tcp_client.cpp 3.9 KB

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  1. //
  2. // tcp_client.cpp
  3. // ~~~~~~~~~~~~~~
  4. //
  5. // Copyright (c) 2003-2019 Christopher M. Kohlhoff (chris at kohlhoff dot com)
  6. //
  7. // Distributed under the Boost Software License, Version 1.0. (See accompanying
  8. // file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
  9. //
  10. #include <boost/asio/ip/tcp.hpp>
  11. #include <boost/asio/read.hpp>
  12. #include <boost/asio/write.hpp>
  13. #include <boost/date_time/posix_time/posix_time_types.hpp>
  14. #include <boost/shared_ptr.hpp>
  15. #include <cstdio>
  16. #include <cstdlib>
  17. #include <cstring>
  18. #include <vector>
  19. #include "high_res_clock.hpp"
  20. using boost::asio::ip::tcp;
  21. using boost::posix_time::ptime;
  22. using boost::posix_time::microsec_clock;
  23. const int num_samples = 100000;
  24. struct transfer_all
  25. {
  26. typedef std::size_t result_type;
  27. std::size_t operator()(const boost::system::error_code& ec, std::size_t)
  28. {
  29. return (ec && ec != boost::asio::error::would_block) ? 0 : ~0;
  30. }
  31. };
  32. int main(int argc, char* argv[])
  33. {
  34. if (argc != 6)
  35. {
  36. std::fprintf(stderr,
  37. "Usage: tcp_client <ip> <port> "
  38. "<nconns> <bufsize> {spin|block}\n");
  39. return 1;
  40. }
  41. const char* ip = argv[1];
  42. unsigned short port = static_cast<unsigned short>(std::atoi(argv[2]));
  43. int num_connections = std::atoi(argv[3]);
  44. std::size_t buf_size = static_cast<std::size_t>(std::atoi(argv[4]));
  45. bool spin = (std::strcmp(argv[5], "spin") == 0);
  46. boost::asio::io_context io_context;
  47. std::vector<boost::shared_ptr<tcp::socket> > sockets;
  48. for (int i = 0; i < num_connections; ++i)
  49. {
  50. boost::shared_ptr<tcp::socket> s(new tcp::socket(io_context));
  51. tcp::endpoint target(boost::asio::ip::make_address(ip), port);
  52. s->connect(target);
  53. s->set_option(tcp::no_delay(true));
  54. if (spin)
  55. {
  56. s->non_blocking(true);
  57. }
  58. sockets.push_back(s);
  59. }
  60. std::vector<unsigned char> write_buf(buf_size);
  61. std::vector<unsigned char> read_buf(buf_size);
  62. ptime start = microsec_clock::universal_time();
  63. boost::uint64_t start_hr = high_res_clock();
  64. boost::uint64_t samples[num_samples];
  65. for (int i = 0; i < num_samples; ++i)
  66. {
  67. tcp::socket& socket = *sockets[i % num_connections];
  68. boost::uint64_t t = high_res_clock();
  69. boost::system::error_code ec;
  70. boost::asio::write(socket,
  71. boost::asio::buffer(write_buf),
  72. transfer_all(), ec);
  73. boost::asio::read(socket,
  74. boost::asio::buffer(read_buf),
  75. transfer_all(), ec);
  76. samples[i] = high_res_clock() - t;
  77. }
  78. ptime stop = microsec_clock::universal_time();
  79. boost::uint64_t stop_hr = high_res_clock();
  80. boost::uint64_t elapsed_usec = (stop - start).total_microseconds();
  81. boost::uint64_t elapsed_hr = stop_hr - start_hr;
  82. double scale = 1.0 * elapsed_usec / elapsed_hr;
  83. std::sort(samples, samples + num_samples);
  84. std::printf(" 0.0%%\t%f\n", samples[0] * scale);
  85. std::printf(" 0.1%%\t%f\n", samples[num_samples / 1000 - 1] * scale);
  86. std::printf(" 1.0%%\t%f\n", samples[num_samples / 100 - 1] * scale);
  87. std::printf(" 10.0%%\t%f\n", samples[num_samples / 10 - 1] * scale);
  88. std::printf(" 20.0%%\t%f\n", samples[num_samples * 2 / 10 - 1] * scale);
  89. std::printf(" 30.0%%\t%f\n", samples[num_samples * 3 / 10 - 1] * scale);
  90. std::printf(" 40.0%%\t%f\n", samples[num_samples * 4 / 10 - 1] * scale);
  91. std::printf(" 50.0%%\t%f\n", samples[num_samples * 5 / 10 - 1] * scale);
  92. std::printf(" 60.0%%\t%f\n", samples[num_samples * 6 / 10 - 1] * scale);
  93. std::printf(" 70.0%%\t%f\n", samples[num_samples * 7 / 10 - 1] * scale);
  94. std::printf(" 80.0%%\t%f\n", samples[num_samples * 8 / 10 - 1] * scale);
  95. std::printf(" 90.0%%\t%f\n", samples[num_samples * 9 / 10 - 1] * scale);
  96. std::printf(" 99.0%%\t%f\n", samples[num_samples * 99 / 100 - 1] * scale);
  97. std::printf(" 99.9%%\t%f\n", samples[num_samples * 999 / 1000 - 1] * scale);
  98. std::printf("100.0%%\t%f\n", samples[num_samples - 1] * scale);
  99. double total = 0.0;
  100. for (int i = 0; i < num_samples; ++i) total += samples[i] * scale;
  101. std::printf(" mean\t%f\n", total / num_samples);
  102. }