/** * Implement the FTDI Fast Opto Mode */ module ftdi ( input clock, input [7:0] read_data, input read_clock_enable, input reset, /* active low */ input fscts, /* fast serial clear to send */ output reg ready, /* ready to read new data */ output reg [1:0] state, /* ready to read new data */ output reg fsdi); reg [9:0] data; reg new_data; //reg [1:0] state; reg [3:0] bit_pos; /* which is the next bit we transmit */ localparam IDLE = 2'h0, WAIT_CTS = 2'h1, DATA = 2'h2; always @(negedge clock or negedge reset) begin if (~reset) begin ready <= 0; new_data <= 0; end else begin if (state == IDLE) begin if (~new_data) if (~ready) ready <= 1; else if (read_clock_enable) begin /* start bit */ data[0] <= 0; data[8:1] <= read_data; /* channel bit */ data[9] <= 1; new_data <= 1; ready <= 0; end end else new_data <= 0; end end always @(negedge clock or negedge reset) begin if (~reset) begin state <= IDLE; end else begin case (state) IDLE: begin fsdi <= 1; if (new_data) begin bit_pos <= 0; if (fscts) state <= DATA; else state <= WAIT_CTS; end end WAIT_CTS: begin if (fscts) state <= DATA; end DATA: begin fsdi <= data[bit_pos]; if (bit_pos == 9) state <= IDLE; else bit_pos <= bit_pos + 1; end // dummy to handle 2'h3: begin state <= IDLE; end endcase end end endmodule