FlipFlag.java 4.6 KB

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  1. package protocols;
  2. import communication.Communication;
  3. import crypto.Crypto;
  4. import exceptions.NoSuchPartyException;
  5. import oram.Forest;
  6. import oram.Metadata;
  7. import struct.OutFF;
  8. import struct.Party;
  9. import subprotocols.Shift;
  10. import util.M;
  11. import util.Util;
  12. public class FlipFlag extends Protocol {
  13. public FlipFlag(Communication con1, Communication con2) {
  14. super(con1, con2);
  15. }
  16. // TODO: remove loop around setXor: use Util.setXor(byte[][], byte[][])
  17. public OutFF runE(byte[][] fb_DE, byte[][] fb_CE, int i2) {
  18. timer.start(M.offline_comp);
  19. int n = fb_DE.length;
  20. OutFF outff = new OutFF();
  21. outff.fb_DE = new byte[n][1];
  22. for (int i = 0; i < n; i++) {
  23. Crypto.sr_DE.nextBytes(outff.fb_DE[i]);
  24. }
  25. timer.stop(M.offline_comp);
  26. // ----------------------------------------- //
  27. timer.start(M.online_comp);
  28. byte[][] a2 = new byte[n][1];
  29. Shift shift = new Shift(con1, con2);
  30. byte[][] m2 = shift.runE(a2, n - i2);
  31. for (int i = 0; i < n; i++)
  32. Util.setXor(m2[i], outff.fb_DE[i]);
  33. timer.start(M.online_write);
  34. con2.write(online_band, m2);
  35. timer.stop(M.online_write);
  36. timer.start(M.online_read);
  37. byte[][] m1 = con2.readDoubleByteArrayAndDec();
  38. timer.stop(M.online_read);
  39. outff.fb_CE = Util.xor(m1, m2);
  40. Util.setXor(outff.fb_CE, fb_CE);
  41. Util.setXor(outff.fb_DE, fb_DE);
  42. timer.stop(M.online_comp);
  43. return outff;
  44. }
  45. public OutFF runD(byte[][] fb_DE, byte[][] fb_CD, int i2) {
  46. timer.start(M.offline_comp);
  47. int n = fb_DE.length;
  48. OutFF outff = new OutFF();
  49. outff.fb_CD = new byte[n][1];
  50. outff.fb_DE = new byte[n][1];
  51. for (int i = 0; i < n; i++) {
  52. Crypto.sr_CD.nextBytes(outff.fb_CD[i]);
  53. Crypto.sr_DE.nextBytes(outff.fb_DE[i]);
  54. }
  55. timer.stop(M.offline_comp);
  56. // ----------------------------------------- //
  57. timer.start(M.online_comp);
  58. Shift shift = new Shift(con1, con2);
  59. shift.runD(n - i2, n, 1);
  60. Util.setXor(outff.fb_CD, fb_CD);
  61. Util.setXor(outff.fb_DE, fb_DE);
  62. timer.stop(M.online_comp);
  63. return outff;
  64. }
  65. public OutFF runC(byte[][] fb_CD, byte[][] fb_CE, int i1) {
  66. timer.start(M.offline_comp);
  67. int n = fb_CD.length;
  68. OutFF outff = new OutFF();
  69. outff.fb_CD = new byte[n][1];
  70. for (int i = 0; i < n; i++) {
  71. Crypto.sr_CD.nextBytes(outff.fb_CD[i]);
  72. }
  73. timer.stop(M.offline_comp);
  74. // ----------------------------------------- //
  75. timer.start(M.online_comp);
  76. byte[][] a1 = new byte[n][1];
  77. a1[i1][0] = 1;
  78. Shift shift = new Shift(con1, con2);
  79. byte[][] m1 = shift.runC(a1);
  80. for (int i = 0; i < n; i++)
  81. Util.setXor(m1[i], outff.fb_CD[i]);
  82. timer.start(M.online_write);
  83. con1.write(online_band, m1);
  84. timer.stop(M.online_write);
  85. timer.start(M.online_read);
  86. byte[][] m2 = con1.readDoubleByteArrayAndDec();
  87. timer.stop(M.online_read);
  88. outff.fb_CE = Util.xor(m1, m2);
  89. Util.setXor(outff.fb_CE, fb_CE);
  90. Util.setXor(outff.fb_CD, fb_CD);
  91. timer.stop(M.online_comp);
  92. return outff;
  93. }
  94. @Override
  95. public void run(Party party, Metadata md, Forest[] forest) {
  96. for (int j = 0; j < 100; j++) {
  97. int n = 100;
  98. int l = 1;
  99. byte[][] fb_CD = new byte[n][l];
  100. byte[][] fb_CE = new byte[n][l];
  101. byte[][] fb_DE = new byte[n][l];
  102. byte[][] fb = new byte[n][1];
  103. for (int i = 0; i < n; i++) {
  104. Crypto.sr.nextBytes(fb_CD[i]);
  105. Crypto.sr.nextBytes(fb_CE[i]);
  106. Crypto.sr.nextBytes(fb_DE[i]);
  107. fb[i][0] = (byte) (fb_CD[i][0] ^ fb_DE[i][0] ^ fb_CE[i][0]);
  108. }
  109. int i1 = Crypto.sr.nextInt(n);
  110. int i2 = Crypto.sr.nextInt(n);
  111. int i = (i1 + i2) % n;
  112. OutFF outff = new OutFF();
  113. if (party == Party.Eddie) {
  114. con1.write(fb_CD);
  115. con1.write(fb_DE);
  116. con1.write(i2);
  117. con2.write(fb_CE);
  118. con2.write(fb_CD);
  119. con2.write(i1);
  120. outff = this.runE(fb_DE, fb_CE, i2);
  121. outff.fb_CD = con1.readDoubleByteArray();
  122. byte[][] fbp = Util.xor(Util.xor(outff.fb_CD, outff.fb_CE), outff.fb_DE);
  123. fbp[i][0] = (byte) (fbp[i][0] ^ 1);
  124. boolean fail = false;
  125. for (int k = 0; k < n; k++) {
  126. if ((fb[k][0] & 1) != (fbp[k][0] & 1)) {
  127. System.err.println(j + ": FlipFlag test failed");
  128. fail = true;
  129. break;
  130. }
  131. }
  132. if (!fail)
  133. System.out.println(j + ": FlipFlag test passed");
  134. } else if (party == Party.Debbie) {
  135. fb_CD = con1.readDoubleByteArray();
  136. fb_DE = con1.readDoubleByteArray();
  137. i2 = con1.readInt();
  138. outff = this.runD(fb_DE, fb_CD, i2);
  139. con1.write(outff.fb_CD);
  140. } else if (party == Party.Charlie) {
  141. fb_CE = con1.readDoubleByteArray();
  142. fb_CD = con1.readDoubleByteArray();
  143. i1 = con1.readInt();
  144. outff = this.runC(fb_CD, fb_CE, i1);
  145. } else {
  146. throw new NoSuchPartyException(party + "");
  147. }
  148. }
  149. }
  150. @Override
  151. public void run(Party party, Metadata md, Forest forest) {
  152. }
  153. }