Merge branch 'master' of https://git.efi.th-nuernberg.de/gitea/kuntzschcl/ESY1_Projekt_2023
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commit
0fb43a40c1
@ -65,9 +65,9 @@
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module LED_control1 (
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// inputs
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input wire clk12M, // 12M clock
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input wire rst, //Asynchronous reset
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input wire rst, // Asynchronous reset
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input wire [1:0] color_sel, // for selecting color using switches
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input wire RGB_Blink_En, //Enabling Blink
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input wire rw, // read or write select switch
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//outputs
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output reg red_pwm, // Red
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output reg blu_pwm, // Blue
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@ -160,16 +160,16 @@ always @ (posedge clk24M or posedge rst)
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Brightness_s <= 4'b0111;
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BreatheRamp_s <= 4'b0000;
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BlinkRate_s <= 4'b0101;
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end else if(!RGB_Blink_En) begin
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//end else if(!RGB_Blink_En) begin //TODO ReadWrite Difference
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//RGB_color_s <= RGB_color ;
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//Brightness_s <= Brightness ;
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//BreatheRamp_s <= 4'b0000 ;
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//BlinkRate_s <= 4'b0000 ;
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end else begin
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RGB_color_s <= RGB_color ;
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Brightness_s <= Brightness ;
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BreatheRamp_s <= 4'b0000 ;
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BlinkRate_s <= 4'b0000 ;
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end else begin
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RGB_color_s <= RGB_color ;
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Brightness_s <= Brightness ;
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BreatheRamp_s <= BreatheRamp ;
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BlinkRate_s <= BlinkRate ;
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end
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@ -1,70 +0,0 @@
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module led_top (
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input wire clk12M,
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input wire rst,
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input wire [1:0] color_sel,
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input wire RGB_Blink_En,
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output reg REDn,
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output reg BLUn,
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output reg GRNn,
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output reg RED,
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output reg BLU,
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output reg GRN
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);
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wire red_pwm;
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wire grn_pwm;
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wire blu_pwm;
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//parameter on_hi = 2'b10;
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//parameter on_lo = 2'b01;
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//parameter off = 2'b00;
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//parameter LED_OFF = 2'b00;
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//parameter RAMP_UP = 2'b01;
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//parameter LED_ON = 2'b10;
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//parameter RAMP_DOWN = 2'b11;
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//parameter on_max_cnt = 28'h16E35ED; // 1 sec steady
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//parameter [3:0] Brightness=4'b0111; //50% Brightness
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//parameter [3:0] BreatheRamp=4'b0110; //2x
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//parameter [3:0] BlinkRate=4'b0101; //1sec
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//parameter string RGB0_CURRENT = "0b111111";
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//parameter string RGB1_CURRENT = "0b111111";
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//parameter string RGB2_CURRENT = "0b111111";
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defparam U1.on_hi = 2'b10;
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defparam U1.on_lo = 2'b01;
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defparam U1.off = 2'b00;
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defparam U1.LED_OFF = 2'b00;
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defparam U1.RAMP_UP = 2'b01;
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defparam U1.LED_ON = 2'b10;
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defparam U1.RAMP_DOWN = 2'b11;
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defparam U1.on_max_cnt = 28'h16E35ED; // 1 sec steady
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defparam U1.Brightness = 4'b0111; // 50% Brightness
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defparam U1.BreatheRamp = 4'b0110; // 2x
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defparam U1.BlinkRate = 4'b0101; // 1 sec
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defparam U2.RGB0_CURRENT = "0b111111";
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defparam U2.RGB1_CURRENT = "0b111111";
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defparam U2.RGB2_CURRENT = "0b111111";
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LED_control1 U1 (.clk12M(clk12M),.rst(rst),.color_sel(color_sel),.RGB_Blink_En(RGB_Blink_En),.red_pwm(red_pwm),.blu_pwm(blu_pwm),.grn_pwm(grn_pwm));
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RGB U2 (.CURREN('b1),.RGB0PWM(blu_pwm),.RGB1PWM(grn_pwm),.RGB2PWM(red_pwm),.RGBLEDEN('b1),.RGB0(BLUn),.RGB1(GRNn),.RGB2(REDn));
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assign RED = red_pwm;
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assign GRN = grn_pwm;
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assign BLU = blu_pwm;
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endmodule
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63
Ampelansteuerung/steuerung.sv
Normal file
63
Ampelansteuerung/steuerung.sv
Normal file
@ -0,0 +1,63 @@
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module steuerung (
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bus.steuerung_port b, //b.dip[3:0], b.timer, b.clk, b.spi_read[1:0]
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led_if.led_port_top i //i.rgb[2:0], i.rgbn[2:0]
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);
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//dip[3:2] -> select colour, dip[1] -> read ~ 1/write ~ 0, dip[0] -> on ~ 1/off ~ 0
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//input wire clk12M, -> b.clk
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//input wire rst, -> b.dip[0]
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//input wire [1:0] color_sel, -> b.dip[3:2]
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//input wire rw, -> b.dip[1]
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//output reg REDn, -> i.rgbn[0]
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//output reg BLUn, -> i.rgbn[1]
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//output reg GRNn, -> i.rgbn[2]
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//output reg RED, -> i.rgb[0]
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//output reg BLU, -> i.rgb[1]
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//output reg GRN -> i.rgb[2]
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wire red_pwm;
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wire grn_pwm;
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wire blu_pwm;
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defparam U1.on_hi = 2'b10;
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defparam U1.on_lo = 2'b01;
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defparam U1.off = 2'b00;
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defparam U1.LED_OFF = 2'b00;
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defparam U1.RAMP_UP = 2'b01;
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defparam U1.LED_ON = 2'b10;
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defparam U1.RAMP_DOWN = 2'b11;
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defparam U1.on_max_cnt = 28'h16E35ED; // 1 sec steady
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defparam U1.Brightness = 4'b0111; // 50% Brightness
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defparam U1.BreatheRamp = 4'b0110; // 2x
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defparam U1.BlinkRate = 4'b0101; // 1 sec
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defparam U2.RGB0_CURRENT = "0b111111";
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defparam U2.RGB1_CURRENT = "0b111111";
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defparam U2.RGB2_CURRENT = "0b111111";
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LED_control1 U1 (.clk12M(b.clk),.rst(b.dip[0]),.color_sel(b.dip[3:2]),.rw(b.dip[1]),.red_pwm(red_pwm),.blu_pwm(blu_pwm),.grn_pwm(grn_pwm));
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RGB U2 (.CURREN('b1),.RGB0PWM(blu_pwm),.RGB1PWM(grn_pwm),.RGB2PWM(red_pwm),.RGBLEDEN('b1),.RGB0(i.rgbn[1]),.RGB1(i.rgbn[2]),.RGB2(rgbn[0]));
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assign i.rgb[0] = red_pwm;
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assign i.rgb[2] = grn_pwm;
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assign i.rgb[1] = blu_pwm;
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endmodule
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@ -1,130 +0,0 @@
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// ==================================================================
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// >>>>>>>>>>>>>>>>>>>>>>> COPYRIGHT NOTICE <<<<<<<<<<<<<<<<<<<<<<<<<
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// ------------------------------------------------------------------
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// Copyright (c) 2017 by Lattice Semiconductor Corporation
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// ALL RIGHTS RESERVED
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// ------------------------------------------------------------------
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//
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// Permission:
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//
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// Lattice SG Pte. Ltd. grants permission to use this code
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// pursuant to the terms of the Lattice Reference Design License Agreement.
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//
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//
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// Disclaimer:
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//
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// This VHDL or Verilog source code is intended as a design reference
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// which illustrates how these types of functions can be implemented.
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// It is the user's responsibility to verify their design for
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// consistency and functionality through the use of formal
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// verification methods. Lattice provides no warranty
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// regarding the use or functionality of this code.
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//
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// --------------------------------------------------------------------
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//
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// Lattice SG Pte. Lt++++++++++++++++d.
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// 101 Thomson Road, United Square #07-02
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// Singapore 307591
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//
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//
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// TEL: 1-800-Lattice (USA and Canada)
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// +65-6631-2000 (Singapore)
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// +1-503-268-8001 (other locations)
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//
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// web: http://www.latticesemi.com/
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// email: techsupport@latticesemi.com
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//
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// --------------------------------------------------------------------
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//
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// Project: iCE5UP 5K RGB LED Tutorial
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// File: testbench.v
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// Title: LED PWM control
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// Description: Creates RGB PWM per control inputs
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//
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//
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// --------------------------------------------------------------------
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//
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//------------------------------------------------------------
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// Notes:
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//
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//
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//------------------------------------------------------------
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// Development History:
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//
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// __DATE__ _BY_ _REV_ _DESCRIPTION___________________________
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// 04/05/17 RK 1.0 Initial tutorial design for Lattice Radiant
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//
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//------------------------------------------------------------
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// Dependencies:
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//
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//
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//
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//------------------------------------------------------------
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//------------------------------------------------------------
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//
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//
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// Testbench
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//
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//------------------------------------------------------------
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`timescale 1ns/1ps
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module tb;
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//GSR GSR_INST ( .GSR(1));
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//PUR PUR_INST ( .PUR(1));
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reg clk12M;
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reg rst;
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reg [1:0]color_sel;
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reg RGB_Blink_En;
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wire REDn;
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wire BLUn;
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wire GRNn;
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wire RED;
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wire BLU;
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wire GRN;
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led_top dut(.clk12M(clk12M),
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.rst(rst),
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.color_sel(color_sel),
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.RGB_Blink_En(RGB_Blink_En),
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.REDn(REDn),
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.BLUn(BLUn),
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.GRNn(GRNn),
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.RED(RED),
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.BLU(BLU),
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.GRN(GRN)
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);
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initial
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begin
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clk12M=1'b0;
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end
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always
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#41.666666 clk12M=~clk12M; //clock generation
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initial
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begin
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rst=1'b1;
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color_sel=2'b01;
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RGB_Blink_En=1'b0;
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#1000
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rst=1'b0;
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#3000000
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color_sel=2'b11;
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#3000000
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$stop;
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end
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initial
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begin
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$monitor("time=%t,RGB_Blink_En=%d,rst=%d,color_sel=%2d, REDn=%d, BLUn=%d, GRNn=%d",$time,RGB_Blink_En,rst,color_sel,REDn,BLUn,GRNn);
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end
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endmodule
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