Bitcoin Core 28.0.0
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addrman.cpp
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1// Copyright (c) 2012 Pieter Wuille
2// Copyright (c) 2012-2022 The Bitcoin Core developers
3// Distributed under the MIT software license, see the accompanying
4// file COPYING or http://www.opensource.org/licenses/mit-license.php.
5
6#include <config/bitcoin-config.h> // IWYU pragma: keep
7
8#include <addrman.h>
9#include <addrman_impl.h>
10
11#include <hash.h>
12#include <logging.h>
13#include <logging/timer.h>
14#include <netaddress.h>
15#include <protocol.h>
16#include <random.h>
17#include <serialize.h>
18#include <streams.h>
19#include <tinyformat.h>
20#include <uint256.h>
21#include <util/check.h>
22#include <util/time.h>
23
24#include <cmath>
25#include <optional>
26
28static constexpr uint32_t ADDRMAN_TRIED_BUCKETS_PER_GROUP{8};
30static constexpr uint32_t ADDRMAN_NEW_BUCKETS_PER_SOURCE_GROUP{64};
32static constexpr int32_t ADDRMAN_NEW_BUCKETS_PER_ADDRESS{8};
34static constexpr auto ADDRMAN_HORIZON{30 * 24h};
36static constexpr int32_t ADDRMAN_RETRIES{3};
38static constexpr int32_t ADDRMAN_MAX_FAILURES{10};
40static constexpr auto ADDRMAN_MIN_FAIL{7 * 24h};
42static constexpr auto ADDRMAN_REPLACEMENT{4h};
44static constexpr size_t ADDRMAN_SET_TRIED_COLLISION_SIZE{10};
46static constexpr auto ADDRMAN_TEST_WINDOW{40min};
47
48int AddrInfo::GetTriedBucket(const uint256& nKey, const NetGroupManager& netgroupman) const
49{
50 uint64_t hash1 = (HashWriter{} << nKey << GetKey()).GetCheapHash();
51 uint64_t hash2 = (HashWriter{} << nKey << netgroupman.GetGroup(*this) << (hash1 % ADDRMAN_TRIED_BUCKETS_PER_GROUP)).GetCheapHash();
52 return hash2 % ADDRMAN_TRIED_BUCKET_COUNT;
53}
54
55int AddrInfo::GetNewBucket(const uint256& nKey, const CNetAddr& src, const NetGroupManager& netgroupman) const
56{
57 std::vector<unsigned char> vchSourceGroupKey = netgroupman.GetGroup(src);
58 uint64_t hash1 = (HashWriter{} << nKey << netgroupman.GetGroup(*this) << vchSourceGroupKey).GetCheapHash();
59 uint64_t hash2 = (HashWriter{} << nKey << vchSourceGroupKey << (hash1 % ADDRMAN_NEW_BUCKETS_PER_SOURCE_GROUP)).GetCheapHash();
60 return hash2 % ADDRMAN_NEW_BUCKET_COUNT;
61}
62
63int AddrInfo::GetBucketPosition(const uint256& nKey, bool fNew, int bucket) const
64{
65 uint64_t hash1 = (HashWriter{} << nKey << (fNew ? uint8_t{'N'} : uint8_t{'K'}) << bucket << GetKey()).GetCheapHash();
66 return hash1 % ADDRMAN_BUCKET_SIZE;
67}
68
70{
71 if (now - m_last_try <= 1min) { // never remove things tried in the last minute
72 return false;
73 }
74
75 if (nTime > now + 10min) { // came in a flying DeLorean
76 return true;
77 }
78
79 if (now - nTime > ADDRMAN_HORIZON) { // not seen in recent history
80 return true;
81 }
82
83 if (TicksSinceEpoch<std::chrono::seconds>(m_last_success) == 0 && nAttempts >= ADDRMAN_RETRIES) { // tried N times and never a success
84 return true;
85 }
86
87 if (now - m_last_success > ADDRMAN_MIN_FAIL && nAttempts >= ADDRMAN_MAX_FAILURES) { // N successive failures in the last week
88 return true;
89 }
90
91 return false;
92}
93
95{
96 double fChance = 1.0;
97
98 // deprioritize very recent attempts away
99 if (now - m_last_try < 10min) {
100 fChance *= 0.01;
101 }
102
103 // deprioritize 66% after each failed attempt, but at most 1/28th to avoid the search taking forever or overly penalizing outages.
104 fChance *= pow(0.66, std::min(nAttempts, 8));
105
106 return fChance;
107}
108
109AddrManImpl::AddrManImpl(const NetGroupManager& netgroupman, bool deterministic, int32_t consistency_check_ratio)
110 : insecure_rand{deterministic}
111 , nKey{deterministic ? uint256{1} : insecure_rand.rand256()}
112 , m_consistency_check_ratio{consistency_check_ratio}
113 , m_netgroupman{netgroupman}
114{
115 for (auto& bucket : vvNew) {
116 for (auto& entry : bucket) {
117 entry = -1;
118 }
119 }
120 for (auto& bucket : vvTried) {
121 for (auto& entry : bucket) {
122 entry = -1;
123 }
124 }
125}
126
131
132template <typename Stream>
133void AddrManImpl::Serialize(Stream& s_) const
134{
135 LOCK(cs);
136
175 // Always serialize in the latest version (FILE_FORMAT).
177
178 s << static_cast<uint8_t>(FILE_FORMAT);
179
180 // Increment `lowest_compatible` iff a newly introduced format is incompatible with
181 // the previous one.
182 static constexpr uint8_t lowest_compatible = Format::V4_MULTIPORT;
183 s << static_cast<uint8_t>(INCOMPATIBILITY_BASE + lowest_compatible);
184
185 s << nKey;
186 s << nNew;
187 s << nTried;
188
189 int nUBuckets = ADDRMAN_NEW_BUCKET_COUNT ^ (1 << 30);
190 s << nUBuckets;
191 std::unordered_map<int, int> mapUnkIds;
192 int nIds = 0;
193 for (const auto& entry : mapInfo) {
194 mapUnkIds[entry.first] = nIds;
195 const AddrInfo& info = entry.second;
196 if (info.nRefCount) {
197 assert(nIds != nNew); // this means nNew was wrong, oh ow
198 s << info;
199 nIds++;
200 }
201 }
202 nIds = 0;
203 for (const auto& entry : mapInfo) {
204 const AddrInfo& info = entry.second;
205 if (info.fInTried) {
206 assert(nIds != nTried); // this means nTried was wrong, oh ow
207 s << info;
208 nIds++;
209 }
210 }
211 for (int bucket = 0; bucket < ADDRMAN_NEW_BUCKET_COUNT; bucket++) {
212 int nSize = 0;
213 for (int i = 0; i < ADDRMAN_BUCKET_SIZE; i++) {
214 if (vvNew[bucket][i] != -1)
215 nSize++;
216 }
217 s << nSize;
218 for (int i = 0; i < ADDRMAN_BUCKET_SIZE; i++) {
219 if (vvNew[bucket][i] != -1) {
220 int nIndex = mapUnkIds[vvNew[bucket][i]];
221 s << nIndex;
222 }
223 }
224 }
225 // Store asmap checksum after bucket entries so that it
226 // can be ignored by older clients for backward compatibility.
228}
229
230template <typename Stream>
232{
233 LOCK(cs);
234
235 assert(vRandom.empty());
236
237 Format format;
238 s_ >> Using<CustomUintFormatter<1>>(format);
239
240 const auto ser_params = (format >= Format::V3_BIP155 ? CAddress::V2_DISK : CAddress::V1_DISK);
241 ParamsStream s{s_, ser_params};
242
243 uint8_t compat;
244 s >> compat;
245 if (compat < INCOMPATIBILITY_BASE) {
246 throw std::ios_base::failure(strprintf(
247 "Corrupted addrman database: The compat value (%u) "
248 "is lower than the expected minimum value %u.",
249 compat, INCOMPATIBILITY_BASE));
250 }
251 const uint8_t lowest_compatible = compat - INCOMPATIBILITY_BASE;
252 if (lowest_compatible > FILE_FORMAT) {
254 "Unsupported format of addrman database: %u. It is compatible with formats >=%u, "
255 "but the maximum supported by this version of %s is %u.",
256 uint8_t{format}, lowest_compatible, PACKAGE_NAME, uint8_t{FILE_FORMAT}));
257 }
258
259 s >> nKey;
260 s >> nNew;
261 s >> nTried;
262 int nUBuckets = 0;
263 s >> nUBuckets;
264 if (format >= Format::V1_DETERMINISTIC) {
265 nUBuckets ^= (1 << 30);
266 }
267
268 if (nNew > ADDRMAN_NEW_BUCKET_COUNT * ADDRMAN_BUCKET_SIZE || nNew < 0) {
269 throw std::ios_base::failure(
270 strprintf("Corrupt AddrMan serialization: nNew=%d, should be in [0, %d]",
271 nNew,
273 }
274
275 if (nTried > ADDRMAN_TRIED_BUCKET_COUNT * ADDRMAN_BUCKET_SIZE || nTried < 0) {
276 throw std::ios_base::failure(
277 strprintf("Corrupt AddrMan serialization: nTried=%d, should be in [0, %d]",
278 nTried,
280 }
281
282 // Deserialize entries from the new table.
283 for (int n = 0; n < nNew; n++) {
284 AddrInfo& info = mapInfo[n];
285 s >> info;
286 mapAddr[info] = n;
287 info.nRandomPos = vRandom.size();
288 vRandom.push_back(n);
289 m_network_counts[info.GetNetwork()].n_new++;
290 }
291 nIdCount = nNew;
292
293 // Deserialize entries from the tried table.
294 int nLost = 0;
295 for (int n = 0; n < nTried; n++) {
296 AddrInfo info;
297 s >> info;
298 int nKBucket = info.GetTriedBucket(nKey, m_netgroupman);
299 int nKBucketPos = info.GetBucketPosition(nKey, false, nKBucket);
300 if (info.IsValid()
301 && vvTried[nKBucket][nKBucketPos] == -1) {
302 info.nRandomPos = vRandom.size();
303 info.fInTried = true;
304 vRandom.push_back(nIdCount);
305 mapInfo[nIdCount] = info;
306 mapAddr[info] = nIdCount;
307 vvTried[nKBucket][nKBucketPos] = nIdCount;
308 nIdCount++;
309 m_network_counts[info.GetNetwork()].n_tried++;
310 } else {
311 nLost++;
312 }
313 }
314 nTried -= nLost;
315
316 // Store positions in the new table buckets to apply later (if possible).
317 // An entry may appear in up to ADDRMAN_NEW_BUCKETS_PER_ADDRESS buckets,
318 // so we store all bucket-entry_index pairs to iterate through later.
319 std::vector<std::pair<int, int>> bucket_entries;
320
321 for (int bucket = 0; bucket < nUBuckets; ++bucket) {
322 int num_entries{0};
323 s >> num_entries;
324 for (int n = 0; n < num_entries; ++n) {
325 int entry_index{0};
326 s >> entry_index;
327 if (entry_index >= 0 && entry_index < nNew) {
328 bucket_entries.emplace_back(bucket, entry_index);
329 }
330 }
331 }
332
333 // If the bucket count and asmap checksum haven't changed, then attempt
334 // to restore the entries to the buckets/positions they were in before
335 // serialization.
336 uint256 supplied_asmap_checksum{m_netgroupman.GetAsmapChecksum()};
337 uint256 serialized_asmap_checksum;
338 if (format >= Format::V2_ASMAP) {
339 s >> serialized_asmap_checksum;
340 }
341 const bool restore_bucketing{nUBuckets == ADDRMAN_NEW_BUCKET_COUNT &&
342 serialized_asmap_checksum == supplied_asmap_checksum};
343
344 if (!restore_bucketing) {
345 LogPrint(BCLog::ADDRMAN, "Bucketing method was updated, re-bucketing addrman entries from disk\n");
346 }
347
348 for (auto bucket_entry : bucket_entries) {
349 int bucket{bucket_entry.first};
350 const int entry_index{bucket_entry.second};
351 AddrInfo& info = mapInfo[entry_index];
352
353 // Don't store the entry in the new bucket if it's not a valid address for our addrman
354 if (!info.IsValid()) continue;
355
356 // The entry shouldn't appear in more than
357 // ADDRMAN_NEW_BUCKETS_PER_ADDRESS. If it has already, just skip
358 // this bucket_entry.
359 if (info.nRefCount >= ADDRMAN_NEW_BUCKETS_PER_ADDRESS) continue;
360
361 int bucket_position = info.GetBucketPosition(nKey, true, bucket);
362 if (restore_bucketing && vvNew[bucket][bucket_position] == -1) {
363 // Bucketing has not changed, using existing bucket positions for the new table
364 vvNew[bucket][bucket_position] = entry_index;
365 ++info.nRefCount;
366 } else {
367 // In case the new table data cannot be used (bucket count wrong or new asmap),
368 // try to give them a reference based on their primary source address.
369 bucket = info.GetNewBucket(nKey, m_netgroupman);
370 bucket_position = info.GetBucketPosition(nKey, true, bucket);
371 if (vvNew[bucket][bucket_position] == -1) {
372 vvNew[bucket][bucket_position] = entry_index;
373 ++info.nRefCount;
374 }
375 }
376 }
377
378 // Prune new entries with refcount 0 (as a result of collisions or invalid address).
379 int nLostUnk = 0;
380 for (auto it = mapInfo.cbegin(); it != mapInfo.cend(); ) {
381 if (it->second.fInTried == false && it->second.nRefCount == 0) {
382 const auto itCopy = it++;
383 Delete(itCopy->first);
384 ++nLostUnk;
385 } else {
386 ++it;
387 }
388 }
389 if (nLost + nLostUnk > 0) {
390 LogPrint(BCLog::ADDRMAN, "addrman lost %i new and %i tried addresses due to collisions or invalid addresses\n", nLostUnk, nLost);
391 }
392
393 const int check_code{CheckAddrman()};
394 if (check_code != 0) {
395 throw std::ios_base::failure(strprintf(
396 "Corrupt data. Consistency check failed with code %s",
397 check_code));
398 }
399}
400
401AddrInfo* AddrManImpl::Find(const CService& addr, int* pnId)
402{
404
405 const auto it = mapAddr.find(addr);
406 if (it == mapAddr.end())
407 return nullptr;
408 if (pnId)
409 *pnId = (*it).second;
410 const auto it2 = mapInfo.find((*it).second);
411 if (it2 != mapInfo.end())
412 return &(*it2).second;
413 return nullptr;
414}
415
416AddrInfo* AddrManImpl::Create(const CAddress& addr, const CNetAddr& addrSource, int* pnId)
417{
419
420 int nId = nIdCount++;
421 mapInfo[nId] = AddrInfo(addr, addrSource);
422 mapAddr[addr] = nId;
423 mapInfo[nId].nRandomPos = vRandom.size();
424 vRandom.push_back(nId);
425 nNew++;
426 m_network_counts[addr.GetNetwork()].n_new++;
427 if (pnId)
428 *pnId = nId;
429 return &mapInfo[nId];
430}
431
432void AddrManImpl::SwapRandom(unsigned int nRndPos1, unsigned int nRndPos2) const
433{
435
436 if (nRndPos1 == nRndPos2)
437 return;
438
439 assert(nRndPos1 < vRandom.size() && nRndPos2 < vRandom.size());
440
441 int nId1 = vRandom[nRndPos1];
442 int nId2 = vRandom[nRndPos2];
443
444 const auto it_1{mapInfo.find(nId1)};
445 const auto it_2{mapInfo.find(nId2)};
446 assert(it_1 != mapInfo.end());
447 assert(it_2 != mapInfo.end());
448
449 it_1->second.nRandomPos = nRndPos2;
450 it_2->second.nRandomPos = nRndPos1;
451
452 vRandom[nRndPos1] = nId2;
453 vRandom[nRndPos2] = nId1;
454}
455
457{
459
460 assert(mapInfo.count(nId) != 0);
461 AddrInfo& info = mapInfo[nId];
462 assert(!info.fInTried);
463 assert(info.nRefCount == 0);
464
465 SwapRandom(info.nRandomPos, vRandom.size() - 1);
466 m_network_counts[info.GetNetwork()].n_new--;
467 vRandom.pop_back();
468 mapAddr.erase(info);
469 mapInfo.erase(nId);
470 nNew--;
471}
472
473void AddrManImpl::ClearNew(int nUBucket, int nUBucketPos)
474{
476
477 // if there is an entry in the specified bucket, delete it.
478 if (vvNew[nUBucket][nUBucketPos] != -1) {
479 int nIdDelete = vvNew[nUBucket][nUBucketPos];
480 AddrInfo& infoDelete = mapInfo[nIdDelete];
481 assert(infoDelete.nRefCount > 0);
482 infoDelete.nRefCount--;
483 vvNew[nUBucket][nUBucketPos] = -1;
484 LogPrint(BCLog::ADDRMAN, "Removed %s from new[%i][%i]\n", infoDelete.ToStringAddrPort(), nUBucket, nUBucketPos);
485 if (infoDelete.nRefCount == 0) {
486 Delete(nIdDelete);
487 }
488 }
489}
490
492{
494
495 // remove the entry from all new buckets
496 const int start_bucket{info.GetNewBucket(nKey, m_netgroupman)};
497 for (int n = 0; n < ADDRMAN_NEW_BUCKET_COUNT; ++n) {
498 const int bucket{(start_bucket + n) % ADDRMAN_NEW_BUCKET_COUNT};
499 const int pos{info.GetBucketPosition(nKey, true, bucket)};
500 if (vvNew[bucket][pos] == nId) {
501 vvNew[bucket][pos] = -1;
502 info.nRefCount--;
503 if (info.nRefCount == 0) break;
504 }
505 }
506 nNew--;
507 m_network_counts[info.GetNetwork()].n_new--;
508
509 assert(info.nRefCount == 0);
510
511 // which tried bucket to move the entry to
512 int nKBucket = info.GetTriedBucket(nKey, m_netgroupman);
513 int nKBucketPos = info.GetBucketPosition(nKey, false, nKBucket);
514
515 // first make space to add it (the existing tried entry there is moved to new, deleting whatever is there).
516 if (vvTried[nKBucket][nKBucketPos] != -1) {
517 // find an item to evict
518 int nIdEvict = vvTried[nKBucket][nKBucketPos];
519 assert(mapInfo.count(nIdEvict) == 1);
520 AddrInfo& infoOld = mapInfo[nIdEvict];
521
522 // Remove the to-be-evicted item from the tried set.
523 infoOld.fInTried = false;
524 vvTried[nKBucket][nKBucketPos] = -1;
525 nTried--;
526 m_network_counts[infoOld.GetNetwork()].n_tried--;
527
528 // find which new bucket it belongs to
529 int nUBucket = infoOld.GetNewBucket(nKey, m_netgroupman);
530 int nUBucketPos = infoOld.GetBucketPosition(nKey, true, nUBucket);
531 ClearNew(nUBucket, nUBucketPos);
532 assert(vvNew[nUBucket][nUBucketPos] == -1);
533
534 // Enter it into the new set again.
535 infoOld.nRefCount = 1;
536 vvNew[nUBucket][nUBucketPos] = nIdEvict;
537 nNew++;
538 m_network_counts[infoOld.GetNetwork()].n_new++;
539 LogPrint(BCLog::ADDRMAN, "Moved %s from tried[%i][%i] to new[%i][%i] to make space\n",
540 infoOld.ToStringAddrPort(), nKBucket, nKBucketPos, nUBucket, nUBucketPos);
541 }
542 assert(vvTried[nKBucket][nKBucketPos] == -1);
543
544 vvTried[nKBucket][nKBucketPos] = nId;
545 nTried++;
546 info.fInTried = true;
547 m_network_counts[info.GetNetwork()].n_tried++;
548}
549
550bool AddrManImpl::AddSingle(const CAddress& addr, const CNetAddr& source, std::chrono::seconds time_penalty)
551{
553
554 if (!addr.IsRoutable())
555 return false;
556
557 int nId;
558 AddrInfo* pinfo = Find(addr, &nId);
559
560 // Do not set a penalty for a source's self-announcement
561 if (addr == source) {
562 time_penalty = 0s;
563 }
564
565 if (pinfo) {
566 // periodically update nTime
567 const bool currently_online{NodeClock::now() - addr.nTime < 24h};
568 const auto update_interval{currently_online ? 1h : 24h};
569 if (pinfo->nTime < addr.nTime - update_interval - time_penalty) {
570 pinfo->nTime = std::max(NodeSeconds{0s}, addr.nTime - time_penalty);
571 }
572
573 // add services
574 pinfo->nServices = ServiceFlags(pinfo->nServices | addr.nServices);
575
576 // do not update if no new information is present
577 if (addr.nTime <= pinfo->nTime) {
578 return false;
579 }
580
581 // do not update if the entry was already in the "tried" table
582 if (pinfo->fInTried)
583 return false;
584
585 // do not update if the max reference count is reached
587 return false;
588
589 // stochastic test: previous nRefCount == N: 2^N times harder to increase it
590 if (pinfo->nRefCount > 0) {
591 const int nFactor{1 << pinfo->nRefCount};
592 if (insecure_rand.randrange(nFactor) != 0) return false;
593 }
594 } else {
595 pinfo = Create(addr, source, &nId);
596 pinfo->nTime = std::max(NodeSeconds{0s}, pinfo->nTime - time_penalty);
597 }
598
599 int nUBucket = pinfo->GetNewBucket(nKey, source, m_netgroupman);
600 int nUBucketPos = pinfo->GetBucketPosition(nKey, true, nUBucket);
601 bool fInsert = vvNew[nUBucket][nUBucketPos] == -1;
602 if (vvNew[nUBucket][nUBucketPos] != nId) {
603 if (!fInsert) {
604 AddrInfo& infoExisting = mapInfo[vvNew[nUBucket][nUBucketPos]];
605 if (infoExisting.IsTerrible() || (infoExisting.nRefCount > 1 && pinfo->nRefCount == 0)) {
606 // Overwrite the existing new table entry.
607 fInsert = true;
608 }
609 }
610 if (fInsert) {
611 ClearNew(nUBucket, nUBucketPos);
612 pinfo->nRefCount++;
613 vvNew[nUBucket][nUBucketPos] = nId;
614 const auto mapped_as{m_netgroupman.GetMappedAS(addr)};
615 LogPrint(BCLog::ADDRMAN, "Added %s%s to new[%i][%i]\n",
616 addr.ToStringAddrPort(), (mapped_as ? strprintf(" mapped to AS%i", mapped_as) : ""), nUBucket, nUBucketPos);
617 } else {
618 if (pinfo->nRefCount == 0) {
619 Delete(nId);
620 }
621 }
622 }
623 return fInsert;
624}
625
626bool AddrManImpl::Good_(const CService& addr, bool test_before_evict, NodeSeconds time)
627{
629
630 int nId;
631
632 m_last_good = time;
633
634 AddrInfo* pinfo = Find(addr, &nId);
635
636 // if not found, bail out
637 if (!pinfo) return false;
638
639 AddrInfo& info = *pinfo;
640
641 // update info
642 info.m_last_success = time;
643 info.m_last_try = time;
644 info.nAttempts = 0;
645 // nTime is not updated here, to avoid leaking information about
646 // currently-connected peers.
647
648 // if it is already in the tried set, don't do anything else
649 if (info.fInTried) return false;
650
651 // if it is not in new, something bad happened
652 if (!Assume(info.nRefCount > 0)) return false;
653
654
655 // which tried bucket to move the entry to
656 int tried_bucket = info.GetTriedBucket(nKey, m_netgroupman);
657 int tried_bucket_pos = info.GetBucketPosition(nKey, false, tried_bucket);
658
659 // Will moving this address into tried evict another entry?
660 if (test_before_evict && (vvTried[tried_bucket][tried_bucket_pos] != -1)) {
662 m_tried_collisions.insert(nId);
663 }
664 // Output the entry we'd be colliding with, for debugging purposes
665 auto colliding_entry = mapInfo.find(vvTried[tried_bucket][tried_bucket_pos]);
666 LogPrint(BCLog::ADDRMAN, "Collision with %s while attempting to move %s to tried table. Collisions=%d\n",
667 colliding_entry != mapInfo.end() ? colliding_entry->second.ToStringAddrPort() : "",
668 addr.ToStringAddrPort(),
669 m_tried_collisions.size());
670 return false;
671 } else {
672 // move nId to the tried tables
673 MakeTried(info, nId);
674 const auto mapped_as{m_netgroupman.GetMappedAS(addr)};
675 LogPrint(BCLog::ADDRMAN, "Moved %s%s to tried[%i][%i]\n",
676 addr.ToStringAddrPort(), (mapped_as ? strprintf(" mapped to AS%i", mapped_as) : ""), tried_bucket, tried_bucket_pos);
677 return true;
678 }
679}
680
681bool AddrManImpl::Add_(const std::vector<CAddress>& vAddr, const CNetAddr& source, std::chrono::seconds time_penalty)
682{
683 int added{0};
684 for (std::vector<CAddress>::const_iterator it = vAddr.begin(); it != vAddr.end(); it++) {
685 added += AddSingle(*it, source, time_penalty) ? 1 : 0;
686 }
687 if (added > 0) {
688 LogPrint(BCLog::ADDRMAN, "Added %i addresses (of %i) from %s: %i tried, %i new\n", added, vAddr.size(), source.ToStringAddr(), nTried, nNew);
689 }
690 return added > 0;
691}
692
693void AddrManImpl::Attempt_(const CService& addr, bool fCountFailure, NodeSeconds time)
694{
696
697 AddrInfo* pinfo = Find(addr);
698
699 // if not found, bail out
700 if (!pinfo)
701 return;
702
703 AddrInfo& info = *pinfo;
704
705 // update info
706 info.m_last_try = time;
707 if (fCountFailure && info.m_last_count_attempt < m_last_good) {
708 info.m_last_count_attempt = time;
709 info.nAttempts++;
710 }
711}
712
713std::pair<CAddress, NodeSeconds> AddrManImpl::Select_(bool new_only, std::optional<Network> network) const
714{
716
717 if (vRandom.empty()) return {};
718
719 size_t new_count = nNew;
720 size_t tried_count = nTried;
721
722 if (network.has_value()) {
723 auto it = m_network_counts.find(*network);
724 if (it == m_network_counts.end()) return {};
725
726 auto counts = it->second;
727 new_count = counts.n_new;
728 tried_count = counts.n_tried;
729 }
730
731 if (new_only && new_count == 0) return {};
732 if (new_count + tried_count == 0) return {};
733
734 // Decide if we are going to search the new or tried table
735 // If either option is viable, use a 50% chance to choose
736 bool search_tried;
737 if (new_only || tried_count == 0) {
738 search_tried = false;
739 } else if (new_count == 0) {
740 search_tried = true;
741 } else {
742 search_tried = insecure_rand.randbool();
743 }
744
745 const int bucket_count{search_tried ? ADDRMAN_TRIED_BUCKET_COUNT : ADDRMAN_NEW_BUCKET_COUNT};
746
747 // Loop through the addrman table until we find an appropriate entry
748 double chance_factor = 1.0;
749 while (1) {
750 // Pick a bucket, and an initial position in that bucket.
751 int bucket = insecure_rand.randrange(bucket_count);
752 int initial_position = insecure_rand.randrange(ADDRMAN_BUCKET_SIZE);
753
754 // Iterate over the positions of that bucket, starting at the initial one,
755 // and looping around.
756 int i, position, node_id;
757 for (i = 0; i < ADDRMAN_BUCKET_SIZE; ++i) {
758 position = (initial_position + i) % ADDRMAN_BUCKET_SIZE;
759 node_id = GetEntry(search_tried, bucket, position);
760 if (node_id != -1) {
761 if (network.has_value()) {
762 const auto it{mapInfo.find(node_id)};
763 if (Assume(it != mapInfo.end()) && it->second.GetNetwork() == *network) break;
764 } else {
765 break;
766 }
767 }
768 }
769
770 // If the bucket is entirely empty, start over with a (likely) different one.
771 if (i == ADDRMAN_BUCKET_SIZE) continue;
772
773 // Find the entry to return.
774 const auto it_found{mapInfo.find(node_id)};
775 assert(it_found != mapInfo.end());
776 const AddrInfo& info{it_found->second};
777
778 // With probability GetChance() * chance_factor, return the entry.
779 if (insecure_rand.randbits<30>() < chance_factor * info.GetChance() * (1 << 30)) {
780 LogPrint(BCLog::ADDRMAN, "Selected %s from %s\n", info.ToStringAddrPort(), search_tried ? "tried" : "new");
781 return {info, info.m_last_try};
782 }
783
784 // Otherwise start over with a (likely) different bucket, and increased chance factor.
785 chance_factor *= 1.2;
786 }
787}
788
789int AddrManImpl::GetEntry(bool use_tried, size_t bucket, size_t position) const
790{
792
793 if (use_tried) {
794 if (Assume(position < ADDRMAN_BUCKET_SIZE) && Assume(bucket < ADDRMAN_TRIED_BUCKET_COUNT)) {
795 return vvTried[bucket][position];
796 }
797 } else {
798 if (Assume(position < ADDRMAN_BUCKET_SIZE) && Assume(bucket < ADDRMAN_NEW_BUCKET_COUNT)) {
799 return vvNew[bucket][position];
800 }
801 }
802
803 return -1;
804}
805
806std::vector<CAddress> AddrManImpl::GetAddr_(size_t max_addresses, size_t max_pct, std::optional<Network> network, const bool filtered) const
807{
809
810 size_t nNodes = vRandom.size();
811 if (max_pct != 0) {
812 nNodes = max_pct * nNodes / 100;
813 }
814 if (max_addresses != 0) {
815 nNodes = std::min(nNodes, max_addresses);
816 }
817
818 // gather a list of random nodes, skipping those of low quality
819 const auto now{Now<NodeSeconds>()};
820 std::vector<CAddress> addresses;
821 for (unsigned int n = 0; n < vRandom.size(); n++) {
822 if (addresses.size() >= nNodes)
823 break;
824
825 int nRndPos = insecure_rand.randrange(vRandom.size() - n) + n;
826 SwapRandom(n, nRndPos);
827 const auto it{mapInfo.find(vRandom[n])};
828 assert(it != mapInfo.end());
829
830 const AddrInfo& ai{it->second};
831
832 // Filter by network (optional)
833 if (network != std::nullopt && ai.GetNetClass() != network) continue;
834
835 // Filter for quality
836 if (ai.IsTerrible(now) && filtered) continue;
837
838 addresses.push_back(ai);
839 }
840 LogPrint(BCLog::ADDRMAN, "GetAddr returned %d random addresses\n", addresses.size());
841 return addresses;
842}
843
844std::vector<std::pair<AddrInfo, AddressPosition>> AddrManImpl::GetEntries_(bool from_tried) const
845{
847
848 const int bucket_count = from_tried ? ADDRMAN_TRIED_BUCKET_COUNT : ADDRMAN_NEW_BUCKET_COUNT;
849 std::vector<std::pair<AddrInfo, AddressPosition>> infos;
850 for (int bucket = 0; bucket < bucket_count; ++bucket) {
851 for (int position = 0; position < ADDRMAN_BUCKET_SIZE; ++position) {
852 int id = GetEntry(from_tried, bucket, position);
853 if (id >= 0) {
854 AddrInfo info = mapInfo.at(id);
856 from_tried,
857 /*multiplicity_in=*/from_tried ? 1 : info.nRefCount,
858 bucket,
859 position);
860 infos.emplace_back(info, location);
861 }
862 }
863 }
864
865 return infos;
866}
867
869{
871
872 AddrInfo* pinfo = Find(addr);
873
874 // if not found, bail out
875 if (!pinfo)
876 return;
877
878 AddrInfo& info = *pinfo;
879
880 // update info
881 const auto update_interval{20min};
882 if (time - info.nTime > update_interval) {
883 info.nTime = time;
884 }
885}
886
888{
890
891 AddrInfo* pinfo = Find(addr);
892
893 // if not found, bail out
894 if (!pinfo)
895 return;
896
897 AddrInfo& info = *pinfo;
898
899 // update info
900 info.nServices = nServices;
901}
902
904{
906
907 for (std::set<int>::iterator it = m_tried_collisions.begin(); it != m_tried_collisions.end();) {
908 int id_new = *it;
909
910 bool erase_collision = false;
911
912 // If id_new not found in mapInfo remove it from m_tried_collisions
913 if (mapInfo.count(id_new) != 1) {
914 erase_collision = true;
915 } else {
916 AddrInfo& info_new = mapInfo[id_new];
917
918 // Which tried bucket to move the entry to.
919 int tried_bucket = info_new.GetTriedBucket(nKey, m_netgroupman);
920 int tried_bucket_pos = info_new.GetBucketPosition(nKey, false, tried_bucket);
921 if (!info_new.IsValid()) { // id_new may no longer map to a valid address
922 erase_collision = true;
923 } else if (vvTried[tried_bucket][tried_bucket_pos] != -1) { // The position in the tried bucket is not empty
924
925 // Get the to-be-evicted address that is being tested
926 int id_old = vvTried[tried_bucket][tried_bucket_pos];
927 AddrInfo& info_old = mapInfo[id_old];
928
929 const auto current_time{Now<NodeSeconds>()};
930
931 // Has successfully connected in last X hours
932 if (current_time - info_old.m_last_success < ADDRMAN_REPLACEMENT) {
933 erase_collision = true;
934 } else if (current_time - info_old.m_last_try < ADDRMAN_REPLACEMENT) { // attempted to connect and failed in last X hours
935
936 // Give address at least 60 seconds to successfully connect
937 if (current_time - info_old.m_last_try > 60s) {
938 LogPrint(BCLog::ADDRMAN, "Replacing %s with %s in tried table\n", info_old.ToStringAddrPort(), info_new.ToStringAddrPort());
939
940 // Replaces an existing address already in the tried table with the new address
941 Good_(info_new, false, current_time);
942 erase_collision = true;
943 }
944 } else if (current_time - info_new.m_last_success > ADDRMAN_TEST_WINDOW) {
945 // If the collision hasn't resolved in some reasonable amount of time,
946 // just evict the old entry -- we must not be able to
947 // connect to it for some reason.
948 LogPrint(BCLog::ADDRMAN, "Unable to test; replacing %s with %s in tried table anyway\n", info_old.ToStringAddrPort(), info_new.ToStringAddrPort());
949 Good_(info_new, false, current_time);
950 erase_collision = true;
951 }
952 } else { // Collision is not actually a collision anymore
953 Good_(info_new, false, Now<NodeSeconds>());
954 erase_collision = true;
955 }
956 }
957
958 if (erase_collision) {
959 m_tried_collisions.erase(it++);
960 } else {
961 it++;
962 }
963 }
964}
965
966std::pair<CAddress, NodeSeconds> AddrManImpl::SelectTriedCollision_()
967{
969
970 if (m_tried_collisions.size() == 0) return {};
971
972 std::set<int>::iterator it = m_tried_collisions.begin();
973
974 // Selects a random element from m_tried_collisions
975 std::advance(it, insecure_rand.randrange(m_tried_collisions.size()));
976 int id_new = *it;
977
978 // If id_new not found in mapInfo remove it from m_tried_collisions
979 if (mapInfo.count(id_new) != 1) {
980 m_tried_collisions.erase(it);
981 return {};
982 }
983
984 const AddrInfo& newInfo = mapInfo[id_new];
985
986 // which tried bucket to move the entry to
987 int tried_bucket = newInfo.GetTriedBucket(nKey, m_netgroupman);
988 int tried_bucket_pos = newInfo.GetBucketPosition(nKey, false, tried_bucket);
989
990 const AddrInfo& info_old = mapInfo[vvTried[tried_bucket][tried_bucket_pos]];
991 return {info_old, info_old.m_last_try};
992}
993
994std::optional<AddressPosition> AddrManImpl::FindAddressEntry_(const CAddress& addr)
995{
997
998 AddrInfo* addr_info = Find(addr);
999
1000 if (!addr_info) return std::nullopt;
1001
1002 if(addr_info->fInTried) {
1003 int bucket{addr_info->GetTriedBucket(nKey, m_netgroupman)};
1004 return AddressPosition(/*tried_in=*/true,
1005 /*multiplicity_in=*/1,
1006 /*bucket_in=*/bucket,
1007 /*position_in=*/addr_info->GetBucketPosition(nKey, false, bucket));
1008 } else {
1009 int bucket{addr_info->GetNewBucket(nKey, m_netgroupman)};
1010 return AddressPosition(/*tried_in=*/false,
1011 /*multiplicity_in=*/addr_info->nRefCount,
1012 /*bucket_in=*/bucket,
1013 /*position_in=*/addr_info->GetBucketPosition(nKey, true, bucket));
1014 }
1015}
1016
1017size_t AddrManImpl::Size_(std::optional<Network> net, std::optional<bool> in_new) const
1018{
1020
1021 if (!net.has_value()) {
1022 if (in_new.has_value()) {
1023 return *in_new ? nNew : nTried;
1024 } else {
1025 return vRandom.size();
1026 }
1027 }
1028 if (auto it = m_network_counts.find(*net); it != m_network_counts.end()) {
1029 auto net_count = it->second;
1030 if (in_new.has_value()) {
1031 return *in_new ? net_count.n_new : net_count.n_tried;
1032 } else {
1033 return net_count.n_new + net_count.n_tried;
1034 }
1035 }
1036 return 0;
1037}
1038
1040{
1042
1043 // Run consistency checks 1 in m_consistency_check_ratio times if enabled
1044 if (m_consistency_check_ratio == 0) return;
1045 if (insecure_rand.randrange(m_consistency_check_ratio) >= 1) return;
1046
1047 const int err{CheckAddrman()};
1048 if (err) {
1049 LogPrintf("ADDRMAN CONSISTENCY CHECK FAILED!!! err=%i\n", err);
1050 assert(false);
1051 }
1052}
1053
1055{
1057
1059 strprintf("new %i, tried %i, total %u", nNew, nTried, vRandom.size()), BCLog::ADDRMAN);
1060
1061 std::unordered_set<int> setTried;
1062 std::unordered_map<int, int> mapNew;
1063 std::unordered_map<Network, NewTriedCount> local_counts;
1064
1065 if (vRandom.size() != (size_t)(nTried + nNew))
1066 return -7;
1067
1068 for (const auto& entry : mapInfo) {
1069 int n = entry.first;
1070 const AddrInfo& info = entry.second;
1071 if (info.fInTried) {
1073 return -1;
1074 }
1075 if (info.nRefCount)
1076 return -2;
1077 setTried.insert(n);
1078 local_counts[info.GetNetwork()].n_tried++;
1079 } else {
1081 return -3;
1082 if (!info.nRefCount)
1083 return -4;
1084 mapNew[n] = info.nRefCount;
1085 local_counts[info.GetNetwork()].n_new++;
1086 }
1087 const auto it{mapAddr.find(info)};
1088 if (it == mapAddr.end() || it->second != n) {
1089 return -5;
1090 }
1091 if (info.nRandomPos < 0 || (size_t)info.nRandomPos >= vRandom.size() || vRandom[info.nRandomPos] != n)
1092 return -14;
1093 if (info.m_last_try < NodeSeconds{0s}) {
1094 return -6;
1095 }
1096 if (info.m_last_success < NodeSeconds{0s}) {
1097 return -8;
1098 }
1099 }
1100
1101 if (setTried.size() != (size_t)nTried)
1102 return -9;
1103 if (mapNew.size() != (size_t)nNew)
1104 return -10;
1105
1106 for (int n = 0; n < ADDRMAN_TRIED_BUCKET_COUNT; n++) {
1107 for (int i = 0; i < ADDRMAN_BUCKET_SIZE; i++) {
1108 if (vvTried[n][i] != -1) {
1109 if (!setTried.count(vvTried[n][i]))
1110 return -11;
1111 const auto it{mapInfo.find(vvTried[n][i])};
1112 if (it == mapInfo.end() || it->second.GetTriedBucket(nKey, m_netgroupman) != n) {
1113 return -17;
1114 }
1115 if (it->second.GetBucketPosition(nKey, false, n) != i) {
1116 return -18;
1117 }
1118 setTried.erase(vvTried[n][i]);
1119 }
1120 }
1121 }
1122
1123 for (int n = 0; n < ADDRMAN_NEW_BUCKET_COUNT; n++) {
1124 for (int i = 0; i < ADDRMAN_BUCKET_SIZE; i++) {
1125 if (vvNew[n][i] != -1) {
1126 if (!mapNew.count(vvNew[n][i]))
1127 return -12;
1128 const auto it{mapInfo.find(vvNew[n][i])};
1129 if (it == mapInfo.end() || it->second.GetBucketPosition(nKey, true, n) != i) {
1130 return -19;
1131 }
1132 if (--mapNew[vvNew[n][i]] == 0)
1133 mapNew.erase(vvNew[n][i]);
1134 }
1135 }
1136 }
1137
1138 if (setTried.size())
1139 return -13;
1140 if (mapNew.size())
1141 return -15;
1142 if (nKey.IsNull())
1143 return -16;
1144
1145 // It's possible that m_network_counts may have all-zero entries that local_counts
1146 // doesn't have if addrs from a network were being added and then removed again in the past.
1147 if (m_network_counts.size() < local_counts.size()) {
1148 return -20;
1149 }
1150 for (const auto& [net, count] : m_network_counts) {
1151 if (local_counts[net].n_new != count.n_new || local_counts[net].n_tried != count.n_tried) {
1152 return -21;
1153 }
1154 }
1155
1156 return 0;
1157}
1158
1159size_t AddrManImpl::Size(std::optional<Network> net, std::optional<bool> in_new) const
1160{
1161 LOCK(cs);
1162 Check();
1163 auto ret = Size_(net, in_new);
1164 Check();
1165 return ret;
1166}
1167
1168bool AddrManImpl::Add(const std::vector<CAddress>& vAddr, const CNetAddr& source, std::chrono::seconds time_penalty)
1169{
1170 LOCK(cs);
1171 Check();
1172 auto ret = Add_(vAddr, source, time_penalty);
1173 Check();
1174 return ret;
1175}
1176
1178{
1179 LOCK(cs);
1180 Check();
1181 auto ret = Good_(addr, /*test_before_evict=*/true, time);
1182 Check();
1183 return ret;
1184}
1185
1186void AddrManImpl::Attempt(const CService& addr, bool fCountFailure, NodeSeconds time)
1187{
1188 LOCK(cs);
1189 Check();
1190 Attempt_(addr, fCountFailure, time);
1191 Check();
1192}
1193
1195{
1196 LOCK(cs);
1197 Check();
1199 Check();
1200}
1201
1202std::pair<CAddress, NodeSeconds> AddrManImpl::SelectTriedCollision()
1203{
1204 LOCK(cs);
1205 Check();
1206 auto ret = SelectTriedCollision_();
1207 Check();
1208 return ret;
1209}
1210
1211std::pair<CAddress, NodeSeconds> AddrManImpl::Select(bool new_only, std::optional<Network> network) const
1212{
1213 LOCK(cs);
1214 Check();
1215 auto addrRet = Select_(new_only, network);
1216 Check();
1217 return addrRet;
1218}
1219
1220std::vector<CAddress> AddrManImpl::GetAddr(size_t max_addresses, size_t max_pct, std::optional<Network> network, const bool filtered) const
1221{
1222 LOCK(cs);
1223 Check();
1224 auto addresses = GetAddr_(max_addresses, max_pct, network, filtered);
1225 Check();
1226 return addresses;
1227}
1228
1229std::vector<std::pair<AddrInfo, AddressPosition>> AddrManImpl::GetEntries(bool from_tried) const
1230{
1231 LOCK(cs);
1232 Check();
1233 auto addrInfos = GetEntries_(from_tried);
1234 Check();
1235 return addrInfos;
1236}
1237
1239{
1240 LOCK(cs);
1241 Check();
1242 Connected_(addr, time);
1243 Check();
1244}
1245
1247{
1248 LOCK(cs);
1249 Check();
1250 SetServices_(addr, nServices);
1251 Check();
1252}
1253
1254std::optional<AddressPosition> AddrManImpl::FindAddressEntry(const CAddress& addr)
1255{
1256 LOCK(cs);
1257 Check();
1258 auto entry = FindAddressEntry_(addr);
1259 Check();
1260 return entry;
1261}
1262
1263AddrMan::AddrMan(const NetGroupManager& netgroupman, bool deterministic, int32_t consistency_check_ratio)
1264 : m_impl(std::make_unique<AddrManImpl>(netgroupman, deterministic, consistency_check_ratio)) {}
1265
1266AddrMan::~AddrMan() = default;
1267
1268template <typename Stream>
1269void AddrMan::Serialize(Stream& s_) const
1270{
1271 m_impl->Serialize<Stream>(s_);
1272}
1273
1274template <typename Stream>
1275void AddrMan::Unserialize(Stream& s_)
1276{
1277 m_impl->Unserialize<Stream>(s_);
1278}
1279
1280// explicit instantiation
1282template void AddrMan::Serialize(DataStream&) const;
1283template void AddrMan::Unserialize(AutoFile&);
1285template void AddrMan::Unserialize(DataStream&);
1287
1288size_t AddrMan::Size(std::optional<Network> net, std::optional<bool> in_new) const
1289{
1290 return m_impl->Size(net, in_new);
1291}
1292
1293bool AddrMan::Add(const std::vector<CAddress>& vAddr, const CNetAddr& source, std::chrono::seconds time_penalty)
1294{
1295 return m_impl->Add(vAddr, source, time_penalty);
1296}
1297
1298bool AddrMan::Good(const CService& addr, NodeSeconds time)
1299{
1300 return m_impl->Good(addr, time);
1301}
1302
1303void AddrMan::Attempt(const CService& addr, bool fCountFailure, NodeSeconds time)
1304{
1305 m_impl->Attempt(addr, fCountFailure, time);
1306}
1307
1309{
1310 m_impl->ResolveCollisions();
1311}
1312
1313std::pair<CAddress, NodeSeconds> AddrMan::SelectTriedCollision()
1314{
1315 return m_impl->SelectTriedCollision();
1316}
1317
1318std::pair<CAddress, NodeSeconds> AddrMan::Select(bool new_only, std::optional<Network> network) const
1319{
1320 return m_impl->Select(new_only, network);
1321}
1322
1323std::vector<CAddress> AddrMan::GetAddr(size_t max_addresses, size_t max_pct, std::optional<Network> network, const bool filtered) const
1324{
1325 return m_impl->GetAddr(max_addresses, max_pct, network, filtered);
1326}
1327
1328std::vector<std::pair<AddrInfo, AddressPosition>> AddrMan::GetEntries(bool use_tried) const
1329{
1330 return m_impl->GetEntries(use_tried);
1331}
1332
1334{
1335 m_impl->Connected(addr, time);
1336}
1337
1338void AddrMan::SetServices(const CService& addr, ServiceFlags nServices)
1339{
1340 m_impl->SetServices(addr, nServices);
1341}
1342
1343std::optional<AddressPosition> AddrMan::FindAddressEntry(const CAddress& addr)
1344{
1345 return m_impl->FindAddressEntry(addr);
1346}
static constexpr uint32_t ADDRMAN_NEW_BUCKETS_PER_SOURCE_GROUP
Over how many buckets entries with new addresses originating from a single group are spread.
Definition addrman.cpp:30
static constexpr auto ADDRMAN_HORIZON
How old addresses can maximally be.
Definition addrman.cpp:34
static constexpr int32_t ADDRMAN_MAX_FAILURES
How many successive failures are allowed ...
Definition addrman.cpp:38
static constexpr auto ADDRMAN_MIN_FAIL
... in at least this duration
Definition addrman.cpp:40
static constexpr auto ADDRMAN_TEST_WINDOW
The maximum time we'll spend trying to resolve a tried table collision.
Definition addrman.cpp:46
static constexpr auto ADDRMAN_REPLACEMENT
How recent a successful connection should be before we allow an address to be evicted from tried.
Definition addrman.cpp:42
static constexpr int32_t ADDRMAN_RETRIES
After how many failed attempts we give up on a new node.
Definition addrman.cpp:36
static constexpr size_t ADDRMAN_SET_TRIED_COLLISION_SIZE
The maximum number of tried addr collisions to store.
Definition addrman.cpp:44
static constexpr uint32_t ADDRMAN_TRIED_BUCKETS_PER_GROUP
Over how many buckets entries with tried addresses from a single group (/16 for IPv4) are spread.
Definition addrman.cpp:28
static constexpr int32_t ADDRMAN_NEW_BUCKETS_PER_ADDRESS
Maximum number of times an address can occur in the new table.
Definition addrman.cpp:32
static constexpr int ADDRMAN_TRIED_BUCKET_COUNT
static constexpr int ADDRMAN_BUCKET_SIZE
static constexpr int ADDRMAN_NEW_BUCKET_COUNT
int ret
#define PACKAGE_NAME
#define Assume(val)
Assume is the identity function.
Definition check.h:89
Extended statistics about a CAddress.
int GetNewBucket(const uint256 &nKey, const CNetAddr &src, const NetGroupManager &netgroupman) const
Calculate in which "new" bucket this entry belongs, given a certain source.
Definition addrman.cpp:55
int GetTriedBucket(const uint256 &nKey, const NetGroupManager &netgroupman) const
Calculate in which "tried" bucket this entry belongs.
Definition addrman.cpp:48
int nRandomPos
position in vRandom
int GetBucketPosition(const uint256 &nKey, bool fNew, int bucket) const
Calculate in which position of a bucket to store this entry.
Definition addrman.cpp:63
bool fInTried
in tried set? (memory only)
NodeSeconds m_last_success
last successful connection by us
NodeSeconds m_last_count_attempt
last counted attempt (memory only)
NodeSeconds m_last_try
last try whatsoever by us (memory only)
double GetChance(NodeSeconds now=Now< NodeSeconds >()) const
Calculate the relative chance this entry should be given when selecting nodes to connect to.
Definition addrman.cpp:94
bool IsTerrible(NodeSeconds now=Now< NodeSeconds >()) const
Determine whether the statistics about this entry are bad enough so that it can just be deleted.
Definition addrman.cpp:69
int nRefCount
reference count in new sets (memory only)
int nAttempts
connection attempts since last successful attempt
std::pair< CAddress, NodeSeconds > Select(bool new_only=false, std::optional< Network > network=std::nullopt) const
Choose an address to connect to.
Definition addrman.cpp:1318
void Connected(const CService &addr, NodeSeconds time=Now< NodeSeconds >())
We have successfully connected to this peer.
Definition addrman.cpp:1333
const std::unique_ptr< AddrManImpl > m_impl
Definition addrman.h:90
void Attempt(const CService &addr, bool fCountFailure, NodeSeconds time=Now< NodeSeconds >())
Mark an entry as connection attempted to.
Definition addrman.cpp:1303
size_t Size(std::optional< Network > net=std::nullopt, std::optional< bool > in_new=std::nullopt) const
Return size information about addrman.
Definition addrman.cpp:1288
std::optional< AddressPosition > FindAddressEntry(const CAddress &addr)
Test-only function Find the address record in AddrMan and return information about its position.
Definition addrman.cpp:1343
std::vector< std::pair< AddrInfo, AddressPosition > > GetEntries(bool from_tried) const
Returns an information-location pair for all addresses in the selected addrman table.
Definition addrman.cpp:1328
void ResolveCollisions()
See if any to-be-evicted tried table entries have been tested and if so resolve the collisions.
Definition addrman.cpp:1308
bool Good(const CService &addr, NodeSeconds time=Now< NodeSeconds >())
Mark an address record as accessible and attempt to move it to addrman's tried table.
Definition addrman.cpp:1298
void Serialize(Stream &s_) const
Definition addrman.cpp:1269
void Unserialize(Stream &s_)
Definition addrman.cpp:1275
AddrMan(const NetGroupManager &netgroupman, bool deterministic, int32_t consistency_check_ratio)
Definition addrman.cpp:1263
std::pair< CAddress, NodeSeconds > SelectTriedCollision()
Randomly select an address in the tried table that another address is attempting to evict.
Definition addrman.cpp:1313
bool Add(const std::vector< CAddress > &vAddr, const CNetAddr &source, std::chrono::seconds time_penalty=0s)
Attempt to add one or more addresses to addrman's new table.
Definition addrman.cpp:1293
void SetServices(const CService &addr, ServiceFlags nServices)
Update an entry's service bits.
Definition addrman.cpp:1338
std::vector< CAddress > GetAddr(size_t max_addresses, size_t max_pct, std::optional< Network > network, const bool filtered=true) const
Return all or many randomly selected addresses, optionally by network.
Definition addrman.cpp:1323
void ClearNew(int nUBucket, int nUBucketPos) EXCLUSIVE_LOCKS_REQUIRED(cs)
Clear a position in a "new" table. This is the only place where entries are actually deleted.
Definition addrman.cpp:473
int GetEntry(bool use_tried, size_t bucket, size_t position) const EXCLUSIVE_LOCKS_REQUIRED(cs)
Helper to generalize looking up an addrman entry from either table.
Definition addrman.cpp:789
void Connected_(const CService &addr, NodeSeconds time) EXCLUSIVE_LOCKS_REQUIRED(cs)
Definition addrman.cpp:868
void Attempt_(const CService &addr, bool fCountFailure, NodeSeconds time) EXCLUSIVE_LOCKS_REQUIRED(cs)
Definition addrman.cpp:693
static constexpr Format FILE_FORMAT
The maximum format this software knows it can unserialize.
void ResolveCollisions_() EXCLUSIVE_LOCKS_REQUIRED(cs)
Definition addrman.cpp:903
Format
Serialization versions.
@ V4_MULTIPORT
adds support for multiple ports per IP
@ V3_BIP155
same as V2_ASMAP plus addresses are in BIP155 format
@ V2_ASMAP
for files including asmap version
@ V1_DETERMINISTIC
for pre-asmap files
void Serialize(Stream &s_) const EXCLUSIVE_LOCKS_REQUIRED(!cs)
Definition addrman.cpp:133
void Connected(const CService &addr, NodeSeconds time) EXCLUSIVE_LOCKS_REQUIRED(!cs)
Definition addrman.cpp:1238
void MakeTried(AddrInfo &info, int nId) EXCLUSIVE_LOCKS_REQUIRED(cs)
Move an entry from the "new" table(s) to the "tried" table.
Definition addrman.cpp:491
void SetServices(const CService &addr, ServiceFlags nServices) EXCLUSIVE_LOCKS_REQUIRED(!cs)
Definition addrman.cpp:1246
std::optional< AddressPosition > FindAddressEntry_(const CAddress &addr) EXCLUSIVE_LOCKS_REQUIRED(cs)
Definition addrman.cpp:994
void SetServices_(const CService &addr, ServiceFlags nServices) EXCLUSIVE_LOCKS_REQUIRED(cs)
Definition addrman.cpp:887
AddrManImpl(const NetGroupManager &netgroupman, bool deterministic, int32_t consistency_check_ratio)
Definition addrman.cpp:109
std::vector< std::pair< AddrInfo, AddressPosition > > GetEntries(bool from_tried) const EXCLUSIVE_LOCKS_REQUIRED(!cs)
Definition addrman.cpp:1229
const int32_t m_consistency_check_ratio
Perform consistency checks every m_consistency_check_ratio operations (if non-zero).
std::vector< std::pair< AddrInfo, AddressPosition > > GetEntries_(bool from_tried) const EXCLUSIVE_LOCKS_REQUIRED(cs)
Definition addrman.cpp:844
void Check() const EXCLUSIVE_LOCKS_REQUIRED(cs)
Consistency check, taking into account m_consistency_check_ratio.
Definition addrman.cpp:1039
int CheckAddrman() const EXCLUSIVE_LOCKS_REQUIRED(cs)
Perform consistency check, regardless of m_consistency_check_ratio.
Definition addrman.cpp:1054
bool Add(const std::vector< CAddress > &vAddr, const CNetAddr &source, std::chrono::seconds time_penalty) EXCLUSIVE_LOCKS_REQUIRED(!cs)
Definition addrman.cpp:1168
std::optional< AddressPosition > FindAddressEntry(const CAddress &addr) EXCLUSIVE_LOCKS_REQUIRED(!cs)
Definition addrman.cpp:1254
AddrInfo * Find(const CService &addr, int *pnId=nullptr) EXCLUSIVE_LOCKS_REQUIRED(cs)
Find an entry.
Definition addrman.cpp:401
bool Good_(const CService &addr, bool test_before_evict, NodeSeconds time) EXCLUSIVE_LOCKS_REQUIRED(cs)
Definition addrman.cpp:626
Mutex cs
A mutex to protect the inner data structures.
size_t Size_(std::optional< Network > net, std::optional< bool > in_new) const EXCLUSIVE_LOCKS_REQUIRED(cs)
Definition addrman.cpp:1017
std::pair< CAddress, NodeSeconds > SelectTriedCollision_() EXCLUSIVE_LOCKS_REQUIRED(cs)
Definition addrman.cpp:966
std::pair< CAddress, NodeSeconds > Select(bool new_only, std::optional< Network > network) const EXCLUSIVE_LOCKS_REQUIRED(!cs)
Definition addrman.cpp:1211
std::pair< CAddress, NodeSeconds > SelectTriedCollision() EXCLUSIVE_LOCKS_REQUIRED(!cs)
Definition addrman.cpp:1202
static constexpr uint8_t INCOMPATIBILITY_BASE
The initial value of a field that is incremented every time an incompatible format change is made (su...
void Delete(int nId) EXCLUSIVE_LOCKS_REQUIRED(cs)
Delete an entry. It must not be in tried, and have refcount 0.
Definition addrman.cpp:456
void SwapRandom(unsigned int nRandomPos1, unsigned int nRandomPos2) const EXCLUSIVE_LOCKS_REQUIRED(cs)
Swap two elements in vRandom.
Definition addrman.cpp:432
std::vector< CAddress > GetAddr_(size_t max_addresses, size_t max_pct, std::optional< Network > network, const bool filtered=true) const EXCLUSIVE_LOCKS_REQUIRED(cs)
Definition addrman.cpp:806
void Attempt(const CService &addr, bool fCountFailure, NodeSeconds time) EXCLUSIVE_LOCKS_REQUIRED(!cs)
Definition addrman.cpp:1186
void Unserialize(Stream &s_) EXCLUSIVE_LOCKS_REQUIRED(!cs)
Definition addrman.cpp:231
std::set< int > m_tried_collisions
Holds addrs inserted into tried table that collide with existing entries. Test-before-evict disciplin...
uint256 nKey
secret key to randomize bucket select with
void ResolveCollisions() EXCLUSIVE_LOCKS_REQUIRED(!cs)
Definition addrman.cpp:1194
AddrInfo * Create(const CAddress &addr, const CNetAddr &addrSource, int *pnId=nullptr) EXCLUSIVE_LOCKS_REQUIRED(cs)
Create a new entry and add it to the internal data structures mapInfo, mapAddr and vRandom.
Definition addrman.cpp:416
const NetGroupManager & m_netgroupman
Reference to the netgroup manager.
std::pair< CAddress, NodeSeconds > Select_(bool new_only, std::optional< Network > network) const EXCLUSIVE_LOCKS_REQUIRED(cs)
Definition addrman.cpp:713
bool Add_(const std::vector< CAddress > &vAddr, const CNetAddr &source, std::chrono::seconds time_penalty) EXCLUSIVE_LOCKS_REQUIRED(cs)
Definition addrman.cpp:681
bool Good(const CService &addr, NodeSeconds time) EXCLUSIVE_LOCKS_REQUIRED(!cs)
Definition addrman.cpp:1177
std::vector< CAddress > GetAddr(size_t max_addresses, size_t max_pct, std::optional< Network > network, const bool filtered=true) const EXCLUSIVE_LOCKS_REQUIRED(!cs)
Definition addrman.cpp:1220
size_t Size(std::optional< Network > net, std::optional< bool > in_new) const EXCLUSIVE_LOCKS_REQUIRED(!cs)
Definition addrman.cpp:1159
bool AddSingle(const CAddress &addr, const CNetAddr &source, std::chrono::seconds time_penalty) EXCLUSIVE_LOCKS_REQUIRED(cs)
Attempt to add a single address to addrman's new table.
Definition addrman.cpp:550
Non-refcounted RAII wrapper for FILE*.
Definition streams.h:389
A CService with information about it as peer.
Definition protocol.h:367
ServiceFlags nServices
Serialized as uint64_t in V1, and as CompactSize in V2.
Definition protocol.h:459
NodeSeconds nTime
Always included in serialization. The behavior is unspecified if the value is not representable as ui...
Definition protocol.h:457
static constexpr SerParams V1_DISK
Definition protocol.h:410
static constexpr SerParams V2_DISK
Definition protocol.h:411
Network address.
Definition netaddress.h:112
bool IsRoutable() const
bool IsValid() const
enum Network GetNetwork() const
A combination of a network address (CNetAddr) and a (TCP) port.
Definition netaddress.h:531
std::string ToStringAddrPort() const
std::vector< unsigned char > GetKey() const
Double ended buffer combining vector and stream-like interfaces.
Definition streams.h:147
Reads data from an underlying stream, while hashing the read data.
Definition hash.h:151
A writer stream (for serialization) that computes a 256-bit hash.
Definition hash.h:101
Writes data to an underlying source stream, while hashing the written data.
Definition hash.h:185
Netgroup manager.
Definition netgroup.h:16
uint256 GetAsmapChecksum() const
Get a checksum identifying the asmap being used.
Definition netgroup.cpp:11
std::vector< unsigned char > GetGroup(const CNetAddr &address) const
Get the canonical identifier of the network group for address.
Definition netgroup.cpp:18
uint32_t GetMappedAS(const CNetAddr &address) const
Get the autonomous system on the BGP path to address.
Definition netgroup.cpp:81
Wrapper that overrides the GetParams() function of a stream.
Definition serialize.h:1113
constexpr bool IsNull() const
Definition uint256.h:46
constexpr void SetNull()
Definition uint256.h:53
256-bit opaque blob.
Definition uint256.h:178
#define LogPrint(category,...)
Definition logging.h:293
#define LogPrintf(...)
Definition logging.h:274
@ ADDRMAN
Definition logging.h:51
ServiceFlags
nServices flags
Definition protocol.h:309
const char * source
static Wrapper< Formatter, T & > Using(T &&t)
Cause serialization/deserialization of an object to be done using a specified formatter class.
Definition serialize.h:495
Location information for an address in AddrMan.
Definition addrman.h:34
static time_point now() noexcept
Return current system time or mocked time, if set.
Definition time.cpp:21
#define LOCK(cs)
Definition sync.h:257
#define AssertLockHeld(cs)
Definition sync.h:142
static int count
constexpr auto TicksSinceEpoch(Timepoint t)
Definition time.h:50
T Now()
Return the current time point cast to the given precision.
Definition time.h:91
std::chrono::time_point< NodeClock, std::chrono::seconds > NodeSeconds
Definition time.h:23
#define LOG_TIME_MILLIS_WITH_CATEGORY_MSG_ONCE(end_msg, log_category)
Definition timer.h:105
#define strprintf
Format arguments and return the string or write to given std::ostream (see tinyformat::format doc for...
assert(!tx.IsCoinBase())