module fulladder (sum, c_out, a, b, c_in);
wire s1, c1, c2;
output sum;
output c_out;
input a, b, c_in;
xor g1(s1, a, b);
xor g2(sum, s1, c_in);
and g3(c1, a,b);
and g4(c2, s1, c_in) ;
xor g5(c_out, c2, c1) ;
endmodule
module adder3(sum, c_out, a, b, c_in);
wire [2:0] c;
output [2:0] sum;
output c_out;
input [2:0] a;
input [2:0] b;
input c_in;
fulladder fa1(sum[0], c[1], a[0], b[0], c_in) ;
fulladder fa2(sum[1], c[2], a[1], b[1], c[1]) ;
fulladder fa3(sum[2], c_out, a[2], b[2], c[2]) ;
endmodule
module main;
reg [2:0] a;
reg [2:0] b;
wire [2:0] sum;
wire c_out;
adder3 DUT (sum, c_out, a, b, 1'b0);
initial
begin
a = 4'b0101;
b = 4'b0000;
end
always #50 begin
b=b+1;
$monitor("%dns monitor: a=%d b=%d sum=%d", $stime, a, b, sum);
end
initial #2000 $finish;
endmodule
大米
2015年11月25日 星期三
2015年11月18日 星期三
一位元全加法器
module test_adder1;
reg a,b;
reg carry_in ;
wire sum;
wire carry_out;
adder1_behavorial A1(carry_out, sum, a, b, carry_in);
initial
begin
carry_in = 0; a = 0; b = 0;
# 100 if ( carry_in != 0 | sum !== 0)
$display(" 0+0+0=00 sum is WRONG!");
else
$display(" 0+0+0=00 sum is RIGHT!");
carry_in = 0; a = 0; b = 1;
# 100 if ( carry_in != 0 | sum !== 1)
$display(" 0+0+1=01 sum is WRONG!");
else
$display(" 0+0+1=01 sum is RIGHT!");
carry_in = 0; a = 1; b = 0;
# 100 if ( carry_in != 0 | sum !== 1)
$display(" 0+1+0=01 sum is WRONG!");
else
$display(" 0+1+0=01 sum is RIGHT!");
carry_in = 0; a = 1; b = 1;
# 100 if ( carry_in != 1 | sum !== 0)
$display(" 0+1+1=10 sum is WRONG!");
else
$display(" 0+1+1=10 sum is RIGHT!");
carry_in = 1; a = 0; b = 0;
# 100 if ( carry_in != 0 | sum !== 1)
$display(" 1+0+0=01 sum is WRONG!");
else
$display(" 1+0+0=01 sum is RIGHT!");
carry_in = 1; a = 0; b = 1;
# 100 if ( carry_in != 1 | sum !== 0)
$display(" 1+0+1=10 sum is WRONG!");
else
$display(" 1+0+1=10 sum is RIGHT!");
carry_in = 1; a = 1; b = 0;
# 100 if ( carry_in != 1 | sum !== 0)
$display(" 1+1+0=10 sum is WRONG!");
else
$display(" 1+1+0=10 sum is RIGHT!");
carry_in = 1; a = 1; b = 1;
# 100 if ( carry_in != 1 | sum !== 1)
$display(" 1+1+1=11 sum is WRONG!");
else
$display(" 1+1+1=11 sum is RIGHT!");
$finish;
end
endmodule
module adder1_behavorial (carry_out, sum, a, b, carry_in);
input a, b, carry_in;
output carry_out, sum;
assign sum = (~a&b&~carry_in)|(~carry_in&a&~b)|(a&b&carry_in);
assign carry_out = a&carry_in|a&b|b&carry_in;
endmodule
reg a,b;
reg carry_in ;
wire sum;
wire carry_out;
adder1_behavorial A1(carry_out, sum, a, b, carry_in);
initial
begin
carry_in = 0; a = 0; b = 0;
# 100 if ( carry_in != 0 | sum !== 0)
$display(" 0+0+0=00 sum is WRONG!");
else
$display(" 0+0+0=00 sum is RIGHT!");
carry_in = 0; a = 0; b = 1;
# 100 if ( carry_in != 0 | sum !== 1)
$display(" 0+0+1=01 sum is WRONG!");
else
$display(" 0+0+1=01 sum is RIGHT!");
carry_in = 0; a = 1; b = 0;
# 100 if ( carry_in != 0 | sum !== 1)
$display(" 0+1+0=01 sum is WRONG!");
else
$display(" 0+1+0=01 sum is RIGHT!");
carry_in = 0; a = 1; b = 1;
# 100 if ( carry_in != 1 | sum !== 0)
$display(" 0+1+1=10 sum is WRONG!");
else
$display(" 0+1+1=10 sum is RIGHT!");
carry_in = 1; a = 0; b = 0;
# 100 if ( carry_in != 0 | sum !== 1)
$display(" 1+0+0=01 sum is WRONG!");
else
$display(" 1+0+0=01 sum is RIGHT!");
carry_in = 1; a = 0; b = 1;
# 100 if ( carry_in != 1 | sum !== 0)
$display(" 1+0+1=10 sum is WRONG!");
else
$display(" 1+0+1=10 sum is RIGHT!");
carry_in = 1; a = 1; b = 0;
# 100 if ( carry_in != 1 | sum !== 0)
$display(" 1+1+0=10 sum is WRONG!");
else
$display(" 1+1+0=10 sum is RIGHT!");
carry_in = 1; a = 1; b = 1;
# 100 if ( carry_in != 1 | sum !== 1)
$display(" 1+1+1=11 sum is WRONG!");
else
$display(" 1+1+1=11 sum is RIGHT!");
$finish;
end
endmodule
module adder1_behavorial (carry_out, sum, a, b, carry_in);
input a, b, carry_in;
output carry_out, sum;
assign sum = (~a&b&~carry_in)|(~carry_in&a&~b)|(a&b&carry_in);
assign carry_out = a&carry_in|a&b|b&carry_in;
endmodule
2015年11月4日 星期三
2015年10月28日 星期三
1028 四位元
module top;
wire [3:0]OUT, A, B;
wire SEL;
system_clock #12800 clock1(A[3]);
system_clock #6400 clock2(A[2]);
system_clock #3200 clock3(A[1]);
system_clock #1600 clock4(A[0]);
system_clock #800 clock5(B[3]);
system_clock #400 clock6(B[2]);
system_clock #200 clock7(B[1]);
system_clock #100 clock8(B[0]);
system_clock #25600 clock7(SEL);
mux2 m1(OUT[1:0],A[1:0],B[1:0],SEL);
mux2 m2(OUT[3:2],A[3:2],B[3:2],SEL);
endmodule
module mux(OUT, A, B, SEL);
output OUT;
input A,B,SEL;
not I5 (sel_n, SEL) ;
and I6 (sel_a, A, SEL);
and I7 (sel_b, sel_n, B);
or I4 (OUT, sel_a, sel_b);
endmodule
module mux2(OUT, A, B, SEL);
output [1:0] OUT;
input [1:0] A,B;
input SEL;
mux hi (OUT[1], A[1], B[1], SEL);
mux lo (OUT[0], A[0], B[0], SEL);
endmodule
module system_clock(clk);
parameter PERIOD=100;
output clk;
reg clk;
initial clk=0;
always
begin
#(PERIOD/2) clk=~clk;
end
always@(posedge clk)
if($time>25600)$stop;
endmodule
wire [3:0]OUT, A, B;
wire SEL;
system_clock #12800 clock1(A[3]);
system_clock #6400 clock2(A[2]);
system_clock #3200 clock3(A[1]);
system_clock #1600 clock4(A[0]);
system_clock #800 clock5(B[3]);
system_clock #400 clock6(B[2]);
system_clock #200 clock7(B[1]);
system_clock #100 clock8(B[0]);
system_clock #25600 clock7(SEL);
mux2 m1(OUT[1:0],A[1:0],B[1:0],SEL);
mux2 m2(OUT[3:2],A[3:2],B[3:2],SEL);
endmodule
module mux(OUT, A, B, SEL);
output OUT;
input A,B,SEL;
not I5 (sel_n, SEL) ;
and I6 (sel_a, A, SEL);
and I7 (sel_b, sel_n, B);
or I4 (OUT, sel_a, sel_b);
endmodule
module mux2(OUT, A, B, SEL);
output [1:0] OUT;
input [1:0] A,B;
input SEL;
mux hi (OUT[1], A[1], B[1], SEL);
mux lo (OUT[0], A[0], B[0], SEL);
endmodule
module system_clock(clk);
parameter PERIOD=100;
output clk;
reg clk;
initial clk=0;
always
begin
#(PERIOD/2) clk=~clk;
end
always@(posedge clk)
if($time>25600)$stop;
endmodule
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