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/home/barbar84/public_h.../wp-conte.../plugins/sujqvwi/AnonR/anonr.TX.../opt/imh-pyth.../lib/python3....
File: cgi.py
#! /usr/libexec/platform-python -s
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# NOTE: the above "/usr/local/bin/python" is NOT a mistake. It is
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# intentionally NOT "/usr/bin/env python". On many systems
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# (e.g. Solaris), /usr/local/bin is not in $PATH as passed to CGI
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# scripts, and /usr/local/bin is the default directory where Python is
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# installed, so /usr/bin/env would be unable to find python. Granted,
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# binary installations by Linux vendors often install Python in
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# /usr/bin. So let those vendors patch cgi.py to match their choice
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# of installation.
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"""Support module for CGI (Common Gateway Interface) scripts.
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This module defines a number of utilities for use by CGI scripts
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written in Python.
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"""
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# History
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# -------
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#
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# Michael McLay started this module. Steve Majewski changed the
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# interface to SvFormContentDict and FormContentDict. The multipart
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# parsing was inspired by code submitted by Andreas Paepcke. Guido van
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# Rossum rewrote, reformatted and documented the module and is currently
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# responsible for its maintenance.
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#
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__version__ = "2.6"
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# Imports
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# =======
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from io import StringIO, BytesIO, TextIOWrapper
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from collections.abc import Mapping
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import sys
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import os
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import urllib.parse
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from email.parser import FeedParser
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from email.message import Message
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import html
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import locale
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import tempfile
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__all__ = ["MiniFieldStorage", "FieldStorage", "parse", "parse_multipart",
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"parse_header", "test", "print_exception", "print_environ",
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"print_form", "print_directory", "print_arguments",
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"print_environ_usage"]
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# Logging support
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# ===============
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logfile = "" # Filename to log to, if not empty
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logfp = None # File object to log to, if not None
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def initlog(*allargs):
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"""Write a log message, if there is a log file.
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Even though this function is called initlog(), you should always
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use log(); log is a variable that is set either to initlog
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(initially), to dolog (once the log file has been opened), or to
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nolog (when logging is disabled).
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The first argument is a format string; the remaining arguments (if
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any) are arguments to the % operator, so e.g.
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log("%s: %s", "a", "b")
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will write "a: b" to the log file, followed by a newline.
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If the global logfp is not None, it should be a file object to
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which log data is written.
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If the global logfp is None, the global logfile may be a string
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giving a filename to open, in append mode. This file should be
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world writable!!! If the file can't be opened, logging is
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silently disabled (since there is no safe place where we could
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send an error message).
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"""
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global log, logfile, logfp
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if logfile and not logfp:
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try:
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logfp = open(logfile, "a")
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except OSError:
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pass
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if not logfp:
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log = nolog
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else:
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log = dolog
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log(*allargs)
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def dolog(fmt, *args):
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"""Write a log message to the log file. See initlog() for docs."""
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logfp.write(fmt%args + "\n")
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def nolog(*allargs):
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"""Dummy function, assigned to log when logging is disabled."""
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pass
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def closelog():
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"""Close the log file."""
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global log, logfile, logfp
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logfile = ''
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if logfp:
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logfp.close()
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logfp = None
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log = initlog
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log = initlog # The current logging function
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# Parsing functions
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# =================
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# Maximum input we will accept when REQUEST_METHOD is POST
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# 0 ==> unlimited input
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maxlen = 0
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def parse(fp=None, environ=os.environ, keep_blank_values=0,
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strict_parsing=0, separator='&'):
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"""Parse a query in the environment or from a file (default stdin)
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Arguments, all optional:
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fp : file pointer; default: sys.stdin.buffer
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environ : environment dictionary; default: os.environ
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keep_blank_values: flag indicating whether blank values in
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percent-encoded forms should be treated as blank strings.
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A true value indicates that blanks should be retained as
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blank strings. The default false value indicates that
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blank values are to be ignored and treated as if they were
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not included.
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strict_parsing: flag indicating what to do with parsing errors.
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If false (the default), errors are silently ignored.
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If true, errors raise a ValueError exception.
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separator: str. The symbol to use for separating the query arguments.
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Defaults to &.
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"""
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if fp is None:
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fp = sys.stdin
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# field keys and values (except for files) are returned as strings
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# an encoding is required to decode the bytes read from self.fp
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if hasattr(fp,'encoding'):
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encoding = fp.encoding
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else:
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encoding = 'latin-1'
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# fp.read() must return bytes
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if isinstance(fp, TextIOWrapper):
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fp = fp.buffer
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if not 'REQUEST_METHOD' in environ:
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environ['REQUEST_METHOD'] = 'GET' # For testing stand-alone
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if environ['REQUEST_METHOD'] == 'POST':
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ctype, pdict = parse_header(environ['CONTENT_TYPE'])
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if ctype == 'multipart/form-data':
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return parse_multipart(fp, pdict, separator=separator)
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elif ctype == 'application/x-www-form-urlencoded':
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clength = int(environ['CONTENT_LENGTH'])
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if maxlen and clength > maxlen:
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raise ValueError('Maximum content length exceeded')
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qs = fp.read(clength).decode(encoding)
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else:
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qs = '' # Unknown content-type
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if 'QUERY_STRING' in environ:
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if qs: qs = qs + '&'
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qs = qs + environ['QUERY_STRING']
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elif sys.argv[1:]:
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if qs: qs = qs + '&'
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qs = qs + sys.argv[1]
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environ['QUERY_STRING'] = qs # XXX Shouldn't, really
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elif 'QUERY_STRING' in environ:
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qs = environ['QUERY_STRING']
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else:
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if sys.argv[1:]:
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qs = sys.argv[1]
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else:
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qs = ""
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environ['QUERY_STRING'] = qs # XXX Shouldn't, really
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return urllib.parse.parse_qs(qs, keep_blank_values, strict_parsing,
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encoding=encoding, separator=separator)
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def parse_multipart(fp, pdict, encoding="utf-8", errors="replace", separator='&'):
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"""Parse multipart input.
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Arguments:
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fp : input file
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pdict: dictionary containing other parameters of content-type header
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encoding, errors: request encoding and error handler, passed to
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FieldStorage
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Returns a dictionary just like parse_qs(): keys are the field names, each
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value is a list of values for that field. For non-file fields, the value
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is a list of strings.
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"""
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# RFC 2026, Section 5.1 : The "multipart" boundary delimiters are always
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# represented as 7bit US-ASCII.
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boundary = pdict['boundary'].decode('ascii')
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ctype = "multipart/form-data; boundary={}".format(boundary)
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headers = Message()
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headers.set_type(ctype)
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try:
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headers['Content-Length'] = pdict['CONTENT-LENGTH']
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except KeyError:
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pass
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fs = FieldStorage(fp, headers=headers, encoding=encoding, errors=errors,
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environ={'REQUEST_METHOD': 'POST'}, separator=separator)
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return {k: fs.getlist(k) for k in fs}
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def _parseparam(s):
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while s[:1] == ';':
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s = s[1:]
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end = s.find(';')
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while end > 0 and (s.count('"', 0, end) - s.count('\\"', 0, end)) % 2:
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end = s.find(';', end + 1)
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if end < 0:
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end = len(s)
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f = s[:end]
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yield f.strip()
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s = s[end:]
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def parse_header(line):
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"""Parse a Content-type like header.
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Return the main content-type and a dictionary of options.
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"""
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parts = _parseparam(';' + line)
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key = parts.__next__()
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pdict = {}
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for p in parts:
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i = p.find('=')
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if i >= 0:
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name = p[:i].strip().lower()
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value = p[i+1:].strip()
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if len(value) >= 2 and value[0] == value[-1] == '"':
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value = value[1:-1]
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value = value.replace('\\\\', '\\').replace('\\"', '"')
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pdict[name] = value
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return key, pdict
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# Classes for field storage
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# =========================
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class MiniFieldStorage:
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"""Like FieldStorage, for use when no file uploads are possible."""
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# Dummy attributes
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filename = None
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list = None
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type = None
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file = None
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type_options = {}
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disposition = None
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disposition_options = {}
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headers = {}
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def __init__(self, name, value):
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"""Constructor from field name and value."""
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self.name = name
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self.value = value
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# self.file = StringIO(value)
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def __repr__(self):
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"""Return printable representation."""
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return "MiniFieldStorage(%r, %r)" % (self.name, self.value)
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class FieldStorage:
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"""Store a sequence of fields, reading multipart/form-data.
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This class provides naming, typing, files stored on disk, and
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more. At the top level, it is accessible like a dictionary, whose
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keys are the field names. (Note: None can occur as a field name.)
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The items are either a Python list (if there's multiple values) or
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another FieldStorage or MiniFieldStorage object. If it's a single
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object, it has the following attributes:
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name: the field name, if specified; otherwise None
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filename: the filename, if specified; otherwise None; this is the
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client side filename, *not* the file name on which it is
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stored (that's a temporary file you don't deal with)
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value: the value as a *string*; for file uploads, this
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transparently reads the file every time you request the value
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and returns *bytes*
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file: the file(-like) object from which you can read the data *as
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bytes* ; None if the data is stored a simple string
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type: the content-type, or None if not specified
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type_options: dictionary of options specified on the content-type
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line
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disposition: content-disposition, or None if not specified
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disposition_options: dictionary of corresponding options
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headers: a dictionary(-like) object (sometimes email.message.Message or a
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subclass thereof) containing *all* headers
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The class is subclassable, mostly for the purpose of overriding
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the make_file() method, which is called internally to come up with
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a file open for reading and writing. This makes it possible to
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override the default choice of storing all files in a temporary
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directory and unlinking them as soon as they have been opened.
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"""
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def __init__(self, fp=None, headers=None, outerboundary=b'',
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environ=os.environ, keep_blank_values=0, strict_parsing=0,
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limit=None, encoding='utf-8', errors='replace',
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max_num_fields=None, separator='&'):
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"""Constructor. Read multipart/* until last part.
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Arguments, all optional:
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fp : file pointer; default: sys.stdin.buffer
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(not used when the request method is GET)
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Can be :
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1. a TextIOWrapper object
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2. an object whose read() and readline() methods return bytes
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headers : header dictionary-like object; default:
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taken from environ as per CGI spec
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outerboundary : terminating multipart boundary
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(for internal use only)
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environ : environment dictionary; default: os.environ
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keep_blank_values: flag indicating whether blank values in
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percent-encoded forms should be treated as blank strings.
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A true value indicates that blanks should be retained as
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blank strings. The default false value indicates that
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blank values are to be ignored and treated as if they were
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not included.
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strict_parsing: flag indicating what to do with parsing errors.
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If false (the default), errors are silently ignored.
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If true, errors raise a ValueError exception.
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limit : used internally to read parts of multipart/form-data forms,
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to exit from the reading loop when reached. It is the difference
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between the form content-length and the number of bytes already
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read
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encoding, errors : the encoding and error handler used to decode the
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binary stream to strings. Must be the same as the charset defined
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for the page sending the form (content-type : meta http-equiv or
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header)
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max_num_fields: int. If set, then __init__ throws a ValueError
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if there are more than n fields read by parse_qsl().
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"""
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method = 'GET'
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self.keep_blank_values = keep_blank_values
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self.strict_parsing = strict_parsing
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self.max_num_fields = max_num_fields
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self.separator = separator
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if 'REQUEST_METHOD' in environ:
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method = environ['REQUEST_METHOD'].upper()
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self.qs_on_post = None
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if method == 'GET' or method == 'HEAD':
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if 'QUERY_STRING' in environ:
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qs = environ['QUERY_STRING']
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elif sys.argv[1:]:
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qs = sys.argv[1]
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else:
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qs = ""
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qs = qs.encode(locale.getpreferredencoding(), 'surrogateescape')
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fp = BytesIO(qs)
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if headers is None:
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headers = {'content-type':
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"application/x-www-form-urlencoded"}
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if headers is None:
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headers = {}
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if method == 'POST':
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# Set default content-type for POST to what's traditional
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headers['content-type'] = "application/x-www-form-urlencoded"
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if 'CONTENT_TYPE' in environ:
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headers['content-type'] = environ['CONTENT_TYPE']
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if 'QUERY_STRING' in environ:
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self.qs_on_post = environ['QUERY_STRING']
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if 'CONTENT_LENGTH' in environ:
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headers['content-length'] = environ['CONTENT_LENGTH']
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else:
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if not (isinstance(headers, (Mapping, Message))):
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raise TypeError("headers must be mapping or an instance of "
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"email.message.Message")
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self.headers = headers
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if fp is None:
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self.fp = sys.stdin.buffer
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# self.fp.read() must return bytes
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elif isinstance(fp, TextIOWrapper):
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self.fp = fp.buffer
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else:
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if not (hasattr(fp, 'read') and hasattr(fp, 'readline')):
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raise TypeError("fp must be file pointer")
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self.fp = fp
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self.encoding = encoding
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self.errors = errors
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if not isinstance(outerboundary, bytes):
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raise TypeError('outerboundary must be bytes, not %s'
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% type(outerboundary).__name__)
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self.outerboundary = outerboundary
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self.bytes_read = 0
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self.limit = limit
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# Process content-disposition header
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cdisp, pdict = "", {}
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if 'content-disposition' in self.headers:
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cdisp, pdict = parse_header(self.headers['content-disposition'])
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self.disposition = cdisp
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self.disposition_options = pdict
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self.name = None
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if 'name' in pdict:
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self.name = pdict['name']
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self.filename = None
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if 'filename' in pdict:
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self.filename = pdict['filename']
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self._binary_file = self.filename is not None
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# Process content-type header
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#
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# Honor any existing content-type header. But if there is no
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# content-type header, use some sensible defaults. Assume
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# outerboundary is "" at the outer level, but something non-false
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# inside a multi-part. The default for an inner part is text/plain,
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# but for an outer part it should be urlencoded. This should catch
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# bogus clients which erroneously forget to include a content-type
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# header.
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#
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# See below for what we do if there does exist a content-type header,
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# but it happens to be something we don't understand.
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if 'content-type' in self.headers:
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ctype, pdict = parse_header(self.headers['content-type'])
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elif self.outerboundary or method != 'POST':
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ctype, pdict = "text/plain", {}
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else:
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ctype, pdict = 'application/x-www-form-urlencoded', {}
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self.type = ctype
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self.type_options = pdict
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if 'boundary' in pdict:
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self.innerboundary = pdict['boundary'].encode(self.encoding,
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self.errors)
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else:
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self.innerboundary = b""
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clen = -1
[462] Fix | Delete
if 'content-length' in self.headers:
[463] Fix | Delete
try:
[464] Fix | Delete
clen = int(self.headers['content-length'])
[465] Fix | Delete
except ValueError:
[466] Fix | Delete
pass
[467] Fix | Delete
if maxlen and clen > maxlen:
[468] Fix | Delete
raise ValueError('Maximum content length exceeded')
[469] Fix | Delete
self.length = clen
[470] Fix | Delete
if self.limit is None and clen >= 0:
[471] Fix | Delete
self.limit = clen
[472] Fix | Delete
[473] Fix | Delete
self.list = self.file = None
[474] Fix | Delete
self.done = 0
[475] Fix | Delete
if ctype == 'application/x-www-form-urlencoded':
[476] Fix | Delete
self.read_urlencoded()
[477] Fix | Delete
elif ctype[:10] == 'multipart/':
[478] Fix | Delete
self.read_multi(environ, keep_blank_values, strict_parsing)
[479] Fix | Delete
else:
[480] Fix | Delete
self.read_single()
[481] Fix | Delete
[482] Fix | Delete
def __del__(self):
[483] Fix | Delete
try:
[484] Fix | Delete
self.file.close()
[485] Fix | Delete
except AttributeError:
[486] Fix | Delete
pass
[487] Fix | Delete
[488] Fix | Delete
def __enter__(self):
[489] Fix | Delete
return self
[490] Fix | Delete
[491] Fix | Delete
def __exit__(self, *args):
[492] Fix | Delete
self.file.close()
[493] Fix | Delete
[494] Fix | Delete
def __repr__(self):
[495] Fix | Delete
"""Return a printable representation."""
[496] Fix | Delete
return "FieldStorage(%r, %r, %r)" % (
[497] Fix | Delete
self.name, self.filename, self.value)
[498] Fix | Delete
[499] Fix | Delete
It is recommended that you Edit text format, this type of Fix handles quite a lot in one request
Function