// Test: Dual 2-line to 4-line decoder/demultiplexer (inverted outputs) module test; `TBASSERT_METHOD(tbassert) localparam BLOCKS = 3; localparam WIDTH_OUT = 2; localparam WIDTH_IN = $clog2(WIDTH_OUT); // do not pass this to the module because // it is dependent value // DUT inputs reg [BLOCKS-1:0] Enable_bar; reg [BLOCKS*WIDTH_IN-1:0] A; // WIDTH_IN is one bit // DUT outputs wire [BLOCKS*WIDTH_OUT-1:0] Y; // DUT ttl_74139 #(.BLOCKS(BLOCKS), .WIDTH_OUT(WIDTH_OUT), .DELAY_RISE(5), .DELAY_FALL(3)) dut( .Enable_bar(Enable_bar), .A_2D(A), .Y_2D(Y) ); initial begin reg [WIDTH_IN-1:0] AInputs; reg [WIDTH_IN-1:0] BInputs; reg [WIDTH_IN-1:0] CInputs; reg [WIDTH_OUT-1:0] XOutputs; reg [WIDTH_OUT-1:0] YOutputs; reg [WIDTH_OUT-1:0] ZOutputs; $dumpfile("74139-tb.vcd"); $dumpvars; // select A: enabled -> first output is 0 Enable_bar = {BLOCKS{1'b0}}; AInputs = 1'b0; BInputs = 1'b0; CInputs = 1'b0; A = {CInputs, BInputs, AInputs}; #6 {ZOutputs, YOutputs, XOutputs} = Y; tbassert(XOutputs == 2'b10, "Test 1"); tbassert(YOutputs == 2'b10, "Test 1"); tbassert(ZOutputs == 2'b10, "Test 1"); #0 // select A: disabled in first block -> output is 11 instead of 10 Enable_bar[0] = 1'b1; #6 {ZOutputs, YOutputs, XOutputs} = Y; tbassert(XOutputs == 2'b11, "Test 2"); tbassert(YOutputs == 2'b10, "Test 2"); tbassert(ZOutputs == 2'b10, "Test 2"); #0 // select A: disabled in second block, enabled in first block Enable_bar[0] = 1'b0; Enable_bar[1] = 1'b1; #6 {ZOutputs, YOutputs, XOutputs} = Y; tbassert(XOutputs == 2'b10, "Test 3"); tbassert(YOutputs == 2'b11, "Test 3"); tbassert(ZOutputs == 2'b10, "Test 3"); #0 // select B: disabled -> output 1s Enable_bar = {BLOCKS{1'b1}}; AInputs = 1'b1; BInputs = 1'b1; CInputs = 1'b1; A = {CInputs, BInputs, AInputs}; #10 {ZOutputs, YOutputs, XOutputs} = Y; tbassert(XOutputs == 2'b11, "Test 4"); tbassert(YOutputs == 2'b11, "Test 4"); tbassert(ZOutputs == 2'b11, "Test 4"); #0 // select B: enabled in second and third blocks -> second output is 0 where enabled Enable_bar[1] = 1'b0; Enable_bar[2] = 1'b0; #10 {ZOutputs, YOutputs, XOutputs} = Y; tbassert(XOutputs == 2'b11, "Test 5"); tbassert(YOutputs == 2'b01, "Test 5"); tbassert(ZOutputs == 2'b01, "Test 5"); #0 // select A: enabled in second and third blocks -> first output is 0 where enabled A = {BLOCKS{1'b0}}; #10 {ZOutputs, YOutputs, XOutputs} = Y; tbassert(XOutputs == 2'b11, "Test 6"); tbassert(YOutputs == 2'b10, "Test 6"); tbassert(ZOutputs == 2'b10, "Test 6"); #0 // select A: enabled in first and third blocks Enable_bar[0] = 1'b0; Enable_bar[1] = 1'b1; Enable_bar[2] = 1'b0; #10 {ZOutputs, YOutputs, XOutputs} = Y; tbassert(XOutputs == 2'b10, "Test 7"); tbassert(YOutputs == 2'b11, "Test 7"); tbassert(ZOutputs == 2'b10, "Test 7"); #0 // while enabled: change to select B from select A -> second output is 0 Enable_bar[1] = 1'b0; #10 {ZOutputs, YOutputs, XOutputs} = Y; tbassert(XOutputs == 2'b10, "Test 8"); tbassert(YOutputs == 2'b10, "Test 8"); tbassert(ZOutputs == 2'b10, "Test 8"); #0 A = {BLOCKS{1'b1}}; #10 {ZOutputs, YOutputs, XOutputs} = Y; tbassert(XOutputs == 2'b01, "Test 8"); tbassert(YOutputs == 2'b01, "Test 8"); tbassert(ZOutputs == 2'b01, "Test 8"); #0 // while disabled: change to select A from select B with null change to output 1s Enable_bar = {BLOCKS{1'b1}}; #10 {ZOutputs, YOutputs, XOutputs} = Y; tbassert(XOutputs == 2'b11, "Test 9"); tbassert(YOutputs == 2'b11, "Test 9"); tbassert(ZOutputs == 2'b11, "Test 9"); #0 A = {BLOCKS{1'b0}}; #10 {ZOutputs, YOutputs, XOutputs} = Y; tbassert(XOutputs == 2'b11, "Test 9"); tbassert(YOutputs == 2'b11, "Test 9"); tbassert(ZOutputs == 2'b11, "Test 9"); #0 // while enabled: mixed selects -> outputs are both 01, 10 Enable_bar = {BLOCKS{1'b0}}; AInputs = 1'b1; BInputs = 1'b0; CInputs = 1'b0; A = {CInputs, BInputs, AInputs}; #10 {ZOutputs, YOutputs, XOutputs} = Y; tbassert(XOutputs == 2'b01, "Test 10"); tbassert(YOutputs == 2'b10, "Test 10"); tbassert(ZOutputs == 2'b10, "Test 10"); #0 // while enabled: change to select B from select A in third block only CInputs = 1'b1; A = {CInputs, BInputs, AInputs}; #6 {ZOutputs, YOutputs, XOutputs} = Y; tbassert(XOutputs == 2'b01, "Test 11"); tbassert(YOutputs == 2'b10, "Test 11"); tbassert(ZOutputs == 2'b01, "Test 11"); #0 // same selects but disabled in first block -> output is 11 instead of 01 Enable_bar[0] = 1'b1; #6 {ZOutputs, YOutputs, XOutputs} = Y; tbassert(XOutputs == 2'b11, "Test 12"); tbassert(YOutputs == 2'b10, "Test 12"); tbassert(ZOutputs == 2'b01, "Test 12"); #0 // same selects but disabled in second block, enabled in first block -> output is 11 // instead of 10 Enable_bar[0] = 1'b0; Enable_bar[1] = 1'b1; #6 {ZOutputs, YOutputs, XOutputs} = Y; tbassert(XOutputs == 2'b01, "Test 13"); tbassert(YOutputs == 2'b11, "Test 13"); tbassert(ZOutputs == 2'b01, "Test 13"); #0 // all input selects transition from previous AInputs = 1'b0; BInputs = 1'b1; CInputs = 1'b0; A = {CInputs, BInputs, AInputs}; #6 {ZOutputs, YOutputs, XOutputs} = Y; tbassert(XOutputs == 2'b10, "Test 14"); tbassert(YOutputs == 2'b11, "Test 14"); tbassert(ZOutputs == 2'b10, "Test 14"); #10 $finish; end endmodule