Salsa20.cpp 5.7 KB

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  1. /*
  2. * Based on public domain code available at: http://cr.yp.to/snuffle.html
  3. *
  4. * This therefore is public domain.
  5. */
  6. #include "Salsa20.hpp"
  7. #define ROTATE(v,c) (((v) << (c)) | ((v) >> (32 - (c))))
  8. #define XOR(v,w) ((v) ^ (w))
  9. #define PLUS(v,w) ((uint32_t)((v) + (w)))
  10. #define PLUSONE(v) ((uint32_t)((v) + 1))
  11. #if __BYTE_ORDER == __LITTLE_ENDIAN
  12. #define U8TO32_LITTLE(p) (*((const uint32_t *)((const void *)(p))))
  13. #define U32TO8_LITTLE(c,v) *((uint32_t *)((void *)(c))) = (v)
  14. #else
  15. #ifdef __GNUC__
  16. #define U8TO32_LITTLE(p) __builtin_bswap32(*((const uint32_t *)((const void *)(p))))
  17. #define U32TO8_LITTLE(c,v) *((uint32_t *)((void *)(c))) = __builtin_bswap32((v))
  18. #else
  19. error need be;
  20. #endif
  21. #endif
  22. namespace ZeroTier {
  23. static const char *sigma = "expand 32-byte k";
  24. static const char *tau = "expand 16-byte k";
  25. void Salsa20::init(const void *key,unsigned int kbits,const void *iv)
  26. throw()
  27. {
  28. const char *constants;
  29. const uint8_t *k = (const uint8_t *)key;
  30. _state[1] = U8TO32_LITTLE(k + 0);
  31. _state[2] = U8TO32_LITTLE(k + 4);
  32. _state[3] = U8TO32_LITTLE(k + 8);
  33. _state[4] = U8TO32_LITTLE(k + 12);
  34. if (kbits == 256) { /* recommended */
  35. k += 16;
  36. constants = sigma;
  37. } else { /* kbits == 128 */
  38. constants = tau;
  39. }
  40. _state[11] = U8TO32_LITTLE(k + 0);
  41. _state[12] = U8TO32_LITTLE(k + 4);
  42. _state[13] = U8TO32_LITTLE(k + 8);
  43. _state[14] = U8TO32_LITTLE(k + 12);
  44. _state[6] = U8TO32_LITTLE(((const uint8_t *)iv) + 0);
  45. _state[7] = U8TO32_LITTLE(((const uint8_t *)iv) + 4);
  46. _state[8] = 0;
  47. _state[9] = 0;
  48. _state[0] = U8TO32_LITTLE(constants + 0);
  49. _state[5] = U8TO32_LITTLE(constants + 4);
  50. _state[10] = U8TO32_LITTLE(constants + 8);
  51. _state[15] = U8TO32_LITTLE(constants + 12);
  52. }
  53. void Salsa20::encrypt(const void *in,void *out,unsigned int bytes)
  54. throw()
  55. {
  56. uint32_t x0, x1, x2, x3, x4, x5, x6, x7, x8, x9, x10, x11, x12, x13, x14, x15;
  57. uint32_t j0, j1, j2, j3, j4, j5, j6, j7, j8, j9, j10, j11, j12, j13, j14, j15;
  58. uint8_t tmp[64];
  59. const uint8_t *m = (const uint8_t *)in;
  60. uint8_t *c = (uint8_t *)out;
  61. uint8_t *ctarget = c;
  62. unsigned int i;
  63. if (!bytes) return;
  64. j0 = _state[0];
  65. j1 = _state[1];
  66. j2 = _state[2];
  67. j3 = _state[3];
  68. j4 = _state[4];
  69. j5 = _state[5];
  70. j6 = _state[6];
  71. j7 = _state[7];
  72. j8 = _state[8];
  73. j9 = _state[9];
  74. j10 = _state[10];
  75. j11 = _state[11];
  76. j12 = _state[12];
  77. j13 = _state[13];
  78. j14 = _state[14];
  79. j15 = _state[15];
  80. for (;;) {
  81. if (bytes < 64) {
  82. for (i = 0;i < bytes;++i) tmp[i] = m[i];
  83. m = tmp;
  84. ctarget = c;
  85. c = tmp;
  86. }
  87. x0 = j0;
  88. x1 = j1;
  89. x2 = j2;
  90. x3 = j3;
  91. x4 = j4;
  92. x5 = j5;
  93. x6 = j6;
  94. x7 = j7;
  95. x8 = j8;
  96. x9 = j9;
  97. x10 = j10;
  98. x11 = j11;
  99. x12 = j12;
  100. x13 = j13;
  101. x14 = j14;
  102. x15 = j15;
  103. for (i = 20;i > 0;i -= 2) {
  104. x4 = XOR( x4,ROTATE(PLUS( x0,x12), 7));
  105. x8 = XOR( x8,ROTATE(PLUS( x4, x0), 9));
  106. x12 = XOR(x12,ROTATE(PLUS( x8, x4),13));
  107. x0 = XOR( x0,ROTATE(PLUS(x12, x8),18));
  108. x9 = XOR( x9,ROTATE(PLUS( x5, x1), 7));
  109. x13 = XOR(x13,ROTATE(PLUS( x9, x5), 9));
  110. x1 = XOR( x1,ROTATE(PLUS(x13, x9),13));
  111. x5 = XOR( x5,ROTATE(PLUS( x1,x13),18));
  112. x14 = XOR(x14,ROTATE(PLUS(x10, x6), 7));
  113. x2 = XOR( x2,ROTATE(PLUS(x14,x10), 9));
  114. x6 = XOR( x6,ROTATE(PLUS( x2,x14),13));
  115. x10 = XOR(x10,ROTATE(PLUS( x6, x2),18));
  116. x3 = XOR( x3,ROTATE(PLUS(x15,x11), 7));
  117. x7 = XOR( x7,ROTATE(PLUS( x3,x15), 9));
  118. x11 = XOR(x11,ROTATE(PLUS( x7, x3),13));
  119. x15 = XOR(x15,ROTATE(PLUS(x11, x7),18));
  120. x1 = XOR( x1,ROTATE(PLUS( x0, x3), 7));
  121. x2 = XOR( x2,ROTATE(PLUS( x1, x0), 9));
  122. x3 = XOR( x3,ROTATE(PLUS( x2, x1),13));
  123. x0 = XOR( x0,ROTATE(PLUS( x3, x2),18));
  124. x6 = XOR( x6,ROTATE(PLUS( x5, x4), 7));
  125. x7 = XOR( x7,ROTATE(PLUS( x6, x5), 9));
  126. x4 = XOR( x4,ROTATE(PLUS( x7, x6),13));
  127. x5 = XOR( x5,ROTATE(PLUS( x4, x7),18));
  128. x11 = XOR(x11,ROTATE(PLUS(x10, x9), 7));
  129. x8 = XOR( x8,ROTATE(PLUS(x11,x10), 9));
  130. x9 = XOR( x9,ROTATE(PLUS( x8,x11),13));
  131. x10 = XOR(x10,ROTATE(PLUS( x9, x8),18));
  132. x12 = XOR(x12,ROTATE(PLUS(x15,x14), 7));
  133. x13 = XOR(x13,ROTATE(PLUS(x12,x15), 9));
  134. x14 = XOR(x14,ROTATE(PLUS(x13,x12),13));
  135. x15 = XOR(x15,ROTATE(PLUS(x14,x13),18));
  136. }
  137. x0 = PLUS(x0,j0);
  138. x1 = PLUS(x1,j1);
  139. x2 = PLUS(x2,j2);
  140. x3 = PLUS(x3,j3);
  141. x4 = PLUS(x4,j4);
  142. x5 = PLUS(x5,j5);
  143. x6 = PLUS(x6,j6);
  144. x7 = PLUS(x7,j7);
  145. x8 = PLUS(x8,j8);
  146. x9 = PLUS(x9,j9);
  147. x10 = PLUS(x10,j10);
  148. x11 = PLUS(x11,j11);
  149. x12 = PLUS(x12,j12);
  150. x13 = PLUS(x13,j13);
  151. x14 = PLUS(x14,j14);
  152. x15 = PLUS(x15,j15);
  153. x0 = XOR(x0,U8TO32_LITTLE(m + 0));
  154. x1 = XOR(x1,U8TO32_LITTLE(m + 4));
  155. x2 = XOR(x2,U8TO32_LITTLE(m + 8));
  156. x3 = XOR(x3,U8TO32_LITTLE(m + 12));
  157. x4 = XOR(x4,U8TO32_LITTLE(m + 16));
  158. x5 = XOR(x5,U8TO32_LITTLE(m + 20));
  159. x6 = XOR(x6,U8TO32_LITTLE(m + 24));
  160. x7 = XOR(x7,U8TO32_LITTLE(m + 28));
  161. x8 = XOR(x8,U8TO32_LITTLE(m + 32));
  162. x9 = XOR(x9,U8TO32_LITTLE(m + 36));
  163. x10 = XOR(x10,U8TO32_LITTLE(m + 40));
  164. x11 = XOR(x11,U8TO32_LITTLE(m + 44));
  165. x12 = XOR(x12,U8TO32_LITTLE(m + 48));
  166. x13 = XOR(x13,U8TO32_LITTLE(m + 52));
  167. x14 = XOR(x14,U8TO32_LITTLE(m + 56));
  168. x15 = XOR(x15,U8TO32_LITTLE(m + 60));
  169. j8 = PLUSONE(j8);
  170. if (!j8) {
  171. j9 = PLUSONE(j9);
  172. /* stopping at 2^70 bytes per nonce is user's responsibility */
  173. }
  174. U32TO8_LITTLE(c + 0,x0);
  175. U32TO8_LITTLE(c + 4,x1);
  176. U32TO8_LITTLE(c + 8,x2);
  177. U32TO8_LITTLE(c + 12,x3);
  178. U32TO8_LITTLE(c + 16,x4);
  179. U32TO8_LITTLE(c + 20,x5);
  180. U32TO8_LITTLE(c + 24,x6);
  181. U32TO8_LITTLE(c + 28,x7);
  182. U32TO8_LITTLE(c + 32,x8);
  183. U32TO8_LITTLE(c + 36,x9);
  184. U32TO8_LITTLE(c + 40,x10);
  185. U32TO8_LITTLE(c + 44,x11);
  186. U32TO8_LITTLE(c + 48,x12);
  187. U32TO8_LITTLE(c + 52,x13);
  188. U32TO8_LITTLE(c + 56,x14);
  189. U32TO8_LITTLE(c + 60,x15);
  190. if (bytes <= 64) {
  191. if (bytes < 64) {
  192. for (i = 0;i < bytes;++i) ctarget[i] = c[i];
  193. }
  194. _state[8] = j8;
  195. _state[9] = j9;
  196. return;
  197. }
  198. bytes -= 64;
  199. c += 64;
  200. m += 64;
  201. }
  202. }
  203. } // namespace ZeroTier