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== Chapter&#XA0;14&#XA0;&#XA0;Files ==
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=== 14.1&#XA0;&#XA0;Persistence ===
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Most of the programs we have seen so far are transient in the
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<H1 CLASS="chapter"><A NAME="htoc168"><FONT COLOR=black><FONT SIZE=3>Chapter&#XA0;14</FONT></FONT></A><FONT COLOR=black><FONT SIZE=3>&#XA0;&#XA0;Files</FONT></FONT></H1><P><A NAME="@default1229"></A><FONT COLOR=black><FONT SIZE=3>
</FONT></FONT><A NAME="@default1230"></A></P><H2 CLASS="section"><A NAME="toc153"></A><A NAME="htoc169"><FONT COLOR=black><FONT SIZE=3>14.1</FONT></FONT></A><FONT COLOR=black><FONT SIZE=3>&#XA0;&#XA0;Persistence</FONT></FONT></H2><P><A NAME="@default1231"></A></P><P><FONT COLOR=black><FONT SIZE=3>Most of the programs we have seen so far are transient in the
sense that they run for a short time and produce some output,
sense that they run for a short time and produce some output,
but when they end, their data disappears. If you run the program
but when they end, their data disappears. If you run the program
again, it starts with a clean slate.</FONT></FONT></P><P><FONT COLOR=black><FONT SIZE=3>Other programs are </FONT></FONT><FONT COLOR=black><FONT SIZE=3><B>persistent</B></FONT></FONT><FONT COLOR=black><FONT SIZE=3>: they run for a long time
again, it starts with a clean slate.
 
Other programs are '''persistent''': they run for a long time
(or all the time); they keep at least some of their data
(or all the time); they keep at least some of their data
in permanent storage (a hard drive, for example); and
in permanent storage (a hard drive, for example); and
if they shut down and restart, they pick up where they left off.</FONT></FONT></P><P><FONT COLOR=black><FONT SIZE=3>Examples of persistent programs are operating systems, which
if they shut down and restart, they pick up where they left off.
 
Examples of persistent programs are operating systems, which
run pretty much whenever a computer is on, and web servers,
run pretty much whenever a computer is on, and web servers,
which run all the time, waiting for requests to come in on
which run all the time, waiting for requests to come in on
the network.</FONT></FONT></P><P><FONT COLOR=black><FONT SIZE=3>One of the simplest ways for programs to maintain their data
the network.
 
One of the simplest ways for programs to maintain their data
is by reading and writing text files. We have already seen
is by reading and writing text files. We have already seen
programs that read text files; in this chapters we will see programs
programs that read text files; in this chapters we will see programs
that write them.</FONT></FONT></P><P><FONT COLOR=black><FONT SIZE=3>An alternative is to store the state of the program in a database.
that write them.
 
An alternative is to store the state of the program in a database.
In this chapter I will present a simple database and a module,
In this chapter I will present a simple database and a module,
</FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>pickle</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3>, that makes it easy to store program data.</FONT></FONT></P><P><A NAME="@default1232"></A><FONT COLOR=black><FONT SIZE=3>
<TT>pickle</TT>, that makes it easy to store program data.
</FONT></FONT><A NAME="@default1233"></A></P><H2 CLASS="section"><A NAME="toc154"></A><A NAME="htoc170"><FONT COLOR=black><FONT SIZE=3>14.2</FONT></FONT></A><FONT COLOR=black><FONT SIZE=3>&#XA0;&#XA0;Reading and writing</FONT></FONT></H2><P><A NAME="@default1234"></A></P><P><FONT COLOR=black><FONT SIZE=3>A text file is a sequence of characters stored on a permanent
 
 
 
=== 14.2&#XA0;&#XA0;Reading and writing ===
 
A text file is a sequence of characters stored on a permanent
medium like a hard drive, flash memory, or CD-ROM. We saw how
medium like a hard drive, flash memory, or CD-ROM. We saw how
to open and read a file in Section&#XA0;</FONT></FONT><A HREF="book010.html#wordlist"><FONT COLOR=black><FONT SIZE=3>9.1</FONT></FONT></A><FONT COLOR=black><FONT SIZE=3>.</FONT></FONT></P><P><A NAME="@default1235"></A><FONT COLOR=black><FONT SIZE=3>
to open and read a file in Section&#XA0;9.1.
</FONT></FONT><A NAME="@default1236"></A></P><P><FONT COLOR=black><FONT SIZE=3>To write a file, you have to open it with mode
 
</FONT></FONT><CODE><FONT COLOR=black><FONT SIZE=3>'w'</FONT></FONT></CODE><FONT COLOR=black><FONT SIZE=3> as a second parameter:</FONT></FONT></P><PRE CLASS="verbatim"><FONT COLOR=blue><FONT SIZE=4>&gt;&gt;&gt; fout = open('output.txt', 'w')
 
 
 
To write a file, you have to open it with mode
<CODE>'w'</CODE> as a second parameter:
<PRE CLASS="verbatim">&gt;&gt;&gt; fout = open('output.txt', 'w')
&gt;&gt;&gt; print fout
&gt;&gt;&gt; print fout
&lt;open file 'output.txt', mode 'w' at 0xb7eb2410&gt;
&lt;open file 'output.txt', mode 'w' at 0xb7eb2410&gt;
</FONT></FONT></PRE><P><FONT COLOR=black><FONT SIZE=3>If the file already exists, opening it in write mode clears out
</PRE>
If the file already exists, opening it in write mode clears out
the old data and starts fresh, so be careful!
the old data and starts fresh, so be careful!
If the file doesn&#X2019;t exist, a new one is created.</FONT></FONT></P><P><FONT COLOR=black><FONT SIZE=3>The </FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>write</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3> method puts data into the file.</FONT></FONT></P><PRE CLASS="verbatim"><FONT COLOR=blue><FONT SIZE=4>&gt;&gt;&gt; line1 = "This here's the wattle,\n"
If the file doesn&#X2019;t exist, a new one is created.
 
The <TT>write</TT> method puts data into the file.
<PRE CLASS="verbatim">&gt;&gt;&gt; line1 = "This here's the wattle,\n"
&gt;&gt;&gt; fout.write(line1)
&gt;&gt;&gt; fout.write(line1)
</FONT></FONT></PRE><P><FONT COLOR=black><FONT SIZE=3>Again, the file object keeps track of where it is, so if
</PRE>
you call </FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>write</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3> again, it adds the new data to the end.</FONT></FONT></P><PRE CLASS="verbatim"><FONT COLOR=blue><FONT SIZE=4>&gt;&gt;&gt; line2 = "the emblem of our land.\n"
Again, the file object keeps track of where it is, so if
you call <TT>write</TT> again, it adds the new data to the end.
<PRE CLASS="verbatim">&gt;&gt;&gt; line2 = "the emblem of our land.\n"
&gt;&gt;&gt; fout.write(line2)
&gt;&gt;&gt; fout.write(line2)
</FONT></FONT></PRE><P><FONT COLOR=black><FONT SIZE=3>When you are done writing, you have to close the file.</FONT></FONT></P><PRE CLASS="verbatim"><FONT COLOR=blue><FONT SIZE=4>&gt;&gt;&gt; fout.close()
</PRE>
</FONT></FONT></PRE><P><A NAME="@default1237"></A><FONT COLOR=black><FONT SIZE=3>
When you are done writing, you have to close the file.
</FONT></FONT><A NAME="@default1238"></A></P><H2 CLASS="section"><A NAME="toc155"></A><A NAME="htoc171"><FONT COLOR=black><FONT SIZE=3>14.3</FONT></FONT></A><FONT COLOR=black><FONT SIZE=3>&#XA0;&#XA0;Format operator</FONT></FONT></H2><P><A NAME="@default1239"></A><FONT COLOR=black><FONT SIZE=3>
<PRE CLASS="verbatim">&gt;&gt;&gt; fout.close()
</FONT></FONT><A NAME="@default1240"></A></P><P><FONT COLOR=black><FONT SIZE=3>The argument of </FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>write</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3> has to be a string, so if we want
</PRE>
 
 
=== 14.3&#XA0;&#XA0;Format operator ===
 
 
 
 
The argument of <TT>write</TT> has to be a string, so if we want
to put other values in a file, we have to convert them to
to put other values in a file, we have to convert them to
strings. The easiest way to do that is with </FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>str</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3>:</FONT></FONT></P><PRE CLASS="verbatim"><FONT COLOR=blue><FONT SIZE=4>&gt;&gt;&gt; x = 52
strings. The easiest way to do that is with <TT>str</TT>:
<PRE CLASS="verbatim">&gt;&gt;&gt; x = 52
&gt;&gt;&gt; f.write(str(x))
&gt;&gt;&gt; f.write(str(x))
</FONT></FONT></PRE><P><FONT COLOR=black><FONT SIZE=3>An alternative is to use the </FONT></FONT><FONT COLOR=black><FONT SIZE=3><B>format operator</B></FONT></FONT><FONT COLOR=black><FONT SIZE=3>, </FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>%</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3>. When
</PRE>
applied to integers, </FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>%</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3> is the modulus operator. But
An alternative is to use the '''format operator''', <TT>%</TT>. When
when the first operand is a string, </FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>%</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3> is the format operator.</FONT></FONT></P><P><A NAME="@default1241"></A></P><P><FONT COLOR=black><FONT SIZE=3>The first operand is the </FONT></FONT><FONT COLOR=black><FONT SIZE=3><B>format string</B></FONT></FONT><FONT COLOR=black><FONT SIZE=3>, and the second operand
applied to integers, <TT>%</TT> is the modulus operator. But
when the first operand is a string, <TT>%</TT> is the format operator.
 
The first operand is the '''format string''', and the second operand
is a tuple of expressions. The result is a string that contains
is a tuple of expressions. The result is a string that contains
the values of the expressions, formatted according to the format
the values of the expressions, formatted according to the format
string.</FONT></FONT></P><P><A NAME="@default1242"></A></P><P><FONT COLOR=black><FONT SIZE=3>As an example, the </FONT></FONT><FONT COLOR=black><FONT SIZE=3><B>format sequence</B></FONT></FONT><FONT COLOR=black><FONT SIZE=3> </FONT></FONT><CODE><FONT COLOR=black><FONT SIZE=3>'%d'</FONT></FONT></CODE><FONT COLOR=black><FONT SIZE=3> means that
string.
 
As an example, the '''format sequence''' <CODE>'%d'</CODE> means that
the first expression in the tuple should be formatted as an
the first expression in the tuple should be formatted as an
integer (</FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>d</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3> stands for &#X201C;decimal&#X201D;):</FONT></FONT></P><PRE CLASS="verbatim"><FONT COLOR=blue><FONT SIZE=4>&gt;&gt;&gt; camels = 42
integer (<TT>d</TT> stands for &#X201C;decimal&#X201D;):
<PRE CLASS="verbatim">&gt;&gt;&gt; camels = 42
&gt;&gt;&gt; '%d' % camels
&gt;&gt;&gt; '%d' % camels
'42'
'42'
</FONT></FONT></PRE><P><FONT COLOR=black><FONT SIZE=3>The result is the string </FONT></FONT><CODE><FONT COLOR=black><FONT SIZE=3>'42'</FONT></FONT></CODE><FONT COLOR=black><FONT SIZE=3>, which is not to be confused
</PRE>
with the integer value </FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>42</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3>.</FONT></FONT></P><P><FONT COLOR=black><FONT SIZE=3>A format sequence can appear anywhere in the format string,
The result is the string <CODE>'42'</CODE>, which is not to be confused
so you can embed a value in a sentence:</FONT></FONT></P><PRE CLASS="verbatim"><FONT COLOR=blue><FONT SIZE=4>&gt;&gt;&gt; camels = 42
with the integer value <TT>42</TT>.
 
A format sequence can appear anywhere in the format string,
so you can embed a value in a sentence:
<PRE CLASS="verbatim">&gt;&gt;&gt; camels = 42
&gt;&gt;&gt; 'I have spotted %d camels.' % camels
&gt;&gt;&gt; 'I have spotted %d camels.' % camels
'I have spotted 42 camels.'
'I have spotted 42 camels.'
</FONT></FONT></PRE><P><FONT COLOR=black><FONT SIZE=3>The format sequence </FONT></FONT><CODE><FONT COLOR=black><FONT SIZE=3>'%g'</FONT></FONT></CODE><FONT COLOR=black><FONT SIZE=3> formats the next element in the tuple
</PRE>
as a floating-point number (don&#X2019;t ask why), and </FONT></FONT><CODE><FONT COLOR=black><FONT SIZE=3>'%s'</FONT></FONT></CODE><FONT COLOR=black><FONT SIZE=3> formats
The format sequence <CODE>'%g'</CODE> formats the next element in the tuple
the next item as a string:</FONT></FONT></P><PRE CLASS="verbatim"><FONT COLOR=blue><FONT SIZE=4>&gt;&gt;&gt; 'In %d years I have spotted %g %s.' % (3, 0.1, 'camels')
as a floating-point number (don&#X2019;t ask why), and <CODE>'%s'</CODE> formats
the next item as a string:
<PRE CLASS="verbatim">&gt;&gt;&gt; 'In %d years I have spotted %g %s.' % (3, 0.1, 'camels')
'In 3 years I have spotted 0.1 camels.'
'In 3 years I have spotted 0.1 camels.'
</FONT></FONT></PRE><P><FONT COLOR=black><FONT SIZE=3>The number of elements in the tuple has to match the number
</PRE>
The number of elements in the tuple has to match the number
of format sequences in the string. Also, the types of the
of format sequences in the string. Also, the types of the
elements have to match the format sequences:</FONT></FONT></P><P><A NAME="@default1243"></A><FONT COLOR=black><FONT SIZE=3>
elements have to match the format sequences:
</FONT></FONT><A NAME="@default1244"></A></P><PRE CLASS="verbatim"><FONT COLOR=blue><FONT SIZE=4>&gt;&gt;&gt; '%d %d %d' % (1, 2)
 
 
 
<PRE CLASS="verbatim">&gt;&gt;&gt; '%d %d %d' % (1, 2)
TypeError: not enough arguments for format string
TypeError: not enough arguments for format string
&gt;&gt;&gt; '%d' % 'dollars'
&gt;&gt;&gt; '%d' % 'dollars'
TypeError: illegal argument type for built-in operation
TypeError: illegal argument type for built-in operation
</FONT></FONT></PRE><P><FONT COLOR=black><FONT SIZE=3>In the first example, there aren&#X2019;t enough elements; in the
</PRE>
second, the element is the wrong type.</FONT></FONT></P><P><FONT COLOR=black><FONT SIZE=3>The format operator is powerful but difficult to use. You can
In the first example, there aren&#X2019;t enough elements; in the
read more about it at </FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>docs.python.org/lib/typesseq-strings.html</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3>.</FONT></FONT></P><H2 CLASS="section"><A NAME="toc156"></A><A NAME="htoc172"><FONT COLOR=black><FONT SIZE=3>14.4</FONT></FONT></A><FONT COLOR=black><FONT SIZE=3>&#XA0;&#XA0;Filenames and paths</FONT></FONT></H2><P><FONT COLOR=black><FONT SIZE=3>
second, the element is the wrong type.
</FONT></FONT><A NAME="paths"></A></P><P><A NAME="@default1245"></A><FONT COLOR=black><FONT SIZE=3>
 
</FONT></FONT><A NAME="@default1246"></A><FONT COLOR=black><FONT SIZE=3>
The format operator is powerful but difficult to use. You can
</FONT></FONT><A NAME="@default1247"></A><FONT COLOR=black><FONT SIZE=3>
read more about it at <TT>docs.python.org/lib/typesseq-strings.html</TT>.
</FONT></FONT><A NAME="@default1248"></A></P><P><FONT COLOR=black><FONT SIZE=3>Files are organized into </FONT></FONT><FONT COLOR=black><FONT SIZE=3><B>directories</B></FONT></FONT><FONT COLOR=black><FONT SIZE=3> (also called &#X201C;folders&#X201D;).
=== 14.4&#XA0;&#XA0;Filenames and paths ===
 
 
 
 
 
 
 
 
 
Files are organized into '''directories''' (also called &#X201C;folders&#X201D;).
Every running program has a &#X201C;current directory,&#X201D; which is the
Every running program has a &#X201C;current directory,&#X201D; which is the
default directory for most operations.  
default directory for most operations.  
For example, when you open a file for reading, Python looks for it in the
For example, when you open a file for reading, Python looks for it in the
current directory.</FONT></FONT></P><P><A NAME="@default1249"></A><FONT COLOR=black><FONT SIZE=3>
current directory.
</FONT></FONT><A NAME="@default1250"></A></P><P><FONT COLOR=black><FONT SIZE=3>The </FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>os</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3> module provides functions for working with files and
 
directories (&#X201C;os&#X201D; stands for &#X201C;operating system&#X201D;). </FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>os.getcwd</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3>
 
returns the name of the current directory:</FONT></FONT></P><P><A NAME="@default1251"></A><FONT COLOR=black><FONT SIZE=3>
 
</FONT></FONT><A NAME="@default1252"></A></P><PRE CLASS="verbatim"><FONT COLOR=blue><FONT SIZE=4>&gt;&gt;&gt; import os
 
The <TT>os</TT> module provides functions for working with files and
directories (&#X201C;os&#X201D; stands for &#X201C;operating system&#X201D;). <TT>os.getcwd</TT>
returns the name of the current directory:
 
 
 
<PRE CLASS="verbatim">&gt;&gt;&gt; import os
&gt;&gt;&gt; cwd = os.getcwd()
&gt;&gt;&gt; cwd = os.getcwd()
&gt;&gt;&gt; print cwd
&gt;&gt;&gt; print cwd
/home/dinsdale
/home/dinsdale
</FONT></FONT></PRE><P><FONT COLOR=black><FONT SIZE=3><TT>cwd</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3> stands for &#X201C;current working directory.&#X201D; The result in
</PRE>
this example is </FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>/home/dinsdale</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3>, which is the home directory of a
<TT>cwd</TT> stands for &#X201C;current working directory.&#X201D; The result in
user named </FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>dinsdale</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3>.</FONT></FONT></P><P><A NAME="@default1253"></A><FONT COLOR=black><FONT SIZE=3>
this example is <TT>/home/dinsdale</TT>, which is the home directory of a
</FONT></FONT><A NAME="@default1254"></A></P><P><FONT COLOR=black><FONT SIZE=3>A string like </FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>cwd</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3> that identifies a file is called a </FONT></FONT><FONT COLOR=black><FONT SIZE=3><B>path</B></FONT></FONT><FONT COLOR=black><FONT SIZE=3>.
user named <TT>dinsdale</TT>.
A </FONT></FONT><FONT COLOR=black><FONT SIZE=3><B>relative path</B></FONT></FONT><FONT COLOR=black><FONT SIZE=3> starts from the current directory;
 
an </FONT></FONT><FONT COLOR=black><FONT SIZE=3><B>absolute path</B></FONT></FONT><FONT COLOR=black><FONT SIZE=3> starts from the topmost directory in the
 
file system.</FONT></FONT></P><P><A NAME="@default1255"></A><FONT COLOR=black><FONT SIZE=3>
 
</FONT></FONT><A NAME="@default1256"></A><FONT COLOR=black><FONT SIZE=3>
 
</FONT></FONT><A NAME="@default1257"></A><FONT COLOR=black><FONT SIZE=3>
A string like <TT>cwd</TT> that identifies a file is called a '''path'''.
</FONT></FONT><A NAME="@default1258"></A></P><P><FONT COLOR=black><FONT SIZE=3>The paths we have seen so far are simple filenames, so they are
A '''relative path''' starts from the current directory;
an '''absolute path''' starts from the topmost directory in the
file system.
 
 
 
 
 
 
The paths we have seen so far are simple filenames, so they are
relative to the current directory. To find the absolute path to
relative to the current directory. To find the absolute path to
a file, you can use </FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>os.path.abspath</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3>:</FONT></FONT></P><PRE CLASS="verbatim"><FONT COLOR=blue><FONT SIZE=4>&gt;&gt;&gt; os.path.abspath('memo.txt')
a file, you can use <TT>os.path.abspath</TT>:
<PRE CLASS="verbatim">&gt;&gt;&gt; os.path.abspath('memo.txt')
'/home/dinsdale/memo.txt'
'/home/dinsdale/memo.txt'
</FONT></FONT></PRE><P><FONT COLOR=black><FONT SIZE=3><TT>os.path.exists</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3> checks
</PRE>
whether a file or directory exists:</FONT></FONT></P><P><A NAME="@default1259"></A><FONT COLOR=black><FONT SIZE=3>
<TT>os.path.exists</TT> checks
</FONT></FONT><A NAME="@default1260"></A></P><PRE CLASS="verbatim"><FONT COLOR=blue><FONT SIZE=4>&gt;&gt;&gt; os.path.exists('memo.txt')
whether a file or directory exists:
 
 
 
<PRE CLASS="verbatim">&gt;&gt;&gt; os.path.exists('memo.txt')
True
True
</FONT></FONT></PRE><P><FONT COLOR=black><FONT SIZE=3>If it exists, </FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>os.path.isdir</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3> checks whether it&#X2019;s a directory:</FONT></FONT></P><PRE CLASS="verbatim"><FONT COLOR=blue><FONT SIZE=4>&gt;&gt;&gt; os.path.isdir('memo.txt')
</PRE>
If it exists, <TT>os.path.isdir</TT> checks whether it&#X2019;s a directory:
<PRE CLASS="verbatim">&gt;&gt;&gt; os.path.isdir('memo.txt')
False
False
&gt;&gt;&gt; os.path.isdir('music')
&gt;&gt;&gt; os.path.isdir('music')
True
True
</FONT></FONT></PRE><P><FONT COLOR=black><FONT SIZE=3>Similarly, </FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>os.path.isfile</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3> checks whether it&#X2019;s a file.</FONT></FONT></P><P><FONT COLOR=black><FONT SIZE=3><TT>os.listdir</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3> returns a list of the files (and other directories)
</PRE>
in the given directory:</FONT></FONT></P><PRE CLASS="verbatim"><FONT COLOR=blue><FONT SIZE=4>&gt;&gt;&gt; os.listdir(cwd)
Similarly, <TT>os.path.isfile</TT> checks whether it&#X2019;s a file.
 
<TT>os.listdir</TT> returns a list of the files (and other directories)
in the given directory:
<PRE CLASS="verbatim">&gt;&gt;&gt; os.listdir(cwd)
['music', 'photos', 'memo.txt']
['music', 'photos', 'memo.txt']
</FONT></FONT></PRE><P><FONT COLOR=black><FONT SIZE=3>To demonstrate these functions, the following example
</PRE>
To demonstrate these functions, the following example
&#X201C;walks&#X201D; through a directory, prints
&#X201C;walks&#X201D; through a directory, prints
the names of all the files, and calls itself recursively on
the names of all the files, and calls itself recursively on
all the directories.</FONT></FONT></P><P><A NAME="@default1261"></A><FONT COLOR=black><FONT SIZE=3>
all the directories.
</FONT></FONT><A NAME="@default1262"></A></P><PRE CLASS="verbatim"><FONT COLOR=blue><FONT SIZE=4>def walk(dir):
 
 
 
<PRE CLASS="verbatim">def walk(dir):
     for name in os.listdir(dir):
     for name in os.listdir(dir):
         path = os.path.join(dir, name)
         path = os.path.join(dir, name)
Line 131: Line 213:
         else:
         else:
             walk(path)
             walk(path)
</FONT></FONT></PRE><P><FONT COLOR=black><FONT SIZE=3><TT>os.path.join</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3> takes a directory and a file name and joins
</PRE>
them into a complete path. </FONT></FONT></P><DIV CLASS="theorem"><FONT COLOR=black><FONT SIZE=3><B>Exercise&#XA0;1</B></FONT></FONT><FONT COLOR=black><FONT SIZE=3>&#XA0;&#XA0;<EM>
<TT>os.path.join</TT> takes a directory and a file name and joins
Modify </EM></FONT></FONT><FONT COLOR=black><FONT SIZE=3><EM><TT>walk</TT></EM></FONT></FONT><FONT COLOR=black><FONT SIZE=3><EM> so that instead of printing the names of
them into a complete path.  
<DIV CLASS="theorem">'''Exercise&#XA0;1'''&#XA0;&#XA0;''
Modify ''''<TT>walk</TT>'''' so that instead of printing the names of
the files, it returns a list of names.
the files, it returns a list of names.
</EM></FONT></FONT></DIV><DIV CLASS="theorem"><FONT COLOR=black><FONT SIZE=3><B>Exercise&#XA0;2</B></FONT></FONT><FONT COLOR=black><FONT SIZE=3>&#XA0;&#XA0;<EM>
''</DIV><DIV CLASS="theorem">'''Exercise&#XA0;2'''&#XA0;&#XA0;''
The </EM></FONT></FONT><FONT COLOR=black><FONT SIZE=3><EM><TT>os</TT></EM></FONT></FONT><FONT COLOR=black><FONT SIZE=3><EM> module provides a function called </EM></FONT></FONT><FONT COLOR=black><FONT SIZE=3><EM><TT>walk</TT></EM></FONT></FONT><FONT COLOR=black><FONT SIZE=3><EM>
The ''''<TT>os</TT>'''' module provides a function called ''''<TT>walk</TT>''''
that is similar to this one but more versatile. Read
that is similar to this one but more versatile. Read
the documentation and use it to print the names of the
the documentation and use it to print the names of the
files in a given directory and its subdirectories.
files in a given directory and its subdirectories.
</EM></FONT></FONT></DIV><H2 CLASS="section"><A NAME="toc157"></A><A NAME="htoc173"><FONT COLOR=black><FONT SIZE=3>14.5</FONT></FONT></A><FONT COLOR=black><FONT SIZE=3>&#XA0;&#XA0;Catching exceptions</FONT></FONT></H2><P><FONT COLOR=black><FONT SIZE=3>
''</DIV>=== 14.5&#XA0;&#XA0;Catching exceptions ===
</FONT></FONT><A NAME="catch"></A></P><P><FONT COLOR=black><FONT SIZE=3>A lot of things can go wrong when you try to read and write
 
 
 
 
A lot of things can go wrong when you try to read and write
files. If you try to open a file that doesn&#X2019;t exist, you get an
files. If you try to open a file that doesn&#X2019;t exist, you get an
</FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>IOError</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3>:</FONT></FONT></P><P><A NAME="@default1263"></A><FONT COLOR=black><FONT SIZE=3>
<TT>IOError</TT>:
</FONT></FONT><A NAME="@default1264"></A><FONT COLOR=black><FONT SIZE=3>
 
</FONT></FONT><A NAME="@default1265"></A><FONT COLOR=black><FONT SIZE=3>
 
</FONT></FONT><A NAME="@default1266"></A></P><PRE CLASS="verbatim"><FONT COLOR=blue><FONT SIZE=4>&gt;&gt;&gt; fin = open('bad_file')
 
 
 
<PRE CLASS="verbatim">&gt;&gt;&gt; fin = open('bad_file')
IOError: [Errno 2] No such file or directory: 'bad_file'
IOError: [Errno 2] No such file or directory: 'bad_file'
</FONT></FONT></PRE><P><FONT COLOR=black><FONT SIZE=3>If you don&#X2019;t have permission to access a file:</FONT></FONT></P><P><A NAME="@default1267"></A><FONT COLOR=black><FONT SIZE=3>
</PRE>
</FONT></FONT><A NAME="@default1268"></A></P><PRE CLASS="verbatim"><FONT COLOR=blue><FONT SIZE=4>&gt;&gt;&gt; fout = open('/etc/passwd', 'w')
If you don&#X2019;t have permission to access a file:
 
 
 
<PRE CLASS="verbatim">&gt;&gt;&gt; fout = open('/etc/passwd', 'w')
IOError: [Errno 13] Permission denied: '/etc/passwd'
IOError: [Errno 13] Permission denied: '/etc/passwd'
</FONT></FONT></PRE><P><FONT COLOR=black><FONT SIZE=3>And if you try to open a directory for reading, you get</FONT></FONT></P><PRE CLASS="verbatim"><FONT COLOR=blue><FONT SIZE=4>&gt;&gt;&gt; fin = open('/home')
</PRE>
And if you try to open a directory for reading, you get
<PRE CLASS="verbatim">&gt;&gt;&gt; fin = open('/home')
IOError: [Errno 21] Is a directory
IOError: [Errno 21] Is a directory
</FONT></FONT></PRE><P><FONT COLOR=black><FONT SIZE=3>To avoid these errors, you could use functions like </FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>os.path.exists</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3>
</PRE>
and </FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>os.path.isfile</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3>, but it would take a lot of time and code
To avoid these errors, you could use functions like <TT>os.path.exists</TT>
to check all the possibilities (if &#X201C;</FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>Errno 21</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3>&#X201D; is any
and <TT>os.path.isfile</TT>, but it would take a lot of time and code
indication, there are at least 21 things that can go wrong).</FONT></FONT></P><P><A NAME="@default1269"></A><FONT COLOR=black><FONT SIZE=3>
to check all the possibilities (if &#X201C;<TT>Errno 21</TT>&#X201D; is any
</FONT></FONT><A NAME="@default1270"></A><FONT COLOR=black><FONT SIZE=3>
indication, there are at least 21 things that can go wrong).
</FONT></FONT><A NAME="@default1271"></A></P><P><FONT COLOR=black><FONT SIZE=3>It is better to go ahead and try, and deal with problems if they
 
happen, which is exactly what the </FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>try</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3> statement does. The
 
syntax is similar to an </FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>if</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3> statement:</FONT></FONT></P><PRE CLASS="verbatim"><FONT COLOR=blue><FONT SIZE=4>try:     
 
 
 
It is better to go ahead and try, and deal with problems if they
happen, which is exactly what the <TT>try</TT> statement does. The
syntax is similar to an <TT>if</TT> statement:
<PRE CLASS="verbatim">try:     
     fin = open('bad_file')
     fin = open('bad_file')
     for line in fin:
     for line in fin:
Line 167: Line 270:
except:
except:
     print 'Something went wrong.'
     print 'Something went wrong.'
</FONT></FONT></PRE><P><FONT COLOR=black><FONT SIZE=3>Python starts by executing the </FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>try</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3> clause. If all goes
</PRE>
well, it skips the </FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>except</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3> clause and proceeds. If an
Python starts by executing the <TT>try</TT> clause. If all goes
exception occurs, it jumps out of the </FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>try</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3> clause and
well, it skips the <TT>except</TT> clause and proceeds. If an
executes the </FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>except</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3> clause.</FONT></FONT></P><P><FONT COLOR=black><FONT SIZE=3>Handling an exception with a </FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>try</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3> statement is called </FONT></FONT><FONT COLOR=black><FONT SIZE=3><B>catching</B></FONT></FONT><FONT COLOR=black><FONT SIZE=3> an exception. In this example, the </FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>except</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3> clause
exception occurs, it jumps out of the <TT>try</TT> clause and
executes the <TT>except</TT> clause.
 
Handling an exception with a <TT>try</TT> statement is called '''catching''' an exception. In this example, the <TT>except</TT> clause
prints an error message that is not very helpful. In general,
prints an error message that is not very helpful. In general,
catching an exception gives you a chance to fix the problem, or try
catching an exception gives you a chance to fix the problem, or try
again, or at least end the program gracefully.</FONT></FONT></P><H2 CLASS="section"><A NAME="toc158"></A><A NAME="htoc174"><FONT COLOR=black><FONT SIZE=3>14.6</FONT></FONT></A><FONT COLOR=black><FONT SIZE=3>&#XA0;&#XA0;Databases</FONT></FONT></H2><P><A NAME="@default1272"></A></P><P><FONT COLOR=black><FONT SIZE=3>A </FONT></FONT><FONT COLOR=black><FONT SIZE=3><B>database</B></FONT></FONT><FONT COLOR=black><FONT SIZE=3> is a file that is organized for storing data.
again, or at least end the program gracefully.
=== 14.6&#XA0;&#XA0;Databases ===
 
A '''database''' is a file that is organized for storing data.
Most databases are organized like a dictionary in the sense
Most databases are organized like a dictionary in the sense
that they map from keys to values. The biggest difference
that they map from keys to values. The biggest difference
is that the database is on disk (or other permanent storage),
is that the database is on disk (or other permanent storage),
so it persists after the program ends.</FONT></FONT></P><P><A NAME="@default1273"></A><FONT COLOR=black><FONT SIZE=3>
so it persists after the program ends.
</FONT></FONT><A NAME="@default1274"></A></P><P><FONT COLOR=black><FONT SIZE=3>The module </FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>anydbm</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3> provides an interface for creating
 
 
 
 
The module <TT>anydbm</TT> provides an interface for creating
and updating database files. As an example, I&#X2019;ll create a database
and updating database files. As an example, I&#X2019;ll create a database
that contains captions for image files.</FONT></FONT></P><P><A NAME="@default1275"></A><FONT COLOR=black><FONT SIZE=3>
that contains captions for image files.
</FONT></FONT><A NAME="@default1276"></A></P><P><FONT COLOR=black><FONT SIZE=3>Opening a database is similar
 
to opening other files:</FONT></FONT></P><PRE CLASS="verbatim"><FONT COLOR=blue><FONT SIZE=4>&gt;&gt;&gt; import anydbm
 
 
 
Opening a database is similar
to opening other files:
<PRE CLASS="verbatim">&gt;&gt;&gt; import anydbm
&gt;&gt;&gt; db = anydbm.open('captions.db', 'c')
&gt;&gt;&gt; db = anydbm.open('captions.db', 'c')
</FONT></FONT></PRE><P><FONT COLOR=black><FONT SIZE=3>The mode </FONT></FONT><CODE><FONT COLOR=black><FONT SIZE=3>'c'</FONT></FONT></CODE><FONT COLOR=black><FONT SIZE=3> means that the database should be created if
</PRE>
The mode <CODE>'c'</CODE> means that the database should be created if
it doesn&#X2019;t already exist. The result is a database object
it doesn&#X2019;t already exist. The result is a database object
that can be used (for most operations) like a dictionary.
that can be used (for most operations) like a dictionary.
If you create a new item, </FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>anydbm</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3> updates the database file.</FONT></FONT></P><P><A NAME="@default1277"></A></P><PRE CLASS="verbatim"><FONT COLOR=blue><FONT SIZE=4>&gt;&gt;&gt; db['cleese.png'] = 'Photo of John Cleese.'
If you create a new item, <TT>anydbm</TT> updates the database file.
</FONT></FONT></PRE><P><FONT COLOR=black><FONT SIZE=3>When you access one of the items, </FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>anydbm</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3> reads the file:</FONT></FONT></P><PRE CLASS="verbatim"><FONT COLOR=blue><FONT SIZE=4>&gt;&gt;&gt; print db['cleese.png']
 
<PRE CLASS="verbatim">&gt;&gt;&gt; db['cleese.png'] = 'Photo of John Cleese.'
</PRE>
When you access one of the items, <TT>anydbm</TT> reads the file:
<PRE CLASS="verbatim">&gt;&gt;&gt; print db['cleese.png']
Photo of John Cleese.
Photo of John Cleese.
</FONT></FONT></PRE><P><FONT COLOR=black><FONT SIZE=3>If you make another assignment to an existing key, </FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>anydbm</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3> replaces
</PRE>
the old value:</FONT></FONT></P><PRE CLASS="verbatim"><FONT COLOR=blue><FONT SIZE=4>&gt;&gt;&gt; db['cleese.png'] = 'Photo of John Cleese doing a silly walk.'
If you make another assignment to an existing key, <TT>anydbm</TT> replaces
the old value:
<PRE CLASS="verbatim">&gt;&gt;&gt; db['cleese.png'] = 'Photo of John Cleese doing a silly walk.'
&gt;&gt;&gt; print db['cleese.png']
&gt;&gt;&gt; print db['cleese.png']
Photo of John Cleese doing a silly walk.
Photo of John Cleese doing a silly walk.
</FONT></FONT></PRE><P><FONT COLOR=black><FONT SIZE=3>Many dictionary methods, like </FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>keys</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3> and </FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>items</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3>, also
</PRE>
work with database objects. So does iteration with a </FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>for</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3>
Many dictionary methods, like <TT>keys</TT> and <TT>items</TT>, also
statement.</FONT></FONT></P><P><A NAME="@default1278"></A></P><PRE CLASS="verbatim"><FONT COLOR=blue><FONT SIZE=4>for key in db:
work with database objects. So does iteration with a <TT>for</TT>
statement.
 
<PRE CLASS="verbatim">for key in db:
     print key
     print key
</FONT></FONT></PRE><P><FONT COLOR=black><FONT SIZE=3>As with other files, you should close the database when you are
</PRE>
done:</FONT></FONT></P><PRE CLASS="verbatim"><FONT COLOR=blue><FONT SIZE=4>&gt;&gt;&gt; db.close()
As with other files, you should close the database when you are
</FONT></FONT></PRE><P><A NAME="@default1279"></A><FONT COLOR=black><FONT SIZE=3>
done:
</FONT></FONT><A NAME="@default1280"></A></P><H2 CLASS="section"><A NAME="toc159"></A><A NAME="htoc175"><FONT COLOR=black><FONT SIZE=3>14.7</FONT></FONT></A><FONT COLOR=black><FONT SIZE=3>&#XA0;&#XA0;Pickling</FONT></FONT></H2><P><A NAME="@default1281"></A></P><P><FONT COLOR=black><FONT SIZE=3>A limitation of </FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>anydbm</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3> is that the keys and values have
<PRE CLASS="verbatim">&gt;&gt;&gt; db.close()
</PRE>
 
 
=== 14.7&#XA0;&#XA0;Pickling ===
 
A limitation of <TT>anydbm</TT> is that the keys and values have
to be strings. If you try to use any other type, you get an
to be strings. If you try to use any other type, you get an
error.</FONT></FONT></P><P><A NAME="@default1282"></A><FONT COLOR=black><FONT SIZE=3>
error.
</FONT></FONT><A NAME="@default1283"></A></P><P><FONT COLOR=black><FONT SIZE=3>The </FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>pickle</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3> module can help. It translates
 
 
 
 
The <TT>pickle</TT> module can help. It translates
almost any type of object into a string suitable for storage in a
almost any type of object into a string suitable for storage in a
database, and then translates strings back into objects.</FONT></FONT></P><P><FONT COLOR=black><FONT SIZE=3><TT>pickle.dumps</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3> takes an object as a parameter and returns
database, and then translates strings back into objects.
a string representation (</FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>dumps</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3> is short for &#X201C;dump string&#X201D;):</FONT></FONT></P><PRE CLASS="verbatim"><FONT COLOR=blue><FONT SIZE=4>&gt;&gt;&gt; import pickle
 
<TT>pickle.dumps</TT> takes an object as a parameter and returns
a string representation (<TT>dumps</TT> is short for &#X201C;dump string&#X201D;):
<PRE CLASS="verbatim">&gt;&gt;&gt; import pickle
&gt;&gt;&gt; t = [1, 2, 3]
&gt;&gt;&gt; t = [1, 2, 3]
&gt;&gt;&gt; pickle.dumps(t)
&gt;&gt;&gt; pickle.dumps(t)
'(lp0\nI1\naI2\naI3\na.'
'(lp0\nI1\naI2\naI3\na.'
</FONT></FONT></PRE><P><FONT COLOR=black><FONT SIZE=3>The format isn&#X2019;t obvious to human readers; it is meant to be
</PRE>
easy for </FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>pickle</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3> to interpret. </FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>pickle.loads</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3>
The format isn&#X2019;t obvious to human readers; it is meant to be
(&#X201C;load string&#X201D;) reconstitutes the object:</FONT></FONT></P><PRE CLASS="verbatim"><FONT COLOR=blue><FONT SIZE=4>&gt;&gt;&gt; t1 = [1, 2, 3]
easy for <TT>pickle</TT> to interpret. <TT>pickle.loads</TT>
(&#X201C;load string&#X201D;) reconstitutes the object:
<PRE CLASS="verbatim">&gt;&gt;&gt; t1 = [1, 2, 3]
&gt;&gt;&gt; s = pickle.dumps(t1)
&gt;&gt;&gt; s = pickle.dumps(t1)
&gt;&gt;&gt; t2 = pickle.loads(s)
&gt;&gt;&gt; t2 = pickle.loads(s)
&gt;&gt;&gt; print t2
&gt;&gt;&gt; print t2
[1, 2, 3]
[1, 2, 3]
</FONT></FONT></PRE><P><FONT COLOR=black><FONT SIZE=3>Although the new object has the same value as the old, it is
</PRE>
not (in general) the same object:</FONT></FONT></P><PRE CLASS="verbatim"><FONT COLOR=blue><FONT SIZE=4>&gt;&gt;&gt; t == t2
Although the new object has the same value as the old, it is
not (in general) the same object:
<PRE CLASS="verbatim">&gt;&gt;&gt; t == t2
True
True
&gt;&gt;&gt; t is t2
&gt;&gt;&gt; t is t2
False
False
</FONT></FONT></PRE><P><FONT COLOR=black><FONT SIZE=3>In other words, pickling and then unpickling has the same effect
</PRE>
as copying the object.</FONT></FONT></P><P><FONT COLOR=black><FONT SIZE=3>You can use </FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>pickle</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3> to store non-strings in a database.
In other words, pickling and then unpickling has the same effect
as copying the object.
 
You can use <TT>pickle</TT> to store non-strings in a database.
In fact, this combination is so common that it has been
In fact, this combination is so common that it has been
encapsulated in a module called </FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>shelve</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3>. </FONT></FONT></P><P><A NAME="@default1284"></A><FONT COLOR=black><FONT SIZE=3>
encapsulated in a module called <TT>shelve</TT>.  
</FONT></FONT><A NAME="@default1285"></A></P><DIV CLASS="theorem"><FONT COLOR=black><FONT SIZE=3><B>Exercise&#XA0;3</B></FONT></FONT><FONT COLOR=black><FONT SIZE=3>&#XA0;&#XA0;</FONT></FONT><P><A NAME="@default1286"></A><FONT COLOR=black><FONT SIZE=3><EM>
 
</EM></FONT></FONT><A NAME="@default1287"></A></P><P><FONT COLOR=black><FONT SIZE=3><EM>If you did Exercise&#XA0;</EM></FONT></FONT><A HREF="book013.html#anagrams"><FONT COLOR=black><FONT SIZE=3><EM>12.4</EM></FONT></FONT></A><FONT COLOR=black><FONT SIZE=3><EM>, modify your solution so that
 
 
<DIV CLASS="theorem">'''Exercise&#XA0;3'''&#XA0;&#XA0;
''
''
 
''If you did Exercise&#XA0;''''12.4'''', modify your solution so that
it creates a database that maps from each word in the list to
it creates a database that maps from each word in the list to
a list of words that use the same set of letters.</EM></FONT></FONT></P><P><FONT COLOR=black><FONT SIZE=3><EM>Write a different program that opens the database and prints
a list of words that use the same set of letters.''
 
''Write a different program that opens the database and prints
the contents in a human-readable format.
the contents in a human-readable format.
</EM></FONT></FONT></P></DIV><H2 CLASS="section"><A NAME="toc160"></A><A NAME="htoc176"><FONT COLOR=black><FONT SIZE=3>14.8</FONT></FONT></A><FONT COLOR=black><FONT SIZE=3>&#XA0;&#XA0;Pipes</FONT></FONT></H2><P><A NAME="@default1288"></A><FONT COLOR=black><FONT SIZE=3>
''
</FONT></FONT><A NAME="@default1289"></A></P><P><FONT COLOR=black><FONT SIZE=3>Most operating systems provide a command-line interface,
</DIV>=== 14.8&#XA0;&#XA0;Pipes ===
also known as a </FONT></FONT><FONT COLOR=black><FONT SIZE=3><B>shell</B></FONT></FONT><FONT COLOR=black><FONT SIZE=3>. Shells usually provide commands
 
 
 
 
Most operating systems provide a command-line interface,
also known as a '''shell'''. Shells usually provide commands
to navigate the file system and launch applications. For
to navigate the file system and launch applications. For
example, in Unix, you can change directories with </FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>cd</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3>,
example, in Unix, you can change directories with <TT>cd</TT>,
display the contents of a directory with </FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>ls</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3>, and launch
display the contents of a directory with <TT>ls</TT>, and launch
a web browser by typing (for example) </FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>firefox</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3>.</FONT></FONT></P><P><A NAME="@default1290"></A><FONT COLOR=black><FONT SIZE=3>
a web browser by typing (for example) <TT>firefox</TT>.
</FONT></FONT><A NAME="@default1291"></A></P><P><FONT COLOR=black><FONT SIZE=3>Any program that you can launch from the shell can also be
 
launched from Python using a </FONT></FONT><FONT COLOR=black><FONT SIZE=3><B>pipe</B></FONT></FONT><FONT COLOR=black><FONT SIZE=3>. A pipe is an object
 
that represents a running process.</FONT></FONT></P><P><FONT COLOR=black><FONT SIZE=3>For example, the Unix command </FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>ls -l</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3> normally displays the
 
 
Any program that you can launch from the shell can also be
launched from Python using a '''pipe'''. A pipe is an object
that represents a running process.
 
For example, the Unix command <TT>ls -l</TT> normally displays the
contents of the current directory (in long format). You can
contents of the current directory (in long format). You can
launch </FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>ls</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3> with </FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>os.popen</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3>:</FONT></FONT></P><P><A NAME="@default1292"></A><FONT COLOR=black><FONT SIZE=3>
launch <TT>ls</TT> with <TT>os.popen</TT>:
</FONT></FONT><A NAME="@default1293"></A></P><PRE CLASS="verbatim"><FONT COLOR=blue><FONT SIZE=4>&gt;&gt;&gt; cmd = 'ls -l'
 
 
 
<PRE CLASS="verbatim">&gt;&gt;&gt; cmd = 'ls -l'
&gt;&gt;&gt; fp = os.popen(cmd)
&gt;&gt;&gt; fp = os.popen(cmd)
</FONT></FONT></PRE><P><FONT COLOR=black><FONT SIZE=3>The argument is a string that contains a shell command. The
</PRE>
The argument is a string that contains a shell command. The
return value is a file pointer that behaves just like an open
return value is a file pointer that behaves just like an open
file. You can read the output from the </FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>ls</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3> process one
file. You can read the output from the <TT>ls</TT> process one
line at a time with </FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>readline</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3> or get the whole thing at
line at a time with <TT>readline</TT> or get the whole thing at
once with </FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>read</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3>:</FONT></FONT></P><P><A NAME="@default1294"></A><FONT COLOR=black><FONT SIZE=3>
once with <TT>read</TT>:
</FONT></FONT><A NAME="@default1295"></A><FONT COLOR=black><FONT SIZE=3>
 
</FONT></FONT><A NAME="@default1296"></A><FONT COLOR=black><FONT SIZE=3>
 
</FONT></FONT><A NAME="@default1297"></A></P><PRE CLASS="verbatim"><FONT COLOR=blue><FONT SIZE=4>&gt;&gt;&gt; res = fp.read()
 
</FONT></FONT></PRE><P><FONT COLOR=black><FONT SIZE=3>When you are done, you close the pipe like a file:</FONT></FONT></P><P><A NAME="@default1298"></A><FONT COLOR=black><FONT SIZE=3>
 
</FONT></FONT><A NAME="@default1299"></A></P><PRE CLASS="verbatim"><FONT COLOR=blue><FONT SIZE=4>&gt;&gt;&gt; stat = fp.close()
 
<PRE CLASS="verbatim">&gt;&gt;&gt; res = fp.read()
</PRE>
When you are done, you close the pipe like a file:
 
 
 
<PRE CLASS="verbatim">&gt;&gt;&gt; stat = fp.close()
&gt;&gt;&gt; print stat
&gt;&gt;&gt; print stat
None
None
</FONT></FONT></PRE><P><FONT COLOR=black><FONT SIZE=3>The return value is the final status of the </FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>ls</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3> process;
</PRE>
</FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>None</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3> means that it ended normally (with no errors).</FONT></FONT></P><P><A NAME="@default1300"></A><FONT COLOR=black><FONT SIZE=3>
The return value is the final status of the <TT>ls</TT> process;
</FONT></FONT><A NAME="@default1301"></A><FONT COLOR=black><FONT SIZE=3>
<TT>None</TT> means that it ended normally (with no errors).
</FONT></FONT><A NAME="@default1302"></A><FONT COLOR=black><FONT SIZE=3>
 
</FONT></FONT><A NAME="@default1303"></A></P><P><FONT COLOR=black><FONT SIZE=3>A common use of pipes is to read a compressed file incrementally;
 
 
 
 
 
A common use of pipes is to read a compressed file incrementally;
that is, without uncompressing the whole thing at once. The
that is, without uncompressing the whole thing at once. The
following function takes the name of a compressed file as a
following function takes the name of a compressed file as a
parameter and returns a pipe that uses </FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>gzip</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3> to decompress
parameter and returns a pipe that uses <TT>gzip</TT> to decompress
the contents:</FONT></FONT></P><PRE CLASS="verbatim"><FONT COLOR=blue><FONT SIZE=4>def open_gzip(filename):
the contents:
<PRE CLASS="verbatim">def open_gzip(filename):
     cmd = 'gunzip -c ' + filename
     cmd = 'gunzip -c ' + filename
     fp = os.popen(cmd)
     fp = os.popen(cmd)
     return fp
     return fp
</FONT></FONT></PRE><P><FONT COLOR=black><FONT SIZE=3>If you read lines from </FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>fp</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3> one at a time, you never have
</PRE>
to store the uncompressed file in memory or on disk.</FONT></FONT></P><H2 CLASS="section"><A NAME="toc161"></A><A NAME="htoc177"><FONT COLOR=black><FONT SIZE=3>14.9</FONT></FONT></A><FONT COLOR=black><FONT SIZE=3>&#XA0;&#XA0;Writing modules</FONT></FONT></H2><P><FONT COLOR=black><FONT SIZE=3>
If you read lines from <TT>fp</TT> one at a time, you never have
</FONT></FONT><A NAME="modules"></A></P><P><A NAME="@default1304"></A><FONT COLOR=black><FONT SIZE=3>
to store the uncompressed file in memory or on disk.
</FONT></FONT><A NAME="@default1305"></A></P><P><FONT COLOR=black><FONT SIZE=3>Any file that contains Python code can be imported as a module.
=== 14.9&#XA0;&#XA0;Writing modules ===
For example, suppose you have a file named </FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>wc.py</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3> with the following
 
code:</FONT></FONT></P><PRE CLASS="verbatim"><FONT COLOR=blue><FONT SIZE=4>def linecount(filename):
 
 
 
 
 
 
Any file that contains Python code can be imported as a module.
For example, suppose you have a file named <TT>wc.py</TT> with the following
code:
<PRE CLASS="verbatim">def linecount(filename):
     count = 0
     count = 0
     for line in open(filename):
     for line in open(filename):
Line 282: Line 475:


print linecount('wc.py')
print linecount('wc.py')
</FONT></FONT></PRE><P><FONT COLOR=black><FONT SIZE=3>If you run this program, it reads itself and prints the number
</PRE>
If you run this program, it reads itself and prints the number
of lines in the file, which is 7.
of lines in the file, which is 7.
You can also import it like this:</FONT></FONT></P><PRE CLASS="verbatim"><FONT COLOR=blue><FONT SIZE=4>&gt;&gt;&gt; import wc
You can also import it like this:
<PRE CLASS="verbatim">&gt;&gt;&gt; import wc
7
7
</FONT></FONT></PRE><P><FONT COLOR=black><FONT SIZE=3>Now you have a module object </FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>wc</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3>:</FONT></FONT></P><P><A NAME="@default1306"></A><FONT COLOR=black><FONT SIZE=3>
</PRE>
</FONT></FONT><A NAME="@default1307"></A></P><PRE CLASS="verbatim"><FONT COLOR=blue><FONT SIZE=4>&gt;&gt;&gt; print wc
Now you have a module object <TT>wc</TT>:
 
 
 
<PRE CLASS="verbatim">&gt;&gt;&gt; print wc
&lt;module 'wc' from 'wc.py'&gt;
&lt;module 'wc' from 'wc.py'&gt;
</FONT></FONT></PRE><P><FONT COLOR=black><FONT SIZE=3>That provides a function called </FONT></FONT><CODE><FONT COLOR=black><FONT SIZE=3>linecount</FONT></FONT></CODE><FONT COLOR=black><FONT SIZE=3>:</FONT></FONT></P><PRE CLASS="verbatim"><FONT COLOR=blue><FONT SIZE=4>&gt;&gt;&gt; wc.linecount('wc.py')
</PRE>
That provides a function called <CODE>linecount</CODE>:
<PRE CLASS="verbatim">&gt;&gt;&gt; wc.linecount('wc.py')
7
7
</FONT></FONT></PRE><P><FONT COLOR=black><FONT SIZE=3>So that&#X2019;s how you write modules in Python.</FONT></FONT></P><P><FONT COLOR=black><FONT SIZE=3>The only problem with this example is that when you import
</PRE>
So that&#X2019;s how you write modules in Python.
 
The only problem with this example is that when you import
the module it executes the test code at the bottom. Normally
the module it executes the test code at the bottom. Normally
when you import a module, it defines new functions but it
when you import a module, it defines new functions but it
doesn&#X2019;t execute them.</FONT></FONT></P><P><A NAME="@default1308"></A><FONT COLOR=black><FONT SIZE=3>
doesn&#X2019;t execute them.
</FONT></FONT><A NAME="@default1309"></A></P><P><FONT COLOR=black><FONT SIZE=3>Programs that will be imported as modules often
 
use the following idiom:</FONT></FONT></P><PRE CLASS="verbatim"><FONT COLOR=blue><FONT SIZE=4>if __name__ == '__main__':
 
 
 
Programs that will be imported as modules often
use the following idiom:
<PRE CLASS="verbatim">if __name__ == '__main__':
     print linecount('wc.py')
     print linecount('wc.py')
</FONT></FONT></PRE><P><CODE><FONT COLOR=black><FONT SIZE=3>__name__</FONT></FONT></CODE><FONT COLOR=black><FONT SIZE=3> is a built-in variable that is set when the
</PRE>
<CODE>__name__</CODE> is a built-in variable that is set when the
program starts. If the program is running as a script,
program starts. If the program is running as a script,
</FONT></FONT><CODE><FONT COLOR=black><FONT SIZE=3>__name__</FONT></FONT></CODE><FONT COLOR=black><FONT SIZE=3> has the value </FONT></FONT><CODE><FONT COLOR=black><FONT SIZE=3>__main__</FONT></FONT></CODE><FONT COLOR=black><FONT SIZE=3>; in that
<CODE>__name__</CODE> has the value <CODE>__main__</CODE>; in that
case, the test code is executed. Otherwise,
case, the test code is executed. Otherwise,
if the module is being imported, the test code is skipped.</FONT></FONT></P><DIV CLASS="theorem"><FONT COLOR=black><FONT SIZE=3><B>Exercise&#XA0;4</B></FONT></FONT><FONT COLOR=black><FONT SIZE=3>&#XA0;&#XA0;<EM>
if the module is being imported, the test code is skipped.
Type this example into a file named </EM></FONT></FONT><FONT COLOR=black><FONT SIZE=3><EM><TT>wc.py</TT></EM></FONT></FONT><FONT COLOR=black><FONT SIZE=3><EM> and run
<DIV CLASS="theorem">'''Exercise&#XA0;4'''&#XA0;&#XA0;''
Type this example into a file named ''''<TT>wc.py</TT>'''' and run
it as a script. Then run the Python interpreter and
it as a script. Then run the Python interpreter and
</EM></FONT></FONT><FONT COLOR=black><FONT SIZE=3><EM><TT>import wc</TT></EM></FONT></FONT><FONT COLOR=black><FONT SIZE=3><EM>. What is the value of </EM></FONT></FONT><CODE><FONT COLOR=black><FONT SIZE=3><EM>__name__</EM></FONT></FONT></CODE><FONT COLOR=black><FONT SIZE=3><EM>
''''<TT>import wc</TT>''''. What is the value of ''<CODE>''__name__''</CODE>''
when the module is being imported?</EM></FONT></FONT><P><FONT COLOR=black><FONT SIZE=3><EM>Warning: If you import a module that has already been imported,
when the module is being imported?''
''Warning: If you import a module that has already been imported,
Python does nothing. It does not re-read the file, even if it has
Python does nothing. It does not re-read the file, even if it has
changed.</EM></FONT></FONT></P><P><A NAME="@default1310"></A><FONT COLOR=black><FONT SIZE=3><EM>
changed.''
</EM></FONT></FONT><A NAME="@default1311"></A><FONT COLOR=black><FONT SIZE=3><EM>
 
</EM></FONT></FONT><A NAME="@default1312"></A></P><P><FONT COLOR=black><FONT SIZE=3><EM>If you want to reload a module, you can use the built-in function  
''
</EM></FONT></FONT><FONT COLOR=black><FONT SIZE=3><EM><TT>reload</TT></EM></FONT></FONT><FONT COLOR=black><FONT SIZE=3><EM>, but it can be tricky, so the safest thing to do is
''''
''
 
''If you want to reload a module, you can use the built-in function  
''''<TT>reload</TT>'''', but it can be tricky, so the safest thing to do is
restart the interpreter and then import the module again.
restart the interpreter and then import the module again.
</EM></FONT></FONT></P></DIV><H2 CLASS="section"><A NAME="toc162"></A><A NAME="htoc178"><FONT COLOR=black><FONT SIZE=3>14.10</FONT></FONT></A><FONT COLOR=black><FONT SIZE=3>&#XA0;&#XA0;Debugging</FONT></FONT></H2><P><A NAME="@default1313"></A><FONT COLOR=black><FONT SIZE=3>
''
</FONT></FONT><A NAME="@default1314"></A></P><P><FONT COLOR=black><FONT SIZE=3>When you are reading and writing files, you might run into problems
</DIV>=== 14.10&#XA0;&#XA0;Debugging ===
 
 
 
 
When you are reading and writing files, you might run into problems
with whitespace. These errors can be hard to debug because spaces,
with whitespace. These errors can be hard to debug because spaces,
tabs and newlines are normally invisible:</FONT></FONT></P><PRE CLASS="verbatim"><FONT COLOR=blue><FONT SIZE=4>&gt;&gt;&gt; s = '1 2\t 3\n 4'
tabs and newlines are normally invisible:
<PRE CLASS="verbatim">&gt;&gt;&gt; s = '1 2\t 3\n 4'
&gt;&gt;&gt; print s
&gt;&gt;&gt; print s
1 2  3
1 2  3
  4
  4
</FONT></FONT></PRE><P><A NAME="@default1315"></A><FONT COLOR=black><FONT SIZE=3>
</PRE>
</FONT></FONT><A NAME="@default1316"></A><FONT COLOR=black><FONT SIZE=3>
 
</FONT></FONT><A NAME="@default1317"></A></P><P><FONT COLOR=black><FONT SIZE=3>The built-in function </FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>repr</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3> can help. It takes any object as an
 
 
 
The built-in function <TT>repr</TT> can help. It takes any object as an
argument and returns a string representation of the object. For
argument and returns a string representation of the object. For
strings, it represents whitespace
strings, it represents whitespace
characters with backslash sequences:</FONT></FONT></P><PRE CLASS="verbatim"><FONT COLOR=blue><FONT SIZE=4>&gt;&gt;&gt; print repr(s)
characters with backslash sequences:
<PRE CLASS="verbatim">&gt;&gt;&gt; print repr(s)
'1 2\t 3\n 4'
'1 2\t 3\n 4'
</FONT></FONT></PRE><P><FONT COLOR=black><FONT SIZE=3>This can be helpful for debugging.</FONT></FONT></P><P><FONT COLOR=black><FONT SIZE=3>One other problem you might run into is that different systems
</PRE>
This can be helpful for debugging.
 
One other problem you might run into is that different systems
use different characters to indicate the end of a line. Some
use different characters to indicate the end of a line. Some
systems use a newline, represented </FONT></FONT><CODE><FONT COLOR=black><FONT SIZE=3>\n</FONT></FONT></CODE><FONT COLOR=black><FONT SIZE=3>. Others use
systems use a newline, represented <CODE>\n</CODE>. Others use
a return character, represented </FONT></FONT><CODE><FONT COLOR=black><FONT SIZE=3>\r</FONT></FONT></CODE><FONT COLOR=black><FONT SIZE=3>. Some use both.
a return character, represented <CODE>\r</CODE>. Some use both.
If you move files between different systems, these inconsistencies
If you move files between different systems, these inconsistencies
might cause problems.</FONT></FONT></P><P><A NAME="@default1318"></A></P><P><FONT COLOR=black><FONT SIZE=3>For most systems, there are applications to convert from one
might cause problems.
 
For most systems, there are applications to convert from one
format to another. You can find them (and read more about this
format to another. You can find them (and read more about this
issue) at </FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>wikipedia.org/wiki/Newline</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3>. Or, of course, you
issue) at <TT>wikipedia.org/wiki/Newline</TT>. Or, of course, you
could write one yourself.</FONT></FONT></P><H2 CLASS="section"><A NAME="toc163"></A><A NAME="htoc179"><FONT COLOR=black><FONT SIZE=3>14.11</FONT></FONT></A><FONT COLOR=black><FONT SIZE=3>&#XA0;&#XA0;Glossary</FONT></FONT></H2><DL CLASS="description"><DT CLASS="dt-description"><FONT COLOR=black><FONT SIZE=3><B>persistent:</B></FONT></FONT></DT><DD CLASS="dd-description"><FONT COLOR=black><FONT SIZE=3> Pertaining to a program that runs indefinitely
could write one yourself.
=== 14.11&#XA0;&#XA0;Glossary ===
 
<DL CLASS="description"><DT CLASS="dt-description">'''persistent:'''</DT><DD CLASS="dd-description"> Pertaining to a program that runs indefinitely
and keeps at least some of its data in permanent storage.
and keeps at least some of its data in permanent storage.
</FONT></FONT><A NAME="@default1319"></A></DD><DT CLASS="dt-description"><FONT COLOR=black><FONT SIZE=3><B>format operator:</B></FONT></FONT></DT><DD CLASS="dd-description"><FONT COLOR=black><FONT SIZE=3> An operator, </FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>%</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3>, that takes a format
</DD><DT CLASS="dt-description">'''format operator:'''</DT><DD CLASS="dd-description"> An operator, <TT>%</TT>, that takes a format
string and a tuple and generates a string that includes
string and a tuple and generates a string that includes
the elements of the tuple formatted as specified by the format string.
the elements of the tuple formatted as specified by the format string.
</FONT></FONT><A NAME="@default1320"></A><FONT COLOR=black><FONT SIZE=3>
 
</FONT></FONT><A NAME="@default1321"></A></DD><DT CLASS="dt-description"><FONT COLOR=black><FONT SIZE=3><B>format string:</B></FONT></FONT></DT><DD CLASS="dd-description"><FONT COLOR=black><FONT SIZE=3> A string, used with the format operator, that
</DD><DT CLASS="dt-description">'''format string:'''</DT><DD CLASS="dd-description"> A string, used with the format operator, that
contains format sequences.  
contains format sequences.  
</FONT></FONT><A NAME="@default1322"></A></DD><DT CLASS="dt-description"><FONT COLOR=black><FONT SIZE=3><B>format sequence:</B></FONT></FONT></DT><DD CLASS="dd-description"><FONT COLOR=black><FONT SIZE=3> A sequence of characters in a format string,
</DD><DT CLASS="dt-description">'''format sequence:'''</DT><DD CLASS="dd-description"> A sequence of characters in a format string,
like </FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>%d</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3>, that specifies how a value should be formatted.
like <TT>%d</TT>, that specifies how a value should be formatted.
</FONT></FONT><A NAME="@default1323"></A></DD><DT CLASS="dt-description"><FONT COLOR=black><FONT SIZE=3><B>text file:</B></FONT></FONT></DT><DD CLASS="dd-description"><FONT COLOR=black><FONT SIZE=3> A sequence of characters stored in permanent
</DD><DT CLASS="dt-description">'''text file:'''</DT><DD CLASS="dd-description"> A sequence of characters stored in permanent
storage like a hard drive.
storage like a hard drive.
</FONT></FONT><A NAME="@default1324"></A></DD><DT CLASS="dt-description"><FONT COLOR=black><FONT SIZE=3><B>directory:</B></FONT></FONT></DT><DD CLASS="dd-description"><FONT COLOR=black><FONT SIZE=3> A named collection of files, also called a folder.
</DD><DT CLASS="dt-description">'''directory:'''</DT><DD CLASS="dd-description"> A named collection of files, also called a folder.
</FONT></FONT><A NAME="@default1325"></A></DD><DT CLASS="dt-description"><FONT COLOR=black><FONT SIZE=3><B>path:</B></FONT></FONT></DT><DD CLASS="dd-description"><FONT COLOR=black><FONT SIZE=3> A string that identifies a file.
</DD><DT CLASS="dt-description">'''path:'''</DT><DD CLASS="dd-description"> A string that identifies a file.
</FONT></FONT><A NAME="@default1326"></A></DD><DT CLASS="dt-description"><FONT COLOR=black><FONT SIZE=3><B>relative path:</B></FONT></FONT></DT><DD CLASS="dd-description"><FONT COLOR=black><FONT SIZE=3> A path that starts from the current directory.
</DD><DT CLASS="dt-description">'''relative path:'''</DT><DD CLASS="dd-description"> A path that starts from the current directory.
</FONT></FONT><A NAME="@default1327"></A></DD><DT CLASS="dt-description"><FONT COLOR=black><FONT SIZE=3><B>absolute path:</B></FONT></FONT></DT><DD CLASS="dd-description"><FONT COLOR=black><FONT SIZE=3> A path that starts from the topmost directory
</DD><DT CLASS="dt-description">'''absolute path:'''</DT><DD CLASS="dd-description"> A path that starts from the topmost directory
in the file system.
in the file system.
</FONT></FONT><A NAME="@default1328"></A></DD><DT CLASS="dt-description"><FONT COLOR=black><FONT SIZE=3><B>catch:</B></FONT></FONT></DT><DD CLASS="dd-description"><FONT COLOR=black><FONT SIZE=3> To prevent an exception from terminating
</DD><DT CLASS="dt-description">'''catch:'''</DT><DD CLASS="dd-description"> To prevent an exception from terminating
a program using the </FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>try</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3>
a program using the <TT>try</TT>
and </FONT></FONT><FONT COLOR=black><FONT SIZE=3><TT>except</TT></FONT></FONT><FONT COLOR=black><FONT SIZE=3> statements.
and <TT>except</TT> statements.
</FONT></FONT><A NAME="@default1329"></A></DD><DT CLASS="dt-description"><FONT COLOR=black><FONT SIZE=3><B>database:</B></FONT></FONT></DT><DD CLASS="dd-description"><FONT COLOR=black><FONT SIZE=3> A file whose contents are organized like a dictionary
</DD><DT CLASS="dt-description">'''database:'''</DT><DD CLASS="dd-description"> A file whose contents are organized like a dictionary
with keys that correspond to values.
with keys that correspond to values.
</FONT></FONT><A NAME="@default1330"></A></DD></DL><H2 CLASS="section"><A NAME="toc164"></A><A NAME="htoc180"><FONT COLOR=black><FONT SIZE=3>14.12</FONT></FONT></A><FONT COLOR=black><FONT SIZE=3>&#XA0;&#XA0;Exercises</FONT></FONT></H2><DIV CLASS="theorem"><FONT COLOR=black><FONT SIZE=3><B>Exercise&#XA0;5</B></FONT></FONT><FONT COLOR=black><FONT SIZE=3>&#XA0;&#XA0;<EM>
</DD></DL>=== 14.12&#XA0;&#XA0;Exercises ===
</EM></FONT></FONT><A NAME="urllib"></A><P><A NAME="@default1331"></A><FONT COLOR=black><FONT SIZE=3><EM>
 
</EM></FONT></FONT><A NAME="@default1332"></A><FONT COLOR=black><FONT SIZE=3><EM>
<DIV CLASS="theorem">'''Exercise&#XA0;5'''&#XA0;&#XA0;''
</EM></FONT></FONT><A NAME="@default1333"></A></P><P><FONT COLOR=black><FONT SIZE=3><EM>The </EM></FONT></FONT><FONT COLOR=black><FONT SIZE=3><EM><TT>urllib</TT></EM></FONT></FONT><FONT COLOR=black><FONT SIZE=3><EM> module provides methods for manipulating URLs
''
''
''''
''
 
''The ''''<TT>urllib</TT>'''' module provides methods for manipulating URLs
and downloading information from the web. The following example
and downloading information from the web. The following example
downloads and prints a secret message from </EM></FONT></FONT><FONT COLOR=black><FONT SIZE=3><EM><TT>thinkpython.com</TT></EM></FONT></FONT><FONT COLOR=black><FONT SIZE=3><EM>:</EM></FONT></FONT></P><PRE CLASS="verbatim"><EM><FONT COLOR=blue><FONT SIZE=4>import urllib
downloads and prints a secret message from ''''<TT>thinkpython.com</TT>'''':''
<PRE CLASS="verbatim">''import urllib


conn = urllib.urlopen('http://thinkpython.com/secret.html')
conn = urllib.urlopen('http://thinkpython.com/secret.html')
for line in conn.fp:
for line in conn.fp:
     print line.strip()
     print line.strip()
</FONT></FONT></EM></PRE><P><EM><FONT COLOR=black><FONT SIZE=3>Run this code and follow the instructions you see there.</FONT></FONT></EM></P><P><A NAME="@default1334"></A><EM><FONT COLOR=black><FONT SIZE=3>
''</PRE>
</FONT></FONT></EM><A NAME="@default1335"></A></P></DIV><DIV CLASS="theorem"><FONT COLOR=black><FONT SIZE=3><B>Exercise&#XA0;6</B></FONT></FONT><FONT COLOR=black><FONT SIZE=3>&#XA0;&#XA0;<EM>
''Run this code and follow the instructions you see there.''
</EM></FONT></FONT><A NAME="checksum"></A><P><A NAME="@default1336"></A></P><P><FONT COLOR=black><FONT SIZE=3><EM>In a large collection of MP3 files, there may be more than one
 
''
''
</DIV><DIV CLASS="theorem">'''Exercise&#XA0;6'''&#XA0;&#XA0;''
''
 
''In a large collection of MP3 files, there may be more than one
copy of the same song, stored in different directories or with
copy of the same song, stored in different directories or with
different file names. The goal of this exercise is to search for
different file names. The goal of this exercise is to search for
these duplicates.</EM></FONT></FONT></P><OL CLASS="enumerate" type=1><LI CLASS="li-enumerate"><FONT COLOR=black><FONT SIZE=3><EM>Write a program that searches a directory and all of its
these duplicates.''
 
*''Write a program that searches a directory and all of its
subdirectories, recursively, and returns a list of complete paths
subdirectories, recursively, and returns a list of complete paths
for all files with a given suffix (like </EM></FONT></FONT><FONT COLOR=black><FONT SIZE=3><EM><TT>.mp3</TT></EM></FONT></FONT><FONT COLOR=black><FONT SIZE=3><EM>).
for all files with a given suffix (like ''''<TT>.mp3</TT>'''').
Hint: </EM></FONT></FONT><FONT COLOR=black><FONT SIZE=3><EM><TT>os.path</TT></EM></FONT></FONT><FONT COLOR=black><FONT SIZE=3><EM> provides several useful functions for
Hint: ''''<TT>os.path</TT>'''' provides several useful functions for
manipulating file and path names.</EM></FONT></FONT><P><A NAME="@default1337"></A><FONT COLOR=black><FONT SIZE=3><EM>
manipulating file and path names.''
</EM></FONT></FONT><A NAME="@default1338"></A><FONT COLOR=black><FONT SIZE=3><EM>
''
</EM></FONT></FONT><A NAME="@default1339"></A><FONT COLOR=black><FONT SIZE=3><EM>
''''
</EM></FONT></FONT><A NAME="@default1340"></A></P></LI><LI CLASS="li-enumerate"><FONT COLOR=black><FONT SIZE=3><EM>To recognize duplicates, you can use a hash function that
''''
''
 
*''To recognize duplicates, you can use a hash function that
reads the file and generates a short summary
reads the file and generates a short summary
of the contents. For example,
of the contents. For example,
Line 385: Line 636:
&#X201C;message&#X201D; and returns a 128-bit &#X201C;checksum.&#X201D; The probability
&#X201C;message&#X201D; and returns a 128-bit &#X201C;checksum.&#X201D; The probability
is very small that two files with different contents will
is very small that two files with different contents will
return the same checksum.</EM></FONT></FONT><P><FONT COLOR=black><FONT SIZE=3><EM>You can read about MD5 at </EM></FONT></FONT><FONT COLOR=black><FONT SIZE=3><EM><TT>wikipedia.org/wiki/Md5</TT></EM></FONT></FONT><FONT COLOR=black><FONT SIZE=3><EM>. On
return the same checksum.''
a Unix system you can use the program </EM></FONT></FONT><FONT COLOR=black><FONT SIZE=3><EM><TT>md5sum</TT></EM></FONT></FONT><FONT COLOR=black><FONT SIZE=3><EM> and a pipe to
''You can read about MD5 at ''''<TT>wikipedia.org/wiki/Md5</TT>''''. On
compute checksums from Python.</EM></FONT></FONT></P><P><A NAME="@default1341"></A></P></LI></OL></DIV><DIV CLASS="theorem"><FONT COLOR=black><FONT SIZE=3><B>Exercise&#XA0;7</B></FONT></FONT><FONT COLOR=black><FONT SIZE=3>&#XA0;&#XA0;</FONT></FONT><P><A NAME="@default1342"></A><FONT COLOR=black><FONT SIZE=3><EM>
a Unix system you can use the program ''''<TT>md5sum</TT>'''' and a pipe to
</EM></FONT></FONT><A NAME="@default1343"></A><FONT COLOR=black><FONT SIZE=3><EM>
compute checksums from Python.''
</EM></FONT></FONT><A NAME="@default1344"></A></P><P><FONT COLOR=black><FONT SIZE=3><EM>The Internet Movie Database (IMDb) is an online collection of
 
</DIV><DIV CLASS="theorem">'''Exercise&#XA0;7'''&#XA0;&#XA0;
''
''''
''
 
''The Internet Movie Database (IMDb) is an online collection of
information about movies. Their database is available
information about movies. Their database is available
in plain text format, so it is reasonably easy to read from
in plain text format, so it is reasonably easy to read from
Python. For this exercise, the files you need
Python. For this exercise, the files you need
are </EM></FONT></FONT><FONT COLOR=black><FONT SIZE=3><EM><TT>actors.list.gz</TT></EM></FONT></FONT><FONT COLOR=black><FONT SIZE=3><EM> and </EM></FONT></FONT><FONT COLOR=black><FONT SIZE=3><EM><TT>actresses.list.gz</TT></EM></FONT></FONT><FONT COLOR=black><FONT SIZE=3><EM>; you
are ''''<TT>actors.list.gz</TT>'''' and ''''<TT>actresses.list.gz</TT>''''; you
can download them from </EM></FONT></FONT><FONT COLOR=black><FONT SIZE=3><EM><TT>www.imdb.com/interfaces#plain</TT></EM></FONT></FONT><FONT COLOR=black><FONT SIZE=3><EM>.</EM></FONT></FONT></P><P><A NAME="@default1345"></A><FONT COLOR=black><FONT SIZE=3><EM>
can download them from ''''<TT>www.imdb.com/interfaces#plain</TT>''''.''
</EM></FONT></FONT><A NAME="@default1346"></A><FONT COLOR=black><FONT SIZE=3><EM>
 
</EM></FONT></FONT><A NAME="@default1347"></A></P><P><FONT COLOR=black><FONT SIZE=3><EM>I have written a program that parses these files and
''
''''
''
 
''I have written a program that parses these files and
splits them into actor names, movie titles, etc. You can
splits them into actor names, movie titles, etc. You can
download it from </EM></FONT></FONT><FONT COLOR=black><FONT SIZE=3><EM><TT>thinkpython.com/code/imdb.py</TT></EM></FONT></FONT><FONT COLOR=black><FONT SIZE=3><EM>.</EM></FONT></FONT></P><P><FONT COLOR=black><FONT SIZE=3><EM>If you run </EM></FONT></FONT><FONT COLOR=black><FONT SIZE=3><EM><TT>imdb.py</TT></EM></FONT></FONT><FONT COLOR=black><FONT SIZE=3><EM> as a script, it reads </EM></FONT></FONT><FONT COLOR=black><FONT SIZE=3><EM><TT>actors.list.gz</TT></EM></FONT></FONT><FONT COLOR=black><FONT SIZE=3><EM>
download it from ''''<TT>thinkpython.com/code/imdb.py</TT>''''.''
and prints one actor-movie pair per line. Or, if you </EM></FONT></FONT><FONT COLOR=black><FONT SIZE=3><EM><TT>import
 
imdb</TT></EM></FONT></FONT><FONT COLOR=black><FONT SIZE=3><EM> you can use the function </EM></FONT></FONT><CODE><FONT COLOR=black><FONT SIZE=3><EM>process_file</EM></FONT></FONT></CODE><FONT COLOR=black><FONT SIZE=3><EM> to, well,
''If you run ''''<TT>imdb.py</TT>'''' as a script, it reads ''''<TT>actors.list.gz</TT>''''
and prints one actor-movie pair per line. Or, if you ''''<TT>import
imdb</TT>'''' you can use the function ''<CODE>''process_file''</CODE>'' to, well,
process the file. The arguments are a filename, a function
process the file. The arguments are a filename, a function
object and an optional number of lines to process. Here is
object and an optional number of lines to process. Here is
an example:</EM></FONT></FONT></P><PRE CLASS="verbatim"><EM><FONT COLOR=blue><FONT SIZE=4>import imdb
an example:''
<PRE CLASS="verbatim">''import imdb


def print_info(actor, date, title, role):
def print_info(actor, date, title, role):
Line 409: Line 673:


imdb.process_file('actors.list.gz', print_info)
imdb.process_file('actors.list.gz', print_info)
</FONT></FONT></EM></PRE><P><EM><FONT COLOR=black><FONT SIZE=3>When you call </FONT></FONT></EM><CODE><EM><FONT COLOR=black><FONT SIZE=3>process_file</FONT></FONT></EM></CODE><EM><FONT COLOR=black><FONT SIZE=3>, it opens </FONT></FONT></EM><EM><FONT COLOR=black><FONT SIZE=3><TT>filename</TT></FONT></FONT></EM><EM><FONT COLOR=black><FONT SIZE=3>, reads the
''</PRE>
contents, and calls </FONT></FONT></EM><CODE><EM><FONT COLOR=black><FONT SIZE=3>print_info</FONT></FONT></EM></CODE><EM><FONT COLOR=black><FONT SIZE=3> once for each line in the file.
''When you call ''<CODE>''process_file''</CODE>'', it opens ''''<TT>filename</TT>'''', reads the
</FONT></FONT></EM><CODE><EM><FONT COLOR=black><FONT SIZE=3>print_info</FONT></FONT></EM></CODE><EM><FONT COLOR=black><FONT SIZE=3> takes an actor, date, movie title and role as
contents, and calls ''<CODE>''print_info''</CODE>'' once for each line in the file.
arguments and prints them.</FONT></FONT></EM></P><OL CLASS="enumerate" type=1><LI CLASS="li-enumerate"><EM><FONT COLOR=black><FONT SIZE=3>Write a program that reads </FONT></FONT></EM><EM><FONT COLOR=black><FONT SIZE=3><TT>actors.list.gz</TT></FONT></FONT></EM><EM><FONT COLOR=black><FONT SIZE=3> and </FONT></FONT></EM><EM><FONT COLOR=black><FONT SIZE=3><TT>actresses.list.gz</TT></FONT></FONT></EM><EM><FONT COLOR=black><FONT SIZE=3> and uses </FONT></FONT></EM><EM><FONT COLOR=black><FONT SIZE=3><TT>shelve</TT></FONT></FONT></EM><EM><FONT COLOR=black><FONT SIZE=3> to build a database
''<CODE>''print_info''</CODE>'' takes an actor, date, movie title and role as
that maps from each actor to a list of his or her films.</FONT></FONT></EM><P><A NAME="@default1348"></A><EM><FONT COLOR=black><FONT SIZE=3>
arguments and prints them.''
</FONT></FONT></EM><A NAME="@default1349"></A></P></LI><LI CLASS="li-enumerate"><EM><FONT COLOR=black><FONT SIZE=3>Two actors are &#X201C;costars&#X201D; if they have been in at least one
 
*''Write a program that reads ''''<TT>actors.list.gz</TT>'''' and ''''<TT>actresses.list.gz</TT>'''' and uses ''''<TT>shelve</TT>'''' to build a database
that maps from each actor to a list of his or her films.''
''
''
 
*''Two actors are &#X201C;costars&#X201D; if they have been in at least one
movie together. Process the database you built in the previous step
movie together. Process the database you built in the previous step
and build a second database that maps from each actor to a list of
and build a second database that maps from each actor to a list of
his or her costars.</FONT></FONT></EM><P><A NAME="@default1350"></A><EM><FONT COLOR=black><FONT SIZE=3>
his or her costars.''
</FONT></FONT></EM><A NAME="@default1351"></A></P></LI><LI CLASS="li-enumerate"><EM><FONT COLOR=black><FONT SIZE=3>Write a program that can play the &#X201C;Six Degrees of Kevin
''
''
 
*''Write a program that can play the &#X201C;Six Degrees of Kevin
Bacon,&#X201D; which you can read about at
Bacon,&#X201D; which you can read about at
</FONT></FONT></EM><EM><FONT COLOR=black><FONT SIZE=3><TT>wikipedia.org/wiki/Six_Degrees_of_Kevin_Bacon</TT></FONT></FONT></EM><EM><FONT COLOR=black><FONT SIZE=3>. This
''''<TT>wikipedia.org/wiki/Six_Degrees_of_Kevin_Bacon</TT>''''. This
problem is challenging because it requires you to find the shortest
problem is challenging because it requires you to find the shortest
path in a graph. You can read about shortest path algorithms
path in a graph. You can read about shortest path algorithms
at </FONT></FONT></EM><EM><FONT COLOR=black><FONT SIZE=3><TT>wikipedia.org/wiki/Shortest_path_problem</TT></FONT></FONT></EM><EM><FONT COLOR=black><FONT SIZE=3>.</FONT></FONT></EM></LI></OL></DIV><HR>
at ''''<TT>wikipedia.org/wiki/Shortest_path_problem</TT>''''.''
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Revision as of 23:09, 15 September 2008

Chapter 14  Files

14.1  Persistence

Most of the programs we have seen so far are transient in the sense that they run for a short time and produce some output, but when they end, their data disappears. If you run the program again, it starts with a clean slate.

Other programs are persistent: they run for a long time (or all the time); they keep at least some of their data in permanent storage (a hard drive, for example); and if they shut down and restart, they pick up where they left off.

Examples of persistent programs are operating systems, which run pretty much whenever a computer is on, and web servers, which run all the time, waiting for requests to come in on the network.

One of the simplest ways for programs to maintain their data is by reading and writing text files. We have already seen programs that read text files; in this chapters we will see programs that write them.

An alternative is to store the state of the program in a database. In this chapter I will present a simple database and a module, pickle, that makes it easy to store program data.


14.2  Reading and writing

A text file is a sequence of characters stored on a permanent medium like a hard drive, flash memory, or CD-ROM. We saw how to open and read a file in Section 9.1.



To write a file, you have to open it with mode 'w' as a second parameter:

>>> fout = open('output.txt', 'w')
>>> print fout
<open file 'output.txt', mode 'w' at 0xb7eb2410>

If the file already exists, opening it in write mode clears out the old data and starts fresh, so be careful! If the file doesn’t exist, a new one is created.

The write method puts data into the file.

>>> line1 = "This here's the wattle,\n"
>>> fout.write(line1)

Again, the file object keeps track of where it is, so if you call write again, it adds the new data to the end.

>>> line2 = "the emblem of our land.\n"
>>> fout.write(line2)

When you are done writing, you have to close the file.

>>> fout.close()


14.3  Format operator

The argument of write has to be a string, so if we want to put other values in a file, we have to convert them to strings. The easiest way to do that is with str:

>>> x = 52
>>> f.write(str(x))

An alternative is to use the format operator, %. When applied to integers, % is the modulus operator. But when the first operand is a string, % is the format operator.

The first operand is the format string, and the second operand is a tuple of expressions. The result is a string that contains the values of the expressions, formatted according to the format string.

As an example, the format sequence '%d' means that the first expression in the tuple should be formatted as an integer (d stands for “decimal”):

>>> camels = 42
>>> '%d' % camels
'42'

The result is the string '42', which is not to be confused with the integer value 42.

A format sequence can appear anywhere in the format string, so you can embed a value in a sentence:

>>> camels = 42
>>> 'I have spotted %d camels.' % camels
'I have spotted 42 camels.'

The format sequence '%g' formats the next element in the tuple as a floating-point number (don’t ask why), and '%s' formats the next item as a string:

>>> 'In %d years I have spotted %g %s.' % (3, 0.1, 'camels')
'In 3 years I have spotted 0.1 camels.'

The number of elements in the tuple has to match the number of format sequences in the string. Also, the types of the elements have to match the format sequences:


>>> '%d %d %d' % (1, 2)
TypeError: not enough arguments for format string
>>> '%d' % 'dollars'
TypeError: illegal argument type for built-in operation

In the first example, there aren’t enough elements; in the second, the element is the wrong type.

The format operator is powerful but difficult to use. You can read more about it at docs.python.org/lib/typesseq-strings.html.

14.4  Filenames and paths

Files are organized into directories (also called “folders”). Every running program has a “current directory,” which is the default directory for most operations. For example, when you open a file for reading, Python looks for it in the current directory.



The os module provides functions for working with files and directories (“os” stands for “operating system”). os.getcwd returns the name of the current directory:


>>> import os
>>> cwd = os.getcwd()
>>> print cwd
/home/dinsdale

cwd stands for “current working directory.” The result in this example is /home/dinsdale, which is the home directory of a user named dinsdale.



A string like cwd that identifies a file is called a path. A relative path starts from the current directory; an absolute path starts from the topmost directory in the file system.




The paths we have seen so far are simple filenames, so they are relative to the current directory. To find the absolute path to a file, you can use os.path.abspath:

>>> os.path.abspath('memo.txt')
'/home/dinsdale/memo.txt'

os.path.exists checks whether a file or directory exists:


>>> os.path.exists('memo.txt')
True

If it exists, os.path.isdir checks whether it’s a directory:

>>> os.path.isdir('memo.txt')
False
>>> os.path.isdir('music')
True

Similarly, os.path.isfile checks whether it’s a file.

os.listdir returns a list of the files (and other directories) in the given directory:

>>> os.listdir(cwd)
['music', 'photos', 'memo.txt']

To demonstrate these functions, the following example “walks” through a directory, prints the names of all the files, and calls itself recursively on all the directories.


def walk(dir):
    for name in os.listdir(dir):
        path = os.path.join(dir, name)

        if os.path.isfile(path):
            print path
        else:
            walk(path)

os.path.join takes a directory and a file name and joins them into a complete path.

Exercise 1  

Modify 'walk' so that instead of printing the names of the files, it returns a list of names.

Exercise 2  

The 'os' module provides a function called 'walk' that is similar to this one but more versatile. Read the documentation and use it to print the names of the files in a given directory and its subdirectories.

=== 14.5  Catching exceptions ===



A lot of things can go wrong when you try to read and write files. If you try to open a file that doesn’t exist, you get an IOError:



>>> fin = open('bad_file')
IOError: [Errno 2] No such file or directory: 'bad_file'

If you don’t have permission to access a file:


>>> fout = open('/etc/passwd', 'w')
IOError: [Errno 13] Permission denied: '/etc/passwd'

And if you try to open a directory for reading, you get

>>> fin = open('/home')
IOError: [Errno 21] Is a directory

To avoid these errors, you could use functions like os.path.exists and os.path.isfile, but it would take a lot of time and code to check all the possibilities (if “Errno 21” is any indication, there are at least 21 things that can go wrong).



It is better to go ahead and try, and deal with problems if they happen, which is exactly what the try statement does. The syntax is similar to an if statement:

try:    
    fin = open('bad_file')
    for line in fin:
        print line
    fin.close()
except:
    print 'Something went wrong.'

Python starts by executing the try clause. If all goes well, it skips the except clause and proceeds. If an exception occurs, it jumps out of the try clause and executes the except clause.

Handling an exception with a try statement is called catching an exception. In this example, the except clause prints an error message that is not very helpful. In general, catching an exception gives you a chance to fix the problem, or try again, or at least end the program gracefully.

14.6  Databases

A database is a file that is organized for storing data. Most databases are organized like a dictionary in the sense that they map from keys to values. The biggest difference is that the database is on disk (or other permanent storage), so it persists after the program ends.



The module anydbm provides an interface for creating and updating database files. As an example, I’ll create a database that contains captions for image files.



Opening a database is similar to opening other files:

>>> import anydbm
>>> db = anydbm.open('captions.db', 'c')

The mode 'c' means that the database should be created if it doesn’t already exist. The result is a database object that can be used (for most operations) like a dictionary. If you create a new item, anydbm updates the database file.

>>> db['cleese.png'] = 'Photo of John Cleese.'

When you access one of the items, anydbm reads the file:

>>> print db['cleese.png']
Photo of John Cleese.

If you make another assignment to an existing key, anydbm replaces the old value:

>>> db['cleese.png'] = 'Photo of John Cleese doing a silly walk.'
>>> print db['cleese.png']
Photo of John Cleese doing a silly walk.

Many dictionary methods, like keys and items, also work with database objects. So does iteration with a for statement.

for key in db:
     print key

As with other files, you should close the database when you are done:

>>> db.close()


14.7  Pickling

A limitation of anydbm is that the keys and values have to be strings. If you try to use any other type, you get an error.



The pickle module can help. It translates almost any type of object into a string suitable for storage in a database, and then translates strings back into objects.

pickle.dumps takes an object as a parameter and returns a string representation (dumps is short for “dump string”):

>>> import pickle
>>> t = [1, 2, 3]
>>> pickle.dumps(t)
'(lp0\nI1\naI2\naI3\na.'

The format isn’t obvious to human readers; it is meant to be easy for pickle to interpret. pickle.loads (“load string”) reconstitutes the object:

>>> t1 = [1, 2, 3]
>>> s = pickle.dumps(t1)
>>> t2 = pickle.loads(s)
>>> print t2
[1, 2, 3]

Although the new object has the same value as the old, it is not (in general) the same object:

>>> t == t2
True
>>> t is t2
False

In other words, pickling and then unpickling has the same effect as copying the object.

You can use pickle to store non-strings in a database. In fact, this combination is so common that it has been encapsulated in a module called shelve.


Exercise 3  

If you did Exercise '12.4', modify your solution so that it creates a database that maps from each word in the list to a list of words that use the same set of letters.

Write a different program that opens the database and prints the contents in a human-readable format.

=== 14.8  Pipes ===



Most operating systems provide a command-line interface, also known as a shell. Shells usually provide commands to navigate the file system and launch applications. For example, in Unix, you can change directories with cd, display the contents of a directory with ls, and launch a web browser by typing (for example) firefox.



Any program that you can launch from the shell can also be launched from Python using a pipe. A pipe is an object that represents a running process.

For example, the Unix command ls -l normally displays the contents of the current directory (in long format). You can launch ls with os.popen:


>>> cmd = 'ls -l'
>>> fp = os.popen(cmd)

The argument is a string that contains a shell command. The return value is a file pointer that behaves just like an open file. You can read the output from the ls process one line at a time with readline or get the whole thing at once with read:



>>> res = fp.read()

When you are done, you close the pipe like a file:


>>> stat = fp.close()
>>> print stat
None

The return value is the final status of the ls process; None means that it ended normally (with no errors).




A common use of pipes is to read a compressed file incrementally; that is, without uncompressing the whole thing at once. The following function takes the name of a compressed file as a parameter and returns a pipe that uses gzip to decompress the contents:

def open_gzip(filename):
    cmd = 'gunzip -c ' + filename
    fp = os.popen(cmd)
    return fp

If you read lines from fp one at a time, you never have to store the uncompressed file in memory or on disk.

14.9  Writing modules

Any file that contains Python code can be imported as a module. For example, suppose you have a file named wc.py with the following code:

def linecount(filename):
    count = 0
    for line in open(filename):
        count += 1
    return count

print linecount('wc.py')

If you run this program, it reads itself and prints the number of lines in the file, which is 7. You can also import it like this:

>>> import wc
7

Now you have a module object wc:


>>> print wc
<module 'wc' from 'wc.py'>

That provides a function called linecount:

>>> wc.linecount('wc.py')
7

So that’s how you write modules in Python.

The only problem with this example is that when you import the module it executes the test code at the bottom. Normally when you import a module, it defines new functions but it doesn’t execute them.



Programs that will be imported as modules often use the following idiom:

if __name__ == '__main__':
    print linecount('wc.py')

__name__ is a built-in variable that is set when the program starts. If the program is running as a script, __name__ has the value __main__; in that case, the test code is executed. Otherwise, if the module is being imported, the test code is skipped.

Exercise 4  

Type this example into a file named 'wc.py' and run it as a script. Then run the Python interpreter and 'import wc'. What is the value of __name__ when the module is being imported? Warning: If you import a module that has already been imported, Python does nothing. It does not re-read the file, even if it has changed.

'

If you want to reload a module, you can use the built-in function 'reload', but it can be tricky, so the safest thing to do is restart the interpreter and then import the module again.

=== 14.10  Debugging ===



When you are reading and writing files, you might run into problems with whitespace. These errors can be hard to debug because spaces, tabs and newlines are normally invisible:

>>> s = '1 2\t 3\n 4'
>>> print s
1 2  3
 4



The built-in function repr can help. It takes any object as an argument and returns a string representation of the object. For strings, it represents whitespace characters with backslash sequences:

>>> print repr(s)
'1 2\t 3\n 4'

This can be helpful for debugging.

One other problem you might run into is that different systems use different characters to indicate the end of a line. Some systems use a newline, represented \n. Others use a return character, represented \r. Some use both. If you move files between different systems, these inconsistencies might cause problems.

For most systems, there are applications to convert from one format to another. You can find them (and read more about this issue) at wikipedia.org/wiki/Newline. Or, of course, you could write one yourself.

14.11  Glossary

persistent:
Pertaining to a program that runs indefinitely and keeps at least some of its data in permanent storage.
format operator:
An operator, %, that takes a format string and a tuple and generates a string that includes the elements of the tuple formatted as specified by the format string.
format string:
A string, used with the format operator, that contains format sequences.
format sequence:
A sequence of characters in a format string, like %d, that specifies how a value should be formatted.
text file:
A sequence of characters stored in permanent storage like a hard drive.
directory:
A named collection of files, also called a folder.
path:
A string that identifies a file.
relative path:
A path that starts from the current directory.
absolute path:
A path that starts from the topmost directory in the file system.
catch:
To prevent an exception from terminating a program using the try and except statements.
database:
A file whose contents are organized like a dictionary with keys that correspond to values.

=== 14.12  Exercises ===

Exercise 5  

'

The 'urllib' module provides methods for manipulating URLs and downloading information from the web. The following example downloads and prints a secret message from 'thinkpython.com':

''import urllib

conn = urllib.urlopen('http://thinkpython.com/secret.html')
for line in conn.fp:
    print line.strip()
''

Run this code and follow the instructions you see there.

Exercise 6  

In a large collection of MP3 files, there may be more than one copy of the same song, stored in different directories or with different file names. The goal of this exercise is to search for these duplicates.

  • Write a program that searches a directory and all of its

subdirectories, recursively, and returns a list of complete paths for all files with a given suffix (like '.mp3'). Hint: 'os.path' provides several useful functions for manipulating file and path names. ' '

  • To recognize duplicates, you can use a hash function that

reads the file and generates a short summary of the contents. For example, MD5 (Message-Digest algorithm 5) takes an arbitrarily-long “message” and returns a 128-bit “checksum.” The probability is very small that two files with different contents will return the same checksum. You can read about MD5 at 'wikipedia.org/wiki/Md5'. On a Unix system you can use the program 'md5sum' and a pipe to compute checksums from Python.

Exercise 7  

'

The Internet Movie Database (IMDb) is an online collection of information about movies. Their database is available in plain text format, so it is reasonably easy to read from Python. For this exercise, the files you need are 'actors.list.gz' and 'actresses.list.gz'; you can download them from 'www.imdb.com/interfaces#plain'.

'

I have written a program that parses these files and splits them into actor names, movie titles, etc. You can download it from 'thinkpython.com/code/imdb.py'.

If you run 'imdb.py' as a script, it reads 'actors.list.gz' and prints one actor-movie pair per line. Or, if you 'import imdb' you can use the function process_file to, well, process the file. The arguments are a filename, a function object and an optional number of lines to process. Here is an example:

''import imdb

def print_info(actor, date, title, role):
    print actor, date, title, role

imdb.process_file('actors.list.gz', print_info)
''

When you call process_file, it opens 'filename', reads the contents, and calls print_info once for each line in the file. print_info takes an actor, date, movie title and role as arguments and prints them.

  • Write a program that reads 'actors.list.gz' and 'actresses.list.gz' and uses 'shelve' to build a database

that maps from each actor to a list of his or her films.

  • Two actors are “costars” if they have been in at least one

movie together. Process the database you built in the previous step and build a second database that maps from each actor to a list of his or her costars.

  • Write a program that can play the “Six Degrees of Kevin

Bacon,” which you can read about at 'wikipedia.org/wiki/Six_Degrees_of_Kevin_Bacon'. This problem is challenging because it requires you to find the shortest path in a graph. You can read about shortest path algorithms at 'wikipedia.org/wiki/Shortest_path_problem'.


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