<div dir="ltr">Yes, the suggestion is to extend the set of algorithms to include the lossless (fpzip) and lossy (fpz) algorithms.<div><br></div><div> -- Paul</div></div><br><div class="gmail_quote gmail_quote_container"><div dir="ltr" class="gmail_attr">On Mon, Oct 27, 2025 at 11:34 AM peter teuben via fitsbits <<a href="mailto:fitsbits@listmgr.nrao.edu">fitsbits@listmgr.nrao.edu</a>> wrote:<br></div><blockquote class="gmail_quote" style="margin:0px 0px 0px 0.8ex;border-left:1px solid rgb(204,204,204);padding-left:1ex"><u></u>
<div>
<p>I'm not quite understanding how this would be implemented. Is
this a new BITPIX ? Or does it only apply to a new extension.
like how BINTABLE was done?</p>
<p>I get worried if we encode (compression) algorithms in order to
decode FITS files.</p>
<p> - peter<br>
</p>
<div>On 10/27/25 11:13, Barrett, Paul via
fitsbits wrote:<br>
</div>
<blockquote type="cite">
<div dir="ltr">I would like to suggest that FITS add the <a href="https://computing.llnl.gov/projects/fpzip" target="_blank">fpzip</a> floating point compression
algorithm to the FITS standard. fpzip is primarily designed for
lossless compression but also has a provision for lossy
compression.
<div><br>
</div>
<div>I will be adding it to FITSFiles.jl, a pure Julia
implementation of the FITS standard.</div>
<div><br>
</div>
<div> -- Paul</div>
<div><br>
</div>
<div><br>
</div>
<span class="gmail_signature_prefix">-- </span><br>
<div dir="ltr" class="gmail_signature">
<div dir="ltr">Paul Barrett, PhD
<div>Department of Physics</div>
<div>The George Washington University</div>
<div>Washington, DC 20052</div>
<div><br>
</div>
</div>
</div>
</div>
<br>
<fieldset></fieldset>
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