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By adding ivtest to the iverilog source tree, it is easier to keep the regression test synchronized with the source that is being tested. This should be especially helpful for PRs that add a new feature, and have a matching ivtest PR with the regression test for that feature.
174 lines
4.0 KiB
Verilog
174 lines
4.0 KiB
Verilog
//
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// Copyright (c) 1999 Thomas Coonan ([email protected])
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//
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// This source code is free software; you can redistribute it
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// and/or modify it in source code form under the terms of the GNU
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// General Public License as published by the Free Software
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// Foundation; either version 2 of the License, or (at your option)
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// 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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// **** Here's a simple, sequential multiplier. Very simple, unsigned..
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// Not very well tested, play with testbench, use at your own risk, blah blah blah..
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//
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//
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// Unsigned 16-bit multiply (multiply two 16-bit inputs to get a 32-bit output)
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//
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// Present data and assert start synchronous with clk.
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// Assert start for ONLY one cycle.
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// Wait N cycles for answer (at most). Answer will remain stable until next start.
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// You may use DONE signal as handshake.
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//
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// Written by tom coonan
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//
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module mult16 (clk, resetb, start, done, ain, bin, yout);
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parameter N = 16;
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input clk;
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input resetb;
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input start; // Register the ain and bin inputs (they can change afterwards)
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//input [N-1:0] ain;
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//input [N-1:0] bin;
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//output [2*N-1:0] yout;
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input [15:0] ain;
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input [15:0] bin;
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output [31:0] yout;
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output done;
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//reg [2*N-1:0] a;
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//reg [N-1:0] b;
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//reg [2*N-1:0] yout;
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reg [31:0] a;
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reg [15:0] b;
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reg [31:0] yout;
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reg done;
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always @(posedge clk or negedge resetb) begin
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if (~resetb) begin
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a <= 0;
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b <= 0;
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yout <= 0;
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done <= 1'b1;
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end
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else begin
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// Load will register the input and clear the counter.
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if (start) begin
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a <= ain;
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b <= bin;
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yout <= 0;
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done <= 0;
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end
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else begin
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// Go until b is zero
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if (~done) begin
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if (b != 0) begin
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// If '1' then add a to sum
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if (b[0]) begin
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yout <= yout + a;
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end
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b <= b >> 1;
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a <= a << 1;
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$display ("a = %h, b = %h, yout = %h", a,b,yout);
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end
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else begin
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done <= 1'b1;
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end
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end
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end
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end
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end
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endmodule
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module mul16;
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reg clk, resetb, start;
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reg [15:0] a;
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reg [15:0] b;
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wire [31:0] y;
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wire done;
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mult16 mult16inst (clk, resetb, start, done, a, b, y);
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initial begin
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clk = 0;
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forever begin
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#10 clk = ~clk;
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end
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end
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initial begin
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resetb = 0;
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#30 resetb = 1;
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end
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integer num_errors;
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parameter MAX_TRIALS = 10;
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initial begin
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// $dumpfile ("multdiv.vcd");
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// $dumpvars (0,a);
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// $dumpvars (0,b);
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// $dumpvars (0,y);
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// $dumpvars (0,resetb);
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// $dumpvars (0,done);
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num_errors = 0;
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#100;
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// Do a bunch of random multiplies
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repeat (MAX_TRIALS) begin
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test_multiply ($random, $random);
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end
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// Special cases
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test_multiply ($random, 1);
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test_multiply (1, $random);
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test_multiply ($random, 0);
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test_multiply (0, $random);
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$display ("Done. %0d Errors", num_errors);
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if(num_errors == 0)
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$display("PASSED");
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#800;
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$finish;
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end
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task test_multiply;
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input [15:0] aarg;
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input [15:0] barg;
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integer expected_answer;
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begin
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if (~done) begin
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$display ("Multiplier is Busy!!");
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end
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else begin
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@(negedge clk);
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start = 1;
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a = aarg;
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b = barg;
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@(negedge clk) start = 0;
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@(posedge done);
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expected_answer = a*b;
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$display ("%0d * %0d = %0h, Reality = %0h", a, b, y, expected_answer);
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if (y !== expected_answer) begin
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$display (" FAILED!");
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num_errors = num_errors + 1;
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end
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end
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end
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endtask
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endmodule
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