@@ -220,7 +220,6 @@ static int secp256k1_ecmult_wnaf(int *wnaf, int len, const secp256k1_scalar *a,
220
220
}
221
221
222
222
struct secp256k1_strauss_point_state {
223
- secp256k1_scalar na_1 , na_lam ;
224
223
int wnaf_na_1 [129 ];
225
224
int wnaf_na_lam [129 ];
226
225
int bits_na_1 ;
@@ -250,16 +249,17 @@ static void secp256k1_ecmult_strauss_wnaf(const struct secp256k1_strauss_state *
250
249
size_t no = 0 ;
251
250
252
251
for (np = 0 ; np < num ; ++ np ) {
252
+ secp256k1_scalar na_1 , na_lam ;
253
253
if (secp256k1_scalar_is_zero (& na [np ]) || secp256k1_gej_is_infinity (& a [np ])) {
254
254
continue ;
255
255
}
256
256
state -> ps [no ].input_pos = np ;
257
257
/* split na into na_1 and na_lam (where na = na_1 + na_lam*lambda, and na_1 and na_lam are ~128 bit) */
258
- secp256k1_scalar_split_lambda (& state -> ps [ no ]. na_1 , & state -> ps [ no ]. na_lam , & na [np ]);
258
+ secp256k1_scalar_split_lambda (& na_1 , & na_lam , & na [np ]);
259
259
260
260
/* build wnaf representation for na_1 and na_lam. */
261
- state -> ps [no ].bits_na_1 = secp256k1_ecmult_wnaf (state -> ps [no ].wnaf_na_1 , 129 , & state -> ps [ no ]. na_1 , WINDOW_A );
262
- state -> ps [no ].bits_na_lam = secp256k1_ecmult_wnaf (state -> ps [no ].wnaf_na_lam , 129 , & state -> ps [ no ]. na_lam , WINDOW_A );
261
+ state -> ps [no ].bits_na_1 = secp256k1_ecmult_wnaf (state -> ps [no ].wnaf_na_1 , 129 , & na_1 , WINDOW_A );
262
+ state -> ps [no ].bits_na_lam = secp256k1_ecmult_wnaf (state -> ps [no ].wnaf_na_lam , 129 , & na_lam , WINDOW_A );
263
263
VERIFY_CHECK (state -> ps [no ].bits_na_1 <= 129 );
264
264
VERIFY_CHECK (state -> ps [no ].bits_na_lam <= 129 );
265
265
if (state -> ps [no ].bits_na_1 > bits ) {
0 commit comments