mirror of https://github.com/python/cpython.git
268 lines
6.0 KiB
TeX
268 lines
6.0 KiB
TeX
\documentclass{manual}
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% NOTE: this file controls which chapters/sections of the library
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% manual are actually printed. It is easy to customize your manual
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% by commenting out sections that you're not interested in.
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\title{Python Library Reference}
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\input{boilerplate}
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\makeindex % tell \index to actually write the
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% .idx file
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\makemodindex % ... and the module index as well.
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\begin{document}
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\maketitle
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\ifhtml
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\chapter*{Front Matter\label{front}}
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\fi
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\input{copyright}
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\begin{abstract}
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\noindent
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Python is an extensible, interpreted, object-oriented programming
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language. It supports a wide range of applications, from simple text
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processing scripts to interactive WWW browsers.
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While the \emph{Python Reference Manual} describes the exact syntax and
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semantics of the language, it does not describe the standard library
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that is distributed with the language, and which greatly enhances its
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immediate usability. This library contains built-in modules (written
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in C) that provide access to system functionality such as file I/O
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that would otherwise be inaccessible to Python programmers, as well as
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modules written in Python that provide standardized solutions for many
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problems that occur in everyday programming. Some of these modules
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are explicitly designed to encourage and enhance the portability of
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Python programs.
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This library reference manual documents Python's standard library, as
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well as many optional library modules (which may or may not be
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available, depending on whether the underlying platform supports them
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and on the configuration choices made at compile time). It also
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documents the standard types of the language and its built-in
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functions and exceptions, many of which are not or incompletely
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documented in the Reference Manual.
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This manual assumes basic knowledge about the Python language. For an
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informal introduction to Python, see the \emph{Python Tutorial}; the
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\emph{Python Reference Manual} remains the highest authority on
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syntactic and semantic questions. Finally, the manual entitled
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\emph{Extending and Embedding the Python Interpreter} describes how to
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add new extensions to Python and how to embed it in other applications.
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\end{abstract}
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\tableofcontents
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% Chapter title:
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\input{libintro} % Introduction
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\input{libobjs} % Built-in Types, Exceptions and Functions
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\input{libstdtypes}
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\input{libexcs}
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\input{libfuncs}
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\input{libpython} % Python Services
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\input{libsys}
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\input{libtypes}
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\input{libuserdict}
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\input{liboperator}
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\input{libtraceback}
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\input{libpickle}
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\input{libcopyreg} % really copy_reg
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\input{libshelve}
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\input{libcopy}
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\input{libmarshal}
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\input{libimp}
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%\input{libni}
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\input{libparser}
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\input{libsymbol}
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\input{libtoken}
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\input{libkeyword}
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\input{libtokenize}
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\input{libpyclbr}
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\input{libcode}
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\input{libpprint}
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\input{librepr}
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\input{libpycompile} % really py_compile
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\input{libcompileall}
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\input{libdis}
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\input{libsite}
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\input{libuser}
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\input{libbltin} % really __builtin__
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\input{libmain} % really __main__
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\input{libstrings} % String Services
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\input{libstring}
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\input{libre}
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\input{libregex}
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\input{libregsub}
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\input{libstruct}
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\input{libstringio}
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%\input{libsoundex}
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\input{libmisc} % Miscellaneous Services
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\input{libmath}
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\input{libcmath}
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\input{libwhrandom}
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\input{librandom}
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%\input{librand}
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\input{libbisect}
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\input{libarray}
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\input{libcfgparser}
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\input{libfileinput}
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\input{libcalendar}
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\input{libcmd}
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\input{libshlex}
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\input{liballos} % Generic Operating System Services
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\input{libos}
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\input{libposixpath} % os.path
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\input{libstat}
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\input{libtime}
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\input{libgetpass}
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\input{libgetopt}
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\input{libtempfile}
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\input{liberrno}
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\input{libglob}
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\input{libfnmatch}
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\input{libshutil}
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\input{liblocale}
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\input{libsomeos} % Optional Operating System Services
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\input{libsignal}
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\input{libsocket}
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\input{libselect}
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\input{libthread}
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\input{libthreading}
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\input{libqueue}
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\input{libanydbm}
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\input{libdbhash}
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\input{libwhichdb}
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\input{libbsddb}
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\input{libzlib}
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\input{libgzip}
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\input{libunix} % UNIX Specific Services
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\input{libposix}
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\input{libpwd}
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\input{libgrp}
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\input{libcrypt}
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\input{libdbm}
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\input{libgdbm}
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\input{libtermios}
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\input{libfcntl}
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\input{libposixfile}
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\input{libresource}
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\input{libsyslog}
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\input{libpopen2}
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\input{libcommands}
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\input{libpdb} % The Python Debugger
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\input{libprofile} % The Python Profiler
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\input{internet} % Internet Protocols
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\input{libcgi}
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\input{liburllib}
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\input{libhttplib}
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\input{libftplib}
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\input{libgopherlib}
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\input{libpoplib}
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\input{libimaplib}
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\input{libnntplib}
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\input{libsmtplib}
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\input{libtelnetlib}
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\input{liburlparse}
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\input{libsocksvr}
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\input{libbasehttp}
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\input{netdata}
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\input{libsgmllib}
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\input{libhtmllib}
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\input{libxmllib}
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\input{libformatter}
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\input{librfc822}
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\input{libmimetools}
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\input{libmimewriter}
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\input{libmultifile}
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\input{libbinhex}
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\input{libuu}
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\input{libbinascii}
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\input{libxdrlib}
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\input{libmailcap}
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\input{libmimetypes}
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\input{libbase64}
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\input{libquopri}
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\input{libmailbox}
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\input{libmhlib}
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\input{libmimify}
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\input{libnetrc}
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\input{librestricted}
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\input{librexec}
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\input{libbastion}
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\input{libmm} % Multimedia Services
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\input{libaudioop}
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\input{libimageop}
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\input{libaifc}
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\input{libcolorsys}
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\input{librgbimg}
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\input{libimghdr}
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\input{libsndhdr}
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\input{libcrypto} % Cryptographic Services
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\input{libmd5}
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\input{libsha}
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\input{libmpz}
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\input{librotor}
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%\input{libamoeba} % AMOEBA ONLY
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%\input{libstdwin} % STDWIN ONLY
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\input{libsgi} % SGI IRIX ONLY
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\input{libal}
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\input{libcd}
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\input{libfl}
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\input{libfm}
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\input{libgl}
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\input{libimgfile}
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\input{libjpeg}
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%\input{libpanel}
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\input{libsun} % SUNOS ONLY
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\input{libsunaudio}
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\input{windows} % MS Windows ONLY
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\input{libmsvcrt}
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\input{libwinsound}
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\input{libundoc}
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%
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% The ugly "%begin{latexonly}" pseudo-environments are really just to
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% keep LaTeX2HTML quiet during the \renewcommand{} macros; they're
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% not really valuable.
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%
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%begin{latexonly}
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\renewcommand{\indexname}{Module Index}
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%end{latexonly}
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\input{modlib.ind} % Module Index
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%begin{latexonly}
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\renewcommand{\indexname}{Index}
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%end{latexonly}
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\input{lib.ind} % Index
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\end{document}
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