srvrec.cc 5.8 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185
  1. // -*- mode: cpp; mode: fold -*-
  2. // Description /*{{{*/
  3. /* ######################################################################
  4. SRV record support
  5. ##################################################################### */
  6. /*}}}*/
  7. #include <config.h>
  8. #include <netdb.h>
  9. #include <netinet/in.h>
  10. #include <arpa/nameser.h>
  11. #include <resolv.h>
  12. #include <time.h>
  13. #include <algorithm>
  14. #include <apt-pkg/configuration.h>
  15. #include <apt-pkg/error.h>
  16. #include <apt-pkg/strutl.h>
  17. #include "srvrec.h"
  18. bool GetSrvRecords(std::string host, int port, std::vector<SrvRec> &Result)
  19. {
  20. std::string target;
  21. struct servent *s_ent = getservbyport(htons(port), "tcp");
  22. if (s_ent == NULL)
  23. return false;
  24. strprintf(target, "_%s._tcp.%s", s_ent->s_name, host.c_str());
  25. return GetSrvRecords(target, Result);
  26. }
  27. bool GetSrvRecords(std::string name, std::vector<SrvRec> &Result)
  28. {
  29. unsigned char answer[PACKETSZ];
  30. int answer_len, compressed_name_len;
  31. int answer_count;
  32. if (res_init() != 0)
  33. return _error->Errno("res_init", "Failed to init resolver");
  34. answer_len = res_query(name.c_str(), C_IN, T_SRV, answer, sizeof(answer));
  35. if (answer_len == -1)
  36. return false;
  37. if (answer_len < (int)sizeof(HEADER))
  38. return _error->Warning("Not enough data from res_query (%i)", answer_len);
  39. // check the header
  40. HEADER *header = (HEADER*)answer;
  41. if (header->rcode != NOERROR)
  42. return _error->Warning("res_query returned rcode %i", header->rcode);
  43. answer_count = ntohs(header->ancount);
  44. if (answer_count <= 0)
  45. return _error->Warning("res_query returned no answers (%i) ", answer_count);
  46. // skip the header
  47. compressed_name_len = dn_skipname(answer+sizeof(HEADER), answer+answer_len);
  48. if(compressed_name_len < 0)
  49. return _error->Warning("dn_skipname failed %i", compressed_name_len);
  50. // pt points to the first answer record, go over all of them now
  51. unsigned char *pt = answer+sizeof(HEADER)+compressed_name_len+QFIXEDSZ;
  52. while ((int)Result.size() < answer_count && pt < answer+answer_len)
  53. {
  54. u_int16_t type, klass, priority, weight, port, dlen;
  55. char buf[MAXDNAME];
  56. compressed_name_len = dn_skipname(pt, answer+answer_len);
  57. if (compressed_name_len < 0)
  58. return _error->Warning("dn_skipname failed (2): %i",
  59. compressed_name_len);
  60. pt += compressed_name_len;
  61. if (((answer+answer_len) - pt) < 16)
  62. return _error->Warning("packet too short");
  63. // extract the data out of the result buffer
  64. #define extract_u16(target, p) target = *p++ << 8; target |= *p++;
  65. extract_u16(type, pt);
  66. if(type != T_SRV)
  67. return _error->Warning("Unexpected type excepted %x != %x",
  68. T_SRV, type);
  69. extract_u16(klass, pt);
  70. if(klass != C_IN)
  71. return _error->Warning("Unexpected class excepted %x != %x",
  72. C_IN, klass);
  73. pt += 4; // ttl
  74. extract_u16(dlen, pt);
  75. extract_u16(priority, pt);
  76. extract_u16(weight, pt);
  77. extract_u16(port, pt);
  78. #undef extract_u16
  79. compressed_name_len = dn_expand(answer, answer+answer_len, pt, buf, sizeof(buf));
  80. if(compressed_name_len < 0)
  81. return _error->Warning("dn_expand failed %i", compressed_name_len);
  82. pt += compressed_name_len;
  83. // add it to our class
  84. Result.emplace_back(buf, priority, weight, port);
  85. }
  86. // implement load balancing as specified in RFC-2782
  87. // sort them by priority
  88. std::stable_sort(Result.begin(), Result.end());
  89. for(std::vector<SrvRec>::iterator I = Result.begin();
  90. I != Result.end(); ++I)
  91. {
  92. if (_config->FindB("Debug::Acquire::SrvRecs", false) == true)
  93. {
  94. std::cerr << "SrvRecs: got " << I->target
  95. << " prio: " << I->priority
  96. << " weight: " << I->weight
  97. << std::endl;
  98. }
  99. }
  100. return true;
  101. }
  102. SrvRec PopFromSrvRecs(std::vector<SrvRec> &Recs)
  103. {
  104. // FIXME: instead of the simplistic shuffle below use the algorithm
  105. // described in rfc2782 (with weights)
  106. // and figure out how the weights need to be adjusted if
  107. // a host refuses connections
  108. #if 0 // all code below is only needed for the weight adjusted selection
  109. // assign random number ranges
  110. int prev_weight = 0;
  111. int prev_priority = 0;
  112. for(std::vector<SrvRec>::iterator I = Result.begin();
  113. I != Result.end(); ++I)
  114. {
  115. if(prev_priority != I->priority)
  116. prev_weight = 0;
  117. I->random_number_range_start = prev_weight;
  118. I->random_number_range_end = prev_weight + I->weight;
  119. prev_weight = I->random_number_range_end;
  120. prev_priority = I->priority;
  121. if (_config->FindB("Debug::Acquire::SrvRecs", false) == true)
  122. std::cerr << "SrvRecs: got " << I->target
  123. << " prio: " << I->priority
  124. << " weight: " << I->weight
  125. << std::endl;
  126. }
  127. // go over the code in reverse order and note the max random range
  128. int max = 0;
  129. prev_priority = 0;
  130. for(std::vector<SrvRec>::iterator I = Result.end();
  131. I != Result.begin(); --I)
  132. {
  133. if(prev_priority != I->priority)
  134. max = I->random_number_range_end;
  135. I->random_number_range_max = max;
  136. }
  137. #endif
  138. // shuffle in a very simplistic way for now (equal weights)
  139. std::vector<SrvRec>::iterator I = Recs.begin();
  140. std::vector<SrvRec>::iterator const J = std::find_if(Recs.begin(), Recs.end(),
  141. [&I](SrvRec const &J) { return I->priority != J.priority; });
  142. // clock seems random enough.
  143. I += clock() % std::distance(I, J);
  144. SrvRec const selected = std::move(*I);
  145. Recs.erase(I);
  146. if (_config->FindB("Debug::Acquire::SrvRecs", false) == true)
  147. std::cerr << "PopFromSrvRecs: selecting " << selected.target << std::endl;
  148. return selected;
  149. }