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(*
* @LANG: ocaml
*)
let id x = x
let fail fmt = Printf.ksprintf failwith fmt
let pr fmt = Printf.ksprintf print_endline fmt
let failed fmt = Printf.ksprintf (fun s -> prerr_endline s; exit 1) fmt
let test' show f x y = if f x <> y then failed "FAILED: test %S" (show x)
let case = ref 0
let test f x y = incr case; if f x <> y then failed "FAILED: case %d" !case
let error f x = match try Some (f x) with _ -> None with Some _ -> failed "FAILED: fail %S" x | None -> ()
let _cond_trans_keys : int array = [|
1; 0; 0; 0; 0; 1; 4; 4; 3; 4; 0 ;
|]
let _cond_char_class : int array = [|
0; 0; 0; 0; 0; 0; 0; 0; 0; 0; 1; 2; 2; 2; 2; 2; 2; 2; 2; 2; 2; 2; 2; 2; 2; 2; 2; 2; 2; 2; 2; 2; 2; 2; 2; 2; 2; 2; 2; 2; 2; 2; 2; 2; 2; 2; 2; 2; 2; 3; 3; 3; 4; 3; 3; 3; 3; 3; 3; 3; 3; 3; 3; 3; 3; 3; 3; 3; 3; 3; 3; 3; 3; 3; 3; 0 ;
|]
let _cond_index_offsets : int array = [|
0; 0; 1; 3; 4; 0 ;
|]
let _cond_indicies : int array = [|
0; 0; 2; 3; 4; 5; 0 ;
|]
let _cond_index_defaults : int array = [|
0; 1; 1; 1; 1; 0 ;
|]
let _cond_trans_cond_spaces : int array = [|
-1; -1; -1; -1; 0; 0; 0 ;
|]
let _cond_trans_offsets : int array = [|
0; 1; 2; 3; 4; 6; 0 ;
|]
let _cond_cond_targs : int array = [|
2; 0; 4; 1; 0; 4; 1; 4; 0 ;
|]
let _cond_cond_actions : int array = [|
0; 0; 0; 0; 0; 1; 0; 1; 0 ;
|]
let _cond_nfa_targs : int array = [|
0; 0 ;
|]
let _cond_nfa_offsets : int array = [|
0; 0; 0; 0; 0; 0 ;
|]
let _cond_nfa_push_actions : int array = [|
0; 0 ;
|]
let _cond_nfa_pop_trans : int array = [|
0; 0 ;
|]
let cond_start : int = 3
let cond_first_final : int = 3
let cond_error : int = 0
let cond_en_main : int = 3
let fail fmt = Printf.ksprintf failwith fmt
let run data n =
let cs = ref 0 in
let p = ref 0 in
let pe = ref (String.length data) in
let i = ref 0 in
begin
cs := cond_start;
end;
begin
let _cpc : int ref = ref 0 in
let _trans : int ref = ref 0 in
let _have : int ref = ref 0 in
let _cont : int ref = ref 1 in
let _cond : int ref = ref 0 in
let _keys : int ref = ref 0 in
let _inds : int ref = ref 0 in
while _cont.contents= 1 do
begin
if cs.contents= 0 then
begin
_cont := 0;
end
;_have := 0;
if p.contents= pe.contents then
begin
begin
if _have.contents= 0 then
begin
_cont := 0;
end
;
end;
end
;if _cont.contents= 1 then
begin
begin
if _have.contents= 0 then
begin
begin
_keys := ( cs.contents lsl 1 );
_inds := _cond_index_offsets.(cs.contents);
if ( Char.code data.[p.contents] )<= 122 && ( Char.code data.[p.contents] )>= 48 then
begin
begin
let _ic : int ref = ref _cond_char_class.(( Char.code data.[p.contents] )- 48) in
if _ic.contents<= _cond_trans_keys.( _keys.contents+1 )&& _ic.contents>= _cond_trans_keys.( _keys.contents ) then
begin
_trans := _cond_indicies.( _inds.contents+ ( _ic.contents- _cond_trans_keys.( _keys.contents ) ) );
end
else
begin
_trans := _cond_index_defaults.(cs.contents);
end
;
end;
end
else
begin
begin
_trans := _cond_index_defaults.(cs.contents);
end;
end
;_cond := _cond_trans_offsets.(_trans.contents);
_cpc := 0;
if _cond_trans_cond_spaces.(_trans.contents) = 0 then
begin
if (i < n ) then
begin
_cpc := _cpc.contents + 1;
end
;
end
;
_cond := _cond.contents + _cpc.contents;
end;
end
;if _cont.contents= 1 then
begin
begin
cs := _cond_cond_targs.(_cond.contents);
if _cond_cond_actions.(_cond.contents) = 1 then
begin
begin
i := i.contents + 1
end;
end
;
if cs.contents= 0 then
begin
_cont := 0;
end
;if _cont.contents= 1 then
begin
p := p.contents + 1;
end
;
end;
end
;
end;
end
;
end;
done;
end;
if !cs < cond_first_final then
print_string "fail\n"
else
print_string "ok\n"
let () =
run "d2:abc" ( ref 1 );
run "d2:abc" ( ref 2 );
run "d2:abc" ( ref 3 );
run "d2:abc" ( ref 4 );
|