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type Id is
(Output_Ada_Dict,
Dictionary_Input,
Decode,
Encode,
Output_Hash,
Help,
Sx_Dict_Output,
Stat_Output,
No_Stat_Output,
Word_List_Input,
Sx_Output,
No_Sx_Output);
end Options;
package Getopt is new Natools.Getopt_Long (Options.Id);
type Callback is new Getopt.Handlers.Callback with record
Display_Help : Boolean := False;
Need_Dictionary : Boolean := False;
Stat_Output : Boolean := False;
Sx_Output : Boolean := False;
Sx_Dict_Output : Boolean := False;
Action : Actions.Enum := Actions.Nothing;
Ada_Dictionary : Ada.Strings.Unbounded.Unbounded_String;
Hash_Package : Ada.Strings.Unbounded.Unbounded_String;
Dict_Source : Dict_Sources.Enum := Dict_Sources.S_Expression;
end record;
overriding procedure Option
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Handler.Sx_Output := True;
when Options.Dictionary_Input =>
Handler.Dict_Source := Dict_Sources.S_Expression;
when Options.Word_List_Input =>
Handler.Dict_Source := Dict_Sources.Word_List;
when Options.Sx_Dict_Output =>
Handler.Need_Dictionary := True;
Handler.Sx_Dict_Output := True;
end case;
end Option;
function Getopt_Config return Getopt.Configuration is
use Getopt;
use Options;
R : Getopt.Configuration;
begin
R.Add_Option ("ada-dict", 'A', Optional_Argument, Output_Ada_Dict);
R.Add_Option ("decode", 'd', No_Argument, Decode);
R.Add_Option ("dict", 'D', No_Argument, Dictionary_Input);
R.Add_Option ("encode", 'e', No_Argument, Encode);
R.Add_Option ("help", 'h', No_Argument, Help);
R.Add_Option ("hash-pkg", 'H', Required_Argument, Output_Hash);
R.Add_Option ("sx-dict", 'L', No_Argument, Sx_Dict_Output);
R.Add_Option ("stats", 's', No_Argument, Stat_Output);
R.Add_Option ("no-stats", 'S', No_Argument, No_Stat_Output);
R.Add_Option ("word-list", 'w', No_Argument, Word_List_Input);
R.Add_Option ("s-expr", 'x', No_Argument, Sx_Output);
R.Add_Option ("no-s-expr", 'X', No_Argument, No_Sx_Output);
return R;
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Put_Line (Output, Indent & Indent
& "Read dictionary directly in input S-expression (default)");
when Options.Word_List_Input =>
New_Line (Output);
Put_Line (Output, Indent & Indent
& "Compute dictionary from word list in input S-expression");
when Options.Sx_Dict_Output =>
New_Line (Output);
Put_Line (Output, Indent & Indent
& "Output the dictionary as a S-expression");
end case;
end loop;
end Print_Help;
function To_Dictionary
(Handler : in Callback'Class;
Input : in Natools.Smaz.Tools.String_Lists.List)
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Counter : Natools.Smaz.Tools.Word_Counter;
begin
for S of Input loop
Natools.Smaz.Tools.Add_Substrings (Counter, S, 1, 3);
end loop;
return Natools.Smaz.Tools.To_Dictionary
(Natools.Smaz.Tools.Most_Common_Words (Counter, 254),
(Natools.Smaz.Tools.Simple_Dictionary (Counter, 254),
True);
end;
end case;
end To_Dictionary;
Opt_Config : constant Getopt.Configuration := Getopt_Config;
Handler : Callback;
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if Ada_Dictionary'Length > 0 then
Print_Dictionary (Ada_Dictionary, Dictionary, Hash_Package);
end if;
if Hash_Package'Length > 0 then
Natools.Smaz.Tools.GNAT.Build_Perfect_Hash (Input_List, Hash_Package);
end if;
if Handler.Sx_Dict_Output then
Sx_Output.Open_List;
for I in Dictionary.Offsets'Range loop
Sx_Output.Append_String
(Natools.Smaz.Dict_Entry (Dictionary, I));
end loop;
Sx_Output.Close_List;
end if;
case Handler.Action is
when Actions.Nothing => null;
when Actions.Decode =>
if Handler.Sx_Output then
Sx_Output.Open_List;
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