| `timescale 1ns / 1ns |
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| module multi_counter_tb; |
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| |
| reg clk; |
| integer cc=0; |
| reg fail=0; |
| initial begin |
| if ($test$plusargs("vcd")) begin |
| $dumpfile("multi_counter.vcd"); |
| $dumpvars(5, multi_counter_tb); |
| end |
| for (cc=0; cc<100; cc=cc+1) begin |
| clk=0; #5; |
| clk=1; #5; |
| end |
| if (fail) begin |
| $display("FAIL"); |
| $stop(0); |
| end else begin |
| $display("PASS"); |
| $finish(0); |
| end |
| end |
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| |
| reg inc=0; reg[3:0] inc_addr; |
| always @(posedge clk) case(cc) |
| 4: begin inc<=1; inc_addr<=4; end |
| 5: begin inc<=1; inc_addr<=3; end |
| 8: begin inc<=1; inc_addr<=4; end |
| 9: begin inc<=1; inc_addr<=4; end |
| 14: begin inc<=1; inc_addr<=6; end |
| 16: begin inc<=1; inc_addr<=6; end |
| default: begin inc<=0; inc_addr<=4'bx; end |
| endcase |
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| |
| reg [3:0] read_addr=0; |
| always @(posedge clk) if ((cc>20) && ((cc%3)==0)) read_addr <= read_addr+1; |
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| wire [15:0] read_data; |
| multi_counter dut(.clk(clk), .inc(inc), .inc_addr(inc_addr), |
| .read_addr(read_addr), .read_data(read_data) |
| ); |
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| |
| reg [3:0] prev_addr=0; |
| always @(posedge clk) prev_addr <= read_addr; |
| reg fault=0; |
| always @(posedge clk) case(prev_addr) |
| 3: fault <= read_data != 1; |
| 4: fault <= read_data != 3; |
| 6: fault <= read_data != 2; |
| default: fault <= read_data != 0; |
| endcase |
| always @(posedge clk) if (fault) fail <= 1; |
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| endmodule |
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