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📄 light.vwf

📁 这是一个用VHDL编写的发光二极管走马灯
💻 VWF
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/*
WARNING: Do NOT edit the input and output ports in this file in a text
editor if you plan to continue editing the block that represents it in
the Block Editor! File corruption is VERY likely to occur.
*/

/*
Copyright (C) 1991-2004 Altera Corporation
Any  megafunction  design,  and related netlist (encrypted  or  decrypted),
support information,  device programming or simulation file,  and any other
associated  documentation or information  provided by  Altera  or a partner
under  Altera's   Megafunction   Partnership   Program  may  be  used  only
to program  PLD  devices (but not masked  PLD  devices) from  Altera.   Any
other  use  of such  megafunction  design,  netlist,  support  information,
device programming or simulation file,  or any other  related documentation
or information  is prohibited  for  any  other purpose,  including, but not
limited to  modification,  reverse engineering,  de-compiling, or use  with
any other  silicon devices,  unless such use is  explicitly  licensed under
a separate agreement with  Altera  or a megafunction partner.  Title to the
intellectual property,  including patents,  copyrights,  trademarks,  trade
secrets,  or maskworks,  embodied in any such megafunction design, netlist,
support  information,  device programming or simulation file,  or any other
related documentation or information provided by  Altera  or a megafunction
partner, remains with Altera, the megafunction partner, or their respective
licensors. No other licenses, including any licenses needed under any third
party's intellectual property, are provided herein.
*/

HEADER
{
	VERSION = 1;
	TIME_UNIT = ns;
	PRINT_OPTIONS = "Print_options_version 6\
range_start 0ps\
range_end 80.0us\
width 1\
names_percentage 25\
comments 1\
grid_lines 1\
time_bars 1\
name_every_page 0\
expand_groups 0\
print_all 1";
	SIMULATION_TIME = 80000.0;
	GRID_PHASE = 0.0;
	GRID_PERIOD = 10.0;
	GRID_DUTY_CYCLE = 50;
}

SIGNAL("btn2")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = INPUT;
	PARENT = "";
}

SIGNAL("clo")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = INPUT;
	PARENT = "";
}

SIGNAL("ld[1]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = OUTPUT;
	PARENT = "";
}

SIGNAL("ld[2]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = OUTPUT;
	PARENT = "";
}

SIGNAL("ld[3]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = OUTPUT;
	PARENT = "";
}

SIGNAL("ld[4]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = OUTPUT;
	PARENT = "";
}

SIGNAL("ld[5]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = OUTPUT;
	PARENT = "";
}

SIGNAL("ld[6]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = OUTPUT;
	PARENT = "";
}

SIGNAL("ld[7]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = OUTPUT;
	PARENT = "";
}

SIGNAL("ld[8]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = OUTPUT;
	PARENT = "";
}

SIGNAL("sw1")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = INPUT;
	PARENT = "";
}

TRANSITION_LIST("btn2")
{
	NODE
	{
		REPEAT = 1;
		NODE
		{
			REPEAT = 2;
			LEVEL 0 FOR 16000.0;
			LEVEL 1 FOR 16000.0;
		}
		LEVEL 0 FOR 16000.0;
	}
}

TRANSITION_LIST("clo")
{
	NODE
	{
		REPEAT = 1;
		NODE
		{
			REPEAT = 160;
			LEVEL 0 FOR 250.0;
			LEVEL 1 FOR 250.0;
		}
	}
}

TRANSITION_LIST("ld[1]")
{
	NODE
	{
		REPEAT = 1;
		LEVEL 0 FOR 6537.0;
		LEVEL 1 FOR 1000.0;
		LEVEL 0 FOR 32980.0;
		LEVEL 1 FOR 1000.0;
		LEVEL 0 FOR 6000.0;
		LEVEL 1 FOR 498.0;
		LEVEL 0 FOR 22522.0;
		LEVEL 1 FOR 1000.0;
		LEVEL 0 FOR 8463.0;
	}
}

TRANSITION_LIST("ld[2]")
{
	NODE
	{
		REPEAT = 1;
		LEVEL 0 FOR 5537.0;
		LEVEL 1 FOR 1000.0;
		LEVEL 0 FOR 1000.0;
		LEVEL 1 FOR 478.0;
		LEVEL 0 FOR 24000.0;
		LEVEL 1 FOR 12.0;
		LEVEL 0 FOR 7988.0;
		LEVEL 1 FOR 2502.0;
		LEVEL 0 FOR 4000.0;
		LEVEL 1 FOR 1498.0;
		LEVEL 0 FOR 21522.0;
		LEVEL 1 FOR 1000.0;
		LEVEL 0 FOR 1000.0;
		LEVEL 1 FOR 478.0;
		LEVEL 0 FOR 7985.0;
	}
}

TRANSITION_LIST("ld[3]")
{
	NODE
	{
		REPEAT = 1;
		LEVEL 0 FOR 4537.0;
		LEVEL 1 FOR 1000.0;
		LEVEL 0 FOR 26490.0;
		LEVEL 1 FOR 510.0;
		LEVEL 0 FOR 7478.0;
		LEVEL 1 FOR 3502.0;
		LEVEL 0 FOR 2000.0;
		LEVEL 1 FOR 2498.0;
		LEVEL 0 FOR 20522.0;
		LEVEL 1 FOR 1000.0;
		LEVEL 0 FOR 10463.0;
	}
}

TRANSITION_LIST("ld[4]")
{
	NODE
	{
		REPEAT = 1;
		LEVEL 0 FOR 3537.0;
		LEVEL 1 FOR 1000.0;
		LEVEL 0 FOR 10980.0;
		LEVEL 1 FOR 498.0;
		LEVEL 0 FOR 16522.0;
		LEVEL 1 FOR 1000.0;
		LEVEL 0 FOR 6478.0;
		LEVEL 1 FOR 4502.0;
		LEVEL 0 FOR 20.0;
		LEVEL 1 FOR 3478.0;
		LEVEL 0 FOR 19522.0;
		LEVEL 1 FOR 1000.0;
		LEVEL 0 FOR 10980.0;
		LEVEL 1 FOR 483.0;
	}
}

TRANSITION_LIST("ld[5]")
{
	NODE
	{
		REPEAT = 1;
		LEVEL 0 FOR 2537.0;
		LEVEL 1 FOR 1000.0;
		LEVEL 0 FOR 11980.0;
		LEVEL 1 FOR 498.0;
		LEVEL 0 FOR 17522.0;
		LEVEL 1 FOR 1000.0;
		LEVEL 0 FOR 5478.0;
		LEVEL 1 FOR 4502.0;
		LEVEL 0 FOR 20.0;
		LEVEL 1 FOR 3478.0;
		LEVEL 0 FOR 16000.0;
		LEVEL 1 FOR 12.0;
		LEVEL 0 FOR 2510.0;
		LEVEL 1 FOR 1000.0;
		LEVEL 0 FOR 11980.0;
		LEVEL 1 FOR 483.0;
	}
}

TRANSITION_LIST("ld[6]")
{
	NODE
	{
		REPEAT = 1;
		LEVEL 0 FOR 1537.0;
		LEVEL 1 FOR 1000.0;
		LEVEL 0 FOR 32000.0;
		LEVEL 1 FOR 1000.0;
		LEVEL 0 FOR 4000.0;
		LEVEL 1 FOR 3980.0;
		LEVEL 0 FOR 2000.0;
		LEVEL 1 FOR 2498.0;
		LEVEL 0 FOR 16020.0;
		LEVEL 1 FOR 24.0;
		LEVEL 0 FOR 1478.0;
		LEVEL 1 FOR 1000.0;
		LEVEL 0 FOR 13463.0;
	}
}

TRANSITION_LIST("ld[7]")
{
	NODE
	{
		REPEAT = 1;
		LEVEL 0 FOR 537.0;
		LEVEL 1 FOR 1000.0;
		LEVEL 0 FOR 34000.0;
		LEVEL 1 FOR 1000.0;
		LEVEL 0 FOR 2000.0;
		LEVEL 1 FOR 1000.0;
		LEVEL 0 FOR 478.0;
		LEVEL 1 FOR 2502.0;
		LEVEL 0 FOR 4000.0;
		LEVEL 1 FOR 1498.0;
		LEVEL 0 FOR 16522.0;
		LEVEL 1 FOR 1000.0;
		LEVEL 0 FOR 14463.0;
	}
}

TRANSITION_LIST("ld[8]")
{
	NODE
	{
		REPEAT = 1;
		LEVEL 1 FOR 537.0;
		LEVEL 0 FOR 36000.0;
		LEVEL 1 FOR 1000.0;
		LEVEL 0 FOR 32.0;
		LEVEL 1 FOR 968.0;
		LEVEL 0 FOR 1980.0;
		LEVEL 1 FOR 1000.0;
		LEVEL 0 FOR 6000.0;
		LEVEL 1 FOR 498.0;
		LEVEL 0 FOR 16044.0;
		LEVEL 1 FOR 478.0;
		LEVEL 0 FOR 15463.0;
	}
}

TRANSITION_LIST("sw1")
{
	NODE
	{
		REPEAT = 1;
		NODE
		{
			REPEAT = 5;
			LEVEL 0 FOR 8000.0;
			LEVEL 1 FOR 8000.0;
		}
	}
}

DISPLAY_LINE
{
	CHANNEL = "btn2";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 0;
	TREE_LEVEL = 0;
}

DISPLAY_LINE
{
	CHANNEL = "clo";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 1;
	TREE_LEVEL = 0;
}

DISPLAY_LINE
{
	CHANNEL = "ld[1]";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 2;
	TREE_LEVEL = 0;
}

DISPLAY_LINE
{
	CHANNEL = "ld[2]";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 3;
	TREE_LEVEL = 0;
}

DISPLAY_LINE
{
	CHANNEL = "ld[3]";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 4;
	TREE_LEVEL = 0;
}

DISPLAY_LINE
{
	CHANNEL = "ld[4]";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 5;
	TREE_LEVEL = 0;
}

DISPLAY_LINE
{
	CHANNEL = "ld[5]";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 6;
	TREE_LEVEL = 0;
}

DISPLAY_LINE
{
	CHANNEL = "ld[6]";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 7;
	TREE_LEVEL = 0;
}

DISPLAY_LINE
{
	CHANNEL = "ld[7]";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 8;
	TREE_LEVEL = 0;
}

DISPLAY_LINE
{
	CHANNEL = "ld[8]";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 9;
	TREE_LEVEL = 0;
}

DISPLAY_LINE
{
	CHANNEL = "sw1";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 10;
	TREE_LEVEL = 0;
}

TIME_BAR
{
	TIME = 10050;
	MASTER = TRUE;
}
;

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