == target && Get<Mle::MleRouter>().GetMeshLocal64().GetIid() != meshLocalIid)
791         {
792             // Target EID matches address and Mesh Local EID differs
793 #if OPENTHREAD_CONFIG_DUA_ENABLE
794             if (Get<BackboneRouter::Leader>().IsDomainUnicast(address.GetAddress()))
795             {
796                 Get<DuaManager>().NotifyDuplicateDomainUnicastAddress();
797             }
798             else
799 #endif
800             {
801                 Get<ThreadNetif>().RemoveUnicastAddress(address);
802             }
803 
804             ExitNow();
805         }
806     }
807 
808 #if OPENTHREAD_FTD
809     meshLocalIid.ConvertToExtAddress(extAddr);
810 
811     for (Child &child : Get<ChildTable>().Iterate(Child::kInStateValid))
812     {
813         if (child.IsFullThreadDevice())
814         {
815             continue;
816         }
817 
818         if (child.GetExtAddress() != extAddr)
819         {
820             // Mesh Local EID differs, so check whether Target EID
821             // matches a child address and if so remove it.
822 
823             if (child.RemoveIp6Address(target) == kErrorNone)
824             {
825                 SuccessOrExit(error = Get<Mle::Mle>().GetLocatorAddress(destination, child.GetRloc16()));
826 
827                 SendAddressError(target, meshLocalIid, &destination);
828                 ExitNow();
829             }
830         }
831     }
832 #endif // OPENTHREAD_FTD
833 
834 exit:
835 
836     if (error != kErrorNone)
837     {
838         LogWarn("Error %s when processing %s", ErrorToString(error), UriToString<kUriAddressError>());
839     }
840 }
841 
842 #if OPENTHREAD_FTD
843 
844 template <>
HandleTmf(Coap::Message & aMessage,const Ip6::MessageInfo & aMessageInfo)845 void AddressResolver::HandleTmf<kUriAddressQuery>(Coap::Message &aMessage, const Ip6::MessageInfo &aMessageInfo)
846 {
847     Ip6::Address target;
848     uint32_t     lastTransactionTime;
849 
850     VerifyOrExit(aMessage.IsNonConfirmablePostRequest());
851 
852     SuccessOrExit(Tlv::Find<ThreadTargetTlv>(aMessage, target));
853 
854     LogInfo("Received %s from 0x%04x for target %s", UriToString<kUriAddressQuery>(),
855             aMessageInfo.GetPeerAddr().GetIid().GetLocator(), target.ToString().AsCString());
856 
857     if (Get<ThreadNetif>().HasUnicastAddress(target))
858     {
859         SendAddressQueryResponse(target, Get<Mle::MleRouter>().GetMeshLocal64().GetIid(), nullptr,
860                                  aMessageInfo.GetPeerAddr());
861         ExitNow();
862     }
863 
864     for (Child &child : Get<ChildTable>().Iterate(Child::kInStateValid))
865     {
866         if (child.IsFullThreadDevice() || child.GetLinkFailures() >= Mle::kFailedChildTransmissions)
867         {
868             continue;
869         }
870 
871         if (child.HasIp6Address(target))
872         {
873             lastTransactionTime = Time::MsecToSec(TimerMilli::GetNow() - child.GetLastHeard());
874             SendAddressQueryResponse(target, child.GetMeshLocalIid(), &lastTransactionTime, aMessageInfo.GetPeerAddr());
875             ExitNow();
876         }
877     }
878 
879 #if OPENTHREAD_CONFIG_BACKBONE_ROUTER_DUA_NDPROXYING_ENABLE
880     if (Get<BackboneRouter::Local>().IsPrimary() && Get<BackboneRouter::Leader>().IsDomainUnicast(target))
881     {
882         uint16_t srcRloc16 = aMessageInfo.GetPeerAddr().GetIid().GetLocator();
883 
884         LogInfo("Extending %s to %s for target %s rloc16=%04x", UriToString<kUriAddressQuery>(),
885                 UriToString<kUriBackboneQuery>(), target.ToString().AsCString(), srcRloc16);
886         IgnoreError(Get<BackboneRouter::Manager>().SendBackboneQuery(target, srcRloc16));
887     }
888 #endif
889 
890 exit:
891     return;
892 }
893 
SendAddressQueryResponse(const Ip6::Address & aTarget,const Ip6::InterfaceIdentifier & aMeshLocalIid,const uint32_t * aLastTransactionTime,const Ip6::Address & aDestination)894 void AddressResolver::SendAddressQueryResponse(const Ip6::Address             &aTarget,
895                                                const Ip6::InterfaceIdentifier &aMeshLocalIid,
896                                                const uint32_t                 *aLastTransactionTime,
897                                                const Ip6::Address             &aDestination)
898 {
899     Error            error;
900     Coap::Message   *message;
901     Tmf::MessageInfo messageInfo(GetInstance());
902 
903     message = Get<Tmf::Agent>().NewPriorityConfirmablePostMessage(kUriAddressNotify);
904     VerifyOrExit(message != nullptr, error = kErrorNoBufs);
905 
906     SuccessOrExit(error = Tlv::Append<ThreadTargetTlv>(*message, aTarget));
907     SuccessOrExit(error = Tlv::Append<ThreadMeshLocalEidTlv>(*message, aMeshLocalIid));
908     SuccessOrExit(error = Tlv::Append<ThreadRloc16Tlv>(*message, Get<Mle::MleRouter>().GetRloc16()));
909 
910     if (aLastTransactionTime != nullptr)
911     {
912         SuccessOrExit(error = Tlv::Append<ThreadLastTransactionTimeTlv>(*message, *aLastTransactionTime));
913     }
914 
915     messageInfo.SetSockAddrToRlocPeerAddrTo(aDestination);
916 
917     SuccessOrExit(error = Get<Tmf::Agent>().SendMessage(*message, messageInfo));
918 
919     LogInfo("Sent %s for target %s", UriToString<kUriAddressNotify>(), aTarget.ToString().AsCString());
920 
921 exit:
922     FreeMessageOnError(message, error);
923 }
924 
HandleTimeTick(void)925 void AddressResolver::HandleTimeTick(void)
926 {
927     bool continueRxingTicks = false;
928 
929     for (CacheEntry &entry : mSnoopedList)
930     {
931         if (entry.IsTimeoutZero())
932         {
933             continue;
934         }
935 
936         continueRxingTicks = true;
937         entry.DecrementTimeout();
938 
939         if (entry.IsTimeoutZero())
940         {
941             entry.SetCanEvict(true);
942         }
943     }
944 
945     for (CacheEntry &entry : mQueryRetryList)
946     {
947         if (entry.IsTimeoutZero())
948         {
949             continue;
950         }
951 
952         continueRxingTicks = true;
953         entry.DecrementTimeout();
954 
955         if (entry.IsTimeoutZero())
956         {
957             if (!entry.IsInRampDown())
958             {
959                 entry.SetRampDown(true);
960                 entry.SetTimeout(kAddressQueryMaxRetryDelay);
961 
962                 LogInfo("Starting ramp down of %s retry-delay:%u", entry.GetTarget().ToString().AsCString(),
963                         entry.GetTimeout());
964             }
965             else
966             {
967                 uint16_t retryDelay = entry.GetRetryDelay();
968 
969                 retryDelay >>= 1;
970                 retryDelay = Max(retryDelay, kAddressQueryInitialRetryDelay);
971 
972                 if (retryDelay != entry.GetRetryDelay())
973                 {
974                     entry.SetRetryDelay(retryDelay);
975                     entry.SetTimeout(kAddressQueryMaxRetryDelay);
976 
977                     LogInfo("Ramping down %s retry-delay:%u", entry.GetTarget().ToString().AsCString(), retryDelay);
978                 }
979             }
980         }
981     }
982 
983     {
984         CacheEntry *prev = nullptr;
985         CacheEntry *entry;
986 
987         while ((entry = GetEntryAfter(prev, mQueryList)) != nullptr)
988         {
989             OT_ASSERT(!entry->IsTimeoutZero());
990 
991             continueRxingTicks = true;
992             entry->DecrementTimeout();
993 
994             if (entry->IsTimeoutZero())
995             {
996                 uint16_t retryDelay = entry->GetRetryDelay();
997 
998                 entry->SetTimeout(retryDelay);
999 
1000                 retryDelay <<= 1;
1001                 retryDelay = Min(retryDelay, kAddressQueryMaxRetryDelay);
1002 
1003                 entry->SetRetryDelay(retryDelay);
1004                 entry->SetCanEvict(true);
1005                 entry->SetRampDown(false);
1006 
1007                 // Move the entry from `mQueryList` to `mQueryRetryList`
1008                 mQueryList.PopAfter(prev);
1009                 mQueryRetryList.Push(*entry);
1010 
1011                 LogInfo("Timed out waiting for %s for %s, retry: %d", UriToString<kUriAddressNotify>(),
1012                         entry->GetTarget().ToString().AsCString(), entry->GetTimeout());
1013 
1014                 Get<MeshForwarder>().HandleResolved(entry->GetTarget(), kErrorDrop);
1015 
1016                 // When the entry is removed from `mQueryList`
1017                 // we keep the `prev` pointer same as before.
1018             }
1019             else
1020             {
1021                 prev = entry;
1022             }
1023         }
1024     }
1025 
1026     if (!continueRxingTicks)
1027     {
1028         Get<TimeTicker>().UnregisterReceiver(TimeTicker::kAddressResolver);
1029     }
1030 }
1031 
HandleIcmpReceive(void * aContext,otMessage * aMessage,const otMessageInfo * aMessageInfo,const otIcmp6Header * aIcmpHeader)1032 void AddressResolver::HandleIcmpReceive(void                *aContext,
1033                                         otMessage           *aMessage,
1034                                         const otMessageInfo *aMessageInfo,
1035                                         const otIcmp6Header *aIcmpHeader)
1036 {
1037     OT_UNUSED_VARIABLE(aMessageInfo);
1038 
1039     static_cast<AddressResolver *>(aContext)->HandleIcmpReceive(AsCoreType(aMessage), AsCoreType(aMessageInfo),
1040                                                                 AsCoreType(aIcmpHeader));
1041 }
1042 
HandleIcmpReceive(Message & aMessage,const Ip6::MessageInfo & aMessageInfo,const Ip6::Icmp::Header & aIcmpHeader)1043 void AddressResolver::HandleIcmpReceive(Message                 &aMessage,
1044                                         const Ip6::MessageInfo  &aMessageInfo,
1045                                         const Ip6::Icmp::Header &aIcmpHeader)
1046 {
1047     OT_UNUSED_VARIABLE(aMessageInfo);
1048 
1049     Ip6::Header ip6Header;
1050 
1051     VerifyOrExit(aIcmpHeader.GetType() == Ip6::Icmp::Header::kTypeDstUnreach);
1052     VerifyOrExit(aIcmpHeader.GetCode() == Ip6::Icmp::Header::kCodeDstUnreachNoRoute);
1053     SuccessOrExit(aMessage.Read(aMessage.GetOffset(), ip6Header));
1054 
1055     Remove(ip6Header.GetDestination(), kReasonReceivedIcmpDstUnreachNoRoute);
1056 
1057 exit:
1058     return;
1059 }
1060 
1061 // LCOV_EXCL_START
1062 
1063 #if OT_SHOULD_LOG_AT(OT_LOG_LEVEL_INFO)
1064 
LogCacheEntryChange(EntryChange aChange,Reason aReason,const CacheEntry & aEntry,CacheEntryList * aList)1065 void AddressResolver::LogCacheEntryChange(EntryChange       aChange,
1066                                           Reason            aReason,
1067                                           const CacheEntry &aEntry,
1068                                           CacheEntryList   *aList)
1069 {
1070     static const char *const kChangeStrings[] = {
1071         "added",   // (0) kEntryAdded
1072         "updated", // (1) kEntryUpdated
1073         "removed", // (2) kEntryRemoved
1074     };
1075 
1076     static const char *const kReasonStrings[] = {
1077         "query request",          // (0) kReasonQueryRequest
1078         "snoop",                  // (1) kReasonSnoop
1079         "rx notification",        // (2) kReasonReceivedNotification
1080         "removing router id",     // (3) kReasonRemovingRouterId
1081         "removing rloc16",        // (4) kReasonRemovingRloc16
1082         "rx icmp no route",       // (5) kReasonReceivedIcmpDstUnreachNoRoute
1083         "evicting for new entry", // (6) kReasonEvictingForNewEntry
1084         "removing eid",           // (7) kReasonRemovingEid
1085     };
1086 
1087     static_assert(0 == kEntryAdded, "kEntryAdded value is incorrect");
1088     static_assert(1 == kEntryUpdated, "kEntryUpdated value is incorrect");
1089     static_assert(2 == kEntryRemoved, "kEntryRemoved value is incorrect");
1090 
1091     static_assert(0 == kReasonQueryRequest, "kReasonQueryRequest value is incorrect");
1092     static_assert(1 == kReasonSnoop, "kReasonSnoop value is incorrect");
1093     static_assert(2 == kReasonReceivedNotification, "kReasonReceivedNotification value is incorrect");
1094     static_assert(3 == kReasonRemovingRouterId, "kReasonRemovingRouterId value is incorrect");
1095     static_assert(4 == kReasonRemovingRloc16, "kReasonRemovingRloc16 value is incorrect");
1096     static_assert(5 == kReasonReceivedIcmpDstUnreachNoRoute, "kReasonReceivedIcmpDstUnreachNoRoute value is incorrect");
1097     static_assert(6 == kReasonEvictingForNewEntry, "kReasonEvictingForNewEntry value is incorrect");
1098     static_assert(7 == kReasonRemovingEid, "kReasonRemovingEid value is incorrect");
1099 
1100     LogInfo("Cache entry %s: %s, 0x%04x%s%s - %s", kChangeStrings[aChange], aEntry.GetTarget().ToString().AsCString(),
1101             aEntry.GetRloc16(), (aList == nullptr) ? "" : ", list:", ListToString(aList), kReasonStrings[aReason]);
1102 }
1103 
ListToString(const CacheEntryList * aList) const1104 const char *AddressResolver::ListToString(const CacheEntryList *aList) const
1105 {
1106     const char *str = "";
1107 
1108     VerifyOrExit(aList != &mCachedList, str = "cached");
1109     VerifyOrExit(aList != &mSnoopedList, str = "snooped");
1110     VerifyOrExit(aList != &mQueryList, str = "query");
1111     VerifyOrExit(aList != &mQueryRetryList, str = "query-retry");
1112 
1113 exit:
1114     return str;
1115 }
1116 
1117 #else // #if OT_SHOULD_LOG_AT(OT_LOG_LEVEL_INFO)
1118 
LogCacheEntryChange(EntryChange,Reason,const CacheEntry &,CacheEntryList *)1119 void AddressResolver::LogCacheEntryChange(EntryChange, Reason, const CacheEntry &, CacheEntryList *) {}
1120 
1121 #endif // #if OT_SHOULD_LOG_AT(OT_LOG_LEVEL_NOTE)
1122 
1123 // LCOV_EXCL_STOP
1124 
1125 //---------------------------------------------------------------------------------------------------------------------
1126 // AddressResolver::CacheEntry
1127 
Init(Instance & aInstance)1128 void AddressResolver::CacheEntry::Init(Instance &aInstance)
1129 {
1130     InstanceLocatorInit::Init(aInstance);
1131     mNextIndex = kNoNextIndex;
1132 }
1133 
GetNext(void)1134 AddressResolver::CacheEntry *AddressResolver::CacheEntry::GetNext(void)
1135 {
1136     return (mNextIndex == kNoNextIndex) ? nullptr : &Get<AddressResolver>().GetCacheEntryPool().GetEntryAt(mNextIndex);
1137 }
1138 
GetNext(void) const1139 const AddressResolver::CacheEntry *AddressResolver::CacheEntry::GetNext(void) const
1140 {
1141     return (mNextIndex == kNoNextIndex) ? nullptr : &Get<AddressResolver>().GetCacheEntryPool().GetEntryAt(mNextIndex);
1142 }
1143 
SetNext(CacheEntry * aEntry)1144 void AddressResolver::CacheEntry::SetNext(CacheEntry *aEntry)
1145 {
1146     VerifyOrExit(aEntry != nullptr, mNextIndex = kNoNextIndex);
1147     mNextIndex = Get<AddressResolver>().GetCacheEntryPool().GetIndexOf(*aEntry);
1148 
1149 exit:
1150     return;
1151 }
1152 
1153 #endif // OPENTHREAD_FTD
1154 
1155 } // namespace ot
1156