mirror of
https://github.com/xcat2/xcat-dep.git
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437 lines
5.9 KiB
C
437 lines
5.9 KiB
C
/* This file can be automatically generated; changes may be lost.
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**
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**
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** CursesCon.c -- non-trivial constants
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**
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** Copyright (c) 1994-2000 William Setzer
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**
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** You may distribute under the terms of either the Artistic License
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** or the GNU General Public License, as specified in the README file.
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*/
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XS(XS_Curses_ACS_BLOCK)
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{
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dXSARGS;
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#ifdef ACS_BLOCK
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{
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int ret = ACS_BLOCK;
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ST(0) = sv_newmortal();
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sv_setiv(ST(0), (IV)ret);
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}
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XSRETURN(1);
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#else
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c_con_not_there("ACS_BLOCK");
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XSRETURN(0);
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#endif
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}
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XS(XS_Curses_ACS_BOARD)
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{
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dXSARGS;
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#ifdef ACS_BOARD
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{
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int ret = ACS_BOARD;
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ST(0) = sv_newmortal();
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sv_setiv(ST(0), (IV)ret);
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}
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XSRETURN(1);
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#else
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c_con_not_there("ACS_BOARD");
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XSRETURN(0);
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#endif
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}
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XS(XS_Curses_ACS_BTEE)
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{
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dXSARGS;
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#ifdef ACS_BTEE
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{
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int ret = ACS_BTEE;
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ST(0) = sv_newmortal();
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sv_setiv(ST(0), (IV)ret);
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}
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XSRETURN(1);
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#else
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c_con_not_there("ACS_BTEE");
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XSRETURN(0);
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#endif
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}
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XS(XS_Curses_ACS_BULLET)
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{
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dXSARGS;
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#ifdef ACS_BULLET
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{
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int ret = ACS_BULLET;
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ST(0) = sv_newmortal();
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sv_setiv(ST(0), (IV)ret);
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}
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XSRETURN(1);
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#else
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c_con_not_there("ACS_BULLET");
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XSRETURN(0);
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#endif
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}
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XS(XS_Curses_ACS_CKBOARD)
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{
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dXSARGS;
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#ifdef ACS_CKBOARD
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{
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int ret = ACS_CKBOARD;
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ST(0) = sv_newmortal();
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sv_setiv(ST(0), (IV)ret);
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}
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XSRETURN(1);
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#else
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c_con_not_there("ACS_CKBOARD");
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XSRETURN(0);
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#endif
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}
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XS(XS_Curses_ACS_DARROW)
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{
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dXSARGS;
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#ifdef ACS_DARROW
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{
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int ret = ACS_DARROW;
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ST(0) = sv_newmortal();
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sv_setiv(ST(0), (IV)ret);
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}
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XSRETURN(1);
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#else
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c_con_not_there("ACS_DARROW");
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XSRETURN(0);
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#endif
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}
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XS(XS_Curses_ACS_DEGREE)
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{
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dXSARGS;
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#ifdef ACS_DEGREE
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{
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int ret = ACS_DEGREE;
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ST(0) = sv_newmortal();
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sv_setiv(ST(0), (IV)ret);
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}
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XSRETURN(1);
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#else
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c_con_not_there("ACS_DEGREE");
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XSRETURN(0);
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#endif
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}
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XS(XS_Curses_ACS_DIAMOND)
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{
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dXSARGS;
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#ifdef ACS_DIAMOND
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{
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int ret = ACS_DIAMOND;
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ST(0) = sv_newmortal();
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sv_setiv(ST(0), (IV)ret);
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}
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XSRETURN(1);
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#else
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c_con_not_there("ACS_DIAMOND");
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XSRETURN(0);
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#endif
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}
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XS(XS_Curses_ACS_HLINE)
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{
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dXSARGS;
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#ifdef ACS_HLINE
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{
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int ret = ACS_HLINE;
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ST(0) = sv_newmortal();
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sv_setiv(ST(0), (IV)ret);
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}
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XSRETURN(1);
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#else
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c_con_not_there("ACS_HLINE");
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XSRETURN(0);
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#endif
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}
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XS(XS_Curses_ACS_LANTERN)
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{
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dXSARGS;
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#ifdef ACS_LANTERN
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{
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int ret = ACS_LANTERN;
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ST(0) = sv_newmortal();
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sv_setiv(ST(0), (IV)ret);
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}
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XSRETURN(1);
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#else
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c_con_not_there("ACS_LANTERN");
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XSRETURN(0);
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#endif
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}
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XS(XS_Curses_ACS_LARROW)
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{
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dXSARGS;
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#ifdef ACS_LARROW
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{
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int ret = ACS_LARROW;
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ST(0) = sv_newmortal();
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sv_setiv(ST(0), (IV)ret);
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}
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XSRETURN(1);
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#else
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c_con_not_there("ACS_LARROW");
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XSRETURN(0);
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#endif
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}
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XS(XS_Curses_ACS_LLCORNER)
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{
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dXSARGS;
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#ifdef ACS_LLCORNER
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{
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int ret = ACS_LLCORNER;
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ST(0) = sv_newmortal();
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sv_setiv(ST(0), (IV)ret);
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}
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XSRETURN(1);
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#else
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c_con_not_there("ACS_LLCORNER");
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XSRETURN(0);
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#endif
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}
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XS(XS_Curses_ACS_LRCORNER)
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{
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dXSARGS;
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#ifdef ACS_LRCORNER
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{
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int ret = ACS_LRCORNER;
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ST(0) = sv_newmortal();
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sv_setiv(ST(0), (IV)ret);
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}
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XSRETURN(1);
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#else
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c_con_not_there("ACS_LRCORNER");
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XSRETURN(0);
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#endif
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}
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XS(XS_Curses_ACS_LTEE)
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{
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dXSARGS;
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#ifdef ACS_LTEE
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{
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int ret = ACS_LTEE;
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ST(0) = sv_newmortal();
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sv_setiv(ST(0), (IV)ret);
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}
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XSRETURN(1);
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#else
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c_con_not_there("ACS_LTEE");
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XSRETURN(0);
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#endif
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}
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XS(XS_Curses_ACS_PLMINUS)
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{
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dXSARGS;
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#ifdef ACS_PLMINUS
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{
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int ret = ACS_PLMINUS;
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ST(0) = sv_newmortal();
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sv_setiv(ST(0), (IV)ret);
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}
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XSRETURN(1);
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#else
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c_con_not_there("ACS_PLMINUS");
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XSRETURN(0);
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#endif
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}
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XS(XS_Curses_ACS_PLUS)
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{
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dXSARGS;
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#ifdef ACS_PLUS
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{
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int ret = ACS_PLUS;
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ST(0) = sv_newmortal();
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sv_setiv(ST(0), (IV)ret);
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}
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XSRETURN(1);
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#else
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c_con_not_there("ACS_PLUS");
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XSRETURN(0);
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#endif
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}
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XS(XS_Curses_ACS_RARROW)
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{
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dXSARGS;
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#ifdef ACS_RARROW
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{
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int ret = ACS_RARROW;
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ST(0) = sv_newmortal();
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sv_setiv(ST(0), (IV)ret);
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}
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XSRETURN(1);
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#else
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c_con_not_there("ACS_RARROW");
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XSRETURN(0);
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#endif
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}
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XS(XS_Curses_ACS_RTEE)
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{
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dXSARGS;
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#ifdef ACS_RTEE
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{
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int ret = ACS_RTEE;
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ST(0) = sv_newmortal();
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sv_setiv(ST(0), (IV)ret);
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}
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XSRETURN(1);
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#else
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c_con_not_there("ACS_RTEE");
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XSRETURN(0);
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#endif
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}
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XS(XS_Curses_ACS_S1)
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{
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dXSARGS;
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#ifdef ACS_S1
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{
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int ret = ACS_S1;
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ST(0) = sv_newmortal();
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sv_setiv(ST(0), (IV)ret);
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}
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XSRETURN(1);
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#else
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c_con_not_there("ACS_S1");
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XSRETURN(0);
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#endif
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}
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XS(XS_Curses_ACS_S9)
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{
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dXSARGS;
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#ifdef ACS_S9
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{
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int ret = ACS_S9;
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ST(0) = sv_newmortal();
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sv_setiv(ST(0), (IV)ret);
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}
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XSRETURN(1);
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#else
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c_con_not_there("ACS_S9");
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XSRETURN(0);
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#endif
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}
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XS(XS_Curses_ACS_TTEE)
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{
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dXSARGS;
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#ifdef ACS_TTEE
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{
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int ret = ACS_TTEE;
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ST(0) = sv_newmortal();
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sv_setiv(ST(0), (IV)ret);
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}
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XSRETURN(1);
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#else
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c_con_not_there("ACS_TTEE");
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XSRETURN(0);
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#endif
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}
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XS(XS_Curses_ACS_UARROW)
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{
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dXSARGS;
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#ifdef ACS_UARROW
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{
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int ret = ACS_UARROW;
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ST(0) = sv_newmortal();
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sv_setiv(ST(0), (IV)ret);
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}
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XSRETURN(1);
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#else
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c_con_not_there("ACS_UARROW");
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XSRETURN(0);
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#endif
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}
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XS(XS_Curses_ACS_ULCORNER)
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{
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dXSARGS;
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#ifdef ACS_ULCORNER
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{
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int ret = ACS_ULCORNER;
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ST(0) = sv_newmortal();
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sv_setiv(ST(0), (IV)ret);
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}
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XSRETURN(1);
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#else
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c_con_not_there("ACS_ULCORNER");
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XSRETURN(0);
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#endif
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}
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XS(XS_Curses_ACS_URCORNER)
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{
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dXSARGS;
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#ifdef ACS_URCORNER
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{
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int ret = ACS_URCORNER;
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ST(0) = sv_newmortal();
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sv_setiv(ST(0), (IV)ret);
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}
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XSRETURN(1);
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#else
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c_con_not_there("ACS_URCORNER");
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XSRETURN(0);
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#endif
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}
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XS(XS_Curses_ACS_VLINE)
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{
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dXSARGS;
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#ifdef ACS_VLINE
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{
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int ret = ACS_VLINE;
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ST(0) = sv_newmortal();
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sv_setiv(ST(0), (IV)ret);
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}
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XSRETURN(1);
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#else
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c_con_not_there("ACS_VLINE");
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XSRETURN(0);
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#endif
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}
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