mirror of
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2739cd74b3
in the 'bad' dictionary (sanitize them so they are picklable; the sanitation code is now a subroutine); don't check mailto: URLs; omit colon in Error message.
567 lines
14 KiB
Python
Executable File
567 lines
14 KiB
Python
Executable File
#! /usr/bin/env python
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"""Web tree checker.
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This utility is handy to check a subweb of the world-wide web for
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errors. A subweb is specified by giving one or more ``root URLs''; a
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page belongs to the subweb if one of the root URLs is an initial
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prefix of it.
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File URL extension:
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In order to easy the checking of subwebs via the local file system,
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the interpretation of ``file:'' URLs is extended to mimic the behavior
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of your average HTTP daemon: if a directory pathname is given, the
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file index.html in that directory is returned if it exists, otherwise
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a directory listing is returned. Now, you can point webchecker to the
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document tree in the local file system of your HTTP daemon, and have
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most of it checked. In fact the default works this way if your local
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web tree is located at /usr/local/etc/httpd/htdpcs (the default for
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the NCSA HTTP daemon and probably others).
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Reports printed:
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When done, it reports links to pages outside the web (unless -q is
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specified), and pages with bad links within the subweb. When
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interrupted, it print those same reports for the pages that it has
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checked already.
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In verbose mode, additional messages are printed during the
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information gathering phase. By default, it prints a summary of its
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work status every 50 URLs (adjustable with the -r option), and it
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reports errors as they are encountered. Use the -q option to disable
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this output.
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Checkpoint feature:
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Whether interrupted or not, it dumps its state (a Python pickle) to a
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checkpoint file and the -R option allows it to restart from the
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checkpoint (assuming that the pages on the subweb that were already
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processed haven't changed). Even when it has run till completion, -R
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can still be useful -- it will print the reports again, and -Rq prints
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the errors only. In this case, the checkpoint file is not written
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again. The checkpoint file can be set with the -d option.
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The checkpoint file is written as a Python pickle. Remember that
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Python's pickle module is currently quite slow. Give it the time it
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needs to load and save the checkpoint file. When interrupted while
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writing the checkpoint file, the old checkpoint file is not
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overwritten, but all work done in the current run is lost.
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Miscellaneous:
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- Webchecker honors the "robots.txt" convention. Thanks to Skip
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Montanaro for his robotparser.py module (included in this directory)!
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The agent name is hardwired to "webchecker". URLs that are disallowed
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by the robots.txt file are reported as external URLs.
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- Because the HTML parser is a bit slow, very large HTML files are
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skipped. The size limit can be set with the -m option.
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- Before fetching a page, it guesses its type based on its extension.
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If it is a known extension and the type is not text/http, the page is
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not fetched. This is a huge optimization but occasionally it means
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links can be missed. The mimetypes.py module (also in this directory)
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has a built-in table mapping most currently known suffixes, and in
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addition attempts to read the mime.types configuration files in the
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default locations of Netscape and the NCSA HTTP daemon.
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- It only follows links indicated by <A> tags. It doesn't follow
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links in <FORM> or <IMG> or whatever other tags might contain
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hyperlinks. It does honor the <BASE> tag.
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- Checking external links is not done by default; use -x to enable
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this feature. This is done because checking external links usually
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takes a lot of time. When enabled, this check is executed during the
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report generation phase (so -x is ignored when -q is specified). Even
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when -x is enabled, only ``http:'' URLs are checked.
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Usage: webchecker.py [option] ... [rooturl] ...
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Options:
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-R -- restart from checkpoint file
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-d file -- checkpoint filename (default %(DUMPFILE)s)
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-m bytes -- skip HTML pages larger than this size (default %(MAXPAGE)d)
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-q -- quiet operation (also suppresses external links report)
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-r number -- number of links processed per round (default %(ROUNDSIZE)d)
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-v -- verbose operation; repeating -v will increase verbosity
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-x -- check external links (during report phase)
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Arguments:
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rooturl -- URL to start checking
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(default %(DEFROOT)s)
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"""
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__version__ = "0.1"
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import sys
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import os
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from types import *
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import string
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import StringIO
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import getopt
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import pickle
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import urllib
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import urlparse
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import htmllib
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import formatter
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import mimetypes
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import robotparser
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# Tunable parameters
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DEFROOT = "file:/usr/local/etc/httpd/htdocs/" # Default root URL
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MAXPAGE = 50000 # Ignore files bigger than this
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ROUNDSIZE = 50 # Number of links processed per round
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DUMPFILE = "@webchecker.pickle" # Pickled checkpoint
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AGENTNAME = "webchecker" # Agent name for robots.txt parser
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# Global variables
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verbose = 1
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maxpage = MAXPAGE
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roundsize = ROUNDSIZE
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def main():
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global verbose, maxpage, roundsize
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dumpfile = DUMPFILE
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restart = 0
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checkext = 0
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try:
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opts, args = getopt.getopt(sys.argv[1:], 'Rd:m:qr:vx')
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except getopt.error, msg:
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sys.stdout = sys.stderr
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print msg
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sys.exit(2)
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for o, a in opts:
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if o == '-R':
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restart = 1
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if o == '-d':
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dumpfile = a
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if o == '-m':
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maxpage = string.atoi(a)
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if o == '-q':
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verbose = 0
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if o == '-r':
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roundsize = string.atoi(a)
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if o == '-v':
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verbose = verbose + 1
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if o == '-x':
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checkext = 1
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if verbose:
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print AGENTNAME, "version", __version__
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if restart:
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if verbose > 0:
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print "Loading checkpoint from %s ..." % dumpfile
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f = open(dumpfile, "rb")
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c = pickle.load(f)
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f.close()
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if verbose > 0:
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print "Done."
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print "Root:", string.join(c.roots, "\n ")
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else:
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c = Checker()
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if not args:
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args.append(DEFROOT)
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for arg in args:
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c.addroot(arg)
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if not c.todo:
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needsave = 0
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else:
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needsave = 1
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try:
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c.run()
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except KeyboardInterrupt:
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if verbose > 0:
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print "[run interrupted]"
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try:
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c.report(checkext)
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except KeyboardInterrupt:
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if verbose > 0:
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print "[report interrupted]"
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if not needsave:
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if verbose > 0:
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print
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print "No need to save checkpoint"
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elif dumpfile:
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if verbose > 0:
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print
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print "Saving checkpoint to %s ..." % dumpfile
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newfile = dumpfile + ".new"
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f = open(newfile, "wb")
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pickle.dump(c, f)
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f.flush()
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f.close()
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try:
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os.unlink(dumpfile)
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except os.error:
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pass
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os.rename(newfile, dumpfile)
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if verbose > 0:
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print "Done."
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if dumpfile == DUMPFILE:
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print "Use ``%s -R'' to restart." % sys.argv[0]
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else:
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print "Use ``%s -R -d %s'' to restart." % (sys.argv[0],
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dumpfile)
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class Checker:
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def __init__(self):
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self.roots = []
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self.todo = {}
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self.done = {}
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self.ext = {}
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self.bad = {}
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self.urlopener = MyURLopener()
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self.round = 0
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self.robots = {}
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def __getstate__(self):
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return (self.roots, self.todo, self.done,
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self.ext, self.bad, self.round)
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def __setstate__(self, state):
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(self.roots, self.todo, self.done,
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self.ext, self.bad, self.round) = state
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for root in self.roots:
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self.addrobot(root)
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def addroot(self, root):
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if root not in self.roots:
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self.roots.append(root)
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self.todo[root] = []
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self.addrobot(root)
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def addrobot(self, root):
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url = urlparse.urljoin(root, "/robots.txt")
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self.robots[root] = rp = robotparser.RobotFileParser()
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if verbose > 2:
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print "Parsing", url
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rp.debug = 1
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rp.set_url(url)
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try:
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rp.read()
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except IOError, msg:
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if verbose > 1:
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print "I/O error parsing", url, ":", msg
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def run(self):
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while self.todo:
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self.round = self.round + 1
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if verbose > 0:
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print
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print "Round", self.round,
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print "(%d to do, %d done, %d external, %d bad)" % (
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len(self.todo), len(self.done),
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len(self.ext), len(self.bad))
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print
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urls = self.todo.keys()[:roundsize]
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for url in urls:
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self.dopage(url)
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self.done[url] = self.todo[url]
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del self.todo[url]
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def report(self, checkext=0):
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print
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if not self.todo: print "Final",
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else: print "Interim",
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print "Report (%d to do, %d done, %d external, %d bad)" % (
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len(self.todo), len(self.done),
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len(self.ext), len(self.bad))
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if verbose > 0:
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self.report_extrefs(checkext)
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# Report errors last because the output may get truncated
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self.report_errors()
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def report_extrefs(self, checkext=0):
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if not self.ext:
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print
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print "No external URLs"
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return
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print
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if checkext:
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print "External URLs (checking validity):"
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else:
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print "External URLs (not checked):"
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print
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urls = self.ext.keys()
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urls.sort()
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for url in urls:
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show("HREF ", url, " from", self.ext[url])
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if not checkext:
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continue
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if url[:7] == 'mailto:':
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if verbose > 2: print "Not checking", url
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continue
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if verbose > 2: print "Checking", url, "..."
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try:
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f = self.urlopener.open(url)
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f.close()
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if verbose > 3: print "OK"
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except IOError, msg:
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msg = sanitize(msg)
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print "Error", msg
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self.bad[url] = msg
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def report_errors(self):
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if not self.bad:
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print
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print "No errors"
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return
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print
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print "Error Report:"
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urls = self.bad.keys()
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urls.sort()
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bysource = {}
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for url in urls:
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try:
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origins = self.done[url]
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except KeyError:
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try:
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origins = self.todo[url]
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except KeyError:
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origins = self.ext[url]
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for source, rawlink in origins:
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triple = url, rawlink, self.bad[url]
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try:
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bysource[source].append(triple)
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except KeyError:
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bysource[source] = [triple]
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sources = bysource.keys()
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sources.sort()
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for source in sources:
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triples = bysource[source]
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print
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if len(triples) > 1:
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print len(triples), "Errors in", source
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else:
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print "Error in", source
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for url, rawlink, msg in triples:
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print " HREF", url,
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if rawlink != url: print "(%s)" % rawlink,
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print
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print " msg", msg
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def dopage(self, url):
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if verbose > 1:
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if verbose > 2:
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show("Page ", url, " from", self.todo[url])
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else:
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print "Page ", url
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page = self.getpage(url)
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if not page:
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return
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for info in page.getlinkinfos():
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link, rawlink = info
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origin = url, rawlink
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if not self.inroots(link):
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try:
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self.ext[link].append(origin)
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if verbose > 3:
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print " New ext link", link,
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if link != rawlink: print "(%s)" % rawlink,
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print
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except KeyError:
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if verbose > 3:
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print " Seen ext link", link,
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if link != rawlink: print "(%s)" % rawlink,
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print
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self.ext[link] = [origin]
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elif self.done.has_key(link):
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if verbose > 3:
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print " Done link", link
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self.done[link].append(origin)
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elif self.todo.has_key(link):
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if verbose > 3:
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print " Seen todo link", link
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self.todo[link].append(origin)
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else:
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if verbose > 3:
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print " New todo link", link
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self.todo[link] = [origin]
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def inroots(self, url):
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for root in self.roots:
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if url[:len(root)] == root:
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return self.robots[root].can_fetch(AGENTNAME, url)
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return 0
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def getpage(self, url):
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ctype, encoding = mimetypes.guess_type(url)
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if encoding:
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if verbose > 2:
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print " Won't bother, URL suggests encoding %s" % `encoding`
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return None
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if ctype and ctype != 'text/html':
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if verbose > 2:
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print " Won't bother, URL suggests mime type %s" % `ctype`
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return None
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try:
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f = self.urlopener.open(url)
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except IOError, msg:
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msg = sanitize(msg)
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if verbose > 0:
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print "Error ", msg
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if verbose > 0:
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show(" HREF ", url, " from", self.todo[url])
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self.bad[url] = msg
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return None
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nurl = f.geturl()
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info = f.info()
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if info.has_key('content-type'):
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ctype = string.lower(info['content-type'])
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if nurl != url:
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if verbose > 1:
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print " Redirected to", nurl
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if not ctype:
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ctype, encoding = mimetypes.guess_type(nurl)
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if ctype != 'text/html':
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f.close()
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if verbose > 2:
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print " Not HTML, mime type", ctype
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return None
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text = f.read()
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f.close()
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return Page(text, nurl)
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class Page:
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def __init__(self, text, url):
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self.text = text
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self.url = url
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def getlinkinfos(self):
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size = len(self.text)
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if size > maxpage:
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if verbose > 0:
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print "Skip huge file", self.url
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print " (%.0f Kbytes)" % (size*0.001)
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return []
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if verbose > 2:
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print " Parsing", self.url, "(%d bytes)" % size
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parser = MyHTMLParser(formatter.NullFormatter())
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parser.feed(self.text)
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parser.close()
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rawlinks = parser.getlinks()
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base = urlparse.urljoin(self.url, parser.getbase() or "")
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infos = []
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for rawlink in rawlinks:
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t = urlparse.urlparse(rawlink)
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t = t[:-1] + ('',)
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rawlink = urlparse.urlunparse(t)
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link = urlparse.urljoin(base, rawlink)
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infos.append((link, rawlink))
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return infos
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class MyStringIO(StringIO.StringIO):
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def __init__(self, url, info):
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self.__url = url
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self.__info = info
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StringIO.StringIO.__init__(self)
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def info(self):
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return self.__info
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def geturl(self):
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return self.__url
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class MyURLopener(urllib.FancyURLopener):
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http_error_default = urllib.URLopener.http_error_default
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def open_file(self, url):
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path = urllib.url2pathname(urllib.unquote(url))
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if path[-1] != os.sep:
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url = url + '/'
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if os.path.isdir(path):
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indexpath = os.path.join(path, "index.html")
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if os.path.exists(indexpath):
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return self.open_file(url + "index.html")
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try:
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names = os.listdir(path)
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except os.error, msg:
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raise IOError, msg, sys.exc_traceback
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names.sort()
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s = MyStringIO("file:"+url, {'content-type': 'text/html'})
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s.write('<BASE HREF="file:%s">\n' %
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urllib.quote(os.path.join(path, "")))
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for name in names:
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q = urllib.quote(name)
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s.write('<A HREF="%s">%s</A>\n' % (q, q))
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s.seek(0)
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return s
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return urllib.FancyURLopener.open_file(self, path)
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class MyHTMLParser(htmllib.HTMLParser):
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def __init__(*args):
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self = args[0]
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self.base = None
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self.links = []
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apply(htmllib.HTMLParser.__init__, args)
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def start_a(self, attributes):
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for name, value in attributes:
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if name == 'href' and value and value not in self.links:
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self.links.append(string.strip(value))
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def do_base(self, attributes):
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for name, value in attributes:
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if name == 'href' and value:
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if verbose > 1:
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print " Base", value
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self.base = value
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def getlinks(self):
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return self.links
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def getbase(self):
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return self.base
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def show(p1, link, p2, origins):
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print p1, link
|
|
i = 0
|
|
for source, rawlink in origins:
|
|
i = i+1
|
|
if i == 2:
|
|
p2 = ' '*len(p2)
|
|
print p2, source,
|
|
if rawlink != link: print "(%s)" % rawlink,
|
|
print
|
|
|
|
|
|
def sanitize(msg):
|
|
if (type(msg) == TupleType and
|
|
len(msg) >= 4 and
|
|
msg[0] == 'http error' and
|
|
type(msg[3]) == InstanceType):
|
|
# Remove the Message instance -- it may contain
|
|
# a file object which prevents pickling.
|
|
msg = msg[:3] + msg[4:]
|
|
return msg
|
|
|
|
|
|
if __name__ == '__main__':
|
|
main()
|