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[/] [turbo8051/] [trunk/] [rtl/] [8051/] [oc8051_int.v] - Blame information for rev 70

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1 2 dinesha
//////////////////////////////////////////////////////////////////////
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////                                                              ////
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////  8051 cores interrupt control module                         ////
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////                                                              ////
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////  This file is part of the 8051 cores project                 ////
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////  http://www.opencores.org/cores/8051/                        ////
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////                                                              ////
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////  Description                                                 ////
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////   contains sfr's: tcon, ip, ie;                              ////
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////   interrupt handling                                         ////
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////                                                              ////
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////  To Do:                                                      ////
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////   Nothing                                                    ////
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////                                                              ////
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////  Author(s):                                                  ////
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////      - Simon Teran, simont@opencores.org                     ////
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////      - Jaka Simsic, jakas@opencores.org                      ////
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////                                                              ////
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//////////////////////////////////////////////////////////////////////
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////                                                              ////
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//// Copyright (C) 2000 Authors and OPENCORES.ORG                 ////
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////                                                              ////
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//// This source file may be used and distributed without         ////
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//// restriction provided that this copyright statement is not    ////
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//// removed from the file and that any derivative work contains  ////
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//// the original copyright notice and the associated disclaimer. ////
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////                                                              ////
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//// This source file is free software; you can redistribute it   ////
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//// and/or modify it under the terms of the GNU Lesser General   ////
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//// Public License as published by the Free Software Foundation; ////
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//// either version 2.1 of the License, or (at your option) any   ////
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//// later version.                                               ////
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////                                                              ////
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//// This source is distributed in the hope that it will be       ////
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//// useful, but WITHOUT ANY WARRANTY; without even the implied   ////
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//// warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR      ////
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//// PURPOSE.  See the GNU Lesser General Public License for more ////
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//// details.                                                     ////
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////                                                              ////
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//// You should have received a copy of the GNU Lesser General    ////
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//// Public License along with this source; if not, download it   ////
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//// from http://www.opencores.org/lgpl.shtml                     ////
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////                                                              ////
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//////////////////////////////////////////////////////////////////////
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//
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// CVS Revision History
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//
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// $Log: not supported by cvs2svn $
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// Revision 1.9  2003/06/03 17:12:05  simont
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// fix some bugs.
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//
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// Revision 1.8  2003/04/07 14:58:02  simont
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// change sfr's interface.
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//
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// Revision 1.7  2003/03/28 17:45:57  simont
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// change module name.
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//
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// Revision 1.6  2003/01/13 14:14:41  simont
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// replace some modules
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//
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// Revision 1.5  2002/09/30 17:33:59  simont
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// prepared header
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//
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//
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`include "oc8051_defines.v"
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//synopsys translate_off
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`include "oc8051_timescale.v"
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//synopsys translate_on
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module oc8051_int (clk, rst,
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        wr_addr,
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        data_in, bit_in,
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        wr, wr_bit,
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//timer interrupts
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        tf0, tf1, t2_int,
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        tr0, tr1,
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//external interrupts
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        ie0, ie1,
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//uart interrupts
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        uart_int,
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//to cpu
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        intr, reti, int_vec, ack,
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//registers
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        ie, tcon, ip);
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input [7:0] wr_addr, data_in;
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input wr, tf0, tf1, t2_int, ie0, ie1, clk, rst, reti, wr_bit, bit_in, ack, uart_int;
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output tr0, tr1, intr;
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output [7:0] int_vec,
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             ie,
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             tcon,
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             ip;
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reg [7:0] ip, ie, int_vec;
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reg [3:0] tcon_s;
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reg tcon_tf1, tcon_tf0, tcon_ie1, tcon_ie0;
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//
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// isrc         processing interrupt sources
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// int_dept
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wire [2:0] isrc_cur;
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reg [2:0] isrc [1:0];
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reg [1:0] int_dept;
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wire [1:0] int_dept_1;
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reg int_proc;
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reg [1:0] int_lev [1:0];
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wire cur_lev;
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116
assign isrc_cur = int_proc ? isrc[int_dept_1] : 2'h0;
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assign int_dept_1 = int_dept - 2'b01;
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assign cur_lev = int_lev[int_dept_1];
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//
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// contains witch level of interrupts is running
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//reg [1:0] int_levl, int_levl_w;
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//
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// int_ln       waiting interrupts on level n
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// ip_ln        interrupts on level n
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// int_src      interrupt sources
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wire [5:0] int_l0, int_l1;
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wire [5:0] ip_l0, ip_l1;
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wire [5:0] int_src;
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wire il0, il1;
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reg tf0_buff, tf1_buff, ie0_buff, ie1_buff;
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//
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//interrupt priority
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assign ip_l0 = ~ip[5:0];
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assign ip_l1 = ip[5:0];
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141
assign int_src = {t2_int, uart_int, tcon_tf1, tcon_ie1, tcon_tf0, tcon_ie0};
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143
//
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// waiting interrupts
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assign int_l0 = ip_l0 & {ie[5:0]} & int_src;
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assign int_l1 = ip_l1 & {ie[5:0]} & int_src;
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assign il0 = |int_l0;
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assign il1 = |int_l1;
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//
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// TCON
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assign tcon = {tcon_tf1, tcon_s[3], tcon_tf0, tcon_s[2], tcon_ie1, tcon_s[1], tcon_ie0, tcon_s[0]};
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assign tr0 = tcon_s[2];
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assign tr1 = tcon_s[3];
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assign intr = |int_vec;
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//
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// IP
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always @(posedge clk or posedge rst)
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begin
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 if (rst) begin
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   ip <=#1 `OC8051_RST_IP;
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 end else if ((wr) & !(wr_bit) & (wr_addr==`OC8051_SFR_IP)) begin
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   ip <= #1 data_in;
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 end else if ((wr) & (wr_bit) & (wr_addr[7:3]==`OC8051_SFR_B_IP))
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   ip[wr_addr[2:0]] <= #1 bit_in;
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end
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//
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// IE
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always @(posedge clk or posedge rst)
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begin
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 if (rst) begin
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   ie <=#1 `OC8051_RST_IE;
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 end else if ((wr) & !(wr_bit) & (wr_addr==`OC8051_SFR_IE)) begin
177
   ie <= #1 data_in;
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 end else if ((wr) & (wr_bit) & (wr_addr[7:3]==`OC8051_SFR_B_IE))
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   ie[wr_addr[2:0]] <= #1 bit_in;
180
end
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182
//
183
// tcon_s
184
//
185
always @(posedge clk or posedge rst)
186
begin
187
 if (rst) begin
188
   tcon_s <=#1 4'b0000;
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 end else if ((wr) & !(wr_bit) & (wr_addr==`OC8051_SFR_TCON)) begin
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   tcon_s <= #1 {data_in[6], data_in[4], data_in[2], data_in[0]};
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 end else if ((wr) & (wr_bit) & (wr_addr[7:3]==`OC8051_SFR_B_TCON)) begin
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   case (wr_addr[2:0]) /* synopsys full_case parallel_case */
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     3'b000: tcon_s[0] <= #1 bit_in;
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     3'b010: tcon_s[1] <= #1 bit_in;
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     3'b100: tcon_s[2] <= #1 bit_in;
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     3'b110: tcon_s[3] <= #1 bit_in;
197
   endcase
198
 end
199
end
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201
//
202
// tf1 (tmod.7)
203
//
204
always @(posedge clk or posedge rst)
205
begin
206
 if (rst) begin
207
   tcon_tf1 <=#1 1'b0;
208
 end else if ((wr) & !(wr_bit) & (wr_addr==`OC8051_SFR_TCON)) begin
209
   tcon_tf1 <= #1 data_in[7];
210
 end else if ((wr) & (wr_bit) & (wr_addr=={`OC8051_SFR_B_TCON, 3'b111})) begin
211
   tcon_tf1 <= #1 bit_in;
212
 end else if (!(tf1_buff) & (tf1)) begin
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   tcon_tf1 <= #1 1'b1;
214
 end else if (ack & (isrc_cur==`OC8051_ISRC_TF1)) begin
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   tcon_tf1 <= #1 1'b0;
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 end
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end
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219
//
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// tf0 (tmod.5)
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//
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always @(posedge clk or posedge rst)
223
begin
224
 if (rst) begin
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   tcon_tf0 <=#1 1'b0;
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 end else if ((wr) & !(wr_bit) & (wr_addr==`OC8051_SFR_TCON)) begin
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   tcon_tf0 <= #1 data_in[5];
228
 end else if ((wr) & (wr_bit) & (wr_addr=={`OC8051_SFR_B_TCON, 3'b101})) begin
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   tcon_tf0 <= #1 bit_in;
230
 end else if (!(tf0_buff) & (tf0)) begin
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   tcon_tf0 <= #1 1'b1;
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 end else if (ack & (isrc_cur==`OC8051_ISRC_TF0)) begin
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   tcon_tf0 <= #1 1'b0;
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 end
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end
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238
//
239
// ie0 (tmod.1)
240
//
241
always @(posedge clk or posedge rst)
242
begin
243
 if (rst) begin
244
   tcon_ie0 <=#1 1'b0;
245
 end else if ((wr) & !(wr_bit) & (wr_addr==`OC8051_SFR_TCON)) begin
246
   tcon_ie0 <= #1 data_in[1];
247
 end else if ((wr) & (wr_bit) & (wr_addr=={`OC8051_SFR_B_TCON, 3'b001})) begin
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   tcon_ie0 <= #1 bit_in;
249
 end else if (((tcon_s[0]) & (ie0_buff) & !(ie0)) | (!(tcon_s[0]) & !(ie0))) begin
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   tcon_ie0 <= #1 1'b1;
251
 end else if (ack & (isrc_cur==`OC8051_ISRC_IE0) & (tcon_s[0])) begin
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   tcon_ie0 <= #1 1'b0;
253
 end else if (!(tcon_s[0]) & (ie0)) begin
254
   tcon_ie0 <= #1 1'b0;
255
 end
256
end
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259
//
260
// ie1 (tmod.3)
261
//
262
always @(posedge clk or posedge rst)
263
begin
264
 if (rst) begin
265
   tcon_ie1 <=#1 1'b0;
266
 end else if ((wr) & !(wr_bit) & (wr_addr==`OC8051_SFR_TCON)) begin
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   tcon_ie1 <= #1 data_in[3];
268
 end else if ((wr) & (wr_bit) & (wr_addr=={`OC8051_SFR_B_TCON, 3'b011})) begin
269
   tcon_ie1 <= #1 bit_in;
270
 end else if (((tcon_s[1]) & (ie1_buff) & !(ie1)) | (!(tcon_s[1]) & !(ie1))) begin
271
   tcon_ie1 <= #1 1'b1;
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 end else if (ack & (isrc_cur==`OC8051_ISRC_IE1) & (tcon_s[1])) begin
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   tcon_ie1 <= #1 1'b0;
274
 end else if (!(tcon_s[1]) & (ie1)) begin
275
   tcon_ie1 <= #1 1'b0;
276
 end
277
end
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279
//
280
// interrupt processing
281
always @(posedge clk or posedge rst)
282
begin
283
  if (rst) begin
284
    int_vec <= #1 8'h00;
285
    int_dept <= #1 2'b0;
286
    isrc[0] <= #1 3'h0;
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    isrc[1] <= #1 3'h0;
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    int_proc <= #1 1'b0;
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    int_lev[0] <= #1 1'b0;
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    int_lev[1] <= #1 1'b0;
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  end else if (reti & int_proc) begin  // return from interrupt
292
   if (int_dept==2'b01)
293
     int_proc <= #1 1'b0;
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   int_dept <= #1 int_dept - 2'b01;
295
  end else if (((ie[7]) & (!cur_lev) || !int_proc) & il1) begin  // interrupt on level 1
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   int_proc <= #1 1'b1;
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   int_lev[int_dept] <= #1 `OC8051_ILEV_L1;
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   int_dept <= #1 int_dept + 2'b01;
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   if (int_l1[0]) begin
300
     int_vec <= #1 `OC8051_INT_X0;
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     isrc[int_dept] <= #1 `OC8051_ISRC_IE0;
302
   end else if (int_l1[1]) begin
303
     int_vec <= #1 `OC8051_INT_T0;
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     isrc[int_dept] <= #1 `OC8051_ISRC_TF0;
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   end else if (int_l1[2]) begin
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     int_vec <= #1 `OC8051_INT_X1;
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     isrc[int_dept] <= #1 `OC8051_ISRC_IE1;
308
   end else if (int_l1[3]) begin
309
     int_vec <= #1 `OC8051_INT_T1;
310
     isrc[int_dept] <= #1 `OC8051_ISRC_TF1;
311
   end else if (int_l1[4]) begin
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     int_vec <= #1 `OC8051_INT_UART;
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     isrc[int_dept] <= #1 `OC8051_ISRC_UART;
314
   end else if (int_l1[5]) begin
315
     int_vec <= #1 `OC8051_INT_T2;
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     isrc[int_dept] <= #1 `OC8051_ISRC_T2;
317
   end
318
 
319
 end else if ((ie[7]) & !int_proc & il0) begin  // interrupt on level 0
320
   int_proc <= #1 1'b1;
321
   int_lev[int_dept] <= #1 `OC8051_ILEV_L0;
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   int_dept <= #1 2'b01;
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   if (int_l0[0]) begin
324
     int_vec <= #1 `OC8051_INT_X0;
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     isrc[int_dept] <= #1 `OC8051_ISRC_IE0;
326
   end else if (int_l0[1]) begin
327
     int_vec <= #1 `OC8051_INT_T0;
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     isrc[int_dept] <= #1 `OC8051_ISRC_TF0;
329
   end else if (int_l0[2]) begin
330
     int_vec <= #1 `OC8051_INT_X1;
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     isrc[int_dept] <= #1 `OC8051_ISRC_IE1;
332
   end else if (int_l0[3]) begin
333
     int_vec <= #1 `OC8051_INT_T1;
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     isrc[int_dept] <= #1 `OC8051_ISRC_TF1;
335
   end else if (int_l0[4]) begin
336
     int_vec <= #1 `OC8051_INT_UART;
337
     isrc[int_dept] <= #1 `OC8051_ISRC_UART;
338
   end else if (int_l0[5]) begin
339
     int_vec <= #1 `OC8051_INT_T2;
340
     isrc[int_dept] <= #1 `OC8051_ISRC_T2;
341
   end
342
 end else begin
343
   int_vec <= #1 8'h00;
344
 end
345
end
346
 
347
 
348
always @(posedge clk or posedge rst)
349
  if (rst) begin
350
    tf0_buff <= #1 1'b0;
351
    tf1_buff <= #1 1'b0;
352
    ie0_buff <= #1 1'b0;
353
    ie1_buff <= #1 1'b0;
354
  end else begin
355
    tf0_buff <= #1 tf0;
356
    tf1_buff <= #1 tf1;
357
    ie0_buff <= #1 ie0;
358
    ie1_buff <= #1 ie1;
359
  end
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361
endmodule

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