if (r_is_at_infinity) {
if (!EC_POINT_copy(r, val_sub[i][digit >> 1]))
goto err;
+
+ /*-
+ * Apply coordinate blinding for EC_POINT.
+ *
+ * The underlying EC_METHOD can optionally implement this function:
+ * ec_point_blind_coordinates() returns 0 in case of errors or 1 on
+ * success or if coordinate blinding is not implemented for this
+ * group.
+ */
+ if (!ec_point_blind_coordinates(group, r, ctx)) {
+ ECerr(EC_F_EC_WNAF_MUL, EC_R_POINT_COORDINATES_BLIND_FAILURE);
+ goto err;
+ }
+
r_is_at_infinity = 0;
} else {
if (!EC_POINT_add
temp = BN_CTX_get(ctx);
if (temp == NULL) {
ECerr(EC_F_EC_GFP_SIMPLE_BLIND_COORDINATES, ERR_R_MALLOC_FAILURE);
- goto err;
+ goto end;
}
- /* make sure lambda is not zero */
+ /*-
+ * Make sure lambda is not zero.
+ * If the RNG fails, we cannot blind but nevertheless want
+ * code to continue smoothly and not clobber the error stack.
+ */
do {
- if (!BN_priv_rand_range(lambda, group->field)) {
- ECerr(EC_F_EC_GFP_SIMPLE_BLIND_COORDINATES, ERR_R_BN_LIB);
- goto err;
+ ERR_set_mark();
+ ret = BN_priv_rand_range(lambda, group->field);
+ ERR_pop_to_mark();
+ if (ret == 0) {
+ ret = 1;
+ goto end;
}
} while (BN_is_zero(lambda));
/* if field_encode defined convert between representations */
- if (group->meth->field_encode != NULL
- && !group->meth->field_encode(group, lambda, lambda, ctx))
- goto err;
- if (!group->meth->field_mul(group, p->Z, p->Z, lambda, ctx))
- goto err;
- if (!group->meth->field_sqr(group, temp, lambda, ctx))
- goto err;
- if (!group->meth->field_mul(group, p->X, p->X, temp, ctx))
- goto err;
- if (!group->meth->field_mul(group, temp, temp, lambda, ctx))
- goto err;
- if (!group->meth->field_mul(group, p->Y, p->Y, temp, ctx))
- goto err;
- p->Z_is_one = 0;
+ if ((group->meth->field_encode != NULL
+ && !group->meth->field_encode(group, lambda, lambda, ctx))
+ || !group->meth->field_mul(group, p->Z, p->Z, lambda, ctx)
+ || !group->meth->field_sqr(group, temp, lambda, ctx)
+ || !group->meth->field_mul(group, p->X, p->X, temp, ctx)
+ || !group->meth->field_mul(group, temp, temp, lambda, ctx)
+ || !group->meth->field_mul(group, p->Y, p->Y, temp, ctx))
+ goto end;
+ p->Z_is_one = 0;
ret = 1;
- err:
+ end:
BN_CTX_end(ctx);
return ret;
}