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Fred Drake66da9d61998-08-07 18:57:18 +00001\section{Standard Module \module{re}}
2\declaremodule{standard}{re}
3\moduleauthor{Andrew M. Kuchling}{akuchling@acm.org}
4\sectionauthor{Andrew M. Kuchling}{akuchling@acm.org}
Guido van Rossum1acceb01997-08-14 23:12:18 +00005
Fred Drakeb91e9341998-07-23 17:59:49 +00006
Fred Drake66da9d61998-08-07 18:57:18 +00007\modulesynopsis{New Perl-style regular expression search and match
8operations.}
Fred Drakeb91e9341998-07-23 17:59:49 +00009
Guido van Rossum1acceb01997-08-14 23:12:18 +000010
Guido van Rossum1acceb01997-08-14 23:12:18 +000011This module provides regular expression matching operations similar to
Andrew M. Kuchling25332811998-04-09 14:56:04 +000012those found in Perl. It's 8-bit clean: the strings being processed
13may contain both null bytes and characters whose high bit is set. Regular
14expression patterns may not contain null bytes, but they may contain
15characters with the high bit set. The \module{re} module is always
Guido van Rossum0b334101997-12-08 17:33:40 +000016available.
Guido van Rossum1acceb01997-08-14 23:12:18 +000017
Andrew M. Kuchling25332811998-04-09 14:56:04 +000018Regular expressions use the backslash character (\character{\e}) to
Guido van Rossum1acceb01997-08-14 23:12:18 +000019indicate special forms or to allow special characters to be used
20without invoking their special meaning. This collides with Python's
21usage of the same character for the same purpose in string literals;
22for example, to match a literal backslash, one might have to write
Andrew M. Kuchling25332811998-04-09 14:56:04 +000023\code{'\e\e\e\e'} as the pattern string, because the regular expression
Fred Drake20e01961998-02-19 15:09:35 +000024must be \samp{\e\e}, and each backslash must be expressed as
25\samp{\e\e} inside a regular Python string literal.
Guido van Rossum1acceb01997-08-14 23:12:18 +000026
27The solution is to use Python's raw string notation for regular
28expression patterns; backslashes are not handled in any special way in
Andrew M. Kuchling25332811998-04-09 14:56:04 +000029a string literal prefixed with \character{r}. So \code{r"\e n"} is a
30two-character string containing \character{\e} and \character{n},
31while \code{"\e n"} is a one-character string containing a newline.
32Usually patterns will be expressed in Python code using this raw
33string notation.
Guido van Rossum1acceb01997-08-14 23:12:18 +000034
Guido van Rossum48d04371997-12-11 20:19:08 +000035\subsection{Regular Expression Syntax}
Fred Drake42de1851998-04-20 16:28:44 +000036\label{re-syntax}
Guido van Rossum1acceb01997-08-14 23:12:18 +000037
38A regular expression (or RE) specifies a set of strings that matches
39it; the functions in this module let you check if a particular string
40matches a given regular expression (or if a given regular expression
41matches a particular string, which comes down to the same thing).
42
43Regular expressions can be concatenated to form new regular
44expressions; if \emph{A} and \emph{B} are both regular expressions,
45then \emph{AB} is also an regular expression. If a string \emph{p}
46matches A and another string \emph{q} matches B, the string \emph{pq}
47will match AB. Thus, complex expressions can easily be constructed
48from simpler primitive expressions like the ones described here. For
49details of the theory and implementation of regular expressions,
50consult the Friedl book referenced below, or almost any textbook about
51compiler construction.
52
Guido van Rossum0b334101997-12-08 17:33:40 +000053A brief explanation of the format of regular expressions follows.
54%For further information and a gentler presentation, consult XXX somewhere.
Guido van Rossum1acceb01997-08-14 23:12:18 +000055
56Regular expressions can contain both special and ordinary characters.
Andrew M. Kuchling25332811998-04-09 14:56:04 +000057Most ordinary characters, like \character{A}, \character{a}, or \character{0},
Guido van Rossum1acceb01997-08-14 23:12:18 +000058are the simplest regular expressions; they simply match themselves.
Andrew M. Kuchling25332811998-04-09 14:56:04 +000059You can concatenate ordinary characters, so \regexp{last} matches the
60string \code{'last'}. (In the rest of this section, we'll write RE's in
61\regexp{this special style}, usually without quotes, and strings to be
62matched \code{'in single quotes'}.)
Guido van Rossum1acceb01997-08-14 23:12:18 +000063
Andrew M. Kuchling25332811998-04-09 14:56:04 +000064Some characters, like \character{|} or \character{(}, are special. Special
Guido van Rossum1acceb01997-08-14 23:12:18 +000065characters either stand for classes of ordinary characters, or affect
66how the regular expressions around them are interpreted.
67
68The special characters are:
Fred Drake2705e801998-02-16 21:21:13 +000069% define these since they're used twice:
70\newcommand{\MyLeftMargin}{0.7in}
71\newcommand{\MyLabelWidth}{0.65in}
72\begin{list}{}{\leftmargin \MyLeftMargin \labelwidth \MyLabelWidth}
Andrew M. Kuchling25332811998-04-09 14:56:04 +000073\item[\character{.}] (Dot.) In the default mode, this matches any
Fred Drake20e01961998-02-19 15:09:35 +000074character except a newline. If the \constant{DOTALL} flag has been
Guido van Rossum1acceb01997-08-14 23:12:18 +000075specified, this matches any character including a newline.
Fred Drake20e01961998-02-19 15:09:35 +000076%
Andrew M. Kuchling25332811998-04-09 14:56:04 +000077\item[\character{\^}] (Caret.) Matches the start of the string, and in
78\constant{MULTILINE} mode also matches immediately after each newline.
Fred Drake20e01961998-02-19 15:09:35 +000079%
Andrew M. Kuchling25332811998-04-09 14:56:04 +000080\item[\character{\$}] Matches the end of the string, and in
Fred Drake20e01961998-02-19 15:09:35 +000081\constant{MULTILINE} mode also matches before a newline.
Andrew M. Kuchling25332811998-04-09 14:56:04 +000082\regexp{foo} matches both 'foo' and 'foobar', while the regular
83expression \regexp{foo\$} matches only 'foo'.
Guido van Rossum1acceb01997-08-14 23:12:18 +000084%
Andrew M. Kuchling25332811998-04-09 14:56:04 +000085\item[\character{*}] Causes the resulting RE to
Guido van Rossum1acceb01997-08-14 23:12:18 +000086match 0 or more repetitions of the preceding RE, as many repetitions
Andrew M. Kuchling25332811998-04-09 14:56:04 +000087as are possible. \regexp{ab*} will
Guido van Rossum1acceb01997-08-14 23:12:18 +000088match 'a', 'ab', or 'a' followed by any number of 'b's.
89%
Andrew M. Kuchling25332811998-04-09 14:56:04 +000090\item[\character{+}] Causes the
Guido van Rossum1acceb01997-08-14 23:12:18 +000091resulting RE to match 1 or more repetitions of the preceding RE.
Andrew M. Kuchling25332811998-04-09 14:56:04 +000092\regexp{ab+} will match 'a' followed by any non-zero number of 'b's; it
Guido van Rossum1acceb01997-08-14 23:12:18 +000093will not match just 'a'.
94%
Andrew M. Kuchling25332811998-04-09 14:56:04 +000095\item[\character{?}] Causes the resulting RE to
96match 0 or 1 repetitions of the preceding RE. \regexp{ab?} will
Guido van Rossum1acceb01997-08-14 23:12:18 +000097match either 'a' or 'ab'.
Andrew M. Kuchling25332811998-04-09 14:56:04 +000098\item[\code{*?}, \code{+?}, \code{??}] The \character{*}, \character{+}, and
99\character{?} qualifiers are all \dfn{greedy}; they match as much text as
Guido van Rossum1acceb01997-08-14 23:12:18 +0000100possible. Sometimes this behaviour isn't desired; if the RE
Andrew M. Kuchling25332811998-04-09 14:56:04 +0000101\regexp{<.*>} is matched against \code{'<H1>title</H1>'}, it will match the
102entire string, and not just \code{'<H1>'}.
103Adding \character{?} after the qualifier makes it perform the match in
104\dfn{non-greedy} or \dfn{minimal} fashion; as \emph{few} characters as
105possible will be matched. Using \regexp{.*?} in the previous
106expression will match only \code{'<H1>'}.
Guido van Rossum1acceb01997-08-14 23:12:18 +0000107%
Guido van Rossum0148bbf1997-12-22 22:41:40 +0000108\item[\code{\{\var{m},\var{n}\}}] Causes the resulting RE to match from
109\var{m} to \var{n} repetitions of the preceding RE, attempting to
Andrew M. Kuchling25332811998-04-09 14:56:04 +0000110match as many repetitions as possible. For example, \regexp{a\{3,5\}}
111will match from 3 to 5 \character{a} characters. Omitting \var{m} is the same
112as specifying 0 for the lower bound; omitting \var{n} specifies an
113infinite upper bound.
Guido van Rossum0148bbf1997-12-22 22:41:40 +0000114%
115\item[\code{\{\var{m},\var{n}\}?}] Causes the resulting RE to
116match from \var{m} to \var{n} repetitions of the preceding RE,
117attempting to match as \emph{few} repetitions as possible. This is
118the non-greedy version of the previous qualifier. For example, on the
Andrew M. Kuchling25332811998-04-09 14:56:04 +00001196-character string \code{'aaaaaa'}, \regexp{a\{3,5\}} will match 5 \character{a}
120characters, while \regexp{a\{3,5\}?} will only match 3 characters.
Guido van Rossum0148bbf1997-12-22 22:41:40 +0000121%
Andrew M. Kuchling25332811998-04-09 14:56:04 +0000122\item[\character{\e}] Either escapes special characters (permitting you to match
123characters like \character{*}, \character{?}, and so forth), or
124signals a special sequence; special sequences are discussed below.
Guido van Rossum1acceb01997-08-14 23:12:18 +0000125
126If you're not using a raw string to
127express the pattern, remember that Python also uses the
128backslash as an escape sequence in string literals; if the escape
129sequence isn't recognized by Python's parser, the backslash and
130subsequent character are included in the resulting string. However,
131if Python would recognize the resulting sequence, the backslash should
Fred Drake023f87f1998-01-12 19:16:24 +0000132be repeated twice. This is complicated and hard to understand, so
133it's highly recommended that you use raw strings for all but the
134simplest expressions.
Guido van Rossum1acceb01997-08-14 23:12:18 +0000135%
136\item[\code{[]}] Used to indicate a set of characters. Characters can
Guido van Rossum48d04371997-12-11 20:19:08 +0000137be listed individually, or a range of characters can be indicated by
Andrew M. Kuchling25332811998-04-09 14:56:04 +0000138giving two characters and separating them by a \character{-}. Special
139characters are not active inside sets. For example, \regexp{[akm\$]}
Fred Drake76547c51998-04-03 05:59:05 +0000140will match any of the characters \character{a}, \character{k},
Andrew M. Kuchling25332811998-04-09 14:56:04 +0000141\character{m}, or \character{\$}; \regexp{[a-z]}
142will match any lowercase letter, and \code{[a-zA-Z0-9]} matches any
Guido van Rossum48d04371997-12-11 20:19:08 +0000143letter or digit. Character classes such as \code{\e w} or \code {\e
144S} (defined below) are also acceptable inside a range. If you want to
Andrew M. Kuchling25332811998-04-09 14:56:04 +0000145include a \character{]} or a \character{-} inside a set, precede it with a
146backslash, or place it as the first character. The
147pattern \regexp{[]]} will match \code{']'}, for example.
Guido van Rossum1acceb01997-08-14 23:12:18 +0000148
Andrew M. Kuchling25332811998-04-09 14:56:04 +0000149You can match the characters not within a range by \dfn{complementing}
150the set. This is indicated by including a
151\character{\^} as the first character of the set; \character{\^} elsewhere will
152simply match the \character{\^} character. For example, \regexp{[\^5]}
153will match any character except \character{5}.
154
Guido van Rossum1acceb01997-08-14 23:12:18 +0000155%
Andrew M. Kuchling25332811998-04-09 14:56:04 +0000156\item[\character{|}]\code{A|B}, where A and B can be arbitrary REs,
Guido van Rossum1acceb01997-08-14 23:12:18 +0000157creates a regular expression that will match either A or B. This can
Andrew M. Kuchling25332811998-04-09 14:56:04 +0000158be used inside groups (see below) as well. To match a literal \character{|},
159use \regexp{\e|}, or enclose it inside a character class, as in \regexp{[|]}.
Guido van Rossum1acceb01997-08-14 23:12:18 +0000160%
Guido van Rossum48d04371997-12-11 20:19:08 +0000161\item[\code{(...)}] Matches whatever regular expression is inside the
162parentheses, and indicates the start and end of a group; the contents
163of a group can be retrieved after a match has been performed, and can
Andrew M. Kuchling25332811998-04-09 14:56:04 +0000164be matched later in the string with the \regexp{\e \var{number}} special
165sequence, described below. To match the literals \character{(} or \character{')},
166use \regexp{\e(} or \regexp{\e)}, or enclose them inside a character
167class: \regexp{[(] [)]}.
Guido van Rossum1acceb01997-08-14 23:12:18 +0000168%
Andrew M. Kuchling25332811998-04-09 14:56:04 +0000169\item[\code{(?...)}] This is an extension notation (a \character{?} following a
170\character{(} is not meaningful otherwise). The first character after
171the \character{?}
Guido van Rossum0b334101997-12-08 17:33:40 +0000172determines what the meaning and further syntax of the construct is.
Guido van Rossume9625e81998-04-02 01:32:24 +0000173Extensions usually do not create a new group;
Andrew M. Kuchling25332811998-04-09 14:56:04 +0000174\regexp{(?P<\var{name}>...)} is the only exception to this rule.
Guido van Rossum0b334101997-12-08 17:33:40 +0000175Following are the currently supported extensions.
176%
Andrew M. Kuchling25332811998-04-09 14:56:04 +0000177\item[\code{(?iLmsx)}] (One or more letters from the set \character{i},
178\character{L}, \character{m}, \character{s}, \character{x}.) The group matches
Fred Drake023f87f1998-01-12 19:16:24 +0000179the empty string; the letters set the corresponding flags
Fred Drake20e01961998-02-19 15:09:35 +0000180(\constant{re.I}, \constant{re.L}, \constant{re.M}, \constant{re.S},
181\constant{re.X}) for the entire regular expression. This is useful if
Guido van Rossume9625e81998-04-02 01:32:24 +0000182you wish to include the flags as part of the regular expression, instead
Fred Drake20e01961998-02-19 15:09:35 +0000183of passing a \var{flag} argument to the \function{compile()} function.
Guido van Rossum0b334101997-12-08 17:33:40 +0000184%
Guido van Rossum1acceb01997-08-14 23:12:18 +0000185\item[\code{(?:...)}] A non-grouping version of regular parentheses.
Andrew M. Kuchling25332811998-04-09 14:56:04 +0000186Matches whatever regular expression is inside the parentheses, but the
187substring matched by the
Guido van Rossum1acceb01997-08-14 23:12:18 +0000188group \emph{cannot} be retrieved after performing a match or
189referenced later in the pattern.
190%
191\item[\code{(?P<\var{name}>...)}] Similar to regular parentheses, but
Guido van Rossume9625e81998-04-02 01:32:24 +0000192the substring matched by the group is accessible via the symbolic group
Guido van Rossum1acceb01997-08-14 23:12:18 +0000193name \var{name}. Group names must be valid Python identifiers. A
194symbolic group is also a numbered group, just as if the group were not
195named. So the group named 'id' in the example above can also be
196referenced as the numbered group 1.
197
Guido van Rossum48d04371997-12-11 20:19:08 +0000198For example, if the pattern is
Andrew M. Kuchling25332811998-04-09 14:56:04 +0000199\regexp{(?P<id>[a-zA-Z_]\e w*)}, the group can be referenced by its
Guido van Rossum1acceb01997-08-14 23:12:18 +0000200name in arguments to methods of match objects, such as \code{m.group('id')}
Fred Drake023f87f1998-01-12 19:16:24 +0000201or \code{m.end('id')}, and also by name in pattern text
Andrew M. Kuchling25332811998-04-09 14:56:04 +0000202(e.g. \regexp{(?P=id)}) and replacement text (e.g. \code{\e g<id>}).
Guido van Rossum1acceb01997-08-14 23:12:18 +0000203%
Fred Drake023f87f1998-01-12 19:16:24 +0000204\item[\code{(?P=\var{name})}] Matches whatever text was matched by the
205earlier group named \var{name}.
Guido van Rossum48d04371997-12-11 20:19:08 +0000206%
Fred Drake023f87f1998-01-12 19:16:24 +0000207\item[\code{(?\#...)}] A comment; the contents of the parentheses are
208simply ignored.
Guido van Rossum1acceb01997-08-14 23:12:18 +0000209%
Andrew M. Kuchling25332811998-04-09 14:56:04 +0000210\item[\code{(?=...)}] Matches if \regexp{...} matches next, but doesn't
Fred Drake023f87f1998-01-12 19:16:24 +0000211consume any of the string. This is called a lookahead assertion. For
Andrew M. Kuchling25332811998-04-09 14:56:04 +0000212example, \regexp{Isaac (?=Asimov)} will match \code{'Isaac~'} only if it's
213followed by \code{'Asimov'}.
Guido van Rossum1acceb01997-08-14 23:12:18 +0000214%
Andrew M. Kuchling25332811998-04-09 14:56:04 +0000215\item[\code{(?!...)}] Matches if \regexp{...} doesn't match next. This
Fred Drake023f87f1998-01-12 19:16:24 +0000216is a negative lookahead assertion. For example,
Andrew M. Kuchling25332811998-04-09 14:56:04 +0000217\regexp{Isaac (?!Asimov)} will match \code{'Isaac~'} only if it's \emph{not}
218followed by \code{'Asimov'}.
Guido van Rossum0b334101997-12-08 17:33:40 +0000219
Fred Drake2705e801998-02-16 21:21:13 +0000220\end{list}
Guido van Rossum1acceb01997-08-14 23:12:18 +0000221
Andrew M. Kuchling25332811998-04-09 14:56:04 +0000222The special sequences consist of \character{\e} and a character from the
Guido van Rossum1acceb01997-08-14 23:12:18 +0000223list below. If the ordinary character is not on the list, then the
224resulting RE will match the second character. For example,
Andrew M. Kuchling25332811998-04-09 14:56:04 +0000225\regexp{\e\$} matches the character \character{\$}.
Guido van Rossum1acceb01997-08-14 23:12:18 +0000226
Fred Drake2705e801998-02-16 21:21:13 +0000227\begin{list}{}{\leftmargin \MyLeftMargin \labelwidth \MyLabelWidth}
Guido van Rossum1acceb01997-08-14 23:12:18 +0000228
229%
230\item[\code{\e \var{number}}] Matches the contents of the group of the
Guido van Rossum0b334101997-12-08 17:33:40 +0000231same number. Groups are numbered starting from 1. For example,
Andrew M. Kuchling25332811998-04-09 14:56:04 +0000232\regexp{(.+) \e 1} matches \code{'the the'} or \code{'55 55'}, but not
233\code{'the end'} (note
Guido van Rossum0b334101997-12-08 17:33:40 +0000234the space after the group). This special sequence can only be used to
235match one of the first 99 groups. If the first digit of \var{number}
236is 0, or \var{number} is 3 octal digits long, it will not be interpreted
237as a group match, but as the character with octal value \var{number}.
Andrew M. Kuchling25332811998-04-09 14:56:04 +0000238Inside the \character{[} and \character{]} of a character class, all numeric
Guido van Rossume9625e81998-04-02 01:32:24 +0000239escapes are treated as characters.
Guido van Rossum1acceb01997-08-14 23:12:18 +0000240%
241\item[\code{\e A}] Matches only at the start of the string.
242%
243\item[\code{\e b}] Matches the empty string, but only at the
244beginning or end of a word. A word is defined as a sequence of
245alphanumeric characters, so the end of a word is indicated by
Guido van Rossum48d04371997-12-11 20:19:08 +0000246whitespace or a non-alphanumeric character. Inside a character range,
Andrew M. Kuchling25332811998-04-09 14:56:04 +0000247\regexp{\e b} represents the backspace character, for compatibility with
Guido van Rossum48d04371997-12-11 20:19:08 +0000248Python's string literals.
Guido van Rossum1acceb01997-08-14 23:12:18 +0000249%
Guido van Rossum0b334101997-12-08 17:33:40 +0000250\item[\code{\e B}] Matches the empty string, but only when it is
251\emph{not} at the beginning or end of a word.
Guido van Rossum1acceb01997-08-14 23:12:18 +0000252%
253\item[\code{\e d}]Matches any decimal digit; this is
Andrew M. Kuchling25332811998-04-09 14:56:04 +0000254equivalent to the set \regexp{[0-9]}.
Guido van Rossum1acceb01997-08-14 23:12:18 +0000255%
256\item[\code{\e D}]Matches any non-digit character; this is
Andrew M. Kuchling25332811998-04-09 14:56:04 +0000257equivalent to the set \regexp{[\^0-9]}.
Guido van Rossum1acceb01997-08-14 23:12:18 +0000258%
259\item[\code{\e s}]Matches any whitespace character; this is
Andrew M. Kuchling25332811998-04-09 14:56:04 +0000260equivalent to the set \regexp{[ \e t\e n\e r\e f\e v]}.
Guido van Rossum1acceb01997-08-14 23:12:18 +0000261%
262\item[\code{\e S}]Matches any non-whitespace character; this is
Andrew M. Kuchling25332811998-04-09 14:56:04 +0000263equivalent to the set \regexp{[\^\ \e t\e n\e r\e f\e v]}.
Guido van Rossum1acceb01997-08-14 23:12:18 +0000264%
Fred Drake20e01961998-02-19 15:09:35 +0000265\item[\code{\e w}]When the \constant{LOCALE} flag is not specified,
Fred Drake023f87f1998-01-12 19:16:24 +0000266matches any alphanumeric character; this is equivalent to the set
Andrew M. Kuchling25332811998-04-09 14:56:04 +0000267\regexp{[a-zA-Z0-9_]}. With \constant{LOCALE}, it will match the set
268\regexp{[0-9_]} plus whatever characters are defined as letters for the
Fred Drake023f87f1998-01-12 19:16:24 +0000269current locale.
Guido van Rossum1acceb01997-08-14 23:12:18 +0000270%
Fred Drake20e01961998-02-19 15:09:35 +0000271\item[\code{\e W}]When the \constant{LOCALE} flag is not specified,
Fred Drake023f87f1998-01-12 19:16:24 +0000272matches any non-alphanumeric character; this is equivalent to the set
Andrew M. Kuchling25332811998-04-09 14:56:04 +0000273\regexp{[\^a-zA-Z0-9_]}. With \constant{LOCALE}, it will match any
274character not in the set \regexp{[0-9_]}, and not defined as a letter
Guido van Rossum0b334101997-12-08 17:33:40 +0000275for the current locale.
Guido van Rossum1acceb01997-08-14 23:12:18 +0000276
277\item[\code{\e Z}]Matches only at the end of the string.
278%
279
280\item[\code{\e \e}] Matches a literal backslash.
281
Fred Drake2705e801998-02-16 21:21:13 +0000282\end{list}
Guido van Rossum1acceb01997-08-14 23:12:18 +0000283
Fred Drake42de1851998-04-20 16:28:44 +0000284
Guido van Rossum1acceb01997-08-14 23:12:18 +0000285\subsection{Module Contents}
Fred Drake78f8e981997-12-29 21:39:39 +0000286\nodename{Contents of Module re}
Guido van Rossum1acceb01997-08-14 23:12:18 +0000287
288The module defines the following functions and constants, and an exception:
289
Guido van Rossum1acceb01997-08-14 23:12:18 +0000290
Fred Drake013ad981998-03-08 07:38:27 +0000291\begin{funcdesc}{compile}{pattern\optional{, flags}}
Guido van Rossum1acceb01997-08-14 23:12:18 +0000292 Compile a regular expression pattern into a regular expression
Fred Drake20e01961998-02-19 15:09:35 +0000293 object, which can be used for matching using its \function{match()} and
294 \function{search()} methods, described below.
Guido van Rossum1acceb01997-08-14 23:12:18 +0000295
Guido van Rossum0b334101997-12-08 17:33:40 +0000296 The expression's behaviour can be modified by specifying a
297 \var{flags} value. Values can be any of the following variables,
298 combined using bitwise OR (the \code{|} operator).
299
Fred Drake76547c51998-04-03 05:59:05 +0000300The sequence
301
302\begin{verbatim}
303prog = re.compile(pat)
304result = prog.match(str)
305\end{verbatim}
306
307is equivalent to
308
309\begin{verbatim}
310result = re.match(pat, str)
311\end{verbatim}
312
313but the version using \function{compile()} is more efficient when the
314expression will be used several times in a single program.
315%(The compiled version of the last pattern passed to
316%\function{regex.match()} or \function{regex.search()} is cached, so
317%programs that use only a single regular expression at a time needn't
318%worry about compiling regular expressions.)
319\end{funcdesc}
320
Fred Drake013ad981998-03-08 07:38:27 +0000321\begin{datadesc}{I}
322\dataline{IGNORECASE}
Andrew M. Kuchling25332811998-04-09 14:56:04 +0000323Perform case-insensitive matching; expressions like \regexp{[A-Z]} will match
Guido van Rossum48d04371997-12-11 20:19:08 +0000324lowercase letters, too. This is not affected by the current locale.
Fred Drake013ad981998-03-08 07:38:27 +0000325\end{datadesc}
Guido van Rossum0b334101997-12-08 17:33:40 +0000326
Fred Drake013ad981998-03-08 07:38:27 +0000327\begin{datadesc}{L}
328\dataline{LOCALE}
Andrew M. Kuchling25332811998-04-09 14:56:04 +0000329Make \regexp{\e w}, \regexp{\e W}, \regexp{\e b},
330\regexp{\e B}, dependent on the current locale.
Fred Drake013ad981998-03-08 07:38:27 +0000331\end{datadesc}
Guido van Rossuma42c1781997-12-09 20:41:47 +0000332
Fred Drake013ad981998-03-08 07:38:27 +0000333\begin{datadesc}{M}
334\dataline{MULTILINE}
Andrew M. Kuchling25332811998-04-09 14:56:04 +0000335When specified, the pattern character \character{\^} matches at the
Fred Drake023f87f1998-01-12 19:16:24 +0000336beginning of the string and at the beginning of each line
337(immediately following each newline); and the pattern character
Andrew M. Kuchling25332811998-04-09 14:56:04 +0000338\character{\$} matches at the end of the string and at the end of each line
Guido van Rossum48d04371997-12-11 20:19:08 +0000339(immediately preceding each newline).
Andrew M. Kuchling25332811998-04-09 14:56:04 +0000340By default, \character{\^} matches only at the beginning of the string, and
341\character{\$} only at the end of the string and immediately before the
Guido van Rossum0b334101997-12-08 17:33:40 +0000342newline (if any) at the end of the string.
Fred Drake013ad981998-03-08 07:38:27 +0000343\end{datadesc}
Guido van Rossum0b334101997-12-08 17:33:40 +0000344
Fred Drake013ad981998-03-08 07:38:27 +0000345\begin{datadesc}{S}
346\dataline{DOTALL}
Andrew M. Kuchling25332811998-04-09 14:56:04 +0000347Make the \character{.} special character match any character at all, including a
348newline; without this flag, \character{.} will match anything \emph{except}
Fred Drake78f8e981997-12-29 21:39:39 +0000349a newline.
Fred Drake013ad981998-03-08 07:38:27 +0000350\end{datadesc}
Guido van Rossum48d04371997-12-11 20:19:08 +0000351
Fred Drake013ad981998-03-08 07:38:27 +0000352\begin{datadesc}{X}
353\dataline{VERBOSE}
Andrew M. Kuchling25332811998-04-09 14:56:04 +0000354This flag allows you to write regular expressions that look nicer.
355Whitespace within the pattern is ignored,
Guido van Rossum48d04371997-12-11 20:19:08 +0000356except when in a character class or preceded by an unescaped
Andrew M. Kuchling25332811998-04-09 14:56:04 +0000357backslash, and, when a line contains a \character{\#} neither in a character
Guido van Rossum48d04371997-12-11 20:19:08 +0000358class or preceded by an unescaped backslash, all characters from the
Andrew M. Kuchling25332811998-04-09 14:56:04 +0000359leftmost such \character{\#} through the end of the line are ignored.
360% XXX should add an example here
Fred Drake013ad981998-03-08 07:38:27 +0000361\end{datadesc}
Guido van Rossum0b334101997-12-08 17:33:40 +0000362
Guido van Rossum0b334101997-12-08 17:33:40 +0000363
Guido van Rossum1acceb01997-08-14 23:12:18 +0000364\begin{funcdesc}{escape}{string}
Guido van Rossum48d04371997-12-11 20:19:08 +0000365 Return \var{string} with all non-alphanumerics backslashed; this is
366 useful if you want to match an arbitrary literal string that may have
367 regular expression metacharacters in it.
Guido van Rossum1acceb01997-08-14 23:12:18 +0000368\end{funcdesc}
369
Fred Drake013ad981998-03-08 07:38:27 +0000370\begin{funcdesc}{match}{pattern, string\optional{, flags}}
Guido van Rossum1acceb01997-08-14 23:12:18 +0000371 If zero or more characters at the beginning of \var{string} match
372 the regular expression \var{pattern}, return a corresponding
Fred Drake20e01961998-02-19 15:09:35 +0000373 \class{MatchObject} instance. Return \code{None} if the string does not
Guido van Rossum1acceb01997-08-14 23:12:18 +0000374 match the pattern; note that this is different from a zero-length
375 match.
376\end{funcdesc}
377
Fred Drake013ad981998-03-08 07:38:27 +0000378\begin{funcdesc}{search}{pattern, string\optional{, flags}}
Guido van Rossum1acceb01997-08-14 23:12:18 +0000379 Scan through \var{string} looking for a location where the regular
Fred Drake023f87f1998-01-12 19:16:24 +0000380 expression \var{pattern} produces a match, and return a
Fred Drake20e01961998-02-19 15:09:35 +0000381 corresponding \class{MatchObject} instance.
Guido van Rossum0148bbf1997-12-22 22:41:40 +0000382 Return \code{None} if no
Guido van Rossum1acceb01997-08-14 23:12:18 +0000383 position in the string matches the pattern; note that this is
384 different from finding a zero-length match at some point in the string.
385\end{funcdesc}
386
Fred Drake013ad981998-03-08 07:38:27 +0000387\begin{funcdesc}{split}{pattern, string, \optional{, maxsplit\code{ = 0}}}
Guido van Rossum1acceb01997-08-14 23:12:18 +0000388 Split \var{string} by the occurrences of \var{pattern}. If
389 capturing parentheses are used in pattern, then occurrences of
390 patterns or subpatterns are also returned.
Guido van Rossum97546391998-01-12 18:58:53 +0000391 If \var{maxsplit} is nonzero, at most \var{maxsplit} splits
392 occur, and the remainder of the string is returned as the final
393 element of the list. (Incompatibility note: in the original Python
394 1.5 release, \var{maxsplit} was ignored. This has been fixed in
395 later releases.)
Guido van Rossum1acceb01997-08-14 23:12:18 +0000396%
Fred Drake19479911998-02-13 06:58:54 +0000397\begin{verbatim}
Guido van Rossum1acceb01997-08-14 23:12:18 +0000398>>> re.split('[\W]+', 'Words, words, words.')
399['Words', 'words', 'words', '']
400>>> re.split('([\W]+)', 'Words, words, words.')
401['Words', ', ', 'words', ', ', 'words', '.', '']
Guido van Rossum97546391998-01-12 18:58:53 +0000402>>> re.split('[\W]+', 'Words, words, words.', 1)
403['Words', 'words, words.']
Fred Drake19479911998-02-13 06:58:54 +0000404\end{verbatim}
Guido van Rossum1acceb01997-08-14 23:12:18 +0000405%
406 This function combines and extends the functionality of
Fred Drake20e01961998-02-19 15:09:35 +0000407 the old \function{regsub.split()} and \function{regsub.splitx()}.
Guido van Rossum1acceb01997-08-14 23:12:18 +0000408\end{funcdesc}
409
Guido van Rossum6c373f71998-06-29 22:48:01 +0000410\begin{funcdesc}{findall}{pattern, string}
411Return a list of all non-overlapping matches of \var{pattern} in
412\var{string}. If one or more groups are present in the pattern,
413return a list of groups; this will be a list of tuples if the pattern
414has more than one group. Empty matches are included in the result.
415\end{funcdesc}
416
Fred Drake013ad981998-03-08 07:38:27 +0000417\begin{funcdesc}{sub}{pattern, repl, string\optional{, count\code{ = 0}}}
Guido van Rossum1acceb01997-08-14 23:12:18 +0000418Return the string obtained by replacing the leftmost non-overlapping
419occurrences of \var{pattern} in \var{string} by the replacement
Barry Warsaw4552f3d1997-11-20 00:15:13 +0000420\var{repl}. If the pattern isn't found, \var{string} is returned
421unchanged. \var{repl} can be a string or a function; if a function,
422it is called for every non-overlapping occurance of \var{pattern}.
Guido van Rossum0b334101997-12-08 17:33:40 +0000423The function takes a single match object argument, and returns the
424replacement string. For example:
Barry Warsaw4552f3d1997-11-20 00:15:13 +0000425%
Fred Drake19479911998-02-13 06:58:54 +0000426\begin{verbatim}
Barry Warsaw4552f3d1997-11-20 00:15:13 +0000427>>> def dashrepl(matchobj):
Guido van Rossume9625e81998-04-02 01:32:24 +0000428.... if matchobj.group(0) == '-': return ' '
429.... else: return '-'
Barry Warsaw4552f3d1997-11-20 00:15:13 +0000430>>> re.sub('-{1,2}', dashrepl, 'pro----gram-files')
431'pro--gram files'
Fred Drake19479911998-02-13 06:58:54 +0000432\end{verbatim}
Barry Warsaw4552f3d1997-11-20 00:15:13 +0000433%
Guido van Rossum0b334101997-12-08 17:33:40 +0000434The pattern may be a string or a
Guido van Rossum48d04371997-12-11 20:19:08 +0000435regex object; if you need to specify
436regular expression flags, you must use a regex object, or use
437embedded modifiers in a pattern; e.g.
Fred Drake013ad981998-03-08 07:38:27 +0000438\samp{sub("(?i)b+", "x", "bbbb BBBB")} returns \code{'x x'}.
Fred Drake023f87f1998-01-12 19:16:24 +0000439
Guido van Rossum1acceb01997-08-14 23:12:18 +0000440The optional argument \var{count} is the maximum number of pattern
Andrew M. Kuchling25332811998-04-09 14:56:04 +0000441occurrences to be replaced; \var{count} must be a non-negative integer, and
Guido van Rossum1acceb01997-08-14 23:12:18 +0000442the default value of 0 means to replace all occurrences.
443
444Empty matches for the pattern are replaced only when not adjacent to a
Fred Drake013ad981998-03-08 07:38:27 +0000445previous match, so \samp{sub('x*', '-', 'abc')} returns \code{'-a-b-c-'}.
Guido van Rossume9625e81998-04-02 01:32:24 +0000446
447If \var{repl} is a string, any backslash escapes in it are processed.
448That is, \samp{\e n} is converted to a single newline character,
449\samp{\e r} is converted to a linefeed, and so forth. Unknown escapes
Andrew M. Kuchling25332811998-04-09 14:56:04 +0000450such as \samp{\e j} are left alone. Backreferences, such as \samp{\e 6}, are
Guido van Rossume9625e81998-04-02 01:32:24 +0000451replaced with the substring matched by group 6 in the pattern.
452
453In addition to character escapes and backreferences as described
454above, \samp{\e g<name>} will use the substring matched by the group
Andrew M. Kuchling25332811998-04-09 14:56:04 +0000455named \samp{name}, as defined by the \regexp{(?P<name>...)} syntax.
Guido van Rossume9625e81998-04-02 01:32:24 +0000456\samp{\e g<number>} uses the corresponding group number; \samp{\e
457g<2>} is therefore equivalent to \samp{\e 2}, but isn't ambiguous in a
458replacement such as \samp{\e g<2>0}. \samp{\e 20} would be
459interpreted as a reference to group 20, not a reference to group 2
Andrew M. Kuchling25332811998-04-09 14:56:04 +0000460followed by the literal character \character{0}.
Guido van Rossum1acceb01997-08-14 23:12:18 +0000461\end{funcdesc}
462
Fred Drake013ad981998-03-08 07:38:27 +0000463\begin{funcdesc}{subn}{pattern, repl, string\optional{, count\code{ = 0}}}
Fred Drake20e01961998-02-19 15:09:35 +0000464Perform the same operation as \function{sub()}, but return a tuple
Fred Drake023f87f1998-01-12 19:16:24 +0000465\code{(\var{new_string}, \var{number_of_subs_made})}.
Guido van Rossum1acceb01997-08-14 23:12:18 +0000466\end{funcdesc}
467
468\begin{excdesc}{error}
469 Exception raised when a string passed to one of the functions here
470 is not a valid regular expression (e.g., unmatched parentheses) or
Fred Drake013ad981998-03-08 07:38:27 +0000471 when some other error occurs during compilation or matching. It is
472 never an error if a string contains no match for a pattern.
Guido van Rossum1acceb01997-08-14 23:12:18 +0000473\end{excdesc}
474
Fred Drake42de1851998-04-20 16:28:44 +0000475
Guido van Rossum1acceb01997-08-14 23:12:18 +0000476\subsection{Regular Expression Objects}
Fred Drake42de1851998-04-20 16:28:44 +0000477\label{re-objects}
478
Guido van Rossum1acceb01997-08-14 23:12:18 +0000479Compiled regular expression objects support the following methods and
480attributes:
481
Fred Drake76547c51998-04-03 05:59:05 +0000482\begin{methoddesc}[RegexObject]{match}{string\optional{, pos}\optional{,
483 endpos}}
Guido van Rossumeb53ae41997-10-05 18:54:07 +0000484 If zero or more characters at the beginning of \var{string} match
485 this regular expression, return a corresponding
Fred Drake20e01961998-02-19 15:09:35 +0000486 \class{MatchObject} instance. Return \code{None} if the string does not
Guido van Rossumeb53ae41997-10-05 18:54:07 +0000487 match the pattern; note that this is different from a zero-length
488 match.
Guido van Rossum1acceb01997-08-14 23:12:18 +0000489
490 The optional second parameter \var{pos} gives an index in the string
Andrew M. Kuchling65b78631998-06-22 15:02:42 +0000491 where the search is to start; it defaults to \code{0}. This is not
492 completely equivalent to slicing the string; the \code{'\^'} pattern
493 character matches at the real beginning of the string and at positions
494 just after a newline, but not necessarily at the index where the search
495 is to start.
Guido van Rossum0b334101997-12-08 17:33:40 +0000496
497 The optional parameter \var{endpos} limits how far the string will
498 be searched; it will be as if the string is \var{endpos} characters
499 long, so only the characters from \var{pos} to \var{endpos} will be
500 searched for a match.
Fred Drake76547c51998-04-03 05:59:05 +0000501\end{methoddesc}
Guido van Rossum1acceb01997-08-14 23:12:18 +0000502
Fred Drake76547c51998-04-03 05:59:05 +0000503\begin{methoddesc}[RegexObject]{search}{string\optional{, pos}\optional{,
504 endpos}}
Guido van Rossumeb53ae41997-10-05 18:54:07 +0000505 Scan through \var{string} looking for a location where this regular
506 expression produces a match. Return \code{None} if no
507 position in the string matches the pattern; note that this is
508 different from finding a zero-length match at some point in the string.
Guido van Rossum1acceb01997-08-14 23:12:18 +0000509
Guido van Rossum48d04371997-12-11 20:19:08 +0000510 The optional \var{pos} and \var{endpos} parameters have the same
Fred Drake20e01961998-02-19 15:09:35 +0000511 meaning as for the \method{match()} method.
Fred Drake76547c51998-04-03 05:59:05 +0000512\end{methoddesc}
Guido van Rossum1acceb01997-08-14 23:12:18 +0000513
Fred Drake76547c51998-04-03 05:59:05 +0000514\begin{methoddesc}[RegexObject]{split}{string, \optional{,
515 maxsplit\code{ = 0}}}
Fred Drake20e01961998-02-19 15:09:35 +0000516Identical to the \function{split()} function, using the compiled pattern.
Fred Drake76547c51998-04-03 05:59:05 +0000517\end{methoddesc}
Guido van Rossum1acceb01997-08-14 23:12:18 +0000518
Guido van Rossum6c373f71998-06-29 22:48:01 +0000519\begin{methoddesc}[RegexObject]{findall}{string}
520Identical to the \function{findall()} function, using the compiled pattern.
521\end{methoddesc}
522
Fred Drake76547c51998-04-03 05:59:05 +0000523\begin{methoddesc}[RegexObject]{sub}{repl, string\optional{, count\code{ = 0}}}
Fred Drake20e01961998-02-19 15:09:35 +0000524Identical to the \function{sub()} function, using the compiled pattern.
Fred Drake76547c51998-04-03 05:59:05 +0000525\end{methoddesc}
Guido van Rossum1acceb01997-08-14 23:12:18 +0000526
Fred Drake76547c51998-04-03 05:59:05 +0000527\begin{methoddesc}[RegexObject]{subn}{repl, string\optional{,
528 count\code{ = 0}}}
Fred Drake20e01961998-02-19 15:09:35 +0000529Identical to the \function{subn()} function, using the compiled pattern.
Fred Drake76547c51998-04-03 05:59:05 +0000530\end{methoddesc}
Guido van Rossum1acceb01997-08-14 23:12:18 +0000531
Guido van Rossum1acceb01997-08-14 23:12:18 +0000532
Fred Drake76547c51998-04-03 05:59:05 +0000533\begin{memberdesc}[RegexObject]{flags}
Fred Drake013ad981998-03-08 07:38:27 +0000534The flags argument used when the regex object was compiled, or
535\code{0} if no flags were provided.
Fred Drake76547c51998-04-03 05:59:05 +0000536\end{memberdesc}
Guido van Rossum1acceb01997-08-14 23:12:18 +0000537
Fred Drake76547c51998-04-03 05:59:05 +0000538\begin{memberdesc}[RegexObject]{groupindex}
Fred Drake013ad981998-03-08 07:38:27 +0000539A dictionary mapping any symbolic group names defined by
Andrew M. Kuchling25332811998-04-09 14:56:04 +0000540\regexp{(?P<\var{id}>)} to group numbers. The dictionary is empty if no
Guido van Rossum1acceb01997-08-14 23:12:18 +0000541symbolic groups were used in the pattern.
Fred Drake76547c51998-04-03 05:59:05 +0000542\end{memberdesc}
Guido van Rossum1acceb01997-08-14 23:12:18 +0000543
Fred Drake76547c51998-04-03 05:59:05 +0000544\begin{memberdesc}[RegexObject]{pattern}
Guido van Rossum1acceb01997-08-14 23:12:18 +0000545The pattern string from which the regex object was compiled.
Fred Drake76547c51998-04-03 05:59:05 +0000546\end{memberdesc}
Guido van Rossum1acceb01997-08-14 23:12:18 +0000547
Fred Drake42de1851998-04-20 16:28:44 +0000548
Fred Drake023f87f1998-01-12 19:16:24 +0000549\subsection{Match Objects}
Fred Drake42de1851998-04-20 16:28:44 +0000550\label{match-objects}
Fred Drake023f87f1998-01-12 19:16:24 +0000551
Fred Drake20e01961998-02-19 15:09:35 +0000552\class{MatchObject} instances support the following methods and attributes:
Guido van Rossum1acceb01997-08-14 23:12:18 +0000553
Fred Drake76547c51998-04-03 05:59:05 +0000554\begin{methoddesc}[MatchObject]{group}{\optional{group1, group2, ...}}
Guido van Rossum46503921998-01-19 23:14:17 +0000555Returns one or more subgroups of the match. If there is a single
556argument, the result is a single string; if there are
Guido van Rossum48d04371997-12-11 20:19:08 +0000557multiple arguments, the result is a tuple with one item per argument.
Guido van Rossum46503921998-01-19 23:14:17 +0000558Without arguments, \var{group1} defaults to zero (i.e. the whole match
559is returned).
560If a \var{groupN} argument is zero, the corresponding return value is the
Guido van Rossum48d04371997-12-11 20:19:08 +0000561entire matching string; if it is in the inclusive range [1..99], it is
Guido van Rossum791468f1998-04-03 20:07:37 +0000562the string matching the the corresponding parenthesized group. If a
563group number is negative or larger than the number of groups defined
564in the pattern, an \exception{IndexError} exception is raised.
565If a group is contained in a part of the pattern that did not match,
566the corresponding result is \code{None}. If a group is contained in a
567part of the pattern that matched multiple times, the last match is
568returned.
Guido van Rossum1acceb01997-08-14 23:12:18 +0000569
Andrew M. Kuchling25332811998-04-09 14:56:04 +0000570If the regular expression uses the \regexp{(?P<\var{name}>...)} syntax,
Guido van Rossum46503921998-01-19 23:14:17 +0000571the \var{groupN} arguments may also be strings identifying groups by
Guido van Rossum791468f1998-04-03 20:07:37 +0000572their group name. If a string argument is not used as a group name in
573the pattern, an \exception{IndexError} exception is raised.
Guido van Rossume4eb2231997-12-17 00:23:39 +0000574
575A moderately complicated example:
Fred Drake023f87f1998-01-12 19:16:24 +0000576
577\begin{verbatim}
Guido van Rossume4eb2231997-12-17 00:23:39 +0000578m = re.match(r"(?P<int>\d+)\.(\d*)", '3.14')
Fred Drake023f87f1998-01-12 19:16:24 +0000579\end{verbatim}
580
581After performing this match, \code{m.group(1)} is \code{'3'}, as is
Guido van Rossum46503921998-01-19 23:14:17 +0000582\code{m.group('int')}, and \code{m.group(2)} is \code{'14'}.
Fred Drake76547c51998-04-03 05:59:05 +0000583\end{methoddesc}
Guido van Rossum1acceb01997-08-14 23:12:18 +0000584
Guido van Rossum6c373f71998-06-29 22:48:01 +0000585\begin{methoddesc}[MatchObject]{groups}{\optional{default}}
Guido van Rossum48d04371997-12-11 20:19:08 +0000586Return a tuple containing all the subgroups of the match, from 1 up to
Guido van Rossum6c373f71998-06-29 22:48:01 +0000587however many groups are in the pattern. The \var{default} argument is
588used for groups that did not participate in the match; it defaults to
589\code{None}. (Incompatibility note: in the original Python 1.5
590release, if the tuple was one element long, a string would be returned
591instead. In later versions (from 1.5.1 on), a singleton tuple is
592returned in such cases.)
593\end{methoddesc}
594
595\begin{methoddesc}[MatchObject]{groupdict}{\optional{default}}
596Return a dictionary containing all the \emph{named} subgroups of the
597match, keyed by the subgroup name. The \var{default} argument is
598used for groups that did not participate in the match; it defaults to
599\code{None}.
Fred Drake76547c51998-04-03 05:59:05 +0000600\end{methoddesc}
Guido van Rossum48d04371997-12-11 20:19:08 +0000601
Fred Drake76547c51998-04-03 05:59:05 +0000602\begin{methoddesc}[MatchObject]{start}{\optional{group}}
Fred Drake013ad981998-03-08 07:38:27 +0000603\funcline{end}{\optional{group}}
Guido van Rossume4eb2231997-12-17 00:23:39 +0000604Return the indices of the start and end of the substring
Guido van Rossum46503921998-01-19 23:14:17 +0000605matched by \var{group}; \var{group} defaults to zero (meaning the whole
606matched substring).
607Return \code{None} if \var{group} exists but
Guido van Rossume4eb2231997-12-17 00:23:39 +0000608did not contribute to the match. For a match object
Fred Drake023f87f1998-01-12 19:16:24 +0000609\var{m}, and a group \var{g} that did contribute to the match, the
610substring matched by group \var{g} (equivalent to
611\code{\var{m}.group(\var{g})}) is
612
613\begin{verbatim}
614m.string[m.start(g):m.end(g)]
615\end{verbatim}
616
Guido van Rossume4eb2231997-12-17 00:23:39 +0000617Note that
618\code{m.start(\var{group})} will equal \code{m.end(\var{group})} if
Fred Drake023f87f1998-01-12 19:16:24 +0000619\var{group} matched a null string. For example, after \code{\var{m} =
620re.search('b(c?)', 'cba')}, \code{\var{m}.start(0)} is 1,
621\code{\var{m}.end(0)} is 2, \code{\var{m}.start(1)} and
622\code{\var{m}.end(1)} are both 2, and \code{\var{m}.start(2)} raises
Fred Drake20e01961998-02-19 15:09:35 +0000623an \exception{IndexError} exception.
Fred Drake76547c51998-04-03 05:59:05 +0000624\end{methoddesc}
Guido van Rossume4eb2231997-12-17 00:23:39 +0000625
Fred Drake76547c51998-04-03 05:59:05 +0000626\begin{methoddesc}[MatchObject]{span}{\optional{group}}
Fred Drake20e01961998-02-19 15:09:35 +0000627For \class{MatchObject} \var{m}, return the 2-tuple
Fred Drake023f87f1998-01-12 19:16:24 +0000628\code{(\var{m}.start(\var{group}), \var{m}.end(\var{group}))}.
Guido van Rossume4eb2231997-12-17 00:23:39 +0000629Note that if \var{group} did not contribute to the match, this is
Guido van Rossum46503921998-01-19 23:14:17 +0000630\code{(None, None)}. Again, \var{group} defaults to zero.
Fred Drake76547c51998-04-03 05:59:05 +0000631\end{methoddesc}
Guido van Rossume4eb2231997-12-17 00:23:39 +0000632
Fred Drake76547c51998-04-03 05:59:05 +0000633\begin{memberdesc}[MatchObject]{pos}
Guido van Rossum0b334101997-12-08 17:33:40 +0000634The value of \var{pos} which was passed to the
Fred Drake20e01961998-02-19 15:09:35 +0000635\function{search()} or \function{match()} function. This is the index into
Fred Drake023f87f1998-01-12 19:16:24 +0000636the string at which the regex engine started looking for a match.
Fred Drake76547c51998-04-03 05:59:05 +0000637\end{memberdesc}
Guido van Rossum0b334101997-12-08 17:33:40 +0000638
Fred Drake76547c51998-04-03 05:59:05 +0000639\begin{memberdesc}[MatchObject]{endpos}
Guido van Rossum0b334101997-12-08 17:33:40 +0000640The value of \var{endpos} which was passed to the
Fred Drake20e01961998-02-19 15:09:35 +0000641\function{search()} or \function{match()} function. This is the index into
Fred Drake023f87f1998-01-12 19:16:24 +0000642the string beyond which the regex engine will not go.
Fred Drake76547c51998-04-03 05:59:05 +0000643\end{memberdesc}
Guido van Rossum1acceb01997-08-14 23:12:18 +0000644
Fred Drake76547c51998-04-03 05:59:05 +0000645\begin{memberdesc}[MatchObject]{re}
Fred Drake20e01961998-02-19 15:09:35 +0000646The regular expression object whose \method{match()} or
647\method{search()} method produced this \class{MatchObject} instance.
Fred Drake76547c51998-04-03 05:59:05 +0000648\end{memberdesc}
Guido van Rossum1acceb01997-08-14 23:12:18 +0000649
Fred Drake76547c51998-04-03 05:59:05 +0000650\begin{memberdesc}[MatchObject]{string}
Fred Drake20e01961998-02-19 15:09:35 +0000651The string passed to \function{match()} or \function{search()}.
Fred Drake76547c51998-04-03 05:59:05 +0000652\end{memberdesc}
Guido van Rossum1acceb01997-08-14 23:12:18 +0000653
Guido van Rossum1acceb01997-08-14 23:12:18 +0000654\begin{seealso}
Fred Drakef9951811997-12-29 16:37:04 +0000655\seetext{Jeffrey Friedl, \emph{Mastering Regular Expressions},
Fred Drake023f87f1998-01-12 19:16:24 +0000656O'Reilly. The Python material in this book dates from before the
Fred Drake20e01961998-02-19 15:09:35 +0000657\module{re} module, but it covers writing good regular expression
Fred Drake023f87f1998-01-12 19:16:24 +0000658patterns in great detail.}
Guido van Rossum1acceb01997-08-14 23:12:18 +0000659\end{seealso}
Andrew M. Kuchling25332811998-04-09 14:56:04 +0000660