ec_lcl.h 28 KB

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  1. /* crypto/ec/ec_lcl.h */
  2. /*
  3. * Originally written by Bodo Moeller for the OpenSSL project.
  4. */
  5. /* ====================================================================
  6. * Copyright (c) 1998-2010 The OpenSSL Project. All rights reserved.
  7. *
  8. * Redistribution and use in source and binary forms, with or without
  9. * modification, are permitted provided that the following conditions
  10. * are met:
  11. *
  12. * 1. Redistributions of source code must retain the above copyright
  13. * notice, this list of conditions and the following disclaimer.
  14. *
  15. * 2. Redistributions in binary form must reproduce the above copyright
  16. * notice, this list of conditions and the following disclaimer in
  17. * the documentation and/or other materials provided with the
  18. * distribution.
  19. *
  20. * 3. All advertising materials mentioning features or use of this
  21. * software must display the following acknowledgment:
  22. * "This product includes software developed by the OpenSSL Project
  23. * for use in the OpenSSL Toolkit. (http://www.openssl.org/)"
  24. *
  25. * 4. The names "OpenSSL Toolkit" and "OpenSSL Project" must not be used to
  26. * endorse or promote products derived from this software without
  27. * prior written permission. For written permission, please contact
  28. * openssl-core@openssl.org.
  29. *
  30. * 5. Products derived from this software may not be called "OpenSSL"
  31. * nor may "OpenSSL" appear in their names without prior written
  32. * permission of the OpenSSL Project.
  33. *
  34. * 6. Redistributions of any form whatsoever must retain the following
  35. * acknowledgment:
  36. * "This product includes software developed by the OpenSSL Project
  37. * for use in the OpenSSL Toolkit (http://www.openssl.org/)"
  38. *
  39. * THIS SOFTWARE IS PROVIDED BY THE OpenSSL PROJECT ``AS IS'' AND ANY
  40. * EXPRESSED OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
  41. * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
  42. * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE OpenSSL PROJECT OR
  43. * ITS CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
  44. * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
  45. * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
  46. * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
  47. * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT,
  48. * STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
  49. * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED
  50. * OF THE POSSIBILITY OF SUCH DAMAGE.
  51. * ====================================================================
  52. *
  53. * This product includes cryptographic software written by Eric Young
  54. * (eay@cryptsoft.com). This product includes software written by Tim
  55. * Hudson (tjh@cryptsoft.com).
  56. *
  57. */
  58. /* ====================================================================
  59. * Copyright 2002 Sun Microsystems, Inc. ALL RIGHTS RESERVED.
  60. *
  61. * Portions of the attached software ("Contribution") are developed by
  62. * SUN MICROSYSTEMS, INC., and are contributed to the OpenSSL project.
  63. *
  64. * The Contribution is licensed pursuant to the OpenSSL open source
  65. * license provided above.
  66. *
  67. * The elliptic curve binary polynomial software is originally written by
  68. * Sheueling Chang Shantz and Douglas Stebila of Sun Microsystems Laboratories.
  69. *
  70. */
  71. #include <stdlib.h>
  72. #include <openssl/obj_mac.h>
  73. #include <openssl/ec.h>
  74. #include <openssl/bn.h>
  75. #if defined(__SUNPRO_C)
  76. # if __SUNPRO_C >= 0x520
  77. # pragma error_messages (off,E_ARRAY_OF_INCOMPLETE_NONAME,E_ARRAY_OF_INCOMPLETE)
  78. # endif
  79. #endif
  80. /* Use default functions for poin2oct, oct2point and compressed coordinates */
  81. #define EC_FLAGS_DEFAULT_OCT 0x1
  82. /*
  83. * Structure details are not part of the exported interface, so all this may
  84. * change in future versions.
  85. */
  86. struct ec_method_st {
  87. /* Various method flags */
  88. int flags;
  89. /* used by EC_METHOD_get_field_type: */
  90. int field_type; /* a NID */
  91. /*
  92. * used by EC_GROUP_new, EC_GROUP_free, EC_GROUP_clear_free,
  93. * EC_GROUP_copy:
  94. */
  95. int (*group_init) (EC_GROUP *);
  96. void (*group_finish) (EC_GROUP *);
  97. void (*group_clear_finish) (EC_GROUP *);
  98. int (*group_copy) (EC_GROUP *, const EC_GROUP *);
  99. /* used by EC_GROUP_set_curve_GFp, EC_GROUP_get_curve_GFp, */
  100. /* EC_GROUP_set_curve_GF2m, and EC_GROUP_get_curve_GF2m: */
  101. int (*group_set_curve) (EC_GROUP *, const BIGNUM *p, const BIGNUM *a,
  102. const BIGNUM *b, BN_CTX *);
  103. int (*group_get_curve) (const EC_GROUP *, BIGNUM *p, BIGNUM *a, BIGNUM *b,
  104. BN_CTX *);
  105. /* used by EC_GROUP_get_degree: */
  106. int (*group_get_degree) (const EC_GROUP *);
  107. /* used by EC_GROUP_check: */
  108. int (*group_check_discriminant) (const EC_GROUP *, BN_CTX *);
  109. /*
  110. * used by EC_POINT_new, EC_POINT_free, EC_POINT_clear_free,
  111. * EC_POINT_copy:
  112. */
  113. int (*point_init) (EC_POINT *);
  114. void (*point_finish) (EC_POINT *);
  115. void (*point_clear_finish) (EC_POINT *);
  116. int (*point_copy) (EC_POINT *, const EC_POINT *);
  117. /*-
  118. * used by EC_POINT_set_to_infinity,
  119. * EC_POINT_set_Jprojective_coordinates_GFp,
  120. * EC_POINT_get_Jprojective_coordinates_GFp,
  121. * EC_POINT_set_affine_coordinates_GFp, ..._GF2m,
  122. * EC_POINT_get_affine_coordinates_GFp, ..._GF2m,
  123. * EC_POINT_set_compressed_coordinates_GFp, ..._GF2m:
  124. */
  125. int (*point_set_to_infinity) (const EC_GROUP *, EC_POINT *);
  126. int (*point_set_Jprojective_coordinates_GFp) (const EC_GROUP *,
  127. EC_POINT *, const BIGNUM *x,
  128. const BIGNUM *y,
  129. const BIGNUM *z, BN_CTX *);
  130. int (*point_get_Jprojective_coordinates_GFp) (const EC_GROUP *,
  131. const EC_POINT *, BIGNUM *x,
  132. BIGNUM *y, BIGNUM *z,
  133. BN_CTX *);
  134. int (*point_set_affine_coordinates) (const EC_GROUP *, EC_POINT *,
  135. const BIGNUM *x, const BIGNUM *y,
  136. BN_CTX *);
  137. int (*point_get_affine_coordinates) (const EC_GROUP *, const EC_POINT *,
  138. BIGNUM *x, BIGNUM *y, BN_CTX *);
  139. int (*point_set_compressed_coordinates) (const EC_GROUP *, EC_POINT *,
  140. const BIGNUM *x, int y_bit,
  141. BN_CTX *);
  142. /* used by EC_POINT_point2oct, EC_POINT_oct2point: */
  143. size_t (*point2oct) (const EC_GROUP *, const EC_POINT *,
  144. point_conversion_form_t form, unsigned char *buf,
  145. size_t len, BN_CTX *);
  146. int (*oct2point) (const EC_GROUP *, EC_POINT *, const unsigned char *buf,
  147. size_t len, BN_CTX *);
  148. /* used by EC_POINT_add, EC_POINT_dbl, ECP_POINT_invert: */
  149. int (*add) (const EC_GROUP *, EC_POINT *r, const EC_POINT *a,
  150. const EC_POINT *b, BN_CTX *);
  151. int (*dbl) (const EC_GROUP *, EC_POINT *r, const EC_POINT *a, BN_CTX *);
  152. int (*invert) (const EC_GROUP *, EC_POINT *, BN_CTX *);
  153. /*
  154. * used by EC_POINT_is_at_infinity, EC_POINT_is_on_curve, EC_POINT_cmp:
  155. */
  156. int (*is_at_infinity) (const EC_GROUP *, const EC_POINT *);
  157. int (*is_on_curve) (const EC_GROUP *, const EC_POINT *, BN_CTX *);
  158. int (*point_cmp) (const EC_GROUP *, const EC_POINT *a, const EC_POINT *b,
  159. BN_CTX *);
  160. /* used by EC_POINT_make_affine, EC_POINTs_make_affine: */
  161. int (*make_affine) (const EC_GROUP *, EC_POINT *, BN_CTX *);
  162. int (*points_make_affine) (const EC_GROUP *, size_t num, EC_POINT *[],
  163. BN_CTX *);
  164. /*
  165. * used by EC_POINTs_mul, EC_POINT_mul, EC_POINT_precompute_mult,
  166. * EC_POINT_have_precompute_mult (default implementations are used if the
  167. * 'mul' pointer is 0):
  168. */
  169. int (*mul) (const EC_GROUP *group, EC_POINT *r, const BIGNUM *scalar,
  170. size_t num, const EC_POINT *points[], const BIGNUM *scalars[],
  171. BN_CTX *);
  172. int (*precompute_mult) (EC_GROUP *group, BN_CTX *);
  173. int (*have_precompute_mult) (const EC_GROUP *group);
  174. /* internal functions */
  175. /*
  176. * 'field_mul', 'field_sqr', and 'field_div' can be used by 'add' and
  177. * 'dbl' so that the same implementations of point operations can be used
  178. * with different optimized implementations of expensive field
  179. * operations:
  180. */
  181. int (*field_mul) (const EC_GROUP *, BIGNUM *r, const BIGNUM *a,
  182. const BIGNUM *b, BN_CTX *);
  183. int (*field_sqr) (const EC_GROUP *, BIGNUM *r, const BIGNUM *a, BN_CTX *);
  184. int (*field_div) (const EC_GROUP *, BIGNUM *r, const BIGNUM *a,
  185. const BIGNUM *b, BN_CTX *);
  186. /* e.g. to Montgomery */
  187. int (*field_encode) (const EC_GROUP *, BIGNUM *r, const BIGNUM *a,
  188. BN_CTX *);
  189. /* e.g. from Montgomery */
  190. int (*field_decode) (const EC_GROUP *, BIGNUM *r, const BIGNUM *a,
  191. BN_CTX *);
  192. int (*field_set_to_one) (const EC_GROUP *, BIGNUM *r, BN_CTX *);
  193. } /* EC_METHOD */ ;
  194. typedef struct ec_extra_data_st {
  195. struct ec_extra_data_st *next;
  196. void *data;
  197. void *(*dup_func) (void *);
  198. void (*free_func) (void *);
  199. void (*clear_free_func) (void *);
  200. } EC_EXTRA_DATA; /* used in EC_GROUP */
  201. struct ec_group_st {
  202. const EC_METHOD *meth;
  203. EC_POINT *generator; /* optional */
  204. BIGNUM *order, *cofactor;
  205. int curve_name; /* optional NID for named curve */
  206. int asn1_flag; /* flag to control the asn1 encoding */
  207. point_conversion_form_t asn1_form;
  208. unsigned char *seed; /* optional seed for parameters (appears in
  209. * ASN1) */
  210. size_t seed_len;
  211. EC_EXTRA_DATA *extra_data; /* linked list */
  212. /*
  213. * The following members are handled by the method functions, even if
  214. * they appear generic
  215. */
  216. /*
  217. * Field specification. For curves over GF(p), this is the modulus; for
  218. * curves over GF(2^m), this is the irreducible polynomial defining the
  219. * field.
  220. */
  221. BIGNUM *field;
  222. /*
  223. * Field specification for curves over GF(2^m). The irreducible f(t) is
  224. * then of the form: t^poly[0] + t^poly[1] + ... + t^poly[k] where m =
  225. * poly[0] > poly[1] > ... > poly[k] = 0. The array is terminated with
  226. * poly[k+1]=-1. All elliptic curve irreducibles have at most 5 non-zero
  227. * terms.
  228. */
  229. int poly[6];
  230. /*
  231. * Curve coefficients. (Here the assumption is that BIGNUMs can be used
  232. * or abused for all kinds of fields, not just GF(p).) For characteristic
  233. * > 3, the curve is defined by a Weierstrass equation of the form y^2 =
  234. * x^3 + a*x + b. For characteristic 2, the curve is defined by an
  235. * equation of the form y^2 + x*y = x^3 + a*x^2 + b.
  236. */
  237. BIGNUM *a, *b;
  238. /* enable optimized point arithmetics for special case */
  239. int a_is_minus3;
  240. /* method-specific (e.g., Montgomery structure) */
  241. void *field_data1;
  242. /* method-specific */
  243. void *field_data2;
  244. /* method-specific */
  245. int (*field_mod_func) (BIGNUM *, const BIGNUM *, const BIGNUM *,
  246. BN_CTX *);
  247. /* data for ECDSA inverse */
  248. BN_MONT_CTX *mont_data;
  249. } /* EC_GROUP */ ;
  250. struct ec_key_st {
  251. int version;
  252. EC_GROUP *group;
  253. EC_POINT *pub_key;
  254. BIGNUM *priv_key;
  255. unsigned int enc_flag;
  256. point_conversion_form_t conv_form;
  257. int references;
  258. int flags;
  259. EC_EXTRA_DATA *method_data;
  260. } /* EC_KEY */ ;
  261. /*
  262. * Basically a 'mixin' for extra data, but available for EC_GROUPs/EC_KEYs
  263. * only (with visibility limited to 'package' level for now). We use the
  264. * function pointers as index for retrieval; this obviates global
  265. * ex_data-style index tables.
  266. */
  267. int EC_EX_DATA_set_data(EC_EXTRA_DATA **, void *data,
  268. void *(*dup_func) (void *),
  269. void (*free_func) (void *),
  270. void (*clear_free_func) (void *));
  271. void *EC_EX_DATA_get_data(const EC_EXTRA_DATA *, void *(*dup_func) (void *),
  272. void (*free_func) (void *),
  273. void (*clear_free_func) (void *));
  274. void EC_EX_DATA_free_data(EC_EXTRA_DATA **, void *(*dup_func) (void *),
  275. void (*free_func) (void *),
  276. void (*clear_free_func) (void *));
  277. void EC_EX_DATA_clear_free_data(EC_EXTRA_DATA **, void *(*dup_func) (void *),
  278. void (*free_func) (void *),
  279. void (*clear_free_func) (void *));
  280. void EC_EX_DATA_free_all_data(EC_EXTRA_DATA **);
  281. void EC_EX_DATA_clear_free_all_data(EC_EXTRA_DATA **);
  282. struct ec_point_st {
  283. const EC_METHOD *meth;
  284. /*
  285. * All members except 'meth' are handled by the method functions, even if
  286. * they appear generic
  287. */
  288. BIGNUM *X;
  289. BIGNUM *Y;
  290. BIGNUM *Z; /* Jacobian projective coordinates: * (X, Y,
  291. * Z) represents (X/Z^2, Y/Z^3) if Z != 0 */
  292. int Z_is_one; /* enable optimized point arithmetics for
  293. * special case */
  294. } /* EC_POINT */ ;
  295. /*
  296. * method functions in ec_mult.c (ec_lib.c uses these as defaults if
  297. * group->method->mul is 0)
  298. */
  299. int ec_wNAF_mul(const EC_GROUP *group, EC_POINT *r, const BIGNUM *scalar,
  300. size_t num, const EC_POINT *points[], const BIGNUM *scalars[],
  301. BN_CTX *);
  302. int ec_wNAF_precompute_mult(EC_GROUP *group, BN_CTX *);
  303. int ec_wNAF_have_precompute_mult(const EC_GROUP *group);
  304. /* method functions in ecp_smpl.c */
  305. int ec_GFp_simple_group_init(EC_GROUP *);
  306. void ec_GFp_simple_group_finish(EC_GROUP *);
  307. void ec_GFp_simple_group_clear_finish(EC_GROUP *);
  308. int ec_GFp_simple_group_copy(EC_GROUP *, const EC_GROUP *);
  309. int ec_GFp_simple_group_set_curve(EC_GROUP *, const BIGNUM *p,
  310. const BIGNUM *a, const BIGNUM *b, BN_CTX *);
  311. int ec_GFp_simple_group_get_curve(const EC_GROUP *, BIGNUM *p, BIGNUM *a,
  312. BIGNUM *b, BN_CTX *);
  313. int ec_GFp_simple_group_get_degree(const EC_GROUP *);
  314. int ec_GFp_simple_group_check_discriminant(const EC_GROUP *, BN_CTX *);
  315. int ec_GFp_simple_point_init(EC_POINT *);
  316. void ec_GFp_simple_point_finish(EC_POINT *);
  317. void ec_GFp_simple_point_clear_finish(EC_POINT *);
  318. int ec_GFp_simple_point_copy(EC_POINT *, const EC_POINT *);
  319. int ec_GFp_simple_point_set_to_infinity(const EC_GROUP *, EC_POINT *);
  320. int ec_GFp_simple_set_Jprojective_coordinates_GFp(const EC_GROUP *,
  321. EC_POINT *, const BIGNUM *x,
  322. const BIGNUM *y,
  323. const BIGNUM *z, BN_CTX *);
  324. int ec_GFp_simple_get_Jprojective_coordinates_GFp(const EC_GROUP *,
  325. const EC_POINT *, BIGNUM *x,
  326. BIGNUM *y, BIGNUM *z,
  327. BN_CTX *);
  328. int ec_GFp_simple_point_set_affine_coordinates(const EC_GROUP *, EC_POINT *,
  329. const BIGNUM *x,
  330. const BIGNUM *y, BN_CTX *);
  331. int ec_GFp_simple_point_get_affine_coordinates(const EC_GROUP *,
  332. const EC_POINT *, BIGNUM *x,
  333. BIGNUM *y, BN_CTX *);
  334. int ec_GFp_simple_set_compressed_coordinates(const EC_GROUP *, EC_POINT *,
  335. const BIGNUM *x, int y_bit,
  336. BN_CTX *);
  337. size_t ec_GFp_simple_point2oct(const EC_GROUP *, const EC_POINT *,
  338. point_conversion_form_t form,
  339. unsigned char *buf, size_t len, BN_CTX *);
  340. int ec_GFp_simple_oct2point(const EC_GROUP *, EC_POINT *,
  341. const unsigned char *buf, size_t len, BN_CTX *);
  342. int ec_GFp_simple_add(const EC_GROUP *, EC_POINT *r, const EC_POINT *a,
  343. const EC_POINT *b, BN_CTX *);
  344. int ec_GFp_simple_dbl(const EC_GROUP *, EC_POINT *r, const EC_POINT *a,
  345. BN_CTX *);
  346. int ec_GFp_simple_invert(const EC_GROUP *, EC_POINT *, BN_CTX *);
  347. int ec_GFp_simple_is_at_infinity(const EC_GROUP *, const EC_POINT *);
  348. int ec_GFp_simple_is_on_curve(const EC_GROUP *, const EC_POINT *, BN_CTX *);
  349. int ec_GFp_simple_cmp(const EC_GROUP *, const EC_POINT *a, const EC_POINT *b,
  350. BN_CTX *);
  351. int ec_GFp_simple_make_affine(const EC_GROUP *, EC_POINT *, BN_CTX *);
  352. int ec_GFp_simple_points_make_affine(const EC_GROUP *, size_t num,
  353. EC_POINT *[], BN_CTX *);
  354. int ec_GFp_simple_field_mul(const EC_GROUP *, BIGNUM *r, const BIGNUM *a,
  355. const BIGNUM *b, BN_CTX *);
  356. int ec_GFp_simple_field_sqr(const EC_GROUP *, BIGNUM *r, const BIGNUM *a,
  357. BN_CTX *);
  358. /* method functions in ecp_mont.c */
  359. int ec_GFp_mont_group_init(EC_GROUP *);
  360. int ec_GFp_mont_group_set_curve(EC_GROUP *, const BIGNUM *p, const BIGNUM *a,
  361. const BIGNUM *b, BN_CTX *);
  362. void ec_GFp_mont_group_finish(EC_GROUP *);
  363. void ec_GFp_mont_group_clear_finish(EC_GROUP *);
  364. int ec_GFp_mont_group_copy(EC_GROUP *, const EC_GROUP *);
  365. int ec_GFp_mont_field_mul(const EC_GROUP *, BIGNUM *r, const BIGNUM *a,
  366. const BIGNUM *b, BN_CTX *);
  367. int ec_GFp_mont_field_sqr(const EC_GROUP *, BIGNUM *r, const BIGNUM *a,
  368. BN_CTX *);
  369. int ec_GFp_mont_field_encode(const EC_GROUP *, BIGNUM *r, const BIGNUM *a,
  370. BN_CTX *);
  371. int ec_GFp_mont_field_decode(const EC_GROUP *, BIGNUM *r, const BIGNUM *a,
  372. BN_CTX *);
  373. int ec_GFp_mont_field_set_to_one(const EC_GROUP *, BIGNUM *r, BN_CTX *);
  374. /* method functions in ecp_nist.c */
  375. int ec_GFp_nist_group_copy(EC_GROUP *dest, const EC_GROUP *src);
  376. int ec_GFp_nist_group_set_curve(EC_GROUP *, const BIGNUM *p, const BIGNUM *a,
  377. const BIGNUM *b, BN_CTX *);
  378. int ec_GFp_nist_field_mul(const EC_GROUP *, BIGNUM *r, const BIGNUM *a,
  379. const BIGNUM *b, BN_CTX *);
  380. int ec_GFp_nist_field_sqr(const EC_GROUP *, BIGNUM *r, const BIGNUM *a,
  381. BN_CTX *);
  382. /* method functions in ec2_smpl.c */
  383. int ec_GF2m_simple_group_init(EC_GROUP *);
  384. void ec_GF2m_simple_group_finish(EC_GROUP *);
  385. void ec_GF2m_simple_group_clear_finish(EC_GROUP *);
  386. int ec_GF2m_simple_group_copy(EC_GROUP *, const EC_GROUP *);
  387. int ec_GF2m_simple_group_set_curve(EC_GROUP *, const BIGNUM *p,
  388. const BIGNUM *a, const BIGNUM *b,
  389. BN_CTX *);
  390. int ec_GF2m_simple_group_get_curve(const EC_GROUP *, BIGNUM *p, BIGNUM *a,
  391. BIGNUM *b, BN_CTX *);
  392. int ec_GF2m_simple_group_get_degree(const EC_GROUP *);
  393. int ec_GF2m_simple_group_check_discriminant(const EC_GROUP *, BN_CTX *);
  394. int ec_GF2m_simple_point_init(EC_POINT *);
  395. void ec_GF2m_simple_point_finish(EC_POINT *);
  396. void ec_GF2m_simple_point_clear_finish(EC_POINT *);
  397. int ec_GF2m_simple_point_copy(EC_POINT *, const EC_POINT *);
  398. int ec_GF2m_simple_point_set_to_infinity(const EC_GROUP *, EC_POINT *);
  399. int ec_GF2m_simple_point_set_affine_coordinates(const EC_GROUP *, EC_POINT *,
  400. const BIGNUM *x,
  401. const BIGNUM *y, BN_CTX *);
  402. int ec_GF2m_simple_point_get_affine_coordinates(const EC_GROUP *,
  403. const EC_POINT *, BIGNUM *x,
  404. BIGNUM *y, BN_CTX *);
  405. int ec_GF2m_simple_set_compressed_coordinates(const EC_GROUP *, EC_POINT *,
  406. const BIGNUM *x, int y_bit,
  407. BN_CTX *);
  408. size_t ec_GF2m_simple_point2oct(const EC_GROUP *, const EC_POINT *,
  409. point_conversion_form_t form,
  410. unsigned char *buf, size_t len, BN_CTX *);
  411. int ec_GF2m_simple_oct2point(const EC_GROUP *, EC_POINT *,
  412. const unsigned char *buf, size_t len, BN_CTX *);
  413. int ec_GF2m_simple_add(const EC_GROUP *, EC_POINT *r, const EC_POINT *a,
  414. const EC_POINT *b, BN_CTX *);
  415. int ec_GF2m_simple_dbl(const EC_GROUP *, EC_POINT *r, const EC_POINT *a,
  416. BN_CTX *);
  417. int ec_GF2m_simple_invert(const EC_GROUP *, EC_POINT *, BN_CTX *);
  418. int ec_GF2m_simple_is_at_infinity(const EC_GROUP *, const EC_POINT *);
  419. int ec_GF2m_simple_is_on_curve(const EC_GROUP *, const EC_POINT *, BN_CTX *);
  420. int ec_GF2m_simple_cmp(const EC_GROUP *, const EC_POINT *a, const EC_POINT *b,
  421. BN_CTX *);
  422. int ec_GF2m_simple_make_affine(const EC_GROUP *, EC_POINT *, BN_CTX *);
  423. int ec_GF2m_simple_points_make_affine(const EC_GROUP *, size_t num,
  424. EC_POINT *[], BN_CTX *);
  425. int ec_GF2m_simple_field_mul(const EC_GROUP *, BIGNUM *r, const BIGNUM *a,
  426. const BIGNUM *b, BN_CTX *);
  427. int ec_GF2m_simple_field_sqr(const EC_GROUP *, BIGNUM *r, const BIGNUM *a,
  428. BN_CTX *);
  429. int ec_GF2m_simple_field_div(const EC_GROUP *, BIGNUM *r, const BIGNUM *a,
  430. const BIGNUM *b, BN_CTX *);
  431. /* method functions in ec2_mult.c */
  432. int ec_GF2m_simple_mul(const EC_GROUP *group, EC_POINT *r,
  433. const BIGNUM *scalar, size_t num,
  434. const EC_POINT *points[], const BIGNUM *scalars[],
  435. BN_CTX *);
  436. int ec_GF2m_precompute_mult(EC_GROUP *group, BN_CTX *ctx);
  437. int ec_GF2m_have_precompute_mult(const EC_GROUP *group);
  438. /* method functions in ec2_mult.c */
  439. int ec_GF2m_simple_mul(const EC_GROUP *group, EC_POINT *r,
  440. const BIGNUM *scalar, size_t num,
  441. const EC_POINT *points[], const BIGNUM *scalars[],
  442. BN_CTX *);
  443. int ec_GF2m_precompute_mult(EC_GROUP *group, BN_CTX *ctx);
  444. int ec_GF2m_have_precompute_mult(const EC_GROUP *group);
  445. #ifndef OPENSSL_NO_EC_NISTP_64_GCC_128
  446. /* method functions in ecp_nistp224.c */
  447. int ec_GFp_nistp224_group_init(EC_GROUP *group);
  448. int ec_GFp_nistp224_group_set_curve(EC_GROUP *group, const BIGNUM *p,
  449. const BIGNUM *a, const BIGNUM *n,
  450. BN_CTX *);
  451. int ec_GFp_nistp224_point_get_affine_coordinates(const EC_GROUP *group,
  452. const EC_POINT *point,
  453. BIGNUM *x, BIGNUM *y,
  454. BN_CTX *ctx);
  455. int ec_GFp_nistp224_mul(const EC_GROUP *group, EC_POINT *r,
  456. const BIGNUM *scalar, size_t num,
  457. const EC_POINT *points[], const BIGNUM *scalars[],
  458. BN_CTX *);
  459. int ec_GFp_nistp224_points_mul(const EC_GROUP *group, EC_POINT *r,
  460. const BIGNUM *scalar, size_t num,
  461. const EC_POINT *points[],
  462. const BIGNUM *scalars[], BN_CTX *ctx);
  463. int ec_GFp_nistp224_precompute_mult(EC_GROUP *group, BN_CTX *ctx);
  464. int ec_GFp_nistp224_have_precompute_mult(const EC_GROUP *group);
  465. /* method functions in ecp_nistp256.c */
  466. int ec_GFp_nistp256_group_init(EC_GROUP *group);
  467. int ec_GFp_nistp256_group_set_curve(EC_GROUP *group, const BIGNUM *p,
  468. const BIGNUM *a, const BIGNUM *n,
  469. BN_CTX *);
  470. int ec_GFp_nistp256_point_get_affine_coordinates(const EC_GROUP *group,
  471. const EC_POINT *point,
  472. BIGNUM *x, BIGNUM *y,
  473. BN_CTX *ctx);
  474. int ec_GFp_nistp256_mul(const EC_GROUP *group, EC_POINT *r,
  475. const BIGNUM *scalar, size_t num,
  476. const EC_POINT *points[], const BIGNUM *scalars[],
  477. BN_CTX *);
  478. int ec_GFp_nistp256_points_mul(const EC_GROUP *group, EC_POINT *r,
  479. const BIGNUM *scalar, size_t num,
  480. const EC_POINT *points[],
  481. const BIGNUM *scalars[], BN_CTX *ctx);
  482. int ec_GFp_nistp256_precompute_mult(EC_GROUP *group, BN_CTX *ctx);
  483. int ec_GFp_nistp256_have_precompute_mult(const EC_GROUP *group);
  484. /* method functions in ecp_nistp521.c */
  485. int ec_GFp_nistp521_group_init(EC_GROUP *group);
  486. int ec_GFp_nistp521_group_set_curve(EC_GROUP *group, const BIGNUM *p,
  487. const BIGNUM *a, const BIGNUM *n,
  488. BN_CTX *);
  489. int ec_GFp_nistp521_point_get_affine_coordinates(const EC_GROUP *group,
  490. const EC_POINT *point,
  491. BIGNUM *x, BIGNUM *y,
  492. BN_CTX *ctx);
  493. int ec_GFp_nistp521_mul(const EC_GROUP *group, EC_POINT *r,
  494. const BIGNUM *scalar, size_t num,
  495. const EC_POINT *points[], const BIGNUM *scalars[],
  496. BN_CTX *);
  497. int ec_GFp_nistp521_points_mul(const EC_GROUP *group, EC_POINT *r,
  498. const BIGNUM *scalar, size_t num,
  499. const EC_POINT *points[],
  500. const BIGNUM *scalars[], BN_CTX *ctx);
  501. int ec_GFp_nistp521_precompute_mult(EC_GROUP *group, BN_CTX *ctx);
  502. int ec_GFp_nistp521_have_precompute_mult(const EC_GROUP *group);
  503. /* utility functions in ecp_nistputil.c */
  504. void ec_GFp_nistp_points_make_affine_internal(size_t num, void *point_array,
  505. size_t felem_size,
  506. void *tmp_felems,
  507. void (*felem_one) (void *out),
  508. int (*felem_is_zero) (const void
  509. *in),
  510. void (*felem_assign) (void *out,
  511. const void
  512. *in),
  513. void (*felem_square) (void *out,
  514. const void
  515. *in),
  516. void (*felem_mul) (void *out,
  517. const void
  518. *in1,
  519. const void
  520. *in2),
  521. void (*felem_inv) (void *out,
  522. const void
  523. *in),
  524. void (*felem_contract) (void
  525. *out,
  526. const
  527. void
  528. *in));
  529. void ec_GFp_nistp_recode_scalar_bits(unsigned char *sign,
  530. unsigned char *digit, unsigned char in);
  531. #endif
  532. int ec_precompute_mont_data(EC_GROUP *);
  533. #ifdef ECP_NISTZ256_ASM
  534. /** Returns GFp methods using montgomery multiplication, with x86-64 optimized
  535. * P256. See http://eprint.iacr.org/2013/816.
  536. * \return EC_METHOD object
  537. */
  538. const EC_METHOD *EC_GFp_nistz256_method(void);
  539. #endif