//`timescale 1ns/1ns module Controller( input clk, //clock input rst_n, //external asynchronous active low reset input RWM_1_done, //status signal from the RWM_1 module input RWM_2_done, //status signal from the RWM_2 module input GS_done, //status signal from the Grayscaler module input start, //external start command from user output RWM_1_enable, //status signal to the RWM_1 module output rw_1, //status signal to the RWM_1 module output RWM_2_enable, //status signal to the RWM_2 module output rw_2, //status signal to the RWM_2 module output camera_enable, //status signal to the camera output GS_enable //status signal to the Grayscaler module ); parameter [2:0] IDLE = 3'b000, CAMERA_READ = 3'b001, GRAYSCALE = 3'b010, FILTER = 3'b011; reg [2:0] CS, NS; //Sequential logic always @(posedge clk or negedge rst_n) begin if (~rst_n) CS <= IDLE; else CS <= NS; end //Combinatorial logic always @(start, GS_done, RWM_1_done, RWM_2_done) begin case (CS) IDLE: begin if (start == 1'b1) NS = CAMERA_READ; else NS = IDLE; end CAMERA_READ: begin if (RWM_1_done == 1'b1) NS = GRAYSCALE; else NS = CAMERA_READ; end GRAYSCALE: begin if (RWM_1_done == 1'b1) NS = FILTER; else NS = GRAYSCALE; end FILTER: begin if ((GS_done == 1'b1) || RWM_2_done == 1'b0) NS = FILTER; else NS = IDLE; end default: NS = IDLE; endcase end assign camera_enable = (CS == CAMERA_READ) ? 1'b1 : 1'b0; assign RWM_1_enable = ((CS == CAMERA_READ) || (CS == GRAYSCALE)) ? 1'b1 : 1'b0; assign rw_1 = (CS == CAMERA_READ) ? 1'b1 :((CS == GRAYSCALE) ? 1'b0 : 1'bz); assign RWM_2_enable = ((CS == GRAYSCALE) || (CS == FILTER)) ? 1'b1 : 1'b0; assign rw_2 = (CS == GRAYSCALE) ? 1'b1 : ((CS == FILTER) ? 1'b0 : 1'bz); assign GS_enable = (CS == GRAYSCALE) ? 1'b1 : 1'b0; endmodule