?? decoder.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) 1991-2007 Altera Corporation
Your use of Altera Corporation's design tools, logic functions
and other software and tools, and its AMPP partner logic
functions, and any output files from any of the foregoing
(including device programming or simulation files), and any
associated documentation or information are expressly subject
to the terms and conditions of the Altera Program License
Subscription Agreement, Altera MegaCore Function License
Agreement, or other applicable license agreement, including,
without limitation, that your use is for the sole purpose of
programming logic devices manufactured by Altera and sold by
Altera or its authorized distributors. Please refer to the
applicable agreement for further details.
*/
HEADER
{
VERSION = 1;
TIME_UNIT = ns;
PRINT_OPTIONS = "Print_options_version 6\
range_start 0ps\
range_end 1.0us\
width 1\
names_percentage 25\
comments 1\
grid_lines 1\
time_bars 1\
name_every_page 0\
expand_groups 0\
print_all 1";
DATA_OFFSET = 0.0;
DATA_DURATION = 1000.0;
SIMULATION_TIME = 1000.0;
GRID_PHASE = 0.0;
GRID_PERIOD = 10.0;
GRID_DUTY_CYCLE = 50;
}
SIGNAL("decoder_led")
{
VALUE_TYPE = NINE_LEVEL_BIT;
SIGNAL_TYPE = BUS;
WIDTH = 7;
LSB_INDEX = 0;
DIRECTION = OUTPUT;
PARENT = "";
}
SIGNAL("decoder_led[6]")
{
VALUE_TYPE = NINE_LEVEL_BIT;
SIGNAL_TYPE = SINGLE_BIT;
WIDTH = 1;
LSB_INDEX = -1;
DIRECTION = OUTPUT;
PARENT = "decoder_led";
}
SIGNAL("decoder_led[5]")
{
VALUE_TYPE = NINE_LEVEL_BIT;
SIGNAL_TYPE = SINGLE_BIT;
WIDTH = 1;
LSB_INDEX = -1;
DIRECTION = OUTPUT;
PARENT = "decoder_led";
}
SIGNAL("decoder_led[4]")
{
VALUE_TYPE = NINE_LEVEL_BIT;
SIGNAL_TYPE = SINGLE_BIT;
WIDTH = 1;
LSB_INDEX = -1;
DIRECTION = OUTPUT;
PARENT = "decoder_led";
}
SIGNAL("decoder_led[3]")
{
VALUE_TYPE = NINE_LEVEL_BIT;
SIGNAL_TYPE = SINGLE_BIT;
WIDTH = 1;
LSB_INDEX = -1;
DIRECTION = OUTPUT;
PARENT = "decoder_led";
}
SIGNAL("decoder_led[2]")
{
VALUE_TYPE = NINE_LEVEL_BIT;
SIGNAL_TYPE = SINGLE_BIT;
WIDTH = 1;
LSB_INDEX = -1;
DIRECTION = OUTPUT;
PARENT = "decoder_led";
}
SIGNAL("decoder_led[1]")
{
VALUE_TYPE = NINE_LEVEL_BIT;
SIGNAL_TYPE = SINGLE_BIT;
WIDTH = 1;
LSB_INDEX = -1;
DIRECTION = OUTPUT;
PARENT = "decoder_led";
}
SIGNAL("decoder_led[0]")
{
VALUE_TYPE = NINE_LEVEL_BIT;
SIGNAL_TYPE = SINGLE_BIT;
WIDTH = 1;
LSB_INDEX = -1;
DIRECTION = OUTPUT;
PARENT = "decoder_led";
}
SIGNAL("led")
{
VALUE_TYPE = NINE_LEVEL_BIT;
SIGNAL_TYPE = BUS;
WIDTH = 4;
LSB_INDEX = 0;
DIRECTION = INPUT;
PARENT = "";
}
SIGNAL("led[3]")
{
VALUE_TYPE = NINE_LEVEL_BIT;
SIGNAL_TYPE = SINGLE_BIT;
WIDTH = 1;
LSB_INDEX = -1;
DIRECTION = INPUT;
PARENT = "led";
}
SIGNAL("led[2]")
{
VALUE_TYPE = NINE_LEVEL_BIT;
SIGNAL_TYPE = SINGLE_BIT;
WIDTH = 1;
LSB_INDEX = -1;
DIRECTION = INPUT;
PARENT = "led";
}
SIGNAL("led[1]")
{
VALUE_TYPE = NINE_LEVEL_BIT;
SIGNAL_TYPE = SINGLE_BIT;
WIDTH = 1;
LSB_INDEX = -1;
DIRECTION = INPUT;
PARENT = "led";
}
SIGNAL("led[0]")
{
VALUE_TYPE = NINE_LEVEL_BIT;
SIGNAL_TYPE = SINGLE_BIT;
WIDTH = 1;
LSB_INDEX = -1;
DIRECTION = INPUT;
PARENT = "led";
}
TRANSITION_LIST("decoder_led[6]")
{
NODE
{
REPEAT = 1;
LEVEL U FOR 1000.0;
}
}
TRANSITION_LIST("decoder_led[5]")
{
NODE
{
REPEAT = 1;
LEVEL U FOR 1000.0;
}
}
TRANSITION_LIST("decoder_led[4]")
{
NODE
{
REPEAT = 1;
LEVEL U FOR 1000.0;
}
}
TRANSITION_LIST("decoder_led[3]")
{
NODE
{
REPEAT = 1;
LEVEL U FOR 1000.0;
}
}
TRANSITION_LIST("decoder_led[2]")
{
NODE
{
REPEAT = 1;
LEVEL U FOR 1000.0;
}
}
TRANSITION_LIST("decoder_led[1]")
{
NODE
{
REPEAT = 1;
LEVEL U FOR 1000.0;
}
}
TRANSITION_LIST("decoder_led[0]")
{
NODE
{
REPEAT = 1;
LEVEL U FOR 1000.0;
}
}
TRANSITION_LIST("led[3]")
{
NODE
{
REPEAT = 1;
LEVEL 0 FOR 56.6;
LEVEL 1 FOR 0.4;
LEVEL 0 FOR 227.4;
LEVEL 1 FOR 220.0;
LEVEL 0 FOR 495.6;
}
}
TRANSITION_LIST("led[2]")
{
NODE
{
REPEAT = 1;
LEVEL 0 FOR 56.6;
LEVEL 1 FOR 0.4;
LEVEL 0 FOR 106.399;
LEVEL 1 FOR 121.001;
LEVEL 0 FOR 118.2;
LEVEL 1 FOR 101.8;
LEVEL 0 FOR 495.6;
}
}
TRANSITION_LIST("led[1]")
{
NODE
{
REPEAT = 1;
LEVEL 0 FOR 56.6;
LEVEL 1 FOR 0.4;
LEVEL 0 FOR 32.4;
LEVEL 1 FOR 73.999;
LEVEL 0 FOR 68.201;
LEVEL 1 FOR 52.8;
LEVEL 0 FOR 72.0;
LEVEL 1 FOR 46.2;
LEVEL 0 FOR 57.2;
LEVEL 1 FOR 44.6;
LEVEL 0 FOR 495.6;
}
}
TRANSITION_LIST("led[0]")
{
NODE
{
REPEAT = 1;
LEVEL 0 FOR 56.6;
LEVEL 1 FOR 32.8;
LEVEL 0 FOR 28.4;
LEVEL 1 FOR 45.599;
LEVEL 0 FOR 32.201;
LEVEL 1 FOR 36.0;
LEVEL 0 FOR 32.6;
LEVEL 1 FOR 20.2;
LEVEL 0 FOR 37.599;
LEVEL 1 FOR 34.401;
LEVEL 0 FOR 25.2;
LEVEL 1 FOR 21.0;
LEVEL 0 FOR 35.8;
LEVEL 1 FOR 21.4;
LEVEL 0 FOR 26.4;
LEVEL 1 FOR 18.2;
LEVEL 0 FOR 495.6;
}
}
DISPLAY_LINE
{
CHANNEL = "led";
EXPAND_STATUS = COLLAPSED;
RADIX = Unsigned;
TREE_INDEX = 0;
TREE_LEVEL = 0;
CHILDREN = 1, 2, 3, 4;
}
DISPLAY_LINE
{
CHANNEL = "led[3]";
EXPAND_STATUS = COLLAPSED;
RADIX = Unsigned;
TREE_INDEX = 1;
TREE_LEVEL = 1;
PARENT = 0;
}
DISPLAY_LINE
{
CHANNEL = "led[2]";
EXPAND_STATUS = COLLAPSED;
RADIX = Unsigned;
TREE_INDEX = 2;
TREE_LEVEL = 1;
PARENT = 0;
}
DISPLAY_LINE
{
CHANNEL = "led[1]";
EXPAND_STATUS = COLLAPSED;
RADIX = Unsigned;
TREE_INDEX = 3;
TREE_LEVEL = 1;
PARENT = 0;
}
DISPLAY_LINE
{
CHANNEL = "led[0]";
EXPAND_STATUS = COLLAPSED;
RADIX = Unsigned;
TREE_INDEX = 4;
TREE_LEVEL = 1;
PARENT = 0;
}
DISPLAY_LINE
{
CHANNEL = "decoder_led";
EXPAND_STATUS = COLLAPSED;
RADIX = ASCII;
TREE_INDEX = 5;
TREE_LEVEL = 0;
CHILDREN = 6, 7, 8, 9, 10, 11, 12;
}
DISPLAY_LINE
{
CHANNEL = "decoder_led[6]";
EXPAND_STATUS = COLLAPSED;
RADIX = ASCII;
TREE_INDEX = 6;
TREE_LEVEL = 1;
PARENT = 5;
}
DISPLAY_LINE
{
CHANNEL = "decoder_led[5]";
EXPAND_STATUS = COLLAPSED;
RADIX = ASCII;
TREE_INDEX = 7;
TREE_LEVEL = 1;
PARENT = 5;
}
DISPLAY_LINE
{
CHANNEL = "decoder_led[4]";
EXPAND_STATUS = COLLAPSED;
RADIX = ASCII;
TREE_INDEX = 8;
TREE_LEVEL = 1;
PARENT = 5;
}
DISPLAY_LINE
{
CHANNEL = "decoder_led[3]";
EXPAND_STATUS = COLLAPSED;
RADIX = ASCII;
TREE_INDEX = 9;
TREE_LEVEL = 1;
PARENT = 5;
}
DISPLAY_LINE
{
CHANNEL = "decoder_led[2]";
EXPAND_STATUS = COLLAPSED;
RADIX = ASCII;
TREE_INDEX = 10;
TREE_LEVEL = 1;
PARENT = 5;
}
DISPLAY_LINE
{
CHANNEL = "decoder_led[1]";
EXPAND_STATUS = COLLAPSED;
RADIX = ASCII;
TREE_INDEX = 11;
TREE_LEVEL = 1;
PARENT = 5;
}
DISPLAY_LINE
{
CHANNEL = "decoder_led[0]";
EXPAND_STATUS = COLLAPSED;
RADIX = ASCII;
TREE_INDEX = 12;
TREE_LEVEL = 1;
PARENT = 5;
}
TIME_BAR
{
TIME = 12900;
MASTER = TRUE;
}
;
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