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// Test: Triple 3-input NAND gate
module test;
`TBASSERT_METHOD(tbassert)
localparam BLOCKS = 5;
localparam WIDTH_IN = 3;
// DUT inputs
reg [BLOCKS*WIDTH_IN-1:0] A;
// DUT outputs
wire [BLOCKS-1:0] Y;
// DUT
ttl_7410 #(.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;
reg [WIDTH_IN-1:0] Block2;
reg [WIDTH_IN-1:0] Block3;
reg [WIDTH_IN-1:0] Block4;
reg [WIDTH_IN-1:0] Block5;
integer i;
$dumpfile("7410-tb.vcd");
$dumpvars;
// all ones -> 0
Block1 = {WIDTH_IN{1'b1}};
Block2 = {WIDTH_IN{1'b1}};
Block3 = {WIDTH_IN{1'b1}};
Block4 = {WIDTH_IN{1'b1}};
Block5 = {WIDTH_IN{1'b1}};
A = {Block5, Block4, Block3, Block2, Block1};
#10
for (i = 0; i < BLOCKS; i++)
tbassert(Y[i] == 1'b0, "Test 1");
#0
// all zeroes -> 1
Block1 = {WIDTH_IN{1'b0}};
Block2 = {WIDTH_IN{1'b0}};
Block3 = {WIDTH_IN{1'b0}};
Block4 = {WIDTH_IN{1'b0}};
Block5 = {WIDTH_IN{1'b0}};
A = {Block5, Block4, Block3, Block2, Block1};
#10
for (i = 0; i < BLOCKS; i++)
tbassert(Y[i] == 1'b1, "Test 2");
#0
// only a single bit causes -> 1
Block1 = 3'b110;
Block2 = {WIDTH_IN{1'b1}};
Block3 = {WIDTH_IN{1'b1}};
Block4 = {WIDTH_IN{1'b1}};
Block5 = {WIDTH_IN{1'b1}};
A = {Block5, Block4, Block3, Block2, Block1};
#10
tbassert(Y == 5'b00001, "Test 3");
#0
// same on another input
Block1 = 3'b011;
Block2 = {WIDTH_IN{1'b1}};
Block3 = {WIDTH_IN{1'b1}};
Block4 = {WIDTH_IN{1'b1}};
Block5 = {WIDTH_IN{1'b1}};
A = {Block5, Block4, Block3, Block2, Block1};
#10
tbassert(Y == 5'b00001, "Test 4");
#0
// only a triplet of bits causes -> 0
Block1 = {WIDTH_IN{1'b0}};
Block2 = {WIDTH_IN{1'b0}};
Block3 = {WIDTH_IN{1'b0}};
Block4 = 3'b111;
Block5 = {WIDTH_IN{1'b0}};
A = {Block5, Block4, Block3, Block2, Block1};
#10
tbassert(Y == 5'b10111, "Test 5");
#0
// zeroes anywhere causes -> 1
Block1 = 3'b110;
Block2 = 3'b110;
Block3 = 3'b110;
Block4 = 3'b110;
Block5 = 3'b110;
A = {Block5, Block4, Block3, Block2, Block1};
#10
tbassert(Y == 5'b11111, "Test 6");
#0
// same on another input
Block1 = 3'b101;
Block2 = 3'b101;
Block3 = 3'b101;
Block4 = 3'b101;
Block5 = 3'b101;
A = {Block5, Block4, Block3, Block2, Block1};
#10
tbassert(Y == 5'b11111, "Test 7");
#0
// mixed bits causes both -> 0, 1
Block1 = 3'b100;
Block2 = 3'b101;
Block3 = 3'b000;
Block4 = 3'b111;
Block5 = 3'b110;
A = {Block5, Block4, Block3, Block2, Block1};
#6
tbassert(Y == 5'b10111, "Test 8");
#0
// same on other inputs
Block1 = 3'b010;
Block2 = 3'b011;
Block3 = 3'b000;
Block4 = 3'b111;
Block5 = 3'b110;
A = {Block5, Block4, Block3, Block2, Block1};
#6
tbassert(Y == 5'b10111, "Test 9");
#0
// same with bits cycled differently
Block1 = 3'b000;
Block2 = 3'b111;
Block3 = 3'b010;
Block4 = 3'b101;
Block5 = 3'b111;
A = {Block5, Block4, Block3, Block2, Block1};
#6
tbassert(Y == 5'b01101, "Test 10");
#0
// all input bits transition from previous
Block1 = 3'b111;
Block2 = 3'b000;
Block3 = 3'b101;
Block4 = 3'b010;
Block5 = 3'b000;
A = {Block5, Block4, Block3, Block2, Block1};
#6
tbassert(Y == 5'b11110, "Test 11");
#0
// timing: clear inputs, then must wait for outputs to transition
Block1 = {WIDTH_IN{1'bx}};
Block2 = {WIDTH_IN{1'bx}};
Block3 = {WIDTH_IN{1'bx}};
Block4 = {WIDTH_IN{1'bx}};
Block5 = {WIDTH_IN{1'bx}};
A = {Block5, Block4, Block3, Block2, Block1};
#10
Block1 = 3'b111;
Block2 = 3'b000;
Block3 = 3'b101;
Block4 = 3'b010;
Block5 = 3'b000;
A = {Block5, Block4, Block3, Block2, Block1};
#3
tbassert(Y === 5'bxxxxx, "Test 12");
#7
tbassert(Y == 5'b11110, "Test 12");
#10
$finish;
end
endmodule