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[/] [single_port/] [trunk/] [VHDL/] [tc_single_port.vhd] - Blame information for rev 16

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1 6 mgeng
----------------------------------------------------------------------
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----                                                              ----
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---- Single port asynchronous RAM simulation model                ----
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----                                                              ----
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---- This file is part of the single_port project                 ----
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----                                                              ----
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---- Description                                                  ----
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---- This file specifies test cases for the single_port Memory.   ----
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----                                                              ----
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---- Authors:                                                     ----
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---- - Robert Paley, rpaley_yid@yahoo.com                         ----
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---- - Michael Geng, vhdl@MichaelGeng.de                          ----
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----                                                              ----
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---- References:                                                  ----
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----   1. The Designer's Guide to VHDL by Peter Ashenden          ----
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----      ISBN: 1-55860-270-4 (pbk.)                              ----
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----   2. Writing Testbenches - Functional Verification of HDL    ----
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----      models by Janick Bergeron | ISBN: 0-7923-7766-4         ----
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----                                                              ----
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----------------------------------------------------------------------
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----                                                              ----
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---- Copyright (C) 2005 Authors and OPENCORES.ORG                 ----
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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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----------------------------------------------------------------------
46 2 rpaley_yid
--
47 6 mgeng
-- CVS Revision History
48 2 rpaley_yid
--
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-- $Log: not supported by cvs2svn $
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-- Revision 1.1.1.1  2003/01/14 21:48:11  rpaley_yid
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-- initial checkin 
52 2 rpaley_yid
--
53 6 mgeng
-- Revision 1.1  2003/01/14 17:49:04  Default
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-- Initial revision
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--
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-- Revision 1.2  2002/12/31 19:19:43  Default
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-- Updated 'transaction statements for fixed simulator.
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--
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-- Revision 1.1  2002/12/24 18:13:50  Default
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-- Initial revision
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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.NUMERIC_STD.ALL;
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USE WORK.SINGLE_PORT_PKG.ALL;
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USE WORK.PKG_IMAGE.ALL;
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ENTITY tc_single_port IS
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PORT  (
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  to_srv  : OUT to_srv_typ;
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  frm_srv : IN  STD_LOGIC_VECTOR);
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END ENTITY tc_single_port;
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-- --------------------------------------------------
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-- Test Case TC0
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-- This test case is to check two pages of memory 
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-- Starting at physical address 0x0 , 
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-- Write a '1' to bit position 0, leaving all other bits 0.
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-- Increment the address, 
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-- Write a '1' to bit position 1, leaving all other bits 0.
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-- Increment the address.
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-- Write a '1' to bit position 2, leaving all other bits 0.
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-- Continue in this fasion, until write a 1 to the MSB.
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-- increment the address,
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-- Write a '1' to bit position 0, leaving all other bits 0.
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-- Continue until the entire page is written to.
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-- Read back all addresses in the page, ensuring the
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-- correct data is read back.
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-- --------------------------------------------------
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ARCHITECTURE TC0 OF tc_single_port IS
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BEGIN
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  MAIN : PROCESS
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    VARIABLE to_srv_v  : to_srv_typ;
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    VARIABLE frm_srv_v : STD_LOGIC_VECTOR(frm_srv'RANGE);
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    VARIABLE dv        : STD_LOGIC_VECTOR(frm_srv'RANGE) :=
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                         STD_LOGIC_VECTOR(TO_UNSIGNED(1, frm_srv'length));
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    VARIABLE offset_v  : INTEGER;
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  BEGIN
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    offset_v := 0;
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    -- Run this write/read test 10 times for benchmark
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    -- purposes.
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    FOR i IN 0 to 9 LOOP
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      FOR index IN 0 to 2*PAGEDEPTH-1 LOOP
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        -- Specify to testbench server to perform write operation;
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        to_srv_v.do := write;
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        to_srv_v.data := TO_INTEGER(SIGNED(dv)); -- specify data to write
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        dv := To_StdLogicVector(TO_BitVector(dv) ROL 1); -- ROL 1 for next write
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        -- Specify physical address.
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        to_srv_v.addr := index+offset_v;
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        to_srv <= to_srv_v;
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        WAIT ON frm_srv'TRANSACTION;
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      END LOOP;
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      -- Reset data to 1.
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      dv := STD_LOGIC_VECTOR(TO_UNSIGNED(1,frm_srv'length));
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      FOR index IN 0 to 2*PAGEDEPTH-1 LOOP
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        -- Perform read operation. 
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        to_srv_v.do := read;
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        -- Specify physical address.
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        to_srv_v.addr := index+offset_v;
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        to_srv <= to_srv_v;
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        WAIT ON frm_srv'TRANSACTION;
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        -- Compare actual with expected read back data, if the
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        -- the expected and actual to not compare, print the 
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        -- expected and actual values.
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        ASSERT frm_srv = dv
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          REPORT "Expected: " & HexImage(frm_srv) &
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                 " did not equal Actual: " & HexImage(dv)
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          SEVERITY ERROR;
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        -- Set expected data for next read.
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        dv := TO_STDLOGICVECTOR(TO_BITVECTOR(dv) ROL 1);
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      END LOOP;
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    END LOOP;
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    to_srv_v.do := dealloc; -- Deallocate memory
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    --  
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    to_srv <= to_srv_v;
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    -- Tell test bench server process test completed.
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    to_srv_v.do := end_test;
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    to_srv <= to_srv_v;
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    ASSERT FALSE
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      REPORT "Completed Test TC0"
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      SEVERITY NOTE;
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    WAIT;
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  END PROCESS main;
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END TC0;
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-- --------------------------------------------------
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-- Test Case TC1
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-- This test case is to check if the test bench will
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-- return 'U' for invalid memory locations for 
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-- single_port architectures ArrayMem and LinkedList
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-- --------------------------------------------------
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ARCHITECTURE TC1 OF tc_single_port IS
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BEGIN
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  MAIN : PROCESS
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    VARIABLE to_srv_v  : to_srv_typ;
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    VARIABLE frm_srv_v : STD_LOGIC_VECTOR(frm_srv'RANGE);
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    VARIABLE dv        : STD_LOGIC_VECTOR(frm_srv'RANGE) := (OTHERS => 'U');
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  BEGIN
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    -- Perform read operation. 
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    to_srv_v.do := read;
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    -- Specify physical address.
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    to_srv_v.addr := 0;
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    to_srv <= to_srv_v;
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    WAIT ON frm_srv'TRANSACTION;
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    -- Compare actual with expected read back data, if the
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    -- the expected and actual to not compare, print the 
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    -- expected and actual values.
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    ASSERT frm_srv = dv
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      REPORT "Expected: " & HexImage(frm_srv) &
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             " did not equal Actual: " & HexImage(dv)
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      SEVERITY ERROR;
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    -- Write and read back from same address.
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    -- Specify to testbench server to perform write operation;
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    to_srv_v.do := write;
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    dv := X"a5a5a5a5";
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    to_srv_v.data := TO_INTEGER(SIGNED(dv)); -- specify data to write
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    -- Specify physical address.
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    to_srv_v.addr := 0;
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    to_srv <= to_srv_v;
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    -- Wait until the test bench server finished with the write.
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    -- WAIT UNTIL frm_srv.event = true; 
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    WAIT ON frm_srv'TRANSACTION;
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    to_srv_v.do := read;
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    -- Specify physical address.
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    to_srv_v.addr := 0;
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    to_srv <= to_srv_v;
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    WAIT ON frm_srv'TRANSACTION;
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    -- Compare actual with expected read back data, if the
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    -- the expected and actual to not compare, print the 
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    -- expected and actual values.
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    ASSERT frm_srv = dv
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      REPORT "Expected: " & HexImage(frm_srv) &
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             " did not equal Actual: " & HexImage(dv)
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      SEVERITY ERROR;
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    to_srv_v.do := dealloc; -- Deallocate memory
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    --  
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    to_srv <= to_srv_v;
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    -- Tell test bench server process test completed.
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    to_srv_v.do := end_test;
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    to_srv <= to_srv_v;
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    ASSERT FALSE
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      REPORT "Completed Test TC1"
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      SEVERITY NOTE;
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    WAIT;
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  END PROCESS main;
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END TC1;

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