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[/] [uart2bus/] [trunk/] [verilog/] [rtl/] [uart2bus_top.v] - Rev 10
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//--------------------------------------------------------------------------------------- // uart to internal bus top module // //--------------------------------------------------------------------------------------- module uart2bus_top ( // global signals clock, reset, // uart serial signals ser_in, ser_out, // internal bus to register file int_address, int_wr_data, int_write, int_rd_data, int_read ); //--------------------------------------------------------------------------------------- // modules inputs and outputs input clock; // global clock input input reset; // global reset input input ser_in; // serial data input output ser_out; // serial data output output [15:0] int_address; // address bus to register file output [7:0] int_wr_data; // write data to register file output int_write; // write control to register file output int_read; // read control to register file input [7:0] int_rd_data; // data read from register file // baud rate configuration, see baud_gen.v for more details. // baud rate generator parameters for 115200 baud on 40MHz clock `define D_BAUD_FREQ 12'h90 `define D_BAUD_LIMIT 16'h0ba5 // baud rate generator parameters for 115200 baud on 44MHz clock // `define D_BAUD_FREQ 12'd23 // `define D_BAUD_LIMIT 16'd527 // baud rate generator parameters for 9600 baud on 66MHz clock //`define D_BAUD_FREQ 12'h10 //`define D_BAUD_LIMIT 16'h1ACB // internal wires wire [7:0] tx_data; // data byte to transmit wire new_tx_data; // asserted to indicate that there is a new data byte for transmission wire tx_busy; // signs that transmitter is busy wire [7:0] rx_data; // data byte received wire new_rx_data; // signs that a new byte was received wire [11:0] baud_freq; wire [15:0] baud_limit; wire baud_clk; //--------------------------------------------------------------------------------------- // module implementation // uart top module instance uart_top uart1 ( .clock(clock), .reset(reset), .ser_in(ser_in), .ser_out(ser_out), .rx_data(rx_data), .new_rx_data(new_rx_data), .tx_data(tx_data), .new_tx_data(new_tx_data), .tx_busy(tx_busy), .baud_freq(baud_freq), .baud_limit(baud_limit), .baud_clk(baud_clk) ); // assign baud rate default values assign baud_freq = `D_BAUD_FREQ; assign baud_limit = `D_BAUD_LIMIT; // uart parser instance uart_parser #(16) uart_parser1 ( .clock(clock), .reset(reset), .rx_data(rx_data), .new_rx_data(new_rx_data), .tx_data(tx_data), .new_tx_data(new_tx_data), .tx_busy(tx_busy), .int_address(int_address), .int_wr_data(int_wr_data), .int_write(int_write), .int_rd_data(int_rd_data), .int_read(int_read) ); endmodule //--------------------------------------------------------------------------------------- // Th.. Th.. Th.. Thats all folks !!! //---------------------------------------------------------------------------------------
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