p2preprocessing.cpp 8.5 KB

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  1. #include <type_traits> // std::is_same<>
  2. #include <limits> // std::numeric_limits<>
  3. #include <climits> // CHAR_BIT
  4. #include <cmath> // std::log2, std::ceil, std::floor
  5. #include <stdexcept> // std::runtime_error
  6. #include <array> // std::array<>
  7. #include <iostream> // std::istream and std::ostream
  8. #include <vector> // std::vector<>
  9. #include <memory> // std::shared_ptr<>
  10. #include <utility> // std::move
  11. #include <algorithm> // std::copy
  12. #include <cstring> // std::memcpy
  13. #include <bsd/stdlib.h> // arc4random_buf
  14. #include <x86intrin.h> // SSE and AVX intrinsics
  15. #include <../boost/asio/thread_pool.hpp>
  16. #include <../boost/asio.hpp>
  17. #include <../boost/lexical_cast.hpp>
  18. #include <iostream>
  19. #include <chrono>
  20. #include <sys/mman.h>
  21. #include <sys/stat.h>
  22. #include <fcntl.h>
  23. #include <fstream>
  24. #include <mutex>
  25. #include "bitutils.h"
  26. #include "block.h"
  27. #include "prg_aes_impl.h"
  28. #include "filesio.h"
  29. using boost::asio::ip::tcp;
  30. using namespace dpf;
  31. typedef __m128i leaf_type;
  32. typedef __m128i leaf_t;
  33. typedef __m128i node_t;
  34. using socket_t = boost::asio::ip::tcp::socket;
  35. size_t bits_per_leaf = std::is_same<leaf_t, bool>::value ? 1 : sizeof(leaf_t) * CHAR_BIT;
  36. bool is_packed = (sizeof(leaf_t) < sizeof(node_t));
  37. size_t leaves_per_node = is_packed ? sizeof(node_t) * CHAR_BIT / bits_per_leaf : 1;
  38. size_t __depth(const size_t nitems) { return std::ceil(std::log2(std::ceil(static_cast<double>(nitems) / leaves_per_node))); }
  39. size_t communication_cost = 0;
  40. #include "mpc.h"
  41. #include "dpfgen.h"
  42. #include "share-conversion.h"
  43. void mpc_gen (const size_t depth, AES_KEY& prgkey, const size_t db_nitems,
  44. const size_t n_threads, std::vector<socket_t>& sockets0, std::vector<socket_t>& sockets1, __m128i** output0, int8_t ** flags0, __m128i** output1, int8_t ** flags1, dpfP2 * dpf_instance0 ,
  45. dpfP2 * dpf_instance1, size_t ind,size_t socket_no = 0)
  46. {
  47. evaluate_dpfs(db_nitems, dpf_instance0[ind], prgkey, 0, db_nitems-1, output0[ind], flags0[ind], false, ind);
  48. evaluate_dpfs(db_nitems, dpf_instance1[ind], prgkey, 0, db_nitems-1, output1[ind], flags1[ind], true , ind);
  49. #ifdef DEBUG
  50. for(size_t j = 0; j < db_nitems; ++j)
  51. {
  52. std::cout << j << "-> " << (int) flags0[0][j] << " <-> " << (int) flags1[0][j] << std::endl;
  53. std::cout << j << "-> " << output0[0][j][0] << " <-> " << output1[0][j][0] << std::endl << std::endl;
  54. }
  55. #endif
  56. }
  57. void accept_conncections_from_Pb(boost::asio::io_context&io_context, std::vector<socket_t>& sockets0, int port, size_t j)
  58. {
  59. tcp::acceptor acceptor2_(io_context, tcp::endpoint(tcp::v4(), port));
  60. tcp::socket s2(acceptor2_.accept());
  61. sockets0[j] = std::move(s2);
  62. }
  63. int main(int argc, char* argv[])
  64. {
  65. AES_KEY aeskey;
  66. boost::asio::io_context io_context;
  67. tcp::resolver resolver(io_context);
  68. const std::string host0 = (argc < 2) ? "127.0.0.1" : argv[1];
  69. const std::string host1 = (argc < 3) ? "127.0.0.1" : argv[2];
  70. const size_t n_threads = atoi(argv[3]);
  71. const size_t number_of_sockets = 5 * n_threads;
  72. const size_t db_nitems = 1ULL << atoi(argv[4]);
  73. const size_t depth = std::ceil(std::log2(db_nitems));
  74. std::vector<int> ports2_0;
  75. for(size_t j = 0; j < number_of_sockets; ++j)
  76. {
  77. int port = 20000;
  78. ports2_0.push_back(port + j);
  79. }
  80. std::vector<int> ports2_1;
  81. for(size_t j = 0; j < number_of_sockets; ++j)
  82. {
  83. int port = 40000;
  84. ports2_1.push_back(port + j);
  85. }
  86. std::vector<socket_t> sockets0;
  87. std::vector<socket_t> sockets1;
  88. sockets0.reserve(number_of_sockets + 1);
  89. sockets1.reserve(number_of_sockets + 1);
  90. boost::asio::thread_pool pool2(number_of_sockets * 2);
  91. for(size_t j = 0; j < number_of_sockets; ++j)
  92. {
  93. boost::asio::post(pool2, std::bind(accept_conncections_from_Pb, std::ref(io_context), std::ref(sockets1), ports2_1[j], j));
  94. }
  95. for(size_t j = 0; j < number_of_sockets; ++j)
  96. {
  97. boost::asio::post(pool2, std::bind(accept_conncections_from_Pb, std::ref(io_context), std::ref(sockets0), ports2_0[j], j));
  98. }
  99. pool2.join();
  100. boost::asio::thread_pool pool(n_threads);
  101. __m128i ** output0 = (__m128i ** ) malloc(sizeof(__m128i *) * n_threads);
  102. int8_t ** flags0 = (int8_t ** ) malloc(sizeof(uint8_t *) * n_threads);
  103. for(size_t j = 0; j < n_threads; ++j)
  104. {
  105. output0[j] = (__m128i *)std::aligned_alloc(sizeof(node_t), db_nitems * sizeof(__m128i));
  106. flags0[j] = (int8_t *)std::aligned_alloc(sizeof(node_t), db_nitems * sizeof(uint8_t));
  107. }
  108. __m128i ** output1 = (__m128i ** ) malloc(sizeof(__m128i *) * n_threads);
  109. int8_t ** flags1 = (int8_t ** ) malloc(sizeof(uint8_t *) * n_threads);
  110. for(size_t j = 0; j < n_threads; ++j)
  111. {
  112. output1[j] = (__m128i *)std::aligned_alloc(sizeof(node_t), db_nitems * sizeof(__m128i));
  113. flags1[j] = (int8_t *)std::aligned_alloc(sizeof(node_t), db_nitems * sizeof(uint8_t));
  114. }
  115. dpfP2 * dpf_instance0 = (dpfP2 * ) malloc (sizeof(dpfP2) * n_threads);
  116. dpfP2 * dpf_instance1 = (dpfP2 * ) malloc (sizeof(dpfP2) * n_threads);
  117. cw_construction computecw0_array, computecw1_array;
  118. // for(size_t i = 0; i < 128; ++i)
  119. // {
  120. // for(size_t j = 0; j < depth; ++j)
  121. // {
  122. __m128i rand0, rand1, gamma0, gamma1;
  123. arc4random_buf(&rand0, sizeof(__m128i));
  124. arc4random_buf(&rand1, sizeof(__m128i));
  125. uint8_t bit0, bit1;
  126. bit0 = rand();
  127. bit0 = bit0 % 2;
  128. bit1 = rand();
  129. bit1 = bit1 %2;
  130. gamma0 = (bit1 == 1) ? rand0 : _mm_setzero_si128();
  131. gamma1 = (bit0 == 1) ? rand1 : _mm_setzero_si128();
  132. computecw0_array.rand_b = rand0;
  133. computecw0_array.gamma_b = gamma0;
  134. computecw0_array.bit_b = bit0;
  135. computecw1_array.rand_b = rand1;
  136. computecw1_array.gamma_b = gamma1;
  137. computecw1_array.bit_b = bit1;
  138. // }
  139. // }
  140. boost::asio::write(sockets0[0], boost::asio::buffer(&computecw0_array, sizeof(computecw0_array)));
  141. boost::asio::write(sockets1[0], boost::asio::buffer(&computecw1_array, sizeof(computecw1_array)));
  142. boost::asio::read(sockets0[0], boost::asio::buffer(dpf_instance0, n_threads * sizeof(dpfP2)));
  143. boost::asio::read(sockets1[0], boost::asio::buffer(dpf_instance1, n_threads * sizeof(dpfP2)));
  144. for(size_t j = 0; j < n_threads; ++j)
  145. {
  146. boost::asio::post(pool, std::bind(mpc_gen, std::ref(depth), std::ref(aeskey), db_nitems, n_threads, std::ref(sockets0), std::ref(sockets1),
  147. output0, flags0, output1, flags1, std::ref(dpf_instance0), std::ref(dpf_instance1), j, 5 * j));
  148. }
  149. pool.join();
  150. boost::asio::thread_pool pool3(n_threads);
  151. int64_t ** leaves0 = (int64_t ** ) malloc(sizeof(int64_t *) * n_threads);
  152. int64_t ** leafbits0 = (int64_t ** ) malloc(sizeof(int64_t *) * n_threads);
  153. int64_t ** leaves1 = (int64_t ** ) malloc(sizeof(int64_t *) * n_threads);
  154. int64_t ** leafbits1 = (int64_t ** ) malloc(sizeof(int64_t *) * n_threads);
  155. for(size_t j = 0; j < n_threads; ++j)
  156. {
  157. leaves0[j] = (int64_t *)std::aligned_alloc(sizeof(node_t), db_nitems * sizeof(int64_t));
  158. leafbits0[j] = (int64_t *)std::aligned_alloc(sizeof(node_t), db_nitems * sizeof(int64_t));
  159. leaves1[j] = (int64_t *)std::aligned_alloc(sizeof(node_t), db_nitems * sizeof(int64_t));
  160. leafbits1[j] = (int64_t *)std::aligned_alloc(sizeof(node_t), db_nitems * sizeof(int64_t));
  161. }
  162. /* The function convert_sharesP2 appears in share-conversion.h */
  163. for(size_t j = 0; j < n_threads; ++j)
  164. {
  165. boost::asio::post(pool3, std::bind(convert_sharesP2, db_nitems, output0, flags0, output1, flags1, leaves0, leafbits0, leaves1, leafbits1, std::ref(sockets0), std::ref(sockets1), j, j));
  166. }
  167. pool3.join();
  168. /* The function P2_xor_to_additive appears in share-conversion.h */
  169. boost::asio::thread_pool pool4(n_threads);
  170. for(size_t j = 0; j < n_threads; ++j)
  171. {
  172. boost::asio::post(pool4, std::bind(P2_xor_to_additive, std::ref(sockets0[j]), std::ref(sockets1[j]), j));
  173. }
  174. pool4.join();
  175. for(size_t i = 0; i < n_threads; ++i)
  176. {
  177. P2_write_evalfull_outs_into_a_file(false, i, db_nitems, flags0[i], leaves0[i]);
  178. P2_write_evalfull_outs_into_a_file(true, i, db_nitems, flags1[i], leaves1[i]);
  179. }
  180. #ifdef DEBUG
  181. for(size_t ind = 0; ind < n_threads; ++ind)
  182. {
  183. for(size_t j = 0; j < db_nitems; ++j)
  184. {
  185. if(flags0[ind][j] + flags1[ind][j] != 0)
  186. {
  187. std::cout << j << "-> " << (int) (flags0[ind][j] + flags1[ind][j]) << " = " << (int) (flags0[ind][j]) << " + " << (int) (flags1[ind][j]) << std::endl;
  188. std::cout << j << "-> " << output0[ind][j][0] << " <-> " << output1[ind][j][0] << std::endl << std::endl;
  189. }
  190. }
  191. }
  192. #endif
  193. return 0;
  194. }