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#
# @LANG: ruby
# @GENERATED: true
#






class << self
	attr_accessor :_scanner_actions 
	private :_scanner_actions, :_scanner_actions=
end
self._scanner_actions = [
0, 1, 0, 1, 1, 1, 6, 2, 2, 3, 2, 2, 4, 2, 2, 5, 0 , 
]

class << self
	attr_accessor :_scanner_trans_keys 
	private :_scanner_trans_keys, :_scanner_trans_keys=
end
self._scanner_trans_keys = [
1, 0, 0, 1, 1, 0, 0 , 
]

class << self
	attr_accessor :_scanner_char_class 
	private :_scanner_char_class, :_scanner_char_class=
end
self._scanner_char_class = [
0, 1, 0 , 
]

class << self
	attr_accessor :_scanner_index_offsets 
	private :_scanner_index_offsets, :_scanner_index_offsets=
end
self._scanner_index_offsets = [
0, 0, 2, 0 , 
]

class << self
	attr_accessor :_scanner_indicies 
	private :_scanner_indicies, :_scanner_indicies=
end
self._scanner_indicies = [
0, 2, 0 , 
]

class << self
	attr_accessor :_scanner_index_defaults 
	private :_scanner_index_defaults, :_scanner_index_defaults=
end
self._scanner_index_defaults = [
0, 1, 4, 0 , 
]

class << self
	attr_accessor :_scanner_trans_cond_spaces 
	private :_scanner_trans_cond_spaces, :_scanner_trans_cond_spaces=
end
self._scanner_trans_cond_spaces = [
-1, -1, -1, -1, -1, 0 , 
]

class << self
	attr_accessor :_scanner_cond_targs 
	private :_scanner_cond_targs, :_scanner_cond_targs=
end
self._scanner_cond_targs = [
2, 0, 2, 1, 2, 0 , 
]

class << self
	attr_accessor :_scanner_cond_actions 
	private :_scanner_cond_actions, :_scanner_cond_actions=
end
self._scanner_cond_actions = [
7, 0, 10, 5, 13, 0 , 
]

class << self
	attr_accessor :_scanner_to_state_actions 
	private :_scanner_to_state_actions, :_scanner_to_state_actions=
end
self._scanner_to_state_actions = [
0, 1, 0, 0 , 
]

class << self
	attr_accessor :_scanner_from_state_actions 
	private :_scanner_from_state_actions, :_scanner_from_state_actions=
end
self._scanner_from_state_actions = [
0, 3, 0, 0 , 
]

class << self
	attr_accessor :_scanner_eof_trans 
	private :_scanner_eof_trans, :_scanner_eof_trans=
end
self._scanner_eof_trans = [
0, 0, 4, 0 , 
]

class << self
	attr_accessor :_scanner_nfa_targs 
	private :_scanner_nfa_targs, :_scanner_nfa_targs=
end
self._scanner_nfa_targs = [
0, 0 , 
]

class << self
	attr_accessor :_scanner_nfa_offsets 
	private :_scanner_nfa_offsets, :_scanner_nfa_offsets=
end
self._scanner_nfa_offsets = [
0, 0, 0, 0 , 
]

class << self
	attr_accessor :_scanner_nfa_push_actions 
	private :_scanner_nfa_push_actions, :_scanner_nfa_push_actions=
end
self._scanner_nfa_push_actions = [
0, 0 , 
]

class << self
	attr_accessor :_scanner_nfa_pop_trans 
	private :_scanner_nfa_pop_trans, :_scanner_nfa_pop_trans=
end
self._scanner_nfa_pop_trans = [
0, 0 , 
]

class << self
	attr_accessor :scanner_start 
end
self.scanner_start  = 1;

class << self
	attr_accessor :scanner_first_final 
end
self.scanner_first_final  = 1;

class << self
	attr_accessor :scanner_error 
end
self.scanner_error  = 0;

class << self
	attr_accessor :scanner_en_main 
end
self.scanner_en_main  = 1;

def run_machine( data )
	p = 0
	pe = data.length
	eof = data.length
	cs = 0;
	_m = 
	_a = 
	buffer = Array.new
	blen = 0
	ts = 1
	te = 1
	act = 1
	token = 1
	begin
		cs = scanner_start;
		ts = 0;
		te = 0;
		act = 0;
		
	end
	begin
		_trans = 0;
		_have = 0;
		_cont = 1;
		_acts = 0;
		_nacts= 0
		;
		_keys = 0;
		_inds = 0;
		while ( _cont == 1  )
			begin
				if ( cs == 0  )
					_cont = 0;
					
				end
				_have = 0;
				if ( p == pe  )
					begin
						if ( p == eof  )
							begin
								if ( _scanner_eof_trans[cs] > 0  )
									begin
										_trans = _scanner_eof_trans[cs] - 1;
										_have = 1;
										
									end
									
								end
								if ( _have == 0  )
									begin
									
									end
									
								end
								
							end
							
						end
						if ( _have == 0  )
							_cont = 0;
							
						end
						
					end
					
				end
				if ( _cont == 1  )
					begin
						if ( _have == 0  )
							begin
								_acts = _scanner_from_state_actions[cs] ;
								_nacts = _scanner_actions[_acts ];
								_acts += 1;
								while ( _nacts > 0  )
									begin
										case  _scanner_actions[_acts ] 
										when -2 then
										begin
										end
										when 1  then
										begin
											begin
												begin
													ts = p;
													
												end
												
											end
											
											
										end
									end
									_nacts -= 1;
									_acts += 1;
									
								end
								
							end
							_keys = (cs<<1) ;
							_inds = _scanner_index_offsets[cs] ;
							if ( ( data[p ].ord) <= 98 && ( data[p ].ord) >= 97  )
								begin
									_ic = _scanner_char_class[( data[p ].ord) - 97];
									if ( _ic <= _scanner_trans_keys[_keys+1 ]&& _ic >= _scanner_trans_keys[_keys ] )
										_trans = _scanner_indicies[_inds + ( _ic - _scanner_trans_keys[_keys ])  ];
										
										else
										_trans = _scanner_index_defaults[cs];
										
									end
									
								end
								
								else
								begin
									_trans = _scanner_index_defaults[cs];
									
								end
								
							end
							
						end
						
					end
					if ( _cont == 1  )
						begin
							cs = _scanner_cond_targs[_trans];
							if ( _scanner_cond_actions[_trans] != 0  )
								begin
									_acts = _scanner_cond_actions[_trans] ;
									_nacts = _scanner_actions[_acts ];
									_acts += 1;
									while ( _nacts > 0  )
										begin
											case  _scanner_actions[_acts ] 
											when -2 then
											begin
											end
											when 2  then
											begin
												begin
													begin
														te = p+1;
														
													end
													
												end
												
											end
											when 3  then
											begin
												begin
													begin
														act = 1;
														
													end
													
												end
												
											end
											when 4  then
											begin
												begin
													begin
														act = 2;
														
													end
													
												end
												
											end
											when 5  then
											begin
												begin
													begin
														act = 3;
														
													end
													
												end
												
											end
											when 6  then
											begin
												begin
													begin
														case  act  
														when -2 then
														begin
														end
														when 1  then
														begin
															p = ((te))-1;
															begin
																print( "pat1\n" );
																
															end
															
														end
														when 2  then
														begin
															p = ((te))-1;
															begin
																print( "pat2\n" );
																
															end
															
														end
														when 3  then
														begin
															p = ((te))-1;
															begin
																print( "pat3\n" );
																
															end
															
															
														end
													end
													
												end
												
												
											end
											
											
										end
									end
									_nacts -= 1;
									_acts += 1;
									
								end
								
							end
							
						end
						
					end
					_acts = _scanner_to_state_actions[cs] ;
					_nacts = _scanner_actions[_acts ];
					_acts += 1;
					while ( _nacts > 0  )
						begin
							case  _scanner_actions[_acts ] 
							when -2 then
							begin
							end
							when 0  then
							begin
								begin
									begin
										ts = 0;
										
									end
									
								end
								
								
							end
						end
						_nacts -= 1;
						_acts += 1;
						
					end
					
				end
				if ( cs == 0  )
					_cont = 0;
					
				end
				if ( _cont == 1  )
					p += 1;
					
				end
				
			end
			
		end
		
	end
	
end

end

end

end
if cs >= scanner_first_final
puts "ACCEPT"
else
puts "FAIL"
end
end

inp = [
"ab89",
]

inplen = 1

inp.each { |str| run_machine(str) }