// Test: Dual 4-input NAND gate module test; `TBASSERT_METHOD(tbassert) localparam BLOCKS = 1; localparam WIDTH_IN = 4; // DUT inputs reg [BLOCKS*WIDTH_IN-1:0] A; // DUT outputs wire [BLOCKS-1:0] Y; // DUT ttl_7420 #(.BLOCKS(BLOCKS), .WIDTH_IN(WIDTH_IN), .DELAY_RISE(5), .DELAY_FALL(3)) dut( .A_2D(A), .Y(Y) ); initial begin reg [WIDTH_IN-1:0] Block1; $dumpfile("7420-tb.vcd"); $dumpvars; // only a quadruplet of all ones -> 0 Block1 = {WIDTH_IN{1'b1}}; A = {Block1}; #10 tbassert(Y == 1'b0, "Test 1"); #0 // all zeroes -> 1 Block1 = {WIDTH_IN{1'b0}}; A = {Block1}; #10 tbassert(Y == 1'b1, "Test 2"); #0 // only a single bit causes -> 1 Block1 = 6'b1110; A = {Block1}; #10 tbassert(Y == 1'b1, "Test 3"); #0 // same on next input Block1 = 6'b1101; A = {Block1}; #10 tbassert(Y == 1'b1, "Test 4"); #0 // same on next input Block1 = 6'b1011; A = {Block1}; #10 tbassert(Y == 1'b1, "Test 5"); #0 // same on last input Block1 = 6'b0111; A = {Block1}; #10 tbassert(Y == 1'b1, "Test 6"); #0 // mixed bits causes -> 1 Block1 = 6'b0101; A = {Block1}; #6 tbassert(Y == 1'b1, "Test 7"); #0 // same on other inputs, all input bits transition from previous Block1 = 6'b1010; A = {Block1}; #6 tbassert(Y == 1'b1, "Test 8"); #0 // input transition to all ones causes output transition -> 0 Block1[0] = 1'b1; // Block1[1] = 1'b1; Block1[2] = 1'b1; // Block1[3] = 1'b1; A = {Block1}; #6 tbassert(Y == 1'b0, "Test 9"); #10 $finish; end endmodule