// Appends 32-bit Ethernet CRC to the end of a packet // Also inserts GMII preamble // // The cycle-by-cycle timing definition for these tasks // comes from the raw_s (short) and raw_l (long) strobes; // raw_s is valid just for the (incoming) packet data. // raw_l is also valid for a few cycles before, and 4 cycles after, that. module ethernet_crc_add( input clk, // timespec 6.8 ns input raw_s, input raw_l, input [7:0] raw_d, output opack_s, output [7:0] opack_d ); // Strobes are easy reg raw_s_d=0, raw_l_d=0; always @(posedge clk) begin raw_s_d <= raw_s; raw_l_d <= raw_l; end wire first_crc = raw_s & ~raw_s_d; wire trail = raw_s_d & ~raw_s; wire gate_crc; wire out_crc_sel; // Instantiation wire [7:0] crc_out; crc8e_guts #(.wid(32)) crc8e(.clk(clk), .gate(gate_crc), .first(first_crc), .d_in(out_crc_sel ? ~crc_out : raw_d), .d_out(crc_out), .zero()); // Multiplexing reg [1:0] crc_cnt=0; reg [7:0] opack_r=0; assign gate_crc = raw_s | raw_s_d | (crc_cnt != 0); assign out_crc_sel = trail | (|crc_cnt); always @(posedge clk) begin crc_cnt <= out_crc_sel ? crc_cnt+1 : 0; opack_r <= out_crc_sel ? crc_out : raw_s ? raw_d : 8'h55; end assign opack_d = first_crc ? 8'hd5 : opack_r; assign opack_s = raw_l | raw_l_d; endmodule