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CommitLineData
71712b27
GM
1/**********************************************************************
2 * Copyright (c) 2013, 2014 Pieter Wuille *
3 * Distributed under the MIT software license, see the accompanying *
4 * file COPYING or http://www.opensource.org/licenses/mit-license.php.*
5 **********************************************************************/
0a433ea2 6
7a4b7691
PW
7#ifndef _SECP256K1_GROUP_IMPL_H_
8#define _SECP256K1_GROUP_IMPL_H_
9
f11ff5be 10#include <string.h>
607884fc 11
11ab5622
PW
12#include "num.h"
13#include "field.h"
14#include "group.h"
607884fc 15
4732d260
PW
16static const secp256k1_ge_t secp256k1_ge_const_g = {
17 SECP256K1_FE_CONST(
18 0x79BE667EUL, 0xF9DCBBACUL, 0x55A06295UL, 0xCE870B07UL,
19 0x029BFCDBUL, 0x2DCE28D9UL, 0x59F2815BUL, 0x16F81798UL
20 ),
21 SECP256K1_FE_CONST(
22 0x483ADA77UL, 0x26A3C465UL, 0x5DA4FBFCUL, 0x0E1108A8UL,
23 0xFD17B448UL, 0xA6855419UL, 0x9C47D08FUL, 0xFB10D4B8UL
24 ),
25 0
26};
27
a4a43d75 28static void secp256k1_ge_set_infinity(secp256k1_ge_t *r) {
f11ff5be 29 r->infinity = 1;
607884fc
PW
30}
31
a4a43d75 32static void secp256k1_ge_set_xy(secp256k1_ge_t *r, const secp256k1_fe_t *x, const secp256k1_fe_t *y) {
f11ff5be
PW
33 r->infinity = 0;
34 r->x = *x;
35 r->y = *y;
607884fc
PW
36}
37
a4a43d75 38static int secp256k1_ge_is_infinity(const secp256k1_ge_t *a) {
f11ff5be 39 return a->infinity;
607884fc
PW
40}
41
a4a43d75 42static void secp256k1_ge_neg(secp256k1_ge_t *r, const secp256k1_ge_t *a) {
39bd94d8 43 *r = *a;
0295f0a3 44 secp256k1_fe_normalize_weak(&r->y);
39bd94d8
PW
45 secp256k1_fe_negate(&r->y, &r->y, 1);
46}
47
0768bd55
PW
48static void secp256k1_ge_get_hex(char *r131, const secp256k1_ge_t *a) {
49 r131[0] = '(';
50 secp256k1_fe_get_hex(r131 + 1, &a->x);
51 r131[65] = ',';
52 secp256k1_fe_get_hex(r131 + 66, &a->y);
53 r131[130] = ')';
f11ff5be
PW
54}
55
a4a43d75 56static void secp256k1_ge_set_gej(secp256k1_ge_t *r, secp256k1_gej_t *a) {
da55986f
PW
57 r->infinity = a->infinity;
58 secp256k1_fe_inv(&a->z, &a->z);
59 secp256k1_fe_t z2; secp256k1_fe_sqr(&z2, &a->z);
60 secp256k1_fe_t z3; secp256k1_fe_mul(&z3, &a->z, &z2);
61 secp256k1_fe_mul(&a->x, &a->x, &z2);
62 secp256k1_fe_mul(&a->y, &a->y, &z3);
63 secp256k1_fe_set_int(&a->z, 1);
64 r->x = a->x;
65 r->y = a->y;
66}
67
a4a43d75 68static void secp256k1_ge_set_gej_var(secp256k1_ge_t *r, secp256k1_gej_t *a) {
1136bedb
PW
69 r->infinity = a->infinity;
70 if (a->infinity) {
71 return;
72 }
f11ff5be
PW
73 secp256k1_fe_inv_var(&a->z, &a->z);
74 secp256k1_fe_t z2; secp256k1_fe_sqr(&z2, &a->z);
75 secp256k1_fe_t z3; secp256k1_fe_mul(&z3, &a->z, &z2);
76 secp256k1_fe_mul(&a->x, &a->x, &z2);
77 secp256k1_fe_mul(&a->y, &a->y, &z3);
78 secp256k1_fe_set_int(&a->z, 1);
f11ff5be
PW
79 r->x = a->x;
80 r->y = a->y;
607884fc
PW
81}
82
3627437d 83static void secp256k1_ge_set_all_gej_var(size_t len, secp256k1_ge_t *r, const secp256k1_gej_t *a) {
65a14abb 84 size_t count = 0;
a5759c57 85 secp256k1_fe_t *az = checked_malloc(sizeof(secp256k1_fe_t) * len);
65a14abb 86 for (size_t i=0; i<len; i++) {
f16be77f
PD
87 if (!a[i].infinity) {
88 az[count++] = a[i].z;
89 }
90 }
91
a5759c57 92 secp256k1_fe_t *azi = checked_malloc(sizeof(secp256k1_fe_t) * count);
f16be77f 93 secp256k1_fe_inv_all_var(count, azi, az);
f461b769 94 free(az);
f16be77f
PD
95
96 count = 0;
65a14abb 97 for (size_t i=0; i<len; i++) {
f16be77f
PD
98 r[i].infinity = a[i].infinity;
99 if (!a[i].infinity) {
100 secp256k1_fe_t *zi = &azi[count++];
101 secp256k1_fe_t zi2; secp256k1_fe_sqr(&zi2, zi);
102 secp256k1_fe_t zi3; secp256k1_fe_mul(&zi3, &zi2, zi);
103 secp256k1_fe_mul(&r[i].x, &a[i].x, &zi2);
104 secp256k1_fe_mul(&r[i].y, &a[i].y, &zi3);
105 }
106 }
f461b769 107 free(azi);
f16be77f
PD
108}
109
a4a43d75 110static void secp256k1_gej_set_infinity(secp256k1_gej_t *r) {
f11ff5be 111 r->infinity = 1;
9338dbf7
PW
112 secp256k1_fe_set_int(&r->x, 0);
113 secp256k1_fe_set_int(&r->y, 0);
114 secp256k1_fe_set_int(&r->z, 0);
607884fc
PW
115}
116
a4a43d75 117static void secp256k1_gej_set_xy(secp256k1_gej_t *r, const secp256k1_fe_t *x, const secp256k1_fe_t *y) {
f11ff5be
PW
118 r->infinity = 0;
119 r->x = *x;
120 r->y = *y;
121 secp256k1_fe_set_int(&r->z, 1);
607884fc
PW
122}
123
a4a43d75 124static void secp256k1_gej_clear(secp256k1_gej_t *r) {
2f6c8019
GM
125 r->infinity = 0;
126 secp256k1_fe_clear(&r->x);
127 secp256k1_fe_clear(&r->y);
128 secp256k1_fe_clear(&r->z);
129}
130
a4a43d75 131static void secp256k1_ge_clear(secp256k1_ge_t *r) {
2f6c8019
GM
132 r->infinity = 0;
133 secp256k1_fe_clear(&r->x);
134 secp256k1_fe_clear(&r->y);
135}
136
39bd94d8 137static int secp256k1_ge_set_xo_var(secp256k1_ge_t *r, const secp256k1_fe_t *x, int odd) {
f11ff5be
PW
138 r->x = *x;
139 secp256k1_fe_t x2; secp256k1_fe_sqr(&x2, x);
140 secp256k1_fe_t x3; secp256k1_fe_mul(&x3, x, &x2);
eb0be8ee 141 r->infinity = 0;
f11ff5be
PW
142 secp256k1_fe_t c; secp256k1_fe_set_int(&c, 7);
143 secp256k1_fe_add(&c, &x3);
39bd94d8 144 if (!secp256k1_fe_sqrt_var(&r->y, &c))
09ca4f32 145 return 0;
39bd94d8 146 secp256k1_fe_normalize_var(&r->y);
f11ff5be
PW
147 if (secp256k1_fe_is_odd(&r->y) != odd)
148 secp256k1_fe_negate(&r->y, &r->y, 1);
09ca4f32 149 return 1;
910d0de4 150}
607884fc 151
a4a43d75 152static void secp256k1_gej_set_ge(secp256k1_gej_t *r, const secp256k1_ge_t *a) {
f11ff5be
PW
153 r->infinity = a->infinity;
154 r->x = a->x;
155 r->y = a->y;
156 secp256k1_fe_set_int(&r->z, 1);
910d0de4 157}
607884fc 158
ce7eb6fb
PW
159static int secp256k1_gej_eq_x_var(const secp256k1_fe_t *x, const secp256k1_gej_t *a) {
160 VERIFY_CHECK(!a->infinity);
161 secp256k1_fe_t r; secp256k1_fe_sqr(&r, &a->z); secp256k1_fe_mul(&r, &r, x);
eed599dd 162 secp256k1_fe_t r2 = a->x; secp256k1_fe_normalize_weak(&r2);
d7174edf 163 return secp256k1_fe_equal_var(&r, &r2);
910d0de4 164}
607884fc 165
0295f0a3 166static void secp256k1_gej_neg(secp256k1_gej_t *r, const secp256k1_gej_t *a) {
f11ff5be
PW
167 r->infinity = a->infinity;
168 r->x = a->x;
169 r->y = a->y;
170 r->z = a->z;
0295f0a3 171 secp256k1_fe_normalize_weak(&r->y);
f11ff5be 172 secp256k1_fe_negate(&r->y, &r->y, 1);
607884fc
PW
173}
174
a4a43d75 175static int secp256k1_gej_is_infinity(const secp256k1_gej_t *a) {
f11ff5be 176 return a->infinity;
0a07e62f
PW
177}
178
39bd94d8 179static int secp256k1_gej_is_valid_var(const secp256k1_gej_t *a) {
f11ff5be 180 if (a->infinity)
eb0be8ee 181 return 0;
71712b27
GM
182 /** y^2 = x^3 + 7
183 * (Y/Z^3)^2 = (X/Z^2)^3 + 7
184 * Y^2 / Z^6 = X^3 / Z^6 + 7
185 * Y^2 = X^3 + 7*Z^6
186 */
f11ff5be
PW
187 secp256k1_fe_t y2; secp256k1_fe_sqr(&y2, &a->y);
188 secp256k1_fe_t x3; secp256k1_fe_sqr(&x3, &a->x); secp256k1_fe_mul(&x3, &x3, &a->x);
189 secp256k1_fe_t z2; secp256k1_fe_sqr(&z2, &a->z);
910d0de4
PW
190 secp256k1_fe_t z6; secp256k1_fe_sqr(&z6, &z2); secp256k1_fe_mul(&z6, &z6, &z2);
191 secp256k1_fe_mul_int(&z6, 7);
192 secp256k1_fe_add(&x3, &z6);
d7174edf
PW
193 secp256k1_fe_normalize_weak(&x3);
194 return secp256k1_fe_equal_var(&y2, &x3);
607884fc
PW
195}
196
39bd94d8 197static int secp256k1_ge_is_valid_var(const secp256k1_ge_t *a) {
764332d0
PW
198 if (a->infinity)
199 return 0;
71712b27 200 /* y^2 = x^3 + 7 */
764332d0
PW
201 secp256k1_fe_t y2; secp256k1_fe_sqr(&y2, &a->y);
202 secp256k1_fe_t x3; secp256k1_fe_sqr(&x3, &a->x); secp256k1_fe_mul(&x3, &x3, &a->x);
203 secp256k1_fe_t c; secp256k1_fe_set_int(&c, 7);
204 secp256k1_fe_add(&x3, &c);
d7174edf
PW
205 secp256k1_fe_normalize_weak(&x3);
206 return secp256k1_fe_equal_var(&y2, &x3);
764332d0
PW
207}
208
a4a43d75 209static void secp256k1_gej_double_var(secp256k1_gej_t *r, const secp256k1_gej_t *a) {
3627437d
GM
210 /** For secp256k1, 2Q is infinity if and only if Q is infinity. This is because if 2Q = infinity,
211 * Q must equal -Q, or that Q.y == -(Q.y), or Q.y is 0. For a point on y^2 = x^3 + 7 to have
212 * y=0, x^3 must be -7 mod p. However, -7 has no cube root mod p.
213 */
f7dc1c65
PW
214 r->infinity = a->infinity;
215 if (r->infinity) {
607884fc
PW
216 return;
217 }
218
910d0de4 219 secp256k1_fe_t t1,t2,t3,t4;
be82e92f 220 secp256k1_fe_mul(&r->z, &a->z, &a->y);
71712b27 221 secp256k1_fe_mul_int(&r->z, 2); /* Z' = 2*Y*Z (2) */
f11ff5be 222 secp256k1_fe_sqr(&t1, &a->x);
71712b27
GM
223 secp256k1_fe_mul_int(&t1, 3); /* T1 = 3*X^2 (3) */
224 secp256k1_fe_sqr(&t2, &t1); /* T2 = 9*X^4 (1) */
f7dc1c65 225 secp256k1_fe_sqr(&t3, &a->y);
71712b27 226 secp256k1_fe_mul_int(&t3, 2); /* T3 = 2*Y^2 (2) */
910d0de4 227 secp256k1_fe_sqr(&t4, &t3);
71712b27 228 secp256k1_fe_mul_int(&t4, 2); /* T4 = 8*Y^4 (2) */
be82e92f 229 secp256k1_fe_mul(&t3, &t3, &a->x); /* T3 = 2*X*Y^2 (1) */
f11ff5be 230 r->x = t3;
71712b27
GM
231 secp256k1_fe_mul_int(&r->x, 4); /* X' = 8*X*Y^2 (4) */
232 secp256k1_fe_negate(&r->x, &r->x, 4); /* X' = -8*X*Y^2 (5) */
233 secp256k1_fe_add(&r->x, &t2); /* X' = 9*X^4 - 8*X*Y^2 (6) */
234 secp256k1_fe_negate(&t2, &t2, 1); /* T2 = -9*X^4 (2) */
235 secp256k1_fe_mul_int(&t3, 6); /* T3 = 12*X*Y^2 (6) */
236 secp256k1_fe_add(&t3, &t2); /* T3 = 12*X*Y^2 - 9*X^4 (8) */
237 secp256k1_fe_mul(&r->y, &t1, &t3); /* Y' = 36*X^3*Y^2 - 27*X^6 (1) */
238 secp256k1_fe_negate(&t2, &t4, 2); /* T2 = -8*Y^4 (3) */
239 secp256k1_fe_add(&r->y, &t2); /* Y' = 36*X^3*Y^2 - 27*X^6 - 8*Y^4 (4) */
607884fc
PW
240}
241
a4a43d75 242static void secp256k1_gej_add_var(secp256k1_gej_t *r, const secp256k1_gej_t *a, const secp256k1_gej_t *b) {
f11ff5be
PW
243 if (a->infinity) {
244 *r = *b;
607884fc
PW
245 return;
246 }
f11ff5be
PW
247 if (b->infinity) {
248 *r = *a;
607884fc
PW
249 return;
250 }
eb0be8ee 251 r->infinity = 0;
f11ff5be
PW
252 secp256k1_fe_t z22; secp256k1_fe_sqr(&z22, &b->z);
253 secp256k1_fe_t z12; secp256k1_fe_sqr(&z12, &a->z);
254 secp256k1_fe_t u1; secp256k1_fe_mul(&u1, &a->x, &z22);
255 secp256k1_fe_t u2; secp256k1_fe_mul(&u2, &b->x, &z12);
256 secp256k1_fe_t s1; secp256k1_fe_mul(&s1, &a->y, &z22); secp256k1_fe_mul(&s1, &s1, &b->z);
257 secp256k1_fe_t s2; secp256k1_fe_mul(&s2, &b->y, &z12); secp256k1_fe_mul(&s2, &s2, &a->z);
eed599dd
PD
258 secp256k1_fe_t h; secp256k1_fe_negate(&h, &u1, 1); secp256k1_fe_add(&h, &u2);
259 secp256k1_fe_t i; secp256k1_fe_negate(&i, &s1, 1); secp256k1_fe_add(&i, &s2);
49ee0dbe
PD
260 if (secp256k1_fe_normalizes_to_zero_var(&h)) {
261 if (secp256k1_fe_normalizes_to_zero_var(&i)) {
da55986f 262 secp256k1_gej_double_var(r, a);
607884fc 263 } else {
eb0be8ee 264 r->infinity = 1;
607884fc
PW
265 }
266 return;
267 }
f11ff5be 268 secp256k1_fe_t i2; secp256k1_fe_sqr(&i2, &i);
910d0de4
PW
269 secp256k1_fe_t h2; secp256k1_fe_sqr(&h2, &h);
270 secp256k1_fe_t h3; secp256k1_fe_mul(&h3, &h, &h2);
f11ff5be 271 secp256k1_fe_mul(&r->z, &a->z, &b->z); secp256k1_fe_mul(&r->z, &r->z, &h);
910d0de4 272 secp256k1_fe_t t; secp256k1_fe_mul(&t, &u1, &h2);
f11ff5be
PW
273 r->x = t; secp256k1_fe_mul_int(&r->x, 2); secp256k1_fe_add(&r->x, &h3); secp256k1_fe_negate(&r->x, &r->x, 3); secp256k1_fe_add(&r->x, &i2);
274 secp256k1_fe_negate(&r->y, &r->x, 5); secp256k1_fe_add(&r->y, &t); secp256k1_fe_mul(&r->y, &r->y, &i);
910d0de4 275 secp256k1_fe_mul(&h3, &h3, &s1); secp256k1_fe_negate(&h3, &h3, 1);
f11ff5be 276 secp256k1_fe_add(&r->y, &h3);
607884fc
PW
277}
278
a4a43d75 279static void secp256k1_gej_add_ge_var(secp256k1_gej_t *r, const secp256k1_gej_t *a, const secp256k1_ge_t *b) {
f11ff5be
PW
280 if (a->infinity) {
281 r->infinity = b->infinity;
282 r->x = b->x;
283 r->y = b->y;
284 secp256k1_fe_set_int(&r->z, 1);
607884fc
PW
285 return;
286 }
f11ff5be
PW
287 if (b->infinity) {
288 *r = *a;
607884fc
PW
289 return;
290 }
eb0be8ee 291 r->infinity = 0;
f11ff5be 292 secp256k1_fe_t z12; secp256k1_fe_sqr(&z12, &a->z);
d7174edf 293 secp256k1_fe_t u1 = a->x; secp256k1_fe_normalize_weak(&u1);
f11ff5be 294 secp256k1_fe_t u2; secp256k1_fe_mul(&u2, &b->x, &z12);
d7174edf 295 secp256k1_fe_t s1 = a->y; secp256k1_fe_normalize_weak(&s1);
f11ff5be 296 secp256k1_fe_t s2; secp256k1_fe_mul(&s2, &b->y, &z12); secp256k1_fe_mul(&s2, &s2, &a->z);
eed599dd
PD
297 secp256k1_fe_t h; secp256k1_fe_negate(&h, &u1, 1); secp256k1_fe_add(&h, &u2);
298 secp256k1_fe_t i; secp256k1_fe_negate(&i, &s1, 1); secp256k1_fe_add(&i, &s2);
49ee0dbe
PD
299 if (secp256k1_fe_normalizes_to_zero_var(&h)) {
300 if (secp256k1_fe_normalizes_to_zero_var(&i)) {
da55986f 301 secp256k1_gej_double_var(r, a);
607884fc 302 } else {
eb0be8ee 303 r->infinity = 1;
607884fc
PW
304 }
305 return;
306 }
f11ff5be 307 secp256k1_fe_t i2; secp256k1_fe_sqr(&i2, &i);
910d0de4
PW
308 secp256k1_fe_t h2; secp256k1_fe_sqr(&h2, &h);
309 secp256k1_fe_t h3; secp256k1_fe_mul(&h3, &h, &h2);
f11ff5be 310 r->z = a->z; secp256k1_fe_mul(&r->z, &r->z, &h);
910d0de4 311 secp256k1_fe_t t; secp256k1_fe_mul(&t, &u1, &h2);
f11ff5be
PW
312 r->x = t; secp256k1_fe_mul_int(&r->x, 2); secp256k1_fe_add(&r->x, &h3); secp256k1_fe_negate(&r->x, &r->x, 3); secp256k1_fe_add(&r->x, &i2);
313 secp256k1_fe_negate(&r->y, &r->x, 5); secp256k1_fe_add(&r->y, &t); secp256k1_fe_mul(&r->y, &r->y, &i);
910d0de4 314 secp256k1_fe_mul(&h3, &h3, &s1); secp256k1_fe_negate(&h3, &h3, 1);
f11ff5be 315 secp256k1_fe_add(&r->y, &h3);
607884fc
PW
316}
317
a4a43d75 318static void secp256k1_gej_add_ge(secp256k1_gej_t *r, const secp256k1_gej_t *a, const secp256k1_ge_t *b) {
9338dbf7
PW
319 VERIFY_CHECK(!b->infinity);
320 VERIFY_CHECK(a->infinity == 0 || a->infinity == 1);
321
71712b27
GM
322 /** In:
323 * Eric Brier and Marc Joye, Weierstrass Elliptic Curves and Side-Channel Attacks.
324 * In D. Naccache and P. Paillier, Eds., Public Key Cryptography, vol. 2274 of Lecture Notes in Computer Science, pages 335-345. Springer-Verlag, 2002.
325 * we find as solution for a unified addition/doubling formula:
326 * lambda = ((x1 + x2)^2 - x1 * x2 + a) / (y1 + y2), with a = 0 for secp256k1's curve equation.
327 * x3 = lambda^2 - (x1 + x2)
328 * 2*y3 = lambda * (x1 + x2 - 2 * x3) - (y1 + y2).
329 *
330 * Substituting x_i = Xi / Zi^2 and yi = Yi / Zi^3, for i=1,2,3, gives:
331 * U1 = X1*Z2^2, U2 = X2*Z1^2
2a54f9bc 332 * S1 = Y1*Z2^3, S2 = Y2*Z1^3
71712b27
GM
333 * Z = Z1*Z2
334 * T = U1+U2
335 * M = S1+S2
336 * Q = T*M^2
337 * R = T^2-U1*U2
338 * X3 = 4*(R^2-Q)
339 * Y3 = 4*(R*(3*Q-2*R^2)-M^4)
340 * Z3 = 2*M*Z
341 * (Note that the paper uses xi = Xi / Zi and yi = Yi / Zi instead.)
342 */
343
344 secp256k1_fe_t zz; secp256k1_fe_sqr(&zz, &a->z); /* z = Z1^2 */
0295f0a3 345 secp256k1_fe_t u1 = a->x; secp256k1_fe_normalize_weak(&u1); /* u1 = U1 = X1*Z2^2 (1) */
71712b27 346 secp256k1_fe_t u2; secp256k1_fe_mul(&u2, &b->x, &zz); /* u2 = U2 = X2*Z1^2 (1) */
0295f0a3 347 secp256k1_fe_t s1 = a->y; secp256k1_fe_normalize_weak(&s1); /* s1 = S1 = Y1*Z2^3 (1) */
71712b27
GM
348 secp256k1_fe_t s2; secp256k1_fe_mul(&s2, &b->y, &zz); /* s2 = Y2*Z2^2 (1) */
349 secp256k1_fe_mul(&s2, &s2, &a->z); /* s2 = S2 = Y2*Z1^3 (1) */
350 secp256k1_fe_t z = a->z; /* z = Z = Z1*Z2 (8) */
351 secp256k1_fe_t t = u1; secp256k1_fe_add(&t, &u2); /* t = T = U1+U2 (2) */
352 secp256k1_fe_t m = s1; secp256k1_fe_add(&m, &s2); /* m = M = S1+S2 (2) */
353 secp256k1_fe_t n; secp256k1_fe_sqr(&n, &m); /* n = M^2 (1) */
354 secp256k1_fe_t q; secp256k1_fe_mul(&q, &n, &t); /* q = Q = T*M^2 (1) */
355 secp256k1_fe_sqr(&n, &n); /* n = M^4 (1) */
356 secp256k1_fe_t rr; secp256k1_fe_sqr(&rr, &t); /* rr = T^2 (1) */
357 secp256k1_fe_mul(&t, &u1, &u2); secp256k1_fe_negate(&t, &t, 1); /* t = -U1*U2 (2) */
358 secp256k1_fe_add(&rr, &t); /* rr = R = T^2-U1*U2 (3) */
359 secp256k1_fe_sqr(&t, &rr); /* t = R^2 (1) */
360 secp256k1_fe_mul(&r->z, &m, &z); /* r->z = M*Z (1) */
eed599dd 361 int infinity = secp256k1_fe_normalizes_to_zero(&r->z) * (1 - a->infinity);
71712b27
GM
362 secp256k1_fe_mul_int(&r->z, 2 * (1 - a->infinity)); /* r->z = Z3 = 2*M*Z (2) */
363 r->x = t; /* r->x = R^2 (1) */
364 secp256k1_fe_negate(&q, &q, 1); /* q = -Q (2) */
365 secp256k1_fe_add(&r->x, &q); /* r->x = R^2-Q (3) */
9338dbf7 366 secp256k1_fe_normalize(&r->x);
71712b27
GM
367 secp256k1_fe_mul_int(&q, 3); /* q = -3*Q (6) */
368 secp256k1_fe_mul_int(&t, 2); /* t = 2*R^2 (2) */
369 secp256k1_fe_add(&t, &q); /* t = 2*R^2-3*Q (8) */
370 secp256k1_fe_mul(&t, &t, &rr); /* t = R*(2*R^2-3*Q) (1) */
371 secp256k1_fe_add(&t, &n); /* t = R*(2*R^2-3*Q)+M^4 (2) */
372 secp256k1_fe_negate(&r->y, &t, 2); /* r->y = R*(3*Q-2*R^2)-M^4 (3) */
0295f0a3 373 secp256k1_fe_normalize_weak(&r->y);
71712b27
GM
374 secp256k1_fe_mul_int(&r->x, 4 * (1 - a->infinity)); /* r->x = X3 = 4*(R^2-Q) */
375 secp256k1_fe_mul_int(&r->y, 4 * (1 - a->infinity)); /* r->y = Y3 = 4*R*(3*Q-2*R^2)-4*M^4 (4) */
9338dbf7 376
71712b27
GM
377 /** In case a->infinity == 1, the above code results in r->x, r->y, and r->z all equal to 0.
378 * Add b->x to x, b->y to y, and 1 to z in that case.
379 */
9338dbf7
PW
380 t = b->x; secp256k1_fe_mul_int(&t, a->infinity);
381 secp256k1_fe_add(&r->x, &t);
382 t = b->y; secp256k1_fe_mul_int(&t, a->infinity);
383 secp256k1_fe_add(&r->y, &t);
384 secp256k1_fe_set_int(&t, a->infinity);
385 secp256k1_fe_add(&r->z, &t);
386 r->infinity = infinity;
387}
388
0768bd55 389static void secp256k1_gej_get_hex(char *r131, const secp256k1_gej_t *a) {
f11ff5be
PW
390 secp256k1_gej_t c = *a;
391 secp256k1_ge_t t; secp256k1_ge_set_gej(&t, &c);
0768bd55 392 secp256k1_ge_get_hex(r131, &t);
607884fc
PW
393}
394
399c03f2 395#ifdef USE_ENDOMORPHISM
a4a43d75 396static void secp256k1_gej_mul_lambda(secp256k1_gej_t *r, const secp256k1_gej_t *a) {
4732d260
PW
397 static const secp256k1_fe_t beta = SECP256K1_FE_CONST(
398 0x7ae96a2bul, 0x657c0710ul, 0x6e64479eul, 0xac3434e9ul,
399 0x9cf04975ul, 0x12f58995ul, 0xc1396c28ul, 0x719501eeul
400 );
f11ff5be 401 *r = *a;
4732d260 402 secp256k1_fe_mul(&r->x, &r->x, &beta);
607884fc 403}
399c03f2 404#endif
607884fc 405
7a4b7691 406#endif
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