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[/] [openrisc/] [trunk/] [orpsocv2/] [boards/] [xilinx/] [ml501/] [rtl/] [verilog/] [lfsr/] [lfsr.v] - Rev 478
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////////////////////////////////////////////////////////////////////// //// //// //// Linear feedback shift register with Wishbone interface //// //// //// //// Description //// //// Simple LFSR module (feedback hardcoded) //// //// Two accessible registers: //// //// Address 0: LFSR Register (R/W) //// //// Address 4: Control register, active high, self resetting (WO)//// //// Bit[0]: lfsr shift enable //// //// Bit[1]: lfsr reset //// //// //// //// To Do: //// //// Perhaps make feedback parameterisable //// //// //// //// Author(s): //// //// - Julius Baxter, julius.baxter@orsoc.se //// //// //// //// //// ////////////////////////////////////////////////////////////////////// //// //// //// Copyright (C) 2010 Authors and OPENCORES.ORG //// //// //// //// This source file may be used and distributed without //// //// restriction provided that this copyright statement is not //// //// removed from the file and that any derivative work contains //// //// the original copyright notice and the associated disclaimer. //// //// //// //// This source file is free software; you can redistribute it //// //// and/or modify it under the terms of the GNU Lesser General //// //// Public License as published by the Free Software Foundation; //// //// either version 2.1 of the License, or (at your option) any //// //// later version. //// //// //// //// This source is distributed in the hope that it will be //// //// useful, but WITHOUT ANY WARRANTY; without even the implied //// //// warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR //// //// PURPOSE. See the GNU Lesser General Public License for more //// //// details. //// //// //// //// You should have received a copy of the GNU Lesser General //// //// Public License along with this source; if not, download it //// //// from http://www.opencores.org/lgpl.shtml //// //// //// ////////////////////////////////////////////////////////////////////// module wb_lfsr( wb_clk, wb_rst, wb_adr_i, wb_dat_i, wb_cyc_i, wb_stb_i, wb_we_i, wb_dat_o, wb_ack_o); parameter width = 32; parameter lfsr_rst_value = 32'b0011_0001_0000_1010; input wb_clk; input wb_rst; input [2:0] wb_adr_i; input [width-1:0] wb_dat_i; input wb_cyc_i, wb_stb_i, wb_we_i; output [width-1:0] wb_dat_o; output reg wb_ack_o; wire wb_req; assign wb_req = wb_stb_i & wb_cyc_i; reg [width-1:0] lfsr; wire lfsr_feedback; assign wb_dat_o = lfsr; // Only 2 registers here, the lfsr itself and wire lfsr_sel; assign lfsr_sel = !wb_adr_i[2]; wire lfsr_control_reg_sel; assign lfsr_control_reg_sel = wb_adr_i[2]; // [0]: shift enable, [1]: reset reg [1:0] lfsr_control_reg; wire lfsr_control_enable; wire lfsr_control_rst; // Load the control reg when required, always @(posedge wb_clk) begin if (wb_rst) lfsr_control_reg <= 0; else if (wb_req & wb_we_i & lfsr_control_reg_sel & wb_ack_o) lfsr_control_reg <= wb_dat_i; if (lfsr_control_reg[0]) lfsr_control_reg[0] <= 0; if (lfsr_control_reg[1]) lfsr_control_reg[1] <= 0; end // always @ (posedge wb_clk) assign lfsr_control_enable = lfsr_control_reg[0]; assign lfsr_control_rst = lfsr_control_reg[1]; assign lfsr_feedback = !(((lfsr[27] ^ lfsr[13]) ^ lfsr[8]) ^ lfsr[5]); always @(posedge wb_clk) if (wb_rst) lfsr <= lfsr_rst_value; else if (lfsr_control_rst) lfsr <= lfsr_rst_value; else if (wb_req & wb_we_i & lfsr_sel & wb_ack_o) // Set lfsr lfsr <= wb_dat_i; else if (lfsr_control_enable) lfsr <= {lfsr[width-2:0], lfsr_feedback}; always @(posedge wb_clk) if (wb_rst) wb_ack_o <= 0; else if (wb_req & !wb_ack_o) wb_ack_o <= 1; else if (wb_ack_o) wb_ack_o <= 0; endmodule // lfsr
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