replaced the minitel implementation with the OpenOS version, mostly
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4606620583
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@ -10,36 +10,27 @@ sender: original sender of packet
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data: the actual packet data, duh.
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data: the actual packet data, duh.
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]]--
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]]--
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local listeners,timers,processes,modems = {},{},{},{}
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local listeners = {}
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local hostname = os.getenv("HOSTNAME")
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local timers = {}
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local cfg = {}
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local cfg = {}
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local event = require "event"
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local component = require "component"
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local computer = require "computer"
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local serial = require "serialization"
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local hostname = computer.address():sub(1,8)
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local modems = {}
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local pid = nil
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cfg.debug = false
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cfg.debug = false
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cfg.port = 4096
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cfg.port = 4096
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cfg.retry = 10
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cfg.retry = 10
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cfg.retrycount = 64
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cfg.retrycount = 3
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cfg.route = true
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cfg.route = true
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local event, component, computer, serial = event, component, computer, serial
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local hnpath, cfgpath = "", ""
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OPENOS, PSYCHOS, KITTENOS = false, false, false
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if _OSVERSION:sub(1,6) == "OpenOS" then
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OPENOS = true
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hnpath = "/etc/hostname"
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cfgpath = "/etc/minitel.cfg"
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elseif _OSVERSION:sub(1,7) == "PsychOS" then
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PSYCHOS = true
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hnpath = "/boot/cfg/hostname"
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cfgpath = "/boot/cfg/minitel.cfg"
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elseif _OSVERSION:sub(1,8) == "KittenOS" then
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KITTENOS = true
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end
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-- packet cache: [packet ID]=uptime
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local pcache = {}
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cfg.pctime = 30
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--[[
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--[[
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LKR format:
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LKR format:
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address {
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address {
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@ -48,7 +39,6 @@ address {
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time last received
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time last received
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}
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}
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]]--
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]]--
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cfg.sroutes = {}
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cfg.sroutes = {}
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local rcache = setmetatable({},{__index=cfg.sroutes})
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local rcache = setmetatable({},{__index=cfg.sroutes})
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cfg.rctime = 15
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cfg.rctime = 15
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@ -66,60 +56,9 @@ packet queue format:
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]]--
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]]--
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local pqueue = {}
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local pqueue = {}
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local function saveconfig()
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-- packet cache: [packet ID]=uptime
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if OPENOS or PSYCHOS then
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local pcache = {}
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local f = io.open(cfgpath,"wb")
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cfg.pctime = 30
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if f then
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f:write(serial.serialize(cfg))
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f:close()
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end
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end
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end
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local function loadconfig()
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hostname = os.getenv("HOSTNAME") or computer.address():sub(1,8)
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if OPENOS or PSYCHOS then
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local f,g=io.open(hnpath,"rb")
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if f then
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hostname = f:read("*a"):match("(.-)\n")
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f:close()
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end
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local f = io.open(cfgpath,"rb")
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if f then
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local newcfg = serial.unserialize(f:read("*a")) or {}
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f:close()
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for k,v in pairs(newcfg) do
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cfg[k] = v
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end
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else
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saveconfig()
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end
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elseif KITTENOS then
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local globals = neo.requestAccess("x.neo.pub.globals") -- KittenOS standard hostname stuff
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if globals then
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hostname = globals.getSetting("hostname") or hostname
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globals.setSetting("hostname",hostname)
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end
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end
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end
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-- specific OS support here
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if PSYCHOS then -- PsychOS specific code
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serial = require "serialization"
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elseif OPENOS then -- OpenOS specific code
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event = require "event"
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component = require "component"
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computer = require "computer"
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serial = require "serialization"
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listener = false
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elseif KITTENOS then
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neo.requireAccess("s.h.modem_message","pulling packets")
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computer = {["uptime"]=os.uptime,["address"]=os.address} -- wrap computer so the OpenOS code more or less works
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function computer.pushSignal(...)
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for k,v in pairs(processes) do
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v(...)
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end
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end
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end
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local function dprint(...)
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local function dprint(...)
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if cfg.debug then
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if cfg.debug then
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@ -127,34 +66,43 @@ local function dprint(...)
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end
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end
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end
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end
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local function saveconfig()
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local f = io.open("/boot/cfg/minitel.cfg","wb")
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if f then
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f:write(serial.serialize(cfg))
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f:close()
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end
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end
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local function loadconfig()
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local f = io.open("/boot/cfg/minitel.cfg","rb")
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if f then
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local newcfg = serial.unserialize(f:read("*a"))
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f:close()
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for k,v in pairs(newcfg) do
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cfg[k] = v
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end
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else
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saveconfig()
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end
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end
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function start()
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function start()
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loadconfig()
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loadconfig()
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hostname = os.getenv("HOSTNAME") or computer.address():sub(1,8)
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print("Hostname: "..hostname)
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print("Hostname: "..hostname)
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if listener then return end
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if OPENOS or PSYCHOS then
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if pid then return false end
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for a,t in component.list("modem") do
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modems[#modems+1] = component.proxy(a)
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modems={}
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end
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for a,t in component.list("modem") do
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for k,v in ipairs(modems) do
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modems[#modems+1] = component.proxy(a)
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v.open(cfg.port)
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end
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print("Opened port "..cfg.port.." on "..v.address:sub(1,8))
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for k,v in ipairs(modems) do
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end
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v.open(cfg.port)
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for a,t in component.list("tunnel") do
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print("Opened port "..cfg.port.." on "..v.address)
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modems[#modems+1] = component.proxy(a)
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end
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end
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for a,t in component.list("tunnel") do
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elseif KITTENOS then
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modems[#modems+1] = component.proxy(a)
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for p in neo.requireAccess("c.modem","networking").list() do -- fun stuff for KittenOS
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dprint(p.address)
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modems[p.address] = p
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end
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for k,v in pairs(modems) do
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v.open(port)
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print("Opened port "..port.." on "..v.address)
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end
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for p in neo.requireAccess("c.tunnel","networking").list() do
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dprint(p.address)
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modems[p.address] = p
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end
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end
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end
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local function genPacketID()
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local function genPacketID()
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@ -176,14 +124,15 @@ function start()
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else
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else
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dprint("Not cached", cfg.port,packetID,packetType,dest,sender,vPort,data)
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dprint("Not cached", cfg.port,packetID,packetType,dest,sender,vPort,data)
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for k,v in pairs(modems) do
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for k,v in pairs(modems) do
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-- do not send message back to the wired or linked modem it came from
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-- the check for tunnels is for short circuiting `v.isWireless()`, which does not exist for tunnels
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if v.address ~= repeatingFrom or (v.type ~= "tunnel" and v.isWireless()) then
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if v.address ~= repeatingFrom or (v.type ~= "tunnel" and v.isWireless()) then
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if v.type == "modem" then
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if v.type == "modem" then
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v.broadcast(cfg.port,packetID,packetType,dest,sender,vPort,data)
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v.broadcast(cfg.port,packetID,packetType,dest,sender,vPort,data)
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elseif v.type == "tunnel" then
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v.send(packetID,packetType,dest,sender,vPort,data)
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v.send(packetID,packetType,dest,sender,vPort,data)
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end
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end
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end
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end
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end
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end
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end
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end
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end
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end
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@ -255,7 +204,6 @@ function start()
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dprint(npID,table.unpack(pqueue[npID]))
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dprint(npID,table.unpack(pqueue[npID]))
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end
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end
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local function packetPusher()
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local function packetPusher()
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for k,v in pairs(pqueue) do
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for k,v in pairs(pqueue) do
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if v[5] < computer.uptime() then
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if v[5] < computer.uptime() then
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@ -273,43 +221,29 @@ function start()
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listeners["modem_message"]=processPacket
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listeners["modem_message"]=processPacket
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listeners["net_send"]=queuePacket
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listeners["net_send"]=queuePacket
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if OPENOS then
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listeners["net_ack"]=dprint
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event.listen("modem_message",processPacket)
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print("Started packet listening daemon: "..tostring(processPacket))
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event.listen("net_send",queuePacket)
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print("Started packet queueing daemon: "..tostring(queuePacket))
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timers[#timers+1]=event.timer(0,packetPusher,math.huge)
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print("Started packet pusher: "..tostring(timers[#timers]))
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elseif KITTENOS then
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neo.requireAccess("r.svc.minitel","minitel daemon")(function(pkg,pid,sendSig)
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processes[pid] = sendSig
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return {["sendPacket"]=queuePacket}
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end)
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end
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if KITTENOS or PSYCHOS then
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pid=os.spawn(function()
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while true do
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while true do
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local ev = {coroutine.yield()}
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local ev = {coroutine.yield()}
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packetPusher()
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packetPusher()
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pruneCache()
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pruneCache()
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if ev[1] == "k.procdie" then
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processes[ev[3]] = nil
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end
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if listeners[ev[1]] then
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if listeners[ev[1]] then
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pcall(listeners[ev[1]],table.unpack(ev))
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pcall(listeners[ev[1]],table.unpack(ev))
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end
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end
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end
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end
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end
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end,"minitel")
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print("Started Minitel daemon: "..tostring(pid))
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return pid
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end
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end
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function stop()
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function stop()
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for k,v in pairs(listeners) do
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if pid then
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event.ignore(k,v)
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os.kill(pid)
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print("Stopped listener: "..tostring(v))
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pid = nil
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end
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return true
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for k,v in pairs(timers) do
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else
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event.cancel(v)
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return false
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print("Stopped timer: "..tostring(v))
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end
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end
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end
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end
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@ -331,11 +265,9 @@ end
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function set_route(to,laddr,raddr)
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function set_route(to,laddr,raddr)
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cfg.sroutes[to] = {laddr,raddr,0}
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cfg.sroutes[to] = {laddr,raddr,0}
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saveconfig()
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end
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end
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function del_route(to)
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function del_route(to)
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cfg.sroutes[to] = nil
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cfg.sroutes[to] = nil
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end
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saveconfig()
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if not OPENOS then
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start()
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end
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end
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