mirror of
https://github.com/MikaylaFischler/cc-mek-scada.git
synced 2024-08-30 18:22:34 +00:00
439 lines
17 KiB
Lua
439 lines
17 KiB
Lua
local comms = require("scada-common.comms")
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local log = require("scada-common.log")
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local mqueue = require("scada-common.mqueue")
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local types = require("scada-common.types")
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local util = require("scada-common.util")
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local databus = require("supervisor.databus")
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local svqtypes = require("supervisor.session.svqtypes")
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-- supervisor rtu sessions (svrs)
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local unit_session = require("supervisor.session.rtu.unit_session")
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local svrs_boilerv = require("supervisor.session.rtu.boilerv")
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local svrs_dynamicv = require("supervisor.session.rtu.dynamicv")
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local svrs_envd = require("supervisor.session.rtu.envd")
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local svrs_imatrix = require("supervisor.session.rtu.imatrix")
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local svrs_redstone = require("supervisor.session.rtu.redstone")
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local svrs_sna = require("supervisor.session.rtu.sna")
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local svrs_sps = require("supervisor.session.rtu.sps")
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local svrs_turbinev = require("supervisor.session.rtu.turbinev")
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local rtu = {}
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local PROTOCOL = comms.PROTOCOL
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local SCADA_MGMT_TYPE = comms.SCADA_MGMT_TYPE
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local RTU_UNIT_TYPE = types.RTU_UNIT_TYPE
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local PERIODICS = {
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KEEP_ALIVE = 2000,
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ALARM_TONES = 500
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}
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-- create a new RTU session
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---@nodiscard
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---@param id integer session ID
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---@param s_addr integer device source address
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---@param in_queue mqueue in message queue
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---@param out_queue mqueue out message queue
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---@param timeout number communications timeout
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---@param advertisement table RTU device advertisement
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---@param facility facility facility data table
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---@param fp_ok boolean if the front panel UI is running
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function rtu.new_session(id, s_addr, in_queue, out_queue, timeout, advertisement, facility, fp_ok)
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-- print a log message to the terminal as long as the UI isn't running
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local function println(message) if not fp_ok then util.println_ts(message) end end
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local log_header = "rtu_session(" .. id .. "): "
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local self = {
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modbus_q = mqueue.new(),
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advert = advertisement,
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fac_units = facility.get_units(),
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-- connection properties
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seq_num = 0,
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r_seq_num = nil,
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connected = true,
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conn_watchdog = util.new_watchdog(timeout),
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last_rtt = 0,
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-- periodic messages
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periodics = {
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last_update = 0,
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keep_alive = 0,
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alarm_tones = 0
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},
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units = {}
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}
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---@class rtu_session
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local public = {}
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local function _reset_config()
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self.units = {}
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end
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-- parse the recorded advertisement and create unit sub-sessions
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local function _handle_advertisement()
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local unit_count = 0
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_reset_config()
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for i = 1, #self.fac_units do
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local unit = self.fac_units[i] ---@type reactor_unit
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unit.purge_rtu_devices(id)
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facility.purge_rtu_devices(id)
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end
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for i = 1, #self.advert do
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local unit = nil ---@type unit_session|nil
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---@type rtu_advertisement
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local unit_advert = {
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type = self.advert[i][1],
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index = self.advert[i][2],
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reactor = self.advert[i][3],
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rsio = self.advert[i][4]
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}
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local u_type = unit_advert.type ---@type integer|boolean
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-- validate unit advertisement
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local advert_validator = util.new_validator()
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advert_validator.assert_type_int(unit_advert.index)
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advert_validator.assert_type_int(unit_advert.reactor)
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if u_type == RTU_UNIT_TYPE.REDSTONE then
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advert_validator.assert_type_table(unit_advert.rsio)
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end
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if advert_validator.valid() then
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advert_validator.assert_min(unit_advert.index, 1)
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advert_validator.assert_min(unit_advert.reactor, 0)
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advert_validator.assert_max(unit_advert.reactor, #self.fac_units)
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if not advert_validator.valid() then u_type = false end
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else
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u_type = false
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end
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local type_string = util.strval(u_type)
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if type(u_type) == "number" then type_string = types.rtu_type_to_string(u_type) end
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-- create unit by type
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if u_type == false then
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-- validation fail
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log.debug(log_header .. "_handle_advertisement(): advertisement unit validation failure")
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else
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if unit_advert.reactor > 0 then
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local target_unit = self.fac_units[unit_advert.reactor] ---@type reactor_unit
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-- unit RTUs
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if u_type == RTU_UNIT_TYPE.REDSTONE then
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-- redstone
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unit = svrs_redstone.new(id, i, unit_advert, self.modbus_q)
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if type(unit) ~= "nil" then target_unit.add_redstone(unit) end
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elseif u_type == RTU_UNIT_TYPE.BOILER_VALVE then
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-- boiler
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unit = svrs_boilerv.new(id, i, unit_advert, self.modbus_q)
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if type(unit) ~= "nil" then target_unit.add_boiler(unit) end
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elseif u_type == RTU_UNIT_TYPE.TURBINE_VALVE then
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-- turbine
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unit = svrs_turbinev.new(id, i, unit_advert, self.modbus_q)
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if type(unit) ~= "nil" then target_unit.add_turbine(unit) end
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elseif u_type == RTU_UNIT_TYPE.DYNAMIC_VALVE then
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-- dynamic tank
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unit = svrs_dynamicv.new(id, i, unit_advert, self.modbus_q)
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if type(unit) ~= "nil" then target_unit.add_tank(unit) end
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elseif u_type == RTU_UNIT_TYPE.SNA then
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-- solar neutron activator
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unit = svrs_sna.new(id, i, unit_advert, self.modbus_q)
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if type(unit) ~= "nil" then target_unit.add_sna(unit) end
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elseif u_type == RTU_UNIT_TYPE.ENV_DETECTOR then
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-- environment detector
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unit = svrs_envd.new(id, i, unit_advert, self.modbus_q)
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if type(unit) ~= "nil" then target_unit.add_envd(unit) end
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elseif u_type == RTU_UNIT_TYPE.VIRTUAL then
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-- skip virtual units
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log.debug(util.c(log_header, "skipping virtual RTU unit #", i))
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else
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log.warning(util.c(log_header, "_handle_advertisement(): encountered unsupported reactor-specific RTU type ", type_string))
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end
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else
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-- facility RTUs
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if u_type == RTU_UNIT_TYPE.REDSTONE then
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-- redstone
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unit = svrs_redstone.new(id, i, unit_advert, self.modbus_q)
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if type(unit) ~= "nil" then facility.add_redstone(unit) end
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elseif u_type == RTU_UNIT_TYPE.IMATRIX then
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-- induction matrix
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unit = svrs_imatrix.new(id, i, unit_advert, self.modbus_q)
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if type(unit) ~= "nil" then facility.add_imatrix(unit) end
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elseif u_type == RTU_UNIT_TYPE.SPS then
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-- super-critical phase shifter
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unit = svrs_sps.new(id, i, unit_advert, self.modbus_q)
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if type(unit) ~= "nil" then facility.add_sps(unit) end
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elseif u_type == RTU_UNIT_TYPE.DYNAMIC_VALVE then
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-- dynamic tank
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unit = svrs_dynamicv.new(id, i, unit_advert, self.modbus_q)
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if type(unit) ~= "nil" then facility.add_tank(unit) end
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elseif u_type == RTU_UNIT_TYPE.ENV_DETECTOR then
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-- environment detector
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unit = svrs_envd.new(id, i, unit_advert, self.modbus_q)
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if type(unit) ~= "nil" then facility.add_envd(unit) end
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elseif u_type == RTU_UNIT_TYPE.VIRTUAL then
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-- skip virtual units
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log.debug(util.c(log_header, "skipping virtual RTU unit #", i))
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else
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log.warning(util.c(log_header, "_handle_advertisement(): encountered unsupported facility RTU type ", type_string))
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end
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end
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end
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if unit ~= nil then
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self.units[i] = unit
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unit_count = unit_count + 1
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elseif u_type ~= RTU_UNIT_TYPE.VIRTUAL then
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log.warning(util.c(log_header, "_handle_advertisement(): problem occured while creating a unit (type is ", type_string, ")"))
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end
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end
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databus.tx_rtu_units(id, unit_count)
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end
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-- mark this RTU session as closed, stop watchdog
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local function _close()
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self.conn_watchdog.cancel()
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self.connected = false
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databus.tx_rtu_disconnected(id)
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-- mark all RTU unit sessions as closed so the reactor unit knows
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for _, unit in pairs(self.units) do unit.close() end
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end
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-- send a MODBUS packet
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---@param m_pkt modbus_packet MODBUS packet
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local function _send_modbus(m_pkt)
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local s_pkt = comms.scada_packet()
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s_pkt.make(s_addr, self.seq_num, PROTOCOL.MODBUS_TCP, m_pkt.raw_sendable())
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out_queue.push_packet(s_pkt)
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self.seq_num = self.seq_num + 1
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end
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-- send a SCADA management packet
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---@param msg_type SCADA_MGMT_TYPE
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---@param msg table
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local function _send_mgmt(msg_type, msg)
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local s_pkt = comms.scada_packet()
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local m_pkt = comms.mgmt_packet()
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m_pkt.make(msg_type, msg)
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s_pkt.make(s_addr, self.seq_num, PROTOCOL.SCADA_MGMT, m_pkt.raw_sendable())
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out_queue.push_packet(s_pkt)
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self.seq_num = self.seq_num + 1
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end
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-- handle a packet
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---@param pkt modbus_frame|mgmt_frame
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local function _handle_packet(pkt)
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-- check sequence number
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if self.r_seq_num == nil then
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self.r_seq_num = pkt.scada_frame.seq_num()
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elseif (self.r_seq_num + 1) ~= pkt.scada_frame.seq_num() then
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log.warning(log_header .. "sequence out-of-order: last = " .. self.r_seq_num .. ", new = " .. pkt.scada_frame.seq_num())
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return
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else
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self.r_seq_num = pkt.scada_frame.seq_num()
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end
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-- feed watchdog
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self.conn_watchdog.feed()
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-- process packet
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if pkt.scada_frame.protocol() == PROTOCOL.MODBUS_TCP then
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---@cast pkt modbus_frame
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if self.units[pkt.unit_id] ~= nil then
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local unit = self.units[pkt.unit_id] ---@type unit_session
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unit.handle_packet(pkt)
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end
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elseif pkt.scada_frame.protocol() == PROTOCOL.SCADA_MGMT then
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---@cast pkt mgmt_frame
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-- handle management packet
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if pkt.type == SCADA_MGMT_TYPE.KEEP_ALIVE then
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-- keep alive reply
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if pkt.length == 2 then
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local srv_start = pkt.data[1]
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-- local rtu_send = pkt.data[2]
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local srv_now = util.time()
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self.last_rtt = srv_now - srv_start
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if self.last_rtt > 750 then
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log.warning(log_header .. "RTU KEEP_ALIVE round trip time > 750ms (" .. self.last_rtt .. "ms)")
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end
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-- log.debug(log_header .. "RTU RTT = " .. self.last_rtt .. "ms")
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-- log.debug(log_header .. "RTU TT = " .. (srv_now - rtu_send) .. "ms")
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databus.tx_rtu_rtt(id, self.last_rtt)
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else
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log.debug(log_header .. "SCADA keep alive packet length mismatch")
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end
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elseif pkt.type == SCADA_MGMT_TYPE.CLOSE then
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-- close the session
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_close()
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elseif pkt.type == SCADA_MGMT_TYPE.RTU_ADVERT then
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-- RTU unit advertisement
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log.debug(log_header .. "received updated advertisement")
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self.advert = pkt.data
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-- handle advertisement; this will re-create all unit sub-sessions
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_handle_advertisement()
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elseif pkt.type == SCADA_MGMT_TYPE.RTU_DEV_REMOUNT then
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if pkt.length == 1 then
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local unit_id = pkt.data[1]
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if self.units[unit_id] ~= nil then
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local unit = self.units[unit_id] ---@type unit_session
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unit.invalidate_cache()
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end
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else
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log.debug(log_header .. "SCADA RTU device re-mount packet length mismatch")
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end
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else
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log.debug(log_header .. "handler received unsupported SCADA_MGMT packet type " .. pkt.type)
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end
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end
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end
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-- PUBLIC FUNCTIONS --
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-- get the session ID
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function public.get_id() return id end
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-- check if a timer matches this session's watchdog
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---@nodiscard
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---@param timer number
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function public.check_wd(timer)
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return self.conn_watchdog.is_timer(timer) and self.connected
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end
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-- close the connection
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function public.close()
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_close()
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_send_mgmt(SCADA_MGMT_TYPE.CLOSE, {})
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println(log_header .. "connection to RTU closed by server")
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log.info(log_header .. "session closed by server")
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end
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-- iterate the session
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---@nodiscard
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---@return boolean connected
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function public.iterate()
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if self.connected then
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------------------
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-- handle queue --
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------------------
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local handle_start = util.time()
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while in_queue.ready() and self.connected do
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-- get a new message to process
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local msg = in_queue.pop()
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if msg ~= nil then
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if msg.qtype == mqueue.TYPE.PACKET then
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-- handle a packet
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_handle_packet(msg.message)
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elseif msg.qtype == mqueue.TYPE.COMMAND then
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-- handle instruction
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elseif msg.qtype == mqueue.TYPE.DATA then
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-- instruction with body
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end
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end
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-- max 100ms spent processing queue
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if util.time() - handle_start > 100 then
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log.warning(log_header .. "exceeded 100ms queue process limit")
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break
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end
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end
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-- exit if connection was closed
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if not self.connected then
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println("RTU connection " .. id .. " closed by remote host")
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log.info(log_header .. "session closed by remote host")
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return self.connected
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end
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------------------
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-- update units --
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------------------
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local time_now = util.time()
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for _, unit in pairs(self.units) do unit.update(time_now) end
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----------------------
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-- update periodics --
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----------------------
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local elapsed = util.time() - self.periodics.last_update
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local periodics = self.periodics
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-- keep alive
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periodics.keep_alive = periodics.keep_alive + elapsed
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if periodics.keep_alive >= PERIODICS.KEEP_ALIVE then
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_send_mgmt(SCADA_MGMT_TYPE.KEEP_ALIVE, { util.time() })
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periodics.keep_alive = 0
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end
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-- alarm tones
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periodics.alarm_tones = periodics.alarm_tones + elapsed
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if periodics.alarm_tones >= PERIODICS.ALARM_TONES then
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_send_mgmt(SCADA_MGMT_TYPE.RTU_TONE_ALARM, { facility.get_alarm_tones() })
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periodics.alarm_tones = 0
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end
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self.periodics.last_update = util.time()
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--------------------------------------------
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-- process RTU session handler out queues --
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--------------------------------------------
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for _ = 1, self.modbus_q.length() do
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-- get the next message
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local msg = self.modbus_q.pop()
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if msg ~= nil then
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if msg.qtype == mqueue.TYPE.PACKET then
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-- handle a packet
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_send_modbus(msg.message)
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elseif msg.qtype == mqueue.TYPE.COMMAND then
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-- handle instruction
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elseif msg.qtype == mqueue.TYPE.DATA then
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-- instruction with body
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local cmd = msg.message ---@type queue_data
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if cmd.key == unit_session.RTU_US_DATA.BUILD_CHANGED then
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out_queue.push_data(svqtypes.SV_Q_DATA.RTU_BUILD_CHANGED, cmd.val)
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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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return self.connected
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end
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-- handle initial advertisement
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_handle_advertisement()
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return public
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end
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return rtu
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