// 8-line to 3-line priority encoder module ttl_74148 #(parameter WIDTH_IN = 8, WIDTH_OUT = 3, DELAY_RISE = 0, DELAY_FALL = 0) ( input EI_bar, input [WIDTH_IN-1:0] A_bar, output EO_bar, output GS_bar, output [WIDTH_OUT-1:0] Y_bar ); //------------------------------------------------// reg EO_computed; reg GS_computed; reg [WIDTH_OUT-1:0] Y_computed; always @(*) begin if (EI_bar) begin // equal to EI (inverted) EO_computed = 0; // equal to EI (inverted) GS_computed = 0; // lowest priority (inverted) Y_computed = 3'b000; end else begin // normally opposite of EI (inverted) EO_computed = 0; // normally equal to EI (inverted) GS_computed = 1; casez (A_bar) 8'b0???????: Y_computed = 3'b111; 8'b10??????: Y_computed = 3'b110; 8'b110?????: Y_computed = 3'b101; 8'b1110????: Y_computed = 3'b100; 8'b11110???: Y_computed = 3'b011; 8'b111110??: Y_computed = 3'b010; 8'b1111110?: Y_computed = 3'b001; 8'b11111110: Y_computed = 3'b000; 8'b11111111: begin // exception: equal to EI (inverted) EO_computed = 1; // exception: opposite of EI (inverted) GS_computed = 0; // lowest priority (inverted) Y_computed = 3'b000; end default: Y_computed = 3'b000; endcase end end //------------------------------------------------// assign #(DELAY_RISE, DELAY_FALL) EO_bar = ~EO_computed; assign #(DELAY_RISE, DELAY_FALL) GS_bar = ~GS_computed; assign #(DELAY_RISE, DELAY_FALL) Y_bar = ~Y_computed; endmodule