Use pointers for scalars too
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2281cce711
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@ -833,14 +833,14 @@ void bytes_to_bls_field(BLSFieldElement *out, const uint8_t bytes[32]) {
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/**
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* Compute linear combinations of a sequence of vectors with some scalars
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*/
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void vector_lincomb(fr_t out[], const fr_t *vectors[], const fr_t *scalars, uint64_t n, uint64_t m) {
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void vector_lincomb(fr_t out[], const fr_t* vectors[], const fr_t* scalars[], uint64_t n, uint64_t m) {
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fr_t tmp;
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uint64_t i, j;
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for (j = 0; j < m; j++)
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out[j] = fr_zero;
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for (i = 0; i < n; i++) {
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for (j = 0; j < m; j++) {
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fr_mul(&tmp, &scalars[i], vectors[i * m + j]);
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fr_mul(&tmp, scalars[i], vectors[i * m + j]);
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fr_add(&out[j], &out[j], &tmp);
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}
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}
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@ -106,7 +106,7 @@ void free_trusted_setup(KZGSettings *s);
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void bytes_to_bls_field(BLSFieldElement *out, const uint8_t bytes[32]);
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void vector_lincomb(BLSFieldElement out[], const BLSFieldElement *vectors[], const BLSFieldElement *scalars, uint64_t num_vectors, uint64_t vector_len);
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void vector_lincomb(BLSFieldElement out[], const BLSFieldElement* vectors[], const BLSFieldElement* scalars[], uint64_t num_vectors, uint64_t vector_len);
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void g1_lincomb(KZGCommitment *out, const KZGCommitment points[], const BLSFieldElement scalars[], uint64_t num_points);
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@ -108,7 +108,7 @@ void free_poly_l(poly_l *p);
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// kzg_proofs.c
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//
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void fr_vector_lincomb(fr_t out[], const fr_t *vectors[], const fr_t *scalars, uint64_t n, uint64_t m);
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void fr_vector_lincomb(fr_t out[], const fr_t* vectors[], const fr_t* scalars[], uint64_t n, uint64_t m);
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/**
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* Stores the setup and parameters needed for computing KZG proofs.
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@ -31,14 +31,14 @@
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/**
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* Compute linear combinations of a sequence of vectors with some scalars
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*/
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void fr_vector_lincomb(fr_t out[], const fr_t *vectors[], const fr_t *scalars, uint64_t n, uint64_t m) {
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void fr_vector_lincomb(fr_t out[], const fr_t* vectors[], const fr_t* scalars[], uint64_t n, uint64_t m) {
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fr_t tmp;
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uint64_t i, j;
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for (j = 0; j < m; j++)
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out[j] = fr_zero;
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for (i = 0; i < n; i++) {
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for (j = 0; j < m; j++) {
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fr_mul(&tmp, &scalars[i], vectors[i * m + j]);
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fr_mul(&tmp, scalars[i], vectors[i * m + j]);
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fr_add(&out[j], &out[j], &tmp);
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}
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}
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@ -748,20 +748,20 @@ void fr_vector_lincomb_simple_test(void) {
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const fr_t* vectors[] = { &v1[0], &v1[1], &v1[2],
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&v2[0], &v2[1], &v2[2] };
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fr_t scalars[2] = { fr_zero, fr_one };
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fr_vector_lincomb(out, (const fr_t**)vectors, (fr_t*)scalars, n, m);
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const fr_t* scalars[2] = { &fr_zero, &fr_one };
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fr_vector_lincomb(out, (const fr_t**)vectors, (const fr_t**)scalars, n, m);
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for (i = 0; i < m; i++) {
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TEST_CHECK(fr_equal(&out[i], &v2[i]));
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}
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scalars[0] = fr_one; scalars[1] = fr_zero;
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fr_vector_lincomb(out, (const fr_t**)vectors, (fr_t*)scalars, n, m);
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scalars[0] = &fr_one; scalars[1] = &fr_zero;
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fr_vector_lincomb(out, (const fr_t**)vectors, (const fr_t**)scalars, n, m);
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for (i = 0; i < m; i++) {
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TEST_CHECK(fr_equal(&out[i], &v1[i]));
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}
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scalars[1] = fr_one;
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fr_vector_lincomb(out, (const fr_t**)vectors, (fr_t*)scalars, n, m);
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scalars[1] = &fr_one;
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fr_vector_lincomb(out, (const fr_t**)vectors, (const fr_t**)scalars, n, m);
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for (i = 0; i < m; i++) {
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fr_add(&tmp, &v1[i], &v2[i]);
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TEST_CHECK(fr_equal(&out[i], &tmp));
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