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[/] [openrisc/] [trunk/] [orpsocv2/] [bench/] [verilog/] [orpsoc_testbench.v] - Rev 690
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////////////////////////////////////////////////////////////////////// /// //// /// ORPSoC testbench //// /// //// /// Instantiate ORPSoC, monitors, provide stimulus //// /// //// /// Julius Baxter, julius@opencores.org //// /// //// ////////////////////////////////////////////////////////////////////// //// //// //// Copyright (C) 2009, 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 //// //// //// ////////////////////////////////////////////////////////////////////// `include "orpsoc-defines.v" `include "orpsoc-testbench-defines.v" `include "test-defines.v" `include "timescale.v" module orpsoc_testbench; reg clk = 0; reg rst_n = 1; // Active LOW always #((`BOARD_CLOCK_PERIOD)/2) clk <= ~clk; // Reset, ACTIVE LOW initial begin #1; repeat (32) @(negedge clk) rst_n <= 1; repeat (32) @(negedge clk) rst_n <= 0; repeat (32) @(negedge clk) rst_n <= 1; end `include "orpsoc-params.v" `ifdef JTAG_DEBUG wire tdo_pad_o; wire tck_pad_i; wire tms_pad_i; wire tdi_pad_i; `endif `ifdef UART0 wire uart0_stx_pad_o; wire uart0_srx_pad_i; `endif orpsoc_top dut ( .clk_pad_i (clk), `ifdef JTAG_DEBUG .tms_pad_i (tms_pad_i), .tck_pad_i (tck_pad_i), .tdi_pad_i (tdi_pad_i), .tdo_pad_o (tdo_pad_o), `endif `ifdef UART0 .uart0_stx_pad_o (uart0_stx_pad_o), .uart0_srx_pad_i (uart0_srx_pad_i), `endif .rst_n_pad_i (rst_n) ); // // Instantiate OR1200 monitor // or1200_monitor monitor(); `ifndef SIM_QUIET `define CPU_ic_top or1200_ic_top `define CPU_dc_top or1200_dc_top wire ic_en = orpsoc_testbench.dut.or1200_top0.or1200_ic_top.ic_en; always @(posedge ic_en) $display("Or1200 IC enabled at %t", $time); wire dc_en = orpsoc_testbench.dut.or1200_top0.or1200_dc_top.dc_en; always @(posedge dc_en) $display("Or1200 DC enabled at %t", $time); `endif `ifdef JTAG_DEBUG `ifdef VPI_DEBUG // Debugging interface vpi_debug_module vpi_dbg ( .tms(tms_pad_i), .tck(tck_pad_i), .tdi(tdi_pad_i), .tdo(tdo_pad_o) ); `else // If no VPI debugging, tie off JTAG inputs assign tdi_pad_i = 1; assign tck_pad_i = 0; assign tms_pad_i = 1; `endif // !`ifdef VPI_DEBUG_ENABLE `endif // `ifdef JTAG_DEBUG initial begin `ifndef SIM_QUIET $display("\n* Starting simulation of ORPSoC RTL.\n* Test: %s\n", `TEST_NAME_STRING ); `endif `ifdef VCD `ifdef VCD_DELAY #(`VCD_DELAY); `endif // Delay by x insns `ifdef VCD_DELAY_INSNS #10; // Delay until after the value becomes valid while (monitor.insns < `VCD_DELAY_INSNS) @(posedge clk); `endif `ifdef SIMULATOR_MODELSIM // Modelsim can GZip VCDs on the fly if given in the suffix `define VCD_SUFFIX ".vcd.gz" `else `define VCD_SUFFIX ".vcd" `endif `ifndef SIM_QUIET $display("* VCD in %s\n", {"../out/",`TEST_NAME_STRING,`VCD_SUFFIX}); `endif $dumpfile({"../out/",`TEST_NAME_STRING,`VCD_SUFFIX}); `ifndef VCD_DEPTH `define VCD_DEPTH 0 `endif $dumpvars(`VCD_DEPTH); `endif end // initial begin `ifdef END_TIME initial begin #(`END_TIME); `ifndef SIM_QUIET $display("* Finish simulation due to END_TIME being set at %t", $time); `endif $finish; end `endif `ifdef END_INSNS initial begin #10 while (monitor.insns < `END_INSNS) @(posedge clk); `ifndef SIM_QUIET $display("* Finish simulation due to END_INSNS count (%d) reached at %t", `END_INSNS, $time); `endif $finish; end `endif `ifdef UART0 // // UART0 decoder // uart_decoder #( .uart_baudrate_period_ns(8680) // 115200 baud = period 8.68uS ) uart0_decoder ( .clk(clk), .uart_tx(uart0_stx_pad_o) ); // UART0 stimulus /* uart_stim #( .uart_baudrate_period_ns(8680) // 115200 baud = period 8.68uS ) uart0_stim ( .clk(clk), .uart_rx(uart0_srx_pad_i) ); */ // UART0 is looped back for now assign uart0_srx_pad_i = uart0_stx_pad_o; `endif // `ifdef UART0 endmodule // orpsoc_testbench // Local Variables: // verilog-library-directories:("." "../../rtl/verilog/orpsoc_top") // verilog-library-files:() // verilog-library-extensions:(".v" ".h") // End:
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