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------------------------------------------------------------------------------
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-- This file is a part of the LPP VHDL IP LIBRARY
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-- Copyright (C) 2009 - 2010, Laboratory of Plasmas Physic - CNRS
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--
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-- This program is free software; you can redistribute it and/or modify
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-- it under the terms of the GNU General Public License as published by
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-- the Free Software Foundation; either version 3 of the License, or
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-- (at your option) any later version.
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--
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-- This program is distributed in the hope that it will be useful,
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-- but WITHOUT ANY WARRANTY; without even the implied warranty of
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-- MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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-- GNU General Public License for more details.
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--
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-- You should have received a copy of the GNU General Public License
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-- along with this program; if not, write to the Free Software
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-- Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
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------------------------------------------------------------------------------
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-- Author : Martin Morlot
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-- Mail : martin.morlot@lpp.polytechnique.fr
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------------------------------------------------------------------------------
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library ieee;
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use ieee.std_logic_1164.all;
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library grlib;
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use grlib.amba.all;
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use grlib.stdlib.all;
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use grlib.devices.all;
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library lpp;
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use lpp.lpp_amba.all;
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use lpp.apb_devices_list.all;
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--! Driver APB "G�n�rique" qui va faire le lien entre le bus Amba et la FIFO
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entity ApbDriver is
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generic (
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pindex : integer := 0;
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paddr : integer := 0;
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pmask : integer := 16#fff#;
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pirq : integer := 0;
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abits : integer := 8;
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LPP_DEVICE : integer;
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Data_sz : integer := 16;
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Addr_sz : integer := 8;
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addr_max_int : integer := 256);
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port (
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clk : in std_logic; --! Horloge du composant
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rst : in std_logic; --! Reset general du composant
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ReadEnable : out std_logic; --! Instruction de lecture en m�moire
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WriteEnable : out std_logic; --! Instruction d'�criture en m�moire
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FlagEmpty : in std_logic; --! Flag, M�moire vide
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FlagFull : in std_logic; --! Flag, M�moire pleine
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ReUse : out std_logic; --! Flag, Permet de relire la m�moire du d�but
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Lock : out std_logic; --! Flag, Permet de bloquer l'�criture dans la m�moire
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DataIn : out std_logic_vector(Data_sz-1 downto 0); --! Registre de donn�es en entr�e
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DataOut : in std_logic_vector(Data_sz-1 downto 0); --! Registre de donn�es en sortie
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AddrIn : in std_logic_vector(Addr_sz-1 downto 0); --! Registre d'addresse (�criture)
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AddrOut : in std_logic_vector(Addr_sz-1 downto 0); --! Registre d'addresse (lecture)
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apbi : in apb_slv_in_type; --! Registre de gestion des entr�es du bus
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apbo : out apb_slv_out_type --! Registre de gestion des sorties du bus
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);
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end ApbDriver;
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--! @details Utilisable avec n'importe quelle IP VHDL de type FIFO
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architecture ar_ApbDriver of ApbDriver is
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constant REVISION : integer := 1;
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constant pconfig : apb_config_type := (
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0 => ahb_device_reg (VENDOR_LPP, LPP_DEVICE, 0, REVISION, 0),
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1 => apb_iobar(paddr, pmask));
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type DEVICE_ctrlr_Reg is record
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DEVICE_Cfg : std_logic_vector(5 downto 0);
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DEVICE_DataW : std_logic_vector(Data_sz-1 downto 0);
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DEVICE_DataR : std_logic_vector(Data_sz-1 downto 0);
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DEVICE_AddrW : std_logic_vector(Addr_sz-1 downto 0);
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DEVICE_AddrR : std_logic_vector(Addr_sz-1 downto 0);
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end record;
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signal Rec : DEVICE_ctrlr_Reg;
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signal Rdata : std_logic_vector(31 downto 0);
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signal FlagRE : std_logic;
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signal FlagWR : std_logic;
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begin
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Rec.DEVICE_Cfg(0) <= FlagRE;
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Rec.DEVICE_Cfg(1) <= FlagWR;
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Rec.DEVICE_Cfg(2) <= FlagEmpty;
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Rec.DEVICE_Cfg(3) <= FlagFull;
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ReUse <= Rec.DEVICE_Cfg(4);
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Lock <= Rec.DEVICE_Cfg(5);
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DataIn <= Rec.DEVICE_DataW;
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Rec.DEVICE_DataR <= DataOut;
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Rec.DEVICE_AddrW <= AddrIn;
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Rec.DEVICE_AddrR <= AddrOut;
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process(rst,clk)
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begin
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if(rst='0')then
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Rec.DEVICE_DataW <= (others => '0');
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FlagWR <= '0';
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FlagRE <= '0';
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Rec.DEVICE_Cfg(4) <= '0';
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Rec.DEVICE_Cfg(5) <= '0';
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elsif(clk'event and clk='1')then
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--APB Write OP
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if (apbi.psel(pindex) and apbi.penable and apbi.pwrite) = '1' then
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case apbi.paddr(abits-1 downto 2) is
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when "000000" =>
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FlagWR <= '1';
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Rec.DEVICE_DataW <= apbi.pwdata(Data_sz-1 downto 0);
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when "000010" =>
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Rec.DEVICE_Cfg(4) <= apbi.pwdata(16);
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Rec.DEVICE_Cfg(5) <= apbi.pwdata(20);
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when others =>
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null;
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end case;
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else
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FlagWR <= '0';
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end if;
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--APB Read OP
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if (apbi.psel(pindex) and (not apbi.pwrite)) = '1' then
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case apbi.paddr(abits-1 downto 2) is
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when "000000" =>
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FlagRE <= '1';
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Rdata(Data_sz-1 downto 0) <= Rec.DEVICE_DataR;
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when "000001" =>
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Rdata(31 downto 8) <= X"AAAAAA";
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Rdata(7 downto 0) <= Rec.DEVICE_AddrR;
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when "000101" =>
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Rdata(31 downto 8) <= X"AAAAAA";
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Rdata(7 downto 0) <= Rec.DEVICE_AddrW;
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when "000010" =>
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Rdata(3 downto 0) <= "000" & Rec.DEVICE_Cfg(0);
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Rdata(7 downto 4) <= "000" & Rec.DEVICE_Cfg(1);
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Rdata(11 downto 8) <= "000" & Rec.DEVICE_Cfg(2);
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Rdata(15 downto 12) <= "000" & Rec.DEVICE_Cfg(3);
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Rdata(19 downto 16) <= "000" & Rec.DEVICE_Cfg(4);
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Rdata(23 downto 20) <= "000" & Rec.DEVICE_Cfg(5);
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Rdata(31 downto 24) <= X"CC";
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when others =>
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Rdata <= (others => '0');
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end case;
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else
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FlagRE <= '0';
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end if;
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end if;
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apbo.pconfig <= pconfig;
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end process;
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apbo.prdata <= Rdata when apbi.penable = '1';
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WriteEnable <= FlagWR;
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ReadEnable <= FlagRE;
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end ar_ApbDriver;
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