mirror of
https://github.com/fish-shell/fish-shell
synced 2024-12-30 14:53:11 +00:00
608 lines
No EOL
14 KiB
Text
608 lines
No EOL
14 KiB
Text
#! @sed@ -f
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#.
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# A Doxygen filter for building Fish's lexicon, for documentation bling.
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#.
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# Written specially for Fish, the shell for the 90's, in sed, the state of the
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# art text processor from the 70's. Who's sed? sed's dead, baby, sed's dead.*
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# by Mark Griffiths <mark@thebespokepixel.com> *but quite portable
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#.
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# Finds /fish../endfish blocks in documentation source files and enhances
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# markup. Requires that the four character word 'classes' declared here are
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# added to Doxyfiles as aliases i.e.:
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#.
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# Enhance for HTML Help pages (Doxyfile.user)…
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# ALIASES = "fish=\htmlonly[block] \n<pre class=\"fish\">"
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# ALIASES += "fish{1}=\htmlonly[block] \n<pre class=\"fish \1\">"
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# ALIASES += "endfish=</pre>\endhtmlonly \n"
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#.
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# ALIASES += "blah{1}=<span class=\"comment\">\1</span>"
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# ALIASES += "cmnd{1}=<span class=\"command\">\1</span>" and so on...
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#.
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# And simplify for man pages (Doxyfile.help)…
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# ALIASES = "fish=<pre>"
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# ALIASES += "fish{1}=<pre>"
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# ALIASES += "endfish=</pre>"
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#.
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# ALIASES += "blah{1}=\1"
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# ALIASES += "cmnd{1}=<em>\1</em>"...
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#.
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# It's meant to only ever be run once, during make, as Doxygen's 'INPUT
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# FILTER', though can be run interactively by passing a file in via stdin. It
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# wont respond to arguments.
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#.
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# It's most easily tested by passing test strings into the compiled script:
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#.
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# echo "/fish Line to test" | ./fish_lexicon_filter
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#.
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# The, at times, archiac looking regex is down to ensuring portable sed BREs
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#.
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# Licensed under whatever terms are most compatible with Fish's GPLv2 license,
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# bascially free to use/reuse/redistribute/laugh at/be inspired by. Don't
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# pretend it's your code unless you've spent more late nights on it than me but
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# if it saves you a late night, do what you can to help rebalance karma. If it
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# doesn't work or breaks something, it's your fault for using it: if it seems
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# to work it's more likely a hallucination than anything based in reality.
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#.
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# Pattern flow control for scanning doc.h
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/\\fish/,/\\endfish/ {
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# Open \fish block, firstly it it's on it's own line
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/^\\fish$/b
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/^\\fish{[^}]*}$/b
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# Then if it's inline. Remove and process immediately...
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/^\\fish.*$/ {
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# Catch @ symbol
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s/@/(at)/
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s/^\\fish//
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s/\\endfish//
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b html
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}
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# Output blank lines
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/^$/b
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# Inside \fish block. Process...
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/\\endfish/!{
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# Catch @ symbol
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s/@/((d))/
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# Preprocess HTML and HTML-like formatting
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/<[^>]*>/ {
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b html
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}
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# Process the rest
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b process
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}
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# End block
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/\\endfish/b
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}
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#.
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# This is not the pattern we're looking for
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b
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#.
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# Process any HTML tags.
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# Structured to reduce sed's greediness.
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:html
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# Spans
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s|<span style=['"]\([^'"][^'"]*\)">|@span{\1,|
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s|<span class=['"]\([^'"][^'"]*\)">|@spcl{\1,|
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s|</span>|}|
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#.
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# Bold
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s|<b>|@bold{|
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s|<b [^>]*>|@bold{|
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s|</b>|}|
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#.
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# Strong (synonimous with emphasis)
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s|<strong>|@bold{|
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s|<strong [^>]*>|@bold{|
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s|</strong>|}|
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#.
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# EMPHasis
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s|<em>|@emph{|
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s|<em [^>]*>|@emph{|
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s|</em>|}|
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#.
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# Italic (synonimous with emphasis)
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s|<i>|@emph{|
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s|<i [^>]*>|@emph{|
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s|</i>|}|
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#.
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# UNDeRline
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s|<u>|@undr{|
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s|<u [^>]*>|@undr{|
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s|</u>|}|
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t html
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#.
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# Some handy non-standard extensions
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# autoSuGgeSTion
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s|<s>|@sgst{|
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s|<s [^>]*>|@sgst{|
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s|</s>|}|
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#.
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# MaTCH
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s|<m>|@mtch{|
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s|<m [^>]*>|@mtch{|
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s|</m>|}|
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#.
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# SearchMaTCh
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s|<sm>|@smtc{|
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s|<sm [^>]*>|@smtc{|
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s|</sm>|}|
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#.
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# ERrOR
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s|<error>|@eror{|
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s|<error [^>]*>|@eror{|
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s|</error>|}|
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#.
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# AsIs - protect from auto-formatting
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s|<asis>|@asis{|
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s|</asis>|}|
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#.
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# OUTPut - protect from auto-formatting
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s|<outp>|@outp{|
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s|</outp>|}|
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t html
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#.
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# Clean other unhandled html
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s|<\([A-Za-z][A-Za-z]*\)[^>]*>\([^<]*\)</\1>|\2|
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t html
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#.
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# Start processing entities
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:process
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# Output:
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# Line marked as output pass through
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/@outp/ {
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b
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}
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# Comments:
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# Capture full line comments
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/^\( *\)#\(.*\)$/ {
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# Assume any line starting with a # is complete
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s//\1@blah{\2}/
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t
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}
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# Match sub-line comments
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/#[0-9a-fA-F][0-9a-fA-F][0-9a-fA-F]/ ! {
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s/#\(.*$\)/\\\
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<@blah{#\1}\
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/
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}
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#.
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# Protected entities These shouldn't allow nested structure, so we move them
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# to a marked, new line for a future extract/process/insert action.
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#.
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# AsIs block - resists formatting.
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s/@asis{\(.*\)}/\\\
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<@asis{\1}\
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/g
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#.
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# Manual <span>
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s/@span{\(.*\)}/\\\
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<@span{\1}\
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/g
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#.
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# String Literals
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s/"\([^"]*\)"/\\\
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<@dblq{\1}\
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/g
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s/'\([^']*\)'/\\\
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<@sglq{\1}\
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/g
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#.
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# AutoSuggestions.
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s/@sgst{\([^}]*\)}/\\\
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<@sgst{\1}\
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/
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#.
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# Command/Function options
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# Short options
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s/ -\([A-Za-z][A-Za-z]*\)\([^A-Za-z}]\)/ \\\
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<@opts{-\1}\
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\2/g
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#.
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# Long options
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s/ --\([A-Za-z][A-Za-z0-9=_-]*\)\([^A-Za-z0-9=_-]*\)/ \\\
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<@opts{--\1}\
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\2/g
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#.
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# Prompt
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s/~>_/\\\
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<@prmt{\
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<@path{~}\
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}/
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s/^>_/@prmt/
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#.
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# Cursor
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#.
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s/___$/@curs/
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s/___\(.\)/\\\
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<@curs{\1}\
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/
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#.
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# Paths
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/\n<@dblq[^}]*[~/]/b protect
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/\n<@sglq[^}]*[~/]/b protect
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/\n<@span[^}]*[~/]/b protect
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#.
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# Normal Directory
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s|mkdir |mkdir :|
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s|\([~/:][/]*[.A-Za-z_0-9/-]*\)\\ |\1=|g
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s| \([~/][/]*[.A-Za-z_0-9/=-]*\)| \\\
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<@path{\1}\
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|g
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s| \(:[/]*[.A-Za-z_0-9/=-]*\)| \\\
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<@path{\1}\
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|g
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t protect
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#.
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# Dot Relative Directory (no spaces in path)
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s| \(./[A-Za-z_0-9/-]*\)| \\\
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<@path{\1}\
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|g
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b protect
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#.
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# Tidy up. Merge back 'pure' entities from hold space.
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:tidy
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#.
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# Convert loose text to arguments
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s/ \([a-zA-Z0-9+%*.-][{},a-zA-Z0-9%*._/?!=-]*\)/ @args{\1}/g
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#.
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# Or when tight to a newline
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s|\n\([a-zA-Z0-9+%*.-][{},a-zA-Z0-9%*._/?!-]*\)|\
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@args{\1}|g
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#.
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# Or when tight to the beginning
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s|^\([a-zA-Z][{},a-zA-Z0-9%*._/?!-]*\)|@args{\1}|g
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#.
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# Pick up loose text after markup.
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s/\([})]\)\([a-zA-Z0-9+%*.,][,a-zA-Z0-9%*._/?!-]*\);/\1@args{\2};/g
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s/\([})]\)\([a-zA-Z0-9+%*.,][,a-zA-Z0-9%*._/?!-]*\)$/\1@args{\2}/g
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#.
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# Uncomment the following 2 lines (ss) to log the pattern buffer.
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s/^.*$/Pattern : &/w lexicon.log
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s/^Pattern : //
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#.
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# Uncomment the following 4 lines (xssx) to log the hold buffer.
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x
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s/^.*$/HoldBufr: &/w lexicon.log
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s/^HoldBufr: //
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x
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#.
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# Tack the hold space to the end of the pattern buffer.
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G
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#.
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# Uncomment the folowing two lines (ss) to log the buffer join.
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s/^.*$/Joined : &/w lexicon.log
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s/^Joined : //
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#.
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# Iterate over alternate lines, matching '<' to '\'
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:join
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s,\([^\\ ]*\)\\\n\([^<]*\)<\(@[^}]*[}\\]\),\1\3\2,
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t join
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# Clean up stray new lines
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s/\n//g
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#.
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# Uncomment the folowing two lines (ss) to log the buffer before 'cleaning'.
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s/^.*$/PreClean: &/w lexicon.log
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s/^PreClean: //
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# Clean up special cases
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#.
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/@blah/{
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s/\(blah{[^@]*\)@sglq{\([^}]*\)}/\1'\2'/
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s/\(blah{[^@]*\)@dblq{\([^}]*\)}/\1"\2"/
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s/\(blah{[^@]*\)@....{\([^}]*\)}/\1\2/
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}
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/@dblq/{
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:cleandblq
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s/\(dblq{[^@}<]*\)[<]*@...[^q]{\([^}]*\)}/\1\2/
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t cleandblq
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}
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/@sglq/{
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:cleansglq
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s/\(sglq{[^@}<]*\)[<]*@...[^q]{\([^}]*\)}/\1\2/
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t cleansglq
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}
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/@vars/{
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:cleanvars
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s/\(vars{@optr{$}[^@}]*\)@cmnd{\([^}]*\)}/\1\2/
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s/\(vars{@optr{$}[^@}]*\)@func{\([^}]*\)}/\1\2/
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s/\(vars{@optr{$}[^@}]*\)@sbin{\([^}]*\)}/\1\2/
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s/\(vars{@optr{$}[^@}]*\)@args{\([^}]*\)}/\1\2/
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t cleanvars
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}
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/@redr/{
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:cleanredr
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s/\(redr{[^@}]*\)@cmnd{\([^}]*\)}/\1\2/
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s/\(redr{[^@}]*\)@func{\([^}]*\)}/\1\2/
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s/\(redr{[^@}]*\)@sbin{\([^}]*\)}/\1\2/
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s/\(redr{[^@}]*\)@fsfo{\([^}]*\)}/\1\2/
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s/\(redr{[^}]*\)}\( *\)@path{\([^}]*\)/\1\2\3/
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t cleanredr
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}
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/@sgst/{
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s/@sgst{<@/@sgst{@/
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:cleansgst
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s/\(sgst{@curs{.}[^@]*\)@cmnd{\([^}]*\)}/\1\2/
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s/\(sgst{@curs{.}[^@]*\)@func{\([^}]*\)}/\1\2/
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s/\(sgst{@curs{.}[^@]*\)@sbin{\([^}]*\)}/\1\2/
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s/\(sgst{@curs{.}[^@]*\)@opts{\([^}]*\)}/\1\2/
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s/\(sgst{@curs{.}[^@]*\)@path{\([^}]*\)}/\1\2/
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s/\(sgst{@curs{.}[^@]*\)@args{\([^}]*\)}/\1\2/
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s/\(sgst{@curs{.}[^@]*\)@fsfo{\([^}]*\)}/\1\2/
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t cleansgst
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}
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/@fsfo/{
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:cleanfsfo
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s/\(fsfo{[^@}]*\)@cmnd{\([^}]*\)}/\1\2/
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s/\(fsfo{[^@}]*\)@func{\([^}]*\)}/\1\2/
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s/\(fsfo{[^@}]*\)@sbin{\([^}]*\)}/\1\2/
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t cleanfsfo
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}
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/@prmt{/{
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s/@prmt{<@path/@prmt{@path/
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}
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#.
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# Restore Paths
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/@fsfo/ {
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s/\(@fsfo{[^=]*\)=/\1 /
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}
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/@path/ {
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:cleanpath
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s/\(@path{[^:]*\):/\1/
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s/\(@path{[^=]*\)=/\1\\ /
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t cleanpath
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s/@path{}//
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}
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#.
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# Finally, restructure to follow Fish's command [arguments] semantics.
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# Find the initial command, and change any others to arguments, up to a |, ( or ;
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# Assumes that a valid line will start with either a builtin, a function or a binary.
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#.
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# 'if' and 'for' seem to be special cases
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#.
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# Uncomment the folowing two lines (ss) to log the buffer before semantic conversion.
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s/^.*$/PreArgs : &/w lexicon.log
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s/^PreArgs : //
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#.
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# Find initial commands/functions/binaries
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#.
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# Store prmt, if present
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#.
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/@prmt/ {
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h
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s/^\(@prmt *\).*$/\1/
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x
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s/^@prmt *//
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}
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#.
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# Special case for one-line 'if' statements
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/@cmnd{if}/ {
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s//@xcmd{if}/
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s/@cmnd{set}/@xcmd{set}/
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s/@cmnd{not}/@xcmd{not}/
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s/@cmnd{else}/@xcmd{else}/
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s/@cmnd{contains}/@xcmd{contains}/
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s/@cmnd{test}/@xcmd{test}/
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s/@cmnd{end}/@xcmd{end}/
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s/@sbin{grep}/@xbin{grep}/
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}
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# one-line 'for' statements
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/@cmnd{for}/ {
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s//@xcmd{for}/
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s/@args{in}/@xcmd{in}/
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}
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# one-line 'begin' statements
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/@cmnd{begin}/ {
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s//@xcmd{begin}/
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s/@cmnd{end}/@xcmd{end}/
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}
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# one-line 'break' statements
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/@cmnd{break}/ {
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s//@xcmd{break}/
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s/@cmnd{end}/@xcmd{end}/
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}
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# one-line 'continue' statements
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/@cmnd{continue}/ {
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s//@xcmd{continue}/
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s/@cmnd{end}/@xcmd{end}/
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}
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# one-line 'switch' statements
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/@cmnd{switch}/ {
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s//@xcmd{switch}/
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s/@cmnd{case}/@xcmd{case}/
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s/@cmnd{end}/@xcmd{end}/
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}
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# one-line 'function' statements
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/@cmnd{function}/ {
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s//@xcmd{function}/
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s/@cmnd{return}/@xcmd{return}/
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s/@cmnd{end}/@xcmd{end}/
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}
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# one-line 'bind' statements - special input functions
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/@cmnd{bind}/ {
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s//@xcmd{bind}/
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s/@....{\([a-z]*\)}\(-[a-z-]*\)/@args{\1\2}/
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}
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# one-line 'builtin' statements
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s/@cmnd{builtin} @cmnd/@xcmd{builtin} @xcmd/g
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s/@cmnd{builtin} @sbin/@xcmd{builtin} @xbin/g
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s/@cmnd{builtin} @func/@xcmd{builtin} @xfnc/g
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#.
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# one-line 'command' statements
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s/@cmnd{command} @cmnd/@xcmd{command} @xcmd/g
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s/@cmnd{command} @sbin/@xcmd{command} @xbin/g
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s/@cmnd{command} @func/@xcmd{command} @xfnc/g
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#.
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# one-line 'and/or' statements
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s/@cmnd{and} @cmnd/@xcmd{and} @xcmd/g
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s/@cmnd{and} @sbin/@xcmd{and} @xbin/g
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s/@cmnd{and} @func/@xcmd{and} @xfnc/g
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s/@cmnd{or} @cmnd/@xcmd{or} @xcmd/g
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s/@cmnd{or} @sbin/@xcmd{or} @xbin/g
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s/@cmnd{or} @func/@xcmd{or} @xfnc/g
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#.
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s/^\( *\)@sbin/\1@xbin/
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s/\( *[;()] *\)@sbin/\1@xbin/g
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s/\( *@redr{|} *\)@sbin/\1@xbin/g
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s/^\( *\)@cmnd/\1@xcmd/
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s/\( *[;()] *\)@cmnd/\1@xcmd/g
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s/\( *@redr{|} *\)@cmnd/\1@xcmd/g
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s/^\( *\)@func/\1@xfnc/
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s/\( *[;()] *\)@func/\1@xfnc/g
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s/\( *@redr{|} *\)@func/\1@xfnc/g
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s/\\@cmnd{\([^}]*\)/@args{@bksl{\1}/g
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s/@cmnd/@args/g
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s/@func/@args/g
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s/@sbin/@args/g
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#.
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s/^.*$/PostArgs: &/w lexicon.log
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s/^PostArgs: //
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#.
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s/xcmd/cmnd/g
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s/xfnc/func/g
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s/xbin/sbin/g
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x
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/^@prmt/ {
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G
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s/^@prmt \n/@prmt /
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}
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/^@prmt/ ! {
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x
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}
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#.
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# Mark up sesitive character entities.
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#.
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:entities
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s/</\</g
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s/>/\>/g
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s/((d))/@/g
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s/\\\([()]\)/@optr{@bksl{\1}}/g
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s/\([()]\)/@optr{\1}/g
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s/\\n/@bksl{n}/
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#.
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# Uncomment the folowing two lines (ss) to log the final output, sent to Doxygen.
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s/^.*$/Output : &\
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\
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/w lexicon.log
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s/^Output : //
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s/\n\n$//
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#.
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# Lines are reassembled, so branch to end
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b
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# === Main End ===
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#.
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#.
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# === Subroutines ===
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# Branched to when content requires.
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#.
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# Move protected content to hold space and mark up other entities.
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:protect
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s/^.*$/Input : &/w lexicon.log
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s/^Input : //
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h
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# Clear out any content that has already been marked up, to prevent futher
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# markup on words that should be left alone.
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#.
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:patternflush
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s/\n<@[^}]*[}\\]//
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s/\\ [^\\]*$/\\/
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t patternflush
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s/\n$//g
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#.
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# Swap the pattern and hold buffers and remove unmarked lines and extra
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# characters. Basically the inverse of the 'patternflush' action, with
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# additional trailing characters stripped.
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x
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/^\<@[^}]*$/ ! {
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s/[^\<]*//
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s/^ *\\\n//g
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s/\n *\\//g
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s/[()] \\//g
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s/^[^\<][^@][^\\]*//
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s/\n[]|;) ][^\\]*\\//
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s/\n[]|;) a-zA-z0-9-][^\\]*$//
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s/\n[]|;)}]\\//
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s/\n[]|;)}]\n//
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s/\n[]|;)}]$//
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s/[()]$//
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s/}@curs/}/
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s/\n@curs$//
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s/\n[^\<@][^\\]*\\//
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s/\n[^\<@][^\\]*//
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s/^\\//
|
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s/\n$//g
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}
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s/\\\n/\
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/
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s/\< \n//
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s/^[a-z][a-z]* \n//
|
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#.
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# Swap the buffers back.
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|
x
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|
#.
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# A special case. Tidy up after commands.
|
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# Redirectors
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s/\([^{|] *\)|/\1@redr{|}/g
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s/&$/@redr{\&}/
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s/\([^{&] *\)&[^a-z]/\1@redr{\&}/g
|
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s/\([^{<>^] *\)\([0-9]* *[<>^][<>^]*[^@][a-zA-Z0-9._-]*\)/\1@redr{\2}/g
|
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s/\\}/}\\/g
|
|
#.
|
|
# Now we can add in 'unsafe' entities that would be too greedy.
|
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# Arrays
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s/[[][0-9$a-zA-Z_;. -]*]/@args{&}/g
|
|
#.
|
|
# Declared Variables
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s/\($[$]*\)\([A-Za-z_0-9][A-Za-z_0-9]*\)/@vars{@optr{\1}\2}/g
|
|
#.
|
|
# Files
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|
s/\([^@]\)\([A-Za-z0-9_-][A-Za-z0-9_-]*\.[a-z0-9*][a-z0-9*]*\)/\1@fsfo{\2}/g
|
|
#.
|
|
# Fold Files into Paths
|
|
s/\(@path{[^}]*\)}@fsfo/\1}@fsfo/
|
|
#.
|
|
:commands
|
|
#.
|
|
#### This section is built in the Makefile. Just some formatting examples. #####
|
|
#.
|
|
# fish commands (cmnd) <- 4 character code that has a Doxygen alias counterpart
|
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# template : s/[[:<:]]function[[:>:]]/@cmnd{&}/
|
|
#.
|
|
# s,[[:<:]]function[[:>:]],@cmnd{function},g
|
|
# s,[[:<:]]begin[[:>:]],@cmnd{begin},g
|
|
# ...
|
|
#.
|
|
# fish functions (func)
|
|
# Populated by 'public' functions' filename.
|
|
#.
|
|
# s,[[:<:]]fish_pwd[[:>:]],@func{fish_pwd},g
|
|
# s,[[:<:]]fish_prompt[[:>:]],@func{fish_prompt},g
|
|
# ...
|
|
#.
|
|
# Shell Binary (sbin)
|
|
# Populated from completion filenames
|
|
#.
|
|
# s,[[:<:]]seq[[:>:]],@sbin{seq},g
|
|
# s,[[:<:]]rm[[:>:]],@sbin{rm},g
|
|
# ...
|
|
#.
|
|
# Color Variable (clrv)
|
|
# Populated from __fish_config_interactive.fish
|
|
# Allows fish's 'special' color variables to be identified
|
|
#.
|
|
# s,[[:<:]]fish_color_normal[[:>:]],@clrv{fish_color_normal},g
|
|
# s,[[:<:]]fish_color_command[[:>:]],@clrv{fish_color_command},g
|
|
#.
|
|
# Once all of the commands/functions/variables/special's have been marked up,
|
|
# branch back to tidy up and collapse the pattern/hold buffers back to a
|
|
# single line.
|
|
#.
|
|
# b tidy
|
|
#.
|
|
#.
|
|
# Below is a special section that adds vocabuarly to the lexicon during 'make'.
|
|
# As the lexicon is written into the output lexicon_filter, portability is
|
|
# automatically handled.
|
|
#.
|
|
#!# sbin whoami
|
|
#!# sbin mkdir
|
|
#!# sbin basename
|
|
#!# cmnd sleep
|
|
#!# args in |