#include "mpn_extras.h"
#include "fexpr.h"
void
fexpr_arg(fexpr_t res, const fexpr_t expr, slong i)
{
const ulong * data;
slong j, size;
ulong type = FEXPR_TYPE(expr->data[0]);
if (FEXPR_TYPE_CALL0 <= type && type <= FEXPR_TYPE_CALL4)
{
data = expr->data + FEXPR_HEADER_SIZE;
data += FEXPR_SIZE(data[0]);
for (j = 0; j < i; j++)
data += FEXPR_SIZE(data[0]);
size = FEXPR_SIZE(data[0]);
fexpr_fit_size(res, size);
flint_mpn_copyi(res->data, data, size);
}
else if (type == FEXPR_TYPE_CALLN)
{
data = expr->data + expr->data[3 + i / 4];
for (j = 0; j < i % 4; j++)
data += FEXPR_SIZE(data[0]);
size = FEXPR_SIZE(data[0]);
fexpr_fit_size(res, size);
flint_mpn_copyi(res->data, data, size);
}
else
{
flint_throw(FLINT_ERROR, "fexpr_arg: a non-atomic expression is required\n");
}
}
void
fexpr_view_arg(fexpr_t res, const fexpr_t expr, slong i)
{
const ulong * data;
slong j;
ulong type = FEXPR_TYPE(expr->data[0]);
if (FEXPR_TYPE_CALL0 <= type && type <= FEXPR_TYPE_CALL4)
{
data = expr->data + FEXPR_HEADER_SIZE;
data += FEXPR_SIZE(data[0]);
for (j = 0; j < i; j++)
data += FEXPR_SIZE(data[0]);
res->data = (ulong *) data;
res->alloc = 0;
}
else if (type == FEXPR_TYPE_CALLN)
{
data = expr->data + expr->data[3 + i / 4];
for (j = 0; j < i % 4; j++)
data += FEXPR_SIZE(data[0]);
res->data = (ulong *) data;
res->alloc = 0;
}
else
{
flint_throw(FLINT_ERROR, "fexpr_view_arg: a non-atomic expression is required\n");
}
}