crypto_curve25519.c 8.8 KB

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  1. /* Copyright (c) 2012-2016, The Tor Project, Inc. */
  2. /* See LICENSE for licensing information */
  3. /**
  4. * \file crypto_curve25519.c
  5. *
  6. * \brief Wrapper code for a curve25519 implementation.
  7. */
  8. #define CRYPTO_CURVE25519_PRIVATE
  9. #include "orconfig.h"
  10. #ifdef HAVE_SYS_STAT_H
  11. #include <sys/stat.h>
  12. #endif
  13. #include "container.h"
  14. #include "crypto.h"
  15. #include "crypto_curve25519.h"
  16. #include "crypto_format.h"
  17. #include "util.h"
  18. #include "torlog.h"
  19. #include "ed25519/donna/ed25519_donna_tor.h"
  20. /* ==============================
  21. Part 1: wrap a suitable curve25519 implementation as curve25519_impl
  22. ============================== */
  23. #ifdef USE_CURVE25519_DONNA
  24. int curve25519_donna(uint8_t *mypublic,
  25. const uint8_t *secret, const uint8_t *basepoint);
  26. #endif
  27. #ifdef USE_CURVE25519_NACL
  28. #ifdef HAVE_CRYPTO_SCALARMULT_CURVE25519_H
  29. #include <crypto_scalarmult_curve25519.h>
  30. #elif defined(HAVE_NACL_CRYPTO_SCALARMULT_CURVE25519_H)
  31. #include <nacl/crypto_scalarmult_curve25519.h>
  32. #endif
  33. #endif
  34. static void pick_curve25519_basepoint_impl(void);
  35. static int curve25519_use_ed = -1;
  36. STATIC int
  37. curve25519_impl(uint8_t *output, const uint8_t *secret,
  38. const uint8_t *basepoint)
  39. {
  40. uint8_t bp[CURVE25519_PUBKEY_LEN];
  41. int r;
  42. memcpy(bp, basepoint, CURVE25519_PUBKEY_LEN);
  43. /* Clear the high bit, in case our backend foolishly looks at it. */
  44. bp[31] &= 0x7f;
  45. #ifdef USE_CURVE25519_DONNA
  46. r = curve25519_donna(output, secret, bp);
  47. #elif defined(USE_CURVE25519_NACL)
  48. r = crypto_scalarmult_curve25519(output, secret, bp);
  49. #else
  50. #error "No implementation of curve25519 is available."
  51. #endif
  52. memwipe(bp, 0, sizeof(bp));
  53. return r;
  54. }
  55. STATIC int
  56. curve25519_basepoint_impl(uint8_t *output, const uint8_t *secret)
  57. {
  58. int r = 0;
  59. if (PREDICT_UNLIKELY(curve25519_use_ed == -1)) {
  60. pick_curve25519_basepoint_impl();
  61. }
  62. /* TODO: Someone should benchmark curved25519_scalarmult_basepoint versus
  63. * an optimized NaCl build to see which should be used when compiled with
  64. * NaCl available. I suspected that the ed25519 optimization always wins.
  65. */
  66. if (PREDICT_LIKELY(curve25519_use_ed == 1)) {
  67. curved25519_scalarmult_basepoint_donna(output, secret);
  68. r = 0;
  69. } else {
  70. static const uint8_t basepoint[32] = {9};
  71. r = curve25519_impl(output, secret, basepoint);
  72. }
  73. return r;
  74. }
  75. void
  76. curve25519_set_impl_params(int use_ed)
  77. {
  78. curve25519_use_ed = use_ed;
  79. }
  80. /* ==============================
  81. Part 2: Wrap curve25519_impl with some convenience types and functions.
  82. ============================== */
  83. /**
  84. * Return true iff a curve25519_public_key_t seems valid. (It's not necessary
  85. * to see if the point is on the curve, since the twist is also secure, but we
  86. * do need to make sure that it isn't the point at infinity.) */
  87. int
  88. curve25519_public_key_is_ok(const curve25519_public_key_t *key)
  89. {
  90. return !safe_mem_is_zero(key->public_key, CURVE25519_PUBKEY_LEN);
  91. }
  92. /**
  93. * Generate CURVE25519_SECKEY_LEN random bytes in <b>out</b>. If
  94. * <b>extra_strong</b> is true, this key is possibly going to get used more
  95. * than once, so use a better-than-usual RNG. Return 0 on success, -1 on
  96. * failure.
  97. *
  98. * This function does not adjust the output of the RNG at all; the will caller
  99. * will need to clear or set the appropriate bits to make curve25519 work.
  100. */
  101. int
  102. curve25519_rand_seckey_bytes(uint8_t *out, int extra_strong)
  103. {
  104. if (extra_strong)
  105. crypto_strongest_rand(out, CURVE25519_SECKEY_LEN);
  106. else
  107. crypto_rand((char*)out, CURVE25519_SECKEY_LEN);
  108. return 0;
  109. }
  110. /** Generate a new keypair and return the secret key. If <b>extra_strong</b>
  111. * is true, this key is possibly going to get used more than once, so
  112. * use a better-than-usual RNG. Return 0 on success, -1 on failure. */
  113. int
  114. curve25519_secret_key_generate(curve25519_secret_key_t *key_out,
  115. int extra_strong)
  116. {
  117. if (curve25519_rand_seckey_bytes(key_out->secret_key, extra_strong) < 0)
  118. return -1;
  119. key_out->secret_key[0] &= 248;
  120. key_out->secret_key[31] &= 127;
  121. key_out->secret_key[31] |= 64;
  122. return 0;
  123. }
  124. void
  125. curve25519_public_key_generate(curve25519_public_key_t *key_out,
  126. const curve25519_secret_key_t *seckey)
  127. {
  128. curve25519_basepoint_impl(key_out->public_key, seckey->secret_key);
  129. }
  130. int
  131. curve25519_keypair_generate(curve25519_keypair_t *keypair_out,
  132. int extra_strong)
  133. {
  134. if (curve25519_secret_key_generate(&keypair_out->seckey, extra_strong) < 0)
  135. return -1;
  136. curve25519_public_key_generate(&keypair_out->pubkey, &keypair_out->seckey);
  137. return 0;
  138. }
  139. /** DOCDOC */
  140. int
  141. curve25519_keypair_write_to_file(const curve25519_keypair_t *keypair,
  142. const char *fname,
  143. const char *tag)
  144. {
  145. uint8_t contents[CURVE25519_SECKEY_LEN + CURVE25519_PUBKEY_LEN];
  146. int r;
  147. memcpy(contents, keypair->seckey.secret_key, CURVE25519_SECKEY_LEN);
  148. memcpy(contents+CURVE25519_SECKEY_LEN,
  149. keypair->pubkey.public_key, CURVE25519_PUBKEY_LEN);
  150. r = crypto_write_tagged_contents_to_file(fname,
  151. "c25519v1",
  152. tag,
  153. contents,
  154. sizeof(contents));
  155. memwipe(contents, 0, sizeof(contents));
  156. return r;
  157. }
  158. /** DOCDOC */
  159. int
  160. curve25519_keypair_read_from_file(curve25519_keypair_t *keypair_out,
  161. char **tag_out,
  162. const char *fname)
  163. {
  164. uint8_t content[CURVE25519_SECKEY_LEN + CURVE25519_PUBKEY_LEN];
  165. ssize_t len;
  166. int r = -1;
  167. len = crypto_read_tagged_contents_from_file(fname, "c25519v1", tag_out,
  168. content, sizeof(content));
  169. if (len != sizeof(content))
  170. goto end;
  171. memcpy(keypair_out->seckey.secret_key, content, CURVE25519_SECKEY_LEN);
  172. curve25519_public_key_generate(&keypair_out->pubkey, &keypair_out->seckey);
  173. if (tor_memneq(keypair_out->pubkey.public_key,
  174. content + CURVE25519_SECKEY_LEN,
  175. CURVE25519_PUBKEY_LEN))
  176. goto end;
  177. r = 0;
  178. end:
  179. memwipe(content, 0, sizeof(content));
  180. if (r != 0) {
  181. memset(keypair_out, 0, sizeof(*keypair_out));
  182. tor_free(*tag_out);
  183. }
  184. return r;
  185. }
  186. /** Perform the curve25519 ECDH handshake with <b>skey</b> and <b>pkey</b>,
  187. * writing CURVE25519_OUTPUT_LEN bytes of output into <b>output</b>. */
  188. void
  189. curve25519_handshake(uint8_t *output,
  190. const curve25519_secret_key_t *skey,
  191. const curve25519_public_key_t *pkey)
  192. {
  193. curve25519_impl(output, skey->secret_key, pkey->public_key);
  194. }
  195. /** Check whether the ed25519-based curve25519 basepoint optimization seems to
  196. * be working. If so, return 0; otherwise return -1. */
  197. static int
  198. curve25519_basepoint_spot_check(void)
  199. {
  200. static const uint8_t alicesk[32] = {
  201. 0x77,0x07,0x6d,0x0a,0x73,0x18,0xa5,0x7d,
  202. 0x3c,0x16,0xc1,0x72,0x51,0xb2,0x66,0x45,
  203. 0xdf,0x4c,0x2f,0x87,0xeb,0xc0,0x99,0x2a,
  204. 0xb1,0x77,0xfb,0xa5,0x1d,0xb9,0x2c,0x2a
  205. };
  206. static const uint8_t alicepk[32] = {
  207. 0x85,0x20,0xf0,0x09,0x89,0x30,0xa7,0x54,
  208. 0x74,0x8b,0x7d,0xdc,0xb4,0x3e,0xf7,0x5a,
  209. 0x0d,0xbf,0x3a,0x0d,0x26,0x38,0x1a,0xf4,
  210. 0xeb,0xa4,0xa9,0x8e,0xaa,0x9b,0x4e,0x6a
  211. };
  212. const int loop_max=200;
  213. int save_use_ed = curve25519_use_ed;
  214. unsigned char e1[32] = { 5 };
  215. unsigned char e2[32] = { 5 };
  216. unsigned char x[32],y[32];
  217. int i;
  218. int r=0;
  219. /* Check the most basic possible sanity via the test secret/public key pair
  220. * used in "Cryptography in NaCl - 2. Secret keys and public keys". This
  221. * may catch catastrophic failures on systems where Curve25519 is expensive,
  222. * without requiring a ton of key generation.
  223. */
  224. curve25519_use_ed = 1;
  225. r |= curve25519_basepoint_impl(x, alicesk);
  226. if (fast_memneq(x, alicepk, 32))
  227. goto fail;
  228. /* Ok, the optimization appears to produce passable results, try a few more
  229. * values, maybe there's something subtle wrong.
  230. */
  231. for (i = 0; i < loop_max; ++i) {
  232. curve25519_use_ed = 0;
  233. r |= curve25519_basepoint_impl(x, e1);
  234. curve25519_use_ed = 1;
  235. r |= curve25519_basepoint_impl(y, e2);
  236. if (fast_memneq(x,y,32))
  237. goto fail;
  238. memcpy(e1, x, 32);
  239. memcpy(e2, x, 32);
  240. }
  241. goto end;
  242. fail:
  243. r = -1;
  244. end:
  245. curve25519_use_ed = save_use_ed;
  246. return r;
  247. }
  248. /** Choose whether to use the ed25519-based curve25519-basepoint
  249. * implementation. */
  250. static void
  251. pick_curve25519_basepoint_impl(void)
  252. {
  253. curve25519_use_ed = 1;
  254. if (curve25519_basepoint_spot_check() == 0)
  255. return;
  256. log_warn(LD_CRYPTO, "The ed25519-based curve25519 basepoint "
  257. "multiplication seems broken; using the curve25519 "
  258. "implementation.");
  259. curve25519_use_ed = 0;
  260. }
  261. /** Initialize the curve25519 implementations. This is necessary if you're
  262. * going to use them in a multithreaded setting, and not otherwise. */
  263. void
  264. curve25519_init(void)
  265. {
  266. pick_curve25519_basepoint_impl();
  267. }