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dYlVmWZWdS(Zs�HTTP cookie handling for web clients.
This module has (now fairly distant) origins in Gisle Aas' Perl module
HTTP::Cookies, from the libwww-perl library.
Docstrings, comments and debug strings in this code refer to the
attributes of the HTTP cookie system as cookie-attributes, to distinguish
them clearly from Python attributes.
Class diagram (note that BSDDBCookieJar and the MSIE* classes are not
distributed with the Python standard library, but are available from
http://wwwsearch.sf.net/):
CookieJar____
/ \ \
FileCookieJar \ \
/ | \ \ \
MozillaCookieJar | LWPCookieJar \ \
| | \
| ---MSIEBase | \
| / | | \
| / MSIEDBCookieJar BSDDBCookieJar
|/
MSIECookieJar
tCookiet CookieJartCookiePolicytDefaultCookiePolicyt
FileCookieJartLWPCookieJartlwp_cookie_strt LoadErrortMozillaCookieJari����N(ttimegmcGs;ts
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bug!
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tMontTuetWedtThutFritSattSuntJantFebtMartAprtMaytJuntJultAugtSeptOcttNovtDeccCsZ|dkrtj�}ntj|�d
\}}}}}}d||||||fS(sHReturn a string representing time in
seconds since epoch, t.
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time.
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hh:mm:ssZ",
representing Universal Time (UTC, aka GMT). An example of this format
is:
1994-11-24 08:49:37Z
is%04d-%02d-%02d %02d:%02d:%02dZN(Rttimetgmtime(ttRtmonR
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%cCsl|dkrtj�}ntj|�d
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GMTiN(RR8R9tDAYStMONTHS(R:RR;R
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} t| �dkr�| dkrr|d}q|d}q�nt |||||||f�}|dk r�|dkr�d}n|j
�}t|�}|dkr�dS||}n|S(Niiii�idi2RB(tMONTHS_LOWERtindextlowert
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GMT$s+^(?:Sun|Mon|Tue|Wed|Thu|Fri|Sat)[a-z]*,?\s*s�^
(\d\d?) # day
(?:\s+|[-\/])
(\w+) # month
(?:\s+|[-\/])
(\d+) # year
(?:
(?:\s+|:) # separator before clock
(\d\d?):(\d\d) # hour:min
(?::(\d\d))? # optional seconds
)? # optional clock
\s*
([-+]?\d{2,4}|(?![APap][Mm]\b)[A-Za-z]+)? # timezone
\s*
(?:\(\w+\))? # ASCII representation of timezone in parens.
\s*$cCs4tj|�}|r�|j�}tj|dj��d}t|d�|t|d�t|d�t|d�t|d�f}t|�S|j �}t
jd|d�}d gd\}}}}}} }
t
j|�}|d k r|j�\}}}}}} }
nd St|||||| |
�S(
s�Returns time in seconds since epoch of time represented by a string.
Return value is an integer.
None is returned if the format of str is unrecognized, the time is
outside
the representable range, or the timezone string is not recognized. If
the
string contains no timezone, UTC is assumed.
The timezone in the string may be numerical (like "-0800" or
"+0100") or a
string timezone (like "UTC", "GMT", "BST"
or "EST"). Currently, only the
timezone strings equivalent to UTC (zero offset) are known to the
function.
The function loosely parses the following formats:
Wed, 09 Feb 1994 22:23:32 GMT -- HTTP format
Tuesday, 08-Feb-94 14:15:29 GMT -- old rfc850 HTTP format
Tuesday, 08-Feb-1994 14:15:29 GMT -- broken rfc850 HTTP format
09 Feb 1994 22:23:32 GMT -- HTTP format (no weekday)
08-Feb-94 14:15:29 GMT -- rfc850 format (no weekday)
08-Feb-1994 14:15:29 GMT -- broken rfc850 format (no
weekday)
The parser ignores leading and trailing whitespace. The time may be
absent.
If the year is given with only 2 digits, the function will select the
century that makes the year closest to the current date.
iiiiiitiN(tSTRICT_DATE_RERHtgroupsRORPRQRItfloatR$tlstript
WEEKDAY_REtsubRtLOOSE_HTTP_DATE_RER\(ttextRMtgR;RRVRWRXR"R#RK((s!/usr/lib64/python2.7/cookielib.pyt http2time�s-
"$s�^
(\d{4}) # year
[-\/]?
(\d\d?) # numerical month
[-\/]?
(\d\d?) # day
(?:
(?:\s+|[-:Tt]) # separator before clock
(\d\d?):?(\d\d) # hour:min
(?::?(\d\d(?:\.\d*)?))? # optional seconds (and fractional)
)? # optional clock
\s*
([-+]?\d\d?:?(:?\d\d)?
|Z|z)? # timezone (Z is "zero meridian", i.e.
GMT)
\s*$c
Cs�|j�}dgd\}}}}}}}tj|�}|dk rp|j�\}}}}}}}} ndSt|||||||�S(sv
As for http2time, but parses the ISO 8601 formats:
1994-02-03 14:15:29 -0100 -- ISO 8601 format
1994-02-03 14:15:29 -- zone is optional
1994-02-03 -- only date
1994-02-03T14:15:29 -- Use T as separator
19940203T141529Z -- ISO 8601 compact format
19940203 -- only date
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|j|S(s)Return unmatched part of re.Match
object.i(tspantstring(tmatchtstarttend((s!/usr/lib64/python2.7/cookielib.pyt unmatched=ss^\s*([^=\s;,]+)s&^\s*=\s*\"([^\"\\]*(?:\\.[^\"\\]*)*)\"s^\s*=\s*([^\s;,]*)s\\(.)c
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q
W|S(smParse header values into a list of lists containing
key,value pairs.
The function knows how to deal with ",", ";" and
"=" as well as quoted
values after "=". A list of space separated tokens are
parsed as if they
were separated by ";".
If the header_values passed as argument contains multiple values, then
they
are treated as if they were a single value separated by comma
",".
This means that this function is useful for parsing header fields that
follow this syntax (BNF as from the HTTP/1.1 specification, but we
relax
the requirement for tokens).
headers = #header
header = (token | parameter) *( [";"] (token |
parameter))
token = 1*<any CHAR except CTLs or separators>
separators = "(" | ")" | "<"
| ">" | "@"
| "," | ";" | ":" |
"\" | <">
| "/" | "[" | "]" |
"?" | "="
| "{" | "}" | SP | HT
quoted-string = ( <"> *(qdtext | quoted-pair )
<"> )
qdtext = <any TEXT except <">>
quoted-pair = "\" CHAR
parameter = attribute "=" value
attribute = token
value = token | quoted-string
Each header is represented by a list of key/value pairs. The value for
a
simple token (not part of a parameter) is None. Syntactically
incorrect
headers will not necessarily be parsed as you would want.
This is easier to describe with some examples:
>>> split_header_words(['foo="bar";
port="80,81"; discard, bar=baz'])
[[('foo', 'bar'), ('port',
'80,81'), ('discard', None)], [('bar',
'baz')]]
>>> split_header_words(['text/html;
charset="iso-8859-1"'])
[[('text/html', None), ('charset',
'iso-8859-1')]]
>>> split_header_words([r'Basic
realm="\"foo\bar\""'])
[[('Basic', None), ('realm',
'"foobar"')]]
is\1t,s^[=\s;]*R]N(tHEADER_TOKEN_RERHRpRJtHEADER_QUOTED_VALUE_REtHEADER_ESCAPE_RERctHEADER_VALUE_REtrstripRtappendRat
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header_valuestresultRet orig_texttpairsRMtnametvaluetnon_junkt
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s([\"\\])cCs�g}x�|D]�}g}xq|D]i\}}|dk r|tjd|�sitjd|�}d|}nd||f}n|j|�q
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q
Wdj|�S(s�Do the inverse (almost) of
the conversion done by split_header_words.
Takes a list of lists of (key, value) pairs and produces a single
header
value. Attribute values are quoted if needed.
>>> join_header_words([[("text/plain", None),
("charset", "iso-8859/1")]])
'text/plain; charset="iso-8859/1"'
>>> join_header_words([[("text/plain", None)],
[("charset", "iso-8859/1")]])
'text/plain, charset="iso-8859/1"'
s^\w+$s\\\1s"%s"s%s=%ss; s,
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t| ��} qn|j|| f�q>W|r|sP|jd�n|j|�qqW|S(s5Ad-hoc
parser for Netscape protocol cookie-attributes.
The old Netscape cookie format for Set-Cookie can for instance contain
an unquoted "," in the expires field, so we have to use this
ad-hoc
parser instead of split_header_words.
XXX This may not make the best possible effort to parse all the crap
that Netscape Cookie headers contain. Ronald Tschalar's
HTTPClient
parser is probably better, so could do worse than following that if
this ever gives any trouble.
Currently, this is also used for parsing RFC 2109 cookies.
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% s\.\d+$cCsKtj|�rtS|dkr#tS|ddksC|ddkrGtStS(s*Return
True if text is a host domain
name.R]it.i����(tIPV4_RERHR�R�(Re((s!/usr/lib64/python2.7/cookielib.pytis_HDN�s
cCs�|j�}|j�}||kr(tSt|�s8tS|j|�}|dks_|dkrctS|jd�svtSt|d�s�tStS(s�Return
True if domain A domain-matches domain B, according to RFC 2965.
A and B may be host domain names or IP addresses.
RFC 2965, section 1:
Host names can be specified either as an IP address or a HDN string.
Sometimes we compare one host name with another. (Such comparisons
SHALL
be case-insensitive.) Host A's name domain-matches host B's
if
* their host name strings string-compare equal; or
* A is a HDN string and has the form NB, where N is a non-empty
name string, B has the form .B', and B' is a HDN
string. (So,
x.y.com domain-matches .Y.com but not Y.com.)
Note that domain-match is not a commutative operation: a.b.c.com
domain-matches .c.com, but not the reverse.
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True if text is a sort-of-like a host domain name.
For accepting/blocking domains.
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blocking/accepting domains.
A and B may be host domain names or IP addresses.
R�(RQR�R�R�RxR�(R�R�tinitial_dot((s!/usr/lib64/python2.7/cookielib.pytuser_domain_match1ss:\d+$cCs_|j�}tj|�d}|dkr@|jdd�}ntjd|d�}|j�S(s�Return
request-host, as defined by RFC 2965.
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comparison.
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get_headertcut_port_reRcRQ(trequestturlthost((s!/usr/lib64/python2.7/cookielib.pytrequest_hostFscCsLt|�}}|jd�dkrBtj|�rB|d}n||fS(szReturn
a tuple (request-host, effective request-host name).
As defined by RFC 2965, except both are lowercased.
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reach of host h, as defined by RFC 2965, section 1.
The reach R of a host name H is defined as follows:
* If
- H is the host domain name of a host; and,
- H has the form A.B; and
- A has no embedded (that is, interior) dots; and
- B has at least one embedded dot, or B is the string
"local".
then the reach of H is .B.
* Otherwise, the reach of H is H.
>>> reach("www.acme.com")
'.acme.com'
>>> reach("acme.com")
'acme.com'
>>> reach("acme.local")
'.local'
R�iitlocal(R�R�(thR�tb((s!/usr/lib64/python2.7/cookielib.pytreach�s$cCs3t|�}t|t|j���s+tStSdS(s�
RFC 2965, section 3.3.6:
An unverifiable transaction is to a third-party host if its
request-
host U does not domain-match the reach R of the request-host O in
the
origin transaction.
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This class represents both Netscape and RFC 2965 cookies.
This is deliberately a very simple class. It just holds attributes.
It's
possible to construct Cookie instances that don't comply with the
cookie
standards. CookieJar.make_cookies is the factory function for Cookie
objects -- it deals with cookie parsing, supplying defaults, and
normalising to the representation used in this class. CookiePolicy is
responsible for checking them to see whether they should be accepted
from
and returned to the server.
Note that the port may be present in the headers, but unspecified
("Port"
rather than"Port=80", for example); if this is the case, port
is None.
cCs |dk rt|�}n|dk r6t|�}n|dkr]|tkr]td��n||_||_||_||_||_|j �|_
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port_specified must be
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cBs2eZdZd�Zd�Zd�Zd�ZRS(s Defines which cookies get
accepted from and returned to server.
May also modify cookies, though this is probably a bad idea.
The subclass DefaultCookiePolicy defines the standard rules for
Netscape
and RFC 2965 cookies -- override that if you want a customised policy.
cCs
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arguments should be passed as keyword arguments
only.N((tnetscapetrfc2965trfc2109_as_netscapethide_cookie2t
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domains (as a
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