Remove the unused prej allocations.
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e5c18892db
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@ -47,7 +47,7 @@
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/* The number of objects allocated on the scratch space for ecmult_multi algorithms */
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#define PIPPENGER_SCRATCH_OBJECTS 6
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#define STRAUSS_SCRATCH_OBJECTS 7
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#define STRAUSS_SCRATCH_OBJECTS 6
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#define PIPPENGER_MAX_BUCKET_WINDOW 12
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@ -209,7 +209,6 @@ struct secp256k1_strauss_point_state {
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};
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struct secp256k1_strauss_state {
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secp256k1_gej* prej;
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secp256k1_fe* zr;
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secp256k1_ge* pre_a;
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secp256k1_ge* pre_a_lam;
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@ -332,14 +331,12 @@ static void secp256k1_ecmult_strauss_wnaf(const struct secp256k1_strauss_state *
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}
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static void secp256k1_ecmult(secp256k1_gej *r, const secp256k1_gej *a, const secp256k1_scalar *na, const secp256k1_scalar *ng) {
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secp256k1_gej prej[ECMULT_TABLE_SIZE(WINDOW_A)];
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secp256k1_fe zr[ECMULT_TABLE_SIZE(WINDOW_A)];
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secp256k1_ge pre_a[ECMULT_TABLE_SIZE(WINDOW_A)];
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struct secp256k1_strauss_point_state ps[1];
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secp256k1_ge pre_a_lam[ECMULT_TABLE_SIZE(WINDOW_A)];
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struct secp256k1_strauss_state state;
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state.prej = prej;
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state.zr = zr;
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state.pre_a = pre_a;
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state.pre_a_lam = pre_a_lam;
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@ -348,7 +345,7 @@ static void secp256k1_ecmult(secp256k1_gej *r, const secp256k1_gej *a, const sec
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}
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static size_t secp256k1_strauss_scratch_size(size_t n_points) {
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static const size_t point_size = (2 * sizeof(secp256k1_ge) + sizeof(secp256k1_gej) + sizeof(secp256k1_fe)) * ECMULT_TABLE_SIZE(WINDOW_A) + sizeof(struct secp256k1_strauss_point_state) + sizeof(secp256k1_gej) + sizeof(secp256k1_scalar);
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static const size_t point_size = (2 * sizeof(secp256k1_ge) + sizeof(secp256k1_fe)) * ECMULT_TABLE_SIZE(WINDOW_A) + sizeof(struct secp256k1_strauss_point_state) + sizeof(secp256k1_gej) + sizeof(secp256k1_scalar);
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return n_points*point_size;
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}
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@ -369,13 +366,12 @@ static int secp256k1_ecmult_strauss_batch(const secp256k1_callback* error_callba
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* constant and strauss_scratch_size accordingly. */
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points = (secp256k1_gej*)secp256k1_scratch_alloc(error_callback, scratch, n_points * sizeof(secp256k1_gej));
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scalars = (secp256k1_scalar*)secp256k1_scratch_alloc(error_callback, scratch, n_points * sizeof(secp256k1_scalar));
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state.prej = (secp256k1_gej*)secp256k1_scratch_alloc(error_callback, scratch, n_points * ECMULT_TABLE_SIZE(WINDOW_A) * sizeof(secp256k1_gej));
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state.zr = (secp256k1_fe*)secp256k1_scratch_alloc(error_callback, scratch, n_points * ECMULT_TABLE_SIZE(WINDOW_A) * sizeof(secp256k1_fe));
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state.pre_a = (secp256k1_ge*)secp256k1_scratch_alloc(error_callback, scratch, n_points * ECMULT_TABLE_SIZE(WINDOW_A) * sizeof(secp256k1_ge));
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state.pre_a_lam = (secp256k1_ge*)secp256k1_scratch_alloc(error_callback, scratch, n_points * ECMULT_TABLE_SIZE(WINDOW_A) * sizeof(secp256k1_ge));
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state.ps = (struct secp256k1_strauss_point_state*)secp256k1_scratch_alloc(error_callback, scratch, n_points * sizeof(struct secp256k1_strauss_point_state));
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if (points == NULL || scalars == NULL || state.prej == NULL || state.zr == NULL || state.pre_a == NULL || state.pre_a_lam == NULL || state.ps == NULL) {
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if (points == NULL || scalars == NULL || state.zr == NULL || state.pre_a == NULL || state.pre_a_lam == NULL || state.ps == NULL) {
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secp256k1_scratch_apply_checkpoint(error_callback, scratch, scratch_checkpoint);
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return 0;
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}
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