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procedure Smaz is
function To_SEA (S : String) return Ada.Streams.Stream_Element_Array
renames Natools.S_Expressions.To_Atom;
package Holders is new Ada.Containers.Indefinite_Holders
(Natools.Smaz.Dictionary, Natools.Smaz."=");
package Actions is
type Enum is
(Nothing,
Decode,
Encode,
Evaluate);
end Actions;
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procedure Smaz is
function To_SEA (S : String) return Ada.Streams.Stream_Element_Array
renames Natools.S_Expressions.To_Atom;
package Holders is new Ada.Containers.Indefinite_Holders
(Natools.Smaz.Dictionary, Natools.Smaz."=");
type Score_Value is range 0 .. 2 ** 31 - 1;
package Actions is
type Enum is
(Nothing,
Decode,
Encode,
Evaluate);
end Actions;
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Pending_Words : in out Natools.Smaz.Tools.String_Lists.List;
Input_Texts : in Natools.Smaz.Tools.String_Lists.List;
Job_Count : in Natural;
Updated : out Boolean);
-- Try to improve on Dict by replacing a single entry from it with
-- one of the substring in Pending_Words.
function Optimize_Dictionary
(Base : in Natools.Smaz.Dictionary;
Pending_Words : in Natools.Smaz.Tools.String_Lists.List;
Input_Texts : in Natools.Smaz.Tools.String_Lists.List;
Job_Count : in Natural)
return Natools.Smaz.Dictionary;
-- Optimize the dictionary on Input_Texts, starting with Base and
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Pending_Words : in out Natools.Smaz.Tools.String_Lists.List;
Input_Texts : in Natools.Smaz.Tools.String_Lists.List;
Job_Count : in Natural;
Updated : out Boolean);
-- Try to improve on Dict by replacing a single entry from it with
-- one of the substring in Pending_Words.
function Length
(Dictionary : in Natools.Smaz.Dictionary;
E : in Ada.Streams.Stream_Element)
return Score_Value
is (Natools.Smaz.Dict_Entry (Dictionary, E)'Length);
-- Length of a dictionary entry
function Optimize_Dictionary
(Base : in Natools.Smaz.Dictionary;
Pending_Words : in Natools.Smaz.Tools.String_Lists.List;
Input_Texts : in Natools.Smaz.Tools.String_Lists.List;
Job_Count : in Natural)
return Natools.Smaz.Dictionary;
-- Optimize the dictionary on Input_Texts, starting with Base and
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-- print the given dictionary in the given file
procedure Print_Help
(Opt : in Getopt.Configuration;
Output : in Ada.Text_IO.File_Type);
-- Print the help text to the given file
function To_Dictionary
(Handler : in Callback'Class;
Input : in Natools.Smaz.Tools.String_Lists.List)
return Natools.Smaz.Dictionary;
-- Convert the input into a dictionary given the option in Handler
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-- print the given dictionary in the given file
procedure Print_Help
(Opt : in Getopt.Configuration;
Output : in Ada.Text_IO.File_Type);
-- Print the help text to the given file
function Score_Encoded
(Dictionary : in Natools.Smaz.Dictionary;
Counts : in Natools.Smaz.Tools.Dictionary_Counts;
E : Ada.Streams.Stream_Element)
return Score_Value
is (Score_Value (Counts (E)) * Length (Dictionary, E));
-- Score value using the amount of encoded data using E
function Score_Frequency
(Dictionary : in Natools.Smaz.Dictionary;
Counts : in Natools.Smaz.Tools.Dictionary_Counts;
E : Ada.Streams.Stream_Element)
return Score_Value
is (Score_Value (Counts (E)));
-- Score value using the number of times E was used
function Score_Gain
(Dictionary : in Natools.Smaz.Dictionary;
Counts : in Natools.Smaz.Tools.Dictionary_Counts;
E : Ada.Streams.Stream_Element)
return Score_Value
is (Score_Value (Counts (E)) * (Length (Dictionary, E) - 1));
-- Score value using the number of bytes saved using E
function To_Dictionary
(Handler : in Callback'Class;
Input : in Natools.Smaz.Tools.String_Lists.List)
return Natools.Smaz.Dictionary;
-- Convert the input into a dictionary given the option in Handler
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Sx_Output.Close_List;
end loop;
Sx_Output.Close_List;
end if;
if Handler.Stat_Output then
declare
type Score_Value is range 0 .. 2 ** 31 - 1;
function Length (E : Ada.Streams.Stream_Element)
return Score_Value
is (Natools.Smaz.Dict_Entry (Dictionary, E)'Length);
function Encoded (E : Ada.Streams.Stream_Element)
return Score_Value
is (Score_Value (Counts (E)) * Length (E));
function Frequency (E : Ada.Streams.Stream_Element)
return Score_Value
is (Score_Value (Counts (E)));
function Gain (E : Ada.Streams.Stream_Element)
return Score_Value
is (Score_Value (Counts (E)) * (Length (E) - 1));
procedure Print
(Label : in String;
E : in Ada.Streams.Stream_Element;
Score : in Score_Value);
procedure Print_Min_Max
(Label : in String;
Score : not null access function
(E : Ada.Streams.Stream_Element) return Score_Value);
procedure Print_Value
(Label : in String;
Score : not null access function
(E : Ada.Streams.Stream_Element) return Score_Value;
Ref : in Score_Value);
procedure Print
(Label : in String;
E : in Ada.Streams.Stream_Element;
Score : in Score_Value) is
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Sx_Output.Close_List;
end loop;
Sx_Output.Close_List;
end if;
if Handler.Stat_Output then
declare
procedure Print
(Label : in String;
E : in Ada.Streams.Stream_Element;
Score : in Score_Value);
procedure Print_Min_Max
(Label : in String;
Score : not null access function
(D : in Natools.Smaz.Dictionary;
C : in Natools.Smaz.Tools.Dictionary_Counts;
E : in Ada.Streams.Stream_Element)
return Score_Value);
procedure Print_Value
(Label : in String;
Score : not null access function
(D : in Natools.Smaz.Dictionary;
C : in Natools.Smaz.Tools.Dictionary_Counts;
E : in Ada.Streams.Stream_Element)
return Score_Value;
Ref : in Score_Value);
procedure Print
(Label : in String;
E : in Ada.Streams.Stream_Element;
Score : in Score_Value) is
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& Score_Value'Image (Score));
end if;
end Print;
procedure Print_Min_Max
(Label : in String;
Score : not null access function
(E : Ada.Streams.Stream_Element) return Score_Value)
is
Min_Score, Max_Score : Score_Value := Score (0);
S : Score_Value;
begin
for E in 1 .. Dictionary.Dict_Last loop
S := Score (E);
if S < Min_Score then
Min_Score := S;
end if;
if S > Max_Score then
Max_Score := S;
end if;
end loop;
Print_Value ("best-" & Label, Score, Max_Score);
Print_Value ("worst-" & Label, Score, Min_Score);
end Print_Min_Max;
procedure Print_Value
(Label : in String;
Score : not null access function
(E : Ada.Streams.Stream_Element) return Score_Value;
Ref : in Score_Value) is
begin
if Handler.Sx_Output then
Sx_Output.Open_List;
Sx_Output.Append_String (Label);
end if;
for E in Dictionary.Offsets'Range loop
if Score (E) = Ref then
Print (Label, E, Ref);
end if;
end loop;
if Handler.Sx_Output then
Sx_Output.Close_List;
end if;
end Print_Value;
begin
Print_Min_Max ("encoded", Encoded'Access);
Print_Min_Max ("frequency", Frequency'Access);
Print_Min_Max ("gain", Gain'Access);
end;
end if;
end;
end case;
end Build_Dictionary;
end Smaz;
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& Score_Value'Image (Score));
end if;
end Print;
procedure Print_Min_Max
(Label : in String;
Score : not null access function
(D : in Natools.Smaz.Dictionary;
C : in Natools.Smaz.Tools.Dictionary_Counts;
E : in Ada.Streams.Stream_Element)
return Score_Value)
is
Min_Score, Max_Score : Score_Value
:= Score (Dictionary, Counts, 0);
S : Score_Value;
begin
for E in 1 .. Dictionary.Dict_Last loop
S := Score (Dictionary, Counts, E);
if S < Min_Score then
Min_Score := S;
end if;
if S > Max_Score then
Max_Score := S;
end if;
end loop;
Print_Value ("best-" & Label, Score, Max_Score);
Print_Value ("worst-" & Label, Score, Min_Score);
end Print_Min_Max;
procedure Print_Value
(Label : in String;
Score : not null access function
(D : in Natools.Smaz.Dictionary;
C : in Natools.Smaz.Tools.Dictionary_Counts;
E : in Ada.Streams.Stream_Element)
return Score_Value;
Ref : in Score_Value) is
begin
if Handler.Sx_Output then
Sx_Output.Open_List;
Sx_Output.Append_String (Label);
end if;
for E in Dictionary.Offsets'Range loop
if Score (Dictionary, Counts, E) = Ref then
Print (Label, E, Ref);
end if;
end loop;
if Handler.Sx_Output then
Sx_Output.Close_List;
end if;
end Print_Value;
begin
Print_Min_Max ("encoded", Score_Encoded'Access);
Print_Min_Max ("frequency", Score_Frequency'Access);
Print_Min_Max ("gain", Score_Gain'Access);
end;
end if;
end;
end case;
end Build_Dictionary;
end Smaz;
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