mirror of https://github.com/wb2osz/direwolf.git
465 lines
15 KiB
Plaintext
465 lines
15 KiB
Plaintext
#############################################################
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# #
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# Configuration file for Dire Wolf #
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# #
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# Linux version #
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# #
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#############################################################
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#
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# Consult the User Guide for more details on configuration options.
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#
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#
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# These are the most likely settings you might change:
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#
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# (1) MYCALL - call sign and SSID for your station.
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#
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# Look for lines starting with MYCALL and
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# change NOCALL to your own.
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#
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# (2) PBEACON - enable position beaconing.
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#
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# Look for lines starting with PBEACON and
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# modify for your call, location, etc.
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#
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# (3) DIGIPEATER - configure digipeating rules.
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#
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# Look for lines starting with DIGIPEATER.
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# Most people will probably use the given example.
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# Just remove the "#" from the start of the line
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# to enable it.
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#
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# (4) IGSERVER, IGLOGIN - IGate server and login
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#
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# Configure an IGate client to relay messages between
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# radio and internet servers.
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#
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#
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# The default location is "direwolf.conf" in the current working directory.
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# On Linux, the user's home directory will also be searched.
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# An alternate configuration file location can be specified with the "-c" command line option.
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#
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# As you probably guessed by now, # indicates a comment line.
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#
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# Remove the # at the beginning of a line if you want to use a sample
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# configuration that is currently commented out.
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#
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# Commands are a keyword followed by parameters.
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#
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# Command key words are case insensitive. i.e. upper and lower case are equivalent.
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#
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# Command parameters are generally case sensitive. i.e. upper and lower case are different.
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#
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#############################################################
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# #
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# FIRST AUDIO DEVICE PROPERTIES #
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# (Channel 0 + 1 if in stereo) #
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# #
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#############################################################
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#
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# Many people will simply use the default sound device.
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# Some might want to use an alternative device by chosing it here.
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#
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# Linux ALSA is complicated. See User Guide for discussion.
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# To use something other than the default, generally use plughw
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# and a card number reported by "arecord -l" command. Example:
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ADEVICE "Realtek High"
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# Starting with version 1.0, you can also use "-" or "stdin" to
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# pipe stdout from some other application such as a software defined
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# radio. You can also specify "UDP:" and an optional port for input.
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# Something different must be specified for output.
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# ADEVICE - plughw:1,0
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# ADEVICE UDP:7355 default
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#
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# Number of audio channels for this souncard: 1 or 2.
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#
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ACHANNELS 1
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#ACHANNELS 2
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#############################################################
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# #
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# SECOND AUDIO DEVICE PROPERTIES #
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# (Channel 2 + 3 if in stereo) #
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# #
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#############################################################
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#ADEVICE1 USB
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#############################################################
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# #
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# THIRD AUDIO DEVICE PROPERTIES #
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# (Channel 4 + 5 if in stereo) #
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# #
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#############################################################
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#ADEVICE2 ...
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#############################################################
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# #
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# CHANNEL 0 PROPERTIES #
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# #
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#############################################################
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CHANNEL 0
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#
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# The following MYCALL, MODEM, PTT, etc. configuration items
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# apply to the most recent CHANNEL.
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#
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#
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# Station identifier for this channel.
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# Multiple channels can have the same or different names.
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#
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# It can be up to 6 letters and digits with an optional ssid.
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# The APRS specification requires that it be upper case.
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#
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# Example (don't use this unless you are me): MYCALL WB2OSZ-5
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#
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MYCALL WB2OSZ-14
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#
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# Pick a suitable modem speed based on your situation.
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# 1200 Most common for VHF/UHF. Default if not specified.
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# 300 Low speed for HF SSB.
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# 9600 High speed - Can't use Microphone and Speaker connections.
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#
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# In the simplest form, just specify the speed.
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#
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MODEM 1200
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#MODEM 300
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#MODEM 9600
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#
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# These are the defaults should be fine for most cases. In special situations,
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# you might want to specify different AFSK tones or the baseband mode which does
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# not use AFSK.
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#
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#MODEM 1200 1200:2200
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#MODEM 300 1600:1800
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#MODEM 9600 0:0
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#
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#
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# On HF SSB, you might want to use multiple demodulators on slightly different
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# frequencies to compensate for stations off frequency. Here we have 7 different
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# demodulators at 30 Hz intervals. This takes a lot of CPU power so you will
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# probably need to reduce the audio sampling rate with the /n option.
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#MODEM 300 1600:1800 7@30 /4
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#
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# Uncomment line below to enable the DTMF decoder for this channel.
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#
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DTMF
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#
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# If not using a VOX circuit, the transmitter Push to Talk (PTT)
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# control is usually wired to a serial port with a suitable interface circuit.
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# DON'T connect it directly!
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#
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# For the PTT command, specify the device and either RTS or DTR.
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# RTS or DTR may be preceded by "-" to invert the signal.
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# Both can be used for interfaces that want them driven with opposite polarity.
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#
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# COM1 can be used instead of /dev/ttyS0, COM2 for /dev/ttyS1, and so on.
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#
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#PTT COM1 RTS
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PTT COM1 RTS -DTR
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#PTT /dev/ttyUSB0 RTS
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#
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# On Linux, you can also use general purpose I/O pins if
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# your system is configured for user access to them.
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# This would apply mostly to microprocessor boards, not a regular PC.
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# See separate Raspberry Pi document for more details.
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# The number may be preceded by "-" to invert the signal.
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#
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#PTT GPIO 25
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# The Data Carrier Detect (DCD) signal can be sent to the same places
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# as the PTT signal. This could be used to light up an LED like a normal TNC.
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#DCD COM1 -DTR
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#DCD GPIO 24
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#############################################################
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# #
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# CHANNEL 1 PROPERTIES #
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# #
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#############################################################
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#CHANNEL 1
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#
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# Specify MYCALL, MODEM, PTT, etc. configuration items for
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# CHANNEL 1. Repeat for any other channels.
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#CHANNEL 2
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#DTMF
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#############################################################
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# #
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# TEXT TO SPEECH COMMAND FILE #
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# #
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#############################################################
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#SPEECH dwespeak.sh
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#############################################################
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# #
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# VIRTUAL TNC SERVER PROPERTIES #
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# #
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#############################################################
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#
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# Dire Wolf acts as a virtual TNC and can communicate with
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# client applications by different protocols:
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#
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# - the "AGW TCPIP Socket Interface" - default port 8000
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# - KISS protocol over TCP socket - default port 8001
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# - KISS TNC via pseudo terminal (-p command line option)
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#
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AGWPORT 8000
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KISSPORT 8001
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#
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# It is sometimes possible to recover frames with a bad FCS.
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# This applies to all channels.
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#
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# 0 [NONE] - Don't try to repair.
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# 1 [SINGLE] - Attempt to fix single bit error. (default)
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# 2 [DOUBLE] - Also attempt to fix two adjacent bits.
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# ... see User Guide for more values and in-depth discussion.
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#
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#FIX_BITS 0
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#
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#############################################################
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# #
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# BEACONING PROPERTIES #
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# #
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#############################################################
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GPSNMEA COM22
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TBEACON delay=0:30 every=0:20 SYMBOL=car FREQ=146.955 OFFSET=-0.600 TONE=74.4
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#
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# Beaconing is configured with these two commands:
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#
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# PBEACON - for a position report (usually yourself)
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# OBEACON - for an object report (usually some other entity)
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#
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# Each has a series of keywords and values for options.
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# See User Guide for details.
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#
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# Example:
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#
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# This results in a broadcast once every 10 minutes.
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# Every half hour, it can travel via two digipeater hops.
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# The others are kept local.
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#
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#PBEACON delay=1 every=30 overlay=S symbol="digi" lat=42^37.14N long=071^20.83W power=50 height=20 gain=4 comment="Chelmsford MA" via=WIDE1-1,WIDE2-1
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#PBEACON delay=11 every=30 overlay=S symbol="digi" lat=42^37.14N long=071^20.83W power=50 height=20 gain=4 comment="Chelmsford MA"
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#PBEACON delay=21 every=30 overlay=S symbol="digi" lat=42^37.14N long=071^20.83W power=50 height=20 gain=4 comment="Chelmsford MA"
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# With UTM coordinates instead of latitude and longitude.
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#PBEACON delay=1 every=10 overlay=S symbol="digi" zone=19T easting=307477 northing=4720178
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#
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# When the destination field is set to "SPEECH" the information part is
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# converted to speech rather than transmitted as a data frame.
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#
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#CBEACON dest="SPEECH" info="Club meeting tonight at 7 pm."
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#
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# Modify for your particular situation before removing
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# the # comment character from the beginning of appropriate lines above.
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#
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#############################################################
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# #
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# DIGIPEATER PROPERTIES #
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# #
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#############################################################
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#
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# For most common situations, use something like this by removing
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# the "#" from the beginning of the line below.
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#
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#DIGIPEAT 0 0 ^WIDE[3-7]-[1-7]$|^TEST$ ^WIDE[12]-[12]$ TRACE
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# See User Guide for more explanation of what this means and how
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# it can be customized for your particular needs.
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# Filtering can be used to limit was is digipeated.
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# For example, only weather weather reports, received on channel 0,
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# will be retransmitted on channel 1.
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#
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#FILTER 0 1 t/wn
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#############################################################
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# #
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# INTERNET GATEWAY #
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# #
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#############################################################
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# First you need to specify the name of a Tier 2 server.
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# The current preferred way is to use one of these regional rotate addresses:
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# noam.aprs2.net - for North America
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# soam.aprs2.net - for South America
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# euro.aprs2.net - for Europe and Africa
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# asia.aprs2.net - for Asia
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# aunz.aprs2.net - for Oceania
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#IGSERVER noam.aprs2.net
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# You also need to specify your login name and passcode.
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# Contact the author if you can't figure out how to generate the passcode.
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#IGLOGIN WB2OSZ-5 123456
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# That's all you need for a receive only IGate which relays
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# messages from the local radio channel to the global servers.
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# Some might want to send an IGate client position directly to a server
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# without sending it over the air and relying on someone else to
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# forward it to an IGate server. This is done by using sendto=IG rather
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# than a radio channel number. Overlay R for receive only, T for two way.
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#PBEACON sendto=IG delay=0:30 every=60:00 symbol="igate" overlay=R lat=42^37.14N long=071^20.83W
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#PBEACON sendto=IG delay=0:30 every=60:00 symbol="igate" overlay=T lat=42^37.14N long=071^20.83W
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# To relay messages from the Internet to radio, you need to add
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# one more option with the transmit channel number and a VIA path.
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#IGTXVIA 0 WIDE1-1
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# You might want to apply a filter for what packets will be obtained from the server.
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# Read about filters here: http://www.aprs-is.net/javaprsfilter.aspx
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# Example, positions and objects within 50 km of my location:
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#IGFILTER m/50
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# That is known as a server-side filter. It is processed by the IGate server.
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# You can also apply local filtering to limit what will be transmitted on the
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# RF side. For example, transmit only "messages" on channel 0 and weather
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# reports on channel 1.
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#FILTER IG 0 t/m
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#FILTER IG 1 t/wn
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# Finally, we don't want to flood the radio channel.
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# The IGate function will limit the number of packets transmitted
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# during 1 minute and 5 minute intervals. If a limit would
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# be exceeded, the packet is dropped and message is displayed in red.
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IGTXLIMIT 6 10
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#############################################################
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# #
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# APRStt GATEWAY #
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# #
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#############################################################
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#
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# Dire Wolf can receive DTMF (commonly known as Touch Tone)
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# messages and convert them to packet objects.
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#
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# See separate "APRStt-Implementation-Notes" document for details.
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#
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#
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# Sample gateway configuration based on:
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#
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# http://www.aprs.org/aprstt/aprstt-coding24.txt
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# http://www.aprs.org/aprs-jamboree-2013.html
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#
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# Define specific points.
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TTPOINT B01 37^55.37N 81^7.86W
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TTPOINT B7495088 42.605237 -71.34456
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TTPOINT B934 42.605237 -71.34456
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TTPOINT B901 42.661279 -71.364452
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TTPOINT B902 42.660411 -71.364419
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TTPOINT B903 42.659046 -71.364452
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TTPOINT B904 42.657578 -71.364602
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# For location at given bearing and distance from starting point.
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TTVECTOR B5bbbddd 37^55.37N 81^7.86W 0.01 mi
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# For location specified by x, y coordinates.
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TTGRID Byyyxxx 37^50.00N 81^00.00W 37^59.99N 81^09.99W
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# UTM location for Lowell-Dracut-Tyngsborough State Forest.
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TTUTM B6xxxyyy 19T 10 300000 4720000
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# Location for the corral.
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TTCORRAL 37^55.50N 81^7.00W 0^0.02N
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# Compact messages - Fixed locations xx and object yyy where
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# Object numbers 100 - 199 = bicycle
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# Object numbers 200 - 299 = fire truck
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# Others = dog
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TTMACRO xx1yy B9xx*AB166*AA2B4C5B3B0A1yy
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TTMACRO xx2yy B9xx*AB170*AA3C4C7C3B0A2yy
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TTMACRO xxyyy B9xx*AB180*AA3A6C4A0Ayyy
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TTMACRO z Cz
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# Receive on channel 0, Transmit object reports on channel 1 with optional via path.
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#TTOBJ 0 1 WIDE1-1
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# Advertise gateway position with beacon.
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# OBEACON DELAY=0:15 EVERY=10:00 VIA=WIDE1-1 OBJNAME=WB2OSZ-tt SYMBOL=APRStt LAT=42^37.14N LONG=71^20.83W COMMENT="APRStt Gateway"
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