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[/] [amber/] [trunk/] [hw/] [vlog/] [tb/] [dumpvcd.v] - Rev 15
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////////////////////////////////////////////////////////////////// // // // Waveform Dumping Control // // // // This file is part of the Amber project // // http://www.opencores.org/project,amber // // // // Description // // Its useful in very long simulations to be able to record // // a set of signals for a limited window of time, so // // that the dump file does not get too large. // // // // Author(s): // // - Conor Santifort, csantifort.amber@gmail.com // // // ////////////////////////////////////////////////////////////////// // // // 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 // // // ////////////////////////////////////////////////////////////////// `timescale 1 ns / 1 ps `include "global_defines.v" module dumpvcd(); // ====================================== // Dump Waves to VCD File // ====================================== `ifdef AMBER_DUMP_VCD initial begin $display ("VCD Dump enabled from %d to %d", ( `AMBER_DUMP_START ), ( `AMBER_DUMP_START + `AMBER_DUMP_LENGTH ) ); $dumpfile(`AMBER_VCD_FILE); $dumpvars(1, `U_TB.clk_count); $dumpvars(1, `U_DECOMPILE.xINSTRUCTION_EXECUTE); $dumpvars(1, `U_EXECUTE.o_write_enable); $dumpvars(1, `U_EXECUTE.o_exclusive); $dumpvars(1, `U_EXECUTE.o_write_data); $dumpvars(1, `U_EXECUTE.base_address); $dumpvars(1, `U_EXECUTE.u_register_bank.r0); $dumpvars(1, `U_EXECUTE.u_register_bank.r1); $dumpvars(1, `U_EXECUTE.u_register_bank.r2); $dumpvars(1, `U_EXECUTE.u_register_bank.r3); $dumpvars(1, `U_EXECUTE.u_register_bank.r4); $dumpvars(1, `U_EXECUTE.u_register_bank.r5); $dumpvars(1, `U_EXECUTE.u_register_bank.r6); $dumpvars(1, `U_EXECUTE.u_register_bank.r7); $dumpvars(1, `U_EXECUTE.u_register_bank.r8); $dumpvars(1, `U_EXECUTE.u_register_bank.r9); $dumpvars(1, `U_EXECUTE.u_register_bank.r10); $dumpvars(1, `U_EXECUTE.u_register_bank.r11); $dumpvars(1, `U_EXECUTE.u_register_bank.r12); $dumpvars(1, `U_EXECUTE.u_register_bank.r13_out); $dumpvars(1, `U_EXECUTE.u_register_bank.r14_out); $dumpvars(1, `U_EXECUTE.u_register_bank.r15); $dumpvars(1, `U_FETCH); $dumpvars(1, `U_CACHE); $dumpvars(1, `U_DECODE); // $dumpvars(1, `U_COPRO15); $dumpvars(1, `U_WISHBONE); $dumpvars(1, `U_AMBER); `ifdef AMBER_A25_CORE $dumpvars(1, `U_MEM); $dumpvars(1, `U_DCACHE); `endif $dumpoff; end always @(posedge `U_DECOMPILE.i_clk) begin if ( `U_DECOMPILE.clk_count == 10 ) begin $dumpon; $display("Dump on at %d ticks", `U_DECOMPILE.clk_count); end if ( `U_DECOMPILE.clk_count == 20 ) begin $dumpoff; $display("Dump off at %d ticks", `U_DECOMPILE.clk_count); end if ( `U_DECOMPILE.clk_count == ( `AMBER_DUMP_START + 0 ) ) begin $dumpon; $display("Dump on at %d ticks", `U_DECOMPILE.clk_count); end if ( `U_DECOMPILE.clk_count == ( `AMBER_DUMP_START + `AMBER_DUMP_LENGTH ) ) begin $dumpoff; $display("Dump off at %d ticks", `U_DECOMPILE.clk_count); end `ifdef AMBER_TERMINATE if ( `U_DECOMPILE.clk_count == ( `AMBER_DUMP_START + `AMBER_DUMP_LENGTH + 100) ) begin $display("Automatic test termination after dump has completed"); `TB_ERROR_MESSAGE end `endif end `endif endmodule
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