Topology.cpp 5.0 KB

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  1. /*
  2. * Copyright (c)2013-2020 ZeroTier, Inc.
  3. *
  4. * Use of this software is governed by the Business Source License included
  5. * in the LICENSE.TXT file in the project's root directory.
  6. *
  7. * Change Date: 2024-01-01
  8. *
  9. * On the date above, in accordance with the Business Source License, use
  10. * of this software will be governed by version 2.0 of the Apache License.
  11. */
  12. /****/
  13. #include "Topology.hpp"
  14. namespace ZeroTier {
  15. Topology::Topology(const RuntimeEnvironment *renv, void *tPtr) :
  16. RR(renv)
  17. {
  18. uint64_t idtmp[2];
  19. idtmp[0] = 0;
  20. idtmp[1] = 0;
  21. Vector< uint8_t > data(RR->node->stateObjectGet(tPtr, ZT_STATE_OBJECT_ROOTS, idtmp));
  22. // TODO
  23. m_updateRootPeers(tPtr);
  24. }
  25. SharedPtr< Peer > Topology::add(void *tPtr, const SharedPtr< Peer > &peer)
  26. {
  27. RWMutex::Lock _l(m_peers_l);
  28. SharedPtr< Peer > &hp = m_peers[peer->address()];
  29. if (hp)
  30. return hp;
  31. m_loadCached(tPtr, peer->address(), hp);
  32. if (hp)
  33. return hp;
  34. hp = peer;
  35. return peer;
  36. }
  37. struct p_RootSortComparisonOperator
  38. {
  39. ZT_INLINE bool operator()(const SharedPtr< Peer > &a, const SharedPtr< Peer > &b) const noexcept
  40. {
  41. // Sort in inverse order of latency with lowest latency first (and -1 last).
  42. const int bb = b->latency();
  43. if (bb < 0)
  44. return true;
  45. return bb < a->latency();
  46. }
  47. };
  48. SharedPtr< Peer > Topology::addRoot(void *const tPtr, const Identity &id)
  49. {
  50. if ((id != RR->identity) && id.locallyValidate()) {
  51. RWMutex::Lock l1(m_peers_l);
  52. // TODO
  53. //m_roots.insert(id);
  54. m_updateRootPeers(tPtr);
  55. m_writeRootList(tPtr);
  56. for (Vector< SharedPtr< Peer > >::const_iterator p(m_rootPeers.begin()); p != m_rootPeers.end(); ++p) {
  57. if ((*p)->identity() == id)
  58. return *p;
  59. }
  60. }
  61. return SharedPtr< Peer >();
  62. }
  63. bool Topology::removeRoot(void *const tPtr, Address address)
  64. {
  65. RWMutex::Lock l1(m_peers_l);
  66. // TODO
  67. return true;
  68. }
  69. void Topology::rankRoots()
  70. {
  71. RWMutex::Lock l1(m_peers_l);
  72. std::sort(m_rootPeers.begin(), m_rootPeers.end(), p_RootSortComparisonOperator());
  73. }
  74. void Topology::doPeriodicTasks(void *tPtr, const int64_t now)
  75. {
  76. // Delete peers that haven't said anything in ZT_PEER_ALIVE_TIMEOUT.
  77. {
  78. RWMutex::Lock l1(m_peers_l);
  79. for (Map< Address, SharedPtr< Peer > >::iterator i(m_peers.begin()); i != m_peers.end();) {
  80. // TODO: also delete if the peer has not exchanged meaningful communication in a while, such as
  81. // a network frame or non-trivial control packet.
  82. if (((now - i->second->lastReceive()) > ZT_PEER_ALIVE_TIMEOUT) && (m_roots.count(i->second->identity()) == 0)) {
  83. i->second->save(tPtr);
  84. m_peers.erase(i++);
  85. } else ++i;
  86. }
  87. }
  88. // Delete paths that are no longer held by anyone else ("weak reference" type behavior).
  89. {
  90. RWMutex::Lock l1(m_paths_l);
  91. for (Map< uint64_t, SharedPtr< Path > >::iterator i(m_paths.begin()); i != m_paths.end();) {
  92. if (i->second.weakGC())
  93. m_paths.erase(i++);
  94. else ++i;
  95. }
  96. }
  97. }
  98. void Topology::saveAll(void *tPtr)
  99. {
  100. RWMutex::RLock l(m_peers_l);
  101. for (Map< Address, SharedPtr< Peer > >::iterator i(m_peers.begin()); i != m_peers.end(); ++i)
  102. i->second->save(tPtr);
  103. }
  104. void Topology::m_loadCached(void *tPtr, const Address &zta, SharedPtr< Peer > &peer)
  105. {
  106. try {
  107. uint64_t id[2];
  108. id[0] = zta.toInt();
  109. id[1] = 0;
  110. Vector< uint8_t > data(RR->node->stateObjectGet(tPtr, ZT_STATE_OBJECT_PEER, id));
  111. if (data.size() > 8) {
  112. const uint8_t *d = data.data();
  113. int dl = (int)data.size();
  114. const int64_t ts = (int64_t)Utils::loadBigEndian< uint64_t >(d);
  115. Peer *const p = new Peer(RR);
  116. int n = p->unmarshal(d + 8, dl - 8);
  117. if (n < 0) {
  118. delete p;
  119. return;
  120. }
  121. if ((RR->node->now() - ts) < ZT_PEER_GLOBAL_TIMEOUT) {
  122. // TODO: handle many peers, same address (?)
  123. peer.set(p);
  124. return;
  125. }
  126. }
  127. } catch (...) {
  128. peer.zero();
  129. }
  130. }
  131. void Topology::m_writeRootList(void *tPtr)
  132. {
  133. // assumes m_peers_l is locked for read or write
  134. // TODO
  135. #if 0
  136. uint8_t *const roots = (uint8_t *)malloc((ZT_IDENTITY_MARSHAL_SIZE_MAX + ZT_LOCATOR_MARSHAL_SIZE_MAX + 2) * m_roots.size());
  137. if (roots) { // sanity check
  138. int p = 0;
  139. for (Set< Identity >::const_iterator r(m_roots.begin()); r != m_roots.end(); ++r) {
  140. const int pp = r->marshal(roots + p, false);
  141. if (pp > 0)
  142. p += pp;
  143. }
  144. uint64_t id[2];
  145. id[0] = 0;
  146. id[1] = 0;
  147. RR->node->stateObjectPut(tPtr, ZT_STATE_OBJECT_ROOTS, id, roots, (unsigned int)p);
  148. free(roots);
  149. }
  150. #endif
  151. }
  152. void Topology::m_updateRootPeers(void *tPtr)
  153. {
  154. // assumes m_peers_l is locked for write
  155. // TODO
  156. #if 0
  157. Vector< SharedPtr< Peer > > rp;
  158. for (Map< Identity, Set< SubscriptionKeyHash > >::iterator r(m_roots.begin()); r != m_roots.end(); ++r) {
  159. Map< Address, SharedPtr< Peer > >::iterator pp(m_peers.find(r->first.address()));
  160. SharedPtr< Peer > p;
  161. if (pp != m_peers.end())
  162. p = pp->second;
  163. if (!p)
  164. m_loadCached(tPtr, r->first.address(), p);
  165. if ((!p) || (p->identity() != r->first)) {
  166. p.set(new Peer(RR));
  167. p->init(r->first);
  168. m_peers[r->first.address()] = p;
  169. }
  170. rp.push_back(p);
  171. }
  172. std::sort(rp.begin(), rp.end(), p_RootSortComparisonOperator());
  173. m_rootPeers.swap(rp);
  174. #endif
  175. }
  176. } // namespace ZeroTier