SSXOT.java 5.3 KB

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  1. package protocols;
  2. import java.math.BigInteger;
  3. import communication.Communication;
  4. import crypto.Crypto;
  5. import exceptions.NoSuchPartyException;
  6. import oram.Forest;
  7. import oram.Metadata;
  8. import oram.Tuple;
  9. import protocols.struct.Party;
  10. import util.M;
  11. import util.Util;
  12. // TODO: change XOT to do 2 rounds and 2|path| bndw
  13. public class SSXOT extends Protocol {
  14. public SSXOT(Communication con1, Communication con2) {
  15. super(con1, con2);
  16. }
  17. public Tuple[] runE(Tuple[] m, int[] tupleParam) {
  18. timer.start(M.offline_comp);
  19. int n = m.length;
  20. int[] E_pi = Util.randomPermutation(n, Crypto.sr_DE);
  21. Tuple[] E_r = new Tuple[n];
  22. for (int i = 0; i < n; i++) {
  23. E_r[i] = new Tuple(tupleParam[0], tupleParam[1], tupleParam[2], tupleParam[3], Crypto.sr_DE);
  24. }
  25. timer.stop(M.offline_comp);
  26. /////////////////////////////////////////////////////////////////////
  27. timer.start(M.online_comp);
  28. // step 1
  29. Tuple[] a = new Tuple[m.length];
  30. for (int i = 0; i < m.length; i++)
  31. a[i] = m[E_pi[i]].xor(E_r[i]);
  32. timer.start(M.online_write);
  33. con2.write(online_band, a);
  34. timer.stop(M.online_write);
  35. timer.start(M.online_read);
  36. a = con2.readTupleArrayAndDec();
  37. // step 2
  38. int[] j = con1.readIntArrayAndDec();
  39. Tuple[] p = con1.readTupleArrayAndDec();
  40. timer.stop(M.online_read);
  41. // step 3
  42. Tuple[] z = new Tuple[j.length];
  43. for (int i = 0; i < j.length; i++)
  44. z[i] = a[j[i]].xor(p[i]);
  45. timer.stop(M.online_comp);
  46. return z;
  47. }
  48. public void runD(int n, int k, int[] tupleParam, int[] index) {
  49. timer.start(M.offline_comp);
  50. Tuple[] delta = new Tuple[k];
  51. for (int i = 0; i < k; i++)
  52. delta[i] = new Tuple(tupleParam[0], tupleParam[1], tupleParam[2], tupleParam[3], Crypto.sr);
  53. int[] E_pi = Util.randomPermutation(n, Crypto.sr_DE);
  54. int[] C_pi = Util.randomPermutation(n, Crypto.sr_CD);
  55. int[] E_pi_ivs = Util.inversePermutation(E_pi);
  56. int[] C_pi_ivs = Util.inversePermutation(C_pi);
  57. Tuple[] E_r = new Tuple[n];
  58. Tuple[] C_r = new Tuple[n];
  59. for (int i = 0; i < n; i++) {
  60. E_r[i] = new Tuple(tupleParam[0], tupleParam[1], tupleParam[2], tupleParam[3], Crypto.sr_DE);
  61. C_r[i] = new Tuple(tupleParam[0], tupleParam[1], tupleParam[2], tupleParam[3], Crypto.sr_CD);
  62. }
  63. timer.stop(M.offline_comp);
  64. ////////////////////////////////////////////////////////////////////
  65. timer.start(M.online_comp);
  66. // step 2
  67. k = index.length;
  68. int[] E_j = new int[k];
  69. int[] C_j = new int[k];
  70. Tuple[] E_p = new Tuple[k];
  71. Tuple[] C_p = new Tuple[k];
  72. for (int i = 0; i < k; i++) {
  73. E_j[i] = E_pi_ivs[index[i]];
  74. C_j[i] = C_pi_ivs[index[i]];
  75. E_p[i] = E_r[E_j[i]].xor(delta[i]);
  76. C_p[i] = C_r[C_j[i]].xor(delta[i]);
  77. }
  78. timer.start(M.online_write);
  79. con2.write(online_band, E_j);
  80. con2.write(online_band, E_p);
  81. con1.write(online_band, C_j);
  82. con1.write(online_band, C_p);
  83. timer.stop(M.online_write);
  84. timer.stop(M.online_comp);
  85. }
  86. public Tuple[] runC(Tuple[] m, int[] tupleParam) {
  87. timer.start(M.offline_comp);
  88. int n = m.length;
  89. int[] C_pi = Util.randomPermutation(n, Crypto.sr_CD);
  90. Tuple[] C_r = new Tuple[n];
  91. for (int i = 0; i < n; i++) {
  92. C_r[i] = new Tuple(tupleParam[0], tupleParam[1], tupleParam[2], tupleParam[3], Crypto.sr_CD);
  93. }
  94. timer.stop(M.offline_comp);
  95. ////////////////////////////////////////////////////////////
  96. timer.start(M.online_comp);
  97. // step 1
  98. Tuple[] a = new Tuple[m.length];
  99. for (int i = 0; i < m.length; i++)
  100. a[i] = m[C_pi[i]].xor(C_r[i]);
  101. timer.start(M.online_write);
  102. con1.write(online_band, a);
  103. timer.stop(M.online_write);
  104. timer.start(M.online_read);
  105. a = con1.readTupleArrayAndDec();
  106. // step 2
  107. int[] j = con2.readIntArrayAndDec();
  108. Tuple[] p = con2.readTupleArrayAndDec();
  109. timer.stop(M.online_read);
  110. // step 3
  111. Tuple[] z = new Tuple[j.length];
  112. for (int i = 0; i < j.length; i++)
  113. z[i] = a[j[i]].xor(p[i]);
  114. timer.stop(M.online_comp);
  115. return z;
  116. }
  117. @Override
  118. public void run(Party party, Metadata md, Forest[] forest) {
  119. for (int j = 0; j < 100; j++) {
  120. int n = 100;
  121. int k = Crypto.sr.nextInt(50) + 50;
  122. int[] index = Util.randomPermutation(k, Crypto.sr);
  123. int[] tupleParam = new int[] { 1, 2, 3, 4 };
  124. Tuple[] E_m = new Tuple[n];
  125. Tuple[] C_m = new Tuple[n];
  126. for (int i = 0; i < n; i++) {
  127. E_m[i] = new Tuple(tupleParam[0], tupleParam[1], tupleParam[2], tupleParam[3], Crypto.sr);
  128. C_m[i] = new Tuple(tupleParam[0], tupleParam[1], tupleParam[2], tupleParam[3], null);
  129. }
  130. if (party == Party.Eddie) {
  131. Tuple[] E_out_m = runE(E_m, tupleParam);
  132. con2.write(E_m);
  133. con2.write(E_out_m);
  134. } else if (party == Party.Debbie) {
  135. runD(n, k, tupleParam, index);
  136. con2.write(index);
  137. } else if (party == Party.Charlie) {
  138. Tuple[] C_out_m = runC(C_m, tupleParam);
  139. index = con2.readIntArray();
  140. E_m = con1.readTupleArray();
  141. Tuple[] E_out_m = con1.readTupleArray();
  142. boolean pass = true;
  143. for (int i = 0; i < index.length; i++) {
  144. int input = new BigInteger(1, E_m[index[i]].getA()).intValue();
  145. int output = new BigInteger(1, Util.xor(E_out_m[i].getA(), C_out_m[i].getA())).intValue();
  146. if (input != output) {
  147. System.err.println("SSXOT test failed");
  148. pass = false;
  149. break;
  150. }
  151. }
  152. if (pass)
  153. System.out.println("SSXOT test passed");
  154. } else {
  155. throw new NoSuchPartyException(party + "");
  156. }
  157. }
  158. }
  159. @Override
  160. public void run(Party party, Metadata md, Forest forest) {
  161. }
  162. }