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--  Programmed by Jedidiah Barber
--  Released into the public domain


with

    Interfaces.C.Strings,
    System;

use type

    Interfaces.C.int,
    Interfaces.C.Strings.chars_ptr,
    System.Address;


package body Libao is


    procedure ao_initialize;
    pragma Import (C, ao_initialize, "ao_initialize");
    pragma Inline (ao_initialize);

    procedure ao_shutdown;
    pragma Import (C, ao_shutdown, "ao_shutdown");
    pragma Inline (ao_shutdown);




    function ao_append_option
           (Options : in out System.Address;
            Key     : in     Interfaces.C.char_array;
            Value   : in     Interfaces.C.char_array)
        return Interfaces.C.int;
    pragma Import (C, ao_append_option, "ao_append_option");
    pragma Inline (ao_append_option);

    function ao_append_global_option
           (Key   : in Interfaces.C.char_array;
            Value : in Interfaces.C.char_array)
        return Interfaces.C.int;
    pragma Import (C, ao_append_global_option, "ao_append_global_option");
    pragma Inline (ao_append_global_option);

    procedure ao_free_options
           (Options : in System.Address);
    pragma Import (C, ao_free_options, "ao_free_options");
    pragma Inline (ao_free_options);

    function ao_open_live
           (Driver_ID : in Interfaces.C.int;
            Format    : in System.Address;
            Options   : in System.Address)
        return System.Address;
    pragma Import (C, ao_open_live, "ao_open_live");
    pragma Inline (ao_open_live);

    function ao_open_file
           (Driver_ID : in Interfaces.C.int;
            Filename  : in Interfaces.C.char_array;
            Overwrite : in Interfaces.C.int;
            Format    : in System.Address;
            Options   : in System.Address)
        return System.Address;
    pragma Import (C, ao_open_file, "ao_open_file");
    pragma Inline (ao_open_file);

    function ao_play
           (Output_Device : in System.Address;
            Samples       : in Interfaces.C.char_array;
            Num_Bytes     : in Interfaces.Unsigned_32)
        return Interfaces.C.int;
    pragma Import (C, ao_play, "ao_play");
    pragma Inline (ao_play);

    function ao_close
           (Output_Device : in System.Address)
        return Interfaces.C.int;
    pragma Import (C, ao_close, "ao_close");
    pragma Inline (ao_close);




    function ao_driver_id
           (Short_Name : in Interfaces.C.char_array)
        return Interfaces.C.int;
    pragma Import (C, ao_driver_id, "ao_driver_id");
    pragma Inline (ao_driver_id);

    function ao_default_driver_id
        return Interfaces.C.int;
    pragma Import (C, ao_default_driver_id, "ao_default_driver_id");
    pragma Inline (ao_default_driver_id);

    function ao_driver_info
           (Ident : in Interfaces.C.int)
        return System.Address;
    pragma Import (C, ao_driver_info, "ao_driver_info");
    pragma Inline (ao_driver_info);

    function ao_driver_info_list
           (Count : out Interfaces.C.int)
        return System.Address;
    pragma Import (C, ao_driver_info_list, "ao_driver_info_list");
    pragma Inline (ao_driver_info_list);

    function ao_file_extension
           (Ident : in Interfaces.C.int)
        return Interfaces.C.Strings.chars_ptr;
    pragma Import (C, ao_file_extension, "ao_file_extension");
    pragma Inline (ao_file_extension);




    function ao_is_big_endian
        return Interfaces.C.int;
    pragma Import (C, ao_is_big_endian, "ao_is_big_endian");
    pragma Inline (ao_is_big_endian);




    function type_live
        return Interfaces.C.int;
    pragma Import (C, type_live, "type_live");
    pragma Inline (type_live);

    function type_file
        return Interfaces.C.int;
    pragma Import (C, type_file, "type_file");
    pragma Inline (type_file);




    function sample_little_endian
        return Interfaces.C.int;
    pragma Import (C, sample_little_endian, "sample_little_endian");
    pragma Inline (sample_little_endian);

    function sample_big_endian
        return Interfaces.C.int;
    pragma Import (C, sample_big_endian, "sample_big_endian");
    pragma Inline (sample_big_endian);

    function sample_native_endian
        return Interfaces.C.int;
    pragma Import (C, sample_native_endian, "sample_native_endian");
    pragma Inline (sample_native_endian);




    function error_no_driver
        return Interfaces.C.int;
    pragma Import (C, error_no_driver, "error_no_driver");
    pragma Inline (error_no_driver);

    function error_not_file
        return Interfaces.C.int;
    pragma Import (C, error_not_file, "error_not_file");
    pragma Inline (error_not_file);

    function error_not_live
        return Interfaces.C.int;
    pragma Import (C, error_not_live, "error_not_live");
    pragma Inline (error_not_live);

    function error_bad_option
        return Interfaces.C.int;
    pragma Import (C, error_bad_option, "error_bad_option");
    pragma Inline (error_bad_option);

    function error_open_device
        return Interfaces.C.int;
    pragma Import (C, error_open_device, "error_open_device");
    pragma Inline (error_open_device);

    function error_open_file
        return Interfaces.C.int;
    pragma Import (C, error_open_file, "error_open_file");
    pragma Inline (error_open_file);

    function error_file_exists
        return Interfaces.C.int;
    pragma Import (C, error_file_exists, "error_file_exists");
    pragma Inline (error_file_exists);

    function error_bad_format
        return Interfaces.C.int;
    pragma Import (C, error_bad_format, "error_bad_format");
    pragma Inline (error_bad_format);

    function error_fail
        return Interfaces.C.int;
    pragma Import (C, error_fail, "error_fail");
    pragma Inline (error_fail);




    function info_item_get
           (Infos : in System.Address;
            Index : in Interfaces.C.int)
        return System.Address;
    pragma Import (C, info_item_get, "info_item_get");
    pragma Inline (info_item_get);




    function info_kind_get
           (Item : in System.Address)
        return Interfaces.C.int;
    pragma Import (C, info_kind_get, "info_kind_get");
    pragma Inline (info_kind_get);

    function info_name_get
           (Item : in System.Address)
        return Interfaces.C.Strings.chars_ptr;
    pragma Import (C, info_name_get, "info_name_get");
    pragma Inline (info_name_get);

    function info_short_name_get
           (Item : in System.Address)
        return Interfaces.C.Strings.chars_ptr;
    pragma Import (C, info_short_name_get, "info_short_name_get");
    pragma Inline (info_short_name_get);

    function info_preferred_byte_format_get
           (Item : in System.Address)
        return Interfaces.C.int;
    pragma Import (C, info_preferred_byte_format_get, "info_preferred_byte_format_get");
    pragma Inline (info_preferred_byte_format_get);

    function info_priority_get
           (Item : in System.Address)
        return Interfaces.C.int;
    pragma Import (C, info_priority_get, "info_priority_get");
    pragma Inline (info_priority_get);

    function info_comment_get
           (Item : in System.Address)
        return Interfaces.C.Strings.chars_ptr;
    pragma Import (C, info_comment_get, "info_comment_get");
    pragma Inline (info_comment_get);

    function info_option_count_get
           (Item : in System.Address)
        return Interfaces.C.int;
    pragma Import (C, info_option_count_get, "info_option_count_get");
    pragma Inline (info_option_count_get);

    function info_option_key_get
           (Item  : in System.Address;
            Index : in Interfaces.C.int)
        return Interfaces.C.Strings.chars_ptr;
    pragma Import (C, info_option_key_get, "info_option_key_get");
    pragma Inline (info_option_key_get);




    function get_errno
        return Interfaces.C.int;
    pragma Import (C, get_errno, "get_errno");
    pragma Inline (get_errno);




    function option_key
           (Item : in System.Address)
        return Interfaces.C.Strings.chars_ptr;
    pragma Import (C, option_key, "option_key");
    pragma Inline (option_key);

    function option_value
           (Item : in System.Address)
        return Interfaces.C.Strings.chars_ptr;
    pragma Import (C, option_value, "option_value");
    pragma Inline (option_value);

    function option_next
           (Item : in System.Address)
        return System.Address;
    pragma Import (C, option_next, "option_next");
    pragma Inline (option_next);




    procedure Adjust
           (This : in out Option_List)
    is
        Old : System.Address := This.Ptr;
    begin
        This.Ptr := System.Null_Address;
        while Old /= System.Null_Address loop
            Do_Append
               (This.Ptr,
                Interfaces.C.Strings.Value (option_key (This.Ptr)),
                Interfaces.C.Strings.Value (option_value (This.Ptr)));
            Old := option_next (Old);
        end loop;
    end Adjust;

    procedure Finalize
           (This : in out Option_List) is
    begin
        ao_free_options (This.Ptr);
    end Finalize;

    procedure Adjust
           (This : in out Sample_Format) is
    begin
        This.C_Struct.Matrix := Interfaces.C.Strings.New_String
            (Interfaces.C.Strings.Value (This.C_Struct.Matrix));
    end Adjust;

    procedure Finalize
           (This : in out Sample_Format) is
    begin
        Interfaces.C.Strings.Free (This.C_Struct.Matrix);
    end Finalize;




    function Kind
           (Attributes : in Info)
        return Output_Kind
    is
        Value : Interfaces.C.int := info_kind_get (Attributes.Ptr);
    begin
        if Value = type_live then
            return Live_Output;
        elsif Value = type_file then
            return File_Output;
        else
            raise Program_Error;
        end if;
    end Kind;

    function Name
           (Attributes : in Info)
        return String is
    begin
        return Interfaces.C.Strings.Value (info_name_get (Attributes.Ptr));
    end Name;

    function Short_Name
           (Attributes : in Info)
        return String is
    begin
        return Interfaces.C.Strings.Value (info_short_name_get (Attributes.Ptr));
    end Short_Name;

    function Preferred_Byte_Format
           (Attributes : in Info)
        return Endianness
    is
        Value : Interfaces.C.int := info_preferred_byte_format_get (Attributes.Ptr);
    begin
        if Value = sample_little_endian then
            return Little_Endian;
        elsif Value = sample_big_endian then
            return Big_Endian;
        elsif Value = sample_native_endian then
            return Machine_Native;
        else
            raise Program_Error; --  libao would be doing weird shit to get here
        end if;
    end Preferred_Byte_Format;

    function Priority_Level
           (Attributes : in Info)
        return Positive is
    begin
        return Positive (info_priority_get (Attributes.Ptr));
    end Priority_Level;

    function Comment
           (Attributes : in Info)
        return String is
    begin
        return Interfaces.C.Strings.Value (info_comment_get (Attributes.Ptr));
    end Comment;

    function Option_Count
           (Attributes : in Info)
        return Natural is
    begin
        return Natural (info_option_count_get (Attributes.Ptr));
    end Option_Count;

    function Option_Key
           (Attributes : in Info;
            Index      : in Positive)
        return String is
    begin
        return Interfaces.C.Strings.Value
            (info_option_key_get (Attributes.Ptr, Interfaces.C.int (Index)));
    end Option_Key;




    function Image_Length
           (Channel : in Channel_Mnemonic)
        return Positive is
    begin
        case Channel is
            when L | R | C | M | X =>
                return 1;
            when CL | CR | BL | BR | BC | SL | SR | A1 | A2 | A3 | A4 =>
                return 2;
            when LFE =>
                return 3;
        end case;
    end Image_Length;

    function Image_Length
           (Channel_Matrix : in Mnemonic_Array)
        return Natural
    is
        Result : Integer := Channel_Matrix'Length - 1;
    begin
        if Channel_Matrix'Length = 0 then
            return 0;
        end if;
        for Channel of Channel_Matrix loop
            Result := Result + Image_Length (Channel);
        end loop;
        return Result;
    end Image_Length;

    function Image
           (Channel_Matrix : in Mnemonic_Array)
        return String
    is
        Result : String (1 .. Image_Length (Channel_Matrix));
        Position : Integer := 1;
    begin
        for Index in Integer range Channel_Matrix'First .. Channel_Matrix'Last - 1 loop
            Result (Position .. Position + Image_Length (Channel_Matrix (Index))) :=
                Channel_Matrix (Index)'Image & ",";
            Position := Position + Image_Length (Channel_Matrix (Index)) + 1;
        end loop;
        Result (Position .. Result'Last) := Channel_Matrix (Channel_Matrix'Last)'Image;
        return Result;
    end Image;

    function Create
           (Bits, Rate, Channels : in Positive;
            Byte_Format          : in Endianness;
            Channel_Matrix       : in Mnemonic_Array)
        return Sample_Format is
    begin
        return This : Sample_Format := (Ada.Finalization.Controlled with
            C_Struct =>
               (Bits        => Interfaces.C.int (Bits),
                Rate        => Interfaces.C.int (Rate),
                Channels    => Interfaces.C.int (Channels),
                Byte_Format => (case Byte_Format is
                    when Little_Endian  => sample_little_endian,
                    when Big_Endian     => sample_big_endian,
                    when Machine_Native => sample_native_endian),
                Matrix      => Interfaces.C.Strings.New_String (Image (Channel_Matrix))));
    end Create;




    function Is_Alive
        return Boolean is
    begin
        return Alive_Status;
    end Is_Alive;

    procedure Startup is
    begin
        ao_initialize;
        Device_List.Clear;
        Alive_Status := True;
    end Startup;

    procedure Shutdown is
    begin
        for Addy of Device_List loop
            Do_Close (Addy);
        end loop;
        ao_shutdown;
        Alive_Status := False;
    end Shutdown;




    procedure Do_Append
           (Ptr   : in out System.Address;
            Key   : in     Interfaces.C.char_array;
            Value : in     Interfaces.C.char_array)
    is
        Result : Interfaces.C.int;
    begin
        Result := ao_append_option (Ptr, Key, Value);
        if Result = 0 then
            raise Storage_Error;
        elsif Result /= 1 then
            raise Program_Error;
        end if;
    end Do_Append;

    procedure Append
           (This  : in out Option_List;
            Key   : in     String;
            Value : in     String) is
    begin
        Do_Append (This.Ptr, Interfaces.C.To_C (Key), Interfaces.C.To_C (Value));
    end Append;

    procedure Append_Global_Option
           (Key   : in String;
            Value : in String)
    is
        Result : Interfaces.C.int;
    begin
        Result := ao_append_global_option
           (Interfaces.C.To_C (Key),
            Interfaces.C.To_C (Value));
        if Result = 0 then
            raise Storage_Error;
        elsif Result /= 1 then
            raise Program_Error;
        end if;
    end Append_Global_Option;

    function Open_Live
           (Driver_ID : in Driver_ID_Number;
            Format    : in Sample_Format;
            Options   : in Option_List'Class)
        return Device
    is
        Result : System.Address := ao_open_live
           (Driver_ID => Interfaces.C.int (Driver_ID),
            Format    => Format.C_Struct'Address,
            Options   => Options.Ptr);
        My_Errno : Interfaces.C.int;
    begin
        if Result = System.Null_Address then
            My_Errno := get_errno;
            if My_Errno = error_no_driver then
                raise No_Driver_Error;
            elsif My_Errno = error_not_live then
                raise Not_Live_Error;
            elsif My_Errno = error_bad_option then
                raise Bad_Option_Error;
            elsif My_Errno = error_open_device then
                raise Open_Device_Error;
            elsif My_Errno = error_bad_format then
                raise Bad_Format_Error;
            elsif My_Errno = error_fail then
                raise General_Failure;
            else
                raise Program_Error;
            end if;
        else
            Device_List.Append (Result);
            return (Ptr => Result);
        end if;
    end Open_Live;

    function Open_File
           (Driver_ID : in Driver_ID_Number;
            Filename  : in String;
            Format    : in Sample_Format;
            Options   : in Option_List'Class;
            Overwrite : in Boolean := False)
        return Device
    is
        Result : System.Address := ao_open_file
           (Driver_ID => Interfaces.C.int (Driver_ID),
            Filename  => Interfaces.C.To_C (Filename),
            Overwrite => Boolean'Pos (Overwrite),
            Format    => Format.C_Struct'Address,
            Options   => Options.Ptr);
        My_Errno : Interfaces.C.int;
    begin
        if Result = System.Null_Address then
            My_Errno := get_errno;
            if My_Errno = error_no_driver then
                raise No_Driver_Error;
            elsif My_Errno = error_not_file then
                raise Not_File_Error;
            elsif My_Errno = error_bad_option then
                raise Bad_Option_Error;
            elsif My_Errno = error_open_file then
                raise Open_File_Error;
            elsif My_Errno = error_file_exists then
                raise File_Exists_Error;
            elsif My_Errno = error_bad_format then
                raise Bad_Format_Error;
            elsif My_Errno = error_fail then
                raise General_Failure;
            else
                raise Program_Error;
            end if;
        else
            Device_List.Append (Result);
            return (Ptr => Result);
        end if;
    end Open_File;

    procedure Play
           (Output_Device : in Device;
            Samples       : in Data_Buffer)
    is
        Result : Interfaces.C.int := ao_play
           (Output_Device => Output_Device.Ptr,
            Samples       => Interfaces.C.To_C (Item => String (Samples), Append_Nul => False),
            Num_Bytes     => Interfaces.Unsigned_32 (Samples'Length));
    begin
        if Result = 0 then
            raise General_Failure;
        end if;
    end Play;

    procedure Do_Close
           (Ptr : in System.Address)
    is
        Result : Interfaces.C.int := ao_close (Ptr);
    begin
        if Result = 0 then
            raise Close_Device_Error;
        elsif Result /= 1 then
            raise Program_Error;
        end if;
    end Do_Close;

    procedure Close
           (Output_Device : in out Device) is
    begin
        for Index in reverse Integer range Device_List.First_Index .. Device_List.Last_Index loop
            if Device_List.Element (Index) = Output_Device.Ptr then
                Device_List.Delete (Index);
            end if;
        end loop;
        Do_Close (Output_Device.Ptr);
    end Close;




    function Driver_ID
           (Short_Name : in String)
        return Driver_ID_Number
    is
        Result : Interfaces.C.int;
    begin
        Result := ao_driver_id (Interfaces.C.To_C (Short_Name));
        if Result = -1 then
            raise No_Driver_Error;
        elsif Result < 0 then
            raise Program_Error;
        end if;
        return Driver_ID_Number (Result);
    end Driver_ID;

    function Default_Driver_ID
        return Driver_ID_Number
    is
        Result : Interfaces.C.int;
    begin
        Result := ao_default_driver_id;
        if Result = -1 then
            raise No_Device_Error;
        elsif Result < 0 then
            raise Program_Error;
        end if;
        return Driver_ID_Number (Result);
    end Default_Driver_ID;

    function Driver_Info
           (Ident : in Driver_ID_Number)
        return Info
    is
        Result : System.Address;
    begin
        Result := ao_driver_info (Interfaces.C.int (Ident));
        if Result = System.Null_Address then
            raise No_Driver_Error;
        else
            return (Ptr => Result);
        end if;
    end Driver_Info;

    function Driver_Info_List
        return Info_Array
    is
        Count : Interfaces.C.int;
        Carr  : System.Address;
    begin
        Carr := ao_driver_info_list (Count);
        return Actual : Info_Array (1 .. Positive (Count)) do
            for N in Integer range Actual'First .. Actual'Last loop
                Actual (N) := (Ptr => info_item_get (Carr, Interfaces.C.int (N)));
            end loop;
        end return;
    end Driver_Info_List;

    function File_Extension
           (Ident : in Driver_ID_Number)
        return String
    is
        Result : Interfaces.C.Strings.chars_ptr := ao_file_extension (Interfaces.C.int (Ident));
    begin
        if Result = Interfaces.C.Strings.Null_Ptr then
            return "";
        else
            return Interfaces.C.Strings.Value (Result);
        end if;
    end File_Extension;




    function Is_Big_Endian
        return Boolean is
    begin
        case ao_is_big_endian is
            when 1 => return True;
            when 0 => return False;
            when others => raise Program_Error;
        end case;
    end Is_Big_Endian;


end Libao;