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-------------------------------------------------------------------------------
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-- Title : Package for block-level testing of Nios-to-HIBI
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-- Project :
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-------------------------------------------------------------------------------
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-- File : tb_n2h2_pkg.vhd
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-- Author : Ari Kulmala
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-- Company :
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-- Created : 2005-03-22
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-- Last update: 2011-11-11
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-- Platform :
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-- Standard : VHDL'87
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-------------------------------------------------------------------------------
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-- Description:
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-------------------------------------------------------------------------------
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-- Revisions :
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-- Date Version Author Description
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-- 2005-03-22 1.0 AK Created
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-------------------------------------------------------------------------------
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-------------------------------------------------------------------------------
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-- Funbase IP library Copyright (C) 2011 TUT Department of Computer Systems
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--
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-- This file is part of HIBI
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--
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-- This source file may be used and distributed without
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-- restriction provided that this copyright statement is not
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-- removed from the file and that any derivative work contains
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-- the original copyright notice and the associated disclaimer.
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--
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-- This source file is free software; you can redistribute it
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-- and/or modify it under the terms of the GNU Lesser General
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-- Public License as published by the Free Software Foundation;
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-- either version 2.1 of the License, or (at your option) any
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-- later version.
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--
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-- This source is distributed in the hope that it will be
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-- useful, but WITHOUT ANY WARRANTY; without even the implied
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-- warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR
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-- PURPOSE. See the GNU Lesser General Public License for more
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-- details.
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--
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-- You should have received a copy of the GNU Lesser General
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-- Public License along with this source; if not, download it
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-- from http://www.opencores.org/lgpl.shtml
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-------------------------------------------------------------------------------
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library ieee;
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use ieee.std_logic_1164.all;
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use ieee.std_logic_arith.all;
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use ieee.std_logic_unsigned.all;
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use std.textio.all;
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use ieee.std_logic_textio.all;
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package tb_n2h2_pkg is
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type addr_array is array (0 to 7) of integer;
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-- Noc addresses (HIBI addresses). These identify the active reception channel of the N2H DMA block
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constant addresses_c : addr_array := (200, 250, 300, 444, 555, 666, 777, 888);
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-- Addresses on the avalon bus to the memory = memory addresses of reception buffer
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-- arrays
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constant ava_addresses_c : addr_array := (1000, 3333, 5555, 7000000, 9000000, 11000000, 13000000, 15000000);
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-- constant addresses_c : addr_array := (16#1000000#, 16#3000000#, 16#5000000#, 16#7000000#, 16#9000000#, 16#b000000#, 16#d000000#, 16#f000000#);
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-- constant ava_addresses_c : addr_array := (1000000, 3000000, 5000000, 7000000, 9000000, 11000000, 13000000, 15000000);
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constant conf_bits_c : integer := 4; -- number of configuration bits in CPU
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procedure read_conf_file (
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mem_addr : out integer;
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dst_addr : out integer;
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irq_amount : out integer;
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-- max_amount : out integer;
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file file_txt : text);
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function log2 (
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constant x : integer)
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return integer;
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-- -- This has become obsolete (2011-11-11)
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-- procedure read_data_file (
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-- data : out integer;
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-- file file_txt : text);
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end tb_n2h2_pkg;
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package body tb_n2h2_pkg is
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-- Reads ASCII file that stores info how to confgiure N2H DMA
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procedure read_conf_file (
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mem_addr : out integer;
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dst_addr : out integer;
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irq_amount : out integer;
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file file_txt : text) is
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variable file_row : line;
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--variable file_sample : integer;
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-- variable file_sample_hex : std_logic_vector(31 downto 0);
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variable sample_ok : boolean := FALSE;
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begin
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-- Loop until finding a line that is not a comment
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while sample_ok = false and not(endfile(file_txt)) loop
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readline(file_txt, file_row);
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read (file_row, mem_addr, sample_ok);
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if sample_ok = FALSE then
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--Reading of the delay value failed
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--=> assume that this line is comment or empty, and skip other it
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-- assert false report "Skipped a line" severity note;
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next; -- start new loop interation
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end if;
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read(file_row, dst_addr); --file_sample);
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--dst_addr := file_sample;
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read(file_row, irq_amount); -- file_sample);
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--irq_amount := file_sample;
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end loop;
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-- readline(file_txt, file_row);
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-- -- hread(file_row, file_sample_hex);
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-- -- mem_addr := conv_integer(file_sample_hex);
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-- -- hread(file_row, file_sample_hex);
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-- -- dst_addr := conv_integer(file_sample_hex);
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-- read(file_row, file_sample, sample_ok);
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-- if sample_ok = true then
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-- assert sample_ok report "ei oo hyvä" severity note;
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-- mem_addr := file_sample;
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-- read(file_row, file_sample);
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-- dst_addr := file_sample;
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-- read(file_row, file_sample);
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-- irq_amount := file_sample;
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-- end if;
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end read_conf_file;
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-- Logarithm with base=2
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function log2 (
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constant x : integer)
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return integer is
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variable tmp_v : integer := 1;
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--variable i_v : integer := 0;
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begin -- log2
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--report "log2(x):x is " & integer'image(x);
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for i in 0 to 31 loop
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if tmp_v >= x then
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-- report "ceil(log2(x)) is " & integer'image(i);
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return i;
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end if;
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tmp_v := tmp_v * 2;
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end loop; -- i
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-- We should not ever come here, let's return a definitely illegal value
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assert false report "Error in function log2(x)" severity warning;
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return -1;
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end log2;
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-- procedure read_data_file (
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-- data : out integer;
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-- file file_txt : text) is
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-- variable file_row : line;
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-- variable file_sample : integer;
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-- begin -- read_data_file
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-- readline(file_txt, file_row);
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-- read(file_row, file_sample);
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-- data := file_sample;
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-- end read_data_file;
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end tb_n2h2_pkg;
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