mirror of
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189 lines
8.5 KiB
Plaintext
189 lines
8.5 KiB
Plaintext
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====================================================================
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Code not following these style guidelines fastidiously is likely
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(*very* likely) not to be accepted into the Supybot core.
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====================================================================
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Read PEP 8 (Guido's Style Guide) and know that we use almost all the
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same style guidelines.
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Maximum line length is 79 characters. 78 is a safer bet, though.
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This is **NON-NEGOTIABLE**. Your code will not be accepted while you
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are violating this guidline.
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Identation is 4 spaces per level. No tabs. This also is
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**NON-NEGOTIABLE**. Your code, again, will *never* be accepted while
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you have literal tabs in it.
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Single quotes are used for all string literals that aren't docstrings.
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They're just easier to type.
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Triple double quotes (""") are always used for docstrings.
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Raw strings (r'' or r"") should be used for regular expressions.
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Spaces go around all operators (except around '=' in default
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arguments to functions) and after all commas (unless doing so keeps a
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line within the 79 character limit).
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Functions calls should look like this: "foo(bar(baz(x), y))". They
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should not look like "foo (bar (baz (x), y))", or like
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"foo(bar(baz(x), y) )" or like anything else. I hate extraneous
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spaces.
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Class names are StudlyCaps. Method and function names are camelCaps
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(StudlyCaps with an initial lowercase letter). If variable and
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attribute names can maintain readability without being camelCaps,
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then they should be entirely in lowercase, otherwise they should also
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use camelCaps. Plugin names are StudlyCaps.
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Imports should always happen at the top of the module, one import per
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line (so if imports need to be added or removed later, it can be done
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easily).
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Unless absolutely required by some external force, imports should be
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ordered by the string length of the module imported. I just think it
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looks prettier.
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A blank line should be between all consecutive method declarations in
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a class definition. Two blank lines should be between all
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consecutive class definitions in a file. Comments are even better
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than blank lines for separating classes.
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Database filenames should generally begin with the name of the plugin
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and the extension should be 'db'. plugins.DBHandler does this
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already.
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Whenever creating a file descriptor or socket, keep a reference
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around and be sure to close it. There should be no code like this:
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s = urllib2.urlopen('url').read()
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Instead, do this:
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fd = urllib2.urlopen('url')
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try:
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s = fd.read()
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finally:
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fd.close()
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This is to be sure the bot doesn't leak file descriptors.
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All plugin files should include a docstring decsribing what the
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plugin does. This docstring will be returned when the user is
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configuring the plugin. All plugin classes should also include a
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docstring describing how to do things with the plugin; this docstring
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will be returned when the user requests help on a plugin name.
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Method docstrings in classes deriving from callbacks.Privmsg should
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include an argument list as their first line, and after that a blank
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line followed by a longer description of what the command does. The
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argument list is used by the 'syntax' command, and the longer
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description is used by the 'help' command.
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Whenever joining more than two strings, use string interpolation, not
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addition:
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s = x + y + z # Bad.
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s = '%s%s%s' % (x, y, z) # Good.
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s = ''.join([x, y, z]) # Best, but not as general.
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This has to do with efficiency; the intermediate string x+y is made
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(and thus copied) before x+y+z is made, so it's less efficient.
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People who use string concatenation in a for loop will be swiftly
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kicked in the head.
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When writing strings that have formatting characters in them, don't
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use anything but %s unless you absolutely must. In particular, %d
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should never be used, it's less general than %s and serves no useful
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purpose. If you got the %d wrong, you'll get an exception that says,
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"foo instance can't be converted to an integer." But if you use %s,
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you'll get to see your nice little foo instance, if it doesn't
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convert to a string cleanly, and if it does convert cleanly, you'll
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get to see what you expect to see. Basically, %d just sucks.
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As a corrolary to the above, note that sometimes %f is used, but on
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when floats need to be formatted, e.g., %.2f.
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Use the log module to its fullest; when you need to print some values
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to debug, use self.log.debug to do so, and leave those statements in
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the code (commented out) so they can later be re-enabled. Remember
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that once code is buggy, it tends to have more bugs, and you'll
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probably need those print statements again.
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While on the topic of logs, note that we do not use % (i.e.,
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str.__mod__) with logged strings; we simple pass the format
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parameters as additional arguments. The reason is simple: the
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logging module supports it, and it's cleaner (fewer tokens/glyphs) to
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read.
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While still on the topic of logs, it's also important to pick the
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appropriate log level for given information.
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DEBUG: Appropriate to tell a programmer *how* we're doing
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something (i.e., debugging printfs, basically). If
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you're trying to figure out why your code doesn't work,
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DEBUG is the new printf -- use that, and leave the
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statements in your code.
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INFO: Appropriate to tell a user *what* we're doing, when what
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we're doing isn't important for the user to pay attention
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to. A user who likes to keep up with things should enjoy
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watching our logging at the INFO level; it shouldn't be
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too low-level, but it should give enough information that
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it keeps him relatively interested at peak times.
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WARNING: Appropriate to tell a user when we're doing something
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that he really ought to pay attention to. Users should
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see WARNING and think, "Hmm, should I tell the Supybot
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developers about this?" Later, he should decide not to,
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but it should give the user a moment to pause and think
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about what's actually happening with his bot.
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ERROR: Appropriate to tell a user when something has gone wrong.
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Uncaught exceptions are ERRORs. Conditions that we
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absolutely want to hear about should be errors. Things
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that should *scare* the user should be errors.
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CRITICAL: Not really appropriate. I can think of no absolutely
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critical issue yet encountered in Supybot; the only
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possible thing I can imagine is to notify the user that
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the partition on which Supybot is running has filled up.
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That would be a CRITICAL condition, but it would also be
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hard to log :)
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All plugins should have test cases written for them. Even if it
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doesn't actually test anything but just exists, it's good to have the
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test there so there's a place to add more tests later (and so we can
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be sure that all plugins are adequately documented; PluginTestCase
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checks that every command has documentation)
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All uses of eval() that expect to get integrated in Supybot must be
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approved by jemfinch, no exceptions. Chances are, it won't be
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accepted. Have you looked at utils.safeEval?
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SQL table names should be all-lowercase and include underscores to
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separate words. This is because SQL itself is case-insensitive.
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This doesn't change, however the fact that variable/member names
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should be camel case.
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SQL statements in code should put SQL words in ALL CAPS:
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"""SELECT quote FROM quotes ORDER BY random() LIMIT 1""". This makes
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SQL significantly easier to read.
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Common variable names:
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L => an arbitrary list.
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t => an arbitrary tuple.
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x => an arbitrary float.
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s => an arbitrary string.
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f => an arbitrary function.
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p => an arbitrary predicate.
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i,n => an arbitrary integer.
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cb => an arbitrary callback.
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db => a database handle.
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fd => a file-like object.
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msg => an ircmsgs.IrcMsg object.
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irc => an irclib.Irc object (or proxy)
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nick => a string that is an IRC nick.
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channel => a string that is an IRC channel.
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hostmask => a string that is a user's IRC prefix.
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When the semantic functionality (that is, the "meaning" of a variable
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is obvious from context, one of these names should be used. This
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just makes it easier for people reading our code to know what a
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variable represents without scouring the surrounding code.
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Multiple variable assignments should always be surrounded with
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parentheses -- i.e., if you're using the partition function, then
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your assignment statement should look like
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(good, bad) = partition(p, L). The parentheses make it obvious that
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you're doing a multiple assignment, and that's important because I
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hate reading code and wondering where a variable came from.
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