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71. Arithmetic Logic Unit

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Solving Approach

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Code

/*Write your code here*/
module alu4 (
    input  [3:0] a,
    input  [3:0] b,
    input  [2:0] op, 
    output reg [3:0] y,
    output reg  cf
);
    localparam [2:0]
        OP_ADD = 3'b000,
        OP_SUB = 3'b001,
        OP_AND = 3'b010,
        OP_OR  = 3'b011,
        OP_XOR = 3'b100;

    wire [4:0] add5 = {1'b0, a} + {1'b0, b};
    wire [4:0] sub5 = {1'b0, a} + {1'b0, ~b} + 5'b1; 

    always @* begin
        y  = 4'b0000;
        cf = 1'b0;
        case (op)
            OP_ADD: begin
                y  = add5[3:0];
                cf = add5[4];    
            end
            OP_SUB: begin
                y  = sub5[3:0];
                cf = ~sub5[4];    
            end
            OP_AND: y = a & b;
            OP_OR : y = a | b;
            OP_XOR: y = a ^ b;
            default: begin y = 4'b0000; cf = 1'b0; end
        endcase
    end
endmodule

 

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