GIF89a=( õ' 7IAXKgNgYvYx\%wh…hŽth%ˆs%—x¨}9®Œ©€&©‰%¶†(¹–.¹5·œD¹&Çš)ÇŸ5ǘ;Í£*È¡&Õ²)ׯ7×µ<Ñ»4ï°3ø‘HÖ§KͯT÷¨Yÿšqÿ»qÿÔFØ !ù ' !ÿ NETSCAPE2.0 , =( þÀ“pH,È¤rÉl:ŸÐ¨tJ­Z¯Ø¬vËíz¿à°xL.›Ïè´zÍn»ßð¸|N¯Ûïø¼~Ïïûÿ€‚ƒ„…†‡ˆ‰Š‹ŒŽ‘’“”•–—˜™š›œžŸ ¡¢£¤¥¦§gª«ªE¯°¨¬ª±²Œ¹º¹E¾­”´ÂB¶¯ §Åȸ»ÑD¾¿Á•ÄÅ®° ÝH¾ÒLÀÆDÙ«D¶BÝïðÀ¾DÑÑÔTÌÍíH òGö¨A RÎڐ |¥ ٭&ºìE8œ¹kGÔAÞpx­a¶­ã R2XB®åE8I€Õ6Xî:vT)äžþÀq¦è³¥ì仕F~%xñ  4#ZÔ‰O|-4Bs‘X:= QÉ œš lºÒyXJŠGȦ|s hÏíK–3l7·B|¥$'7Jީܪ‰‡àá”Dæn=Pƒ ¤Òëí‰`䌨ljóá¯Éüv>á–Á¼5 ½.69ûϸd«­ºÀûnlv©‹ªîf{¬ÜãPbŸ  l5‘ޝpß ´ ˜3aÅùäI«O’ý·‘áÞ‡˜¾Æ‚ÙÏiÇÿ‹Àƒ #öó)pâš Þ½ ‘Ý{ó)vmÞü%D~ 6f s}ŃƒDØW Eþ`‡þ À…L8xá†ç˜{)x`X/> Ì}mø‚–RØ‘*|`D=‚Ø_ ^ð5 !_…'aä“OÚ—7âcð`D”Cx`ÝÂ¥ä‹éY¹—F¼¤¥Š?¡Õ™ n@`} lď’ÄÉ@4>ñd œ à‘vÒxNÃ×™@žd=ˆgsžG±æ ´²æud &p8Qñ)ˆ«lXD©øÜéAžHìySun jª×k*D¤LH] †¦§C™Jä–´Xb~ʪwStŽ6K,°£qÁœ:9ت:¨þªl¨@¡`‚ûÚ ».Û¬¯t‹ÆSÉ[:°=Š‹„‘Nåû”Ìî{¿ÂA ‡Rà›ÀÙ6úë°Ÿð0Ä_ ½;ÃϱîÉì^ÇÛÇ#Ëë¼ôº!±Ä˜íUîÅÇ;0L1óÁµö«p% AÀºU̬ݵ¼á%霼€‡¯Á~`ÏG¯»À× ­²± =4ªnpð3¾¤³¯­ü¾¦îuÙuµÙ®|%2ÊIÿür¦#0·ÔJ``8È@S@5ê¢ ö×Þ^`8EÜ]ý.뜃Âç 7 ú ȉÞj œ½Dç zý¸iþœÑÙûÄë!ˆÞÀl§Ïw‹*DçI€nEX¯¬¼ &A¬Go¼QföõFç°¯;é¦÷îŽêJ°îúôF5¡ÌQ|îúöXªæ»TÁÏyñêï]ê² o óÎC=öõ›ÒÓPB@ D×½œä(>èCÂxŽ`±«Ÿ–JЀ»Û á¤±p+eE0`ëŽ`A Ú/NE€Ø†À9‚@¤à H½7”à‡%B‰`Àl*ƒó‘–‡8 2ñ%¸ —€:Ù1Á‰E¸àux%nP1ð!‘ðC)¾P81lÑɸF#ˆ€{´âé°ÈB„0>±û °b¡Š´±O‚3È–Ù()yRpbµ¨E.Z‘D8ÊH@% òŒx+%Ù˜Æcü »¸˜fõ¬b·d`Fê™8èXH"ÉÈ-±|1Ô6iI, 2““¬$+](A*jÐ QTÂo‰.ÛU슬Œã„Ž`¯SN¡–¶Äåyše¯ª’­¬‚´b¦Éož œ)åyâ@Ì®3 ÎtT̉°&Ø+žLÀf"Ø-|žçÔ>‡Ðv¦Ðžì\‚ Q1)Ž@Žh#aP72”ˆ™¨$‚ !ù " , =( …7IAXG]KgNgYvYxR"k\%w]'}hŽth%ˆg+ˆs%—r.—m3šx3˜x¨}9®€&©€+¨‡7§‰%¶†(¹–.¹œD¹&ǘ;Í•&ײ)×»4ïÌ6ò§KÍ þ@‘pH,È¤rÉl:ŸÐ¨tJ­Z¯Ø¬vËíz¿à°xL.›Ïè´zÍn»ßð¸|N¯Ûïø¼~Ïïûÿ€‚ƒ„…†‡ˆ‰Š‹ŒŽ‘’“”•–—˜™š›œžŸ ¡¢£¤¥¦§g «¬ E ±± ¨­¶°ººE Á´”·®C¬²§Ç¶Œ»ÓDÃÕƷ¯Ê±H½ºM×ÁGÚ¬D¶BËÁ½î½DÓôTÏÛßîG»ôõC×CÌ l&âž:'òtU³6ɹ#·Ø)€'Ü.6±&ëÍÈ» K(8p0N?!æ2"ÛˆNIJX>R¼ÐO‚M '¡¨2¸*Ÿþ>#n↠å@‚<[:¡Iïf’ ¤TÚ˘CdbÜÙ“[«ŽEú5MBo¤×@€`@„€Êt W-3 ¶Ÿ¡BíêäjIÝ…Eò9[T…$íêﯧ„…•s»Óȳ¹€ÅÚdc®UUρ#±Ùïldj?´í¼²`\ŽÁðÞu|3'ÖŒ]ë6 ¶S#²‡˜FKLÈ *N E´‘áäŠ$˜›eÄYD„ºq«.è촁ƒs \-ÔjA 9²õ÷å- üúM[Âx(ís÷ì®x€|í¡Ù’p¦‚ ŽkÛTÇDpE@WÜ ²Ç]kŠ1¨ þ€·Yb ÓÁ‰l°*n0 ç™—žzBdОu¾7ĉBl€â‰-ºx~|UåU‰  h*Hœ|e"#"?vpÄiŠe6^ˆ„+qâŠm8 #VÇá ‘å–ÄV„œ|Аè•m"сœn|@›U¶ÆÎž—Špb¥G¨ED”€±Úê2FÌIç? >Éxå Œ± ¡¤„%‘žjŸ‘ꄯ<Ìaà9ijÐ2˜D¦È&›†Z`‚å]wþ¼Â:ç6àB¤7eFJ|õÒ§Õ,¨äàFÇ®cS·Ê¶+B°,‘Þ˜ºNûãØ>PADÌHD¹æž«ÄÀnÌ¥}­#Ë’ë QÀÉSÌÂÇ2ÌXÀ{æk²lQÁ2«ÊðÀ¯w|2Í h‹ÄÂG€,m¾¶ë3ÐÙ6-´ÅE¬L°ÆIij*K½ÀÇqï`DwVÍQXœÚÔpeœ±¬Ñ q˜§Tœ½µƒ°Œìu Â<¶aØ*At¯lmEØ ü ôÛN[P1ÔÛ¦­±$ÜÆ@`ùåDpy¶yXvCAyåB`ŽD¶ 0QwG#¯ æš[^Äþ $ÀÓÝǦ{„L™[±úKÄgÌ;ï£S~¹ìGX.ôgoT.»åˆ°ùŸûù¡?1zö¦Ÿž:ÅgÁ|ìL¹ „®£œŠ‚à0œ]PÁ^p F<"•ç?!,ñ‡N4—…PÄ Á„ö¨Û:Tè@hÀ‹%táÿ:ø-žI<`þ‹p I….)^ 40D#p@ƒj4–؀:²‰1Øâr˜¼F2oW¼#Z†;$Q q” ‘ ÂK¦ñNl#29 !’F@¥Bh·ᏀL!—XFóLH‘Kh¤.«hE&JòG¨¥<™WN!€ÑÙÚˆY„@†>Œž19J" 2,/ &.GXB%ÌRÈ9B6¹W]’î×ÔW¥’IÎ$ ñ‹ÓŒE8YÆ ¼³™ñA5“à®Q.aŸB€&Ø©³ JÁ—! ¦t)K%tœ-¦JF bòNMxLôþ)ÐR¸Ð™‘ èÝ6‘O!THÌ„HÛ ‰ !ù ) , =( …AXKgNgYvYxR"k\%wh…hŽh%ˆg+ˆs%—r.—x3˜x¨}9®€&©€+¨Œ,©‡7§‰%¶†(¹–.¹5·&Çš)ǘ;Í•&×£*Ȳ)ׯ7×»4ï°3øÌ6ò‘HÖ§KÍ»Hó¯T÷¨Yÿ»qÿÇhÿ þÀ”pH,È¤rÉl:ŸÐ¨tJ­Z¯Ø¬vËíz¿à°xL.›Ïè´zÍn»ßð¸|N¯Ûïø¼~Ïïûÿ€‚ƒ„…†‡ˆ‰Š‹ŒŽ‘’“”•–—˜™š›œžŸ ¡¢£¤¥¦§g ª« E$±²¨ª­ · °²½$E$ÂÕ««D· Í ¿¦Ç¶¸ÌŒ¾³CÃÅÆ E ééH½MÛÂGâªD­ çBêêϾD²ÒaÀà€Š1r­ðÓ¤ ÔožzU!L˜C'¾yW½UGtäÇïÙllê0×àÂuGþ)AÀs[þ·xì ÁxO%ƒûX2ó—  P£n›R/¡ÑšHše+êDm?# —‘Ç£6¡8íJ¡ŸâDiäªM¥Ö„ôj“¬¹£5oQ7°- <‡ *´lãÓŒ2r/a!l)dÈ A™ÈE¢ôÔ͆…ð ;Ö˜c ¡%ß‚’Ùˆâ¸b½—pe~C"BíëÚHïeF2§æŠ8qb t_`urŠeü wÅu3êæPv§h•"ß`íÍxçLĹÜÖ3á  ~Öº“®›¸ÏMDfJÙ °„ÛµáWõ%§œ‚à©–‚X ÓØ)@®Ñ›Eþ´wëuÅSxb8y\mÖzœ¥§ZbºE—ÂLªÌw!y(>¡™wú=Ç|ÅÝs¢d €CÁW)HÜcC$€L Ä7„r.á\{)@ð` @ äXÈ$PD” `šaG:§æˆOˆ72EÐamn]ù"ŒcÊxÑŒ° &dR8`g«iÙŸLR!¦P …d’ä¡“¦ðÎTƒ¦ià|À _ ¥ Qi#¦Šg›Æ ›noMµ ›V ã£)p ç£ÎW…š=Âeªk§†j„ ´®1ß²sÉxéW«jšl|0¯B0Û, \jÛ´›6±¬¶C ÛíWþï|ëÙ‹¸ñzĸV {ì;Ýñn¼òVˆm³I¼³.Ðã¤PN¥ ²µ¼„µCã+¹ÍByî£Ñ¾HŸ›ëê 7ìYÆFTk¨SaoaY$Dµœìï¿Ã29RÈkt Çïfñ ÇÒ:ÀÐSp¹3ÇI¨â¥DZÄ ü9Ïýögñ½­uÔ*3)O‘˜Ö[_hv ,àî×Et Ÿé¶BH€ Õ[ü±64M@ÔSÌM7dÐl5-ÄÙU܍´©zߌ3Ô€3ž„ „ ¶ÛPô½5×g› êÚ˜kN„Ý…0Îj4€Ìë°“#{þÕ3S2çKÜ'ợlø¼Ú2K{° {Û¶?žm𸧠ËI¼nEò='êüóºè^üæÃ_Û=°óž‚ì#Oý¿Í'¡½áo..ÏYìnüñCœO±Áa¿¢Kô½o,üÄËbö²çºíï{ËC Ú— "”Ï{ËK ÍÒw„õ±Oz dÕ¨à:$ ƒô—«v»] A#ð «€¿šéz)Rx׿ˆ¥‚d``èw-îyÏf×K!ð€þ­Ð|ìPľ„=Ì`ý(f” 'Pa ¥ÐBJa%Ðâf§„%Š¡}FàáÝ×6>ÉäŠG"éŽè=ø!oа^FP¼Ø©Q„ÀCÙÁ`(Ž\ÄÝ® ©Â$<n@dÄ E#ììUÒI! ‚#lù‹`k¦ÐÇ'Rró’ZýNBÈMF Í[¤+‹ðɈ-áwj¨¥þ8¾rá ,VÂh„"|½œ=×G_¦Ñ™EØ 0i*%̲˜Æda0mV‚k¾)›;„&6 p>ÓjK “¦Ç# âDÂ:ûc?:R Ó¬fÞéI-Ì“•Ã<ä=™Ï7˜3œ¨˜c2ŒW ,ˆ”8(T™P‰F¡Jhç"‚ ; 403WebShell
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"""
    pygments.formatters.terminal256
    ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~

    Formatter for 256-color terminal output with ANSI sequences.

    RGB-to-XTERM color conversion routines adapted from xterm256-conv
    tool (http://frexx.de/xterm-256-notes/data/xterm256-conv2.tar.bz2)
    by Wolfgang Frisch.

    Formatter version 1.

    :copyright: Copyright 2006-2023 by the Pygments team, see AUTHORS.
    :license: BSD, see LICENSE for details.
"""

# TODO:
#  - Options to map style's bold/underline/italic/border attributes
#    to some ANSI attrbutes (something like 'italic=underline')
#  - An option to output "style RGB to xterm RGB/index" conversion table
#  - An option to indicate that we are running in "reverse background"
#    xterm. This means that default colors are white-on-black, not
#    black-on-while, so colors like "white background" need to be converted
#    to "white background, black foreground", etc...

from pip._vendor.pygments.formatter import Formatter
from pip._vendor.pygments.console import codes
from pip._vendor.pygments.style import ansicolors


__all__ = ['Terminal256Formatter', 'TerminalTrueColorFormatter']


class EscapeSequence:
    def __init__(self, fg=None, bg=None, bold=False, underline=False, italic=False):
        self.fg = fg
        self.bg = bg
        self.bold = bold
        self.underline = underline
        self.italic = italic

    def escape(self, attrs):
        if len(attrs):
            return "\x1b[" + ";".join(attrs) + "m"
        return ""

    def color_string(self):
        attrs = []
        if self.fg is not None:
            if self.fg in ansicolors:
                esc = codes[self.fg.replace('ansi','')]
                if ';01m' in esc:
                    self.bold = True
                # extract fg color code.
                attrs.append(esc[2:4])
            else:
                attrs.extend(("38", "5", "%i" % self.fg))
        if self.bg is not None:
            if self.bg in ansicolors:
                esc = codes[self.bg.replace('ansi','')]
                # extract fg color code, add 10 for bg.
                attrs.append(str(int(esc[2:4])+10))
            else:
                attrs.extend(("48", "5", "%i" % self.bg))
        if self.bold:
            attrs.append("01")
        if self.underline:
            attrs.append("04")
        if self.italic:
            attrs.append("03")
        return self.escape(attrs)

    def true_color_string(self):
        attrs = []
        if self.fg:
            attrs.extend(("38", "2", str(self.fg[0]), str(self.fg[1]), str(self.fg[2])))
        if self.bg:
            attrs.extend(("48", "2", str(self.bg[0]), str(self.bg[1]), str(self.bg[2])))
        if self.bold:
            attrs.append("01")
        if self.underline:
            attrs.append("04")
        if self.italic:
            attrs.append("03")
        return self.escape(attrs)

    def reset_string(self):
        attrs = []
        if self.fg is not None:
            attrs.append("39")
        if self.bg is not None:
            attrs.append("49")
        if self.bold or self.underline or self.italic:
            attrs.append("00")
        return self.escape(attrs)


class Terminal256Formatter(Formatter):
    """
    Format tokens with ANSI color sequences, for output in a 256-color
    terminal or console.  Like in `TerminalFormatter` color sequences
    are terminated at newlines, so that paging the output works correctly.

    The formatter takes colors from a style defined by the `style` option
    and converts them to nearest ANSI 256-color escape sequences. Bold and
    underline attributes from the style are preserved (and displayed).

    .. versionadded:: 0.9

    .. versionchanged:: 2.2
       If the used style defines foreground colors in the form ``#ansi*``, then
       `Terminal256Formatter` will map these to non extended foreground color.
       See :ref:`AnsiTerminalStyle` for more information.

    .. versionchanged:: 2.4
       The ANSI color names have been updated with names that are easier to
       understand and align with colornames of other projects and terminals.
       See :ref:`this table <new-ansi-color-names>` for more information.


    Options accepted:

    `style`
        The style to use, can be a string or a Style subclass (default:
        ``'default'``).

    `linenos`
        Set to ``True`` to have line numbers on the terminal output as well
        (default: ``False`` = no line numbers).
    """
    name = 'Terminal256'
    aliases = ['terminal256', 'console256', '256']
    filenames = []

    def __init__(self, **options):
        Formatter.__init__(self, **options)

        self.xterm_colors = []
        self.best_match = {}
        self.style_string = {}

        self.usebold = 'nobold' not in options
        self.useunderline = 'nounderline' not in options
        self.useitalic = 'noitalic' not in options

        self._build_color_table()  # build an RGB-to-256 color conversion table
        self._setup_styles()  # convert selected style's colors to term. colors

        self.linenos = options.get('linenos', False)
        self._lineno = 0

    def _build_color_table(self):
        # colors 0..15: 16 basic colors

        self.xterm_colors.append((0x00, 0x00, 0x00))  # 0
        self.xterm_colors.append((0xcd, 0x00, 0x00))  # 1
        self.xterm_colors.append((0x00, 0xcd, 0x00))  # 2
        self.xterm_colors.append((0xcd, 0xcd, 0x00))  # 3
        self.xterm_colors.append((0x00, 0x00, 0xee))  # 4
        self.xterm_colors.append((0xcd, 0x00, 0xcd))  # 5
        self.xterm_colors.append((0x00, 0xcd, 0xcd))  # 6
        self.xterm_colors.append((0xe5, 0xe5, 0xe5))  # 7
        self.xterm_colors.append((0x7f, 0x7f, 0x7f))  # 8
        self.xterm_colors.append((0xff, 0x00, 0x00))  # 9
        self.xterm_colors.append((0x00, 0xff, 0x00))  # 10
        self.xterm_colors.append((0xff, 0xff, 0x00))  # 11
        self.xterm_colors.append((0x5c, 0x5c, 0xff))  # 12
        self.xterm_colors.append((0xff, 0x00, 0xff))  # 13
        self.xterm_colors.append((0x00, 0xff, 0xff))  # 14
        self.xterm_colors.append((0xff, 0xff, 0xff))  # 15

        # colors 16..232: the 6x6x6 color cube

        valuerange = (0x00, 0x5f, 0x87, 0xaf, 0xd7, 0xff)

        for i in range(217):
            r = valuerange[(i // 36) % 6]
            g = valuerange[(i // 6) % 6]
            b = valuerange[i % 6]
            self.xterm_colors.append((r, g, b))

        # colors 233..253: grayscale

        for i in range(1, 22):
            v = 8 + i * 10
            self.xterm_colors.append((v, v, v))

    def _closest_color(self, r, g, b):
        distance = 257*257*3  # "infinity" (>distance from #000000 to #ffffff)
        match = 0

        for i in range(0, 254):
            values = self.xterm_colors[i]

            rd = r - values[0]
            gd = g - values[1]
            bd = b - values[2]
            d = rd*rd + gd*gd + bd*bd

            if d < distance:
                match = i
                distance = d
        return match

    def _color_index(self, color):
        index = self.best_match.get(color, None)
        if color in ansicolors:
            # strip the `ansi/#ansi` part and look up code
            index = color
            self.best_match[color] = index
        if index is None:
            try:
                rgb = int(str(color), 16)
            except ValueError:
                rgb = 0

            r = (rgb >> 16) & 0xff
            g = (rgb >> 8) & 0xff
            b = rgb & 0xff
            index = self._closest_color(r, g, b)
            self.best_match[color] = index
        return index

    def _setup_styles(self):
        for ttype, ndef in self.style:
            escape = EscapeSequence()
            # get foreground from ansicolor if set
            if ndef['ansicolor']:
                escape.fg = self._color_index(ndef['ansicolor'])
            elif ndef['color']:
                escape.fg = self._color_index(ndef['color'])
            if ndef['bgansicolor']:
                escape.bg = self._color_index(ndef['bgansicolor'])
            elif ndef['bgcolor']:
                escape.bg = self._color_index(ndef['bgcolor'])
            if self.usebold and ndef['bold']:
                escape.bold = True
            if self.useunderline and ndef['underline']:
                escape.underline = True
            if self.useitalic and ndef['italic']:
                escape.italic = True
            self.style_string[str(ttype)] = (escape.color_string(),
                                             escape.reset_string())

    def _write_lineno(self, outfile):
        self._lineno += 1
        outfile.write("%s%04d: " % (self._lineno != 1 and '\n' or '', self._lineno))

    def format(self, tokensource, outfile):
        return Formatter.format(self, tokensource, outfile)

    def format_unencoded(self, tokensource, outfile):
        if self.linenos:
            self._write_lineno(outfile)

        for ttype, value in tokensource:
            not_found = True
            while ttype and not_found:
                try:
                    # outfile.write( "<" + str(ttype) + ">" )
                    on, off = self.style_string[str(ttype)]

                    # Like TerminalFormatter, add "reset colors" escape sequence
                    # on newline.
                    spl = value.split('\n')
                    for line in spl[:-1]:
                        if line:
                            outfile.write(on + line + off)
                        if self.linenos:
                            self._write_lineno(outfile)
                        else:
                            outfile.write('\n')

                    if spl[-1]:
                        outfile.write(on + spl[-1] + off)

                    not_found = False
                    # outfile.write( '#' + str(ttype) + '#' )

                except KeyError:
                    # ottype = ttype
                    ttype = ttype.parent
                    # outfile.write( '!' + str(ottype) + '->' + str(ttype) + '!' )

            if not_found:
                outfile.write(value)

        if self.linenos:
            outfile.write("\n")



class TerminalTrueColorFormatter(Terminal256Formatter):
    r"""
    Format tokens with ANSI color sequences, for output in a true-color
    terminal or console.  Like in `TerminalFormatter` color sequences
    are terminated at newlines, so that paging the output works correctly.

    .. versionadded:: 2.1

    Options accepted:

    `style`
        The style to use, can be a string or a Style subclass (default:
        ``'default'``).
    """
    name = 'TerminalTrueColor'
    aliases = ['terminal16m', 'console16m', '16m']
    filenames = []

    def _build_color_table(self):
        pass

    def _color_tuple(self, color):
        try:
            rgb = int(str(color), 16)
        except ValueError:
            return None
        r = (rgb >> 16) & 0xff
        g = (rgb >> 8) & 0xff
        b = rgb & 0xff
        return (r, g, b)

    def _setup_styles(self):
        for ttype, ndef in self.style:
            escape = EscapeSequence()
            if ndef['color']:
                escape.fg = self._color_tuple(ndef['color'])
            if ndef['bgcolor']:
                escape.bg = self._color_tuple(ndef['bgcolor'])
            if self.usebold and ndef['bold']:
                escape.bold = True
            if self.useunderline and ndef['underline']:
                escape.underline = True
            if self.useitalic and ndef['italic']:
                escape.italic = True
            self.style_string[str(ttype)] = (escape.true_color_string(),
                                             escape.reset_string())

Youez - 2016 - github.com/yon3zu
LinuXploit