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[/] [oms8051mini/] [trunk/] [rtl/] [8051/] [oc8051_tc2.v] - Rev 10
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////////////////////////////////////////////////////////////////////// //// //// //// 8051 cores timer/counter2 control //// //// //// //// This file is part of the 8051 cores project //// //// http://www.opencores.org/cores/oms8051mini/ //// //// //// //// Description //// //// timers and counters 2 8051 core //// //// //// //// To Do: //// //// Nothing //// //// //// //// Author(s): //// //// - Simon Teran, simont@opencores.org //// //// - Dinesh Annayya, dinesha@opencores.org //// //// //// ////////////////////////////////////////////////////////////////////// //// //// //// Copyright (C) 2000 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 //// //// //// ////////////////////////////////////////////////////////////////////// // // CVS Revision History // // $Log: not supported by cvs2svn $ // Revision 1.2 2003/04/04 10:34:13 simont // change timers to meet timing specifications (add divider with 12) // // Revision 1.1 2003/01/13 14:13:12 simont // initial import // // // `include "top_defines.v" module oc8051_tc2 (clk, rst, wr_addr, data_in, bit_in, wr, wr_bit, t2, t2ex, rclk, tclk, brate2, tc2_int, pres_ow, //registers t2con, tl2, th2, rcap2l, rcap2h); input [7:0] wr_addr, data_in; input clk, rst, wr, wr_bit, t2, t2ex, bit_in, pres_ow; //prescalre owerflov output [7:0] t2con, tl2, th2, rcap2l, rcap2h; output tc2_int, rclk, tclk, brate2; reg brate2; reg [7:0] t2con, tl2, th2, rcap2l, rcap2h; reg neg_trans, t2ex_r, t2_r, tc2_event, tf2_set; wire run; // // t2con wire tf2, exf2, exen2, tr2, ct2, cprl2; assign tc2_int = tf2 | exf2; assign tf2 = t2con[7]; assign exf2 = t2con[6]; assign rclk = t2con[5]; assign tclk = t2con[4]; assign exen2 = t2con[3]; assign tr2 = t2con[2]; assign ct2 = t2con[1]; assign cprl2 = t2con[0]; always @(posedge clk or posedge rst) begin if (rst) begin t2con <= #1 `OC8051_RST_T2CON; end else if ((wr) & !(wr_bit) & (wr_addr==`OC8051_SFR_T2CON)) begin t2con <= #1 data_in; end else if ((wr) & (wr_bit) & (wr_addr[7:3]==`OC8051_SFR_B_T2CON)) begin t2con[wr_addr[2:0]] <= #1 bit_in; end else if (tf2_set) begin t2con[7] <= #1 1'b1; end else if (exen2 & neg_trans) begin t2con[6] <= #1 1'b1; end end // //th2, tl2 assign run = tr2 & ((!ct2 & pres_ow) | (ct2 & tc2_event)); always @(posedge clk or posedge rst) begin if (rst) begin // // reset // tl2 <= #1 `OC8051_RST_TL2; th2 <= #1 `OC8051_RST_TH2; brate2 <= #1 1'b0; tf2_set <= #1 1'b0; end else if ((wr) & !(wr_bit) & (wr_addr==`OC8051_SFR_TH2)) begin // // write to timer 2 high // th2 <= #1 data_in; end else if ((wr) & !(wr_bit) & (wr_addr==`OC8051_SFR_TL2)) begin // // write to timer 2 low // tl2 <= #1 data_in; end else if (!(rclk | tclk) & !cprl2 & exen2 & neg_trans) begin // // avto reload mode, exen2=1, 0-1 transition on t2ex pin // th2 <= #1 rcap2h; tl2 <= #1 rcap2l; tf2_set <= #1 1'b0; end else if (run) begin if (rclk | tclk) begin // // boud rate generator mode // if (&{th2, tl2}) begin th2 <= #1 rcap2h; tl2 <= #1 rcap2l; brate2 <= #1 1'b1; end else begin {brate2, th2, tl2} <= #1 {1'b0, th2, tl2} + 17'h1; end tf2_set <= #1 1'b0; end else if (cprl2) begin // // capture mode // {tf2_set, th2, tl2} <= #1 {1'b0, th2, tl2} + 17'h1; end else begin // // auto reload mode // if (&{th2, tl2}) begin th2 <= #1 rcap2h; tl2 <= #1 rcap2l; tf2_set <= #1 1'b1; end else begin {tf2_set, th2, tl2} <= #1 {1'b0, th2, tl2} + 17'h1; end end end else tf2_set <= #1 1'b0; end // // rcap2l, rcap2h always @(posedge clk or posedge rst) begin if (rst) begin rcap2l <= #1 `OC8051_RST_RCAP2L; rcap2h <= #1 `OC8051_RST_RCAP2H; end else if ((wr) & !(wr_bit) & (wr_addr==`OC8051_SFR_RCAP2H)) begin rcap2h <= #1 data_in; end else if ((wr) & !(wr_bit) & (wr_addr==`OC8051_SFR_RCAP2L)) begin rcap2l <= #1 data_in; end else if (!(rclk | tclk) & exen2 & cprl2 & neg_trans) begin rcap2l <= #1 tl2; rcap2h <= #1 th2; end end // // always @(posedge clk or posedge rst) begin if (rst) begin neg_trans <= #1 1'b0; t2ex_r <= #1 1'b0; end else if (t2ex) begin neg_trans <= #1 1'b0; t2ex_r <= #1 1'b1; end else if (t2ex_r) begin neg_trans <= #1 1'b1; t2ex_r <= #1 1'b0; end else begin neg_trans <= #1 1'b0; t2ex_r <= #1 t2ex_r; end end // // always @(posedge clk or posedge rst) begin if (rst) begin tc2_event <= #1 1'b0; t2_r <= #1 1'b0; end else if (t2) begin tc2_event <= #1 1'b0; t2_r <= #1 1'b1; end else if (!t2 & t2_r) begin tc2_event <= #1 1'b1; t2_r <= #1 1'b0; end else begin tc2_event <= #1 1'b0; end end endmodule
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