blob: 18e26e4f3f46fa859cfaa5c168d1595628e992a3 [file] [log] [blame]
Fred Drake6659c301998-03-03 22:02:19 +00001\documentclass{manual}
Fred Drake1b0b2a42001-03-13 17:56:08 +00002\usepackage[T1]{fontenc}
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00003
Guido van Rossum02455691997-07-17 16:21:52 +00004% Things to do:
5% Add a section on file I/O
6% Write a chapter entitled ``Some Useful Modules''
Fred Drake20082d92000-04-03 04:26:58 +00007% --re, math+cmath
Guido van Rossum02455691997-07-17 16:21:52 +00008% Should really move the Python startup file info to an appendix
Guido van Rossum02455691997-07-17 16:21:52 +00009
Guido van Rossumdccc2981997-12-30 04:40:25 +000010\title{Python Tutorial}
Guido van Rossumd9bf55d1991-01-11 16:35:08 +000011
Guido van Rossum16cd7f91994-10-06 10:29:26 +000012\input{boilerplate}
Guido van Rossum83eb9621993-11-23 16:28:45 +000013
Guido van Rossumd9bf55d1991-01-11 16:35:08 +000014\begin{document}
15
Guido van Rossumd9bf55d1991-01-11 16:35:08 +000016\maketitle
17
Fred Drake9f86b661998-07-28 21:55:19 +000018\ifhtml
19\chapter*{Front Matter\label{front}}
20\fi
21
Guido van Rossum16cd7f91994-10-06 10:29:26 +000022\input{copyright}
23
Guido van Rossumd9bf55d1991-01-11 16:35:08 +000024\begin{abstract}
25
26\noindent
Guido van Rossumdccc2981997-12-30 04:40:25 +000027Python is an easy to learn, powerful programming language. It has
28efficient high-level data structures and a simple but effective
29approach to object-oriented programming. Python's elegant syntax and
30dynamic typing, together with its interpreted nature, make it an ideal
31language for scripting and rapid application development in many areas
32on most platforms.
33
34The Python interpreter and the extensive standard library are freely
35available in source or binary form for all major platforms from the
Fred Drake17f690f2001-07-14 02:14:42 +000036Python Web site, \url{http://www.python.org/}, and can be freely
Guido van Rossumdccc2981997-12-30 04:40:25 +000037distributed. The same site also contains distributions of and
38pointers to many free third party Python modules, programs and tools,
39and additional documentation.
Guido van Rossumd9bf55d1991-01-11 16:35:08 +000040
Guido van Rossum4410c751991-06-04 20:22:18 +000041The Python interpreter is easily extended with new functions and data
Fred Drakeee84d591999-03-10 17:25:30 +000042types implemented in C or \Cpp{} (or other languages callable from C).
Guido van Rossumdccc2981997-12-30 04:40:25 +000043Python is also suitable as an extension language for customizable
44applications.
Guido van Rossumd9bf55d1991-01-11 16:35:08 +000045
Guido van Rossum6fc178f1991-08-16 09:13:42 +000046This tutorial introduces the reader informally to the basic concepts
47and features of the Python language and system. It helps to have a
Guido van Rossumdccc2981997-12-30 04:40:25 +000048Python interpreter handy for hands-on experience, but all examples are
49self-contained, so the tutorial can be read off-line as well.
Guido van Rossum2292b8e1991-01-23 16:31:24 +000050
Guido van Rossumdccc2981997-12-30 04:40:25 +000051For a description of standard objects and modules, see the
Fred Drake37f15741999-11-10 16:21:37 +000052\citetitle[../lib/lib.html]{Python Library Reference} document. The
53\citetitle[../ref/ref.html]{Python Reference Manual} gives a more
54formal definition of the language. To write extensions in C or
Fred Drakec37b65e2001-11-28 07:26:15 +000055\Cpp, read \citetitle[../ext/ext.html]{Extending and Embedding the
Fred Drake37f15741999-11-10 16:21:37 +000056Python Interpreter} and \citetitle[../api/api.html]{Python/C API
57Reference}. There are also several books covering Python in depth.
Guido van Rossumdccc2981997-12-30 04:40:25 +000058
59This tutorial does not attempt to be comprehensive and cover every
60single feature, or even every commonly used feature. Instead, it
61introduces many of Python's most noteworthy features, and will give
62you a good idea of the language's flavor and style. After reading it,
63you will be able to read and write Python modules and programs, and
64you will be ready to learn more about the various Python library
Fred Drake37f15741999-11-10 16:21:37 +000065modules described in the \citetitle[../lib/lib.html]{Python Library
66Reference}.
Guido van Rossumd9bf55d1991-01-11 16:35:08 +000067
68\end{abstract}
69
Fred Drake4d4f9e71998-01-13 22:25:02 +000070\tableofcontents
Guido van Rossumd9bf55d1991-01-11 16:35:08 +000071
Guido van Rossum5e0759d1992-08-07 16:06:24 +000072
Fred Drakeb7833d31998-09-11 16:21:55 +000073\chapter{Whetting Your Appetite \label{intro}}
Guido van Rossum3a26dd81996-10-24 22:12:48 +000074
Guido van Rossum6fc178f1991-08-16 09:13:42 +000075If you ever wrote a large shell script, you probably know this
76feeling: you'd love to add yet another feature, but it's already so
77slow, and so big, and so complicated; or the feature involves a system
Fred Drakeee84d591999-03-10 17:25:30 +000078call or other function that is only accessible from C \ldots Usually
Guido van Rossum6fc178f1991-08-16 09:13:42 +000079the problem at hand isn't serious enough to warrant rewriting the
Fred Drakeee84d591999-03-10 17:25:30 +000080script in C; perhaps the problem requires variable-length strings or
Guido van Rossum02455691997-07-17 16:21:52 +000081other data types (like sorted lists of file names) that are easy in
Fred Drakeee84d591999-03-10 17:25:30 +000082the shell but lots of work to implement in C, or perhaps you're not
83sufficiently familiar with C.
Guido van Rossum02455691997-07-17 16:21:52 +000084
Fred Drakeee84d591999-03-10 17:25:30 +000085Another situation: perhaps you have to work with several C libraries,
86and the usual C write/compile/test/re-compile cycle is too slow. You
Guido van Rossum02455691997-07-17 16:21:52 +000087need to develop software more quickly. Possibly perhaps you've
88written a program that could use an extension language, and you don't
89want to design a language, write and debug an interpreter for it, then
90tie it into your application.
Guido van Rossumd9bf55d1991-01-11 16:35:08 +000091
Guido van Rossum6fc178f1991-08-16 09:13:42 +000092In such cases, Python may be just the language for you. Python is
93simple to use, but it is a real programming language, offering much
94more structure and support for large programs than the shell has. On
Fred Drakeee84d591999-03-10 17:25:30 +000095the other hand, it also offers much more error checking than C, and,
Fred Drakeeee08cd1997-12-04 15:43:15 +000096being a \emph{very-high-level language}, it has high-level data types
Guido van Rossum6fc178f1991-08-16 09:13:42 +000097built in, such as flexible arrays and dictionaries that would cost you
Fred Drakeee84d591999-03-10 17:25:30 +000098days to implement efficiently in C. Because of its more general data
Fred Drakeeee08cd1997-12-04 15:43:15 +000099types Python is applicable to a much larger problem domain than
100\emph{Awk} or even \emph{Perl}, yet many things are at least as easy
101in Python as in those languages.
Guido van Rossumd9bf55d1991-01-11 16:35:08 +0000102
Guido van Rossum6fc178f1991-08-16 09:13:42 +0000103Python allows you to split up your program in modules that can be
104reused in other Python programs. It comes with a large collection of
Guido van Rossuma8d754e1992-01-07 16:44:35 +0000105standard modules that you can use as the basis of your programs --- or
106as examples to start learning to program in Python. There are also
107built-in modules that provide things like file I/O, system calls,
Fred Drake17f690f2001-07-14 02:14:42 +0000108sockets, and even interfaces to graphical user interface toolkits like Tk.
Guido van Rossumd9bf55d1991-01-11 16:35:08 +0000109
Guido van Rossuma8d754e1992-01-07 16:44:35 +0000110Python is an interpreted language, which can save you considerable time
Guido van Rossumd9bf55d1991-01-11 16:35:08 +0000111during program development because no compilation and linking is
Guido van Rossum6fc178f1991-08-16 09:13:42 +0000112necessary. The interpreter can be used interactively, which makes it
113easy to experiment with features of the language, to write throw-away
114programs, or to test functions during bottom-up program development.
Guido van Rossumd9bf55d1991-01-11 16:35:08 +0000115It is also a handy desk calculator.
116
Guido van Rossum6fc178f1991-08-16 09:13:42 +0000117Python allows writing very compact and readable programs. Programs
Fred Drake20082d92000-04-03 04:26:58 +0000118written in Python are typically much shorter than equivalent C or
119\Cpp{} programs, for several reasons:
Guido van Rossum6fc178f1991-08-16 09:13:42 +0000120\begin{itemize}
121\item
122the high-level data types allow you to express complex operations in a
123single statement;
124\item
125statement grouping is done by indentation instead of begin/end
126brackets;
127\item
128no variable or argument declarations are necessary.
129\end{itemize}
Guido van Rossumd9bf55d1991-01-11 16:35:08 +0000130
Fred Drakeee84d591999-03-10 17:25:30 +0000131Python is \emph{extensible}: if you know how to program in C it is easy
Guido van Rossum02455691997-07-17 16:21:52 +0000132to add a new built-in function or module to the interpreter, either to
Guido van Rossum6fc178f1991-08-16 09:13:42 +0000133perform critical operations at maximum speed, or to link Python
134programs to libraries that may only be available in binary form (such
135as a vendor-specific graphics library). Once you are really hooked,
Fred Drakeee84d591999-03-10 17:25:30 +0000136you can link the Python interpreter into an application written in C
Guido van Rossuma8d754e1992-01-07 16:44:35 +0000137and use it as an extension or command language for that application.
138
Guido van Rossum02455691997-07-17 16:21:52 +0000139By the way, the language is named after the BBC show ``Monty Python's
140Flying Circus'' and has nothing to do with nasty reptiles. Making
141references to Monty Python skits in documentation is not only allowed,
Guido van Rossumdccc2981997-12-30 04:40:25 +0000142it is encouraged!
Guido van Rossumd9bf55d1991-01-11 16:35:08 +0000143
Fred Drakeb7833d31998-09-11 16:21:55 +0000144\section{Where From Here \label{where}}
Guido van Rossumd9bf55d1991-01-11 16:35:08 +0000145
Guido van Rossum6fc178f1991-08-16 09:13:42 +0000146Now that you are all excited about Python, you'll want to examine it
Guido van Rossuma8d754e1992-01-07 16:44:35 +0000147in some more detail. Since the best way to learn a language is
Guido van Rossum6fc178f1991-08-16 09:13:42 +0000148using it, you are invited here to do so.
Guido van Rossumd9bf55d1991-01-11 16:35:08 +0000149
Guido van Rossum6fc178f1991-08-16 09:13:42 +0000150In the next chapter, the mechanics of using the interpreter are
151explained. This is rather mundane information, but essential for
152trying out the examples shown later.
153
Guido van Rossum4410c751991-06-04 20:22:18 +0000154The rest of the tutorial introduces various features of the Python
Fred Drakef64f8a01999-06-10 15:30:21 +0000155language and system through examples, beginning with simple
Guido van Rossum6fc178f1991-08-16 09:13:42 +0000156expressions, statements and data types, through functions and modules,
Guido van Rossum6938f061994-08-01 12:22:53 +0000157and finally touching upon advanced concepts like exceptions
158and user-defined classes.
Guido van Rossumd9bf55d1991-01-11 16:35:08 +0000159
Fred Drakeb7833d31998-09-11 16:21:55 +0000160\chapter{Using the Python Interpreter \label{using}}
Guido van Rossum6fc178f1991-08-16 09:13:42 +0000161
Fred Drakeb7833d31998-09-11 16:21:55 +0000162\section{Invoking the Interpreter \label{invoking}}
Guido van Rossuma8d754e1992-01-07 16:44:35 +0000163
Fred Drake20082d92000-04-03 04:26:58 +0000164The Python interpreter is usually installed as
165\file{/usr/local/bin/python} on those machines where it is available;
166putting \file{/usr/local/bin} in your \UNIX{} shell's search path
167makes it possible to start it by typing the command
Guido van Rossuma8d754e1992-01-07 16:44:35 +0000168
Fred Drake8842e861998-02-13 07:16:30 +0000169\begin{verbatim}
Guido van Rossumd9bf55d1991-01-11 16:35:08 +0000170python
Fred Drake8842e861998-02-13 07:16:30 +0000171\end{verbatim}
Fred Drake6c2176e1998-02-26 21:47:54 +0000172
Guido van Rossum6fc178f1991-08-16 09:13:42 +0000173to the shell. Since the choice of the directory where the interpreter
174lives is an installation option, other places are possible; check with
Fred Drakeeee08cd1997-12-04 15:43:15 +0000175your local Python guru or system administrator. (E.g.,
176\file{/usr/local/python} is a popular alternative location.)
Guido van Rossumd9bf55d1991-01-11 16:35:08 +0000177
Fred Drake5d6e4022001-04-11 04:38:34 +0000178Typing an end-of-file character (\kbd{Control-D} on \UNIX,
Martin v. Löwis36a4d8c2002-10-10 18:24:54 +0000179\kbd{Control-Z} on Windows) at the primary prompt causes the
Fred Drake5443c492000-07-08 05:18:54 +0000180interpreter to exit with a zero exit status. If that doesn't work,
181you can exit the interpreter by typing the following commands:
182\samp{import sys; sys.exit()}.
Guido van Rossum02455691997-07-17 16:21:52 +0000183
184The interpreter's line-editing features usually aren't very
Fred Drakec37b65e2001-11-28 07:26:15 +0000185sophisticated. On \UNIX, whoever installed the interpreter may have
Guido van Rossum02455691997-07-17 16:21:52 +0000186enabled support for the GNU readline library, which adds more
187elaborate interactive editing and history features. Perhaps the
188quickest check to see whether command line editing is supported is
189typing Control-P to the first Python prompt you get. If it beeps, you
Fred Drake5443c492000-07-08 05:18:54 +0000190have command line editing; see Appendix \ref{interacting} for an
191introduction to the keys. If nothing appears to happen, or if
192\code{\^P} is echoed, command line editing isn't available; you'll
193only be able to use backspace to remove characters from the current
194line.
Guido van Rossum02455691997-07-17 16:21:52 +0000195
Fred Drake6dc2aae1996-12-13 21:56:03 +0000196The interpreter operates somewhat like the \UNIX{} shell: when called
Guido van Rossum6fc178f1991-08-16 09:13:42 +0000197with standard input connected to a tty device, it reads and executes
198commands interactively; when called with a file name argument or with
Fred Drakeeee08cd1997-12-04 15:43:15 +0000199a file as standard input, it reads and executes a \emph{script} from
Guido van Rossum02455691997-07-17 16:21:52 +0000200that file.
Guido van Rossum6fc178f1991-08-16 09:13:42 +0000201
Guido van Rossuma8d754e1992-01-07 16:44:35 +0000202A third way of starting the interpreter is
Fred Drake37f15741999-11-10 16:21:37 +0000203\samp{\program{python} \programopt{-c} \var{command} [arg] ...}, which
204executes the statement(s) in \var{command}, analogous to the shell's
205\programopt{-c} option. Since Python statements often contain spaces
206or other characters that are special to the shell, it is best to quote
207\var{command} in its entirety with double quotes.
Guido van Rossuma8d754e1992-01-07 16:44:35 +0000208
Fred Drakeeee08cd1997-12-04 15:43:15 +0000209Note that there is a difference between \samp{python file} and
210\samp{python <file}. In the latter case, input requests from the
211program, such as calls to \code{input()} and \code{raw_input()}, are
212satisfied from \emph{file}. Since this file has already been read
Guido van Rossum6fc178f1991-08-16 09:13:42 +0000213until the end by the parser before the program starts executing, the
Fred Drake5d6e4022001-04-11 04:38:34 +0000214program will encounter end-of-file immediately. In the former case
215(which is usually what you want) they are satisfied from whatever file
216or device is connected to standard input of the Python interpreter.
Guido van Rossum6fc178f1991-08-16 09:13:42 +0000217
Guido van Rossumb2c65561993-05-12 08:53:36 +0000218When a script file is used, it is sometimes useful to be able to run
219the script and enter interactive mode afterwards. This can be done by
Fred Drake37f15741999-11-10 16:21:37 +0000220passing \programopt{-i} before the script. (This does not work if the
221script is read from standard input, for the same reason as explained
222in the previous paragraph.)
Guido van Rossumb2c65561993-05-12 08:53:36 +0000223
Fred Drakeb7833d31998-09-11 16:21:55 +0000224\subsection{Argument Passing \label{argPassing}}
Guido van Rossum6fc178f1991-08-16 09:13:42 +0000225
Guido van Rossuma8d754e1992-01-07 16:44:35 +0000226When known to the interpreter, the script name and additional
Fred Drakeeee08cd1997-12-04 15:43:15 +0000227arguments thereafter are passed to the script in the variable
228\code{sys.argv}, which is a list of strings. Its length is at least
229one; when no script and no arguments are given, \code{sys.argv[0]} is
230an empty string. When the script name is given as \code{'-'} (meaning
Fred Drake37f15741999-11-10 16:21:37 +0000231standard input), \code{sys.argv[0]} is set to \code{'-'}. When
232\programopt{-c} \var{command} is used, \code{sys.argv[0]} is set to
233\code{'-c'}. Options found after \programopt{-c} \var{command} are
234not consumed by the Python interpreter's option processing but left in
235\code{sys.argv} for the command to handle.
Guido van Rossuma8d754e1992-01-07 16:44:35 +0000236
Fred Drakeb7833d31998-09-11 16:21:55 +0000237\subsection{Interactive Mode \label{interactive}}
Guido van Rossumd9bf55d1991-01-11 16:35:08 +0000238
Guido van Rossumdd010801991-06-07 14:31:11 +0000239When commands are read from a tty, the interpreter is said to be in
Fred Drakeeee08cd1997-12-04 15:43:15 +0000240\emph{interactive mode}. In this mode it prompts for the next command
241with the \emph{primary prompt}, usually three greater-than signs
Fred Drake31b761e2000-09-29 15:17:36 +0000242(\samp{>\code{>}>~}); for continuation lines it prompts with the
Fred Drake20082d92000-04-03 04:26:58 +0000243\emph{secondary prompt}, by default three dots (\samp{...~}).
Guido van Rossuma8d754e1992-01-07 16:44:35 +0000244The interpreter prints a welcome message stating its version number
Fred Drakeed514942001-07-06 17:28:39 +0000245and a copyright notice before printing the first prompt:
Guido van Rossuma8d754e1992-01-07 16:44:35 +0000246
Fred Drake8842e861998-02-13 07:16:30 +0000247\begin{verbatim}
Guido van Rossuma8d754e1992-01-07 16:44:35 +0000248python
Fred Drakeee84d591999-03-10 17:25:30 +0000249Python 1.5.2b2 (#1, Feb 28 1999, 00:02:06) [GCC 2.8.1] on sunos5
Fred Drakeeee08cd1997-12-04 15:43:15 +0000250Copyright 1991-1995 Stichting Mathematisch Centrum, Amsterdam
Guido van Rossuma8d754e1992-01-07 16:44:35 +0000251>>>
Fred Drake8842e861998-02-13 07:16:30 +0000252\end{verbatim}
Guido van Rossuma8d754e1992-01-07 16:44:35 +0000253
Fred Drake20082d92000-04-03 04:26:58 +0000254Continuation lines are needed when entering a multi-line construct.
255As an example, take a look at this \keyword{if} statement:
256
257\begin{verbatim}
258>>> the_world_is_flat = 1
259>>> if the_world_is_flat:
260... print "Be careful not to fall off!"
261...
262Be careful not to fall off!
263\end{verbatim}
264
265
Fred Drakeb7833d31998-09-11 16:21:55 +0000266\section{The Interpreter and Its Environment \label{interp}}
Guido van Rossuma8d754e1992-01-07 16:44:35 +0000267
Fred Drakeb7833d31998-09-11 16:21:55 +0000268\subsection{Error Handling \label{error}}
Guido van Rossuma8d754e1992-01-07 16:44:35 +0000269
270When an error occurs, the interpreter prints an error
271message and a stack trace. In interactive mode, it then returns to
272the primary prompt; when input came from a file, it exits with a
273nonzero exit status after printing
Fred Drakeeee08cd1997-12-04 15:43:15 +0000274the stack trace. (Exceptions handled by an \code{except} clause in a
275\code{try} statement are not errors in this context.) Some errors are
Guido van Rossum6fc178f1991-08-16 09:13:42 +0000276unconditionally fatal and cause an exit with a nonzero exit; this
277applies to internal inconsistencies and some cases of running out of
278memory. All error messages are written to the standard error stream;
279normal output from the executed commands is written to standard
280output.
Guido van Rossumd9bf55d1991-01-11 16:35:08 +0000281
Guido van Rossuma8d754e1992-01-07 16:44:35 +0000282Typing the interrupt character (usually Control-C or DEL) to the
283primary or secondary prompt cancels the input and returns to the
Fred Drake93aa0f21999-04-05 21:39:17 +0000284primary prompt.\footnote{
Guido van Rossum6938f061994-08-01 12:22:53 +0000285 A problem with the GNU Readline package may prevent this.
Guido van Rossuma8d754e1992-01-07 16:44:35 +0000286}
Fred Drakeeee08cd1997-12-04 15:43:15 +0000287Typing an interrupt while a command is executing raises the
288\code{KeyboardInterrupt} exception, which may be handled by a
289\code{try} statement.
Guido van Rossumd9bf55d1991-01-11 16:35:08 +0000290
Fred Drakeb7833d31998-09-11 16:21:55 +0000291\subsection{Executable Python Scripts \label{scripts}}
Guido van Rossum4410c751991-06-04 20:22:18 +0000292
Fred Drake6dc2aae1996-12-13 21:56:03 +0000293On BSD'ish \UNIX{} systems, Python scripts can be made directly
Guido van Rossum6fc178f1991-08-16 09:13:42 +0000294executable, like shell scripts, by putting the line
Guido van Rossuma8d754e1992-01-07 16:44:35 +0000295
Fred Drake8842e861998-02-13 07:16:30 +0000296\begin{verbatim}
Fred Drake9e63faa1997-10-15 14:37:24 +0000297#! /usr/bin/env python
Fred Drake8842e861998-02-13 07:16:30 +0000298\end{verbatim}
Fred Drake6c2176e1998-02-26 21:47:54 +0000299
Fred Drake391564f1998-04-01 23:11:56 +0000300(assuming that the interpreter is on the user's \envvar{PATH}) at the
301beginning of the script and giving the file an executable mode. The
Fred Drakebdadf0f1999-04-29 13:20:25 +0000302\samp{\#!} must be the first two characters of the file. Note that
303the hash, or pound, character, \character{\#}, is used to start a
304comment in Python.
Guido van Rossumd9bf55d1991-01-11 16:35:08 +0000305
Fred Drakeb7833d31998-09-11 16:21:55 +0000306\subsection{The Interactive Startup File \label{startup}}
Guido van Rossum9a4e3fc1992-09-03 21:27:55 +0000307
Fred Drake8842e861998-02-13 07:16:30 +0000308% XXX This should probably be dumped in an appendix, since most people
309% don't use Python interactively in non-trivial ways.
Guido van Rossum02455691997-07-17 16:21:52 +0000310
Guido van Rossum9a4e3fc1992-09-03 21:27:55 +0000311When you use Python interactively, it is frequently handy to have some
312standard commands executed every time the interpreter is started. You
Fred Drakeeee08cd1997-12-04 15:43:15 +0000313can do this by setting an environment variable named
Fred Drake391564f1998-04-01 23:11:56 +0000314\envvar{PYTHONSTARTUP} to the name of a file containing your start-up
Fred Drake20082d92000-04-03 04:26:58 +0000315commands. This is similar to the \file{.profile} feature of the
316\UNIX{} shells.
Guido van Rossum9a4e3fc1992-09-03 21:27:55 +0000317
318This file is only read in interactive sessions, not when Python reads
Fred Drakeeee08cd1997-12-04 15:43:15 +0000319commands from a script, and not when \file{/dev/tty} is given as the
Guido van Rossum9a4e3fc1992-09-03 21:27:55 +0000320explicit source of commands (which otherwise behaves like an
Fred Drake13494372000-09-12 16:23:48 +0000321interactive session). It is executed in the same namespace where
Guido van Rossum9a4e3fc1992-09-03 21:27:55 +0000322interactive commands are executed, so that objects that it defines or
323imports can be used without qualification in the interactive session.
Fred Drakeeee08cd1997-12-04 15:43:15 +0000324You can also change the prompts \code{sys.ps1} and \code{sys.ps2} in
Guido van Rossum7b3c8a11992-09-08 09:20:13 +0000325this file.
Guido van Rossum9a4e3fc1992-09-03 21:27:55 +0000326
327If you want to read an additional start-up file from the current
Fred Drakeed514942001-07-06 17:28:39 +0000328directory, you can program this in the global start-up file using code
329like \samp{if os.path.isfile('.pythonrc.py'):
Fred Drake5443c492000-07-08 05:18:54 +0000330execfile('.pythonrc.py')}. If you want to use the startup file in a
331script, you must do this explicitly in the script:
Fred Drake8842e861998-02-13 07:16:30 +0000332
333\begin{verbatim}
334import os
Fred Drake5443c492000-07-08 05:18:54 +0000335filename = os.environ.get('PYTHONSTARTUP')
336if filename and os.path.isfile(filename):
337 execfile(filename)
Fred Drake8842e861998-02-13 07:16:30 +0000338\end{verbatim}
Guido van Rossum9a4e3fc1992-09-03 21:27:55 +0000339
Fred Drake72389881998-04-13 01:31:10 +0000340
Fred Drakeb7833d31998-09-11 16:21:55 +0000341\chapter{An Informal Introduction to Python \label{informal}}
Guido van Rossumd9bf55d1991-01-11 16:35:08 +0000342
343In the following examples, input and output are distinguished by the
Fred Drake31b761e2000-09-29 15:17:36 +0000344presence or absence of prompts (\samp{>\code{>}>~} and \samp{...~}): to repeat
Guido van Rossuma8d754e1992-01-07 16:44:35 +0000345the example, you must type everything after the prompt, when the
346prompt appears; lines that do not begin with a prompt are output from
Fred Drakebdadf0f1999-04-29 13:20:25 +0000347the interpreter. %
Guido van Rossum02455691997-07-17 16:21:52 +0000348%\footnote{
349% I'd prefer to use different fonts to distinguish input
350% from output, but the amount of LaTeX hacking that would require
351% is currently beyond my ability.
352%}
Guido van Rossum6fc178f1991-08-16 09:13:42 +0000353Note that a secondary prompt on a line by itself in an example means
354you must type a blank line; this is used to end a multi-line command.
Guido van Rossumd9bf55d1991-01-11 16:35:08 +0000355
Fred Drakebdadf0f1999-04-29 13:20:25 +0000356Many of the examples in this manual, even those entered at the
357interactive prompt, include comments. Comments in Python start with
358the hash character, \character{\#}, and extend to the end of the
359physical line. A comment may appear at the start of a line or
360following whitespace or code, but not within a string literal. A hash
361character within a string literal is just a hash character.
362
363Some examples:
364
365\begin{verbatim}
366# this is the first comment
367SPAM = 1 # and this is the second comment
368 # ... and now a third!
369STRING = "# This is not a comment."
370\end{verbatim}
371
372
Fred Drakeb7833d31998-09-11 16:21:55 +0000373\section{Using Python as a Calculator \label{calculator}}
Guido van Rossumd9bf55d1991-01-11 16:35:08 +0000374
Guido van Rossum6fc178f1991-08-16 09:13:42 +0000375Let's try some simple Python commands. Start the interpreter and wait
Fred Drake31b761e2000-09-29 15:17:36 +0000376for the primary prompt, \samp{>\code{>}>~}. (It shouldn't take long.)
Guido van Rossuma8d754e1992-01-07 16:44:35 +0000377
Fred Drakeb7833d31998-09-11 16:21:55 +0000378\subsection{Numbers \label{numbers}}
Guido van Rossum6fc178f1991-08-16 09:13:42 +0000379
380The interpreter acts as a simple calculator: you can type an
381expression at it and it will write the value. Expression syntax is
Fred Drake20082d92000-04-03 04:26:58 +0000382straightforward: the operators \code{+}, \code{-}, \code{*} and
383\code{/} work just like in most other languages (for example, Pascal
384or C); parentheses can be used for grouping. For example:
Guido van Rossuma8d754e1992-01-07 16:44:35 +0000385
Fred Drake8842e861998-02-13 07:16:30 +0000386\begin{verbatim}
Guido van Rossumd9bf55d1991-01-11 16:35:08 +0000387>>> 2+2
3884
Guido van Rossum6938f061994-08-01 12:22:53 +0000389>>> # This is a comment
390... 2+2
3914
392>>> 2+2 # and a comment on the same line as code
3934
Guido van Rossuma8d754e1992-01-07 16:44:35 +0000394>>> (50-5*6)/4
3955
Guido van Rossum6938f061994-08-01 12:22:53 +0000396>>> # Integer division returns the floor:
397... 7/3
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00003982
Guido van Rossum6938f061994-08-01 12:22:53 +0000399>>> 7/-3
400-3
Fred Drake8842e861998-02-13 07:16:30 +0000401\end{verbatim}
Fred Drake6c2176e1998-02-26 21:47:54 +0000402
Fred Drakeee84d591999-03-10 17:25:30 +0000403Like in C, the equal sign (\character{=}) is used to assign a value to a
Guido van Rossum6fc178f1991-08-16 09:13:42 +0000404variable. The value of an assignment is not written:
Guido van Rossuma8d754e1992-01-07 16:44:35 +0000405
Fred Drake8842e861998-02-13 07:16:30 +0000406\begin{verbatim}
Guido van Rossumd9bf55d1991-01-11 16:35:08 +0000407>>> width = 20
408>>> height = 5*9
409>>> width * height
410900
Fred Drake8842e861998-02-13 07:16:30 +0000411\end{verbatim}
Fred Drake20082d92000-04-03 04:26:58 +0000412
Guido van Rossum6fc178f1991-08-16 09:13:42 +0000413A value can be assigned to several variables simultaneously:
Guido van Rossuma8d754e1992-01-07 16:44:35 +0000414
Fred Drake8842e861998-02-13 07:16:30 +0000415\begin{verbatim}
Guido van Rossum6938f061994-08-01 12:22:53 +0000416>>> x = y = z = 0 # Zero x, y and z
417>>> x
4180
419>>> y
4200
421>>> z
4220
Fred Drake8842e861998-02-13 07:16:30 +0000423\end{verbatim}
Fred Drake31b761e2000-09-29 15:17:36 +0000424
Guido van Rossum6fc178f1991-08-16 09:13:42 +0000425There is full support for floating point; operators with mixed type
426operands convert the integer operand to floating point:
Guido van Rossuma8d754e1992-01-07 16:44:35 +0000427
Fred Drake8842e861998-02-13 07:16:30 +0000428\begin{verbatim}
Tim Petersbd695a72001-05-22 06:54:14 +0000429>>> 3 * 3.75 / 1.5
4307.5
Guido van Rossuma8d754e1992-01-07 16:44:35 +0000431>>> 7.0 / 2
4323.5
Fred Drake8842e861998-02-13 07:16:30 +0000433\end{verbatim}
Fred Drake31b761e2000-09-29 15:17:36 +0000434
Guido van Rossum02455691997-07-17 16:21:52 +0000435Complex numbers are also supported; imaginary numbers are written with
Fred Drake8842e861998-02-13 07:16:30 +0000436a suffix of \samp{j} or \samp{J}. Complex numbers with a nonzero
437real component are written as \samp{(\var{real}+\var{imag}j)}, or can
438be created with the \samp{complex(\var{real}, \var{imag})} function.
Guido van Rossum02455691997-07-17 16:21:52 +0000439
Fred Drake8842e861998-02-13 07:16:30 +0000440\begin{verbatim}
Guido van Rossum02455691997-07-17 16:21:52 +0000441>>> 1j * 1J
442(-1+0j)
443>>> 1j * complex(0,1)
444(-1+0j)
445>>> 3+1j*3
446(3+3j)
447>>> (3+1j)*3
448(9+3j)
449>>> (1+2j)/(1+1j)
450(1.5+0.5j)
Fred Drake8842e861998-02-13 07:16:30 +0000451\end{verbatim}
Fred Drake31b761e2000-09-29 15:17:36 +0000452
Guido van Rossum02455691997-07-17 16:21:52 +0000453Complex numbers are always represented as two floating point numbers,
454the real and imaginary part. To extract these parts from a complex
Fred Drake8842e861998-02-13 07:16:30 +0000455number \var{z}, use \code{\var{z}.real} and \code{\var{z}.imag}.
Guido van Rossum02455691997-07-17 16:21:52 +0000456
Fred Drake8842e861998-02-13 07:16:30 +0000457\begin{verbatim}
Guido van Rossum02455691997-07-17 16:21:52 +0000458>>> a=1.5+0.5j
459>>> a.real
4601.5
461>>> a.imag
4620.5
Fred Drake8842e861998-02-13 07:16:30 +0000463\end{verbatim}
Fred Drake31b761e2000-09-29 15:17:36 +0000464
Guido van Rossum02455691997-07-17 16:21:52 +0000465The conversion functions to floating point and integer
Fred Drake8842e861998-02-13 07:16:30 +0000466(\function{float()}, \function{int()} and \function{long()}) don't
467work for complex numbers --- there is no one correct way to convert a
468complex number to a real number. Use \code{abs(\var{z})} to get its
469magnitude (as a float) or \code{z.real} to get its real part.
Guido van Rossum02455691997-07-17 16:21:52 +0000470
Fred Drake8842e861998-02-13 07:16:30 +0000471\begin{verbatim}
Tim Petersbd695a72001-05-22 06:54:14 +0000472>>> a=3.0+4.0j
Guido van Rossum02455691997-07-17 16:21:52 +0000473>>> float(a)
Fred Drake162c6a62001-02-14 03:20:18 +0000474Traceback (most recent call last):
Guido van Rossum02455691997-07-17 16:21:52 +0000475 File "<stdin>", line 1, in ?
476TypeError: can't convert complex to float; use e.g. abs(z)
477>>> a.real
Tim Petersbd695a72001-05-22 06:54:14 +00004783.0
479>>> a.imag
4804.0
481>>> abs(a) # sqrt(a.real**2 + a.imag**2)
4825.0
483>>>
Fred Drake8842e861998-02-13 07:16:30 +0000484\end{verbatim}
Fred Drake31b761e2000-09-29 15:17:36 +0000485
Guido van Rossum02455691997-07-17 16:21:52 +0000486In interactive mode, the last printed expression is assigned to the
487variable \code{_}. This means that when you are using Python as a
488desk calculator, it is somewhat easier to continue calculations, for
489example:
490
491\begin{verbatim}
Tim Petersbd695a72001-05-22 06:54:14 +0000492>>> tax = 12.5 / 100
493>>> price = 100.50
Guido van Rossum02455691997-07-17 16:21:52 +0000494>>> price * tax
Tim Petersbd695a72001-05-22 06:54:14 +000049512.5625
Guido van Rossum02455691997-07-17 16:21:52 +0000496>>> price + _
Tim Petersbd695a72001-05-22 06:54:14 +0000497113.0625
Guido van Rossum02455691997-07-17 16:21:52 +0000498>>> round(_, 2)
Tim Petersbd695a72001-05-22 06:54:14 +0000499113.06
500>>>
Guido van Rossum02455691997-07-17 16:21:52 +0000501\end{verbatim}
502
503This variable should be treated as read-only by the user. Don't
504explicitly assign a value to it --- you would create an independent
505local variable with the same name masking the built-in variable with
506its magic behavior.
Guido van Rossuma8d754e1992-01-07 16:44:35 +0000507
Fred Drakeb7833d31998-09-11 16:21:55 +0000508\subsection{Strings \label{strings}}
Guido van Rossuma8d754e1992-01-07 16:44:35 +0000509
Guido van Rossum02455691997-07-17 16:21:52 +0000510Besides numbers, Python can also manipulate strings, which can be
511expressed in several ways. They can be enclosed in single quotes or
512double quotes:
Guido van Rossuma8d754e1992-01-07 16:44:35 +0000513
Fred Drake8842e861998-02-13 07:16:30 +0000514\begin{verbatim}
Guido van Rossume5f8b601995-01-04 19:12:49 +0000515>>> 'spam eggs'
516'spam eggs'
Guido van Rossumd9bf55d1991-01-11 16:35:08 +0000517>>> 'doesn\'t'
Guido van Rossum6938f061994-08-01 12:22:53 +0000518"doesn't"
519>>> "doesn't"
520"doesn't"
521>>> '"Yes," he said.'
522'"Yes," he said.'
523>>> "\"Yes,\" he said."
524'"Yes," he said.'
525>>> '"Isn\'t," she said.'
526'"Isn\'t," she said.'
Fred Drake8842e861998-02-13 07:16:30 +0000527\end{verbatim}
Fred Drake6c2176e1998-02-26 21:47:54 +0000528
Fred Drakeba5c41d2001-09-06 18:41:15 +0000529String literals can span multiple lines in several ways. Continuation
530lines can be used, with a backslash as the last character on the line
531indicating that the next line is a logical continuation of the line:
Guido van Rossum02455691997-07-17 16:21:52 +0000532
533\begin{verbatim}
534hello = "This is a rather long string containing\n\
535several lines of text just as you would do in C.\n\
536 Note that whitespace at the beginning of the line is\
Fred Drakeba5c41d2001-09-06 18:41:15 +0000537 significant."
538
Guido van Rossum02455691997-07-17 16:21:52 +0000539print hello
540\end{verbatim}
541
Fred Drakeba5c41d2001-09-06 18:41:15 +0000542Note that newlines would still need to be embedded in the string using
543\code{\e n}; the newline following the trailing backslash is
544discarded. This example would print the following:
Fred Drake8842e861998-02-13 07:16:30 +0000545
Guido van Rossum02455691997-07-17 16:21:52 +0000546\begin{verbatim}
547This is a rather long string containing
548several lines of text just as you would do in C.
549 Note that whitespace at the beginning of the line is significant.
550\end{verbatim}
551
Fred Drakeba5c41d2001-09-06 18:41:15 +0000552If we make the string literal a ``raw'' string, however, the
553\code{\e n} sequences are not converted to newlines, but the backslash
554at the end of the line, and the newline character in the source, are
555both included in the string as data. Thus, the example:
556
557\begin{verbatim}
558hello = r"This is a rather long string containing\n\
559several lines of text much as you would do in C."
560
561print hello
562\end{verbatim}
563
564would print:
565
566\begin{verbatim}
567This is a rather long string containing\n\
568several lines of text much as you would do in C.
569\end{verbatim}
570
Guido van Rossum02455691997-07-17 16:21:52 +0000571Or, strings can be surrounded in a pair of matching triple-quotes:
Fred Drakeba5c41d2001-09-06 18:41:15 +0000572\code{"""} or \code{'\code{'}'}. End of lines do not need to be escaped
Guido van Rossum02455691997-07-17 16:21:52 +0000573when using triple-quotes, but they will be included in the string.
574
575\begin{verbatim}
576print """
577Usage: thingy [OPTIONS]
578 -h Display this usage message
579 -H hostname Hostname to connect to
580"""
581\end{verbatim}
582
583produces the following output:
584
Fred Drake8842e861998-02-13 07:16:30 +0000585\begin{verbatim}
Guido van Rossum02455691997-07-17 16:21:52 +0000586Usage: thingy [OPTIONS]
587 -h Display this usage message
588 -H hostname Hostname to connect to
Fred Drake8842e861998-02-13 07:16:30 +0000589\end{verbatim}
Fred Drake6c2176e1998-02-26 21:47:54 +0000590
Guido van Rossum02455691997-07-17 16:21:52 +0000591The interpreter prints the result of string operations in the same way
592as they are typed for input: inside quotes, and with quotes and other
593funny characters escaped by backslashes, to show the precise
594value. The string is enclosed in double quotes if the string contains
595a single quote and no double quotes, else it's enclosed in single
Fred Drake8842e861998-02-13 07:16:30 +0000596quotes. (The \keyword{print} statement, described later, can be used
597to write strings without quotes or escapes.)
Guido van Rossum6fc178f1991-08-16 09:13:42 +0000598
Fred Drake20082d92000-04-03 04:26:58 +0000599Strings can be concatenated (glued together) with the
600\code{+} operator, and repeated with \code{*}:
Guido van Rossuma8d754e1992-01-07 16:44:35 +0000601
Fred Drake8842e861998-02-13 07:16:30 +0000602\begin{verbatim}
Guido van Rossumd9bf55d1991-01-11 16:35:08 +0000603>>> word = 'Help' + 'A'
604>>> word
605'HelpA'
606>>> '<' + word*5 + '>'
607'<HelpAHelpAHelpAHelpAHelpA>'
Fred Drake8842e861998-02-13 07:16:30 +0000608\end{verbatim}
Fred Drake6c2176e1998-02-26 21:47:54 +0000609
Guido van Rossum02455691997-07-17 16:21:52 +0000610Two string literals next to each other are automatically concatenated;
Fred Drake8842e861998-02-13 07:16:30 +0000611the first line above could also have been written \samp{word = 'Help'
Guido van Rossume51aa5b1999-01-06 23:14:14 +0000612'A'}; this only works with two literals, not with arbitrary string
613expressions:
614
615\begin{verbatim}
Fred Drake0ba58151999-09-14 18:00:49 +0000616>>> import string
Guido van Rossume51aa5b1999-01-06 23:14:14 +0000617>>> 'str' 'ing' # <- This is ok
618'string'
619>>> string.strip('str') + 'ing' # <- This is ok
620'string'
621>>> string.strip('str') 'ing' # <- This is invalid
Fred Drake13af4282001-09-21 21:10:05 +0000622 File "<stdin>", line 1, in ?
Guido van Rossume51aa5b1999-01-06 23:14:14 +0000623 string.strip('str') 'ing'
624 ^
625SyntaxError: invalid syntax
626\end{verbatim}
Guido van Rossum6fc178f1991-08-16 09:13:42 +0000627
Fred Drakeee84d591999-03-10 17:25:30 +0000628Strings can be subscripted (indexed); like in C, the first character
Guido van Rossum02455691997-07-17 16:21:52 +0000629of a string has subscript (index) 0. There is no separate character
630type; a character is simply a string of size one. Like in Icon,
Fred Drake8842e861998-02-13 07:16:30 +0000631substrings can be specified with the \emph{slice notation}: two indices
Guido van Rossum02455691997-07-17 16:21:52 +0000632separated by a colon.
Guido van Rossuma8d754e1992-01-07 16:44:35 +0000633
Fred Drake8842e861998-02-13 07:16:30 +0000634\begin{verbatim}
Guido van Rossumd9bf55d1991-01-11 16:35:08 +0000635>>> word[4]
636'A'
637>>> word[0:2]
638'He'
639>>> word[2:4]
640'lp'
Fred Drake8842e861998-02-13 07:16:30 +0000641\end{verbatim}
Fred Drake6c2176e1998-02-26 21:47:54 +0000642
Fred Drake20082d92000-04-03 04:26:58 +0000643Unlike a C string, Python strings cannot be changed. Assigning to an
644indexed position in the string results in an error:
645
646\begin{verbatim}
647>>> word[0] = 'x'
Fred Drake162c6a62001-02-14 03:20:18 +0000648Traceback (most recent call last):
Fred Drake20082d92000-04-03 04:26:58 +0000649 File "<stdin>", line 1, in ?
650TypeError: object doesn't support item assignment
Fred Drake67fdaa42001-03-06 07:19:34 +0000651>>> word[:1] = 'Splat'
Fred Drake162c6a62001-02-14 03:20:18 +0000652Traceback (most recent call last):
Fred Drake20082d92000-04-03 04:26:58 +0000653 File "<stdin>", line 1, in ?
654TypeError: object doesn't support slice assignment
655\end{verbatim}
656
657However, creating a new string with the combined content is easy and
658efficient:
659
660\begin{verbatim}
661>>> 'x' + word[1:]
662'xelpA'
Fred Drake67fdaa42001-03-06 07:19:34 +0000663>>> 'Splat' + word[4]
Fred Drake20082d92000-04-03 04:26:58 +0000664'SplatA'
665\end{verbatim}
666
Guido van Rossuma8d754e1992-01-07 16:44:35 +0000667Slice indices have useful defaults; an omitted first index defaults to
668zero, an omitted second index defaults to the size of the string being
669sliced.
670
Fred Drake8842e861998-02-13 07:16:30 +0000671\begin{verbatim}
Guido van Rossuma8d754e1992-01-07 16:44:35 +0000672>>> word[:2] # The first two characters
Guido van Rossumd9bf55d1991-01-11 16:35:08 +0000673'He'
Guido van Rossuma8d754e1992-01-07 16:44:35 +0000674>>> word[2:] # All but the first two characters
Guido van Rossumd9bf55d1991-01-11 16:35:08 +0000675'lpA'
Fred Drake8842e861998-02-13 07:16:30 +0000676\end{verbatim}
Fred Drake6c2176e1998-02-26 21:47:54 +0000677
Fred Drake20082d92000-04-03 04:26:58 +0000678Here's a useful invariant of slice operations:
679\code{s[:i] + s[i:]} equals \code{s}.
Guido van Rossuma8d754e1992-01-07 16:44:35 +0000680
Fred Drake8842e861998-02-13 07:16:30 +0000681\begin{verbatim}
Guido van Rossuma8d754e1992-01-07 16:44:35 +0000682>>> word[:2] + word[2:]
683'HelpA'
Guido van Rossumd9bf55d1991-01-11 16:35:08 +0000684>>> word[:3] + word[3:]
685'HelpA'
Fred Drake8842e861998-02-13 07:16:30 +0000686\end{verbatim}
Fred Drake6c2176e1998-02-26 21:47:54 +0000687
Guido van Rossuma8d754e1992-01-07 16:44:35 +0000688Degenerate slice indices are handled gracefully: an index that is too
689large is replaced by the string size, an upper bound smaller than the
690lower bound returns an empty string.
691
Fred Drake8842e861998-02-13 07:16:30 +0000692\begin{verbatim}
Guido van Rossumd9bf55d1991-01-11 16:35:08 +0000693>>> word[1:100]
694'elpA'
695>>> word[10:]
696''
697>>> word[2:1]
698''
Fred Drake8842e861998-02-13 07:16:30 +0000699\end{verbatim}
Fred Drake6c2176e1998-02-26 21:47:54 +0000700
Guido van Rossuma8d754e1992-01-07 16:44:35 +0000701Indices may be negative numbers, to start counting from the right.
702For example:
703
Fred Drake8842e861998-02-13 07:16:30 +0000704\begin{verbatim}
Guido van Rossuma8d754e1992-01-07 16:44:35 +0000705>>> word[-1] # The last character
706'A'
707>>> word[-2] # The last-but-one character
708'p'
709>>> word[-2:] # The last two characters
Guido van Rossumd9bf55d1991-01-11 16:35:08 +0000710'pA'
Guido van Rossuma8d754e1992-01-07 16:44:35 +0000711>>> word[:-2] # All but the last two characters
Guido van Rossumd9bf55d1991-01-11 16:35:08 +0000712'Hel'
Fred Drake8842e861998-02-13 07:16:30 +0000713\end{verbatim}
Fred Drake6c2176e1998-02-26 21:47:54 +0000714
Guido van Rossuma8d754e1992-01-07 16:44:35 +0000715But note that -0 is really the same as 0, so it does not count from
716the right!
717
Fred Drake8842e861998-02-13 07:16:30 +0000718\begin{verbatim}
Guido van Rossuma8d754e1992-01-07 16:44:35 +0000719>>> word[-0] # (since -0 equals 0)
720'H'
Fred Drake8842e861998-02-13 07:16:30 +0000721\end{verbatim}
Fred Drake6c2176e1998-02-26 21:47:54 +0000722
Guido van Rossuma8d754e1992-01-07 16:44:35 +0000723Out-of-range negative slice indices are truncated, but don't try this
724for single-element (non-slice) indices:
725
Fred Drake8842e861998-02-13 07:16:30 +0000726\begin{verbatim}
Guido van Rossuma8d754e1992-01-07 16:44:35 +0000727>>> word[-100:]
Guido van Rossumd9bf55d1991-01-11 16:35:08 +0000728'HelpA'
Guido van Rossuma8d754e1992-01-07 16:44:35 +0000729>>> word[-10] # error
Fred Drake162c6a62001-02-14 03:20:18 +0000730Traceback (most recent call last):
Fred Drake13af4282001-09-21 21:10:05 +0000731 File "<stdin>", line 1, in ?
Guido van Rossum6938f061994-08-01 12:22:53 +0000732IndexError: string index out of range
Fred Drake8842e861998-02-13 07:16:30 +0000733\end{verbatim}
Fred Drake6c2176e1998-02-26 21:47:54 +0000734
Guido van Rossumd9bf55d1991-01-11 16:35:08 +0000735The best way to remember how slices work is to think of the indices as
Fred Drakeeee08cd1997-12-04 15:43:15 +0000736pointing \emph{between} characters, with the left edge of the first
Guido van Rossum6fc178f1991-08-16 09:13:42 +0000737character numbered 0. Then the right edge of the last character of a
Fred Drakeeee08cd1997-12-04 15:43:15 +0000738string of \var{n} characters has index \var{n}, for example:
Guido van Rossuma8d754e1992-01-07 16:44:35 +0000739
Fred Drake8842e861998-02-13 07:16:30 +0000740\begin{verbatim}
Guido van Rossumd9bf55d1991-01-11 16:35:08 +0000741 +---+---+---+---+---+
742 | H | e | l | p | A |
743 +---+---+---+---+---+
744 0 1 2 3 4 5
745-5 -4 -3 -2 -1
Fred Drake8842e861998-02-13 07:16:30 +0000746\end{verbatim}
Fred Drake6c2176e1998-02-26 21:47:54 +0000747
Guido van Rossum6fc178f1991-08-16 09:13:42 +0000748The first row of numbers gives the position of the indices 0...5 in
749the string; the second row gives the corresponding negative indices.
Fred Drakeeee08cd1997-12-04 15:43:15 +0000750The slice from \var{i} to \var{j} consists of all characters between
751the edges labeled \var{i} and \var{j}, respectively.
Guido van Rossumd9bf55d1991-01-11 16:35:08 +0000752
Fred Drake20082d92000-04-03 04:26:58 +0000753For non-negative indices, the length of a slice is the difference of
Fred Drakeed514942001-07-06 17:28:39 +0000754the indices, if both are within bounds. For example, the length of
Fred Drakeeee08cd1997-12-04 15:43:15 +0000755\code{word[1:3]} is 2.
Guido van Rossuma8d754e1992-01-07 16:44:35 +0000756
Fred Drake8842e861998-02-13 07:16:30 +0000757The built-in function \function{len()} returns the length of a string:
Guido van Rossuma8d754e1992-01-07 16:44:35 +0000758
Fred Drake8842e861998-02-13 07:16:30 +0000759\begin{verbatim}
Guido van Rossumd9bf55d1991-01-11 16:35:08 +0000760>>> s = 'supercalifragilisticexpialidocious'
761>>> len(s)
76234
Fred Drake8842e861998-02-13 07:16:30 +0000763\end{verbatim}
Guido van Rossuma8d754e1992-01-07 16:44:35 +0000764
Fred Drake9dc30bb2000-04-06 14:17:03 +0000765
766\subsection{Unicode Strings \label{unicodeStrings}}
767\sectionauthor{Marc-Andre Lemburg}{mal@lemburg.com}
768
Fred Drake30f76ff2000-06-30 16:06:19 +0000769Starting with Python 2.0 a new data type for storing text data is
Fred Drake9dc30bb2000-04-06 14:17:03 +0000770available to the programmer: the Unicode object. It can be used to
Fred Drake17f690f2001-07-14 02:14:42 +0000771store and manipulate Unicode data (see \url{http://www.unicode.org/})
Thomas Woutersf9b526d2000-07-16 19:05:38 +0000772and integrates well with the existing string objects providing
Fred Drake9dc30bb2000-04-06 14:17:03 +0000773auto-conversions where necessary.
774
775Unicode has the advantage of providing one ordinal for every character
776in every script used in modern and ancient texts. Previously, there
777were only 256 possible ordinals for script characters and texts were
778typically bound to a code page which mapped the ordinals to script
779characters. This lead to very much confusion especially with respect
Fred Drake31b761e2000-09-29 15:17:36 +0000780to internationalization (usually written as \samp{i18n} ---
781\character{i} + 18 characters + \character{n}) of software. Unicode
782solves these problems by defining one code page for all scripts.
Fred Drake9dc30bb2000-04-06 14:17:03 +0000783
784Creating Unicode strings in Python is just as simple as creating
785normal strings:
786
787\begin{verbatim}
788>>> u'Hello World !'
789u'Hello World !'
790\end{verbatim}
791
792The small \character{u} in front of the quote indicates that an
793Unicode string is supposed to be created. If you want to include
794special characters in the string, you can do so by using the Python
795\emph{Unicode-Escape} encoding. The following example shows how:
796
797\begin{verbatim}
Tim Peters657ebef2000-11-29 05:51:59 +0000798>>> u'Hello\u0020World !'
Fred Drake9dc30bb2000-04-06 14:17:03 +0000799u'Hello World !'
800\end{verbatim}
801
Fred Drake4a6f1df2000-11-29 06:03:45 +0000802The escape sequence \code{\e u0020} indicates to insert the Unicode
Ka-Ping Yee54019962001-02-13 22:20:22 +0000803character with the ordinal value 0x0020 (the space character) at the
Fred Drake9dc30bb2000-04-06 14:17:03 +0000804given position.
805
806Other characters are interpreted by using their respective ordinal
Ka-Ping Yee54019962001-02-13 22:20:22 +0000807values directly as Unicode ordinals. If you have literal strings
808in the standard Latin-1 encoding that is used in many Western countries,
809you will find it convenient that the lower 256 characters
810of Unicode are the same as the 256 characters of Latin-1.
Fred Drake9dc30bb2000-04-06 14:17:03 +0000811
Ka-Ping Yee54019962001-02-13 22:20:22 +0000812For experts, there is also a raw mode just like the one for normal
813strings. You have to prefix the opening quote with 'ur' to have
Fred Drake9dc30bb2000-04-06 14:17:03 +0000814Python use the \emph{Raw-Unicode-Escape} encoding. It will only apply
Fred Drake4a6f1df2000-11-29 06:03:45 +0000815the above \code{\e uXXXX} conversion if there is an uneven number of
Fred Drake9dc30bb2000-04-06 14:17:03 +0000816backslashes in front of the small 'u'.
817
818\begin{verbatim}
819>>> ur'Hello\u0020World !'
820u'Hello World !'
821>>> ur'Hello\\u0020World !'
822u'Hello\\\\u0020World !'
823\end{verbatim}
824
Fred Drakeed514942001-07-06 17:28:39 +0000825The raw mode is most useful when you have to enter lots of
826backslashes, as can be necessary in regular expressions.
Fred Drake9dc30bb2000-04-06 14:17:03 +0000827
828Apart from these standard encodings, Python provides a whole set of
Thomas Woutersf9b526d2000-07-16 19:05:38 +0000829other ways of creating Unicode strings on the basis of a known
Fred Drake9dc30bb2000-04-06 14:17:03 +0000830encoding.
831
Ka-Ping Yee54019962001-02-13 22:20:22 +0000832The built-in function \function{unicode()}\bifuncindex{unicode} provides
833access to all registered Unicode codecs (COders and DECoders). Some of
834the more well known encodings which these codecs can convert are
835\emph{Latin-1}, \emph{ASCII}, \emph{UTF-8}, and \emph{UTF-16}.
836The latter two are variable-length encodings that store each Unicode
837character in one or more bytes. The default encoding is
838normally set to ASCII, which passes through characters in the range
8390 to 127 and rejects any other characters with an error.
840When a Unicode string is printed, written to a file, or converted
841with \function{str()}, conversion takes place using this default encoding.
Fred Drake9dc30bb2000-04-06 14:17:03 +0000842
843\begin{verbatim}
Ka-Ping Yee54019962001-02-13 22:20:22 +0000844>>> u"abc"
845u'abc'
846>>> str(u"abc")
847'abc'
Fred Drake9dc30bb2000-04-06 14:17:03 +0000848>>> u"äöü"
Ka-Ping Yee54019962001-02-13 22:20:22 +0000849u'\xe4\xf6\xfc'
850>>> str(u"äöü")
851Traceback (most recent call last):
852 File "<stdin>", line 1, in ?
853UnicodeError: ASCII encoding error: ordinal not in range(128)
854\end{verbatim}
855
856To convert a Unicode string into an 8-bit string using a specific
857encoding, Unicode objects provide an \function{encode()} method
858that takes one argument, the name of the encoding. Lowercase names
859for encodings are preferred.
860
861\begin{verbatim}
862>>> u"äöü".encode('utf-8')
863'\xc3\xa4\xc3\xb6\xc3\xbc'
Fred Drake9dc30bb2000-04-06 14:17:03 +0000864\end{verbatim}
865
866If you have data in a specific encoding and want to produce a
867corresponding Unicode string from it, you can use the
Ka-Ping Yee54019962001-02-13 22:20:22 +0000868\function{unicode()} function with the encoding name as the second
Fred Drake9dc30bb2000-04-06 14:17:03 +0000869argument.
870
871\begin{verbatim}
Ka-Ping Yee54019962001-02-13 22:20:22 +0000872>>> unicode('\xc3\xa4\xc3\xb6\xc3\xbc', 'utf-8')
873u'\xe4\xf6\xfc'
Fred Drake9dc30bb2000-04-06 14:17:03 +0000874\end{verbatim}
875
Fred Drakeb7833d31998-09-11 16:21:55 +0000876\subsection{Lists \label{lists}}
Guido van Rossuma8d754e1992-01-07 16:44:35 +0000877
Fred Drakeeee08cd1997-12-04 15:43:15 +0000878Python knows a number of \emph{compound} data types, used to group
879together other values. The most versatile is the \emph{list}, which
Guido van Rossuma8d754e1992-01-07 16:44:35 +0000880can be written as a list of comma-separated values (items) between
881square brackets. List items need not all have the same type.
882
Fred Drake8842e861998-02-13 07:16:30 +0000883\begin{verbatim}
Guido van Rossume5f8b601995-01-04 19:12:49 +0000884>>> a = ['spam', 'eggs', 100, 1234]
Guido van Rossumd9bf55d1991-01-11 16:35:08 +0000885>>> a
Guido van Rossume5f8b601995-01-04 19:12:49 +0000886['spam', 'eggs', 100, 1234]
Fred Drake8842e861998-02-13 07:16:30 +0000887\end{verbatim}
Fred Drake6c2176e1998-02-26 21:47:54 +0000888
Guido van Rossuma8d754e1992-01-07 16:44:35 +0000889Like string indices, list indices start at 0, and lists can be sliced,
890concatenated and so on:
891
Fred Drake8842e861998-02-13 07:16:30 +0000892\begin{verbatim}
Guido van Rossumd9bf55d1991-01-11 16:35:08 +0000893>>> a[0]
Guido van Rossume5f8b601995-01-04 19:12:49 +0000894'spam'
Guido van Rossumd9bf55d1991-01-11 16:35:08 +0000895>>> a[3]
8961234
Guido van Rossuma8d754e1992-01-07 16:44:35 +0000897>>> a[-2]
898100
899>>> a[1:-1]
Guido van Rossume5f8b601995-01-04 19:12:49 +0000900['eggs', 100]
901>>> a[:2] + ['bacon', 2*2]
902['spam', 'eggs', 'bacon', 4]
Guido van Rossum4410c751991-06-04 20:22:18 +0000903>>> 3*a[:3] + ['Boe!']
Guido van Rossume5f8b601995-01-04 19:12:49 +0000904['spam', 'eggs', 100, 'spam', 'eggs', 100, 'spam', 'eggs', 100, 'Boe!']
Fred Drake8842e861998-02-13 07:16:30 +0000905\end{verbatim}
Fred Drake6c2176e1998-02-26 21:47:54 +0000906
Fred Drakeeee08cd1997-12-04 15:43:15 +0000907Unlike strings, which are \emph{immutable}, it is possible to change
Guido van Rossum6fc178f1991-08-16 09:13:42 +0000908individual elements of a list:
Guido van Rossuma8d754e1992-01-07 16:44:35 +0000909
Fred Drake8842e861998-02-13 07:16:30 +0000910\begin{verbatim}
Guido van Rossumd9bf55d1991-01-11 16:35:08 +0000911>>> a
Guido van Rossume5f8b601995-01-04 19:12:49 +0000912['spam', 'eggs', 100, 1234]
Guido van Rossumd9bf55d1991-01-11 16:35:08 +0000913>>> a[2] = a[2] + 23
914>>> a
Guido van Rossume5f8b601995-01-04 19:12:49 +0000915['spam', 'eggs', 123, 1234]
Fred Drake8842e861998-02-13 07:16:30 +0000916\end{verbatim}
Fred Drake6c2176e1998-02-26 21:47:54 +0000917
Guido van Rossuma8d754e1992-01-07 16:44:35 +0000918Assignment to slices is also possible, and this can even change the size
Guido van Rossumd9bf55d1991-01-11 16:35:08 +0000919of the list:
Guido van Rossuma8d754e1992-01-07 16:44:35 +0000920
Fred Drake8842e861998-02-13 07:16:30 +0000921\begin{verbatim}
Guido van Rossumd9bf55d1991-01-11 16:35:08 +0000922>>> # Replace some items:
Guido van Rossum6938f061994-08-01 12:22:53 +0000923... a[0:2] = [1, 12]
Guido van Rossumd9bf55d1991-01-11 16:35:08 +0000924>>> a
925[1, 12, 123, 1234]
926>>> # Remove some:
Guido van Rossum6938f061994-08-01 12:22:53 +0000927... a[0:2] = []
Guido van Rossumd9bf55d1991-01-11 16:35:08 +0000928>>> a
929[123, 1234]
930>>> # Insert some:
Guido van Rossum6938f061994-08-01 12:22:53 +0000931... a[1:1] = ['bletch', 'xyzzy']
Guido van Rossumd9bf55d1991-01-11 16:35:08 +0000932>>> a
933[123, 'bletch', 'xyzzy', 1234]
Guido van Rossuma8d754e1992-01-07 16:44:35 +0000934>>> a[:0] = a # Insert (a copy of) itself at the beginning
935>>> a
936[123, 'bletch', 'xyzzy', 1234, 123, 'bletch', 'xyzzy', 1234]
Fred Drake8842e861998-02-13 07:16:30 +0000937\end{verbatim}
Fred Drake6c2176e1998-02-26 21:47:54 +0000938
Fred Drake8842e861998-02-13 07:16:30 +0000939The built-in function \function{len()} also applies to lists:
Guido van Rossuma8d754e1992-01-07 16:44:35 +0000940
Fred Drake8842e861998-02-13 07:16:30 +0000941\begin{verbatim}
Guido van Rossumd9bf55d1991-01-11 16:35:08 +0000942>>> len(a)
Guido van Rossuma8d754e1992-01-07 16:44:35 +00009438
Fred Drake8842e861998-02-13 07:16:30 +0000944\end{verbatim}
Fred Drake6c2176e1998-02-26 21:47:54 +0000945
Guido van Rossum6fc178f1991-08-16 09:13:42 +0000946It is possible to nest lists (create lists containing other lists),
947for example:
Guido van Rossuma8d754e1992-01-07 16:44:35 +0000948
Fred Drake8842e861998-02-13 07:16:30 +0000949\begin{verbatim}
Guido van Rossuma8d754e1992-01-07 16:44:35 +0000950>>> q = [2, 3]
951>>> p = [1, q, 4]
Guido van Rossum6fc178f1991-08-16 09:13:42 +0000952>>> len(p)
9533
954>>> p[1]
955[2, 3]
956>>> p[1][0]
9572
Guido van Rossuma8d754e1992-01-07 16:44:35 +0000958>>> p[1].append('xtra') # See section 5.1
Guido van Rossum6fc178f1991-08-16 09:13:42 +0000959>>> p
960[1, [2, 3, 'xtra'], 4]
Guido van Rossuma8d754e1992-01-07 16:44:35 +0000961>>> q
962[2, 3, 'xtra']
Fred Drake8842e861998-02-13 07:16:30 +0000963\end{verbatim}
Fred Drake6c2176e1998-02-26 21:47:54 +0000964
Fred Drakeeee08cd1997-12-04 15:43:15 +0000965Note that in the last example, \code{p[1]} and \code{q} really refer to
966the same object! We'll come back to \emph{object semantics} later.
Guido van Rossumd9bf55d1991-01-11 16:35:08 +0000967
Fred Drakeb7833d31998-09-11 16:21:55 +0000968\section{First Steps Towards Programming \label{firstSteps}}
Guido van Rossum2292b8e1991-01-23 16:31:24 +0000969
Guido van Rossum6fc178f1991-08-16 09:13:42 +0000970Of course, we can use Python for more complicated tasks than adding
971two and two together. For instance, we can write an initial
Fred Drake979d0412001-04-03 17:41:56 +0000972sub-sequence of the \emph{Fibonacci} series as follows:
Guido van Rossuma8d754e1992-01-07 16:44:35 +0000973
Fred Drake8842e861998-02-13 07:16:30 +0000974\begin{verbatim}
Guido van Rossumd9bf55d1991-01-11 16:35:08 +0000975>>> # Fibonacci series:
Guido van Rossum6938f061994-08-01 12:22:53 +0000976... # the sum of two elements defines the next
977... a, b = 0, 1
Guido van Rossum6fc178f1991-08-16 09:13:42 +0000978>>> while b < 10:
Guido van Rossumd9bf55d1991-01-11 16:35:08 +0000979... print b
980... a, b = b, a+b
981...
9821
9831
9842
9853
9865
9878
Fred Drake8842e861998-02-13 07:16:30 +0000988\end{verbatim}
Fred Drake6c2176e1998-02-26 21:47:54 +0000989
Guido van Rossumd9bf55d1991-01-11 16:35:08 +0000990This example introduces several new features.
Guido van Rossum6fc178f1991-08-16 09:13:42 +0000991
Guido van Rossumd9bf55d1991-01-11 16:35:08 +0000992\begin{itemize}
Guido van Rossum6fc178f1991-08-16 09:13:42 +0000993
Guido van Rossumd9bf55d1991-01-11 16:35:08 +0000994\item
Fred Drakeeee08cd1997-12-04 15:43:15 +0000995The first line contains a \emph{multiple assignment}: the variables
996\code{a} and \code{b} simultaneously get the new values 0 and 1. On the
Guido van Rossum6fc178f1991-08-16 09:13:42 +0000997last line this is used again, demonstrating that the expressions on
998the right-hand side are all evaluated first before any of the
Fred Drake20082d92000-04-03 04:26:58 +0000999assignments take place. The right-hand side expressions are evaluated
1000from the left to the right.
Guido van Rossum6fc178f1991-08-16 09:13:42 +00001001
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00001002\item
Fred Drake8842e861998-02-13 07:16:30 +00001003The \keyword{while} loop executes as long as the condition (here:
Fred Drakeee84d591999-03-10 17:25:30 +00001004\code{b < 10}) remains true. In Python, like in C, any non-zero
Fred Drake8842e861998-02-13 07:16:30 +00001005integer value is true; zero is false. The condition may also be a
1006string or list value, in fact any sequence; anything with a non-zero
1007length is true, empty sequences are false. The test used in the
1008example is a simple comparison. The standard comparison operators are
Fred Drake20082d92000-04-03 04:26:58 +00001009written the same as in C: \code{<} (less than), \code{>} (greater than),
1010\code{==} (equal to), \code{<=} (less than or equal to),
1011\code{>=} (greater than or equal to) and \code{!=} (not equal to).
Guido van Rossum6fc178f1991-08-16 09:13:42 +00001012
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00001013\item
Fred Drakeeee08cd1997-12-04 15:43:15 +00001014The \emph{body} of the loop is \emph{indented}: indentation is Python's
Guido van Rossum6fc178f1991-08-16 09:13:42 +00001015way of grouping statements. Python does not (yet!) provide an
1016intelligent input line editing facility, so you have to type a tab or
1017space(s) for each indented line. In practice you will prepare more
1018complicated input for Python with a text editor; most text editors have
1019an auto-indent facility. When a compound statement is entered
1020interactively, it must be followed by a blank line to indicate
1021completion (since the parser cannot guess when you have typed the last
Fred Drake20082d92000-04-03 04:26:58 +00001022line). Note that each line within a basic block must be indented by
1023the same amount.
Guido van Rossum6fc178f1991-08-16 09:13:42 +00001024
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00001025\item
Fred Drake8842e861998-02-13 07:16:30 +00001026The \keyword{print} statement writes the value of the expression(s) it is
Guido van Rossum6fc178f1991-08-16 09:13:42 +00001027given. It differs from just writing the expression you want to write
1028(as we did earlier in the calculator examples) in the way it handles
Guido van Rossum16cd7f91994-10-06 10:29:26 +00001029multiple expressions and strings. Strings are printed without quotes,
Guido van Rossum6fc178f1991-08-16 09:13:42 +00001030and a space is inserted between items, so you can format things nicely,
1031like this:
Guido van Rossuma8d754e1992-01-07 16:44:35 +00001032
Fred Drake8842e861998-02-13 07:16:30 +00001033\begin{verbatim}
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00001034>>> i = 256*256
1035>>> print 'The value of i is', i
1036The value of i is 65536
Fred Drake8842e861998-02-13 07:16:30 +00001037\end{verbatim}
Fred Drake6c2176e1998-02-26 21:47:54 +00001038
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00001039A trailing comma avoids the newline after the output:
Guido van Rossuma8d754e1992-01-07 16:44:35 +00001040
Fred Drake8842e861998-02-13 07:16:30 +00001041\begin{verbatim}
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00001042>>> a, b = 0, 1
1043>>> while b < 1000:
1044... print b,
1045... a, b = b, a+b
1046...
10471 1 2 3 5 8 13 21 34 55 89 144 233 377 610 987
Fred Drake8842e861998-02-13 07:16:30 +00001048\end{verbatim}
Fred Drake6c2176e1998-02-26 21:47:54 +00001049
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00001050Note that the interpreter inserts a newline before it prints the next
1051prompt if the last line was not completed.
Guido van Rossum6fc178f1991-08-16 09:13:42 +00001052
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00001053\end{itemize}
1054
Guido van Rossum5e0759d1992-08-07 16:06:24 +00001055
Fred Drakeb7833d31998-09-11 16:21:55 +00001056\chapter{More Control Flow Tools \label{moreControl}}
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00001057
Fred Drake8842e861998-02-13 07:16:30 +00001058Besides the \keyword{while} statement just introduced, Python knows
1059the usual control flow statements known from other languages, with
1060some twists.
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00001061
Fred Drakeb7833d31998-09-11 16:21:55 +00001062\section{\keyword{if} Statements \label{if}}
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00001063
Fred Drake20082d92000-04-03 04:26:58 +00001064Perhaps the most well-known statement type is the
1065\keyword{if} statement. For example:
Guido van Rossuma8d754e1992-01-07 16:44:35 +00001066
Fred Drake8842e861998-02-13 07:16:30 +00001067\begin{verbatim}
Fred Draked3ba10f2001-08-14 19:55:42 +00001068>>> x = int(raw_input("Please enter an integer: "))
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00001069>>> if x < 0:
1070... x = 0
1071... print 'Negative changed to zero'
Guido van Rossuma8d754e1992-01-07 16:44:35 +00001072... elif x == 0:
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00001073... print 'Zero'
Guido van Rossuma8d754e1992-01-07 16:44:35 +00001074... elif x == 1:
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00001075... print 'Single'
1076... else:
1077... print 'More'
1078...
Fred Drake8842e861998-02-13 07:16:30 +00001079\end{verbatim}
Fred Drake6c2176e1998-02-26 21:47:54 +00001080
Fred Drake20082d92000-04-03 04:26:58 +00001081There can be zero or more \keyword{elif} parts, and the
1082\keyword{else} part is optional. The keyword `\keyword{elif}' is
1083short for `else if', and is useful to avoid excessive indentation. An
1084\keyword{if} \ldots\ \keyword{elif} \ldots\ \keyword{elif} \ldots\ sequence
Fred Drake8842e861998-02-13 07:16:30 +00001085% Weird spacings happen here if the wrapping of the source text
1086% gets changed in the wrong way.
Fred Drake860106a2000-10-20 03:03:18 +00001087is a substitute for the \keyword{switch} or
1088\keyword{case} statements found in other languages.
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00001089
Fred Drakeb7833d31998-09-11 16:21:55 +00001090
1091\section{\keyword{for} Statements \label{for}}
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00001092
Fred Drakef790b161998-11-30 20:37:24 +00001093The \keyword{for}\stindex{for} statement in Python differs a bit from
Fred Drakeee84d591999-03-10 17:25:30 +00001094what you may be used to in C or Pascal. Rather than always
Fred Drakef790b161998-11-30 20:37:24 +00001095iterating over an arithmetic progression of numbers (like in Pascal),
1096or giving the user the ability to define both the iteration step and
Fred Drake20082d92000-04-03 04:26:58 +00001097halting condition (as C), Python's
1098\keyword{for}\stindex{for} statement iterates over the items of any
Fred Drakeed514942001-07-06 17:28:39 +00001099sequence (a list or a string), in the order that they appear in
Fred Drake20082d92000-04-03 04:26:58 +00001100the sequence. For example (no pun intended):
Fred Drakef790b161998-11-30 20:37:24 +00001101% One suggestion was to give a real C example here, but that may only
1102% serve to confuse non-C programmers.
Guido van Rossuma8d754e1992-01-07 16:44:35 +00001103
Fred Drake8842e861998-02-13 07:16:30 +00001104\begin{verbatim}
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00001105>>> # Measure some strings:
Guido van Rossum6938f061994-08-01 12:22:53 +00001106... a = ['cat', 'window', 'defenestrate']
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00001107>>> for x in a:
1108... print x, len(x)
1109...
1110cat 3
1111window 6
1112defenestrate 12
Fred Drake8842e861998-02-13 07:16:30 +00001113\end{verbatim}
Fred Drake6c2176e1998-02-26 21:47:54 +00001114
Guido van Rossum6fc178f1991-08-16 09:13:42 +00001115It is not safe to modify the sequence being iterated over in the loop
Fred Drakeed514942001-07-06 17:28:39 +00001116(this can only happen for mutable sequence types, such as lists). If
1117you need to modify the list you are iterating over (for example, to
1118duplicate selected items) you must iterate over a copy. The slice
1119notation makes this particularly convenient:
Guido van Rossuma8d754e1992-01-07 16:44:35 +00001120
Fred Drake8842e861998-02-13 07:16:30 +00001121\begin{verbatim}
Guido van Rossum6fc178f1991-08-16 09:13:42 +00001122>>> for x in a[:]: # make a slice copy of the entire list
1123... if len(x) > 6: a.insert(0, x)
1124...
1125>>> a
1126['defenestrate', 'cat', 'window', 'defenestrate']
Fred Drake8842e861998-02-13 07:16:30 +00001127\end{verbatim}
Guido van Rossum2292b8e1991-01-23 16:31:24 +00001128
Fred Drakeb7833d31998-09-11 16:21:55 +00001129
1130\section{The \function{range()} Function \label{range}}
Guido van Rossum2292b8e1991-01-23 16:31:24 +00001131
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00001132If you do need to iterate over a sequence of numbers, the built-in
Fred Drake8842e861998-02-13 07:16:30 +00001133function \function{range()} comes in handy. It generates lists
Fred Drakeed514942001-07-06 17:28:39 +00001134containing arithmetic progressions:
Guido van Rossuma8d754e1992-01-07 16:44:35 +00001135
Fred Drake8842e861998-02-13 07:16:30 +00001136\begin{verbatim}
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00001137>>> range(10)
1138[0, 1, 2, 3, 4, 5, 6, 7, 8, 9]
Fred Drake8842e861998-02-13 07:16:30 +00001139\end{verbatim}
Fred Drake6c2176e1998-02-26 21:47:54 +00001140
Fred Drake8842e861998-02-13 07:16:30 +00001141The given end point is never part of the generated list;
1142\code{range(10)} generates a list of 10 values, exactly the legal
1143indices for items of a sequence of length 10. It is possible to let
1144the range start at another number, or to specify a different increment
Fred Drake20082d92000-04-03 04:26:58 +00001145(even negative; sometimes this is called the `step'):
Guido van Rossuma8d754e1992-01-07 16:44:35 +00001146
Fred Drake8842e861998-02-13 07:16:30 +00001147\begin{verbatim}
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00001148>>> range(5, 10)
1149[5, 6, 7, 8, 9]
1150>>> range(0, 10, 3)
1151[0, 3, 6, 9]
1152>>> range(-10, -100, -30)
1153[-10, -40, -70]
Fred Drake8842e861998-02-13 07:16:30 +00001154\end{verbatim}
Fred Drake6c2176e1998-02-26 21:47:54 +00001155
Fred Drake20082d92000-04-03 04:26:58 +00001156To iterate over the indices of a sequence, combine
1157\function{range()} and \function{len()} as follows:
Guido van Rossuma8d754e1992-01-07 16:44:35 +00001158
Fred Drake8842e861998-02-13 07:16:30 +00001159\begin{verbatim}
Guido van Rossum6fc178f1991-08-16 09:13:42 +00001160>>> a = ['Mary', 'had', 'a', 'little', 'lamb']
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00001161>>> for i in range(len(a)):
1162... print i, a[i]
1163...
11640 Mary
11651 had
11662 a
11673 little
Guido van Rossum6fc178f1991-08-16 09:13:42 +000011684 lamb
Fred Drake8842e861998-02-13 07:16:30 +00001169\end{verbatim}
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00001170
Fred Drake20082d92000-04-03 04:26:58 +00001171
Fred Drake391564f1998-04-01 23:11:56 +00001172\section{\keyword{break} and \keyword{continue} Statements, and
Fred Drakeb7833d31998-09-11 16:21:55 +00001173 \keyword{else} Clauses on Loops
1174 \label{break}}
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00001175
Fred Drakeee84d591999-03-10 17:25:30 +00001176The \keyword{break} statement, like in C, breaks out of the smallest
Fred Drake8842e861998-02-13 07:16:30 +00001177enclosing \keyword{for} or \keyword{while} loop.
Guido van Rossum6fc178f1991-08-16 09:13:42 +00001178
Fred Drakeee84d591999-03-10 17:25:30 +00001179The \keyword{continue} statement, also borrowed from C, continues
Fred Drake8842e861998-02-13 07:16:30 +00001180with the next iteration of the loop.
Guido van Rossum6fc178f1991-08-16 09:13:42 +00001181
Fred Drake8842e861998-02-13 07:16:30 +00001182Loop statements may have an \code{else} clause; it is executed when
1183the loop terminates through exhaustion of the list (with
1184\keyword{for}) or when the condition becomes false (with
1185\keyword{while}), but not when the loop is terminated by a
1186\keyword{break} statement. This is exemplified by the following loop,
1187which searches for prime numbers:
Guido van Rossuma8d754e1992-01-07 16:44:35 +00001188
Fred Drake8842e861998-02-13 07:16:30 +00001189\begin{verbatim}
Guido van Rossum2292b8e1991-01-23 16:31:24 +00001190>>> for n in range(2, 10):
1191... for x in range(2, n):
Guido van Rossuma8d754e1992-01-07 16:44:35 +00001192... if n % x == 0:
Guido van Rossum2292b8e1991-01-23 16:31:24 +00001193... print n, 'equals', x, '*', n/x
1194... break
1195... else:
Fred Drake8b0b8402001-05-21 16:55:39 +00001196... # loop fell through without finding a factor
Guido van Rossum2292b8e1991-01-23 16:31:24 +00001197... print n, 'is a prime number'
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00001198...
Guido van Rossum2292b8e1991-01-23 16:31:24 +000011992 is a prime number
12003 is a prime number
12014 equals 2 * 2
12025 is a prime number
12036 equals 2 * 3
12047 is a prime number
12058 equals 2 * 4
12069 equals 3 * 3
Fred Drake8842e861998-02-13 07:16:30 +00001207\end{verbatim}
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00001208
Fred Drake31b761e2000-09-29 15:17:36 +00001209
Fred Drakeb7833d31998-09-11 16:21:55 +00001210\section{\keyword{pass} Statements \label{pass}}
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00001211
Fred Drake8842e861998-02-13 07:16:30 +00001212The \keyword{pass} statement does nothing.
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00001213It can be used when a statement is required syntactically but the
1214program requires no action.
1215For example:
Guido van Rossuma8d754e1992-01-07 16:44:35 +00001216
Fred Drake8842e861998-02-13 07:16:30 +00001217\begin{verbatim}
Raymond Hettingera6e16a82002-08-21 04:54:00 +00001218>>> while True:
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00001219... pass # Busy-wait for keyboard interrupt
1220...
Fred Drake8842e861998-02-13 07:16:30 +00001221\end{verbatim}
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00001222
Fred Drake31b761e2000-09-29 15:17:36 +00001223
Fred Drakeb7833d31998-09-11 16:21:55 +00001224\section{Defining Functions \label{functions}}
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00001225
1226We can create a function that writes the Fibonacci series to an
1227arbitrary boundary:
Guido van Rossuma8d754e1992-01-07 16:44:35 +00001228
Fred Drake8842e861998-02-13 07:16:30 +00001229\begin{verbatim}
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00001230>>> def fib(n): # write Fibonacci series up to n
Fred Drake23d45f42001-12-20 23:54:56 +00001231... """Print a Fibonacci series up to n."""
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00001232... a, b = 0, 1
Guido van Rossum16cd7f91994-10-06 10:29:26 +00001233... while b < n:
Fred Drakeeee08cd1997-12-04 15:43:15 +00001234... print b,
1235... a, b = b, a+b
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00001236...
1237>>> # Now call the function we just defined:
Guido van Rossum6938f061994-08-01 12:22:53 +00001238... fib(2000)
Guido van Rossumd9bf55d1991-01-11 16:35:08 +000012391 1 2 3 5 8 13 21 34 55 89 144 233 377 610 987 1597
Fred Drake8842e861998-02-13 07:16:30 +00001240\end{verbatim}
Fred Drake6c2176e1998-02-26 21:47:54 +00001241
Fred Drake8842e861998-02-13 07:16:30 +00001242The keyword \keyword{def} introduces a function \emph{definition}. It
1243must be followed by the function name and the parenthesized list of
1244formal parameters. The statements that form the body of the function
Fred Drake20082d92000-04-03 04:26:58 +00001245start at the next line, and must be indented. The first statement of
1246the function body can optionally be a string literal; this string
1247literal is the function's \index{documentation strings}documentation
1248string, or \dfn{docstring}.\index{docstrings}\index{strings, documentation}
1249
1250There are tools which use docstrings to automatically produce online
1251or printed documentation, or to let the user interactively browse
1252through code; it's good practice to include docstrings in code that
1253you write, so try to make a habit of it.
Guido van Rossum6fc178f1991-08-16 09:13:42 +00001254
Fred Drakeeee08cd1997-12-04 15:43:15 +00001255The \emph{execution} of a function introduces a new symbol table used
Guido van Rossum6fc178f1991-08-16 09:13:42 +00001256for the local variables of the function. More precisely, all variable
1257assignments in a function store the value in the local symbol table;
Guido van Rossum02455691997-07-17 16:21:52 +00001258whereas variable references first look in the local symbol table, then
Guido van Rossum6fc178f1991-08-16 09:13:42 +00001259in the global symbol table, and then in the table of built-in names.
Fred Drake8842e861998-02-13 07:16:30 +00001260Thus, global variables cannot be directly assigned a value within a
1261function (unless named in a \keyword{global} statement), although
Guido van Rossum6938f061994-08-01 12:22:53 +00001262they may be referenced.
Guido van Rossum6fc178f1991-08-16 09:13:42 +00001263
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00001264The actual parameters (arguments) to a function call are introduced in
Guido van Rossum6fc178f1991-08-16 09:13:42 +00001265the local symbol table of the called function when it is called; thus,
Fred Drake20082d92000-04-03 04:26:58 +00001266arguments are passed using \emph{call by value} (where the
1267\emph{value} is always an object \emph{reference}, not the value of
1268the object).\footnote{
Fred Drakeeee08cd1997-12-04 15:43:15 +00001269 Actually, \emph{call by object reference} would be a better
Guido van Rossum6938f061994-08-01 12:22:53 +00001270 description, since if a mutable object is passed, the caller
Fred Drakeed514942001-07-06 17:28:39 +00001271 will see any changes the callee makes to it (items
Guido van Rossum6938f061994-08-01 12:22:53 +00001272 inserted into a list).
Fred Drake20082d92000-04-03 04:26:58 +00001273} When a function calls another function, a new local symbol table is
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00001274created for that call.
1275
Fred Drake8842e861998-02-13 07:16:30 +00001276A function definition introduces the function name in the current
1277symbol table. The value of the function name
Guido van Rossum6fc178f1991-08-16 09:13:42 +00001278has a type that is recognized by the interpreter as a user-defined
1279function. This value can be assigned to another name which can then
1280also be used as a function. This serves as a general renaming
1281mechanism:
Guido van Rossuma8d754e1992-01-07 16:44:35 +00001282
Fred Drake8842e861998-02-13 07:16:30 +00001283\begin{verbatim}
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00001284>>> fib
Guido van Rossum2292b8e1991-01-23 16:31:24 +00001285<function object at 10042ed0>
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00001286>>> f = fib
1287>>> f(100)
12881 1 2 3 5 8 13 21 34 55 89
Fred Drake8842e861998-02-13 07:16:30 +00001289\end{verbatim}
Fred Drake6c2176e1998-02-26 21:47:54 +00001290
Fred Drakeeee08cd1997-12-04 15:43:15 +00001291You might object that \code{fib} is not a function but a procedure. In
Fred Drakeee84d591999-03-10 17:25:30 +00001292Python, like in C, procedures are just functions that don't return a
Guido van Rossum6fc178f1991-08-16 09:13:42 +00001293value. In fact, technically speaking, procedures do return a value,
Fred Drakeeee08cd1997-12-04 15:43:15 +00001294albeit a rather boring one. This value is called \code{None} (it's a
1295built-in name). Writing the value \code{None} is normally suppressed by
Guido van Rossum6fc178f1991-08-16 09:13:42 +00001296the interpreter if it would be the only value written. You can see it
1297if you really want to:
Guido van Rossuma8d754e1992-01-07 16:44:35 +00001298
Fred Drake8842e861998-02-13 07:16:30 +00001299\begin{verbatim}
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00001300>>> print fib(0)
1301None
Fred Drake8842e861998-02-13 07:16:30 +00001302\end{verbatim}
Fred Drake6c2176e1998-02-26 21:47:54 +00001303
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00001304It is simple to write a function that returns a list of the numbers of
1305the Fibonacci series, instead of printing it:
Guido van Rossuma8d754e1992-01-07 16:44:35 +00001306
Fred Drake8842e861998-02-13 07:16:30 +00001307\begin{verbatim}
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00001308>>> def fib2(n): # return Fibonacci series up to n
Fred Drake23d45f42001-12-20 23:54:56 +00001309... """Return a list containing the Fibonacci series up to n."""
Guido van Rossum2292b8e1991-01-23 16:31:24 +00001310... result = []
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00001311... a, b = 0, 1
Guido van Rossum16cd7f91994-10-06 10:29:26 +00001312... while b < n:
Fred Drakeeee08cd1997-12-04 15:43:15 +00001313... result.append(b) # see below
1314... a, b = b, a+b
Guido van Rossum2292b8e1991-01-23 16:31:24 +00001315... return result
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00001316...
1317>>> f100 = fib2(100) # call it
1318>>> f100 # write the result
1319[1, 1, 2, 3, 5, 8, 13, 21, 34, 55, 89]
Fred Drake8842e861998-02-13 07:16:30 +00001320\end{verbatim}
Fred Drake31b761e2000-09-29 15:17:36 +00001321
Guido van Rossum4410c751991-06-04 20:22:18 +00001322This example, as usual, demonstrates some new Python features:
Guido van Rossum6fc178f1991-08-16 09:13:42 +00001323
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00001324\begin{itemize}
Guido van Rossum6fc178f1991-08-16 09:13:42 +00001325
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00001326\item
Fred Drake8842e861998-02-13 07:16:30 +00001327The \keyword{return} statement returns with a value from a function.
Fred Drake0fe5af92001-01-19 22:34:59 +00001328\keyword{return} without an expression argument returns \code{None}.
1329Falling off the end of a procedure also returns \code{None}.
Guido van Rossum6fc178f1991-08-16 09:13:42 +00001330
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00001331\item
Fred Drakeeee08cd1997-12-04 15:43:15 +00001332The statement \code{result.append(b)} calls a \emph{method} of the list
1333object \code{result}. A method is a function that `belongs' to an
1334object and is named \code{obj.methodname}, where \code{obj} is some
1335object (this may be an expression), and \code{methodname} is the name
Guido van Rossum6fc178f1991-08-16 09:13:42 +00001336of a method that is defined by the object's type. Different types
1337define different methods. Methods of different types may have the
1338same name without causing ambiguity. (It is possible to define your
Fred Drakeeee08cd1997-12-04 15:43:15 +00001339own object types and methods, using \emph{classes}, as discussed later
Guido van Rossum6938f061994-08-01 12:22:53 +00001340in this tutorial.)
Fred Drake8842e861998-02-13 07:16:30 +00001341The method \method{append()} shown in the example, is defined for
Guido van Rossum6fc178f1991-08-16 09:13:42 +00001342list objects; it adds a new element at the end of the list. In this
Fred Drake8842e861998-02-13 07:16:30 +00001343example it is equivalent to \samp{result = result + [b]}, but more
1344efficient.
Guido van Rossum6fc178f1991-08-16 09:13:42 +00001345
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00001346\end{itemize}
Guido van Rossum6fc178f1991-08-16 09:13:42 +00001347
Fred Drakeb7833d31998-09-11 16:21:55 +00001348\section{More on Defining Functions \label{defining}}
Guido van Rossum5e0759d1992-08-07 16:06:24 +00001349
Guido van Rossum02455691997-07-17 16:21:52 +00001350It is also possible to define functions with a variable number of
1351arguments. There are three forms, which can be combined.
1352
Fred Drakeb7833d31998-09-11 16:21:55 +00001353\subsection{Default Argument Values \label{defaultArgs}}
Guido van Rossum02455691997-07-17 16:21:52 +00001354
1355The most useful form is to specify a default value for one or more
1356arguments. This creates a function that can be called with fewer
Fred Drakeed514942001-07-06 17:28:39 +00001357arguments than it is defined
Guido van Rossum02455691997-07-17 16:21:52 +00001358
1359\begin{verbatim}
Fred Drake8842e861998-02-13 07:16:30 +00001360def ask_ok(prompt, retries=4, complaint='Yes or no, please!'):
Raymond Hettingera6e16a82002-08-21 04:54:00 +00001361 while True:
Fred Drake8842e861998-02-13 07:16:30 +00001362 ok = raw_input(prompt)
1363 if ok in ('y', 'ye', 'yes'): return 1
1364 if ok in ('n', 'no', 'nop', 'nope'): return 0
1365 retries = retries - 1
1366 if retries < 0: raise IOError, 'refusenik user'
1367 print complaint
Guido van Rossum02455691997-07-17 16:21:52 +00001368\end{verbatim}
1369
1370This function can be called either like this:
Fred Drakeeee08cd1997-12-04 15:43:15 +00001371\code{ask_ok('Do you really want to quit?')} or like this:
1372\code{ask_ok('OK to overwrite the file?', 2)}.
Guido van Rossum02455691997-07-17 16:21:52 +00001373
1374The default values are evaluated at the point of function definition
Fred Drakeed514942001-07-06 17:28:39 +00001375in the \emph{defining} scope, so that
Guido van Rossum02455691997-07-17 16:21:52 +00001376
1377\begin{verbatim}
Fred Drake8842e861998-02-13 07:16:30 +00001378i = 5
Fred Drake8b09f492001-09-06 18:21:30 +00001379
1380def f(arg=i):
1381 print arg
1382
Fred Drake8842e861998-02-13 07:16:30 +00001383i = 6
1384f()
Guido van Rossum02455691997-07-17 16:21:52 +00001385\end{verbatim}
1386
Fred Drakeeee08cd1997-12-04 15:43:15 +00001387will print \code{5}.
Guido van Rossum02455691997-07-17 16:21:52 +00001388
Guido van Rossumaee5e261998-08-07 17:45:09 +00001389\strong{Important warning:} The default value is evaluated only once.
1390This makes a difference when the default is a mutable object such as a
1391list or dictionary. For example, the following function accumulates
1392the arguments passed to it on subsequent calls:
1393
1394\begin{verbatim}
Fred Drake8b09f492001-09-06 18:21:30 +00001395def f(a, L=[]):
1396 L.append(a)
1397 return L
1398
Guido van Rossumaee5e261998-08-07 17:45:09 +00001399print f(1)
1400print f(2)
1401print f(3)
1402\end{verbatim}
1403
1404This will print
1405
1406\begin{verbatim}
1407[1]
1408[1, 2]
1409[1, 2, 3]
1410\end{verbatim}
1411
1412If you don't want the default to be shared between subsequent calls,
1413you can write the function like this instead:
1414
1415\begin{verbatim}
Fred Drake8b09f492001-09-06 18:21:30 +00001416def f(a, L=None):
1417 if L is None:
1418 L = []
1419 L.append(a)
1420 return L
Guido van Rossumaee5e261998-08-07 17:45:09 +00001421\end{verbatim}
1422
Fred Drakeb7833d31998-09-11 16:21:55 +00001423\subsection{Keyword Arguments \label{keywordArgs}}
Guido van Rossum02455691997-07-17 16:21:52 +00001424
1425Functions can also be called using
Fred Drake8842e861998-02-13 07:16:30 +00001426keyword arguments of the form \samp{\var{keyword} = \var{value}}. For
Guido van Rossum02455691997-07-17 16:21:52 +00001427instance, the following function:
1428
1429\begin{verbatim}
1430def parrot(voltage, state='a stiff', action='voom', type='Norwegian Blue'):
1431 print "-- This parrot wouldn't", action,
1432 print "if you put", voltage, "Volts through it."
1433 print "-- Lovely plumage, the", type
1434 print "-- It's", state, "!"
1435\end{verbatim}
1436
1437could be called in any of the following ways:
1438
1439\begin{verbatim}
1440parrot(1000)
1441parrot(action = 'VOOOOOM', voltage = 1000000)
1442parrot('a thousand', state = 'pushing up the daisies')
1443parrot('a million', 'bereft of life', 'jump')
1444\end{verbatim}
1445
1446but the following calls would all be invalid:
1447
1448\begin{verbatim}
1449parrot() # required argument missing
1450parrot(voltage=5.0, 'dead') # non-keyword argument following keyword
1451parrot(110, voltage=220) # duplicate value for argument
1452parrot(actor='John Cleese') # unknown keyword
1453\end{verbatim}
1454
1455In general, an argument list must have any positional arguments
1456followed by any keyword arguments, where the keywords must be chosen
1457from the formal parameter names. It's not important whether a formal
Fred Drakef1ad2071999-06-30 15:32:50 +00001458parameter has a default value or not. No argument may receive a
Guido van Rossum02455691997-07-17 16:21:52 +00001459value more than once --- formal parameter names corresponding to
1460positional arguments cannot be used as keywords in the same calls.
Fred Drakef1ad2071999-06-30 15:32:50 +00001461Here's an example that fails due to this restriction:
1462
1463\begin{verbatim}
1464>>> def function(a):
1465... pass
1466...
1467>>> function(0, a=0)
Fred Drake162c6a62001-02-14 03:20:18 +00001468Traceback (most recent call last):
Fred Drakef1ad2071999-06-30 15:32:50 +00001469 File "<stdin>", line 1, in ?
1470TypeError: keyword parameter redefined
1471\end{verbatim}
Guido van Rossum02455691997-07-17 16:21:52 +00001472
1473When a final formal parameter of the form \code{**\var{name}} is
1474present, it receives a dictionary containing all keyword arguments
1475whose keyword doesn't correspond to a formal parameter. This may be
Fred Drake20082d92000-04-03 04:26:58 +00001476combined with a formal parameter of the form
1477\code{*\var{name}} (described in the next subsection) which receives a
1478tuple containing the positional arguments beyond the formal parameter
1479list. (\code{*\var{name}} must occur before \code{**\var{name}}.)
1480For example, if we define a function like this:
Guido van Rossum02455691997-07-17 16:21:52 +00001481
1482\begin{verbatim}
1483def cheeseshop(kind, *arguments, **keywords):
1484 print "-- Do you have any", kind, '?'
1485 print "-- I'm sorry, we're all out of", kind
1486 for arg in arguments: print arg
1487 print '-'*40
Fred Drakec26467d2002-01-29 14:53:30 +00001488 keys = keywords.keys()
1489 keys.sort()
1490 for kw in keys: print kw, ':', keywords[kw]
Guido van Rossum02455691997-07-17 16:21:52 +00001491\end{verbatim}
1492
1493It could be called like this:
1494
1495\begin{verbatim}
1496cheeseshop('Limburger', "It's very runny, sir.",
1497 "It's really very, VERY runny, sir.",
1498 client='John Cleese',
1499 shopkeeper='Michael Palin',
1500 sketch='Cheese Shop Sketch')
1501\end{verbatim}
1502
1503and of course it would print:
1504
1505\begin{verbatim}
1506-- Do you have any Limburger ?
1507-- I'm sorry, we're all out of Limburger
1508It's very runny, sir.
1509It's really very, VERY runny, sir.
1510----------------------------------------
1511client : John Cleese
1512shopkeeper : Michael Palin
1513sketch : Cheese Shop Sketch
1514\end{verbatim}
1515
Fred Drakec26467d2002-01-29 14:53:30 +00001516Note that the \method{sort()} method of the list of keyword argument
1517names is called before printing the contents of the \code{keywords}
1518dictionary; if this is not done, the order in which the arguments are
1519printed is undefined.
1520
Fred Drake31b761e2000-09-29 15:17:36 +00001521
Fred Drakeb7833d31998-09-11 16:21:55 +00001522\subsection{Arbitrary Argument Lists \label{arbitraryArgs}}
Guido van Rossum02455691997-07-17 16:21:52 +00001523
1524Finally, the least frequently used option is to specify that a
1525function can be called with an arbitrary number of arguments. These
1526arguments will be wrapped up in a tuple. Before the variable number
1527of arguments, zero or more normal arguments may occur.
1528
1529\begin{verbatim}
Fred Drake8842e861998-02-13 07:16:30 +00001530def fprintf(file, format, *args):
1531 file.write(format % args)
Guido van Rossum02455691997-07-17 16:21:52 +00001532\end{verbatim}
1533
Fred Drakea594baf1998-04-03 05:16:31 +00001534
Fred Drakeb7833d31998-09-11 16:21:55 +00001535\subsection{Lambda Forms \label{lambda}}
Fred Drakea594baf1998-04-03 05:16:31 +00001536
1537By popular demand, a few features commonly found in functional
1538programming languages and Lisp have been added to Python. With the
1539\keyword{lambda} keyword, small anonymous functions can be created.
1540Here's a function that returns the sum of its two arguments:
1541\samp{lambda a, b: a+b}. Lambda forms can be used wherever function
1542objects are required. They are syntactically restricted to a single
1543expression. Semantically, they are just syntactic sugar for a normal
1544function definition. Like nested function definitions, lambda forms
Fred Drakefcf94682001-12-03 21:47:37 +00001545can reference variables from the containing scope:
Fred Drakea594baf1998-04-03 05:16:31 +00001546
1547\begin{verbatim}
Tim Petersc1134652000-11-27 06:38:04 +00001548>>> def make_incrementor(n):
Fred Drakefcf94682001-12-03 21:47:37 +00001549... return lambda x: x + n
Tim Petersc1134652000-11-27 06:38:04 +00001550...
1551>>> f = make_incrementor(42)
1552>>> f(0)
155342
1554>>> f(1)
155543
Fred Drakea594baf1998-04-03 05:16:31 +00001556\end{verbatim}
1557
Fred Drake20082d92000-04-03 04:26:58 +00001558
Fred Drakeb7833d31998-09-11 16:21:55 +00001559\subsection{Documentation Strings \label{docstrings}}
Fred Drakea594baf1998-04-03 05:16:31 +00001560
1561There are emerging conventions about the content and formatting of
1562documentation strings.
Fred Drake20082d92000-04-03 04:26:58 +00001563\index{docstrings}\index{documentation strings}
1564\index{strings, documentation}
Fred Drakea594baf1998-04-03 05:16:31 +00001565
1566The first line should always be a short, concise summary of the
1567object's purpose. For brevity, it should not explicitly state the
1568object's name or type, since these are available by other means
1569(except if the name happens to be a verb describing a function's
1570operation). This line should begin with a capital letter and end with
1571a period.
1572
1573If there are more lines in the documentation string, the second line
1574should be blank, visually separating the summary from the rest of the
Fred Drake4b1a07a1999-03-12 18:21:32 +00001575description. The following lines should be one or more paragraphs
1576describing the object's calling conventions, its side effects, etc.
Fred Drakea594baf1998-04-03 05:16:31 +00001577
1578The Python parser does not strip indentation from multi-line string
1579literals in Python, so tools that process documentation have to strip
Fred Drake20082d92000-04-03 04:26:58 +00001580indentation if desired. This is done using the following convention.
1581The first non-blank line \emph{after} the first line of the string
1582determines the amount of indentation for the entire documentation
1583string. (We can't use the first line since it is generally adjacent
1584to the string's opening quotes so its indentation is not apparent in
1585the string literal.) Whitespace ``equivalent'' to this indentation is
1586then stripped from the start of all lines of the string. Lines that
1587are indented less should not occur, but if they occur all their
1588leading whitespace should be stripped. Equivalence of whitespace
1589should be tested after expansion of tabs (to 8 spaces, normally).
1590
1591Here is an example of a multi-line docstring:
1592
1593\begin{verbatim}
1594>>> def my_function():
1595... """Do nothing, but document it.
1596...
1597... No, really, it doesn't do anything.
1598... """
1599... pass
1600...
1601>>> print my_function.__doc__
1602Do nothing, but document it.
1603
1604 No, really, it doesn't do anything.
1605
1606\end{verbatim}
Fred Drakea594baf1998-04-03 05:16:31 +00001607
1608
1609
Fred Drakeb7833d31998-09-11 16:21:55 +00001610\chapter{Data Structures \label{structures}}
Guido van Rossum6fc178f1991-08-16 09:13:42 +00001611
1612This chapter describes some things you've learned about already in
1613more detail, and adds some new things as well.
1614
Fred Drake20082d92000-04-03 04:26:58 +00001615
Fred Drakeb7833d31998-09-11 16:21:55 +00001616\section{More on Lists \label{moreLists}}
Guido van Rossum6fc178f1991-08-16 09:13:42 +00001617
1618The list data type has some more methods. Here are all of the methods
Fred Drakeed688541998-02-11 22:29:17 +00001619of list objects:
Guido van Rossum6fc178f1991-08-16 09:13:42 +00001620
Fred Drake55ad7f82002-06-11 02:56:17 +00001621\begin{methoddesc}[list]{append}{x}
Fred Drake20082d92000-04-03 04:26:58 +00001622Add an item to the end of the list;
Fred Drake55ad7f82002-06-11 02:56:17 +00001623equivalent to \code{a[len(a):] = [\var{x}]}.
1624\end{methoddesc}
Fred Drake20082d92000-04-03 04:26:58 +00001625
Fred Drake55ad7f82002-06-11 02:56:17 +00001626\begin{methoddesc}[list]{extend}{L}
Fred Drake20082d92000-04-03 04:26:58 +00001627Extend the list by appending all the items in the given list;
Fred Drake55ad7f82002-06-11 02:56:17 +00001628equivalent to \code{a[len(a):] = \var{L}}.
1629\end{methoddesc}
Fred Drake20082d92000-04-03 04:26:58 +00001630
Fred Drake55ad7f82002-06-11 02:56:17 +00001631\begin{methoddesc}[list]{insert}{i, x}
1632Insert an item at a given position. The first argument is the index
1633of the element before which to insert, so \code{a.insert(0, \var{x})}
1634inserts at the front of the list, and \code{a.insert(len(a), \var{x})}
1635is equivalent to \code{a.append(\var{x})}.
1636\end{methoddesc}
Guido van Rossum6fc178f1991-08-16 09:13:42 +00001637
Fred Drake55ad7f82002-06-11 02:56:17 +00001638\begin{methoddesc}[list]{remove}{x}
1639Remove the first item from the list whose value is \var{x}.
Fred Drake20082d92000-04-03 04:26:58 +00001640It is an error if there is no such item.
Fred Drake55ad7f82002-06-11 02:56:17 +00001641\end{methoddesc}
Fred Drake20082d92000-04-03 04:26:58 +00001642
Fred Drake55ad7f82002-06-11 02:56:17 +00001643\begin{methoddesc}[list]{pop}{\optional{i}}
Fred Drake20082d92000-04-03 04:26:58 +00001644Remove the item at the given position in the list, and return it. If
1645no index is specified, \code{a.pop()} returns the last item in the
Fred Drake55ad7f82002-06-11 02:56:17 +00001646list. The item is also removed from the list. (The square brackets
1647around the \var{i} in the method signature denote that the parameter
1648is optional, not that you should type square brackets at that
1649position. You will see this notation frequently in the
1650\citetitle[../lib/lib.html]{Python Library Reference}.)
1651\end{methoddesc}
Guido van Rossum6fc178f1991-08-16 09:13:42 +00001652
Fred Drake55ad7f82002-06-11 02:56:17 +00001653\begin{methoddesc}[list]{index}{x}
1654Return the index in the list of the first item whose value is \var{x}.
Guido van Rossum6fc178f1991-08-16 09:13:42 +00001655It is an error if there is no such item.
Fred Drake55ad7f82002-06-11 02:56:17 +00001656\end{methoddesc}
Guido van Rossum6fc178f1991-08-16 09:13:42 +00001657
Fred Drake55ad7f82002-06-11 02:56:17 +00001658\begin{methoddesc}[list]{count}{x}
1659Return the number of times \var{x} appears in the list.
1660\end{methoddesc}
Guido van Rossum6fc178f1991-08-16 09:13:42 +00001661
Fred Drake55ad7f82002-06-11 02:56:17 +00001662\begin{methoddesc}[list]{sort}{}
Guido van Rossum6fc178f1991-08-16 09:13:42 +00001663Sort the items of the list, in place.
Fred Drake55ad7f82002-06-11 02:56:17 +00001664\end{methoddesc}
Guido van Rossum6fc178f1991-08-16 09:13:42 +00001665
Fred Drake55ad7f82002-06-11 02:56:17 +00001666\begin{methoddesc}[list]{reverse}{}
Guido van Rossum6fc178f1991-08-16 09:13:42 +00001667Reverse the elements of the list, in place.
Fred Drake55ad7f82002-06-11 02:56:17 +00001668\end{methoddesc}
Guido van Rossum6fc178f1991-08-16 09:13:42 +00001669
Fred Drake20082d92000-04-03 04:26:58 +00001670An example that uses most of the list methods:
Guido van Rossuma8d754e1992-01-07 16:44:35 +00001671
Fred Drake8842e861998-02-13 07:16:30 +00001672\begin{verbatim}
Guido van Rossum6fc178f1991-08-16 09:13:42 +00001673>>> a = [66.6, 333, 333, 1, 1234.5]
Guido van Rossum6938f061994-08-01 12:22:53 +00001674>>> print a.count(333), a.count(66.6), a.count('x')
16752 1 0
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00001676>>> a.insert(2, -1)
Guido van Rossum6fc178f1991-08-16 09:13:42 +00001677>>> a.append(333)
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00001678>>> a
Guido van Rossum6fc178f1991-08-16 09:13:42 +00001679[66.6, 333, -1, 333, 1, 1234.5, 333]
1680>>> a.index(333)
16811
1682>>> a.remove(333)
1683>>> a
1684[66.6, -1, 333, 1, 1234.5, 333]
1685>>> a.reverse()
1686>>> a
1687[333, 1234.5, 1, 333, -1, 66.6]
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00001688>>> a.sort()
1689>>> a
Guido van Rossum6fc178f1991-08-16 09:13:42 +00001690[-1, 1, 66.6, 333, 333, 1234.5]
Fred Drake8842e861998-02-13 07:16:30 +00001691\end{verbatim}
Guido van Rossum6fc178f1991-08-16 09:13:42 +00001692
Fred Drake20082d92000-04-03 04:26:58 +00001693
1694\subsection{Using Lists as Stacks \label{lists-as-stacks}}
Fred Drake67fdaa42001-03-06 07:19:34 +00001695\sectionauthor{Ka-Ping Yee}{ping@lfw.org}
Fred Drake20082d92000-04-03 04:26:58 +00001696
1697The list methods make it very easy to use a list as a stack, where the
1698last element added is the first element retrieved (``last-in,
1699first-out''). To add an item to the top of the stack, use
1700\method{append()}. To retrieve an item from the top of the stack, use
1701\method{pop()} without an explicit index. For example:
1702
1703\begin{verbatim}
1704>>> stack = [3, 4, 5]
1705>>> stack.append(6)
1706>>> stack.append(7)
1707>>> stack
1708[3, 4, 5, 6, 7]
1709>>> stack.pop()
17107
1711>>> stack
1712[3, 4, 5, 6]
1713>>> stack.pop()
17146
1715>>> stack.pop()
17165
1717>>> stack
1718[3, 4]
1719\end{verbatim}
1720
1721
1722\subsection{Using Lists as Queues \label{lists-as-queues}}
Fred Drake67fdaa42001-03-06 07:19:34 +00001723\sectionauthor{Ka-Ping Yee}{ping@lfw.org}
Fred Drake20082d92000-04-03 04:26:58 +00001724
1725You can also use a list conveniently as a queue, where the first
1726element added is the first element retrieved (``first-in,
1727first-out''). To add an item to the back of the queue, use
1728\method{append()}. To retrieve an item from the front of the queue,
1729use \method{pop()} with \code{0} as the index. For example:
1730
1731\begin{verbatim}
1732>>> queue = ["Eric", "John", "Michael"]
1733>>> queue.append("Terry") # Terry arrives
1734>>> queue.append("Graham") # Graham arrives
1735>>> queue.pop(0)
1736'Eric'
1737>>> queue.pop(0)
1738'John'
1739>>> queue
1740['Michael', 'Terry', 'Graham']
1741\end{verbatim}
1742
1743
Fred Drakeb7833d31998-09-11 16:21:55 +00001744\subsection{Functional Programming Tools \label{functional}}
Guido van Rossum02455691997-07-17 16:21:52 +00001745
1746There are three built-in functions that are very useful when used with
Fred Drake8842e861998-02-13 07:16:30 +00001747lists: \function{filter()}, \function{map()}, and \function{reduce()}.
Guido van Rossum02455691997-07-17 16:21:52 +00001748
Fred Drake8842e861998-02-13 07:16:30 +00001749\samp{filter(\var{function}, \var{sequence})} returns a sequence (of
1750the same type, if possible) consisting of those items from the
1751sequence for which \code{\var{function}(\var{item})} is true. For
1752example, to compute some primes:
Guido van Rossum02455691997-07-17 16:21:52 +00001753
1754\begin{verbatim}
Fred Drakeee84d591999-03-10 17:25:30 +00001755>>> def f(x): return x % 2 != 0 and x % 3 != 0
Fred Drake8842e861998-02-13 07:16:30 +00001756...
1757>>> filter(f, range(2, 25))
1758[5, 7, 11, 13, 17, 19, 23]
Guido van Rossum02455691997-07-17 16:21:52 +00001759\end{verbatim}
1760
Fred Drake8842e861998-02-13 07:16:30 +00001761\samp{map(\var{function}, \var{sequence})} calls
1762\code{\var{function}(\var{item})} for each of the sequence's items and
1763returns a list of the return values. For example, to compute some
1764cubes:
Guido van Rossum02455691997-07-17 16:21:52 +00001765
1766\begin{verbatim}
Fred Drake8842e861998-02-13 07:16:30 +00001767>>> def cube(x): return x*x*x
1768...
1769>>> map(cube, range(1, 11))
1770[1, 8, 27, 64, 125, 216, 343, 512, 729, 1000]
Guido van Rossum02455691997-07-17 16:21:52 +00001771\end{verbatim}
1772
1773More than one sequence may be passed; the function must then have as
1774many arguments as there are sequences and is called with the
Fred Drake8842e861998-02-13 07:16:30 +00001775corresponding item from each sequence (or \code{None} if some sequence
1776is shorter than another). If \code{None} is passed for the function,
Guido van Rossum02455691997-07-17 16:21:52 +00001777a function returning its argument(s) is substituted.
1778
1779Combining these two special cases, we see that
Fred Drake8842e861998-02-13 07:16:30 +00001780\samp{map(None, \var{list1}, \var{list2})} is a convenient way of
1781turning a pair of lists into a list of pairs. For example:
Guido van Rossum02455691997-07-17 16:21:52 +00001782
1783\begin{verbatim}
Fred Drake8842e861998-02-13 07:16:30 +00001784>>> seq = range(8)
1785>>> def square(x): return x*x
1786...
1787>>> map(None, seq, map(square, seq))
1788[(0, 0), (1, 1), (2, 4), (3, 9), (4, 16), (5, 25), (6, 36), (7, 49)]
Guido van Rossum02455691997-07-17 16:21:52 +00001789\end{verbatim}
1790
Fred Drake8842e861998-02-13 07:16:30 +00001791\samp{reduce(\var{func}, \var{sequence})} returns a single value
1792constructed by calling the binary function \var{func} on the first two
1793items of the sequence, then on the result and the next item, and so
1794on. For example, to compute the sum of the numbers 1 through 10:
Guido van Rossum02455691997-07-17 16:21:52 +00001795
1796\begin{verbatim}
Fred Drake8842e861998-02-13 07:16:30 +00001797>>> def add(x,y): return x+y
1798...
1799>>> reduce(add, range(1, 11))
180055
Guido van Rossum02455691997-07-17 16:21:52 +00001801\end{verbatim}
1802
1803If there's only one item in the sequence, its value is returned; if
1804the sequence is empty, an exception is raised.
1805
1806A third argument can be passed to indicate the starting value. In this
1807case the starting value is returned for an empty sequence, and the
1808function is first applied to the starting value and the first sequence
1809item, then to the result and the next item, and so on. For example,
1810
1811\begin{verbatim}
Fred Drake8842e861998-02-13 07:16:30 +00001812>>> def sum(seq):
1813... def add(x,y): return x+y
1814... return reduce(add, seq, 0)
1815...
1816>>> sum(range(1, 11))
181755
1818>>> sum([])
18190
Guido van Rossum02455691997-07-17 16:21:52 +00001820\end{verbatim}
1821
Fred Drake31b761e2000-09-29 15:17:36 +00001822
Skip Montanaro803d6e52000-08-12 18:09:51 +00001823\subsection{List Comprehensions}
1824
Skip Montanaro46dfa5f2000-08-22 02:43:07 +00001825List comprehensions provide a concise way to create lists without resorting
1826to use of \function{map()}, \function{filter()} and/or \keyword{lambda}.
1827The resulting list definition tends often to be clearer than lists built
1828using those constructs. Each list comprehension consists of an expression
Fred Drake33fd5f72002-06-26 21:25:15 +00001829followed by a \keyword{for} clause, then zero or more \keyword{for} or
Skip Montanaro46dfa5f2000-08-22 02:43:07 +00001830\keyword{if} clauses. The result will be a list resulting from evaluating
1831the expression in the context of the \keyword{for} and \keyword{if} clauses
1832which follow it. If the expression would evaluate to a tuple, it must be
1833parenthesized.
Skip Montanaro803d6e52000-08-12 18:09:51 +00001834
1835\begin{verbatim}
Fred Drake1aebadf2000-08-16 21:44:03 +00001836>>> freshfruit = [' banana', ' loganberry ', 'passion fruit ']
1837>>> [weapon.strip() for weapon in freshfruit]
1838['banana', 'loganberry', 'passion fruit']
Skip Montanaro803d6e52000-08-12 18:09:51 +00001839>>> vec = [2, 4, 6]
Fred Drake1aebadf2000-08-16 21:44:03 +00001840>>> [3*x for x in vec]
Skip Montanaro803d6e52000-08-12 18:09:51 +00001841[6, 12, 18]
Fred Drake1aebadf2000-08-16 21:44:03 +00001842>>> [3*x for x in vec if x > 3]
1843[12, 18]
1844>>> [3*x for x in vec if x < 2]
1845[]
Skip Montanaro46dfa5f2000-08-22 02:43:07 +00001846>>> [[x,x**2] for x in vec]
1847[[2, 4], [4, 16], [6, 36]]
1848>>> [x, x**2 for x in vec] # error - parens required for tuples
Fred Drake13af4282001-09-21 21:10:05 +00001849 File "<stdin>", line 1, in ?
Skip Montanaro46dfa5f2000-08-22 02:43:07 +00001850 [x, x**2 for x in vec]
1851 ^
1852SyntaxError: invalid syntax
1853>>> [(x, x**2) for x in vec]
1854[(2, 4), (4, 16), (6, 36)]
Skip Montanaro803d6e52000-08-12 18:09:51 +00001855>>> vec1 = [2, 4, 6]
1856>>> vec2 = [4, 3, -9]
Fred Drake1aebadf2000-08-16 21:44:03 +00001857>>> [x*y for x in vec1 for y in vec2]
Skip Montanaro803d6e52000-08-12 18:09:51 +00001858[8, 6, -18, 16, 12, -36, 24, 18, -54]
Fred Drake1aebadf2000-08-16 21:44:03 +00001859>>> [x+y for x in vec1 for y in vec2]
Skip Montanaro803d6e52000-08-12 18:09:51 +00001860[6, 5, -7, 8, 7, -5, 10, 9, -3]
Fred Drake1da50f62001-12-03 18:54:33 +00001861>>> [vec1[i]*vec2[i] for i in range(len(vec1))]
1862[8, 12, -54]
Skip Montanaro803d6e52000-08-12 18:09:51 +00001863\end{verbatim}
1864
Raymond Hettinger44c42b92002-09-06 18:06:04 +00001865To make list comprehensions match the behavior of \keyword{for}
1866loops, assignments to the loop variable remain visible outside
1867of the comprehension:
1868
1869\begin{verbatim}
1870>>> x = 100 # this gets overwritten
1871>>> [x**3 for x in range(5)]
1872[0, 1, 8, 27, 64]
1873>>> x
18744 # the final value for range(5)
1875>>
1876\end{verbatim}
1877
Fred Drake31b761e2000-09-29 15:17:36 +00001878
Fred Drakeb7833d31998-09-11 16:21:55 +00001879\section{The \keyword{del} statement \label{del}}
Guido van Rossum6fc178f1991-08-16 09:13:42 +00001880
1881There is a way to remove an item from a list given its index instead
Fred Drake81f7eb62000-08-12 20:08:04 +00001882of its value: the \keyword{del} statement. This can also be used to
Guido van Rossum6fc178f1991-08-16 09:13:42 +00001883remove slices from a list (which we did earlier by assignment of an
1884empty list to the slice). For example:
Guido van Rossuma8d754e1992-01-07 16:44:35 +00001885
Fred Drake8842e861998-02-13 07:16:30 +00001886\begin{verbatim}
Guido van Rossum6fc178f1991-08-16 09:13:42 +00001887>>> a
1888[-1, 1, 66.6, 333, 333, 1234.5]
1889>>> del a[0]
1890>>> a
1891[1, 66.6, 333, 333, 1234.5]
1892>>> del a[2:4]
1893>>> a
1894[1, 66.6, 1234.5]
Fred Drake8842e861998-02-13 07:16:30 +00001895\end{verbatim}
Fred Drake6c2176e1998-02-26 21:47:54 +00001896
1897\keyword{del} can also be used to delete entire variables:
Guido van Rossuma8d754e1992-01-07 16:44:35 +00001898
Fred Drake8842e861998-02-13 07:16:30 +00001899\begin{verbatim}
Guido van Rossum6fc178f1991-08-16 09:13:42 +00001900>>> del a
Fred Drake8842e861998-02-13 07:16:30 +00001901\end{verbatim}
Fred Drake6c2176e1998-02-26 21:47:54 +00001902
Fred Drakeeee08cd1997-12-04 15:43:15 +00001903Referencing the name \code{a} hereafter is an error (at least until
Fred Drake6c2176e1998-02-26 21:47:54 +00001904another value is assigned to it). We'll find other uses for
1905\keyword{del} later.
Guido van Rossum6fc178f1991-08-16 09:13:42 +00001906
Fred Drake31b761e2000-09-29 15:17:36 +00001907
Fred Drakeb7833d31998-09-11 16:21:55 +00001908\section{Tuples and Sequences \label{tuples}}
Guido van Rossum6fc178f1991-08-16 09:13:42 +00001909
Fred Drakeed514942001-07-06 17:28:39 +00001910We saw that lists and strings have many common properties, such as
Fred Drakeeee08cd1997-12-04 15:43:15 +00001911indexing and slicing operations. They are two examples of
1912\emph{sequence} data types. Since Python is an evolving language,
1913other sequence data types may be added. There is also another
1914standard sequence data type: the \emph{tuple}.
Guido van Rossum6fc178f1991-08-16 09:13:42 +00001915
1916A tuple consists of a number of values separated by commas, for
1917instance:
Guido van Rossuma8d754e1992-01-07 16:44:35 +00001918
Fred Drake8842e861998-02-13 07:16:30 +00001919\begin{verbatim}
Guido van Rossum6fc178f1991-08-16 09:13:42 +00001920>>> t = 12345, 54321, 'hello!'
1921>>> t[0]
192212345
1923>>> t
1924(12345, 54321, 'hello!')
1925>>> # Tuples may be nested:
Guido van Rossum6938f061994-08-01 12:22:53 +00001926... u = t, (1, 2, 3, 4, 5)
Guido van Rossum6fc178f1991-08-16 09:13:42 +00001927>>> u
1928((12345, 54321, 'hello!'), (1, 2, 3, 4, 5))
Fred Drake8842e861998-02-13 07:16:30 +00001929\end{verbatim}
Fred Drake6c2176e1998-02-26 21:47:54 +00001930
Guido van Rossum6fc178f1991-08-16 09:13:42 +00001931As you see, on output tuples are alway enclosed in parentheses, so
1932that nested tuples are interpreted correctly; they may be input with
1933or without surrounding parentheses, although often parentheses are
1934necessary anyway (if the tuple is part of a larger expression).
1935
Fred Drakeed514942001-07-06 17:28:39 +00001936Tuples have many uses. For example: (x, y) coordinate pairs, employee
1937records from a database, etc. Tuples, like strings, are immutable: it
1938is not possible to assign to the individual items of a tuple (you can
Guido van Rossum6fc178f1991-08-16 09:13:42 +00001939simulate much of the same effect with slicing and concatenation,
Fred Drake31b761e2000-09-29 15:17:36 +00001940though). It is also possible to create tuples which contain mutable
1941objects, such as lists.
Guido van Rossum6fc178f1991-08-16 09:13:42 +00001942
1943A special problem is the construction of tuples containing 0 or 1
Guido van Rossum6938f061994-08-01 12:22:53 +00001944items: the syntax has some extra quirks to accommodate these. Empty
Guido van Rossum6fc178f1991-08-16 09:13:42 +00001945tuples are constructed by an empty pair of parentheses; a tuple with
1946one item is constructed by following a value with a comma
1947(it is not sufficient to enclose a single value in parentheses).
1948Ugly, but effective. For example:
Guido van Rossuma8d754e1992-01-07 16:44:35 +00001949
Fred Drake8842e861998-02-13 07:16:30 +00001950\begin{verbatim}
Guido van Rossum6fc178f1991-08-16 09:13:42 +00001951>>> empty = ()
1952>>> singleton = 'hello', # <-- note trailing comma
1953>>> len(empty)
19540
1955>>> len(singleton)
19561
1957>>> singleton
1958('hello',)
Fred Drake8842e861998-02-13 07:16:30 +00001959\end{verbatim}
Fred Drake6c2176e1998-02-26 21:47:54 +00001960
Fred Drakeeee08cd1997-12-04 15:43:15 +00001961The statement \code{t = 12345, 54321, 'hello!'} is an example of
1962\emph{tuple packing}: the values \code{12345}, \code{54321} and
1963\code{'hello!'} are packed together in a tuple. The reverse operation
Fred Drakeed514942001-07-06 17:28:39 +00001964is also possible:
Guido van Rossuma8d754e1992-01-07 16:44:35 +00001965
Fred Drake8842e861998-02-13 07:16:30 +00001966\begin{verbatim}
Guido van Rossum6fc178f1991-08-16 09:13:42 +00001967>>> x, y, z = t
Fred Drake8842e861998-02-13 07:16:30 +00001968\end{verbatim}
Fred Drake6c2176e1998-02-26 21:47:54 +00001969
Fred Drake31b761e2000-09-29 15:17:36 +00001970This is called, appropriately enough, \emph{sequence unpacking}.
1971Sequence unpacking requires that the list of variables on the left
1972have the same number of elements as the length of the sequence. Note
1973that multiple assignment is really just a combination of tuple packing
1974and sequence unpacking!
Guido van Rossum6fc178f1991-08-16 09:13:42 +00001975
Fred Drake31b761e2000-09-29 15:17:36 +00001976There is a small bit of asymmetry here: packing multiple values
1977always creates a tuple, and unpacking works for any sequence.
Guido van Rossum6fc178f1991-08-16 09:13:42 +00001978
Guido van Rossumaee5e261998-08-07 17:45:09 +00001979% XXX Add a bit on the difference between tuples and lists.
Fred Drake31b761e2000-09-29 15:17:36 +00001980
Guido van Rossumaee5e261998-08-07 17:45:09 +00001981
Fred Drakeb7833d31998-09-11 16:21:55 +00001982\section{Dictionaries \label{dictionaries}}
Guido van Rossum6fc178f1991-08-16 09:13:42 +00001983
Fred Drakeeee08cd1997-12-04 15:43:15 +00001984Another useful data type built into Python is the \emph{dictionary}.
Guido van Rossum6fc178f1991-08-16 09:13:42 +00001985Dictionaries are sometimes found in other languages as ``associative
1986memories'' or ``associative arrays''. Unlike sequences, which are
Fred Drakeeee08cd1997-12-04 15:43:15 +00001987indexed by a range of numbers, dictionaries are indexed by \emph{keys},
Fred Drakef1ad2071999-06-30 15:32:50 +00001988which can be any immutable type; strings and numbers can always be
Guido van Rossum02455691997-07-17 16:21:52 +00001989keys. Tuples can be used as keys if they contain only strings,
Fred Drake31b761e2000-09-29 15:17:36 +00001990numbers, or tuples; if a tuple contains any mutable object either
1991directly or indirectly, it cannot be used as a key. You can't use
1992lists as keys, since lists can be modified in place using their
1993\method{append()} and \method{extend()} methods, as well as slice and
1994indexed assignments.
Guido van Rossum02455691997-07-17 16:21:52 +00001995
Guido van Rossum6938f061994-08-01 12:22:53 +00001996It is best to think of a dictionary as an unordered set of
Fred Drake31b761e2000-09-29 15:17:36 +00001997\emph{key: value} pairs, with the requirement that the keys are unique
Guido van Rossum6fc178f1991-08-16 09:13:42 +00001998(within one dictionary).
Fred Drakeeee08cd1997-12-04 15:43:15 +00001999A pair of braces creates an empty dictionary: \code{\{\}}.
Guido van Rossum6fc178f1991-08-16 09:13:42 +00002000Placing a comma-separated list of key:value pairs within the
2001braces adds initial key:value pairs to the dictionary; this is also the
2002way dictionaries are written on output.
2003
2004The main operations on a dictionary are storing a value with some key
2005and extracting the value given the key. It is also possible to delete
2006a key:value pair
Fred Drakeeee08cd1997-12-04 15:43:15 +00002007with \code{del}.
Guido van Rossum6fc178f1991-08-16 09:13:42 +00002008If you store using a key that is already in use, the old value
2009associated with that key is forgotten. It is an error to extract a
Guido van Rossum6938f061994-08-01 12:22:53 +00002010value using a non-existent key.
Guido van Rossum6fc178f1991-08-16 09:13:42 +00002011
Fred Drake20082d92000-04-03 04:26:58 +00002012The \code{keys()} method of a dictionary object returns a list of all
2013the keys used in the dictionary, in random order (if you want it
2014sorted, just apply the \code{sort()} method to the list of keys). To
2015check whether a single key is in the dictionary, use the
2016\code{has_key()} method of the dictionary.
Guido van Rossum6fc178f1991-08-16 09:13:42 +00002017
2018Here is a small example using a dictionary:
2019
Fred Drake8842e861998-02-13 07:16:30 +00002020\begin{verbatim}
Guido van Rossum6fc178f1991-08-16 09:13:42 +00002021>>> tel = {'jack': 4098, 'sape': 4139}
2022>>> tel['guido'] = 4127
2023>>> tel
Guido van Rossum8f96f771991-11-12 15:45:03 +00002024{'sape': 4139, 'guido': 4127, 'jack': 4098}
Guido van Rossum6fc178f1991-08-16 09:13:42 +00002025>>> tel['jack']
20264098
2027>>> del tel['sape']
2028>>> tel['irv'] = 4127
2029>>> tel
Guido van Rossum8f96f771991-11-12 15:45:03 +00002030{'guido': 4127, 'irv': 4127, 'jack': 4098}
Guido van Rossum6fc178f1991-08-16 09:13:42 +00002031>>> tel.keys()
2032['guido', 'irv', 'jack']
2033>>> tel.has_key('guido')
20341
Fred Drake8842e861998-02-13 07:16:30 +00002035\end{verbatim}
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00002036
Raymond Hettinger07dc9182002-06-25 15:13:18 +00002037The \function{dict()} contructor builds dictionaries directly from
2038lists of key-value pairs stored as tuples. When the pairs form a
2039pattern, list comprehensions can compactly specify the key-value list.
2040
2041\begin{verbatim}
2042>>> dict([('sape', 4139), ('guido', 4127), ('jack', 4098)])
2043{'sape': 4139, 'jack': 4098, 'guido': 4127}
2044>>> dict([(x, x**2) for x in vec]) # use a list comprehension
2045{2: 4, 4: 16, 6: 36}
2046\end{verbatim}
2047
Fred Drake38f71972002-04-26 20:29:44 +00002048
2049\section{Looping Techniques \label{loopidioms}}
2050
2051When looping through dictionaries, the key and corresponding value can
2052be retrieved at the same time using the \method{items()} method.
2053
2054\begin{verbatim}
2055>>> knights = {'gallahad': 'the pure', 'robin': 'the brave'}
2056>>> for k, v in knights.items():
2057... print k, v
2058...
2059gallahad the pure
2060robin the brave
2061\end{verbatim}
2062
2063When looping through a sequence, the position index and corresponding
2064value can be retrieved at the same time using the
2065\function{enumerate()} function.
2066
2067\begin{verbatim}
2068>>> for i, v in enumerate(['tic', 'tac', 'toe']):
2069... print i, v
2070...
20710 tic
20721 tac
20732 toe
2074\end{verbatim}
2075
2076To loop over two or more sequences at the same time, the entries
2077can be paired with the \function{zip()} function.
2078
2079\begin{verbatim}
2080>>> questions = ['name', 'quest', 'favorite color']
2081>>> answers = ['lancelot', 'the holy grail', 'blue']
2082>>> for q, a in zip(questions, answers):
2083... print 'What is your %s? It is %s.' % (q, a)
2084...
Raymond Hettinger7951f602002-06-25 03:17:03 +00002085What is your name? It is lancelot.
2086What is your quest? It is the holy grail.
2087What is your favorite color? It is blue.
Fred Drake38f71972002-04-26 20:29:44 +00002088\end{verbatim}
2089
2090
Fred Drakeb7833d31998-09-11 16:21:55 +00002091\section{More on Conditions \label{conditions}}
Guido van Rossum6fc178f1991-08-16 09:13:42 +00002092
Fred Drakeeee08cd1997-12-04 15:43:15 +00002093The conditions used in \code{while} and \code{if} statements above can
Guido van Rossum6fc178f1991-08-16 09:13:42 +00002094contain other operators besides comparisons.
2095
Fred Drakeeee08cd1997-12-04 15:43:15 +00002096The comparison operators \code{in} and \code{not in} check whether a value
2097occurs (does not occur) in a sequence. The operators \code{is} and
2098\code{is not} compare whether two objects are really the same object; this
Guido van Rossum6fc178f1991-08-16 09:13:42 +00002099only matters for mutable objects like lists. All comparison operators
2100have the same priority, which is lower than that of all numerical
2101operators.
2102
Fred Drakeed514942001-07-06 17:28:39 +00002103Comparisons can be chained. For example, \code{a < b == c} tests
2104whether \code{a} is less than \code{b} and moreover \code{b} equals
2105\code{c}.
Guido van Rossum6fc178f1991-08-16 09:13:42 +00002106
Fred Drakeeee08cd1997-12-04 15:43:15 +00002107Comparisons may be combined by the Boolean operators \code{and} and
2108\code{or}, and the outcome of a comparison (or of any other Boolean
2109expression) may be negated with \code{not}. These all have lower
2110priorities than comparison operators again; between them, \code{not} has
2111the highest priority, and \code{or} the lowest, so that
2112\code{A and not B or C} is equivalent to \code{(A and (not B)) or C}. Of
Guido van Rossum6fc178f1991-08-16 09:13:42 +00002113course, parentheses can be used to express the desired composition.
2114
Fred Drakeeee08cd1997-12-04 15:43:15 +00002115The Boolean operators \code{and} and \code{or} are so-called
Fred Drake6cb64f92002-03-08 00:54:43 +00002116\emph{short-circuit} operators: their arguments are evaluated from
2117left to right, and evaluation stops as soon as the outcome is
2118determined. For example, if \code{A} and \code{C} are true but
2119\code{B} is false, \code{A and B and C} does not evaluate the
2120expression \code{C}. In general, the return value of a short-circuit
2121operator, when used as a general value and not as a Boolean, is the
2122last evaluated argument.
Guido van Rossum6fc178f1991-08-16 09:13:42 +00002123
2124It is possible to assign the result of a comparison or other Boolean
Guido van Rossum6938f061994-08-01 12:22:53 +00002125expression to a variable. For example,
2126
Fred Drake8842e861998-02-13 07:16:30 +00002127\begin{verbatim}
Guido van Rossum6938f061994-08-01 12:22:53 +00002128>>> string1, string2, string3 = '', 'Trondheim', 'Hammer Dance'
2129>>> non_null = string1 or string2 or string3
2130>>> non_null
2131'Trondheim'
Fred Drake8842e861998-02-13 07:16:30 +00002132\end{verbatim}
Fred Drake6c2176e1998-02-26 21:47:54 +00002133
Fred Drakeee84d591999-03-10 17:25:30 +00002134Note that in Python, unlike C, assignment cannot occur inside expressions.
Fred Drake20082d92000-04-03 04:26:58 +00002135C programmers may grumble about this, but it avoids a common class of
2136problems encountered in C programs: typing \code{=} in an expression when
2137\code{==} was intended.
Guido van Rossum6fc178f1991-08-16 09:13:42 +00002138
Fred Drake31b761e2000-09-29 15:17:36 +00002139
Fred Drakeb7833d31998-09-11 16:21:55 +00002140\section{Comparing Sequences and Other Types \label{comparing}}
Guido van Rossum6fc178f1991-08-16 09:13:42 +00002141
2142Sequence objects may be compared to other objects with the same
Fred Drakeeee08cd1997-12-04 15:43:15 +00002143sequence type. The comparison uses \emph{lexicographical} ordering:
Guido van Rossum6fc178f1991-08-16 09:13:42 +00002144first the first two items are compared, and if they differ this
2145determines the outcome of the comparison; if they are equal, the next
2146two items are compared, and so on, until either sequence is exhausted.
2147If two items to be compared are themselves sequences of the same type,
Guido van Rossum6938f061994-08-01 12:22:53 +00002148the lexicographical comparison is carried out recursively. If all
Guido van Rossum6fc178f1991-08-16 09:13:42 +00002149items of two sequences compare equal, the sequences are considered
Fred Drake979d0412001-04-03 17:41:56 +00002150equal. If one sequence is an initial sub-sequence of the other, the
Fred Drake20c94912001-08-01 17:17:13 +00002151shorter sequence is the smaller (lesser) one. Lexicographical
2152ordering for strings uses the \ASCII{} ordering for individual
2153characters. Some examples of comparisons between sequences with the
2154same types:
Guido van Rossuma8d754e1992-01-07 16:44:35 +00002155
Fred Drake8842e861998-02-13 07:16:30 +00002156\begin{verbatim}
Guido van Rossum6fc178f1991-08-16 09:13:42 +00002157(1, 2, 3) < (1, 2, 4)
2158[1, 2, 3] < [1, 2, 4]
2159'ABC' < 'C' < 'Pascal' < 'Python'
2160(1, 2, 3, 4) < (1, 2, 4)
2161(1, 2) < (1, 2, -1)
Fred Drake511281a1999-04-16 13:17:04 +00002162(1, 2, 3) == (1.0, 2.0, 3.0)
Guido van Rossum6fc178f1991-08-16 09:13:42 +00002163(1, 2, ('aa', 'ab')) < (1, 2, ('abc', 'a'), 4)
Fred Drake8842e861998-02-13 07:16:30 +00002164\end{verbatim}
Fred Drake6c2176e1998-02-26 21:47:54 +00002165
Guido van Rossum6fc178f1991-08-16 09:13:42 +00002166Note that comparing objects of different types is legal. The outcome
2167is deterministic but arbitrary: the types are ordered by their name.
2168Thus, a list is always smaller than a string, a string is always
2169smaller than a tuple, etc. Mixed numeric types are compared according
Fred Drake93aa0f21999-04-05 21:39:17 +00002170to their numeric value, so 0 equals 0.0, etc.\footnote{
Guido van Rossum6938f061994-08-01 12:22:53 +00002171 The rules for comparing objects of different types should
2172 not be relied upon; they may change in a future version of
2173 the language.
Guido van Rossum6fc178f1991-08-16 09:13:42 +00002174}
2175
Guido van Rossum5e0759d1992-08-07 16:06:24 +00002176
Fred Drakeb7833d31998-09-11 16:21:55 +00002177\chapter{Modules \label{modules}}
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00002178
Guido van Rossum4410c751991-06-04 20:22:18 +00002179If you quit from the Python interpreter and enter it again, the
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00002180definitions you have made (functions and variables) are lost.
2181Therefore, if you want to write a somewhat longer program, you are
2182better off using a text editor to prepare the input for the interpreter
Guido van Rossum16d6e711994-08-08 12:30:22 +00002183and running it with that file as input instead. This is known as creating a
Fred Drakeeee08cd1997-12-04 15:43:15 +00002184\emph{script}. As your program gets longer, you may want to split it
Guido van Rossum6fc178f1991-08-16 09:13:42 +00002185into several files for easier maintenance. You may also want to use a
2186handy function that you've written in several programs without copying
2187its definition into each program.
2188
Guido van Rossum4410c751991-06-04 20:22:18 +00002189To support this, Python has a way to put definitions in a file and use
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00002190them in a script or in an interactive instance of the interpreter.
Fred Drakeeee08cd1997-12-04 15:43:15 +00002191Such a file is called a \emph{module}; definitions from a module can be
2192\emph{imported} into other modules or into the \emph{main} module (the
Guido van Rossum6fc178f1991-08-16 09:13:42 +00002193collection of variables that you have access to in a script
2194executed at the top level
2195and in calculator mode).
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00002196
Guido van Rossum6fc178f1991-08-16 09:13:42 +00002197A module is a file containing Python definitions and statements. The
Fred Drakeeee08cd1997-12-04 15:43:15 +00002198file name is the module name with the suffix \file{.py} appended. Within
Guido van Rossum6938f061994-08-01 12:22:53 +00002199a module, the module's name (as a string) is available as the value of
Fred Drakeeee08cd1997-12-04 15:43:15 +00002200the global variable \code{__name__}. For instance, use your favorite text
2201editor to create a file called \file{fibo.py} in the current directory
Guido van Rossum6938f061994-08-01 12:22:53 +00002202with the following contents:
Guido van Rossuma8d754e1992-01-07 16:44:35 +00002203
Fred Drake8842e861998-02-13 07:16:30 +00002204\begin{verbatim}
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00002205# Fibonacci numbers module
2206
2207def fib(n): # write Fibonacci series up to n
2208 a, b = 0, 1
Guido van Rossum16cd7f91994-10-06 10:29:26 +00002209 while b < n:
Fred Drakeeee08cd1997-12-04 15:43:15 +00002210 print b,
2211 a, b = b, a+b
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00002212
2213def fib2(n): # return Fibonacci series up to n
Guido van Rossum6fc178f1991-08-16 09:13:42 +00002214 result = []
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00002215 a, b = 0, 1
Guido van Rossum16cd7f91994-10-06 10:29:26 +00002216 while b < n:
Fred Drakeeee08cd1997-12-04 15:43:15 +00002217 result.append(b)
2218 a, b = b, a+b
Guido van Rossum6fc178f1991-08-16 09:13:42 +00002219 return result
Fred Drake8842e861998-02-13 07:16:30 +00002220\end{verbatim}
Fred Drake6c2176e1998-02-26 21:47:54 +00002221
Guido van Rossum4410c751991-06-04 20:22:18 +00002222Now enter the Python interpreter and import this module with the
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00002223following command:
Guido van Rossuma8d754e1992-01-07 16:44:35 +00002224
Fred Drake8842e861998-02-13 07:16:30 +00002225\begin{verbatim}
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00002226>>> import fibo
Fred Drake8842e861998-02-13 07:16:30 +00002227\end{verbatim}
Fred Drake6c2176e1998-02-26 21:47:54 +00002228
Fred Drakef1ad2071999-06-30 15:32:50 +00002229This does not enter the names of the functions defined in \code{fibo}
Guido van Rossum6fc178f1991-08-16 09:13:42 +00002230directly in the current symbol table; it only enters the module name
Fred Drakef1ad2071999-06-30 15:32:50 +00002231\code{fibo} there.
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00002232Using the module name you can access the functions:
Guido van Rossuma8d754e1992-01-07 16:44:35 +00002233
Fred Drake8842e861998-02-13 07:16:30 +00002234\begin{verbatim}
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00002235>>> fibo.fib(1000)
22361 1 2 3 5 8 13 21 34 55 89 144 233 377 610 987
2237>>> fibo.fib2(100)
2238[1, 1, 2, 3, 5, 8, 13, 21, 34, 55, 89]
Guido van Rossum6938f061994-08-01 12:22:53 +00002239>>> fibo.__name__
2240'fibo'
Fred Drake8842e861998-02-13 07:16:30 +00002241\end{verbatim}
Fred Drake31b761e2000-09-29 15:17:36 +00002242
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00002243If you intend to use a function often you can assign it to a local name:
Guido van Rossuma8d754e1992-01-07 16:44:35 +00002244
Fred Drake8842e861998-02-13 07:16:30 +00002245\begin{verbatim}
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00002246>>> fib = fibo.fib
2247>>> fib(500)
22481 1 2 3 5 8 13 21 34 55 89 144 233 377
Fred Drake8842e861998-02-13 07:16:30 +00002249\end{verbatim}
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00002250
Guido van Rossum02455691997-07-17 16:21:52 +00002251
Fred Drakeb7833d31998-09-11 16:21:55 +00002252\section{More on Modules \label{moreModules}}
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00002253
2254A module can contain executable statements as well as function
Fred Drake20082d92000-04-03 04:26:58 +00002255definitions.
2256These statements are intended to initialize the module.
2257They are executed only the
2258\emph{first} time the module is imported somewhere.\footnote{
Guido van Rossum6938f061994-08-01 12:22:53 +00002259 In fact function definitions are also `statements' that are
2260 `executed'; the execution enters the function name in the
2261 module's global symbol table.
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00002262}
2263
2264Each module has its own private symbol table, which is used as the
2265global symbol table by all functions defined in the module.
2266Thus, the author of a module can use global variables in the module
2267without worrying about accidental clashes with a user's global
2268variables.
2269On the other hand, if you know what you are doing you can touch a
2270module's global variables with the same notation used to refer to its
2271functions,
Fred Drakeeee08cd1997-12-04 15:43:15 +00002272\code{modname.itemname}.
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00002273
Fred Drake20082d92000-04-03 04:26:58 +00002274Modules can import other modules. It is customary but not required to
2275place all \keyword{import} statements at the beginning of a module (or
2276script, for that matter). The imported module names are placed in the
2277importing module's global symbol table.
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00002278
Fred Drake20082d92000-04-03 04:26:58 +00002279There is a variant of the \keyword{import} statement that imports
2280names from a module directly into the importing module's symbol
2281table. For example:
Guido van Rossuma8d754e1992-01-07 16:44:35 +00002282
Fred Drake8842e861998-02-13 07:16:30 +00002283\begin{verbatim}
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00002284>>> from fibo import fib, fib2
2285>>> fib(500)
22861 1 2 3 5 8 13 21 34 55 89 144 233 377
Fred Drake8842e861998-02-13 07:16:30 +00002287\end{verbatim}
Fred Drake6c2176e1998-02-26 21:47:54 +00002288
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00002289This does not introduce the module name from which the imports are taken
Fred Drakeeee08cd1997-12-04 15:43:15 +00002290in the local symbol table (so in the example, \code{fibo} is not
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00002291defined).
2292
2293There is even a variant to import all names that a module defines:
Guido van Rossuma8d754e1992-01-07 16:44:35 +00002294
Fred Drake8842e861998-02-13 07:16:30 +00002295\begin{verbatim}
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00002296>>> from fibo import *
2297>>> fib(500)
22981 1 2 3 5 8 13 21 34 55 89 144 233 377
Fred Drake8842e861998-02-13 07:16:30 +00002299\end{verbatim}
Fred Drake6c2176e1998-02-26 21:47:54 +00002300
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00002301This imports all names except those beginning with an underscore
Fred Drakeeee08cd1997-12-04 15:43:15 +00002302(\code{_}).
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00002303
Guido van Rossum02455691997-07-17 16:21:52 +00002304
Fred Drake31b761e2000-09-29 15:17:36 +00002305\subsection{The Module Search Path \label{searchPath}}
Guido van Rossumaee5e261998-08-07 17:45:09 +00002306
Fred Drake391564f1998-04-01 23:11:56 +00002307\indexiii{module}{search}{path}
Fred Drake8842e861998-02-13 07:16:30 +00002308When a module named \module{spam} is imported, the interpreter searches
Fred Drakeeee08cd1997-12-04 15:43:15 +00002309for a file named \file{spam.py} in the current directory,
Guido van Rossum02455691997-07-17 16:21:52 +00002310and then in the list of directories specified by
Fred Drake391564f1998-04-01 23:11:56 +00002311the environment variable \envvar{PYTHONPATH}. This has the same syntax as
Fred Drakeed514942001-07-06 17:28:39 +00002312the shell variable \envvar{PATH}, that is, a list of
Fred Drake391564f1998-04-01 23:11:56 +00002313directory names. When \envvar{PYTHONPATH} is not set, or when the file
Guido van Rossum02455691997-07-17 16:21:52 +00002314is not found there, the search continues in an installation-dependent
Fred Drakec37b65e2001-11-28 07:26:15 +00002315default path; on \UNIX, this is usually \file{.:/usr/local/lib/python}.
Guido van Rossum02455691997-07-17 16:21:52 +00002316
2317Actually, modules are searched in the list of directories given by the
Fred Drakeeee08cd1997-12-04 15:43:15 +00002318variable \code{sys.path} which is initialized from the directory
2319containing the input script (or the current directory),
Fred Drake391564f1998-04-01 23:11:56 +00002320\envvar{PYTHONPATH} and the installation-dependent default. This allows
Guido van Rossum02455691997-07-17 16:21:52 +00002321Python programs that know what they're doing to modify or replace the
Fred Drakeecd81572001-12-04 19:47:46 +00002322module search path. Note that because the directory containing the
2323script being run is on the search path, it is important that the
2324script not have the same name as a standard module, or Python will
2325attempt to load the script as a module when that module is imported.
2326This will generally be an error. See section~\ref{standardModules},
2327``Standard Modules.'' for more information.
2328
Guido van Rossum02455691997-07-17 16:21:52 +00002329
2330\subsection{``Compiled'' Python files}
2331
2332As an important speed-up of the start-up time for short programs that
Fred Drakeeee08cd1997-12-04 15:43:15 +00002333use a lot of standard modules, if a file called \file{spam.pyc} exists
2334in the directory where \file{spam.py} is found, this is assumed to
Guido van Rossum13c8ef61998-05-29 19:12:23 +00002335contain an already-``byte-compiled'' version of the module \module{spam}.
Fred Drake8842e861998-02-13 07:16:30 +00002336The modification time of the version of \file{spam.py} used to create
Fred Drake20082d92000-04-03 04:26:58 +00002337\file{spam.pyc} is recorded in \file{spam.pyc}, and the
2338\file{.pyc} file is ignored if these don't match.
Guido van Rossum02455691997-07-17 16:21:52 +00002339
Fred Drake20082d92000-04-03 04:26:58 +00002340Normally, you don't need to do anything to create the
2341\file{spam.pyc} file. Whenever \file{spam.py} is successfully
2342compiled, an attempt is made to write the compiled version to
2343\file{spam.pyc}. It is not an error if this attempt fails; if for any
2344reason the file is not written completely, the resulting
2345\file{spam.pyc} file will be recognized as invalid and thus ignored
2346later. The contents of the \file{spam.pyc} file are platform
2347independent, so a Python module directory can be shared by machines of
2348different architectures.
Guido van Rossum02455691997-07-17 16:21:52 +00002349
Guido van Rossum13c8ef61998-05-29 19:12:23 +00002350Some tips for experts:
2351
2352\begin{itemize}
2353
2354\item
Fred Drake37f15741999-11-10 16:21:37 +00002355When the Python interpreter is invoked with the \programopt{-O} flag,
Michael W. Hudsondd32a912002-08-15 14:59:02 +00002356optimized code is generated and stored in \file{.pyo} files. The
2357optimizer currently doesn't help much; it only removes
2358\keyword{assert} statements. When \programopt{-O} is used, \emph{all}
2359bytecode is optimized; \code{.pyc} files are ignored and \code{.py}
2360files are compiled to optimized bytecode.
Guido van Rossum13c8ef61998-05-29 19:12:23 +00002361
2362\item
Fred Drake37f15741999-11-10 16:21:37 +00002363Passing two \programopt{-O} flags to the Python interpreter
2364(\programopt{-OO}) will cause the bytecode compiler to perform
2365optimizations that could in some rare cases result in malfunctioning
2366programs. Currently only \code{__doc__} strings are removed from the
2367bytecode, resulting in more compact \file{.pyo} files. Since some
2368programs may rely on having these available, you should only use this
2369option if you know what you're doing.
Guido van Rossum6b86a421999-01-28 15:07:47 +00002370
2371\item
Fred Drake20082d92000-04-03 04:26:58 +00002372A program doesn't run any faster when it is read from a \file{.pyc} or
2373\file{.pyo} file than when it is read from a \file{.py} file; the only
2374thing that's faster about \file{.pyc} or \file{.pyo} files is the
2375speed with which they are loaded.
Guido van Rossum13c8ef61998-05-29 19:12:23 +00002376
2377\item
Guido van Rossum002f7aa1998-06-28 19:16:38 +00002378When a script is run by giving its name on the command line, the
2379bytecode for the script is never written to a \file{.pyc} or
2380\file{.pyo} file. Thus, the startup time of a script may be reduced
2381by moving most of its code to a module and having a small bootstrap
Fred Drake31b761e2000-09-29 15:17:36 +00002382script that imports that module. It is also possible to name a
2383\file{.pyc} or \file{.pyo} file directly on the command line.
Guido van Rossum002f7aa1998-06-28 19:16:38 +00002384
2385\item
Guido van Rossum13c8ef61998-05-29 19:12:23 +00002386It is possible to have a file called \file{spam.pyc} (or
Fred Drake31b761e2000-09-29 15:17:36 +00002387\file{spam.pyo} when \programopt{-O} is used) without a file
2388\file{spam.py} for the same module. This can be used to distribute a
2389library of Python code in a form that is moderately hard to reverse
Guido van Rossum13c8ef61998-05-29 19:12:23 +00002390engineer.
2391
2392\item
2393The module \module{compileall}\refstmodindex{compileall} can create
Fred Drake37f15741999-11-10 16:21:37 +00002394\file{.pyc} files (or \file{.pyo} files when \programopt{-O} is used) for
Guido van Rossum13c8ef61998-05-29 19:12:23 +00002395all modules in a directory.
2396
2397\end{itemize}
2398
Guido van Rossum02455691997-07-17 16:21:52 +00002399
Fred Drakeb7833d31998-09-11 16:21:55 +00002400\section{Standard Modules \label{standardModules}}
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00002401
Guido van Rossum4410c751991-06-04 20:22:18 +00002402Python comes with a library of standard modules, described in a separate
Fred Drake37f15741999-11-10 16:21:37 +00002403document, the \citetitle[../lib/lib.html]{Python Library Reference}
2404(``Library Reference'' hereafter). Some modules are built into the
2405interpreter; these provide access to operations that are not part of
2406the core of the language but are nevertheless built in, either for
2407efficiency or to provide access to operating system primitives such as
Fred Drakeed514942001-07-06 17:28:39 +00002408system calls. The set of such modules is a configuration option which
2409also dependson the underlying platform For example,
Fred Drake37f15741999-11-10 16:21:37 +00002410the \module{amoeba} module is only provided on systems that somehow
Fred Drake8842e861998-02-13 07:16:30 +00002411support Amoeba primitives. One particular module deserves some
Fred Drake391564f1998-04-01 23:11:56 +00002412attention: \module{sys}\refstmodindex{sys}, which is built into every
Fred Drakeee84d591999-03-10 17:25:30 +00002413Python interpreter. The variables \code{sys.ps1} and
2414\code{sys.ps2} define the strings used as primary and secondary
2415prompts:
Guido van Rossuma8d754e1992-01-07 16:44:35 +00002416
Fred Drake8842e861998-02-13 07:16:30 +00002417\begin{verbatim}
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00002418>>> import sys
2419>>> sys.ps1
2420'>>> '
2421>>> sys.ps2
2422'... '
2423>>> sys.ps1 = 'C> '
2424C> print 'Yuck!'
2425Yuck!
2426C>
Fred Drake8842e861998-02-13 07:16:30 +00002427\end{verbatim}
Fred Drake6c2176e1998-02-26 21:47:54 +00002428
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00002429These two variables are only defined if the interpreter is in
2430interactive mode.
2431
Fred Drakeee84d591999-03-10 17:25:30 +00002432The variable \code{sys.path} is a list of strings that determine the
2433interpreter's search path for modules. It is initialized to a default
2434path taken from the environment variable \envvar{PYTHONPATH}, or from
2435a built-in default if \envvar{PYTHONPATH} is not set. You can modify
Fred Drakeed514942001-07-06 17:28:39 +00002436it using standard list operations:
Guido van Rossuma8d754e1992-01-07 16:44:35 +00002437
Fred Drake8842e861998-02-13 07:16:30 +00002438\begin{verbatim}
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00002439>>> import sys
2440>>> sys.path.append('/ufs/guido/lib/python')
Fred Drake8842e861998-02-13 07:16:30 +00002441\end{verbatim}
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00002442
Fred Drakeb7833d31998-09-11 16:21:55 +00002443\section{The \function{dir()} Function \label{dir}}
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00002444
Fred Drake8842e861998-02-13 07:16:30 +00002445The built-in function \function{dir()} is used to find out which names
2446a module defines. It returns a sorted list of strings:
Guido van Rossuma8d754e1992-01-07 16:44:35 +00002447
Fred Drake8842e861998-02-13 07:16:30 +00002448\begin{verbatim}
Guido van Rossum6fc178f1991-08-16 09:13:42 +00002449>>> import fibo, sys
2450>>> dir(fibo)
Guido van Rossum6938f061994-08-01 12:22:53 +00002451['__name__', 'fib', 'fib2']
Guido van Rossum6fc178f1991-08-16 09:13:42 +00002452>>> dir(sys)
Fred Drakeecd81572001-12-04 19:47:46 +00002453['__displayhook__', '__doc__', '__excepthook__', '__name__', '__stderr__',
2454 '__stdin__', '__stdout__', '_getframe', 'argv', 'builtin_module_names',
2455 'byteorder', 'copyright', 'displayhook', 'exc_info', 'exc_type',
2456 'excepthook', 'exec_prefix', 'executable', 'exit', 'getdefaultencoding',
2457 'getdlopenflags', 'getrecursionlimit', 'getrefcount', 'hexversion',
2458 'maxint', 'maxunicode', 'modules', 'path', 'platform', 'prefix', 'ps1',
2459 'ps2', 'setcheckinterval', 'setdlopenflags', 'setprofile',
2460 'setrecursionlimit', 'settrace', 'stderr', 'stdin', 'stdout', 'version',
2461 'version_info', 'warnoptions']
Fred Drake8842e861998-02-13 07:16:30 +00002462\end{verbatim}
Fred Drake6c2176e1998-02-26 21:47:54 +00002463
Fred Drake8842e861998-02-13 07:16:30 +00002464Without arguments, \function{dir()} lists the names you have defined
2465currently:
Guido van Rossuma8d754e1992-01-07 16:44:35 +00002466
Fred Drake8842e861998-02-13 07:16:30 +00002467\begin{verbatim}
Guido van Rossum6fc178f1991-08-16 09:13:42 +00002468>>> a = [1, 2, 3, 4, 5]
2469>>> import fibo, sys
2470>>> fib = fibo.fib
2471>>> dir()
Guido van Rossum6938f061994-08-01 12:22:53 +00002472['__name__', 'a', 'fib', 'fibo', 'sys']
Fred Drake8842e861998-02-13 07:16:30 +00002473\end{verbatim}
Fred Drake6c2176e1998-02-26 21:47:54 +00002474
Guido van Rossum6fc178f1991-08-16 09:13:42 +00002475Note that it lists all types of names: variables, modules, functions, etc.
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00002476
Fred Drake8842e861998-02-13 07:16:30 +00002477\function{dir()} does not list the names of built-in functions and
2478variables. If you want a list of those, they are defined in the
Fred Drake391564f1998-04-01 23:11:56 +00002479standard module \module{__builtin__}\refbimodindex{__builtin__}:
Guido van Rossuma8d754e1992-01-07 16:44:35 +00002480
Fred Drake8842e861998-02-13 07:16:30 +00002481\begin{verbatim}
Guido van Rossum4bd023f1993-10-27 13:49:20 +00002482>>> import __builtin__
2483>>> dir(__builtin__)
Fred Drakeecd81572001-12-04 19:47:46 +00002484['ArithmeticError', 'AssertionError', 'AttributeError',
2485 'DeprecationWarning', 'EOFError', 'Ellipsis', 'EnvironmentError',
Neal Norwitzd68f5172002-05-29 15:54:55 +00002486 'Exception', 'False', 'FloatingPointError', 'IOError', 'ImportError',
Fred Drakeecd81572001-12-04 19:47:46 +00002487 'IndentationError', 'IndexError', 'KeyError', 'KeyboardInterrupt',
2488 'LookupError', 'MemoryError', 'NameError', 'None', 'NotImplemented',
2489 'NotImplementedError', 'OSError', 'OverflowError', 'OverflowWarning',
Neal Norwitzd68f5172002-05-29 15:54:55 +00002490 'PendingDeprecationWarning', 'ReferenceError',
2491 'RuntimeError', 'RuntimeWarning', 'StandardError', 'StopIteration',
2492 'SyntaxError', 'SyntaxWarning', 'SystemError', 'SystemExit', 'TabError',
2493 'True', 'TypeError', 'UnboundLocalError', 'UnicodeError', 'UserWarning',
2494 'ValueError', 'Warning', 'ZeroDivisionError', '__debug__', '__doc__',
2495 '__import__', '__name__', 'abs', 'apply', 'bool', 'buffer',
2496 'callable', 'chr', 'classmethod', 'cmp', 'coerce', 'compile', 'complex',
2497 'copyright', 'credits', 'delattr', 'dict', 'dir', 'divmod',
2498 'enumerate', 'eval', 'execfile', 'exit', 'file', 'filter', 'float',
2499 'getattr', 'globals', 'hasattr', 'hash', 'help', 'hex', 'id',
2500 'input', 'int', 'intern', 'isinstance', 'issubclass', 'iter',
2501 'len', 'license', 'list', 'locals', 'long', 'map', 'max', 'min',
2502 'object', 'oct', 'open', 'ord', 'pow', 'property', 'quit',
2503 'range', 'raw_input', 'reduce', 'reload', 'repr', 'round',
2504 'setattr', 'slice', 'staticmethod', 'str', 'string', 'super',
2505 'tuple', 'type', 'unichr', 'unicode', 'vars', 'xrange', 'zip']
Fred Drake8842e861998-02-13 07:16:30 +00002506\end{verbatim}
Guido van Rossum6fc178f1991-08-16 09:13:42 +00002507
Fred Drake31b761e2000-09-29 15:17:36 +00002508
Fred Drakeb7833d31998-09-11 16:21:55 +00002509\section{Packages \label{packages}}
Andrew M. Kuchling108943c1998-07-01 13:58:55 +00002510
2511Packages are a way of structuring Python's module namespace
Fred Drakeb7833d31998-09-11 16:21:55 +00002512by using ``dotted module names''. For example, the module name
2513\module{A.B} designates a submodule named \samp{B} in a package named
2514\samp{A}. Just like the use of modules saves the authors of different
2515modules from having to worry about each other's global variable names,
2516the use of dotted module names saves the authors of multi-module
Fred Drake20082d92000-04-03 04:26:58 +00002517packages like NumPy or the Python Imaging Library from having to worry
2518about each other's module names.
Andrew M. Kuchling108943c1998-07-01 13:58:55 +00002519
2520Suppose you want to design a collection of modules (a ``package'') for
2521the uniform handling of sound files and sound data. There are many
2522different sound file formats (usually recognized by their extension,
Fred Drakeed514942001-07-06 17:28:39 +00002523for example: \file{.wav}, \file{.aiff}, \file{.au}), so you may need
2524to create and maintain a growing collection of modules for the
2525conversion between the various file formats. There are also many
2526different operations you might want to perform on sound data (such as
2527mixing, adding echo, applying an equalizer function, creating an
2528artificial stereo effect), so in addition you will be writing a
2529never-ending stream of modules to perform these operations. Here's a
2530possible structure for your package (expressed in terms of a
2531hierarchical filesystem):
Andrew M. Kuchling108943c1998-07-01 13:58:55 +00002532
2533\begin{verbatim}
2534Sound/ Top-level package
2535 __init__.py Initialize the sound package
2536 Formats/ Subpackage for file format conversions
2537 __init__.py
2538 wavread.py
2539 wavwrite.py
2540 aiffread.py
2541 aiffwrite.py
2542 auread.py
2543 auwrite.py
2544 ...
2545 Effects/ Subpackage for sound effects
2546 __init__.py
2547 echo.py
2548 surround.py
2549 reverse.py
2550 ...
2551 Filters/ Subpackage for filters
2552 __init__.py
2553 equalizer.py
2554 vocoder.py
2555 karaoke.py
2556 ...
2557\end{verbatim}
Fred Drake31b761e2000-09-29 15:17:36 +00002558
Andrew M. Kuchling108943c1998-07-01 13:58:55 +00002559The \file{__init__.py} files are required to make Python treat the
2560directories as containing packages; this is done to prevent
2561directories with a common name, such as \samp{string}, from
2562unintentionally hiding valid modules that occur later on the module
2563search path. In the simplest case, \file{__init__.py} can just be an
2564empty file, but it can also execute initialization code for the
2565package or set the \code{__all__} variable, described later.
2566
2567Users of the package can import individual modules from the
2568package, for example:
2569
2570\begin{verbatim}
2571import Sound.Effects.echo
2572\end{verbatim}
Fred Drake31b761e2000-09-29 15:17:36 +00002573
Andrew M. Kuchling108943c1998-07-01 13:58:55 +00002574This loads the submodule \module{Sound.Effects.echo}. It must be referenced
Fred Drakeed514942001-07-06 17:28:39 +00002575with its full name.
Andrew M. Kuchling108943c1998-07-01 13:58:55 +00002576
2577\begin{verbatim}
2578Sound.Effects.echo.echofilter(input, output, delay=0.7, atten=4)
2579\end{verbatim}
Fred Drake31b761e2000-09-29 15:17:36 +00002580
Andrew M. Kuchling108943c1998-07-01 13:58:55 +00002581An alternative way of importing the submodule is:
2582
2583\begin{verbatim}
2584from Sound.Effects import echo
2585\end{verbatim}
Fred Drake31b761e2000-09-29 15:17:36 +00002586
Andrew M. Kuchling108943c1998-07-01 13:58:55 +00002587This also loads the submodule \module{echo}, and makes it available without
2588its package prefix, so it can be used as follows:
2589
2590\begin{verbatim}
2591echo.echofilter(input, output, delay=0.7, atten=4)
2592\end{verbatim}
2593
2594Yet another variation is to import the desired function or variable directly:
2595
2596\begin{verbatim}
2597from Sound.Effects.echo import echofilter
2598\end{verbatim}
2599
2600Again, this loads the submodule \module{echo}, but this makes its function
Fred Drake20082d92000-04-03 04:26:58 +00002601\function{echofilter()} directly available:
Andrew M. Kuchling108943c1998-07-01 13:58:55 +00002602
2603\begin{verbatim}
2604echofilter(input, output, delay=0.7, atten=4)
2605\end{verbatim}
2606
2607Note that when using \code{from \var{package} import \var{item}}, the
Fred Drake20082d92000-04-03 04:26:58 +00002608item can be either a submodule (or subpackage) of the package, or some
Andrew M. Kuchling108943c1998-07-01 13:58:55 +00002609other name defined in the package, like a function, class or
2610variable. The \code{import} statement first tests whether the item is
2611defined in the package; if not, it assumes it is a module and attempts
Fred Drake20082d92000-04-03 04:26:58 +00002612to load it. If it fails to find it, an
2613\exception{ImportError} exception is raised.
Andrew M. Kuchling108943c1998-07-01 13:58:55 +00002614
2615Contrarily, when using syntax like \code{import
2616\var{item.subitem.subsubitem}}, each item except for the last must be
2617a package; the last item can be a module or a package but can't be a
2618class or function or variable defined in the previous item.
2619
Fred Drakeb7833d31998-09-11 16:21:55 +00002620\subsection{Importing * From a Package \label{pkg-import-star}}
Andrew M. Kuchling108943c1998-07-01 13:58:55 +00002621%The \code{__all__} Attribute
2622
2623Now what happens when the user writes \code{from Sound.Effects import
2624*}? Ideally, one would hope that this somehow goes out to the
2625filesystem, finds which submodules are present in the package, and
2626imports them all. Unfortunately, this operation does not work very
2627well on Mac and Windows platforms, where the filesystem does not
2628always have accurate information about the case of a filename! On
2629these platforms, there is no guaranteed way to know whether a file
2630\file{ECHO.PY} should be imported as a module \module{echo},
2631\module{Echo} or \module{ECHO}. (For example, Windows 95 has the
2632annoying practice of showing all file names with a capitalized first
2633letter.) The DOS 8+3 filename restriction adds another interesting
2634problem for long module names.
2635
2636The only solution is for the package author to provide an explicit
2637index of the package. The import statement uses the following
Fred Drake20082d92000-04-03 04:26:58 +00002638convention: if a package's \file{__init__.py} code defines a list
2639named \code{__all__}, it is taken to be the list of module names that
2640should be imported when \code{from \var{package} import *} is
Andrew M. Kuchling108943c1998-07-01 13:58:55 +00002641encountered. It is up to the package author to keep this list
2642up-to-date when a new version of the package is released. Package
2643authors may also decide not to support it, if they don't see a use for
2644importing * from their package. For example, the file
Fred Drake20082d92000-04-03 04:26:58 +00002645\file{Sounds/Effects/__init__.py} could contain the following code:
Andrew M. Kuchling108943c1998-07-01 13:58:55 +00002646
2647\begin{verbatim}
2648__all__ = ["echo", "surround", "reverse"]
2649\end{verbatim}
2650
2651This would mean that \code{from Sound.Effects import *} would
2652import the three named submodules of the \module{Sound} package.
2653
2654If \code{__all__} is not defined, the statement \code{from Sound.Effects
2655import *} does \emph{not} import all submodules from the package
2656\module{Sound.Effects} into the current namespace; it only ensures that the
2657package \module{Sound.Effects} has been imported (possibly running its
2658initialization code, \file{__init__.py}) and then imports whatever names are
2659defined in the package. This includes any names defined (and
2660submodules explicitly loaded) by \file{__init__.py}. It also includes any
2661submodules of the package that were explicitly loaded by previous
Fred Drakeed514942001-07-06 17:28:39 +00002662import statements. Consider this code:
Andrew M. Kuchling108943c1998-07-01 13:58:55 +00002663
2664\begin{verbatim}
2665import Sound.Effects.echo
2666import Sound.Effects.surround
2667from Sound.Effects import *
2668\end{verbatim}
2669
Andrew M. Kuchling108943c1998-07-01 13:58:55 +00002670In this example, the echo and surround modules are imported in the
Fred Drake20082d92000-04-03 04:26:58 +00002671current namespace because they are defined in the
2672\module{Sound.Effects} package when the \code{from...import} statement
2673is executed. (This also works when \code{__all__} is defined.)
Andrew M. Kuchling108943c1998-07-01 13:58:55 +00002674
Fred Drake55803bc2002-10-22 21:00:44 +00002675Note that in general the practice of importing \code{*} from a module or
Andrew M. Kuchling108943c1998-07-01 13:58:55 +00002676package is frowned upon, since it often causes poorly readable code.
2677However, it is okay to use it to save typing in interactive sessions,
2678and certain modules are designed to export only names that follow
2679certain patterns.
2680
2681Remember, there is nothing wrong with using \code{from Package
2682import specific_submodule}! In fact, this is the
2683recommended notation unless the importing module needs to use
2684submodules with the same name from different packages.
2685
2686
2687\subsection{Intra-package References}
2688
2689The submodules often need to refer to each other. For example, the
2690\module{surround} module might use the \module{echo} module. In fact, such references
2691are so common that the \code{import} statement first looks in the
2692containing package before looking in the standard module search path.
2693Thus, the surround module can simply use \code{import echo} or
2694\code{from echo import echofilter}. If the imported module is not
2695found in the current package (the package of which the current module
2696is a submodule), the \code{import} statement looks for a top-level module
2697with the given name.
2698
Fred Drake20082d92000-04-03 04:26:58 +00002699When packages are structured into subpackages (as with the
2700\module{Sound} package in the example), there's no shortcut to refer
2701to submodules of sibling packages - the full name of the subpackage
2702must be used. For example, if the module
2703\module{Sound.Filters.vocoder} needs to use the \module{echo} module
2704in the \module{Sound.Effects} package, it can use \code{from
Andrew M. Kuchling108943c1998-07-01 13:58:55 +00002705Sound.Effects import echo}.
2706
2707%(One could design a notation to refer to parent packages, similar to
Fred Drakec37b65e2001-11-28 07:26:15 +00002708%the use of ".." to refer to the parent directory in \UNIX{} and Windows
Andrew M. Kuchling108943c1998-07-01 13:58:55 +00002709%filesystems. In fact, the \module{ni} module, which was the
2710%ancestor of this package system, supported this using \code{__} for
2711%the package containing the current module,
2712%\code{__.__} for the parent package, and so on. This feature was dropped
2713%because of its awkwardness; since most packages will have a relative
2714%shallow substructure, this is no big loss.)
2715
Fred Drake55803bc2002-10-22 21:00:44 +00002716\subsection{Packages in Multiple Directories}
2717
2718Packages support one more special attribute, \member{__path__}. This
2719is initialized to be a list containing the name of the directory
2720holding the package's \file{__init__.py} before the code in that file
2721is executed. This variable can be modified; doing so affects future
2722searches for modules and subpackages contained in the package.
2723
2724While this feature is not often needed, it can be used to extend the
2725set of modules found in a package.
2726
Andrew M. Kuchling108943c1998-07-01 13:58:55 +00002727
Guido van Rossum5e0759d1992-08-07 16:06:24 +00002728
Fred Drakeb7833d31998-09-11 16:21:55 +00002729\chapter{Input and Output \label{io}}
Guido van Rossum6fc178f1991-08-16 09:13:42 +00002730
Guido van Rossum02455691997-07-17 16:21:52 +00002731There are several ways to present the output of a program; data can be
2732printed in a human-readable form, or written to a file for future use.
2733This chapter will discuss some of the possibilities.
2734
Fred Drakeb7833d31998-09-11 16:21:55 +00002735
2736\section{Fancier Output Formatting \label{formatting}}
2737
Fred Drakeeee08cd1997-12-04 15:43:15 +00002738So far we've encountered two ways of writing values: \emph{expression
Fred Drake8842e861998-02-13 07:16:30 +00002739statements} and the \keyword{print} statement. (A third way is using
2740the \method{write()} method of file objects; the standard output file
2741can be referenced as \code{sys.stdout}. See the Library Reference for
2742more information on this.)
Guido van Rossum6fc178f1991-08-16 09:13:42 +00002743
2744Often you'll want more control over the formatting of your output than
Guido van Rossum02455691997-07-17 16:21:52 +00002745simply printing space-separated values. There are two ways to format
2746your output; the first way is to do all the string handling yourself;
2747using string slicing and concatenation operations you can create any
Fred Drake391564f1998-04-01 23:11:56 +00002748lay-out you can imagine. The standard module
2749\module{string}\refstmodindex{string} contains some useful operations
Fred Drake20082d92000-04-03 04:26:58 +00002750for padding strings to a given column width; these will be discussed
2751shortly. The second way is to use the \code{\%} operator with a
2752string as the left argument. The \code{\%} operator interprets the
Fred Drakecc97f8c2001-01-01 20:33:06 +00002753left argument much like a \cfunction{sprintf()}-style format
Fred Drake20082d92000-04-03 04:26:58 +00002754string to be applied to the right argument, and returns the string
2755resulting from this formatting operation.
Guido van Rossum6fc178f1991-08-16 09:13:42 +00002756
2757One question remains, of course: how do you convert values to strings?
Fred Drake6016dbe2001-12-04 19:20:43 +00002758Luckily, Python has ways to convert any value to a string: pass it to
2759the \function{repr()} or \function{str()} functions, or just write
2760the value between reverse quotes (\code{``}, equivalent to
2761\function{repr()}).
2762
2763The \function{str()} function is meant to return representations of
2764values which are fairly human-readable, while \function{repr()} is
2765meant to generate representations which can be read by the interpreter
2766(or will force a \exception{SyntaxError} if there is not equivalent
2767syntax). For objects which don't have a particular representation for
2768human consumption, \function{str()} will return the same value as
2769\function{repr()}. Many values, such as numbers or structures like
2770lists and dictionaries, have the same representation using either
2771function. Strings and floating point numbers, in particular, have two
2772distinct representations.
2773
2774Some examples:
Guido van Rossuma8d754e1992-01-07 16:44:35 +00002775
Fred Drake8842e861998-02-13 07:16:30 +00002776\begin{verbatim}
Fred Drake6016dbe2001-12-04 19:20:43 +00002777>>> s = 'Hello, world.'
2778>>> str(s)
2779'Hello, world.'
2780>>> `s`
2781"'Hello, world.'"
2782>>> str(0.1)
2783'0.1'
2784>>> `0.1`
2785'0.10000000000000001'
Tim Petersbd695a72001-05-22 06:54:14 +00002786>>> x = 10 * 3.25
Fred Drake8b0b8402001-05-21 16:55:39 +00002787>>> y = 200 * 200
Guido van Rossum6fc178f1991-08-16 09:13:42 +00002788>>> s = 'The value of x is ' + `x` + ', and y is ' + `y` + '...'
2789>>> print s
Tim Petersbd695a72001-05-22 06:54:14 +00002790The value of x is 32.5, and y is 40000...
Guido van Rossum6fc178f1991-08-16 09:13:42 +00002791>>> # Reverse quotes work on other types besides numbers:
Guido van Rossum6938f061994-08-01 12:22:53 +00002792... p = [x, y]
Guido van Rossum02455691997-07-17 16:21:52 +00002793>>> ps = repr(p)
Guido van Rossum6fc178f1991-08-16 09:13:42 +00002794>>> ps
Tim Petersbd695a72001-05-22 06:54:14 +00002795'[32.5, 40000]'
Guido van Rossum6fc178f1991-08-16 09:13:42 +00002796>>> # Converting a string adds string quotes and backslashes:
Guido van Rossum6938f061994-08-01 12:22:53 +00002797... hello = 'hello, world\n'
Guido van Rossum6fc178f1991-08-16 09:13:42 +00002798>>> hellos = `hello`
2799>>> print hellos
Fred Drake0c149612001-04-12 04:26:24 +00002800'hello, world\n'
Guido van Rossum6fc178f1991-08-16 09:13:42 +00002801>>> # The argument of reverse quotes may be a tuple:
Guido van Rossume5f8b601995-01-04 19:12:49 +00002802... `x, y, ('spam', 'eggs')`
Tim Petersbd695a72001-05-22 06:54:14 +00002803"(32.5, 40000, ('spam', 'eggs'))"
Fred Drake8842e861998-02-13 07:16:30 +00002804\end{verbatim}
Fred Drake6c2176e1998-02-26 21:47:54 +00002805
Guido van Rossum6938f061994-08-01 12:22:53 +00002806Here are two ways to write a table of squares and cubes:
Guido van Rossuma8d754e1992-01-07 16:44:35 +00002807
Fred Drake8842e861998-02-13 07:16:30 +00002808\begin{verbatim}
Guido van Rossum6fc178f1991-08-16 09:13:42 +00002809>>> import string
2810>>> for x in range(1, 11):
2811... print string.rjust(`x`, 2), string.rjust(`x*x`, 3),
2812... # Note trailing comma on previous line
2813... print string.rjust(`x*x*x`, 4)
2814...
2815 1 1 1
2816 2 4 8
2817 3 9 27
2818 4 16 64
2819 5 25 125
2820 6 36 216
2821 7 49 343
2822 8 64 512
2823 9 81 729
282410 100 1000
Guido van Rossum6938f061994-08-01 12:22:53 +00002825>>> for x in range(1,11):
2826... print '%2d %3d %4d' % (x, x*x, x*x*x)
2827...
2828 1 1 1
2829 2 4 8
2830 3 9 27
2831 4 16 64
2832 5 25 125
2833 6 36 216
2834 7 49 343
2835 8 64 512
2836 9 81 729
283710 100 1000
Fred Drake8842e861998-02-13 07:16:30 +00002838\end{verbatim}
Fred Drake6c2176e1998-02-26 21:47:54 +00002839
Fred Drake8842e861998-02-13 07:16:30 +00002840(Note that one space between each column was added by the way
2841\keyword{print} works: it always adds spaces between its arguments.)
Guido van Rossum6fc178f1991-08-16 09:13:42 +00002842
Fred Drake8842e861998-02-13 07:16:30 +00002843This example demonstrates the function \function{string.rjust()},
2844which right-justifies a string in a field of a given width by padding
2845it with spaces on the left. There are similar functions
2846\function{string.ljust()} and \function{string.center()}. These
2847functions do not write anything, they just return a new string. If
2848the input string is too long, they don't truncate it, but return it
2849unchanged; this will mess up your column lay-out but that's usually
2850better than the alternative, which would be lying about a value. (If
2851you really want truncation you can always add a slice operation, as in
2852\samp{string.ljust(x,~n)[0:n]}.)
Guido van Rossum6fc178f1991-08-16 09:13:42 +00002853
Fred Drake8842e861998-02-13 07:16:30 +00002854There is another function, \function{string.zfill()}, which pads a
2855numeric string on the left with zeros. It understands about plus and
2856minus signs:
Guido van Rossuma8d754e1992-01-07 16:44:35 +00002857
Fred Drake8842e861998-02-13 07:16:30 +00002858\begin{verbatim}
Fred Drake0ba58151999-09-14 18:00:49 +00002859>>> import string
Guido van Rossum6fc178f1991-08-16 09:13:42 +00002860>>> string.zfill('12', 5)
2861'00012'
2862>>> string.zfill('-3.14', 7)
2863'-003.14'
2864>>> string.zfill('3.14159265359', 5)
2865'3.14159265359'
Fred Drake8842e861998-02-13 07:16:30 +00002866\end{verbatim}
Fred Drake31b761e2000-09-29 15:17:36 +00002867
Guido van Rossum02455691997-07-17 16:21:52 +00002868Using the \code{\%} operator looks like this:
2869
2870\begin{verbatim}
Fred Drake8842e861998-02-13 07:16:30 +00002871>>> import math
2872>>> print 'The value of PI is approximately %5.3f.' % math.pi
2873The value of PI is approximately 3.142.
Guido van Rossum02455691997-07-17 16:21:52 +00002874\end{verbatim}
2875
Fred Drakeed514942001-07-06 17:28:39 +00002876If there is more than one format in the string, you need to pass a
2877tuple as right operand, as in this example:
Guido van Rossum02455691997-07-17 16:21:52 +00002878
2879\begin{verbatim}
Fred Drake20082d92000-04-03 04:26:58 +00002880>>> table = {'Sjoerd': 4127, 'Jack': 4098, 'Dcab': 7678}
Fred Drake8842e861998-02-13 07:16:30 +00002881>>> for name, phone in table.items():
2882... print '%-10s ==> %10d' % (name, phone)
2883...
2884Jack ==> 4098
Fred Drake69fbf332000-04-04 19:53:06 +00002885Dcab ==> 7678
Fred Drake8842e861998-02-13 07:16:30 +00002886Sjoerd ==> 4127
Guido van Rossum02455691997-07-17 16:21:52 +00002887\end{verbatim}
2888
Fred Drakeee84d591999-03-10 17:25:30 +00002889Most formats work exactly as in C and require that you pass the proper
Guido van Rossum02455691997-07-17 16:21:52 +00002890type; however, if you don't you get an exception, not a core dump.
Fred Drakedb70d061998-11-17 21:59:04 +00002891The \code{\%s} format is more relaxed: if the corresponding argument is
Fred Drake8842e861998-02-13 07:16:30 +00002892not a string object, it is converted to string using the
2893\function{str()} built-in function. Using \code{*} to pass the width
2894or precision in as a separate (integer) argument is supported. The
Fred Drakeee84d591999-03-10 17:25:30 +00002895C formats \code{\%n} and \code{\%p} are not supported.
Guido van Rossum02455691997-07-17 16:21:52 +00002896
2897If you have a really long format string that you don't want to split
2898up, it would be nice if you could reference the variables to be
2899formatted by name instead of by position. This can be done by using
Fred Drakeed514942001-07-06 17:28:39 +00002900form \code{\%(name)format}, as shown here:
Guido van Rossum02455691997-07-17 16:21:52 +00002901
2902\begin{verbatim}
Fred Drake8842e861998-02-13 07:16:30 +00002903>>> table = {'Sjoerd': 4127, 'Jack': 4098, 'Dcab': 8637678}
2904>>> print 'Jack: %(Jack)d; Sjoerd: %(Sjoerd)d; Dcab: %(Dcab)d' % table
2905Jack: 4098; Sjoerd: 4127; Dcab: 8637678
Guido van Rossum02455691997-07-17 16:21:52 +00002906\end{verbatim}
2907
2908This is particularly useful in combination with the new built-in
Fred Drake8842e861998-02-13 07:16:30 +00002909\function{vars()} function, which returns a dictionary containing all
Guido van Rossum02455691997-07-17 16:21:52 +00002910local variables.
2911
Fred Drakeb7833d31998-09-11 16:21:55 +00002912\section{Reading and Writing Files \label{files}}
Fred Drake6c2176e1998-02-26 21:47:54 +00002913
Guido van Rossum02455691997-07-17 16:21:52 +00002914% Opening files
Fred Drake391564f1998-04-01 23:11:56 +00002915\function{open()}\bifuncindex{open} returns a file
2916object\obindex{file}, and is most commonly used with two arguments:
2917\samp{open(\var{filename}, \var{mode})}.
Guido van Rossum02455691997-07-17 16:21:52 +00002918
Fred Drake8842e861998-02-13 07:16:30 +00002919\begin{verbatim}
Guido van Rossum02455691997-07-17 16:21:52 +00002920>>> f=open('/tmp/workfile', 'w')
2921>>> print f
2922<open file '/tmp/workfile', mode 'w' at 80a0960>
Fred Drake8842e861998-02-13 07:16:30 +00002923\end{verbatim}
Fred Drake6c2176e1998-02-26 21:47:54 +00002924
Guido van Rossum02455691997-07-17 16:21:52 +00002925The first argument is a string containing the filename. The second
2926argument is another string containing a few characters describing the
2927way in which the file will be used. \var{mode} can be \code{'r'} when
2928the file will only be read, \code{'w'} for only writing (an existing
2929file with the same name will be erased), and \code{'a'} opens the file
2930for appending; any data written to the file is automatically added to
2931the end. \code{'r+'} opens the file for both reading and writing.
2932The \var{mode} argument is optional; \code{'r'} will be assumed if
2933it's omitted.
2934
Fred Drake391564f1998-04-01 23:11:56 +00002935On Windows and the Macintosh, \code{'b'} appended to the
Guido van Rossum02455691997-07-17 16:21:52 +00002936mode opens the file in binary mode, so there are also modes like
2937\code{'rb'}, \code{'wb'}, and \code{'r+b'}. Windows makes a
2938distinction between text and binary files; the end-of-line characters
2939in text files are automatically altered slightly when data is read or
2940written. This behind-the-scenes modification to file data is fine for
Fred Drake8842e861998-02-13 07:16:30 +00002941\ASCII{} text files, but it'll corrupt binary data like that in JPEGs or
2942\file{.EXE} files. Be very careful to use binary mode when reading and
Fred Drake391564f1998-04-01 23:11:56 +00002943writing such files. (Note that the precise semantics of text mode on
Fred Drakeee84d591999-03-10 17:25:30 +00002944the Macintosh depends on the underlying C library being used.)
Guido van Rossum02455691997-07-17 16:21:52 +00002945
Fred Drakeb7833d31998-09-11 16:21:55 +00002946\subsection{Methods of File Objects \label{fileMethods}}
Guido van Rossum02455691997-07-17 16:21:52 +00002947
2948The rest of the examples in this section will assume that a file
2949object called \code{f} has already been created.
2950
2951To read a file's contents, call \code{f.read(\var{size})}, which reads
2952some quantity of data and returns it as a string. \var{size} is an
2953optional numeric argument. When \var{size} is omitted or negative,
2954the entire contents of the file will be read and returned; it's your
2955problem if the file is twice as large as your machine's memory.
2956Otherwise, at most \var{size} bytes are read and returned. If the end
2957of the file has been reached, \code{f.read()} will return an empty
2958string (\code {""}).
Fred Drake8842e861998-02-13 07:16:30 +00002959\begin{verbatim}
Guido van Rossum02455691997-07-17 16:21:52 +00002960>>> f.read()
Fred Drake0c149612001-04-12 04:26:24 +00002961'This is the entire file.\n'
Guido van Rossum02455691997-07-17 16:21:52 +00002962>>> f.read()
2963''
Fred Drake8842e861998-02-13 07:16:30 +00002964\end{verbatim}
Fred Drake6c2176e1998-02-26 21:47:54 +00002965
Guido van Rossum02455691997-07-17 16:21:52 +00002966\code{f.readline()} reads a single line from the file; a newline
Fred Drake8842e861998-02-13 07:16:30 +00002967character (\code{\e n}) is left at the end of the string, and is only
Guido van Rossum02455691997-07-17 16:21:52 +00002968omitted on the last line of the file if the file doesn't end in a
2969newline. This makes the return value unambiguous; if
2970\code{f.readline()} returns an empty string, the end of the file has
Fred Drake8842e861998-02-13 07:16:30 +00002971been reached, while a blank line is represented by \code{'\e n'}, a
Guido van Rossum02455691997-07-17 16:21:52 +00002972string containing only a single newline.
2973
Fred Drake8842e861998-02-13 07:16:30 +00002974\begin{verbatim}
Guido van Rossum02455691997-07-17 16:21:52 +00002975>>> f.readline()
Fred Drake0c149612001-04-12 04:26:24 +00002976'This is the first line of the file.\n'
Guido van Rossum02455691997-07-17 16:21:52 +00002977>>> f.readline()
Fred Drake0c149612001-04-12 04:26:24 +00002978'Second line of the file\n'
Guido van Rossum02455691997-07-17 16:21:52 +00002979>>> f.readline()
2980''
Fred Drake8842e861998-02-13 07:16:30 +00002981\end{verbatim}
Fred Drake6c2176e1998-02-26 21:47:54 +00002982
Fred Drake343ad7a2000-09-22 04:12:27 +00002983\code{f.readlines()} returns a list containing all the lines of data
2984in the file. If given an optional parameter \var{sizehint}, it reads
2985that many bytes from the file and enough more to complete a line, and
2986returns the lines from that. This is often used to allow efficient
2987reading of a large file by lines, but without having to load the
2988entire file in memory. Only complete lines will be returned.
Guido van Rossum02455691997-07-17 16:21:52 +00002989
Fred Drake8842e861998-02-13 07:16:30 +00002990\begin{verbatim}
Guido van Rossum02455691997-07-17 16:21:52 +00002991>>> f.readlines()
Fred Drake0c149612001-04-12 04:26:24 +00002992['This is the first line of the file.\n', 'Second line of the file\n']
Fred Drake8842e861998-02-13 07:16:30 +00002993\end{verbatim}
Fred Drake6c2176e1998-02-26 21:47:54 +00002994
Guido van Rossum02455691997-07-17 16:21:52 +00002995\code{f.write(\var{string})} writes the contents of \var{string} to
2996the file, returning \code{None}.
2997
Fred Drake8842e861998-02-13 07:16:30 +00002998\begin{verbatim}
Guido van Rossum02455691997-07-17 16:21:52 +00002999>>> f.write('This is a test\n')
Fred Drake8842e861998-02-13 07:16:30 +00003000\end{verbatim}
Fred Drake6c2176e1998-02-26 21:47:54 +00003001
Guido van Rossum02455691997-07-17 16:21:52 +00003002\code{f.tell()} returns an integer giving the file object's current
3003position in the file, measured in bytes from the beginning of the
3004file. To change the file object's position, use
Fred Drake8842e861998-02-13 07:16:30 +00003005\samp{f.seek(\var{offset}, \var{from_what})}. The position is
Guido van Rossum02455691997-07-17 16:21:52 +00003006computed from adding \var{offset} to a reference point; the reference
Fred Drake20082d92000-04-03 04:26:58 +00003007point is selected by the \var{from_what} argument. A
3008\var{from_what} value of 0 measures from the beginning of the file, 1
3009uses the current file position, and 2 uses the end of the file as the
3010reference point. \var{from_what} can be omitted and defaults to 0,
3011using the beginning of the file as the reference point.
Guido van Rossum02455691997-07-17 16:21:52 +00003012
Fred Drake8842e861998-02-13 07:16:30 +00003013\begin{verbatim}
Guido van Rossum02455691997-07-17 16:21:52 +00003014>>> f=open('/tmp/workfile', 'r+')
3015>>> f.write('0123456789abcdef')
Fred Drakea8159162001-10-16 03:25:00 +00003016>>> f.seek(5) # Go to the 6th byte in the file
Guido van Rossum02455691997-07-17 16:21:52 +00003017>>> f.read(1)
3018'5'
3019>>> f.seek(-3, 2) # Go to the 3rd byte before the end
3020>>> f.read(1)
3021'd'
Fred Drake8842e861998-02-13 07:16:30 +00003022\end{verbatim}
Fred Drake6c2176e1998-02-26 21:47:54 +00003023
Guido van Rossum02455691997-07-17 16:21:52 +00003024When you're done with a file, call \code{f.close()} to close it and
3025free up any system resources taken up by the open file. After calling
3026\code{f.close()}, attempts to use the file object will automatically fail.
3027
Fred Drake8842e861998-02-13 07:16:30 +00003028\begin{verbatim}
Guido van Rossum02455691997-07-17 16:21:52 +00003029>>> f.close()
3030>>> f.read()
Fred Drake162c6a62001-02-14 03:20:18 +00003031Traceback (most recent call last):
Guido van Rossum02455691997-07-17 16:21:52 +00003032 File "<stdin>", line 1, in ?
3033ValueError: I/O operation on closed file
Fred Drake8842e861998-02-13 07:16:30 +00003034\end{verbatim}
Fred Drake6c2176e1998-02-26 21:47:54 +00003035
Fred Drake20082d92000-04-03 04:26:58 +00003036File objects have some additional methods, such as
3037\method{isatty()} and \method{truncate()} which are less frequently
3038used; consult the Library Reference for a complete guide to file
3039objects.
Guido van Rossum02455691997-07-17 16:21:52 +00003040
Fred Drakeb7833d31998-09-11 16:21:55 +00003041\subsection{The \module{pickle} Module \label{pickle}}
Fred Drake391564f1998-04-01 23:11:56 +00003042\refstmodindex{pickle}
Guido van Rossum02455691997-07-17 16:21:52 +00003043
3044Strings can easily be written to and read from a file. Numbers take a
Fred Drake8842e861998-02-13 07:16:30 +00003045bit more effort, since the \method{read()} method only returns
3046strings, which will have to be passed to a function like
3047\function{string.atoi()}, which takes a string like \code{'123'} and
3048returns its numeric value 123. However, when you want to save more
3049complex data types like lists, dictionaries, or class instances,
3050things get a lot more complicated.
Guido van Rossum02455691997-07-17 16:21:52 +00003051
3052Rather than have users be constantly writing and debugging code to
3053save complicated data types, Python provides a standard module called
Fred Drake8842e861998-02-13 07:16:30 +00003054\module{pickle}. This is an amazing module that can take almost
Guido van Rossum02455691997-07-17 16:21:52 +00003055any Python object (even some forms of Python code!), and convert it to
3056a string representation; this process is called \dfn{pickling}.
3057Reconstructing the object from the string representation is called
3058\dfn{unpickling}. Between pickling and unpickling, the string
3059representing the object may have been stored in a file or data, or
3060sent over a network connection to some distant machine.
3061
3062If you have an object \code{x}, and a file object \code{f} that's been
3063opened for writing, the simplest way to pickle the object takes only
3064one line of code:
3065
Fred Drake8842e861998-02-13 07:16:30 +00003066\begin{verbatim}
Guido van Rossum02455691997-07-17 16:21:52 +00003067pickle.dump(x, f)
Fred Drake8842e861998-02-13 07:16:30 +00003068\end{verbatim}
Fred Drake6c2176e1998-02-26 21:47:54 +00003069
Fred Drake8842e861998-02-13 07:16:30 +00003070To unpickle the object again, if \code{f} is a file object which has
3071been opened for reading:
Guido van Rossum02455691997-07-17 16:21:52 +00003072
Fred Drake8842e861998-02-13 07:16:30 +00003073\begin{verbatim}
Guido van Rossum02455691997-07-17 16:21:52 +00003074x = pickle.load(f)
Fred Drake8842e861998-02-13 07:16:30 +00003075\end{verbatim}
Fred Drake6c2176e1998-02-26 21:47:54 +00003076
Guido van Rossum02455691997-07-17 16:21:52 +00003077(There are other variants of this, used when pickling many objects or
3078when you don't want to write the pickled data to a file; consult the
Fred Drake8842e861998-02-13 07:16:30 +00003079complete documentation for \module{pickle} in the Library Reference.)
Guido van Rossum02455691997-07-17 16:21:52 +00003080
Fred Drake20082d92000-04-03 04:26:58 +00003081\module{pickle} is the standard way to make Python objects which can
3082be stored and reused by other programs or by a future invocation of
3083the same program; the technical term for this is a
3084\dfn{persistent} object. Because \module{pickle} is so widely used,
3085many authors who write Python extensions take care to ensure that new
3086data types such as matrices can be properly pickled and unpickled.
Guido van Rossum02455691997-07-17 16:21:52 +00003087
Guido van Rossum6fc178f1991-08-16 09:13:42 +00003088
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003089
Fred Drakeb7833d31998-09-11 16:21:55 +00003090\chapter{Errors and Exceptions \label{errors}}
Guido van Rossum6fc178f1991-08-16 09:13:42 +00003091
3092Until now error messages haven't been more than mentioned, but if you
3093have tried out the examples you have probably seen some. There are
Fred Drake20082d92000-04-03 04:26:58 +00003094(at least) two distinguishable kinds of errors:
3095\emph{syntax errors} and \emph{exceptions}.
Guido van Rossum6fc178f1991-08-16 09:13:42 +00003096
Fred Drakeb7833d31998-09-11 16:21:55 +00003097\section{Syntax Errors \label{syntaxErrors}}
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00003098
3099Syntax errors, also known as parsing errors, are perhaps the most common
Guido van Rossum4410c751991-06-04 20:22:18 +00003100kind of complaint you get while you are still learning Python:
Guido van Rossuma8d754e1992-01-07 16:44:35 +00003101
Fred Drake8842e861998-02-13 07:16:30 +00003102\begin{verbatim}
Raymond Hettingera6e16a82002-08-21 04:54:00 +00003103>>> while True print 'Hello world'
Fred Drake13af4282001-09-21 21:10:05 +00003104 File "<stdin>", line 1, in ?
Raymond Hettingera6e16a82002-08-21 04:54:00 +00003105 while True print 'Hello world'
3106 ^
Guido van Rossum6938f061994-08-01 12:22:53 +00003107SyntaxError: invalid syntax
Fred Drake8842e861998-02-13 07:16:30 +00003108\end{verbatim}
Fred Drake6c2176e1998-02-26 21:47:54 +00003109
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00003110The parser repeats the offending line and displays a little `arrow'
Fred Drake20082d92000-04-03 04:26:58 +00003111pointing at the earliest point in the line where the error was
3112detected. The error is caused by (or at least detected at) the token
3113\emph{preceding} the arrow: in the example, the error is detected at
3114the keyword \keyword{print}, since a colon (\character{:}) is missing
3115before it. File name and line number are printed so you know where to
3116look in case the input came from a script.
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00003117
Fred Drakeb7833d31998-09-11 16:21:55 +00003118\section{Exceptions \label{exceptions}}
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00003119
Guido van Rossum6fc178f1991-08-16 09:13:42 +00003120Even if a statement or expression is syntactically correct, it may
3121cause an error when an attempt is made to execute it.
Fred Drakeeee08cd1997-12-04 15:43:15 +00003122Errors detected during execution are called \emph{exceptions} and are
Guido van Rossum6fc178f1991-08-16 09:13:42 +00003123not unconditionally fatal: you will soon learn how to handle them in
3124Python programs. Most exceptions are not handled by programs,
3125however, and result in error messages as shown here:
Guido van Rossuma8d754e1992-01-07 16:44:35 +00003126
Fred Drake8842e861998-02-13 07:16:30 +00003127\begin{verbatim}
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00003128>>> 10 * (1/0)
Fred Drake162c6a62001-02-14 03:20:18 +00003129Traceback (most recent call last):
Fred Drake13af4282001-09-21 21:10:05 +00003130 File "<stdin>", line 1, in ?
Guido van Rossumb2c65561993-05-12 08:53:36 +00003131ZeroDivisionError: integer division or modulo
Guido van Rossume5f8b601995-01-04 19:12:49 +00003132>>> 4 + spam*3
Fred Drake162c6a62001-02-14 03:20:18 +00003133Traceback (most recent call last):
Fred Drake13af4282001-09-21 21:10:05 +00003134 File "<stdin>", line 1, in ?
Andrew M. Kuchlinge7bd8762002-05-02 14:31:55 +00003135NameError: name 'spam' is not defined
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00003136>>> '2' + 2
Fred Drake162c6a62001-02-14 03:20:18 +00003137Traceback (most recent call last):
Fred Drake13af4282001-09-21 21:10:05 +00003138 File "<stdin>", line 1, in ?
Guido van Rossumb2c65561993-05-12 08:53:36 +00003139TypeError: illegal argument type for built-in operation
Fred Drake8842e861998-02-13 07:16:30 +00003140\end{verbatim}
Fred Drake6c2176e1998-02-26 21:47:54 +00003141
Guido van Rossumb2c65561993-05-12 08:53:36 +00003142The last line of the error message indicates what happened.
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00003143Exceptions come in different types, and the type is printed as part of
3144the message: the types in the example are
Fred Drake20082d92000-04-03 04:26:58 +00003145\exception{ZeroDivisionError}, \exception{NameError} and
Fred Drake8842e861998-02-13 07:16:30 +00003146\exception{TypeError}.
Guido van Rossumb2c65561993-05-12 08:53:36 +00003147The string printed as the exception type is the name of the built-in
3148name for the exception that occurred. This is true for all built-in
3149exceptions, but need not be true for user-defined exceptions (although
3150it is a useful convention).
3151Standard exception names are built-in identifiers (not reserved
3152keywords).
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00003153
Guido van Rossumb2c65561993-05-12 08:53:36 +00003154The rest of the line is a detail whose interpretation depends on the
3155exception type; its meaning is dependent on the exception type.
3156
3157The preceding part of the error message shows the context where the
3158exception happened, in the form of a stack backtrace.
Guido van Rossum2292b8e1991-01-23 16:31:24 +00003159In general it contains a stack backtrace listing source lines; however,
3160it will not display lines read from standard input.
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00003161
Fred Drake860106a2000-10-20 03:03:18 +00003162The \citetitle[../lib/module-exceptions.html]{Python Library
3163Reference} lists the built-in exceptions and their meanings.
Fred Drake20082d92000-04-03 04:26:58 +00003164
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00003165
Fred Drakeb7833d31998-09-11 16:21:55 +00003166\section{Handling Exceptions \label{handling}}
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00003167
3168It is possible to write programs that handle selected exceptions.
Fred Drake20082d92000-04-03 04:26:58 +00003169Look at the following example, which asks the user for input until a
3170valid integer has been entered, but allows the user to interrupt the
3171program (using \kbd{Control-C} or whatever the operating system
3172supports); note that a user-generated interruption is signalled by
3173raising the \exception{KeyboardInterrupt} exception.
Guido van Rossuma8d754e1992-01-07 16:44:35 +00003174
Fred Drake8842e861998-02-13 07:16:30 +00003175\begin{verbatim}
Raymond Hettingera6e16a82002-08-21 04:54:00 +00003176>>> while True:
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00003177... try:
Fred Drake20082d92000-04-03 04:26:58 +00003178... x = int(raw_input("Please enter a number: "))
3179... break
3180... except ValueError:
3181... print "Oops! That was no valid number. Try again..."
Guido van Rossum02455691997-07-17 16:21:52 +00003182...
Fred Drake8842e861998-02-13 07:16:30 +00003183\end{verbatim}
Fred Drake6c2176e1998-02-26 21:47:54 +00003184
Fred Drake8842e861998-02-13 07:16:30 +00003185The \keyword{try} statement works as follows.
Fred Drake20082d92000-04-03 04:26:58 +00003186
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00003187\begin{itemize}
3188\item
Fred Drake20082d92000-04-03 04:26:58 +00003189First, the \emph{try clause} (the statement(s) between the
3190\keyword{try} and \keyword{except} keywords) is executed.
3191
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00003192\item
Fred Drake20082d92000-04-03 04:26:58 +00003193If no exception occurs, the \emph{except\ clause} is skipped and
3194execution of the \keyword{try} statement is finished.
3195
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00003196\item
Fred Drake20082d92000-04-03 04:26:58 +00003197If an exception occurs during execution of the try clause, the rest of
3198the clause is skipped. Then if its type matches the exception named
3199after the \keyword{except} keyword, the rest of the try clause is
3200skipped, the except clause is executed, and then execution continues
3201after the \keyword{try} statement.
3202
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00003203\item
3204If an exception occurs which does not match the exception named in the
Fred Drake8842e861998-02-13 07:16:30 +00003205except clause, it is passed on to outer \keyword{try} statements; if
Fred Drake20082d92000-04-03 04:26:58 +00003206no handler is found, it is an \emph{unhandled exception} and execution
3207stops with a message as shown above.
3208
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00003209\end{itemize}
Fred Drake20082d92000-04-03 04:26:58 +00003210
Fred Drake8842e861998-02-13 07:16:30 +00003211A \keyword{try} statement may have more than one except clause, to
Fred Drake20082d92000-04-03 04:26:58 +00003212specify handlers for different exceptions. At most one handler will
3213be executed. Handlers only handle exceptions that occur in the
3214corresponding try clause, not in other handlers of the same
Fred Drakeed514942001-07-06 17:28:39 +00003215\keyword{try} statement. An except clause may name multiple exceptions
3216as a parenthesized list, for example:
Guido van Rossuma8d754e1992-01-07 16:44:35 +00003217
Fred Drake8842e861998-02-13 07:16:30 +00003218\begin{verbatim}
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00003219... except (RuntimeError, TypeError, NameError):
3220... pass
Fred Drake8842e861998-02-13 07:16:30 +00003221\end{verbatim}
Fred Drake6c2176e1998-02-26 21:47:54 +00003222
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00003223The last except clause may omit the exception name(s), to serve as a
Fred Drake20082d92000-04-03 04:26:58 +00003224wildcard. Use this with extreme caution, since it is easy to mask a
3225real programming error in this way! It can also be used to print an
3226error message and then re-raise the exception (allowing a caller to
3227handle the exception as well):
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00003228
Fred Drake20082d92000-04-03 04:26:58 +00003229\begin{verbatim}
3230import string, sys
3231
3232try:
3233 f = open('myfile.txt')
3234 s = f.readline()
3235 i = int(string.strip(s))
3236except IOError, (errno, strerror):
3237 print "I/O error(%s): %s" % (errno, strerror)
3238except ValueError:
3239 print "Could not convert data to an integer."
3240except:
3241 print "Unexpected error:", sys.exc_info()[0]
3242 raise
3243\end{verbatim}
Fred Drake2900ff91999-08-24 22:14:57 +00003244
Fred Drake8842e861998-02-13 07:16:30 +00003245The \keyword{try} \ldots\ \keyword{except} statement has an optional
Fred Drakee99d1db2000-04-17 14:56:31 +00003246\emph{else clause}, which, when present, must follow all except
3247clauses. It is useful for code that must be executed if the try
3248clause does not raise an exception. For example:
Guido van Rossum02455691997-07-17 16:21:52 +00003249
3250\begin{verbatim}
Guido van Rossuma4289a71998-07-07 20:18:06 +00003251for arg in sys.argv[1:]:
Fred Drake8842e861998-02-13 07:16:30 +00003252 try:
3253 f = open(arg, 'r')
3254 except IOError:
3255 print 'cannot open', arg
3256 else:
3257 print arg, 'has', len(f.readlines()), 'lines'
3258 f.close()
Guido van Rossum02455691997-07-17 16:21:52 +00003259\end{verbatim}
3260
Fred Drakee99d1db2000-04-17 14:56:31 +00003261The use of the \keyword{else} clause is better than adding additional
3262code to the \keyword{try} clause because it avoids accidentally
3263catching an exception that wasn't raised by the code being protected
3264by the \keyword{try} \ldots\ \keyword{except} statement.
3265
Guido van Rossum02455691997-07-17 16:21:52 +00003266
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00003267When an exception occurs, it may have an associated value, also known as
Thomas Woutersf9b526d2000-07-16 19:05:38 +00003268the exception's \emph{argument}.
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00003269The presence and type of the argument depend on the exception type.
3270For exception types which have an argument, the except clause may
3271specify a variable after the exception name (or list) to receive the
3272argument's value, as follows:
Guido van Rossuma8d754e1992-01-07 16:44:35 +00003273
Fred Drake8842e861998-02-13 07:16:30 +00003274\begin{verbatim}
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00003275>>> try:
Guido van Rossume5f8b601995-01-04 19:12:49 +00003276... spam()
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00003277... except NameError, x:
Guido van Rossum2292b8e1991-01-23 16:31:24 +00003278... print 'name', x, 'undefined'
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00003279...
Guido van Rossume5f8b601995-01-04 19:12:49 +00003280name spam undefined
Fred Drake8842e861998-02-13 07:16:30 +00003281\end{verbatim}
Fred Drake6c2176e1998-02-26 21:47:54 +00003282
Guido van Rossumb2c65561993-05-12 08:53:36 +00003283If an exception has an argument, it is printed as the last part
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00003284(`detail') of the message for unhandled exceptions.
3285
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00003286Exception handlers don't just handle exceptions if they occur
3287immediately in the try clause, but also if they occur inside functions
3288that are called (even indirectly) in the try clause.
3289For example:
Guido van Rossuma8d754e1992-01-07 16:44:35 +00003290
Fred Drake8842e861998-02-13 07:16:30 +00003291\begin{verbatim}
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00003292>>> def this_fails():
3293... x = 1/0
3294...
3295>>> try:
3296... this_fails()
Guido van Rossumb2c65561993-05-12 08:53:36 +00003297... except ZeroDivisionError, detail:
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00003298... print 'Handling run-time error:', detail
3299...
Guido van Rossumb2c65561993-05-12 08:53:36 +00003300Handling run-time error: integer division or modulo
Fred Drake8842e861998-02-13 07:16:30 +00003301\end{verbatim}
Fred Drake6c2176e1998-02-26 21:47:54 +00003302
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00003303
Fred Drakeb7833d31998-09-11 16:21:55 +00003304\section{Raising Exceptions \label{raising}}
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00003305
Fred Drake8842e861998-02-13 07:16:30 +00003306The \keyword{raise} statement allows the programmer to force a
3307specified exception to occur.
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00003308For example:
Guido van Rossuma8d754e1992-01-07 16:44:35 +00003309
Fred Drake8842e861998-02-13 07:16:30 +00003310\begin{verbatim}
Guido van Rossumb2c65561993-05-12 08:53:36 +00003311>>> raise NameError, 'HiThere'
Fred Drake162c6a62001-02-14 03:20:18 +00003312Traceback (most recent call last):
Fred Drake13af4282001-09-21 21:10:05 +00003313 File "<stdin>", line 1, in ?
Guido van Rossumb2c65561993-05-12 08:53:36 +00003314NameError: HiThere
Fred Drake8842e861998-02-13 07:16:30 +00003315\end{verbatim}
Fred Drake6c2176e1998-02-26 21:47:54 +00003316
Fred Drake8842e861998-02-13 07:16:30 +00003317The first argument to \keyword{raise} names the exception to be
3318raised. The optional second argument specifies the exception's
3319argument.
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00003320
Fred Drake13af4282001-09-21 21:10:05 +00003321If you need to determine whether an exception was raised but don't
3322intend to handle it, a simpler form of the \keyword{raise} statement
3323allows you to re-raise the exception:
3324
3325\begin{verbatim}
3326>>> try:
3327... raise NameError, 'HiThere'
3328... except NameError:
3329... print 'An exception flew by!'
3330... raise
3331...
3332An exception flew by!
3333Traceback (most recent call last):
3334 File "<stdin>", line 2, in ?
3335NameError: HiThere
3336\end{verbatim}
3337
Guido van Rossum02455691997-07-17 16:21:52 +00003338
Fred Drakeb7833d31998-09-11 16:21:55 +00003339\section{User-defined Exceptions \label{userExceptions}}
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00003340
Fred Drake13af4282001-09-21 21:10:05 +00003341Programs may name their own exceptions by creating a new exception
3342class. Exceptions should typically be derived from the
3343\exception{Exception} class, either directly or indirectly. For
3344example:
Guido van Rossuma8d754e1992-01-07 16:44:35 +00003345
Fred Drake8842e861998-02-13 07:16:30 +00003346\begin{verbatim}
Fred Drake13af4282001-09-21 21:10:05 +00003347>>> class MyError(Exception):
Fred Drake20082d92000-04-03 04:26:58 +00003348... def __init__(self, value):
3349... self.value = value
3350... def __str__(self):
3351... return `self.value`
3352...
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00003353>>> try:
Fred Drake20082d92000-04-03 04:26:58 +00003354... raise MyError(2*2)
3355... except MyError, e:
3356... print 'My exception occurred, value:', e.value
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00003357...
Guido van Rossum6938f061994-08-01 12:22:53 +00003358My exception occurred, value: 4
Fred Drake13af4282001-09-21 21:10:05 +00003359>>> raise MyError, 'oops!'
Fred Drake162c6a62001-02-14 03:20:18 +00003360Traceback (most recent call last):
Fred Drake13af4282001-09-21 21:10:05 +00003361 File "<stdin>", line 1, in ?
3362__main__.MyError: 'oops!'
Fred Drake8842e861998-02-13 07:16:30 +00003363\end{verbatim}
Fred Drake6c2176e1998-02-26 21:47:54 +00003364
Fred Drake13af4282001-09-21 21:10:05 +00003365Exception classes can be defined which do anything any other class can
3366do, but are usually kept simple, often only offering a number of
3367attributes that allow information about the error to be extracted by
3368handlers for the exception. When creating a module which can raise
3369several distinct errors, a common practice is to create a base class
3370for exceptions defined by that module, and subclass that to create
3371specific exception classes for different error conditions:
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00003372
Fred Drake13af4282001-09-21 21:10:05 +00003373\begin{verbatim}
3374class Error(Exception):
3375 """Base class for exceptions in this module."""
3376 pass
3377
3378class InputError(Error):
3379 """Exception raised for errors in the input.
3380
3381 Attributes:
3382 expression -- input expression in which the error occurred
3383 message -- explanation of the error
3384 """
3385
3386 def __init__(self, expression, message):
3387 self.expression = expression
3388 self.message = message
3389
3390class TransitionError(Error):
3391 """Raised when an operation attempts a state transition that's not
3392 allowed.
3393
3394 Attributes:
3395 previous -- state at beginning of transition
3396 next -- attempted new state
3397 message -- explanation of why the specific transition is not allowed
3398 """
3399
3400 def __init__(self, previous, next, message):
3401 self.previous = previous
3402 self.next = next
3403 self.message = message
3404\end{verbatim}
3405
3406Most exceptions are defined with names that end in ``Error,'' similar
3407to the naming of the standard exceptions.
3408
3409Many standard modules define their own exceptions to report errors
3410that may occur in functions they define. More information on classes
3411is presented in chapter \ref{classes}, ``Classes.''
Fred Drake20082d92000-04-03 04:26:58 +00003412
Guido van Rossum02455691997-07-17 16:21:52 +00003413
Fred Drakeb7833d31998-09-11 16:21:55 +00003414\section{Defining Clean-up Actions \label{cleanup}}
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00003415
Fred Drake8842e861998-02-13 07:16:30 +00003416The \keyword{try} statement has another optional clause which is
3417intended to define clean-up actions that must be executed under all
3418circumstances. For example:
Guido van Rossuma8d754e1992-01-07 16:44:35 +00003419
Fred Drake8842e861998-02-13 07:16:30 +00003420\begin{verbatim}
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00003421>>> try:
3422... raise KeyboardInterrupt
3423... finally:
3424... print 'Goodbye, world!'
3425...
3426Goodbye, world!
Fred Drake162c6a62001-02-14 03:20:18 +00003427Traceback (most recent call last):
Fred Drake13af4282001-09-21 21:10:05 +00003428 File "<stdin>", line 2, in ?
Guido van Rossumb2c65561993-05-12 08:53:36 +00003429KeyboardInterrupt
Fred Drake8842e861998-02-13 07:16:30 +00003430\end{verbatim}
Fred Drake6c2176e1998-02-26 21:47:54 +00003431
Fred Drake8842e861998-02-13 07:16:30 +00003432A \emph{finally clause} is executed whether or not an exception has
3433occurred in the try clause. When an exception has occurred, it is
3434re-raised after the finally clause is executed. The finally clause is
3435also executed ``on the way out'' when the \keyword{try} statement is
3436left via a \keyword{break} or \keyword{return} statement.
Guido van Rossumda8c3fd1992-08-09 13:55:25 +00003437
Fred Drake13af4282001-09-21 21:10:05 +00003438The code in the finally clause is useful for releasing external
3439resources (such as files or network connections), regardless of
3440whether or not the use of the resource was successful.
3441
Fred Drake8842e861998-02-13 07:16:30 +00003442A \keyword{try} statement must either have one or more except clauses
3443or one finally clause, but not both.
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00003444
Fred Drake13af4282001-09-21 21:10:05 +00003445
Fred Drakeb7833d31998-09-11 16:21:55 +00003446\chapter{Classes \label{classes}}
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003447
3448Python's class mechanism adds classes to the language with a minimum
3449of new syntax and semantics. It is a mixture of the class mechanisms
Guido van Rossum16d6e711994-08-08 12:30:22 +00003450found in \Cpp{} and Modula-3. As is true for modules, classes in Python
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003451do not put an absolute barrier between definition and user, but rather
3452rely on the politeness of the user not to ``break into the
3453definition.'' The most important features of classes are retained
3454with full power, however: the class inheritance mechanism allows
3455multiple base classes, a derived class can override any methods of its
Fred Drake391564f1998-04-01 23:11:56 +00003456base class or classes, a method can call the method of a base class with the
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003457same name. Objects can contain an arbitrary amount of private data.
3458
Guido van Rossum16d6e711994-08-08 12:30:22 +00003459In \Cpp{} terminology, all class members (including the data members) are
Fred Drakeeee08cd1997-12-04 15:43:15 +00003460\emph{public}, and all member functions are \emph{virtual}. There are
Guido van Rossum6938f061994-08-01 12:22:53 +00003461no special constructors or destructors. As in Modula-3, there are no
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003462shorthands for referencing the object's members from its methods: the
3463method function is declared with an explicit first argument
3464representing the object, which is provided implicitly by the call. As
3465in Smalltalk, classes themselves are objects, albeit in the wider
3466sense of the word: in Python, all data types are objects. This
Fred Drake20082d92000-04-03 04:26:58 +00003467provides semantics for importing and renaming. But, just like in
3468\Cpp{} or Modula-3, built-in types cannot be used as base classes for
Guido van Rossum16d6e711994-08-08 12:30:22 +00003469extension by the user. Also, like in \Cpp{} but unlike in Modula-3, most
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003470built-in operators with special syntax (arithmetic operators,
Fred Drake391564f1998-04-01 23:11:56 +00003471subscripting etc.) can be redefined for class instances.
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003472
Fred Drakeb7833d31998-09-11 16:21:55 +00003473\section{A Word About Terminology \label{terminology}}
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003474
Fred Drake391564f1998-04-01 23:11:56 +00003475Lacking universally accepted terminology to talk about classes, I will
3476make occasional use of Smalltalk and \Cpp{} terms. (I would use Modula-3
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003477terms, since its object-oriented semantics are closer to those of
Fred Drakec37b65e2001-11-28 07:26:15 +00003478Python than \Cpp, but I expect that few readers have heard of it.)
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003479
3480I also have to warn you that there's a terminological pitfall for
3481object-oriented readers: the word ``object'' in Python does not
Fred Drake8842e861998-02-13 07:16:30 +00003482necessarily mean a class instance. Like \Cpp{} and Modula-3, and
3483unlike Smalltalk, not all types in Python are classes: the basic
Fred Drake391564f1998-04-01 23:11:56 +00003484built-in types like integers and lists are not, and even somewhat more
Fred Drake8842e861998-02-13 07:16:30 +00003485exotic types like files aren't. However, \emph{all} Python types
3486share a little bit of common semantics that is best described by using
3487the word object.
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003488
3489Objects have individuality, and multiple names (in multiple scopes)
3490can be bound to the same object. This is known as aliasing in other
3491languages. This is usually not appreciated on a first glance at
3492Python, and can be safely ignored when dealing with immutable basic
3493types (numbers, strings, tuples). However, aliasing has an
Guido van Rossum6938f061994-08-01 12:22:53 +00003494(intended!) effect on the semantics of Python code involving mutable
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003495objects such as lists, dictionaries, and most types representing
3496entities outside the program (files, windows, etc.). This is usually
3497used to the benefit of the program, since aliases behave like pointers
3498in some respects. For example, passing an object is cheap since only
3499a pointer is passed by the implementation; and if a function modifies
3500an object passed as an argument, the caller will see the change --- this
3501obviates the need for two different argument passing mechanisms as in
3502Pascal.
3503
3504
Fred Drakeb7833d31998-09-11 16:21:55 +00003505\section{Python Scopes and Name Spaces \label{scopes}}
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003506
3507Before introducing classes, I first have to tell you something about
3508Python's scope rules. Class definitions play some neat tricks with
Fred Drake13494372000-09-12 16:23:48 +00003509namespaces, and you need to know how scopes and namespaces work to
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003510fully understand what's going on. Incidentally, knowledge about this
3511subject is useful for any advanced Python programmer.
3512
3513Let's begin with some definitions.
3514
Fred Drake13494372000-09-12 16:23:48 +00003515A \emph{namespace} is a mapping from names to objects. Most
3516namespaces are currently implemented as Python dictionaries, but
3517that's normally not noticeable in any way (except for performance),
3518and it may change in the future. Examples of namespaces are: the set
3519of built-in names (functions such as \function{abs()}, and built-in
3520exception names); the global names in a module; and the local names in
3521a function invocation. In a sense the set of attributes of an object
3522also form a namespace. The important thing to know about namespaces
3523is that there is absolutely no relation between names in different
3524namespaces; for instance, two different modules may both define a
3525function ``maximize'' without confusion --- users of the modules must
3526prefix it with the module name.
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003527
Fred Drakeeee08cd1997-12-04 15:43:15 +00003528By the way, I use the word \emph{attribute} for any name following a
Fred Drake8842e861998-02-13 07:16:30 +00003529dot --- for example, in the expression \code{z.real}, \code{real} is
3530an attribute of the object \code{z}. Strictly speaking, references to
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003531names in modules are attribute references: in the expression
Fred Drake8842e861998-02-13 07:16:30 +00003532\code{modname.funcname}, \code{modname} is a module object and
3533\code{funcname} is an attribute of it. In this case there happens to
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003534be a straightforward mapping between the module's attributes and the
Fred Drake13494372000-09-12 16:23:48 +00003535global names defined in the module: they share the same namespace!
3536\footnote{
Guido van Rossum6938f061994-08-01 12:22:53 +00003537 Except for one thing. Module objects have a secret read-only
Fred Drake13494372000-09-12 16:23:48 +00003538 attribute called \member{__dict__} which returns the dictionary
3539 used to implement the module's namespace; the name
3540 \member{__dict__} is an attribute but not a global name.
3541 Obviously, using this violates the abstraction of namespace
Guido van Rossum6938f061994-08-01 12:22:53 +00003542 implementation, and should be restricted to things like
Fred Drake8842e861998-02-13 07:16:30 +00003543 post-mortem debuggers.
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003544}
3545
3546Attributes may be read-only or writable. In the latter case,
3547assignment to attributes is possible. Module attributes are writable:
Fred Drake8842e861998-02-13 07:16:30 +00003548you can write \samp{modname.the_answer = 42}. Writable attributes may
Fred Drakeed514942001-07-06 17:28:39 +00003549also be deleted with the \keyword{del} statement. For example,
3550\samp{del modname.the_answer} will remove the attribute
3551\member{the_answer} from the object named by \code{modname}.
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003552
3553Name spaces are created at different moments and have different
Fred Drake13494372000-09-12 16:23:48 +00003554lifetimes. The namespace containing the built-in names is created
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003555when the Python interpreter starts up, and is never deleted. The
Fred Drake13494372000-09-12 16:23:48 +00003556global namespace for a module is created when the module definition
3557is read in; normally, module namespaces also last until the
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003558interpreter quits. The statements executed by the top-level
3559invocation of the interpreter, either read from a script file or
Fred Drake8842e861998-02-13 07:16:30 +00003560interactively, are considered part of a module called
Fred Drake13494372000-09-12 16:23:48 +00003561\module{__main__}, so they have their own global namespace. (The
Fred Drake8842e861998-02-13 07:16:30 +00003562built-in names actually also live in a module; this is called
3563\module{__builtin__}.)
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003564
Fred Drake13494372000-09-12 16:23:48 +00003565The local namespace for a function is created when the function is
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003566called, and deleted when the function returns or raises an exception
3567that is not handled within the function. (Actually, forgetting would
3568be a better way to describe what actually happens.) Of course,
Fred Drake13494372000-09-12 16:23:48 +00003569recursive invocations each have their own local namespace.
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003570
Fred Drake13494372000-09-12 16:23:48 +00003571A \emph{scope} is a textual region of a Python program where a
3572namespace is directly accessible. ``Directly accessible'' here means
3573that an unqualified reference to a name attempts to find the name in
3574the namespace.
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003575
3576Although scopes are determined statically, they are used dynamically.
Raymond Hettinger861bb022002-08-07 16:09:48 +00003577At any time during execution, there are at least three nested scopes whose
3578namespaces are directly accessible: the innermost scope, which is searched
Raymond Hettingerae7ef572002-08-07 20:20:52 +00003579first, contains the local names; the namespaces of any enclosing
3580functions, which are searched starting with the nearest enclosing scope;
3581the middle scope, searched next, contains the current module's global names;
3582and the outermost scope (searched last) is the namespace containing built-in
3583names.
Raymond Hettinger861bb022002-08-07 16:09:48 +00003584
3585If a name is declared global, then all references and assignments go
3586directly to the middle scope containing the module's global names.
3587Otherwise, all variables found outside of the innermost scope are read-only.
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003588
3589Usually, the local scope references the local names of the (textually)
Guido van Rossum96628a91995-04-10 11:34:00 +00003590current function. Outside of functions, the local scope references
Fred Drake13494372000-09-12 16:23:48 +00003591the same namespace as the global scope: the module's namespace.
3592Class definitions place yet another namespace in the local scope.
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003593
3594It is important to realize that scopes are determined textually: the
Fred Drake13494372000-09-12 16:23:48 +00003595global scope of a function defined in a module is that module's
3596namespace, no matter from where or by what alias the function is
3597called. On the other hand, the actual search for names is done
3598dynamically, at run time --- however, the language definition is
3599evolving towards static name resolution, at ``compile'' time, so don't
3600rely on dynamic name resolution! (In fact, local variables are
3601already determined statically.)
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003602
3603A special quirk of Python is that assignments always go into the
3604innermost scope. Assignments do not copy data --- they just
3605bind names to objects. The same is true for deletions: the statement
Fred Drake13494372000-09-12 16:23:48 +00003606\samp{del x} removes the binding of \code{x} from the namespace
Fred Drake391564f1998-04-01 23:11:56 +00003607referenced by the local scope. In fact, all operations that introduce
3608new names use the local scope: in particular, import statements and
3609function definitions bind the module or function name in the local
3610scope. (The \keyword{global} statement can be used to indicate that
3611particular variables live in the global scope.)
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003612
3613
Fred Drakeb7833d31998-09-11 16:21:55 +00003614\section{A First Look at Classes \label{firstClasses}}
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003615
3616Classes introduce a little bit of new syntax, three new object types,
3617and some new semantics.
3618
3619
Fred Drakeb7833d31998-09-11 16:21:55 +00003620\subsection{Class Definition Syntax \label{classDefinition}}
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003621
3622The simplest form of class definition looks like this:
3623
3624\begin{verbatim}
Fred Drake8842e861998-02-13 07:16:30 +00003625class ClassName:
3626 <statement-1>
3627 .
3628 .
3629 .
3630 <statement-N>
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003631\end{verbatim}
3632
Fred Drake20082d92000-04-03 04:26:58 +00003633Class definitions, like function definitions
3634(\keyword{def} statements) must be executed before they have any
3635effect. (You could conceivably place a class definition in a branch
3636of an \keyword{if} statement, or inside a function.)
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003637
3638In practice, the statements inside a class definition will usually be
3639function definitions, but other statements are allowed, and sometimes
3640useful --- we'll come back to this later. The function definitions
3641inside a class normally have a peculiar form of argument list,
3642dictated by the calling conventions for methods --- again, this is
3643explained later.
3644
Fred Drake13494372000-09-12 16:23:48 +00003645When a class definition is entered, a new namespace is created, and
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003646used as the local scope --- thus, all assignments to local variables
Fred Drake13494372000-09-12 16:23:48 +00003647go into this new namespace. In particular, function definitions bind
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003648the name of the new function here.
3649
Fred Drakeeee08cd1997-12-04 15:43:15 +00003650When a class definition is left normally (via the end), a \emph{class
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003651object} is created. This is basically a wrapper around the contents
Fred Drake13494372000-09-12 16:23:48 +00003652of the namespace created by the class definition; we'll learn more
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003653about class objects in the next section. The original local scope
3654(the one in effect just before the class definitions was entered) is
Fred Drakea594baf1998-04-03 05:16:31 +00003655reinstated, and the class object is bound here to the class name given
3656in the class definition header (\class{ClassName} in the example).
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003657
3658
Fred Drakeb7833d31998-09-11 16:21:55 +00003659\subsection{Class Objects \label{classObjects}}
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003660
3661Class objects support two kinds of operations: attribute references
3662and instantiation.
3663
Fred Drakeeee08cd1997-12-04 15:43:15 +00003664\emph{Attribute references} use the standard syntax used for all
Fred Drake8842e861998-02-13 07:16:30 +00003665attribute references in Python: \code{obj.name}. Valid attribute
Fred Drake13494372000-09-12 16:23:48 +00003666names are all the names that were in the class's namespace when the
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003667class object was created. So, if the class definition looked like
3668this:
3669
3670\begin{verbatim}
Fred Drake8842e861998-02-13 07:16:30 +00003671class MyClass:
3672 "A simple example class"
3673 i = 12345
Fred Drake88e66252001-06-29 17:50:57 +00003674 def f(self):
Fred Drake8842e861998-02-13 07:16:30 +00003675 return 'hello world'
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003676\end{verbatim}
3677
Fred Drake8842e861998-02-13 07:16:30 +00003678then \code{MyClass.i} and \code{MyClass.f} are valid attribute
Fred Drake20082d92000-04-03 04:26:58 +00003679references, returning an integer and a method object, respectively.
Guido van Rossum02455691997-07-17 16:21:52 +00003680Class attributes can also be assigned to, so you can change the value
Fred Drake20082d92000-04-03 04:26:58 +00003681of \code{MyClass.i} by assignment. \member{__doc__} is also a valid
3682attribute, returning the docstring belonging to the class: \code{"A
3683simple example class"}).
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003684
Fred Drakeeee08cd1997-12-04 15:43:15 +00003685Class \emph{instantiation} uses function notation. Just pretend that
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003686the class object is a parameterless function that returns a new
Fred Drake20082d92000-04-03 04:26:58 +00003687instance of the class. For example (assuming the above class):
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003688
3689\begin{verbatim}
Fred Drake8842e861998-02-13 07:16:30 +00003690x = MyClass()
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003691\end{verbatim}
3692
Fred Drakeeee08cd1997-12-04 15:43:15 +00003693creates a new \emph{instance} of the class and assigns this object to
3694the local variable \code{x}.
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003695
Fred Drake20082d92000-04-03 04:26:58 +00003696The instantiation operation (``calling'' a class object) creates an
3697empty object. Many classes like to create objects in a known initial
3698state. Therefore a class may define a special method named
3699\method{__init__()}, like this:
3700
3701\begin{verbatim}
3702 def __init__(self):
3703 self.data = []
3704\end{verbatim}
3705
3706When a class defines an \method{__init__()} method, class
3707instantiation automatically invokes \method{__init__()} for the
3708newly-created class instance. So in this example, a new, initialized
3709instance can be obtained by:
3710
3711\begin{verbatim}
3712x = MyClass()
3713\end{verbatim}
3714
3715Of course, the \method{__init__()} method may have arguments for
3716greater flexibility. In that case, arguments given to the class
3717instantiation operator are passed on to \method{__init__()}. For
3718example,
3719
3720\begin{verbatim}
3721>>> class Complex:
3722... def __init__(self, realpart, imagpart):
3723... self.r = realpart
3724... self.i = imagpart
3725...
Tim Petersbd695a72001-05-22 06:54:14 +00003726>>> x = Complex(3.0, -4.5)
Fred Drake20082d92000-04-03 04:26:58 +00003727>>> x.r, x.i
3728(3.0, -4.5)
3729\end{verbatim}
3730
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003731
Fred Drakeb7833d31998-09-11 16:21:55 +00003732\subsection{Instance Objects \label{instanceObjects}}
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003733
3734Now what can we do with instance objects? The only operations
3735understood by instance objects are attribute references. There are
3736two kinds of valid attribute names.
3737
Fred Drakeeee08cd1997-12-04 15:43:15 +00003738The first I'll call \emph{data attributes}. These correspond to
Fred Drake8842e861998-02-13 07:16:30 +00003739``instance variables'' in Smalltalk, and to ``data members'' in
Fred Drakec37b65e2001-11-28 07:26:15 +00003740\Cpp. Data attributes need not be declared; like local variables,
Fred Drake8842e861998-02-13 07:16:30 +00003741they spring into existence when they are first assigned to. For
3742example, if \code{x} is the instance of \class{MyClass} created above,
3743the following piece of code will print the value \code{16}, without
3744leaving a trace:
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003745
3746\begin{verbatim}
Fred Drake8842e861998-02-13 07:16:30 +00003747x.counter = 1
3748while x.counter < 10:
3749 x.counter = x.counter * 2
3750print x.counter
3751del x.counter
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003752\end{verbatim}
3753
3754The second kind of attribute references understood by instance objects
Fred Drakeeee08cd1997-12-04 15:43:15 +00003755are \emph{methods}. A method is a function that ``belongs to'' an
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003756object. (In Python, the term method is not unique to class instances:
Fred Drakeed514942001-07-06 17:28:39 +00003757other object types can have methods as well. For example, list objects have
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003758methods called append, insert, remove, sort, and so on. However,
3759below, we'll use the term method exclusively to mean methods of class
3760instance objects, unless explicitly stated otherwise.)
3761
3762Valid method names of an instance object depend on its class. By
Fred Drake8842e861998-02-13 07:16:30 +00003763definition, all attributes of a class that are (user-defined) function
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003764objects define corresponding methods of its instances. So in our
Fred Drakeeee08cd1997-12-04 15:43:15 +00003765example, \code{x.f} is a valid method reference, since
3766\code{MyClass.f} is a function, but \code{x.i} is not, since
Fred Drake8842e861998-02-13 07:16:30 +00003767\code{MyClass.i} is not. But \code{x.f} is not the same thing as
Fred Drake20082d92000-04-03 04:26:58 +00003768\code{MyClass.f} --- it is a \obindex{method}\emph{method object}, not
3769a function object.
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003770
3771
Fred Drakeb7833d31998-09-11 16:21:55 +00003772\subsection{Method Objects \label{methodObjects}}
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003773
Fred Drakeed514942001-07-06 17:28:39 +00003774Usually, a method is called immediately:
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003775
3776\begin{verbatim}
Fred Drake8842e861998-02-13 07:16:30 +00003777x.f()
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003778\end{verbatim}
3779
Fred Drake8842e861998-02-13 07:16:30 +00003780In our example, this will return the string \code{'hello world'}.
Fred Drakeee84d591999-03-10 17:25:30 +00003781However, it is not necessary to call a method right away:
3782\code{x.f} is a method object, and can be stored away and called at a
3783later time. For example:
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003784
3785\begin{verbatim}
Fred Drake8842e861998-02-13 07:16:30 +00003786xf = x.f
Raymond Hettingera6e16a82002-08-21 04:54:00 +00003787while True:
Fred Drake8842e861998-02-13 07:16:30 +00003788 print xf()
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003789\end{verbatim}
3790
Fred Drake8842e861998-02-13 07:16:30 +00003791will continue to print \samp{hello world} until the end of time.
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003792
3793What exactly happens when a method is called? You may have noticed
Fred Drake8842e861998-02-13 07:16:30 +00003794that \code{x.f()} was called without an argument above, even though
3795the function definition for \method{f} specified an argument. What
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003796happened to the argument? Surely Python raises an exception when a
3797function that requires an argument is called without any --- even if
3798the argument isn't actually used...
3799
3800Actually, you may have guessed the answer: the special thing about
3801methods is that the object is passed as the first argument of the
Fred Drake8842e861998-02-13 07:16:30 +00003802function. In our example, the call \code{x.f()} is exactly equivalent
3803to \code{MyClass.f(x)}. In general, calling a method with a list of
Fred Drakeeee08cd1997-12-04 15:43:15 +00003804\var{n} arguments is equivalent to calling the corresponding function
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003805with an argument list that is created by inserting the method's object
3806before the first argument.
3807
3808If you still don't understand how methods work, a look at the
3809implementation can perhaps clarify matters. When an instance
3810attribute is referenced that isn't a data attribute, its class is
3811searched. If the name denotes a valid class attribute that is a
3812function object, a method object is created by packing (pointers to)
3813the instance object and the function object just found together in an
3814abstract object: this is the method object. When the method object is
3815called with an argument list, it is unpacked again, a new argument
3816list is constructed from the instance object and the original argument
3817list, and the function object is called with this new argument list.
3818
3819
Fred Drakeb7833d31998-09-11 16:21:55 +00003820\section{Random Remarks \label{remarks}}
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003821
3822[These should perhaps be placed more carefully...]
3823
3824
3825Data attributes override method attributes with the same name; to
3826avoid accidental name conflicts, which may cause hard-to-find bugs in
3827large programs, it is wise to use some kind of convention that
Fred Drakeed514942001-07-06 17:28:39 +00003828minimizes the chance of conflicts. Possible conventions include
3829capitalizing method names, prefixing data attribute names with a small
3830unique string (perhaps just an underscore), or using verbs for methods
3831and nouns for data attributes.
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003832
3833
3834Data attributes may be referenced by methods as well as by ordinary
3835users (``clients'') of an object. In other words, classes are not
3836usable to implement pure abstract data types. In fact, nothing in
3837Python makes it possible to enforce data hiding --- it is all based
3838upon convention. (On the other hand, the Python implementation,
Fred Drakeee84d591999-03-10 17:25:30 +00003839written in C, can completely hide implementation details and control
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003840access to an object if necessary; this can be used by extensions to
Fred Drakeee84d591999-03-10 17:25:30 +00003841Python written in C.)
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003842
3843
3844Clients should use data attributes with care --- clients may mess up
3845invariants maintained by the methods by stamping on their data
3846attributes. Note that clients may add data attributes of their own to
3847an instance object without affecting the validity of the methods, as
3848long as name conflicts are avoided --- again, a naming convention can
3849save a lot of headaches here.
3850
3851
3852There is no shorthand for referencing data attributes (or other
3853methods!) from within methods. I find that this actually increases
3854the readability of methods: there is no chance of confusing local
3855variables and instance variables when glancing through a method.
3856
3857
3858Conventionally, the first argument of methods is often called
Fred Drake8842e861998-02-13 07:16:30 +00003859\code{self}. This is nothing more than a convention: the name
3860\code{self} has absolutely no special meaning to Python. (Note,
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003861however, that by not following the convention your code may be less
3862readable by other Python programmers, and it is also conceivable that
Fred Drakeeee08cd1997-12-04 15:43:15 +00003863a \emph{class browser} program be written which relies upon such a
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003864convention.)
3865
3866
3867Any function object that is a class attribute defines a method for
3868instances of that class. It is not necessary that the function
3869definition is textually enclosed in the class definition: assigning a
3870function object to a local variable in the class is also ok. For
3871example:
3872
3873\begin{verbatim}
Fred Drake8842e861998-02-13 07:16:30 +00003874# Function defined outside the class
3875def f1(self, x, y):
3876 return min(x, x+y)
3877
3878class C:
3879 f = f1
3880 def g(self):
3881 return 'hello world'
3882 h = g
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003883\end{verbatim}
3884
Fred Drake8842e861998-02-13 07:16:30 +00003885Now \code{f}, \code{g} and \code{h} are all attributes of class
3886\class{C} that refer to function objects, and consequently they are all
3887methods of instances of \class{C} --- \code{h} being exactly equivalent
3888to \code{g}. Note that this practice usually only serves to confuse
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003889the reader of a program.
3890
3891
3892Methods may call other methods by using method attributes of the
Fred Drakeed514942001-07-06 17:28:39 +00003893\code{self} argument:
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003894
3895\begin{verbatim}
Fred Drake8842e861998-02-13 07:16:30 +00003896class Bag:
Fred Drake20082d92000-04-03 04:26:58 +00003897 def __init__(self):
Fred Drake8842e861998-02-13 07:16:30 +00003898 self.data = []
3899 def add(self, x):
3900 self.data.append(x)
3901 def addtwice(self, x):
3902 self.add(x)
3903 self.add(x)
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003904\end{verbatim}
3905
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003906Methods may reference global names in the same way as ordinary
3907functions. The global scope associated with a method is the module
3908containing the class definition. (The class itself is never used as a
3909global scope!) While one rarely encounters a good reason for using
3910global data in a method, there are many legitimate uses of the global
3911scope: for one thing, functions and modules imported into the global
3912scope can be used by methods, as well as functions and classes defined
3913in it. Usually, the class containing the method is itself defined in
3914this global scope, and in the next section we'll find some good
3915reasons why a method would want to reference its own class!
3916
3917
Fred Drakeb7833d31998-09-11 16:21:55 +00003918\section{Inheritance \label{inheritance}}
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003919
3920Of course, a language feature would not be worthy of the name ``class''
3921without supporting inheritance. The syntax for a derived class
3922definition looks as follows:
3923
3924\begin{verbatim}
Fred Drake8842e861998-02-13 07:16:30 +00003925class DerivedClassName(BaseClassName):
3926 <statement-1>
3927 .
3928 .
3929 .
3930 <statement-N>
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003931\end{verbatim}
3932
Fred Drake8842e861998-02-13 07:16:30 +00003933The name \class{BaseClassName} must be defined in a scope containing
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003934the derived class definition. Instead of a base class name, an
3935expression is also allowed. This is useful when the base class is
Fred Drakeed514942001-07-06 17:28:39 +00003936defined in another module,
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003937
3938\begin{verbatim}
Fred Drake8842e861998-02-13 07:16:30 +00003939class DerivedClassName(modname.BaseClassName):
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003940\end{verbatim}
3941
3942Execution of a derived class definition proceeds the same as for a
3943base class. When the class object is constructed, the base class is
3944remembered. This is used for resolving attribute references: if a
3945requested attribute is not found in the class, it is searched in the
3946base class. This rule is applied recursively if the base class itself
3947is derived from some other class.
3948
3949There's nothing special about instantiation of derived classes:
Fred Drake8842e861998-02-13 07:16:30 +00003950\code{DerivedClassName()} creates a new instance of the class. Method
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003951references are resolved as follows: the corresponding class attribute
3952is searched, descending down the chain of base classes if necessary,
3953and the method reference is valid if this yields a function object.
3954
3955Derived classes may override methods of their base classes. Because
3956methods have no special privileges when calling other methods of the
3957same object, a method of a base class that calls another method
3958defined in the same base class, may in fact end up calling a method of
Guido van Rossum16d6e711994-08-08 12:30:22 +00003959a derived class that overrides it. (For \Cpp{} programmers: all methods
Fred Drake20082d92000-04-03 04:26:58 +00003960in Python are effectively \keyword{virtual}.)
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003961
3962An overriding method in a derived class may in fact want to extend
3963rather than simply replace the base class method of the same name.
3964There is a simple way to call the base class method directly: just
Fred Drake8842e861998-02-13 07:16:30 +00003965call \samp{BaseClassName.methodname(self, arguments)}. This is
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003966occasionally useful to clients as well. (Note that this only works if
3967the base class is defined or imported directly in the global scope.)
3968
3969
Fred Drakeb7833d31998-09-11 16:21:55 +00003970\subsection{Multiple Inheritance \label{multiple}}
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003971
Guido van Rossum6938f061994-08-01 12:22:53 +00003972Python supports a limited form of multiple inheritance as well. A
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003973class definition with multiple base classes looks as follows:
3974
3975\begin{verbatim}
Fred Drake8842e861998-02-13 07:16:30 +00003976class DerivedClassName(Base1, Base2, Base3):
3977 <statement-1>
3978 .
3979 .
3980 .
3981 <statement-N>
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003982\end{verbatim}
3983
3984The only rule necessary to explain the semantics is the resolution
3985rule used for class attribute references. This is depth-first,
3986left-to-right. Thus, if an attribute is not found in
Fred Drake8842e861998-02-13 07:16:30 +00003987\class{DerivedClassName}, it is searched in \class{Base1}, then
3988(recursively) in the base classes of \class{Base1}, and only if it is
3989not found there, it is searched in \class{Base2}, and so on.
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003990
Fred Drake8842e861998-02-13 07:16:30 +00003991(To some people breadth first --- searching \class{Base2} and
3992\class{Base3} before the base classes of \class{Base1} --- looks more
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003993natural. However, this would require you to know whether a particular
Fred Drake8842e861998-02-13 07:16:30 +00003994attribute of \class{Base1} is actually defined in \class{Base1} or in
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003995one of its base classes before you can figure out the consequences of
Fred Drake8842e861998-02-13 07:16:30 +00003996a name conflict with an attribute of \class{Base2}. The depth-first
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003997rule makes no differences between direct and inherited attributes of
Fred Drake8842e861998-02-13 07:16:30 +00003998\class{Base1}.)
Guido van Rossum5e0759d1992-08-07 16:06:24 +00003999
4000It is clear that indiscriminate use of multiple inheritance is a
4001maintenance nightmare, given the reliance in Python on conventions to
4002avoid accidental name conflicts. A well-known problem with multiple
4003inheritance is a class derived from two classes that happen to have a
4004common base class. While it is easy enough to figure out what happens
4005in this case (the instance will have a single copy of ``instance
4006variables'' or data attributes used by the common base class), it is
4007not clear that these semantics are in any way useful.
4008
4009
Fred Drakeb7833d31998-09-11 16:21:55 +00004010\section{Private Variables \label{private}}
Guido van Rossum02455691997-07-17 16:21:52 +00004011
Fred Drakea594baf1998-04-03 05:16:31 +00004012There is limited support for class-private
Guido van Rossum02455691997-07-17 16:21:52 +00004013identifiers. Any identifier of the form \code{__spam} (at least two
4014leading underscores, at most one trailing underscore) is now textually
4015replaced with \code{_classname__spam}, where \code{classname} is the
4016current class name with leading underscore(s) stripped. This mangling
4017is done without regard of the syntactic position of the identifier, so
4018it can be used to define class-private instance and class variables,
4019methods, as well as globals, and even to store instance variables
Fred Drakeeee08cd1997-12-04 15:43:15 +00004020private to this class on instances of \emph{other} classes. Truncation
Guido van Rossum02455691997-07-17 16:21:52 +00004021may occur when the mangled name would be longer than 255 characters.
4022Outside classes, or when the class name consists of only underscores,
4023no mangling occurs.
4024
4025Name mangling is intended to give classes an easy way to define
4026``private'' instance variables and methods, without having to worry
4027about instance variables defined by derived classes, or mucking with
4028instance variables by code outside the class. Note that the mangling
4029rules are designed mostly to avoid accidents; it still is possible for
4030a determined soul to access or modify a variable that is considered
Fred Drakeed514942001-07-06 17:28:39 +00004031private. This can even be useful in special circumstances, such as in
4032the debugger, and that's one reason why this loophole is not closed.
4033(Buglet: derivation of a class with the same name as the base class
4034makes use of private variables of the base class possible.)
Guido van Rossum02455691997-07-17 16:21:52 +00004035
4036Notice that code passed to \code{exec}, \code{eval()} or
4037\code{evalfile()} does not consider the classname of the invoking
4038class to be the current class; this is similar to the effect of the
4039\code{global} statement, the effect of which is likewise restricted to
4040code that is byte-compiled together. The same restriction applies to
4041\code{getattr()}, \code{setattr()} and \code{delattr()}, as well as
4042when referencing \code{__dict__} directly.
4043
Guido van Rossum02455691997-07-17 16:21:52 +00004044
Fred Drakeb7833d31998-09-11 16:21:55 +00004045\section{Odds and Ends \label{odds}}
Guido van Rossum5e0759d1992-08-07 16:06:24 +00004046
4047Sometimes it is useful to have a data type similar to the Pascal
Fred Drakeee84d591999-03-10 17:25:30 +00004048``record'' or C ``struct'', bundling together a couple of named data
Fred Drakeed514942001-07-06 17:28:39 +00004049items. An empty class definition will do nicely:
Guido van Rossum5e0759d1992-08-07 16:06:24 +00004050
4051\begin{verbatim}
Fred Drake8842e861998-02-13 07:16:30 +00004052class Employee:
4053 pass
Guido van Rossum5e0759d1992-08-07 16:06:24 +00004054
Fred Drake8842e861998-02-13 07:16:30 +00004055john = Employee() # Create an empty employee record
Guido van Rossum5e0759d1992-08-07 16:06:24 +00004056
Fred Drake8842e861998-02-13 07:16:30 +00004057# Fill the fields of the record
4058john.name = 'John Doe'
4059john.dept = 'computer lab'
4060john.salary = 1000
Guido van Rossum5e0759d1992-08-07 16:06:24 +00004061\end{verbatim}
4062
Guido van Rossum5e0759d1992-08-07 16:06:24 +00004063A piece of Python code that expects a particular abstract data type
4064can often be passed a class that emulates the methods of that data
4065type instead. For instance, if you have a function that formats some
4066data from a file object, you can define a class with methods
Fred Drake8842e861998-02-13 07:16:30 +00004067\method{read()} and \method{readline()} that gets the data from a string
Fred Drake391564f1998-04-01 23:11:56 +00004068buffer instead, and pass it as an argument.% (Unfortunately, this
4069%technique has its limitations: a class can't define operations that
4070%are accessed by special syntax such as sequence subscripting or
4071%arithmetic operators, and assigning such a ``pseudo-file'' to
4072%\code{sys.stdin} will not cause the interpreter to read further input
4073%from it.)
Guido van Rossum5e0759d1992-08-07 16:06:24 +00004074
4075
Fred Drake8842e861998-02-13 07:16:30 +00004076Instance method objects have attributes, too: \code{m.im_self} is the
4077object of which the method is an instance, and \code{m.im_func} is the
Guido van Rossum5e0759d1992-08-07 16:06:24 +00004078function object corresponding to the method.
4079
Fred Drakeb7833d31998-09-11 16:21:55 +00004080\subsection{Exceptions Can Be Classes \label{exceptionClasses}}
Guido van Rossum194e57c1995-02-15 15:51:38 +00004081
4082User-defined exceptions are no longer limited to being string objects
4083--- they can be identified by classes as well. Using this mechanism it
4084is possible to create extensible hierarchies of exceptions.
4085
4086There are two new valid (semantic) forms for the raise statement:
4087
4088\begin{verbatim}
4089raise Class, instance
4090
4091raise instance
4092\end{verbatim}
4093
Fred Drake20082d92000-04-03 04:26:58 +00004094In the first form, \code{instance} must be an instance of
4095\class{Class} or of a class derived from it. The second form is a
4096shorthand for:
Guido van Rossum194e57c1995-02-15 15:51:38 +00004097
4098\begin{verbatim}
4099raise instance.__class__, instance
4100\end{verbatim}
4101
4102An except clause may list classes as well as string objects. A class
4103in an except clause is compatible with an exception if it is the same
4104class or a base class thereof (but not the other way around --- an
4105except clause listing a derived class is not compatible with a base
4106class). For example, the following code will print B, C, D in that
4107order:
4108
4109\begin{verbatim}
4110class B:
4111 pass
4112class C(B):
4113 pass
4114class D(C):
4115 pass
4116
4117for c in [B, C, D]:
4118 try:
4119 raise c()
4120 except D:
4121 print "D"
4122 except C:
4123 print "C"
4124 except B:
4125 print "B"
4126\end{verbatim}
4127
Fred Drakeee84d591999-03-10 17:25:30 +00004128Note that if the except clauses were reversed (with
4129\samp{except B} first), it would have printed B, B, B --- the first
4130matching except clause is triggered.
Guido van Rossum194e57c1995-02-15 15:51:38 +00004131
4132When an error message is printed for an unhandled exception which is a
4133class, the class name is printed, then a colon and a space, and
4134finally the instance converted to a string using the built-in function
Fred Drake8842e861998-02-13 07:16:30 +00004135\function{str()}.
Guido van Rossum194e57c1995-02-15 15:51:38 +00004136
Guido van Rossum194e57c1995-02-15 15:51:38 +00004137
Fred Drakeb7833d31998-09-11 16:21:55 +00004138\chapter{What Now? \label{whatNow}}
Guido van Rossum194e57c1995-02-15 15:51:38 +00004139
Fred Drake979d0412001-04-03 17:41:56 +00004140Reading this tutorial has probably reinforced your interest in using
4141Python --- you should be eager to apply Python to solve your
4142real-world problems. Now what should you do?
Guido van Rossum194e57c1995-02-15 15:51:38 +00004143
Fred Drake979d0412001-04-03 17:41:56 +00004144You should read, or at least page through, the
4145\citetitle[../lib/lib.html]{Python Library Reference},
Guido van Rossum02455691997-07-17 16:21:52 +00004146which gives complete (though terse) reference material about types,
4147functions, and modules that can save you a lot of time when writing
4148Python programs. The standard Python distribution includes a
Fred Drakeee84d591999-03-10 17:25:30 +00004149\emph{lot} of code in both C and Python; there are modules to read
Fred Drake8842e861998-02-13 07:16:30 +00004150\UNIX{} mailboxes, retrieve documents via HTTP, generate random
4151numbers, parse command-line options, write CGI programs, compress
4152data, and a lot more; skimming through the Library Reference will give
4153you an idea of what's available.
Guido van Rossum194e57c1995-02-15 15:51:38 +00004154
Fred Drake518e55c2000-07-27 20:55:12 +00004155The major Python Web site is \url{http://www.python.org/}; it contains
Guido van Rossum02455691997-07-17 16:21:52 +00004156code, documentation, and pointers to Python-related pages around the
Fred Drake17f690f2001-07-14 02:14:42 +00004157Web. This Web site is mirrored in various places around the
Guido van Rossum02455691997-07-17 16:21:52 +00004158world, such as Europe, Japan, and Australia; a mirror may be faster
4159than the main site, depending on your geographical location. A more
Fred Drakec0fcbc11999-04-29 02:30:04 +00004160informal site is \url{http://starship.python.net/}, which contains a
Guido van Rossum02455691997-07-17 16:21:52 +00004161bunch of Python-related personal home pages; many people have
Fred Drakec0fcbc11999-04-29 02:30:04 +00004162downloadable software there.
Guido van Rossum194e57c1995-02-15 15:51:38 +00004163
Guido van Rossum02455691997-07-17 16:21:52 +00004164For Python-related questions and problem reports, you can post to the
Fred Drake391564f1998-04-01 23:11:56 +00004165newsgroup \newsgroup{comp.lang.python}, or send them to the mailing
Fred Drake518e55c2000-07-27 20:55:12 +00004166list at \email{python-list@python.org}. The newsgroup and mailing list
Fred Drake391564f1998-04-01 23:11:56 +00004167are gatewayed, so messages posted to one will automatically be
Fred Drake518e55c2000-07-27 20:55:12 +00004168forwarded to the other. There are around 120 postings a day,
Fred Drake391564f1998-04-01 23:11:56 +00004169% Postings figure based on average of last six months activity as
Fred Drake518e55c2000-07-27 20:55:12 +00004170% reported by www.egroups.com; Jan. 2000 - June 2000: 21272 msgs / 182
4171% days = 116.9 msgs / day and steadily increasing.
Fred Drake391564f1998-04-01 23:11:56 +00004172asking (and answering) questions, suggesting new features, and
4173announcing new modules. Before posting, be sure to check the list of
4174Frequently Asked Questions (also called the FAQ), at
Fred Drakeca6567f1998-01-22 20:44:18 +00004175\url{http://www.python.org/doc/FAQ.html}, or look for it in the
Fred Drake518e55c2000-07-27 20:55:12 +00004176\file{Misc/} directory of the Python source distribution. Mailing
4177list archives are available at \url{http://www.python.org/pipermail/}.
4178The FAQ answers many of the questions that come up again and again,
4179and may already contain the solution for your problem.
Guido van Rossum194e57c1995-02-15 15:51:38 +00004180
Guido van Rossum194e57c1995-02-15 15:51:38 +00004181
Fred Drakea594baf1998-04-03 05:16:31 +00004182\appendix
Guido van Rossum194e57c1995-02-15 15:51:38 +00004183
Fred Drakeb7833d31998-09-11 16:21:55 +00004184\chapter{Interactive Input Editing and History Substitution
4185 \label{interacting}}
Guido van Rossum194e57c1995-02-15 15:51:38 +00004186
Guido van Rossum02455691997-07-17 16:21:52 +00004187Some versions of the Python interpreter support editing of the current
4188input line and history substitution, similar to facilities found in
4189the Korn shell and the GNU Bash shell. This is implemented using the
Fred Drakeeee08cd1997-12-04 15:43:15 +00004190\emph{GNU Readline} library, which supports Emacs-style and vi-style
Guido van Rossum02455691997-07-17 16:21:52 +00004191editing. This library has its own documentation which I won't
Fred Drakecc09e8d1998-12-28 21:21:36 +00004192duplicate here; however, the basics are easily explained. The
4193interactive editing and history described here are optionally
4194available in the \UNIX{} and CygWin versions of the interpreter.
4195
4196This chapter does \emph{not} document the editing facilities of Mark
4197Hammond's PythonWin package or the Tk-based environment, IDLE,
4198distributed with Python. The command line history recall which
4199operates within DOS boxes on NT and some other DOS and Windows flavors
4200is yet another beast.
Guido van Rossum194e57c1995-02-15 15:51:38 +00004201
Fred Drakeb7833d31998-09-11 16:21:55 +00004202\section{Line Editing \label{lineEditing}}
Guido van Rossum194e57c1995-02-15 15:51:38 +00004203
Guido van Rossum02455691997-07-17 16:21:52 +00004204If supported, input line editing is active whenever the interpreter
4205prints a primary or secondary prompt. The current line can be edited
4206using the conventional Emacs control characters. The most important
Fred Drake5443c492000-07-08 05:18:54 +00004207of these are: \kbd{C-A} (Control-A) moves the cursor to the beginning
4208of the line, \kbd{C-E} to the end, \kbd{C-B} moves it one position to
4209the left, \kbd{C-F} to the right. Backspace erases the character to
4210the left of the cursor, \kbd{C-D} the character to its right.
4211\kbd{C-K} kills (erases) the rest of the line to the right of the
4212cursor, \kbd{C-Y} yanks back the last killed string.
4213\kbd{C-underscore} undoes the last change you made; it can be repeated
4214for cumulative effect.
Guido van Rossum194e57c1995-02-15 15:51:38 +00004215
Fred Drakeb7833d31998-09-11 16:21:55 +00004216\section{History Substitution \label{history}}
Guido van Rossum194e57c1995-02-15 15:51:38 +00004217
Guido van Rossum02455691997-07-17 16:21:52 +00004218History substitution works as follows. All non-empty input lines
4219issued are saved in a history buffer, and when a new prompt is given
Fred Drake5443c492000-07-08 05:18:54 +00004220you are positioned on a new line at the bottom of this buffer.
4221\kbd{C-P} moves one line up (back) in the history buffer,
4222\kbd{C-N} moves one down. Any line in the history buffer can be
4223edited; an asterisk appears in front of the prompt to mark a line as
4224modified. Pressing the \kbd{Return} key passes the current line to
4225the interpreter. \kbd{C-R} starts an incremental reverse search;
4226\kbd{C-S} starts a forward search.
Guido van Rossum194e57c1995-02-15 15:51:38 +00004227
Fred Drakeb7833d31998-09-11 16:21:55 +00004228\section{Key Bindings \label{keyBindings}}
Guido van Rossum194e57c1995-02-15 15:51:38 +00004229
Guido van Rossum02455691997-07-17 16:21:52 +00004230The key bindings and some other parameters of the Readline library can
4231be customized by placing commands in an initialization file called
Fred Drake5443c492000-07-08 05:18:54 +00004232\file{\~{}/.inputrc}. Key bindings have the form
Guido van Rossum194e57c1995-02-15 15:51:38 +00004233
Fred Drake8842e861998-02-13 07:16:30 +00004234\begin{verbatim}
Guido van Rossum02455691997-07-17 16:21:52 +00004235key-name: function-name
Fred Drake8842e861998-02-13 07:16:30 +00004236\end{verbatim}
4237
Guido van Rossum02455691997-07-17 16:21:52 +00004238or
Guido van Rossum194e57c1995-02-15 15:51:38 +00004239
Fred Drake8842e861998-02-13 07:16:30 +00004240\begin{verbatim}
Guido van Rossum02455691997-07-17 16:21:52 +00004241"string": function-name
Fred Drake8842e861998-02-13 07:16:30 +00004242\end{verbatim}
4243
Guido van Rossum02455691997-07-17 16:21:52 +00004244and options can be set with
Guido van Rossum194e57c1995-02-15 15:51:38 +00004245
Fred Drake8842e861998-02-13 07:16:30 +00004246\begin{verbatim}
Guido van Rossum02455691997-07-17 16:21:52 +00004247set option-name value
Fred Drake8842e861998-02-13 07:16:30 +00004248\end{verbatim}
4249
Guido van Rossum02455691997-07-17 16:21:52 +00004250For example:
Guido van Rossum194e57c1995-02-15 15:51:38 +00004251
Fred Drake8842e861998-02-13 07:16:30 +00004252\begin{verbatim}
Guido van Rossum02455691997-07-17 16:21:52 +00004253# I prefer vi-style editing:
4254set editing-mode vi
Fred Drake5443c492000-07-08 05:18:54 +00004255
Guido van Rossum02455691997-07-17 16:21:52 +00004256# Edit using a single line:
4257set horizontal-scroll-mode On
Fred Drake5443c492000-07-08 05:18:54 +00004258
Guido van Rossum02455691997-07-17 16:21:52 +00004259# Rebind some keys:
4260Meta-h: backward-kill-word
4261"\C-u": universal-argument
4262"\C-x\C-r": re-read-init-file
Fred Drake8842e861998-02-13 07:16:30 +00004263\end{verbatim}
4264
Fred Drake5443c492000-07-08 05:18:54 +00004265Note that the default binding for \kbd{Tab} in Python is to insert a
4266\kbd{Tab} character instead of Readline's default filename completion
4267function. If you insist, you can override this by putting
Guido van Rossum194e57c1995-02-15 15:51:38 +00004268
Fred Drake8842e861998-02-13 07:16:30 +00004269\begin{verbatim}
Fred Drake5443c492000-07-08 05:18:54 +00004270Tab: complete
Fred Drake8842e861998-02-13 07:16:30 +00004271\end{verbatim}
4272
Fred Drake5443c492000-07-08 05:18:54 +00004273in your \file{\~{}/.inputrc}. (Of course, this makes it harder to
4274type indented continuation lines.)
Guido van Rossum194e57c1995-02-15 15:51:38 +00004275
Fred Drake72389881998-04-13 01:31:10 +00004276Automatic completion of variable and module names is optionally
4277available. To enable it in the interpreter's interactive mode, add
Fred Drake5443c492000-07-08 05:18:54 +00004278the following to your startup file:\footnote{
4279 Python will execute the contents of a file identified by the
4280 \envvar{PYTHONSTARTUP} environment variable when you start an
4281 interactive interpreter.}
Fred Drake20082d92000-04-03 04:26:58 +00004282\refstmodindex{rlcompleter}\refbimodindex{readline}
Fred Drake72389881998-04-13 01:31:10 +00004283
4284\begin{verbatim}
4285import rlcompleter, readline
4286readline.parse_and_bind('tab: complete')
4287\end{verbatim}
4288
Fred Drake01815522001-07-18 19:21:12 +00004289This binds the \kbd{Tab} key to the completion function, so hitting
4290the \kbd{Tab} key twice suggests completions; it looks at Python
4291statement names, the current local variables, and the available module
4292names. For dotted expressions such as \code{string.a}, it will
4293evaluate the the expression up to the final \character{.} and then
4294suggest completions from the attributes of the resulting object. Note
4295that this may execute application-defined code if an object with a
Fred Drake72389881998-04-13 01:31:10 +00004296\method{__getattr__()} method is part of the expression.
4297
Fred Drake01815522001-07-18 19:21:12 +00004298A more capable startup file might look like this example. Note that
4299this deletes the names it creates once they are no longer needed; this
4300is done since the startup file is executed in the same namespace as
4301the interactive commands, and removing the names avoids creating side
4302effects in the interactive environments. You may find it convenient
4303to keep some of the imported modules, such as \module{os}, which turn
4304out to be needed in most sessions with the interpreter.
4305
4306\begin{verbatim}
4307# Add auto-completion and a stored history file of commands to your Python
4308# interactive interpreter. Requires Python 2.0+, readline. Autocomplete is
4309# bound to the Esc key by default (you can change it - see readline docs).
4310#
4311# Store the file in ~/.pystartup, and set an environment variable to point
4312# to it, e.g. "export PYTHONSTARTUP=/max/home/itamar/.pystartup" in bash.
4313#
4314# Note that PYTHONSTARTUP does *not* expand "~", so you have to put in the
4315# full path to your home directory.
4316
4317import atexit
4318import os
4319import readline
4320import rlcompleter
4321
4322historyPath = os.path.expanduser("~/.pyhistory")
4323
4324def save_history(historyPath=historyPath):
4325 import readline
4326 readline.write_history_file(historyPath)
4327
4328if os.path.exists(historyPath):
4329 readline.read_history_file(historyPath)
4330
4331atexit.register(save_history)
4332del os, atexit, readline, rlcompleter, save_history, historyPath
4333\end{verbatim}
4334
Fred Drake72389881998-04-13 01:31:10 +00004335
Fred Drakeb7833d31998-09-11 16:21:55 +00004336\section{Commentary \label{commentary}}
Guido van Rossum194e57c1995-02-15 15:51:38 +00004337
Fred Drake5443c492000-07-08 05:18:54 +00004338This facility is an enormous step forward compared to earlier versions
4339of the interpreter; however, some wishes are left: It would be nice if
4340the proper indentation were suggested on continuation lines (the
4341parser knows if an indent token is required next). The completion
4342mechanism might use the interpreter's symbol table. A command to
4343check (or even suggest) matching parentheses, quotes, etc., would also
4344be useful.
Guido van Rossum194e57c1995-02-15 15:51:38 +00004345
Guido van Rossum97662c81996-08-23 15:35:47 +00004346
Fred Drake417d6672001-06-08 16:24:58 +00004347\chapter{Floating Point Arithmetic: Issues and Limitations
4348 \label{fp-issues}}
Fred Drake7bc50712001-06-08 17:09:01 +00004349\sectionauthor{Tim Peters}{tim.one@home.com}
Fred Drake417d6672001-06-08 16:24:58 +00004350
4351Floating-point numbers are represented in computer hardware as
4352base 2 (binary) fractions. For example, the decimal fraction
4353
4354\begin{verbatim}
43550.125
4356\end{verbatim}
4357
4358has value 1/10 + 2/100 + 5/1000, and in the same way the binary fraction
4359
4360\begin{verbatim}
43610.001
4362\end{verbatim}
4363
4364has value 0/2 + 0/4 + 1/8. These two fractions have identical values,
4365the only real difference being that the first is written in base 10
4366fractional notation, and the second in base 2.
4367
4368Unfortunately, most decimal fractions cannot be represented exactly as
4369binary fractions. A consequence is that, in general, the decimal
4370floating-point numbers you enter are only approximated by the binary
4371floating-point numbers actually stored in the machine.
4372
4373The problem is easier to understand at first in base 10. Consider the
4374fraction 1/3. You can approximate that as a base 10 fraction:
4375
4376\begin{verbatim}
43770.3
4378\end{verbatim}
4379
4380or, better,
4381
4382\begin{verbatim}
43830.33
4384\end{verbatim}
4385
4386or, better,
4387
4388\begin{verbatim}
43890.333
4390\end{verbatim}
4391
4392and so on. No matter how many digits you're willing to write down, the
4393result will never be exactly 1/3, but will be an increasingly better
4394approximation to 1/3.
4395
4396In the same way, no matter how many base 2 digits you're willing to
4397use, the decimal value 0.1 cannot be represented exactly as a base 2
4398fraction. In base 2, 1/10 is the infinitely repeating fraction
4399
4400\begin{verbatim}
44010.0001100110011001100110011001100110011001100110011...
4402\end{verbatim}
4403
4404Stop at any finite number of bits, and you get an approximation. This
4405is why you see things like:
4406
4407\begin{verbatim}
4408>>> 0.1
44090.10000000000000001
4410\end{verbatim}
4411
4412On most machines today, that is what you'll see if you enter 0.1 at
4413a Python prompt. You may not, though, because the number of bits
4414used by the hardware to store floating-point values can vary across
4415machines, and Python only prints a decimal approximation to the true
4416decimal value of the binary approximation stored by the machine. On
4417most machines, if Python were to print the true decimal value of
4418the binary approximation stored for 0.1, it would have to display
4419
4420\begin{verbatim}
4421>>> 0.1
44220.1000000000000000055511151231257827021181583404541015625
4423\end{verbatim}
4424
4425instead! The Python prompt (implicitly) uses the builtin
4426\function{repr()} function to obtain a string version of everything it
4427displays. For floats, \code{repr(\var{float})} rounds the true
4428decimal value to 17 significant digits, giving
4429
4430\begin{verbatim}
44310.10000000000000001
4432\end{verbatim}
4433
4434\code{repr(\var{float})} produces 17 significant digits because it
4435turns out that's enough (on most machines) so that
4436\code{eval(repr(\var{x})) == \var{x}} exactly for all finite floats
4437\var{x}, but rounding to 16 digits is not enough to make that true.
4438
4439Note that this is in the very nature of binary floating-point: this is
4440not a bug in Python, it is not a bug in your code either, and you'll
4441see the same kind of thing in all languages that support your
Tim Petersfa9e2732001-06-17 21:57:17 +00004442hardware's floating-point arithmetic (although some languages may
4443not \emph{display} the difference by default, or in all output modes).
Fred Drake417d6672001-06-08 16:24:58 +00004444
4445Python's builtin \function{str()} function produces only 12
4446significant digits, and you may wish to use that instead. It's
4447unusual for \code{eval(str(\var{x}))} to reproduce \var{x}, but the
4448output may be more pleasant to look at:
4449
4450\begin{verbatim}
4451>>> print str(0.1)
44520.1
4453\end{verbatim}
4454
4455It's important to realize that this is, in a real sense, an illusion:
4456the value in the machine is not exactly 1/10, you're simply rounding
4457the \emph{display} of the true machine value.
4458
4459Other surprises follow from this one. For example, after seeing
4460
4461\begin{verbatim}
4462>>> 0.1
44630.10000000000000001
4464\end{verbatim}
4465
4466you may be tempted to use the \function{round()} function to chop it
4467back to the single digit you expect. But that makes no difference:
4468
4469\begin{verbatim}
4470>>> round(0.1, 1)
44710.10000000000000001
4472\end{verbatim}
4473
4474The problem is that the binary floating-point value stored for "0.1"
4475was already the best possible binary approximation to 1/10, so trying
4476to round it again can't make it better: it was already as good as it
4477gets.
4478
4479Another consequence is that since 0.1 is not exactly 1/10, adding 0.1
4480to itself 10 times may not yield exactly 1.0, either:
4481
4482\begin{verbatim}
4483>>> sum = 0.0
4484>>> for i in range(10):
4485... sum += 0.1
4486...
4487>>> sum
44880.99999999999999989
4489\end{verbatim}
4490
4491Binary floating-point arithmetic holds many surprises like this. The
4492problem with "0.1" is explained in precise detail below, in the
4493"Representation Error" section. See
4494\citetitle[http://www.lahey.com/float.htm]{The Perils of Floating
4495Point} for a more complete account of other common surprises.
4496
4497As that says near the end, ``there are no easy answers.'' Still,
4498don't be unduly wary of floating-point! The errors in Python float
4499operations are inherited from the floating-point hardware, and on most
4500machines are on the order of no more than 1 part in 2**53 per
4501operation. That's more than adequate for most tasks, but you do need
4502to keep in mind that it's not decimal arithmetic, and that every float
4503operation can suffer a new rounding error.
4504
4505While pathological cases do exist, for most casual use of
4506floating-point arithmetic you'll see the result you expect in the end
4507if you simply round the display of your final results to the number of
4508decimal digits you expect. \function{str()} usually suffices, and for
4509finer control see the discussion of Pythons's \code{\%} format
4510operator: the \code{\%g}, \code{\%f} and \code{\%e} format codes
4511supply flexible and easy ways to round float results for display.
4512
4513
4514\section{Representation Error
4515 \label{fp-error}}
4516
4517This section explains the ``0.1'' example in detail, and shows how
4518you can perform an exact analysis of cases like this yourself. Basic
4519familiarity with binary floating-point representation is assumed.
4520
4521\dfn{Representation error} refers to that some (most, actually)
4522decimal fractions cannot be represented exactly as binary (base 2)
4523fractions. This is the chief reason why Python (or Perl, C, \Cpp,
4524Java, Fortran, and many others) often won't display the exact decimal
4525number you expect:
4526
4527\begin{verbatim}
4528>>> 0.1
45290.10000000000000001
4530\end{verbatim}
4531
4532Why is that? 1/10 is not exactly representable as a binary fraction.
4533Almost all machines today (November 2000) use IEEE-754 floating point
4534arithmetic, and almost all platforms map Python floats to IEEE-754
4535"double precision". 754 doubles contain 53 bits of precision, so on
4536input the computer strives to convert 0.1 to the closest fraction it can
4537of the form \var{J}/2**\var{N} where \var{J} is an integer containing
4538exactly 53 bits. Rewriting
4539
4540\begin{verbatim}
4541 1 / 10 ~= J / (2**N)
4542\end{verbatim}
4543
4544as
4545
4546\begin{verbatim}
4547J ~= 2**N / 10
4548\end{verbatim}
4549
4550and recalling that \var{J} has exactly 53 bits (is \code{>= 2**52} but
4551\code{< 2**53}), the best value for \var{N} is 56:
4552
4553\begin{verbatim}
4554>>> 2L**52
45554503599627370496L
4556>>> 2L**53
45579007199254740992L
4558>>> 2L**56/10
45597205759403792793L
4560\end{verbatim}
4561
4562That is, 56 is the only value for \var{N} that leaves \var{J} with
4563exactly 53 bits. The best possible value for \var{J} is then that
4564quotient rounded:
4565
4566\begin{verbatim}
4567>>> q, r = divmod(2L**56, 10)
4568>>> r
45696L
4570\end{verbatim}
4571
4572Since the remainder is more than half of 10, the best approximation is
4573obtained by rounding up:
4574
4575\begin{verbatim}
4576>>> q+1
45777205759403792794L
4578\end{verbatim}
4579
4580Therefore the best possible approximation to 1/10 in 754 double
4581precision is that over 2**56, or
4582
4583\begin{verbatim}
45847205759403792794 / 72057594037927936
4585\end{verbatim}
4586
4587Note that since we rounded up, this is actually a little bit larger than
45881/10; if we had not rounded up, the quotient would have been a little
Tim Petersfa9e2732001-06-17 21:57:17 +00004589bit smaller than 1/10. But in no case can it be \emph{exactly} 1/10!
Fred Drake417d6672001-06-08 16:24:58 +00004590
4591So the computer never ``sees'' 1/10: what it sees is the exact
4592fraction given above, the best 754 double approximation it can get:
4593
4594\begin{verbatim}
4595>>> .1 * 2L**56
45967205759403792794.0
4597\end{verbatim}
4598
4599If we multiply that fraction by 10**30, we can see the (truncated)
4600value of its 30 most significant decimal digits:
4601
4602\begin{verbatim}
4603>>> 7205759403792794L * 10L**30 / 2L**56
4604100000000000000005551115123125L
4605\end{verbatim}
4606
4607meaning that the exact number stored in the computer is approximately
4608equal to the decimal value 0.100000000000000005551115123125. Rounding
4609that to 17 significant digits gives the 0.10000000000000001 that Python
4610displays (well, will display on any 754-conforming platform that does
4611best-possible input and output conversions in its C library --- yours may
4612not!).
4613
Fred Draked5df09c2001-06-20 21:37:34 +00004614\chapter{History and License}
4615\input{license}
4616
Guido van Rossumd9bf55d1991-01-11 16:35:08 +00004617\end{document}