#include "nmod_vec.h"
#include "fq_nmod.h"
#include "mpoly.h"
#include "fq_nmod_mpoly.h"
int fq_nmod_mpoly_repack_bits(
fq_nmod_mpoly_t A,
const fq_nmod_mpoly_t B,
flint_bitcnt_t Abits,
const fq_nmod_mpoly_ctx_t ctx)
{
int success;
Abits = mpoly_fix_bits(Abits, ctx->minfo);
if (B->bits == Abits || B->length == 0)
{
fq_nmod_mpoly_set(A, B, ctx);
return 1;
}
if (A == B)
return fq_nmod_mpoly_repack_bits_inplace(A, Abits, ctx);
fq_nmod_mpoly_fit_length_reset_bits(A, B->length, Abits, ctx);
success = mpoly_repack_monomials(A->exps, Abits, B->exps, B->bits,
B->length, ctx->minfo);
if (success)
{
slong d = fq_nmod_ctx_degree(ctx->fqctx);
_nmod_vec_set(A->coeffs, B->coeffs, d*B->length);
A->length = B->length;
}
else
{
A->length = 0;
}
return success;
}
int fq_nmod_mpoly_repack_bits_inplace(
fq_nmod_mpoly_t A,
flint_bitcnt_t Abits,
const fq_nmod_mpoly_ctx_t ctx)
{
int success;
ulong * texps;
slong talloc;
slong N = mpoly_words_per_exp(Abits, ctx->minfo);
if (A->bits == Abits)
{
return 1;
}
if (A->length < 1)
{
A->bits = Abits;
return 1;
}
N = mpoly_words_per_exp(Abits, ctx->minfo);
talloc = N*A->length;
texps = FLINT_ARRAY_ALLOC(talloc, ulong);
success = mpoly_repack_monomials(texps, Abits,
A->exps, A->bits, A->length, ctx->minfo);
A->bits = Abits;
if (success)
{
flint_free(A->exps);
A->exps = texps;
A->exps_alloc = talloc;
}
else
{
flint_free(texps);
A->length = 0;
}
return success;
}