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170 lines
6.1 KiB
TeX
170 lines
6.1 KiB
TeX
%% Author: Fred L. Drake, Jr. <fdrake@acm.org>
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\section{Standard module \sectcode{pprint}}
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\stmodindex{pprint}
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The \code{pprint} module provides a capability to ``pretty-print''
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arbitrary Python data structures in a form which can be used as input
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to the interpreter. If the formatted structures include objects which
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are not fundamental Python types, the representation may not be
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loadable. This may be the case if objects such as files, sockets,
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classes, or instances are included, as well as many other builtin
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objects which are not representable as Python constants.
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The formatted representation keeps objects on a single line if it can,
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and breaks them onto multiple lines if they don't fit within the
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allowed width. Construct PrettyPrinter objects explicitly if you need
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to adjust the width constraint.
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The \code{pprint} module defines one class:
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\renewcommand{\indexsubitem}{(in module pprint)}
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% First the implementation class:
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\begin{funcdesc}{PrettyPrinter}{...}
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Construct a PrettyPrinter instance. This constructor understands
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several keyword parameters. An output stream may be set using the
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\var{stream} keyword; the only method used on the stream object is the
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file protocol's \code{write()} method. If not specified, the
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PrettyPrinter adopts \code{sys.stdout}. Three additional parameters
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may be used to control the formatted representation. The keywords are
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\var{indent}, \var{depth}, and \var{width}. The amount of indentation
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added for each recursive level is specified by \var{indent}; the
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default is one. Other values can cause output to look a little odd,
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but can make nesting easier to spot. The number of levels which may
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be printed is controlled by \var{depth}; if the data structure being
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printed is too deep, the next contained level is replaced by
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\samp{...}. By default, there is no constraint on the depth of the
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objects being formatted. The desired output width is constrained
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using the \var{width} parameter; the default is eighty characters. If
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a structure cannot be formatted within the constrained width, a best
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effort will be made.
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\begin{verbatim}
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>>> import pprint, sys
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>>> stuff = sys.path[:]
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>>> stuff.insert(0, stuff[:])
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>>> pp = pprint.PrettyPrinter(indent=4)
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>>> pp.pprint(stuff)
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[ [ '',
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'/usr/local/lib/python1.5',
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'/usr/local/lib/python1.5/test',
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'/usr/local/lib/python1.5/sunos5',
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'/usr/local/lib/python1.5/sharedmodules',
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'/usr/local/lib/python1.5/tkinter'],
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'',
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'/usr/local/lib/python1.5',
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'/usr/local/lib/python1.5/test',
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'/usr/local/lib/python1.5/sunos5',
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'/usr/local/lib/python1.5/sharedmodules',
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'/usr/local/lib/python1.5/tkinter']
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>>>
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>>> import parser
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>>> tup = parser.ast2tuple(
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... parser.suite(open('pprint.py').read()))[1][1][1]
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>>> pp = pprint.PrettyPrinter(depth=6)
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>>> pp.pprint(tup)
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(266, (267, (307, (287, (288, (...))))))
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\end{verbatim}
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\end{funcdesc}
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% Now the derivative functions:
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The PrettyPrinter class supports several derivative functions:
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\begin{funcdesc}{pformat}{object}
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Return the formatted representation of \var{object} as a string. The
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default parameters for formatting are used.
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\end{funcdesc}
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\begin{funcdesc}{pprint}{object\optional{, stream}}
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Prints the formatted representation of \var{object} on \var{stream},
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followed by a newline. If \var{stream} is omitted, \code{sys.stdout}
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is used. This may be used in the interactive interpreter instead of a
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\code{print} command for inspecting values. The default parameters
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for formatting are used.
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\begin{verbatim}
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>>> stuff = sys.path[:]
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>>> stuff.insert(0, stuff)
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>>> pprint.pprint(stuff)
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[<Recursion on list with id=869440>,
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'',
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'/usr/local/lib/python1.5',
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'/usr/local/lib/python1.5/test',
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'/usr/local/lib/python1.5/sunos5',
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'/usr/local/lib/python1.5/sharedmodules',
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'/usr/local/lib/python1.5/tkinter']
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\end{verbatim}
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\end{funcdesc}
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\begin{funcdesc}{isreadable}{object}
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Determine if the formatted representation of \var{object} is
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``readable,'' or can be used to reconstruct the value using
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\code{eval()}. Note that this returns false for recursive objects.
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\begin{verbatim}
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>>> pprint.isreadable(stuff)
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0
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\end{verbatim}
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\end{funcdesc}
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\begin{funcdesc}{isrecursive}{object}
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Determine if \var{object} requires a recursive representation.
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\end{funcdesc}
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One more support function is also defined:
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\begin{funcdesc}{saferepr}{object}
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Return a string representation of \var{object}, protected against
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recursive data structures. If the representation of \var{object}
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exposes a recursive entry, the recursive reference will be represented
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as \code{<Recursion on \var{typename} with id=\var{number}>}. The
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representation is not otherwise formatted.
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\begin{verbatim}
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>>> pprint.saferepr(stuff)
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"[<Recursion on list with id=682968>, '', '/usr/local/lib/python1.4', '/usr/loca
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l/lib/python1.4/test', '/usr/local/lib/python1.4/sunos5', '/usr/local/lib/python
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1.4/sharedmodules', '/usr/local/lib/python1.4/tkinter']"
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\end{verbatim}
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\end{funcdesc}
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\subsection{PrettyPrinter Objects}
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PrettyPrinter instances (returned by \code{PrettyPrinter()} above)
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have the following methods.
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\renewcommand{\indexsubitem}{(PrettyPrinter method)}
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\begin{funcdesc}{pformat}{object}
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Return the formatted representation of \var{object}. This takes into
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account the options passed to the PrettyPrinter constructor.
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\end{funcdesc}
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\begin{funcdesc}{pprint}{object}
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Print the formatted representation of \var{object} on the configured
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stream, followed by a newline.
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\end{funcdesc}
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The following methods provide the implementations for the
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corresponding functions of the same names. Using these methods on an
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instance is slightly more efficient since new PrettyPrinter objects
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don't need to be created.
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\begin{funcdesc}{isreadable}{object}
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Determine if the formatted representation of the object is
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``readable,'' or can be used to reconstruct the value using
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\code{eval()}. Note that this returns false for recursive objects.
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If the \var{depth} parameter of the PrettyPrinter is set and the
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object is deeper than allowed, this returns false.
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\end{funcdesc}
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\begin{funcdesc}{isrecursive}{object}
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Determine if the object requires a recursive representation.
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\end{funcdesc}
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