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Improvements to Telecomms. I wasn't happy with my relays and having telecomms send several messages on different Z levels was not effecient. I decided to overcome this by removing the need to attach Broadcasters and Transmitters to relays. Then I made relays just add to the signal data which z levels the message will be broadcasted on, instead of sending the message several times. It's a bit hard to explain but basically it should be better then ever, and adding more relays will not create serious performance issues. Since you can't control whether the Z level could only receive messages or only send them, I added options on the relay itself so you can set it. I then made an additional feature, which Nodrak gave me the idea for, which is that busses can change the frequency of a signal. It's an option on the Bus and you can set it to change the signal's frequency, which can create hilarious situations such as the command channel being redirected to the general channel. No way to duplicate a signal with a different frequency at the moment. Since relays earlier depended on a stupid system in order to become a off-site relay, I instead just made it limited to the satellite Z level, which makes more sense. Broadcasters and Receivers are linked to the HUB, but it's still possible to create a simple telecommunication system with a "Receiver -> Bus -> Processer -> Broadcaster" (though it will be slow) OTHER Smartfridge limit was lowered to 999, just below the infinite loop check limit. This is to prevent further issues that may occure. Moved creating some icon datums above the SQL procs, just to make sure that the SQL itself isn't sleeping and causing issues with the datums being used before being loaded. git-svn-id: http://tgstation13.googlecode.com/svn/trunk@5183 316c924e-a436-60f5-8080-3fe189b3f50e
294 lines
9.7 KiB
Plaintext
294 lines
9.7 KiB
Plaintext
/*
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HOW IT WORKS
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The radio_controller is a global object maintaining all radio transmissions, think about it as about "ether".
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Note that walkie-talkie, intercoms and headsets handle transmission using nonstandard way.
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procs:
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add_object(obj/device as obj, var/new_frequency as num, var/filter as text|null = null)
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Adds listening object.
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parameters:
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device - device receiving signals, must have proc receive_signal (see description below).
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one device may listen several frequencies, but not same frequency twice.
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new_frequency - see possibly frequencies below;
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filter - thing for optimization. Optional, but recommended.
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All filters should be consolidated in this file, see defines later.
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Device without listening filter will receive all signals (on specified frequency).
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Device with filter will receive any signals sent without filter.
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Device with filter will not receive any signals sent with different filter.
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returns:
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Reference to frequency object.
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remove_object (obj/device, old_frequency)
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Obliviously, after calling this proc, device will not receive any signals on old_frequency.
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Other frequencies will left unaffected.
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return_frequency(var/frequency as num)
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returns:
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Reference to frequency object. Use it if you need to send and do not need to listen.
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radio_frequency is a global object maintaining list of devices that listening specific frequency.
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procs:
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post_signal(obj/source as obj|null, datum/signal/signal, var/filter as text|null = null, var/range as num|null = null)
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Sends signal to all devices that wants such signal.
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parameters:
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source - object, emitted signal. Usually, devices will not receive their own signals.
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signal - see description below.
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filter - described above.
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range - radius of regular byond's square circle on that z-level. null means everywhere, on all z-levels.
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obj/proc/receive_signal(datum/signal/signal, var/receive_method as num, var/receive_param)
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Handler from received signals. By default does nothing. Define your own for your object.
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Avoid of sending signals directly from this proc, use spawn(-1). Do not use sleep() here please.
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parameters:
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signal - see description below. Extract all needed data from the signal before doing sleep(), spawn() or return!
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receive_method - may be TRANSMISSION_WIRE or TRANSMISSION_RADIO.
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TRANSMISSION_WIRE is currently unused.
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receive_param - for TRANSMISSION_RADIO here comes frequency.
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datum/signal
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vars:
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source
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an object that emitted signal. Used for debug and bearing.
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data
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list with transmitting data. Usual use pattern:
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data["msg"] = "hello world"
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encryption
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Some number symbolizing "encryption key".
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Note that game actually do not use any cryptography here.
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If receiving object don't know right key, it must ignore encrypted signal in its receive_signal.
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*/
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/*
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Frequency range: 1200 to 1600
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Radiochat range: 1441 to 1489 (most devices refuse to be tune to other frequency, even during mapmaking)
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Radio:
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1459 - standard radio chat
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1351 - Science
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1353 - Command
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1355 - Medical
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1357 - Engineering
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1359 - Security
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1441 - death squad
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1443 - Confession Intercom
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1349 - Miners
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1347 - Cargo techs
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Devices:
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1451 - tracking implant
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1457 - RSD default
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On the map:
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1311 for prison shuttle console (in fact, it is not used)
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1435 for status displays
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1437 for atmospherics/fire alerts
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1439 for engine components
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1439 for air pumps, air scrubbers, atmo control
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1441 for atmospherics - supply tanks
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1443 for atmospherics - distribution loop/mixed air tank
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1445 for bot nav beacons
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1447 for mulebot, secbot and ed209 control
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1449 for airlock controls, electropack, magnets
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1451 for toxin lab access
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1453 for engineering access
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1455 for AI access
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*/
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var/list/radiochannels = list(
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"Common" = 1459,
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"Science" = 1351,
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"Command" = 1353,
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"Medical" = 1355,
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"Engineering" = 1357,
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"Security" = 1359,
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"Deathsquad" = 1441,
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"Syndicate" = 1213,
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"Mining" = 1349,
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"Cargo" = 1347,
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)
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//depenging helpers
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var/list/DEPT_FREQS = list(1351,1355,1357,1359,1213,1441,1349,1347)
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var/const/COMM_FREQ = 1353 //command, colored gold in chat window
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var/const/SYND_FREQ = 1213
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#define TRANSMISSION_WIRE 0
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#define TRANSMISSION_RADIO 1
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/* filters */
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var/const/RADIO_TO_AIRALARM = "1"
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var/const/RADIO_FROM_AIRALARM = "2"
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var/const/RADIO_CHAT = "3"
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var/const/RADIO_ATMOSIA = "4"
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var/const/RADIO_NAVBEACONS = "5"
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var/const/RADIO_AIRLOCK = "6"
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var/const/RADIO_SECBOT = "7"
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var/const/RADIO_MULEBOT = "8"
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var/const/RADIO_MAGNETS = "9"
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var/global/datum/controller/radio/radio_controller
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datum/controller/radio
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var/list/datum/radio_frequency/frequencies = list()
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proc/add_object(obj/device as obj, var/new_frequency as num, var/filter = null as text|null)
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var/f_text = num2text(new_frequency)
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var/datum/radio_frequency/frequency = frequencies[f_text]
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if(!frequency)
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frequency = new
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frequency.frequency = new_frequency
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frequencies[f_text] = frequency
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frequency.add_listener(device, filter)
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return frequency
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proc/remove_object(obj/device, old_frequency)
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var/f_text = num2text(old_frequency)
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var/datum/radio_frequency/frequency = frequencies[f_text]
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if(frequency)
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frequency.remove_listener(device)
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if(frequency.devices.len == 0)
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del(frequency)
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frequencies -= f_text
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return 1
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proc/return_frequency(var/new_frequency as num)
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var/f_text = num2text(new_frequency)
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var/datum/radio_frequency/frequency = frequencies[f_text]
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if(!frequency)
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frequency = new
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frequency.frequency = new_frequency
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frequencies[f_text] = frequency
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return frequency
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datum/radio_frequency
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var/frequency as num
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var/list/list/obj/devices = list()
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proc
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post_signal(obj/source as obj|null, datum/signal/signal, var/filter = null as text|null, var/range = null as num|null)
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//log_admin("DEBUG \[[world.timeofday]\]: post_signal {source=\"[source]\", [signal.debug_print()], filter=[filter]}")
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// var/N_f=0
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// var/N_nf=0
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// var/Nt=0
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var/turf/start_point
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if(range)
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start_point = get_turf(source)
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if(!start_point)
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del(signal)
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return 0
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if (filter) //here goes some copypasta. It is for optimisation. -rastaf0
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for(var/obj/device in devices[filter])
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if(device == source)
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continue
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if(range)
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var/turf/end_point = get_turf(device)
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if(!end_point)
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continue
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//if(max(abs(start_point.x-end_point.x), abs(start_point.y-end_point.y)) <= range)
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if(start_point.z!=end_point.z || get_dist(start_point, end_point) > range)
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continue
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device.receive_signal(signal, TRANSMISSION_RADIO, frequency)
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for(var/obj/device in devices["_default"])
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if(device == source)
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continue
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if(range)
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var/turf/end_point = get_turf(device)
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if(!end_point)
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continue
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//if(max(abs(start_point.x-end_point.x), abs(start_point.y-end_point.y)) <= range)
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if(start_point.z!=end_point.z || get_dist(start_point, end_point) > range)
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continue
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device.receive_signal(signal, TRANSMISSION_RADIO, frequency)
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// N_f++
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else
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for (var/next_filter in devices)
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// var/list/obj/DDD = devices[next_filter]
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// Nt+=DDD.len
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for(var/obj/device in devices[next_filter])
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if(device == source)
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continue
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if(range)
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var/turf/end_point = get_turf(device)
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if(!end_point)
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continue
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//if(max(abs(start_point.x-end_point.x), abs(start_point.y-end_point.y)) <= range)
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if(start_point.z!=end_point.z || get_dist(start_point, end_point) > range)
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continue
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device.receive_signal(signal, TRANSMISSION_RADIO, frequency)
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// N_nf++
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// log_admin("DEBUG: post_signal(source=[source] ([source.x], [source.y], [source.z]),filter=[filter]) frequency=[frequency], N_f=[N_f], N_nf=[N_nf]")
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del(signal)
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add_listener(obj/device as obj, var/filter as text|null)
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if (!filter)
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filter = "_default"
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//log_admin("add_listener(device=[device],filter=[filter]) frequency=[frequency]")
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var/list/obj/devices_line = devices[filter]
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if (!devices_line)
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devices_line = new
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devices[filter] = devices_line
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devices_line+=device
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// var/list/obj/devices_line___ = devices[filter_str]
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// var/l = devices_line___.len
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//log_admin("DEBUG: devices_line.len=[devices_line.len]")
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//log_admin("DEBUG: devices(filter_str).len=[l]")
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remove_listener(obj/device)
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for (var/devices_filter in devices)
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var/list/devices_line = devices[devices_filter]
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devices_line-=device
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while (null in devices_line)
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devices_line -= null
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if (devices_line.len==0)
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devices -= devices_filter
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del(devices_line)
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obj/proc
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receive_signal(datum/signal/signal, receive_method, receive_param)
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return null
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datum/signal
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var/obj/source
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var/transmission_method = 0
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//0 = wire
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//1 = radio transmission
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//2 = subspace transmission
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var/data = list()
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var/encryption
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var/frequency = 0
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proc/copy_from(datum/signal/model)
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source = model.source
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transmission_method = model.transmission_method
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data = model.data
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encryption = model.encryption
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frequency = model.frequency
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proc/debug_print()
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if (source)
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. = "signal = {source = '[source]' ([source:x],[source:y],[source:z])\n"
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else
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. = "signal = {source = '[source]' ()\n"
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for (var/i in data)
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. += "data\[\"[i]\"\] = \"[data[i]]\"\n"
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if(islist(data[i]))
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var/list/L = data[i]
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for(var/t in L)
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. += "data\[\"[i]\"\] list has: [t]"
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