After a little more searching, it appears that I should use a Pseudo
tty( right?). However, the programming guide gives no information on
how to actually do this. Any help would be greatly appreciated
(copying and pasting input and output is less than ideal).

On Jun 10, 10:15 am, "M. Yurko" <[EMAIL PROTECTED]> wrote:
> Mike, thanks for the code. This is just what I need and works well
> from the command line. However, I'm a bit of a SAGE and linux newbie
> and I'm unsure about the best way of integrating this with SAGE. I
> checked the programming guide, but I only have some basic Python
> experience and have never done anything with C++ before. If it
> matters, I'm using Ubuntu 8.04 and have SAGE 3.0.2.
>
> On Jun 8, 11:15 pm, Michael <[EMAIL PROTECTED]> wrote:
>
> > My package has routines for the incomplete gamma function, and the
> > logarithmic
> > integral is a special case of that. For the incomplete gamma function
> > I use a
> > combination of series, asumptotics, and continued fractions.  The
> > relevant file
> > is Lgamma.h in the include directory of my L-function 
> > package:http://pmmac03.math.uwaterloo.ca/~mrubinst/L_function_public/CODE/
>
> > Mike
>
> > On Jun 7, 4:08 pm, "William Stein" <[EMAIL PROTECTED]> wrote:
>
> > > On Sat, Jun 7, 2008 at 12:54 PM, M. Yurko <[EMAIL PROTECTED]> wrote:
>
> > > > Is there any way for SAGE to calculate Li(x) (logarithmic integral)
> > > > for complex inputs?
>
> > > I don't think that functionality is directly exposed in Sage in any easy
> > > to use way.  I've cc'd Mike Rubinstein who has probably written fast
> > > C++ code (that is included with sage) in hopes that he will have a comment
> > > to make.
>
> > > William

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